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@@ -12,6 +12,11 @@ For_AI/
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!**/logs/.gitkeep
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!**/Logs/.gitkeep
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# monitor 腳本的執行期產物(原始擷取、pid、狀態)
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*.raw
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*.pid
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*.state
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# 打包輸出:產出不進 git,打包工具本身要進
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publish/*
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!publish/.gitkeep
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+223
-43
@@ -37,8 +37,13 @@ LTC2980 margin 控制器。TTL 只負責「按順序 `sendln` 並把畫面收進
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| 電源 margin | LTC2980(= 2 × LTC2977)over PMBus,LINEAR16 編碼 |
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| 錯誤計數來源 | Linux PCIe AER sysfs(`aer_dev_*`)、EDAC sysfs(`dimm_ce/ue_count`) |
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| 平台監控 | SONiC `show platform *`(pmon container,含 `leak status` / `leak channels`) |
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| BMC 存取 | host 端 `bmc-manager run "<cmd>"`(不需對 BMC 開 SSH,繞開其 busybox 工具鏈) |
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| 壓力測試 | `mlucas-avx2`(AMD CPU)、`~/hammer/tools/stress_{mem,ssd,usb}.py` |
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| BMC 存取 | host 端 `bmc-manager run "<cmd>"`(不需對 BMC 開 SSH,繞開其 busybox 工具鏈);`bmc-first-enroll` / `bmc-manager version\|status` |
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| 背景工作管理 | `bgctl run/list/stop --all/reset`(平台工具);長時間 ping 用 `systemd-run --unit=` 掛成 transient unit |
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| 管理網路 | iproute2(`ip link set` / `ip address replace` / `ip route replace ... metric`)+ `ping -I` |
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| 測試 session | `hw-test-session start\|log\|status\|finish`;job log 收在 `/host/hw-eval/jobs/` |
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| 風扇控制 | max31790 driver rebind(`/sys/bus/i2c/drivers/max31790/{bind,unbind}`)+ `fan-speed-control.sh <%>` |
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| 100G PRBS | `bcmcmd -n <unit> -c 'dsh -c "phy diag <phy> prbs …"'`(set / prbsstat STArt / get / Ber / STOp / clear) |
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| 壓力測試 | `mlucas-avx2`(AMD CPU)、`bgctl run` 排程的 `memtester` / `qfx5252-stress-ssd` / `qfx5252-stress-usb` |
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| 資料面流量 | `bcmcmd`(Broadcom drivshell)VLAN loopback + `tx` burst,switch unit 0 / 1 |
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| 流量報表 | DUT 上 awk(`blanton_traffic_linespeed report`);離線 `python3 tools/bcm_mibpair_report_V1.1.0.py` |
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| 版本控制 | Git(NAS + Gitea 私有 remote;**不推 GitHub,含客戶 NDA 資料**) |
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@@ -115,6 +120,9 @@ Blanton_TTL_Script/
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│ ├── Blantons_FPGA_Registers_draft.docx # 同上,客戶原始 docx
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│ ├── Blantons_FPGA_Registers_Map_draft.xlsx
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│ ├── Blantons_PCIe_AER_and_DDR_EDAC_checks.pdf # AER / EDAC 檢查點依據
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│ ├── ADPM12200CMLZxx_DS_Datasheet_*.pdf # PDB brick 手冊(PAGE 與 DIRECT 係數的來源)
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│ ├── Blanton_Test_Flow.drawio # A/B/C + 熱安規四支的測試流程圖(draw.io)
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│ ├── LTC2980_channel_map.csv # 9 個 settings/*.conf 合併:Board,CONN,Ch,NetName,Vnom(144 列)
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│ ├── TTL_Script_Blanton_Status_20260814.xlsx
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│ └── TTL_Script_Blanton_Status_20260817.xlsx # ⭐ 最新:三支腳本逐項 Status(OK / On-Going + Owner)
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│
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@@ -122,9 +130,17 @@ Blanton_TTL_Script/
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│ ├── bcm_mibpair_report_V1.1.0.py # 離線解析 drivshell log → per-pair TX/RX + PASS/FAIL
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│ ├── traffic_loopback_vlan_setting.txt # bcmcmd VLAN 30..137 建立 + 成對 pbm(cdN <-> cdN+32)
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│ ├── traffic_loopback_start.txt # bcmcmd tx 100 length=512 VLantag=<vid>
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│ └── traffic_loopback_vlan_remove.txt # bcmcmd vlan remove <vid> pbm=...
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│ # ↑ 三份為手動貼上用的原始指令表,
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│ # blanton_traffic_linespeed.sh 是其 bash 版
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│ ├── traffic_loopback_vlan_remove.txt # bcmcmd vlan remove <vid> pbm=...
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│ │ # ↑ 三份為手動貼上用的原始指令表,
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│ │ # blanton_traffic_linespeed.sh 是其 bash 版
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│ ├── 100G_PRBS.txt # 100G PRBS 原始指令(port_prbs_monitor.sh 的來源)
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│ ├── TR518.txt # 內建封包測試 tr 518 → blanton_tr518.sh
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│ ├── BER_Test.txt # 全機 PRBS BER 指令 → blanton_ber.sh
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│ ├── Multiphase_{high3,low3,comboA,comboB,Save}.txt # → blanton_multiphase_margin.sh
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│ ├── Multiphase_Netname # 38 條軌的 net 名稱(區塊順序對應)
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│ ├── 100G_Traffic.txt # ce0 VLAN 138 打流 → blanton_traffic_linespeed.sh
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│ ├── fan_ctrl.txt # MAX31790 unbind/bind + fan-speed-control.sh 30
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│ └── gen_channel_map.sh # settings/*.conf → docs/LTC2980_channel_map.csv(需 gawk)
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│
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├── secret/ # 🚫 gitignored — DUT 密碼、per-unit BDF、COM 設定
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│ ├── README.md # ✅ committed — 用途索引
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@@ -140,6 +156,7 @@ Blanton_TTL_Script/
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└── src/
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└── Script_ABC_Blanton/ # ← Tera Term 的工作目錄(整包給測試員)
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│
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├── 4_Blanton_Script_thermal_safety.ttl # 熱 / 安規:獨立跑,不接 A→B→C
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├── config.ttl # 全域設定:testcase 名、EN_Margin / EN_log、三個 prompt 字串
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├── 1_Blanton_Script_A.ttl # Pre-test:登入 → 對時 → source 工具 → 清 AER → 抓基線
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├── 2_Blanton_Script_B.ttl # Stress:開壓力程序 → while 1 每輪抓 fan/temp/margin
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@@ -148,8 +165,8 @@ Blanton_TTL_Script/
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├── utils/ # 可 include 的取數片段(TTL,無狀態、只 wait+sendln)
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│ ├── pcie_bus.ttl # lspci -tvvv / -vv
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│ ├── setup_pmon.ttl # show platform summary/fan/temperature/psustatus/voltage/
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│ │ # current/ssdhealth/leak status/leak channels(9 項)
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│ ├── show_dmesg.ttl # date + dmesg grep error/fail/warning
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│ │ # current/ssdhealth/leak status/leak channels + TPM(11 項)
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│ ├── show_dmesg.ttl # dmesg -T 合併 error 正則 + i2c 過濾 + dmesg -C 清空
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│ ├── show_margin_status.ttl # source margin_status_all.sh(掃 9 顆 LTC2980)
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│ ├── kill_all_process.ttl # kill $(jobs -p)
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│ ├── wait_init.ttl # 輪詢 show platform temperature 直到 pmon 起來
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@@ -172,13 +189,30 @@ Blanton_TTL_Script/
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├── blanton_pwr_data.sh # SWB VRM + PDB brick 的 Vin/Vout/Iout/Temp 表
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├── blanton_traffic_linespeed.sh # SWB loopback 線速流量(bcmcmd unit 0/1)
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│ # init/clear/show/start/stop/ps/report/run
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├── bmc_monitor.sh # BMC 監控:週期跑 free -m,寫輪替 log
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├── bmc_monitor_ddr.sh # BMC DDR 壓力:memtester,逾時 3600s
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│ # ↑ 兩支都要 chmod +x 才能跑(見 Key Constraints)
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├── mgmt_ping_monitor.sh # 10G/1G 管理網路 ping 監控(iproute2)
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│ # eth0→TARGET_10G、eth1→TARGET_1G,兩張卡同時持續 ping
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├── port_prbs_monitor.sh # 100G uplink PRBS 測試(bcmcmd phy diag)
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├── blanton_ber.sh # 全機 SerDes BER 掃描(phydiag prbs / prbsstat)
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├── blanton_multiphase_margin.sh # 多相 VRM margin(原生 i2c,38 條軌)
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├── pwr_brick.sh # PDB / CPB power brick 讀值(VI2C ch4)
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├── nfc_polling.sh # NFC tag 背景輪詢 + PASS/FAIL 統計
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├── blantons_nfc_validate.py # NFC/NCI 驗證工具(廠商提供,未修改)
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├── blanton_tr518.sh # TR518 封包測試,量功耗前的負載來源
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├── TH6_SWB0_power_readback.sh # SWB0 19 條軌 V×I + 總功耗
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├── TH6_SWB1_power_readback.sh # SWB1 同上
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│ # ⚠️ 已納入交付,但 A/B/C 的呼叫仍註解掉(bring-up 中)
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├── usb_target.sh # 偵測 USB 裝置節點/掛載點(排除系統碟)
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├── bmc_monitor.sh # BMC 監控:free -m + I2C 寫入/讀回圖樣測試
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├── bmc_monitor_ddr.sh # ⚠️ 已停用:B/C 內呼叫處已註解,DDR 壓力改走 bgctl + bmc-manager
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│ # ↑ 三支都要 chmod +x 才能跑(見 Key Constraints)
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||||
└── LTC2980_Margin_Script/ # 電壓 margin 子專案(另有獨立 repo)
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├── margin.sh # margin_init/status/set/apply_profile/save
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||||
# # v2.7.0:margin_save all / margin_save blanton
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├── settings/*.conf # 一個 .conf = 一顆 LTC2980(CB + SWB0/1 × CONN13~16)
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├── profiles/*.conf # 16-ch 批次組合(comboA/B、high3/5、low3/5、normal、off)
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├── profiles/*.conf # 16-ch 批次組合。SWB 為 per-CONN:
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# # combo_SWB_CONN13~16_{high,low}(百分比對應該片的軌)
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# # comboA/comboB_{CB,SWB_CONN13~16}(互補棋盤配對)
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# # 通用:high3/5、low3/5、normal、all_off
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├── script/*_all.sh # 跨 9 顆 LTC2980 的批次 status / apply / save
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├── Ref/margin_command_trace.md # 指令追蹤參考(SWB 章節已標過期,見文件內警告)
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└── logs/ # margin 操作 log
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@@ -195,15 +229,20 @@ Blanton_TTL_Script/
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||||
### 1. `config.ttl` — 全域測試參數(TTL 變數)
|
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|
||||
```ini
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strTestcase = "Margin" ; 測項名,進 log 檔名
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project_name = "Blanton" ; 專案名,進 log 檔名
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EN_Margin = 1 ; 1=跑 margin 掃描, 0=跳過
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strTestcase = "ENV" ; 測項名(ENV/EMC/Margin...),進 log 檔名
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EN_Margin = 0 ; 1=跑 margin 掃描, 0=跳過
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EN_log = 1 ; 1=logopen 存檔, 0=不存
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FAN_SPEED = 100 ; 傳給 fan-speed-control.sh 的風扇轉速 (%),預設全速
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SWB_UNIT0 = 1 ; 這台有 switch unit 0(流量與 wait_init 都依此)
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SWB_UNIT1 = 1 ; 這台有 switch unit 1
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prompt_login = "sonic login:"
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prompt_sonic = "admin@sonic:~$"
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prompt_sonic_root = "root@sonic:~#"
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```
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> `SWB_UNIT0` / `SWB_UNIT1` 兩個都是 0 時,`wait_init.ttl` 直接 bypass、A/B/C 的流量段整段跳過。
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Log 檔名規則:`<mdir>\Logs\<project_name>_<strTestcase>_<YYYYmmdd-HHMMSS>.log`
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### 2. `settings/<board>.conf` — 一顆 LTC2980(16 channel)
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@@ -214,11 +253,20 @@ Log 檔名規則:`<mdir>\Logs\<project_name>_<strTestcase>_<YYYYmmdd-HHMMSS>.l
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| `CB_I2C_CH` | int | `TRANSPORT="swb"` 時的 FPGA I2C 通道(6/7/8/9) |
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||||
| `CHIPS[]` | string[2] | `"bus:addr"`,index 0 → CH0~7、index 1 → CH8~15 |
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| `CHIP_PRE_CMD[]` / `CHIP_POST_CMD[]` | string[1] | mux 切換等前後置指令,`;` 分隔多筆 |
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| `CH<n>_VNOM` | string | 標稱電壓(`"-"` = 未使用 / NC) |
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| `CH<n>_VNOM` | string | 這條軌的**基準電壓**(`"-"` = 未使用 / NC) |
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| `CH<n>_NET` | string | 電路 net name(對照 schematic) |
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|
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Channel 定址:`ch / 8` → `CHIPS[]` index,`ch % 8` → LTC2977 PMBus PAGE(0x00~0x07)。
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**`VNOM` 自 2026-08-30 起是「Blanton 實測中位數」,不是規格標稱值。** 144 條軌裡有 86 條
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被改上去 +0.8% ~ +2.5%(例:`PVDD3_3V_SYNTH_LDO_*` 3.3 → 3.38、`P0V9_AVDD_*` 0.9 → 0.915、
|
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`PVDD0_8V_T3` 0.8 → 0.82)。這件事影響兩處,**不是只有顯示**:
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|
||||
- `margin_status` 的偏差 % 是對 `VNOM` 算的 —— 以前一條穩定在 0.756 V 的軌顯示 `+0.80%`,
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現在顯示 `0.00%`。**舊 log 的偏差 % 不能跟新 log 直接比。**
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- `margin_set` 的 high / low / OV / UV **全部由 `VNOM` 推算**(`VNOM × (1 ± change%)`),
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所以整個 margin 視窗跟著平移。同樣下 `+3%`,實際打到的絕對電壓比以前高。
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**SWB 通道與位址對應(2026-08-19 上機驗證,`ababb2c`):**
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|
||||
| FPGA I2C 通道 | 板 / 接頭 | LTC2977 位址(lo / hi) |
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@@ -231,6 +279,31 @@ Channel 定址:`ch / 8` → `CHIPS[]` index,`ch % 8` → LTC2977 PMBus PAGE
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||||
> 同一顆 LTC2980 的兩個位址**相差 2**(7-bit,由規格書 8-bit 配對除以 2 而來),不是 1。
|
||||
> 兩張板共用一條通道,所以同通道上的位址必須互斥 —— 上表兩組(`0x5C/0x5E` 與 `0x62/0x64`)不重疊。
|
||||
|
||||
**同一批 LTC2977 也掛在原生 i2c bus 上**(2026-08-27 上機驗證):Blanton 的 SONiC 把 CB FPGA F3
|
||||
的這四條 I2C 通道同時註冊成 kernel i2c adapter,因此除了 `cb_pmbus_*` → pcimem 這條路,
|
||||
還可以用 `i2cset -f -y <bus>` 直接打到同一顆晶片:
|
||||
|
||||
| FPGA F3 通道 | Linux bus | CB FPGA 路徑 | 原生 i2c 路徑 |
|
||||
|---|---|---|---|
|
||||
| Ch6 | 13 | `cb_pmbus_write 6 <addr> …` | `i2cset -f -y 13 <addr> …` |
|
||||
| Ch7 | 14 | `cb_pmbus_write 7 <addr> …` | `i2cset -f -y 14 <addr> …` |
|
||||
| Ch8 | 15 | `cb_pmbus_write 8 <addr> …` | `i2cset -f -y 15 <addr> …` |
|
||||
| Ch9 | 16 | `cb_pmbus_write 9 <addr> …` | `i2cset -f -y 16 <addr> …` |
|
||||
|
||||
`margin.sh` 的 `margin_save blanton` 走原生路徑(`MARGIN_BLANTON_STORE` 表),
|
||||
其餘功能仍走 `TRANSPORT="swb"` 的 FPGA 路徑。兩條路到的是同一顆 LTC2977,
|
||||
**不要同時用**(同一條匯流排上兩個 master 語意的存取)。
|
||||
|
||||
**全通道 net / 電壓對照:`docs/LTC2980_channel_map.csv`**(9 個 `.conf` × 16ch = 144 列,
|
||||
欄位 `Board,CONN,Ch,NetName,Vnom`)。查「某個 net 在哪片哪個 channel」比翻 9 個 `.conf` 快。
|
||||
CSV 是產出物,不是正本 —— 改完 `.conf` 用 `./tools/gen_channel_map.sh` 重產,別手改 CSV。
|
||||
兩件從表上看得出來、改 `.conf` 時要記得的事:
|
||||
|
||||
- **SWB0 與 SWB1 的 net / 電壓完全相同**,差別只在 `CHIPS[]` 的 bus(`0:` vs `1:`)與 `CB_I2C_CH`。
|
||||
也就是說有兩份會各自漂移的重複資料 —— 改了 SWB0 沒改 SWB1,不會有任何東西擋你。
|
||||
- **8 個 NC 通道**(SWB0/1 CONN14 的 CH10/CH11/CH13、CONN15 的 CH10)在 CSV 裡以
|
||||
`NC` / `-` 原樣保留,不是漏掉;濾掉它們會讓 page 編號對不上。
|
||||
|
||||
### 3. `profiles/*.conf` — 16-ch 批次 margin 組合
|
||||
|
||||
```bash
|
||||
@@ -290,17 +363,29 @@ PROFILE_CHANNELS=( "0:high:8" "1:low:8" ... ) # "channel:operation:change_perc
|
||||
|
||||
| 模組 | 進入點 | 功能 |
|
||||
|------|--------|------|
|
||||
| **Script A(Pre-test)** | `1_Blanton_Script_A.ttl` V1.0.3 | root 登入 → `date -s` 對時 → `show boot` → **等 pmon 起來**(`wait_init.ttl`)→ BMC 版本 → source 六個 bash 工具 → 清/讀 7 組 PCIe AER → `lspci` → margin 全掃 → PMON 九項 → dmesg → 100G port 狀態 → **一輪流量基線** → `show uptime` |
|
||||
| **Script B(Stress)** | `2_Blanton_Script_B.ttl` | `mlucas-avx2 -cpu 0:15` + 5 份 `stress_mem.py` + `stress_ssd.py` + `stress_usb.py`(**共 8 個 job**)→ 啟動兩支 BMC monitor → `jobs` → 100G port 狀態 → traffic `ps/init/clear/show/start`(**兩個 unit**)→ `while 1` 每輪完整 PMON + margin |
|
||||
| **Script C(Post-test)** | `3_Blanton_Script_C.ttl` | `kill $(jobs -p)` → PMON + dmesg → 7 組 AER → 停兩支 BMC monitor 並 `cat` 其 log → `cat` mlucas / stress_ssd log → traffic `stop` + `report`(兩個 unit)→ `show reboot-cause` / `show uptime` → 完成 messagebox |
|
||||
| **SWB loopback 流量** | `blanton_traffic_linespeed <sub> [-u 0\|1\|all]` | `init`(VLAN 30..137,成對 `cdN`/`cdN+32`)→ `clear` → `start`(`tx 100 length=512`)→ `stop` → `report`(per-pair TX/RX 交叉比對 PASS/FAIL);另有 `ps`(link/speed)與 `run`(一條龍) |
|
||||
| **Script A(Pre-test)** | `1_Blanton_Script_A.ttl` V1.1.6 | root 登入 → `date -s` 對時 → 清 job log → **收掉前一輪殘留**(`hw-test-session finish` → `bgctl reset --yes` → `bgctl stop --all` → `bgctl list` 確認清空)→ `hw-test-session start` → **設定風扇轉速** → **等資料面就緒**(`wait_init.ttl`)→ DUT 清單(boot/version/fwutil/syseeprom/ssdhealth/TPM/NVMe)→ BMC enroll + version/status → source bash 工具 → 清/讀 7 組 PCIe AER + `ras-mc-ctl --summary` → `lspci` → margin → PMON → dmesg → **10G/1G 管理網路 ping** → **NFC 基線**(start → 30s → stop → report)→ 100G uplink 設定與狀態 → **一輪流量基線** → `show uptime` |
|
||||
| **Script B(Stress)** | `2_Blanton_Script_B.ttl` | `mlucas-avx2 -cpu 0:15` + `bgctl run` 的 `memtester` / SSD / USB 壓力(v1.1.5 起 SSD/USB `--runtime 86400`、BMC memtester 不帶次數 = 跑到被停) + BMC DDR(`bmc-manager run memtester`)→ BMC USB net test(探測 cdc_ncm 介面,`systemd-run` 掛 4 小時 ping)→ 啟動 mgmt ping 監控 → **啟動 NFC 輪詢** → `jobs` / `bgctl list` → traffic(依 `SWB_UNIT`)→ `while 1` 每輪 PMON + `bgctl list`/`jobs` + `pause 60`(**V1.1.4 起 margin 不在迴圈內**)|
|
||||
| **Script C(Post-test)** | `3_Blanton_Script_C.ttl` | `kill $(jobs -p)` + `bgctl stop --all` / `reset` + 停 BMC USB unit、mgmt ping 與 **NFC 輪詢** → PMON + dmesg → 7 組 AER + `ras-mc-ctl` → BMC USB `journalctl` **寫進 `log/bmc_usb_net.log`**(不再印在 console) → `ip -s link show eth0/eth1` → `cat` mlucas log → **NFC `report`** → traffic `stop` + `report` → **BER 掃描**(依 `SWB_UNIT`)→ NVMe 健康 → `show reboot-cause` → **margin 掃描**(`EN_Margin`,V1.1.4 由 Script B 移來)→ `uptime` → **job log 複製到 USB(帶時戳)** → `exit` + wait『Script done』→ `hw-test-session finish` |
|
||||
| **Script 4(Thermal / Safety)** | `4_Blanton_Script_thermal_safety.ttl` | **獨立腳本,不接 A→B→C。** Script A 式的環境建立(登入 / session / 風扇 / `wait_init` / DUT 清單 / BMC / PCIe 清除 / `pcie_bus` / PMON / dmesg)→ **滿載**(`mlucas-avx2 -cpu 0:15` 背景 + `blanton_tr518.sh start`)→ `while 1`:PMON + `TH6_SWB0/1_power_readback.sh` + `bgctl list` / `jobs`,`pause 60`。**沒有收尾段** —— 中斷後 DUT 仍在 `port cd lb=mac` / `l2 learn off` / `test mode nr=yes`,要手動 `blanton_tr518.sh stop` |
|
||||
| **SWB loopback 流量** | `blanton_traffic_linespeed <sub> [-u 0\|1\|all]` | `init`(VLAN 30..137,成對 `cdN`/`cdN+32`)→ `clear` → `start`(`tx 200 length=324 PatternRandom=yes`,v0.7.0 起)→ `stop` → `report`(per-pair TX/RX 交叉比對 PASS/FAIL);另有 `ps`(link/speed)與 `run`(一條龍)。**V0.6.0 起含 100G uplink `ce0`**(VLAN 138):它沒有 loopback 對象,靠 **ingress mirror 打回自己**維持循環,`report` 最後一列就是它,底下再接一份跨 unit summary |
|
||||
| **FPGA 暫存器存取** | `cb_fpga <fn> <addr> [data]`、`fpga_rescan` | pcimem 打 `resource0` + BAR 相對 offset,32-bit word;BDF 於 source 時自動偵測;`pmc/icb/swb0/swb1_fpga` 走 VSPI 窗口 |
|
||||
| **CB I2C / PMBus** | `cb_i2c_init/scan/read/write`、`cb_pmbus_read/write/linear16` | FPGA F3 OpenCores master,**讀用 Repeated START**(SMBus/PMBus 裝置必需) |
|
||||
| **ICB / PDB 存取** | `vi2c_init/scan/read/write`、`vi2c_scan_all` | CB F3 VI2C proxy,~3.3 ms/reg,取代 VSPI 的 ~18 ms/reg(後者會踩 SMBus 25–35 ms timeout) |
|
||||
| **溫度** | `temp_cb` / `temp_icb` / `temp_all` | TMP75(12-bit 左靠齊 ×0.0625)、TMP432(含 RANGE bit 的 −64 偏移、remote1/2) |
|
||||
| **電源資料** | `pwr_data` / `pwr_data_pdb` / `pwr_pdb_id` | SWB VRM 全軌 Vin/Vout/Iout/Temp 對齊表;MP29816 解析度**執行期從 `MFR_VOUT_SCALE_LOOP` 讀**,不寫死 |
|
||||
| **電壓 Margin** | `margin_init/status/set/apply_profile/save` + `*_all.sh` | 9 顆 LTC2980(CB CONN13、SWB0/1 CONN13~16)批次 high/low margin 與狀態掃描。v2.6.0 起 SWB 路徑真正接上共用 cb_i2c 後端,並有 `margin_swb_info/probe/scan/reset/sem` 除錯包裝 |
|
||||
| **BMC 監控 / 壓力** | `bmc_monitor.sh` / `bmc_monitor_ddr.sh` `{start\|stop\|status\|fg\|tail\|clear}` | 由 host 端 `bmc-manager run` 週期性打 BMC,背景 detached、log 輪替。前者跑 `free -m`(逾時 30s),後者跑 `memtester`(逾時 3600s),各自獨立 log 與 pid |
|
||||
| **電壓 Margin** | `margin_init/status/set/apply_profile/save` + `*_all.sh` | 9 顆 LTC2980(CB CONN13、SWB0/1 CONN13~16)批次 high/low margin 與狀態掃描。`VNOM` 為 Blanton 實測中位數(2026-08-30);SWB 的 profile 是 per-CONN,套錯 CONN 會 margin 到錯的軌且不報錯。v2.6.0 起 SWB 路徑真正接上共用 cb_i2c 後端,並有 `margin_swb_info/probe/scan/reset/sem` 除錯包裝 |
|
||||
| **Multiphase VRM margin** | `blanton_multiphase_margin.sh {high3\|low3\|comboA\|comboB\|save} [-u 0\|1\|all]` | 兩片 SWB 的多相控制器(**不是** `margin.sh` 管的 LTC2980),走原生 i2c bus:SWB0 = `/dev/i2c-13`+`-15`、SWB1 = `-14`+`-16`。每片 19 條軌、共 38 條,逐條印 `SWB0_0V9_ANLG0 - 0.930V Configure Done`。`save` 沒有 per-rail 對應,只印 `Multiphase Save All`。⚠️ `save` 是 `STORE_USER_ALL`(0x15,TH6 core 用 0x17)**永久寫 NVM**;⚠️ 與 `margin.sh` 從兩側摸同一批軌,**不可同時用** |
|
||||
| **Margin 寫 NVM** | `margin_save` / `margin_save all` / `margin_save blanton` | ⚠️ 永久寫入。`0x15` 送 PMBus **send-byte**(不帶 data byte)。`all` = 依 `settings/` 走 9 顆、跑完還原原本載入的板子;`blanton` = 本平台捷徑,18 顆全走原生 i2c bus(`MARGIN_BLANTON_STORE` 表),不需 `margin_init`。每筆之間 `MARGIN_STORE_SETTLE`(0.5s),工具**不 poll busy bit** |
|
||||
| **管理網路 ping** | `mgmt_ping_monitor.sh {start\|stop\|status\|fg\|tail\|clear\|summary}` | 一輪 = 10G leg + 1G leg,各自 `ip address/route replace` 後 `ping -I <if>` 打自己的對端;兩張卡都保持 up。每 leg 記 `ip -s link show` 與該卡的 TX/RX packet delta,另出一行可 grep 的 `RESULT` |
|
||||
| **BMC 監控** | `bmc_monitor.sh {start\|stop\|status\|fg\|tail\|clear}` | 由 host 端 `bmc-manager run` 週期取樣 `free -m`,另加一組 **I2C 寫入/讀回圖樣測試**(bus 1、addr 0x41、offset 0x00C0,寫 `55AA55AA` 讀回、再寫 `AA55AA55` 讀回)。B 啟動、C 停止並 `cat log/bmc_poll.log` |
|
||||
| **BMC DDR 壓力** | `bmc_monitor_ddr.sh` | ⚠️ **已停用** —— B/C 內呼叫處已註解,改由 `bgctl run bmc-manager run memtester` 取代。檔案保留未刪 |
|
||||
| **100G PRBS** | `port_prbs_monitor.sh {start [both\|a\|b]\|stop\|status\|report\|clear}` | 兩個 uplink 各一個 worker,可同時或單獨跑。setup(`lpmode off` → `prbs set` → `prbsstat STArt`)→ 週期 `prbs get`(判定)+ `prbsstat Ber`(只記錄)→ teardown(`STOp` + `prbs clear`)。輸出含 `PRBS OK!` 才算 PASS。**⚠️ A/B/C 的呼叫目前註解掉** |
|
||||
| **SerDes BER 掃描** | `blanton_ber.sh {init\|clear\|start\|stop\|report} [-u 0\|1\|all]` | 全機每個對接 port 的 PRBS BER:`prbs set p=3` + `prbs get`(確認每條 lane 都鎖上)→ `prbsstat STArt Interval=30` →(等一個 interval)→ `prbsstat Ber` → `STOp` → `prbs clear`。`report` 一列一條 lane,**BER < 1e-6 才 PASS**,最後跨 unit 的 summary 帶最差 lane。⚠️ PRBS 期間 link 顯示 DOWN、不過流量 |
|
||||
| **TR518 負載** | `blanton_tr518.sh {start\|stop} [-u 0\|1\|all]` | `port cd lb=mac` → `l2 learn off` → `test mode nr=yes` → `tr 518 ... testphase=1`,然後 settle `TR_SETTLE_SEC`(120s)再讓人量功耗。`stop` 只送 `port cd lb=none`(照 `TR518.txt`),L2 學習與 test mode **不會還原**,`TR_RESTORE_*=1` 才會 |
|
||||
| **PDB / CPB brick** | `pwr_brick.sh show [-r]` | 5 顆 brick 的 Vin / Iin / Vout / Iout / Temp(SWB0 `0x62`/`0x63`、SWB1 `0x60`/`0x61`、CPB `0x26`)。四顆 ADPM12200 **每個量各自一個 PMBus PAGE**(Vin 9、Iin 10、Vout 2、Iout 14、Temp 18),讀之前一定要先寫 PAGE —— `blanton_pwr_data.sh` 完全沒寫,所以整張 PDB 表都是 NA。換算用手冊 DIRECT 公式 `X=(1/m)(Y×10⁻ᴿ−b)`。每個值重讀到通過三道檢查為止(非 `0xFFFF`、非 `0x0000`、落在合理範圍)—— 這條匯流排**只壞高位元組**,`11.98 V` 會變成 `32.00 V`,全一過濾擋不住 |
|
||||
| **SWB 軌功耗** | `TH6_SWB{0,1}_power_readback.sh` | 讀 `show platform voltage/current` **各一次**,19 條軌 V×I 與總功耗。舊版每軌各讀一次(38 次呼叫、每軌不同時刻),總和是不同瞬間的加總 |
|
||||
| **NFC 讀取輪詢** | `nfc_polling.sh {start\|stop\|status\|tail\|report\|clear\|fg}` | 背景重複跑 `blantons_nfc_validate.py`,每輪追加一行機器可讀的 `RESULT=`(PASS/FAIL 取自工具自己的摘要行,兩者皆無則 **ERROR**,與 FAIL 分開計數)。`start` 會先清空 log;`report` **只讀 log,polling 中隨時可跑**,並標示 `RUNNING` 免得快照被當最終結果。`tail` **不 follow** |
|
||||
| **USB 目標偵測** | `usb_target.sh [-o dev\|mnt\|both\|id] [-n] [-r sec]` | 找出插入的 USB 儲存裝置,排除 `/` 與 `/host` 的底層碟(本平台可能從 USB DOM 開機),多顆時拒絕猜;掛載時會驗證真的可寫 |
|
||||
| **打包交付** | `publish/publish.sh [-v Ver] [-f] [-z] [-n]` | 版號讀 Script A 檔頭,複製成 `publish/Script_ABC_Blanton_<Ver>/`,排除 `*.log`,可另出 zip |
|
||||
|
||||
---
|
||||
@@ -316,15 +401,21 @@ PROFILE_CHANNELS=( "0:high:8" "1:low:8" ... ) # "channel:operation:change_perc
|
||||
Script A ── logopen Logs/Blanton_Margin_<ts>.log ──┐ (之後所有畫面都進這個檔)
|
||||
│ │
|
||||
├─ 登入 admin → sudo -i → root@sonic:~# │
|
||||
├─ date -s "<host 時間>" ← 讓 DUT 時戳可對照 │
|
||||
├─ date -s "<host 時間>" ← 讓 DUT 時戳可對照
|
||||
├─ rm /host/hw-eval/jobs/* ← 清掉上一輪的 job log
|
||||
├─ hw-test-session finish / bgctl reset / stop --all / list (收前一輪)
|
||||
├─ hw-test-session start / log / status
|
||||
├─ 風扇:max31790 unbind→sleep→bind(18-0020 與 25-0020 各一次)
|
||||
│ → fan-speed-control.sh <FAN_SPEED> → 回答 y 確認 │
|
||||
├─ source 6 個 bash 工具(函數進 shell) │
|
||||
│ └ 此時 blanton_fpga_pcimem.sh 印出 [INFO] CB FPGA BDF = ...(自動偵測結果)
|
||||
├─ AER 基線:7 組 EP+RP 的 correctable/nonfatal/fatal
|
||||
├─ lspci -tvvv / -vv ← 拓樸 + link speed/width
|
||||
├─ margin_status_all ← 9 顆 LTC2980 × 16ch 的 Vout 與偏差%
|
||||
├─ show platform × 9 ← fan/temp/psu/voltage/current/ssdhealth/leak status/leak channels
|
||||
├─ dmesg | grep error/fail/warning
|
||||
├─ show interfaces status Ethernet513,Ethernet514 ← 100G uplink 狀態
|
||||
├─ dmesg -T(合併 error 正則 + i2c 過濾)→ dmesg -C 清空 ← C 只會看到 soak 期間新產生的
|
||||
├─ mgmt ping:start → pause 45 → stop → cat log ← 10G/1G 各一輪
|
||||
├─ 100G uplink:lpmode off → 兩埠 startup → config save → show interfaces status
|
||||
├─ 一輪流量基線:ps → init → clear → show → start → stop → report
|
||||
└─ show uptime
|
||||
(最前面還有 wait_init.ttl:輪詢 show platform temperature 直到不再回報
|
||||
@@ -336,8 +427,10 @@ Script A ── logopen Logs/Blanton_Margin_<ts>.log ──┐ (之後所有畫
|
||||
Script B ── 同一個 log 檔續寫(logwrite 分隔線)
|
||||
├─ 背景程序:mlucas-avx2(CPU) ×1, stress_mem ×5, stress_ssd, stress_usb → 共 8 個 job
|
||||
│ (stress_hhmd / stress_pcie 已於 2026-08-17 移除,見 Status 表 ScriptB #5/#7 "KC Remove")
|
||||
├─ BMC: bmc_monitor.sh start + bmc_monitor_ddr.sh start
|
||||
├─ jobs ← 確認全部起來了
|
||||
├─ bgctl run: memtester 1G / qfx5252-stress-ssd / qfx5252-stress-usb
|
||||
├─ BMC: bmc-manager run memtester(DDR)、cdc_ncm 介面探測 + systemd-run 4hr ping(USB)
|
||||
├─ mgmt_ping_monitor.sh start
|
||||
├─ jobs / bgctl list ← 確認全部起來了
|
||||
├─ traffic: ps → init → clear → (pause 15) → show → start (unit 0 與 1,VLAN 30..137 loopback)
|
||||
└─ while 1: setup_pmon(9 項)→ margin_status_all (soak 期間持續取樣)
|
||||
▼
|
||||
@@ -348,10 +441,15 @@ Script C
|
||||
├─ kill $(jobs -p) ← 收掉所有背景壓力
|
||||
├─ show platform × 9 + dmesg ← 收工快照
|
||||
├─ AER 再抓一次 ← 與 Script A 基線相減 = 本輪新增錯誤
|
||||
├─ BMC: 兩支 monitor stop → cat log/bmc_poll.log + log/bmc_ddr.log
|
||||
├─ cat mlucas_amm_log / log.stress_ssd ← 壓力程式自身的 pass/fail
|
||||
├─ bgctl stop --all / reset、systemctl stop BMC USB unit、mgmt ping stop
|
||||
├─ journalctl BMC USB unit、ip -s link show eth0/eth1、ras-mc-ctl --summary
|
||||
├─ cat mlucas_amm_log ← CPU 壓力程式自身的 pass/fail
|
||||
├─ nvme smart-log / smartctl -x /dev/nvme0
|
||||
├─ traffic: stop → report ← per-pair TX/RX 交叉比對,PASS/FAIL/NA(exit 2 = 有 FAIL/NA)
|
||||
└─ show reboot-cause / show uptime ← soak 期間有沒有意外重開,一眼看得到
|
||||
├─ show reboot-cause / show uptime ← soak 期間有沒有意外重開,一眼看得到
|
||||
├─ usb_target.sh -o dev → sync → mount <dev> /mnt/usb
|
||||
├─ cp bmc_poll.log / mgmt_ping.log → jobs/,再 cp -r jobs/ /mnt/usb/jobs-<YYYYmmdd>_<HHMM>
|
||||
└─ hw-test-session finish
|
||||
▼
|
||||
[messagebox "GOOD JOB! Test Case DONE"] → 人工檢查 log
|
||||
```
|
||||
@@ -389,6 +487,8 @@ pwr_data
|
||||
只吃 Sr;只有純暫存器裝置兩種都行。
|
||||
7. **`margin_save`(`STORE_USER_ALL`)會永久寫進 NVM**,斷電保留。測試流程中**絕不執行**,
|
||||
以免覆蓋客戶出廠 config。`margin.sh` 的 auto-enable 只改 RAM(`ON_OFF_CONFIG`),斷電復原。
|
||||
`margin_save all` / `margin_save blanton`(v2.7.0)一次對 9 顆 LTC2980(18 個 LTC2977)
|
||||
下同一道命令,風險同性質但範圍是全機;命令本身是 PMBus send-byte(`0x15`,不帶 data byte)。
|
||||
8. **操作硬體電壓有損壞 DUT 的風險**:套 profile 前先確認該軌 OV/UV limit 與 servo DAC 注入電阻
|
||||
有 populate(本板部分 margin 電阻標 PROTO,沒 populate 的軌電壓不會動)。
|
||||
9. **`ARB_LOST` 不等於裝置存在**:`vi2c_scan` 只看 `RX_ACK`,仲裁失敗會被誤報成「有裝置」。
|
||||
@@ -409,12 +509,21 @@ pwr_data
|
||||
⚠️ 但 `.gitattributes` **不會回頭重寫既有工作區檔案** —— 早於它 clone 出來的目錄,
|
||||
需 `git rm --cached -r . && git reset --hard` 或刪掉目錄重新 checkout 才會生效,
|
||||
而且 `git status` 乾淨**不代表**磁碟上是 LF(`--renormalize` 只在進 index 的路上轉換)。
|
||||
13. **`bmc_monitor*.sh` 需要執行權**:它們是本專案第一組「被執行」而非被 `source` 的腳本,
|
||||
13. **`bmc_monitor*.sh` / `mgmt_ping_monitor.sh` 需要執行權**:它們是本專案「被執行」而非被 `source` 的腳本,
|
||||
而 `do_start` 內部是 `setsid "$SCRIPT_PATH" __daemon`,**即使用 `bash x.sh start` 呼叫
|
||||
也仍需 exec bit**。git 記錄為 `100644`,且 Windows → 隨身碟 → DUT 的路徑無法攜帶權限位元,
|
||||
所以佈署後要先 `chmod +x ~/Blanton_Script/bmc_monitor*.sh`,否則 Script B 的 start 會
|
||||
`Permission denied`、Script C 的 `cat` 撲空(BMC 段全空但不會報錯)。
|
||||
14. **客戶 NDA**:`docs/` 內含客戶 FPGA 規格與 schematic 衍生資訊,**本 repo 只推 NAS + Gitea,
|
||||
14. **TTL 的 `timeout` 是全域的,設了就要還原**:`timeout = N` 之後**每一個** `wait` 都被限制在 N 秒,
|
||||
逾時的 `wait` 會直接返回而沒吃到 prompt,於是下一個指令在前一個還沒跑完就送出,之後整輪錯開一拍。
|
||||
`wait_init.ttl` 設 60 後還原 0;Script B 的 cdc_ncm 探測設 15,在 `:skip_ping`(兩條路徑的匯流點)還原。
|
||||
加新的 `timeout` 時務必配一個 `timeout = 0`。
|
||||
15. **兩張管理網卡同網段時會 ARP flux**:`mgmt_ping_monitor.sh` 讓 eth0/eth1 同時 up,若兩者在同一個
|
||||
/24(本專案預設 `192.168.1.99` / `.101`),對端 ARP 可能由任一張卡回應,回包落在沒送封包的那張,
|
||||
量到的數字不能歸屬。`ARP_STRICT=1` 會設 `arp_ignore=1` / `arp_announce=2` 擋掉;
|
||||
另外每個 leg 的 `RESULT` 行帶 `nic_tx` / `nic_rx`(該卡自己的 packet delta),
|
||||
**ping 成功但 `nic_tx` 接近 0 就代表封包從另一張卡出去了**。兩張卡在不同網段時可設 0。
|
||||
16. **客戶 NDA**:`docs/` 內含客戶 FPGA 規格與 schematic 衍生資訊,**本 repo 只推 NAS + Gitea,
|
||||
絕不推 GitHub**。
|
||||
|
||||
---
|
||||
@@ -428,7 +537,7 @@ pwr_data
|
||||
| **客戶機密文件** | `docs/` 內 FPGA 規格(docx/xlsx/md)屬客戶 NDA 範圍;schematic 原始檔(`*.DSN`)一律 gitignore,不進 repo |
|
||||
| **Remote 限制** | 只推私有 remote:`nas`(`git.et-wen.com:51222`)+ `gitea`(`etgit.et-wen.com`)。**不設 GitHub `origin`** |
|
||||
| **測試 log** | `logs/*.log` 含 DUT 序號、MAC、韌體版本等可識別資訊 → gitignore,只保留目錄結構(`.gitkeep`) |
|
||||
| **破壞性硬體指令** | `margin_save` / `STORE_USER_ALL` 為永久 NVM 寫入,工具預設不呼叫;批次腳本 `margin_save_all.sh` 在 README 與腳本頂端都有警語 |
|
||||
| **破壞性硬體指令** | `margin_save` / `margin_save all` / `margin_save blanton` / `STORE_USER_ALL` 為永久 NVM 寫入,工具預設不呼叫;`margin_save all` 與批次腳本 `margin_save_all.sh` 在 README 與程式頂端都有警語 |
|
||||
| **root 權限** | 全流程在 `root@sonic:~#` 下執行(pcimem / i2c 需要);腳本不留任何 `chmod 777` 或放寬權限的動作 |
|
||||
| **For_AI/** | AI 協作素材(截圖、草稿筆記)整個資料夾 gitignore,避免不小心把客戶圖面帶進 repo |
|
||||
|
||||
@@ -554,16 +663,17 @@ margin status、全部 VRM 軌的 Vin/Vout/Iout/Temp、CB + ICB 溫感讀值,
|
||||
**目標:** 壓力程序起得來、起不來看得出來,soak 迴圈有時戳、可控週期。
|
||||
|
||||
**包含:**
|
||||
- [ ] 部署 `~/hammer/tools/` 前置檢查:新增 `utils/check_hammer_tools.ttl`
|
||||
(`ls -l ~/hammer/tools/` + `ls ~/hammer/tools/amd/mlucas-avx2`),缺檔就別往下跑
|
||||
- [ ] 前置檢查:`~/hammer/tools/amd/mlucas-avx2` 仍是唯一還依賴 hammer 的項目,缺檔就別往下跑
|
||||
- [ ] 壓力程序 log 加時戳,避免多輪覆蓋:
|
||||
`mlucas_amm_log` → `~/logs/mlucas_amm_log_$(date +%Y%m%d-%H%M%S).log`(Status 表 ScriptB #2 的既定寫法)
|
||||
- [ ] `jobs` 之後加驗證:期望 **8** 個背景 job(1 mlucas + 5 mem + ssd + usb),
|
||||
數量不符時 `messagebox` 提示
|
||||
(`stress_hhmd` / `stress_pcie` 已於 2026-08-17 由 KC 移除,原本的 10 改為 8)
|
||||
- [x] 壓力層改用平台的 `bgctl`(`memtester` / `qfx5252-stress-ssd` / `qfx5252-stress-usb`),
|
||||
取代 `~/hammer/tools/stress_*.py`;Script B 以 `jobs` + `bgctl list` 兩者並列確認
|
||||
- [ ] `bgctl list` 之後加數量驗證,不符時 `messagebox` 提示(目前只印出來給人看)
|
||||
**← V1.0.10 起 `bgctl list` + `jobs` 改為每輪都印,中途死掉的 job 看得到,但仍要靠人眼比對**
|
||||
- [ ] soak 迴圈改為「每輪先 `date`、跑完 `pause <間隔>`」,
|
||||
把 `EN_LoopInterval`(預設 600 秒 = 10 min)放進 `config.ttl`,兌現 Status 表的「Get data every 10mins」
|
||||
**← 目前 `while 1` 仍無 `pause`,實際間隔取決於指令執行時間,不是 10 分鐘**
|
||||
**← V1.0.10 已補上 `pause 60`(迴圈不再全速空轉),但 60 秒是寫死的、也還沒有每輪 `date`;
|
||||
距 Status 表的 10 分鐘仍有差距,故本項未結**
|
||||
- [x] soak 每輪補 `show platform psustatus` / `voltage` / `current`
|
||||
—— 迴圈已改為 `include "utils/setup_pmon.ttl"`,九項全收
|
||||
- [ ] 補 `; ========== CLEAR EVENT ==========`(Status 表 ScriptB #1,Owner: Alan)
|
||||
@@ -621,9 +731,13 @@ margin status、全部 VRM 軌的 Vin/Vout/Iout/Temp、CB + ICB 溫感讀值,
|
||||
UE > 0 或 fatal/nonfatal > 0 直接標 FAIL
|
||||
- [ ] Margin 表解析:把 9 顆 × 16ch 的 Vout / 偏差% 收成 CSV,標出超出 ±(profile 設定值 + 容差) 的軌
|
||||
- [ ] 溫度 / 風扇 / 電源趨勢:soak 期間逐輪取樣 → CSV(可直接畫圖)
|
||||
- [ ] Stress 判定:`mlucas_amm_log` 與 `log.stress_ssd` 的錯誤關鍵字掃描
|
||||
- [ ] Stress 判定:`mlucas_amm_log` 與 `bgctl` 各工作的 log
|
||||
(`/host/hw-eval/.../qfx5252-stress-{ssd,usb}.log`)的錯誤關鍵字掃描
|
||||
- [ ] Traffic 判定:**直接複用 `tools/bcm_mibpair_report_V1.1.0.py`**(它已能吃 console log 的
|
||||
`show c` 段落並輸出 PASS/FAIL),不要重寫一套解析
|
||||
- [ ] 管理網路判定:抓 `mgmt_ping_monitor.sh` 的 `RESULT` 行(已是單行可 grep 格式),
|
||||
並檢查 `nic_tx`/`nic_rx` 不為 0 —— 否則 PASS 也不能歸屬到那張卡
|
||||
- [ ] NVMe / EDAC:`nvme smart-log`、`smartctl -x`、`ras-mc-ctl --summary` 的前後差值
|
||||
- [ ] 產出 `Logs/<run>_summary.md`:一頁 PASS/FAIL + 每個子系統一行結論
|
||||
|
||||
**驗收條件:** 拿一份既有 log(如 `Blanton_Margin_20260814-164122.log`)跑解析器,
|
||||
@@ -676,8 +790,74 @@ margin status、全部 VRM 軌的 Vin/Vout/Iout/Temp、CB + ICB 溫感讀值,
|
||||
文件已加過期警告但內文未動。第 1~4 章不受影響。
|
||||
- **`wait_init.ttl` 沒有逾時出口**:若 pmon 一直起不來,`result` 既非 1 也非 2,迴圈會無限重試,
|
||||
Script A 既不往下走也不報錯。可加最大重試次數 + `messagebox` 提示。
|
||||
- **`bmc_monitor*.sh` 的執行權**:目前需人工 `chmod +x`。可在 Script B 起它們之前補一行
|
||||
`chmod +x`(比照既有的 `chmod +x ~/hammer/tools/amd/mlucas-avx2`),或在 publish 時處理。
|
||||
- **`bmc_monitor_ddr.sh` 的壓力強度**:`memtester 500M 1` 配 `INTERVAL_SEC=5` 等於整個 soak
|
||||
近乎不間斷壓 BMC 記憶體,而 BMC 同時還要服務 host 的 `show platform` 查詢。
|
||||
若 PMON 取數變慢,先調大 `INTERVAL_SEC` 或縮小 memtester 的量。
|
||||
- **腳本的執行權**:`mgmt_ping_monitor.sh` 與 `bmc_monitor.sh`(以及已停用的 `bmc_monitor_ddr.sh`)需人工 `chmod +x`。
|
||||
可在 Script B 起它之前補一行(比照既有的 `chmod +x ~/hammer/tools/amd/mlucas-avx2`),或在 publish 時處理。
|
||||
- **`bmc_monitor_ddr.sh` 已停用**:B/C 內的呼叫已註解,DDR 壓力改由 `bgctl run bmc-manager run memtester`
|
||||
取代。檔案還留在 repo,待確認不再需要後刪除,或在檔頭標註停用。
|
||||
(`bmc_monitor.sh` 已於 2026-08-25 重新啟用,並加上 I2C 寫入/讀回圖樣測試。)
|
||||
- **`rm /host/hw-eval/jobs/*` 清不掉子目錄**:Script A 用的是不帶 `-r` 的 `rm`,但 Script C
|
||||
是 `cp -r` 那個目錄,代表裡面可能有子目錄。清不乾淨的話,上一輪的 job log 會被當成這輪的一起
|
||||
複製到 USB。要確認 `bgctl` 的產出結構,必要時改成 `rm -rf .../jobs/*`。
|
||||
- **100G PRBS 尚未接進 A/B/C**:`port_prbs_monitor.sh` 已隨包交付、可手動執行,但三支腳本裡的呼叫
|
||||
都還註解著(bring-up 中)。要啟用時記得 PRBS 期間 link 會顯示 down,`stop` 之後才會回來。
|
||||
- **Script C 的 USB 掛載走 `mount` 而非 `usb_target.sh -o mnt`**:目前是 `-o dev` 取節點再自己
|
||||
`mount <dev> /mnt/usb`,繞過了工具內建的 `mkdir -p`、exfat/ntfs `modprobe` 與可寫性驗證。
|
||||
掛載點不存在、檔案系統模組沒載、或媒體唯讀時只會失敗一行,job log 就沒帶出來。
|
||||
- **風扇確認提示是無限等待**:`wait "Set all configured fan channels to"` 之後才 `sendln "y"`;
|
||||
若該版 `fan-speed-control.sh` 不再詢問(或字串改了),這個 `wait` 會永遠等下去,Script A 停在那裡
|
||||
且不報錯。加個 `timeout` + 分支會比較保險(記得還原 `timeout = 0`)。
|
||||
- ✅ **TR518 已腳本化** —— `blanton_tr518.sh` V1.0.1(2026-08-28)。仍與 `blanton_traffic_linespeed`
|
||||
互斥(兩者都會動 `port cd` loopback 與 L2 學習),檔頭與 help 都標了。剩下三件事:
|
||||
`stop` 沒把 `l2 learn` / `test mode` 放回去(照 `TR518.txt` 的定義,旗標可開);
|
||||
**`sleep 120` 的方向還沒驗證** —— 若 `tr 518` 的流量是有時限的(參數含 `runtime=1`、
|
||||
`CheckDataTime=200`),等 120 秒可能量到已經降下來的值,要上機比對 0s / 30s / 120s 三次;
|
||||
TTL 尚未呼叫它。
|
||||
- **`--runtime 86400` 是 24 小時的上限,不是「永遠」**:超過一天的 soak,SSD 與 USB 壓力會在
|
||||
第 24 小時安靜結束,剩下的時間那兩項是閒置的。Script B 每輪都印 `bgctl list`,數量變少會看得到,
|
||||
但**沒有任何東西會主動報警**。真的要跑更久,得把數字改大或加一段重啟 job 的邏輯。
|
||||
- **BMC USB 的 service log 只剩隨身碟一份**:Script C 把 `journalctl` 導進
|
||||
`log/bmc_usb_net.log` 再 `cp` 到 job 目錄,**不再印在 master console log**。
|
||||
那個 `cp` 沒有檢查回傳值(`nfc_polling.log` 檔名打錯那次就是這樣安靜失敗的),
|
||||
失敗的話這份 log 就完全消失。要嘛在 `cp` 之後補一次 `ls` 驗證,要嘛保留一份
|
||||
`cat` 到 console。
|
||||
- **`READ_VIN` / `READ_IIN` 不在 ADPM12200 手冊的 Table 3 裡**:`pwr_brick.sh` 讓它們沿用
|
||||
Voltage / Current 那兩組係數。50 V 輸入算得出來、數量級也對,但**手冊沒有明說**。要定案
|
||||
得找 ADI 確認,或找一個能獨立比對輸入電壓的量測點(`READ_VOUT` 就是靠 `show platform
|
||||
voltage` 的 `PDB_IBC_*` 對上的)。
|
||||
- **VI2C 沒有硬體號誌**(`vi2c_muxsel` 的 help 自己寫了「VI2C has no SEM_REG」),而平台的
|
||||
sensor 驅動會週期性讀同一批 PDB 裝置。`pwr_brick.sh` 用「重讀到合理為止」繞過去,但根本
|
||||
問題沒解:`_vrd` 裡的 `_vwait` 逾時後仍然回傳半成品,呼叫端也沒檢查它的回傳值。修
|
||||
`blanton_icb_vi2c.sh` 會影響所有走 VI2C 的工具(ICB 溫感、風扇、EEPROM),值得先確認
|
||||
是不是跟 pmon 競爭再動。
|
||||
- **`blanton_multiphase_margin.sh` 與 `margin.sh` 沒有互斥機制**:兩支從不同側(原生 i2c vs
|
||||
LTC2980 PMBus)摸同一批軌,各自都假設自己是唯一的寫入者。目前只靠文件與 help 提醒,
|
||||
沒有任何執行期檢查。
|
||||
- **Script 4 沒有收尾段**:`while 1` 之後就是檔案結尾,中斷時 DUT 停在 `port cd lb=mac` /
|
||||
`l2 learn off` / `test mode nr=yes`,而且 `mlucas-avx2` 還在背景跑。要手動
|
||||
`blanton_tr518.sh stop` + `kill`,否則下一輪任何測試都在被污染的狀態上開始
|
||||
(Script A 的 `bgctl reset/stop --all` 收得掉 job,但收不掉 bcm 的 loopback 設定)。
|
||||
可考慮加一支對應的收尾腳本,或在檔尾用 `messagebox` 提示要下哪些指令。
|
||||
- **margin 在 soak 期間不再取樣**(V1.1.4):只剩 Script A 的起始值與 Script C 的結束值。
|
||||
漂移發生在中間就看不到了。若要恢復,比較好的做法是在 B 的迴圈內每 N 輪才掃一次,
|
||||
而不是每輪都掃。
|
||||
- **`blanton_ber.sh` 的 `sleep 30` 與 `BER_INTERVAL` 是兩處要同步改的數字**:Script C 寫死
|
||||
`sendln "sleep 30"`,腳本預設 `BER_INTERVAL=30`。改一邊沒改另一邊,report 會讀到還沒累積完
|
||||
一個 interval 的數字,而且不會有任何警告。
|
||||
- **`ce0` 的 ingress mirror 尚未上機驗證**:`mirror port ce0 Mode=Ingress DestPort=ce0` 這條路是
|
||||
推論出來的(鏡像複本不受 egress filter 的 source-port knockout 限制),語法取自 DUT 的
|
||||
`help mirror`,但**還沒證明硬體真的接受 destport == srcport**。驗證方式是隔 10 秒看兩次
|
||||
`show c | grep POK.ce0`,數字有沒有繼續長 —— 光看 report 的 PASS 分不出來,因為一次性 burst
|
||||
也是 TX==RX。不通的話備案是 `tr 518 PortList=268`。
|
||||
- **SWB 的 LTC2977 有兩條路可以到,目前工具兩條都在用**:`cb_pmbus_*`(CB FPGA F3 → pcimem)
|
||||
是 `margin_init` / `margin_status` / `margin_set` 走的路;原生 i2c bus(Ch+7 = bus 13/14/15/16)
|
||||
是 `margin_save blanton` 走的路。後者短很多 —— 不需要通道初始化、不需要 pcimem,
|
||||
單一 `i2cset` 就到。若原生 bus 在這平台夠穩,整個 `TRANSPORT="swb"` 層其實可以退成
|
||||
「bus 號不同的 i2c 路徑」,`_swb_*`、probe、semaphore、prescale 那整套都能拿掉。
|
||||
要動之前得先確認:讀取(`margin_status` 的 LINEAR16 word read)是否也同樣可靠,
|
||||
以及 kernel driver 有沒有搶著存取(`margin_save blanton` 帶 `-f` 就是為了繞過這件事)。
|
||||
- **`settings/` 裡 SWB0 與 SWB1 是兩份相同的資料**:8 個 `.conf` 中,SWB1 的四個除了 `CHIPS[]` 的
|
||||
bus 與 `CB_I2C_CH` 之外,net name 與 `VNOM` 與 SWB0 逐欄相同(見 `docs/LTC2980_channel_map.csv`)。
|
||||
改一邊忘了改另一邊不會有任何警告。可考慮改成「共用 net 定義 + 各自的 transport 覆寫」兩層檔案。
|
||||
- **Script C 沒有倒出 `mgmt_ping.log`**:C 會 `stop` 管理網路監控並印 `ip -s link show`,
|
||||
但沒有 `cat ~/Blanton_Script/log/mgmt_ping.log`,所以整個 soak 期間累積的 per-leg `RESULT`
|
||||
留在 DUT 上、沒進 master log。Script A 那輪基線有 `cat`。
|
||||
|
||||
@@ -9,9 +9,26 @@ DUT 端的取數能力由一組 **bash 工具庫** 提供(CB FPGA `pcimem` →
|
||||
|
||||
完整架構見 [ARCHITECTURE.md](ARCHITECTURE.md)。
|
||||
|
||||
**目前狀態(2026-08-21)**:Script A/B/C 為 **V1.0.3**,涵蓋 PCIe AER / DDR EDAC / PMON /
|
||||
電壓 margin(9 顆 LTC2980)/ SWB loopback 線速流量(兩個 switch unit)/ BMC 監控與 DDR 壓力。
|
||||
SWB 的 I2C 通道與位址已於 2026-08-19 上機驗證。交付用 `./publish/publish.sh` 打包。
|
||||
**目前狀態(2026-09-02)**:Script A 為 **V1.1.6**(A 集中記錄所有 TTL 的變更)。涵蓋
|
||||
PCIe AER / DDR EDAC / PMON+TPM / 電壓 margin(9 顆 LTC2980)/ SWB loopback 線速流量 /
|
||||
10G+1G 管理網路 ping / BMC DDR 與 USB / NVMe 健康,壓力層走平台的 `bgctl`。
|
||||
switch unit 數量由 `config.ttl` 的 `SWB_UNIT0` / `SWB_UNIT1` 宣告,風扇轉速由 `FAN_SPEED` 指定
|
||||
(預設 100 = 全速;soak 是熱測試,散熱不該是變因)。
|
||||
測試 job log 收在 DUT 的 `/host/hw-eval/jobs/`,Script C 結束時掛好 USB 再帶時戳複製到 `/mnt/usb/`。
|
||||
100G PRBS(`port_prbs_monitor.sh`)已隨包交付,但 **A/B/C 的呼叫仍註解掉**,還在 bring-up。
|
||||
Script B 的 soak 迴圈每輪印 `bgctl list` + `jobs`,並 `pause 60`(V1.0.10 之前完全沒有 pause)。
|
||||
V1.1.0 新增全機 SerDes BER 掃描(`blanton_ber.sh`,**Script C 已接**,依 `SWB_UNIT` 分支)、
|
||||
TR518 負載(`blanton_tr518.sh`,**TTL 尚未接**)、SWB 軌功耗(`TH6_SWB{0,1}_power_readback.sh`),
|
||||
線速流量也納入 100G `ce0`(VLAN 138,靠 ingress mirror 維持循環)。
|
||||
Script A 開頭會先收掉前一輪殘留(`hw-test-session finish` + `bgctl reset/stop --all`),
|
||||
再 `bgctl list` 確認沒有 job 留著佔資源。
|
||||
NFC tag 讀取由 `nfc_polling.sh` 背景輪詢(A 做基線、B 起、C 停並 report)。
|
||||
另有 **`4_Blanton_Script_thermal_safety.ttl`**(熱 / 安規,**獨立跑不接 A→B→C**,滿載後每分鐘
|
||||
取 PMON + 兩片 SWB 的軌功耗;**沒有收尾段**,中斷後要手動 `blanton_tr518.sh stop`)。
|
||||
流程圖:`docs/Blanton_Test_Flow.drawio`。
|
||||
最後一次發布是 **V1.1.5**;SWB 的 I2C 通道與位址已於 2026-08-19 上機驗證。
|
||||
margin 的 `VNOM` 已於 2026-08-30 改為 Blanton 實測中位數(144 條軌中 86 條上調 0.8~2.5%)。
|
||||
交付用 `./publish/publish.sh` 打包。
|
||||
|
||||
## 技術棧
|
||||
|
||||
@@ -24,6 +41,9 @@ SWB 的 I2C 通道與位址已於 2026-08-19 上機驗證。交付用 `./publish
|
||||
- **資料面流量**:`bcmcmd`(Broadcom drivshell)SWB loopback,VLAN 30..137 成對 `cdN`/`cdN+32`,
|
||||
`tx 100 length=512`;判定讀 ASIC `MIB_TPOK`/`MIB_RPOK` 做 per-pair 雙向交叉比對
|
||||
- **BMC**:host 端 `bmc-manager run "<cmd>"`,不需對 BMC 開 SSH(繞開其 busybox 工具鏈)
|
||||
- **背景工作**:平台的 `bgctl run/list/stop --all/reset`;長時間 ping 用 `systemd-run --unit=` 掛 transient unit
|
||||
- **管理網路**:iproute2(`ip link set` / `address replace` / `route replace ... metric`)+ `ping -I`
|
||||
- **風扇**:max31790 driver rebind + `fan-speed-control.sh <%>`(轉速讀 `config.ttl` 的 `FAN_SPEED`)
|
||||
- **判定資料源**:PCIe AER sysfs(`aer_dev_*`)、EDAC sysfs(`dimm_{ce,ue}_count`)、SONiC `show platform *`
|
||||
- **無編譯步驟**:TTL 與 bash 都直譯執行
|
||||
|
||||
@@ -54,6 +74,14 @@ temp_all # CB + ICB 溫感
|
||||
pwr_data # SWB VRM 全軌
|
||||
margin_init Blanton_CB_CONN13 && margin_status
|
||||
|
||||
# ── 電壓 margin 寫 NVM(⚠️ 永久,測試中絕不執行)─────
|
||||
margin_save # 只寫當前 margin_init 載入的那顆(2 個 LTC2977)
|
||||
margin_save all # settings/ 全部 9 顆;跑完自動切回原本載入的那顆
|
||||
margin_save blanton # Blanton SONiC 捷徑:18 顆全走原生 i2c,不用 margin_init
|
||||
# 0x15 是 send-byte,不帶 data byte:i2cset -f -y <bus> <addr> 0x15
|
||||
# bus = FPGA F3 通道 + 7 → Ch6=13, Ch7=14, Ch8=15, Ch9=16(CB 本來就是 bus 4)
|
||||
# ⚠️ 沒裝滿的機器:改 margin.sh 頂端的 MARGIN_BLANTON_STORE,把沒有的板子註解掉
|
||||
|
||||
# ── SWB loopback 流量(bcmcmd,unit 0/1)─────────────
|
||||
# 不帶 -u 就是預設 TL_UNITS="0 1",兩塊 switch board 都做(TTL 三支腳本即如此)
|
||||
blanton_traffic_linespeed ps # 對照線的 link/speed
|
||||
@@ -70,13 +98,82 @@ blanton_traffic_linespeed report -f <log> # 離線重解一份存下來的 cons
|
||||
# 離線版報表(開發機上跑,選項更多)
|
||||
python3 tools/bcm_mibpair_report_V1.1.0.py <drivshell.log> -a
|
||||
|
||||
# ── BMC 監控 / 壓力(需先 chmod +x!)────────────────
|
||||
chmod +x ~/Blanton_Script/bmc_monitor*.sh # 佈署後必做一次
|
||||
~/Blanton_Script/bmc_monitor.sh start # free -m 取樣,log/bmc_poll.log
|
||||
~/Blanton_Script/bmc_monitor_ddr.sh start # memtester,log/bmc_ddr.log
|
||||
~/Blanton_Script/bmc_monitor.sh status # pid / log 路徑 / log 大小
|
||||
~/Blanton_Script/bmc_monitor.sh stop
|
||||
# ⚠️ tail 子命令是 tail -f,會卡住不返回;要倒 log 請直接 cat log/*.log
|
||||
# ── 管理網路 ping 監控(需先 chmod +x!)──────────────
|
||||
chmod +x ~/Blanton_Script/*.sh # 佈署後必做一次
|
||||
~/Blanton_Script/mgmt_ping_monitor.sh fg # 前景試一輪(約 30 秒),確認 IP/對端/網卡
|
||||
~/Blanton_Script/mgmt_ping_monitor.sh start # 背景,log/mgmt_ping.log(start 會先清空)
|
||||
~/Blanton_Script/mgmt_ping_monitor.sh status
|
||||
~/Blanton_Script/mgmt_ping_monitor.sh stop
|
||||
~/Blanton_Script/mgmt_ping_monitor.sh summary # 只看每段的 RESULT 行
|
||||
# ⚠️ tail 子命令是 tail -f,會卡住不返回;TTL 裡要倒 log 請用 cat
|
||||
# bmc_monitor.sh start/stop # free -m + BMC I2C 寫入/讀回圖樣測試,log/bmc_poll.log
|
||||
# ⚠️ bmc_monitor_ddr.sh 已停用(DDR 壓力改走 bgctl + bmc-manager),檔案仍在
|
||||
|
||||
# ── 100G PRBS(目前 TTL 未啟用,手動測用)────────────
|
||||
bash ~/Blanton_Script/port_prbs_monitor.sh start # 兩個 port 同時
|
||||
bash ~/Blanton_Script/port_prbs_monitor.sh start a # 只跑 Ethernet513
|
||||
bash ~/Blanton_Script/port_prbs_monitor.sh start b # 只跑 Ethernet514
|
||||
bash ~/Blanton_Script/port_prbs_monitor.sh report # PASS/FAIL 統計(沒跑的顯示 SKIP)
|
||||
bash ~/Blanton_Script/port_prbs_monitor.sh stop # 收尾會跑 prbsstat STOp + prbs clear
|
||||
# ⚠️ PRBS 打起來時 link 會顯示 down,這是正常的 —— 所以 start 刻意不印 port status
|
||||
|
||||
# ── PDB / CPB power brick 讀值 ──────────────────────
|
||||
./Blanton_Script/pwr_brick.sh show # Vin/Iin/Vout/Iout/Temp × 5 顆
|
||||
./Blanton_Script/pwr_brick.sh show -r # 多印 raw word
|
||||
# 四顆 ADPM12200 每個量各一個 PMBus PAGE:Vin 9 / Iin 10 / Vout 2 / Iout 14 / Temp 18
|
||||
# CPB.PU37 (0x26) 是不同零件:不寫 PAGE,自己一套換算
|
||||
# PB_TRIES=1 ... show -r 可看未經重試的原始行為
|
||||
|
||||
# ── 多相 VRM margin(原生 i2c,38 條軌)──────────────
|
||||
./Blanton_Script/blanton_multiphase_margin.sh high3 # 全部 +3%
|
||||
./Blanton_Script/blanton_multiphase_margin.sh low3 # 全部 -3%
|
||||
./Blanton_Script/blanton_multiphase_margin.sh comboA # 混合,組合 A
|
||||
./Blanton_Script/blanton_multiphase_margin.sh comboB # 混合,組合 B
|
||||
./Blanton_Script/blanton_multiphase_margin.sh save # ⚠️ 永久寫 NVM
|
||||
# -u 0 / -u 1 單邊(SWB0=i2c-13/15,SWB1=i2c-14/16);-n 只印指令
|
||||
# 逐條印 SWB0_0V9_ANLG0 - 0.930V Configure Done;save 只印 Multiphase Save All
|
||||
# ⚠️ 這不是 margin.sh 管的 LTC2980,兩支摸同一批軌,不要同時用
|
||||
|
||||
# ── 全機 SerDes BER(PRBS,期間 link 會顯示 DOWN)────
|
||||
./Blanton_Script/blanton_ber.sh init # prbs set p=3 + prbs get(檢查每條 lane 鎖定)
|
||||
./Blanton_Script/blanton_ber.sh start # prbsstat STArt Interval=30
|
||||
sleep 30 # 至少等一個 interval 再 report
|
||||
./Blanton_Script/blanton_ber.sh report # 每 lane 一列,BER < 1e-6 才 PASS,最後 summary
|
||||
./Blanton_Script/blanton_ber.sh stop # prbsstat STOp
|
||||
./Blanton_Script/blanton_ber.sh clear # prbs clear(會解除 PRBS,要重測得再 init)
|
||||
# -u 0 / -u 1 單邊;-c 1e-9 換門檻;-F 只列失敗;-f <log> 離線重解
|
||||
# ⚠️ 不能跟 blanton_traffic_linespeed / blanton_tr518 同時跑(都會接管同一批 port)
|
||||
|
||||
# ── TR518 負載 + 量功耗(TTL 尚未接)─────────────────
|
||||
./Blanton_Script/blanton_tr518.sh start # 兩 unit,跑完 settle 120s
|
||||
./Blanton_Script/TH6_SWB0_power_readback.sh # 19 條軌 V×I + TOTAL POWER
|
||||
./Blanton_Script/TH6_SWB1_power_readback.sh
|
||||
./Blanton_Script/blanton_tr518.sh stop # 只送 port cd lb=none
|
||||
# ⚠️ stop 不還原 l2 learn / test mode(TR_RESTORE_LEARN=1 / _TESTMODE=1 才會)
|
||||
|
||||
# ── NFC tag 輪詢 ────────────────────────────────────
|
||||
~/Blanton_Script/nfc_polling.sh start # 背景,start 會先清空 log
|
||||
~/Blanton_Script/nfc_polling.sh status # pid、已跑幾輪、最後一筆結果
|
||||
~/Blanton_Script/nfc_polling.sh report # PASS/FAIL/ERROR 統計,polling 中也能跑
|
||||
~/Blanton_Script/nfc_polling.sh tail 50 # 最後 50 行(不 follow,不會卡住)
|
||||
~/Blanton_Script/nfc_polling.sh stop
|
||||
# log: ~/Blanton_Script/log/nfc_poll.log
|
||||
# ERROR = 工具沒印出 [PASS]/[FAIL](或逾時),跟「tag 讀不到」分開算
|
||||
# NFC_INTERVAL_SEC / NFC_TIMEOUT_SEC / NFC_ARGS 可調(要每個子指令都帶)
|
||||
|
||||
# ── USB 目標偵測 ────────────────────────────────────
|
||||
bash ~/Blanton_Script/usb_target.sh -o dev # /dev/sdX1
|
||||
bash ~/Blanton_Script/usb_target.sh -o mnt # 掛好並回傳掛載點
|
||||
|
||||
# ── 背景壓力(平台工具)──────────────────────────────
|
||||
bgctl run /usr/sbin/memtester 1G 100
|
||||
bgctl list
|
||||
bgctl stop --all ; bgctl reset --yes
|
||||
|
||||
# ── 通道對照表(開發機上跑,改完 settings/*.conf 一定要重產)──
|
||||
./tools/gen_channel_map.sh # → docs/LTC2980_channel_map.csv(144 列)
|
||||
./tools/gen_channel_map.sh - # 只印到 stdout
|
||||
# ⚠️ 需要 gawk(用到 3 參數的 match());mawk 會直接擋下並提示
|
||||
|
||||
# ── 各工具的 help ───────────────────────────────────
|
||||
blanton_fpga_help ; blanton_cb_i2c_help ; vi2c_help
|
||||
@@ -142,8 +239,39 @@ Tera Term 連 COM port (115200-8-N-1)
|
||||
- ⚠️ **ICB/PDB 一律走 VI2C(`blanton_icb_vi2c.sh`),不要走 VSPI**:VSPI ~18 ms/reg 會讓 I2C
|
||||
byte 相間隔拉到 ~50 ms,踩中 SMBus 25–35 ms timeout,裝置直接 NACK。實測全掃 9.4 s vs 34.0 s。
|
||||
- ⚠️ **I2C 讀一律 Repeated START**(不是 STOP + START),否則 PMBus/SMBus 裝置(VRM、EFUSE)不理。
|
||||
- ⚠️ **Script C 的 BMC USB service log 不進 master log**:改成
|
||||
`journalctl ... > log/bmc_usb_net.log` 再複製到隨身碟,**那是唯一一份**。
|
||||
收工後翻不到就先確認 job 目錄裡有沒有這個檔
|
||||
- ⚠️ **VI2C 這條路的壞法是「只壞高位元組」**,不是整包壞掉。`11.98 V` 會變成 `32.00 V`
|
||||
—— 正的、數量級也不誇張,**擋全一/全零的過濾完全攔不到**。寫任何 VI2C 讀值工具都要有
|
||||
合理範圍檢查 + 重讀,光靠 `PDB_REJECT_FFFF` 那種是不夠的(`pwr_brick.sh` 的教訓)
|
||||
- ⚠️ **PMBus 的 PAGE 不是只有 VRM 通道在用**:ADPM12200 把每個量測放在不同 PAGE
|
||||
(Vin 9 / Iin 10 / Vout 2 / Iout 14 / Temp 18),沒寫 PAGE 就讀,回的是 `0xFFFF` 或
|
||||
`0x0000`。`blanton_pwr_data.sh` 的 PDB 表 page 是 `-`,這就是它整張表 NA 的原因
|
||||
- ⚠️ **`--runtime 86400` 是 24 小時上限**:超過一天的 soak,SSD / USB 壓力會安靜結束,
|
||||
剩下的時間那兩項閒置。`bgctl list` 的數量變少是唯一的線索,**不會報警**
|
||||
- ⚠️ **多相 VRM 與 LTC2980 是同一批軌的兩條路**:`blanton_multiphase_margin.sh`(原生 i2c)
|
||||
和 `margin.sh`(LTC2980 PMBus)都假設自己是唯一寫入者,**沒有互斥檢查**,只靠人記得
|
||||
- ⚠️ **traffic 的計數器基準在 v0.7.0 變了**:`tx 100 length=512` → `tx 200 length=324`,
|
||||
每 burst 的位元組數 +27%。PASS/FAIL 是成對交叉比對不受影響,但**絕對值不能跟舊 log 比**
|
||||
- ⚠️ **Script 4(thermal/safety)沒有收尾**:`while 1` 之後就是檔尾。中斷後 DUT 停在
|
||||
`port cd lb=mac` / `l2 learn off` / `test mode nr=yes`,`mlucas-avx2` 也還在背景。
|
||||
下一個測試會在被污染的狀態上開始,而且 **`show interfaces status` 看不出來**。
|
||||
收尾:`blanton_tr518.sh stop` + `kill $(jobs -p)`
|
||||
- ⚠️ **Script 4 與 Script B 不能共用同一台 DUT**:兩者都會接管 `port cd` 的 loopback
|
||||
- ⚠️ **`settings/*.conf` 的 `VNOM` 是實測中位數,不是規格值**(2026-08-30 起)。它同時是
|
||||
`margin_status` 偏差 % 的分母、也是 `margin_set` 推算 high/low/OV/UV 的基準,所以改它會
|
||||
同時移動「看到的數字」和「實際打出去的電壓」。**跨這個日期的 margin log 不能直接互比。**
|
||||
- ⚠️ **SWB 的 margin profile 是 per-CONN 的**:`combo_SWB_CONN13~16_{high,low}` 各自的百分比
|
||||
對應該片板子的軌。套到別的 CONN 會 margin 到錯的軌,而且**不會報錯**。CB 沒有專屬 profile,
|
||||
用通用的 `combo_high3` / `combo_low3`
|
||||
- ⚠️ **`margin_save` / `STORE_USER_ALL` 會永久寫 NVM**,斷電保留 → **測試流程中絕不執行**,
|
||||
以免覆蓋客戶出廠 config。`margin.sh` 的 auto-enable(`ON_OFF_CONFIG=0x1a`)只改 RAM,斷電復原。
|
||||
v2.7.0 新增的 **`margin_save all` / `margin_save blanton` 一次寫 18 個 LTC2977**,
|
||||
同一個警告放大 9 倍;另外 `0x15` 現在送 send-byte,不再帶多餘的 `0x00` data byte。
|
||||
- ⚠️ **SWB 的 LTC2977 有兩條路可以到**:`cb_pmbus_*`(CB FPGA F3 Ch6/7/8/9 → pcimem)與
|
||||
原生 i2c bus(`i2cset -f -y 13/14/15/16`,Ch+7 = bus)。`margin_save blanton` 走後者,
|
||||
其餘功能走前者。同一顆晶片,**不要同時用兩條路**。
|
||||
- ⚠️ **改電壓會弄壞 DUT**:套 profile 前確認該軌 OV/UV limit,且 servo DAC 注入電阻有 populate
|
||||
(本板部分 margin 電阻標 PROTO,沒 populate 的軌電壓不會動,不是腳本壞掉)。
|
||||
- ⚠️ **`ARB_LOST` ≠ 有裝置**:`vi2c_scan` 只看 `RX_ACK`,仲裁失敗會被誤報成裝置存在。
|
||||
@@ -166,13 +294,38 @@ Tera Term 連 COM port (115200-8-N-1)
|
||||
`.gitattributes` 已擋住 git 這條路徑,但**不會回頭重寫既有工作區檔案**:早於它 clone 的目錄要
|
||||
`git rm --cached -r . && git reset --hard` 才會生效,而且 **`git status` 乾淨不代表磁碟上是 LF**
|
||||
(`--renormalize` 只在進 index 的路上轉換)。驗證要看 byte:`grep -rlU $'\r' <dir>`
|
||||
- ⚠️ **`bmc_monitor*.sh` 需要 exec bit**,且**不是改用 `bash x.sh start` 就能繞過** ——
|
||||
- ⚠️ **TTL 的 `timeout` 是全域的**:`timeout = N` 之後**每一個** `wait` 都被限制在 N 秒。逾時的 `wait`
|
||||
直接返回而沒吃到 prompt,下一個指令就在前一個還沒跑完時送出,之後整輪錯開一拍。**設了一定要
|
||||
配一個 `timeout = 0` 還原**(`wait_init.ttl` 60→0;Script B 的 cdc_ncm 探測 15→0 在 `:skip_ping`)
|
||||
- ⚠️ **兩張管理網卡同網段會 ARP flux**:`mgmt_ping_monitor.sh` 讓 eth0/eth1 同時 up,同一個 /24 下
|
||||
對端 ARP 可能由任一張卡回應,回包落在沒送封包的那張。`ARP_STRICT=1` 擋掉;判讀時看 `RESULT` 行的
|
||||
`nic_tx`/`nic_rx`(該卡自己的 packet delta)—— **ping 成功但 `nic_tx` 接近 0 = 封包從另一張卡出去的**
|
||||
- ⚠️ **PRBS 跑起來時 `show interfaces status` 會顯示 DOWN**,那是 link 離開正常運作模式,不是故障。
|
||||
`port_prbs_monitor.sh` 的 `start` 因此刻意不印 port status(避免測試員誤判),只在 `prbs clear` 之後的報表裡印
|
||||
- ⚠️ **`ip -s link` 的欄位順序是 `bytes packets errors ...`**,要 packet 數取的是**第 2 欄**不是第 1 欄
|
||||
- ⚠️ **`mgmt_ping_monitor.sh` / `bmc_monitor*.sh` 需要 exec bit**,且**不是改用 `bash x.sh start` 就能繞過** ——
|
||||
`do_start` 內部是 `setsid "$SCRIPT_PATH" __daemon`,直接執行該路徑。git 記錄是 `100644`,
|
||||
Windows → 隨身碟 → DUT 也帶不動權限位元,所以佈署後要 `chmod +x ~/Blanton_Script/bmc_monitor*.sh`。
|
||||
沒做的話 Script B 的 start 會 Permission denied、Script C 的 `cat` 撲空,而且**不會報錯**,
|
||||
只會得到一份 BMC 段全空的 log
|
||||
- ⚠️ **`bmc_monitor*.sh` 的 `tail` 子命令是 `tail -n 50 -f`,永遠不返回**。TTL 裡絕對不要呼叫它
|
||||
沒做的話 start 會 Permission denied、後面的 `cat` 撲空,而且**不會報錯**,只會得到一份全空的 log
|
||||
- ⚠️ **這幾支 monitor 的 `tail` 子命令是 `tail -n 50 -f`,永遠不返回**。TTL 裡絕對不要呼叫它
|
||||
(Script C 曾因此卡死,`18ce7a1` 改成直接 `cat log/*.log`)
|
||||
- ⚠️ **背景 monitor 的 `start` 只等 1 秒就返回**,不是跑完一輪。Script A 要做一輪基線的話,
|
||||
`start` 和 `stop` 中間必須 `pause`(目前是 45 秒,一輪約 30 秒)—— 少了它 log 只會有 START banner
|
||||
- ⚠️ **風扇那段設完會 `wait "Set all configured fan channels to"` 等確認提示再送 `y`**。該提示沒出現
|
||||
(版本改了、字串換了)就會永遠卡住且不報錯 —— 現場看起來像 Script A 當掉
|
||||
- ⚠️ **`show_dmesg.ttl` 結尾會 `dmesg -C` 清空 kernel ring buffer**。這是刻意的(讓 Script C 只看到
|
||||
soak 期間新產生的訊息),但代表事後在 DUT 上 `dmesg` 撈不到舊訊息 —— 內容只存在 master log 裡
|
||||
- ⚠️ **`bcmcmd` 的輸出是 CRLF**。`show c` 的計數器後面還跟著 delta,所以「砍掉第一個空白之後」
|
||||
順便把 CR 砍掉了;但 `prbsstat Ber` 的 BER 是**整行最後一個 token**,CR 直接黏在數字上 ——
|
||||
數字驗證會失敗(全變 NA),而且印出來時 CR 把游標拉回行首,後面的欄位會**覆蓋掉前面的欄位**。
|
||||
寫新的 awk 解析器時,第一件事就是 `{ gsub(/\r/, "") }`(`blanton_ber.sh` V1.0.1 的教訓)
|
||||
- ⚠️ **`bcmcmd` 的 exit code 兩邊都不能信**:BCM shell 拒絕指令時它回 **0**
|
||||
(`blanton_traffic_linespeed.sh` V0.3.1),而 `tr 518` 這種跑很久的指令會讓它 poll 逾時而回
|
||||
**非 0**,但指令其實已經在跑(`polling socket timeout: Success`)。可靠的作法是**找成功的證據**
|
||||
——例如 `tr 518` 印出 `TR 518 TEST PARAMETERS` 才算收下(`blanton_tr518.sh` V1.0.1)
|
||||
- ⚠️ **交換晶片不會把封包從進來的那個 port 送回去**(source-port knockout)。所以單一 port 的
|
||||
VLAN 打不出持續流量:`tx 100` 就是一趟來回然後結束。`ce0` 靠 **ingress mirror 打回自己**繞過
|
||||
這個限制(鏡像複本不經過 egress filter),**且不 stop 就不會自己停**
|
||||
- ⚠️ **DUT 的 awk 對 `%d` 會夾到 INT32**(2147483647)。線速流量的計數器是 ~10¹² 量級,
|
||||
所以 awk 裡輸出大數一律用 `%.0f`(double 域,精確到 2⁵³)。`blanton_traffic_linespeed.sh`
|
||||
V0.4.1 已修;寫新的 awk 報表時要記得同一件事
|
||||
@@ -180,10 +333,13 @@ Tera Term 連 COM port (115200-8-N-1)
|
||||
## 資料夾說明
|
||||
|
||||
- `src/Script_ABC_Blanton/` — 可執行內容(Tera Term 工作目錄;內含要 scp 到 DUT 的 `Blanton_Script/`)
|
||||
- `docs/` — 客戶 FPGA 規格、AER/EDAC 檢查依據、逐項 Status 表(最新為 `*_20260817.xlsx`)
|
||||
- `docs/` — 客戶 FPGA 規格、AER/EDAC 檢查依據、逐項 Status 表(最新為 `*_20260817.xlsx`)、
|
||||
`LTC2980_channel_map.csv`(9 個 `settings/*.conf` 合併成 Board,CONN,Ch,NetName,Vnom 144 列,
|
||||
查 net 對應哪片哪個 channel 用;**改 `.conf` 後要重跑產生**)
|
||||
- `tools/` — Host / 離線端:`bcm_mibpair_report_V1.1.0.py`(drivshell log → per-pair 報表)、
|
||||
`traffic_loopback_*.txt`(bcmcmd 原始指令表,`blanton_traffic_linespeed.sh` 是其 bash 版,
|
||||
**改 loopback 線路時兩邊要同步**)
|
||||
**改 loopback 線路時兩邊要同步**)、`100G_PRBS.txt` / `TR518.txt` / `fan_ctrl.txt`
|
||||
(上機手貼用的原始指令;PRBS 已有 `.sh`,TR518 尚未腳本化)
|
||||
- `publish/` — `publish.sh`(打包工具,**進 git**)+ `Script_ABC_Blanton_<Ver>/` 產出(**gitignored**)
|
||||
- `secret/` — 🚫 gitignored(除 `README.md` 與 `*.example`):DUT 帳密、per-unit BDF 覆寫、COM 設定
|
||||
- `For_AI/` — 🚫 gitignored:AI 協作素材(波形截圖、草稿筆記)
|
||||
|
||||
Binary file not shown.
