DOCA BlueField-3 (BF3) deployment
SkillCloud & infraGuides your agent through installing and bringing up NVIDIA BlueField-3 DPUs over RShim and the TMFIFO management channel.
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Then ask your AI: use the DOCA BlueField-3 (BF3) deployment skill
About this capability
Use this skill for BlueField-3 (BF3) day-1 platform bring-up via the classic RShim/BFB path: pushing a BlueField bundle (BFB) to the DPU over RShim with bfb-install from the host, the host-to-DPU TMFIFO management channel (tmfifo_net0, the 192.168.100.x convention), RShim daemon state and console-ov
What this skill tells your AI
The instructions your AI receives, as published by nvidia/skills in skills/doca-bf3-deployment/SKILL.md and read by ahel’s review.
Where to start: This skill is the bundle's home for BlueField-3
day-1 platform bring-up — taking a BF3 from "powered card in the
slot" (or a card that just came back broken from a BFB push) to
"Arm OS healthy, TMFIFO up, host PFs bound, four-way version match
closed, ready to run a workload". It owns the classic RShim/BFB
path that BF3 uses today; the newer BMC-Redfish provisioning path
is the sibling skill
doca-bf4-deployment (the BF4
equivalent). If the user has a BF3 and needs to push a BFB, recover
a DPU that did not come back, or verify the install, open
TASKS.md and start at
## configure. If the question is what shape
does the BF3 platform-bring-up surface even have, start at
CAPABILITIES.md. Once the BF3 is healthy, this
skill routes onward to the deployment skills — running a binary
goes to
doca-bare-metal-deployment;
deploying a service container goes to
doca-container-deployment.
Every mutating burn invoked from a bring-up step — the BFB
reflash itself, any mlxconfig set (including a DPU/separated-host
mode flip), a firmware burn, or a kernel-boot-parameter change — is
governed by the change-application meta-policy in
doca-hardware-safety, which
the agent loads ALONGSIDE this skill. This skill adds only the
BF3-specific operational sequencing on top; it does NOT redefine
the preflight / OOB-console / maintenance-window / rollback
discipline that meta-policy owns.
Audience
This skill serves external DOCA operators bringing up a real BlueField-3 — i.e. people who already have:
- a physical BlueField-3 in a host (or a standalone BF3 they can reach over its console / management network),
- host-side RShim access to the DPU (the RShim userspace daemon and
the
/dev/rshim*character-device tree present over the PCIe or USB RShim interface), and - a matching DOCA-Host install on the host plus a BlueField bundle (BFB) image downloaded from the public DOCA Downloads page.
It is not for:
- BlueField-4 bring-up (the BMC-Redfish provisioning path) — route
to
doca-bf4-deployment, the BF4 equivalent of this skill, - kernel-driver or BlueField-OS developers contributing to
mlx5_*or the BFB image itself (that is internal-tree work, not a field deployment), - operators who already have a healthy BF3 and just want to run a
binary (route to
doca-bare-metal-deployment) or deploy a service container (route todoca-container-deployment), - fresh-no-hardware users with no DOCA install — route to
doca-setup ## no-install.
The skill teaches the agent the BF3 bring-up procedure and the
rules for quoting documented commands from the public BlueField
Platform Software Manual, the public DOCA Installation Guide, and
the MFT manual via
doca-public-knowledge-map;
it does not invent bfb-install flag sets, BFB image filenames,
RShim character-device paths, bf.cfg schema keys, mlxconfig
parameter names, or TMFIFO subnets from memory. Where a fact is
already vetted in
doca-bare-metal-deployment ## bluefield-lifecycle,
this skill reuses that exact fact rather than restating a new one.
