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c3b0d49145 |
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@@ -188,6 +188,8 @@ Blanton_TTL_Script/
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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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├── 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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@@ -200,7 +202,9 @@ Blanton_TTL_Script/
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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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# # 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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@@ -241,11 +245,20 @@ 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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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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@@ -342,16 +355,16 @@ PROFILE_CHANNELS=( "0:high:8" "1:low:8" ... ) # "channel:operation:change_perc
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| 模組 | 進入點 | 功能 |
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|------|--------|------|
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| **Script A(Pre-test)** | `1_Blanton_Script_A.ttl` V1.0.7 | root 登入 → `date -s` 對時 → 清 job log → `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** → 100G uplink 設定與狀態 → **一輪流量基線** → `show uptime` |
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| **Script B(Stress)** | `2_Blanton_Script_B.ttl` | `mlucas-avx2 -cpu 0:15` + `bgctl run` 的 `memtester` / SSD / USB 壓力 + 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 → `jobs` / `bgctl list` → traffic(依 `SWB_UNIT`)→ `while 1` 每輪完整 PMON + margin |
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| **Script C(Post-test)** | `3_Blanton_Script_C.ttl` | `kill $(jobs -p)` + `bgctl stop --all` / `reset` + 停 BMC USB unit 與 mgmt ping → PMON + dmesg → 7 組 AER + `ras-mc-ctl` → BMC USB `journalctl` → `ip -s link show eth0/eth1` → `cat` mlucas log → traffic `stop` + `report` → **BER 掃描**(依 `SWB_UNIT`)→ NVMe 健康 → `show reboot-cause` / `uptime` → **job log 複製到 USB(帶時戳)** → `hw-test-session finish` |
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| **Script A(Pre-test)** | `1_Blanton_Script_A.ttl` V1.1.2 | 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` |
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| **Script B(Stress)** | `2_Blanton_Script_B.ttl` | `mlucas-avx2 -cpu 0:15` + `bgctl run` 的 `memtester` / SSD / USB 壓力 + 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` 每輪完整 PMON + margin |
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| **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` → `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` / `uptime` → **job log 複製到 USB(帶時戳)** → `hw-test-session finish` |
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| **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)。**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 |
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| **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 |
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| **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) |
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| **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) |
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| **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) |
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| **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 |
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| **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 |
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| **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 |
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| **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** |
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| **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` |
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| **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` |
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@@ -360,6 +373,7 @@ PROFILE_CHANNELS=( "0:high:8" "1:low:8" ... ) # "channel:operation:change_perc
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| **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 |
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| **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 |
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| **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 |
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| **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** |
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| **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 |
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| **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 |
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@@ -378,6 +392,7 @@ Script A ── logopen Logs/Blanton_Margin_<ts>.log ──┐ (之後所有畫
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├─ 登入 admin → sudo -i → root@sonic:~# │
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├─ date -s "<host 時間>" ← 讓 DUT 時戳可對照
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├─ rm /host/hw-eval/jobs/* ← 清掉上一輪的 job log
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├─ hw-test-session finish / bgctl reset / stop --all / list (收前一輪)
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├─ hw-test-session start / log / status
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├─ 風扇:max31790 unbind→sleep→bind(18-0020 與 25-0020 各一次)
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│ → fan-speed-control.sh <FAN_SPEED> → 回答 y 確認 │
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@@ -9,7 +9,7 @@ DUT 端的取數能力由一組 **bash 工具庫** 提供(CB FPGA `pcimem` →
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完整架構見 [ARCHITECTURE.md](ARCHITECTURE.md)。
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**目前狀態(2026-08-28)**:Script A 為 **V1.1.0**(A 集中記錄 A/B/C 三支的變更)。涵蓋
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**目前狀態(2026-08-30)**:Script A 為 **V1.1.3**(A 集中記錄 A/B/C 三支的變更)。涵蓋
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PCIe AER / DDR EDAC / PMON+TPM / 電壓 margin(9 顆 LTC2980)/ SWB loopback 線速流量 /
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10G+1G 管理網路 ping / BMC DDR 與 USB / NVMe 健康,壓力層走平台的 `bgctl`。
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switch unit 數量由 `config.ttl` 的 `SWB_UNIT0` / `SWB_UNIT1` 宣告,風扇轉速由 `FAN_SPEED` 指定
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@@ -20,7 +20,11 @@ Script B 的 soak 迴圈每輪印 `bgctl list` + `jobs`,並 `pause 60`(V1.0.
