| license | Apache-2.0 |
| name | doca-sha |
| description | Use this skill when the user is doing hands-on DOCA SHA programming — offloading SHA-1, SHA-256, or SHA-512 hashing onto a BlueField DPU or ConnectX accelerator, picking between one-shot `doca_sha_task_hash` and incremental `doca_sha_task_partial_hash`, querying `doca_sha_cap_*` for algorithm support and min destination / max source buffer sizes, setting source / destination `doca_mmap` permissions, or decoding DOCA_ERROR_* returns from the SHA API. Trigger even when the user does not explicitly mention "DOCA SHA" or "doca_sha_task" — typical implicit phrasings include "hash a multi-GiB file on the DPU", "offload SHA-256 to the BlueField", "streaming hash over chunks", "partial hash returns BAD_STATE", "destination buffer too small for digest", or "is SHA-512 available on this card". Refuse and route elsewhere for general cryptographic-hash theory (collision resistance, SHA-3 selection), other DOCA crypto libraries (AES-GCM, Compress, DMA), or DOCA install / BFB bring-up — those belong to other skills.
|
| metadata | {"kind":"library"} |
| compatibility | Requires DOCA SDK installed at /opt/mellanox/doca on Linux (Ubuntu 22.04/24.04 or RHEL/SLES) with a BlueField DPU or ConnectX NIC attached. Reads the user's local install via `pkg-config doca-sha` and inspects /opt/mellanox/doca/{lib,include,samples,applications}.
|
DOCA SHA
Where to start: This skill assumes DOCA is already installed and
the user is doing hands-on SHA-acceleration work on a BlueField
/ ConnectX / host with DOCA. Open TASKS.md if the user
wants to do something (configure / build / modify / run / test /
debug); open CAPABILITIES.md when the question
is what can DOCA SHA express on this version. If the user has not
installed DOCA yet, route to
doca-setup first. If the user is
asking "should I even use the accelerator for this hash?", the
path-selection rule in
CAPABILITIES.md ## Capabilities and modes
is the first stop.
Example questions this skill answers well
The CLASSES of DOCA SHA questions this skill is built to answer,
each with one worked example. The agent should treat the class as
the load-bearing piece — the worked example is a single instance.
- "Should I offload this hash to DOCA SHA, or just compute it on
the CPU?" — worked example: "I am verifying file integrity on
a 4 GiB image; is doca-sha worth the setup vs OpenSSL on the
CPU?". Answered by the path-selection table in
CAPABILITIES.md ## Capabilities and modes
- "Does my device support the SHA algorithm I want?" — worked
example: "is SHA-256 in the accelerator on this BlueField, and
what is the minimum destination buffer size for it?". Answered
by the algorithm + buffer-sizing capability-query rule
(
doca_sha_cap_task_hash_get_supported(devinfo, algorithm)
for the one-shot path; _task_partial_hash_get_supported(devinfo, algorithm)
for the partial-hash path; doca_sha_cap_get_min_dst_buf_size,
doca_sha_cap_get_max_src_buf_size) in
CAPABILITIES.md ## Capabilities and modes
- "How do I pick between the one-shot and the partial / incremental
hash task?" — worked example: "my input is 1 GiB and the device
cap says max source buffer is 64 MiB". Answered by the
one-shot-vs-partial table in
CAPABILITIES.md ## Capabilities and modes
- "What permissions does the source / destination mmap need?" —
worked example: "my
doca_sha_task_hash returns
DOCA_ERROR_NOT_PERMITTED". Answered by the permission matrix
in CAPABILITIES.md ## Safety policy
- "Is this DOCA SHA API available on my installed DOCA version?"
— worked example: "is
doca_sha_task_partial_hash in the DOCA
I have installed?". Answered by the version-compatibility
overlay in
CAPABILITIES.md ## Version compatibility,
which cross-links the canonical detection chain in
and adds the
SHA-specific bullets.
Audience
This skill serves external developers building applications that
consume the DOCA SHA library — i.e., users whose code calls
doca_sha_* (directly in C/C++, or through FFI/bindings from
another language) to offload SHA hashing onto a BlueField DPU or
ConnectX accelerator. It is not for NVIDIA developers contributing
to DOCA SHA itself.
Language scope. DOCA SHA ships as a C library with pkg-config
module name doca-sha. The shipped samples are written in C. C and
C++ consumers are the canonical case and the worked examples in
TASKS.md assume that path. Other-language consumers (Rust, Go,
Python, …) consume the same *.so through FFI or language-specific
bindings; the skill's contribution in that case is to keep the
lifecycle, capability-discovery, permission, error-taxonomy, and
one-shot-vs-partial guidance language-neutral, and to route the
agent to the public C ABI as the authoritative surface that any
wrapper will eventually call.
When to load this skill
Load this skill when the user is doing hands-on DOCA SHA work, in
any language. Concretely:
- Initializing a
doca_sha context on a doca_dev and configuring
at least one task type (doca_sha_task_hash and/or
doca_sha_task_partial_hash) before doca_ctx_start().
