| license | Apache-2.0 |
| name | doca-programming-guide |
| description | Use this skill when the user is writing their first DOCA app or asking a library-agnostic programming question — picking a shipped sample to copy and modify, wiring the canonical pkg-config doca-{library} + meson build (or FFI from Rust / Go / Python against the public C ABI), walking the cfg-create → init → start → use → stop → destroy lifecycle, validating a spec before commit, or decoding a DOCA_ERROR_* return with doca_error_get_descr(). Trigger even when the user does not say "DOCA programming guide" — implicit phrasings: "write my first DOCA program", "meson line for doca_rdma_*", "got DOCA_ERROR_BAD_STATE on my first call", "call DOCA from Rust without writing C", "built clean but nothing on the wire", "what order do doca_*_pipe calls go in". Refuse and route for install / hugepages / pkg-config not resolving doca-{library} (doca-setup), docs or version lookup (doca-public-knowledge-map), and library-internal API construction like Flow pipe topology or RDMA QP setup (matching library skill).
|
| metadata | {"kind":"library"} |
| compatibility | No DOCA install required to read this skill (it is an overlay loaded against any DOCA artifact skill); the validation steps within DO require a live DOCA install at /opt/mellanox/doca.
|
DOCA programming guide
Where to start: Read ## Audience to confirm the user
is consuming DOCA, not contributing to it. Then jump to the H2
that matches the verb (## modify for first-app derivation,
## build for the canonical build pattern, ## test for the test
loop, ## debug for the program-class debug ladder).
Example questions this skill answers well
These are the CLASSES of program-class questions the skill is built
to answer, each with one worked example. Library-specific overlays
(Flow / DMS / Caps / …) live in the matching library skill; this
skill answers the library-agnostic shape.
- "How do I write my first DOCA program for <any library>?" —
worked example: "I want to write my first DOCA Flow application."
Answered by the modify-a-shipped-sample workflow in
TASKS.md ## modify plus the canonical build
pattern in TASKS.md ## build.
- "What's the right build line for any DOCA library?" — worked
example: "How do I compile a program that calls
doca_rdma_*?"
Answered by the pkg-config doca-<library> pattern in
TASKS.md ## build (C/C++ Track 1) and the
FFI/bindings pattern in Track 2.
- "What's the lifecycle every DOCA object follows?" — worked
example: "What's the right order of
doca_flow_pipe_* calls in my
program?" Answered by the cfg-create / init / start / use / stop /
destroy template in CAPABILITIES.md ## Capabilities and modes.
- "
DOCA_ERROR_* came back — what does it mean and what do I do?"
— worked example: "My code got DOCA_ERROR_BAD_STATE." Answered
by the cross-library doca_error_get_descr() rule in
CAPABILITIES.md ## Error taxonomy
- "My program built and started, but does nothing on the wire." —
worked example: "My Flow program runs cleanly but no traffic is
matched." Answered by the validate-before-commit rule in
CAPABILITIES.md ## Safety policy
and the layered program-class debug ladder in
TASKS.md ## debug.
- "What does <language> consumer of DOCA look like (FFI /
bindings)?" — worked example: "How do I call DOCA Comch from Rust
without writing C?" Answered by Track 2 of
TASKS.md ## build (FFI against the public C
ABI) and the language-neutral lifecycle in
CAPABILITIES.md ## Capabilities and modes.
- "How should I classify and build all the shipped DOCA samples and
applications? What's the difference between a sample and an
application?" — worked example: Answered by the sample-vs-application model and
the category / dependency / skip-vs-fail taxonomy in
,
which separates from .
If the question is env-class (install / build env / hugepages /
devices), route to doca-setup. If it is
library-specific (Flow pipe topology, RDMA QP setup, DMS service
deploy), layer the matching library skill on top.
Audience
This skill serves external developers building applications that
consume DOCA libraries — i.e., users whose code calls one or more
doca_<library>_* symbols (directly in C/C++, or through FFI /
bindings from another language). It is programming with DOCA,
not programming of DOCA: it is not for NVIDIA developers
contributing to DOCA itself, and it does not assume access to the
DOCA source tree, internal NVIDIA tooling, or any non-public
information. The only inputs it ever points the agent at are the
ones any external user has: the public docs at
docs.nvidia.com/doca/sdk/,
the public catalog at
catalog.ngc.nvidia.com, the
public GitHub repos under
github.com/NVIDIA /
github.com/NVIDIA-DOCA, the
public developer forum, and the on-disk /opt/mellanox/doca tree
that the public DOCA install (or the public NGC DOCA container,
nvcr.io/nvidia/doca/doca) puts on the user's host. Where to find
and how to install questions are routed elsewhere — see Related
skills below.
Language scope. DOCA itself is a C library family; every shipped
sample in /opt/mellanox/doca/samples/ and every shipped reference
application in /opt/mellanox/doca/applications/ is C. C and C++
consumers are the canonical case for every prescriptive workflow in
this skill. Other-language consumers (Rust, Go, Python, …) consume the
same *.so libraries through FFI or language-specific bindings against
the public C ABI; the skill keeps the lifecycle, capability, error,
observability, and safety guidance language-neutral, and routes the
language-specific build / FFI work back to the consumer's own toolchain
without authoring wrappers.