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V1.1.0 新增全機 SerDes BER 掃描(`blanton_ber.sh`,**Script C 已接**,依 `SWB_UNIT` 分支)、
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TR518 負載(`blanton_tr518.sh`,**TTL 尚未接**)、SWB 軌功耗(`TH6_SWB{0,1}_power_readback.sh`),
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線速流量也納入 100G `ce0`(VLAN 138,靠 ingress mirror 維持循環)。
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最後一次發布是 **V1.0.11**;SWB 的 I2C 通道與位址已於 2026-08-19 上機驗證。
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Script A 開頭會先收掉前一輪殘留(`hw-test-session finish` + `bgctl reset/stop --all`),
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再 `bgctl list` 確認沒有 job 留著佔資源。
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NFC tag 讀取由 `nfc_polling.sh` 背景輪詢(A 做基線、B 起、C 停並 report)。
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最後一次發布是 **V1.1.2**;SWB 的 I2C 通道與位址已於 2026-08-19 上機驗證。
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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%)。
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交付用 `./publish/publish.sh` 打包。
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## 技術棧
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@@ -127,6 +131,16 @@ sleep 30 # 至少等一個 interval 再 rep
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./Blanton_Script/blanton_tr518.sh stop # 只送 port cd lb=none
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# ⚠️ stop 不還原 l2 learn / test mode(TR_RESTORE_LEARN=1 / _TESTMODE=1 才會)
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# ── NFC tag 輪詢 ────────────────────────────────────
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~/Blanton_Script/nfc_polling.sh start # 背景,start 會先清空 log
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~/Blanton_Script/nfc_polling.sh status # pid、已跑幾輪、最後一筆結果
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~/Blanton_Script/nfc_polling.sh report # PASS/FAIL/ERROR 統計,polling 中也能跑
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~/Blanton_Script/nfc_polling.sh tail 50 # 最後 50 行(不 follow,不會卡住)
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~/Blanton_Script/nfc_polling.sh stop
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# log: ~/Blanton_Script/log/nfc_poll.log
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# ERROR = 工具沒印出 [PASS]/[FAIL](或逾時),跟「tag 讀不到」分開算
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# NFC_INTERVAL_SEC / NFC_TIMEOUT_SEC / NFC_ARGS 可調(要每個子指令都帶)
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# ── USB 目標偵測 ────────────────────────────────────
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bash ~/Blanton_Script/usb_target.sh -o dev # /dev/sdX1
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bash ~/Blanton_Script/usb_target.sh -o mnt # 掛好並回傳掛載點
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@@ -205,6 +219,12 @@ Tera Term 連 COM port (115200-8-N-1)
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- ⚠️ **ICB/PDB 一律走 VI2C(`blanton_icb_vi2c.sh`),不要走 VSPI**:VSPI ~18 ms/reg 會讓 I2C
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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。
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- ⚠️ **I2C 讀一律 Repeated START**(不是 STOP + START),否則 PMBus/SMBus 裝置(VRM、EFUSE)不理。
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- ⚠️ **`settings/*.conf` 的 `VNOM` 是實測中位數,不是規格值**(2026-08-30 起)。它同時是
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`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
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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。**