@@ -0,0 +1,172 @@
|
||||
<mxfile host="app.diagrams.net" agent="Blanton_TTL_Script/tools" version="24.7.17">
|
||||
<diagram id="blanton-test-flow" name="Blanton Test Flow">
|
||||
<mxGraphModel dx="1400" dy="900" grid="1" gridSize="10" guides="1" tooltips="1" connect="1" arrows="1" fold="1" page="1" pageScale="1" pageWidth="1670" pageHeight="1785" math="0" shadow="0">
|
||||
<root>
|
||||
<mxCell id="0"/>
|
||||
<mxCell id="1" parent="0"/>
|
||||
<mxCell id="n11" value="Blanton (Project Helios) — 測試流程" style="text;html=1;align=center;verticalAlign=middle;fontSize=20;fontStyle=1;" vertex="1" parent="1"><mxGeometry x="30" y="20" width="1610" height="34" as="geometry"/></mxCell>
|
||||
<mxCell id="n12" value="來源:src/Script_ABC_Blanton/{1,2,3}_Blanton_Script_*.ttl(Script A V1.1.3) · ⟨…⟩ = 由 config.ttl 的旗標決定" style="text;html=1;align=center;verticalAlign=middle;fontSize=11;fontColor=#666666;" vertex="1" parent="1"><mxGeometry x="30" y="54" width="1610" height="20" as="geometry"/></mxCell>
|
||||
<mxCell id="n13" value="Script A — Pre-test(基線 / 環境建立)" style="swimlane;html=1;startSize=34;fillColor=#ffffff;strokeColor=#4d4d4d;fontSize=14;fontStyle=1;horizontal=1;" vertex="1" parent="1"><mxGeometry x="30" y="96" width="380" height="1459" as="geometry"/></mxCell>
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||||
<mxCell id="n14" value="<b>include config.ttl</b><br>project_name, strTestcase, EN_Margin,<br>EN_log, FAN_SPEED, SWB_UNIT0/1" style="rounded=1;whiteSpace=wrap;html=1;fillColor=#fff2cc;strokeColor=#d6b656;align=left;spacingLeft=8;verticalAlign=middle;fontSize=11;" vertex="1" parent="n13"><mxGeometry x="18" y="44" width="344" height="64" as="geometry"/></mxCell>
|
||||
<mxCell id="n15" value="<b>logopen</b> Logs/&lt;proj&gt;_&lt;case&gt;_&lt;ts&gt;.log<br><i>⟨EN_log = 1⟩</i>" style="rounded=1;whiteSpace=wrap;html=1;fillColor=#fff2cc;strokeColor=#d6b656;align=left;spacingLeft=8;verticalAlign=middle;fontSize=11;" vertex="1" parent="n13"><mxGeometry x="18" y="124" width="344" height="49" as="geometry"/></mxCell>
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<mxCell id="e16" value="" style="edgeStyle=orthogonalEdgeStyle;rounded=0;html=1;exitX=0.5;exitY=1;exitDx=0;exitDy=0;entryX=0.5;entryY=0;entryDx=0;entryDy=0;strokeColor=#4d4d4d;" edge="1" parent="1" source="n14" target="n15"><mxGeometry relative="1" as="geometry"/></mxCell>
|
||||
<mxCell id="n17" value="<b>Root Login</b><br>login → sudo -i → root@sonic:~#" style="rounded=1;whiteSpace=wrap;html=1;fillColor=#dae8fc;strokeColor=#6c8ebf;align=left;spacingLeft=8;verticalAlign=middle;fontSize=11;" vertex="1" parent="n13"><mxGeometry x="18" y="189" width="344" height="49" as="geometry"/></mxCell>
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||||
<mxCell id="e18" value="" style="edgeStyle=orthogonalEdgeStyle;rounded=0;html=1;exitX=0.5;exitY=1;exitDx=0;exitDy=0;entryX=0.5;entryY=0;entryDx=0;entryDy=0;strokeColor=#4d4d4d;" edge="1" parent="1" source="n15" target="n17"><mxGeometry relative="1" as="geometry"/></mxCell>
|
||||
<mxCell id="n19" value="<b>Pre Setting</b><br>date -s 對時 · rm /host/hw-eval/jobs/*" style="rounded=1;whiteSpace=wrap;html=1;fillColor=#dae8fc;strokeColor=#6c8ebf;align=left;spacingLeft=8;verticalAlign=middle;fontSize=11;" vertex="1" parent="n13"><mxGeometry x="18" y="254" width="344" height="49" as="geometry"/></mxCell>
|
||||
<mxCell id="e20" value="" style="edgeStyle=orthogonalEdgeStyle;rounded=0;html=1;exitX=0.5;exitY=1;exitDx=0;exitDy=0;entryX=0.5;entryY=0;entryDx=0;entryDy=0;strokeColor=#4d4d4d;" edge="1" parent="1" source="n17" target="n19"><mxGeometry relative="1" as="geometry"/></mxCell>
|
||||
<mxCell id="n21" value="<b>HW Test Session — 收前一輪</b><br>hw-test-session finish · bgctl reset --yes<br>bgctl stop --all · <b>bgctl list 必須空</b>" style="rounded=1;whiteSpace=wrap;html=1;fillColor=#f8cecc;strokeColor=#b85450;align=left;spacingLeft=8;verticalAlign=middle;fontSize=11;" vertex="1" parent="n13"><mxGeometry x="18" y="319" width="344" height="64" as="geometry"/></mxCell>
|
||||
<mxCell id="e22" value="" style="edgeStyle=orthogonalEdgeStyle;rounded=0;html=1;exitX=0.5;exitY=1;exitDx=0;exitDy=0;entryX=0.5;entryY=0;entryDx=0;entryDy=0;strokeColor=#4d4d4d;" edge="1" parent="1" source="n19" target="n21"><mxGeometry relative="1" as="geometry"/></mxCell>
|
||||
<mxCell id="n23" value="<b>hw-test-session start</b>" style="rounded=1;whiteSpace=wrap;html=1;fillColor=#dae8fc;strokeColor=#6c8ebf;align=left;spacingLeft=8;verticalAlign=middle;fontSize=11;" vertex="1" parent="n13"><mxGeometry x="18" y="399" width="344" height="34" as="geometry"/></mxCell>
|
||||
<mxCell id="e24" value="" style="edgeStyle=orthogonalEdgeStyle;rounded=0;html=1;exitX=0.5;exitY=1;exitDx=0;exitDy=0;entryX=0.5;entryY=0;entryDx=0;entryDy=0;strokeColor=#4d4d4d;" edge="1" parent="1" source="n21" target="n23"><mxGeometry relative="1" as="geometry"/></mxCell>
|
||||
<mxCell id="n25" value="<b>FAN SPEED</b><br>max31790 rebind ×2 → fan-speed-control.sh $FAN_SPEED" style="rounded=1;whiteSpace=wrap;html=1;fillColor=#dae8fc;strokeColor=#6c8ebf;align=left;spacingLeft=8;verticalAlign=middle;fontSize=11;" vertex="1" parent="n13"><mxGeometry x="18" y="449" width="344" height="49" as="geometry"/></mxCell>
|
||||
<mxCell id="e26" value="" style="edgeStyle=orthogonalEdgeStyle;rounded=0;html=1;exitX=0.5;exitY=1;exitDx=0;exitDy=0;entryX=0.5;entryY=0;entryDx=0;entryDy=0;strokeColor=#4d4d4d;" edge="1" parent="1" source="n23" target="n25"><mxGeometry relative="1" as="geometry"/></mxCell>
|
||||
<mxCell id="n27" value="<b>Wait DUT Init</b> utils/wait_init.ttl<br>輪詢 bcmcmd ps,兩 unit link up ≥ 216<br><i>⟨SWB_UNIT0 / SWB_UNIT1⟩ · 無逾時出口</i>" style="rounded=1;whiteSpace=wrap;html=1;fillColor=#fff2cc;strokeColor=#d6b656;align=left;spacingLeft=8;verticalAlign=middle;fontSize=11;" vertex="1" parent="n13"><mxGeometry x="18" y="514" width="344" height="64" as="geometry"/></mxCell>
|
||||
<mxCell id="e28" value="" style="edgeStyle=orthogonalEdgeStyle;rounded=0;html=1;exitX=0.5;exitY=1;exitDx=0;exitDy=0;entryX=0.5;entryY=0;entryDx=0;entryDy=0;strokeColor=#4d4d4d;" edge="1" parent="1" source="n25" target="n27"><mxGeometry relative="1" as="geometry"/></mxCell>
|
||||
<mxCell id="n29" value="<b>DUT Info</b><br>show boot/version/platform · fwutil · syseeprom<br>ssdhealth · TPM · NVMe" style="rounded=1;whiteSpace=wrap;html=1;fillColor=#dae8fc;strokeColor=#6c8ebf;align=left;spacingLeft=8;verticalAlign=middle;fontSize=11;" vertex="1" parent="n13"><mxGeometry x="18" y="594" width="344" height="64" as="geometry"/></mxCell>
|
||||
<mxCell id="e30" value="" style="edgeStyle=orthogonalEdgeStyle;rounded=0;html=1;exitX=0.5;exitY=1;exitDx=0;exitDy=0;entryX=0.5;entryY=0;entryDx=0;entryDy=0;strokeColor=#4d4d4d;" edge="1" parent="1" source="n27" target="n29"><mxGeometry relative="1" as="geometry"/></mxCell>
|
||||
<mxCell id="n31" value="<b>BMC</b> bmc-first-enroll · version · status" style="rounded=1;whiteSpace=wrap;html=1;fillColor=#dae8fc;strokeColor=#6c8ebf;align=left;spacingLeft=8;verticalAlign=middle;fontSize=11;" vertex="1" parent="n13"><mxGeometry x="18" y="674" width="344" height="34" as="geometry"/></mxCell>
|
||||
<mxCell id="e32" value="" style="edgeStyle=orthogonalEdgeStyle;rounded=0;html=1;exitX=0.5;exitY=1;exitDx=0;exitDy=0;entryX=0.5;entryY=0;entryDx=0;entryDy=0;strokeColor=#4d4d4d;" edge="1" parent="1" source="n29" target="n31"><mxGeometry relative="1" as="geometry"/></mxCell>
|
||||
<mxCell id="n33" value="<b>Load Shell Script</b><br>source blanton_fpga_pcimem / cb_i2c / icb_vi2c /<br>temp_sensor / pwr_data / traffic_linespeed / margin" style="rounded=1;whiteSpace=wrap;html=1;fillColor=#dae8fc;strokeColor=#6c8ebf;align=left;spacingLeft=8;verticalAlign=middle;fontSize=11;" vertex="1" parent="n13"><mxGeometry x="18" y="724" width="344" height="64" as="geometry"/></mxCell>
|
||||
<mxCell id="e34" value="" style="edgeStyle=orthogonalEdgeStyle;rounded=0;html=1;exitX=0.5;exitY=1;exitDx=0;exitDy=0;entryX=0.5;entryY=0;entryDx=0;entryDy=0;strokeColor=#4d4d4d;" edge="1" parent="1" source="n31" target="n33"><mxGeometry relative="1" as="geometry"/></mxCell>
|
||||
<mxCell id="n35" value="<b>CLEAR PCIe Error</b> ×7<br>TH6_SWB0 · TH6_SWB1 · FPGA · BMC · DDR · I210 · SSD" style="rounded=1;whiteSpace=wrap;html=1;fillColor=#dae8fc;strokeColor=#6c8ebf;align=left;spacingLeft=8;verticalAlign=middle;fontSize=11;" vertex="1" parent="n13"><mxGeometry x="18" y="804" width="344" height="49" as="geometry"/></mxCell>
|
||||
<mxCell id="e36" value="" style="edgeStyle=orthogonalEdgeStyle;rounded=0;html=1;exitX=0.5;exitY=1;exitDx=0;exitDy=0;entryX=0.5;entryY=0;entryDx=0;entryDy=0;strokeColor=#4d4d4d;" edge="1" parent="1" source="n33" target="n35"><mxGeometry relative="1" as="geometry"/></mxCell>
|
||||
<mxCell id="n37" value="<b>PCIe tree / link / bandwidth</b> utils/pcie_bus.ttl" style="rounded=1;whiteSpace=wrap;html=1;fillColor=#dae8fc;strokeColor=#6c8ebf;align=left;spacingLeft=8;verticalAlign=middle;fontSize=11;" vertex="1" parent="n13"><mxGeometry x="18" y="869" width="344" height="34" as="geometry"/></mxCell>
|
||||
<mxCell id="e38" value="" style="edgeStyle=orthogonalEdgeStyle;rounded=0;html=1;exitX=0.5;exitY=1;exitDx=0;exitDy=0;entryX=0.5;entryY=0;entryDx=0;entryDy=0;strokeColor=#4d4d4d;" edge="1" parent="1" source="n35" target="n37"><mxGeometry relative="1" as="geometry"/></mxCell>
|
||||
<mxCell id="n39" value="<b>Check Margin</b> margin_status_all.sh(9 顆 LTC2980)<br><i>⟨EN_Margin = 1⟩</i>" style="rounded=1;whiteSpace=wrap;html=1;fillColor=#fff2cc;strokeColor=#d6b656;align=left;spacingLeft=8;verticalAlign=middle;fontSize=11;" vertex="1" parent="n13"><mxGeometry x="18" y="919" width="344" height="49" as="geometry"/></mxCell>
|
||||
<mxCell id="e40" value="" style="edgeStyle=orthogonalEdgeStyle;rounded=0;html=1;exitX=0.5;exitY=1;exitDx=0;exitDy=0;entryX=0.5;entryY=0;entryDx=0;entryDy=0;strokeColor=#4d4d4d;" edge="1" parent="1" source="n37" target="n39"><mxGeometry relative="1" as="geometry"/></mxCell>
|
||||
<mxCell id="n41" value="<b>TAKE DATA</b> setup_pmon.ttl(9 項)+ show_dmesg.ttl" style="rounded=1;whiteSpace=wrap;html=1;fillColor=#dae8fc;strokeColor=#6c8ebf;align=left;spacingLeft=8;verticalAlign=middle;fontSize=11;" vertex="1" parent="n13"><mxGeometry x="18" y="984" width="344" height="34" as="geometry"/></mxCell>
|
||||
<mxCell id="e42" value="" style="edgeStyle=orthogonalEdgeStyle;rounded=0;html=1;exitX=0.5;exitY=1;exitDx=0;exitDy=0;entryX=0.5;entryY=0;entryDx=0;entryDy=0;strokeColor=#4d4d4d;" edge="1" parent="1" source="n39" target="n41"><mxGeometry relative="1" as="geometry"/></mxCell>
|
||||
<mxCell id="n43" value="<b>10G/1G MGMT Ping</b><br>start → 30s → report → clear" style="rounded=1;whiteSpace=wrap;html=1;fillColor=#dae8fc;strokeColor=#6c8ebf;align=left;spacingLeft=8;verticalAlign=middle;fontSize=11;" vertex="1" parent="n13"><mxGeometry x="18" y="1034" width="344" height="49" as="geometry"/></mxCell>
|
||||
<mxCell id="e44" value="" style="edgeStyle=orthogonalEdgeStyle;rounded=0;html=1;exitX=0.5;exitY=1;exitDx=0;exitDy=0;entryX=0.5;entryY=0;entryDx=0;entryDy=0;strokeColor=#4d4d4d;" edge="1" parent="1" source="n41" target="n43"><mxGeometry relative="1" as="geometry"/></mxCell>
|
||||
<mxCell id="n45" value="<b>NFC Test</b><br>start → status → 30s → stop → report" style="rounded=1;whiteSpace=wrap;html=1;fillColor=#dae8fc;strokeColor=#6c8ebf;align=left;spacingLeft=8;verticalAlign=middle;fontSize=11;" vertex="1" parent="n13"><mxGeometry x="18" y="1099" width="344" height="49" as="geometry"/></mxCell>
|
||||
<mxCell id="e46" value="" style="edgeStyle=orthogonalEdgeStyle;rounded=0;html=1;exitX=0.5;exitY=1;exitDx=0;exitDy=0;entryX=0.5;entryY=0;entryDx=0;entryDy=0;strokeColor=#4d4d4d;" edge="1" parent="1" source="n43" target="n45"><mxGeometry relative="1" as="geometry"/></mxCell>
|
||||
<mxCell id="n47" value="<b>100G Port Status</b> Ethernet513 / 514" style="rounded=1;whiteSpace=wrap;html=1;fillColor=#dae8fc;strokeColor=#6c8ebf;align=left;spacingLeft=8;verticalAlign=middle;fontSize=11;" vertex="1" parent="n13"><mxGeometry x="18" y="1164" width="344" height="34" as="geometry"/></mxCell>
|
||||
<mxCell id="e48" value="" style="edgeStyle=orthogonalEdgeStyle;rounded=0;html=1;exitX=0.5;exitY=1;exitDx=0;exitDy=0;entryX=0.5;entryY=0;entryDx=0;entryDy=0;strokeColor=#4d4d4d;" edge="1" parent="1" source="n45" target="n47"><mxGeometry relative="1" as="geometry"/></mxCell>
|
||||
<mxCell id="n49" value="<b>100G PRBS</b> port_prbs_monitor.sh<br><i>整段註解 — bring-up 中</i>" style="rounded=1;whiteSpace=wrap;html=1;fillColor=#f5f5f5;strokeColor=#999999;dashed=1;align=left;spacingLeft=8;verticalAlign=middle;fontSize=11;fontColor=#808080;" vertex="1" parent="n13"><mxGeometry x="18" y="1214" width="344" height="49" as="geometry"/></mxCell>
|
||||
<mxCell id="e50" value="" style="edgeStyle=orthogonalEdgeStyle;rounded=0;html=1;exitX=0.5;exitY=1;exitDx=0;exitDy=0;entryX=0.5;entryY=0;entryDx=0;entryDy=0;strokeColor=#4d4d4d;" edge="1" parent="1" source="n47" target="n49"><mxGeometry relative="1" as="geometry"/></mxCell>
|
||||
<mxCell id="n51" value="<b>First Traffic Test(基線)</b><br>ps → init → clear → 15s → show → start → 15s → report<br><i>⟨SWB_UNIT⟩ 兩邊 / -u 0 / -u 1 / skip</i>" style="rounded=1;whiteSpace=wrap;html=1;fillColor=#fff2cc;strokeColor=#d6b656;align=left;spacingLeft=8;verticalAlign=middle;fontSize=11;" vertex="1" parent="n13"><mxGeometry x="18" y="1279" width="344" height="64" as="geometry"/></mxCell>
|
||||
<mxCell id="e52" value="" style="edgeStyle=orthogonalEdgeStyle;rounded=0;html=1;exitX=0.5;exitY=1;exitDx=0;exitDy=0;entryX=0.5;entryY=0;entryDx=0;entryDy=0;strokeColor=#4d4d4d;" edge="1" parent="1" source="n49" target="n51"><mxGeometry relative="1" as="geometry"/></mxCell>
|
||||
<mxCell id="n53" value="<b>Show power-on uptime</b>" style="rounded=1;whiteSpace=wrap;html=1;fillColor=#dae8fc;strokeColor=#6c8ebf;align=left;spacingLeft=8;verticalAlign=middle;fontSize=11;" vertex="1" parent="n13"><mxGeometry x="18" y="1359" width="344" height="34" as="geometry"/></mxCell>
|
||||
<mxCell id="e54" value="" style="edgeStyle=orthogonalEdgeStyle;rounded=0;html=1;exitX=0.5;exitY=1;exitDx=0;exitDy=0;entryX=0.5;entryY=0;entryDx=0;entryDy=0;strokeColor=#4d4d4d;" edge="1" parent="1" source="n51" target="n53"><mxGeometry relative="1" as="geometry"/></mxCell>
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<mxCell id="n119" value="<b>show reboot-cause</b>" style="rounded=1;whiteSpace=wrap;html=1;fillColor=#dae8fc;strokeColor=#6c8ebf;align=left;spacingLeft=8;verticalAlign=middle;fontSize=11;" vertex="1" parent="n91"><mxGeometry x="18" y="849" width="344" height="34" as="geometry"/></mxCell>
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<mxCell id="n121" value="<b>Check Margin</b> margin_status_all.sh(9 顆)<br><i>⟨EN_Margin = 1⟩ · V1.1.4 從 Script B 移來</i>" style="rounded=1;whiteSpace=wrap;html=1;fillColor=#fff2cc;strokeColor=#d6b656;align=left;spacingLeft=8;verticalAlign=middle;fontSize=11;" vertex="1" parent="n91"><mxGeometry x="18" y="899" width="344" height="49" as="geometry"/></mxCell>
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<mxCell id="n123" value="<b>show uptime</b>" style="rounded=1;whiteSpace=wrap;html=1;fillColor=#dae8fc;strokeColor=#6c8ebf;align=left;spacingLeft=8;verticalAlign=middle;fontSize=11;" vertex="1" parent="n91"><mxGeometry x="18" y="964" width="344" height="34" as="geometry"/></mxCell>
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<mxCell id="n125" value="<b>Copy Stress Log to USB</b><br>usb_target.sh → mount → cp 各 log 進 jobs/<br>→ 帶時戳複製到 /mnt/usb/" style="rounded=1;whiteSpace=wrap;html=1;fillColor=#dae8fc;strokeColor=#6c8ebf;align=left;spacingLeft=8;verticalAlign=middle;fontSize=11;" vertex="1" parent="n91"><mxGeometry x="18" y="1014" width="344" height="64" as="geometry"/></mxCell>
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<mxCell id="n131" value="messagebox 『GOOD JOB! Test Case DONE』" style="rounded=1;whiteSpace=wrap;html=1;fillColor=#ffe6cc;strokeColor=#d79b00;align=center;verticalAlign=middle;fontSize=11;fontStyle=1;" vertex="1" parent="n91"><mxGeometry x="18" y="1209" width="344" height="34" as="geometry"/></mxCell>
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<mxCell id="n133" value="Script 4 — Thermal &amp; Safety(獨立跑,不接 A/B/C)" style="swimlane;html=1;startSize=34;fillColor=#ffffff;strokeColor=#4d4d4d;fontSize=14;fontStyle=1;horizontal=1;" vertex="1" parent="1"><mxGeometry x="1260" y="96" width="380" height="929" as="geometry"/></mxCell>
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<mxCell id="n135" value="<b>logopen</b> <i>⟨EN_log = 1⟩</i>" style="rounded=1;whiteSpace=wrap;html=1;fillColor=#fff2cc;strokeColor=#d6b656;align=left;spacingLeft=8;verticalAlign=middle;fontSize=11;" vertex="1" parent="n133"><mxGeometry x="18" y="94" width="344" height="34" as="geometry"/></mxCell>
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<mxCell id="n137" value="<b>Root Login</b> → sudo -i" style="rounded=1;whiteSpace=wrap;html=1;fillColor=#dae8fc;strokeColor=#6c8ebf;align=left;spacingLeft=8;verticalAlign=middle;fontSize=11;" vertex="1" parent="n133"><mxGeometry x="18" y="144" width="344" height="34" as="geometry"/></mxCell>
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<mxCell id="n143" value="<b>FAN SPEED</b> max31790 rebind ×2 → fan-speed-control.sh" style="rounded=1;whiteSpace=wrap;html=1;fillColor=#dae8fc;strokeColor=#6c8ebf;align=left;spacingLeft=8;verticalAlign=middle;fontSize=11;" vertex="1" parent="n133"><mxGeometry x="18" y="309" width="344" height="34" as="geometry"/></mxCell>
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<mxCell id="n149" value="<b>BMC</b> enroll · version · status" style="rounded=1;whiteSpace=wrap;html=1;fillColor=#dae8fc;strokeColor=#6c8ebf;align=left;spacingLeft=8;verticalAlign=middle;fontSize=11;" vertex="1" parent="n133"><mxGeometry x="18" y="489" width="344" height="34" as="geometry"/></mxCell>
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<mxCell id="e152" value="" style="edgeStyle=orthogonalEdgeStyle;rounded=0;html=1;exitX=0.5;exitY=1;exitDx=0;exitDy=0;entryX=0.5;entryY=0;entryDx=0;entryDy=0;strokeColor=#4d4d4d;" edge="1" parent="1" source="n149" target="n151"><mxGeometry relative="1" as="geometry"/></mxCell>
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<mxCell id="n153" value="<b>PCIe tree / link / bandwidth</b>" style="rounded=1;whiteSpace=wrap;html=1;fillColor=#dae8fc;strokeColor=#6c8ebf;align=left;spacingLeft=8;verticalAlign=middle;fontSize=11;" vertex="1" parent="n133"><mxGeometry x="18" y="589" width="344" height="34" as="geometry"/></mxCell>
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<mxCell id="e154" value="" style="edgeStyle=orthogonalEdgeStyle;rounded=0;html=1;exitX=0.5;exitY=1;exitDx=0;exitDy=0;entryX=0.5;entryY=0;entryDx=0;entryDy=0;strokeColor=#4d4d4d;" edge="1" parent="1" source="n151" target="n153"><mxGeometry relative="1" as="geometry"/></mxCell>
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<mxCell id="n155" value="<b>TAKE DATA</b> setup_pmon.ttl + show_dmesg.ttl" style="rounded=1;whiteSpace=wrap;html=1;fillColor=#dae8fc;strokeColor=#6c8ebf;align=left;spacingLeft=8;verticalAlign=middle;fontSize=11;" vertex="1" parent="n133"><mxGeometry x="18" y="639" width="344" height="34" as="geometry"/></mxCell>
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<mxCell id="e156" value="" style="edgeStyle=orthogonalEdgeStyle;rounded=0;html=1;exitX=0.5;exitY=1;exitDx=0;exitDy=0;entryX=0.5;entryY=0;entryDx=0;entryDy=0;strokeColor=#4d4d4d;" edge="1" parent="1" source="n153" target="n155"><mxGeometry relative="1" as="geometry"/></mxCell>
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<mxCell id="n157" value="<b>Full Load — CPU</b><br>chmod +x → mlucas-avx2 -s l -cpu 0:15 &amp;" style="rounded=1;whiteSpace=wrap;html=1;fillColor=#dae8fc;strokeColor=#6c8ebf;align=left;spacingLeft=8;verticalAlign=middle;fontSize=11;" vertex="1" parent="n133"><mxGeometry x="18" y="689" width="344" height="49" as="geometry"/></mxCell>
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<mxCell id="e158" value="" style="edgeStyle=orthogonalEdgeStyle;rounded=0;html=1;exitX=0.5;exitY=1;exitDx=0;exitDy=0;entryX=0.5;entryY=0;entryDx=0;entryDy=0;strokeColor=#4d4d4d;" edge="1" parent="1" source="n155" target="n157"><mxGeometry relative="1" as="geometry"/></mxCell>
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<mxCell id="n159" value="<b>Full Load — 資料面</b><br>blanton_tr518.sh start(含 120s settle)" style="rounded=1;whiteSpace=wrap;html=1;fillColor=#f8cecc;strokeColor=#b85450;align=left;spacingLeft=8;verticalAlign=middle;fontSize=11;" vertex="1" parent="n133"><mxGeometry x="18" y="754" width="344" height="49" as="geometry"/></mxCell>
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<mxCell id="n166" value="一般步驟" style="rounded=1;whiteSpace=wrap;html=1;fillColor=#dae8fc;strokeColor=#6c8ebf;align=left;spacingLeft=8;verticalAlign=middle;fontSize=11;" vertex="1" parent="1"><mxGeometry x="30" y="1613" width="230" height="32" as="geometry"/></mxCell>
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<mxCell id="n168" value="迴圈 / 持續執行" style="rounded=1;whiteSpace=wrap;html=1;fillColor=#d5e8d4;strokeColor=#82b366;align=left;spacingLeft=8;verticalAlign=middle;fontSize=11;" vertex="1" parent="1"><mxGeometry x="530" y="1613" width="230" height="32" as="geometry"/></mxCell>
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<mxCell id="n169" value="目前註解停用" style="rounded=1;whiteSpace=wrap;html=1;fillColor=#f5f5f5;strokeColor=#999999;dashed=1;align=left;spacingLeft=8;verticalAlign=middle;fontSize=11;fontColor=#808080;" vertex="1" parent="1"><mxGeometry x="30" y="1655" width="230" height="32" as="geometry"/></mxCell>
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<mxCell id="n170" value="狀態變更 / 需留意" style="rounded=1;whiteSpace=wrap;html=1;fillColor=#f8cecc;strokeColor=#b85450;align=left;spacingLeft=8;verticalAlign=middle;fontSize=11;" vertex="1" parent="1"><mxGeometry x="280" y="1655" width="230" height="32" as="geometry"/></mxCell>
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@@ -0,0 +1,145 @@
|
||||
Board,CONN,Ch,NetName,Vnom
|
||||
CB,CONN13,CH0,V5P0_ALW,5.0
|
||||
CB,CONN13,CH1,V3P3_ALW,3.3
|
||||
CB,CONN13,CH2,PWR_VDD_MISC_ALW,0.75
|
||||
CB,CONN13,CH3,V1P8_ALW,1.8
|
||||
CB,CONN13,CH4,PWR_APU_VDDIO_SUS,1.1
|
||||
CB,CONN13,CH5,PWR_VDD_MISC_RUN,0.75
|
||||
CB,CONN13,CH6,PWR_APU_VDD_MEM_RUN,0.78
|
||||
CB,CONN13,CH7,V0P8_PHY2_DVDD,0.816
|
||||
CB,CONN13,CH8,V0P8_AVDD,0.8
|
||||
CB,CONN13,CH9,V0P8_PHY,0.8
|
||||
CB,CONN13,CH10,V1P8_FPGA,1.8
|
||||
CB,CONN13,CH11,V2P5_FPGA,2.5
|
||||
CB,CONN13,CH12,V1P1_FPGA,1.1
|
||||
CB,CONN13,CH13,P5V_STBY,5.0
|
||||
CB,CONN13,CH14,P3V3_STBY,3.3
|
||||
CB,CONN13,CH15,V0P8_PHY2_AVDD,0.816
|
||||
SWB0,CONN13,CH0,P0V75_DVDD_47,0.75
|
||||
SWB0,CONN13,CH1,P0V75_AVDD_47,0.756
|
||||
SWB0,CONN13,CH2,P1V5_AVDD_47,1.524
|
||||
SWB0,CONN13,CH3,P0V9_AVDD_47,0.915
|
||||
SWB0,CONN13,CH4,P1V8_1,1.816
|
||||
SWB0,CONN13,CH5,PVDD3_3V_SYNTH_LDO_A3,3.38
|
||||
SWB0,CONN13,CH6,PVDD3_3V_SYNTH_LDO_B1,3.38
|
||||
SWB0,CONN13,CH7,P1V8_3,1.816
|
||||
SWB0,CONN13,CH8,P1V8_DVDDIO_3,1.8
|
||||
SWB0,CONN13,CH9,P0V75_DVDD_39,0.75
|
||||
SWB0,CONN13,CH10,P0V75_AVDD_39,0.756
|
||||
SWB0,CONN13,CH11,P1V5_AVDD_39,1.524
|
||||
SWB0,CONN13,CH12,P0V9_AVDD_39,0.915
|
||||
SWB0,CONN13,CH13,PVDD1V5_2,1.5
|
||||
SWB0,CONN13,CH14,PVDD1V8_DUT,1.8
|
||||
SWB0,CONN13,CH15,PVDD_MDIO,1.2
|
||||
SWB0,CONN14,CH0,P0V75_AVDD_7,0.756
|
||||
SWB0,CONN14,CH1,P1V5_AVDD_7,1.524
|
||||
SWB0,CONN14,CH2,P0V9_AVDD_7,0.915
|
||||
SWB0,CONN14,CH3,P1V8_5,1.816
|
||||
SWB0,CONN14,CH4,P1V8_2,1.816
|
||||
SWB0,CONN14,CH5,PVDD3_3V_SYNTH_LDO_B2,3.38
|
||||
SWB0,CONN14,CH6,PVDD3_3V_SYNTH_LDO_A2,3.38
|
||||
SWB0,CONN14,CH7,PVDD3_3V_SYNTH_LDO_A1,3.38
|
||||
SWB0,CONN14,CH8,PVDD1V5_TSC,1.516
|
||||
SWB0,CONN14,CH9,PVDD1V5_ANLG,1.516
|
||||
SWB0,CONN14,CH10,NC,-
|
||||
SWB0,CONN14,CH11,NC,-
|
||||
SWB0,CONN14,CH12,PVDD1V5_1,1.5
|
||||
SWB0,CONN14,CH13,NC,-
|
||||
SWB0,CONN14,CH14,P1V8_DVDDIO_1,1.8
|
||||
SWB0,CONN14,CH15,P0V75_DVDD_7,0.75
|
||||
SWB0,CONN15,CH0,P1V5_AVDD_55,1.524
|
||||
SWB0,CONN15,CH1,P0V9_AVDD_55,0.915
|
||||
SWB0,CONN15,CH2,P0V75_DVDD_63,0.75
|
||||
SWB0,CONN15,CH3,P0V75_AVDD_63,0.756
|
||||
SWB0,CONN15,CH4,P1V5_AVDD_63,1.524
|
||||
SWB0,CONN15,CH5,P0V9_AVDD_63,0.915
|
||||
SWB0,CONN15,CH6,PVDD3_3V_SYNTH_LDO_B3,3.38
|
||||
SWB0,CONN15,CH7,PVDD1V5_3,1.5
|
||||
SWB0,CONN15,CH8,P0V85_STBY,0.85
|
||||
SWB0,CONN15,CH9,P1V8_STBY,1.8
|
||||
SWB0,CONN15,CH10,NC,-
|
||||
SWB0,CONN15,CH11,P3V3_STBY,3.3
|
||||
SWB0,CONN15,CH12,PVDD0V9_2,0.91
|
||||
SWB0,CONN15,CH13,P0V75_DVDD_55,0.75
|
||||
SWB0,CONN15,CH14,P0V75_AVDD_55,0.756
|
||||
SWB0,CONN15,CH15,P1V8_DVDDIO_4,1.8
|
||||
SWB0,CONN16,CH0,PVDD1V5_0,1.5
|
||||
SWB0,CONN16,CH1,P1V8_4,1.816
|
||||
SWB0,CONN16,CH2,PVDD3_3V_SYNTH_LDO_B5,3.38
|
||||
SWB0,CONN16,CH3,PVDD3_3V_SYNTH_LDO_A5,3.38
|
||||
SWB0,CONN16,CH4,PVDD3_3V_SYNTH_LDO_B4,3.38
|
||||
SWB0,CONN16,CH5,PVDD3_3V_SYNTH_LDO_A4,3.38
|
||||
SWB0,CONN16,CH6,P3V3,3.327
|
||||
SWB0,CONN16,CH7,PVDD0_8V_T3,0.82
|
||||
SWB0,CONN16,CH8,P0V75_DVDD_1,0.75
|
||||
SWB0,CONN16,CH9,P0V75_AVDD_1,0.756
|
||||
SWB0,CONN16,CH10,P1V5_AVDD_1,1.524
|
||||
SWB0,CONN16,CH11,P0V9_AVDD_1,0.915
|
||||
SWB0,CONN16,CH12,PVDD0V9_0,0.915
|
||||
SWB0,CONN16,CH13,PVDD0V9_1,0.91
|
||||
SWB0,CONN16,CH14,PVDD0V9_3,0.915
|
||||
SWB0,CONN16,CH15,PVDD1V2_T3,1.224
|
||||
SWB1,CONN13,CH0,P0V75_DVDD_47,0.75
|
||||
SWB1,CONN13,CH1,P0V75_AVDD_47,0.756
|
||||
SWB1,CONN13,CH2,P1V5_AVDD_47,1.524
|
||||
SWB1,CONN13,CH3,P0V9_AVDD_47,0.915
|
||||
SWB1,CONN13,CH4,P1V8_1,1.816
|
||||
SWB1,CONN13,CH5,PVDD3_3V_SYNTH_LDO_A3,3.38
|
||||
SWB1,CONN13,CH6,PVDD3_3V_SYNTH_LDO_B1,3.38
|
||||
SWB1,CONN13,CH7,P1V8_3,1.816
|
||||
SWB1,CONN13,CH8,P1V8_DVDDIO_3,1.8
|
||||
SWB1,CONN13,CH9,P0V75_DVDD_39,0.75
|
||||
SWB1,CONN13,CH10,P0V75_AVDD_39,0.756
|
||||
SWB1,CONN13,CH11,P1V5_AVDD_39,1.524
|
||||
SWB1,CONN13,CH12,P0V9_AVDD_39,0.915
|
||||
SWB1,CONN13,CH13,PVDD1V5_2,1.5
|
||||
SWB1,CONN13,CH14,PVDD1V8_DUT,1.8
|
||||
SWB1,CONN13,CH15,PVDD_MDIO,1.2
|
||||
SWB1,CONN14,CH0,P0V75_AVDD_7,0.756
|
||||
SWB1,CONN14,CH1,P1V5_AVDD_7,1.524
|
||||
SWB1,CONN14,CH2,P0V9_AVDD_7,0.915
|
||||
SWB1,CONN14,CH3,P1V8_5,1.816
|
||||
SWB1,CONN14,CH4,P1V8_2,1.816
|
||||
SWB1,CONN14,CH5,PVDD3_3V_SYNTH_LDO_B2,3.38
|
||||
SWB1,CONN14,CH6,PVDD3_3V_SYNTH_LDO_A2,3.38
|
||||
SWB1,CONN14,CH7,PVDD3_3V_SYNTH_LDO_A1,3.38
|
||||
SWB1,CONN14,CH8,PVDD1V5_TSC,1.516
|
||||
SWB1,CONN14,CH9,PVDD1V5_ANLG,1.516
|
||||
SWB1,CONN14,CH10,NC,-
|
||||
SWB1,CONN14,CH11,NC,-
|
||||
SWB1,CONN14,CH12,PVDD1V5_1,1.5
|
||||
SWB1,CONN14,CH13,NC,-
|
||||
SWB1,CONN14,CH14,P1V8_DVDDIO_1,1.8
|
||||
SWB1,CONN14,CH15,P0V75_DVDD_7,0.75
|
||||
SWB1,CONN15,CH0,P1V5_AVDD_55,1.524
|
||||
SWB1,CONN15,CH1,P0V9_AVDD_55,0.915
|
||||
SWB1,CONN15,CH2,P0V75_DVDD_63,0.75
|
||||
SWB1,CONN15,CH3,P0V75_AVDD_63,0.756
|
||||
SWB1,CONN15,CH4,P1V5_AVDD_63,1.524
|
||||
SWB1,CONN15,CH5,P0V9_AVDD_63,0.915
|
||||
SWB1,CONN15,CH6,PVDD3_3V_SYNTH_LDO_B3,3.38
|
||||
SWB1,CONN15,CH7,PVDD1V5_3,1.5
|
||||
SWB1,CONN15,CH8,P0V85_STBY,0.85
|
||||
SWB1,CONN15,CH9,P1V8_STBY,1.8
|
||||
SWB1,CONN15,CH10,NC,-
|
||||
SWB1,CONN15,CH11,P3V3_STBY,3.3
|
||||
SWB1,CONN15,CH12,PVDD0V9_2,0.91
|
||||
SWB1,CONN15,CH13,P0V75_DVDD_55,0.75
|
||||
SWB1,CONN15,CH14,P0V75_AVDD_55,0.756
|
||||
SWB1,CONN15,CH15,P1V8_DVDDIO_4,1.8
|
||||
SWB1,CONN16,CH0,PVDD1V5_0,1.5
|
||||
SWB1,CONN16,CH1,P1V8_4,1.816
|
||||
SWB1,CONN16,CH2,PVDD3_3V_SYNTH_LDO_B5,3.38
|
||||
SWB1,CONN16,CH3,PVDD3_3V_SYNTH_LDO_A5,3.38
|
||||
SWB1,CONN16,CH4,PVDD3_3V_SYNTH_LDO_B4,3.38
|
||||
SWB1,CONN16,CH5,PVDD3_3V_SYNTH_LDO_A4,3.38
|
||||
SWB1,CONN16,CH6,P3V3,3.327
|
||||
SWB1,CONN16,CH7,PVDD0_8V_T3,0.82
|
||||
SWB1,CONN16,CH8,P0V75_DVDD_1,0.75
|
||||
SWB1,CONN16,CH9,P0V75_AVDD_1,0.756
|
||||
SWB1,CONN16,CH10,P1V5_AVDD_1,1.524
|
||||
SWB1,CONN16,CH11,P0V9_AVDD_1,0.915
|
||||
SWB1,CONN16,CH12,PVDD0V9_0,0.915
|
||||
SWB1,CONN16,CH13,PVDD0V9_1,0.91
|
||||
SWB1,CONN16,CH14,PVDD0V9_3,0.915
|
||||
SWB1,CONN16,CH15,PVDD1V2_T3,1.224
|
||||
|
@@ -0,0 +1,56 @@
|
||||
# v1.0.10 — The soak loop stops spinning flat out, and shows you what is still running
|
||||
|
||||
## ✨ New features
|
||||
|
||||
**Every soak round now reports the background jobs**
|
||||
* Script B's monitoring loop prints `bgctl list` (platform jobs) and `jobs` (the login shell's own background jobs) on every pass, right after the platform data. A stress job that dies three hours into an overnight soak now shows up as a shorter list on the next round, instead of only being noticed at the end — or not at all.
|
||||
* The two lists answer different questions and are both worth having: `bgctl` knows about the platform's job runner, `jobs` knows about anything the macro backgrounded in that shell.
|
||||
|
||||
**A single table for all 144 margin channels**
|
||||
* `docs/LTC2980_channel_map.csv` flattens the nine `settings/*.conf` files into one sheet — `Board,CONN,Ch,NetName,Vnom` — so "which board and channel is `PVDD1V5_TSC` on?" is one search instead of opening nine files.
|
||||
* `tools/gen_channel_map.sh` regenerates it. **The CSV is output, not source**: edit the `.conf` files and re-run the script, never the other way round.
|
||||
* Unused channels stay in the table as `NC` / `-` rather than being dropped, because the channel number is also the PMBus page (`ch / 8` picks the chip, `ch % 8` picks the page) — filtering the gaps out would shift everything after them.
|
||||
|
||||
**The bench command lists that these scripts came from**
|
||||
* `tools/100G_PRBS.txt`, `tools/TR518.txt` and `tools/fan_ctrl.txt` join the existing `traffic_loopback_*.txt` set: the raw `bcmcmd` / sysfs sequences, kept in the form you can paste into a console when a script is misbehaving and you want to drive the hardware directly.
|
||||
|
||||
## 🐛 Bug fixes
|
||||
|
||||
**The soak loop ran as fast as the DUT could answer**
|
||||
* `while 1` had no pause at all, so each round started the moment the previous one finished. Over a long soak that means constant console traffic and a log full of near-identical samples taken seconds apart. The loop now ends each round with `pause 60`.
|
||||
* Note the gap this leaves: the Status sheet asks for a 10-minute sampling interval, and 60 seconds is still hard-coded rather than configurable. This makes the loop sane, it does not finish the job.
|
||||
|
||||
**A comment promised a cadence the code never had**
|
||||
* The loop was labelled `Get data every 10mins` while running with no delay whatsoever. It now says what it does.
|
||||
|
||||
## 📦 Downloads
|
||||
|
||||
| File | Contents |
|
||||
|---|---|
|
||||
| `Script_ABC_Blanton_V1.0.10.zip` | The full Tera Term working directory, including `Blanton_Script/` to copy onto the DUT |
|
||||
|
||||
**After copying to the DUT:**
|
||||
|
||||
```bash
|
||||
chmod +x ~/Blanton_Script/*.sh # see below
|
||||
grep -rlU $'\r' ~/Blanton_Script # expect no output
|
||||
```
|
||||
|
||||
`mgmt_ping_monitor.sh` and `port_prbs_monitor.sh` launch their workers through `bash`, so those two run without the execute bit. `bmc_monitor.sh` and `usb_target.sh` still need it, and neither git (mode 100644) nor a Windows/USB copy carries it. Without the `chmod`, `start` fails with `Permission denied` and the later `cat` finds nothing: **the section ends up empty and nothing reports an error.**
|
||||
|
||||
## ⚠️ Before you run
|
||||
|
||||
* **Declare the switch population.** `SWB_UNIT0` / `SWB_UNIT1` in `config.ttl` say which switch units this DUT has; traffic and the readiness gate both follow them.
|
||||
* **Set `FAN_SPEED`.** It is applied at the start of every run.
|
||||
* **Management connectivity is in use, not preserved.** Both management NICs are up and pinging — drive the run from the serial console.
|
||||
* **PRBS is still not wired into the macros.** Run `port_prbs_monitor.sh` by hand if you want it; the calls in A/B/C remain commented out, unchanged from v1.0.9.
|
||||
* **TR518 and the loopback traffic test cannot both run.** `tools/TR518.txt` sets `port all lb=mac` and `l2 learn off` across the whole unit, which is the same hardware `blanton_traffic_linespeed` is using. Pick one.
|
||||
* **Two settings persist to `config_db.json`** and survive a reboot: LLDP is left disabled and the 100G uplinks are left configured. Restore them before the DUT moves on.
|
||||
|
||||
## 🔗 Links
|
||||
|
||||
* [ARCHITECTURE.md](https://etgit.et-wen.com/etwen/Blanton_TTL_Script/src/branch/main/ARCHITECTURE.md) — test flow, data models, constraints
|
||||
* [CLAUDE.md](https://etgit.et-wen.com/etwen/Blanton_TTL_Script/src/branch/main/CLAUDE.md) — commands and the bench gotchas
|
||||
* [LTC2980_channel_map.csv](https://etgit.et-wen.com/etwen/Blanton_TTL_Script/src/branch/main/docs/LTC2980_channel_map.csv) — all 144 margin channels
|
||||
|
||||
**Full changelog:** [V1.0.9...V1.0.10](https://etgit.et-wen.com/etwen/Blanton_TTL_Script/compare/V1.0.9...V1.0.10)
|
||||
@@ -0,0 +1,59 @@
|
||||
# v1.0.11 — Saving the margin settings to NVM is now one command, and the command is correct
|
||||
|
||||
## ✨ New features
|
||||
|
||||
**`margin_save blanton` — all 18 LTC2977 in one go**
|
||||
* On this platform the CB FPGA's I2C channels are also exposed as ordinary Linux i2c buses, so every margin controller on the box — CB and both switch boards — can be reached with plain `i2cset`. `margin_save blanton` walks all 18 of them from one flat list: no `margin_init`, no FPGA channel setup, no `pcimem`.
|
||||
* The channel-to-bus mapping it relies on (F3 Ch6 → bus 13, Ch7 → 14, Ch8 → 15, Ch9 → 16; CB is bus 4 as before) is now written down in `ARCHITECTURE.md` and the margin README, not just known at the bench.
|
||||
* **A partly-populated DUT is a normal build.** Comment out the lines you do not have in `MARGIN_BLANTON_STORE` at the top of `margin.sh` rather than letting the tool talk to boards that are not there.
|
||||
* Missing bus and unresponsive chip are reported as two different failures. `/dev/i2c-16 does not exist` means the FPGA's i2c adapters did not enumerate; `i2cset failed (NACK/busy)` means the board is absent or the address is wrong. Chasing the second when you have the first wastes an afternoon.
|
||||
|
||||
**`margin_save all` — every board in `settings/`**
|
||||
* Runs `margin_init` + `margin_save` across all nine boards, then puts back whichever board you had loaded, so a following `margin_status` still reports the board you were looking at.
|
||||
* It does not stop at the first failure: a half-saved set is harder to reason about than a fully-attempted one. The summary names the boards that failed.
|
||||
|
||||
Both print a per-chip line and a `N saved, M failed` tally, and both return a non-zero exit code when anything failed.
|
||||
|
||||
**The fans now default to full speed**
|
||||
* `FAN_SPEED` in `config.ttl` is 100 instead of 30. A soak is a thermal test of everything *except* the cooling, so the cooling should not be a variable in it — and a DUT that throttles halfway through a run produces results that look like a different fault. Lower it deliberately if quiet operation is what you are measuring.
|
||||
|
||||
## 🐛 Bug fixes
|
||||
|
||||
**A failed NVM write still reported success**
|
||||
* `margin_save` discarded the result of every write, so a NACK printed `Change Saved` exactly like a successful store. For the one operation in this tool that is permanent, that is the worst place to stay quiet. Each store is now checked and named if it fails.
|
||||
|
||||
**`STORE_USER_ALL` was sent with a data byte it should not have**
|
||||
* The command went out as `0x15` followed by a dummy `0x00` — an SMBus write-byte, where `STORE_USER_ALL` is a send-byte. The LTC2977 tolerated it, but tolerance is not correctness. It is now `i2cset ... 0x15 c` on the native path and a no-data `cb_pmbus_write` on the FPGA path.
|
||||
|
||||
## 📦 Downloads
|
||||
|
||||
| File | Contents |
|
||||
|---|---|
|
||||
| `Script_ABC_Blanton_V1.0.11.zip` | The full Tera Term working directory, including `Blanton_Script/` to copy onto the DUT |
|
||||
|
||||
**After copying to the DUT:**
|
||||
|
||||
```bash
|
||||
chmod +x ~/Blanton_Script/*.sh # see below
|
||||
grep -rlU $'\r' ~/Blanton_Script # expect no output
|
||||
```
|
||||
|
||||
`mgmt_ping_monitor.sh` and `port_prbs_monitor.sh` launch their workers through `bash`, so those two run without the execute bit. `bmc_monitor.sh` and `usb_target.sh` still need it, and neither git (mode 100644) nor a Windows/USB copy carries it. Without the `chmod`, `start` fails with `Permission denied` and the later `cat` finds nothing: **the section ends up empty and nothing reports an error.**
|
||||
|
||||
## ⚠️ Before you run
|
||||
|
||||
* **`margin_save` in any form writes NVM permanently.** A power cycle does not undo it. `margin_save all` and `margin_save blanton` do it to all 18 controllers at once. Run `margin_status_all.sh` first and never call any of them during a test run — the macros do not, and should not be made to.
|
||||
* **The 18 raw commands were verified on the DUT; the wrapper was not.** `margin_save blanton` issues exactly the sequence that was run by hand at the bench, and the packaging was tested against stubbed hardware, but the function itself has not been run on a DUT yet. Watch the per-chip lines the first time.
|
||||
* **Declare the switch population.** `SWB_UNIT0` / `SWB_UNIT1` in `config.ttl` say which switch units this DUT has; traffic and the readiness gate both follow them.
|
||||
* **`FAN_SPEED` is now 100.** It is applied at the start of every run, so this build runs the fans flat out unless you change `config.ttl`. Expect the noise.
|
||||
* **Management connectivity is in use, not preserved.** Both management NICs are up and pinging — drive the run from the serial console.
|
||||
* **PRBS is still not wired into the macros.** Run `port_prbs_monitor.sh` by hand if you want it; the calls in A/B/C remain commented out.
|
||||
* **Two settings persist to `config_db.json`** and survive a reboot: LLDP is left disabled and the 100G uplinks are left configured. Restore them before the DUT moves on.
|
||||
|
||||
## 🔗 Links
|
||||
|
||||
* [ARCHITECTURE.md](https://etgit.et-wen.com/etwen/Blanton_TTL_Script/src/branch/main/ARCHITECTURE.md) — test flow, data models, constraints
|
||||
* [CLAUDE.md](https://etgit.et-wen.com/etwen/Blanton_TTL_Script/src/branch/main/CLAUDE.md) — commands and the bench gotchas
|
||||
* [LTC2980_Margin_Script/README.md](https://etgit.et-wen.com/etwen/Blanton_TTL_Script/src/branch/main/src/Script_ABC_Blanton/Blanton_Script/LTC2980_Margin_Script/README.md) — the three `margin_save` variants and what each one sends
|
||||
|
||||
**Full changelog:** [V1.0.10...V1.0.11](https://etgit.et-wen.com/etwen/Blanton_TTL_Script/compare/V1.0.10...V1.0.11)
|
||||
@@ -0,0 +1,65 @@
|
||||
# v1.0.7 — Management-link ping test, and the fans start where you set them
|
||||
|
||||
## ✨ New features
|
||||
|
||||
**10G / 1G management port ping test**
|
||||
* New `mgmt_ping_monitor.sh` exercises both management NICs in one loop: it brings each up with iproute2, waits for the link to settle, then pings that NIC's own target — `eth0` → `192.168.1.30`, `eth1` → `192.168.1.31`.
|
||||
* Runs detached like the other monitors: `start` / `stop` / `status` / `fg` / `summary`. `start` clears the previous log, so one run means one log.
|
||||
* Every leg writes a single greppable line — `RESULT 10G eth0 -> 192.168.1.30 tx=10 rx=10 loss=0% rtt_avg=1.743ms nic_tx=10 nic_rx=10 PASS` — so a whole soak can be read with `summary` instead of scrolling.
|
||||
* `nic_tx` / `nic_rx` are that interface's own counter delta across the burst. If a ping passes but they stay near zero, the traffic left on the *other* NIC and the number does not belong to this one.
|
||||
* Script A runs one round as a baseline; Script B leaves it running through the soak.
|
||||
|
||||
**Fan speed is set at the start of every run**
|
||||
* `FAN_SPEED` in `config.ttl` (default 30) is applied by Script A, so a run no longer inherits whatever the previous test left the fans doing.
|
||||
* Both MAX31790 controllers are rebound first, which clears a controller left in an odd state.
|
||||
|
||||
**Stress load moved onto the platform's own job runner**
|
||||
* CPU, DDR, SSD and USB stress now go through `bgctl`, replacing the `~/hammer/tools/stress_*.py` scripts. `bgctl list` shows what is running; Script C stops everything with `bgctl stop --all`.
|
||||
* BMC DDR stress runs through `bmc-manager`, and a new BMC USB test discovers the `cdc_ncm` interface and pings across it for four hours under `systemd-run`.
|
||||
|
||||
**More of the DUT on record**
|
||||
* Script A now captures the boot image, `show version`, firmware status, system EEPROM, SSD health, TPM version and NVMe SMART data before the test starts.
|
||||
* PCIe AER now sits next to `ras-mc-ctl --summary`, and Script C closes with NVMe health so a disk that degraded during the soak is visible.
|
||||
* `dmesg` capture uses human-readable timestamps and one combined error pattern, then clears the ring buffer — so Script C's dmesg shows only what the soak produced, not everything since boot.
|
||||
* Each run opens with `hw-test-session start` and closes with `finish`; Script C copies the job logs to `/mnt/usb/jobs-<date>_<time>` so they leave the DUT with the run they belong to.
|
||||
|
||||
## 🐛 Bug fixes
|
||||
|
||||
**Script A no longer hangs waiting for ports that are already up**
|
||||
* The readiness gate required *more than* 216 ports up, but a fully cabled unit reports exactly 216 — 108 loopback pairs times two. Script A sat in the poll loop forever on the very state it was waiting for. It now proceeds at 216.
|
||||
* The comments in `wait_init.ttl` still described the old "more than" rule; they now match the code, so the off-by-one cannot be reintroduced by reading the wrong line.
|
||||
|
||||
**The macro no longer runs ahead of the DUT during the soak**
|
||||
* Script B set a 15-second wait cap for the `cdc_ncm` probe and never restored it. In Tera Term that cap is global, so it stayed in force for everything after — including the traffic setup, which walks 108 VLANs per switch unit and takes far longer. A timed-out wait returns without the prompt, leaving every later command issued a step early.
|
||||
|
||||
**Fan controller is no longer bound twice**
|
||||
* One of the two MAX31790 controllers received a second `bind` immediately after the first, which could only fail because the driver was already attached.
|
||||
|
||||
## 📦 Downloads
|
||||
|
||||
| File | Contents |
|
||||
|---|---|
|
||||
| `Script_ABC_Blanton_V1.0.7.zip` | The full Tera Term working directory, including `Blanton_Script/` to copy onto the DUT |
|
||||
|
||||
**After copying to the DUT:**
|
||||
|
||||
```bash
|
||||
chmod +x ~/Blanton_Script/*.sh # required -- see below
|
||||
grep -rlU $'\r' ~/Blanton_Script # expect no output
|
||||
```
|
||||
|
||||
The `chmod +x` is not optional. `mgmt_ping_monitor.sh` is executed rather than sourced and re-execs its own path to daemonise, and neither git (mode 100644) nor a Windows/USB copy carries the execute bit. Without it `start` fails with `Permission denied` and the later `cat` finds nothing — **the section ends up empty and nothing reports an error**.
|
||||
|
||||
## ⚠️ Before you run
|
||||
|
||||
* **Declare the switch population.** `SWB_UNIT0` / `SWB_UNIT1` in `config.ttl` say which switch units this DUT has. Traffic and the readiness gate both follow them: a single unit gets `-u 0` or `-u 1`, and with neither set the traffic stage is skipped instead of failing against hardware that is not there.
|
||||
* **Both management NICs stay up.** If they share a subnet, keep `ARP_STRICT=1` — otherwise the target's ARP can be answered by either NIC and a reply may arrive on the one that did not send.
|
||||
* **Management connectivity is exercised, not preserved.** Drive the run from the serial console.
|
||||
* **Two settings persist to `config_db.json`** and survive a reboot: LLDP is left disabled, and the 100G uplinks are left configured. Restore them before the DUT moves on.
|
||||
|
||||
## 🔗 Links
|
||||
|
||||
* [ARCHITECTURE.md](https://etgit.et-wen.com/etwen/Blanton_TTL_Script/src/branch/main/ARCHITECTURE.md) — test flow, data models, constraints
|
||||
* [CLAUDE.md](https://etgit.et-wen.com/etwen/Blanton_TTL_Script/src/branch/main/CLAUDE.md) — commands and the bench gotchas
|
||||
|
||||
**Full changelog:** [V1.0.5...V1.0.7](https://etgit.et-wen.com/etwen/Blanton_TTL_Script/compare/V1.0.5...V1.0.7)
|
||||
@@ -0,0 +1,61 @@
|
||||
# v1.0.8 — Both management links tested at once, and ARP stops looking like packet loss
|
||||
|
||||
## ✨ New features
|
||||
|
||||
**Both management NICs are pinged simultaneously and continuously**
|
||||
* `mgmt_ping_monitor.sh` no longer alternates fixed bursts. `start` configures both NICs, then pings from each at the same time and keeps accumulating until stopped — so a soak-long run is one continuous measurement rather than a series of snapshots.
|
||||
* `stop` renders a report into the log: the last 20 entries per NIC, each one's ping statistics and PASS/FAIL, then `ip -s link show` for both interfaces.
|
||||
* Every line is timestamped, and a request that got no reply prints a marker instead of merely being absent — a drop is visible in the tail, not inferred from a gap in the sequence numbers.
|
||||
* `status` shows both pids and how many replies each NIC has received so far, which is the quick way to see one side is dead without waiting for the report.
|
||||
|
||||
**The USB stress target is detected, not assumed**
|
||||
* New `usb_target.sh` reports an inserted USB device's node, mount point or by-id path. Script B asks it for the node and builds the stress command from the answer, so a stick that enumerates as `sdb` no longer sends a write test at whatever `/dev/sda1` happens to be.
|
||||
* It excludes whatever disk backs `/` and `/host` — this platform can boot from a USB DOM, which also reports as USB — refuses to guess when several USB disks are present, and when it mounts, verifies the result is actually writable rather than trusting that `mount` succeeded.
|
||||
|
||||
**BMC I2C integrity is exercised through the soak**
|
||||
* `bmc_monitor.sh` is back in the run and now writes two complementary patterns to a BMC scratch register and reads each back. One pattern alone cannot catch a bit stuck the same way it was written; repeating the pair through the soak turns an intermittent I2C fault into something the log records rather than something the tester has to witness.
|
||||
|
||||
**Test artefacts leave the DUT with the run**
|
||||
* Script C copies `bmc_poll.log` and `mgmt_ping.log` into the job directory before it is archived to USB, so the monitors' output travels with the `bgctl` job logs.
|
||||
* DDR stress now runs continuously instead of stopping after 100 passes, matching the other soak loads.
|
||||
|
||||
## 🐛 Bug fixes
|
||||
|
||||
**Three FAILs that were not link faults**
|
||||
* A bench run reported `FAIL=3` with zero NIC errors, zero drops and sub-millisecond replies. Every failure was missing exactly `icmp_seq=1` and nothing else: once the neighbour entry for the target expires, the first echo request is spent resolving ARP and `ping` counts it as loss. A discarded warm-up ping per NIC now absorbs that, which is what lets the loss threshold stay at zero and still mean something. Raising the threshold instead would have hidden genuine single-packet loss.
|
||||
|
||||
**Job logs were being cleared before they were collected**
|
||||
* Script C ran `bgctl reset --yes` while killing processes — before the job directory is copied to USB. Moved to after the archive, so a run's own logs are collected before anything clears them.
|
||||
|
||||
**The fan controller was bound twice**
|
||||
* One of the two MAX31790 controllers received a second `bind` immediately after the first, which could only fail because the driver was already attached.
|
||||
|
||||
## 📦 Downloads
|
||||
|
||||
| File | Contents |
|
||||
|---|---|
|
||||
| `Script_ABC_Blanton_V1.0.8.zip` | The full Tera Term working directory, including `Blanton_Script/` to copy onto the DUT |
|
||||
|
||||
**After copying to the DUT:**
|
||||
|
||||
```bash
|
||||
chmod +x ~/Blanton_Script/*.sh # see below
|
||||
grep -rlU $'\r' ~/Blanton_Script # expect no output
|
||||
```
|
||||
|
||||
`mgmt_ping_monitor.sh` no longer re-execs itself, so `bash mgmt_ping_monitor.sh start` works without the execute bit. `bmc_monitor.sh` and `usb_target.sh` still need it — and neither git (mode 100644) nor a Windows/USB copy carries it. Without the `chmod`, `start` fails with `Permission denied` and the later `cat` finds nothing: **the section ends up empty and nothing reports an error.**
|
||||
|
||||
## ⚠️ Before you run
|
||||
|
||||
* **Declare the switch population.** `SWB_UNIT0` / `SWB_UNIT1` in `config.ttl` say which switch units this DUT has. Traffic and the readiness gate both follow them; with neither set the traffic stage is skipped rather than failing against hardware that is not there.
|
||||
* **Set the fan speed you want.** `FAN_SPEED` in `config.ttl` is applied at the start of every run.
|
||||
* **Management connectivity is in use, not preserved.** Both NICs are up and pinging — drive the run from the serial console.
|
||||
* **If the two management NICs share a subnet, keep `ARP_STRICT=1`.** Otherwise the target's ARP can be answered by either NIC and a reply may arrive on the one that did not send. Check `nic_tx` / `nic_rx` on the RESULT line: they are that interface's own counter delta.
|
||||
* **Two settings persist to `config_db.json`** and survive a reboot: LLDP is left disabled and the 100G uplinks are left configured. Restore them before the DUT moves on.
|
||||
|
||||
## 🔗 Links
|
||||
|
||||
* [ARCHITECTURE.md](https://etgit.et-wen.com/etwen/Blanton_TTL_Script/src/branch/main/ARCHITECTURE.md) — test flow, data models, constraints
|
||||
* [CLAUDE.md](https://etgit.et-wen.com/etwen/Blanton_TTL_Script/src/branch/main/CLAUDE.md) — commands and the bench gotchas
|
||||
|
||||
**Full changelog:** [V1.0.7...V1.0.8](https://etgit.et-wen.com/etwen/Blanton_TTL_Script/compare/V1.0.7...V1.0.8)
|
||||
@@ -0,0 +1,63 @@
|
||||
# v1.0.9 — 100G PRBS testing, and the job logs actually reach the USB stick
|
||||
|
||||
## ✨ New features
|
||||
|
||||
**100G uplink PRBS test**
|
||||
* New `port_prbs_monitor.sh` drives a PRBS test on both 100G uplinks: it clears low-power mode, arms the pattern, then polls `phy diag <phy> prbs get` in the background until stopped. A poll counts as PASS only when the output says `PRBS OK!`; `prbsstat Ber` is captured alongside every poll for the record.
|
||||
* `stop` runs `prbsstat STOp` and `prbs clear` on each port before rendering the report, so the test does not leave PRBS armed behind it.
|
||||
* `report` gives the tally the bench actually wants:
|
||||
|
||||
```
|
||||
PORT POLLS PASS FAIL RESULT
|
||||
Ethernet513 42 42 0 PASS
|
||||
Ethernet514 42 40 2 FAIL
|
||||
```
|
||||
* **One port at a time is a first-class mode.** `start a` or `start b` runs a single uplink, which is how you separate a genuine port fault from the DUT not coping with two PRBS streams at once. A port that was not run reports `SKIP`, not `FAIL`.
|
||||
* Every command and its full output — setup, each poll, teardown — goes to that port's raw log.
|
||||
|
||||
> ⚠️ The script ships in this build and can be run by hand, but **the calls in Script A, B and C are commented out**: PRBS is still under bring-up on this platform.
|
||||
|
||||
**USB target detection**
|
||||
* `usb_target.sh` reports an inserted USB device's node, mount point or by-id path. It excludes whatever disk backs `/` and `/host` — this platform can boot from a USB DOM, which also reports as USB — refuses to guess when several USB disks are present, and when mounting, verifies the result is writable rather than trusting that `mount` succeeded.
|
||||
* Script B builds the USB stress command from the detected node instead of a hard-coded `/dev/sda1`.
|
||||
|
||||
## 🐛 Bug fixes
|
||||
|
||||
**The job logs were being written to a path nobody collected**
|
||||
* Stress output, the monitors' logs and the USB archive disagreed about where the job directory lives. Everything now uses `/host/hw-eval/jobs/`, so what Script B writes is what Script C copies out.
|
||||
|
||||
**Script C copied to a USB that was never mounted**
|
||||
* The archive step assumed `/mnt/usb` was ready. Script C now finds the device and mounts it first, so a run's logs leave the DUT instead of being written into an empty mount point.
|
||||
|
||||
**`show interfaces status` right after starting PRBS reads as a failure**
|
||||
* With PRBS armed the link is out of normal operation and reports DOWN. `port_prbs_monitor.sh` deliberately does not print the port status at `start` — it appears in the report instead, after `prbs clear`, labelled as the recovered state.
|
||||
|
||||
## 📦 Downloads
|
||||
|
||||
| File | Contents |
|
||||
|---|---|
|
||||
| `Script_ABC_Blanton_V1.0.9.zip` | The full Tera Term working directory, including `Blanton_Script/` to copy onto the DUT |
|
||||
|
||||
**After copying to the DUT:**
|
||||
|
||||
```bash
|
||||
chmod +x ~/Blanton_Script/*.sh # see below
|
||||
grep -rlU $'\r' ~/Blanton_Script # expect no output
|
||||
```
|
||||
|
||||
`mgmt_ping_monitor.sh` and `port_prbs_monitor.sh` launch their workers through `bash`, so those two run without the execute bit. `bmc_monitor.sh` and `usb_target.sh` still need it, and neither git (mode 100644) nor a Windows/USB copy carries it. Without the `chmod`, `start` fails with `Permission denied` and the later `cat` finds nothing: **the section ends up empty and nothing reports an error.**
|
||||
|
||||
## ⚠️ Before you run
|
||||
|
||||
* **Declare the switch population.** `SWB_UNIT0` / `SWB_UNIT1` in `config.ttl` say which switch units this DUT has; traffic and the readiness gate both follow them.
|
||||
* **Set `FAN_SPEED`.** It is applied at the start of every run.
|
||||
* **Management connectivity is in use, not preserved.** Both management NICs are up and pinging — drive the run from the serial console.
|
||||
* **PRBS is not wired into the macros yet.** Run `port_prbs_monitor.sh` by hand if you want it; uncommenting the calls in A/B/C is not supported in this build.
|
||||
* **Two settings persist to `config_db.json`** and survive a reboot: LLDP is left disabled and the 100G uplinks are left configured. Restore them before the DUT moves on.
|
||||
|
||||
## 🔗 Links
|
||||
|
||||
* [ARCHITECTURE.md](https://etgit.et-wen.com/etwen/Blanton_TTL_Script/src/branch/main/ARCHITECTURE.md) — test flow, data models, constraints
|
||||
* [CLAUDE.md](https://etgit.et-wen.com/etwen/Blanton_TTL_Script/src/branch/main/CLAUDE.md) — commands and the bench gotchas
|
||||
|
||||
**Full changelog:** [V1.0.8...V1.0.9](https://etgit.et-wen.com/etwen/Blanton_TTL_Script/compare/V1.0.8...V1.0.9)
|
||||
@@ -0,0 +1,81 @@
|
||||
# v1.1.0 — BER, power under load, and a 100G port that actually keeps sending
|
||||
|
||||
## ✨ New features
|
||||
|
||||
**Whole-switch SerDes BER sweep**
|
||||
* New `blanton_ber.sh` runs PRBS across every cabled port and reports the bit error rate lane by lane. `init` → `start` → wait → `report` → `stop` → `clear`, with `-u 0` / `-u 1` for a single switch unit.
|
||||
* **A lane passes only when its BER is below 1e-6.** Equal to the threshold is a FAIL, not a pass. `-c <ber>` sets a different bar.
|
||||
* `report` ends with a summary across both units, and each unit's row carries its **worst lane** — so a run where everything passes still tells you how much margin there was:
|
||||
|
||||
```
|
||||
Unit LANES PASS FAIL NA WORST BER WORST LANE RESULT
|
||||
unit 0 432 432 0 0 1.98e-08 203[0] PASS
|
||||
unit 1 432 432 0 0 6.34e-10 366[1] PASS
|
||||
```
|
||||
* `init` also checks that every lane locked. This matters: an unlocked lane still reports a BER later, and it is a meaningless one. Without the check, a dead lane can report a beautiful number and pass.
|
||||
* A lane whose reading is not a number is `NA` — counted separately from `FAIL`, because "not measured" and "measured and bad" are different problems.
|
||||
* Script C runs the sweep after the traffic report, following `SWB_UNIT0` / `SWB_UNIT1` the same way the traffic block does.
|
||||
|
||||
**TR518 load test, for measuring power under traffic**
|
||||
* New `blanton_tr518.sh` puts the cd ports in loopback and runs the built-in `tr 518` packet test, then waits `TR_SETTLE_SEC` (120s by default) before handing back — so the power figures you take afterwards are loaded and settled, not caught mid-ramp.
|
||||
* `-u 0` / `-u 1` for one unit; no flag runs both.
|
||||
* `stop` sends `port cd lb=none` and nothing else, which is exactly what the bench procedure does. **L2 learning and test mode are left as `start` set them** — the tool says so on every `stop` rather than quietly leaving the box in a state you did not ask about. `TR_RESTORE_LEARN=1` / `TR_RESTORE_TESTMODE=1` if you want a true inverse.
|
||||
|
||||
**Per-rail power readback for both switch boards**
|
||||
* `TH6_SWB0_power_readback.sh` / `TH6_SWB1_power_readback.sh` report V × I and total power for the 19 rails on each board.
|
||||
|
||||
## 🐛 Bug fixes
|
||||
|
||||
**The power readback measured every rail at a different moment**
|
||||
* It ran `show platform voltage` and `show platform current` once *per rail* — 38 invocations of a slow CLI, and 38 different instants. Under load the currents move a lot (`TH6_CORE` was seen going from 186 A to 636 A), so the "total" was a sum of readings taken seconds apart. Both tables are now read once, up front. Same output, one moment.
