4 Commits
Author SHA1 Message Date
etwenandClaude Opus 5 78a8f641c9 fix(scriptc): Capture the BMC USB service log to a file, not the console
journalctl now runs with -o short-iso into log/bmc_usb_net.log and is
copied into the job directory with the other monitor logs. rm -f first so
the file covers this run only, and the ISO timestamps line up with
mgmt_ping.log and nfc_poll.log for cross-referencing.

The cost, recorded rather than glossed over: it is no longer echoed to
the console, so the USB copy is the only copy. That cp return value is
not checked - the same shape as the nfc_polling.log filename bug, which
failed silently and was only noticed back at the desk with a job archive
missing a file.

Folded into V1.1.6 rather than bumping: the tag has not moved on and this
is the same delivery.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_014RetWKFZFG1ZHcitQAyhwM
2026-09-02 21:44:06 +08:00
etwenandClaude Opus 5 25e1ce0068 fix(pdb): Read the bricks on the pages the datasheet actually specifies
Every PDB reading came back NA, and the cause was a base error. The four
ADPM12200 bricks put each measurement on its own PMBus PAGE, written
before the read. The bring-up spreadsheet listed those page numbers in
decimal but with an 0x prefix:

    Vin  PAGE 9  -> it said 0x00   (0x09)
    Iin  PAGE 10 -> it said 0x10   (0x0A)
    Vout PAGE 2  -> it said 0x02    correct by luck
    Iout PAGE 14 -> it said 0x14   (0x0E)
    Temp PAGE 18 -> it said 0x18   (0x12)

Only Vout worked, because 2 reads the same in either base. Hence Iin and
Iout answering 0xFFFF, Temp answering 0x0000, and a Vin scale factor
having to be invented to make 50 V appear out of a page-0 register.

pwr_brick.sh reads all five bricks with the right pages and the
datasheet's DIRECT equation, X = (1/m)(Y x 10^-R - b): voltage Y x 8 mV,
current Y x 0.04 A, temperature Y x 0.01 C. Cross-checked rather than
assumed - READ_VOUT 0x05D4 decodes to 11936 mV, exactly what
'show platform voltage' reports for that rail through a separate sensor
path. The datasheet is committed alongside so the numbers are checkable.

Left flagged: Table 3 does not list READ_VIN or READ_IIN. They borrow the
voltage and current coefficients here, which is consistent with a ~50 V
input but is not something the datasheet states.

Each value is re-read until it passes three checks: not 0xFFFF, not
0x0000, and inside a plausibility window. The window is the one that
matters - this bus corrupts the HIGH BYTE only, which turns 11.98 V into
32.00 V. Positive, plausible in magnitude, and invisible to any all-ones
filter. 0x0000 is rejected for the mirror-image reason: on the
temperature register it decodes to a believable 0 C.

Adds comboA/comboB margin profiles per board. comboB is comboA with every
direction flipped, so the pair covers each rail high and low while its
neighbours sit the other way. NC channels stay nominal in both - there is
nothing to margin on an unused rail.

Script C re-enables the BMC USB journalctl dump, which had been commented
out, so that service log now reaches the master log.

Script A -> V1.1.6.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_014RetWKFZFG1ZHcitQAyhwM
2026-09-02 16:35:45 +08:00
etwenandClaude Opus 5 215fed6e95 fix(stress): Keep the SSD and USB jobs alive for the whole soak
qfx5252-stress-usb was started with --runtime 60. It finished a minute
into an overnight run and the USB path sat idle for the rest of the
night - nothing failed, nothing said so, and the log looked complete.
SSD had the same shape at --runtime 3600. Both are now 86400, and the
BMC DDR memtester drops its loop count so it runs until stopped.

86400 is 24h, not forever. Past that SSD and USB die quietly and the
only clue is the shorter bgctl list Script B already prints each round.
Said so in the version history, the release notes and ARCHITECTURE.

Adds blanton_multiphase_margin.sh: the multiphase controllers on both
switch boards over the native i2c buses (SWB0 on i2c-13/15, SWB1 on
-14/-16), 19 rails each. high3/low3/comboA/comboB set voltages and print
one line per rail; save commits them and prints Multiphase Save All,
because that list has no per-rail mapping to report against.

Two hazards it carries: save is STORE_USER_ALL and permanent, and these
are NOT the LTC2980s margin.sh drives - the two tools reach the same
rails from opposite sides with no interlock between them.