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- ⚠️ **SWB 的 margin profile 是 per-CONN 的**:`combo_SWB_CONN13~16_{high,low}` 各自的百分比
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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,
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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**,
|
||||
|
||||
@@ -6,7 +6,7 @@ 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,0.8
|
||||
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
|
||||
@@ -14,132 +14,132 @@ 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,0.8
|
||||
CB,CONN13,CH15,V0P8_PHY2_AVDD,0.816
|
||||
SWB0,CONN13,CH0,P0V75_DVDD_47,0.75
|
||||
SWB0,CONN13,CH1,P0V75_AVDD_47,0.75
|
||||
SWB0,CONN13,CH2,P1V5_AVDD_47,1.5
|
||||
SWB0,CONN13,CH3,P0V9_AVDD_47,0.9
|
||||
SWB0,CONN13,CH4,P1V8_1,1.8
|
||||
SWB0,CONN13,CH5,PVDD3_3V_SYNTH_LDO_A3,3.3
|
||||
SWB0,CONN13,CH6,PVDD3_3V_SYNTH_LDO_B1,3.3
|
||||
SWB0,CONN13,CH7,P1V8_3,1.8
|
||||
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_39,0.75
|
||||
SWB0,CONN13,CH11,P1V5_AVDD_39,1.5
|
||||
SWB0,CONN13,CH12,P0V9_AVDD_39,0.9
|
||||
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_7,0.75
|
||||
SWB0,CONN14,CH1,P1V5_AVDD_7,1.5
|
||||
SWB0,CONN14,CH2,P0V9_AVDD_7,0.9
|
||||
SWB0,CONN14,CH3,P1V8_5,1.8
|
||||
SWB0,CONN14,CH4,P1V8_2,1.8
|
||||
SWB0,CONN14,CH5,PVDD3_3V_SYNTH_LDO_B2,3.3
|
||||
SWB0,CONN14,CH6,PVDD3_3V_SYNTH_LDO_A2,3.3
|
||||
SWB0,CONN14,CH7,PVDD3_3V_SYNTH_LDO_A1,3.3
|
||||
SWB0,CONN14,CH8,PVDD1V5_TSC,1.5
|
||||
SWB0,CONN14,CH9,PVDD1V5_ANLG,1.5
|
||||
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_55,1.5
|
||||
SWB0,CONN15,CH1,P0V9_AVDD_55,0.9
|
||||
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_63,0.75
|
||||
SWB0,CONN15,CH4,P1V5_AVDD_63,1.5
|
||||
SWB0,CONN15,CH5,P0V9_AVDD_63,0.9
|
||||
SWB0,CONN15,CH6,PVDD3_3V_SYNTH_LDO_B3,3.3
|
||||
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_2,0.9
|
||||
SWB0,CONN15,CH12,PVDD0V9_2,0.91
|
||||
SWB0,CONN15,CH13,P0V75_DVDD_55,0.75
|
||||
SWB0,CONN15,CH14,P0V75_AVDD_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_4,1.8
|
||||
SWB0,CONN16,CH2,PVDD3_3V_SYNTH_LDO_B5,3.3
|
||||
SWB0,CONN16,CH3,PVDD3_3V_SYNTH_LDO_A5,3.3
|
||||
SWB0,CONN16,CH4,PVDD3_3V_SYNTH_LDO_B4,3.3
|
||||
SWB0,CONN16,CH5,PVDD3_3V_SYNTH_LDO_A4,3.3
|
||||
SWB0,CONN16,CH6,P3V3,3.3
|
||||
SWB0,CONN16,CH7,PVDD0_8V_T3,0.8
|
||||
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_1,0.75
|
||||
SWB0,CONN16,CH10,P1V5_AVDD_1,1.5
|
||||
SWB0,CONN16,CH11,P0V9_AVDD_1,0.9
|
||||
SWB0,CONN16,CH12,PVDD0V9_0,0.9
|
||||
SWB0,CONN16,CH13,PVDD0V9_1,0.9
|
||||
SWB0,CONN16,CH14,PVDD0V9_3,0.9
|
||||
SWB0,CONN16,CH15,PVDD1V2_T3,1.2
|
||||
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_47,0.75
|
||||
SWB1,CONN13,CH2,P1V5_AVDD_47,1.5
|
||||
SWB1,CONN13,CH3,P0V9_AVDD_47,0.9
|
||||
SWB1,CONN13,CH4,P1V8_1,1.8
|
||||
SWB1,CONN13,CH5,PVDD3_3V_SYNTH_LDO_A3,3.3
|
||||
SWB1,CONN13,CH6,PVDD3_3V_SYNTH_LDO_B1,3.3
|
||||
SWB1,CONN13,CH7,P1V8_3,1.8
|
||||
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_39,0.75
|
||||
SWB1,CONN13,CH11,P1V5_AVDD_39,1.5
|
||||
SWB1,CONN13,CH12,P0V9_AVDD_39,0.9
|
||||
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_7,0.75
|
||||
SWB1,CONN14,CH1,P1V5_AVDD_7,1.5
|
||||
SWB1,CONN14,CH2,P0V9_AVDD_7,0.9
|
||||
SWB1,CONN14,CH3,P1V8_5,1.8
|
||||
SWB1,CONN14,CH4,P1V8_2,1.8
|
||||
SWB1,CONN14,CH5,PVDD3_3V_SYNTH_LDO_B2,3.3
|
||||
SWB1,CONN14,CH6,PVDD3_3V_SYNTH_LDO_A2,3.3
|
||||
SWB1,CONN14,CH7,PVDD3_3V_SYNTH_LDO_A1,3.3
|
||||
SWB1,CONN14,CH8,PVDD1V5_TSC,1.5
|
||||
SWB1,CONN14,CH9,PVDD1V5_ANLG,1.5
|
||||