|
||||
* A rail missing from the sensor table used to contribute a silent `0.000 V / 0.00 W` to the total. It now says so on stderr; the printed report format is unchanged.
|
||||
|
||||
**The 100G port stopped sending after one round trip**
|
||||
* `ce0` has no loopback partner, and a switch never forwards a frame back out the port it arrived on — so a `tx` burst went out, came back, and was dropped. TX 100, RX 100, silence. That measures the link; it does not exercise it.
|
||||
* `init` now sets an ingress mirror of `ce0` back to itself. The mirrored copy is not egress-filtered, so each packet keeps lapping and the load is set by how much you inject (`-tx`). **`stop` is what ends it** — removing the VLAN membership does not, because the mirrored copy never consulted the VLAN.
|
||||
|
||||
**The 100G verdict was being decided the wrong way**
|
||||
* `ce0` was treated as a cross-unit check. The bench says otherwise: there is one `ce0` per unit and a burst sent on unit 0 alone came back on unit 0. It is now judged within its own unit. The distinction is invisible while everything works and decisive when it does not — read as cross-unit, *both* links dying still leaves `unit0.TX == unit1.RX` (0 == 0) and reports PASS.
|
||||
|
||||
**Every BER lane reported `NA`, and the Port column printed `NA` too**
|
||||
* `bcmcmd` returns CRLF, and the BER is the last token on its line, so the carriage return stayed glued to the number: it failed the numeric check, and printing it sent the cursor back to column 1 so the RESULT column overwrote the start of the row. Both symptoms, one stray `\r`.
|
||||
|
||||
## 📦 Downloads
|
||||
|
||||
| File | Contents |
|
||||
|---|---|
|
||||
| `Script_ABC_Blanton_V1.1.0.zip` | The full Tera Term working directory, including `Blanton_Script/` to copy onto the DUT |
|
||||
|
||||
**After copying to the DUT:**
|
||||
|
||||
```bash
|
||||
chmod +x ~/Blanton_Script/*.sh # see below
|
||||
grep -rlU $'\r' ~/Blanton_Script # expect no output
|
||||
```
|
||||
|
||||
`blanton_ber.sh` is invoked by Script C as `./Blanton_Script/blanton_ber.sh`, so it joins `bmc_monitor.sh` and `usb_target.sh` in needing the execute bit — and neither git nor a Windows/USB copy carries it reliably. Without the `chmod` the BER section fails with `Permission denied` and the log simply has no BER in it.
|
||||
|
||||
## ⚠️ Before you run
|
||||
|
||||
* **These three tests cannot share the switch.** `blanton_ber.sh`, `blanton_tr518.sh` and `blanton_traffic_linespeed` all take over port loopback and L2 learning. Run one at a time; Script C already orders BER after the traffic report.
|
||||
* **PRBS takes the links down.** While `blanton_ber.sh` is armed the ports report DOWN and no traffic passes. That is the test working, not a fault. `clear` releases them.
|
||||
* **`ce0` keeps running until you stop it.** If a run is interrupted between `start` and `stop`, the 100G port stays saturated with nothing in `show interfaces status` to hint at it. `blanton_traffic_linespeed stop` (or `bcmcmd -n <u> -c 'mirror port ce0 Mode=Off'`) ends it.
|
||||
* **Two numbers must stay in step**: Script C's `sleep 30` and `blanton_ber.sh`'s `BER_INTERVAL`. Change one without the other and `report` reads an interval that has not finished accumulating — with no warning.
|
||||
* **`FAN_SPEED` is 100.** This build runs the fans flat out unless you change `config.ttl`.
|
||||
* **Declare the switch population** with `SWB_UNIT0` / `SWB_UNIT1`; traffic, the readiness gate and now the BER sweep all follow it.
|
||||
* **PRBS on the two 100G uplinks (`port_prbs_monitor.sh`) is still not wired into the macros.** Unchanged from v1.0.9.
|
||||
|
||||
## 🔬 Not yet verified on hardware
|
||||
|
||||
Three things in this build were reasoned out rather than measured, and each has a one-command check:
|
||||
|
||||
* **The `ce0` ingress mirror.** `mirror port ce0 Mode=Ingress DestPort=ce0` should make the port circulate, but the hardware may refuse a mirror destination equal to its source. Check `show c | grep POK.ce0` twice ten seconds apart — the number must climb. The report cannot tell you: a one-shot burst is also `TX == RX` and also says PASS. Fallback is `tr 518 PortList=268`.
|
||||
* **The 120s settle in `blanton_tr518.sh`.** If `tr 518`'s traffic is time-limited (its parameters include `runtime=1`, `CheckDataTime=200`), waiting 120s could mean measuring after the load has already dropped. Compare a power readback at 0s, 30s and 120s.
|
||||
* **`test mode nr=no`** in `blanton_tr518.sh` is the derived inverse of the `nr=yes` that `start` sends; it is not part of the bench-verified sequence, and is off by default.
|
||||
|
||||
## 🔗 Links
|
||||
|
||||
* [ARCHITECTURE.md](https://etgit.et-wen.com/etwen/Blanton_TTL_Script/src/branch/main/ARCHITECTURE.md) — test flow, data models, constraints
|
||||
* [CLAUDE.md](https://etgit.et-wen.com/etwen/Blanton_TTL_Script/src/branch/main/CLAUDE.md) — commands and the bench gotchas
|
||||
|
||||
**Full changelog:** [V1.0.11...V1.1.0](https://etgit.et-wen.com/etwen/Blanton_TTL_Script/compare/V1.0.11...V1.1.0)
|
||||
@@ -0,0 +1,42 @@
|
||||
# v1.1.1 — A run no longer inherits the last one's leftovers
|
||||
|
||||
## 🐛 Bug fixes
|
||||
|
||||
**A previous run's jobs and session survived into the next one**
|
||||
* Script A now clears the box before it starts: `hw-test-session finish`, `bgctl reset --yes`, `bgctl stop --all`, then `bgctl list` so you can see it came back empty.
|
||||
* This matters after a run that ended badly — a closed Tera Term window, a DUT reboot mid-soak, a macro stopped by hand. The stress jobs kept running and the session stayed open, so the next run started on a box that was already loaded. Nothing failed; the numbers were just quietly wrong, and the only hint was a `bgctl list` nobody was reading.
|
||||
* The `bgctl list` at the end is the point of the sequence, not decoration: it is the one line in the log that proves the DUT was idle when the run began.
|
||||
|
||||
## 📦 Downloads
|
||||
|
||||
| File | Contents |
|
||||
|---|---|
|
||||
| `Script_ABC_Blanton_V1.1.1.zip` | The full Tera Term working directory, including `Blanton_Script/` to copy onto the DUT |
|
||||
|
||||
**After copying to the DUT:**
|
||||
|
||||
```bash
|
||||
chmod +x ~/Blanton_Script/*.sh # see below
|
||||
grep -rlU $'\r' ~/Blanton_Script # expect no output
|
||||
```
|
||||
|
||||
`blanton_ber.sh` is invoked by Script C as `./Blanton_Script/blanton_ber.sh`, so it needs the execute bit along with `bmc_monitor.sh` and `usb_target.sh` — and neither git nor a Windows/USB copy carries it reliably. Without the `chmod` the BER section fails with `Permission denied` and the log simply has no BER in it.
|
||||
|
||||
## ⚠️ Before you run
|
||||
|
||||
* **`hw-test-session finish` at the start will complain if no session is open.** That is expected on a fresh DUT and does not stop the run.
|
||||
* **These three tests cannot share the switch.** `blanton_ber.sh`, `blanton_tr518.sh` and `blanton_traffic_linespeed` all take over port loopback and L2 learning. Script C already orders BER after the traffic report.
|
||||
* **PRBS takes the links down** while `blanton_ber.sh` is armed. That is the test working, not a fault.
|
||||
* **`ce0` keeps running until you stop it.** If a run is interrupted between `start` and `stop`, the 100G port stays saturated with nothing in `show interfaces status` to hint at it.
|
||||
* **Two numbers must stay in step**: Script C's `sleep 30` and `blanton_ber.sh`'s `BER_INTERVAL`.
|
||||
* **`FAN_SPEED` is 100** — the fans run flat out unless you change `config.ttl`.
|
||||
* **Declare the switch population** with `SWB_UNIT0` / `SWB_UNIT1`.
|
||||
* **PRBS on the two 100G uplinks (`port_prbs_monitor.sh`) is still not wired into the macros.**
|
||||
* **The three items listed as unverified in v1.1.0 are still unverified**: the `ce0` ingress mirror, the 120s settle in `blanton_tr518.sh`, and `test mode nr=no` on stop. See [v1.1.0](https://etgit.et-wen.com/etwen/Blanton_TTL_Script/releases/tag/V1.1.0) for the one-command check on each.
|
||||
|
||||
## 🔗 Links
|
||||
|
||||
* [ARCHITECTURE.md](https://etgit.et-wen.com/etwen/Blanton_TTL_Script/src/branch/main/ARCHITECTURE.md) — test flow, data models, constraints
|
||||
* [CLAUDE.md](https://etgit.et-wen.com/etwen/Blanton_TTL_Script/src/branch/main/CLAUDE.md) — commands and the bench gotchas
|
||||
|
||||
**Full changelog:** [V1.1.0...V1.1.1](https://etgit.et-wen.com/etwen/Blanton_TTL_Script/compare/V1.1.0...V1.1.1)
|
||||
@@ -0,0 +1,63 @@
|
||||
# v1.1.2 — NFC tag reads are now watched for the whole soak, not sampled once
|
||||
|
||||
## ✨ New features
|
||||
|
||||
**Background NFC polling**
|
||||
* New `nfc_polling.sh` runs `blantons_nfc_validate.py` over and over in the background and keeps score. `start` / `stop` / `status` / `tail` / `report` / `clear` / `fg`.
|
||||
* **`report` works while the poll is still running.** It only reads the log, so it never disturbs the run — and it labels itself `RUNNING` so a mid-soak snapshot is not mistaken for the final answer:
|
||||
|
||||
```
|
||||
state : RUNNING (pid=2240323) -- this is a snapshot, the count is still moving
|
||||
rounds : 240
|
||||
PASS : 238
|
||||
FAIL : 2
|
||||
ERROR : 0 (tool did not produce a verdict)
|
||||
RESULT : FAIL
|
||||
|
||||
--- tags seen ---
|
||||
046F7BD2142290 238
|
||||
```
|
||||
* **`ERROR` is counted apart from `FAIL`.** A round where the tool printed neither `[PASS]` nor `[FAIL]` — it crashed, the file was missing, it hung past the timeout — did not measure anything. That is a different problem from a tag that would not read, and rolling the two together hides whichever one you are not looking for.
|
||||
* `report` also lists which NFCID1s were seen and how often, and the last ten failures with their timestamps and reasons.
|
||||
* `start` clears the log first, so a report always describes the run you just did rather than everything since the DUT was built.
|
||||
* Script A takes a 30-second NFC baseline, Script B starts the poll for the soak, Script C stops it with the other monitors and reports.
|
||||
|
||||
## 🐛 Bug fixes
|
||||
|
||||
**The NFC log never reached the USB stick**
|
||||
* Script C copied `nfc_polling.log`; the file is `nfc_poll.log`. The `cp` failed, nothing checked it, and the run finished looking fine — you would only notice back at the desk with a job archive that had no NFC log in it.
|
||||
|
||||
## 📦 Downloads
|
||||
|
||||
| File | Contents |
|
||||
|---|---|
|
||||
| `Script_ABC_Blanton_V1.1.2.zip` | The full Tera Term working directory, including `Blanton_Script/` to copy onto the DUT |
|
||||
|
||||
**After copying to the DUT:**
|
||||
|
||||
```bash
|
||||
chmod +x ~/Blanton_Script/*.sh # see below
|
||||
grep -rlU $'\r' ~/Blanton_Script # expect no output
|
||||
```
|
||||
|
||||
`blanton_ber.sh` and `nfc_polling.sh` are invoked by the macros through `./` or `~/`, so they need the execute bit along with `bmc_monitor.sh` and `usb_target.sh` — neither git nor a Windows/USB copy carries it reliably. `blantons_nfc_validate.py` does **not** need it: `nfc_polling.sh` calls it through `python3` precisely so one more `chmod` cannot be forgotten.
|
||||
|
||||
## ⚠️ Before you run
|
||||
|
||||
* **`nfc_polling.sh start` clears the log.** Script B starts a fresh poll for the soak, which wipes Script A's baseline log — the baseline numbers are already in the master console log by then, but the file is gone.
|
||||
* **NFC log path is `~/Blanton_Script/log/nfc_poll.log`** and it is copied into the job directory by Script C for the USB archive.
|
||||
* **These three tests cannot share the switch.** `blanton_ber.sh`, `blanton_tr518.sh` and `blanton_traffic_linespeed` all take over port loopback and L2 learning. Script C already orders BER after the traffic report.
|
||||
* **PRBS takes the links down** while `blanton_ber.sh` is armed. That is the test working, not a fault.
|
||||
* **`ce0` keeps running until you stop it.** An interrupted run leaves the 100G port saturated with nothing in `show interfaces status` to hint at it.
|
||||
* **Two numbers must stay in step**: Script C's `sleep 30` and `blanton_ber.sh`'s `BER_INTERVAL`.
|
||||
* **`FAN_SPEED` is 100** — the fans run flat out unless you change `config.ttl`.
|
||||
* **Declare the switch population** with `SWB_UNIT0` / `SWB_UNIT1`.
|
||||
* **PRBS on the two 100G uplinks (`port_prbs_monitor.sh`) is still not wired into the macros.**
|
||||
* **The three items listed as unverified in v1.1.0 are still unverified**: the `ce0` ingress mirror, the 120s settle in `blanton_tr518.sh`, and `test mode nr=no` on stop. See [v1.1.0](https://etgit.et-wen.com/etwen/Blanton_TTL_Script/releases/tag/V1.1.0) for the one-command check on each.
|
||||
|
||||
## 🔗 Links
|
||||
|
||||
* [ARCHITECTURE.md](https://etgit.et-wen.com/etwen/Blanton_TTL_Script/src/branch/main/ARCHITECTURE.md) — test flow, data models, constraints
|
||||
* [CLAUDE.md](https://etgit.et-wen.com/etwen/Blanton_TTL_Script/src/branch/main/CLAUDE.md) — commands and the bench gotchas
|
||||
|
||||
**Full changelog:** [V1.1.1...V1.1.2](https://etgit.et-wen.com/etwen/Blanton_TTL_Script/compare/V1.1.1...V1.1.2)
|
||||
@@ -0,0 +1,59 @@
|
||||
# v1.1.3 — Margin now measures against what this platform actually runs at
|
||||
|
||||
## ✨ New features
|
||||
|
||||
**Per-CONN margin profiles for the switch boards**
|
||||
* `combo_SWB_CONN13_high` / `_low` through `combo_SWB_CONN16_high` / `_low` replace the old `comboA` / `comboB` pair. Each file's per-channel percentages follow the rails on *that* board, so a CONN13 profile is no longer a rough fit for CONN16.
|
||||
* SWB0 and SWB1 share a profile per CONN — the two boards carry identical rails and differ only by I2C bus.
|
||||
* A high pass and a low pass are now the same run with `_high` swapped for `_low`.
|
||||
* **A profile applied to the wrong CONN margins the wrong rails and says nothing.** The percentages are positional, so nothing detects the mismatch. `margin_apply_profile_all.sh` now names the right profile per board instead of one name for all nine.
|
||||
|
||||
## 🐛 Bug fixes
|
||||
|
||||
**`VNOM` was the spec value, not what the rails actually sit at**
|
||||
* 86 of the 144 channels moved up between +0.8% and +2.5% to the measured median for this platform — `PVDD3_3V_SYNTH_LDO_*` 3.3 → 3.38, `P0V9_AVDD_*` 0.9 → 0.915, `PVDD0_8V_T3` 0.8 → 0.82, and so on.
|
||||
* **This is not a display change.** `VNOM` is the denominator of `margin_status`'s deviation %, *and* the basis `margin_set` derives high / low / OV / UV from. A rail sitting steady at 0.756 V used to read `+0.80%` against a nominal 0.75 and now reads `0.00%`; and asking for `+3%` now lands on a different absolute voltage than it did last week.
|
||||
* **Margin logs from before and after this build cannot be compared directly.** The numbers moved because the reference moved, not because the hardware did.
|
||||
|
||||
**The batch profile script pointed at files that no longer exist**
|
||||
* `margin_apply_profile_all.sh` still named `comboA` for all nine boards. With `comboA.conf` removed, every board would have stopped at `Profile not found` — a nine-line wall of errors on a script that is normally left to run.
|
||||
|
||||
**The channel map CSV was stale**
|
||||
* `docs/LTC2980_channel_map.csv` is generated from `settings/*.conf`, so all 86 changed rails were wrong in it. Regenerated with `tools/gen_channel_map.sh`. It is output, not source — regenerate it, never hand-edit it.
|
||||
|
||||
## 📦 Downloads
|
||||
|
||||
| File | Contents |
|
||||
|---|---|
|
||||
| `Script_ABC_Blanton_V1.1.3.zip` | The full Tera Term working directory, including `Blanton_Script/` to copy onto the DUT |
|
||||
|
||||
**After copying to the DUT:**
|
||||
|
||||
```bash
|
||||
chmod +x ~/Blanton_Script/*.sh # see below
|
||||
grep -rlU $'\r' ~/Blanton_Script # expect no output
|
||||
```
|
||||
|
||||
`blanton_ber.sh` and `nfc_polling.sh` are invoked by the macros through `./` or `~/`, so they need the execute bit along with `bmc_monitor.sh` and `usb_target.sh` — neither git nor a Windows/USB copy carries it reliably.
|
||||
|
||||
## ⚠️ Before you run
|
||||
|
||||
* **Re-baseline your margin expectations.** Any pass/fail limits or golden logs derived from the old `VNOM` values need redoing against this build.
|
||||
* **`margin_save` in any form writes NVM permanently** and now writes margin windows derived from the new reference. Run `margin_status_all.sh` first and never call it during a test.
|
||||
* **SWB profiles are per-CONN.** Applying `combo_SWB_CONN13_high` to a CONN16 board is silently wrong.
|
||||
* **These three tests cannot share the switch**: `blanton_ber.sh`, `blanton_tr518.sh` and `blanton_traffic_linespeed`.
|
||||
* **PRBS takes the links down** while `blanton_ber.sh` is armed.
|
||||
* **`ce0` keeps running until you stop it.**
|
||||
* **Two numbers must stay in step**: Script C's `sleep 30` and `blanton_ber.sh`'s `BER_INTERVAL`.
|
||||
* **`FAN_SPEED` is 100** — the fans run flat out unless you change `config.ttl`.
|
||||
* **`nfc_polling.sh start` clears the log**, so Script B wipes Script A's NFC baseline file (the numbers are already in the console log).
|
||||
* **The NFC tool is written for the customer's tag.** It polls Type A / B / F only and parses Type A strictly; a tag of another technology is never discovered and fails as `no RF interface activation notification received`. Without `--expected-id` it does not check identity, so a different tag of the same type still passes.
|
||||
* **The three items listed as unverified in v1.1.0 are still unverified**: the `ce0` ingress mirror, the 120s settle in `blanton_tr518.sh`, and `test mode nr=no` on stop.
|
||||
|
||||
## 🔗 Links
|
||||
|
||||
* [ARCHITECTURE.md](https://etgit.et-wen.com/etwen/Blanton_TTL_Script/src/branch/main/ARCHITECTURE.md) — test flow, data models, constraints
|
||||
* [CLAUDE.md](https://etgit.et-wen.com/etwen/Blanton_TTL_Script/src/branch/main/CLAUDE.md) — commands and the bench gotchas
|
||||
* [LTC2980_channel_map.csv](https://etgit.et-wen.com/etwen/Blanton_TTL_Script/src/branch/main/docs/LTC2980_channel_map.csv) — all 144 margin channels with the new `VNOM`
|
||||
|
||||
**Full changelog:** [V1.1.2...V1.1.3](https://etgit.et-wen.com/etwen/Blanton_TTL_Script/compare/V1.1.2...V1.1.3)
|
||||
@@ -0,0 +1,61 @@
|
||||
# v1.1.4 — A thermal and safety run that loads the box and watches the rails
|
||||
|
||||
## ✨ New features
|
||||
|
||||
**`4_Blanton_Script_thermal_safety.ttl`**
|
||||
* A **standalone** script — it is not part of the A → B → C chain and is not started by any of them. Run it on its own when the question is thermal or safety rather than functional.
|
||||
* Brings the DUT up the same way Script A does (login, session reset, fan speed, `wait_init`, DUT inventory, BMC, PCIe error clear, `pcie_bus`, PMON, dmesg), then loads it: `mlucas-avx2 -cpu 0:15` in the background and `blanton_tr518.sh start` on the data plane.
|
||||
* Then loops every minute: platform data, **both switch boards' rail power** via `TH6_SWB0/1_power_readback.sh`, and `bgctl list` / `jobs`. That is the point of the script — power per rail under sustained full load, sampled over hours.
|
||||
* **It has no teardown.** When you interrupt it the DUT is still in `port cd lb=mac`, `l2 learn off` and `test mode nr=yes`, and `mlucas-avx2` is still running. Run `blanton_tr518.sh stop` and `kill $(jobs -p)` before anything else uses the box — nothing in `show interfaces status` reveals the leftover state.
|
||||
* **It cannot share a DUT with Script B.** Both take over the `cd` ports.
|
||||
|
||||
**Test flow diagram**
|
||||
* `docs/Blanton_Test_Flow.drawio` draws all four scripts side by side, with the config flags that change each step marked, the one real `goto` in Script B drawn, and the manual handoffs between A → B → C shown as such.
|
||||
|
||||
## 🐛 Bug fixes
|
||||
|
||||
**The soak loop spent most of its minute reading margin**
|
||||
* Script B's per-round loop is meant to be a quick sample. `margin_status_all.sh` walks nine LTC2980s over I2C and dominated the round. The scan moved to Script C, which takes it once before `show uptime`.
|
||||
* **The trade-off is real and worth knowing**: margin is now only measured at the start (Script A) and the end (Script C). Drift that happens *during* the soak is no longer visible.
|
||||
|
||||
**`hw-test-session finish` ran from inside the session's own shell**
|
||||
* Script C now sends `exit` and waits for `Script done` first, so `finish` runs in the login shell that opened the session.
|
||||
|
||||
**The new script arrived with LF line endings**
|
||||
* Every other `.ttl` in the repo is CRLF, and `.gitattributes` marks `*.ttl` as `-text` — whatever is committed is exactly what Tera Term gets. Converted to CRLF to match.
|
||||
|
||||
## 📦 Downloads
|
||||
|
||||
| File | Contents |
|
||||
|---|---|
|
||||
| `Script_ABC_Blanton_V1.1.4.zip` | The full Tera Term working directory, including `Blanton_Script/` to copy onto the DUT |
|
||||
|
||||
**After copying to the DUT:**
|
||||
|
||||
```bash
|
||||
chmod +x ~/Blanton_Script/*.sh # see below
|
||||
grep -rlU $'\r' ~/Blanton_Script # expect no output
|
||||
```
|
||||
|
||||
`blanton_ber.sh`, `nfc_polling.sh`, `blanton_tr518.sh` and the two `TH6_SWB*_power_readback.sh` are invoked through `./` or `~/`, so they need the execute bit along with `bmc_monitor.sh` and `usb_target.sh` — neither git nor a Windows/USB copy carries it reliably.
|
||||
|
||||
## ⚠️ Before you run
|
||||
|
||||
* **Script 4 leaves the switch loaded and looped back.** Always finish with `blanton_tr518.sh stop`. If the next test starts without it, traffic and BER results are meaningless and nothing warns you.
|
||||
* **Do not run Script 4 and Script B on the same DUT.** Same ports, same L2 settings.
|
||||
* **Margin is no longer sampled during the soak** — only Script A (start) and Script C (end).
|
||||
* **Re-baseline your margin limits if you have not already**: `VNOM` became the measured median in v1.1.3, which moved both the deviation % and the margin window.
|
||||
* **These three cannot share the switch**: `blanton_ber.sh`, `blanton_tr518.sh`, `blanton_traffic_linespeed`.
|
||||
* **PRBS takes the links down** while `blanton_ber.sh` is armed.
|
||||
* **`ce0` keeps circulating until you stop it.**
|
||||
* **Two numbers must stay in step**: Script C's `sleep 30` and `blanton_ber.sh`'s `BER_INTERVAL`.
|
||||
* **`FAN_SPEED` is 100** — relevant here more than anywhere: a thermal run at full fan is not the same test as one at 30%.
|
||||
* **The three items listed as unverified in v1.1.0 are still unverified**: the `ce0` ingress mirror, the 120s settle in `blanton_tr518.sh`, and `test mode nr=no` on stop. The settle matters most for this release — Script 4 depends on `tr 518` still driving traffic minutes after it was started.
|
||||
|
||||
## 🔗 Links
|
||||
|
||||
* [Blanton_Test_Flow.drawio](https://etgit.et-wen.com/etwen/Blanton_TTL_Script/src/branch/main/docs/Blanton_Test_Flow.drawio) — the four scripts side by side
|
||||
* [ARCHITECTURE.md](https://etgit.et-wen.com/etwen/Blanton_TTL_Script/src/branch/main/ARCHITECTURE.md) — test flow, data models, constraints
|
||||
* [CLAUDE.md](https://etgit.et-wen.com/etwen/Blanton_TTL_Script/src/branch/main/CLAUDE.md) — commands and the bench gotchas
|
||||
|
||||
**Full changelog:** [V1.1.3...V1.1.4](https://etgit.et-wen.com/etwen/Blanton_TTL_Script/compare/V1.1.3...V1.1.4)
|
||||
@@ -0,0 +1,67 @@
|
||||
# v1.1.5 — The stress jobs now last the whole soak
|
||||
|
||||
## 🐛 Bug fixes
|
||||
|
||||
**USB stress ran for sixty seconds of an overnight soak**
|
||||
* `qfx5252-stress-usb` was started with `--runtime 60`. It finished a minute in and the USB path sat idle for the rest of the night. Nothing failed, nothing said so, and the run looked complete.
|
||||
* SSD stress had the same shape at `--runtime 3600` — one hour of a soak that usually runs far longer.
|
||||
* Both are now `--runtime 86400`, and the BMC DDR memtester lost its loop count (`64M 1` → `64M`) so it runs until it is stopped rather than finishing one pass.
|
||||
* **86400 is 24 hours, not "forever".** A soak longer than a day leaves SSD and USB dead for the remainder. Script B prints `bgctl list` every round (since v1.0.10), so the shorter list is visible there — but nothing raises an alarm.
|
||||
|
||||
## ✨ New features
|
||||
|
||||
**Multiphase VRM margin**
|
||||
* New `blanton_multiphase_margin.sh` drives the multiphase controllers on both switch boards over the native i2c buses — SWB0 on `/dev/i2c-13` and `-15`, SWB1 on `-14` and `-16`. 19 rails per board, 38 in all.
|
||||
* `high3` / `low3` / `comboA` / `comboB` set the voltages and report one line per rail:
|
||||
|
||||
```
|
||||
SWB0_0V9_ANLG0 - 0.930V Configure Done
|
||||
SWB0_0V75_ANLG0 - 0.775V Configure Done
|
||||
...
|
||||
[ OK ] high3: 38 rail(s) configured
|
||||
```
|
||||
* `save` commits them. It has no per-rail mapping, so it reports as one operation: `Multiphase Save All`.
|
||||
* `-u 0` / `-u 1` for a single board; rails belonging to the other board are skipped and counted separately, not failed.
|
||||
* **`save` writes NVM permanently** (PMBus `STORE_USER_ALL`, and `0x17` on the TH6 core rail). A power cycle does not undo it.
|
||||
* **These are not the LTC2980s that `margin.sh` drives.** The two tools reach the same rails from different sides and each assumes it is the only writer. There is no interlock — do not run both.
|
||||
|
||||
**Traffic bursts carry a random pattern**
|
||||
* `blanton_traffic_linespeed` v0.7.0 appends `PatternRandom=yes` to every `tx`, `ce0` included. A fixed pattern can sit on a benign bit sequence for an entire run; a changing one is what makes a weak lane show itself.
|
||||
* `-r no` forces the fixed pattern; `-r ""` leaves the argument off entirely, which is the pre-v0.7.0 wire format if a future SDK rejects it.
|
||||
* Defaults change from `tx 100 length=512` to `tx 200 length=324`.
|
||||
* **Counter totals are not comparable across this build**: 64800 bytes per burst instead of 51200, about 27% more. The PASS/FAIL cross-check compares a pair against each other and is unaffected — only absolute figures moved.
|
||||
|
||||
## 📦 Downloads
|
||||
|
||||
| File | Contents |
|
||||
|---|---|
|
||||
| `Script_ABC_Blanton_V1.1.5.zip` | The full Tera Term working directory, including `Blanton_Script/` to copy onto the DUT |
|
||||
|
||||
**After copying to the DUT:**
|
||||
|
||||
```bash
|
||||
chmod +x ~/Blanton_Script/*.sh # see below
|
||||
grep -rlU $'\r' ~/Blanton_Script # expect no output
|
||||
```
|
||||
|
||||
`blanton_ber.sh`, `nfc_polling.sh`, `blanton_tr518.sh`, `blanton_multiphase_margin.sh` and the two `TH6_SWB*_power_readback.sh` are invoked through `./` or `~/`, so they need the execute bit along with `bmc_monitor.sh` and `usb_target.sh` — neither git nor a Windows/USB copy carries it reliably.
|
||||
|
||||
## ⚠️ Before you run
|
||||
|
||||
* **A soak longer than 24 hours needs the runtimes raised.** `--runtime 86400` is a ceiling; past it, SSD and USB are idle and only a shorter `bgctl list` hints at it.
|
||||
* **`blanton_multiphase_margin.sh save` is permanent.** Read the rails back before committing, and never run it during a test.
|
||||
* **Do not mix `blanton_multiphase_margin.sh` and `margin.sh`** — same rails, two different access paths, no interlock.
|
||||
* **Traffic counters changed scale.** Any absolute thresholds taken from earlier logs need redoing.
|
||||
* **Script 4 (thermal/safety) has no teardown** — finish with `blanton_tr518.sh stop` and `kill $(jobs -p)`.
|
||||
* **These three cannot share the switch**: `blanton_ber.sh`, `blanton_tr518.sh`, `blanton_traffic_linespeed`.
|
||||
* **Margin is only sampled at the start and end of a soak** (since v1.1.4), not during it.
|
||||
* **`FAN_SPEED` is 100** — the fans run flat out unless you change `config.ttl`.
|
||||
* **The three items listed as unverified in v1.1.0 are still unverified**: the `ce0` ingress mirror, the 120s settle in `blanton_tr518.sh`, and `test mode nr=no` on stop.
|
||||
|
||||
## 🔗 Links
|
||||
|
||||
* [Blanton_Test_Flow.drawio](https://etgit.et-wen.com/etwen/Blanton_TTL_Script/src/branch/main/docs/Blanton_Test_Flow.drawio) — the four scripts side by side
|
||||
* [ARCHITECTURE.md](https://etgit.et-wen.com/etwen/Blanton_TTL_Script/src/branch/main/ARCHITECTURE.md) — test flow, data models, constraints
|
||||
* [CLAUDE.md](https://etgit.et-wen.com/etwen/Blanton_TTL_Script/src/branch/main/CLAUDE.md) — commands and the bench gotchas
|
||||
|
||||
**Full changelog:** [V1.1.4...V1.1.5](https://etgit.et-wen.com/etwen/Blanton_TTL_Script/compare/V1.1.4...V1.1.5)
|
||||
@@ -0,0 +1,74 @@
|
||||
# v1.1.6 — The PDB bricks were never being asked the right question
|
||||
|
||||
## 🐛 Bug fixes
|
||||
|
||||
**Every PDB reading was `NA`, and the cause was a page number written in the wrong base**
|
||||
* The four ADPM12200 bricks put each measurement on its own PMBus PAGE, and the page has to be written before every read. The bring-up spreadsheet listed those page numbers in decimal but with an `0x` prefix, so four of the five selected the wrong page:
|
||||
|
||||
| Reading | Datasheet PAGE | Should send | Spreadsheet said |
|
||||
|---|---|---|---|
|
||||
| Vin | 9 | `0x09` | `0x00` |
|
||||
| Iin | 10 | `0x0A` | `0x10` |
|
||||
| Vout | 2 | `0x02` | `0x02` ✅ |
|
||||
| Iout | 14 | `0x0E` | `0x14` |
|
||||
| Temp | 18 | `0x12` | `0x18` |
|
||||
|
||||
* Only Vout worked — because 2 reads the same in either base. That is why Iin and Iout answered `0xFFFF` and the temperature answered `0x0000`, and why a Vin scaling had to be invented to make 50 V appear.
|
||||
* `blanton_pwr_data.sh` sends no page at all (its PDB table has `page "-"`), which is the reason it reports the whole PDB section as `NA`.
|
||||
|
||||
## ✨ New features
|
||||
|
||||
**`pwr_brick.sh` — the five power bricks, read properly**
|
||||
* `show` prints Vin / Iin / Vout / Iout / Temp for all five: `SWB0.PU207` (0x62), `SWB0.PU13` (0x63), `SWB1.PU332` (0x60), `SWB1.PU85` (0x61) and `CPB.PU37` (0x26). `-r` adds the raw words.
|
||||
* Conversions come from the datasheet's DIRECT equation, `X = (1/m)(Y × 10⁻ᴿ − b)`, with Table 3's coefficients: voltage `Y × 8 mV`, current `Y × 0.04 A`, temperature `Y × 0.01 °C`.
|
||||
* **Cross-checked, not assumed**: `READ_VOUT` returns `0x05D4` → 1492 × 8 = 11936 mV, which is exactly the figure `show platform voltage` reports for that rail from a completely separate sensor path.
|
||||
* `CPB.PU37` is a different part — no page writes and its own scaling — and is handled separately.
|
||||
* The datasheet is now in the repo (`docs/ADPM12200CMLZxx_DS_*.pdf`) so the pages and coefficients can be checked without hunting for it.
|
||||
|
||||
**Every value is validated before it is printed**
|
||||
* This bus corrupts the **high byte only**. That turns `11.98 V` into `32.00 V` — positive, plausible in magnitude, and invisible to any "reject 0xFFFF" filter. Each value is re-read (up to `PB_TRIES`, default 8) until it is not `0xFFFF`, not `0x0000`, and lands inside a plausibility window.
|
||||
* `0x0000` is rejected as a raw word for the same reason: on the temperature register it decodes to a perfectly believable 0 °C.
|
||||
|
||||
**Complementary margin profiles per board**
|
||||
* `comboA` / `comboB` for CB and each SWB CONN. `comboB` is `comboA` with every direction flipped, so running both covers each rail high and low while its neighbours sit the other way.
|
||||
* NC channels stay at `nominal` in both — there is nothing to margin on an unused rail (CONN14 CH10/11/13, CONN15 CH10).
|
||||
|
||||
**The BMC USB service log is captured again — to a file**
|
||||
* Script C's `journalctl` dump had been commented out, so that service log reached nothing at all. It now runs with `-o short-iso` into `log/bmc_usb_net.log` and is copied into the job directory for the USB archive. The ISO timestamps line up with the other monitor logs, and `rm -f` first keeps the file to one run.
|
||||
* **It is no longer printed to the console**, so the USB copy is the only copy. If that `cp` fails — and nothing checks it — the service log is gone. Check the job directory before packing up.
|
||||
|
||||
## 📦 Downloads
|
||||
|
||||
| File | Contents |
|
||||
|---|---|
|
||||
| `Script_ABC_Blanton_V1.1.6.zip` | The full Tera Term working directory, including `Blanton_Script/` to copy onto the DUT |
|
||||
|
||||
**After copying to the DUT:**
|
||||
|
||||
```bash
|
||||
chmod +x ~/Blanton_Script/*.sh # see below
|
||||
grep -rlU $'\r' ~/Blanton_Script # expect no output
|
||||
```
|
||||
|
||||
`blanton_ber.sh`, `nfc_polling.sh`, `blanton_tr518.sh`, `blanton_multiphase_margin.sh`, `pwr_brick.sh` and the two `TH6_SWB*_power_readback.sh` are invoked through `./` or `~/`, so they need the execute bit along with `bmc_monitor.sh` and `usb_target.sh` — neither git nor a Windows/USB copy carries it reliably.
|
||||
|
||||
## ⚠️ Before you run
|
||||
|
||||
* **`READ_VIN` and `READ_IIN` are not in the datasheet's coefficient table.** They are decoded here with the voltage and current coefficients — consistent with a ~50 V input, but not stated by the datasheet. Anything quoting brick Vin should have that confirmed first. `PB_VIN_M` / `PB_IIN_M` are where to change it.
|
||||
* **The BMC USB service log only exists on the USB stick.** It is not in the master console log any more.
|
||||
* **`NA` has two meanings**: nothing readable, or read but outside its plausibility window. Use `PB_TRIES=1 ./Blanton_Script/pwr_brick.sh show -r` to see the unretried raw words and tell them apart.
|
||||
* **Margin profiles are positional.** `comboA_SWB_CONN13` applied to a CONN16 board margins the wrong rails and nothing detects it.
|
||||
* **`blanton_multiphase_margin.sh save` is permanent**, and it must not be mixed with `margin.sh` — same rails, two access paths, no interlock.
|
||||
* **A soak longer than 24 hours needs the stress runtimes raised** — `--runtime 86400` is a ceiling.
|
||||
* **Script 4 (thermal/safety) has no teardown** — finish with `blanton_tr518.sh stop` and `kill $(jobs -p)`.
|
||||
* **These three cannot share the switch**: `blanton_ber.sh`, `blanton_tr518.sh`, `blanton_traffic_linespeed`.
|
||||
* **`FAN_SPEED` is 100.**
|
||||
* **The three items listed as unverified in v1.1.0 are still unverified**: the `ce0` ingress mirror, the 120s settle in `blanton_tr518.sh`, and `test mode nr=no` on stop.
|
||||
|
||||
## 🔗 Links
|
||||
|
||||
* [ARCHITECTURE.md](https://etgit.et-wen.com/etwen/Blanton_TTL_Script/src/branch/main/ARCHITECTURE.md) — test flow, data models, constraints
|
||||
* [CLAUDE.md](https://etgit.et-wen.com/etwen/Blanton_TTL_Script/src/branch/main/CLAUDE.md) — commands and the bench gotchas
|
||||
* [Blanton_Test_Flow.drawio](https://etgit.et-wen.com/etwen/Blanton_TTL_Script/src/branch/main/docs/Blanton_Test_Flow.drawio) — the four scripts side by side
|
||||
|
||||
**Full changelog:** [V1.1.5...V1.1.6](https://etgit.et-wen.com/etwen/Blanton_TTL_Script/compare/V1.1.5...V1.1.6)
|
||||
@@ -1,7 +1,7 @@
|
||||
; =============================================================================
|
||||
; Script A for Blanton
|
||||
; Version : V1.0.5
|
||||
; Date : 2026-08-21
|
||||
; Version : V1.1.6
|
||||
; Date : 2026-09-02
|
||||
; Author : ETWen
|
||||
; =============================================================================
|
||||
; Version History:
|
||||
@@ -25,6 +25,258 @@
|
||||
; V1.0.5 2026-08-21 config.ttl Add SWB_UNIT0/SWB_UNIT1
|
||||
; utils/wait_init.ttl Follow config.ttl SWB_UNIT0/SWB_UNIT1
|
||||
; ScriptA/B/C Traffic follows SWB_UNIT: -u 0 / -u 1 / skip
|
||||
; V1.0.6 2026-08-24 utils/show_dmesg.ttl Edited dmesg grep i2c & clear event
|
||||
; ScriptA HW Test Session
|
||||
; ScriptC HW Test Session Finish
|
||||
; ScriptA bmc-first-enroll, bmc version/status
|
||||
; ScriptB Stress test DDR, SSD, USB, BMC DDR, BMC USB Stress test
|
||||
; ScriptC BMC USB Stress test result
|
||||
; ScriptA DUT Info
|
||||
; ScriptAC 10G/1G MGMT ping
|
||||
; ScriptA Edited 100G Port Status
|
||||
; ScriptA, utils/setup_pmon.ttl Add TPM
|
||||
; ScriptAC NVME Error Info
|
||||
; ScriptAC Add PCIe Summary
|
||||
; V1.0.7 2026-08-25 config.ttl Add FAN_SPEED
|
||||
; ScriptA Add Fan Ctrl (max31790 rebind + fan-speed-control.sh)
|
||||
; ScriptA Clear /host/hw-eval/current/jobs before the run
|
||||
; ScriptC Copy stress jobs log to USB, timestamped
|
||||
; utils/wait_init.ttl WT_INTERVAL 10 -> 60, fix WT_MIN comments
|
||||
; ScriptC Disable BMC USB journalctl dump
|
||||
; V1.0.8 2026-08-25 Blanton_Script/bmc_monitor.sh Add BMC I2C write/read-back pattern test
|
||||
; ScriptB Re-enable bmc_monitor.sh start
|
||||
; ScriptC Re-enable bmc_monitor.sh stop + cat bmc_poll.log
|
||||
; ScriptC Copy bmc_poll.log + mgmt_ping.log into jobs/ before the USB archive
|
||||
; Blanton_Script/usb_target.sh Created - auto-detect USB device node / mount point
|
||||
; ScriptB USB stress uses the detected node, not a hard-coded /dev/sda1
|
||||
; ScriptB DDR memtester runs continuously (drop the 100-pass limit)
|
||||
; ScriptC Move bgctl reset --yes after the USB archive
|
||||
; Blanton_Script/mgmt_ping_monitor.sh V3.0.0 - both NICs ping simultaneously, accumulating
|
||||
; + ARP warm-up so a stale neighbour entry is not counted as loss
|
||||
; + stop renders last-N per NIC, stats, and both ip -s link show
|
||||
; .gitignore Ignore monitor *.raw / *.pid / *.state
|
||||
; ScriptA MGMT ping baseline 45s -> 30s, clear the log afterwards
|
||||
; ScriptB Show mgmt_ping status after start
|
||||
; ScriptC Show mgmt_ping status before stop, cat the report after
|
||||
; V1.0.9 2026-08-26 Blanton_Script/port_prbs_monitor.sh Add 100G Port PRBS test
|
||||
; start [both|a|b] - single port isolates a port fault from
|
||||
; the DUT not coping with two PRBS streams at once
|
||||
; !! TTL calls are commented out in A/B/C - still under bring-up
|
||||
; ScriptA/B/C Job log path /host/hw-eval/current/jobs -> /host/hw-eval/jobs
|
||||
; ScriptC Mount the USB (usb_target.sh) before copying the job logs
|
||||
; ScriptC Reorder results: stress logs, then MGMT ping, then 100G status
|
||||
; V1.0.10 2026-08-27 ScriptB Monitor loop lists the background jobs every round
|
||||
; + bgctl list - platform jobs
|
||||
; + jobs - shell jobs of the login shell
|
||||
; + pause 60 - the loop used to run with no pause at all
|
||||
; docs/LTC2980_channel_map.csv Channel / net / Vnom map built from settings/*.conf
|
||||
; tools/gen_channel_map.sh Regenerates that CSV - the CSV is output, not source
|
||||
; tools/100G_PRBS.txt Bench command references, kept for hand-run debug
|
||||
; tools/TR518.txt TR518 = built-in packet test (swutil / bcmcmd tr 518)
|
||||
; tools/fan_ctrl.txt MAX31790 rebind + fan-speed-control.sh
|
||||
; V1.0.11 2026-08-28 LTC2980_Margin_Script/margin.sh v2.7.0 - margin_save fixes + two new subcommands
|
||||
; STORE_USER_ALL (0x15) is now a PMBus send-byte, not
|
||||
; 0x15 followed by a dummy 0x00 data byte. The LTC2977
|
||||
; tolerated the old form, but it was the wrong protocol
|
||||
; i2c: i2cset .. 0x15 c swb: cb_pmbus_write <ch> <addr> 0x15
|
||||
; + margin_save all - every board in settings/ (9 boards,
|
||||
; 18 chips), then re-init the one loaded beforehand
|
||||
; + margin_save blanton - Blanton SONiC shortcut: all 18
|
||||
; LTC2977 straight over the native i2c buses - no
|
||||
; margin_init, no FPGA channel setup, no pcimem
|
||||
; F3 Ch6->bus 13, Ch7->14, Ch8->15, Ch9->16
|
||||
; board list = MARGIN_BLANTON_STORE at the top of margin.sh
|
||||
; The store result is now checked - a NACK used to still
|
||||
; print "Change Saved"
|
||||
; MARGIN_STORE_SETTLE (0.5s) between stores; nothing in this
|
||||
; tool polls the part's busy bit
|
||||
; LTC2980_Margin_Script/README.md What each margin_save variant sends, and the
|
||||
; FPGA-channel -> i2c-bus map
|
||||
; LTC2980_Margin_Script/Ref/*.md 0x15 trace note corrected to send-byte
|
||||
; LTC2980_Margin_Script/script/margin_save_all.sh Point at margin_save all; keep it for subsets
|
||||
; config.ttl FAN_SPEED 30 -> 100 (full speed by default)
|
||||
; V1.1.0 2026-08-28 Blanton_Script/blanton_ber.sh Add whole-switch SerDes BER test (PRBS via phydiag)
|
||||
; init / start / report / stop / clear, -u 0|1|all
|
||||
; report: one row per lane, PASS when BER < 1e-6, then
|
||||
; a summary across units carrying the worst lane
|
||||
; init also checks every lane locked - an unlocked lane
|
||||
; still reports a BER, and it is a meaningless one
|
||||
; !! PRBS takes the SerDes out of normal operation:
|
||||
; links show DOWN, no traffic passes while it runs
|
||||
; Blanton_Script/blanton_tr518.sh Add TR518 packet test - loads the switch so the rails
|
||||
; can be measured under traffic
|
||||
; start [-u 0|1] then settles 120s (TR_SETTLE_SEC), so
|
||||
; the power read afterwards is loaded, not ramping
|
||||
; stop = port cd lb=none, exactly what TR518.txt does;
|
||||
; l2 learn / test mode are NOT put back - stop says so
|
||||
; Blanton_Script/TH6_SWB{0,1}_power_readback.sh Read the sensor tables ONCE, not once per rail
|
||||
; 38 'show platform' calls -> 2. The old loop sampled
|
||||
; each rail at a different instant, so the total was a
|
||||
; sum of readings seconds apart. Output format unchanged
|
||||
; A rail missing from the table now warns on stderr
|
||||
; instead of silently counting as 0 W
|
||||
; Blanton_Script/blanton_traffic_linespeed.sh Add the 100G uplink (ce0, VLAN 138) to the test
|
||||
; ce0 has no loopback partner and a switch will not send
|
||||
; a frame back out its ingress port, so a tx burst was
|
||||
; one round trip. An INGRESS MIRROR of ce0 back to ce0
|
||||
; keeps it circulating until stop turns the mirror off
|
||||
; !! stop MUST run - the loop does not end on its own
|
||||
; report: ce0 is the last row; a summary at the bottom
|
||||
; carries every unit's PASS / FAIL / NA totals
|
||||
; ScriptC Run the BER sweep, after the traffic report so the
|
||||
; two do not fight over the same ports
|
||||
; Follows SWB_UNIT0/SWB_UNIT1 like the traffic block:
|
||||
; -u 0 / -u 1 / skip, so a single-unit DUT is not asked
|
||||
; for counters from a board it does not have
|
||||
; tools/BER_Test.txt Bench command references for the two new scripts
|
||||
; tools/100G_Traffic.txt
|
||||
; tools/TR518.txt Corrected on the bench: port cd (not *:port all),
|
||||
; testphase=1, and an explicit stop
|
||||
; V1.1.1 2026-08-28 ScriptA Clear a leftover session before starting a new run
|
||||
; hw-test-session finish -> bgctl reset --yes ->
|
||||
; bgctl stop --all -> bgctl list (must come back empty)
|
||||
; A run that ended badly leaves jobs holding CPU and a
|
||||
; session open; the next run used to inherit both, and
|
||||
; the stress numbers were quietly wrong because of it
|
||||
; V1.1.2 2026-08-28 Blanton_Script/nfc_polling.sh Add background NFC tag polling
|
||||
; start / stop / status / tail / report / clear / fg
|
||||
; wraps blantons_nfc_validate.py; start clears the log
|
||||
; first, so a report covers this run only
|
||||
; report works WHILE polling - it only reads the log,
|
||||
; and says RUNNING so a snapshot is not read as final
|
||||
; Each round appends a machine-readable RESULT line, so
|
||||
; the tally never depends on the tool's wording
|
||||
; PASS / FAIL come from the tool's own summary; ERROR
|
||||
; means it produced neither, which is a different fault
|
||||
; from a tag that would not read - counted separately
|
||||
; tail does NOT follow (tail -f never returns, and a
|
||||
; macro waiting on the prompt would hang there)
|
||||
; Runs the .py through python3, not ./ - the file is
|
||||
; mode 100644 and a USB copy carries no execute bit
|
||||
; Blanton_Script/blantons_nfc_validate.py Vendor NFC/NCI validation tool (unmodified)
|
||||
; ScriptA NFC baseline: start -> status -> 30s -> stop -> report
|
||||
; ScriptB Start NFC polling for the soak, then status
|
||||
; ScriptC Stop NFC polling with the other monitors, report it
|
||||
; next to the mgmt ping log, and copy nfc_poll.log to
|
||||
; the job dir for the USB archive
|
||||
; Fix: that cp said nfc_polling.log - the file is
|
||||
; nfc_poll.log, so the NFC log never reached the USB
|
||||
; V1.1.3 2026-08-30 LTC2980_Margin_Script/settings/*.conf VNOM is now the measured median, not the spec value
|
||||
; 86 of 144 rails moved up +0.8% .. +2.5%
|
||||
; (3.3 -> 3.38, 0.9 -> 0.915, 0.8 -> 0.82, ...)
|
||||
; This is NOT display-only: VNOM is the denominator of
|
||||
; margin_status deviation % AND the basis margin_set
|
||||
; derives high/low/OV/UV from, so the whole margin
|
||||
; window shifts with it
|
||||
; !! margin logs from before/after cannot be compared
|
||||
; LTC2980_Margin_Script/profiles/ Add per-CONN SWB profiles, drop comboA/comboB
|
||||
; combo_SWB_CONN13..16_{high,low} - the percentages
|
||||
; follow that board rails, so applying one to a
|
||||
; different CONN margins the wrong things, silently
|
||||
; SWB0 and SWB1 share a profile per CONN (same rails)
|
||||
; LTC2980_Margin_Script/script/*.sh Fix: margin_apply_profile_all.sh still pointed every
|
||||
; board at comboA, which this change deleted - all 9
|
||||
; boards would have failed with "Profile not found"
|
||||
; docs/LTC2980_channel_map.csv Regenerated (tools/gen_channel_map.sh) - it is output
|
||||
; V1.1.4 2026-08-31 4_Blanton_Script_thermal_safety.ttl Add the thermal / safety run - a STANDALONE script,
|
||||
; not part of the A -> B -> C chain
|
||||
; Script A style setup (login, session, fan, wait_init,
|
||||
; DUT info, BMC, PCIe clear, pcie_bus, pmon, dmesg)
|
||||
; then FULL LOAD: mlucas-avx2 -cpu 0:15 in the
|
||||
; background + blanton_tr518.sh start
|
||||
; then while 1: setup_pmon + TH6_SWB0/SWB1 power
|
||||
; readback + bgctl list + jobs, pause 60
|
||||
; !! no teardown section: after you interrupt it the
|
||||
; unit is still on port cd lb=mac / l2 learn off /
|
||||
; test mode nr=yes - run blanton_tr518.sh stop
|
||||
; !! it drives the same ports as traffic and BER, so it
|
||||
; cannot share a DUT with Script B
|
||||
; ScriptB Drop the margin scan from the soak loop
|
||||
; The loop is a fast per-minute sample; margin_status
|
||||
; walks 9 LTC2980 over I2C and dominated the round
|
||||
; ScriptC Take the margin scan instead, once, before uptime
|
||||
; Trade-off: no margin drift DURING the soak any more,
|
||||
; only a start (Script A) and end (Script C) reading
|
||||
; ScriptC exit + wait "Script done" before hw-test-session
|
||||
; finish - leaves the session shell first, so finish
|
||||
; runs in the login shell that opened it
|
||||
; docs/Blanton_Test_Flow.drawio Add the A/B/C + thermal flow diagram
|
||||
; V1.1.5 2026-09-01 ScriptB Stress jobs now last the whole soak
|
||||
; BMC DDR memtester 64M 1 -> 64M (loop count
|
||||
; dropped = runs until stopped)
|
||||
; SSD --runtime 3600 -> 86400
|
||||
; USB --runtime 60 -> 86400
|
||||
; The USB one finished after 60 SECONDS, so an
|
||||
; overnight run had USB idle for all but the first
|
||||
; minute and nothing said so
|
||||
; !! 86400 is 24h: a soak longer than that leaves SSD
|
||||
; and USB dead for the remainder - the per-round
|
||||
; bgctl list (V1.0.10) is where that shows up
|
||||
; Blanton_Script/blanton_multiphase_margin.sh Add multiphase VRM margin over the native i2c buses
|
||||
; high3 / low3 / comboA / comboB / save, -u 0|1|all
|
||||
; 38 rails (19 per SWB), one line each:
|
||||
; SWB0_0V9_ANLG0 - 0.930V Configure Done
|
||||
; save has no per-rail map, prints Multiphase Save All
|
||||
; !! save is STORE_USER_ALL - permanent, survives a
|
||||
; power cycle
|
||||
; !! these are NOT the LTC2980s margin.sh drives; the
|
||||
; two tools reach the same rails from different
|
||||
; sides - do not run both
|
||||
; Blanton_Script/blanton_traffic_linespeed.sh v0.7.0 tx gains PatternRandom, defaults change
|
||||
; tx 100 length=512 -> tx 200 length=324
|
||||
; every burst now ends PatternRandom=yes, ce0 included
|
||||
; A fixed pattern can sit on a benign bit sequence for
|
||||
; a whole run; random is what exposes a weak lane
|
||||
; -r no forces the fixed pattern, -r "" omits the
|
||||
; argument entirely (pre-v0.7.0 wire format)
|
||||
; !! bytes per burst went 51200 -> 64800 (+27%), so
|
||||
; counter totals are not comparable across this
|
||||
; build - the PASS/FAIL cross-check is unaffected
|
||||
; tools/Multiphase_*.txt Bench command references for the new script
|
||||
; V1.1.6 2026-09-02 Blanton_Script/pwr_brick.sh Add PDB / CPB power brick readings
|
||||
; 5 devices, Vin / Iin / Vout / Iout / Temp:
|
||||
; SWB0.PU207 0x62 SWB0.PU13 0x63
|
||||
; SWB1.PU332 0x60 SWB1.PU85 0x61
|
||||
; CPB.PU37 0x26
|
||||
; The four ADPM12200 put each measurement on its own
|
||||
; PMBus PAGE, so a PAGE write has to precede every
|
||||
; read - blanton_pwr_data.sh sends none, which is why
|
||||
; it reports the whole PDB table as NA
|
||||
; Vin PAGE 9 Iin PAGE 10 Vout PAGE 2
|
||||
; Iout PAGE 14 Temp PAGE 18
|
||||
; !! the bring-up spreadsheet wrote those page numbers
|
||||
; in decimal but with an 0x prefix (10 -> 0x10,
|
||||
; 14 -> 0x14, 18 -> 0x18). Only Vout worked,
|
||||
; because 2 reads the same either way
|
||||
; Conversions are the datasheet DIRECT equation
|
||||
; X = (1/m)(Y x 10^-R - b), Table 3: voltage Y x 8mV,
|
||||
; current Y x 0.04A, temperature Y x 0.01C
|
||||
; Checked: READ_VOUT 0x05D4 -> 11936 mV, the same
|
||||
; figure show platform reports for that rail
|
||||
; !! Table 3 does NOT list READ_VIN / READ_IIN; they
|
||||
; borrow the voltage / current coefficients here
|
||||
; Each value is re-read until it passes: not 0xFFFF,
|
||||
; not 0x0000, and inside a plausibility window. This
|
||||
; bus corrupts the HIGH BYTE only, which turns 11.98 V
|
||||
; into 32.00 V - a value no all-ones filter catches
|
||||
; docs/ADPM12200..._Datasheet_2025_12_19.pdf The brick datasheet the pages and coefficients above
|
||||
; came from
|
||||
; ScriptC Re-enable the BMC USB service log, and send it to
|
||||
; a file instead of the console
|
||||
; journalctl ... -o short-iso > log/bmc_usb_net.log
|
||||
; then cp it into the job dir for the USB archive
|
||||
; rm -f first, so the file is this run only
|
||||
; -o short-iso gives it timestamps that line up with
|
||||
; the other monitor logs
|
||||
; !! it no longer appears in the master console log,
|
||||
; so the USB copy is now the ONLY copy - if that
|
||||
; cp fails the service log is gone
|
||||
; LTC2980_Margin_Script/profiles/ Add comboA / comboB per board (CB + SWB CONN13..16)
|
||||
; Checkerboard pair: comboB is comboA with every
|
||||
; direction flipped, so running both covers each rail
|
||||
; high and low while its neighbours sit the other way
|
||||
; NC channels stay nominal in both (CONN14 CH10/11/13,
|
||||
; CONN15 CH10) - nothing to margin on an unused rail
|
||||
; =============================================================================
|
||||
include "config.ttl"
|
||||
|
||||
@@ -59,21 +311,85 @@ gettime timestr
|
||||
sprintf2 cmd 'sudo date -s "%s %s"' datestr timestr
|
||||
sendln cmd
|
||||
|
||||
; ========== Show Build Name ==========
|
||||
;Stress log clear
|
||||
wait prompt_sonic_root
|
||||
sendln "show boot"
|
||||
sendln "rm /host/hw-eval/jobs/*"
|
||||
|
||||
; ========== EEPROM Info ==========
|
||||
; ========== HW Test Session ==========
|
||||
; Clear session
|
||||
wait prompt_sonic_root
|
||||
sendln "hpe-eeprom-tlv show --bus 4 --addr 0x50"
|
||||
sendln "hw-test-session finish"
|
||||
wait prompt_sonic_root
|
||||
sendln "bgctl reset --yes"
|
||||
wait prompt_sonic_root
|
||||
sendln "bgctl stop --all"
|
||||
wait prompt_sonic_root
|
||||
sendln "bgctl list"
|
||||
|
||||
wait prompt_sonic_root
|
||||
sendln "hw-test-session start"
|
||||
wait prompt_sonic_root
|
||||
sendln "hw-test-session log"
|
||||
wait prompt_sonic_root
|
||||
sendln "hw-test-session status"
|
||||
|
||||
; ========== FAN SPEED ==========
|
||||
wait prompt_sonic_root
|
||||
sendln "echo 18-0020 > /sys/bus/i2c/drivers/max31790/unbind"
|
||||
wait prompt_sonic_root
|
||||
sendln "sleep .5"
|
||||
wait prompt_sonic_root
|
||||
sendln "echo 18-0020 > /sys/bus/i2c/drivers/max31790/bind"
|
||||
wait prompt_sonic_root
|
||||
sendln "echo 25-0020 > /sys/bus/i2c/drivers/max31790/unbind"
|
||||
wait prompt_sonic_root
|
||||
sendln "sleep .5"
|
||||
wait prompt_sonic_root
|
||||
sendln "echo 25-0020 > /sys/bus/i2c/drivers/max31790/bind"
|
||||
|
||||
wait prompt_sonic_root
|
||||
sprintf2 fan_ctrl_cmd 'fan-speed-control.sh %d' FAN_SPEED
|
||||
sendln fan_ctrl_cmd
|
||||
|
||||
wait "Set all configured fan channels to"
|
||||
sendln "y"
|
||||
|
||||
|
||||
; ========== Wait DUT Init ==========
|
||||
wait prompt_sonic_root
|
||||
include "utils/wait_init.ttl"
|
||||
|
||||
; ========== BMC version ==========
|
||||
; ========== DUT Info ==========
|
||||
wait prompt_sonic_root
|
||||
sendln "bmc-manager run 'cat /etc/issue'"
|
||||
sendln "show boot"
|
||||
wait prompt_sonic_root
|
||||
sendln "show version"
|
||||
wait prompt_sonic_root
|
||||
sendln "fwutil show status"
|
||||
wait prompt_sonic_root
|
||||
sendln "show system-memory"
|
||||
wait prompt_sonic_root
|
||||
sendln "show service"
|
||||
wait prompt_sonic_root
|
||||
sendln "show platform syseeprom"
|
||||
wait prompt_sonic_root
|
||||
sendln "show platform ssdhealth"
|
||||
wait prompt_sonic_root
|
||||
sendln "qfx5252-tpm-version"
|
||||
wait prompt_sonic_root
|
||||
sendln "/usr/sbin/nvme smart-log -H /dev/nvme0"
|
||||
wait prompt_sonic_root
|
||||
sendln "/usr/sbin/smartctl -x /dev/nvme0"
|
||||
|
||||
; ========== BMC version ==========
|
||||
;wait prompt_sonic_root
|
||||
;sendln "bmc-manager run 'cat /etc/issue'"
|
||||
wait prompt_sonic_root
|
||||
sendln "bmc-first-enroll"
|
||||
wait prompt_sonic_root
|
||||
sendln "bmc-manager version"
|
||||
wait prompt_sonic_root
|
||||
sendln "bmc-manager status"
|
||||
|
||||
|
||||
; ========== Load Shell Script ==========
|
||||
wait prompt_sonic_root
|
||||
@@ -98,6 +414,9 @@ include "utils/show_pcie_error_reg_DDR.ttl"
|
||||
include "utils/show_pcie_error_reg_I210.ttl"
|
||||
include "utils/show_pcie_error_reg_SSD.ttl"
|
||||
|
||||
wait prompt_sonic_root
|
||||
sendln "/usr/sbin/ras-mc-ctl --summary"
|
||||
|
||||
|
||||
; ========== Check PCIE tree + PCIE link status + GET PCIE bandwidth Test ==========
|
||||
include "utils/pcie_bus.ttl"
|
||||
@@ -115,11 +434,37 @@ include "utils/show_dmesg.ttl"
|
||||
;wait prompt_sonic_root
|
||||
;flushrecv
|
||||
|
||||
; ========== 10G/1G MGMT Ping Test ==========
|
||||
wait prompt_sonic_root
|
||||
sendln "./Blanton_Script/mgmt_ping_monitor.sh start"
|
||||
wait prompt_sonic_root
|
||||
pause 30
|
||||
sendln "~/Blanton_Script/mgmt_ping_monitor.sh stop"
|
||||
wait prompt_sonic_root
|
||||
sendln "cat ~/Blanton_Script/log/mgmt_ping.log"
|
||||
wait prompt_sonic_root
|
||||
sendln "~/Blanton_Script/mgmt_ping_monitor.sh clear"
|
||||
|
||||
; ========== NFC Test ==========
|
||||
wait prompt_sonic_root
|
||||
sendln "~/Blanton_Script/nfc_polling.sh start"
|
||||
wait prompt_sonic_root
|
||||
sendln "~/Blanton_Script/nfc_polling.sh status"
|
||||
wait prompt_sonic_root
|
||||
sendln "sleep 30"
|
||||
wait prompt_sonic_root
|
||||
sendln "~/Blanton_Script/nfc_polling.sh stop"
|
||||
wait prompt_sonic_root
|
||||
sendln "~/Blanton_Script/nfc_polling.sh report"
|
||||
|
||||
|
||||
; ========== 100G Port Status ==========
|
||||
wait prompt_sonic_root
|
||||
sendln "config interface -n asic0 startup Ethernet513"
|
||||
sendln "sudo sfputil lpmode off Ethernet513"
|
||||
wait prompt_sonic_root
|
||||
sendln "config interface -n asic0 shutdown Ethernet513"
|
||||
sendln "sudo sfputil lpmode off Ethernet514"
|
||||
wait prompt_sonic_root
|
||||
sendln "config interface -n asic0 startup Ethernet513"
|
||||
wait prompt_sonic_root
|
||||
sendln "config interface -n asic1 startup Ethernet514"
|
||||
wait prompt_sonic_root
|
||||
@@ -128,6 +473,37 @@ sendln "config save -y"
|
||||
wait prompt_sonic_root
|
||||
sendln "show interfaces status Ethernet513,Ethernet514"
|
||||
|
||||
;=============================================================================================================
|
||||
; ========== 100G PRBS ==========
|
||||
;wait prompt_sonic_root
|
||||
;sendln "~/Blanton_Script/port_prbs_monitor.sh start"
|
||||
;wait prompt_sonic_root
|
||||
;sendln "sleep 10"
|
||||
;wait prompt_sonic_root
|
||||
;sendln "~/Blanton_Script/port_prbs_monitor.sh status"
|
||||
;wait prompt_sonic_root
|
||||
;sendln "~/Blanton_Script/port_prbs_monitor.sh stop"
|
||||
;wait prompt_sonic_root
|
||||
;sendln "~/Blanton_Script/port_prbs_monitor.sh report"
|
||||
;wait prompt_sonic_root
|
||||
;sendln "~/Blanton_Script/port_prbs_monitor.sh clear"
|
||||
|
||||
; ========== 100G Port Status ==========
|
||||
;wait prompt_sonic_root
|
||||
;sendln "sudo sfputil lpmode off Ethernet513"
|
||||
;wait prompt_sonic_root
|
||||
;sendln "sudo sfputil lpmode off Ethernet514"
|
||||
;wait prompt_sonic_root
|
||||
;sendln "config interface -n asic0 startup Ethernet513"
|
||||
;wait prompt_sonic_root
|
||||
;sendln "config interface -n asic1 startup Ethernet514"
|
||||
;wait prompt_sonic_root
|
||||
;sendln "config save -y"
|
||||
|
||||
;wait prompt_sonic_root
|
||||
;sendln "show interfaces status Ethernet513,Ethernet514"
|
||||
;=============================================================================================================
|
||||
|
||||
; ========== First Traffic Test ==========
|
||||
; Silent MAC
|
||||
wait prompt_sonic_root
|
||||
|
||||
@@ -20,48 +20,104 @@ sendln 'chmod +x ~/hammer/tools/amd/mlucas-avx2'
|
||||
wait prompt_sonic_root
|
||||
sendln "~/hammer/tools/amd/mlucas-avx2 -s l -cpu 0:15 > ~/hammer/tools/amd/mlucas_amm_log 2>&1 &"
|
||||
|
||||
; ========== BMC Stress Test ==========
|
||||
; ========== BMC DDR Stress Test ==========
|
||||
;wait prompt_sonic_root
|
||||
;sendln "./Blanton_Script/bmc_monitor_ddr.sh start"
|
||||
;wait prompt_sonic_root
|
||||
;sendln "./Blanton_Script/bmc_monitor.sh start"
|
||||
wait prompt_sonic_root
|
||||
sendln "./Blanton_Script/bmc_monitor_ddr.sh start"
|
||||
;sendln "bgctl run bmc-manager run '/usr/bin/memtester 64M 1'"
|
||||
sendln "bgctl run bmc-manager run '/usr/bin/memtester 64M'" ; Continue Execture
|
||||
|
||||
; ========== BMC Monitor Test ==========
|
||||
wait prompt_sonic_root
|
||||
sendln "./Blanton_Script/bmc_monitor.sh start"
|
||||
|
||||
|
||||
; ========== DDR MEMORY STRESS TEST ==========
|
||||
;wait prompt_sonic_root
|
||||
;sendln "bgctl run /usr/sbin/memtester 1G 100"
|
||||
wait prompt_sonic_root
|
||||
sendln "python ~/hammer/tools/stress_mem.py &"
|
||||
wait prompt_sonic_root
|
||||
sendln "python ~/hammer/tools/stress_mem.py &"
|
||||
wait prompt_sonic_root
|
||||
sendln "python ~/hammer/tools/stress_mem.py &"
|
||||
wait prompt_sonic_root
|
||||
sendln "python ~/hammer/tools/stress_mem.py &"
|
||||
wait prompt_sonic_root
|
||||
sendln "python ~/hammer/tools/stress_mem.py &"
|
||||
sendln "bgctl run /usr/sbin/memtester 1G" ; Continue Execture
|
||||
|
||||
; ========== SSD read/write ==========
|
||||
wait prompt_sonic_root
|
||||
sendln "python ~/hammer/tools/stress_ssd.py &"
|
||||
sendln "bgctl run qfx5252-stress-ssd 1G --runtime 86400 --passes 5 --write --force --log /host/hw-eval/jobs/qfx5252-stress-ssd.log"
|
||||
|
||||
; ========== USB read/write ==========
|
||||
; ---- Get USB partition node -> usb_dev ----
|
||||
usb_dev = ''
|
||||
wait prompt_sonic_root
|
||||
sendln "python ~/hammer/tools/stress_usb.py &"
|
||||
sendln 'D=$(bash ~/Blanton_Script/usb_target.sh -o dev 2>/dev/null); echo "<<D""EV=${D:-NONE}>>"'
|
||||
waitregex '<<DEV=([^>]*)>>'
|
||||
usb_dev = groupmatchstr1
|
||||
|
||||
wait prompt_sonic_root
|
||||
sprintf2 cmd "bgctl run qfx5252-stress-usb %s 256M --runtime 86400 --passes 1 --write --log /host/hw-eval/jobs/qfx5252-stress-usb.log" usb_dev
|
||||
sendln cmd
|
||||
|
||||
;wait prompt_sonic_root
|
||||
;sendln "bgctl run qfx5252-stress-usb /dev/sda1 256M --runtime 60 --passes 1 --write --log /host/hw-eval/qfx5252-stress-usb.log"
|
||||
|
||||
; ========== SHOW Background job ==========
|
||||
wait prompt_sonic_root
|
||||
sendln "jobs"
|
||||
wait prompt_sonic_root
|
||||
sendln "bgctl list"
|
||||
|
||||
; ========== BMC USB Test ==========
|
||||
wait prompt_sonic_root
|
||||
sendln 'echo "NCMIF=$(ls -d /sys/bus/usb/drivers/cdc_ncm/*/net/* 2>/dev/null | head -n 1 | xargs -r basename)"'
|
||||
timeout = 15
|
||||
waitregex 'NCMIF=[A-Za-z0-9_-]+'
|
||||
if result = 0 then
|
||||
messagebox 'cdc_ncm interface not found. Ping test skipped.' 'ERROR'
|
||||
goto skip_ping
|
||||
endif
|
||||
strlen matchstr
|
||||
cut_len = result - 6 ; 'NCMIF=' = 6 chars
|
||||
strcopy matchstr 7 cut_len ncm_if ; -> ncm_if = "eth2" / "eth3"
|
||||
|
||||
sprintf2 cmd 'ip -br link show %s' ncm_if
|
||||
wait prompt_sonic_root
|
||||
sendln cmd
|
||||
|
||||
wait prompt_sonic_root
|
||||
sendln 'systemctl stop qfx5252-bmc-usb-net-test.service 2>/dev/null || true'
|
||||
wait prompt_sonic_root
|
||||
sendln 'systemctl reset-failed qfx5252-bmc-usb-net-test.service 2>/dev/null || true'
|
||||
sprintf2 cmd 'systemd-run --unit=qfx5252-bmc-usb-net-test --property=Type=exec /usr/bin/ping -I %s -i 1 -W 2 -w 14400 192.168.200.200' ncm_if
|
||||
wait prompt_sonic_root
|
||||
sendln cmd
|
||||
|
||||
:skip_ping
|
||||
; restore the default (no cap): the traffic init below walks 108 VLANs per
|
||||
; unit and takes far longer than the 15 s set for the NCM probe above.
|
||||
timeout = 0
|
||||
|
||||
; ========== 10G/1G MGMT Ping Test ==========
|
||||
wait prompt_sonic_root
|
||||
sendln "./Blanton_Script/mgmt_ping_monitor.sh start"
|
||||
wait prompt_sonic_root
|
||||
pause 3
|
||||
sendln "./Blanton_Script/mgmt_ping_monitor.sh status"
|
||||
|
||||
; ========== NFC Test ==========
|
||||
wait prompt_sonic_root
|
||||
sendln "~/Blanton_Script/nfc_polling.sh start"
|
||||
wait prompt_sonic_root
|
||||
sendln "~/Blanton_Script/nfc_polling.sh status"
|
||||
|
||||
|
||||
; ========== 100G Port ==========
|
||||
; Lpmode Disable
|
||||
wait prompt_sonic_root
|
||||
sendln "sudo sfputil lpmode off Ethernet513"
|
||||
wait prompt_sonic_root
|
||||
sendln "sudo sfputil lpmode off Ethernet514"
|
||||
|
||||
wait prompt_sonic_root
|
||||
sendln "show interfaces status Ethernet513,Ethernet514"
|
||||
|
||||
;=============================================================================================================
|
||||
; ========== 100G PRBS ==========
|
||||
;wait prompt_sonic_root
|
||||
;sendln "~/Blanton_Script/port_prbs_monitor.sh start"
|
||||
;=============================================================================================================
|
||||
|
||||
|
||||
; ========== Traffic START ==========
|
||||
; Silent MAC
|
||||
@@ -112,11 +168,12 @@ endif
|
||||
|
||||
|
||||
|
||||
; ========== Get data every 10mins ==========
|
||||
; ========== Monitor loop: platform data + background jobs (pause 60s per round) ==========
|
||||
while 1
|
||||
include "utils/setup_pmon.ttl"
|
||||
; ========== Check Margin ==========
|
||||
if EN_Margin = 1 then
|
||||
include "utils/show_margin_status.ttl"
|
||||
endif
|
||||
wait prompt_sonic_root
|
||||
sendln "bgctl list"
|
||||
wait prompt_sonic_root
|
||||
sendln "jobs"
|
||||
pause 60
|
||||
endwhile
|
||||
@@ -12,6 +12,39 @@ pause 1
|
||||
|
||||
; ========== Kill Process ==========
|
||||
include "utils/kill_all_process.ttl"
|
||||
; bgctrl all stop
|
||||
wait prompt_sonic_root
|
||||
sendln "bgctl stop --all"
|
||||
wait prompt_sonic_root
|
||||
sendln "bgctl stop --all"
|
||||
; BMC USB Test STOP
|
||||
wait prompt_sonic_root
|
||||
sendln "systemctl stop qfx5252-bmc-usb-net-test.service"
|
||||
; 10G/1G MGMT Test STOP
|
||||
wait prompt_sonic_root
|
||||
sendln "~/Blanton_Script/mgmt_ping_monitor.sh status"
|
||||
wait prompt_sonic_root
|
||||
sendln "~/Blanton_Script/mgmt_ping_monitor.sh stop"
|
||||
wait prompt_sonic_root
|
||||
sendln "~/Blanton_Script/nfc_polling.sh stop"
|
||||
|
||||
;=============================================================================================================
|
||||
; 100G PRBS STOP
|
||||
;wait prompt_sonic_root
|
||||
;sendln "~/Blanton_Script/port_prbs_monitor.sh stop"
|
||||
;wait prompt_sonic_root
|
||||
;sendln "sudo sfputil lpmode off Ethernet513"
|
||||
;wait prompt_sonic_root
|
||||
;sendln "sudo sfputil lpmode off Ethernet514"
|
||||
;wait prompt_sonic_root
|
||||
;sendln "config interface -n asic0 startup Ethernet513"
|
||||
;wait prompt_sonic_root
|
||||
;sendln "config interface -n asic1 startup Ethernet514"
|
||||
;=============================================================================================================
|
||||
|
||||
|
||||
|
||||
|
||||
; ========== TAKE DATA ==========
|
||||
include "utils/setup_pmon.ttl"
|
||||
include "utils/show_dmesg.ttl"
|
||||
@@ -25,22 +58,55 @@ include "utils/show_pcie_error_reg_DDR.ttl"
|
||||
include "utils/show_pcie_error_reg_I210.ttl"
|
||||
include "utils/show_pcie_error_reg_SSD.ttl"
|
||||
|
||||
; ========== BMC TAKE DATA ==========
|
||||
wait prompt_sonic_root
|
||||
sendln "./Blanton_Script/bmc_monitor_ddr.sh stop"
|
||||
sendln "/usr/sbin/ras-mc-ctl --summary"
|
||||
|
||||
; ========== BMC DDR TAKE DATA ==========
|
||||
;wait prompt_sonic_root
|
||||
;sendln "./Blanton_Script/bmc_monitor_ddr.sh stop"
|
||||
;wait prompt_sonic_root
|
||||
;sendln "./Blanton_Script/bmc_monitor.sh stop"
|
||||
;wait prompt_sonic_root
|
||||
;sendln "cat ./Blanton_Script/log/bmc_poll.log"
|
||||
;wait prompt_sonic_root
|
||||
;sendln "cat ./Blanton_Script/log/bmc_ddr.log"
|
||||
|
||||
; ========== BMC Monitor TAKE DATA ==========
|
||||
wait prompt_sonic_root
|
||||
sendln "./Blanton_Script/bmc_monitor.sh stop"
|
||||
wait prompt_sonic_root
|
||||
sendln "cat ./Blanton_Script/log/bmc_poll.log"
|
||||
|
||||
; ========== BMC USB Test result ==========
|
||||
wait prompt_sonic_root
|
||||
sendln "cat ./Blanton_Script/log/bmc_ddr.log"
|
||||
sendln "rm -f ~/Blanton_Script/log/bmc_usb_net.log"
|
||||
wait prompt_sonic_root
|
||||
sendln "journalctl -u qfx5252-bmc-usb-net-test.service --no-pager -o short-iso > ~/Blanton_Script/log/bmc_usb_net.log"
|
||||
|
||||
|
||||
; ========== CHECK Stress results ==========
|
||||
wait prompt_sonic_root
|
||||
sendln "cat ~/hammer/tools/amd/mlucas_amm_log"
|
||||
wait prompt_sonic_root
|
||||
sendln "cat ~/hammer/tools/log.stress_ssd"
|
||||
sendln "cat /host/hw-eval/jobs/qfx5252-stress-ssd.log"
|
||||
wait prompt_sonic_root
|
||||
sendln "cat /host/hw-eval/jobs/qfx5252-stress-usb.log"
|
||||
|
||||
; ========== 10G/1G MGMT Test result ==========
|
||||
wait prompt_sonic_root
|
||||
sendln "cat ~/Blanton_Script/log/mgmt_ping.log"
|
||||
|
||||
; ========== NFC Test result ==========
|
||||
wait prompt_sonic_root
|
||||
sendln "~/Blanton_Script/nfc_polling.sh report"
|
||||
|
||||
; ========== 100G Port ==========
|
||||
wait prompt_sonic_root
|
||||
sendln "show interfaces status Ethernet513,Ethernet514"
|
||||
;=============================================================================================================
|
||||
;wait prompt_sonic_root
|
||||
;sendln "cat ~/Blanton_Script/log/port_prbs.log "
|
||||
;=============================================================================================================
|
||||
|
||||
; ========== CHECK Traffic counters ==========
|
||||
if SWB_UNIT0 = 1 && SWB_UNIT1 = 1 then
|
||||
@@ -62,11 +128,113 @@ else
|
||||
|
||||
endif
|
||||
|
||||
; ========== BER ==========
|
||||
; PRBS takes the SerDes out of normal operation, so this runs AFTER the
|
||||
; traffic report. sleep 30 matches blanton_ber.sh BER_INTERVAL - reporting
|
||||
; earlier reads an interval that has not finished accumulating.
