Four new standalone reference documents with Mermaid diagrams (renderable
on Gitea), built from live ground-truth data gathered 2026-07-30:
- NETWORK-TOPOLOGY.md: physical topology diagram, complete switch port
maps (core-sw01 + tor3-stor), VLAN/subnet tables, cross-rack trunk
analysis with Mermaid, NFS data-flow diagram, per-host NIC reference
- STORAGE-ARCHITECTURE.md: tier definitions, all 14 physical disks
inventoried with SMART/size/tier, NFS export→mount map with Mermaid,
per-spindle VM placement (IOPS hotspot analysis), capacity summary
- HOST-REFERENCE.md: one-page-per-host for all 7 nodes with hardware,
network config, storage, tuning state, role, and running VMs
- VM-INVENTORY.md: VM placement diagram, all 28 running VMs with
disk/CPU/RAM/config details, optimization audit (cache mode, CPU type,
qga, disk controller, k8s wnode sizing), stopped VM reference
Updated docmap.md with all four new entries.
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Comprehensive end-to-end audit of the Proxmox cluster covering all three
layers (network, storage, compute) with live data gathered from all 7 hosts
+ 4 switches via SNMP, conman consoles, and LLDP.
Key findings documented in AUDIT-2026-07-30.md:
Network (cross-rack NFS bottleneck root-caused):
- core-sw01 LAG hash = layer-2-3 (no L4 ports) — NFS caps at 1 Gbps per
host pair regardless of nconnect. tor3-stor already uses layer-2-3-4.
- core-sw01 ch1 member mismatch: g16 is UP but not in LAG; g17 is DOWN.
Only 3 of 4 cross-rack links active.
- Both switches use static mode (no LACP) for the cross-rack trunk.
- tsys5 bond0 degraded (1 of 2 slaves, nic2 down).
Storage (major topology changes):
- tsys5 new NVMe (CT500P1 500GB) + relocated SK hynix SSD (512GB) — both
installed but NOT mounted/configured yet.
- tsys4 D3 changed (SK hynix SSD → Seagate HDD, still USB tier-3).
- tsys4 /mnt/albert (Hitachi 2TB internal) + /mnt/backup (WD 5TB USB) added.
- tsys5 S3 unmounted (stale export), S4 gone (broken storage.cfg entry).
- Samsung 860 PRO SSD at 93% full.
Fleet consistency:
- tsys4 behind on PVE 9.1.5/kernel 6.17 (fleet: 9.2.5/7.0.14).
- tsys4/5 bond hash + nconnect + rmem/wmem inconsistent with tsys6/7.
- 10+ VMs using cache=writethrough on NFS (slow synchronous writes).
Gardening: updated STATUS.md, docmap.md, AGENTS.md key scripts table.
Superseded AUDIT-2026-07-29 as the authoritative audit.
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Deploy Network UPS Tools to monitor the server-room UPS units and feed data to
Home Assistant for power-usage tracking.
APC Smart-UPS C 1500 is fully operational: battery charge, runtime, load,
voltage, and status all reporting via usbhid-ups + APC HID 0.100 subdriver.
upsd listens on Tailscale (100.121.189.98:3493) for HA polling; local upsmon
provides graceful hypervisor shutdown on battery-low.
Key deployment fix: the udev rule must cover SUBSYSTEM=="usb" (raw
/dev/bus/usb) in addition to hidraw, because usbhid-ups opens the raw USB
device file after dropping to the nut user via setuid(). Matching only hidraw
causes EACCES on driver start.
Tripp Lite UPS (09ae:3016) is blocked — driver matches TrippLite HID 0.85
subdriver but fails reading the 878-byte HID Report Descriptor (EAGAIN via USB
hub). Needs physical reseat to direct motherboard USB port. Driver masked to
prevent restart-loop spam.
Files: ups/discover.sh, ups/setup.sh (idempotent), ups/status.sh, ups/README.md
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The original ser2net config used raw TCP accepters, but conman's
dev="host:port" speaks telnet protocol. This protocol mismatch caused
conman's telnet NVT state machine to strip bare CR characters from
device output — particularly from Dell switches that send \n\r (LF+CR)
line endings — producing stair-stepped and garbled terminal display.
Fix: change ser2net accepter from `tcp,IP,PORT` to
`telnet(rfc2217),tcp,IP,PORT`. With both sides speaking telnet, binary
mode is negotiated and CR/LF translation is handled correctly by the
telnet NVT layer. RFC2217 also enables baud rate negotiation for
future use.