The emitted commands were diffed against tools/Multiphase_*.txt: argv
identical for all five. The rail-to-netname mapping was cross-checked
against the bus numbers rather than trusted by line position - blocks
1..19 are all bus 13/15 and 20..38 all 14/16, matching the SWB0/SWB1
split of Multiphase_Netname.

blanton_traffic_linespeed v0.7.0 appends PatternRandom=yes to every tx
including ce0, and the defaults become tx 200 length=324. A fixed
pattern can sit on a benign bit sequence for a whole run; a changing one
is what exposes a weak lane. -r no forces fixed, -r "" omits the
argument for an SDK that will not take it. Bytes per burst went 51200 ->
64800, so absolute counter totals do not carry across this build - the
pair cross-check that decides PASS/FAIL does.

Script A -> V1.1.5.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_014RetWKFZFG1ZHcitQAyhwM
2026-09-01 11:04:45 +08:00
etwenandClaude Opus 5 db44f72352 feat(thermal): Add a standalone thermal/safety run, and move margin out of the soak loop
4_Blanton_Script_thermal_safety.ttl brings the DUT up the way Script A
does, then loads it - mlucas-avx2 -cpu 0:15 in the background plus
blanton_tr518.sh start - and samples platform data and both switch
boards' rail power every minute. Power per rail under sustained full
load, over hours, is the whole point of it.

It is standalone: nothing starts it, it starts nothing, and it must not
share a DUT with Script B because both take over the cd ports.

It also has no teardown. When you interrupt it the unit is still in
port cd lb=mac / l2 learn off / test mode nr=yes and mlucas is still
running, and show interfaces status does not reveal any of that. Called
out in the version history, the release notes, CLAUDE.md gotchas and the
ARCHITECTURE future-work list, because whoever uses the box next will not
find out on their own.

Script B's per-round loop drops the margin scan. The loop is meant to be
a quick minute-by-minute sample and margin_status_all.sh walks nine
LTC2980s over I2C, which dominated the round. Script C takes it instead,
once, before show uptime. The trade-off is real: margin drift DURING the
soak is no longer visible, only a start and an end reading. Documented
rather than glossed over, with a suggestion (scan every N rounds) if it
needs to come back.

Script C also sends exit and waits for "Script done" before
hw-test-session finish, so finish runs in the login shell rather than
inside the session it is closing.

Adds docs/Blanton_Test_Flow.drawio: all four scripts side by side, with
the config flags that change each step marked, Script B's one real goto
drawn, and the A->B->C handoffs shown as the manual steps they are.

The new script arrived LF-only while every other .ttl is CRLF and
.gitattributes marks *.ttl as -text, so what is committed is exactly what
Tera Term reads. Converted.

