fix(exporter): drop dead bmc_event_summary field, fix status loss for inspur CPU/GPU
bmc_event_summary was a derived Assert/Deassert summary added in 4409594
alongside real fixes for GPU fault handling. It's not part of the Reanimator
hardware-ingest contract (event_logs is the only accepted log channel) and
was silently dropped on import — pure dead weight, removed.
Three related status bugs surfaced while auditing converted exports against
the contract, all specific to Inspur/onekeylog dumps:
- CPU status from RESTful CPU info was parsed but never assigned to
models.CPU, and was skipped entirely whenever asset.json already supplied
a CPU list (its own inventory has no status field) — CPUs always exported
as Unknown even when the source reported OK.
- PCIe device status (RESTful "status": 1) was parsed but never mapped onto
models.PCIeDevice, so RESTful-only devices always lost status.
- For GPUs specifically, asset.go emits two device records per physical GPU
(a generic pcie_devices entry enriched with real status, and a separate
gpus entry with a resolved model name but no status). dedupePCIe picks a
single winner by quality score, and a better model name outweighed having
a real status — the winner kept "Unknown" even when a losing duplicate had
the real value. dedupePCIe now backfills status onto the winner from a
losing duplicate when the winner's is Unknown.
Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
This commit is contained in:
co-authored by
Claude Sonnet 5
parent
0867123a91
commit
42cfa3aa94
+32
-17
@@ -19,10 +19,9 @@ func ParseComponentLog(content []byte, hw *models.HardwareConfig) {
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text := string(content)
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// Parse RESTful CPU info — fallback when asset.json is absent
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if len(hw.CPUs) == 0 {
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parseCPUInfo(text, hw)
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}
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// Parse RESTful CPU info: fills in hw.CPUs when asset.json didn't provide any,
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// and enriches asset.json-derived entries (e.g. status) when it did.
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parseCPUInfo(text, hw)
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// Parse RESTful Memory info (detailed memory data)
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parseMemoryInfo(text, hw)
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@@ -148,23 +147,39 @@ func parseCPUInfo(text string, hw *models.HardwareConfig) {
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return
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}
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existingBySocket := make(map[int]int, len(hw.CPUs))
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for i, existing := range hw.CPUs {
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existingBySocket[existing.Socket] = i
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}
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for _, proc := range cpuInfo.Processors {
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if proc.ProcStatus != 1 && proc.ConfigStatus != 1 {
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continue
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}
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hw.CPUs = append(hw.CPUs, models.CPU{
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Socket: proc.ProcID,
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Model: strings.TrimSpace(proc.ProcName),
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Cores: proc.CoreCount,
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Threads: proc.ThreadCount,
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FrequencyMHz: proc.ProcSpeed,
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MaxFreqMHz: proc.MaxSpeedMHz,
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L1CacheKB: proc.L1Cache,
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L2CacheKB: proc.L2Cache,
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L3CacheKB: proc.L3Cache,
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TDP: proc.TDP,
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PPIN: proc.PPIN,
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})
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status := strings.TrimSpace(proc.Status)
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if idx, ok := existingBySocket[proc.ProcID]; ok {
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// asset.json already provided this CPU (no status field there) —
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// enrich it with status from the RESTful CPU info instead of
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// appending a duplicate entry.
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if strings.TrimSpace(hw.CPUs[idx].Status) == "" {
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hw.CPUs[idx].Status = status
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}
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} else {
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hw.CPUs = append(hw.CPUs, models.CPU{
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Socket: proc.ProcID,
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Model: strings.TrimSpace(proc.ProcName),
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Cores: proc.CoreCount,
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Threads: proc.ThreadCount,
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FrequencyMHz: proc.ProcSpeed,
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MaxFreqMHz: proc.MaxSpeedMHz,
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L1CacheKB: proc.L1Cache,
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L2CacheKB: proc.L2Cache,
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L3CacheKB: proc.L3Cache,
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TDP: proc.TDP,
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PPIN: proc.PPIN,
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Status: status,
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})
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}
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if proc.MicroCode != "" {
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hw.Firmware = append(hw.Firmware, models.FirmwareInfo{
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DeviceName: fmt.Sprintf("CPU%d Microcode", proc.ProcID),
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