Validated at the byte level: PTY capture confirms all prompts render
cleanly at column 0 with proper CRLF handling across 5+ Enter presses.
All 7 consoles connected, 7 log files actively capturing.
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The ser2net layer between conman and the serial devices was causing
stair-stepping in terminal output. conman's dev="host:port" uses telnet
protocol, but ser2net's accepter was raw TCP (no telnet mode). The telnet
NVT state machine in conman was stripping bare CR characters from device
output — particularly from Dell switches that use old-style \n\r (LF+CR)
line endings instead of standard \r\n. In telnet, a bare \r not followed
by \n or NUL is non-compliant and gets dropped, leaving bare \n that
causes stair-stepping in the raw-mode terminal.
Fix: conman now opens serial devices directly via the stable udev
symlinks (/dev/consoles/<name>) with seropts, eliminating the telnet
layer entirely. ser2net is stopped and disabled but remains installed
for emergency TCP access (documented workflow: stop conmand, start
ser2net, use telnet, then reverse).
Architecture change:
Before: device → serial → ser2net (raw TCP) → conman (telnet NVT) → terminal
After: device → serial → conman (direct) → terminal
Verified: 7/7 serial devices held by conmand, 7/7 log files capturing,
all \r bytes preserved in terminal output (confirmed via PTY capture).
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ISC DHCP server with failover-peer (primary/secondary) deployed on
pfv-netinfra-01 (192.168.3.252) and pfv-netinfra-02 (192.168.3.253). Both
servers in "normal" state, load-balancing 333 active leases.
Migration details:
- Copied all 37 host reservations + subnet/pool config from pfv-netboot
- DHCP lease database copied from netboot for zero-disruption cutover
- DNS servers changed from 192.168.3.250 (netboot) to 252/253 (netinfra pair)
- NTP servers (252/253) added to DHCP options (netboot didn't hand out NTP)
- Netmask on both nodes fixed /24 -> /22 to match the network
- Webmin + DHCP module installed on both nodes (port 10000, SSL)
- pfv-netboot DHCP stopped + disabled
- Tested via sectestbed-sandbox (DHCP lease obtained from 252, verified DNS/NTP/gateway)
- Snapshot "pre-dhcp-migration" on sandbox as rollback point
Configs: netinfra/dhcp/dhcpd-{primary,secondary}.conf
Plan + results: netinfra/dhcp-migration.md
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Delete AUDIT-2026-07-28.md (old audit). Rewrite AUDIT-2026-07-29.md as the
sole authoritative audit after reading live /etc/pve/storage.cfg, /etc/exports,
and /etc/fstab on every host.
Key corrections:
- local-nonprod on tsys5 IS the S1 physical disk (dir storage, not separate).
S1 carries 16 sectestbed VMs, not 0 — it is NOT a migration target.
- storage.cfg is per-host, not cluster-wide — each node defines its own entries.
- BUG: tsys6 S1 export path typo (S21 instead of S1) — S1 broken on tsys6.
- GAP: tsys9 has no S1 defined in storage.cfg.
- Revised disk migration plan avoids S1, targets S2/S3/S4/D5 for IOPS spreading.
- D2 goes 17->5 VMs; S2/S3 absorb the load (7 each); S1 untouched (16 idle VMs).
- Refreshed ground truth: cnode5 deleted, cnode4 stopped (user actions this session).
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Add §13-§15 to AUDIT-2026-07-29: current per-VM host+disk inventory, target
end-state inventory (RAM/CPU relief + HDD IOPS rebalancing), and a phased action
checklist. Headline disk finding: D2 carries 17 of 26 NFS VMs while S1 sits
empty — the plan rebalances to 4-5 VMs per spindle (D2 17->5, S1 0->5) using HDD
exports only. Host moves relieve tsys1 (115%->77% alloc) and tsys9. All disks
stay on HDD (SSD/NVMe tiering deferred to post-Friday).
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Add CAPACITY-GOALS.md (80% RAM / ~50% idle CPU targets + workload placement
model) and AUDIT-2026-07-29.md (live end-to-end analysis of all 7 hosts). Key
findings: memory goal met fleet-wide (highest 72%); CPU idles 0-6% (chase via
workloads, not hardware); tsys5 is single-CPU not dual; cnode4/5 are stale
running VMs. Answers the wnode-sizing question (grow tsys9, not tsys1), confirms
tsys6/7 for RackRental, and gives a DDR3 compatibility decision tree (RDIMM-only
servers reject consumer UDIMM). Refreshed STATUS/docmap and the returned audit
logs, and fixed an empty-array abort in deploy-check.sh.