When to load this skill
Load this skill when the user has DOCA installed and the env-class
preconditions are already satisfied (i.e.,
doca-setup has produced a clean install
where pkg-config doca-<library> resolves, hugepages are mounted, and
devices are visible), and is now asking a question about how to
actually program against DOCA in a library-agnostic way:
- Understanding what DOCA's pieces are (libraries, apps, services,
tools) and which side of the wire they run on.
- The canonical
pkg-config + meson build pattern any DOCA application
follows, regardless of which library it consumes.
- The universal derive a custom first application from a shipped
sample workflow that every library skill extends with
library-specific overrides — moved here from
doca-setup because it
is a programming verb, not an env verb.
- The universal DOCA lifecycle (
cfg-create → init → start → use → stop → destroy) and how it manifests across libraries.
- The general
DOCA_ERROR_* pattern, doca_error_t, and
doca_error_get_descr() — the cross-library shape, not Flow- or
RDMA-specific overlays.
- The validate-before-commit rule and the program-side safety policy
that every library skill inherits.
- Programming patterns that apply to consumers in any language
(C/C++ directly, FFI / bindings for Rust / Go / Python / …) — the
skill keeps the patterns language-neutral and points the agent at
the public C ABI as the authoritative surface.
Do not load this skill for:
- "Is my install healthy? Why does
pkg-config not find doca-flow?
How do I mount hugepages? I don't have DOCA installed yet — can I
use a container?" — env-class questions belong in
doca-setup, which owns install
verification, env preparation, env-class debugging, and the
no-install → NGC container fallback path for any user on macOS,
Windows, or Linux without DOCA.
- "What is DOCA? Where is the Flow programming guide? Which package
do I install?" — routing / orientation questions belong in
doca-public-knowledge-map.
- "How do I construct a Flow pipe / set up an RDMA queue / use Comch
to send a message?" — library-internal API questions belong in the
matching library skill (e.g.
doca-flow).
What this skill provides
This is a thin loader. The body keeps only the orientation needed
to pick the right next file. The substantive material lives in two
companion files:
CAPABILITIES.md — what every DOCA program looks like in the
abstract: the shape of DOCA (host / DPU / switch, libraries / apps /
services / tools, build flavor selection rationale), the universal
program lifecycle, the unified version-compat rule that applies to
any program linking DOCA, the cross-library DOCA_ERROR_* taxonomy,
the program-side observability surface (DOCA logging, capability
snapshots), and the program-side safety policy that every library
skill inherits.
TASKS.md — step-by-step workflows for the six in-scope programming
verbs: configure, build, modify, run, test, debug. The
## modify verb owns the universal derive a custom first app from
a sample pattern that every DOCA library skill extends with
library-specific overrides; the ## build verb owns the canonical
pkg-config doca-<library> build pattern in two language tracks
(C/C++ direct, non-C via FFI).
This skill assumes doca-setup has already
produced a clean install. It does not cover env preparation; that
is doca-setup's job, including the no-install → NGC container
(nvcr.io/nvidia/doca/doca) fallback for users on macOS, Windows, or
Linux without DOCA.
What this skill deliberately does not ship
This skill is agent guidance, not a samples or templates bundle.
It deliberately does not contain — and pull requests should not add:
- Pre-written DOCA application source code, in any language. This
includes C / C++ files, Rust crates, Go packages, Python modules,
and wrapper code for any other language. The DOCA API surface
evolves between releases and code written from documentation prose
cannot be verified without compiling / linking / FFI-loading it
against the live library on a real install. The verified DOCA
application source code is the shipped C samples on the user's
installed system; the agent's job is to route the user to that file
and prescribe a minimum-diff modification on it
(
TASKS.md ## modify) — for C/C++ users — or to
route non-C users to the public C ABI surface that their bindings
will call (TASKS.md ## build Track 2), not to
author the wrapper.
- Standalone build manifests (
meson.build, CMakeLists.txt,
Cargo.toml, setup.py, go.mod, …) parked inside the skill. The
agent constructs the build manifest in the user's project
directory against the user's installed DOCA, where pkg-config --modversion doca-<library> is the source of truth.
- A
samples/, bindings/, or reference/ subtree of any kind.
A mock or incomplete artifact in this skill's tree, even one
labeled "reference", is misleading: users will read it as
buildable.
Loading order
- Read this
SKILL.md first to confirm the user's question is a
programming-class question (not env, not routing, not library-API).
- For the DOCA shape, the universal lifecycle, the cross-library
error taxonomy, the program-side observability surface, and the
safety policy that every library skill inherits, see
CAPABILITIES.md.
- For step-by-step programming workflows —
configure, build,
modify, run, test, debug — see TASKS.md.
If the user is asking for a first app in a specific library, walk
through TASKS.md ## modify for the universal
copy-and-edit pattern, then hand off to the library skill (e.g.
doca-flow) for the library-specific values
to swap.
Related skills
doca-public-knowledge-map
— public DOCA documentation routing and the on-disk layout of an
installed DOCA package. This skill defers all "where is X
documented", "where on disk is Y", and "how do I check the
installed version" questions to the knowledge-map.
doca-setup — env preparation, install
verification, env-class debugging, and the I have no install yet
procedure with the NGC container (nvcr.io/nvidia/doca/doca) as
the universal Stage-1 fallback for any user on macOS, Windows, or
Linux without DOCA. This skill assumes doca-setup's preconditions
are already satisfied.
doca-flow — DOCA Flow on BlueField.
Extends this skill's ## modify (universal first-app derivation)
with the Flow-specific list of fields to swap.