|
||||
if SWB_UNIT0 = 1 && SWB_UNIT1 = 1 then
|
||||
wait prompt_sonic_root
|
||||
sendln "./Blanton_Script/blanton_ber.sh init"
|
||||
wait prompt_sonic_root
|
||||
sendln "./Blanton_Script/blanton_ber.sh start"
|
||||
wait prompt_sonic_root
|
||||
sendln "sleep 30"
|
||||
wait prompt_sonic_root
|
||||
sendln "./Blanton_Script/blanton_ber.sh report"
|
||||
wait prompt_sonic_root
|
||||
sendln "./Blanton_Script/blanton_ber.sh stop"
|
||||
wait prompt_sonic_root
|
||||
sendln "./Blanton_Script/blanton_ber.sh clear"
|
||||
elseif SWB_UNIT0 = 1 && SWB_UNIT1 = 0 then
|
||||
wait prompt_sonic_root
|
||||
sendln "./Blanton_Script/blanton_ber.sh init -u 0"
|
||||
wait prompt_sonic_root
|
||||
sendln "./Blanton_Script/blanton_ber.sh start -u 0"
|
||||
wait prompt_sonic_root
|
||||
sendln "sleep 30"
|
||||
wait prompt_sonic_root
|
||||
sendln "./Blanton_Script/blanton_ber.sh report -u 0"
|
||||
wait prompt_sonic_root
|
||||
sendln "./Blanton_Script/blanton_ber.sh stop -u 0"
|
||||
wait prompt_sonic_root
|
||||
sendln "./Blanton_Script/blanton_ber.sh clear -u 0"
|
||||
elseif SWB_UNIT0 = 0 && SWB_UNIT1 = 1 then
|
||||
wait prompt_sonic_root
|
||||
sendln "./Blanton_Script/blanton_ber.sh init -u 1"
|
||||
wait prompt_sonic_root
|
||||
sendln "./Blanton_Script/blanton_ber.sh start -u 1"
|
||||
wait prompt_sonic_root
|
||||
sendln "sleep 30"
|
||||
wait prompt_sonic_root
|
||||
sendln "./Blanton_Script/blanton_ber.sh report -u 1"
|
||||
wait prompt_sonic_root
|
||||
sendln "./Blanton_Script/blanton_ber.sh stop -u 1"
|
||||
wait prompt_sonic_root
|
||||
sendln "./Blanton_Script/blanton_ber.sh clear -u 1"
|
||||
else
|
||||
|
||||
endif
|
||||
|
||||
|
||||
; ========== NVME Err Info ==========
|
||||
wait prompt_sonic_root
|
||||
sendln "/usr/sbin/nvme smart-log -H /dev/nvme0"
|
||||
wait prompt_sonic_root
|
||||
sendln "/usr/sbin/smartctl -x /dev/nvme0"
|
||||
|
||||
|
||||
wait prompt_sonic_root
|
||||
sendln "show reboot-cause"
|
||||
|
||||
; ========== Check Margin ==========
|
||||
if EN_Margin = 1 then
|
||||
include "utils/show_margin_status.ttl"
|
||||
endif
|
||||
|
||||
; ========== Show Power on uptime ==========
|
||||
wait prompt_sonic_root
|
||||
sendln "show uptime"
|
||||
|
||||
|
||||
; ---- Get USB partition node -> usb_dev ----
|
||||
usb_dev = ''
|
||||
wait prompt_sonic_root
|
||||
sendln 'D=$(bash ~/Blanton_Script/usb_target.sh -o dev 2>/dev/null); echo "<<D""EV=${D:-NONE}>>"'
|
||||
waitregex '<<DEV=([^>]*)>>'
|
||||
usb_dev = groupmatchstr1
|
||||
|
||||
wait prompt_sonic_root
|
||||
sendln "sync"
|
||||
wait prompt_sonic_root
|
||||
sprintf2 cmd "mount %s /mnt/usb" usb_dev
|
||||
sendln cmd
|
||||
|
||||
; ========== Copy Stress Log to USB ==========
|
||||
wait prompt_sonic_root
|
||||
sendln "cp ./Blanton_Script/log/bmc_usb_net.log /host/hw-eval/jobs/"
|
||||
wait prompt_sonic_root
|
||||
sendln "cp ./Blanton_Script/log/bmc_poll.log /host/hw-eval/jobs/"
|
||||
wait prompt_sonic_root
|
||||
sendln "cp ./Blanton_Script/log/mgmt_ping.log /host/hw-eval/jobs/"
|
||||
wait prompt_sonic_root
|
||||
sendln "cp ./Blanton_Script/log/nfc_poll.log /host/hw-eval/jobs/"
|
||||
|
||||
|
||||
|
||||
wait prompt_sonic_root
|
||||
getdate ts_date "%Y%m%d"
|
||||
gettime ts_time "%H%M"
|
||||
sprintf2 usb_dst "/mnt/usb/jobs-%s_%s" ts_date ts_time
|
||||
sprintf2 cmd "cp -r /host/hw-eval/jobs/ %s" usb_dst
|
||||
sendln cmd
|
||||
|
||||
; ========== HW Test Session ==========
|
||||
wait prompt_sonic_root
|
||||
sendln "exit"
|
||||
wait "Script done"
|
||||
wait prompt_sonic_root
|
||||
sendln "hw-test-session finish"
|
||||
wait prompt_sonic_root
|
||||
sendln "bgctl reset --yes"
|
||||
|
||||
messagebox 'GOOD JOB! Test Case DONE' 'teraterm'
|
||||
@@ -0,0 +1,158 @@
|
||||
include "config.ttl"
|
||||
|
||||
flushrecv
|
||||
;================================================================
|
||||
; Log File Creation
|
||||
;================================================================
|
||||
gettime str_starttime "%Y%m%d-%H%M%S"
|
||||
getdir mdir
|
||||
|
||||
if EN_log = 1 then
|
||||
sprintf2 filename '%s\Logs\%s_%s_%s.log' mdir project_name strTestcase str_starttime
|
||||
logopen filename 0 1 1 1
|
||||
endif
|
||||
|
||||
; ========== Root Login ==========
|
||||
wait prompt_login
|
||||
sendln "admin"
|
||||
wait "Password:"
|
||||
sendln "YourPaSsWoRd"
|
||||
wait prompt_sonic
|
||||
sendln "sudo -i"
|
||||
|
||||
; ========== Pre Setting ==========
|
||||
; Make log directory
|
||||
wait prompt_sonic_root
|
||||
sendln "mkdir ./logs"
|
||||
|
||||
; Setting System Time
|
||||
getdate datestr
|
||||
gettime timestr
|
||||
sprintf2 cmd 'sudo date -s "%s %s"' datestr timestr
|
||||
sendln cmd
|
||||
|
||||
;Stress log clear
|
||||
wait prompt_sonic_root
|
||||
sendln "rm /host/hw-eval/jobs/*"
|
||||
|
||||
; ========== HW Test Session ==========
|
||||
; Clear session
|
||||
wait prompt_sonic_root
|
||||
sendln "hw-test-session finish"
|
||||
wait prompt_sonic_root
|
||||
sendln "bgctl reset --yes"
|
||||
wait prompt_sonic_root
|
||||
sendln "bgctl stop --all"
|
||||
wait prompt_sonic_root
|
||||
sendln "bgctl list"
|
||||
|
||||
wait prompt_sonic_root
|
||||
sendln "hw-test-session start"
|
||||
wait prompt_sonic_root
|
||||
sendln "hw-test-session log"
|
||||
wait prompt_sonic_root
|
||||
sendln "hw-test-session status"
|
||||
|
||||
; ========== FAN SPEED ==========
|
||||
wait prompt_sonic_root
|
||||
sendln "echo 18-0020 > /sys/bus/i2c/drivers/max31790/unbind"
|
||||
wait prompt_sonic_root
|
||||
sendln "sleep .5"
|
||||
wait prompt_sonic_root
|
||||
sendln "echo 18-0020 > /sys/bus/i2c/drivers/max31790/bind"
|
||||
wait prompt_sonic_root
|
||||
sendln "echo 25-0020 > /sys/bus/i2c/drivers/max31790/unbind"
|
||||
wait prompt_sonic_root
|
||||
sendln "sleep .5"
|
||||
wait prompt_sonic_root
|
||||
sendln "echo 25-0020 > /sys/bus/i2c/drivers/max31790/bind"
|
||||
|
||||
wait prompt_sonic_root
|
||||
sprintf2 fan_ctrl_cmd 'fan-speed-control.sh %d' FAN_SPEED
|
||||
sendln fan_ctrl_cmd
|
||||
|
||||
wait "Set all configured fan channels to"
|
||||
sendln "y"
|
||||
|
||||
; ========== Wait DUT Init ==========
|
||||
include "utils/wait_init.ttl"
|
||||
|
||||
; ========== DUT Info ==========
|
||||
wait prompt_sonic_root
|
||||
sendln "show boot"
|
||||
wait prompt_sonic_root
|
||||
sendln "show version"
|
||||
wait prompt_sonic_root
|
||||
sendln "fwutil show status"
|
||||
wait prompt_sonic_root
|
||||
sendln "show system-memory"
|
||||
wait prompt_sonic_root
|
||||
sendln "show service"
|
||||
wait prompt_sonic_root
|
||||
sendln "show platform syseeprom"
|
||||
wait prompt_sonic_root
|
||||
sendln "show platform ssdhealth"
|
||||
wait prompt_sonic_root
|
||||
sendln "qfx5252-tpm-version"
|
||||
wait prompt_sonic_root
|
||||
sendln "/usr/sbin/nvme smart-log -H /dev/nvme0"
|
||||
wait prompt_sonic_root
|
||||
sendln "/usr/sbin/smartctl -x /dev/nvme0"
|
||||
|
||||
; ========== BMC version ==========
|
||||
;wait prompt_sonic_root
|
||||
;sendln "bmc-manager run 'cat /etc/issue'"
|
||||
wait prompt_sonic_root
|
||||
sendln "bmc-first-enroll"
|
||||
wait prompt_sonic_root
|
||||
sendln "bmc-manager version"
|
||||
wait prompt_sonic_root
|
||||
sendln "bmc-manager status"
|
||||
|
||||
; ========== CLEAR PCIE Error ==========
|
||||
include "utils/show_pcie_error_reg_TH6_SWB0.ttl"
|
||||
include "utils/show_pcie_error_reg_TH6_SWB1.ttl"
|
||||
include "utils/show_pcie_error_reg_FPGA.ttl"
|
||||
include "utils/show_pcie_error_reg_BMC.ttl"
|
||||
include "utils/show_pcie_error_reg_DDR.ttl"
|
||||
include "utils/show_pcie_error_reg_I210.ttl"
|
||||
include "utils/show_pcie_error_reg_SSD.ttl"
|
||||
|
||||
wait prompt_sonic_root
|
||||
sendln "/usr/sbin/ras-mc-ctl --summary"
|
||||
|
||||
; ========== Check PCIE tree + PCIE link status + GET PCIE bandwidth Test ==========
|
||||
include "utils/pcie_bus.ttl"
|
||||
|
||||
; ========== TAKE DATA ==========
|
||||
include "utils/setup_pmon.ttl"
|
||||
include "utils/show_dmesg.ttl"
|
||||
|
||||
; ========== Full Load ==========
|
||||
; AMD CPU STRESS TEST
|
||||
wait prompt_sonic_root
|
||||
sendln 'chmod +x ~/hammer/tools/amd/mlucas-avx2'
|
||||
wait prompt_sonic_root
|
||||
sendln "~/hammer/tools/amd/mlucas-avx2 -s l -cpu 0:15 > ~/hammer/tools/amd/mlucas_amm_log 2>&1 &"
|
||||
|
||||
; TR518 TEST
|
||||
wait prompt_sonic_root
|
||||
sendln "~/Blanton_Script/blanton_tr518.sh start"
|
||||
|
||||
while 1
|
||||
; Base info polling
|
||||
include "utils/setup_pmon.ttl"
|
||||
|
||||
; TH6 Power Polling
|
||||
wait prompt_sonic_root
|
||||
sendln "~/Blanton_Script/TH6_SWB0_power_readback.sh"
|
||||
wait prompt_sonic_root
|
||||
sendln "~/Blanton_Script/TH6_SWB1_power_readback.sh"
|
||||
|
||||
; Background jobs Check
|
||||
wait prompt_sonic_root
|
||||
sendln "bgctl list"
|
||||
wait prompt_sonic_root
|
||||
sendln "jobs"
|
||||
pause 60
|
||||
endwhile
|
||||
@@ -14,6 +14,8 @@
|
||||
| `margin_operation <ch> <op>` | 只切 OPERATION register |
|
||||
| `margin_apply_profile <file>` | 批次套用 profile(套用在當前載入的 LTC2980) |
|
||||
| `margin_save` | 寫入 NVM(當前 LTC2980 的兩個 LTC2977 都寫) |
|
||||
| `margin_save all` | 對 `settings/` 底下**全部** LTC2980 寫入 NVM,結束後回到原本載入的那顆 |
|
||||
| `margin_save blanton` | **Blanton SONiC 專用**:18 顆 LTC2977 全部走原生 i2c bus 寫入,不需要 `margin_init` |
|
||||
| `margin_debug [on\|off]` | 開關 debug 模式(不帶參數則 toggle) |
|
||||
| `margin_log [on\|off]` | 開關 log 記錄(不帶參數則 toggle,預設開啟) |
|
||||
|
||||
@@ -70,16 +72,18 @@ margin_operation 0 high
|
||||
margin_operation 0 nominal
|
||||
|
||||
# 批次套用 profile(套在當前載入的 LTC2980)
|
||||
margin_apply_profile profiles/comboA.conf
|
||||
margin_apply_profile profiles/comboB.conf
|
||||
margin_apply_profile profiles/combo_SWB_CONN13_high.conf
|
||||
margin_apply_profile profiles/combo_SWB_CONN13_low.conf
|
||||
margin_apply_profile profiles/all_off.conf
|
||||
|
||||
# 切換到另一顆 LTC2980
|
||||
margin_init Blanton_SWB1_CONN16
|
||||
margin_apply_profile profiles/comboA.conf
|
||||
margin_apply_profile profiles/combo_SWB_CONN16_high.conf
|
||||
|
||||
# 儲存到 NVM(斷電後保留)
|
||||
margin_save
|
||||
margin_save # 只寫當前載入的那顆
|
||||
margin_save all # settings/ 底下 9 顆全部寫,最後自動切回原本那顆
|
||||
margin_save blanton # Blanton SONiC 專用捷徑,18 顆一次寫完(見下)
|
||||
```
|
||||
|
||||
## 一次掃所有 LTC2980
|
||||
@@ -104,7 +108,7 @@ BOARDS=(
|
||||
## 一次套 profile 到所有 LTC2980
|
||||
|
||||
`script/margin_apply_profile_all.sh` 對多顆 LTC2980 依 `BOARDS[i]` 配對
|
||||
`PROFILES[i]` 套用 profile(預設全部 `comboA`)。
|
||||
`PROFILES[i]` 套用 profile(預設 SWB 各用自己 CONN 的 `_high`,CB 用 `combo_high3`)。
|
||||
|
||||
```bash
|
||||
source script/margin_apply_profile_all.sh
|
||||
@@ -120,8 +124,8 @@ BOARDS=(
|
||||
)
|
||||
|
||||
PROFILES=(
|
||||
"comboA" # Blanton_CB_CONN13
|
||||
"comboB" # Blanton_SWB0_CONN13 ← 改成 comboB
|
||||
"combo_high3" # Blanton_CB_CONN13
|
||||
"combo_SWB_CONN13_high" # Blanton_SWB0_CONN13
|
||||
...
|
||||
)
|
||||
```
|
||||
@@ -129,18 +133,109 @@ PROFILES=(
|
||||
`PROFILES` 寫名字即可(不含路徑跟 `.conf`),script 會自動展開成
|
||||
`profiles/<name>.conf`。兩個陣列長度不一致會直接報錯。
|
||||
|
||||
## 一次把所有 LTC2980 寫入 NVM
|
||||
> ⚠️ **SWB 的 profile 是 per-CONN 的**:每個檔的百分比對應該片板子的軌,
|
||||
> 套到別的 CONN 會 margin 到錯的東西(而且不會報錯)。這裡不能全部填同一個名字。
|
||||
> HIGH / LOW 兩輪就是把 `_high` 全換成 `_low` 再跑一次。
|
||||
|
||||
`script/margin_save_all.sh` 對 `BOARDS` 列出的每顆 LTC2980 跑 `margin_save`。
|
||||
## 一次把所有 LTC2980 寫入 NVM
|
||||
|
||||
> ⚠️ `margin_save` 會把當前 margin / OV / UV 設定**永久寫入 NVM**,
|
||||
> 斷電後保留。執行前先用 `margin_status_all.sh` 確認狀態正確。
|
||||
|
||||
**全部 9 顆**直接用內建的:
|
||||
|
||||
```bash
|
||||
margin_save all
|
||||
```
|
||||
|
||||
依 `settings/*.conf` 的檔名順序跑,中途某顆失敗**不會停**(半套完成的狀態比全部試完更難查),
|
||||
最後印出「幾顆成功 / 哪幾顆失敗」的總結,並把 `margin_init` 切回你呼叫前載入的那顆。
|
||||
|
||||
**只寫其中幾顆**才需要 `script/margin_save_all.sh`,編 script 頂端的 `BOARDS` 陣列:
|
||||
|
||||
```bash
|
||||
source script/margin_save_all.sh
|
||||
```
|
||||
|
||||
要改寫哪幾顆,編 script 頂端的 `BOARDS` 陣列即可(同前述)。
|
||||
### 送出去的是什麼
|
||||
|
||||
`margin_save` 對每顆 LTC2977 送一次 `STORE_USER_ALL`(PMBus command `0x15`),
|
||||
**不分 page**(這是整顆晶片的命令),也**不帶 data byte** —— 它是 SMBus send-byte:
|
||||
|
||||
```bash
|
||||
i2cset -y 4 0x5C 0x15 c # CB CONN13(原生 bus 4)
|
||||
cb_pmbus_write 8 0x5C 0x15 # SWB0 CONN13(CB FPGA F3 Ch8)
|
||||
```
|
||||
|
||||
> v2.7.0 之前送的是 `0x15 0x00`(write-byte)。LTC2977 在 CB 上吃得下去,但那是零件寬容,
|
||||
> 不是規範。同時 v2.7.0 起會檢查回傳值 —— 以前 NACK 了還是印 `Change Saved`。
|
||||
|
||||
每顆之間會 `sleep $MARGIN_STORE_SETTLE`(預設 0.5 秒)。這不是量測值,是保守的保護:
|
||||
NVM 寫入需要時間,而這支工具**沒有**去 poll 零件的 busy bit。`margin_save all` 連續送 18 次,
|
||||
這個間隔就是唯一的緩衝。要關掉設成空字串即可。
|
||||
|
||||
## `margin_save blanton` — Blanton SONiC 專用
|
||||
|
||||
Blanton 這台把 CB FPGA F3 的 I2C 通道**同時掛成了原生 Linux i2c adapter**,
|
||||
所以 SWB 上的 LTC2977 不必走 `cb_pmbus_*` / pcimem,用 `i2cset` 直接打得到:
|
||||
|
||||
| FPGA F3 通道 | Linux bus | 板 / 接頭 |
|
||||
|---|---|---|
|
||||
| Ch6 | 13 | SWB0 CONN14 / CONN16 |
|
||||
| Ch8 | 15 | SWB0 CONN13 / CONN15 |
|
||||
| Ch7 | 14 | SWB1 CONN14 / CONN16 |
|
||||
| Ch9 | 16 | SWB1 CONN13 / CONN15 |
|
||||
| —(原生) | 4 | CB CONN13 |
|
||||
|
||||
因此 `margin_save blanton` 就是一張平表跑完 18 顆,**不需要 `margin_init`**、
|
||||
不做 FPGA 通道初始化、不做 probe,也不會動到你當前載入的那顆板子:
|
||||
|
||||
```bash
|
||||
margin_save blanton
|
||||
```
|
||||
|
||||
```
|
||||
CB CONN13 bus 4 0x5C : saved
|
||||
SWB0 CONN13 bus 15 0x5C : saved
|
||||
...
|
||||
margin_save blanton: 18 saved, 0 failed
|
||||
```
|
||||
|
||||
送出去的就是這 18 行(2026-08-27 上機驗證):
|
||||
|
||||
```bash
|
||||
i2cset -f -y 4 0x5C 0x15 ; i2cset -f -y 4 0x5E 0x15 # CB CONN13
|
||||
i2cset -f -y 15 0x5C 0x15 ; i2cset -f -y 15 0x5E 0x15 # SWB0 CONN13
|
||||
i2cset -f -y 13 0x5C 0x15 ; i2cset -f -y 13 0x5E 0x15 # SWB0 CONN14
|
||||
i2cset -f -y 15 0x62 0x15 ; i2cset -f -y 15 0x64 0x15 # SWB0 CONN15
|
||||
i2cset -f -y 13 0x62 0x15 ; i2cset -f -y 13 0x64 0x15 # SWB0 CONN16
|
||||
i2cset -f -y 16 0x5C 0x15 ; i2cset -f -y 16 0x5E 0x15 # SWB1 CONN13
|
||||
i2cset -f -y 14 0x5C 0x15 ; i2cset -f -y 14 0x5E 0x15 # SWB1 CONN14
|
||||
i2cset -f -y 16 0x62 0x15 ; i2cset -f -y 16 0x64 0x15 # SWB1 CONN15
|
||||
i2cset -f -y 14 0x62 0x15 ; i2cset -f -y 14 0x64 0x15 # SWB1 CONN16
|
||||
```
|
||||
|
||||
`-f` 是因為這些 bus 上的 LTC2977 可能已被 kernel driver 認走;上機驗證過的指令帶 `-f`,就照原樣保留。
|
||||
|
||||
**這台沒裝滿的話**,把 `margin.sh` 頂端 `MARGIN_BLANTON_STORE` 陣列裡對應的行註解掉即可,
|
||||
不要讓它去打不存在的板子。bus 節點不存在(`/dev/i2c-N` 沒有)與晶片不回應(NACK)
|
||||
會分別報不同訊息 —— 前者代表 FPGA 的 i2c adapter 根本沒 enumerate,後者才是板子的問題。
|
||||
|
||||
## Profile 一覽
|
||||
|
||||
| Profile | 適用 | 說明 |
|
||||
|---|---|---|
|
||||
| `combo_SWB_CONN13_high` / `_low` | **SWB CONN13 專用** | 每個 channel 依該板的軌給 3% 或 5% |
|
||||
| `combo_SWB_CONN14_high` / `_low` | **SWB CONN14 專用** | 同上 |
|
||||
| `combo_SWB_CONN15_high` / `_low` | **SWB CONN15 專用** | 同上 |
|
||||
| `combo_SWB_CONN16_high` / `_low` | **SWB CONN16 專用** | 同上 |
|
||||
| `combo_high3` / `combo_low3` | 通用 | 全部 channel ±3% |
|
||||
| `combo_high5` / `combo_low5` | 通用 | 全部 channel ±5% |
|
||||
| `combo_normal` | 通用 | 全部回 nominal |
|
||||
| `all_off` | 通用 | 全部 OPERATION off |
|
||||
|
||||
SWB0 和 SWB1 的同號 CONN 共用同一個 profile(兩片板的軌完全相同,
|
||||
只差 I2C bus)。CB CONN13 沒有專屬 profile,用通用的 `combo_high3` / `combo_low3`。
|
||||
|
||||
## Operation 對應
|
||||
|
||||
|
||||
+3
-2
@@ -424,8 +424,9 @@ SWB debug 指令(margin.sh v2.6.0 新增,皆為 `blanton_cb_i2c.sh` 的薄包裝
|
||||
`Blanton_SWB0_CONN14.conf` 的第一顆也是 `0:0x5E`。兩個 CONN 現在同在 Ch6,
|
||||
位址相撞。對照 SWB1 的規律(CONN13=`0x5C/0x5D`、CONN14=`0x5E/0x5F`),
|
||||
SWB0_CONN13 第二顆推測應為 `0:0x5D` — **尚未修改,待硬體確認**。
|
||||
- `margin_save` 走 `0x15` + data byte(`i2cset ... 0x15 0x00 b`)。PMBus 規範
|
||||
STORE_USER_ALL 是 send-byte;CB 上實測可用故保留原樣,swb 路徑沿用同一寫法。
|
||||
- `margin_save` 走 `0x15` **send-byte**(`i2cset ... 0x15 c` / `cb_pmbus_write <ch> <addr> 0x15`),
|
||||
不帶 data byte。v2.7.0 之前送的是 `0x15 0x00`(write-byte),CB 上實測可用,
|
||||
但那是零件寬容而非規範。
|
||||
|
||||
---
|
||||
|
||||
|
||||
@@ -5,6 +5,24 @@
|
||||
# =============================================================================
|
||||
# Version Control
|
||||
# -----------------------------------------------------------------------------
|
||||
# v2.7.0 margin_save fixes and batching:
|
||||
# * STORE_USER_ALL (0x15) is now issued as an SMBus send-byte instead
|
||||
# of a write-byte with a dummy 0x00 data byte. The LTC2977 accepted
|
||||
# the old form on CB, but it was the wrong protocol.
|
||||
# i2c path: i2cset ... 0x15 c swb path: cb_pmbus_write ch addr 0x15
|
||||
# * margin_save all -- STORE_USER_ALL on every board in settings/,
|
||||
# then re-init whichever board was loaded beforehand. Does not stop
|
||||
# on the first failure; prints a per-board summary at the end.
|
||||
# * The store result is now checked. It used to be discarded, so a
|
||||
# NACK still printed "Change Saved".
|
||||
# * MARGIN_STORE_SETTLE (default 0.5s) between stores - nothing polls
|
||||
# the part's busy bit, and `all` issues 18 of them in a row.
|
||||
# * margin_save blanton -- Blanton SONiC shortcut. On this platform the
|
||||
# CB FPGA F3 I2C channels also appear as native Linux i2c adapters
|
||||
# (Ch6->bus 13, Ch7->14, Ch8->15, Ch9->16), so all 18 LTC2977 can be
|
||||
# stored with plain i2cset: no margin_init, no FPGA channel setup,
|
||||
# no pcimem. Bench-verified on the DUT 2026-08-27. The board list is
|
||||
# MARGIN_BLANTON_STORE at the top of this file.
|
||||
# v2.6.0 SWB path actually wired to the shared CB I2C package. blanton_cb_i2c.sh
|
||||
# and blanton_fpga_pcimem.sh live in the PARENT dir (Blanton_Script/), not
|
||||
# next to margin.sh, so the backend is now searched in both places.
|
||||
@@ -115,6 +133,45 @@ ONOFF_ENABLE_VALUE="0x1a" # controlled_on=1, use_pmbus=1, use_control=0, b1=1
|
||||
# margin_status after all channels are set. Bump this if you want margin_set's own
|
||||
# read-back to reflect the settled value.
|
||||
MARGIN_SETTLE="0.3"
|
||||
# Pause after each STORE_USER_ALL. The LTC2977 is busy committing NVM once the
|
||||
# command lands and nothing here polls a busy bit, so this is a plain guard
|
||||
# rather than a measured value - it matters most for `margin_save all`, which
|
||||
# fires 18 stores back to back. Set to "" to disable.
|
||||
MARGIN_STORE_SETTLE="${MARGIN_STORE_SETTLE:-0.5}"
|
||||
|
||||
# --- `margin_save blanton`: the bench-verified Blanton SONiC store list -------
|
||||
# On this platform the CB FPGA F3 I2C channels are ALSO exposed as native Linux
|
||||
# i2c adapters, so every LTC2977 - CB and SWB alike - can be reached with plain
|
||||
# i2cset. That path needs no FPGA channel setup, no pcimem, and no margin_init:
|
||||
# one flat list, 18 commands, done. Verified on the DUT 2026-08-27.
|
||||
#
|
||||
# FPGA F3 channel -> Linux bus: Ch6->13 Ch7->14 Ch8->15 Ch9->16
|
||||
#
|
||||
# Entry format: "bus:addr:label". Comment out the lines for boards this DUT does
|
||||
# not have rather than letting them fail - a single-SWB unit is a normal build.
|
||||
MARGIN_BLANTON_STORE=(
|
||||
"4:0x5C:CB CONN13"
|
||||
"4:0x5E:CB CONN13"
|
||||
"15:0x5C:SWB0 CONN13"
|
||||
"15:0x5E:SWB0 CONN13"
|
||||
"13:0x5C:SWB0 CONN14"
|
||||
"13:0x5E:SWB0 CONN14"
|
||||
"15:0x62:SWB0 CONN15"
|
||||
"15:0x64:SWB0 CONN15"
|
||||
"13:0x62:SWB0 CONN16"
|
||||
"13:0x64:SWB0 CONN16"
|
||||
"16:0x5C:SWB1 CONN13"
|
||||
"16:0x5E:SWB1 CONN13"
|
||||
"14:0x5C:SWB1 CONN14"
|
||||
"14:0x5E:SWB1 CONN14"
|
||||
"16:0x62:SWB1 CONN15"
|
||||
"16:0x64:SWB1 CONN15"
|
||||
"14:0x62:SWB1 CONN16"
|
||||
"14:0x64:SWB1 CONN16"
|
||||
)
|
||||
# -f because the LTC2977s may be claimed by a kernel driver on these buses; the
|
||||
# command that was verified on the bench carries it, so it stays.
|
||||
MARGIN_BLANTON_I2CSET_FLAGS="${MARGIN_BLANTON_I2CSET_FLAGS:--f -y}"
|
||||
_BUS=""
|
||||
_ADDR=""
|
||||
_PRE_SCOPE="" # set while inside a PRE/POST wrapped operation; prevents nested re-entry
|
||||
@@ -257,6 +314,20 @@ _swb_write() {
|
||||
return 0
|
||||
}
|
||||
|
||||
# _swb_send <cmd> -> cb_pmbus_write with NO data byte (SMBus send-byte).
|
||||
# cb_pmbus_write routes a no-data call to _cbi2c_xfer_cmd_only: START, slave+W,
|
||||
# command byte, STOP. That is what STORE_USER_ALL expects.
|
||||
_swb_send() {
|
||||
local reg=$1
|
||||
[ "$DEBUG_MODE" = "1" ] && echo -e "\033[90m[DEBG] cb_pmbus_write $CB_I2C_CH $_ADDR $reg (send-byte)\033[0m"
|
||||
if ! _swb_call cb_pmbus_write "$CB_I2C_CH" "$_ADDR" "$reg" >/dev/null 2>&1; then
|
||||
echo -e "[\033[31mERRO\033[0m] cb_pmbus_write ch=$CB_I2C_CH $_ADDR reg=$reg (send-byte) failed (NACK/timeout)" >&2
|
||||
_log_detail "ERRO cb_pmbus_write ch=$CB_I2C_CH $_ADDR $reg send-byte"
|
||||
return 1
|
||||
fi
|
||||
return 0
|
||||
}
|
||||
|
||||
# _swb_read_word <reg> -> echoes "0xXXXX" parsed out of cb_pmbus_read's "=> 0xXXXX"
|
||||
_swb_read_word() {
|
||||
local reg=$1 out word
|
||||
@@ -520,6 +591,20 @@ _i2c_write_byte() {
|
||||
i2cset -y "$_BUS" "$_ADDR" "$1" "$2" b >/dev/null 2>&1
|
||||
}
|
||||
|
||||
# Send a PMBus command with NO data byte (SMBus send-byte).
|
||||
# STORE_USER_ALL (0x15) and its relatives are send-byte commands: the command
|
||||
# byte alone triggers them. Appending a dummy 0x00 makes it a write-byte, which
|
||||
# is a different SMBus protocol - the LTC2977 happened to accept it, but that is
|
||||
# tolerance, not correctness. i2cset's "c" mode is the send-byte form.
|
||||
_i2c_send_byte() {
|
||||
if [ "$TRANSPORT" = "swb" ]; then
|
||||
_swb_send "$1"
|
||||
return
|
||||
fi
|
||||
[ "$DEBUG_MODE" = "1" ] && echo -e "\033[90m[DEBG] i2cset -y $_BUS $_ADDR $1 c\033[0m"
|
||||
i2cset -y "$_BUS" "$_ADDR" "$1" c >/dev/null 2>&1
|
||||
}
|
||||
|
||||
# Read a 16-bit word; echoes "0xXXXX". For swb, parse cb_pmbus_read's "=> 0xXXXX".
|
||||
_i2c_read_word() {
|
||||
if [ "$TRANSPORT" = "swb" ]; then
|
||||
@@ -730,20 +815,171 @@ margin_apply_profile() {
|
||||
}
|
||||
|
||||
# --- Save to NVM ---
|
||||
# margin_save -- STORE_USER_ALL on the currently initialised board
|
||||
# margin_save all -- ... on every board in settings/, then re-init the one
|
||||
# that was loaded when you called it
|
||||
# margin_save blanton -- Blanton SONiC shortcut: all 18 LTC2977 straight over
|
||||
# the native i2c buses, no margin_init needed
|
||||
#
|
||||
# ⚠️ This is the only permanent write in the tool: it commits the current
|
||||
# margin / OV / UV registers to NVM, and a power cycle will NOT undo it.
|
||||
# Run margin_status first and never call it during a test run.
|
||||
margin_save() {
|
||||
if [ "${1:-}" = "all" ]; then
|
||||
_margin_save_every_board
|
||||
return
|
||||
fi
|
||||
if [ "${1:-}" = "blanton" ]; then
|
||||
_margin_save_blanton
|
||||
return
|
||||
fi
|
||||
|
||||
local _own=0
|
||||
_pre_enter_own && _own=1
|
||||
|
||||
local chip fails=0
|
||||
for chip in "${CHIPS[@]}"; do
|
||||
IFS=':' read -r _BUS _ADDR <<< "$chip"
|
||||
_i2c_write_byte 0x15 0x00
|
||||
# STORE_USER_ALL is chip-wide (all 8 pages), so no _open_page here.
|
||||
if _i2c_send_byte 0x15; then
|
||||
_log_detail "STORE_USER_ALL $PART_NUMBER $_ADDR ok"
|
||||
else
|
||||
fails=$(( fails + 1 ))
|
||||
echo -e "[\033[31mERRO\033[0m] STORE_USER_ALL failed on $_ADDR" >&2
|
||||
_log_detail "ERRO STORE_USER_ALL $PART_NUMBER $_ADDR"
|
||||
fi
|
||||
# The part is busy writing NVM after this; nothing here polls a busy bit,
|
||||
# so leave a gap before touching it again. See MARGIN_STORE_SETTLE.
|
||||
[ -n "$MARGIN_STORE_SETTLE" ] && sleep "$MARGIN_STORE_SETTLE"
|
||||
done
|
||||
echo "Change Saved (${#CHIPS[@]} chips)"
|
||||
_log_label "margin_save $PART_NUMBER (${#CHIPS[@]} chips)"
|
||||
|
||||
if [ "$fails" -eq 0 ]; then
|
||||
echo "Change Saved (${#CHIPS[@]} chips)"
|
||||
else
|
||||
echo -e "[\033[31mERRO\033[0m] $fails of ${#CHIPS[@]} chips did NOT save"
|
||||
fi
|
||||
_log_label "margin_save $PART_NUMBER (${#CHIPS[@]} chips, $fails failed)"
|
||||
|
||||
[ "$_own" = "1" ] && _pre_exit
|
||||
return $(( fails > 0 ))
|
||||
}
|
||||
|
||||
# margin_save all -- every .conf in settings/, in filename order.
|
||||
# Deliberately does NOT stop on the first failure: a half-saved set is worse to
|
||||
# diagnose than a fully-attempted one, and the summary tells you which boards
|
||||
# to redo. margin_init is re-run per board because CHIPS / TRANSPORT /
|
||||
# CB_I2C_CH are global state.
|
||||
_margin_save_every_board() {
|
||||
local files=( "$SETTINGS_DIR"/*.conf )
|
||||
if [ ! -e "${files[0]}" ]; then
|
||||
echo -e "[\033[31mERRO\033[0m] no .conf found in $SETTINGS_DIR"
|
||||
return 1
|
||||
fi
|
||||
|
||||
local restore="$PART_NUMBER" # empty if margin_init was never run
|
||||
local board f ok=0 bad=0 failed=""
|
||||
|
||||
echo "-------------"
|
||||
echo "margin_save all -- ${#files[@]} boards, permanent NVM write"
|
||||
echo "-------------"
|
||||
_log_label "margin_save all (${#files[@]} boards)"
|
||||
|
||||
for f in "${files[@]}"; do
|
||||
board=$(basename "$f" .conf)
|
||||
echo ""
|
||||
if ! margin_init "$board"; then
|
||||
bad=$(( bad + 1 )); failed="$failed $board(init)"
|
||||
continue
|
||||
fi
|
||||
if margin_save; then
|
||||
ok=$(( ok + 1 ))
|
||||
else
|
||||
bad=$(( bad + 1 )); failed="$failed $board"
|
||||
fi
|
||||
done
|
||||
|
||||
echo ""
|
||||
echo "-------------"
|
||||
printf "margin_save all: %d saved, %d failed\n" "$ok" "$bad"
|
||||
[ "$bad" -gt 0 ] && echo -e "[\033[31mERRO\033[0m] failed:$failed"
|
||||
echo "-------------"
|
||||
_log_label "margin_save all done: $ok ok, $bad failed$failed"
|
||||
|
||||
# Put back whatever board the caller had loaded, so a following
|
||||
# margin_status does not silently report the last board in the list.
|
||||
if [ -n "$restore" ] && [ "$restore" != "$board" ]; then
|
||||
echo ""
|
||||
echo -e "[\033[34mINFO\033[0m] restoring previous board: $restore"
|
||||
margin_init "$restore" >/dev/null
|
||||
fi
|
||||
|
||||
return $(( bad > 0 ))
|
||||
}
|
||||
|
||||
# margin_save blanton -- Blanton SONiC only. Walks MARGIN_BLANTON_STORE and
|
||||
# sends STORE_USER_ALL to each LTC2977 over the native i2c buses.
|
||||
#
|
||||
# Deliberately does NOT use margin_init / CHIPS / TRANSPORT: the whole point is
|
||||
# that on this platform every LTC2977 is reachable with plain i2cset, so the
|
||||
# FPGA channel setup and the per-board probe are not needed. That also means it
|
||||
# does not touch the loaded board - PART_NUMBER is the same afterwards.
|
||||
_margin_save_blanton() {
|
||||
local n=${#MARGIN_BLANTON_STORE[@]}
|
||||
if [ "$n" -eq 0 ]; then
|
||||
echo -e "[\033[31mERRO\033[0m] MARGIN_BLANTON_STORE is empty"
|
||||
return 1
|
||||
fi
|
||||
|
||||
echo "-------------"
|
||||
echo "margin_save blanton -- $n LTC2977, permanent NVM write"
|
||||
echo "-------------"
|
||||
_log_label "margin_save blanton ($n chips)"
|
||||
|
||||
local entry bus addr label ok=0 bad=0 failed=""
|
||||
for entry in "${MARGIN_BLANTON_STORE[@]}"; do
|
||||
IFS=':' read -r bus addr label <<< "$entry"
|
||||
|
||||
# "no such bus" and "chip did not answer" are different faults: the first
|
||||
# means the FPGA i2c adapters did not enumerate, the second means the
|
||||
# board is absent or the address is wrong. Do not blur them into one.
|
||||
if [ ! -e "/dev/i2c-$bus" ]; then
|
||||
echo -e "[\033[31mERRO\033[0m] $label bus $bus addr $addr : /dev/i2c-$bus does not exist"
|
||||
_log_detail "ERRO STORE_USER_ALL $label bus=$bus addr=$addr no-such-bus"
|
||||
bad=$(( bad + 1 )); failed="$failed [$label $addr]"
|
||||
continue
|
||||
fi
|
||||
|
||||
[ "$DEBUG_MODE" = "1" ] && echo -e "\033[90m[DEBG] i2cset $MARGIN_BLANTON_I2CSET_FLAGS $bus $addr 0x15\033[0m"
|
||||
if i2cset $MARGIN_BLANTON_I2CSET_FLAGS "$bus" "$addr" 0x15 >/dev/null 2>&1; then
|
||||
printf " %-12s bus %-2s %s : saved\n" "$label" "$bus" "$addr"
|
||||
ok=$(( ok + 1 ))
|
||||
_log_detail "STORE_USER_ALL $label bus=$bus addr=$addr ok"
|
||||
else
|
||||
echo -e "[\033[31mERRO\033[0m] $label bus $bus addr $addr : i2cset failed (NACK/busy)"
|
||||
_log_detail "ERRO STORE_USER_ALL $label bus=$bus addr=$addr"
|
||||
bad=$(( bad + 1 )); failed="$failed [$label $addr]"
|
||||
fi
|
||||
|
||||
# No busy-bit poll anywhere in this tool; this gap is the only buffer.
|
||||
[ -n "$MARGIN_STORE_SETTLE" ] && sleep "$MARGIN_STORE_SETTLE"
|
||||
done
|
||||
|
||||
echo "-------------"
|
||||
printf "margin_save blanton: %d saved, %d failed\n" "$ok" "$bad"
|
||||
[ "$bad" -gt 0 ] && echo -e "[\033[31mERRO\033[0m] failed:$failed"
|
||||
echo "-------------"
|
||||
_log_label "margin_save blanton done: $ok ok, $bad failed$failed"
|
||||
|
||||
return $(( bad > 0 ))
|
||||
}
|
||||
|
||||
# --- Tab completion for margin_save ---
|
||||
_margin_save_completions() {
|
||||
[ "$COMP_CWORD" -ne 1 ] && return
|
||||
COMPREPLY=($(compgen -W "all blanton" -- "${COMP_WORDS[COMP_CWORD]}"))
|
||||
}
|
||||
complete -F _margin_save_completions margin_save
|
||||
|
||||
if [ -z "$_LOG_FILE" ]; then
|
||||
_LOG_FILE="$LOGS_DIR/margin_$(date '+%Y%m%d_%H%M%S').log"
|
||||
_LOG_DETAIL_FILE="${_LOG_FILE%.log}_detail.log"
|
||||
|
||||
@@ -1,22 +0,0 @@
|
||||
# Profile: comboA - alternating high/low (even=high, odd=low)
|
||||
# Applied to whichever LTC2980 is currently loaded via margin_init
|
||||
# Format: "channel:operation:change_percent"
|
||||
|
||||
PROFILE_CHANNELS=(
|
||||
"0:high:8"
|
||||
"1:low:8"
|
||||
"2:high:8"
|
||||
"3:low:8"
|
||||
"4:high:8"
|
||||
"5:low:8"
|
||||
"6:high:8"
|
||||
"7:low:8"
|
||||
"8:high:8"
|
||||
"9:low:8"
|
||||
"10:high:8"
|
||||
"11:low:8"
|
||||
"12:high:8"
|
||||
"13:low:8"
|
||||
"14:high:8"
|
||||
"15:low:8"
|
||||
)
|
||||
@@ -0,0 +1,26 @@
|
||||
# Profile: comboA_CB - checkerboard, the complement of comboB_CB
|
||||
# Board: CB only. The channel list is positional, so applying this to a
|
||||
# different board margins the wrong rails and nothing detects it.
|
||||
# Run comboA then comboB to cover every rail in both directions while its
|
||||
# neighbours sit the other way.
|
||||
# Applied to whichever LTC2980 is currently loaded via margin_init
|
||||
# Format: "channel:operation:change_percent"
|
||||
|
||||
PROFILE_CHANNELS=(
|
||||
"0:low:5"
|
||||
"1:low:5"
|
||||
"2:high:5"
|
||||
"3:low:5"
|
||||
"4:high:5"
|
||||
"5:high:5"
|
||||
"6:high:5"
|
||||
"7:high:5"
|
||||
"8:low:5"
|
||||
"9:high:5"
|
||||
"10:high:5"
|
||||
"11:high:5"
|
||||
"12:low:5"
|
||||
"13:high:5"
|
||||
"14:high:5"
|
||||
"15:low:5"
|
||||
)
|
||||
+26
@@ -0,0 +1,26 @@
|
||||
# Profile: comboA_SWB_CONN13 - checkerboard, the complement of comboB_SWB_CONN13
|
||||
# Board: SWB_CONN13 only. The channel list is positional, so applying this to a
|
||||
# different board margins the wrong rails and nothing detects it.
|
||||
# Run comboA then comboB to cover every rail in both directions while its
|
||||
# neighbours sit the other way.
|
||||
# Applied to whichever LTC2980 is currently loaded via margin_init
|
||||
# Format: "channel:operation:change_percent"
|
||||
|
||||
PROFILE_CHANNELS=(
|
||||
"0:high:3"
|
||||
"1:high:3"
|
||||
"2:low:3"
|
||||
"3:low:3"
|
||||
"4:high:5"
|
||||
"5:low:5"
|
||||
"6:high:5"
|
||||
"7:high:5"
|
||||
"8:high:5"
|
||||
"9:high:3"
|
||||
"10:high:3"
|
||||
"11:low:3"
|
||||
"12:low:3"
|
||||
"13:high:3"
|
||||
"14:high:3"
|
||||
"15:low:5"
|
||||
)
|
||||
+28
@@ -0,0 +1,28 @@
|
||||
# Profile: comboA_SWB_CONN14 - checkerboard, the complement of comboB_SWB_CONN14
|
||||
# Board: SWB_CONN14 only. The channel list is positional, so applying this to a
|
||||
# different board margins the wrong rails and nothing detects it.
|
||||
# Run comboA then comboB to cover every rail in both directions while its
|
||||
# neighbours sit the other way.
|
||||
# CH 10, 11, 13 stay nominal: they are NC on this board, so there is
|
||||
# nothing to margin.
|
||||
# Applied to whichever LTC2980 is currently loaded via margin_init
|
||||
# Format: "channel:operation:change_percent"
|
||||
|
||||
PROFILE_CHANNELS=(
|
||||
"0:high:3"
|
||||
"1:low:3"
|
||||
"2:low:3"
|
||||
"3:high:5"
|
||||
"4:high:5"
|
||||
"5:high:5"
|
||||
"6:low:5"
|
||||
"7:low:5"
|
||||
"8:low:3"
|
||||
"9:low:3"
|
||||
"10:nominal:5"
|
||||
"11:nominal:5"
|
||||
"12:high:3"
|
||||
"13:nominal:5"
|
||||
"14:high:5"
|
||||
"15:high:3"
|
||||
)
|
||||
+28
@@ -0,0 +1,28 @@
|
||||
# Profile: comboA_SWB_CONN15 - checkerboard, the complement of comboB_SWB_CONN15
|
||||
# Board: SWB_CONN15 only. The channel list is positional, so applying this to a
|
||||
# different board margins the wrong rails and nothing detects it.
|
||||
# Run comboA then comboB to cover every rail in both directions while its
|
||||
# neighbours sit the other way.
|
||||
# CH 10 stay nominal: they are NC on this board, so there is
|
||||
# nothing to margin.
|
||||
# Applied to whichever LTC2980 is currently loaded via margin_init
|
||||
# Format: "channel:operation:change_percent"
|
||||
|
||||
PROFILE_CHANNELS=(
|
||||
"0:low:3"
|
||||
"1:low:3"
|
||||
"2:high:3"
|
||||
"3:high:3"
|
||||
"4:low:3"
|
||||
"5:low:3"
|
||||
"6:high:5"
|
||||
"7:high:3"
|
||||
"8:high:5"
|
||||
"9:low:5"
|
||||
"10:nominal:5"
|
||||
"11:low:5"
|
||||
"12:low:3"
|
||||
"13:high:3"
|
||||
"14:high:3"
|
||||
"15:high:5"
|
||||
)
|
||||
+26
@@ -0,0 +1,26 @@
|
||||
# Profile: comboA_SWB_CONN16 - checkerboard, the complement of comboB_SWB_CONN16
|
||||
# Board: SWB_CONN16 only. The channel list is positional, so applying this to a
|
||||
# different board margins the wrong rails and nothing detects it.
|
||||
# Run comboA then comboB to cover every rail in both directions while its
|
||||
# neighbours sit the other way.
|
||||
# Applied to whichever LTC2980 is currently loaded via margin_init
|
||||
# Format: "channel:operation:change_percent"
|
||||
|
||||
PROFILE_CHANNELS=(
|
||||
"0:high:3"
|
||||
"1:high:5"
|
||||
"2:high:5"
|
||||
"3:low:5"
|
||||
"4:high:5"
|
||||
"5:low:5"
|
||||
"6:high:5"
|
||||
"7:high:3"
|
||||
"8:high:3"
|
||||
"9:high:3"
|
||||
"10:low:3"
|
||||
"11:low:3"
|
||||
"12:low:3"
|
||||
"13:low:3"
|
||||
"14:low:3"
|
||||
"15:high:3"
|
||||
)
|
||||
@@ -1,22 +0,0 @@
|
||||
# Profile: comboB - inverse of comboA (even=low, odd=high)
|
||||
# Applied to whichever LTC2980 is currently loaded via margin_init
|
||||
# Format: "channel:operation:change_percent"
|
||||
|
||||
PROFILE_CHANNELS=(
|
||||
"0:low:8"
|
||||
"1:high:8"
|
||||
"2:low:8"
|
||||
"3:high:8"
|
||||
"4:low:8"
|
||||
"5:high:8"
|
||||
"6:low:8"
|
||||
"7:high:8"
|
||||
"8:low:8"
|
||||
"9:high:8"
|
||||
"10:low:8"
|
||||
"11:high:8"
|
||||
"12:low:8"
|
||||
"13:high:8"
|
||||
"14:low:8"
|
||||
"15:high:8"
|
||||
)
|
||||
@@ -0,0 +1,26 @@
|
||||
# Profile: comboB_CB - checkerboard, the complement of comboA_CB
|
||||
# Board: CB only. The channel list is positional, so applying this to a
|
||||
# different board margins the wrong rails and nothing detects it.
|
||||
# Run comboB then comboA to cover every rail in both directions while its
|
||||
# neighbours sit the other way.
|
||||
# Applied to whichever LTC2980 is currently loaded via margin_init
|
||||
# Format: "channel:operation:change_percent"
|
||||
|
||||
PROFILE_CHANNELS=(
|
||||
"0:high:5"
|
||||
"1:high:5"
|
||||
"2:low:5"
|
||||
"3:high:5"
|
||||
"4:low:5"
|
||||
"5:low:5"
|
||||
"6:low:5"
|
||||
"7:low:5"
|
||||
"8:high:5"
|
||||
"9:low:5"
|
||||
"10:low:5"
|
||||
"11:low:5"
|
||||
"12:high:5"
|
||||
"13:low:5"
|
||||
"14:low:5"
|
||||
"15:high:5"
|
||||
)
|
||||
+26
@@ -0,0 +1,26 @@
|
||||
# Profile: comboB_SWB_CONN13 - checkerboard, the complement of comboA_SWB_CONN13
|
||||
# Board: SWB_CONN13 only. The channel list is positional, so applying this to a
|
||||
# different board margins the wrong rails and nothing detects it.
|
||||
# Run comboB then comboA to cover every rail in both directions while its
|
||||
# neighbours sit the other way.
|
||||
# Applied to whichever LTC2980 is currently loaded via margin_init
|
||||
# Format: "channel:operation:change_percent"
|
||||
|
||||
PROFILE_CHANNELS=(
|
||||
"0:low:3"
|
||||
"1:low:3"
|
||||
"2:high:3"
|
||||
"3:high:3"
|
||||
"4:low:5"
|
||||
"5:high:5"
|
||||
"6:low:5"
|
||||
"7:low:5"
|
||||
"8:low:5"
|
||||
"9:low:3"
|
||||
"10:low:3"
|
||||
"11:high:3"
|
||||
"12:high:3"
|
||||
"13:low:3"
|
||||
"14:low:3"
|
||||
"15:high:5"
|
||||
)
|
||||
+28
@@ -0,0 +1,28 @@
|
||||
# Profile: comboB_SWB_CONN14 - checkerboard, the complement of comboA_SWB_CONN14
|
||||
# Board: SWB_CONN14 only. The channel list is positional, so applying this to a
|
||||
# different board margins the wrong rails and nothing detects it.
|
||||
# Run comboB then comboA to cover every rail in both directions while its
|
||||
# neighbours sit the other way.
|
||||
# CH 10, 11, 13 stay nominal: they are NC on this board, so there is
|
||||
# nothing to margin.
|
||||
# Applied to whichever LTC2980 is currently loaded via margin_init
|
||||
# Format: "channel:operation:change_percent"
|
||||
|
||||
PROFILE_CHANNELS=(
|
||||
"0:low:3"
|
||||
"1:high:3"
|
||||
"2:high:3"
|
||||
"3:low:5"
|
||||
"4:low:5"
|
||||
"5:low:5"
|
||||
"6:high:5"
|
||||
"7:high:5"
|
||||
"8:high:3"
|
||||
"9:high:3"
|
||||
"10:nominal:5"
|
||||
"11:nominal:5"
|
||||
"12:low:3"
|
||||
"13:nominal:5"
|
||||
"14:low:5"
|
||||
"15:low:3"
|
||||
)
|
||||
+28
@@ -0,0 +1,28 @@
|
||||
# Profile: comboB_SWB_CONN15 - checkerboard, the complement of comboA_SWB_CONN15
|
||||
# Board: SWB_CONN15 only. The channel list is positional, so applying this to a
|
||||
# different board margins the wrong rails and nothing detects it.
|
||||
# Run comboB then comboA to cover every rail in both directions while its
|
||||
# neighbours sit the other way.
|
||||
# CH 10 stay nominal: they are NC on this board, so there is
|
||||
# nothing to margin.
|
||||
# Applied to whichever LTC2980 is currently loaded via margin_init
|
||||
# Format: "channel:operation:change_percent"
|
||||
|
||||
PROFILE_CHANNELS=(
|
||||
"0:high:3"
|
||||
"1:high:3"
|
||||
"2:low:3"
|
||||
"3:low:3"
|
||||
"4:high:3"
|
||||
"5:high:3"
|
||||
"6:low:5"
|
||||
"7:low:3"
|
||||
"8:low:5"
|
||||
"9:high:5"
|
||||
"10:nominal:5"
|
||||
"11:high:5"
|
||||
"12:high:3"
|
||||
"13:low:3"
|
||||
"14:low:3"
|
||||
"15:low:5"
|
||||
)
|
||||
+26
@@ -0,0 +1,26 @@
|
||||
# Profile: comboB_SWB_CONN16 - checkerboard, the complement of comboA_SWB_CONN16
|
||||
# Board: SWB_CONN16 only. The channel list is positional, so applying this to a
|
||||
# different board margins the wrong rails and nothing detects it.
|
||||
# Run comboB then comboA to cover every rail in both directions while its
|
||||
# neighbours sit the other way.
|
||||
# Applied to whichever LTC2980 is currently loaded via margin_init
|
||||
# Format: "channel:operation:change_percent"
|
||||
|
||||
PROFILE_CHANNELS=(
|
||||
"0:low:3"
|
||||
"1:low:5"
|
||||
"2:low:5"
|
||||
"3:high:5"
|
||||
"4:low:5"
|
||||
"5:high:5"
|
||||
"6:low:5"
|
||||
"7:low:3"
|
||||
"8:low:3"
|
||||
"9:low:3"
|
||||
"10:high:3"
|
||||
"11:high:3"
|
||||
"12:high:3"
|
||||
"13:high:3"
|
||||
"14:high:3"
|
||||
"15:low:3"
|
||||
)
|
||||
+24
@@ -0,0 +1,24 @@
|
||||
# Profile: combo_SWB_CONN13_high - every channel margin HIGH, per-channel percentage
|
||||
# For the SWB CONN13 board only: the percentages follow that board's
|
||||
# rails, so applying it to a different CONN margins the wrong things.
|
||||
# Applied to whichever LTC2980 is currently loaded via margin_init
|
||||
# Format: "channel:operation:change_percent"
|
||||
|
||||
PROFILE_CHANNELS=(
|
||||
"0:high:3"
|
||||
"1:high:3"
|
||||
"2:high:3"
|
||||
"3:high:3"
|
||||
"4:high:5"
|
||||
"5:high:5"
|
||||
"6:high:5"
|
||||
"7:high:5"
|
||||
"8:high:5"
|
||||
"9:high:3"
|
||||
"10:high:3"
|
||||
"11:high:3"
|
||||
"12:high:3"
|
||||
"13:high:3"
|
||||
"14:high:3"
|
||||
"15:high:5"
|
||||
)
|
||||
+24
@@ -0,0 +1,24 @@
|
||||
# Profile: combo_SWB_CONN13_low - every channel margin LOW, per-channel percentage
|
||||
# For the SWB CONN13 board only: the percentages follow that board's
|
||||
# rails, so applying it to a different CONN margins the wrong things.
|
||||
# Applied to whichever LTC2980 is currently loaded via margin_init
|
||||
# Format: "channel:operation:change_percent"
|
||||
|
||||
PROFILE_CHANNELS=(
|
||||
"0:low:3"
|
||||
"1:low:3"
|
||||
"2:low:3"
|
||||
"3:low:3"
|
||||
"4:low:5"
|
||||
"5:low:5"
|
||||
"6:low:5"
|
||||
"7:low:5"
|
||||
"8:low:5"
|
||||
"9:low:3"
|
||||
"10:low:3"
|
||||
"11:low:3"
|
||||
"12:low:3"
|
||||
"13:low:3"
|
||||
"14:low:3"
|
||||
"15:low:5"
|
||||
)
|
||||
+24
@@ -0,0 +1,24 @@
|
||||
# Profile: combo_SWB_CONN14_high - every channel margin HIGH, per-channel percentage
|
||||
# For the SWB CONN14 board only: the percentages follow that board's
|
||||
# rails, so applying it to a different CONN margins the wrong things.
|
||||
# Applied to whichever LTC2980 is currently loaded via margin_init
|
||||
# Format: "channel:operation:change_percent"
|
||||
|
||||
PROFILE_CHANNELS=(
|
||||
"0:high:3"
|
||||
"1:high:3"
|
||||
"2:high:3"
|
||||
"3:high:5"
|
||||
"4:high:5"
|
||||
"5:high:5"
|
||||
"6:high:5"
|
||||
"7:high:5"
|
||||
"8:high:3"
|
||||
"9:high:3"
|
||||
"10:nominal:5"
|
||||
"11:nominal:5"
|
||||
"12:high:3"
|
||||
"13:nominal:5"
|
||||
"14:high:5"
|
||||
"15:high:3"
|
||||
)
|
||||
+24
@@ -0,0 +1,24 @@
|
||||
# Profile: combo_SWB_CONN14_low - every channel margin LOW, per-channel percentage
|
||||
# For the SWB CONN14 board only: the percentages follow that board's
|
||||
# rails, so applying it to a different CONN margins the wrong things.
|
||||
# Applied to whichever LTC2980 is currently loaded via margin_init
|
||||
# Format: "channel:operation:change_percent"
|
||||
|
||||
PROFILE_CHANNELS=(
|
||||
"0:low:3"
|
||||
"1:low:3"
|
||||
"2:low:3"
|
||||
"3:low:5"
|
||||
"4:low:5"
|
||||
"5:low:5"
|
||||
"6:low:5"
|
||||
"7:low:5"
|
||||
"8:low:3"
|
||||
"9:low:3"
|
||||
"10:nominal:5"
|
||||
"11:nominal:5"
|
||||
"12:low:3"
|
||||
"13:nominal:5"
|
||||
"14:low:5"
|
||||
"15:low:3"
|
||||
)
|
||||
+24
@@ -0,0 +1,24 @@
|
||||
# Profile: combo_SWB_CONN15_high - every channel margin HIGH, per-channel percentage
|
||||
# For the SWB CONN15 board only: the percentages follow that board's
|
||||
# rails, so applying it to a different CONN margins the wrong things.
|
||||
# Applied to whichever LTC2980 is currently loaded via margin_init
|
||||
# Format: "channel:operation:change_percent"
|
||||
|
||||
PROFILE_CHANNELS=(
|
||||
"0:high:3"
|
||||
"1:high:3"
|
||||
"2:high:3"
|
||||
"3:high:3"
|
||||
"4:high:3"
|
||||
"5:high:3"
|
||||
"6:high:5"
|
||||
"7:high:3"
|
||||
"8:high:5"
|
||||
"9:high:5"
|
||||
"10:nominal:5"
|
||||
"11:high:5"
|
||||
"12:high:3"
|
||||
"13:high:3"
|
||||
"14:high:3"
|
||||
"15:high:5"
|
||||
)
|
||||
+24
@@ -0,0 +1,24 @@
|
||||
# Profile: combo_SWB_CONN15_low - every channel margin LOW, per-channel percentage
|
||||
# For the SWB CONN15 board only: the percentages follow that board's
|
||||
# rails, so applying it to a different CONN margins the wrong things.
|
||||
# Applied to whichever LTC2980 is currently loaded via margin_init
|
||||
# Format: "channel:operation:change_percent"
|
||||
|
||||
PROFILE_CHANNELS=(
|
||||
"0:low:3"
|
||||
"1:low:3"
|
||||
"2:low:3"
|
||||
"3:low:3"
|
||||
"4:low:3"
|
||||
"5:low:3"
|
||||
"6:low:5"
|
||||
"7:low:3"
|
||||
"8:low:5"
|
||||
"9:low:5"
|
||||
"10:nominal:5"
|
||||
"11:low:5"
|
||||
"12:low:3"
|
||||
"13:low:3"
|
||||
"14:low:3"
|
||||
"15:low:5"
|
||||
)
|
||||
+24
@@ -0,0 +1,24 @@
|
||||
# Profile: combo_SWB_CONN16_high - every channel margin HIGH, per-channel percentage
|
||||
# For the SWB CONN16 board only: the percentages follow that board's
|
||||
# rails, so applying it to a different CONN margins the wrong things.
|
||||
# Applied to whichever LTC2980 is currently loaded via margin_init
|
||||
# Format: "channel:operation:change_percent"
|
||||
|
||||
PROFILE_CHANNELS=(
|
||||
"0:high:3"
|
||||
"1:high:5"
|
||||
"2:high:5"
|
||||
"3:high:5"
|
||||
"4:high:5"
|
||||
"5:high:5"
|
||||
"6:high:5"
|
||||
"7:high:3"
|
||||
"8:high:3"
|
||||
"9:high:3"
|
||||
"10:high:3"
|
||||
"11:high:3"
|
||||
"12:high:3"
|
||||
"13:high:3"
|
||||
"14:high:3"
|
||||
"15:high:3"
|
||||
)
|
||||
+24
@@ -0,0 +1,24 @@
|
||||
# Profile: combo_SWB_CONN16_low - every channel margin LOW, per-channel percentage
|
||||
# For the SWB CONN16 board only: the percentages follow that board's
|
||||
# rails, so applying it to a different CONN margins the wrong things.
|
||||
# Applied to whichever LTC2980 is currently loaded via margin_init
|
||||
# Format: "channel:operation:change_percent"
|
||||
|
||||
PROFILE_CHANNELS=(
|
||||
"0:low:3"
|
||||
"1:low:5"
|
||||
"2:low:5"
|
||||
"3:low:5"
|
||||
"4:low:5"
|
||||
"5:low:5"
|
||||
"6:low:5"
|
||||
"7:low:3"
|
||||
"8:low:3"
|
||||
"9:low:3"
|
||||
"10:low:3"
|
||||
"11:low:3"
|
||||
"12:low:3"
|
||||
"13:low:3"
|
||||
"14:low:3"
|
||||
"15:low:3"
|
||||
)
|
||||
+17
-10
@@ -17,17 +17,24 @@ BOARDS=(
|
||||
"Blanton_SWB1_CONN16"
|
||||
)
|
||||
|
||||
# 對應的 profile 名稱(不含路徑與 .conf 副檔名),預設全部 comboA
|
||||
# 對應的 profile 名稱(不含路徑與 .conf 副檔名)。
|
||||
#
|
||||
# SWB 的 profile 是 per-CONN 的:百分比對應該片板子的軌,套到別的 CONN 會 margin
|
||||
# 到錯的東西,所以這裡不能全部填同一個名字。
|
||||
#
|
||||
# 這份預設是 HIGH 那一輪;LOW 那一輪把下面的 _high 全換成 _low 再跑一次
|
||||
# (或 sed -i 's/_high/_low/' 這個檔)。
|
||||
# CB 沒有 per-CONN profile,沿用通用的 combo_high3 / combo_low3。
|
||||
PROFILES=(
|
||||
"comboA" # Blanton_CB_CONN13
|
||||
"comboA" # Blanton_SWB0_CONN13
|
||||
"comboA" # Blanton_SWB0_CONN14
|
||||
"comboA" # Blanton_SWB0_CONN15
|
||||
"comboA" # Blanton_SWB0_CONN16
|
||||
"comboA" # Blanton_SWB1_CONN13
|
||||
"comboA" # Blanton_SWB1_CONN14
|
||||
"comboA" # Blanton_SWB1_CONN15
|
||||
"comboA" # Blanton_SWB1_CONN16
|
||||
"combo_high3" # Blanton_CB_CONN13 (低壓軌多,用通用 +3%)
|
||||
"combo_SWB_CONN13_high" # Blanton_SWB0_CONN13
|
||||
"combo_SWB_CONN14_high" # Blanton_SWB0_CONN14
|
||||
"combo_SWB_CONN15_high" # Blanton_SWB0_CONN15
|
||||
"combo_SWB_CONN16_high" # Blanton_SWB0_CONN16
|
||||
"combo_SWB_CONN13_high" # Blanton_SWB1_CONN13
|
||||
"combo_SWB_CONN14_high" # Blanton_SWB1_CONN14
|
||||
"combo_SWB_CONN15_high" # Blanton_SWB1_CONN15
|
||||
"combo_SWB_CONN16_high" # Blanton_SWB1_CONN16
|
||||
)
|
||||
|
||||
# --- Source margin.sh if not already loaded ---
|
||||
|
||||
@@ -4,6 +4,10 @@
|
||||
# ⚠️ margin_save 會把目前的 margin / OV / UV 設定**永久寫入 NVM**,
|
||||
# 斷電後仍保留。執行前請務必先 margin_status 確認各 channel 狀態正確。
|
||||
#
|
||||
# 全部 9 顆請直接用 margin.sh v2.7.0 內建的 `margin_save all` —— 它有成功/失敗總結,
|
||||
# 跑完還會把 margin_init 切回你原本載入的那顆。這支只在「只想寫其中幾顆」時才需要,
|
||||
# 編下面的 BOARDS 陣列。
|
||||
#
|
||||
# Usage:
|
||||
# source script/margin_save_all.sh
|
||||
|
||||
|
||||
+2
-2
@@ -41,7 +41,7 @@ CH3_VNOM="1.8"; CH3_NET="V1P8_ALW"
|
||||
CH4_VNOM="1.1"; CH4_NET="PWR_APU_VDDIO_SUS"
|
||||
CH5_VNOM="0.75"; CH5_NET="PWR_VDD_MISC_RUN"
|
||||
CH6_VNOM="0.78"; CH6_NET="PWR_APU_VDD_MEM_RUN"
|
||||
CH7_VNOM="0.8"; CH7_NET="V0P8_PHY2_DVDD"
|
||||
CH7_VNOM="0.816"; CH7_NET="V0P8_PHY2_DVDD"
|
||||
CH8_VNOM="0.8"; CH8_NET="V0P8_AVDD"
|
||||
CH9_VNOM="0.8"; CH9_NET="V0P8_PHY"
|
||||
CH10_VNOM="1.8"; CH10_NET="V1P8_FPGA"
|
||||
@@ -49,4 +49,4 @@ CH11_VNOM="2.5"; CH11_NET="V2P5_FPGA"
|
||||
CH12_VNOM="1.1"; CH12_NET="V1P1_FPGA"
|
||||
CH13_VNOM="5.0"; CH13_NET="P5V_STBY"
|
||||
CH14_VNOM="3.3"; CH14_NET="P3V3_STBY"
|
||||
CH15_VNOM="0.8"; CH15_NET="V0P8_PHY2_AVDD"
|
||||
CH15_VNOM="0.816"; CH15_NET="V0P8_PHY2_AVDD"
|
||||
|
||||
+10
-10
@@ -35,18 +35,18 @@ CHIP_POST_CMD=(
|
||||
# chip1: SWB0 (CONN13)
|
||||
# ============================================================
|
||||
CH0_VNOM="0.75"; CH0_NET="P0V75_DVDD_47"
|
||||
CH1_VNOM="0.75"; CH1_NET="P0V75_AVDD_47"
|
||||
CH2_VNOM="1.5"; CH2_NET="P1V5_AVDD_47"
|
||||
CH3_VNOM="0.9"; CH3_NET="P0V9_AVDD_47"
|
||||
CH4_VNOM="1.8"; CH4_NET="P1V8_1"
|
||||
CH5_VNOM="3.3"; CH5_NET="PVDD3_3V_SYNTH_LDO_A3"
|
||||
CH6_VNOM="3.3"; CH6_NET="PVDD3_3V_SYNTH_LDO_B1"
|
||||
CH7_VNOM="1.8"; CH7_NET="P1V8_3"
|
||||
CH1_VNOM="0.756"; CH1_NET="P0V75_AVDD_47"
|
||||
CH2_VNOM="1.524"; CH2_NET="P1V5_AVDD_47"
|
||||
CH3_VNOM="0.915"; CH3_NET="P0V9_AVDD_47"
|
||||
CH4_VNOM="1.816"; CH4_NET="P1V8_1"
|
||||
CH5_VNOM="3.38"; CH5_NET="PVDD3_3V_SYNTH_LDO_A3"
|
||||
CH6_VNOM="3.38"; CH6_NET="PVDD3_3V_SYNTH_LDO_B1"
|
||||
CH7_VNOM="1.816"; CH7_NET="P1V8_3"
|
||||
CH8_VNOM="1.8"; CH8_NET="P1V8_DVDDIO_3"
|
||||
CH9_VNOM="0.75"; CH9_NET="P0V75_DVDD_39"
|
||||
CH10_VNOM="0.75"; CH10_NET="P0V75_AVDD_39"
|
||||
CH11_VNOM="1.5"; CH11_NET="P1V5_AVDD_39"
|
||||
CH12_VNOM="0.9"; CH12_NET="P0V9_AVDD_39"
|
||||
CH10_VNOM="0.756"; CH10_NET="P0V75_AVDD_39"
|
||||
CH11_VNOM="1.524"; CH11_NET="P1V5_AVDD_39"
|
||||
CH12_VNOM="0.915"; CH12_NET="P0V9_AVDD_39"
|
||||
CH13_VNOM="1.5"; CH13_NET="PVDD1V5_2"
|
||||
CH14_VNOM="1.8"; CH14_NET="PVDD1V8_DUT"
|
||||
CH15_VNOM="1.2"; CH15_NET="PVDD_MDIO"
|
||||
|
||||
+10
-10
@@ -34,16 +34,16 @@ CHIP_POST_CMD=(
|
||||
# ============================================================
|
||||
# chip1: SWB0 (CONN14)
|
||||
# ============================================================
|
||||
CH0_VNOM="0.75"; CH0_NET="P0V75_AVDD_7"
|
||||
CH1_VNOM="1.5"; CH1_NET="P1V5_AVDD_7"
|
||||
CH2_VNOM="0.9"; CH2_NET="P0V9_AVDD_7"
|
||||
CH3_VNOM="1.8"; CH3_NET="P1V8_5"
|
||||
CH4_VNOM="1.8"; CH4_NET="P1V8_2"
|
||||
CH5_VNOM="3.3"; CH5_NET="PVDD3_3V_SYNTH_LDO_B2"
|
||||
CH6_VNOM="3.3"; CH6_NET="PVDD3_3V_SYNTH_LDO_A2"
|
||||
CH7_VNOM="3.3"; CH7_NET="PVDD3_3V_SYNTH_LDO_A1"
|
||||
CH8_VNOM="1.5"; CH8_NET="PVDD1V5_TSC"
|
||||
CH9_VNOM="1.5"; CH9_NET="PVDD1V5_ANLG"
|
||||
CH0_VNOM="0.756"; CH0_NET="P0V75_AVDD_7"
|
||||
CH1_VNOM="1.524"; CH1_NET="P1V5_AVDD_7"
|
||||
CH2_VNOM="0.915"; CH2_NET="P0V9_AVDD_7"
|
||||
CH3_VNOM="1.816"; CH3_NET="P1V8_5"
|
||||
CH4_VNOM="1.816"; CH4_NET="P1V8_2"
|
||||
CH5_VNOM="3.38"; CH5_NET="PVDD3_3V_SYNTH_LDO_B2"
|
||||
CH6_VNOM="3.38"; CH6_NET="PVDD3_3V_SYNTH_LDO_A2"
|
||||
CH7_VNOM="3.38"; CH7_NET="PVDD3_3V_SYNTH_LDO_A1"
|
||||
CH8_VNOM="1.516"; CH8_NET="PVDD1V5_TSC"
|
||||
CH9_VNOM="1.516"; CH9_NET="PVDD1V5_ANLG"
|
||||
CH10_VNOM="-"; CH10_NET="NC"
|
||||
CH11_VNOM="-"; CH11_NET="NC"
|
||||
CH12_VNOM="1.5"; CH12_NET="PVDD1V5_1"
|
||||
|
||||
+8
-8
@@ -34,19 +34,19 @@ CHIP_POST_CMD=(
|
||||
# ============================================================
|
||||
# chip1: SWB0 (CONN15)
|
||||
# ============================================================
|
||||
CH0_VNOM="1.5"; CH0_NET="P1V5_AVDD_55"
|
||||
CH1_VNOM="0.9"; CH1_NET="P0V9_AVDD_55"
|
||||
CH0_VNOM="1.524"; CH0_NET="P1V5_AVDD_55"
|
||||
CH1_VNOM="0.915"; CH1_NET="P0V9_AVDD_55"
|
||||
CH2_VNOM="0.75"; CH2_NET="P0V75_DVDD_63"
|
||||
CH3_VNOM="0.75"; CH3_NET="P0V75_AVDD_63"
|
||||
CH4_VNOM="1.5"; CH4_NET="P1V5_AVDD_63"
|
||||
CH5_VNOM="0.9"; CH5_NET="P0V9_AVDD_63"
|
||||
CH6_VNOM="3.3"; CH6_NET="PVDD3_3V_SYNTH_LDO_B3"
|
||||
CH3_VNOM="0.756"; CH3_NET="P0V75_AVDD_63"
|
||||
CH4_VNOM="1.524"; CH4_NET="P1V5_AVDD_63"
|
||||
CH5_VNOM="0.915"; CH5_NET="P0V9_AVDD_63"
|
||||
CH6_VNOM="3.38"; CH6_NET="PVDD3_3V_SYNTH_LDO_B3"
|
||||
CH7_VNOM="1.5"; CH7_NET="PVDD1V5_3"
|
||||
CH8_VNOM="0.85"; CH8_NET="P0V85_STBY"
|
||||
CH9_VNOM="1.8"; CH9_NET="P1V8_STBY"
|
||||
CH10_VNOM="-"; CH10_NET="NC"
|
||||
CH11_VNOM="3.3"; CH11_NET="P3V3_STBY"
|
||||
CH12_VNOM="0.9"; CH12_NET="PVDD0V9_2"
|
||||
CH12_VNOM="0.91"; CH12_NET="PVDD0V9_2"
|
||||
CH13_VNOM="0.75"; CH13_NET="P0V75_DVDD_55"
|
||||
CH14_VNOM="0.75"; CH14_NET="P0V75_AVDD_55"
|
||||
CH14_VNOM="0.756"; CH14_NET="P0V75_AVDD_55"
|
||||
CH15_VNOM="1.8"; CH15_NET="P1V8_DVDDIO_4"
|
||||
|
||||
+14
-14
@@ -35,18 +35,18 @@ CHIP_POST_CMD=(
|
||||
# chip1: SWB0 (CONN16)
|
||||
# ============================================================
|
||||
CH0_VNOM="1.5"; CH0_NET="PVDD1V5_0"
|
||||
CH1_VNOM="1.8"; CH1_NET="P1V8_4"
|
||||
CH2_VNOM="3.3"; CH2_NET="PVDD3_3V_SYNTH_LDO_B5"
|
||||
CH3_VNOM="3.3"; CH3_NET="PVDD3_3V_SYNTH_LDO_A5"
|
||||
CH4_VNOM="3.3"; CH4_NET="PVDD3_3V_SYNTH_LDO_B4"
|
||||
CH5_VNOM="3.3"; CH5_NET="PVDD3_3V_SYNTH_LDO_A4"
|
||||
CH6_VNOM="3.3"; CH6_NET="P3V3"
|
||||
CH7_VNOM="0.8"; CH7_NET="PVDD0_8V_T3"
|
||||
CH1_VNOM="1.816"; CH1_NET="P1V8_4"
|
||||
CH2_VNOM="3.38"; CH2_NET="PVDD3_3V_SYNTH_LDO_B5"
|
||||
CH3_VNOM="3.38"; CH3_NET="PVDD3_3V_SYNTH_LDO_A5"
|
||||
CH4_VNOM="3.38"; CH4_NET="PVDD3_3V_SYNTH_LDO_B4"
|
||||
CH5_VNOM="3.38"; CH5_NET="PVDD3_3V_SYNTH_LDO_A4"
|
||||
CH6_VNOM="3.327"; CH6_NET="P3V3"
|
||||
CH7_VNOM="0.82"; CH7_NET="PVDD0_8V_T3"
|
||||
CH8_VNOM="0.75"; CH8_NET="P0V75_DVDD_1"
|
||||
CH9_VNOM="0.75"; CH9_NET="P0V75_AVDD_1"
|
||||
CH10_VNOM="1.5"; CH10_NET="P1V5_AVDD_1"
|
||||
CH11_VNOM="0.9"; CH11_NET="P0V9_AVDD_1"
|
||||
CH12_VNOM="0.9"; CH12_NET="PVDD0V9_0"
|
||||
CH13_VNOM="0.9"; CH13_NET="PVDD0V9_1"
|
||||
CH14_VNOM="0.9"; CH14_NET="PVDD0V9_3"
|
||||
CH15_VNOM="1.2"; CH15_NET="PVDD1V2_T3"
|
||||
CH9_VNOM="0.756"; CH9_NET="P0V75_AVDD_1"
|
||||
CH10_VNOM="1.524"; CH10_NET="P1V5_AVDD_1"
|
||||
CH11_VNOM="0.915"; CH11_NET="P0V9_AVDD_1"
|
||||
CH12_VNOM="0.915"; CH12_NET="PVDD0V9_0"
|
||||
CH13_VNOM="0.91"; CH13_NET="PVDD0V9_1"
|
||||
CH14_VNOM="0.915"; CH14_NET="PVDD0V9_3"
|
||||
CH15_VNOM="1.224"; CH15_NET="PVDD1V2_T3"
|
||||
|
||||
+10
-10
@@ -35,18 +35,18 @@ CHIP_POST_CMD=(
|
||||
# chip1: SWB1 (CONN13)
|
||||
# ============================================================
|
||||
CH0_VNOM="0.75"; CH0_NET="P0V75_DVDD_47"
|
||||
CH1_VNOM="0.75"; CH1_NET="P0V75_AVDD_47"
|
||||
CH2_VNOM="1.5"; CH2_NET="P1V5_AVDD_47"
|
||||
CH3_VNOM="0.9"; CH3_NET="P0V9_AVDD_47"
|
||||
CH4_VNOM="1.8"; CH4_NET="P1V8_1"
|
||||
CH5_VNOM="3.3"; CH5_NET="PVDD3_3V_SYNTH_LDO_A3"
|
||||
CH6_VNOM="3.3"; CH6_NET="PVDD3_3V_SYNTH_LDO_B1"
|
||||
CH7_VNOM="1.8"; CH7_NET="P1V8_3"
|
||||
CH1_VNOM="0.756"; CH1_NET="P0V75_AVDD_47"
|
||||
CH2_VNOM="1.524"; CH2_NET="P1V5_AVDD_47"
|
||||
CH3_VNOM="0.915"; CH3_NET="P0V9_AVDD_47"
|
||||
CH4_VNOM="1.816"; CH4_NET="P1V8_1"
|
||||
CH5_VNOM="3.38"; CH5_NET="PVDD3_3V_SYNTH_LDO_A3"
|
||||
CH6_VNOM="3.38"; CH6_NET="PVDD3_3V_SYNTH_LDO_B1"
|
||||
CH7_VNOM="1.816"; CH7_NET="P1V8_3"
|
||||
CH8_VNOM="1.8"; CH8_NET="P1V8_DVDDIO_3"
|
||||
CH9_VNOM="0.75"; CH9_NET="P0V75_DVDD_39"
|
||||
CH10_VNOM="0.75"; CH10_NET="P0V75_AVDD_39"
|
||||
CH11_VNOM="1.5"; CH11_NET="P1V5_AVDD_39"
|
||||
CH12_VNOM="0.9"; CH12_NET="P0V9_AVDD_39"
|
||||
CH10_VNOM="0.756"; CH10_NET="P0V75_AVDD_39"
|
||||
CH11_VNOM="1.524"; CH11_NET="P1V5_AVDD_39"
|
||||
CH12_VNOM="0.915"; CH12_NET="P0V9_AVDD_39"
|
||||
CH13_VNOM="1.5"; CH13_NET="PVDD1V5_2"
|
||||
CH14_VNOM="1.8"; CH14_NET="PVDD1V8_DUT"
|
||||
CH15_VNOM="1.2"; CH15_NET="PVDD_MDIO"
|
||||
|
||||
+10
-10
@@ -34,16 +34,16 @@ CHIP_POST_CMD=(
|
||||
# ============================================================
|
||||
# chip1: SWB1 (CONN14)
|
||||
# ============================================================
|
||||
CH0_VNOM="0.75"; CH0_NET="P0V75_AVDD_7"
|
||||
CH1_VNOM="1.5"; CH1_NET="P1V5_AVDD_7"
|
||||
CH2_VNOM="0.9"; CH2_NET="P0V9_AVDD_7"
|
||||
CH3_VNOM="1.8"; CH3_NET="P1V8_5"
|
||||
CH4_VNOM="1.8"; CH4_NET="P1V8_2"
|
||||
CH5_VNOM="3.3"; CH5_NET="PVDD3_3V_SYNTH_LDO_B2"
|
||||
CH6_VNOM="3.3"; CH6_NET="PVDD3_3V_SYNTH_LDO_A2"
|
||||
CH7_VNOM="3.3"; CH7_NET="PVDD3_3V_SYNTH_LDO_A1"
|
||||
CH8_VNOM="1.5"; CH8_NET="PVDD1V5_TSC"
|
||||
CH9_VNOM="1.5"; CH9_NET="PVDD1V5_ANLG"
|
||||
CH0_VNOM="0.756"; CH0_NET="P0V75_AVDD_7"
|
||||
CH1_VNOM="1.524"; CH1_NET="P1V5_AVDD_7"
|
||||
CH2_VNOM="0.915"; CH2_NET="P0V9_AVDD_7"
|
||||
CH3_VNOM="1.816"; CH3_NET="P1V8_5"
|
||||
CH4_VNOM="1.816"; CH4_NET="P1V8_2"
|
||||
CH5_VNOM="3.38"; CH5_NET="PVDD3_3V_SYNTH_LDO_B2"
|
||||
CH6_VNOM="3.38"; CH6_NET="PVDD3_3V_SYNTH_LDO_A2"
|
||||
CH7_VNOM="3.38"; CH7_NET="PVDD3_3V_SYNTH_LDO_A1"
|
||||
CH8_VNOM="1.516"; CH8_NET="PVDD1V5_TSC"
|
||||
CH9_VNOM="1.516"; CH9_NET="PVDD1V5_ANLG"
|
||||
CH10_VNOM="-"; CH10_NET="NC"
|
||||
CH11_VNOM="-"; CH11_NET="NC"
|
||||
CH12_VNOM="1.5"; CH12_NET="PVDD1V5_1"
|
||||
|
||||
+8
-8
@@ -34,19 +34,19 @@ CHIP_POST_CMD=(
|
||||
# ============================================================
|
||||
# chip1: SWB1 (CONN15)
|
||||
# ============================================================
|
||||
CH0_VNOM="1.5"; CH0_NET="P1V5_AVDD_55"
|
||||
CH1_VNOM="0.9"; CH1_NET="P0V9_AVDD_55"
|
||||
CH0_VNOM="1.524"; CH0_NET="P1V5_AVDD_55"
|
||||
CH1_VNOM="0.915"; CH1_NET="P0V9_AVDD_55"
|
||||
CH2_VNOM="0.75"; CH2_NET="P0V75_DVDD_63"
|
||||
CH3_VNOM="0.75"; CH3_NET="P0V75_AVDD_63"
|
||||
CH4_VNOM="1.5"; CH4_NET="P1V5_AVDD_63"
|
||||
CH5_VNOM="0.9"; CH5_NET="P0V9_AVDD_63"
|
||||
CH6_VNOM="3.3"; CH6_NET="PVDD3_3V_SYNTH_LDO_B3"
|
||||
CH3_VNOM="0.756"; CH3_NET="P0V75_AVDD_63"
|
||||
CH4_VNOM="1.524"; CH4_NET="P1V5_AVDD_63"
|
||||
CH5_VNOM="0.915"; CH5_NET="P0V9_AVDD_63"
|
||||
CH6_VNOM="3.38"; CH6_NET="PVDD3_3V_SYNTH_LDO_B3"
|
||||
CH7_VNOM="1.5"; CH7_NET="PVDD1V5_3"
|
||||
CH8_VNOM="0.85"; CH8_NET="P0V85_STBY"
|
||||
CH9_VNOM="1.8"; CH9_NET="P1V8_STBY"
|
||||
CH10_VNOM="-"; CH10_NET="NC"
|
||||
CH11_VNOM="3.3"; CH11_NET="P3V3_STBY"
|
||||
CH12_VNOM="0.9"; CH12_NET="PVDD0V9_2"
|
||||
CH12_VNOM="0.91"; CH12_NET="PVDD0V9_2"
|
||||
CH13_VNOM="0.75"; CH13_NET="P0V75_DVDD_55"
|
||||
CH14_VNOM="0.75"; CH14_NET="P0V75_AVDD_55"
|
||||
CH14_VNOM="0.756"; CH14_NET="P0V75_AVDD_55"
|
||||
CH15_VNOM="1.8"; CH15_NET="P1V8_DVDDIO_4"
|
||||
|
||||
+14
-14
@@ -35,18 +35,18 @@ CHIP_POST_CMD=(
|
||||
# chip1: SWB1 (CONN16)
|
||||
# ============================================================
|
||||
CH0_VNOM="1.5"; CH0_NET="PVDD1V5_0"
|
||||
CH1_VNOM="1.8"; CH1_NET="P1V8_4"
|
||||
CH2_VNOM="3.3"; CH2_NET="PVDD3_3V_SYNTH_LDO_B5"
|
||||
CH3_VNOM="3.3"; CH3_NET="PVDD3_3V_SYNTH_LDO_A5"
|
||||
CH4_VNOM="3.3"; CH4_NET="PVDD3_3V_SYNTH_LDO_B4"
|
||||
CH5_VNOM="3.3"; CH5_NET="PVDD3_3V_SYNTH_LDO_A4"
|
||||
CH6_VNOM="3.3"; CH6_NET="P3V3"
|
||||
CH7_VNOM="0.8"; CH7_NET="PVDD0_8V_T3"
|
||||
CH1_VNOM="1.816"; CH1_NET="P1V8_4"
|
||||
CH2_VNOM="3.38"; CH2_NET="PVDD3_3V_SYNTH_LDO_B5"
|
||||
CH3_VNOM="3.38"; CH3_NET="PVDD3_3V_SYNTH_LDO_A5"
|
||||
CH4_VNOM="3.38"; CH4_NET="PVDD3_3V_SYNTH_LDO_B4"
|
||||
CH5_VNOM="3.38"; CH5_NET="PVDD3_3V_SYNTH_LDO_A4"
|
||||
CH6_VNOM="3.327"; CH6_NET="P3V3"
|
||||
CH7_VNOM="0.82"; CH7_NET="PVDD0_8V_T3"
|
||||
CH8_VNOM="0.75"; CH8_NET="P0V75_DVDD_1"
|
||||
CH9_VNOM="0.75"; CH9_NET="P0V75_AVDD_1"
|
||||
CH10_VNOM="1.5"; CH10_NET="P1V5_AVDD_1"
|
||||
CH11_VNOM="0.9"; CH11_NET="P0V9_AVDD_1"
|
||||
CH12_VNOM="0.9"; CH12_NET="PVDD0V9_0"
|
||||
CH13_VNOM="0.9"; CH13_NET="PVDD0V9_1"
|
||||
CH14_VNOM="0.9"; CH14_NET="PVDD0V9_3"
|
||||
CH15_VNOM="1.2"; CH15_NET="PVDD1V2_T3"
|
||||
CH9_VNOM="0.756"; CH9_NET="P0V75_AVDD_1"
|
||||
CH10_VNOM="1.524"; CH10_NET="P1V5_AVDD_1"
|
||||
CH11_VNOM="0.915"; CH11_NET="P0V9_AVDD_1"
|
||||
CH12_VNOM="0.915"; CH12_NET="PVDD0V9_0"
|
||||
CH13_VNOM="0.91"; CH13_NET="PVDD0V9_1"
|
||||
CH14_VNOM="0.915"; CH14_NET="PVDD0V9_3"
|
||||
CH15_VNOM="1.224"; CH15_NET="PVDD1V2_T3"