Script A -> V1.1.4.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_014RetWKFZFG1ZHcitQAyhwM
2026-08-31 22:19:38 +08:00
30 changed files with 3172 additions and 27 deletions
+43 -4
View File
@@ -120,6 +120,8 @@ Blanton_TTL_Script/
│ ├── Blantons_FPGA_Registers_draft.docx # 同上,客戶原始 docx
│ ├── Blantons_FPGA_Registers_Map_draft.xlsx
│ ├── Blantons_PCIe_AER_and_DDR_EDAC_checks.pdf # AER / EDAC 檢查點依據
│ ├── ADPM12200CMLZxx_DS_Datasheet_*.pdf # PDB brick 手冊(PAGE 與 DIRECT 係數的來源)
│ ├── Blanton_Test_Flow.drawio # A/B/C + 熱安規四支的測試流程圖(draw.io)
│ ├── LTC2980_channel_map.csv # 9 個 settings/*.conf 合併:Board,CONN,Ch,NetName,Vnom144 列)
│ ├── TTL_Script_Blanton_Status_20260814.xlsx
│ └── TTL_Script_Blanton_Status_20260817.xlsx # ⭐ 最新:三支腳本逐項 StatusOK / On-Going + Owner
@@ -134,6 +136,8 @@ Blanton_TTL_Script/
│ ├── 100G_PRBS.txt # 100G PRBS 原始指令(port_prbs_monitor.sh 的來源)
│ ├── TR518.txt # 內建封包測試 tr 518 → blanton_tr518.sh
│ ├── BER_Test.txt # 全機 PRBS BER 指令 → blanton_ber.sh
│ ├── Multiphase_{high3,low3,comboA,comboB,Save}.txt # → blanton_multiphase_margin.sh
│ ├── Multiphase_Netname # 38 條軌的 net 名稱(區塊順序對應)
│ ├── 100G_Traffic.txt # ce0 VLAN 138 打流 → blanton_traffic_linespeed.sh
│ ├── fan_ctrl.txt # MAX31790 unbind/bind + fan-speed-control.sh 30
│ └── gen_channel_map.sh # settings/*.conf → docs/LTC2980_channel_map.csv(需 gawk
@@ -152,6 +156,7 @@ Blanton_TTL_Script/
└── src/
└── Script_ABC_Blanton/ # ← Tera Term 的工作目錄(整包給測試員)
├── 4_Blanton_Script_thermal_safety.ttl # 熱 / 安規:獨立跑,不接 A→B→C
├── config.ttl # 全域設定:testcase 名、EN_Margin / EN_log、三個 prompt 字串
├── 1_Blanton_Script_A.ttl # Pre-test:登入 → 對時 → source 工具 → 清 AER → 抓基線
├── 2_Blanton_Script_B.ttl # Stress:開壓力程序 → while 1 每輪抓 fan/temp/margin
@@ -188,6 +193,8 @@ Blanton_TTL_Script/
│ # eth0→TARGET_10G、eth1→TARGET_1G,兩張卡同時持續 ping
├── port_prbs_monitor.sh # 100G uplink PRBS 測試(bcmcmd phy diag
├── blanton_ber.sh # 全機 SerDes BER 掃描(phydiag prbs / prbsstat
├── blanton_multiphase_margin.sh # 多相 VRM margin(原生 i2c38 條軌)
├── pwr_brick.sh # PDB / CPB power brick 讀值(VI2C ch4
├── nfc_polling.sh # NFC tag 背景輪詢 + PASS/FAIL 統計
├── blantons_nfc_validate.py # NFC/NCI 驗證工具(廠商提供,未修改)
├── blanton_tr518.sh # TR518 封包測試,量功耗前的負載來源
@@ -204,6 +211,7 @@ Blanton_TTL_Script/
├── settings/*.conf # 一個 .conf = 一顆 LTC2980CB + SWB0/1 × CONN13~16
├── profiles/*.conf # 16-ch 批次組合。SWB 為 per-CONN
# # combo_SWB_CONN13~16_{high,low}(百分比對應該片的軌)
# # comboA/comboB_{CB,SWB_CONN13~16}(互補棋盤配對)
# # 通用:high3/5、low3/5、normal、all_off
├── script/*_all.sh # 跨 9 顆 LTC2980 的批次 status / apply / save
├── Ref/margin_command_trace.md # 指令追蹤參考(SWB 章節已標過期,見文件內警告)
@@ -355,16 +363,18 @@ PROFILE_CHANNELS=( "0:high:8" "1:low:8" ... ) # "channel:operation:change_perc
| 模組 | 進入點 | 功能 |
|------|--------|------|
| **Script APre-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` |
| **Script BStress** | `2_Blanton_Script_B.ttl` | `mlucas-avx2 -cpu 0:15` + `bgctl run``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 |
| **Script CPost-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` |
| **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 |
| **Script APre-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 BStress** | `2_Blanton_Script_B.ttl` | `mlucas-avx2 -cpu 0:15` + `bgctl run``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 CPost-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 4Thermal / 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 offset32-bit wordBDF 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 2535 ms timeout |
| **溫度** | `temp_cb` / `temp_icb` / `temp_all` | TMP7512-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 LTC2980CB 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 busSWB0 = `/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``STORE_USER_ALL`0x15TH6 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``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` |
@@ -372,6 +382,7 @@ PROFILE_CHANNELS=( "0:high:8" "1:low:8" ... ) # "channel:operation:change_perc
| **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 / TempSWB0 `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 logpolling 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 `/``/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 |
@@ -801,6 +812,34 @@ margin status、全部 VRM 軌的 Vin/Vout/Iout/Temp、CB + ICB 溫感讀值,
**`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``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``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``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``sleep 30``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。
+42 -2
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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` →
完整架構見 [ARCHITECTURE.md](ARCHITECTURE.md)。
**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
**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 margin9 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``SWB_UNIT0` / `SWB_UNIT1` 宣告,風扇轉速由 `FAN_SPEED` 指定
@@ -23,7 +23,10 @@ TR518 負載(`blanton_tr518.sh`**TTL 尚未接**)、SWB 軌功耗(`TH6_
Script A 開頭會先收掉前一輪殘留(`hw-test-session finish` + `bgctl reset/stop --all`),
`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)。
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。
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。
@@ -114,6 +117,23 @@ bash ~/Blanton_Script/port_prbs_monitor.sh report # PASS/FAIL 統計(沒
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 PAGEVin 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-13/15SWB1=i2c-14/16);-n 只印指令
# 逐條印 SWB0_0V9_ANLG0 - 0.930V Configure Donesave 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 BERPRBS,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
@@ -219,6 +239,26 @@ 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 2535 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`
`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
`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 4thermal/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``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。**