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Docs moved from docs/k8s -> k8s/docs and docs/proxmox -> proxmox/docs to sit
beside their code. Updated all cross-references (docmap, STATUS, README, AGENTS,
k8s README). Fixed SCRIPT_DIR path resolution in 3 perf scripts broken by the
reorg (deploy-check/and-fix/finish-host pointed at root/scripts instead of
perf/scripts). Registered the new top-level proxmox/ dir in all listings.
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Fresh Proxmox fleet audit (2026-07-28) with current VM placements, RAM,
CPU, and storage for all 7 reachable hosts. Written to
docs/proxmox/AUDIT-2026-07-28.md — supersedes placement data in
PROJECT.md sections 4-8.
Key audit findings:
- CRITICAL: UCS01/02 and netinfra01/02 HA pairs both still on tsys4
storage. tsys4 failure = DNS/DHCP/NTP + LDAP/AD fully dark. These
migrations were the #1 recommendation from the previous audit and
have not been done.
- CRITICAL: 2 of 3 active k3s cnodes (cnode1 + cnode2) on tsys4 NFS.
tsys4 failure = etcd quorum lost.
- 59% of running VMs still on tsys4 storage (improved from 68%).
- cnode VMIDs have changed since PROJECT.md was written (cnode1 is now
VMID 906 on tsys9, cnode2 is VMID 705 on tsys7, etc.)
Gardening fixes:
- Removed duplicate fleet-audit.sh (check.sh + deploy-check.sh already
exist for this purpose)
- Fixed hardcoded path /home/reachableceo/projects/perfopt in 13 perf/
scripts to use BASH_SOURCE-derived relative paths (per AGENTS.md
self-locating scripts convention)
- Updated STATUS.md Known Issues with the two critical findings
- Updated STATUS.md Pending with prioritized pre-k8s action items
- Registered AUDIT-2026-07-28.md in docmap.md
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Solve the long-standing USB adapter enumeration shift problem: 9 Prolific
USB-to-DB9 adapters on pfv-tsys4 have no unique serial numbers and get
assigned /dev/ttyUSB0-8 based on enumeration order, which changes on every
reboot and breaks the old /root/conmap + manual screen workflow.
Solution: udev rules pin each adapter by its ID_PATH (physical USB port
topology), which is stable across reboots regardless of enumeration order.
Each adapter gets a named symlink in /dev/consoles/<name>. ser2net opens
these stable symlinks and exposes them on TCP ports (2001-2007) bound to
the Tailscale interface only. conman connects to those TCP ports for
session logging and multi-user console sharing.
Architecture (layered, no port sharing):
USB adapter → udev symlink → ser2net (TCP) → conman (logging + mux)
Port assignments (all on Tailscale IP 100.70.77.93):
2001 = pfv-core-sw01 2002 = pfv-tor3-mgmt 2003 = pfv-tor3-stor
2004 = pfv-rrinfra-rtr 2005 = pfv-r2-tor-top 2006 = subodev-torsw
2007 = pfv-r2-sw
Scripts (console/):
- mapping.txt: source of truth (TCP port | name | ID_PATH | baud | comment)
- generate-config.sh: generates udev rules, ser2net.yaml, conman.conf
entries from mapping.txt. Idempotent (markers in conman.conf for clean
regeneration). Uses | delimiter (ID_PATH values contain colons).
- setup.sh: full deploy — generate configs, create symlinks (udev trigger
+ manual fallback for already-discovered devices), create conmand
systemd unit (Debian doesn't ship one), restart services
- discover.sh: read-only USB adapter and service state discovery
- validate-conman.sh: verify conman→ser2net→device data path and log capture
Issues fixed during development:
- /dev/console is a kernel char device (major 5, minor 1) — cannot create
a directory there. Changed symlink namespace to /dev/consoles/.
- conman 0.3.x has no 'include' directive — CONSOLE entries written
directly into /etc/conman.conf between idempotent markers.
- Debian conman package has no systemd unit — created
/etc/systemd/system/conmand.service with After=ser2net ordering.
- conman.conf had no LOGDIR — logs weren't being written to
/var/log/conman/. Fixed by adding server logdir directive.