|
||||
|
||||
@@ -0,0 +1,95 @@
|
||||
#!/bin/bash
|
||||
# =============================================================================
|
||||
# TH6_SWB0_power_readback.sh -- SWB0 rail power from the platform sensors
|
||||
# =============================================================================
|
||||
# Version History:
|
||||
# V1.1.0 2026-08-28 'show platform voltage' and 'show platform current' are
|
||||
# now read ONCE each instead of once per rail. The old
|
||||
# loop ran them 19 times apiece (38 invocations of a slow
|
||||
# Python CLI) and every sample came from a different
|
||||
# instant, so the rails were never actually measured
|
||||
# together. Output format is unchanged.
|
||||
# Rails missing from the tables are reported on stderr
|
||||
# instead of silently contributing 0.000 V / 0.00 W.
|
||||
# V1.0.0 2026-08-28 First version.
|
||||
# =============================================================================
|
||||
#
|
||||
# Reads the two platform sensor tables:
|
||||
# 'show platform voltage' -> <RAIL> in mV
|
||||
# 'show platform current' -> <RAIL>_CURRENT in mA
|
||||
# and reports V x I per rail plus the total.
|
||||
#
|
||||
# For a loaded reading, start traffic first: blanton_tr518.sh start
|
||||
# =============================================================================
|
||||
|
||||
# --- Rails to report, in output order (edit this list) ---
|
||||
rails=(
|
||||
"SWB0_0V9_ANLG0"
|
||||
"SWB0_0V9_ANLG1"
|
||||
"SWB0_0V75_ANLG0"
|
||||
"SWB0_0V75_ANLG1"
|
||||
"SWB0_PHYTILE_P0"
|
||||
"SWB0_PHYTILE_P1"
|
||||
"SWB0_PHYTILE_P2"
|
||||
"SWB0_PHYTILE_P3"
|
||||
"SWB0_PHYTILE_P4"
|
||||
"SWB0_PHYTILE_P5"
|
||||
"SWB0_PHYTILE_P6"
|
||||
"SWB0_PHYTILE_P7"
|
||||
"SWB0_PVDD1V5_CNDR0"
|
||||
"SWB0_PVDD1V5_CNDR1"
|
||||
"SWB0_PVDDA_PHYT0"
|
||||
"SWB0_PVDDA_PHYT1"
|
||||
"SWB0_PVDDA_PHYT2"
|
||||
"SWB0_PVDDA_PHYT3"
|
||||
"SWB0_TH6_CORE"
|
||||
)
|
||||
|
||||
# --- One snapshot of each table ---------------------------------------------
|
||||
# Both are taken up front, back to back, so every rail below comes from the same
|
||||
# moment. Under tr 518 the currents move a lot; re-reading per rail meant the
|
||||
# total was a sum of readings taken seconds apart.
|
||||
V_TABLE="$(show platform voltage 2>/dev/null)"
|
||||
C_TABLE="$(show platform current 2>/dev/null)"
|
||||
|
||||
if [ -z "$V_TABLE" ] || [ -z "$C_TABLE" ]; then
|
||||
echo "ERROR: 'show platform voltage/current' returned nothing" >&2
|
||||
exit 1
|
||||
fi
|
||||
|
||||
# --- Join and report ---------------------------------------------------------
|
||||
# Sensor name is field 1 and the value field 2 in both tables; header and rule
|
||||
# lines drop out because their field 2 is not numeric.
|
||||
{
|
||||
printf '%s\n' "$V_TABLE"
|
||||
echo "@@@SPLIT@@@"
|
||||
printf '%s\n' "$C_TABLE"
|
||||
} | awk -v rails="${rails[*]}" '
|
||||
BEGIN { n = split(rails, R, " "); sec = 1 }
|
||||
/^@@@SPLIT@@@$/ { sec = 2; next }
|
||||
{
|
||||
if (NF < 2) next
|
||||
name = $1; val = $2
|
||||
if (val !~ /^[0-9]+(\.[0-9]+)?$/) next # header / ---- / blank
|
||||
if (sec == 2) CUR[name] = val + 0
|
||||
else VOLT[name] = val + 0
|
||||
}
|
||||
END {
|
||||
total = 0
|
||||
for (i = 1; i <= n; i++) {
|
||||
rail = R[i]; cname = rail "_CURRENT"
|
||||
haveV = (rail in VOLT); haveC = (cname in CUR)
|
||||
if (!haveV || !haveC)
|
||||
printf "WARN: %s missing from the sensor table (%s%s%s) -- counted as 0 W\n", \
|
||||
rail, (haveV ? "" : "no voltage"), \
|
||||
((!haveV && !haveC) ? ", " : ""), \
|
||||
(haveC ? "" : "no current") > "/dev/stderr"
|
||||
v = haveV ? VOLT[rail] : 0
|
||||
c = haveC ? CUR[cname] : 0
|
||||
p = sprintf("%.2f", (v/1000)*(c/1000))
|
||||
printf "%s: Voltage=%.3f V, Current=%.3f A, Power=%.2f W\n", rail, v/1000, c/1000, p
|
||||
total = sprintf("%.2f", total + p)
|
||||
}
|
||||
print "----------------------------------------"
|
||||
printf "TOTAL POWER: %.2f W\n", total
|
||||
}'
|
||||
@@ -0,0 +1,95 @@
|
||||
#!/bin/bash
|
||||
# =============================================================================
|
||||
# TH6_SWB1_power_readback.sh -- SWB1 rail power from the platform sensors
|
||||
# =============================================================================
|
||||
# Version History:
|
||||
# V1.1.0 2026-08-28 'show platform voltage' and 'show platform current' are
|
||||
# now read ONCE each instead of once per rail. The old
|
||||
# loop ran them 19 times apiece (38 invocations of a slow
|
||||
# Python CLI) and every sample came from a different
|
||||
# instant, so the rails were never actually measured
|
||||
# together. Output format is unchanged.
|
||||
# Rails missing from the tables are reported on stderr
|
||||
# instead of silently contributing 0.000 V / 0.00 W.
|
||||
# V1.0.0 2026-08-28 First version.
|
||||
# =============================================================================
|
||||
#
|
||||
# Reads the two platform sensor tables:
|
||||
# 'show platform voltage' -> <RAIL> in mV
|
||||
# 'show platform current' -> <RAIL>_CURRENT in mA
|
||||
# and reports V x I per rail plus the total.
|
||||
#
|
||||
# For a loaded reading, start traffic first: blanton_tr518.sh start
|
||||
# =============================================================================
|
||||
|
||||
# --- Rails to report, in output order (edit this list) ---
|
||||
rails=(
|
||||
"SWB1_0V9_ANLG0"
|
||||
"SWB1_0V9_ANLG1"
|
||||
"SWB1_0V75_ANLG0"
|
||||
"SWB1_0V75_ANLG1"
|
||||
"SWB1_PHYTILE_P0"
|
||||
"SWB1_PHYTILE_P1"
|
||||
"SWB1_PHYTILE_P2"
|
||||
"SWB1_PHYTILE_P3"
|
||||
"SWB1_PHYTILE_P4"
|
||||
"SWB1_PHYTILE_P5"
|
||||
"SWB1_PHYTILE_P6"
|
||||
"SWB1_PHYTILE_P7"
|
||||
"SWB1_PVDD1V5_CNDR0"
|
||||
"SWB1_PVDD1V5_CNDR1"
|
||||
"SWB1_PVDDA_PHYT0"
|
||||
"SWB1_PVDDA_PHYT1"
|
||||
"SWB1_PVDDA_PHYT2"
|
||||
"SWB1_PVDDA_PHYT3"
|
||||
"SWB1_TH6_CORE"
|
||||
)
|
||||
|
||||
# --- One snapshot of each table ---------------------------------------------
|
||||
# Both are taken up front, back to back, so every rail below comes from the same
|
||||
# moment. Under tr 518 the currents move a lot; re-reading per rail meant the
|
||||
# total was a sum of readings taken seconds apart.
|
||||
V_TABLE="$(show platform voltage 2>/dev/null)"
|
||||
C_TABLE="$(show platform current 2>/dev/null)"
|
||||
|
||||
if [ -z "$V_TABLE" ] || [ -z "$C_TABLE" ]; then
|
||||
echo "ERROR: 'show platform voltage/current' returned nothing" >&2
|
||||
exit 1
|
||||
fi
|
||||
|
||||
# --- Join and report ---------------------------------------------------------
|
||||
# Sensor name is field 1 and the value field 2 in both tables; header and rule
|
||||
# lines drop out because their field 2 is not numeric.
|
||||
{
|
||||
printf '%s\n' "$V_TABLE"
|
||||
echo "@@@SPLIT@@@"
|
||||
printf '%s\n' "$C_TABLE"
|
||||
} | awk -v rails="${rails[*]}" '
|
||||
BEGIN { n = split(rails, R, " "); sec = 1 }
|
||||
/^@@@SPLIT@@@$/ { sec = 2; next }
|
||||
{
|
||||
if (NF < 2) next
|
||||
name = $1; val = $2
|
||||
if (val !~ /^[0-9]+(\.[0-9]+)?$/) next # header / ---- / blank
|
||||
if (sec == 2) CUR[name] = val + 0
|
||||
else VOLT[name] = val + 0
|
||||
}
|
||||
END {
|
||||
total = 0
|
||||
for (i = 1; i <= n; i++) {
|
||||
rail = R[i]; cname = rail "_CURRENT"
|
||||
haveV = (rail in VOLT); haveC = (cname in CUR)
|
||||
if (!haveV || !haveC)
|
||||
printf "WARN: %s missing from the sensor table (%s%s%s) -- counted as 0 W\n", \
|
||||
rail, (haveV ? "" : "no voltage"), \
|
||||
((!haveV && !haveC) ? ", " : ""), \
|
||||
(haveC ? "" : "no current") > "/dev/stderr"
|
||||
v = haveV ? VOLT[rail] : 0
|
||||
c = haveC ? CUR[cname] : 0
|
||||
p = sprintf("%.2f", (v/1000)*(c/1000))
|
||||
printf "%s: Voltage=%.3f V, Current=%.3f A, Power=%.2f W\n", rail, v/1000, c/1000, p
|
||||
total = sprintf("%.2f", total + p)
|
||||
}
|
||||
print "----------------------------------------"
|
||||
printf "TOTAL POWER: %.2f W\n", total
|
||||
}'
|
||||
@@ -0,0 +1,495 @@
|
||||
#!/usr/bin/env bash
|
||||
# =============================================================================
|
||||
# blanton_ber.sh -- SerDes BER test over every cabled port (PRBS via phydiag)
|
||||
# =============================================================================
|
||||
# Version History:
|
||||
# V1.0.1 2026-08-28 Fix: every lane reported NA and the Port column showed
|
||||
# "NA". bcmcmd returns CRLF, and the BER is the last token
|
||||
# on its line, so the CR stayed glued to the number: it
|
||||
# failed the numeric test (-> NA) and printing it sent the
|
||||
# cursor back to column 1, so the RESULT column overwrote
|
||||
# the start of the row. The parser now strips CR first.
|
||||
# (The traffic report never hit this -- there the counter
|
||||
# is followed by a delta, so the CR was trimmed with it.)
|
||||
# V1.0.0 2026-08-28 First version. Bash port of tools/BER_Test.txt.
|
||||
# init/clear/start/stop/report, -u 0|1|all (default both).
|
||||
# report parses 'prbsstat Ber' into a per-lane table with a
|
||||
# PASS/FAIL against BER_MAX (default 1e-6) and a summary
|
||||
# across units at the very bottom.
|
||||
# =============================================================================
|
||||
#
|
||||
# This is the WHOLE-SWITCH BER sweep: every cabled port, both lanes, PRBS-31
|
||||
# through the SerDes. Not to be confused with port_prbs_monitor.sh, which drives
|
||||
# the two 100G uplinks only and polls them continuously.
|
||||
#
|
||||
# Order of operations (matches tools/BER_Test.txt):
|
||||
# init phydiag <ports> prbs set p=3 arm PRBS on every lane
|
||||
# phydiag <ports> prbs get confirm every lane locked
|
||||
# start phydiag <ports> prbsstat STArt Interval=<n>
|
||||
# ...wait at least one Interval...
|
||||
# report phydiag <ports> prbsstat Ber read + judge
|
||||
# stop phydiag <ports> prbsstat STOp
|
||||
# clear phydiag <ports> prbs clear disarm, release the lanes
|
||||
#
|
||||
# ⚠️ 'clear' disarms PRBS -- run 'init' again before another measurement.
|
||||
# ⚠️ PRBS takes the SerDes out of normal operation: the links report DOWN and no
|
||||
# traffic passes while it is armed. Do not run this alongside
|
||||
# blanton_traffic_linespeed or blanton_tr518.
|
||||
#
|
||||
# Usage (run directly):
|
||||
# ./blanton_ber.sh init # both units
|
||||
# ./blanton_ber.sh start -u 0 # unit 0 only
|
||||
# ./blanton_ber.sh report
|
||||
# ./blanton_ber.sh stop
|
||||
# ./blanton_ber.sh clear
|
||||
#
|
||||
# Usage (sourced, like the other blanton_*.sh tools):
|
||||
# source blanton_ber.sh
|
||||
# blanton_ber report -u 1
|
||||
#
|
||||
# Options:
|
||||
# -u|--unit <0|1|all|0,1> bcmcmd unit(s). Default: $BER_UNITS ("0 1")
|
||||
# -c|--criteria <ber> report: PASS threshold (default $BER_MAX)
|
||||
# -i|--interval <sec> start: prbsstat Interval (default $BER_INTERVAL)
|
||||
# -p|--ports <list> override the port list
|
||||
# -F|--fail-only report: list only the lanes that FAIL
|
||||
# --tsv report: tab-separated (paste into Excel)
|
||||
# --raw report: also print the raw 'prbsstat Ber' output
|
||||
# --color|--no-color report: force / disable colours
|
||||
# -f|--file <log> report: parse a saved console log, do not touch DUT
|
||||
# -d|--debug print every bcmcmd before running it
|
||||
# -n|--dry-run print commands only, do not touch the DUT
|
||||
# -h|--help help
|
||||
#
|
||||
# Environment overrides:
|
||||
# BCMCMD_CMD=bcmcmd BER_UNITS="0 1" BER_MAX=1e-6 BER_INTERVAL=30
|
||||
# BER_PORTS="1-24,..." BER_POLY=p=3 BER_LOG_DIR=/tmp DEBUG_MODE=1
|
||||
# =============================================================================
|
||||
|
||||
# === Config ==================================================================
|
||||
BCMCMD_CMD="${BCMCMD_CMD:-bcmcmd}"
|
||||
BER_UNITS="${BER_UNITS:-0 1}" # one DUT = two switch boards (0 and 1)
|
||||
|
||||
# The cabled ports, in bcm logical-port numbering. Same list as
|
||||
# blanton_traffic_linespeed.sh's TL_PS_PORTS -- kept as one string so it can be
|
||||
# pasted straight from/into a manual phydiag command.
|
||||
BER_PORTS="${BER_PORTS:-1-24,40-96,112-168,184-240,256-259,270-308,310-327,342-380,382-399,414-452,454-471,486-524,526-543,558-565}"
|
||||
|
||||
BER_POLY="${BER_POLY:-p=3}" # passed to 'prbs set'
|
||||
BER_INTERVAL="${BER_INTERVAL:-30}" # passed to 'prbsstat STArt Interval='
|
||||
|
||||
# PASS threshold. A lane PASSES when its BER is strictly BELOW this.
|
||||
# 1e-6 is the acceptance figure for this project; the measured lanes sit around
|
||||
# 1e-13..1e-8, so anything near the threshold is already a real finding.
|
||||
BER_MAX="${BER_MAX:-1e-6}"
|
||||
|
||||
BER_LOG_DIR="${BER_LOG_DIR:-/tmp}" # where the raw 'prbsstat Ber' capture goes
|
||||
BER_FAIL_ONLY=${BER_FAIL_ONLY:-0}
|
||||
BER_TSV=${BER_TSV:-0}
|
||||
BER_RAW=${BER_RAW:-0}
|
||||
BER_REPORT_FILE="" # -f <log>: parse this instead of the DUT
|
||||
BER_COLOR="${BER_COLOR:-auto}" # auto|always|never
|
||||
|
||||
DEBUG_MODE=${DEBUG_MODE:-0}
|
||||
BER_DRY_RUN=${BER_DRY_RUN:-0}
|
||||
|
||||
# === Logging =================================================================
|
||||
_ber_info() { echo -e "[\033[34mINFO\033[0m] $*"; }
|
||||
_ber_ok() { echo -e "[\033[32m OK \033[0m] $*"; }
|
||||
_ber_warn() { echo -e "[\033[33mWARN\033[0m] $*" >&2; }
|
||||
_ber_err() { echo -e "[\033[31mERR \033[0m] $*" >&2; }
|
||||
_ber_dbg() { [ "$DEBUG_MODE" = "1" ] && echo -e "\033[90m[DEBG] $*\033[0m" >&2; return 0; }
|
||||
|
||||
# === bcmcmd wrapper ==========================================================
|
||||
# stdin closed for the same reason as blanton_traffic_linespeed.sh: bcmcmd
|
||||
# otherwise inherits the caller's stdin and eats what a surrounding loop reads.
|
||||
#
|
||||
# bcmcmd exits 0 even when the BCM shell refused the command, so the output is
|
||||
# pattern-matched as well. And it exits NON-zero on long-running commands whose
|
||||
# response poll times out while the command is in fact fine -- that one is
|
||||
# tolerated (the blanton_tr518.sh lesson).
|
||||
BER_ERR_PAT="${BER_ERR_PAT:-ERROR|Failed to execute|Invalid|Syntax error|Unavailable|Unknown command}"
|
||||
BER_BENIGN_PAT="${BER_BENIGN_PAT:-polling socket timeout}"
|
||||
|
||||
# _ber_bcm <unit> <phydiag args...> -- wraps in dsh -c 'phydiag <ports> ...'
|
||||
# echoes the DUT output on stdout, returns 0 ok / 1 failed
|
||||
_ber_bcm() {
|
||||
local unit="$1"; shift
|
||||
local inner="phydiag ${BER_PORTS} $*"
|
||||
local cmd="dsh -c '${inner}'"
|
||||
_ber_dbg "$BCMCMD_CMD -n $unit -c \"${cmd}\""
|
||||
if [ "$BER_DRY_RUN" = "1" ]; then
|
||||
echo "[DRY ] $BCMCMD_CMD -n $unit -c \" ${cmd} \"" >&2
|
||||
return 0
|
||||
fi
|
||||
local out rc
|
||||
out=$("$BCMCMD_CMD" -n "$unit" -c "$cmd" </dev/null 2>&1); rc=$?
|
||||
printf '%s\n' "$out"
|
||||
if echo "$out" | grep -qiE "$BER_ERR_PAT"; then
|
||||
_ber_err "unit $unit: the BCM shell rejected 'phydiag ... $*'"
|
||||
return 1
|
||||
fi
|
||||
if [ "$rc" -ne 0 ] && ! echo "$out" | grep -qiE "$BER_BENIGN_PAT"; then
|
||||
_ber_err "unit $unit: bcmcmd exited $rc on 'phydiag ... $*'"
|
||||
return 1
|
||||
fi
|
||||
return 0
|
||||
}
|
||||
|
||||
_ber_units_check() {
|
||||
local u ok=""
|
||||
for u in $BER_UNITS; do
|
||||
case "$u" in
|
||||
0|1) ok="$ok $u" ;;
|
||||
*) _ber_err "invalid unit '$u' (use 0, 1 or all)"; return 1 ;;
|
||||
esac
|
||||
done
|
||||
[ -n "$ok" ] || { _ber_err "no unit selected"; return 1; }
|
||||
BER_UNITS="${ok# }"
|
||||
return 0
|
||||
}
|
||||
|
||||
_ber_use_color() {
|
||||
case "$BER_COLOR" in
|
||||
always|1|yes) return 0 ;;
|
||||
never|0|no) return 1 ;;
|
||||
*) [ -t 1 ] && [ "$BER_TSV" != "1" ] ;;
|
||||
esac
|
||||
}
|
||||
|
||||
# === init ====================================================================
|
||||
# prbs set + prbs get. The 'get' is not decoration: a lane that did not lock
|
||||
# still reports a BER later, and it is a meaningless one.
|
||||
blanton_ber_init() {
|
||||
_ber_units_check || return 1
|
||||
local unit out total ok rc=0
|
||||
for unit in $BER_UNITS; do
|
||||
_ber_info "unit $unit: prbs set ${BER_POLY} on ${BER_PORTS}"
|
||||
_ber_bcm "$unit" "prbs set ${BER_POLY}" >/dev/null || { rc=1; continue; }
|
||||
|
||||
out=$(_ber_bcm "$unit" "prbs get") || { rc=1; continue; }
|
||||
[ "$BER_DRY_RUN" = "1" ] && continue
|
||||
# lines look like: " 185 : PRBS OK!has been unlocked since last call"
|
||||
total=$(printf '%s\n' "$out" | grep -cE '^[ \t]*[0-9]+[ \t]*:')
|
||||
ok=$(printf '%s\n' "$out" | grep -cE '^[ \t]*[0-9]+[ \t]*:.*PRBS OK')
|
||||
if [ "$total" -eq 0 ]; then
|
||||
_ber_err "unit $unit: 'prbs get' reported no lanes at all"
|
||||
rc=1
|
||||
elif [ "$ok" -eq "$total" ]; then
|
||||
_ber_ok "unit $unit: $ok/$total ports locked"
|
||||
else
|
||||
_ber_warn "unit $unit: only $ok/$total ports locked -- the rest will report a meaningless BER:"
|
||||
printf '%s\n' "$out" | grep -E '^[ \t]*[0-9]+[ \t]*:' | grep -v 'PRBS OK' >&2
|
||||
rc=2
|
||||
fi
|
||||
done
|
||||
return $rc
|
||||
}
|
||||
|
||||
# === clear ===================================================================
|
||||
blanton_ber_clear() {
|
||||
_ber_units_check || return 1
|
||||
local unit rc=0
|
||||
for unit in $BER_UNITS; do
|
||||
_ber_info "unit $unit: prbs clear"
|
||||
_ber_bcm "$unit" "prbs clear" >/dev/null || rc=1
|
||||
done
|
||||
[ "$rc" -eq 0 ] && _ber_ok "PRBS disarmed on unit(s): $BER_UNITS -- run 'init' before measuring again"
|
||||
return $rc
|
||||
}
|
||||
|
||||
# === start ===================================================================
|
||||
blanton_ber_start() {
|
||||
_ber_units_check || return 1
|
||||
local unit rc=0
|
||||
for unit in $BER_UNITS; do
|
||||
_ber_info "unit $unit: prbsstat STArt Interval=${BER_INTERVAL}"
|
||||
_ber_bcm "$unit" "prbsstat STArt Interval=${BER_INTERVAL}" >/dev/null || rc=1
|
||||
done
|
||||
if [ "$rc" -eq 0 ]; then
|
||||
_ber_ok "BER accumulation running on unit(s): $BER_UNITS"
|
||||
_ber_info "wait at least ${BER_INTERVAL}s before 'report' -- a shorter run has not accumulated a full interval"
|
||||
fi
|
||||
return $rc
|
||||
}
|
||||
|
||||
# === stop ====================================================================
|
||||
blanton_ber_stop() {
|
||||
_ber_units_check || return 1
|
||||
local unit rc=0
|
||||
for unit in $BER_UNITS; do
|
||||
_ber_info "unit $unit: prbsstat STOp"
|
||||
_ber_bcm "$unit" "prbsstat STOp" >/dev/null || rc=1
|
||||
done
|
||||
if [ "$rc" -eq 0 ]; then
|
||||
_ber_ok "BER accumulation stopped on unit(s): $BER_UNITS"
|
||||
_ber_info "PRBS is still armed -- 'clear' releases the lanes and restores normal operation"
|
||||
fi
|
||||
return $rc
|
||||
}
|
||||
|
||||
# === report ==================================================================
|
||||
# Parses 'prbsstat Ber' output:
|
||||
# port BER
|
||||
# ====
|
||||
# 1[0] : 3.53e-11
|
||||
# 1[1] : 4.00e-11
|
||||
# into <port> <lane> <ber> <verdict>, PASS when ber < BER_MAX.
|
||||
# _ber_render <logfile> [side_file] -> 0 all PASS, 2 any FAIL/NA, 1 parse error
|
||||
_ber_render() {
|
||||
local log="$1" side="${2:-/dev/null}" color=0
|
||||
_ber_use_color && color=1
|
||||
awk -v MAXBER="$BER_MAX" \
|
||||
-v FAILONLY="$BER_FAIL_ONLY" \
|
||||
-v TSV="$BER_TSV" \
|
||||
-v COLOR="$color" \
|
||||
-v SIDE="$side" '
|
||||
function vc(v) {
|
||||
if (!COLOR) return v
|
||||
if (v == "PASS") return "\033[32m" v "\033[0m"
|
||||
if (v == "FAIL") return "\033[31m" v "\033[0m"
|
||||
return "\033[33m" v "\033[0m"
|
||||
}
|
||||
BEGIN {
|
||||
LIM = MAXBER + 0
|
||||
NC = 4
|
||||
HDR[1] = "Port"; AL[1] = 1
|
||||
HDR[2] = "Lane"; AL[2] = 1
|
||||
HDR[3] = "BER"; AL[3] = 1
|
||||
HDR[4] = "RESULT"; AL[4] = 1
|
||||
worst = -1; worstlane = "-"
|
||||
}
|
||||
# bcmcmd hands back CRLF. On the cd/traffic report the counter is followed by
|
||||
# a delta, so the CR got trimmed with the rest of the line; here the BER is
|
||||
# the LAST token, so the CR sticks to the number -- it failed the numeric
|
||||
# test (every lane NA) and, worse, printing it moved the cursor back to
|
||||
# column 1 so the RESULT column overwrote the start of the row.
|
||||
{ gsub(/\r/, "") }
|
||||
|
||||
{
|
||||
# " 203[1] : 5.05e-09" (leading spaces vary, "====" separators ignored)
|
||||
if ($0 !~ /^[ \t]*[0-9]+\[[0-9]+\][ \t]*:/) next
|
||||
line = $0
|
||||
sub(/^[ \t]+/, "", line)
|
||||
p = index(line, "[")
|
||||
q = index(line, "]")
|
||||
c = index(line, ":")
|
||||
port = substr(line, 1, p - 1)
|
||||
lane = substr(line, p + 1, q - p - 1)
|
||||
ber = substr(line, c + 1)
|
||||
gsub(/^[ \t\r]+|[ \t\r]+$/, "", ber)
|
||||
sub(/[ \t\r].*$/, "", ber)
|
||||
seen++
|
||||
n++
|
||||
PORT[n] = port; LANE[n] = lane; BERS[n] = ber
|
||||
# a lane that reported something non-numeric has no usable measurement
|
||||
if (ber ~ /^[0-9]+(\.[0-9]+)?([eE][-+]?[0-9]+)?$/) {
|
||||
v = ber + 0
|
||||
if (v < LIM) { V[n] = "PASS"; npass++ }
|
||||
else { V[n] = "FAIL"; nfail++ }
|
||||
if (v > worst) { worst = v; worstlane = port "[" lane "]"; worststr = ber }
|
||||
} else {
|
||||
V[n] = "NA"; nna++
|
||||
}
|
||||
}
|
||||
END {
|
||||
if (seen == 0) {
|
||||
print "error: no \"<port>[<lane>] : <ber>\" line found in the log" > "/dev/stderr"
|
||||
exit 1
|
||||
}
|
||||
# column widths over the rows that will actually be printed
|
||||
for (c2 = 1; c2 <= NC; c2++) w[c2] = length(HDR[c2])
|
||||
for (i = 1; i <= n; i++) {
|
||||
if (FAILONLY && V[i] == "PASS") continue
|
||||
if (length(PORT[i]) > w[1]) w[1] = length(PORT[i])
|
||||
if (length(LANE[i]) > w[2]) w[2] = length(LANE[i])
|
||||
if (length(BERS[i]) > w[3]) w[3] = length(BERS[i])
|
||||
if (length(V[i]) > w[4]) w[4] = length(V[i])
|
||||
}
|
||||
for (c2 = 1; c2 <= NC; c2++) w[c2] += 2
|
||||
|
||||
if (TSV) {
|
||||
print HDR[1] "\t" HDR[2] "\t" HDR[3] "\t" HDR[4]
|
||||
for (i = 1; i <= n; i++) {
|
||||
if (FAILONLY && V[i] == "PASS") continue
|
||||
print PORT[i] "\t" LANE[i] "\t" BERS[i] "\t" V[i]
|
||||
}
|
||||
} else {
|
||||
printf "%*s%*s%*s%*s\n", w[1], HDR[1], w[2], HDR[2], w[3], HDR[3], w[4], HDR[4]
|
||||
for (i = 1; i <= n; i++) {
|
||||
if (FAILONLY && V[i] == "PASS") continue
|
||||
printf "%*s%*s%*s", w[1], PORT[i], w[2], LANE[i], w[3], BERS[i]
|
||||
# pad on the plain text, then colour, so the columns stay aligned
|
||||
printf "%*s%s\n", w[4] - length(V[i]), "", vc(V[i])
|
||||
}
|
||||
if (FAILONLY && nfail == 0 && nna == 0)
|
||||
print " (no failing lane)"
|
||||
}
|
||||
|
||||
print ""
|
||||
printf "# lanes measured : %d\n", n
|
||||
printf "# %s %d %s %d %s %d (criteria BER < %s)\n", \
|
||||
vc("PASS"), npass + 0, vc("FAIL"), nfail + 0, vc("NA"), nna + 0, MAXBER
|
||||
if (worst >= 0)
|
||||
printf "# worst lane : %s %s\n", worstlane, worststr
|
||||
if (SIDE != "" && SIDE != "/dev/null")
|
||||
printf "SUM %d %d %d %d %s %s\n", n, npass + 0, nfail + 0, nna + 0, \
|
||||
(worst >= 0 ? worststr : "-"), worstlane > SIDE
|
||||
exit (nfail || nna) ? 2 : 0
|
||||
}' "$log"
|
||||
}
|
||||
|
||||
# _ber_summary <stamp> -- one table for every unit, printed last
|
||||
_ber_summary() {
|
||||
local stamp="$1" unit side g r y n worst=0
|
||||
g=$'\033[32m'; r=$'\033[31m'; y=$'\033[33m'; n=$'\033[0m'
|
||||
_ber_use_color || { g=""; r=""; y=""; n=""; }
|
||||
|
||||
echo ""
|
||||
echo "===== summary : all units ====="
|
||||
printf '%-8s %8s %8s %8s %8s %-12s %-10s %s\n' \
|
||||
"Unit" "LANES" "PASS" "FAIL" "NA" "WORST BER" "WORST LANE" "RESULT"
|
||||
|
||||
local tag lanes pass fail na wber wlane v any=0
|
||||
for unit in $BER_UNITS; do
|
||||
side="$BER_LOG_DIR/berside_unit${unit}_${stamp}"
|
||||
[ -r "$side" ] || continue
|
||||
read -r tag lanes pass fail na wber wlane < "$side" 2>/dev/null
|
||||
[ "$tag" = "SUM" ] || continue
|
||||
any=1
|
||||
if [ "${fail:-0}" -gt 0 ] || [ "${na:-0}" -gt 0 ]; then
|
||||
v="${r}FAIL${n}"; worst=2
|
||||
else
|
||||
v="${g}PASS${n}"
|
||||
fi
|
||||
printf '%-8s %8s %8s %8s %8s %-12s %-10s %b\n' \
|
||||
"unit $unit" "$lanes" "$pass" "$fail" "$na" "$wber" "$wlane" "$v"
|
||||
done
|
||||
[ "$any" = "1" ] || echo " (no unit produced a result)"
|
||||
echo ""
|
||||
printf 'criteria: BER < %s\n' "$BER_MAX"
|
||||
echo ""
|
||||
return "$worst"
|
||||
}
|
||||
|
||||
blanton_ber_report() {
|
||||
local unit log side rc worst=0 stamp
|
||||
|
||||
# -f <log>: offline, no DUT access, no unit loop -> no cross-unit summary
|
||||
if [ -n "$BER_REPORT_FILE" ]; then
|
||||
[ -r "$BER_REPORT_FILE" ] || { _ber_err "cannot read log '$BER_REPORT_FILE'"; return 1; }
|
||||
_ber_info "report from log: $BER_REPORT_FILE (criteria BER < $BER_MAX)" >&2
|
||||
_ber_render "$BER_REPORT_FILE"; return $?
|
||||
fi
|
||||
|
||||
_ber_units_check || return 1
|
||||
if [ "$BER_DRY_RUN" = "1" ]; then
|
||||
for unit in $BER_UNITS; do _ber_bcm "$unit" "prbsstat Ber" >/dev/null; done
|
||||
return 0
|
||||
fi
|
||||
|
||||
stamp=$(date +%Y%m%d_%H%M%S 2>/dev/null || echo now)
|
||||
for unit in $BER_UNITS; do
|
||||
log="$BER_LOG_DIR/prbsber_unit${unit}_${stamp}.log"
|
||||
side="$BER_LOG_DIR/berside_unit${unit}_${stamp}"
|
||||
: > "$side"
|
||||
if ! _ber_bcm "$unit" "prbsstat Ber" > "$log" 2>&1; then
|
||||
_ber_err "unit $unit: 'prbsstat Ber' failed (see $log)"; worst=1; continue
|
||||
fi
|
||||
[ "$BER_RAW" = "1" ] && { echo "----- unit $unit : raw prbsstat Ber -----"; cat "$log"; }
|
||||
echo "===== unit $unit : PRBS BER report (raw: $log) ====="
|
||||
_ber_render "$log" "$side"; rc=$?
|
||||
[ "$rc" -gt "$worst" ] && worst=$rc
|
||||
case "$rc" in
|
||||
0) _ber_ok "unit $unit: every lane below $BER_MAX" ;;
|
||||
2) _ber_warn "unit $unit: at least one lane FAIL/NA" ;;
|
||||
*) _ber_err "unit $unit: report parse error" ;;
|
||||
esac
|
||||
done
|
||||
|
||||
_ber_summary "$stamp"; rc=$?
|
||||
[ "$rc" -gt "$worst" ] && worst=$rc
|
||||
rm -f "$BER_LOG_DIR"/berside_unit*_"${stamp}"
|
||||
return "$worst"
|
||||
}
|
||||
|
||||
# === Help ====================================================================
|
||||
blanton_ber_help() {
|
||||
echo -e "\033[1mblanton_ber.sh - SerDes BER test over every cabled port (PRBS via phydiag)\033[0m"
|
||||
echo ""
|
||||
echo -e " Units : \033[36m$BER_UNITS\033[0m poly: \033[36m$BER_POLY\033[0m interval: \033[36m${BER_INTERVAL}s\033[0m"
|
||||
echo -e " Criteria : BER < \033[36m$BER_MAX\033[0m"
|
||||
echo -e " Ports : \033[36m$BER_PORTS\033[0m"
|
||||
echo ""
|
||||
echo -e "\033[1mSubcommands\033[0m"
|
||||
echo -e " \033[33minit\033[0m prbs set $BER_POLY + prbs get (checks every lane locked)"
|
||||
echo -e " \033[33mstart\033[0m prbsstat STArt Interval=$BER_INTERVAL"
|
||||
echo -e " \033[33mreport\033[0m prbsstat Ber -> per-lane table + PASS/FAIL + summary"
|
||||
echo -e " \033[33mstop\033[0m prbsstat STOp"
|
||||
echo -e " \033[33mclear\033[0m prbs clear (disarms PRBS -- 'init' again before measuring)"
|
||||
echo -e " \033[33mhelp\033[0m"
|
||||
echo ""
|
||||
echo -e "\033[1mOptions\033[0m"
|
||||
echo -e " \033[33m-u|--unit\033[0m <0|1|all> bcmcmd unit(s); 'all' = 0 1 (default: $BER_UNITS)"
|
||||
echo -e " \033[33m-c|--criteria\033[0m <ber> PASS threshold (default $BER_MAX)"
|
||||
echo -e " \033[33m-i|--interval\033[0m <sec> prbsstat Interval (default $BER_INTERVAL)"
|
||||
echo -e " \033[33m-p|--ports\033[0m <list> override the port list"
|
||||
echo -e " \033[33m-F|--fail-only\033[0m report: list only failing lanes"
|
||||
echo -e " \033[33m--tsv\033[0m report: tab-separated"
|
||||
echo -e " \033[33m--raw\033[0m report: also print the raw output"
|
||||
echo -e " \033[33m-f|--file\033[0m <log> report: parse a saved log, do not touch the DUT"
|
||||
echo -e " \033[33m-d|--debug\033[0m print every bcmcmd"
|
||||
echo -e " \033[33m-n|--dry-run\033[0m print commands only"
|
||||
echo ""
|
||||
echo -e "\033[1mTypical run\033[0m"
|
||||
echo -e " ./blanton_ber.sh init && ./blanton_ber.sh start"
|
||||
echo -e " sleep $BER_INTERVAL"
|
||||
echo -e " ./blanton_ber.sh report"
|
||||
echo -e " ./blanton_ber.sh stop && ./blanton_ber.sh clear"
|
||||
echo ""
|
||||
echo -e "\033[33m PRBS takes the SerDes out of normal operation: links show DOWN and no\033[0m"
|
||||
echo -e "\033[33m traffic passes. Do not run alongside blanton_traffic_linespeed / blanton_tr518.\033[0m"
|
||||
}
|
||||
|
||||
# === Argument parsing ========================================================
|
||||
blanton_ber() {
|
||||
local sub="${1:-help}"; shift 2>/dev/null
|
||||
while [ $# -gt 0 ]; do
|
||||
case "$1" in
|
||||
-u|--unit)
|
||||
case "$2" in
|
||||
all|ALL) BER_UNITS="0 1" ;;
|
||||
*) BER_UNITS="$(echo "$2" | tr ',' ' ')" ;;
|
||||
esac
|
||||
shift 2 ;;
|
||||
-c|--criteria) BER_MAX="$2"; shift 2 ;;
|
||||
-i|--interval) BER_INTERVAL="$2"; shift 2 ;;
|
||||
-p|--ports) BER_PORTS="$2"; shift 2 ;;
|
||||
-f|--file) BER_REPORT_FILE="$2"; shift 2 ;;
|
||||
-F|--fail-only) BER_FAIL_ONLY=1; shift ;;
|
||||
--tsv) BER_TSV=1; shift ;;
|
||||
--raw) BER_RAW=1; shift ;;
|
||||
--color) BER_COLOR=always; shift ;;
|
||||
--no-color) BER_COLOR=never; shift ;;
|
||||
-d|--debug) DEBUG_MODE=1; shift ;;
|
||||
-n|--dry-run) BER_DRY_RUN=1; shift ;;
|
||||
-h|--help) blanton_ber_help; return 0 ;;
|
||||
*) _ber_err "unknown option '$1'"; return 1 ;;
|
||||
esac
|
||||
done
|
||||
|
||||
case "$sub" in
|
||||
init) blanton_ber_init ;;
|
||||
clear) blanton_ber_clear ;;
|
||||
start) blanton_ber_start ;;
|
||||
stop) blanton_ber_stop ;;
|
||||
report) blanton_ber_report ;;
|
||||
help|-h|--help) blanton_ber_help ;;
|
||||
*) _ber_err "unknown subcommand '$sub'"; blanton_ber_help; return 1 ;;
|
||||
esac
|
||||
}
|
||||
|
||||
# Run when executed, define-only when sourced (same as the other blanton_*.sh).
|
||||
if [ "${BASH_SOURCE[0]}" = "$0" ]; then
|
||||
blanton_ber "$@"
|
||||
fi
|
||||
File diff suppressed because it is too large
Load Diff
@@ -0,0 +1,326 @@
|
||||
#!/usr/bin/env bash
|
||||
# =============================================================================
|
||||
# blanton_tr518.sh -- TH6 built-in packet test (tr 518) via bcmcmd
|
||||
# =============================================================================
|
||||
# Version History:
|
||||
# V1.0.1 2026-08-28 Fix: start reported ERR on a run that was actually fine.
|
||||
# bcmcmd exits NON-zero on 'tr 518' because the test
|
||||
# outlives its response poll ("polling socket timeout:
|
||||
# Success") -- the command had been accepted and was
|
||||
# running. The tr 518 step is now judged on a POSITIVE
|
||||
# marker in the output ("TR 518 TEST PARAMETERS", which
|
||||
# the shell prints only after it starts the test) instead
|
||||
# of on bcmcmd's exit status, and "polling socket timeout"
|
||||
# is tolerated generally. Failures now also say WHICH
|
||||
# check tripped (shell rejected it / bcmcmd exited N).
|
||||
# V1.0.0 2026-08-28 First version. Bash port of tools/TR518.txt, command for
|
||||
# command. start = port cd lb=mac, l2 learn off,
|
||||
# test mode nr=yes, tr 518 ... testphase=1, then a settle
|
||||
# wait so a power reading taken afterwards is a loaded and
|
||||
# stable one rather than a ramping one.
|
||||
# stop = port cd lb=none (exactly what TR518.txt does).
|
||||
# -u 0 | -u 1 | -u all (default both).
|
||||
# =============================================================================
|
||||
#
|
||||
# What this is for: tr 518 loads the switch so the power rails can be measured
|
||||
# under traffic. The usual sequence is
|
||||
#
|
||||
# blanton_tr518.sh start # loads both units, waits to settle
|
||||
# TH6_SWB0_power_readback.sh # now the numbers mean something
|
||||
# TH6_SWB1_power_readback.sh
|
||||
# blanton_tr518.sh stop
|
||||
#
|
||||
# ⚠️ tr 518 and blanton_traffic_linespeed CANNOT run at the same time. Both take
|
||||
# over the cd ports and L2 learning; running one while the other is set up
|
||||
# gives numbers from neither test. Stop one before the other starts.
|
||||
#
|
||||
# ⚠️ stop only undoes the loopback -- see TR_RESTORE_* below.
|
||||
#
|
||||
# Usage (run directly):
|
||||
# ./blanton_tr518.sh start # both units
|
||||
# ./blanton_tr518.sh start -u 0 # unit 0 only
|
||||
# ./blanton_tr518.sh start -u 1 # unit 1 only
|
||||
# ./blanton_tr518.sh stop [-u 0|1]
|
||||
# ./blanton_tr518.sh help
|
||||
#
|
||||
# Usage (sourced, like the other blanton_*.sh tools):
|
||||
# source blanton_tr518.sh
|
||||
# blanton_tr518 start -u 0
|
||||
#
|
||||
# Options:
|
||||
# -u|--unit <0|1|all|0,1> bcmcmd unit(s). Default: $TR_UNITS ("0 1")
|
||||
# -w|--wait <sec> start: settle wait after tr 518 (default $TR_SETTLE_SEC)
|
||||
# --no-wait start: skip the settle wait entirely
|
||||
# -d|--debug print every bcmcmd and its output
|
||||
# -n|--dry-run print commands only, do not touch the DUT
|
||||
# -h|--help help
|
||||
#
|
||||
# Environment overrides:
|
||||
# BCMCMD_CMD=bcmcmd TR_UNITS="0 1" TR_SETTLE_SEC=120 TR_UNIT_GAP_SEC=1
|
||||
# TR_TEST_ARGS="..." TR_LB_PORTS=cd TR_RESTORE_LEARN=0 TR_RESTORE_TESTMODE=0
|
||||
# DEBUG_MODE=1
|
||||
# =============================================================================
|
||||
|
||||
# === Config ==================================================================
|
||||
BCMCMD_CMD="${BCMCMD_CMD:-bcmcmd}"
|
||||
TR_UNITS="${TR_UNITS:-0 1}" # one DUT = two switch boards (0 and 1)
|
||||
|
||||
# Settle wait after tr 518 is issued. The point is NOT the test itself -- it is
|
||||
# to stop someone reading power while traffic is still ramping and reporting a
|
||||
# number that is neither idle nor loaded. Lower it only if you know the rails
|
||||
# have already settled.
|
||||
TR_SETTLE_SEC="${TR_SETTLE_SEC:-120}"
|
||||
|
||||
# Gap between unit 0 and unit 1 (each unit is set up as a complete block, the
|
||||
# way TR518.txt does it -- the cd ports are in MAC loopback, so a unit does not
|
||||
# depend on the other one being ready).
|
||||
TR_UNIT_GAP_SEC="${TR_UNIT_GAP_SEC:-1}"
|
||||
|
||||
# Ports put into MAC loopback. 'cd' = the cd port group, per TR518.txt.
|
||||
TR_LB_PORTS="${TR_LB_PORTS:-cd}"
|
||||
|
||||
# The tr 518 argument string, verbatim from tools/TR518.txt. One editable line
|
||||
# so it can be pasted straight from / into a manual bcmcmd.
|
||||
# Printed by the BCM shell only after tr 518 has accepted its arguments and
|
||||
# started. Used as the success marker, because bcmcmd's own exit status is not
|
||||
# trustworthy for a command that runs longer than its response poll.
|
||||
TR_TEST_OK_PAT="${TR_TEST_OK_PAT:-TR 518 TEST PARAMETERS}"
|
||||
|
||||
TR_TEST_ARGS="${TR_TEST_ARGS:-Scenario=6 Profile=2 Count=260 PktSize=324 PortList=1-259,270-565 rm=ext CheckLinkTime=20 CheckDataTime=200 testphase=1}"
|
||||
|
||||
# TR518.txt stops with 'port cd lb=none' and nothing else, so that is the
|
||||
# default here too. But note what start changed and stop does NOT put back:
|
||||
# l2 learn off -> the unit keeps learning disabled
|
||||
# test mode nr=yes -> the unit stays in test mode
|
||||
# Both persist until something else changes them or the box reboots. Set these
|
||||
# to 1 if you want stop to be a true inverse; they are off by default because
|
||||
# they are not in the bench-verified list.
|
||||
TR_RESTORE_LEARN="${TR_RESTORE_LEARN:-0}"
|
||||
TR_RESTORE_TESTMODE="${TR_RESTORE_TESTMODE:-0}"
|
||||
|
||||
DEBUG_MODE=${DEBUG_MODE:-0}
|
||||
TR_DRY_RUN=${TR_DRY_RUN:-0}
|
||||
TR_NO_WAIT=${TR_NO_WAIT:-0}
|
||||
|
||||
# === Logging =================================================================
|
||||
_tr_info() { echo -e "[\033[34mINFO\033[0m] $*"; }
|
||||
_tr_ok() { echo -e "[\033[32m OK \033[0m] $*"; }
|
||||
_tr_warn() { echo -e "[\033[33mWARN\033[0m] $*" >&2; }
|
||||
_tr_err() { echo -e "[\033[31mERR \033[0m] $*" >&2; }
|
||||
_tr_dbg() { [ "$DEBUG_MODE" = "1" ] && echo -e "\033[90m[DEBG] $*\033[0m" >&2; return 0; }
|
||||
|
||||
# === bcmcmd wrapper ==========================================================
|
||||
# stdin is closed for the same reason as in blanton_traffic_linespeed.sh:
|
||||
# bcmcmd otherwise inherits the caller's stdin and eats whatever a surrounding
|
||||
# loop was reading.
|
||||
#
|
||||
# bcmcmd exits 0 even when the BCM shell refused the command, so the output is
|
||||
# pattern-matched as well (the V0.3.1 lesson from blanton_traffic_linespeed.sh).
|
||||
TR_ERR_PAT="${TR_ERR_PAT:-ERROR|Failed to execute|Invalid|Syntax error|Unavailable|Unknown command}"
|
||||
|
||||
# ...and the reverse also happens: bcmcmd exits NON-zero on a command that was
|
||||
# accepted and is running. 'tr 518' outlives bcmcmd's response poll, so bcmcmd
|
||||
# gives up with "polling socket timeout: Success" and a non-zero status while
|
||||
# the test carries on inside the BCM shell. Treating that as a failure is what
|
||||
# made V1.0.0 report ERR on a run that was actually fine.
|
||||
TR_BENIGN_PAT="${TR_BENIGN_PAT:-polling socket timeout}"
|
||||
|
||||
# _tr_bcm <unit> <cmd> -> 0 ok, 1 failed
|
||||
# _tr_bcm_ok <unit> <ok_marker> <cmd> -> as above, but if the output contains
|
||||
# <ok_marker> the command is a success
|
||||
# regardless of exit status.
|
||||
#
|
||||
# The marker is a POSITIVE proof of success ("the shell printed the thing it
|
||||
# only prints when it accepted this command"), which is far more reliable than
|
||||
# trying to enumerate every way bcmcmd can look unhappy.
|
||||
_tr_bcm() { _tr_bcm_ok "$1" "" "${@:2}"; }
|
||||
|
||||
_tr_bcm_ok() {
|
||||
local unit="$1" okpat="$2"; shift 2
|
||||
local cmd="$*" out rc why=""
|
||||
_tr_dbg "$BCMCMD_CMD -n $unit -c '$cmd'"
|
||||
if [ "$TR_DRY_RUN" = "1" ]; then
|
||||
echo "[DRY ] $BCMCMD_CMD -n $unit -c '$cmd'"
|
||||
return 0
|
||||
fi
|
||||
out=$("$BCMCMD_CMD" -n "$unit" -c "$cmd" </dev/null 2>&1); rc=$?
|
||||
[ "$DEBUG_MODE" = "1" ] && [ -n "$out" ] && echo "$out"
|
||||
|
||||
# 1. positive proof wins over everything else
|
||||
if [ -n "$okpat" ] && echo "$out" | grep -qF "$okpat"; then
|
||||
[ "$rc" -ne 0 ] && _tr_dbg "unit $unit: bcmcmd rc=$rc but '$okpat' seen -> accepted"
|
||||
return 0
|
||||
fi
|
||||
# 2. the BCM shell said no
|
||||
if echo "$out" | grep -qiE "$TR_ERR_PAT"; then
|
||||
why="the BCM shell rejected it"
|
||||
# 3. bcmcmd itself was unhappy -- unless it is the known transport artifact
|
||||
elif [ "$rc" -ne 0 ]; then
|
||||
if echo "$out" | grep -qiE "$TR_BENIGN_PAT"; then
|
||||
_tr_dbg "unit $unit: bcmcmd rc=$rc (${TR_BENIGN_PAT}) -> tolerated"
|
||||
return 0
|
||||
fi
|
||||
why="bcmcmd exited $rc"
|
||||
else
|
||||
return 0
|
||||
fi
|
||||
|
||||
_tr_err "unit $unit: $why -- '$cmd'"
|
||||
[ "$DEBUG_MODE" = "1" ] || { [ -n "$out" ] && echo "$out" >&2; }
|
||||
return 1
|
||||
}
|
||||
|
||||
_tr_units_check() {
|
||||
local u ok=""
|
||||
for u in $TR_UNITS; do
|
||||
case "$u" in
|
||||
0|1) ok="$ok $u" ;;
|
||||
*) _tr_err "invalid unit '$u' (use 0, 1 or all)"; return 1 ;;
|
||||
esac
|
||||
done
|
||||
[ -n "$ok" ] || { _tr_err "no unit selected"; return 1; }
|
||||
TR_UNITS="${ok# }"
|
||||
return 0
|
||||
}
|
||||
|
||||
_tr_is_uint() { case "$1" in ''|*[!0-9]*) return 1 ;; *) return 0 ;; esac; }
|
||||
|
||||
_tr_gap() {
|
||||
[ "$TR_DRY_RUN" = "1" ] && return 0
|
||||
[ "$TR_UNIT_GAP_SEC" = "0" ] && return 0
|
||||
sleep "$TR_UNIT_GAP_SEC"
|
||||
}
|
||||
|
||||
# === start ===================================================================
|
||||
# One complete block per unit, exactly the order in tools/TR518.txt.
|
||||
blanton_tr518_start() {
|
||||
_tr_units_check || return 1
|
||||
_tr_is_uint "$TR_SETTLE_SEC" || { _tr_err "settle wait '$TR_SETTLE_SEC' is not an integer (-w <sec>)"; return 1; }
|
||||
|
||||
local unit fail=0 first=1
|
||||
_tr_info "TR518 start on unit(s): $TR_UNITS"
|
||||
for unit in $TR_UNITS; do
|
||||
[ "$first" = "0" ] && _tr_gap
|
||||
first=0
|
||||
_tr_info "unit $unit: port $TR_LB_PORTS lb=mac -> l2 learn off -> test mode nr=yes -> tr 518"
|
||||
_tr_bcm "$unit" "port $TR_LB_PORTS lb=mac" || fail=$((fail+1))
|
||||
_tr_bcm "$unit" "l2 learn off" || fail=$((fail+1))
|
||||
_tr_bcm "$unit" 'dsh -c "test mode nr=yes"' || fail=$((fail+1))
|
||||
# "TR 518 TEST PARAMETERS" is printed only once the shell has parsed the
|
||||
# arguments and started the test -- that is the proof we check for.
|
||||
_tr_bcm_ok "$unit" "$TR_TEST_OK_PAT" "dsh -c \"tr 518 $TR_TEST_ARGS\"" || fail=$((fail+1))
|
||||
done
|
||||
|
||||
if [ "$fail" -ne 0 ]; then
|
||||
_tr_err "$fail command(s) failed -- traffic may not be running, not waiting"
|
||||
_tr_warn "the unit(s) may still be in loopback: blanton_tr518.sh stop"
|
||||
return 1
|
||||
fi
|
||||
|
||||
if [ "$TR_NO_WAIT" = "1" ] || [ "$TR_SETTLE_SEC" = "0" ]; then
|
||||
_tr_ok "TR518 running on unit(s): $TR_UNITS (settle wait skipped)"
|
||||
_tr_warn "rails may still be ramping -- a power reading taken now is not a settled one"
|
||||
return 0
|
||||
fi
|
||||
|
||||
_tr_info "settling ${TR_SETTLE_SEC}s before the rails are worth reading ..."
|
||||
[ "$TR_DRY_RUN" = "1" ] || sleep "$TR_SETTLE_SEC"
|
||||
_tr_ok "TR518 running and settled on unit(s): $TR_UNITS"
|
||||
_tr_info "read power now: TH6_SWB0_power_readback.sh / TH6_SWB1_power_readback.sh"
|
||||
_tr_info "when finished: blanton_tr518.sh stop"
|
||||
return 0
|
||||
}
|
||||
|
||||
# === stop ====================================================================
|
||||
# TR518.txt stops with 'port cd lb=none' only. l2 learning and test mode are
|
||||
# left as start set them unless TR_RESTORE_* is turned on.
|
||||
blanton_tr518_stop() {
|
||||
_tr_units_check || return 1
|
||||
local unit fail=0 first=1
|
||||
_tr_info "TR518 stop on unit(s): $TR_UNITS"
|
||||
for unit in $TR_UNITS; do
|
||||
[ "$first" = "0" ] && _tr_gap
|
||||
first=0
|
||||
_tr_bcm "$unit" "port $TR_LB_PORTS lb=none" || fail=$((fail+1))
|
||||
[ "$TR_RESTORE_LEARN" = "1" ] && { _tr_bcm "$unit" "l2 learn on" || fail=$((fail+1)); }
|
||||
[ "$TR_RESTORE_TESTMODE" = "1" ] && { _tr_bcm "$unit" 'dsh -c "test mode nr=no"' || fail=$((fail+1)); }
|
||||
done
|
||||
|
||||
if [ "$fail" -eq 0 ]; then
|
||||
_tr_ok "unit(s) $TR_UNITS: port $TR_LB_PORTS lb=none"
|
||||
[ "$TR_RESTORE_LEARN" = "1" ] || \
|
||||
_tr_info "l2 learning is still off (TR_RESTORE_LEARN=1 to put it back)"
|
||||
[ "$TR_RESTORE_TESTMODE" = "1" ] || \
|
||||
_tr_info "test mode is still nr=yes (TR_RESTORE_TESTMODE=1 to put it back)"
|
||||
else
|
||||
_tr_warn "$fail command(s) failed -- check the unit is not still in loopback:"
|
||||
_tr_warn " bcmcmd -n <u> -c 'port $TR_LB_PORTS' | head"
|
||||
return 1
|
||||
fi
|
||||
return 0
|
||||
}
|
||||
|
||||
# === Help ====================================================================
|
||||
blanton_tr518_help() {
|
||||
echo -e "\033[1mblanton_tr518.sh - TH6 built-in packet test (tr 518) for power loading\033[0m"
|
||||
echo ""
|
||||
echo -e " Units : \033[36m$TR_UNITS\033[0m"
|
||||
echo -e " Settle wait : \033[36m${TR_SETTLE_SEC}s\033[0m after tr 518 (so power is read loaded, not ramping)"
|
||||
echo -e " Loopback : \033[36mport $TR_LB_PORTS lb=mac\033[0m"
|
||||
echo -e " tr 518 args : \033[36m$TR_TEST_ARGS\033[0m"
|
||||
echo ""
|
||||
echo -e "\033[1mSubcommands\033[0m"
|
||||
echo -e " \033[33mstart\033[0m per unit: port $TR_LB_PORTS lb=mac -> l2 learn off -> test mode nr=yes -> tr 518 -> wait"
|
||||
echo -e " \033[33mstop\033[0m per unit: port $TR_LB_PORTS lb=none"
|
||||
echo -e " \033[33mhelp\033[0m"
|
||||
echo ""
|
||||
echo -e "\033[1mOptions\033[0m"
|
||||
echo -e " \033[33m-u|--unit\033[0m <0|1|all> bcmcmd unit(s); 'all' = 0 1 (default: $TR_UNITS)"
|
||||
echo -e " \033[33m-w|--wait\033[0m <sec> start: settle wait (default $TR_SETTLE_SEC)"
|
||||
echo -e " \033[33m--no-wait\033[0m start: skip the settle wait"
|
||||
echo -e " \033[33m-d|--debug\033[0m print every bcmcmd and its output"
|
||||
echo -e " \033[33m-n|--dry-run\033[0m print commands only, do not touch the DUT"
|
||||
echo ""
|
||||
echo -e "\033[1mExamples\033[0m"
|
||||
echo -e " ./blanton_tr518.sh start # both units, then wait ${TR_SETTLE_SEC}s"
|
||||
echo -e " ./blanton_tr518.sh start -u 0 # unit 0 only"
|
||||
echo -e " ./blanton_tr518.sh stop -u 1 # release unit 1"
|
||||
echo -e " ./blanton_tr518.sh start -n # show the bcmcmds, touch nothing"
|
||||
echo ""
|
||||
echo -e "\033[33m stop only sends 'port $TR_LB_PORTS lb=none'. l2 learning stays off and test mode\033[0m"
|
||||
echo -e "\033[33m stays nr=yes -- TR_RESTORE_LEARN=1 / TR_RESTORE_TESTMODE=1 to put them back.\033[0m"
|
||||
echo -e "\033[33m tr 518 and blanton_traffic_linespeed cannot run together.\033[0m"
|
||||
}
|
||||
|
||||
# === Argument parsing ========================================================
|
||||
blanton_tr518() {
|
||||
local sub="${1:-help}"; shift 2>/dev/null
|
||||
while [ $# -gt 0 ]; do
|
||||
case "$1" in
|
||||
-u|--unit)
|
||||
case "$2" in
|
||||
all|ALL) TR_UNITS="0 1" ;;
|
||||
*) TR_UNITS="$(echo "$2" | tr ',' ' ')" ;;
|
||||
esac
|
||||
shift 2 ;;
|
||||
-w|--wait) TR_SETTLE_SEC="$2"; shift 2 ;;
|
||||
--no-wait) TR_NO_WAIT=1; shift ;;
|
||||
-d|--debug) DEBUG_MODE=1; shift ;;
|
||||
-n|--dry-run) TR_DRY_RUN=1; shift ;;
|
||||
-h|--help) blanton_tr518_help; return 0 ;;
|
||||
*) _tr_err "unknown option '$1'"; return 1 ;;
|
||||
esac
|
||||
done
|
||||
|
||||
case "$sub" in
|
||||
start) blanton_tr518_start ;;
|
||||
stop) blanton_tr518_stop ;;
|
||||
help|-h|--help) blanton_tr518_help ;;
|
||||
*) _tr_err "unknown subcommand '$sub'"; blanton_tr518_help; return 1 ;;
|
||||
esac
|
||||
}
|
||||
|
||||
# Run when executed, define-only when sourced (same as the other blanton_*.sh).
|
||||
if [ "${BASH_SOURCE[0]}" = "$0" ]; then
|
||||
blanton_tr518 "$@"
|
||||
fi
|
||||
@@ -6,7 +6,7 @@
|
||||
# V0.1.0 2026-08-17 First version. Bash port of the three Tera Term macros
|
||||
# utils/traffic_loopback_vlan_setting.ttl (VLAN 30..137,
|
||||
# port pair cdN <-> cdN+32), utils/traffic_loopback_start.ttl
|
||||
# (tx 100 length=512 VLantag=<vid>) and
|
||||
# (tx <count> length=<len> VLantag=<vid>) and
|
||||
# utils/traffic_loopback_vlan_remove.ttl.
|
||||
# One DUT = two switch boards -> bcmcmd unit 0 and 1
|
||||
# (bcmcmd -n <unit>), default both.
|
||||
@@ -74,6 +74,54 @@
|
||||
# Same fix applied to the "# FAIL ..." delta line (%+d ->
|
||||
# %+.0f), which would otherwise saturate when a dead port
|
||||
# makes the delta the size of the whole counter.
|
||||
# V0.5.0 2026-08-28 Add: the 100G uplink (ce0, VLAN 138) joins init / start /
|
||||
# stop / report, from tools/100G_Traffic.txt.
|
||||
# ce0 is NOT a loopback pair: there is one per unit and the
|
||||
# two are cabled to each other, so its verdict is a
|
||||
# CROSS-UNIT check and cannot be decided from one unit's
|
||||
# counters. It therefore appears as the LAST row of each
|
||||
# unit table with the verdict DEFER, and is judged in a new
|
||||
# summary printed once at the very bottom, after every
|
||||
# unit -- which also carries the per-unit PASS/FAIL/NA
|
||||
# totals ("all Results" in one place).
|
||||
# TL_CE_MODE=cross (default) | self picks the topology;
|
||||
# it is a plain editable flag, NOT auto-detected, because
|
||||
# a non-zero RX cannot tell the two cablings apart.
|
||||
# With only one unit selected the summary reports
|
||||
# UNDECIDED (exit 3) instead of guessing.
|
||||
# TL_CE_ENABLE=0 restores the old cd-pairs-only behaviour.
|
||||
# V0.7.0 2026-09-01 Change: tx bursts carry PatternRandom=yes and the defaults
|
||||
# become tx 200 length=324 (were 100 / 512).
|
||||
# Random payload keeps the bit pattern changing instead of
|
||||
# repeating, which is what makes a marginal lane show up;
|
||||
# a fixed pattern can sit on a benign sequence all run.
|
||||
# TL_TX_RANDOM=no forces the fixed pattern, "" leaves the
|
||||
# argument off entirely (pre-V0.7.0 wire format).
|
||||
# NOTE: counters scale with count x length, so totals from
|
||||
# before this build are not comparable - 200x324 moves
|
||||
# about 27% more bytes per burst than 100x512.
|
||||
# V0.6.0 2026-08-28 Add: ce0 traffic is now SUSTAINED, not a single burst.
|
||||
# A cd pair keeps its packets circulating because they
|
||||
# flood to the partner port; ce0 has no partner and a
|
||||
# switch will not send a frame back out its ingress port,
|
||||
# so 'tx 100' was exactly one round trip (TX 100/RX 100)
|
||||
# and then silence. init now sets an INGRESS MIRROR of ce0
|
||||
# back to ce0 -- the mirrored copy is not egress-filtered,
|
||||
# so each packet keeps lapping until stop turns it off.
|
||||
# init : mirror init; mirror port ce0 Mode=Ingress
|
||||
# DestPort=ce0; vlan create/add
|
||||
# stop : mirror port ce0 Mode=Off (FIRST -- this is what
|
||||
# breaks the loop), then vlan remove
|
||||
# Bench-verified command set. TL_CE_MIRROR=0 goes back to
|
||||
# the one-shot burst.
|
||||
# Change: TL_CE_MODE now defaults to 'self'. 'ps ce' shows
|
||||
# one ce port per unit and a unit-0-only burst returned on
|
||||
# unit 0, so the cross-unit reading was wrong.
|
||||
# V0.5.1 2026-08-28 Add: TL_CE_COUNTER selects which counter judges the ce
|
||||
# port -- packets (MIB_TPOK/MIB_RPOK, default, same as the
|
||||
# cd rows) or bytes (MIB_TBYT/MIB_RBYT). The report prints
|
||||
# which one it used under the table, so a byte figure is
|
||||
# never mistaken for a packet count next to the cd rows.
|
||||
# =============================================================================
|
||||
#
|
||||
# The VLAN/port table below is copied verbatim from
|
||||
@@ -104,6 +152,8 @@
|
||||
# aliases: -tx | --tx
|
||||
# -l|--length <n> tx packet length (default $TL_TX_LENGTH)
|
||||
# aliases: -length | --len
|
||||
# -r|--random <yes|no> tx PatternRandom (default $TL_TX_RANDOM;
|
||||
# empty string omits the argument)
|
||||
# -p|--ports <list|all> ps: port list ('all' = plain 'ps', every port)
|
||||
# -T|--tolerance <n> report: allowed |delta| in packets (default 0;
|
||||
# -T 1 absorbs the normal snapshot skew)
|
||||
@@ -123,7 +173,8 @@
|
||||
# -h|--help help
|
||||
#
|
||||
# Environment overrides:
|
||||
# BCMCMD_CMD=bcmcmd TL_UNITS="0 1" TL_TX_COUNT=100 TL_TX_LENGTH=512
|
||||
# BCMCMD_CMD=bcmcmd TL_UNITS="0 1" TL_TX_COUNT=200 TL_TX_LENGTH=324
|
||||
# TL_TX_RANDOM=yes
|
||||
# TL_PS_PORTS="1-24,40-96,..." TL_TOLERANCE=0 TL_LOG_DIR=/tmp
|
||||
# DEBUG_MODE=1
|
||||
#
|
||||
@@ -135,8 +186,14 @@
|
||||
# === Config ==================================================================
|
||||
BCMCMD_CMD="${BCMCMD_CMD:-bcmcmd}"
|
||||
TL_UNITS="${TL_UNITS:-0 1}" # one DUT = two switch boards (0 and 1)
|
||||
TL_TX_COUNT="${TL_TX_COUNT:-100}"
|
||||
TL_TX_LENGTH="${TL_TX_LENGTH:-512}"
|
||||
TL_TX_COUNT="${TL_TX_COUNT:-200}"
|
||||
TL_TX_LENGTH="${TL_TX_LENGTH:-324}"
|
||||
|
||||
# PatternRandom=yes|no is appended to every tx burst. Random payload exercises
|
||||
# the SerDes with changing bit patterns instead of the repeating one a fixed
|
||||
# pattern produces, which is what makes a marginal lane show up.
|
||||
# Set to "" to leave the argument off entirely (pre-V0.7.0 behaviour).
|
||||
TL_TX_RANDOM="${TL_TX_RANDOM:-yes}"
|
||||
TL_DEFAULT_VLAN="${TL_DEFAULT_VLAN:-1}"
|
||||
TL_DEFAULT_VLAN_PBM="${TL_DEFAULT_VLAN_PBM:-cd}"
|
||||
|
||||
@@ -145,6 +202,56 @@ TL_DEFAULT_VLAN_PBM="${TL_DEFAULT_VLAN_PBM:-cd}"
|
||||
# pasted straight from/into a manual "bcmcmd -n 0 -c 'ps <list>'".
|
||||
TL_PS_PORTS="${TL_PS_PORTS:-1-24,40-96,112-168,184-240,256-259,270-308,310-327,342-380,382-399,414-452,454-471,486-524,526-543,558-565}"
|
||||
|
||||
# --- 100G uplink (ce0) ------------------------------------------------------
|
||||
# The cd pairs above are loopback pairs WITHIN one switch unit (cdN <-> cdN+32).
|
||||
# ce0 is not a pair: 'ps ce' shows exactly one ce port per unit, and it is looped
|
||||
# back on itself. Bench-confirmed 2026-08-28 -- a tx burst on unit 0 alone came
|
||||
# back on unit 0 (TPOK +100 AND RPOK +100), which only happens on a self loop.
|
||||
#
|
||||
# TL_CE_MODE=self ce0 loops back on itself (default, matches bench)
|
||||
# verdict: TX == RX within the unit, decided in its own table
|
||||
# TL_CE_MODE=cross unit0.ce0 <-> unit1.ce0 cabled together
|
||||
# verdict: unit0.TX == unit1.RX and unit0.RX == unit1.TX,
|
||||
# decided in the summary; needs BOTH units
|
||||
#
|
||||
# If the bench cabling changes, edit TL_CE_MODE -- it is not auto-detected,
|
||||
# because "RX happens to be non-zero" cannot tell the two topologies apart.
|
||||
# Note the two modes agree whenever both units send the same amount, so a wrong
|
||||
# setting looks fine until something actually breaks: with a self loop read as
|
||||
# cross, BOTH links dying still leaves unit0.TX == unit1.RX (0 == 0) -> PASS.
|
||||
TL_CE_ENABLE=${TL_CE_ENABLE:-1} # 0 = skip ce0 entirely (cd pairs only)
|
||||
TL_CE_VLAN="${TL_CE_VLAN:-138}" # one past the cd range (30..137)
|
||||
TL_CE_PORT="${TL_CE_PORT:-ce0}" # bcm port name, same on both units
|
||||
TL_CE_MODE="${TL_CE_MODE:-self}" # cross | self -- see above
|
||||
|
||||
# --- Why ce0 needs an ingress mirror -----------------------------------------
|
||||
# A cd pair sustains itself: the packet floods to the OTHER member, goes out the
|
||||
# cable, comes back on the partner, floods to the other member again -- forever.
|
||||
# ce0 has no partner. A switch never forwards a frame back out the port it
|
||||
# arrived on (source-port knockout), so with ce0 as the only VLAN member the
|
||||
# returning packet is dropped and one 'tx' burst is exactly one round trip:
|
||||
# TX 100, RX 100, done. That measures the link, it does not load it.
|
||||
#
|
||||
# An INGRESS MIRROR of ce0 back to ce0 is the way round it: the mirrored copy is
|
||||
# not subject to the egress filter, so it does leave the port it came in on.
|
||||
# Each circulating packet makes exactly one copy per lap -- 1:1, not amplifying,
|
||||
# so the load is set by how many packets 'start' injects, and it runs until
|
||||
# 'stop' turns the mirror off.
|
||||
#
|
||||
# ⚠️ The loop does NOT stop on its own. Unlike the cd pairs, removing the VLAN
|
||||
# membership is not enough -- 'stop' must set Mode=Off, or the port keeps
|
||||
# running flat out with nothing in 'show interfaces status' to hint at it.
|
||||
# ⚠️ 'mirror init' resets the mirror module. Anything else using mirroring on
|
||||
# this box (ERSPAN, monitoring) is cleared. Set TL_CE_MIRROR=0 to skip it.
|
||||
TL_CE_MIRROR=${TL_CE_MIRROR:-1} # 0 = no mirror (one-shot burst, as before)
|
||||
|
||||
# Which counter the ce port is judged on. Packets by default, the same counter
|
||||
# as the cd pairs, so every row of the table is in the same unit.
|
||||
# packets -> MIB_TPOK / MIB_RPOK (default, same as the cd rows)
|
||||
# bytes -> MIB_TBYT / MIB_RBYT
|
||||
# Either way the report prints which one it used under the table.
|
||||
TL_CE_COUNTER="${TL_CE_COUNTER:-packets}"
|
||||
|
||||
# --- report (pair cross-check) defaults -------------------------------------
|
||||
TL_TOLERANCE="${TL_TOLERANCE:-0}" # allowed |delta| in packets before FAIL
|
||||
TL_LOG_DIR="${TL_LOG_DIR:-/tmp}" # where the raw 'show c' capture is kept
|
||||
@@ -378,6 +485,21 @@ traffic_linespeed_init() {
|
||||
_tl_bcm_q "$unit" "vlan add $vid pbm=$pa,$pb" || fail=$((fail+1))
|
||||
n=$((n+1))
|
||||
done 3<<< "$TL_PAIRS"
|
||||
# 100G uplink: one port, its own VLAN, added last so it is easy to skip.
|
||||
# The mirror goes up BEFORE the VLAN so the loop is armed the moment the
|
||||
# first packet is injected.
|
||||
if [ "$TL_CE_ENABLE" = "1" ]; then
|
||||
if [ "$TL_CE_MIRROR" = "1" ]; then
|
||||
_tl_bcm_q "$unit" "mirror init" || fail=$((fail+1))
|
||||
_tl_bcm_q "$unit" "mirror port $TL_CE_PORT Mode=Ingress DestPort=$TL_CE_PORT" \
|
||||
|| fail=$((fail+1))
|
||||
fi
|
||||
_tl_bcm_run "$unit" "$TL_BENIGN_CREATE" "vlan create $TL_CE_VLAN"; rc=$?