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@@ -0,0 +1,172 @@
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# 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)
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# 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)
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# 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)
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; =============================================================================
; Script A for Blanton
; Version : V1.1.3
; Date : 2026-08-30
; Version : V1.1.6
; Date : 2026-09-02
; Author : ETWen
; =============================================================================
; Version History:
@@ -178,6 +178,105 @@
; 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"
@@ -26,7 +26,8 @@ sendln "~/hammer/tools/amd/mlucas-avx2 -s l -cpu 0:15 > ~/hammer/tools/amd/mluca
;wait prompt_sonic_root
;sendln "./Blanton_Script/bmc_monitor.sh start"
wait prompt_sonic_root
sendln "bgctl run bmc-manager run '/usr/bin/memtester 64M 1'"
;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
@@ -40,7 +41,7 @@ sendln "bgctl run /usr/sbin/memtester 1G" ; Continue Execture
; ========== SSD read/write ==========
wait prompt_sonic_root
sendln "bgctl run qfx5252-stress-ssd 1G --runtime 3600 --passes 5 --write --force --log /host/hw-eval/jobs/qfx5252-stress-ssd.log"
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 ----
@@ -51,7 +52,7 @@ waitregex '<<DEV=([^>]*)>>'
usb_dev = groupmatchstr1
wait prompt_sonic_root
sprintf2 cmd "bgctl run qfx5252-stress-usb %s 256M --runtime 60 --passes 1 --write --log /host/hw-eval/jobs/qfx5252-stress-usb.log" usb_dev
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
@@ -174,9 +175,5 @@ while 1
sendln "bgctl list"
wait prompt_sonic_root
sendln "jobs"
; ========== Check Margin ==========
if EN_Margin = 1 then
include "utils/show_margin_status.ttl"
endif
pause 60
endwhile
+16 -2
View File
@@ -78,8 +78,10 @@ wait prompt_sonic_root
sendln "cat ./Blanton_Script/log/bmc_poll.log"
; ========== BMC USB Test result ==========
;wait prompt_sonic_root
;sendln "journalctl -u qfx5252-bmc-usb-net-test.service --no-pager"
wait prompt_sonic_root
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 ==========
@@ -184,6 +186,11 @@ 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"
@@ -204,12 +211,16 @@ 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"
@@ -219,6 +230,9 @@ 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"
@@ -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
@@ -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"
)
@@ -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"
)
@@ -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"
)
@@ -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"
)
@@ -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"
)
@@ -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"
)
@@ -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"
)
@@ -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"
)
@@ -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"
)
@@ -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"
)
File diff suppressed because it is too large Load Diff
@@ -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.
@@ -90,6 +90,16 @@
# 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
@@ -142,6 +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 $TL_TX_RANDOM;
# empty string omits the argument)
# -p|--ports <list|all> ps: port list ('all' = plain 'ps', every port)
# -T|--tolerance <n> report: allowed |delta| in packets (default 0;
# -T 1 absorbs the normal snapshot skew)
@@ -161,7 +173,8 @@
# -h|--help help
#
# Environment overrides:
# BCMCMD_CMD=bcmcmd TL_UNITS="0 1" TL_TX_COUNT=100 TL_TX_LENGTH=512
# BCMCMD_CMD=bcmcmd TL_UNITS="0 1" TL_TX_COUNT=200 TL_TX_LENGTH=324
# TL_TX_RANDOM=yes
# TL_PS_PORTS="1-24,40-96,..." TL_TOLERANCE=0 TL_LOG_DIR=/tmp
# DEBUG_MODE=1
#
@@ -173,8 +186,14 @@
# === Config ==================================================================
BCMCMD_CMD="${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}"
@@ -515,17 +534,23 @@ 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=$TL_CE_VLAN" || fail=$((fail+1))
_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 [ "$fail" -eq 0 ]; then
@@ -949,7 +974,7 @@ traffic_linespeed_run() {
blanton_traffic_linespeed_help() {
echo -e "\033[1mblanton_traffic_linespeed.sh - SWB loopback line-speed traffic (bcmcmd)\033[0m"
echo ""
echo -e " Units: \033[36m$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.$TL_CE_PORT cabled)"
@@ -958,7 +983,7 @@ blanton_traffic_linespeed_help() {
echo -e " \033[33minit\033[0m step 1 vlan remove 1 pbm=cd, vlan create/add each pair"
echo -e " \033[33mclear\033[0m step 2 clear c"
echo -e " \033[33mshow\033[0m step 3/6 show c (run before and after traffic)"
echo -e " \033[33mstart\033[0m step 4 tx <count> length=<len> VLantag=<vid> per VLAN"
echo -e " \033[33mstart\033[0m step 4 tx <count> length=<len> VLantag=<vid> [PatternRandom=<yes|no>] per VLAN"
echo -e " \033[33mstop\033[0m step 5 vlan remove <vid> pbm=<pair> [--destroy also destroys]"
[ "$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"
@@ -972,6 +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)"
@@ -995,7 +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 ""
@@ -1019,6 +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 ;;
@@ -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
+40
View File
@@ -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
+48
View File
@@ -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
+188
View File
@@ -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
+188
View File
@@ -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
+188
View File
@@ -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
+188
View File
@@ -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