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_55,1.5
|
||||
SWB1,CONN15,CH1,P0V9_AVDD_55,0.9
|
||||
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_63,0.75
|
||||
SWB1,CONN15,CH4,P1V5_AVDD_63,1.5
|
||||
SWB1,CONN15,CH5,P0V9_AVDD_63,0.9
|
||||
SWB1,CONN15,CH6,PVDD3_3V_SYNTH_LDO_B3,3.3
|
||||
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_2,0.9
|
||||
SWB1,CONN15,CH12,PVDD0V9_2,0.91
|
||||
SWB1,CONN15,CH13,P0V75_DVDD_55,0.75
|
||||
SWB1,CONN15,CH14,P0V75_AVDD_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_4,1.8
|
||||
SWB1,CONN16,CH2,PVDD3_3V_SYNTH_LDO_B5,3.3
|
||||
SWB1,CONN16,CH3,PVDD3_3V_SYNTH_LDO_A5,3.3
|
||||
SWB1,CONN16,CH4,PVDD3_3V_SYNTH_LDO_B4,3.3
|
||||
SWB1,CONN16,CH5,PVDD3_3V_SYNTH_LDO_A4,3.3
|
||||
SWB1,CONN16,CH6,P3V3,3.3
|
||||
SWB1,CONN16,CH7,PVDD0_8V_T3,0.8
|
||||
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_1,0.75
|
||||
SWB1,CONN16,CH10,P1V5_AVDD_1,1.5
|
||||
SWB1,CONN16,CH11,P0V9_AVDD_1,0.9
|
||||
SWB1,CONN16,CH12,PVDD0V9_0,0.9
|
||||
SWB1,CONN16,CH13,PVDD0V9_1,0.9
|
||||
SWB1,CONN16,CH14,PVDD0V9_3,0.9
|
||||
SWB1,CONN16,CH15,PVDD1V2_T3,1.2
|
||||
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 +1,42 @@
|
||||
# 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)
|
||||
@@ -1,7 +1,7 @@
|
||||
; =============================================================================
|
||||
; Script A for Blanton
|
||||
; Version : V1.1.0
|
||||
; Date : 2026-08-28
|
||||
; Version : V1.1.3
|
||||
; Date : 2026-08-30
|
||||
; Author : ETWen
|
||||
; =============================================================================
|
||||
; Version History:
|
||||
@@ -132,6 +132,52 @@
|
||||
; 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
|
||||
; =============================================================================
|
||||
include "config.ttl"
|
||||
|
||||
@@ -171,6 +217,16 @@ 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
|
||||
@@ -290,6 +346,18 @@ 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
|
||||
|
||||
@@ -100,6 +100,12 @@ 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 ==========
|
||||
wait prompt_sonic_root
|
||||
|
||||
@@ -25,6 +25,8 @@ 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
|
||||
@@ -92,6 +94,10 @@ sendln "cat /host/hw-eval/jobs/qfx5252-stress-usb.log"
|
||||
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"
|
||||
@@ -201,6 +207,8 @@ 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"
|
||||
|
||||
@@ -72,13 +72,13 @@ 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 # 只寫當前載入的那顆
|
||||
@@ -108,7 +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
|
||||
@@ -124,8 +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
|
||||
...
|
||||
)
|
||||
```
|
||||
@@ -133,6 +133,10 @@ 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。
|
||||
|
||||
> ⚠️ **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。
|
||||
|
||||
## 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**,
|
||||
@@ -217,6 +221,22 @@ i2cset -f -y 14 0x62 0x15 ; i2cset -f -y 14 0x64 0x15 # SWB1 CONN16
|
||||
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
|
||||
|
||||
| 參數 | PMBus 0x01 值 | 說明 |
|
||||
|
||||
@@ -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"
|
||||
)
|
||||
@@ -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"
|
||||
)
|
||||
+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 ---
|
||||
|
||||
+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"
|
||||
|
||||
File diff suppressed because it is too large
Load Diff
@@ -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
|
||||
Reference in New Issue
Block a user