|
||||
[ "$rc" = "1" ] && fail=$((fail+1))
|
||||
[ "$rc" = "2" ] && exist=$((exist+1))
|
||||
_tl_bcm_q "$unit" "vlan add $TL_CE_VLAN pbm=$TL_CE_PORT" || fail=$((fail+1))
|
||||
n=$((n+1))
|
||||
fi
|
||||
if [ "$fail" -eq 0 ]; then
|
||||
_tl_ok "unit $unit: $n VLANs configured$([ "$exist" -gt 0 ] && echo " ($exist already existed)"), port pairs added"
|
||||
else
|
||||
@@ -412,17 +534,29 @@ traffic_linespeed_start() {
|
||||
_tl_units_check || return 1
|
||||
_tl_is_uint "$TL_TX_COUNT" || { _tl_err "tx count '$TL_TX_COUNT' is not a positive integer (-tx|-c <n>)"; return 1; }
|
||||
_tl_is_uint "$TL_TX_LENGTH" || { _tl_err "tx length '$TL_TX_LENGTH' is not a positive integer (-length|-l <n>)"; return 1; }
|
||||
local rnd=""
|
||||
case "$TL_TX_RANDOM" in
|
||||
yes|no) rnd=" PatternRandom=$TL_TX_RANDOM" ;;
|
||||
"") rnd="" ;;
|
||||
*) _tl_err "PatternRandom '$TL_TX_RANDOM' must be yes, no or empty (-r|--random)"; return 1 ;;
|
||||
esac
|
||||
local unit vid pa pb n fail
|
||||
for unit in $TL_UNITS; do
|
||||
n=0; fail=0
|
||||
_tl_info "unit $unit: tx $TL_TX_COUNT length=$TL_TX_LENGTH per VLAN 30..137"
|
||||
_tl_info "unit $unit: tx $TL_TX_COUNT length=$TL_TX_LENGTH${rnd} per VLAN 30..137"
|
||||
while read -r vid pa pb <&3; do
|
||||
[ -z "$vid" ] && continue
|
||||
_tl_bcm_q "$unit" "tx $TL_TX_COUNT length=$TL_TX_LENGTH VLantag=$vid" || fail=$((fail+1))
|
||||
_tl_bcm_q "$unit" "tx $TL_TX_COUNT length=$TL_TX_LENGTH VLantag=$vid${rnd}" || fail=$((fail+1))
|
||||
n=$((n+1))
|
||||
done 3<<< "$TL_PAIRS"
|
||||
if [ "$TL_CE_ENABLE" = "1" ]; then
|
||||
_tl_bcm_q "$unit" "tx $TL_TX_COUNT length=$TL_TX_LENGTH VLantag=$TL_CE_VLAN${rnd}" || fail=$((fail+1))
|
||||
n=$((n+1))
|
||||
fi
|
||||
if [ "$fail" -eq 0 ]; then
|
||||
_tl_ok "unit $unit: $n bursts sent ($((n * TL_TX_COUNT)) packets, ${TL_TX_LENGTH}B each)"
|
||||
[ "$TL_CE_ENABLE" = "1" ] && [ "$TL_CE_MIRROR" = "1" ] && \
|
||||
_tl_info "unit $unit: ${TL_CE_PORT} is now circulating and will keep running until 'stop'"
|
||||
else
|
||||
_tl_warn "unit $unit: $n bursts attempted, $fail failed"
|
||||
fi
|
||||
@@ -446,6 +580,25 @@ traffic_linespeed_stop() {
|
||||
fi
|
||||
n=$((n+1))
|
||||
done 3<<< "$TL_PAIRS"
|
||||
if [ "$TL_CE_ENABLE" = "1" ]; then
|
||||
# Mirror OFF first: that is what actually breaks the loop. Removing
|
||||
# the VLAN membership does not -- the mirrored copy never consulted
|
||||
# the VLAN in the first place.
|
||||
if [ "$TL_CE_MIRROR" = "1" ]; then
|
||||
_tl_bcm_q "$unit" "mirror port $TL_CE_PORT Mode=Off" || {
|
||||
fail=$((fail+1))
|
||||
_tl_err "unit $unit: ${TL_CE_PORT} mirror still ON -- the loop is STILL RUNNING"
|
||||
_tl_err " stop it by hand: ${BCMCMD_CMD} -n $unit -c 'mirror port $TL_CE_PORT Mode=Off'"
|
||||
}
|
||||
fi
|
||||
_tl_bcm_run "$unit" "$TL_BENIGN_REMOVE" "vlan remove $TL_CE_VLAN pbm=$TL_CE_PORT"
|
||||
[ "$?" = "1" ] && fail=$((fail+1))
|
||||
if [ "$TL_DESTROY" = "1" ]; then
|
||||
_tl_bcm_run "$unit" "$TL_BENIGN_REMOVE" "vlan destroy $TL_CE_VLAN"
|
||||
[ "$?" = "1" ] && fail=$((fail+1))
|
||||
fi
|
||||
n=$((n+1))
|
||||
fi
|
||||
if [ "$fail" -eq 0 ]; then
|
||||
_tl_ok "unit $unit: $n VLANs cleaned$([ "$TL_DESTROY" = "1" ] && echo " and destroyed")"
|
||||
else
|
||||
@@ -480,8 +633,11 @@ traffic_linespeed_ps() {
|
||||
# (a cd port absent from 'show c' means the counter is zero or the
|
||||
# console scrolled -- cross-check with 'ps' before blaming the port).
|
||||
# _tl_pair_report <logfile> -> 0 all PASS, 2 any FAIL/NA, 1 parse error
|
||||
# _tl_pair_report <logfile> [side_file]
|
||||
# side_file (optional) receives machine-readable lines for the cross-unit
|
||||
# summary: SUM <npass> <nfail> <nna> CE <tx> <rx> (CE omitted if absent)
|
||||
_tl_pair_report() {
|
||||
local log="$1" color=0
|
||||
local log="$1" side="${2:-/dev/null}" color=0
|
||||
# PASS green / FAIL red / NA yellow. auto = only when stdout is a terminal,
|
||||
# so redirecting to a file or piping into grep/diff stays plain text.
|
||||
case "$TL_COLOR" in
|
||||
@@ -497,7 +653,11 @@ _tl_pair_report() {
|
||||
-v WITHPORT="$TL_REPORT_WITHPORT" \
|
||||
-v QUIET="$TL_REPORT_QUIET" \
|
||||
-v TSV="$TL_REPORT_TSV" \
|
||||
-v COLOR="$color" '
|
||||
-v COLOR="$color" \
|
||||
-v CEPORT="$([ "$TL_CE_ENABLE" = "1" ] && echo "$TL_CE_PORT")" \
|
||||
-v CEMODE="$TL_CE_MODE" \
|
||||
-v CECOUNTER="$TL_CE_COUNTER" \
|
||||
-v SIDE="$side" '
|
||||
function grp(v, s,out,l,i) {
|
||||
s = sprintf("%.0f", v)
|
||||
if (!GROUPED) return s
|
||||
@@ -513,8 +673,9 @@ _tl_pair_report() {
|
||||
# colour the verdict token: PASS green, FAIL red, NA yellow
|
||||
function vc(v) {
|
||||
if (!COLOR) return v
|
||||
if (v == "PASS") return "\033[32m" v "\033[0m"
|
||||
if (v == "FAIL") return "\033[31m" v "\033[0m"
|
||||
if (v == "PASS") return "\033[32m" v "\033[0m"
|
||||
if (v == "FAIL") return "\033[31m" v "\033[0m"
|
||||
if (v == "DEFER") return "\033[36m" v "\033[0m" # cyan: judged in the summary
|
||||
return "\033[33m" v "\033[0m"
|
||||
}
|
||||
function redl(s) { return COLOR ? "\033[31m" s "\033[0m" : s }
|
||||
@@ -535,11 +696,12 @@ _tl_pair_report() {
|
||||
if (idx == 0) next
|
||||
s = substr($0, idx)
|
||||
kind = substr(s, 5, 4)
|
||||
if (kind != "TPOK" && kind != "RPOK") next
|
||||
# POK = packets (the cd pairs), BYT = bytes (used for the ce port)
|
||||
if (kind != "TPOK" && kind != "RPOK" && kind != "TBYT" && kind != "RBYT") next
|
||||
p1 = index(s, "."); p2 = index(s, "("); p3 = index(s, ")"); p4 = index(s, ":")
|
||||
if (p1 == 0 || p2 == 0 || p3 == 0 || p4 == 0 || p2 < p1 || p4 < p3) next
|
||||
cd = substr(s, p1 + 1, p2 - p1 - 1)
|
||||
if (cd !~ /^cd[0-9]+$/) next
|
||||
if (cd !~ /^(cd|ce)[0-9]+$/) next
|
||||
lp = substr(s, p2 + 1, p3 - p2 - 1)
|
||||
val = substr(s, p4 + 1)
|
||||
sub(/^[ \t]+/, "", val)
|
||||
@@ -547,7 +709,10 @@ _tl_pair_report() {
|
||||
sub(/[ \t].*$/, "", val)
|
||||
gsub(/,/, "", val)
|
||||
LP[cd] = lp
|
||||
if (kind == "TPOK") { TX[cd] = val + 0; HTX[cd] = 1 } else { RX[cd] = val + 0; HRX[cd] = 1 }
|
||||
if (kind == "TPOK") { TX[cd] = val + 0; HTX[cd] = 1 }
|
||||
else if (kind == "RPOK") { RX[cd] = val + 0; HRX[cd] = 1 }
|
||||
else if (kind == "TBYT") { TXB[cd] = val + 0; HTXB[cd] = 1 }
|
||||
else { RXB[cd] = val + 0; HRXB[cd] = 1 }
|
||||
seen++
|
||||
}
|
||||
END {
|
||||
@@ -580,6 +745,41 @@ _tl_pair_report() {
|
||||
nrow++; CELL[nrow,1] = pname(b); CELL[nrow,2] = tb; CELL[nrow,3] = rb; CELL[nrow,4] = v
|
||||
}
|
||||
|
||||
# --- 100G uplink, appended LAST so it sits at the bottom of the table ---
|
||||
# It is a single port, not a pair, so it gets one row. In cross mode the
|
||||
# verdict needs the OTHER unit counters and is decided in the summary;
|
||||
# DEFER says "not judged here", which is not the same as NA ("no data").
|
||||
cev = ""; ceunit = ""
|
||||
if (CEPORT != "") {
|
||||
if (CECOUNTER == "packets") {
|
||||
ceunit = "packets"
|
||||
haveT = (CEPORT in HTX); haveR = (CEPORT in HRX)
|
||||
cetv = TX[CEPORT]; cerv = RX[CEPORT]
|
||||
} else {
|
||||
ceunit = "bytes"
|
||||
haveT = (CEPORT in HTXB); haveR = (CEPORT in HRXB)
|
||||
cetv = TXB[CEPORT]; cerv = RXB[CEPORT]
|
||||
}
|
||||
cet = haveT ? grp(cetv) : MISSING
|
||||
cer = haveR ? grp(cerv) : MISSING
|
||||
if (!(haveT && haveR)) {
|
||||
cev = "NA"; nna++
|
||||
} else if (CEMODE == "self") {
|
||||
if (absd(cetv - cerv) <= TOL + 0) { cev = "PASS"; npass++ }
|
||||
else {
|
||||
cev = "FAIL"; nfail++
|
||||
FL[++nf] = sprintf("# FAIL %s: TX-RX=%+.0f %s (self loopback)", \
|
||||
CEPORT, cetv - cerv, ceunit)
|
||||
}
|
||||
} else {
|
||||
cev = "DEFER"
|
||||
}
|
||||
nrep++
|
||||
nrow++; CELL[nrow,1] = pname(CEPORT); CELL[nrow,2] = cet; CELL[nrow,3] = cer; CELL[nrow,4] = cev
|
||||
if (SIDE != "" && SIDE != "/dev/null" && haveT && haveR)
|
||||
printf "CE %.0f %.0f\n", cetv, cerv > SIDE
|
||||
}
|
||||
|
||||
if (TSV) {
|
||||
line = HDR[1]
|
||||
for (c = 2; c <= NC; c++) line = line "\t" HDR[c]
|
||||
@@ -616,13 +816,103 @@ _tl_pair_report() {
|
||||
printf "# pairs reported : %d\n", nrep
|
||||
printf "# %s %d %s %d %s %d (tolerance %d)\n", \
|
||||
vc("PASS"), npass, vc("FAIL"), nfail, vc("NA"), nna, TOL + 0
|
||||
if (CEPORT != "" && ceunit != "")
|
||||
printf "# %s TX/RX are %s (MIB_%s/MIB_%s); the cd rows are packets\n", \
|
||||
CEPORT, ceunit, \
|
||||
(ceunit == "bytes" ? "TBYT" : "TPOK"), \
|
||||
(ceunit == "bytes" ? "RBYT" : "RPOK")
|
||||
if (cev == "DEFER")
|
||||
printf "# %s is judged across units -- see the summary at the end\n", CEPORT
|
||||
# every NA pair is a visible row -> no long "no counters" list needed
|
||||
for (i = 1; i <= nf; i++) print redl(FL[i])
|
||||
}
|
||||
if (SIDE != "" && SIDE != "/dev/null")
|
||||
printf "SUM %d %d %d\n", npass, nfail, nna > SIDE
|
||||
exit (nfail || nna) ? 2 : 0
|
||||
}' "$log"
|
||||
}
|
||||
|
||||
# _tl_ce_summary -- the cross-unit ce0 verdict + the per-unit totals.
|
||||
# Printed once, at the very bottom, after every unit's table.
|
||||
# Args: <stamp> (side files are $TL_LOG_DIR/tlside_unit<N>_<stamp>)
|
||||
# Returns 0 all PASS, 2 any FAIL/NA, 3 could not be decided.
|
||||
_tl_ce_summary() {
|
||||
local stamp="$1" unit side c g y n r
|
||||
c=$'\033[36m'; g=$'\033[32m'; y=$'\033[33m'; r=$'\033[31m'; n=$'\033[0m'
|
||||
case "$TL_COLOR" in
|
||||
never|0|no) c=""; g=""; y=""; r=""; n="" ;;
|
||||
always|1|yes) ;;
|
||||
*) [ -t 1 ] || { c=""; g=""; y=""; r=""; n=""; } ;;
|
||||
esac
|
||||
|
||||
local u tx rx pass fail na have=""
|
||||
local -A CETX CERX UPASS UFAIL UNA
|
||||
for unit in $TL_UNITS; do
|
||||
side="$TL_LOG_DIR/tlside_unit${unit}_${stamp}"
|
||||
[ -r "$side" ] || continue
|
||||
while read -r tag a b cc; do
|
||||
case "$tag" in
|
||||
CE) CETX[$unit]="$a"; CERX[$unit]="$b" ;;
|
||||
SUM) UPASS[$unit]="$a"; UFAIL[$unit]="$b"; UNA[$unit]="$cc" ;;
|
||||
esac
|
||||
done < "$side"
|
||||
have="$have $unit"
|
||||
done
|
||||
|
||||
echo ""
|
||||
echo "===== summary : all units ====="
|
||||
printf '%-8s %8s %8s %8s %s\n' "Unit" "PASS" "FAIL" "NA" "RESULT"
|
||||
local worst=0 v
|
||||
for unit in $have; do
|
||||
pass="${UPASS[$unit]:-0}"; fail="${UFAIL[$unit]:-0}"; na="${UNA[$unit]:-0}"
|
||||
if [ "$fail" -gt 0 ] || [ "$na" -gt 0 ]; then v="${r}FAIL${n}"; worst=2
|
||||
else v="${g}PASS${n}"; fi
|
||||
printf '%-8s %8s %8s %8s %b\n' "unit $unit" "$pass" "$fail" "$na" "$v"
|
||||
done
|
||||
|
||||
[ "$TL_CE_ENABLE" = "1" ] || { echo ""; return "$worst"; }
|
||||
|
||||
echo ""
|
||||
echo "----- ${TL_CE_PORT} (100G uplink, VLAN ${TL_CE_VLAN}, mode=${TL_CE_MODE}, counter=${TL_CE_COUNTER}) -----"
|
||||
if [ "$TL_CE_MODE" != "cross" ]; then
|
||||
echo "# mode=self: the verdict is in each unit's table above"
|
||||
echo ""
|
||||
return "$worst"
|
||||
fi
|
||||
|
||||
# cross mode needs both units' counters
|
||||
if [ -z "${CETX[0]}" ] || [ -z "${CETX[1]}" ]; then
|
||||
printf '%b\n' "${y}UNDECIDED${n} ${TL_CE_PORT} is a cross-unit check and needs unit 0 AND unit 1;"
|
||||
echo " this run had TL_UNITS=\"$TL_UNITS\" (counters seen for:${have:-none})."
|
||||
echo " Re-run with -u all, or set TL_CE_MODE=self if the cabling is a self loopback."
|
||||
echo ""
|
||||
[ "$worst" -lt 3 ] && worst=3
|
||||
return "$worst"
|
||||
fi
|
||||
|
||||
local cu="bytes"; [ "$TL_CE_COUNTER" = "packets" ] && cu="packets"
|
||||
printf '%-22s %18s %18s\n' "Direction" "TX ($cu)" "RX ($cu)"
|
||||
printf '%-22s %18s %18s\n' "unit0.${TL_CE_PORT}" "${CETX[0]}" "${CERX[0]}"
|
||||
printf '%-22s %18s %18s\n' "unit1.${TL_CE_PORT}" "${CETX[1]}" "${CERX[1]}"
|
||||
|
||||
local d1 d2 v1 v2
|
||||
d1=$(awk -v a="${CETX[0]}" -v b="${CERX[1]}" 'BEGIN{printf "%.0f", a-b}')
|
||||
d2=$(awk -v a="${CETX[1]}" -v b="${CERX[0]}" 'BEGIN{printf "%.0f", a-b}')
|
||||
v1=$(awk -v d="$d1" -v t="$TL_TOLERANCE" 'BEGIN{print (d<0?-d:d)<=t ? "PASS" : "FAIL"}')
|
||||
v2=$(awk -v d="$d2" -v t="$TL_TOLERANCE" 'BEGIN{print (d<0?-d:d)<=t ? "PASS" : "FAIL"}')
|
||||
echo ""
|
||||
printf 'unit0.TX -> unit1.RX delta %+d %b\n' "$d1" "$([ "$v1" = PASS ] && echo "${g}PASS${n}" || echo "${r}FAIL${n}")"
|
||||
printf 'unit1.TX -> unit0.RX delta %+d %b\n' "$d2" "$([ "$v2" = PASS ] && echo "${g}PASS${n}" || echo "${r}FAIL${n}")"
|
||||
if [ "$v1" = PASS ] && [ "$v2" = PASS ]; then
|
||||
printf '%-22s %b\n' "${TL_CE_PORT} RESULT" "${g}PASS${n}"
|
||||
else
|
||||
printf '%-22s %b\n' "${TL_CE_PORT} RESULT" "${r}FAIL${n}"
|
||||
worst=2
|
||||
fi
|
||||
echo ""
|
||||
return "$worst"
|
||||
}
|
||||
|
||||
# traffic_linespeed_report -- 'show c' per unit, keep the raw log, render the table
|
||||
traffic_linespeed_report() {
|
||||
local unit log rc worst=0 stamp
|
||||
@@ -641,14 +931,17 @@ traffic_linespeed_report() {
|
||||
fi
|
||||
|
||||
stamp=$(date +%Y%m%d_%H%M%S 2>/dev/null || echo now)
|
||||
local side
|
||||
for unit in $TL_UNITS; do
|
||||
log="$TL_LOG_DIR/showc_unit${unit}_${stamp}.log"
|
||||
side="$TL_LOG_DIR/tlside_unit${unit}_${stamp}"
|
||||
: > "$side"
|
||||
if ! _tl_bcm "$unit" "show c" > "$log" 2>&1; then
|
||||
_tl_err "unit $unit: show c failed (see $log)"; return 1
|
||||
fi
|
||||
[ "$TL_REPORT_RAW" = "1" ] && { echo "----- unit $unit : raw show c -----"; cat "$log"; }
|
||||
echo "===== unit $unit : loopback pair counter report (raw: $log) ====="
|
||||
_tl_pair_report "$log"; rc=$?
|
||||
_tl_pair_report "$log" "$side"; rc=$?
|
||||
[ "$rc" -gt "$worst" ] && worst=$rc
|
||||
case "$rc" in
|
||||
0) _tl_ok "unit $unit: all pairs PASS" ;;
|
||||
@@ -656,6 +949,12 @@ traffic_linespeed_report() {
|
||||
*) _tl_err "unit $unit: report parse error" ;;
|
||||
esac
|
||||
done
|
||||
|
||||
# Summary last, after every unit's table -- this is where the cross-unit
|
||||
# ce0 verdict can finally be decided.
|
||||
_tl_ce_summary "$stamp"; rc=$?
|
||||
[ "$rc" -gt "$worst" ] && worst=$rc
|
||||
rm -f "$TL_LOG_DIR"/tlside_unit*_"${stamp}"
|
||||
return "$worst"
|
||||
}
|
||||
|
||||
@@ -675,17 +974,22 @@ traffic_linespeed_run() {
|
||||
blanton_traffic_linespeed_help() {
|
||||
echo -e "\033[1mblanton_traffic_linespeed.sh - SWB loopback line-speed traffic (bcmcmd)\033[0m"
|
||||
echo ""
|
||||
echo -e " Units: \033[36m$TL_UNITS\033[0m tx: \033[36m$TL_TX_COUNT pkt x ${TL_TX_LENGTH}B\033[0m"
|
||||
echo -e " Units: \033[36m$TL_UNITS\033[0m tx: \033[36m$TL_TX_COUNT pkt x ${TL_TX_LENGTH}B\033[0m PatternRandom: \033[36m${TL_TX_RANDOM:-(不加)}\033[0m"
|
||||
echo -e " VLANs: 30..137 ($(_tl_pair_count) loopback pairs, cdN <-> cdN+32)"
|
||||
[ "$TL_CE_ENABLE" = "1" ] && \
|
||||
echo -e " 100G : VLAN \033[36m$TL_CE_VLAN\033[0m port \033[36m$TL_CE_PORT\033[0m mode=\033[36m$TL_CE_MODE\033[0m (cross = unit0.$TL_CE_PORT <-> unit1.$TL_CE_PORT cabled)"
|
||||
echo ""
|
||||
echo -e "\033[1mSubcommands\033[0m"
|
||||
echo -e " \033[33minit\033[0m step 1 vlan remove 1 pbm=cd, vlan create/add each pair"
|
||||
echo -e " \033[33mclear\033[0m step 2 clear c"
|
||||
echo -e " \033[33mshow\033[0m step 3/6 show c (run before and after traffic)"
|
||||
echo -e " \033[33mstart\033[0m step 4 tx <count> length=<len> VLantag=<vid> per VLAN"
|
||||
echo -e " \033[33mstart\033[0m step 4 tx <count> length=<len> VLantag=<vid> [PatternRandom=<yes|no>] per VLAN"
|
||||
echo -e " \033[33mstop\033[0m step 5 vlan remove <vid> pbm=<pair> [--destroy also destroys]"
|
||||
[ "$TL_CE_ENABLE" = "1" ] && [ "$TL_CE_MIRROR" = "1" ] && \
|
||||
echo -e " \033[33m^ also turns the $TL_CE_PORT mirror off -- without it the 100G loop keeps running\033[0m"
|
||||
echo -e " \033[33mps\033[0m ps <portlist> port status (link/speed) of the cabled ports"
|
||||
echo -e " \033[33mreport\033[0m show c -> per-port TX/RX per pair + PASS/FAIL/NA cross-check"
|
||||
echo -e " ${TL_CE_PORT} is the last row (DEFER), judged in the summary at the bottom"
|
||||
echo -e " \033[33mrun\033[0m ps -> init -> clear -> start -> report"
|
||||
echo -e " \033[33mhelp\033[0m"
|
||||
echo ""
|
||||
@@ -693,6 +997,7 @@ blanton_traffic_linespeed_help() {
|
||||
echo -e " \033[33m-u|--unit\033[0m <0|1|all> bcmcmd unit(s); 'all' = 0 1 (default: $TL_UNITS)"
|
||||
echo -e " \033[33m-c|--count|-tx\033[0m <n> tx packet count (default $TL_TX_COUNT)"
|
||||
echo -e " \033[33m-l|--length|-length\033[0m <n> tx packet length (default $TL_TX_LENGTH)"
|
||||
echo -e " \033[33m-r|--random\033[0m <yes|no> tx PatternRandom (default $TL_TX_RANDOM; \"\" 完全不加)"
|
||||
echo -e " \033[33m-p|--ports\033[0m <list> ps port list, or 'all' for every port"
|
||||
echo -e " \033[33m-T|--tolerance\033[0m <n> report: allowed |delta| pkts (default $TL_TOLERANCE; -T 1 = snapshot skew)"
|
||||
echo -e " \033[33m-a|--all\033[0m report: kept for compatibility (all pairs are listed)"
|
||||
@@ -716,7 +1021,8 @@ blanton_traffic_linespeed_help() {
|
||||
echo -e " blanton_traffic_linespeed report -u 1 -q | grep -v PASS"
|
||||
echo -e " blanton_traffic_linespeed report -f /tmp/showc_unit1_*.log -a"
|
||||
echo -e " blanton_traffic_linespeed show -u 1 | grep -iE 'error|discard|drop'"
|
||||
echo -e " blanton_traffic_linespeed start -u 0 -tx 100 -length 512"
|
||||
echo -e " blanton_traffic_linespeed start -u 0 -tx 200 -length 324"
|
||||
echo -e " blanton_traffic_linespeed start -r no # 固定樣式,不隨機"
|
||||
echo -e " blanton_traffic_linespeed start -tx 100000 -length 9216 -d"
|
||||
echo -e " blanton_traffic_linespeed stop --destroy"
|
||||
echo ""
|
||||
@@ -740,6 +1046,7 @@ blanton_traffic_linespeed() {
|
||||
shift 2 ;;
|
||||
-c|--count|-tx|--tx) TL_TX_COUNT="$2"; shift 2 ;;
|
||||
-l|-length|--length|--len) TL_TX_LENGTH="$2"; shift 2 ;;
|
||||
-r|--random|-PatternRandom|--pattern-random) TL_TX_RANDOM="$2"; shift 2 ;;
|
||||
-p|--ports) TL_PS_PORTS="$2"; shift 2 ;;
|
||||
-T|--tolerance) TL_TOLERANCE="$2"; shift 2 ;;
|
||||
-f|--file) TL_REPORT_FILE="$2"; shift 2 ;;
|
||||
|
||||
File diff suppressed because it is too large
Load Diff
@@ -34,6 +34,10 @@ set -u
|
||||
# Add a line to add a command; comment it out to disable it.
|
||||
COMMANDS=(
|
||||
"free -m"
|
||||
"i2ctransfer -f -y 1 w6@0x41 0x00 0xC0 0x55 0xAA 0x55 0xAA"
|
||||
"i2ctransfer -f -y 1 w2@0x41 0x00 0xC0 r4"
|
||||
"i2ctransfer -f -y 1 w6@0x41 0x00 0xC0 0xAA 0x55 0xAA 0x55"
|
||||
"i2ctransfer -f -y 1 w2@0x41 0x00 0xC0 r4"
|
||||
#"uptime"
|
||||
#"cat /proc/loadavg"
|
||||
#"cat /proc/meminfo"
|
||||
|
||||
@@ -0,0 +1,403 @@
|
||||
#!/bin/bash
|
||||
###############################################################################
|
||||
# mgmt_ping_monitor.sh
|
||||
#
|
||||
# Version : V3.0.0
|
||||
# Author : ETWen
|
||||
# Date : 20260826
|
||||
#
|
||||
# Purpose : Ping from BOTH management NICs at the same time, continuously, and
|
||||
# keep accumulating until stopped:
|
||||
#
|
||||
# 10G (eth0) -> TARGET_10G
|
||||
# 1G (eth1) -> TARGET_1G
|
||||
#
|
||||
# `stop` renders a report into the log: the last TAIL_LINES entries
|
||||
# per NIC, each one's ping statistics and verdict, then
|
||||
# `ip -s link show` for both interfaces.
|
||||
#
|
||||
# Notes : - Both NICs are configured with iproute2 `replace`, which is
|
||||
# idempotent, and both are left up. On a shared subnet the target's
|
||||
# ARP can be answered by either NIC, so ARP_STRICT keeps each one
|
||||
# to its own address.
|
||||
# - ARP WARM-UP: the first packet after a neighbour entry expires is
|
||||
# spent resolving ARP and is counted as loss. On the bench this
|
||||
# produced three FAILs whose only missing packet was icmp_seq=1,
|
||||
# every time, with zero NIC errors or drops. One discarded ping
|
||||
# before the measured run removes that artefact, which is what lets
|
||||
# MAX_LOSS_PCT stay at 0 and still mean something.
|
||||
# - MANAGEMENT CONNECTIVITY IS IN USE while this runs. Drive it from
|
||||
# the serial console.
|
||||
#
|
||||
# Version History
|
||||
# V1.0.0 20260824 Initial Version (ifconfig, one NIC at a time)
|
||||
# V2.0.0 20260824 iproute2; both NICs stay up; per-NIC target;
|
||||
# ip -s link show + TX/RX delta per leg
|
||||
# V3.0.0 20260826 Both NICs ping SIMULTANEOUSLY and continuously instead
|
||||
# of alternating fixed bursts. Add the ARP warm-up.
|
||||
# `stop` renders last-N per NIC + statistics + both
|
||||
# ip -s link outputs into the log.
|
||||
###############################################################################
|
||||
|
||||
set -u
|
||||
|
||||
###############################################################################
|
||||
# User Configurable Section -- normally this is the only part you need to edit
|
||||
###############################################################################
|
||||
|
||||
# --- 10G management port ---
|
||||
IF_10G="eth0"
|
||||
IP_10G="192.168.1.99"
|
||||
TARGET_10G="192.168.1.30" # host this NIC pings
|
||||
PLEN_10G=24 # prefix length, e.g. 24 = /24
|
||||
GW_10G="" # default gateway; empty = do not touch routing
|
||||
METRIC_10G=100 # lower metric wins for off-subnet traffic
|
||||
|
||||
# --- 1G management port ---
|
||||
IF_1G="eth1"
|
||||
IP_1G="192.168.1.101"
|
||||
TARGET_1G="192.168.1.31"
|
||||
PLEN_1G=24
|
||||
GW_1G=""
|
||||
METRIC_1G=200
|
||||
|
||||
# --- ping ---
|
||||
PING_INTERVAL_SEC=1 # seconds between echo requests (ping -i)
|
||||
MAX_LOSS_PCT=0 # loss above this marks the NIC FAIL
|
||||
TAIL_LINES=20 # how many recent entries per NIC the report shows
|
||||
|
||||
# Extra ping flags. -D timestamps every line, -O prints a marker for a request
|
||||
# that got no reply, so a drop is visible in the tail instead of just missing.
|
||||
# Clear this if the platform's ping does not accept them.
|
||||
PING_EXTRA_OPTS="-D -O"
|
||||
|
||||
# One discarded ping per NIC before the measured run, to resolve ARP. Without
|
||||
# it the first packet of the run is lost to neighbour resolution and looks
|
||||
# exactly like a link fault. 0 disables.
|
||||
ARP_WARMUP=1
|
||||
ARP_WARMUP_TIMEOUT=2 # seconds to wait for the warm-up reply
|
||||
|
||||
# Both NICs stay up. If they share a subnet the target's ARP can be answered by
|
||||
# either one, so a reply may arrive on the NIC that did not send. This applies
|
||||
# arp_ignore=1 / arp_announce=2 to both. RAM only -- reverts on reboot.
|
||||
ARP_STRICT=1
|
||||
|
||||
# Prefix for the ip commands; empty because this already runs as root.
|
||||
SUDO=""
|
||||
|
||||
# Seconds to wait after bringing a link up before pinging.
|
||||
LINK_SETTLE_SEC=5
|
||||
|
||||
# Logging
|
||||
LOG_DIR="" # empty = <script directory>/log
|
||||
LOG_NAME="mgmt_ping.log"
|
||||
|
||||
# What `start` does with the log left behind by the previous run:
|
||||
# new = discard it (default -- one run, one log)
|
||||
# archive = rename it to <log>.YYYYmmdd-HHMMSS first
|
||||
# append = keep it
|
||||
START_LOG_MODE="new"
|
||||
|
||||
###############################################################################
|
||||
# Internal
|
||||
###############################################################################
|
||||
SCRIPT_NAME="$(basename -- "${BASH_SOURCE[0]}")"
|
||||
SCRIPT_DIR="$(cd -- "$(dirname -- "${BASH_SOURCE[0]}")" && pwd)"
|
||||
[ -n "${LOG_DIR}" ] || LOG_DIR="${SCRIPT_DIR}/log"
|
||||
|
||||
LOG_FILE="${LOG_DIR}/${LOG_NAME}"
|
||||
BASE="${LOG_DIR}/${LOG_NAME%.log}"
|
||||
PID_FILE="${BASE}.pid"
|
||||
STATE_FILE="${BASE}.state"
|
||||
RAW_10G="${BASE}_${IF_10G}.raw"
|
||||
RAW_1G="${BASE}_${IF_1G}.raw"
|
||||
|
||||
ts() { date '+%Y-%m-%d %H:%M:%S'; }
|
||||
die() { printf '[ERROR] %s\n' "$*" >&2; exit 1; }
|
||||
|
||||
# "<rx_packets> <tx_packets>" for an interface. ip -s link orders the columns
|
||||
# "bytes packets errors ...", so packets is $2, not $1.
|
||||
if_counters() {
|
||||
${SUDO} ip -s link show "$1" 2>/dev/null | awk '
|
||||
/RX:/ { getline; rx = $2 }
|
||||
/TX:/ { getline; tx = $2 }
|
||||
END { printf "%s %s", (rx == "" ? 0 : rx), (tx == "" ? 0 : tx) }'
|
||||
}
|
||||
|
||||
# Bring the NIC up and (re)apply its address and default route.
|
||||
setup_iface() {
|
||||
local iface="$1" ipaddr="$2" plen="$3" gw="$4" metric="$5"
|
||||
${SUDO} ip link set "${iface}" up 2>&1 || return 1
|
||||
${SUDO} ip address replace "${ipaddr}/${plen}" dev "${iface}" 2>&1 || return 1
|
||||
if [ -n "${gw}" ]; then
|
||||
${SUDO} ip route replace default via "${gw}" dev "${iface}" \
|
||||
metric "${metric}" 2>&1 || return 1
|
||||
fi
|
||||
return 0
|
||||
}
|
||||
|
||||
apply_arp_strict() {
|
||||
local i
|
||||
[ "${ARP_STRICT}" -eq 1 ] || return 0
|
||||
for i in "${IF_10G}" "${IF_1G}"; do
|
||||
${SUDO} sysctl -qw "net.ipv4.conf.${i}.arp_ignore=1" 2>/dev/null
|
||||
${SUDO} sysctl -qw "net.ipv4.conf.${i}.arp_announce=2" 2>/dev/null
|
||||
done
|
||||
}
|
||||
|
||||
# Resolve the neighbour so the measured run does not spend its first packet on
|
||||
# ARP. Result is deliberately discarded.
|
||||
arp_warmup() {
|
||||
local iface="$1" target="$2"
|
||||
[ "${ARP_WARMUP}" -eq 1 ] || return 0
|
||||
ping -I "${iface}" -c 1 -W "${ARP_WARMUP_TIMEOUT}" "${target}" >/dev/null 2>&1
|
||||
return 0
|
||||
}
|
||||
|
||||
# echo "pid_10g pid_1g" and return 0 when both are alive
|
||||
is_running() {
|
||||
local p0 p1
|
||||
[ -f "${PID_FILE}" ] || return 1
|
||||
p0="$(sed -n '1p' "${PID_FILE}" 2>/dev/null)"
|
||||
p1="$(sed -n '2p' "${PID_FILE}" 2>/dev/null)"
|
||||
[[ "${p0}" =~ ^[0-9]+$ ]] || return 1
|
||||
[[ "${p1}" =~ ^[0-9]+$ ]] || return 1
|
||||
kill -0 "${p0}" 2>/dev/null || kill -0 "${p1}" 2>/dev/null || return 1
|
||||
printf '%s %s' "${p0}" "${p1}"
|
||||
return 0
|
||||
}
|
||||
|
||||
###############################################################################
|
||||
# Report
|
||||
###############################################################################
|
||||
|
||||
# The recent entries for one NIC: replies and, thanks to -O, the requests that
|
||||
# got none.
|
||||
tail_entries() {
|
||||
grep -aE 'bytes from|no answer|Unreachable|Time to live' "$1" 2>/dev/null \
|
||||
| tail -n "${TAIL_LINES}"
|
||||
}
|
||||
|
||||
# The trailing "--- x ping statistics ---" block.
|
||||
stats_block() {
|
||||
sed -n '/ping statistics ---/,$p' "$1" 2>/dev/null
|
||||
}
|
||||
|
||||
# render_leg <label> <iface> <target> <raw> <rx0> <tx0>
|
||||
render_leg() {
|
||||
local label="$1" iface="$2" target="$3" raw="$4" rx0="$5" tx0="$6"
|
||||
local st tx rx loss avg verdict c1 rx1 tx1 drx dtx
|
||||
|
||||
printf -- '----- %s : %s -> %s : last %s entries -----\n' \
|
||||
"${label}" "${iface}" "${target}" "${TAIL_LINES}"
|
||||
tail_entries "${raw}"
|
||||
printf '\n'
|
||||
st="$(stats_block "${raw}")"
|
||||
printf '%s\n' "${st}"
|
||||
|
||||
tx="$(printf '%s' "${st}" | sed -n 's/^\([0-9]\+\) packets transmitted.*/\1/p' | tail -1)"
|
||||
rx="$(printf '%s' "${st}" | sed -n 's/.*[, ]\([0-9]\+\) received.*/\1/p' | tail -1)"
|
||||
loss="$(printf '%s' "${st}" | sed -n 's/.*[, ]\([0-9]\+\)% packet loss.*/\1/p' | tail -1)"
|
||||
avg="$(printf '%s' "${st}" | sed -n 's|.*= [0-9.]*/\([0-9.]*\)/.*|\1|p' | tail -1)"
|
||||
[ -n "${tx}" ] || tx=0
|
||||
[ -n "${rx}" ] || rx=0
|
||||
[ -n "${loss}" ] || loss=100
|
||||
[ -n "${avg}" ] || avg="-"
|
||||
|
||||
c1="$(if_counters "${iface}")"; rx1="${c1% *}"; tx1="${c1#* }"
|
||||
drx=$(( rx1 - rx0 )); dtx=$(( tx1 - tx0 ))
|
||||
|
||||
if [ "${loss}" -le "${MAX_LOSS_PCT}" ] && [ "${tx}" -gt 0 ]; then
|
||||
verdict="PASS"
|
||||
else
|
||||
verdict="FAIL"
|
||||
fi
|
||||
|
||||
# nic_tx/nic_rx are this interface's own counter delta over the whole run.
|
||||
# A pass with nic_tx near zero means the traffic left on the other NIC.
|
||||
printf '[%s] RESULT %-3s %-6s -> %-15s tx=%s rx=%s loss=%s%% rtt_avg=%sms nic_tx=%s nic_rx=%s %s\n\n' \
|
||||
"$(ts)" "${label}" "${iface}" "${target}" "${tx}" "${rx}" "${loss}" "${avg}" \
|
||||
"${dtx}" "${drx}" "${verdict}"
|
||||
}
|
||||
|
||||
write_report() {
|
||||
local rx0_10g tx0_10g rx0_1g tx0_1g started
|
||||
started="$(sed -n '1p' "${STATE_FILE}" 2>/dev/null)"
|
||||
rx0_10g="$(sed -n '2p' "${STATE_FILE}" 2>/dev/null)"; rx0_10g="${rx0_10g:-0}"
|
||||
tx0_10g="$(sed -n '3p' "${STATE_FILE}" 2>/dev/null)"; tx0_10g="${tx0_10g:-0}"
|
||||
rx0_1g="$(sed -n '4p' "${STATE_FILE}" 2>/dev/null)"; rx0_1g="${rx0_1g:-0}"
|
||||
tx0_1g="$(sed -n '5p' "${STATE_FILE}" 2>/dev/null)"; tx0_1g="${tx0_1g:-0}"
|
||||
|
||||
{
|
||||
printf '#############################################################\n'
|
||||
printf '[%s] mgmt ping report\n' "$(ts)"
|
||||
printf ' started : %s\n' "${started:-unknown}"
|
||||
printf ' stopped : %s\n' "$(ts)"
|
||||
printf ' 10G : %s %s/%s -> %s (metric %s)\n' \
|
||||
"${IF_10G}" "${IP_10G}" "${PLEN_10G}" "${TARGET_10G}" "${METRIC_10G}"
|
||||
printf ' 1G : %s %s/%s -> %s (metric %s)\n' \
|
||||
"${IF_1G}" "${IP_1G}" "${PLEN_1G}" "${TARGET_1G}" "${METRIC_1G}"
|
||||
printf ' ping : -i %s %s, max loss %s%%\n' \
|
||||
"${PING_INTERVAL_SEC}" "${PING_EXTRA_OPTS}" "${MAX_LOSS_PCT}"
|
||||
printf '#############################################################\n\n'
|
||||
|
||||
render_leg "10G" "${IF_10G}" "${TARGET_10G}" "${RAW_10G}" "${rx0_10g}" "${tx0_10g}"
|
||||
render_leg "1G" "${IF_1G}" "${TARGET_1G}" "${RAW_1G}" "${rx0_1g}" "${tx0_1g}"
|
||||
|
||||
printf -- '--- ip -s link show %s ---\n' "${IF_10G}"
|
||||
${SUDO} ip -s link show "${IF_10G}" 2>&1
|
||||
printf '\n'
|
||||
printf -- '--- ip -s link show %s ---\n' "${IF_1G}"
|
||||
${SUDO} ip -s link show "${IF_1G}" 2>&1
|
||||
} >> "${LOG_FILE}"
|
||||
}
|
||||
|
||||
###############################################################################
|
||||
# Sub-commands
|
||||
###############################################################################
|
||||
prepare_log_on_start() {
|
||||
local stamp
|
||||
case "${START_LOG_MODE}" in
|
||||
append) return 0 ;;
|
||||
archive)
|
||||
if [ -s "${LOG_FILE}" ]; then
|
||||
stamp="$(date '+%Y%m%d-%H%M%S')"
|
||||
mv -f "${LOG_FILE}" "${LOG_FILE}.${stamp}" || die "cannot archive ${LOG_FILE}"
|
||||
printf 'previous log archived: %s.%s\n' "${LOG_FILE}" "${stamp}"
|
||||
fi
|
||||
;;
|
||||
new)
|
||||
# Truncate rather than unlink, so a tail -f already attached keeps
|
||||
# following the new run.
|
||||
[ -f "${LOG_FILE}" ] && { : > "${LOG_FILE}" || die "cannot truncate ${LOG_FILE}"; }
|
||||
;;
|
||||
*) die "invalid START_LOG_MODE: ${START_LOG_MODE}" ;;
|
||||
esac
|
||||
}
|
||||
|
||||
do_start() {
|
||||
local pids p0 p1 c
|
||||
|
||||
pids="$(is_running)" && die "already running (pids=${pids})"
|
||||
|
||||
command -v ip >/dev/null 2>&1 || die "ip (iproute2) not found"
|
||||
command -v ping >/dev/null 2>&1 || die "ping not found"
|
||||
|
||||
mkdir -p "${LOG_DIR}" || die "cannot create ${LOG_DIR}"
|
||||
prepare_log_on_start
|
||||
: > "${RAW_10G}"
|
||||
: > "${RAW_1G}"
|
||||
|
||||
setup_iface "${IF_10G}" "${IP_10G}" "${PLEN_10G}" "${GW_10G}" "${METRIC_10G}" \
|
||||
|| die "cannot configure ${IF_10G}"
|
||||
setup_iface "${IF_1G}" "${IP_1G}" "${PLEN_1G}" "${GW_1G}" "${METRIC_1G}" \
|
||||
|| die "cannot configure ${IF_1G}"
|
||||
apply_arp_strict
|
||||
sleep "${LINK_SETTLE_SEC}"
|
||||
|
||||
# Spend the ARP resolution here, not on the first measured packet.
|
||||
arp_warmup "${IF_10G}" "${TARGET_10G}"
|
||||
arp_warmup "${IF_1G}" "${TARGET_1G}"
|
||||
|
||||
# Counter baseline, taken after the warm-up so its packets are excluded.
|
||||
{ c="$(if_counters "${IF_10G}")"
|
||||
printf '%s\n%s\n%s\n' "$(ts)" "${c% *}" "${c#* }"
|
||||
c="$(if_counters "${IF_1G}")"
|
||||
printf '%s\n%s\n' "${c% *}" "${c#* }"
|
||||
} > "${STATE_FILE}"
|
||||
|
||||
# Both NICs ping at the same time and keep accumulating until stopped.
|
||||
nohup ping -I "${IF_10G}" -i "${PING_INTERVAL_SEC}" ${PING_EXTRA_OPTS} \
|
||||
"${TARGET_10G}" >> "${RAW_10G}" 2>&1 &
|
||||
p0=$!
|
||||
nohup ping -I "${IF_1G}" -i "${PING_INTERVAL_SEC}" ${PING_EXTRA_OPTS} \
|
||||
"${TARGET_1G}" >> "${RAW_1G}" 2>&1 &
|
||||
p1=$!
|
||||
disown "${p0}" 2>/dev/null
|
||||
disown "${p1}" 2>/dev/null
|
||||
printf '%s\n%s\n' "${p0}" "${p1}" > "${PID_FILE}"
|
||||
|
||||
sleep 1
|
||||
kill -0 "${p0}" 2>/dev/null || die "10G ping failed to start, see ${RAW_10G}"
|
||||
kill -0 "${p1}" 2>/dev/null || die "1G ping failed to start, see ${RAW_1G}"
|
||||
printf 'started (10G pid=%s, 1G pid=%s)\nlog: %s\n' "${p0}" "${p1}" "${LOG_FILE}"
|
||||
}
|
||||
|
||||
do_stop() {
|
||||
local pids p0 p1 i
|
||||
|
||||
pids="$(is_running)" || {
|
||||
printf 'not running\n'
|
||||
rm -f "${PID_FILE}"
|
||||
return 0
|
||||
}
|
||||
p0="${pids% *}"; p1="${pids#* }"
|
||||
|
||||
# SIGINT, not SIGTERM: ping prints its statistics block on interrupt, and
|
||||
# that block is what the report parses.
|
||||
kill -INT "${p0}" 2>/dev/null
|
||||
kill -INT "${p1}" 2>/dev/null
|
||||
for (( i = 0; i < 20; i++ )); do
|
||||
kill -0 "${p0}" 2>/dev/null || kill -0 "${p1}" 2>/dev/null || break
|
||||
sleep 0.5
|
||||
done
|
||||
kill -KILL "${p0}" 2>/dev/null
|
||||
kill -KILL "${p1}" 2>/dev/null
|
||||
|
||||
write_report
|
||||
rm -f "${PID_FILE}"
|
||||
printf 'stopped (10G pid=%s, 1G pid=%s)\nreport: %s\n' "${p0}" "${p1}" "${LOG_FILE}"
|
||||
}
|
||||
|
||||
do_status() {
|
||||
local pids
|
||||
if pids="$(is_running)"; then
|
||||
printf 'status : running (10G pid=%s, 1G pid=%s)\n' "${pids% *}" "${pids#* }"
|
||||
else
|
||||
printf 'status : stopped\n'
|
||||
fi
|
||||
printf 'log : %s\n' "${LOG_FILE}"
|
||||
printf '10G : %s %s/%s -> %s\n' "${IF_10G}" "${IP_10G}" "${PLEN_10G}" "${TARGET_10G}"
|
||||
printf '1G : %s %s/%s -> %s\n' "${IF_1G}" "${IP_1G}" "${PLEN_1G}" "${TARGET_1G}"
|
||||
[ -f "${RAW_10G}" ] && printf '10G recv: %s\n' "$(grep -ac 'bytes from' "${RAW_10G}")"
|
||||
[ -f "${RAW_1G}" ] && printf '1G recv: %s\n' "$(grep -ac 'bytes from' "${RAW_1G}")"
|
||||
}
|
||||
|
||||
usage() {
|
||||
cat <<EOF
|
||||
Usage: ${SCRIPT_NAME} {start|stop|status|summary|clear}
|
||||
|
||||
start Configure both NICs, warm up ARP, then ping from BOTH at the same
|
||||
time and keep accumulating. The previous log is discarded first.
|
||||
stop Stop both pings and render the report into the log
|
||||
status Show pids, configured NICs and replies received so far
|
||||
summary Print just the RESULT lines from the log
|
||||
clear Remove the log and the raw captures (must be stopped first)
|
||||
|
||||
Log file : ${LOG_FILE}
|
||||
|
||||
The report holds, per NIC, the last ${TAIL_LINES} entries and the ping
|
||||
statistics, then "ip -s link show" for both interfaces.
|
||||
|
||||
Both NICs are used at once, so management connectivity is in play -- drive
|
||||
this from the serial console. Edit the User Configurable Section at the top
|
||||
to change interfaces, addresses, targets or the ping options.
|
||||
EOF
|
||||
}
|
||||
|
||||
###############################################################################
|
||||
# Entry point
|
||||
###############################################################################
|
||||
case "${1:-}" in
|
||||
start) do_start ;;
|
||||
stop) do_stop ;;
|
||||
status) do_status ;;
|
||||
summary) grep -a 'RESULT' "${LOG_FILE}" 2>/dev/null || printf 'no results in %s\n' "${LOG_FILE}" ;;
|
||||
clear)
|
||||
is_running >/dev/null && die "still running, stop it first"
|
||||
rm -f "${LOG_FILE}" "${LOG_FILE}".[0-9]* "${RAW_10G}" "${RAW_1G}" "${STATE_FILE}"
|
||||
printf 'log cleared\n'
|
||||
;;
|
||||
-h|--help|"") usage ;;
|
||||
*) printf '[ERROR] unknown sub-command: %s\n\n' "$1" >&2; usage; exit 1 ;;
|
||||
esac
|
||||
@@ -0,0 +1,314 @@
|
||||
#!/usr/bin/env bash
|
||||
# =============================================================================
|
||||
# nfc_polling.sh -- keep reading the NFC tag in the background, and tally it
|
||||
# =============================================================================
|
||||
# Version History:
|
||||
# V1.0.0 2026-08-28 First version. start/stop/status/tail/report/clear/fg,
|
||||
# wraps blantons_nfc_validate.py. 'report' works while the
|
||||
# poll is still running.
|
||||
# =============================================================================
|
||||
#
|
||||
# Each round runs blantons_nfc_validate.py once and appends a machine-readable
|
||||
# verdict line, so 'report' never has to parse the tool's prose:
|
||||
#
|
||||
# [2026-08-28 15:04:11] NFC poll #000001 START
|
||||
# ... the tool's own output ...
|
||||
# [2026-08-28 15:04:14] NFC poll #000001 RESULT=PASS tag=046F7BD2142290
|
||||
#
|
||||
# The verdict comes from the tool's own [PASS] / [FAIL] summary line. If neither
|
||||
# appears the round is ERROR, not FAIL -- "the tool did not run" and "the tag was
|
||||
# not read" are different problems and get counted separately.
|
||||
#
|
||||
# Usage:
|
||||
# ./nfc_polling.sh start # background, CLEARS the log first
|
||||
# ./nfc_polling.sh status # running? pid, rounds so far, log size
|
||||
# ./nfc_polling.sh tail [n] # last n lines (default 50) -- does NOT follow
|
||||
# ./nfc_polling.sh report # PASS/FAIL tally; safe to run WHILE polling
|
||||
# ./nfc_polling.sh stop
|
||||
# ./nfc_polling.sh clear # delete the log (must be stopped)
|
||||
# ./nfc_polling.sh fg # run in the foreground, Ctrl-C to stop
|
||||
#
|
||||
# Environment overrides:
|
||||
# NFC_INTERVAL_SEC=10 NFC_TIMEOUT_SEC=60 NFC_MAX_ROUNDS=0 (0 = forever)
|
||||
# NFC_ARGS="test --debug" NFC_LOG_DIR=<dir> NFC_BIN=<python3>
|
||||
# =============================================================================
|
||||
|
||||
# --- User Configurable Section ----------------------------------------------
|
||||
NFC_INTERVAL_SEC="${NFC_INTERVAL_SEC:-10}" # gap between rounds
|
||||
NFC_TIMEOUT_SEC="${NFC_TIMEOUT_SEC:-60}" # kill a round that hangs (0 = never)
|
||||
NFC_MAX_ROUNDS="${NFC_MAX_ROUNDS:-0}" # 0 = until 'stop'
|
||||
|
||||
# Called through python3 on purpose: blantons_nfc_validate.py arrives from git
|
||||
# (mode 100644) and a Windows/USB copy does not carry the execute bit either, so
|
||||
# "./blantons_nfc_validate.py" would fail with Permission denied on a fresh DUT.
|
||||
NFC_PY="${NFC_PY:-python3}"
|
||||
NFC_SCRIPT_NAME="${NFC_SCRIPT_NAME:-blantons_nfc_validate.py}"
|
||||
|
||||
# --debug is kept because that is the output that has been seen on the bench.
|
||||
# It costs ~1.5 KB per round (~13 MB/day at a 10s interval), which is fine for a
|
||||
# soak; drop it to "test" if you want a smaller log.
|
||||
NFC_ARGS="${NFC_ARGS:-test --debug}"
|
||||
|
||||
NFC_LOG_DIR="${NFC_LOG_DIR:-}" # empty = <script dir>/log
|
||||
NFC_LOG_NAME="${NFC_LOG_NAME:-nfc_poll.log}"
|
||||
# -----------------------------------------------------------------------------
|
||||
|
||||
SCRIPT_NAME="$(basename -- "${BASH_SOURCE[0]}")"
|
||||
SCRIPT_DIR="$(cd -- "$(dirname -- "${BASH_SOURCE[0]}")" && pwd)"
|
||||
SCRIPT_PATH="${SCRIPT_DIR}/${SCRIPT_NAME}"
|
||||
NFC_SCRIPT="${NFC_SCRIPT:-${SCRIPT_DIR}/${NFC_SCRIPT_NAME}}"
|
||||
[ -n "${NFC_LOG_DIR}" ] || NFC_LOG_DIR="${SCRIPT_DIR}/log"
|
||||
LOG_FILE="${NFC_LOG_DIR}/${NFC_LOG_NAME}"
|
||||
PID_FILE="${NFC_LOG_DIR}/${NFC_LOG_NAME%.log}.pid"
|
||||
|
||||
STOP=0
|
||||
SLEEP_PID=""
|
||||
|
||||
ts() { date '+%Y-%m-%d %H:%M:%S'; }
|
||||
die() { printf '[ERROR] %s\n' "$*" >&2; exit 1; }
|
||||
|
||||
on_signal() {
|
||||
STOP=1
|
||||
[ -n "${SLEEP_PID}" ] && kill "${SLEEP_PID}" 2>/dev/null
|
||||
return 0
|
||||
}
|
||||
|
||||
# sleep that a signal can cut short, so 'stop' does not wait out the interval
|
||||
interruptible_sleep() {
|
||||
local sec="$1"
|
||||
[ "${sec}" -le 0 ] 2>/dev/null && return 0
|
||||
sleep "${sec}" &
|
||||
SLEEP_PID=$!
|
||||
wait "${SLEEP_PID}" 2>/dev/null
|
||||
SLEEP_PID=""
|
||||
return 0
|
||||
}
|
||||
|
||||
is_running() {
|
||||
local pid
|
||||
[ -f "${PID_FILE}" ] || return 1
|
||||
pid="$(cat "${PID_FILE}" 2>/dev/null)"
|
||||
[ -n "${pid}" ] || return 1
|
||||
kill -0 "${pid}" 2>/dev/null || return 1
|
||||
printf '%s' "${pid}"
|
||||
return 0
|
||||
}
|
||||
|
||||
# --- one round ---------------------------------------------------------------
|
||||
# Appends START, the tool output, then a RESULT line. Everything about a round
|
||||
# lands in the log even when the tool dies, so 'report' can still account for it.
|
||||
run_one_round() {
|
||||
local n="$1" out rc verdict tag reason
|
||||
printf '[%s] NFC poll #%06d START\n' "$(ts)" "${n}"
|
||||
|
||||
if [ -n "${NFC_TIMEOUT_SEC}" ] && [ "${NFC_TIMEOUT_SEC}" -gt 0 ] 2>/dev/null \
|
||||
&& command -v timeout >/dev/null 2>&1; then
|
||||
out="$(timeout "${NFC_TIMEOUT_SEC}" "${NFC_PY}" "${NFC_SCRIPT}" ${NFC_ARGS} 2>&1)"; rc=$?
|
||||
else
|
||||
out="$("${NFC_PY}" "${NFC_SCRIPT}" ${NFC_ARGS} 2>&1)"; rc=$?
|
||||
fi
|
||||
printf '%s\n' "${out}"
|
||||
|
||||
# The tool's own summary decides. Exit status is only the fallback, because
|
||||
# a tool that never printed a summary did not measure anything.
|
||||
if printf '%s\n' "${out}" | grep -q '^\[PASS\]'; then
|
||||
verdict="PASS"
|
||||
elif printf '%s\n' "${out}" | grep -q '^\[FAIL\]'; then
|
||||
verdict="FAIL"
|
||||
elif [ "${rc}" -eq 124 ]; then
|
||||
verdict="ERROR"; reason="round exceeded NFC_TIMEOUT_SEC=${NFC_TIMEOUT_SEC}s"
|
||||
else
|
||||
verdict="ERROR"; reason="no [PASS]/[FAIL] summary, exit=${rc}"
|
||||
fi
|
||||
|
||||
tag="$(printf '%s\n' "${out}" | sed -n 's/.*NFCID1=\([0-9A-Fa-f]*\).*/\1/p' | tail -1)"
|
||||
[ -n "${reason}" ] || reason="$(printf '%s\n' "${out}" | grep -m1 '^\[\(PASS\|FAIL\)\]' | cut -c8-)"
|
||||
|
||||
printf '[%s] NFC poll #%06d RESULT=%s tag=%s reason=%s\n' \
|
||||
"$(ts)" "${n}" "${verdict}" "${tag:--}" "${reason:--}"
|
||||
}
|
||||
|
||||
main_loop() {
|
||||
local n=0
|
||||
trap on_signal INT TERM
|
||||
printf '[%s] ===== nfc_polling start : %s %s (interval %ss) =====\n' \
|
||||
"$(ts)" "${NFC_PY}" "${NFC_SCRIPT}" "${NFC_INTERVAL_SEC}"
|
||||
while [ "${STOP}" -eq 0 ]; do
|
||||
n=$(( n + 1 ))
|
||||
run_one_round "${n}"
|
||||
if [ "${NFC_MAX_ROUNDS}" -gt 0 ] 2>/dev/null && [ "${n}" -ge "${NFC_MAX_ROUNDS}" ]; then
|
||||
break
|
||||
fi
|
||||
[ "${STOP}" -eq 0 ] && interruptible_sleep "${NFC_INTERVAL_SEC}"
|
||||
done
|
||||
printf '[%s] ===== nfc_polling stop : %d round(s) =====\n' "$(ts)" "${n}"
|
||||
}
|
||||
|
||||
# --- sub-commands ------------------------------------------------------------
|
||||
do_start() {
|
||||
local pid
|
||||
pid="$(is_running)" && die "already running (pid=${pid})"
|
||||
[ -r "${NFC_SCRIPT}" ] || die "cannot read ${NFC_SCRIPT}"
|
||||
command -v "${NFC_PY}" >/dev/null 2>&1 || die "${NFC_PY} not found"
|
||||
mkdir -p "${NFC_LOG_DIR}" || die "cannot create ${NFC_LOG_DIR}"
|
||||
|
||||
# start always begins a fresh log, so a report is about THIS run only
|
||||
: > "${LOG_FILE}" || die "cannot write ${LOG_FILE}"
|
||||
|
||||
if command -v setsid >/dev/null 2>&1; then
|
||||
setsid "${SCRIPT_PATH}" __daemon >/dev/null 2>&1 &
|
||||
else
|
||||
nohup "${SCRIPT_PATH}" __daemon >/dev/null 2>&1 &
|
||||
disown 2>/dev/null
|
||||
fi
|
||||
|
||||
sleep 1
|
||||
pid="$(is_running)" || die "start failed, check ${LOG_FILE}"
|
||||
printf 'started (pid=%s)\nlog: %s\n' "${pid}" "${LOG_FILE}"
|
||||
}
|
||||
|
||||
do_daemon() {
|
||||
mkdir -p "${NFC_LOG_DIR}" || die "cannot create ${NFC_LOG_DIR}"
|
||||
exec >>"${LOG_FILE}" 2>&1
|
||||
printf '%d\n' "$$" > "${PID_FILE}"
|
||||
trap 'rm -f "${PID_FILE}"' EXIT
|
||||
main_loop
|
||||
}
|
||||
|
||||
do_stop() {
|
||||
local pid i
|
||||
pid="$(is_running)" || { printf 'not running\n'; rm -f "${PID_FILE}"; return 0; }
|
||||
kill -TERM -"${pid}" 2>/dev/null || kill -TERM "${pid}" 2>/dev/null
|
||||
for (( i = 0; i < 20; i++ )); do
|
||||
kill -0 "${pid}" 2>/dev/null || break
|
||||
sleep 0.5
|
||||
done
|
||||
if kill -0 "${pid}" 2>/dev/null; then
|
||||
printf 'SIGTERM ignored, sending SIGKILL\n'
|
||||
kill -KILL -"${pid}" 2>/dev/null || kill -KILL "${pid}" 2>/dev/null
|
||||
fi
|
||||
rm -f "${PID_FILE}"
|
||||
printf 'stopped (pid=%s)\n' "${pid}"
|
||||
}
|
||||
|
||||
# counts straight out of the log, so it is the same answer running or stopped
|
||||
_tally() {
|
||||
local f="$1"
|
||||
[ -r "${f}" ] || { printf '0 0 0 0\n'; return; }
|
||||
awk '
|
||||
/RESULT=PASS/ { p++ }
|
||||
/RESULT=FAIL/ { f++ }
|
||||
/RESULT=ERROR/ { e++ }
|
||||
/ START$/ { s++ }
|
||||
END { printf "%d %d %d %d\n", s+0, p+0, f+0, e+0 }
|
||||
' "${f}"
|
||||
}
|
||||
|
||||
do_status() {
|
||||
local pid started passed failed errored size
|
||||
if pid="$(is_running)"; then
|
||||
printf 'status : running (pid=%s)\n' "${pid}"
|
||||
else
|
||||
printf 'status : stopped\n'
|
||||
fi
|
||||
printf 'log : %s\n' "${LOG_FILE}"
|
||||
if [ -r "${LOG_FILE}" ]; then
|
||||
size="$(du -h "${LOG_FILE}" 2>/dev/null | cut -f1)"
|
||||
read -r started passed failed errored <<< "$(_tally "${LOG_FILE}")"
|
||||
printf 'size : %s\n' "${size:-?}"
|
||||
printf 'rounds : %s started (PASS %s / FAIL %s / ERROR %s)\n' \
|
||||
"${started}" "${passed}" "${failed}" "${errored}"
|
||||
printf 'last : %s\n' "$(grep -a 'RESULT=' "${LOG_FILE}" | tail -1)"
|
||||
else
|
||||
printf 'size : (no log yet)\n'
|
||||
fi
|
||||
}
|
||||
|
||||
do_report() {
|
||||
local pid started passed failed errored inflight verdict first last
|
||||
[ -r "${LOG_FILE}" ] || die "no log at ${LOG_FILE} -- has it been started?"
|
||||
read -r started passed failed errored <<< "$(_tally "${LOG_FILE}")"
|
||||
inflight=$(( started - passed - failed - errored ))
|
||||
|
||||
echo "===== NFC polling report ====="
|
||||
printf 'log : %s\n' "${LOG_FILE}"
|
||||
if pid="$(is_running)"; then
|
||||
printf 'state : RUNNING (pid=%s) -- this is a snapshot, the count is still moving\n' "${pid}"
|
||||
else
|
||||
printf 'state : stopped\n'
|
||||
fi
|
||||
first="$(grep -a -m1 ' START$' "${LOG_FILE}" | sed -n 's/^\[\([^]]*\)\].*/\1/p')"
|
||||
last="$(grep -a 'RESULT=' "${LOG_FILE}" | tail -1 | sed -n 's/^\[\([^]]*\)\].*/\1/p')"
|
||||
printf 'window : %s -> %s\n' "${first:-?}" "${last:-?}"
|
||||
echo ""
|
||||
printf 'rounds : %d\n' "${started}"
|
||||
printf 'PASS : %d\n' "${passed}"
|
||||
printf 'FAIL : %d\n' "${failed}"
|
||||
printf 'ERROR : %d (tool did not produce a verdict)\n' "${errored}"
|
||||
[ "${inflight}" -gt 0 ] && printf 'in flight: %d (round started, no result yet)\n' "${inflight}"
|
||||
|
||||
if [ "${started}" -eq 0 ]; then
|
||||
verdict="NO DATA"
|
||||
elif [ "${failed}" -gt 0 ] || [ "${errored}" -gt 0 ]; then
|
||||
verdict="FAIL"
|
||||
else
|
||||
verdict="PASS"
|
||||
fi
|
||||
printf 'RESULT : %s\n' "${verdict}"
|
||||
|
||||
echo ""
|
||||
echo "--- tags seen ---"
|
||||
grep -a 'RESULT=PASS' "${LOG_FILE}" \
|
||||
| sed -n 's/.* tag=\([0-9A-Fa-f]*\) .*/\1/p' \
|
||||
| sort | uniq -c | sort -rn | awk '{printf " %-20s %s\n", $2, $1}'
|
||||
grep -aq 'RESULT=PASS.* tag=[0-9A-Fa-f]' "${LOG_FILE}" || echo " (none)"
|
||||
|
||||
if [ "$(( failed + errored ))" -gt 0 ]; then
|
||||
echo ""
|
||||
echo "--- last 10 FAIL / ERROR ---"
|
||||
grep -aE 'RESULT=(FAIL|ERROR)' "${LOG_FILE}" | tail -10 | sed 's/^/ /'
|
||||
fi
|
||||
echo ""
|
||||
[ "${verdict}" = "FAIL" ] && return 2
|
||||
return 0
|
||||
}
|
||||
|
||||
usage() {
|
||||
cat <<USAGE
|
||||
${SCRIPT_NAME} - background NFC tag polling (wraps ${NFC_SCRIPT_NAME})
|
||||
|
||||
start run in the background; CLEARS the log first
|
||||
stop stop it
|
||||
status running? pid, rounds so far, last result
|
||||
tail [n] last n lines of the log (default 50) -- does NOT follow
|
||||
report PASS/FAIL tally -- safe to run WHILE polling
|
||||
clear delete the log (must be stopped)
|
||||
fg run in the foreground, Ctrl-C to stop
|
||||
|
||||
interval ${NFC_INTERVAL_SEC}s per-round timeout ${NFC_TIMEOUT_SEC}s rounds ${NFC_MAX_ROUNDS} (0 = forever)
|
||||
log ${LOG_FILE}
|
||||
|
||||
A round is PASS or FAIL from the tool's own summary line; ERROR means it
|
||||
produced neither, which is a different problem from a tag that would not read.