When to load this skill
Load this skill when the user is doing hands-on BlueField-3 platform bring-up over the RShim/BFB path, or asking a cross-cutting BF3 lifecycle question that is not specific to one library's API. Concretely:
- Pushing a BFB image to a BF3 for the first time (or re-pushing
after a failed install), from the host over the RShim interface
with
bfb-install. - Bringing up or recovering the host-to-DPU TMFIFO management
channel (
tmfifo_net0, the documented192.168.100.xconvention) and the RShim console. - Confirming RShim driver/daemon state on the host (the userspace
rshimdaemon and the/dev/rshim*tree) before any push or console capture. - Deciding (and routing) a DPU-mode change — DPU / embedded-function
mode vs separated-host / NIC mode — knowing the actual
mlxconfig setburn leaves this skill fordoca-hardware-safety. - Recovering a BF3 that did not come back after a BFB push:
bfb-installexited 0 but the DPU never reached the documentedDPU is readymarker;ping 192.168.100.2works but SSH refuses; host PFs are present inlspci -d 15b3:but their netdevs are gone. - Verifying a BF3 install —
cat /etc/mlnx-releaseon the Arm side, the four-way version match perdoca-version— and distinguishing the host-side DOCA install from the BlueField-Arm-side DOCA install. - Cross-cutting questions: "is DOCA on the host or on the Arm
side, and which one do I install?", "my BF3 was fine last week
and after a BFB push it never came back — where do I start?",
"how do I tell which
/dev/rshim<N>is which BlueField on a multi-DPU host?".
Do not load this skill for: BlueField-4 bring-up (route to
doca-bf4-deployment, the BF4
equivalent); running a DOCA-linked binary on a healthy BF3 (route to
doca-bare-metal-deployment);
deploying a DOCA service container (route to
doca-container-deployment);
env-preparation including hugepages, IOMMU, pkg-config, and devlink
mode flips (use doca-setup); the body of
the version-match rule (use doca-version);
or any hardware-state-changing burn itself — the change-application
discipline is meta-policy owned by
doca-hardware-safety, loaded
ALONGSIDE this skill.
What this skill provides
This is a thin loader. Substantive material lives in two companion files:
CAPABILITIES.md— the BF3 platform-bring-up contract: the RShim/BFB transport surface (the userspace RShim daemon, the/dev/rshim*tree, console-over-rshim, the BFB image as the unit of input), the TMFIFO management-channel surface (tmfifo_net0/tm-br, the documented192.168.100.xconvention, theip route get-before-pingloopback gotcha), the DPU-mode surface (DPU / embedded-function vs separated-host / NIC mode, set viamlxconfigat BFB-install time — a MUTATING burn routed todoca-hardware-safety), the host-side-vs-Arm-side DOCA install distinction, the BF3-version overlay on the four-way match owned bydoca-version, the cross-cutting error taxonomy, the observability surface, and the safety policy (overlay ondoca-hardware-safety).TASKS.md— step-by-step workflows for the in-scope BF3 lifecycle verbs:configure,build(routing stub),modify,run(the BFB-install + RShim/TMFIFO bring-up sequence),test(the post-BFB readiness smoke),debug(the six-statebluefield-state-classifier), and theDeferred task verbsblock routing app-launch / container / install / library-API / hardware-state-change / BF4 questions out to their owning skills.
The skill assumes a target where:
- a BlueField-3 is physically present and powered, reachable from a
host that has the RShim daemon and
/dev/rshim*tree available, - the operator has a BFB image downloaded from the public DOCA
Downloads page (route via
doca-public-knowledge-map), and - the operator has an out-of-band path (BMC console, serial-over-LAN, or physical UART) to reach the BF3 if a push breaks the Arm OS.
It does not cover installing DOCA on a host from scratch (that
goes through doca-setup), and it does
not cover BlueField-4 (that goes through
doca-bf4-deployment).
Loading order
- Read this
SKILL.mdfirst to confirm the user's question is in scope (BF3 platform bring-up over the RShim/BFB path; NOT BF4, NOT app-launch, NOT a library-API question). - For the bring-up contract (RShim/BFB transport, TMFIFO channel, DPU-mode surface, host-vs-Arm install distinction, BF3-version overlay, error taxonomy, observability surface, BF3 safety overlay), see CAPABILITIES.md.
- For step-by-step workflows —
configure,build(routing stub),modify,run(BFB install + RShim/TMFIFO bring-up),test(post-BFB readiness smoke),debug(the six-statebluefield-state-classifier), plus theDeferred task verbsblock — see TASKS.md.
Example questions this skill answers well
What this skill deliberately does not ship
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