Validation: 7 symlinks resolving, 7 TCP ports on Tailscale, conmand with
7 consoles registered, 7 log files actively capturing console output,
both services enabled for reboot survival.
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Set up centralized PDU management for a Cyclades AlterPath PM10i (10
controllable AC outlets) connected to pfv-tsys1 via a Prolific USB-to-DB9
serial adapter. powermand is now listening on 0.0.0.0:10101, making the
PDU manageable over the network from any host on the tailnet.
Scripts (powerman/):
- discover.sh: gather USB adapter, powerman state, device definitions
- setup.sh: idempotent setup — udev rule (stable symlink by serial number),
powerman.conf with 10 outlet nodes, fix powermand dialout group, restart
service. Overridable via env vars for other hosts/PDU types
- test-pdu.sh: validate control by cycling outlet 10 off then on (8/8 pass)
- status.sh: quick PDU status check
Issues fixed during setup:
- Config pointed at /dev/ttyUSB0 but adapter is at /dev/ttyUSB1 (fixed
with udev symlink /dev/cyclades-pm10 pinned to adapter serial)
- powermand (user:powerman) lacked dialout group membership to open the
serial device (fixed with usermod + udev GROUP="dialout")
Validation: outlet 10 turned off (confirmed), turned on (confirmed), then
cycled. All 10 outlets currently ON and manageable.
TODO tracked for Friday: rename outlets from generic (outlet-1..10) to
match physical devices, and change PDU admin password from factory default.
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Bootstrap a regular (non-ITAR) k3s cluster on cnode1/2/3 with embedded
etcd. All cluster communication — node registration, API server, etcd
peering, flannel VXLAN — runs exclusively over Tailscale IPs. Zero LAN
addresses appear in node status or TLS certificates.
Scripts (k8s/):
- env.sh: shared config (Tailscale IPs, SSH opts, k3s version)
- wipe.sh: remove existing k3s from all cnodes
- install-cp.sh: full bootstrap (cnode1 --cluster-init, then cnode2/3 join)
- join-servers.sh: re-join cnode2/3 only (fixes broken join state)
- post-setup.sh: apply NoSchedule taints, fetch kubeconfig, verify
- verify.sh: 13-point health check (nodes, Tailscale IPs, taints, etcd,
CoreDNS, API server, workload isolation)
- probe-nodes.sh: SSH + Tailscale reachability check
All 3 cnodes are tainted control-plane:NoSchedule so no user workloads
can schedule on the control plane. 13/13 health checks pass.
Docs updated: k8s README TL;DR reflects k3s (not Talos) as the deployed
choice, with Talos preserved for the future ITAR cluster.
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Author the docs/k8s/ directory capturing the pfv-k8s control-plane design:
- README.md: TL;DR of all decisions (distro, runtime, cnode count, admin
access, identity, tenancy, registry, storage)
- DISTRO-DECISION.md: Talos vs k3s analysis. Recommend Talos because the
ITAR/classified requirement makes its immutable, API-only, measured-boot
posture structurally easier to certify than SCAP-hardened Debian. k3s was
only ever a plan (no cluster deployed), so cutover cost is ~zero.
- ARCHITECTURE.md: target arch with mermaid diagrams covering control
plane, LAN-only network with Tailscale subnet-router admin, Cilium CNI,
OIDC to Keycloak, per-tenant vcluster isolation (incl. ITAR tenant),
Harbor pull-through cache on D3 SSD, bootstrap sequence, and DR.
Gardening: register docs/k8s/ in docmap.md, update STATUS.md with the new
k8s section and the three pending user decisions (cnode count, host spread,
Tailscale pattern).
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Restructure top-level to exactly three .md files:
- AGENTS.md (agent operating instructions)
- README.md (project overview, links to status + docmap)
- STATUS.md (living project status, agent-maintained, human read-only)
Add docs/docmap.md as the single documentation index/map. All docs are
categorized (active, operational guides, historical) with last-reviewed
dates. Includes the agent gardening protocol requiring agents to update
STATUS.md and docmap.md after every work session.
Rewrite AGENTS.md to be lean: points to docmap.md for doc discovery,
encodes the automatic gardening protocol (keep docs/code in sync, grep
for stale paths after renames, update STATUS.md after infrastructure
changes). All references are Gitea-renderable relative links.
Simplify README.md: header links to STATUS.md + docmap.md + AGENTS.md,
doc table replaced with pointer to docmap.md.
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