|
||||
USAGE
|
||||
}
|
||||
|
||||
case "${1:-}" in
|
||||
start) do_start ;;
|
||||
stop) do_stop ;;
|
||||
status) do_status ;;
|
||||
report) do_report ;;
|
||||
# deliberately NOT 'tail -f': that never returns, and a TTL macro waiting on
|
||||
# the prompt would hang there forever.
|
||||
tail) [ -r "${LOG_FILE}" ] || die "no log at ${LOG_FILE}"
|
||||
tail -n "${2:-50}" "${LOG_FILE}" ;;
|
||||
clear)
|
||||
is_running >/dev/null && die "still running, stop it first"
|
||||
rm -f "${LOG_FILE}"
|
||||
printf 'log cleared\n'
|
||||
;;
|
||||
fg) main_loop ;;
|
||||
__daemon) do_daemon ;;
|
||||
-h|--help|"") usage ;;
|
||||
*) printf '[ERROR] unknown sub-command: %s\n\n' "$1" >&2; usage; exit 1 ;;
|
||||
esac
|
||||
@@ -0,0 +1,431 @@
|
||||
#!/bin/bash
|
||||
###############################################################################
|
||||
# port_prbs_monitor.sh
|
||||
#
|
||||
# Version : V1.0.0
|
||||
# Author : ETWen
|
||||
# Date : 20260826
|
||||
#
|
||||
# Purpose : Run a PRBS test on the two 100G uplinks AT THE SAME TIME and keep
|
||||
# polling until stopped. Each port gets its own background worker:
|
||||
#
|
||||
# setup : sfputil lpmode off <port>
|
||||
# phy diag <phy> prbs set <poly>
|
||||
# phy diag <phy> prbsstat STArt Interval=<n>
|
||||
# poll : phy diag <phy> prbs get <- PASS/FAIL comes from here
|
||||
# phydiag <phy> prbsstat Ber <- recorded only
|
||||
# stop : phydiag <phy> prbsstat STOp
|
||||
# phydiag <phy> prbs clear
|
||||
#
|
||||
# Every command and its full output goes to that port's raw log.
|
||||
# `stop` tears the test down and renders the report; `report`
|
||||
# prints the PASS/FAIL tally per port.
|
||||
#
|
||||
# Notes : - A poll counts as PASS only when the output contains "PRBS OK!".
|
||||
# bcmcmd exits 0 even when the BCM shell rejects a command, so the
|
||||
# exit status cannot be used -- only the output can.
|
||||
# - bcmcmd is always run with </dev/null. Without it, it inherits the
|
||||
# polling loop's stdin and eats it, and the loop runs once.
|
||||
#
|
||||
# Version History
|
||||
# V1.0.0 20260826 Initial Version
|
||||
###############################################################################
|
||||
|
||||
set -u
|
||||
|
||||
###############################################################################
|
||||
# User Configurable Section -- normally this is the only part you need to edit
|
||||
###############################################################################
|
||||
|
||||
# --- port A ---
|
||||
PORT_A_NAME="Ethernet513"
|
||||
PORT_A_UNIT=0 # bcmcmd -n <unit>
|
||||
PORT_A_PHY=268 # phy diag <phy>
|
||||
|
||||
# --- port B ---
|
||||
PORT_B_NAME="Ethernet514"
|
||||
PORT_B_UNIT=1
|
||||
PORT_B_PHY=268
|
||||
|
||||
# Which ports `start` runs when no argument is given: both | a | b
|
||||
# Override per run: start a / start b / start both
|
||||
# Running one at a time is how you tell a genuine port fault from the DUT not
|
||||
# coping with two PRBS streams at once.
|
||||
PORTS="both"
|
||||
|
||||
# --- PRBS ---
|
||||
PRBS_POLY="p=3" # passed to "prbs set"
|
||||
PRBS_STAT_INTERVAL=5 # passed to "prbsstat STArt Interval="
|
||||
POLL_INTERVAL_SEC=10 # seconds between polls
|
||||
PASS_PATTERN="PRBS OK!" # a poll is PASS only if the output contains this
|
||||
|
||||
# Seconds to wait after the setup commands before the first poll, so the link
|
||||
# has settled and the counters mean something.
|
||||
SETTLE_SEC=10
|
||||
|
||||
|
||||
# Stop after this many polls per port. 0 = run until stopped manually.
|
||||
MAX_POLLS=0
|
||||
|
||||
# How many recent poll blocks the report shows per port.
|
||||
TAIL_ENTRIES=20
|
||||
|
||||
# Prefix for privileged commands; empty because this already runs as root.
|
||||
SUDO=""
|
||||
BCMCMD="bcmcmd"
|
||||
|
||||
# Logging
|
||||
LOG_DIR="" # empty = <script directory>/log
|
||||
LOG_NAME="port_prbs.log"
|
||||
|
||||
# What `start` does with the log left behind by the previous run:
|
||||
# new | archive | append
|
||||
START_LOG_MODE="new"
|
||||
|
||||
###############################################################################
|
||||
# Internal
|
||||
###############################################################################
|
||||
SCRIPT_NAME="$(basename -- "${BASH_SOURCE[0]}")"
|
||||
SCRIPT_DIR="$(cd -- "$(dirname -- "${BASH_SOURCE[0]}")" && pwd)"
|
||||
SCRIPT_PATH="${SCRIPT_DIR}/${SCRIPT_NAME}"
|
||||
[ -n "${LOG_DIR}" ] || LOG_DIR="${SCRIPT_DIR}/log"
|
||||
|
||||
LOG_FILE="${LOG_DIR}/${LOG_NAME}"
|
||||
BASE="${LOG_DIR}/${LOG_NAME%.log}"
|
||||
PID_FILE="${BASE}.pid"
|
||||
STATE_FILE="${BASE}.state"
|
||||
RAW_A="${BASE}_${PORT_A_NAME}.raw"
|
||||
RAW_B="${BASE}_${PORT_B_NAME}.raw"
|
||||
|
||||
ts() { date '+%Y-%m-%d %H:%M:%S'; }
|
||||
|
||||
# port_tally <name> <raw> -> "<polls> <pass> <fail> <verdict>"
|
||||
# A raw without a "PRBS START" line means the port was not run this session,
|
||||
# which is SKIP -- reporting it as FAIL would make a deliberate single-port
|
||||
# run look like half the hardware is broken.
|
||||
port_tally() {
|
||||
local name="$1" raw="$2" pass fail polls verdict
|
||||
if [ ! -s "${raw}" ] || ! grep -aq "PRBS START ${name}" "${raw}" 2>/dev/null; then
|
||||
printf '0 0 0 SKIP'; return 0
|
||||
fi
|
||||
pass=$(grep -ac "PRBS ${name} poll=[0-9]* PASS" "${raw}" 2>/dev/null); pass=${pass:-0}
|
||||
fail=$(grep -ac "PRBS ${name} poll=[0-9]* FAIL" "${raw}" 2>/dev/null); fail=${fail:-0}
|
||||
polls=$(( pass + fail ))
|
||||
if [ "${polls}" -gt 0 ] && [ "${fail}" -eq 0 ]; then verdict=PASS; else verdict=FAIL; fi
|
||||
printf '%s %s %s %s' "${polls}" "${pass}" "${fail}" "${verdict}"
|
||||
}
|
||||
die() { printf '[ERROR] %s\n' "$*" >&2; exit 1; }
|
||||
|
||||
# bcm <unit> <dsh command> -- output on stdout, never trusts the exit status.
|
||||
# </dev/null so it cannot consume the caller's stdin.
|
||||
bcm() {
|
||||
local unit="$1" cmd="$2"
|
||||
${SUDO} "${BCMCMD}" -n "${unit}" -c "dsh -c \"${cmd}\"" </dev/null 2>&1
|
||||
}
|
||||
|
||||
# run_step <unit> <dsh command>
|
||||
# The command and its full output are written to the LOG via stderr, because
|
||||
# the worker has stderr pointed at the raw file. Only the output itself goes to
|
||||
# stdout, so `out="$(run_step ...)"` captures the output without swallowing the
|
||||
# log lines -- writing both to stdout would have put the whole record inside
|
||||
# the variable and left the log with nothing but the poll verdicts.
|
||||
run_step() {
|
||||
local unit="$1" cmd="$2" out
|
||||
out="$(bcm "${unit}" "${cmd}")"
|
||||
{
|
||||
printf '[%s] CMD : bcmcmd -n %s -c '\''dsh -c "%s"'\''\n' "$(ts)" "${unit}" "${cmd}"
|
||||
printf '%s\n' "${out}"
|
||||
} >&2
|
||||
printf '%s' "${out}"
|
||||
}
|
||||
|
||||
# Echo "<pid_a> <pid_b>" and return 0 while at least one worker is alive. A
|
||||
# port that was not started this run is recorded as "-", so a single-port run
|
||||
# is a first-class case rather than a half-broken two-port one.
|
||||
is_running() {
|
||||
local pa pb alive=0
|
||||
[ -f "${PID_FILE}" ] || return 1
|
||||
pa="$(sed -n '1p' "${PID_FILE}" 2>/dev/null)"; pa="${pa:--}"
|
||||
pb="$(sed -n '2p' "${PID_FILE}" 2>/dev/null)"; pb="${pb:--}"
|
||||
[[ "${pa}" =~ ^[0-9]+$ ]] && kill -0 "${pa}" 2>/dev/null && alive=1
|
||||
[[ "${pb}" =~ ^[0-9]+$ ]] && kill -0 "${pb}" 2>/dev/null && alive=1
|
||||
[ "${alive}" -eq 1 ] || return 1
|
||||
printf '%s %s' "${pa}" "${pb}"
|
||||
return 0
|
||||
}
|
||||
|
||||
###############################################################################
|
||||
# Worker -- one per port, launched by `start`
|
||||
###############################################################################
|
||||
WORKER_STOP=0
|
||||
worker_on_signal() { WORKER_STOP=1; }
|
||||
|
||||
# __worker <name> <unit> <phy> <rawfile>
|
||||
do_worker() {
|
||||
local name="$1" unit="$2" phy="$3" raw="$4"
|
||||
local n=0 pass=0 fail=0 out
|
||||
|
||||
exec >>"${raw}" 2>&1
|
||||
trap worker_on_signal INT TERM
|
||||
|
||||
printf '#############################################################\n'
|
||||
printf '[%s] PRBS START %s (unit %s, phy %s) poly=%s interval=%ss poll=%ss\n' \
|
||||
"$(ts)" "${name}" "${unit}" "${phy}" "${PRBS_POLY}" \
|
||||
"${PRBS_STAT_INTERVAL}" "${POLL_INTERVAL_SEC}"
|
||||
printf '#############################################################\n'
|
||||
|
||||
# --- setup ---
|
||||
printf '[%s] CMD : sfputil lpmode off %s\n' "$(ts)" "${name}"
|
||||
${SUDO} sfputil lpmode off "${name}" </dev/null 2>&1
|
||||
run_step "${unit}" "phy diag ${phy} prbs set ${PRBS_POLY}" >/dev/null
|
||||
run_step "${unit}" "phy diag ${phy} prbsstat STArt Interval=${PRBS_STAT_INTERVAL}" >/dev/null
|
||||
|
||||
sleep "${SETTLE_SEC}"
|
||||
|
||||
# --- poll ---
|
||||
while [ "${WORKER_STOP}" -eq 0 ]; do
|
||||
n=$(( n + 1 ))
|
||||
printf -- '---------- %s POLL %d @ %s ----------\n' "${name}" "${n}" "$(ts)"
|
||||
|
||||
out="$(run_step "${unit}" "phy diag ${phy} prbs get")"
|
||||
# Ber is recorded for the log only; it does not decide the verdict.
|
||||
run_step "${unit}" "phydiag ${phy} prbsstat Ber" >/dev/null
|
||||
|
||||
if printf '%s' "${out}" | grep -qF "${PASS_PATTERN}"; then
|
||||
pass=$(( pass + 1 ))
|
||||
printf '[%s] PRBS %s poll=%d PASS\n' "$(ts)" "${name}" "${n}"
|
||||
else
|
||||
fail=$(( fail + 1 ))
|
||||
printf '[%s] PRBS %s poll=%d FAIL\n' "$(ts)" "${name}" "${n}"
|
||||
fi
|
||||
|
||||
[ "${MAX_POLLS}" -gt 0 ] && [ "${n}" -ge "${MAX_POLLS}" ] && break
|
||||
[ "${WORKER_STOP}" -eq 0 ] || break
|
||||
sleep "${POLL_INTERVAL_SEC}"
|
||||
done
|
||||
|
||||
# --- teardown ---
|
||||
run_step "${unit}" "phydiag ${phy} prbsstat STOp" >/dev/null
|
||||
run_step "${unit}" "phydiag ${phy} prbs clear" >/dev/null
|
||||
printf '[%s] PRBS STOP %s polls=%d PASS=%d FAIL=%d\n' \
|
||||
"$(ts)" "${name}" "${n}" "${pass}" "${fail}"
|
||||
}
|
||||
|
||||
###############################################################################
|
||||
# Report
|
||||
###############################################################################
|
||||
# render_port <name> <unit> <phy> <raw>
|
||||
render_port() {
|
||||
local name="$1" unit="$2" phy="$3" raw="$4"
|
||||
local t polls pass fail verdict
|
||||
|
||||
t="$(port_tally "${name}" "${raw}")"
|
||||
polls="$(printf '%s' "${t}" | awk '{print $1}')"
|
||||
pass="$(printf '%s' "${t}" | awk '{print $2}')"
|
||||
fail="$(printf '%s' "${t}" | awk '{print $3}')"
|
||||
verdict="$(printf '%s' "${t}" | awk '{print $4}')"
|
||||
|
||||
if [ "${verdict}" = "SKIP" ]; then
|
||||
printf -- '----- %s (unit %s, phy %s) : not run this session -----\n\n' \
|
||||
"${name}" "${unit}" "${phy}"
|
||||
printf '[%s] RESULT %-12s polls=%-4s PASS=%-4s FAIL=%-4s %s\n\n' \
|
||||
"$(ts)" "${name}" "${polls}" "${pass}" "${fail}" "${verdict}"
|
||||
return 0
|
||||
fi
|
||||
|
||||
printf -- '----- %s (unit %s, phy %s) : last %s poll blocks -----\n' \
|
||||
"${name}" "${unit}" "${phy}" "${TAIL_ENTRIES}"
|
||||
grep -aE "^-{10} ${name} POLL|PRBS ${name} poll=|prbsstat Ber|^ *[0-9]+ *: " "${raw}" 2>/dev/null \
|
||||
| tail -n $(( TAIL_ENTRIES * 3 ))
|
||||
printf '\n'
|
||||
printf '[%s] RESULT %-12s polls=%-4s PASS=%-4s FAIL=%-4s %s\n\n' \
|
||||
"$(ts)" "${name}" "${polls}" "${pass}" "${fail}" "${verdict}"
|
||||
}
|
||||
|
||||
write_report() {
|
||||
local started
|
||||
started="$(sed -n '1p' "${STATE_FILE}" 2>/dev/null)"
|
||||
{
|
||||
printf '#############################################################\n'
|
||||
printf '[%s] 100G PRBS report\n' "$(ts)"
|
||||
printf ' started : %s\n' "${started:-unknown}"
|
||||
printf ' stopped : %s\n' "$(ts)"
|
||||
printf ' %s : unit %s, phy %s\n' "${PORT_A_NAME}" "${PORT_A_UNIT}" "${PORT_A_PHY}"
|
||||
printf ' %s : unit %s, phy %s\n' "${PORT_B_NAME}" "${PORT_B_UNIT}" "${PORT_B_PHY}"
|
||||
printf ' poly=%s prbsstat Interval=%s poll every %ss\n' \
|
||||
"${PRBS_POLY}" "${PRBS_STAT_INTERVAL}" "${POLL_INTERVAL_SEC}"
|
||||
printf ' a poll is PASS only when the output contains "%s"\n' "${PASS_PATTERN}"
|
||||
printf '#############################################################\n\n'
|
||||
|
||||
render_port "${PORT_A_NAME}" "${PORT_A_UNIT}" "${PORT_A_PHY}" "${RAW_A}"
|
||||
render_port "${PORT_B_NAME}" "${PORT_B_UNIT}" "${PORT_B_PHY}" "${RAW_B}"
|
||||
|
||||
# Taken after prbsstat STOp + prbs clear, so this is the recovered
|
||||
# state. During the test the same command would have reported DOWN.
|
||||
printf -- '--- show interfaces status %s,%s (after prbsstat STOp + prbs clear) ---\n' \
|
||||
"${PORT_A_NAME}" "${PORT_B_NAME}"
|
||||
${SUDO} show interfaces status "${PORT_A_NAME},${PORT_B_NAME}" </dev/null 2>&1
|
||||
} >> "${LOG_FILE}"
|
||||
}
|
||||
|
||||
###############################################################################
|
||||
# Sub-commands
|
||||
###############################################################################
|
||||
prepare_log_on_start() {
|
||||
local stamp
|
||||
case "${START_LOG_MODE}" in
|
||||
append) return 0 ;;
|
||||
archive)
|
||||
if [ -s "${LOG_FILE}" ]; then
|
||||
stamp="$(date '+%Y%m%d-%H%M%S')"
|
||||
mv -f "${LOG_FILE}" "${LOG_FILE}.${stamp}" || die "cannot archive ${LOG_FILE}"
|
||||
fi ;;
|
||||
new)
|
||||
[ -f "${LOG_FILE}" ] && { : > "${LOG_FILE}" || die "cannot truncate ${LOG_FILE}"; } ;;
|
||||
*) die "invalid START_LOG_MODE: ${START_LOG_MODE}" ;;
|
||||
esac
|
||||
}
|
||||
|
||||
# do_start [both|a|b|<port name>]
|
||||
do_start() {
|
||||
local which="${1:-${PORTS}}" pids pa="-" pb="-" run_a=0 run_b=0
|
||||
|
||||
case "${which}" in
|
||||
both|BOTH|all) run_a=1; run_b=1 ;;
|
||||
a|A|"${PORT_A_NAME}") run_a=1 ;;
|
||||
b|B|"${PORT_B_NAME}") run_b=1 ;;
|
||||
*) die "unknown port selector '${which}' (use: both | a | b | ${PORT_A_NAME} | ${PORT_B_NAME})" ;;
|
||||
esac
|
||||
|
||||
pids="$(is_running)" && die "already running (pids=${pids})"
|
||||
command -v "${BCMCMD}" >/dev/null 2>&1 || die "${BCMCMD} not found"
|
||||
|
||||
mkdir -p "${LOG_DIR}" || die "cannot create ${LOG_DIR}"
|
||||
prepare_log_on_start
|
||||
# Only the selected ports are truncated. A raw with no "PRBS START" line is
|
||||
# what the report uses to tell "not run this session" from "ran and failed".
|
||||
[ "${run_a}" -eq 1 ] && : > "${RAW_A}"
|
||||
[ "${run_b}" -eq 1 ] && : > "${RAW_B}"
|
||||
printf '%s\n' "$(ts)" > "${STATE_FILE}"
|
||||
|
||||
# One worker per selected port; with both, they run at the same time.
|
||||
# Invoked through bash so the file does not need the execute bit.
|
||||
if [ "${run_a}" -eq 1 ]; then
|
||||
setsid bash "${SCRIPT_PATH}" __worker \
|
||||
"${PORT_A_NAME}" "${PORT_A_UNIT}" "${PORT_A_PHY}" "${RAW_A}" >/dev/null 2>&1 &
|
||||
pa=$!
|
||||
disown "${pa}" 2>/dev/null
|
||||
fi
|
||||
if [ "${run_b}" -eq 1 ]; then
|
||||
setsid bash "${SCRIPT_PATH}" __worker \
|
||||
"${PORT_B_NAME}" "${PORT_B_UNIT}" "${PORT_B_PHY}" "${RAW_B}" >/dev/null 2>&1 &
|
||||
pb=$!
|
||||
disown "${pb}" 2>/dev/null
|
||||
fi
|
||||
printf '%s\n%s\n' "${pa}" "${pb}" > "${PID_FILE}"
|
||||
|
||||
sleep 1
|
||||
[ "${run_a}" -eq 1 ] && { kill -0 "${pa}" 2>/dev/null || die "${PORT_A_NAME} worker failed, see ${RAW_A}"; }
|
||||
[ "${run_b}" -eq 1 ] && { kill -0 "${pb}" 2>/dev/null || die "${PORT_B_NAME} worker failed, see ${RAW_B}"; }
|
||||
printf 'started (%s pid=%s, %s pid=%s)\nlog: %s\n' \
|
||||
"${PORT_A_NAME}" "${pa}" "${PORT_B_NAME}" "${pb}" "${LOG_FILE}"
|
||||
|
||||
# Deliberately NOT printing "show interfaces status" here. With PRBS armed
|
||||
# the link is out of normal operation and reports DOWN, which reads as a
|
||||
# failure to anyone glancing at the console. The status is shown in the
|
||||
# report instead, once PRBS has been cleared.
|
||||
}
|
||||
|
||||
do_stop() {
|
||||
local pids pa pb i
|
||||
pids="$(is_running)" || { printf 'not running\n'; rm -f "${PID_FILE}"; return 0; }
|
||||
pa="${pids% *}"; pb="${pids#* }"
|
||||
|
||||
# TERM lets each worker finish its poll and run prbsstat STOp / prbs clear.
|
||||
[[ "${pa}" =~ ^[0-9]+$ ]] && kill -TERM "${pa}" 2>/dev/null
|
||||
[[ "${pb}" =~ ^[0-9]+$ ]] && kill -TERM "${pb}" 2>/dev/null
|
||||
for (( i = 0; i < 120; i++ )); do
|
||||
kill -0 "${pa}" 2>/dev/null || kill -0 "${pb}" 2>/dev/null || break
|
||||
sleep 0.5
|
||||
done
|
||||
if kill -0 "${pa}" 2>/dev/null || kill -0 "${pb}" 2>/dev/null; then
|
||||
printf 'workers did not exit in time, sending SIGKILL (PRBS may be left running)\n' >&2
|
||||
kill -KILL "${pa}" 2>/dev/null
|
||||
kill -KILL "${pb}" 2>/dev/null
|
||||
fi
|
||||
|
||||
write_report
|
||||
rm -f "${PID_FILE}"
|
||||
printf 'stopped\nreport: %s\n' "${LOG_FILE}"
|
||||
}
|
||||
|
||||
do_report() {
|
||||
local name raw pass fail polls verdict
|
||||
printf '%-14s %-8s %-8s %-8s %s\n' PORT POLLS PASS FAIL RESULT
|
||||
printf '%-14s %-8s %-8s %-8s %s\n' -------------- -------- -------- -------- ------
|
||||
for spec in "${PORT_A_NAME}:${RAW_A}" "${PORT_B_NAME}:${RAW_B}"; do
|
||||
name="${spec%%:*}"; raw="${spec#*:}"
|
||||
set -- $(port_tally "${name}" "${raw}")
|
||||
printf '%-14s %-8s %-8s %-8s %s\n' "${name}" "$1" "$2" "$3" "$4"
|
||||
done
|
||||
}
|
||||
|
||||
do_status() {
|
||||
local pids
|
||||
if pids="$(is_running)"; then
|
||||
printf 'status : running (%s pid=%s, %s pid=%s)\n' \
|
||||
"${PORT_A_NAME}" "${pids% *}" "${PORT_B_NAME}" "${pids#* }"
|
||||
else
|
||||
printf 'status : stopped\n'
|
||||
fi
|
||||
printf 'log : %s\n' "${LOG_FILE}"
|
||||
do_report
|
||||
}
|
||||
|
||||
usage() {
|
||||
cat <<EOF
|
||||
Usage: ${SCRIPT_NAME} {start [both|a|b]|stop|status|report|clear}
|
||||
|
||||
start Set up PRBS and poll in the background. With no argument it runs
|
||||
\$PORTS (currently "${PORTS}"); "a" or "b" runs that port alone,
|
||||
which is how you tell a genuine port fault from the DUT not coping
|
||||
with two PRBS streams at once.
|
||||
start both ports at the same time
|
||||
start a ${PORT_A_NAME} only
|
||||
start b ${PORT_B_NAME} only
|
||||
Port status is NOT shown here: with PRBS armed the link reports
|
||||
DOWN, which looks like a failure. See the report instead.
|
||||
stop Stop polling, run prbsstat STOp + prbs clear on both ports, and
|
||||
render the report into the log
|
||||
report Print the PASS/FAIL tally per port
|
||||
status Show worker pids plus the current tally
|
||||
clear Remove the log and raw captures (must be stopped first)
|
||||
|
||||
Log file : ${LOG_FILE}
|
||||
Raw : ${RAW_A}
|
||||
${RAW_B}
|
||||
|
||||
A poll is PASS only when "phy diag <phy> prbs get" reports "${PASS_PATTERN}".
|
||||
prbsstat Ber is captured alongside every poll but does not decide the verdict.
|
||||
A port that was not run in this session reports SKIP, not FAIL.
|
||||
EOF
|
||||
}
|
||||
|
||||
###############################################################################
|
||||
# Entry point
|
||||
###############################################################################
|
||||
case "${1:-}" in
|
||||
start) shift; do_start "${1:-${PORTS}}" ;;
|
||||
stop) do_stop ;;
|
||||
status) do_status ;;
|
||||
report) do_report ;;
|
||||
clear)
|
||||
is_running >/dev/null && die "still running, stop it first"
|
||||
rm -f "${LOG_FILE}" "${LOG_FILE}".[0-9]* "${RAW_A}" "${RAW_B}" "${STATE_FILE}"
|
||||
printf 'log cleared\n' ;;
|
||||
__worker)
|
||||
shift
|
||||
do_worker "$1" "$2" "$3" "$4" ;;
|
||||
-h|--help|"") usage ;;
|
||||
*) printf '[ERROR] unknown sub-command: %s\n\n' "$1" >&2; usage; exit 1 ;;
|
||||
esac
|
||||
@@ -0,0 +1,241 @@
|
||||
#!/usr/bin/env bash
|
||||
# =============================================================================
|
||||
# pwr_brick.sh -- PDB / CPB power brick Vin / Iin / Vout / Iout / Temp
|
||||
# =============================================================================
|
||||
# Version History:
|
||||
# V1.1.0 2026-09-02 PAGE values and conversions taken from the ADPM12200
|
||||
# datasheet instead of the bring-up spreadsheet.
|
||||
# The spreadsheet wrote every PAGE in decimal but with an
|
||||
# 0x prefix, so four of the five selected the wrong page:
|
||||
# Vin PAGE 9 -> it said 0x00 (should be 0x09)
|
||||
# Iin PAGE 10 -> it said 0x10 (should be 0x0A)
|
||||
# Vout PAGE 2 -> it said 0x02 correct by luck
|
||||
# Iout PAGE 14 -> it said 0x14 (should be 0x0E)
|
||||
# Temp PAGE 18 -> it said 0x18 (should be 0x12)
|
||||
# Only Vout worked, because 2 reads the same either way.
|
||||
# That is why Iin/Iout answered 0xFFFF and Temp 0x0000.
|
||||
# Conversions now use the datasheet DIRECT equation; the
|
||||
# reverse-engineered BRICK_VIN_LSB is gone.
|
||||
# V1.0.0 2026-09-02 First version.
|
||||
# =============================================================================
|
||||
#
|
||||
# Path: CB FPGA F3 VI2C ch4 -> TCA954x mux 0x72 ch0 -> the bricks
|
||||
#
|
||||
# The four ADPM12200 modules put each measurement on its own PMBus PAGE, so a
|
||||
# PAGE write has to precede every read. blanton_pwr_data.sh does not send one
|
||||
# at all (its PDB table has page "-"), which is why it reports them as NA.
|
||||
#
|
||||
# READ_VIN 0x88 PAGE 9
|
||||
# READ_IIN 0x89 PAGE 10
|
||||
# READ_VOUT 0x8B PAGE 2
|
||||
# READ_IOUT 0x8C PAGE 14
|
||||
# READ_TEMPERATURE_1 0x8D PAGE 18
|
||||
#
|
||||
# DIRECT format, datasheet Table 3 ("PMBus Command Code Coefficients"):
|
||||
#
|
||||
# X = (1/m) x (Y x 10^-R - b) Y = the 2-byte two's complement word
|
||||
#
|
||||
# Voltage m=0.125 b=0 R=0 units mV -> X = Y x 8 mV
|
||||
# Current m=0.25 b=0 R=2 units A -> X = Y x 0.04 A
|
||||
# Temperature m=1 b=0 R=2 units degC -> X = Y x 0.01 degC
|
||||
#
|
||||
# Sanity check: READ_VOUT 0x05D4 = 1492 -> 1492 x 8 = 11936 mV, which is exactly
|
||||
# what PDB_IBC_SWB1_A_VOUT reports in 'show platform voltage'.
|
||||
#
|
||||
# ⚠️ Table 3 does not list READ_VIN or READ_IIN. They are decoded here with the
|
||||
# Voltage and Current coefficients respectively - reasonable, and consistent
|
||||
# with a ~50 V input, but not stated by the datasheet. PB_VIN_M / PB_IIN_M
|
||||
# below are where to change that if the part turns out to differ.
|
||||
#
|
||||
# ⚠️ CPB.PU37 (0x26) is a DIFFERENT part: no PAGE writes, and its own scaling
|
||||
# (Vin 0.25 V, Vout 2^-11 V, Iout 0.5 A per count of the mantissa). Those
|
||||
# three were confirmed against words this DUT returns.
|
||||
#
|
||||
# Usage:
|
||||
# ./pwr_brick.sh show # the table
|
||||
# ./pwr_brick.sh show -r # add the raw words
|
||||
# ./pwr_brick.sh help
|
||||
# =============================================================================
|
||||
|
||||
# --- User Configurable Section ----------------------------------------------
|
||||
PB_CH="${PB_CH:-4}" # ICB VI2C channel
|
||||
PB_MUX="${PB_MUX:-0x72}" # TCA954x address
|
||||
PB_MUX_SEL="${PB_MUX_SEL:-0x01}" # control byte: bit0 = channel 0
|
||||
PB_TRIES="${PB_TRIES:-8}" # reads per value before giving up
|
||||
|
||||
# PMBus PAGE per measurement (ADPM12200). Decimal page numbers written in hex.
|
||||
PB_PAGE_VIN="${PB_PAGE_VIN:-0x09}" # 9
|
||||
PB_PAGE_IIN="${PB_PAGE_IIN:-0x0A}" # 10
|
||||
PB_PAGE_VOUT="${PB_PAGE_VOUT:-0x02}" # 2
|
||||
PB_PAGE_IOUT="${PB_PAGE_IOUT:-0x0E}" # 14
|
||||
PB_PAGE_TEMP="${PB_PAGE_TEMP:-0x12}" # 18
|
||||
|
||||
# DIRECT coefficients: m, R, and the divisor that takes the datasheet unit to
|
||||
# the displayed unit (mV -> V is 1000; A and degC are already right).
|
||||
PB_VOUT_M="${PB_VOUT_M:-0.125}"; PB_VOUT_R="${PB_VOUT_R:-0}"; PB_VOUT_DIV="${PB_VOUT_DIV:-1000}"
|
||||
PB_VIN_M="${PB_VIN_M:-0.125}"; PB_VIN_R="${PB_VIN_R:-0}"; PB_VIN_DIV="${PB_VIN_DIV:-1000}"
|
||||
PB_IOUT_M="${PB_IOUT_M:-0.25}"; PB_IOUT_R="${PB_IOUT_R:-2}"; PB_IOUT_DIV="${PB_IOUT_DIV:-1}"
|
||||
PB_IIN_M="${PB_IIN_M:-0.25}"; PB_IIN_R="${PB_IIN_R:-2}"; PB_IIN_DIV="${PB_IIN_DIV:-1}"
|
||||
PB_TEMP_M="${PB_TEMP_M:-1}"; PB_TEMP_R="${PB_TEMP_R:-2}"; PB_TEMP_DIV="${PB_TEMP_DIV:-1}"
|
||||
|
||||
# CPB.PU37 only (different part, no PAGE, mantissa-based)
|
||||
CPB_VIN_LSB="${CPB_VIN_LSB:-0.25}" # V per count of the mantissa
|
||||
CPB_IOUT_LSB="${CPB_IOUT_LSB:-0.5}" # A per count of the mantissa
|
||||
|
||||
# Plausibility windows. A decoded value outside its window is discarded and the
|
||||
# read retried; this is what rejects the corrupted words this bus produces - a
|
||||
# bad high byte turns 11.98 V into 32.00 V, which "reject 0xFFFF" never catches.
|
||||
PB_VIN_LO="${PB_VIN_LO:-30}"; PB_VIN_HI="${PB_VIN_HI:-70}"
|
||||
PB_VOUT_LO="${PB_VOUT_LO:-8}"; PB_VOUT_HI="${PB_VOUT_HI:-14}"
|
||||
PB_IIN_LO="${PB_IIN_LO:-0}"; PB_IIN_HI="${PB_IIN_HI:-100}"
|
||||
PB_IOUT_LO="${PB_IOUT_LO:-0}"; PB_IOUT_HI="${PB_IOUT_HI:-300}"
|
||||
PB_TEMP_LO="${PB_TEMP_LO:-0}"; PB_TEMP_HI="${PB_TEMP_HI:-125}"
|
||||
|
||||
# All-ones and all-zeros are the two ways this bus says "nobody answered", and
|
||||
# both can decode into a value that sits inside its window - 0x0000 on the
|
||||
# temperature register reads as a perfectly plausible 0 C. Rejected as raw
|
||||
# words, before any conversion, so no window has to be bent to catch them.
|
||||
PB_REJECT_FFFF="${PB_REJECT_FFFF:-1}"
|
||||
PB_REJECT_0000="${PB_REJECT_0000:-1}"
|
||||
|
||||
# "location:bricks:slave:netname:kind" kind = adpm (PAGE per read) | cpb
|
||||
PB_DEVS=(
|
||||
"SWB0.PU207:BRICKS1:0x62:P12V_SWB0_L:adpm"
|
||||
"SWB0.PU13:BRICKS2:0x63:P12V_SWB0_L:adpm"
|
||||
"SWB1.PU332:BRICKS1:0x60:P12V_SWB1_R:adpm"
|
||||
"SWB1.PU85:BRICKS2:0x61:P12V_SWB1_R:adpm"
|
||||
"CPB.PU37:BRICK:0x26:P12V_STBY:cpb"
|
||||
)
|
||||
# -----------------------------------------------------------------------------
|
||||
|
||||
PB_NA="NA"
|
||||
PB_RAW=0
|
||||
PB_DIR="$(cd "$(dirname "${BASH_SOURCE[0]}")" 2>/dev/null && pwd)"
|
||||
|
||||
_pb_err() { echo -e "[\033[31mERR \033[0m] $*" >&2; }
|
||||
|
||||
# --- backend -----------------------------------------------------------------
|
||||
if ! declare -F vi2c_read >/dev/null 2>&1; then
|
||||
if [ -r "$PB_DIR/blanton_icb_vi2c.sh" ]; then
|
||||
# shellcheck source=/dev/null
|
||||
source "$PB_DIR/blanton_icb_vi2c.sh" >/dev/null 2>&1
|
||||
else
|
||||
_pb_err "blanton_icb_vi2c.sh not found next to this script"; exit 1
|
||||
fi
|
||||
fi
|
||||
declare -F vi2c_read >/dev/null 2>&1 || { _pb_err "vi2c_read() still undefined"; exit 1; }
|
||||
|
||||
# --- decoders ----------------------------------------------------------------
|
||||
# DIRECT: X = (1/m) x (Y x 10^-R - b), b = 0. Y is two's complement, so a word
|
||||
# above 0x7FFF is negative - that matters for temperature, not for the rails.
|
||||
_pb_direct() {
|
||||
awk -v w=$(( $1 )) -v m="$2" -v r="$3" -v d="$4" 'BEGIN{
|
||||
if (w > 32767) w -= 65536
|
||||
printf "%.3f", ((w * (10 ^ -r)) / m) / d
|
||||
}'
|
||||
}
|
||||
# SLINEAR11 mantissa only (bits[10:0], two's complement) - CPB.PU37 path.
|
||||
_pb_mant() { awk -v w=$(( $1 )) 'BEGIN{ m = w % 2048; if (m > 1023) m -= 2048; print m }'; }
|
||||
_pb_mul() { awk -v a="$1" -v b="$2" 'BEGIN{ printf "%.3f", a * b }'; }
|
||||
_pb_lin11() { awk -v w=$(( $1 )) 'BEGIN{ printf "%.4f", w * (2.0 ^ -11) }'; }
|
||||
_pb_in() { awk -v x="$1" -v lo="$2" -v hi="$3" 'BEGIN{ exit !(x >= lo && x <= hi) }'; }
|
||||
|
||||
# _pb_word <slave> <page|-> <reg> -> "0xWWWW"
|
||||
_pb_word() {
|
||||
local slave="$1" page="$2" reg="$3" out
|
||||
[ "$page" != "-" ] && vi2c_write "$PB_CH" "$slave" 0x00 "$page" >/dev/null 2>&1
|
||||
out=$(vi2c_read "$PB_CH" "$slave" "$reg" 2 2>/dev/null \
|
||||
| sed -n 's/.*\[0x\(..\) 0x\(..\)\].*/0x\2\1/p')
|
||||
[ -n "$out" ] && echo "$out"
|
||||
}
|
||||
|
||||
# _pb_val <slave> <page|-> <reg> <decoder> <a1> <a2> <a3> <lo> <hi>
|
||||
# Retries until the decoded value lands inside the window; echoes "value raw".
|
||||
_pb_val() {
|
||||
local slave="$1" page="$2" reg="$3" dec="$4" a1="$5" a2="$6" a3="$7" lo="$8" hi="$9"
|
||||
local i w v
|
||||
for (( i = 0; i < PB_TRIES; i++ )); do
|
||||
w=$(_pb_word "$slave" "$page" "$reg") || continue
|
||||
[ -z "$w" ] && continue
|
||||
[ "$PB_REJECT_FFFF" = "1" ] && [ "$(( w ))" -eq 65535 ] && continue
|
||||
[ "$PB_REJECT_0000" = "1" ] && [ "$(( w ))" -eq 0 ] && continue
|
||||
case "$dec" in
|
||||
direct) v=$(_pb_direct "$w" "$a1" "$a2" "$a3") ;;
|
||||
mant) v=$(_pb_mul "$(_pb_mant "$w")" "$a1") ;;
|
||||
lin11) v=$(_pb_lin11 "$w") ;;
|
||||
esac
|
||||
_pb_in "$v" "$lo" "$hi" || continue
|
||||
echo "$v $w"; return 0
|
||||
done
|
||||
echo "$PB_NA -"; return 1
|
||||
}
|
||||
|
||||
_pb_mux_open() {
|
||||
# The mux takes a bare control byte and vi2c_write always sends a register
|
||||
# first, so passing 0x01 as both makes the part latch 0x01 either way.
|
||||
vi2c_init "$PB_CH" >/dev/null 2>&1
|
||||
vi2c_write "$PB_CH" "$PB_MUX" "$PB_MUX_SEL" "$PB_MUX_SEL" >/dev/null 2>&1
|
||||
return 0
|
||||
}
|
||||
|
||||
# --- show --------------------------------------------------------------------
|
||||
pwr_brick_show() {
|
||||
_pb_mux_open
|
||||
echo "==== PDB / CPB power bricks (VI2C ch${PB_CH} -> mux ${PB_MUX} ch0) ===="
|
||||
printf '%-3s %-12s %-8s %-7s %-14s %10s %10s %10s %10s %9s\n' \
|
||||
"No." "Location" "Bricks" "SlaveID" "Netname" \
|
||||
"Vin(V)" "Iin(A)" "Vout(V)" "Iout(A)" "Temp(C)"
|
||||
printf '%s\n' "--------------------------------------------------------------------------------------------------------------"
|
||||
|
||||
local n=0 entry loc bk slave net kind vi ii vo io tp
|
||||
for entry in "${PB_DEVS[@]}"; do
|
||||
IFS=':' read -r loc bk slave net kind <<< "$entry"
|
||||
n=$(( n + 1 ))
|
||||
if [ "$kind" = "cpb" ]; then
|
||||
vi=$(_pb_val "$slave" - 0x88 mant "$CPB_VIN_LSB" "" "" "$PB_VIN_LO" "$PB_VIN_HI")
|
||||
ii="$PB_NA -" # no input current on this part
|
||||
vo=$(_pb_val "$slave" - 0x8B lin11 "" "" "" "$PB_VOUT_LO" "$PB_VOUT_HI")
|
||||
io=$(_pb_val "$slave" - 0x8C mant "$CPB_IOUT_LSB" "" "" "$PB_IOUT_LO" "$PB_IOUT_HI")
|
||||
tp=$(_pb_val "$slave" - 0x8D direct 1 2 1 "$PB_TEMP_LO" "$PB_TEMP_HI")
|
||||
else
|
||||
vi=$(_pb_val "$slave" "$PB_PAGE_VIN" 0x88 direct "$PB_VIN_M" "$PB_VIN_R" "$PB_VIN_DIV" "$PB_VIN_LO" "$PB_VIN_HI")
|
||||
ii=$(_pb_val "$slave" "$PB_PAGE_IIN" 0x89 direct "$PB_IIN_M" "$PB_IIN_R" "$PB_IIN_DIV" "$PB_IIN_LO" "$PB_IIN_HI")
|
||||
vo=$(_pb_val "$slave" "$PB_PAGE_VOUT" 0x8B direct "$PB_VOUT_M" "$PB_VOUT_R" "$PB_VOUT_DIV" "$PB_VOUT_LO" "$PB_VOUT_HI")
|
||||
io=$(_pb_val "$slave" "$PB_PAGE_IOUT" 0x8C direct "$PB_IOUT_M" "$PB_IOUT_R" "$PB_IOUT_DIV" "$PB_IOUT_LO" "$PB_IOUT_HI")
|
||||
tp=$(_pb_val "$slave" "$PB_PAGE_TEMP" 0x8D direct "$PB_TEMP_M" "$PB_TEMP_R" "$PB_TEMP_DIV" "$PB_TEMP_LO" "$PB_TEMP_HI")
|
||||
fi
|
||||
printf '%-3s %-12s %-8s %-7s %-14s %10s %10s %10s %10s %9s\n' \
|
||||
"$n" "$loc" "$bk" "$slave" "$net" \
|
||||
"${vi%% *}" "${ii%% *}" "${vo%% *}" "${io%% *}" "${tp%% *}"
|
||||
[ "$PB_RAW" = "1" ] && printf '%-3s %-12s %-8s %-7s %-14s %10s %10s %10s %10s %9s\n' \
|
||||
"" "" "" "" "raw" "${vi##* }" "${ii##* }" "${vo##* }" "${io##* }" "${tp##* }"
|
||||
done
|
||||
# No trailing notes on stdout: this table gets pasted into reports and
|
||||
# captured into the master console log, and a caveat printed every run stops
|
||||
# being read after the second time. The caveats live in the file header -
|
||||
# the one that still matters is that READ_VIN / READ_IIN are not in the
|
||||
# datasheet coefficient table and borrow the Voltage / Current sets.
|
||||
}
|
||||
|
||||
pwr_brick_help() {
|
||||
echo -e "\033[1mpwr_brick.sh - PDB / CPB power brick readings\033[0m"
|
||||
echo ""
|
||||
echo -e " \033[33mshow\033[0m [-r] Vin / Iin / Vout / Iout / Temp for all 5 bricks (-r adds raw)"
|
||||
echo -e " \033[33mhelp\033[0m"
|
||||
echo ""
|
||||
echo -e " Path : VI2C ch$PB_CH -> mux $PB_MUX ch0"
|
||||
echo -e " The four ADPM12200 modules need a PMBus PAGE per measurement:"
|
||||
echo -e " Vin $PB_PAGE_VIN(9) Iin $PB_PAGE_IIN(10) Vout $PB_PAGE_VOUT(2) Iout $PB_PAGE_IOUT(14) Temp $PB_PAGE_TEMP(18)"
|
||||
echo -e " DIRECT format, datasheet Table 3: X = (1/m) x (Y x 10^-R - b)"
|
||||
echo -e " CPB.PU37 (0x26) is a different part - no PAGE, its own scaling."
|
||||
echo -e " \033[33mREAD_VIN / READ_IIN are not in Table 3; they borrow Voltage / Current.\033[0m"
|
||||
}
|
||||
|
||||
case "${1:-help}" in
|
||||
show)
|
||||
shift 2>/dev/null
|
||||
[ "${1:-}" = "-r" ] && PB_RAW=1
|
||||
pwr_brick_show ;;
|
||||
help|-h|--help) pwr_brick_help ;;
|
||||
*) _pb_err "unknown sub-command: $1"; pwr_brick_help; exit 1 ;;
|
||||
esac
|
||||
@@ -0,0 +1,203 @@
|
||||
#!/bin/bash
|
||||
###############################################################################
|
||||
# usb_target.sh
|
||||
#
|
||||
# Version : V1.1.0
|
||||
# Author : ETWen
|
||||
# Date : 20260825
|
||||
# Purpose : Auto-detect an inserted USB mass-storage device and report either
|
||||
# its device node, its mount point, or both.
|
||||
#
|
||||
# stdout : requested value(s) only, for $(...) capture
|
||||
# stderr : diagnostic messages
|
||||
#
|
||||
# Usage : usb_target.sh [-o dev|mnt|both|id] [-n] [-r seconds]
|
||||
#
|
||||
# -o dev print partition device node (e.g. /dev/sda1)
|
||||
# -o mnt print mount point (e.g. /mnt/usb) [default]
|
||||
# -o both print "<dev> <mnt>" on one line
|
||||
# -o id print stable by-id path (/dev/disk/by-id/...)
|
||||
# -n detect only, do not mount
|
||||
# -r sec udev enumeration wait, default 15
|
||||
#
|
||||
# Exit : 0 success
|
||||
# 1 no USB mass-storage found
|
||||
# 2 multiple USB disks detected (refuse to guess)
|
||||
# 3 no usable filesystem on the device
|
||||
# 4 mount failed
|
||||
# 5 mounted but not writable
|
||||
#
|
||||
# Version History
|
||||
# V1.0.0 20260825 Initial Version
|
||||
# V1.1.0 20260825 Add -o/-n/-r options; expose device node and by-id path
|
||||
###############################################################################
|
||||
set -u
|
||||
|
||||
MNT_BASE="/mnt/usb"
|
||||
RETRY=15
|
||||
OUTPUT="mnt"
|
||||
DO_MOUNT=1
|
||||
|
||||
log() { echo "[usb] $*" >&2; } # diagnostics go to stderr; stdout stays clean
|
||||
|
||||
while getopts "o:nr:h" opt; do
|
||||
case "$opt" in
|
||||
o) OUTPUT="$OPTARG" ;;
|
||||
n) DO_MOUNT=0 ;;
|
||||
r) RETRY="$OPTARG" ;;
|
||||
h) sed -n '3,30p' "$0" >&2; exit 0 ;;
|
||||
*) log "invalid option"; exit 1 ;;
|
||||
esac
|
||||
done
|
||||
shift $((OPTIND - 1))
|
||||
|
||||
case "$OUTPUT" in
|
||||
dev|mnt|both|id) ;;
|
||||
*) log "invalid -o value: $OUTPUT"; exit 1 ;;
|
||||
esac
|
||||
|
||||
# "-o dev" / "-o id" alone does not require mounting.
|
||||
[ "$OUTPUT" = "dev" ] && [ "$DO_MOUNT" = "1" ] && DO_MOUNT=0
|
||||
[ "$OUTPUT" = "id" ] && [ "$DO_MOUNT" = "1" ] && DO_MOUNT=0
|
||||
|
||||
#------------------------------------------------------------------------------
|
||||
# Identify the physical disk(s) backing rootfs / /host so they can be excluded.
|
||||
# Needed because some platforms boot from a USB DOM, which also reports TRAN=usb.
|
||||
#------------------------------------------------------------------------------
|
||||
get_system_disk() {
|
||||
local src
|
||||
for mp in /host / ; do
|
||||
src=$(findmnt -no SOURCE "$mp" 2>/dev/null) || continue
|
||||
lsblk -no PKNAME "$src" 2>/dev/null | head -1
|
||||
done | sort -u
|
||||
}
|
||||
|
||||
#------------------------------------------------------------------------------
|
||||
# List candidate USB disks (whole devices, not partitions).
|
||||
#------------------------------------------------------------------------------
|
||||
find_usb_disks() {
|
||||
local sysdisks; sysdisks=$(get_system_disk)
|
||||
lsblk -dn -o NAME,TYPE,TRAN,RM 2>/dev/null | while read -r name type tran rm; do
|
||||
[ "$type" = "disk" ] || continue
|
||||
case "$name" in loop*|ram*|dm-*|sr*|zram*) continue ;; esac
|
||||
|
||||
# Older util-linux may not expose the TRAN column; fall back to sysfs.
|
||||
if [ "$tran" != "usb" ]; then
|
||||
readlink -f "/sys/block/$name/device" 2>/dev/null | grep -q '/usb[0-9]' || continue
|
||||
[ "$rm" = "1" ] || continue
|
||||
fi
|
||||
|
||||
echo "$sysdisks" | grep -qx "$name" && { log "skip $name (system disk)"; continue; }
|
||||
echo "/dev/$name"
|
||||
done
|
||||
}
|
||||
|
||||
#------------------------------------------------------------------------------
|
||||
# Pick a mountable partition from a disk; fall back to the whole device for
|
||||
# superfloppy layouts (filesystem written directly, no partition table).
|
||||
#------------------------------------------------------------------------------
|
||||
pick_partition() {
|
||||
local disk="$1" p
|
||||
p=$(lsblk -ln -o NAME,TYPE,FSTYPE "$disk" | \
|
||||
awk '$2=="part" && $3!="" {print "/dev/"$1; exit}')
|
||||
[ -n "$p" ] && { echo "$p"; return; }
|
||||
[ -n "$(lsblk -dn -o FSTYPE "$disk")" ] && echo "$disk"
|
||||
}
|
||||
|
||||
#------------------------------------------------------------------------------
|
||||
# Resolve a device node to a stable /dev/disk/by-id path, if one exists.
|
||||
#------------------------------------------------------------------------------
|
||||
resolve_by_id() {
|
||||
local dev="$1" real link
|
||||
real=$(readlink -f "$dev")
|
||||
for link in /dev/disk/by-id/*; do
|
||||
[ -e "$link" ] || continue
|
||||
case "$link" in *-part*|*) ;; esac
|
||||
[ "$(readlink -f "$link")" = "$real" ] && { echo "$link"; return 0; }
|
||||
done
|
||||
return 1
|
||||
}
|
||||
|
||||
#------------------------------------------------------------------------------
|
||||
# Main
|
||||
#------------------------------------------------------------------------------
|
||||
disks=""
|
||||
for i in $(seq 1 "$RETRY"); do
|
||||
disks=$(find_usb_disks)
|
||||
[ -n "$disks" ] && break
|
||||
sleep 1
|
||||
done
|
||||
|
||||
[ -z "$disks" ] && { log "no USB mass-storage found"; exit 1; }
|
||||
|
||||
n=$(echo "$disks" | wc -l)
|
||||
if [ "$n" -gt 1 ]; then
|
||||
log "multiple USB disks detected, refuse to guess:"
|
||||
log "$disks"
|
||||
exit 2
|
||||
fi
|
||||
disk="$disks"
|
||||
|
||||
part=$(pick_partition "$disk")
|
||||
[ -z "$part" ] && { log "$disk has no usable filesystem"; exit 3; }
|
||||
|
||||
fstype=$(lsblk -no FSTYPE "$part")
|
||||
log "found $part (disk=$disk fstype=$fstype)"
|
||||
|
||||
# --- device-node only: no mount needed ---------------------------------------
|
||||
if [ "$OUTPUT" = "dev" ]; then
|
||||
echo "$part"
|
||||
exit 0
|
||||
fi
|
||||
|
||||
if [ "$OUTPUT" = "id" ]; then
|
||||
if byid=$(resolve_by_id "$part"); then
|
||||
echo "$byid"
|
||||
exit 0
|
||||
fi
|
||||
log "no by-id path for $part, falling back to device node"
|
||||
echo "$part"
|
||||
exit 0
|
||||
fi
|
||||
|
||||
# --- mount point required ----------------------------------------------------
|
||||
mp=$(lsblk -no MOUNTPOINT "$part" | head -1)
|
||||
|
||||
if [ -z "$mp" ] && [ "$DO_MOUNT" = "0" ]; then
|
||||
log "$part is not mounted and -n was given"
|
||||
exit 4
|
||||
fi
|
||||
|
||||
if [ -z "$mp" ]; then
|
||||
log "mounting $part -> $MNT_BASE"
|
||||
mkdir -p "$MNT_BASE"
|
||||
|
||||
# exfat/ntfs are not always built into the platform kernel.
|
||||
case "$fstype" in
|
||||
exfat) grep -qw exfat /proc/filesystems || modprobe exfat 2>/dev/null ;;
|
||||
ntfs) grep -qw ntfs3 /proc/filesystems || modprobe ntfs3 2>/dev/null ;;
|
||||
esac
|
||||
|
||||
if ! mount -o rw,noatime "$part" "$MNT_BASE" 2>/dev/null; then
|
||||
log "mount failed (fstype=$fstype)"
|
||||
exit 4
|
||||
fi
|
||||
mp="$MNT_BASE"
|
||||
|
||||
# Verify it is actually writable (read-only media, dirty FAT, or full device).
|
||||
if ! touch "$mp/.wtest" 2>/dev/null; then
|
||||
log "mounted read-only or no space left"
|
||||
umount "$mp"
|
||||
exit 5
|
||||
fi
|
||||
rm -f "$mp/.wtest"
|
||||
else
|
||||
log "$part already mounted at $mp"
|
||||
fi
|
||||
|
||||
if [ "$OUTPUT" = "both" ]; then
|
||||
echo "$part $mp"
|
||||
else
|
||||
echo "$mp"
|
||||
fi
|
||||
exit 0
|
||||
@@ -7,6 +7,10 @@ strTestcase="ENV" ;ENV,EMC,Margin...etc
|
||||
EN_Margin = 0 ; 1: Enable Margin Test, 0: Disable Margin Test
|
||||
EN_log = 1 ; 1: Enable log, 0: Disable log
|
||||
|
||||
;================================================================
|
||||
; FAN_SPEED
|
||||
;================================================================
|
||||
FAN_SPEED = 100
|
||||
;================================================================
|
||||
; Switch Unit Population
|
||||
;================================================================
|
||||
|
||||
@@ -16,3 +16,8 @@ wait prompt_sonic_root
|
||||
sendln "show platform leak status"
|
||||
wait prompt_sonic_root
|
||||
sendln "show platform leak channels"
|
||||
|
||||
wait prompt_sonic_root
|
||||
sendln "tpm-dut-test fru"
|
||||
wait prompt_sonic_root
|
||||
sendln "tpm-dut-test tpm-read"
|
||||
@@ -1,8 +1,11 @@
|
||||
; All Event
|
||||
wait prompt_sonic_root
|
||||
sendln "date"
|
||||
sendln "dmesg -T | grep -Ei 'error|fail(ed|ure)?|fault|critical|panic|timeout'"
|
||||
|
||||
; i2c event
|
||||
wait prompt_sonic_root
|
||||
sendln "dmesg | grep -i error"
|
||||
sendln "dmesg -T | grep -Ei 'error|fail(ed|ure)?|fault|critical|panic|timeout' | grep -i i2c"
|
||||
|
||||
; Clear Event
|
||||
wait prompt_sonic_root
|
||||
sendln "dmesg | grep -i fail"
|
||||
wait prompt_sonic_root
|
||||
sendln "dmesg | grep -i warning"
|
||||
sendln "dmesg -C"
|
||||
|
||||
@@ -4,7 +4,7 @@
|
||||
; Date : 2026-08-21
|
||||
; Author : ETWen
|
||||
; =============================================================================
|
||||
; Wait until every switch unit ENABLED below reports more than WT_MIN ports up:
|
||||
; Wait until every switch unit ENABLED below reports at least WT_MIN ports up:
|
||||
; bcmcmd -n <u> -c ps | grep -w up | wc -l
|
||||
;
|
||||
; The DUT is not always fully populated. Which units exist is declared ONCE in
|
||||
@@ -34,10 +34,15 @@
|
||||
; V3.1.0 2026-08-21 Take the population from SWB_UNIT0 / SWB_UNIT1 in
|
||||
; config.ttl instead of local copies, so this wait and the
|
||||
; traffic blocks cannot drift apart.
|
||||
; V3.1.1 2026-08-25 WT_INTERVAL 10 -> 60. Fix the WT_MIN comments: the test
|
||||
; has been `< WT_MIN` (at least) since the threshold was
|
||||
; corrected, but the text still said "more than", which is
|
||||
; the off-by-one that once hung Script A.
|
||||
; =============================================================================
|
||||
; ---- which units to wait for: SWB_UNIT0 / SWB_UNIT1, set in config.ttl ------
|
||||
WT_MIN = 216 ; an enabled unit must report MORE than this many ports up
|
||||
WT_INTERVAL = 10 ; seconds between polls
|
||||
WT_MIN = 216 ; an enabled unit must report AT LEAST this many ports up
|
||||
; (216 = 108 loopback pairs x 2, i.e. every cabled port)
|
||||
WT_INTERVAL = 60 ; seconds between polls
|
||||
; -----------------------------------------------------------------------------
|
||||
|
||||
timeout = 60 ; per-wait cap; bcmcmd ps is not instant
|
||||
|
||||
@@ -0,0 +1,63 @@
|
||||
|
||||
|
||||
echo PORTS0=$(bcmcmd -n 0 -c ps | grep -w up | wc -l)
|
||||
echo PORTS0=$(bcmcmd -n 1 -c ps | grep -w up | wc -l)
|
||||
|
||||
show interfaces status Ethernet513,Ethernet514
|
||||
|
||||
|
||||
//100G Port 513
|
||||
sudo sfputil lpmode off Ethernet513
|
||||
bcmcmd -n 0 -c 'dsh -c "phy diag 268 prbs set p=3"'
|
||||
bcmcmd -n 0 -c 'dsh -c "phy diag 268 prbsstat STArt Interval=5"'
|
||||
|
||||
bcmcmd -n 0 -c 'dsh -c "phy diag 268 prbs get"'
|
||||
bcmcmd -n 0 -c 'dsh -c "phydiag 268 prbsstat Ber"'
|
||||
|
||||
bcmcmd -n 0 -c 'dsh -c "phydiag 268 prbsstat STOp"'
|
||||
bcmcmd -n 0 -c 'dsh -c "phydiag 268 prbs clear"'
|
||||
|
||||
|
||||
//100G Port 514
|
||||
sudo sfputil lpmode off Ethernet514
|
||||
bcmcmd -n 1 -c 'dsh -c "phy diag 268 prbs set p=3"'
|
||||
bcmcmd -n 1 -c 'dsh -c "phy diag 268 prbsstat STArt Interval=5"'
|
||||
bcmcmd -n 1 -c 'dsh -c "phy diag 268 prbs get"'
|
||||
bcmcmd -n 1 -c 'dsh -c "phydiag 268 prbsstat Ber"'
|
||||
bcmcmd -n 1 -c 'dsh -c "phydiag 268 prbsstat STOp"'
|
||||
bcmcmd -n 1 -c 'dsh -c "phydiag 268 prbs clear"'
|
||||
|
||||
|
||||
|
||||
|
||||
|
||||
//100G Port 513
|
||||
sudo sfputil lpmode off Ethernet513
|
||||
sudo sfputil lpmode off Ethernet514
|
||||
|
||||
bcmcmd -n 0 -c 'dsh -c "phy diag 268 prbs set p=3"'
|
||||
sleep 1
|
||||
bcmcmd -n 1 -c 'dsh -c "phy diag 268 prbs set p=3"'
|
||||
|
||||
bcmcmd -n 0 -c 'dsh -c "phy diag 268 prbsstat STArt Interval=5"'
|
||||
sleep 1
|
||||
bcmcmd -n 1 -c 'dsh -c "phy diag 268 prbsstat STArt Interval=5"'
|
||||
|
||||
bcmcmd -n 0 -c 'dsh -c "phy diag 268 prbs get"'
|
||||
sleep 1
|
||||
bcmcmd -n 1 -c 'dsh -c "phy diag 268 prbs get"'
|
||||
|
||||
bcmcmd -n 0 -c 'dsh -c "phydiag 268 prbsstat Ber"'
|
||||
sleep 1
|
||||
bcmcmd -n 1 -c 'dsh -c "phydiag 268 prbsstat Ber"'
|
||||
|
||||
bcmcmd -n 0 -c 'dsh -c "phydiag 268 prbsstat STOp"'
|
||||
sleep 1
|
||||
bcmcmd -n 1 -c 'dsh -c "phydiag 268 prbsstat STOp"'
|
||||
|
||||
bcmcmd -n 0 -c 'dsh -c "phydiag 268 prbs clear"'
|
||||
sleep 1
|
||||
bcmcmd -n 1 -c 'dsh -c "phydiag 268 prbs clear"'
|
||||
|
||||
|
||||
|
||||
@@ -0,0 +1,12 @@
|
||||
//Init
|
||||
bcmcmd -n 0 -c 'mirror init'
|
||||
bcmcmd -n 0 -c 'mirror port ce0 Mode=Ingress DestPort=ce0'
|
||||
bcmcmd -n 0 -c 'vlan create 138'
|
||||
bcmcmd -n 0 -c 'vlan add 138 pbm=ce0'
|
||||
|
||||
//Start
|
||||
bcmcmd -n 0 -c 'tx 100 length=512 VLantag=138'
|
||||
|
||||
//stop
|
||||
bcmcmd -n 0 -c 'mirror port ce0 Mode=Off'
|
||||
bcmcmd -n 0 -c 'vlan remove 138 pbm=ce0'
|
||||
@@ -0,0 +1,900 @@
|
||||
bcmcmd -n 0 -c " dsh -c 'phydiag 1-24,40-96,112-168,184-240,256-259,270-308,310-327,342-380,382-399,414-452,454-471,486-524,526-543,558-565 prbs set p=3' "
|
||||
bcmcmd -n 0 -c " dsh -c 'phydiag 1-24,40-96,112-168,184-240,256-259,270-308,310-327,342-380,382-399,414-452,454-471,486-524,526-543,558-565 prbs get' "
|
||||
|
||||
bcmcmd -n 0 -c " dsh -c 'phydiag 1-24,40-96,112-168,184-240,256-259,270-308,310-327,342-380,382-399,414-452,454-471,486-524,526-543,558-565 prbsstat STArt Interval=30' "
|
||||
bcmcmd -n 0 -c " dsh -c 'phydiag 1-24,40-96,112-168,184-240,256-259,270-308,310-327,342-380,382-399,414-452,454-471,486-524,526-543,558-565 prbsstat Ber' "
|
||||
|
||||
bcmcmd -n 0 -c " dsh -c 'phydiag 1-24,40-96,112-168,184-240,256-259,270-308,310-327,342-380,382-399,414-452,454-471,486-524,526-543,558-565 prbsstat STOp' "
|
||||
bcmcmd -n 0 -c " dsh -c 'phydiag 1-24,40-96,112-168,184-240,256-259,270-308,310-327,342-380,382-399,414-452,454-471,486-524,526-543,558-565 prbs clear' "
|
||||
|
||||
root@sonic:~# bcmcmd -n 0 -c " dsh -c 'phydiag 1-24,40-96,112-168,184-240,256-259,270-308,310-327,342-380,382-399,414-452,454-471,486-524,526-543,558-565 prbs set p=3' "
|
||||
dsh -c 'phydiag 1-24,40-96,112-168,184-240,256-259,270-308,310-327,342-380,382-399,414-452,454-471,486-524,526-543,558-565 prbs set p=3'
|
||||
drivshell>
|
||||
root@sonic:~# bcmcmd -n 0 -c " dsh -c 'phydiag 1-24,40-96,112-168,184-240,256-259,270-308,310-327,342-380,382-399,414-452,454-471,486-524,526-543,558-565 prbs get' "
|
||||
dsh -c 'phydiag 1-24,40-96,112-168,184-240,256-259,270-308,310-327,342-380,382-399,414-452,454-471,486-524,526-543,558-565 prbs get'
|
||||
1 : PRBS OK!has been unlocked since last call
|
||||
2 : PRBS OK!has been unlocked since last call
|
||||
3 : PRBS OK!has been unlocked since last call
|
||||
4 : PRBS OK!has been unlocked since last call
|
||||
5 : PRBS OK!has been unlocked since last call
|
||||
6 : PRBS OK!has been unlocked since last call
|
||||
7 : PRBS OK!has been unlocked since last call
|
||||
8 : PRBS OK!has been unlocked since last call
|
||||
18 : PRBS OK!has been unlocked since last call
|
||||
19 : PRBS OK!has been unlocked since last call
|
||||
20 : PRBS OK!has been unlocked since last call
|
||||
21 : PRBS OK!has been unlocked since last call
|
||||
22 : PRBS OK!has been unlocked since last call
|
||||
23 : PRBS OK!has been unlocked since last call
|
||||
24 : PRBS OK!has been unlocked since last call
|
||||
40 : PRBS OK!has been unlocked since last call
|
||||
41 : PRBS OK!has been unlocked since last call
|
||||
42 : PRBS OK!has been unlocked since last call
|
||||
43 : PRBS OK!has been unlocked since last call
|
||||
54 : PRBS OK!has been unlocked since last call
|
||||
55 : PRBS OK!has been unlocked since last call
|
||||
56 : PRBS OK!has been unlocked since last call
|
||||
57 : PRBS OK!has been unlocked since last call
|
||||
58 : PRBS OK!has been unlocked since last call
|
||||
59 : PRBS OK!has been unlocked since last call
|
||||
60 : PRBS OK!has been unlocked since last call
|
||||
61 : PRBS OK!has been unlocked since last call
|
||||
72 : PRBS OK!has been unlocked since last call
|
||||
73 : PRBS OK!has been unlocked since last call
|
||||
74 : PRBS OK!has been unlocked since last call
|
||||
75 : PRBS OK!has been unlocked since last call
|
||||
76 : PRBS OK!has been unlocked since last call
|
||||
77 : PRBS OK!has been unlocked since last call
|
||||
78 : PRBS OK!has been unlocked since last call
|
||||
79 : PRBS OK!has been unlocked since last call
|
||||
90 : PRBS OK!has been unlocked since last call
|
||||
91 : PRBS OK!has been unlocked since last call
|
||||
92 : PRBS OK!has been unlocked since last call
|
||||
93 : PRBS OK!has been unlocked since last call
|
||||
94 : PRBS OK!has been unlocked since last call
|
||||
95 : PRBS OK!has been unlocked since last call
|
||||
96 : PRBS OK!has been unlocked since last call
|
||||
112 : PRBS OK!has been unlocked since last call
|
||||
113 : PRBS OK!has been unlocked since last call
|
||||
114 : PRBS OK!has been unlocked since last call
|
||||
115 : PRBS OK!has been unlocked since last call
|
||||
126 : PRBS OK!has been unlocked since last call
|
||||
127 : PRBS OK!has been unlocked since last call
|
||||
128 : PRBS OK!has been unlocked since last call
|
||||
129 : PRBS OK!has been unlocked since last call
|
||||
130 : PRBS OK!has been unlocked since last call
|
||||
131 : PRBS OK!has been unlocked since last call
|
||||
132 : PRBS OK!has been unlocked since last call
|
||||
133 : PRBS OK!has been unlocked since last call
|
||||
144 : PRBS OK!has been unlocked since last call
|
||||
145 : PRBS OK!has been unlocked since last call
|
||||
146 : PRBS OK!has been unlocked since last call
|
||||
147 : PRBS OK!has been unlocked since last call
|
||||
148 : PRBS OK!has been unlocked since last call
|
||||
149 : PRBS OK!has been unlocked since last call
|
||||
150 : PRBS OK!has been unlocked since last call
|
||||
151 : PRBS OK!has been unlocked since last call
|
||||
162 : PRBS OK!has been unlocked since last call
|
||||
163 : PRBS OK!has been unlocked since last call
|
||||
164 : PRBS OK!has been unlocked since last call
|
||||
165 : PRBS OK!has been unlocked since last call
|
||||
166 : PRBS OK!has been unlocked since last call
|
||||
167 : PRBS OK!has been unlocked since last call
|
||||
168 : PRBS OK!has been unlocked since last call
|
||||
184 : PRBS OK!has been unlocked since last call
|
||||
185 : PRBS OK!has been unlocked since last call
|
||||
186 : PRBS OK!has been unlocked since last call
|
||||
187 : PRBS OK!has been unlocked since last call
|
||||
198 : PRBS OK!has been unlocked since last call
|
||||
199 : PRBS OK!has been unlocked since last call
|
||||
200 : PRBS OK!has been unlocked since last call
|
||||
201 : PRBS OK!has been unlocked since last call
|
||||
202 : PRBS OK!has been unlocked since last call
|
||||
203 : PRBS OK!has been unlocked since last call
|
||||
204 : PRBS OK!has been unlocked since last call
|
||||
205 : PRBS OK!has been unlocked since last call
|
||||
216 : PRBS OK!has been unlocked since last call
|
||||
217 : PRBS OK!has been unlocked since last call
|
||||
218 : PRBS OK!has been unlocked since last call
|
||||
219 : PRBS OK!has been unlocked since last call
|
||||
220 : PRBS OK!has been unlocked since last call
|
||||
221 : PRBS OK!has been unlocked since last call
|
||||
222 : PRBS OK!has been unlocked since last call
|
||||
223 : PRBS OK!has been unlocked since last call
|
||||
234 : PRBS OK!has been unlocked since last call
|
||||
235 : PRBS OK!has been unlocked since last call
|
||||
236 : PRBS OK!has been unlocked since last call
|
||||
237 : PRBS OK!has been unlocked since last call
|
||||
238 : PRBS OK!has been unlocked since last call
|
||||
239 : PRBS OK!has been unlocked since last call
|
||||
240 : PRBS OK!has been unlocked since last call
|
||||
256 : PRBS OK!has been unlocked since last call
|
||||
257 : PRBS OK!has been unlocked since last call
|
||||
258 : PRBS OK!has been unlocked since last call
|
||||
259 : PRBS OK!has been unlocked since last call
|
||||
270 : PRBS OK!has been unlocked since last call
|
||||
271 : PRBS OK!has been unlocked since last call
|
||||
272 : PRBS OK!has been unlocked since last call
|
||||
273 : PRBS OK!has been unlocked since last call
|
||||
274 : PRBS OK!has been unlocked since last call
|
||||
275 : PRBS OK!has been unlocked since last call
|
||||
276 : PRBS OK!has been unlocked since last call
|
||||
277 : PRBS OK!has been unlocked since last call
|
||||
288 : PRBS OK!has been unlocked since last call
|
||||
289 : PRBS OK!has been unlocked since last call
|
||||
290 : PRBS OK!has been unlocked since last call
|
||||
291 : PRBS OK!has been unlocked since last call
|
||||
292 : PRBS OK!has been unlocked since last call
|
||||
293 : PRBS OK!has been unlocked since last call
|
||||
294 : PRBS OK!has been unlocked since last call
|
||||
295 : PRBS OK!has been unlocked since last call
|
||||
306 : PRBS OK!has been unlocked since last call
|
||||
307 : PRBS OK!has been unlocked since last call
|
||||
308 : PRBS OK!has been unlocked since last call
|
||||
310 : PRBS OK!has been unlocked since last call
|
||||
311 : PRBS OK!has been unlocked since last call
|
||||
312 : PRBS OK!has been unlocked since last call
|
||||
313 : PRBS OK!has been unlocked since last call
|
||||
324 : PRBS OK!has been unlocked since last call
|
||||
325 : PRBS OK!has been unlocked since last call
|
||||
326 : PRBS OK!has been unlocked since last call
|
||||
327 : PRBS OK!has been unlocked since last call
|
||||
342 : PRBS OK!has been unlocked since last call
|
||||
343 : PRBS OK!has been unlocked since last call
|
||||
344 : PRBS OK!has been unlocked since last call
|
||||
345 : PRBS OK!has been unlocked since last call
|
||||
346 : PRBS OK!has been unlocked since last call
|
||||
347 : PRBS OK!has been unlocked since last call
|
||||
348 : PRBS OK!has been unlocked since last call
|
||||
349 : PRBS OK!has been unlocked since last call
|
||||
360 : PRBS OK!has been unlocked since last call
|
||||
361 : PRBS OK!has been unlocked since last call
|
||||
362 : PRBS OK!has been unlocked since last call
|
||||
363 : PRBS OK!has been unlocked since last call
|
||||
364 : PRBS OK!has been unlocked since last call
|
||||
365 : PRBS OK!has been unlocked since last call
|
||||
366 : PRBS OK!has been unlocked since last call
|
||||
367 : PRBS OK!has been unlocked since last call
|
||||
378 : PRBS OK!has been unlocked since last call
|
||||
379 : PRBS OK!has been unlocked since last call
|
||||
380 : PRBS OK!has been unlocked since last call
|
||||
382 : PRBS OK!has been unlocked since last call
|
||||
383 : PRBS OK!has been unlocked since last call
|
||||
384 : PRBS OK!has been unlocked since last call
|
||||
385 : PRBS OK!has been unlocked since last call
|
||||
396 : PRBS OK!has been unlocked since last call
|
||||
397 : PRBS OK!has been unlocked since last call
|
||||
398 : PRBS OK!has been unlocked since last call
|
||||
399 : PRBS OK!has been unlocked since last call
|
||||
414 : PRBS OK!has been unlocked since last call
|
||||
415 : PRBS OK!has been unlocked since last call
|
||||
416 : PRBS OK!has been unlocked since last call
|
||||
417 : PRBS OK!has been unlocked since last call
|
||||
418 : PRBS OK!has been unlocked since last call
|
||||
419 : PRBS OK!has been unlocked since last call
|
||||
420 : PRBS OK!has been unlocked since last call
|
||||
421 : PRBS OK!has been unlocked since last call
|
||||
432 : PRBS OK!has been unlocked since last call
|
||||
433 : PRBS OK!has been unlocked since last call
|
||||
434 : PRBS OK!has been unlocked since last call
|
||||
435 : PRBS OK!has been unlocked since last call
|
||||
436 : PRBS OK!has been unlocked since last call
|
||||
437 : PRBS OK!has been unlocked since last call
|
||||
438 : PRBS OK!has been unlocked since last call
|
||||
439 : PRBS OK!has been unlocked since last call
|
||||
450 : PRBS OK!has been unlocked since last call
|
||||
451 : PRBS OK!has been unlocked since last call
|
||||
452 : PRBS OK!has been unlocked since last call
|
||||
454 : PRBS OK!has been unlocked since last call
|
||||
455 : PRBS OK!has been unlocked since last call
|
||||
456 : PRBS OK!has been unlocked since last call
|
||||
457 : PRBS OK!has been unlocked since last call
|
||||
468 : PRBS OK!has been unlocked since last call
|
||||
469 : PRBS OK!has been unlocked since last call
|
||||
470 : PRBS OK!has been unlocked since last call
|
||||
471 : PRBS OK!has been unlocked since last call
|
||||
486 : PRBS OK!has been unlocked since last call
|
||||
487 : PRBS OK!has been unlocked since last call
|
||||
488 : PRBS OK!has been unlocked since last call
|
||||
489 : PRBS OK!has been unlocked since last call
|
||||
490 : PRBS OK!has been unlocked since last call
|
||||
491 : PRBS OK!has been unlocked since last call
|
||||
492 : PRBS OK!has been unlocked since last call
|
||||
493 : PRBS OK!has been unlocked since last call
|
||||
504 : PRBS OK!has been unlocked since last call
|
||||
505 : PRBS OK!has been unlocked since last call
|
||||
506 : PRBS OK!has been unlocked since last call
|
||||
507 : PRBS OK!has been unlocked since last call
|
||||
508 : PRBS OK!has been unlocked since last call
|
||||
509 : PRBS OK!has been unlocked since last call
|
||||
510 : PRBS OK!has been unlocked since last call
|
||||
511 : PRBS OK!has been unlocked since last call
|
||||
522 : PRBS OK!has been unlocked since last call
|
||||
523 : PRBS OK!has been unlocked since last call
|
||||
524 : PRBS OK!has been unlocked since last call
|
||||
526 : PRBS OK!has been unlocked since last call
|
||||
527 : PRBS OK!has been unlocked since last call
|
||||
528 : PRBS OK!has been unlocked since last call
|
||||
529 : PRBS OK!has been unlocked since last call
|
||||
540 : PRBS OK!has been unlocked since last call
|
||||
541 : PRBS OK!has been unlocked since last call
|
||||
542 : PRBS OK!has been unlocked since last call
|
||||
543 : PRBS OK!has been unlocked since last call
|
||||
558 : PRBS OK!has been unlocked since last call
|
||||
559 : PRBS OK!has been unlocked since last call
|
||||
560 : PRBS OK!has been unlocked since last call
|
||||
561 : PRBS OK!has been unlocked since last call
|
||||
562 : PRBS OK!has been unlocked since last call
|
||||
563 : PRBS OK!has been unlocked since last call
|
||||
564 : PRBS OK!has been unlocked since last call
|
||||
565 : PRBS OK!has been unlocked since last call
|
||||
drivshell>
|
||||
root@sonic:~#
|
||||
root@sonic:~#
|
||||
root@sonic:~#
|
||||
root@sonic:~# bcmcmd -n 0 -c " dsh -c 'phydiag 1-24,40-96,112-168,184-240,256-259,270-308,310-327,342-380,382-399,414-452,454-471,486-524,526-543,558-565 prbssat STArt Interval=30' "
|
||||
dsh -c 'phydiag 1-24,40-96,112-168,184-240,256-259,270-308,310-327,342-380,382-399,414-452,454-471,486-524,526-543,558-565 prbsstat STArt Interval=30'
|
||||
PRBSStat thread started ...
|
||||
drivshell>
|
||||
root@sonic:~# sleep 30
|
||||
root@sonic:~# bcmcmd -n 0 -c " dsh -c 'phydiag 1-24,40-96,112-168,184-240,256-259,270-308,310-327,342-380,382-399,414-452,454-471,486-524,526-543,558-565 prbsstat Ber' "
|
||||
dsh -c 'phydiag 1-24,40-96,112-168,184-240,256-259,270-308,310-327,342-380,382-399,414-452,454-471,486-524,526-543,558-565 prbsstat Ber'
|
||||
port BER
|
||||
====
|
||||
1[0] : 3.53e-11
|
||||
1[1] : 4.00e-11
|
||||
====
|
||||
2[0] : 1.64e-10
|
||||
2[1] : 8.80e-11
|
||||
====
|
||||
3[0] : 6.01e-11
|
||||
3[1] : 3.45e-12
|
||||
====
|
||||
4[0] : 7.69e-11
|
||||
4[1] : 2.60e-11
|
||||
====
|
||||
5[0] : 9.41e-13
|
||||
5[1] : 6.27e-13
|
||||
====
|
||||
6[0] : 3.14e-13
|
||||
6[1] : 6.27e-13
|
||||
====
|
||||
7[0] : 2.98e-12
|
||||
7[1] : 2.20e-12
|
||||
====
|
||||
8[0] : 4.24e-12
|
||||
8[1] : 9.41e-13
|
||||
====
|
||||
18[0] : 7.84e-13
|
||||
18[1] : 2.04e-12
|
||||
====
|
||||
19[0] : 1.57e-13
|
||||
19[1] : 1.73e-12
|
||||
====
|
||||
20[0] : 1.19e-11
|
||||
20[1] : 1.41e-12
|
||||
====
|
||||
21[0] : 5.65e-12
|
||||
21[1] : 7.69e-12
|
||||
====
|
||||
22[0] : 1.54e-11
|
||||
22[1] : 7.84e-13
|
||||
====
|
||||
23[0] : 1.10e-12
|
||||
23[1] : 2.35e-12
|
||||
====
|
||||
24[0] : 2.51e-12
|
||||
24[1] : 1.41e-12
|
||||
====
|
||||
40[0] : 2.23e-11
|
||||
40[1] : 2.35e-11
|
||||
====
|
||||
41[0] : 3.76e-12
|
||||
41[1] : 4.55e-12
|
||||
====
|
||||
42[0] : 7.84e-12
|
||||
42[1] : 3.76e-12
|
||||
====
|
||||
43[0] : 5.02e-12
|
||||
43[1] : 1.35e-11
|
||||
====
|
||||
54[0] : 7.84e-13
|
||||
54[1] : 6.27e-13
|
||||
====
|
||||
55[0] : 1.57e-13
|
||||
55[1] : 1.57e-13
|
||||
====
|
||||
56[0] : 3.14e-13
|
||||
56[1] : 4.71e-13
|
||||
====
|
||||
57[0] : 4.71e-12
|
||||
57[1] : 6.27e-13
|
||||
====
|
||||
58[0] : 5.80e-12
|
||||
58[1] : 4.24e-11
|
||||
====
|
||||
59[0] : 6.90e-12
|
||||
59[1] : 7.84e-13
|
||||
====
|
||||
60[0] : 1.13e-11
|
||||
60[1] : 1.10e-12
|
||||
====
|
||||
61[0] : 2.35e-12
|
||||
61[1] : 5.49e-12
|
||||
====
|
||||
72[0] : 4.39e-11
|
||||
72[1] : 5.49e-12
|
||||
====
|
||||
73[0] : 7.22e-12
|
||||
73[1] : 8.00e-12
|
||||
====
|
||||
74[0] : 3.29e-12
|
||||
74[1] : 1.25e-12
|
||||
====
|
||||
75[0] : 5.96e-12
|
||||
75[1] : 3.45e-12
|
||||
====
|
||||
76[0] : 1.57e-13
|
||||
76[1] : 1.41e-12
|
||||
====
|
||||
77[0] : 2.20e-12
|
||||
77[1] : 1.57e-13
|
||||
====
|
||||
78[0] : 2.67e-12
|
||||
78[1] : 1.41e-12
|
||||
====
|
||||
79[0] : 6.27e-13
|
||||
79[1] : 3.14e-13
|
||||
====
|
||||
90[0] : 3.61e-12
|
||||
90[1] : 1.91e-11
|
||||
====
|
||||
91[0] : 1.88e-12
|
||||
91[1] : 4.24e-12
|
||||
====
|
||||
92[0] : 8.47e-12
|
||||
92[1] : 4.08e-12
|
||||
====
|
||||
93[0] : 3.92e-12
|
||||
93[1] : 1.82e-11
|
||||
====
|
||||
94[0] : 1.57e-13
|
||||
94[1] : 1.41e-12
|
||||
====
|
||||
95[0] : 1.57e-13
|
||||
95[1] : 1.57e-13
|
||||
====
|
||||
96[0] : 1.57e-13
|
||||
96[1] : 4.71e-13
|
||||
====
|
||||
112[0] : 4.08e-12
|
||||
112[1] : 2.04e-12
|
||||
====
|
||||
113[0] : 4.08e-12
|
||||
113[1] : 3.29e-12
|
||||
====
|
||||
114[0] : 7.84e-13
|
||||
114[1] : 9.41e-13
|
||||
====
|
||||
115[0] : 6.27e-13
|
||||
115[1] : 1.88e-12
|
||||
====
|
||||
126[0] : 2.82e-12
|
||||
126[1] : 1.57e-13
|
||||
====
|
||||
127[0] : 1.57e-13
|
||||
127[1] : 4.71e-13
|
||||
====
|
||||
128[0] : 3.45e-12
|
||||
128[1] : 3.14e-13
|
||||
====
|
||||
129[0] : 4.71e-13
|
||||
129[1] : 6.27e-13
|
||||
====
|
||||
130[0] : 2.67e-12
|
||||
130[1] : 1.57e-12
|
||||
====
|
||||
131[0] : 2.35e-12
|
||||
131[1] : 6.12e-12
|
||||
====
|
||||
132[0] : 3.33e-11
|
||||
132[1] : 5.02e-12
|
||||
====
|
||||
133[0] : 9.88e-12
|
||||
133[1] : 6.90e-12
|
||||
====
|
||||
144[0] : 7.84e-13
|
||||
144[1] : 7.22e-12
|
||||
====
|
||||
145[0] : 3.29e-12
|
||||
145[1] : 6.12e-12
|
||||
====
|
||||
146[0] : 1.02e-11
|
||||
146[1] : 1.57e-12
|
||||
====
|
||||
147[0] : 1.57e-12
|
||||
147[1] : 3.92e-12
|
||||
====
|
||||
148[0] : 1.57e-13
|
||||
148[1] : 1.25e-12
|
||||
====
|
||||
149[0] : 1.57e-13
|
||||
149[1] : 1.57e-13
|
||||
====
|
||||
150[0] : 6.27e-13
|
||||
150[1] : 1.57e-13
|
||||
====
|
||||
151[0] : 6.27e-13
|
||||
151[1] : 3.14e-13
|
||||
====
|
||||
162[0] : 1.57e-13
|
||||
162[1] : 6.27e-13
|
||||
====
|
||||
163[0] : 3.14e-13
|
||||
163[1] : 1.57e-12
|
||||
====
|
||||
164[0] : 1.25e-12
|
||||
164[1] : 2.20e-12
|
||||
====
|
||||
165[0] : 4.71e-13
|
||||
165[1] : 2.67e-12
|
||||
====
|
||||
166[0] : 1.57e-13
|
||||
166[1] : 3.14e-13
|
||||
====
|
||||
167[0] : 1.57e-13
|
||||
167[1] : 1.57e-12
|
||||
====
|
||||
168[0] : 4.71e-13
|
||||
168[1] : 1.57e-13
|
||||
====
|
||||
184[0] : 4.11e-10
|
||||
184[1] : 3.12e-10
|
||||
====
|
||||
185[0] : 1.71e-08
|
||||
185[1] : 3.13e-09
|
||||
====
|
||||
186[0] : 2.05e-10
|
||||
186[1] : 2.27e-09
|
||||
====
|
||||
187[0] : 3.94e-11
|
||||
187[1] : 2.97e-09
|
||||
====
|
||||
198[0] : 3.44e-11
|
||||
198[1] : 3.29e-11
|
||||
====
|
||||
199[0] : 7.53e-10
|
||||
199[1] : 1.66e-10
|
||||
====
|
||||
200[0] : 4.38e-11
|
||||
200[1] : 3.81e-11
|
||||
====
|
||||
201[0] : 5.43e-11
|
||||
201[1] : 1.95e-11
|
||||
====
|
||||
202[0] : 1.82e-10
|
||||
202[1] : 5.74e-09
|
||||
====
|
||||
203[0] : 1.98e-08
|
||||
203[1] : 5.05e-09
|
||||
====
|
||||
204[0] : 2.09e-10
|
||||
204[1] : 5.71e-11
|
||||
====
|
||||
205[0] : 6.59e-11
|
||||
205[1] : 5.21e-11
|
||||
====
|
||||
216[0] : 4.71e-13
|
||||
216[1] : 6.27e-13
|
||||
====
|
||||
217[0] : 1.57e-12
|
||||
217[1] : 6.27e-13
|
||||
====
|
||||
218[0] : 3.14e-13
|
||||
218[1] : 1.57e-13
|
||||
====
|
||||
219[0] : 1.41e-12
|
||||
219[1] : 1.41e-12
|
||||
====
|
||||
220[0] : 1.57e-13
|
||||
220[1] : 1.57e-13
|
||||
====
|
||||
221[0] : 1.57e-13
|
||||
221[1] : 1.57e-13
|
||||
====
|
||||
222[0] : 1.57e-13
|
||||
222[1] : 3.14e-13
|
||||
====
|
||||
223[0] : 9.41e-13
|
||||
223[1] : 1.57e-13
|
||||
====
|
||||
234[0] : 1.57e-13
|
||||
234[1] : 4.71e-13
|
||||
====
|
||||
235[0] : 3.14e-13
|
||||
235[1] : 1.25e-12
|
||||
====
|
||||
236[0] : 4.71e-13
|
||||
236[1] : 1.57e-13
|
||||
====
|
||||
237[0] : 3.14e-13
|
||||
237[1] : 1.57e-13
|
||||
====
|
||||
238[0] : 1.57e-13
|
||||
238[1] : 1.57e-13
|
||||
====
|
||||
239[0] : 3.14e-13
|
||||
239[1] : 3.14e-13
|
||||
====
|
||||
240[0] : 2.35e-12
|
||||
240[1] : 1.57e-13
|
||||
====
|
||||
256[0] : 4.24e-12
|
||||
256[1] : 7.37e-12
|
||||
====
|
||||
257[0] : 4.71e-13
|
||||
257[1] : 7.69e-12
|
||||
====
|
||||
258[0] : 1.09e-09
|
||||
258[1] : 6.25e-09
|
||||
====
|
||||
259[0] : 1.66e-11
|
||||
259[1] : 1.02e-10
|
||||
====
|
||||
270[0] : 1.10e-12
|
||||
270[1] : 9.25e-12
|
||||
====
|
||||
271[0] : 5.33e-12
|
||||
271[1] : 1.62e-11
|
||||
====
|
||||
272[0] : 1.37e-10
|
||||
272[1] : 9.15e-10
|
||||
====
|
||||
273[0] : 9.41e-12
|
||||
273[1] : 1.90e-11
|
||||
====
|
||||
274[0] : 1.57e-13
|
||||
274[1] : 2.04e-12
|
||||
====
|
||||
275[0] : 1.73e-12
|
||||
275[1] : 2.20e-12
|
||||
====
|
||||
276[0] : 1.30e-10
|
||||
276[1] : 1.36e-10
|
||||
====
|
||||
277[0] : 1.41e-12
|
||||
277[1] : 2.04e-12
|
||||
====
|
||||
288[0] : 4.71e-13
|
||||
288[1] : 4.71e-13
|
||||
====
|
||||
289[0] : 3.14e-13
|
||||
289[1] : 2.20e-12
|
||||
====
|
||||
290[0] : 3.14e-13
|
||||
290[1] : 1.57e-13
|
||||
====
|
||||
291[0] : 3.29e-11
|
||||
291[1] : 1.08e-11
|
||||
====
|
||||
292[0] : 3.14e-13
|
||||
292[1] : 6.27e-13
|
||||
====
|
||||
293[0] : 1.57e-13
|
||||
293[1] : 5.80e-12
|
||||
====
|
||||
294[0] : 5.96e-12
|
||||
294[1] : 1.88e-12
|
||||
====
|
||||
295[0] : 1.27e-11
|
||||
295[1] : 1.21e-11
|
||||
====
|
||||
306[0] : 4.71e-13
|
||||
306[1] : 1.10e-12
|
||||
====
|
||||
307[0] : 7.84e-13
|
||||
307[1] : 5.02e-12
|
||||
====
|
||||
308[0] : 3.92e-12
|
||||
308[1] : 2.67e-12
|
||||
====
|
||||
310[0] : 3.92e-12
|
||||
310[1] : 1.25e-12
|
||||
====
|
||||
311[0] : 2.51e-12
|
||||
311[1] : 6.27e-13
|
||||
====
|
||||
312[0] : 2.20e-12
|
||||
312[1] : 6.75e-12
|
||||
====
|
||||
313[0] : 5.43e-11
|
||||
313[1] : 2.18e-10
|
||||
====
|
||||
324[0] : 1.46e-11
|
||||
324[1] : 1.27e-11
|
||||
====
|
||||
325[0] : 2.67e-12
|
||||
325[1] : 7.94e-11
|
||||
====
|
||||
326[0] : 5.35e-11
|
||||
326[1] : 2.35e-12
|
||||
====
|
||||
327[0] : 7.15e-11
|
||||
327[1] : 1.11e-11
|
||||
====
|
||||
342[0] : 2.04e-12
|
||||
342[1] : 1.41e-12
|
||||
====
|
||||
343[0] : 3.14e-13
|
||||
343[1] : 3.61e-12
|
||||
====
|
||||
344[0] : 1.41e-12
|
||||
344[1] : 1.57e-13
|
||||
====
|
||||
345[0] : 1.25e-12
|
||||
345[1] : 1.41e-12
|
||||
====
|
||||
346[0] : 3.14e-13
|
||||
346[1] : 1.57e-13
|
||||
====
|
||||
347[0] : 1.57e-13
|
||||
347[1] : 3.14e-13
|
||||
====
|
||||
348[0] : 1.57e-13
|
||||
348[1] : 3.14e-13
|
||||
====
|
||||
349[0] : 1.73e-12
|
||||
349[1] : 2.21e-11
|
||||
====
|
||||
360[0] : 8.78e-12
|
||||
360[1] : 1.24e-11
|
||||
====
|
||||
361[0] : 7.22e-12
|
||||
361[1] : 1.87e-11
|
||||
====
|
||||
362[0] : 1.30e-11
|
||||
362[1] : 1.74e-11
|
||||
====
|
||||
363[0] : 1.51e-10
|
||||
363[1] : 2.85e-11
|
||||
====
|
||||
364[0] : 1.38e-11
|
||||
364[1] : 1.17e-10
|
||||
====
|
||||
365[0] : 3.95e-11
|
||||
365[1] : 2.67e-12
|
||||
====
|
||||
366[0] : 4.24e-12
|
||||
366[1] : 5.49e-12
|
||||
====
|
||||
367[0] : 1.71e-10
|
||||
367[1] : 1.40e-11
|
||||
====
|
||||
378[0] : 1.41e-11
|
||||
378[1] : 3.50e-11
|
||||
====
|
||||
379[0] : 7.67e-11
|
||||
379[1] : 1.03e-09
|
||||
====
|
||||
380[0] : 2.16e-11
|
||||
380[1] : 1.62e-11
|
||||
====
|
||||
382[0] : 4.35e-11
|
||||
382[1] : 1.81e-10
|
||||
====
|
||||
383[0] : 2.28e-10
|
||||
383[1] : 1.41e-10
|
||||
====
|
||||
384[0] : 7.22e-12
|
||||
384[1] : 5.71e-11
|
||||
====
|
||||
385[0] : 3.36e-11
|
||||
385[1] : 2.16e-11
|
||||
====
|
||||
396[0] : 2.82e-12
|
||||
396[1] : 4.55e-12
|
||||
====
|
||||
397[0] : 1.27e-11
|
||||
397[1] : 1.41e-11
|
||||
====
|
||||
398[0] : 2.99e-10
|
||||
398[1] : 5.80e-11
|
||||
====
|
||||
399[0] : 2.51e-11
|
||||
399[1] : 1.11e-11
|
||||
====
|
||||
414[0] : 4.55e-12
|
||||
414[1] : 8.31e-12
|
||||
====
|
||||
415[0] : 1.57e-13
|
||||
415[1] : 9.41e-13
|
||||
====
|
||||
416[0] : 6.27e-12
|
||||
416[1] : 5.96e-12
|
||||
====
|
||||
417[0] : 2.20e-12
|
||||
417[1] : 1.88e-12
|
||||
====
|
||||
418[0] : 6.27e-13
|
||||
418[1] : 1.25e-12
|
||||
====
|
||||
419[0] : 1.57e-13
|
||||
419[1] : 1.41e-12
|
||||
====
|
||||
420[0] : 3.14e-13
|
||||
420[1] : 2.82e-12
|
||||
====
|
||||
421[0] : 4.39e-12
|
||||
421[1] : 1.16e-11
|
||||
====
|
||||
432[0] : 4.71e-13
|
||||
432[1] : 6.27e-13
|
||||
====
|
||||
433[0] : 4.71e-13
|
||||
433[1] : 1.57e-12
|
||||
====
|
||||
434[0] : 4.71e-13
|
||||
434[1] : 1.57e-13
|
||||
====
|
||||
435[0] : 1.25e-12
|
||||
435[1] : 1.57e-13
|
||||
====
|
||||
436[0] : 1.57e-13
|
||||
436[1] : 1.57e-13
|
||||
====
|
||||
437[0] : 1.57e-13
|
||||
437[1] : 4.71e-13
|
||||
====
|
||||
438[0] : 7.84e-13
|
||||
438[1] : 1.41e-12
|
||||
====
|
||||
439[0] : 1.41e-12
|
||||
439[1] : 1.10e-12
|
||||
====
|
||||
450[0] : 6.27e-13
|
||||
450[1] : 4.71e-13
|
||||
====
|
||||
451[0] : 1.57e-13
|
||||
451[1] : 1.25e-12
|
||||
====
|
||||
452[0] : 1.10e-12
|
||||
452[1] : 7.84e-13
|
||||
====
|
||||
454[0] : 1.10e-12
|
||||
454[1] : 1.88e-12
|
||||
====
|
||||
455[0] : 6.27e-13
|
||||
455[1] : 1.57e-12
|
||||
====
|
||||
456[0] : 1.88e-12
|
||||
456[1] : 9.41e-13
|
||||
====
|
||||
457[0] : 7.84e-13
|
||||
457[1] : 4.71e-13
|
||||
====
|
||||
468[0] : 6.27e-13
|
||||
468[1] : 9.41e-13
|
||||
====
|
||||
469[0] : 2.67e-12
|
||||
469[1] : 4.08e-12
|
||||
====
|
||||
470[0] : 3.14e-13
|
||||
470[1] : 4.71e-13
|
||||
====
|
||||
471[0] : 3.14e-13
|
||||
471[1] : 7.84e-13
|
||||
====
|
||||
486[0] : 1.73e-12
|
||||
486[1] : 1.57e-12
|
||||
====
|
||||
487[0] : 1.10e-12
|
||||
487[1] : 2.82e-12
|
||||
====
|
||||
488[0] : 4.71e-13
|
||||
488[1] : 4.71e-13
|
||||
====
|
||||
489[0] : 9.41e-13
|
||||
489[1] : 3.14e-13
|
||||
====
|
||||
490[0] : 1.57e-13
|
||||
490[1] : 3.14e-13
|
||||
====
|
||||
491[0] : 3.14e-13
|
||||
491[1] : 1.57e-13
|
||||
====
|
||||
492[0] : 9.41e-13
|
||||
492[1] : 1.10e-12
|
||||
====
|
||||
493[0] : 7.84e-13
|
||||
493[1] : 2.98e-12
|
||||
====
|
||||
504[0] : 4.71e-13
|
||||
504[1] : 3.14e-13
|
||||
====
|
||||
505[0] : 1.57e-13
|
||||
505[1] : 7.84e-13
|
||||
====
|
||||
506[0] : 4.71e-13
|
||||
506[1] : 1.57e-13
|
||||
====
|
||||
507[0] : 3.14e-13
|
||||
507[1] : 1.57e-13
|
||||
====
|
||||
508[0] : 2.04e-12
|
||||
508[1] : 1.41e-12
|
||||
====
|
||||
509[0] : 9.41e-13
|
||||
509[1] : 7.84e-13
|
||||
====
|
||||
510[0] : 1.57e-13
|
||||
510[1] : 6.27e-13
|
||||
====
|
||||
511[0] : 6.27e-13
|
||||
511[1] : 4.71e-13
|
||||
====
|
||||
522[0] : 2.35e-12
|
||||
522[1] : 1.57e-13
|
||||
====
|
||||
523[0] : 3.14e-13
|
||||
523[1] : 6.27e-13
|
||||
====
|
||||
524[0] : 7.84e-13
|
||||
524[1] : 1.57e-13
|
||||
====
|
||||
526[0] : 7.84e-13
|
||||
526[1] : 3.14e-13
|
||||
====
|
||||
527[0] : 1.41e-12
|
||||
527[1] : 4.71e-13
|
||||
====
|
||||
528[0] : 3.14e-13
|
||||
528[1] : 9.41e-13
|
||||
====
|
||||
529[0] : 4.71e-13
|
||||
529[1] : 1.57e-13
|
||||
====
|
||||
540[0] : 6.27e-13
|
||||
540[1] : 1.25e-12
|
||||
====
|
||||
541[0] : 3.14e-13
|
||||
541[1] : 1.10e-12
|
||||
====
|
||||
542[0] : 2.98e-12
|
||||
542[1] : 6.27e-13
|
||||
====
|
||||
543[0] : 2.98e-12
|
||||
543[1] : 3.14e-13
|
||||
====
|
||||
558[0] : 9.41e-13
|
||||
558[1] : 1.10e-12
|
||||
====
|
||||
559[0] : 3.29e-12
|
||||
559[1] : 2.04e-12
|
||||
====
|
||||
560[0] : 1.57e-13
|
||||
560[1] : 1.57e-13
|
||||
====
|
||||
561[0] : 2.35e-12
|
||||
561[1] : 4.71e-13
|
||||
====
|
||||
562[0] : 1.57e-13
|
||||
562[1] : 1.57e-13
|
||||
====
|
||||
563[0] : 1.57e-13
|
||||
563[1] : 4.71e-13
|
||||
====
|
||||
564[0] : 1.41e-12
|
||||
564[1] : 7.84e-13
|
||||
====
|
||||
565[0] : 4.55e-12
|
||||
565[1] : 1.57e-13
|
||||
====
|
||||
drivshell>
|
||||
root@sonic:~# bcmcmd -n 0 -c " dsh -c 'phydiag 1-24,40-96,112-168,184-240,256-259,270-308,310-327,342-380,382-399,414-452,454-471,486-524,526-543,558-565 prbssat STOp' "
|
||||
dsh -c 'phydiag 1-24,40-96,112-168,184-240,256-259,270-308,310-327,342-380,382-399,414-452,454-471,486-524,526-543,558-565 prbsstat STOp'
|
||||
Stopping PRBSStat thread
|
||||
drivshell>
|
||||
root@sonic:~# bcmcmd -n 0 -c " dsh -c 'phydiag 1-24,40-96,112-168,184-240,256-259,270-308,310-327,342-380,382-399,414-452,454-471,486-524,526-543,558-565 prbs clear' "
|
||||
dsh -c 'phydiag 1-24,40-96,112-168,184-240,256-259,270-308,310-327,342-380,382-399,414-452,454-471,486-524,526-543,558-565 prbs clear'
|
||||
drivshell>
|
||||
root@sonic:~#
|
||||
@@ -0,0 +1,40 @@
|
||||
SWB0_0V9_ANLG0
|
||||
SWB0_0V9_ANLG1
|
||||
SWB0_0V75_ANLG0
|
||||
SWB0_0V75_ANLG1
|
||||
SWB0_PHYTILE_P0
|
||||
SWB0_PHYTILE_P1
|
||||
SWB0_PHYTILE_P2
|
||||
SWB0_PHYTILE_P3
|
||||
SWB0_PHYTILE_P4
|
||||
SWB0_PHYTILE_P5
|
||||
SWB0_PHYTILE_P6
|
||||
SWB0_PHYTILE_P7
|
||||
SWB0_PVDD1V5_CNDR0
|
||||
SWB0_PVDD1V5_CNDR1
|
||||
SWB0_PVDDA_PHYT0
|
||||
SWB0_PVDDA_PHYT1
|
||||
SWB0_PVDDA_PHYT2
|
||||
SWB0_PVDDA_PHYT3
|
||||
SWB0_TH6_CORE
|
||||
|
||||
|
||||
SWB1_0V9_ANLG0
|
||||
SWB1_0V9_ANLG1
|
||||
SWB1_0V75_ANLG0
|
||||
SWB1_0V75_ANLG1
|
||||
SWB1_PHYTILE_P0
|
||||
SWB1_PHYTILE_P1
|
||||
SWB1_PHYTILE_P2
|
||||
SWB1_PHYTILE_P3
|
||||
SWB1_PHYTILE_P4
|
||||
SWB1_PHYTILE_P5
|
||||
SWB1_PHYTILE_P6
|
||||
SWB1_PHYTILE_P7
|
||||
SWB1_PVDD1V5_CNDR0
|
||||
SWB1_PVDD1V5_CNDR1
|
||||
SWB1_PVDDA_PHYT0
|
||||
SWB1_PVDDA_PHYT1
|
||||
SWB1_PVDDA_PHYT2
|
||||
SWB1_PVDDA_PHYT3
|
||||
SWB1_TH6_CORE
|
||||
@@ -0,0 +1,48 @@
|
||||
i2cset -f -y 13 0x25 0x00 0
|
||||
i2cset -f -y 13 0x25 0x15
|
||||
i2cset -f -y 15 0x26 0x00 0
|
||||
i2cset -f -y 15 0x26 0x15
|
||||
i2cset -f -y 13 0x25 0x00 0
|
||||
i2cset -f -y 13 0x25 0x15
|
||||
i2cset -f -y 15 0x26 0x00 0
|
||||
i2cset -f -y 15 0x26 0x15
|
||||
i2cset -f -y 13 0x21 0x00 0
|
||||
i2cset -f -y 13 0x21 0x15
|
||||
i2cset -f -y 13 0x22 0x00 0
|
||||
i2cset -f -y 13 0x22 0x15
|
||||
i2cset -f -y 15 0x23 0x00 0
|
||||
i2cset -f -y 15 0x23 0x15
|
||||
i2cset -f -y 15 0x24 0x00 0
|
||||
i2cset -f -y 15 0x24 0x15
|
||||
i2cset -f -y 13 0x29 0x00 0
|
||||
i2cset -f -y 13 0x29 0x15
|
||||
i2cset -f -y 13 0x27 0x00 0
|
||||
i2cset -f -y 13 0x27 0x15
|
||||
i2cset -f -y 15 0x28 0x00 0
|
||||
i2cset -f -y 15 0x28 0x15
|
||||
i2cset -f -y 13 0x20 0x00 0
|
||||
i2cset -f -y 13 0x20 0x17
|
||||
i2cset -f -y 14 0x25 0x00 0
|
||||
i2cset -f -y 14 0x25 0x15
|
||||
i2cset -f -y 16 0x26 0x00 0
|
||||
i2cset -f -y 16 0x26 0x15
|
||||
i2cset -f -y 14 0x25 0x00 0
|
||||
i2cset -f -y 14 0x25 0x15
|
||||
i2cset -f -y 16 0x26 0x00 0
|
||||
i2cset -f -y 16 0x26 0x15
|
||||
i2cset -f -y 14 0x21 0x00 0
|
||||
i2cset -f -y 14 0x21 0x15
|
||||
i2cset -f -y 14 0x22 0x00 0
|
||||
i2cset -f -y 14 0x22 0x15
|
||||
i2cset -f -y 16 0x23 0x00 0
|
||||
i2cset -f -y 16 0x23 0x15
|
||||
i2cset -f -y 16 0x24 0x00 0
|
||||
i2cset -f -y 16 0x24 0x15
|
||||
i2cset -f -y 14 0x29 0x00 0
|
||||
i2cset -f -y 14 0x29 0x15
|
||||
i2cset -f -y 14 0x27 0x00 0
|
||||
i2cset -f -y 14 0x27 0x15
|
||||
i2cset -f -y 16 0x28 0x00 0
|
||||
i2cset -f -y 16 0x28 0x15
|
||||
i2cset -f -y 14 0x20 0x00 0
|
||||
i2cset -f -y 14 0x20 0x17
|
||||
@@ -0,0 +1,188 @@
|
||||
//0.930V
|
||||
i2cset -f -y 13 0x25 0x00 0
|
||||
i2ctransfer -f -y 13 w3@0x25 0x21 0x89 0x00
|
||||
i2cset -f -y 13 0x25 0x00 2
|
||||
i2ctransfer -f -y 13 w3@0x25 0x0D 0x34 0x11
|
||||
//0.930V
|
||||
i2cset -f -y 15 0x26 0x00 0
|
||||
i2ctransfer -f -y 15 w3@0x26 0x21 0x89 0x00
|
||||
i2cset -f -y 15 0x26 0x00 2
|
||||
i2ctransfer -f -y 15 w3@0x26 0x0D 0x34 0x11
|
||||
//0.725V
|
||||
i2cset -f -y 13 0x25 0x00 1
|
||||
i2ctransfer -f -y 13 w3@0x25 0x21 0x60 0x00
|
||||
i2cset -f -y 13 0x25 0x00 2
|
||||
i2ctransfer -f -y 13 w3@0x25 0x1D 0x0A 0x06
|
||||
//0.725V
|
||||
i2cset -f -y 15 0x26 0x00 1
|
||||
i2ctransfer -f -y 15 w3@0x26 0x21 0x60 0x00
|
||||
i2cset -f -y 15 0x26 0x00 2
|
||||
i2ctransfer -f -y 15 w3@0x26 0x1D 0x0A 0x06
|
||||
//0.725V
|
||||
i2cset -f -y 13 0x21 0x00 0
|
||||
i2ctransfer -f -y 13 w3@0x21 0x21 0x60 0x00
|
||||
i2cset -f -y 13 0x21 0x00 2
|
||||
i2ctransfer -f -y 13 w3@0x21 0x0D 0x12 0x0C
|
||||
//0.725V
|
||||
i2cset -f -y 13 0x21 0x00 1
|
||||
i2ctransfer -f -y 13 w3@0x21 0x21 0x60 0x00
|
||||
i2cset -f -y 13 0x21 0x00 2
|
||||
i2ctransfer -f -y 13 w3@0x21 0x1D 0x0A 0x06
|
||||
//0.725V
|
||||
i2cset -f -y 13 0x22 0x00 0
|
||||
i2ctransfer -f -y 13 w3@0x22 0x21 0x60 0x00
|
||||
i2cset -f -y 13 0x22 0x00 2
|
||||
i2ctransfer -f -y 13 w3@0x22 0x0D 0x12 0x0C
|
||||
//0.725V
|
||||
i2cset -f -y 13 0x22 0x00 1
|
||||
i2ctransfer -f -y 13 w3@0x22 0x21 0x60 0x00
|
||||
i2cset -f -y 13 0x22 0x00 2
|
||||
i2ctransfer -f -y 13 w3@0x22 0x1D 0x0A 0x06
|
||||
//0.725V
|
||||
i2cset -f -y 15 0x23 0x00 0
|
||||
i2ctransfer -f -y 15 w3@0x23 0x21 0x60 0x00
|
||||
i2cset -f -y 15 0x23 0x00 2
|
||||
i2ctransfer -f -y 15 w3@0x23 0x0D 0x12 0x0C
|
||||
//0.725V
|
||||
i2cset -f -y 15 0x23 0x00 1
|
||||
i2ctransfer -f -y 15 w3@0x23 0x21 0x60 0x00
|
||||
i2cset -f -y 15 0x23 0x00 2
|
||||
i2ctransfer -f -y 15 w3@0x23 0x1D 0x0A 0x06
|
||||
//0.725V
|
||||
i2cset -f -y 15 0x24 0x00 0
|
||||
i2ctransfer -f -y 15 w3@0x24 0x21 0x60 0x00
|
||||
i2cset -f -y 15 0x24 0x00 2
|
||||
i2ctransfer -f -y 15 w3@0x24 0x0D 0x12 0x0C
|
||||
//0.725V
|
||||
i2cset -f -y 15 0x24 0x00 1
|
||||
i2ctransfer -f -y 15 w3@0x24 0x21 0x60 0x00
|
||||
i2cset -f -y 15 0x24 0x00 2
|
||||
i2ctransfer -f -y 15 w3@0x24 0x1D 0x0A 0x06
|
||||
//1.545V
|
||||
i2cset -f -y 13 0x29 0x00 0
|
||||
i2ctransfer -f -y 13 w3@0x29 0x21 0x04 0x01
|
||||
i2cset -f -y 13 0x29 0x00 2
|
||||
i2ctransfer -f -y 13 w3@0x29 0x0D 0x91 0x20
|
||||
//1.545V
|
||||
i2cset -f -y 13 0x29 0x00 1
|
||||
i2ctransfer -f -y 13 w3@0x29 0x21 0x04 0x01
|
||||
i2cset -f -y 13 0x29 0x00 2
|
||||
i2ctransfer -f -y 13 w3@0x29 0x1D 0x49 0x10
|
||||
//0.745V
|
||||
i2cset -f -y 13 0x27 0x00 0
|
||||
i2ctransfer -f -y 13 w3@0x27 0x21 0x64 0x00
|
||||
i2cset -f -y 13 0x27 0x00 2
|
||||
i2ctransfer -f -y 13 w3@0x27 0x0D 0x94 0x0C
|
||||
//0.745V
|
||||
i2cset -f -y 13 0x27 0x00 1
|
||||
i2ctransfer -f -y 13 w3@0x27 0x21 0x64 0x00
|
||||
i2cset -f -y 13 0x27 0x00 2
|
||||
i2ctransfer -f -y 13 w3@0x27 0x1D 0x4C 0x06
|
||||
//0.745V
|
||||
i2cset -f -y 15 0x28 0x00 0
|
||||
i2ctransfer -f -y 15 w3@0x28 0x21 0x64 0x00
|
||||
i2cset -f -y 15 0x28 0x00 2
|
||||
i2ctransfer -f -y 15 w3@0x28 0x0D 0x94 0x0C
|
||||
//0.745V
|
||||
i2cset -f -y 15 0x28 0x00 1
|
||||
i2ctransfer -f -y 15 w3@0x28 0x21 0x64 0x00
|
||||
i2cset -f -y 15 0x28 0x00 2
|
||||
i2ctransfer -f -y 15 w3@0x28 0x1D 0x4C 0x06
|
||||
//0.885V
|
||||
i2cset -f -y 13 0x20 0x00 0
|
||||
i2ctransfer -f -y 13 w3@0x20 0x21 0x62 0x01
|
||||
|
||||
|
||||
//0.930V
|
||||
i2cset -f -y 14 0x25 0x00 0
|
||||
i2ctransfer -f -y 14 w3@0x25 0x21 0x89 0x00
|
||||
i2cset -f -y 14 0x25 0x00 2
|
||||
i2ctransfer -f -y 14 w3@0x25 0x0D 0x34 0x11
|
||||
//0.930V
|
||||
i2cset -f -y 16 0x26 0x00 0
|
||||
i2ctransfer -f -y 16 w3@0x26 0x21 0x89 0x00
|
||||
i2cset -f -y 16 0x26 0x00 2
|
||||
i2ctransfer -f -y 16 w3@0x26 0x0D 0x34 0x11
|
||||
//0.725V
|
||||
i2cset -f -y 14 0x25 0x00 1
|
||||
i2ctransfer -f -y 14 w3@0x25 0x21 0x60 0x00
|
||||
i2cset -f -y 14 0x25 0x00 2
|
||||
i2ctransfer -f -y 14 w3@0x25 0x1D 0x0A 0x06
|
||||
//0.725V
|
||||
i2cset -f -y 16 0x26 0x00 1
|
||||
i2ctransfer -f -y 16 w3@0x26 0x21 0x60 0x00
|
||||
i2cset -f -y 16 0x26 0x00 2
|
||||
i2ctransfer -f -y 16 w3@0x26 0x1D 0x0A 0x06
|
||||
//0.725V
|
||||
i2cset -f -y 14 0x21 0x00 0
|
||||
i2ctransfer -f -y 14 w3@0x21 0x21 0x60 0x00
|
||||
i2cset -f -y 14 0x21 0x00 2
|
||||
i2ctransfer -f -y 14 w3@0x21 0x0D 0x12 0x0C
|
||||
//0.725V
|
||||
i2cset -f -y 14 0x21 0x00 1
|
||||
i2ctransfer -f -y 14 w3@0x21 0x21 0x60 0x00
|
||||
i2cset -f -y 14 0x21 0x00 2
|
||||
i2ctransfer -f -y 14 w3@0x21 0x1D 0x0A 0x06
|
||||
//0.725V
|
||||
i2cset -f -y 14 0x22 0x00 0
|
||||
i2ctransfer -f -y 14 w3@0x22 0x21 0x60 0x00
|
||||
i2cset -f -y 14 0x22 0x00 2
|
||||
i2ctransfer -f -y 14 w3@0x22 0x0D 0x12 0x0C
|
||||
//0.725V
|
||||
i2cset -f -y 14 0x22 0x00 1
|
||||
i2ctransfer -f -y 14 w3@0x22 0x21 0x60 0x00
|
||||
i2cset -f -y 14 0x22 0x00 2
|
||||
i2ctransfer -f -y 14 w3@0x22 0x1D 0x0A 0x06
|
||||
//0.725V
|
||||
i2cset -f -y 16 0x23 0x00 0
|
||||
i2ctransfer -f -y 16 w3@0x23 0x21 0x60 0x00
|
||||
i2cset -f -y 16 0x23 0x00 2
|
||||
i2ctransfer -f -y 16 w3@0x23 0x0D 0x12 0x0C
|
||||
//0.725V
|
||||
i2cset -f -y 16 0x23 0x00 1
|
||||
i2ctransfer -f -y 16 w3@0x23 0x21 0x60 0x00
|
||||
i2cset -f -y 16 0x23 0x00 2
|
||||
i2ctransfer -f -y 16 w3@0x23 0x1D 0x0A 0x06
|
||||
//0.725V
|
||||
i2cset -f -y 16 0x24 0x00 0
|
||||
i2ctransfer -f -y 16 w3@0x24 0x21 0x60 0x00
|
||||
i2cset -f -y 16 0x24 0x00 2
|
||||
i2ctransfer -f -y 16 w3@0x24 0x0D 0x12 0x0C
|
||||
//0.725V
|
||||
i2cset -f -y 16 0x24 0x00 1
|
||||
i2ctransfer -f -y 16 w3@0x24 0x21 0x60 0x00
|
||||
i2cset -f -y 16 0x24 0x00 2
|
||||
i2ctransfer -f -y 16 w3@0x24 0x1D 0x0A 0x06
|
||||
//1.545V
|
||||
i2cset -f -y 14 0x29 0x00 0
|
||||
i2ctransfer -f -y 14 w3@0x29 0x21 0x04 0x01
|
||||
i2cset -f -y 14 0x29 0x00 2
|
||||
i2ctransfer -f -y 14 w3@0x29 0x0D 0x91 0x20
|
||||
//1.545V
|
||||
i2cset -f -y 14 0x29 0x00 1
|
||||
i2ctransfer -f -y 14 w3@0x29 0x21 0x04 0x01
|
||||
i2cset -f -y 14 0x29 0x00 2
|
||||
i2ctransfer -f -y 14 w3@0x29 0x1D 0x49 0x10
|
||||
//0.745V
|
||||
i2cset -f -y 14 0x27 0x00 0
|
||||
i2ctransfer -f -y 14 w3@0x27 0x21 0x64 0x00
|
||||
i2cset -f -y 14 0x27 0x00 2
|
||||
i2ctransfer -f -y 14 w3@0x27 0x0D 0x94 0x0C
|
||||
//0.745V
|
||||
i2cset -f -y 14 0x27 0x00 1
|
||||
i2ctransfer -f -y 14 w3@0x27 0x21 0x64 0x00
|
||||
i2cset -f -y 14 0x27 0x00 2
|
||||
i2ctransfer -f -y 14 w3@0x27 0x1D 0x4C 0x06
|
||||
//0.745V
|
||||
i2cset -f -y 16 0x28 0x00 0
|
||||
i2ctransfer -f -y 16 w3@0x28 0x21 0x64 0x00
|
||||
i2cset -f -y 16 0x28 0x00 2
|
||||
i2ctransfer -f -y 16 w3@0x28 0x0D 0x94 0x0C
|
||||
//0.745V
|
||||
i2cset -f -y 16 0x28 0x00 1
|
||||
i2ctransfer -f -y 16 w3@0x28 0x21 0x64 0x00
|
||||
i2cset -f -y 16 0x28 0x00 2
|
||||
i2ctransfer -f -y 16 w3@0x28 0x1D 0x4C 0x06
|
||||
//0.885V
|
||||
i2cset -f -y 14 0x20 0x00 0
|
||||
i2ctransfer -f -y 14 w3@0x20 0x21 0x62 0x01
|
||||
@@ -0,0 +1,188 @@
|
||||
//0.870V
|
||||
i2cset -f -y 13 0x25 0x00 0
|
||||
i2ctransfer -f -y 13 w3@0x25 0x21 0x7D 0x00
|
||||
i2cset -f -y 13 0x25 0x00 2
|
||||
i2ctransfer -f -y 13 w3@0x25 0x0D 0xB4 0x0F
|
||||
//0.870V
|
||||
i2cset -f -y 15 0x26 0x00 0
|
||||
i2ctransfer -f -y 15 w3@0x26 0x21 0x7D 0x00
|
||||
i2cset -f -y 15 0x26 0x00 2
|
||||
i2ctransfer -f -y 15 w3@0x26 0x0D 0xB4 0x0F
|
||||
//0.775V
|
||||
i2cset -f -y 13 0x25 0x00 1
|
||||
i2ctransfer -f -y 13 w3@0x25 0x21 0x6A 0x00
|
||||
i2cset -f -y 13 0x25 0x00 2
|
||||
i2ctransfer -f -y 13 w3@0x25 0x1D 0xAA 0x06
|
||||
//0.775V
|
||||
i2cset -f -y 15 0x26 0x00 1
|
||||
i2ctransfer -f -y 15 w3@0x26 0x21 0x6A 0x00
|
||||
i2cset -f -y 15 0x26 0x00 2
|
||||
i2ctransfer -f -y 15 w3@0x26 0x1D 0xAA 0x06
|
||||
//0.775V
|
||||
i2cset -f -y 13 0x21 0x00 0
|
||||
i2ctransfer -f -y 13 w3@0x21 0x21 0x6A 0x00
|
||||
i2cset -f -y 13 0x21 0x00 2
|
||||
i2ctransfer -f -y 13 w3@0x21 0x0D 0x52 0x0D
|
||||
//0.775V
|
||||
i2cset -f -y 13 0x21 0x00 1
|
||||
i2ctransfer -f -y 13 w3@0x21 0x21 0x6A 0x00
|
||||
i2cset -f -y 13 0x21 0x00 2
|
||||
i2ctransfer -f -y 13 w3@0x21 0x1D 0xAA 0x06
|
||||
//0.775V
|
||||
i2cset -f -y 13 0x22 0x00 0
|
||||
i2ctransfer -f -y 13 w3@0x22 0x21 0x6A 0x00
|
||||
i2cset -f -y 13 0x22 0x00 2
|
||||
i2ctransfer -f -y 13 w3@0x22 0x0D 0x52 0x0D
|
||||
//0.775V
|
||||
i2cset -f -y 13 0x22 0x00 1
|
||||
i2ctransfer -f -y 13 w3@0x22 0x21 0x6A 0x00
|
||||
i2cset -f -y 13 0x22 0x00 2
|
||||
i2ctransfer -f -y 13 w3@0x22 0x1D 0xAA 0x06
|
||||
//0.775V
|
||||
i2cset -f -y 15 0x23 0x00 0
|
||||
i2ctransfer -f -y 15 w3@0x23 0x21 0x6A 0x00
|
||||
i2cset -f -y 15 0x23 0x00 2
|
||||
i2ctransfer -f -y 15 w3@0x23 0x0D 0x52 0x0D
|
||||
//0.775V
|
||||
i2cset -f -y 15 0x23 0x00 1
|
||||
i2ctransfer -f -y 15 w3@0x23 0x21 0x6A 0x00
|
||||
i2cset -f -y 15 0x23 0x00 2
|
||||
i2ctransfer -f -y 15 w3@0x23 0x1D 0xAA 0x06
|
||||
//0.775V
|
||||
i2cset -f -y 15 0x24 0x00 0
|
||||
i2ctransfer -f -y 15 w3@0x24 0x21 0x6A 0x00
|
||||
i2cset -f -y 15 0x24 0x00 2
|
||||
i2ctransfer -f -y 15 w3@0x24 0x0D 0x52 0x0D
|
||||
//0.775V
|
||||
i2cset -f -y 15 0x24 0x00 1
|
||||
i2ctransfer -f -y 15 w3@0x24 0x21 0x6A 0x00
|
||||
i2cset -f -y 15 0x24 0x00 2
|
||||
i2ctransfer -f -y 15 w3@0x24 0x1D 0xAA 0x06
|
||||
//1.455V
|
||||
i2cset -f -y 13 0x29 0x00 0
|
||||
i2ctransfer -f -y 13 w3@0x29 0x21 0xF2 0x00
|
||||
i2cset -f -y 13 0x29 0x00 2
|
||||
i2ctransfer -f -y 13 w3@0x29 0x0D 0x51 0x1E
|
||||
//1.455V
|
||||
i2cset -f -y 13 0x29 0x00 1
|
||||
i2ctransfer -f -y 13 w3@0x29 0x21 0xF2 0x00
|
||||
i2cset -f -y 13 0x29 0x00 2
|
||||
i2ctransfer -f -y 13 w3@0x29 0x1D 0x29 0x0F
|
||||
//0.695V
|
||||
i2cset -f -y 13 0x27 0x00 0
|
||||
i2ctransfer -f -y 13 w3@0x27 0x21 0x5A 0x00
|
||||
i2cset -f -y 13 0x27 0x00 2
|
||||
i2ctransfer -f -y 13 w3@0x27 0x0D 0x54 0x0B
|
||||
//0.695V
|
||||
i2cset -f -y 13 0x27 0x00 1
|
||||
i2ctransfer -f -y 13 w3@0x27 0x21 0x5A 0x00
|
||||
i2cset -f -y 13 0x27 0x00 2
|
||||
i2ctransfer -f -y 13 w3@0x27 0x1D 0xAC 0x05
|
||||
//0.695V
|
||||
i2cset -f -y 15 0x28 0x00 0
|
||||
i2ctransfer -f -y 15 w3@0x28 0x21 0x5A 0x00
|
||||
i2cset -f -y 15 0x28 0x00 2
|
||||
i2ctransfer -f -y 15 w3@0x28 0x0D 0x54 0x0B
|
||||
//0.695V
|
||||
i2cset -f -y 15 0x28 0x00 1
|
||||
i2ctransfer -f -y 15 w3@0x28 0x21 0x5A 0x00
|
||||
i2cset -f -y 15 0x28 0x00 2
|
||||
i2ctransfer -f -y 15 w3@0x28 0x1D 0xAC 0x05
|
||||
//0.753V
|
||||
i2cset -f -y 13 0x20 0x00 0
|
||||
i2ctransfer -f -y 13 w3@0x20 0x21 0x2D 0x01
|
||||
|
||||
|
||||
//0.870V
|
||||
i2cset -f -y 14 0x25 0x00 0
|
||||
i2ctransfer -f -y 14 w3@0x25 0x21 0x7D 0x00
|
||||
i2cset -f -y 14 0x25 0x00 2
|
||||
i2ctransfer -f -y 14 w3@0x25 0x0D 0xB4 0x0F
|
||||
//0.870V
|
||||
i2cset -f -y 16 0x26 0x00 0
|
||||
i2ctransfer -f -y 16 w3@0x26 0x21 0x7D 0x00
|
||||
i2cset -f -y 16 0x26 0x00 2
|
||||
i2ctransfer -f -y 16 w3@0x26 0x0D 0xB4 0x0F
|
||||
//0.775V
|
||||
i2cset -f -y 14 0x25 0x00 1
|
||||
i2ctransfer -f -y 14 w3@0x25 0x21 0x6A 0x00
|
||||
i2cset -f -y 14 0x25 0x00 2
|
||||
i2ctransfer -f -y 14 w3@0x25 0x1D 0xAA 0x06
|
||||
//0.775V
|
||||
i2cset -f -y 16 0x26 0x00 1
|
||||
i2ctransfer -f -y 16 w3@0x26 0x21 0x6A 0x00
|
||||
i2cset -f -y 16 0x26 0x00 2
|
||||
i2ctransfer -f -y 16 w3@0x26 0x1D 0xAA 0x06
|
||||
//0.775V
|
||||
i2cset -f -y 14 0x21 0x00 0
|
||||
i2ctransfer -f -y 14 w3@0x21 0x21 0x6A 0x00
|
||||
i2cset -f -y 14 0x21 0x00 2
|
||||
i2ctransfer -f -y 14 w3@0x21 0x0D 0x52 0x0D
|
||||
//0.775V
|
||||
i2cset -f -y 14 0x21 0x00 1
|
||||
i2ctransfer -f -y 14 w3@0x21 0x21 0x6A 0x00
|
||||
i2cset -f -y 14 0x21 0x00 2
|
||||
i2ctransfer -f -y 14 w3@0x21 0x1D 0xAA 0x06
|
||||
//0.775V
|
||||
i2cset -f -y 14 0x22 0x00 0
|
||||
i2ctransfer -f -y 14 w3@0x22 0x21 0x6A 0x00
|
||||
i2cset -f -y 14 0x22 0x00 2
|
||||
i2ctransfer -f -y 14 w3@0x22 0x0D 0x52 0x0D
|
||||
//0.775V
|
||||
i2cset -f -y 14 0x22 0x00 1
|
||||
i2ctransfer -f -y 14 w3@0x22 0x21 0x6A 0x00
|
||||
i2cset -f -y 14 0x22 0x00 2
|
||||
i2ctransfer -f -y 14 w3@0x22 0x1D 0xAA 0x06
|
||||
//0.775V
|
||||
i2cset -f -y 16 0x23 0x00 0
|
||||
i2ctransfer -f -y 16 w3@0x23 0x21 0x6A 0x00
|
||||
i2cset -f -y 16 0x23 0x00 2
|
||||
i2ctransfer -f -y 16 w3@0x23 0x0D 0x52 0x0D
|
||||
//0.775V
|
||||
i2cset -f -y 16 0x23 0x00 1
|
||||
i2ctransfer -f -y 16 w3@0x23 0x21 0x6A 0x00
|
||||
i2cset -f -y 16 0x23 0x00 2
|
||||
i2ctransfer -f -y 16 w3@0x23 0x1D 0xAA 0x06
|
||||
//0.775V
|
||||
i2cset -f -y 16 0x24 0x00 0
|
||||
i2ctransfer -f -y 16 w3@0x24 0x21 0x6A 0x00
|
||||
i2cset -f -y 16 0x24 0x00 2
|
||||
i2ctransfer -f -y 16 w3@0x24 0x0D 0x52 0x0D
|
||||
//0.775V
|
||||
i2cset -f -y 16 0x24 0x00 1
|
||||
i2ctransfer -f -y 16 w3@0x24 0x21 0x6A 0x00
|
||||
i2cset -f -y 16 0x24 0x00 2
|
||||
i2ctransfer -f -y 16 w3@0x24 0x1D 0xAA 0x06
|
||||
//1.455V
|
||||
i2cset -f -y 14 0x29 0x00 0
|
||||
i2ctransfer -f -y 14 w3@0x29 0x21 0xF2 0x00
|
||||
i2cset -f -y 14 0x29 0x00 2
|
||||
i2ctransfer -f -y 14 w3@0x29 0x0D 0x51 0x1E
|
||||
//1.455V
|
||||
i2cset -f -y 14 0x29 0x00 1
|
||||
i2ctransfer -f -y 14 w3@0x29 0x21 0xF2 0x00
|
||||
i2cset -f -y 14 0x29 0x00 2
|
||||
i2ctransfer -f -y 14 w3@0x29 0x1D 0x29 0x0F
|
||||
//0.695V
|
||||
i2cset -f -y 14 0x27 0x00 0
|
||||
i2ctransfer -f -y 14 w3@0x27 0x21 0x5A 0x00
|
||||
i2cset -f -y 14 0x27 0x00 2
|
||||
i2ctransfer -f -y 14 w3@0x27 0x0D 0x54 0x0B
|
||||
//0.695V
|
||||
i2cset -f -y 14 0x27 0x00 1
|
||||
i2ctransfer -f -y 14 w3@0x27 0x21 0x5A 0x00
|
||||
i2cset -f -y 14 0x27 0x00 2
|
||||
i2ctransfer -f -y 14 w3@0x27 0x1D 0xAC 0x05
|
||||
//0.695V
|
||||
i2cset -f -y 16 0x28 0x00 0
|
||||
i2ctransfer -f -y 16 w3@0x28 0x21 0x5A 0x00
|
||||
i2cset -f -y 16 0x28 0x00 2
|
||||
i2ctransfer -f -y 16 w3@0x28 0x0D 0x54 0x0B
|
||||
//0.695V
|
||||
i2cset -f -y 16 0x28 0x00 1
|
||||
i2ctransfer -f -y 16 w3@0x28 0x21 0x5A 0x00
|
||||
i2cset -f -y 16 0x28 0x00 2
|
||||
i2ctransfer -f -y 16 w3@0x28 0x1D 0xAC 0x05
|
||||
//0.753V
|
||||
i2cset -f -y 14 0x20 0x00 0
|
||||
i2ctransfer -f -y 14 w3@0x20 0x21 0x2D 0x01
|
||||
@@ -0,0 +1,188 @@
|
||||
//0.930V
|
||||
i2cset -f -y 13 0x25 0x00 0
|
||||
i2ctransfer -f -y 13 w3@0x25 0x21 0x89 0x00
|
||||
i2cset -f -y 13 0x25 0x00 2
|
||||
i2ctransfer -f -y 13 w3@0x25 0x0D 0x34 0x11
|
||||
//0.930V
|
||||
i2cset -f -y 15 0x26 0x00 0
|
||||
i2ctransfer -f -y 15 w3@0x26 0x21 0x89 0x00
|
||||
i2cset -f -y 15 0x26 0x00 2
|
||||
i2ctransfer -f -y 15 w3@0x26 0x0D 0x34 0x11
|
||||
//0.775V
|
||||
i2cset -f -y 13 0x25 0x00 1
|
||||
i2ctransfer -f -y 13 w3@0x25 0x21 0x6A 0x00
|
||||
i2cset -f -y 13 0x25 0x00 2
|
||||
i2ctransfer -f -y 13 w3@0x25 0x1D 0xAA 0x06
|
||||
//0.775V
|
||||
i2cset -f -y 15 0x26 0x00 1
|
||||
i2ctransfer -f -y 15 w3@0x26 0x21 0x6A 0x00
|
||||
i2cset -f -y 15 0x26 0x00 2
|
||||
i2ctransfer -f -y 15 w3@0x26 0x1D 0xAA 0x06
|
||||
//0.775V
|
||||
i2cset -f -y 13 0x21 0x00 0
|
||||
i2ctransfer -f -y 13 w3@0x21 0x21 0x6A 0x00
|
||||
i2cset -f -y 13 0x21 0x00 2
|
||||
i2ctransfer -f -y 13 w3@0x21 0x0D 0x52 0x0D
|
||||
//0.775V
|
||||
i2cset -f -y 13 0x21 0x00 1
|
||||
i2ctransfer -f -y 13 w3@0x21 0x21 0x6A 0x00
|
||||
i2cset -f -y 13 0x21 0x00 2
|
||||
i2ctransfer -f -y 13 w3@0x21 0x1D 0xAA 0x06
|
||||
//0.775V
|
||||
i2cset -f -y 13 0x22 0x00 0
|
||||
i2ctransfer -f -y 13 w3@0x22 0x21 0x6A 0x00
|
||||
i2cset -f -y 13 0x22 0x00 2
|
||||
i2ctransfer -f -y 13 w3@0x22 0x0D 0x52 0x0D
|
||||
//0.775V
|
||||
i2cset -f -y 13 0x22 0x00 1
|
||||
i2ctransfer -f -y 13 w3@0x22 0x21 0x6A 0x00
|
||||
i2cset -f -y 13 0x22 0x00 2
|
||||
i2ctransfer -f -y 13 w3@0x22 0x1D 0xAA 0x06
|
||||
//0.775V
|
||||
i2cset -f -y 15 0x23 0x00 0
|
||||
i2ctransfer -f -y 15 w3@0x23 0x21 0x6A 0x00
|
||||
i2cset -f -y 15 0x23 0x00 2
|
||||
i2ctransfer -f -y 15 w3@0x23 0x0D 0x52 0x0D
|
||||
//0.775V
|
||||
i2cset -f -y 15 0x23 0x00 1
|
||||
i2ctransfer -f -y 15 w3@0x23 0x21 0x6A 0x00
|
||||
i2cset -f -y 15 0x23 0x00 2
|
||||
i2ctransfer -f -y 15 w3@0x23 0x1D 0xAA 0x06
|
||||
//0.775V
|
||||
i2cset -f -y 15 0x24 0x00 0
|
||||
i2ctransfer -f -y 15 w3@0x24 0x21 0x6A 0x00
|
||||
i2cset -f -y 15 0x24 0x00 2
|
||||
i2ctransfer -f -y 15 w3@0x24 0x0D 0x52 0x0D
|
||||
//0.775V
|
||||
i2cset -f -y 15 0x24 0x00 1
|
||||
i2ctransfer -f -y 15 w3@0x24 0x21 0x6A 0x00
|
||||
i2cset -f -y 15 0x24 0x00 2
|
||||
i2ctransfer -f -y 15 w3@0x24 0x1D 0xAA 0x06
|
||||
//1.545V
|
||||
i2cset -f -y 13 0x29 0x00 0
|
||||
i2ctransfer -f -y 13 w3@0x29 0x21 0x04 0x01
|
||||
i2cset -f -y 13 0x29 0x00 2
|
||||
i2ctransfer -f -y 13 w3@0x29 0x0D 0x91 0x20
|
||||
//1.545V
|
||||
i2cset -f -y 13 0x29 0x00 1
|
||||
i2ctransfer -f -y 13 w3@0x29 0x21 0x04 0x01
|
||||
i2cset -f -y 13 0x29 0x00 2
|
||||
i2ctransfer -f -y 13 w3@0x29 0x1D 0x49 0x10
|
||||
//0.745V
|
||||
i2cset -f -y 13 0x27 0x00 0
|
||||
i2ctransfer -f -y 13 w3@0x27 0x21 0x64 0x00
|
||||
i2cset -f -y 13 0x27 0x00 2
|
||||
i2ctransfer -f -y 13 w3@0x27 0x0D 0x94 0x0C
|
||||
//0.745V
|
||||
i2cset -f -y 13 0x27 0x00 1
|
||||
i2ctransfer -f -y 13 w3@0x27 0x21 0x64 0x00
|
||||
i2cset -f -y 13 0x27 0x00 2
|
||||
i2ctransfer -f -y 13 w3@0x27 0x1D 0x4C 0x06
|
||||
//0.745V
|
||||
i2cset -f -y 15 0x28 0x00 0
|
||||
i2ctransfer -f -y 15 w3@0x28 0x21 0x64 0x00
|
||||
i2cset -f -y 15 0x28 0x00 2
|
||||
i2ctransfer -f -y 15 w3@0x28 0x0D 0x94 0x0C
|
||||
//0.745V
|
||||
i2cset -f -y 15 0x28 0x00 1
|
||||
i2ctransfer -f -y 15 w3@0x28 0x21 0x64 0x00
|
||||
i2cset -f -y 15 0x28 0x00 2
|
||||
i2ctransfer -f -y 15 w3@0x28 0x1D 0x4C 0x06
|
||||
//0.885V
|
||||
i2cset -f -y 13 0x20 0x00 0
|
||||
i2ctransfer -f -y 13 w3@0x20 0x21 0x62 0x01
|
||||
|
||||
|
||||
//0.930V
|
||||
i2cset -f -y 14 0x25 0x00 0
|
||||
i2ctransfer -f -y 14 w3@0x25 0x21 0x89 0x00
|
||||
i2cset -f -y 14 0x25 0x00 2
|
||||
i2ctransfer -f -y 14 w3@0x25 0x0D 0x34 0x11
|
||||
//0.930V
|
||||
i2cset -f -y 16 0x26 0x00 0
|
||||
i2ctransfer -f -y 16 w3@0x26 0x21 0x89 0x00
|
||||
i2cset -f -y 16 0x26 0x00 2
|
||||
i2ctransfer -f -y 16 w3@0x26 0x0D 0x34 0x11
|
||||
//0.775V
|
||||
i2cset -f -y 14 0x25 0x00 1
|
||||
i2ctransfer -f -y 14 w3@0x25 0x21 0x6A 0x00
|
||||
i2cset -f -y 14 0x25 0x00 2
|
||||
i2ctransfer -f -y 14 w3@0x25 0x1D 0xAA 0x06
|
||||
//0.775V
|
||||
i2cset -f -y 16 0x26 0x00 1
|
||||
i2ctransfer -f -y 16 w3@0x26 0x21 0x6A 0x00
|
||||
i2cset -f -y 16 0x26 0x00 2
|
||||
i2ctransfer -f -y 16 w3@0x26 0x1D 0xAA 0x06
|
||||
//0.775V
|
||||
i2cset -f -y 14 0x21 0x00 0
|
||||
i2ctransfer -f -y 14 w3@0x21 0x21 0x6A 0x00
|
||||
i2cset -f -y 14 0x21 0x00 2
|
||||
i2ctransfer -f -y 14 w3@0x21 0x0D 0x52 0x0D
|
||||
//0.775V
|
||||
i2cset -f -y 14 0x21 0x00 1
|
||||
i2ctransfer -f -y 14 w3@0x21 0x21 0x6A 0x00
|
||||
i2cset -f -y 14 0x21 0x00 2
|
||||
i2ctransfer -f -y 14 w3@0x21 0x1D 0xAA 0x06
|
||||
//0.775V
|
||||
i2cset -f -y 14 0x22 0x00 0
|
||||
i2ctransfer -f -y 14 w3@0x22 0x21 0x6A 0x00
|
||||
i2cset -f -y 14 0x22 0x00 2
|
||||
i2ctransfer -f -y 14 w3@0x22 0x0D 0x52 0x0D
|
||||
//0.775V
|
||||
i2cset -f -y 14 0x22 0x00 1
|
||||
i2ctransfer -f -y 14 w3@0x22 0x21 0x6A 0x00
|
||||
i2cset -f -y 14 0x22 0x00 2
|
||||
i2ctransfer -f -y 14 w3@0x22 0x1D 0xAA 0x06
|
||||
//0.775V
|
||||
i2cset -f -y 16 0x23 0x00 0
|
||||
i2ctransfer -f -y 16 w3@0x23 0x21 0x6A 0x00
|
||||
i2cset -f -y 16 0x23 0x00 2
|
||||
i2ctransfer -f -y 16 w3@0x23 0x0D 0x52 0x0D
|
||||
//0.775V
|
||||
i2cset -f -y 16 0x23 0x00 1
|
||||
i2ctransfer -f -y 16 w3@0x23 0x21 0x6A 0x00
|
||||
i2cset -f -y 16 0x23 0x00 2
|
||||
i2ctransfer -f -y 16 w3@0x23 0x1D 0xAA 0x06
|
||||
//0.775V
|
||||
i2cset -f -y 16 0x24 0x00 0
|
||||
i2ctransfer -f -y 16 w3@0x24 0x21 0x6A 0x00
|
||||
i2cset -f -y 16 0x24 0x00 2
|
||||
i2ctransfer -f -y 16 w3@0x24 0x0D 0x52 0x0D
|
||||
//0.775V
|
||||
i2cset -f -y 16 0x24 0x00 1
|
||||
i2ctransfer -f -y 16 w3@0x24 0x21 0x6A 0x00
|
||||
i2cset -f -y 16 0x24 0x00 2
|
||||
i2ctransfer -f -y 16 w3@0x24 0x1D 0xAA 0x06
|
||||
//1.545V
|
||||
i2cset -f -y 14 0x29 0x00 0
|
||||
i2ctransfer -f -y 14 w3@0x29 0x21 0x04 0x01
|
||||
i2cset -f -y 14 0x29 0x00 2
|
||||
i2ctransfer -f -y 14 w3@0x29 0x0D 0x91 0x20
|
||||
//1.545V
|
||||
i2cset -f -y 14 0x29 0x00 1
|
||||
i2ctransfer -f -y 14 w3@0x29 0x21 0x04 0x01
|
||||
i2cset -f -y 14 0x29 0x00 2
|
||||
i2ctransfer -f -y 14 w3@0x29 0x1D 0x49 0x10
|
||||
//0.745V
|
||||
i2cset -f -y 14 0x27 0x00 0
|
||||
i2ctransfer -f -y 14 w3@0x27 0x21 0x64 0x00
|
||||
i2cset -f -y 14 0x27 0x00 2
|
||||
i2ctransfer -f -y 14 w3@0x27 0x0D 0x94 0x0C
|
||||
//0.745V
|
||||
i2cset -f -y 14 0x27 0x00 1
|
||||
i2ctransfer -f -y 14 w3@0x27 0x21 0x64 0x00
|
||||
i2cset -f -y 14 0x27 0x00 2
|
||||
i2ctransfer -f -y 14 w3@0x27 0x1D 0x4C 0x06
|
||||
//0.745V
|
||||
i2cset -f -y 16 0x28 0x00 0
|
||||
i2ctransfer -f -y 16 w3@0x28 0x21 0x64 0x00
|
||||
i2cset -f -y 16 0x28 0x00 2
|
||||
i2ctransfer -f -y 16 w3@0x28 0x0D 0x94 0x0C
|
||||
//0.745V
|
||||
i2cset -f -y 16 0x28 0x00 1
|
||||
i2ctransfer -f -y 16 w3@0x28 0x21 0x64 0x00
|
||||
i2cset -f -y 16 0x28 0x00 2
|
||||
i2ctransfer -f -y 16 w3@0x28 0x1D 0x4C 0x06
|
||||
//0.885V
|
||||
i2cset -f -y 14 0x20 0x00 0
|
||||
i2ctransfer -f -y 14 w3@0x20 0x21 0x62 0x01
|
||||
@@ -0,0 +1,188 @@
|
||||
//0.870V
|
||||
i2cset -f -y 13 0x25 0x00 0
|
||||
i2ctransfer -f -y 13 w3@0x25 0x21 0x7D 0x00
|
||||
i2cset -f -y 13 0x25 0x00 2
|
||||
i2ctransfer -f -y 13 w3@0x25 0x0D 0xB4 0x0F
|
||||
//0.870V
|
||||
i2cset -f -y 15 0x26 0x00 0
|
||||
i2ctransfer -f -y 15 w3@0x26 0x21 0x7D 0x00
|
||||
i2cset -f -y 15 0x26 0x00 2
|
||||
i2ctransfer -f -y 15 w3@0x26 0x0D 0xB4 0x0F
|
||||
//0.725V
|
||||
i2cset -f -y 13 0x25 0x00 1
|
||||
i2ctransfer -f -y 13 w3@0x25 0x21 0x60 0x00
|
||||
i2cset -f -y 13 0x25 0x00 2
|
||||
i2ctransfer -f -y 13 w3@0x25 0x1D 0x0A 0x06
|
||||
//0.725V
|
||||
i2cset -f -y 15 0x26 0x00 1
|
||||
i2ctransfer -f -y 15 w3@0x26 0x21 0x60 0x00
|
||||
i2cset -f -y 15 0x26 0x00 2
|
||||
i2ctransfer -f -y 15 w3@0x26 0x1D 0x0A 0x06
|
||||
//0.725V
|
||||
i2cset -f -y 13 0x21 0x00 0
|
||||
i2ctransfer -f -y 13 w3@0x21 0x21 0x60 0x00
|
||||
i2cset -f -y 13 0x21 0x00 2
|
||||
i2ctransfer -f -y 13 w3@0x21 0x0D 0x12 0x0C
|
||||
//0.725V
|
||||
i2cset -f -y 13 0x21 0x00 1
|
||||
i2ctransfer -f -y 13 w3@0x21 0x21 0x60 0x00
|
||||
i2cset -f -y 13 0x21 0x00 2
|
||||
i2ctransfer -f -y 13 w3@0x21 0x1D 0x0A 0x06
|
||||
//0.725V
|
||||
i2cset -f -y 13 0x22 0x00 0
|
||||
i2ctransfer -f -y 13 w3@0x22 0x21 0x60 0x00
|
||||
i2cset -f -y 13 0x22 0x00 2
|
||||
i2ctransfer -f -y 13 w3@0x22 0x0D 0x12 0x0C
|
||||
//0.725V
|
||||
i2cset -f -y 13 0x22 0x00 1
|
||||
i2ctransfer -f -y 13 w3@0x22 0x21 0x60 0x00
|
||||
i2cset -f -y 13 0x22 0x00 2
|
||||
i2ctransfer -f -y 13 w3@0x22 0x1D 0x0A 0x06
|
||||
//0.725V
|
||||
i2cset -f -y 15 0x23 0x00 0
|
||||
i2ctransfer -f -y 15 w3@0x23 0x21 0x60 0x00
|
||||
i2cset -f -y 15 0x23 0x00 2
|
||||
i2ctransfer -f -y 15 w3@0x23 0x0D 0x12 0x0C
|
||||
//0.725V
|
||||
i2cset -f -y 15 0x23 0x00 1
|
||||
i2ctransfer -f -y 15 w3@0x23 0x21 0x60 0x00
|
||||
i2cset -f -y 15 0x23 0x00 2
|
||||
i2ctransfer -f -y 15 w3@0x23 0x1D 0x0A 0x06
|
||||
//0.725V
|
||||
i2cset -f -y 15 0x24 0x00 0
|
||||
i2ctransfer -f -y 15 w3@0x24 0x21 0x60 0x00
|
||||
i2cset -f -y 15 0x24 0x00 2
|
||||
i2ctransfer -f -y 15 w3@0x24 0x0D 0x12 0x0C
|
||||
//0.725V
|
||||
i2cset -f -y 15 0x24 0x00 1
|
||||
i2ctransfer -f -y 15 w3@0x24 0x21 0x60 0x00
|
||||
i2cset -f -y 15 0x24 0x00 2
|
||||
i2ctransfer -f -y 15 w3@0x24 0x1D 0x0A 0x06
|
||||
//1.455V
|
||||
i2cset -f -y 13 0x29 0x00 0
|
||||
i2ctransfer -f -y 13 w3@0x29 0x21 0xF2 0x00
|
||||
i2cset -f -y 13 0x29 0x00 2
|
||||
i2ctransfer -f -y 13 w3@0x29 0x0D 0x51 0x1E
|
||||
//1.455V
|
||||
i2cset -f -y 13 0x29 0x00 1
|
||||
i2ctransfer -f -y 13 w3@0x29 0x21 0xF2 0x00
|
||||
i2cset -f -y 13 0x29 0x00 2
|
||||
i2ctransfer -f -y 13 w3@0x29 0x1D 0x29 0x0F
|
||||
//0.695V
|
||||
i2cset -f -y 13 0x27 0x00 0
|
||||
i2ctransfer -f -y 13 w3@0x27 0x21 0x5A 0x00
|
||||
i2cset -f -y 13 0x27 0x00 2
|
||||
i2ctransfer -f -y 13 w3@0x27 0x0D 0x54 0x0B
|
||||
//0.695V
|
||||
i2cset -f -y 13 0x27 0x00 1
|
||||
i2ctransfer -f -y 13 w3@0x27 0x21 0x5A 0x00
|
||||
i2cset -f -y 13 0x27 0x00 2
|
||||
i2ctransfer -f -y 13 w3@0x27 0x1D 0xAC 0x05
|
||||
//0.695V
|
||||
i2cset -f -y 15 0x28 0x00 0
|
||||
i2ctransfer -f -y 15 w3@0x28 0x21 0x5A 0x00
|
||||
i2cset -f -y 15 0x28 0x00 2
|
||||
i2ctransfer -f -y 15 w3@0x28 0x0D 0x54 0x0B
|
||||
//0.695V
|
||||
i2cset -f -y 15 0x28 0x00 1
|
||||
i2ctransfer -f -y 15 w3@0x28 0x21 0x5A 0x00
|
||||
i2cset -f -y 15 0x28 0x00 2
|
||||
i2ctransfer -f -y 15 w3@0x28 0x1D 0xAC 0x05
|
||||
//0.753V
|
||||
i2cset -f -y 13 0x20 0x00 0
|
||||
i2ctransfer -f -y 13 w3@0x20 0x21 0x2D 0x01
|
||||
|
||||
|
||||
//0.870V
|
||||
i2cset -f -y 14 0x25 0x00 0
|
||||
i2ctransfer -f -y 14 w3@0x25 0x21 0x7D 0x00
|
||||
i2cset -f -y 14 0x25 0x00 2
|
||||
i2ctransfer -f -y 14 w3@0x25 0x0D 0xB4 0x0F
|
||||
//0.870V
|
||||
i2cset -f -y 16 0x26 0x00 0
|
||||
i2ctransfer -f -y 16 w3@0x26 0x21 0x7D 0x00
|
||||
i2cset -f -y 16 0x26 0x00 2
|
||||
i2ctransfer -f -y 16 w3@0x26 0x0D 0xB4 0x0F
|
||||
//0.725V
|
||||
i2cset -f -y 14 0x25 0x00 1
|
||||
i2ctransfer -f -y 14 w3@0x25 0x21 0x60 0x00
|
||||
i2cset -f -y 14 0x25 0x00 2
|
||||
i2ctransfer -f -y 14 w3@0x25 0x1D 0x0A 0x06
|
||||
//0.725V
|
||||
i2cset -f -y 16 0x26 0x00 1
|
||||
i2ctransfer -f -y 16 w3@0x26 0x21 0x60 0x00
|
||||
i2cset -f -y 16 0x26 0x00 2
|
||||
i2ctransfer -f -y 16 w3@0x26 0x1D 0x0A 0x06
|
||||
//0.725V
|
||||
i2cset -f -y 14 0x21 0x00 0
|
||||
i2ctransfer -f -y 14 w3@0x21 0x21 0x60 0x00
|
||||
i2cset -f -y 14 0x21 0x00 2
|
||||
i2ctransfer -f -y 14 w3@0x21 0x0D 0x12 0x0C
|
||||
//0.725V
|
||||
i2cset -f -y 14 0x21 0x00 1
|
||||
i2ctransfer -f -y 14 w3@0x21 0x21 0x60 0x00
|
||||
i2cset -f -y 14 0x21 0x00 2
|
||||
i2ctransfer -f -y 14 w3@0x21 0x1D 0x0A 0x06
|
||||
//0.725V
|
||||
i2cset -f -y 14 0x22 0x00 0
|
||||
i2ctransfer -f -y 14 w3@0x22 0x21 0x60 0x00
|
||||
i2cset -f -y 14 0x22 0x00 2
|
||||
i2ctransfer -f -y 14 w3@0x22 0x0D 0x12 0x0C
|
||||
//0.725V
|
||||
i2cset -f -y 14 0x22 0x00 1
|
||||
i2ctransfer -f -y 14 w3@0x22 0x21 0x60 0x00
|
||||
i2cset -f -y 14 0x22 0x00 2
|
||||
i2ctransfer -f -y 14 w3@0x22 0x1D 0x0A 0x06
|
||||
//0.725V
|
||||
i2cset -f -y 16 0x23 0x00 0
|
||||
i2ctransfer -f -y 16 w3@0x23 0x21 0x60 0x00
|
||||
i2cset -f -y 16 0x23 0x00 2
|
||||
i2ctransfer -f -y 16 w3@0x23 0x0D 0x12 0x0C
|
||||
//0.725V
|
||||
i2cset -f -y 16 0x23 0x00 1
|
||||
i2ctransfer -f -y 16 w3@0x23 0x21 0x60 0x00
|
||||
i2cset -f -y 16 0x23 0x00 2
|
||||
i2ctransfer -f -y 16 w3@0x23 0x1D 0x0A 0x06
|
||||
//0.725V
|
||||
i2cset -f -y 16 0x24 0x00 0
|
||||
i2ctransfer -f -y 16 w3@0x24 0x21 0x60 0x00
|
||||
i2cset -f -y 16 0x24 0x00 2
|
||||
i2ctransfer -f -y 16 w3@0x24 0x0D 0x12 0x0C
|
||||
//0.725V
|
||||
i2cset -f -y 16 0x24 0x00 1
|
||||
i2ctransfer -f -y 16 w3@0x24 0x21 0x60 0x00
|
||||
i2cset -f -y 16 0x24 0x00 2
|
||||
i2ctransfer -f -y 16 w3@0x24 0x1D 0x0A 0x06
|
||||
//1.455V
|
||||
i2cset -f -y 14 0x29 0x00 0
|
||||
i2ctransfer -f -y 14 w3@0x29 0x21 0xF2 0x00
|
||||
i2cset -f -y 14 0x29 0x00 2
|
||||
i2ctransfer -f -y 14 w3@0x29 0x0D 0x51 0x1E
|
||||
//1.455V
|
||||
i2cset -f -y 14 0x29 0x00 1
|
||||
i2ctransfer -f -y 14 w3@0x29 0x21 0xF2 0x00
|
||||
i2cset -f -y 14 0x29 0x00 2
|
||||
i2ctransfer -f -y 14 w3@0x29 0x1D 0x29 0x0F
|
||||
//0.695V
|
||||
i2cset -f -y 14 0x27 0x00 0
|
||||
i2ctransfer -f -y 14 w3@0x27 0x21 0x5A 0x00
|
||||
i2cset -f -y 14 0x27 0x00 2
|
||||
i2ctransfer -f -y 14 w3@0x27 0x0D 0x54 0x0B
|
||||
//0.695V
|
||||
i2cset -f -y 14 0x27 0x00 1
|
||||
i2ctransfer -f -y 14 w3@0x27 0x21 0x5A 0x00
|
||||
i2cset -f -y 14 0x27 0x00 2
|
||||
i2ctransfer -f -y 14 w3@0x27 0x1D 0xAC 0x05
|
||||
//0.695V
|
||||
i2cset -f -y 16 0x28 0x00 0
|
||||
i2ctransfer -f -y 16 w3@0x28 0x21 0x5A 0x00
|
||||
i2cset -f -y 16 0x28 0x00 2
|
||||
i2ctransfer -f -y 16 w3@0x28 0x0D 0x54 0x0B
|
||||
//0.695V
|
||||
i2cset -f -y 16 0x28 0x00 1
|
||||
i2ctransfer -f -y 16 w3@0x28 0x21 0x5A 0x00
|
||||
i2cset -f -y 16 0x28 0x00 2
|
||||
i2ctransfer -f -y 16 w3@0x28 0x1D 0xAC 0x05
|
||||
//0.753V
|
||||
i2cset -f -y 14 0x20 0x00 0
|
||||
i2ctransfer -f -y 14 w3@0x20 0x21 0x2D 0x01
|
||||
@@ -0,0 +1,17 @@
|
||||
//Start Unit0 Tr518
|
||||
bcmcmd -n 0 -c 'port cd lb=mac'
|
||||
bcmcmd -n 0 -c 'l2 learn off'
|
||||
bcmcmd -n 0 -c 'dsh -c "test mode nr=yes"'
|
||||
bcmcmd -n 0 -c 'dsh -c "tr 518 Scenario=6 Profile=2 Count=260 PktSize=324 PortList=1-259,270-565 rm=ext CheckLinkTime=20 CheckDataTime=200 testphase=1"'
|
||||
|
||||
//Stop Unit0 Tr518
|
||||
bcmcmd -n 0 -c 'port cd lb=none'
|
||||
|
||||
//Start Unit1 Tr518
|
||||
bcmcmd -n 1 -c 'port cd lb=mac'
|
||||
bcmcmd -n 1 -c 'l2 learn off'
|
||||
bcmcmd -n 1 -c 'dsh -c "test mode nr=yes"'
|
||||
bcmcmd -n 1 -c 'dsh -c "tr 518 Scenario=6 Profile=2 Count=260 PktSize=324 PortList=1-259,270-565 rm=ext CheckLinkTime=20 CheckDataTime=200 testphase=1"'
|
||||
|
||||
//Stop Unit1 Tr518
|
||||
bcmcmd -n 1 -c 'port cd lb=none'
|
||||
@@ -0,0 +1,7 @@
|
||||
echo 18-0020 > /sys/bus/i2c/drivers/max31790/unbind
|
||||
sleep .5
|
||||
echo 18-0020 > /sys/bus/i2c/drivers/max31790/bind
|
||||
echo 25-0020 > /sys/bus/i2c/drivers/max31790/unbind
|
||||
sleep .5
|
||||
echo 25-0020 > /sys/bus/i2c/drivers/max31790/bind
|
||||
fan-speed-control.sh 30
|
||||
@@ -0,0 +1,59 @@
|
||||
#!/bin/bash
|
||||
# =============================================================================
|
||||
# gen_channel_map.sh - Build docs/LTC2980_channel_map.csv from settings/*.conf
|
||||
# Version : V1.0.0
|
||||
# Date : 2026-08-27
|
||||
# Author : ETWen
|
||||
# =============================================================================
|
||||
# Runs on the DEV machine, not the DUT. Reads every LTC2980 margin settings
|
||||
# file and flattens CH<n>_VNOM / CH<n>_NET into one CSV:
|
||||
#
|
||||
# Board,CONN,Ch,NetName,Vnom
|
||||
# CB,CONN13,CH0,V5P0_ALW,5.0
|
||||
#
|
||||
# NC channels keep their literal NC / "-" so the page numbering still lines up
|
||||
# (ch/8 -> CHIPS[] index, ch%8 -> LTC2977 PAGE). Do not filter them out.
|
||||
#
|
||||
# Usage:
|
||||
# tools/gen_channel_map.sh # write docs/LTC2980_channel_map.csv
|
||||
# tools/gen_channel_map.sh - # write to stdout
|
||||
# =============================================================================
|
||||
set -eu
|
||||
|
||||
REPO_ROOT="$(cd "$(dirname "$0")/.." && pwd)"
|
||||
SET_DIR="${REPO_ROOT}/src/Script_ABC_Blanton/Blanton_Script/LTC2980_Margin_Script/settings"
|
||||
OUT="${1:-${REPO_ROOT}/docs/LTC2980_channel_map.csv}"
|
||||
|
||||
[ -d "${SET_DIR}" ] || { echo "settings dir not found: ${SET_DIR}" >&2; exit 1; }
|
||||
|
||||
# 3-argument match(str, regex, array) is a gawk extension. Under mawk it is a
|
||||
# syntax error at best and an empty CSV at worst - fail loudly instead.
|
||||
awk 'BEGIN { if (match("a", /a/, m) != 1) exit 1 }' 2>/dev/null \
|
||||
|| { echo "need gawk (3-arg match); this awk is: $(awk --version 2>&1 | head -1)" >&2; exit 1; }
|
||||
|
||||
gen() {
|
||||
printf 'Board,CONN,Ch,NetName,Vnom\n'
|
||||
# CB first, then SWB0/SWB1 CONN13..CONN16 - matches the physical walk order.
|
||||
for f in "${SET_DIR}"/Blanton_CB_CONN*.conf \
|
||||
"${SET_DIR}"/Blanton_SWB0_CONN*.conf \
|
||||
"${SET_DIR}"/Blanton_SWB1_CONN*.conf ; do
|
||||
[ -f "${f}" ] || continue
|
||||
base="$(basename "${f}" .conf)" # Blanton_SWB0_CONN13
|
||||
board="$(echo "${base}" | cut -d_ -f2)" # SWB0
|
||||
conn="$(echo "${base}" | cut -d_ -f3)" # CONN13
|
||||
|
||||
# .conf files are LF per .gitattributes, but strip CR anyway - a stray
|
||||
# CR would land inside the net name and travel into the CSV unseen.
|
||||
sed 's/\r$//' "${f}" | awk -v b="${board}" -v c="${conn}" '
|
||||
match($0, /^CH([0-9]+)_VNOM="([^"]*)"[^"]*CH[0-9]+_NET="([^"]*)"/, m) {
|
||||
printf "%s,%s,CH%s,%s,%s\n", b, c, m[1], m[3], m[2]
|
||||
}'
|
||||
done
|
||||
}
|
||||
|
||||
if [ "${OUT}" = "-" ]; then
|
||||
gen
|
||||
else
|
||||
gen > "${OUT}"
|
||||
echo "wrote ${OUT} ($(($(wc -l < "${OUT}") - 1)) channels)"
|
||||
fi
|
||||
Reference in New Issue
Block a user