- Choosing between the one-shot task (
doca_sha_task_hash —
input fits in a single source buffer, output digest lands in a
single destination buffer) and the partial / incremental task
(doca_sha_task_partial_hash — input streamed in chunks, finalized
separately) for the user's data shape.
- Setting permissions on
doca_mmap correctly for the source buffer
(DOCA_ACCESS_FLAG_LOCAL_READ_ONLY at minimum) and the destination
buffer (DOCA_ACCESS_FLAG_LOCAL_READ_WRITE).
- Sizing the destination buffer against
doca_sha_cap_get_min_dst_buf_size(devinfo, algorithm) and
the source buffer against
doca_sha_cap_get_max_src_buf_size(devinfo).
- Checking which SHA algorithm enums
(
DOCA_SHA_ALGORITHM_SHA1, DOCA_SHA_ALGORITHM_SHA256,
DOCA_SHA_ALGORITHM_SHA512) the active device's accelerator
advertises, via
doca_sha_cap_task_hash_get_supported(devinfo, algorithm) and
doca_sha_cap_task_partial_hash_get_supported(devinfo, algorithm) —
both fold task-support and algorithm-support into one call.
- Validating a digest against a published test vector before pushing
bulk input through the accelerator.
- Debugging a
DOCA_ERROR_* returned from a SHA call (lifecycle vs.
buffer-sizing vs. permission vs. unsupported-algorithm) and the
task-completion event on the progress engine.
- Designing or extending non-C bindings (Rust, Go, Python, …) that
wrap the SHA C ABI — for the lifecycle, permission, capability,
and one-shot-vs-partial rules the wrapper must honor.
Do not load this skill for general DOCA orientation, install of
DOCA itself, non-SHA hashing libraries on CPU (use OpenSSL or
similar), or other DOCA libraries. For those, use
doca-public-knowledge-map.
What this skill provides
This is a thin loader. The body keeps only the orientation
needed to pick the right next file. The substantive SHA-specific
material lives in two companion files:
CAPABILITIES.md — what DOCA SHA can express on this version:
the two task types (one-shot hash and partial / incremental
hash), the three algorithm enums, the capability-query surface
(doca_sha_cap_* for algorithm support and buffer sizing), the
SHA error taxonomy (mapped onto the cross-library DOCA_ERROR_*
set), the observability surface (per-task completion events on
the progress engine), the safety policy that gates source /
destination mmap permission decisions, and the path-selection
rule (when to use doca-sha versus a CPU hash or a different
DOCA crypto library).
TASKS.md — step-by-step workflows for the six in-scope SHA
verbs: configure, build, modify, run, test, debug.
Plus a Deferred task verbs block that points out-of-scope
questions at the right next skill.
The skill assumes a host or BlueField where DOCA is already
installed at the standard location and the user has the privileges
their public install profile expects. It does not cover installing
DOCA — that path goes through
doca-setup.
What this skill deliberately does not ship
This skill is agent guidance, not a samples or templates
bundle. To keep the boundary clean, it deliberately does not
contain — and pull requests should not add:
- Pre-written DOCA SHA application source code, in any
language. The verified SHA source code is the shipped C samples
at
/opt/mellanox/doca/samples/doca_sha/, plus the File Integrity
reference application linked from the public DOCA SHA guide. The
agent's job is to route the user to those files and prescribe a
minimum-diff modification on them via the universal
modify-a-sample workflow in
doca-programming-guide,
layered with the SHA-specific overrides in
TASKS.md ## modify.
- Pre-computed digest tables for arbitrary inputs. The skill
tells the agent to use a published test vector (e.g. the NIST
SHA test vectors for the empty string, "abc", and the
million-
a input) as the known-vector smoke; it does not ship a
vector bank of its own.
- Standalone build manifests (
meson.build, CMakeLists.txt,
Cargo.toml, …) 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-sha
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 in
scope.
- For the SHA capability matrix, algorithm enums, one-shot vs
partial task split, capability-query rules, permission matrix,
error taxonomy, observability, and safety / path-selection
policy, see CAPABILITIES.md.
- For step-by-step workflows — configure, build, modify, run,
test, debug — see TASKS.md.
Both companion files cross-link to each other,
doca-version for the canonical
version-handling rules, and
doca-public-knowledge-map
whenever the right answer is "look it up in the public docs or the
installed package layout" rather than "SHA-specific guidance".
Related skills
doca-public-knowledge-map —
the routing table for every public DOCA documentation source and
the on-disk layout of an installed DOCA package. The DOCA SHA
page lives at docs.nvidia.com/doca/sdk/DOCA-SHA/; the File
Integrity reference application is the canonical worked example.
doca-setup — env preparation,
install verification, and the I have no install yet path with
the public NGC DOCA container. This skill assumes its
preconditions are satisfied.
doca-version — canonical DOCA
version-handling rules. This skill's
## Version compatibility
cross-links the four-way match rule and adds only the SHA-specific
"discover algorithms + buffer sizes via cap query" overlay.
doca-structured-tools-contract —
the bundle's structured-tools precedence rule (detect / prefer
/ fall back / report). The Command appendix in
TASKS.md honors this contract.
doca-programming-guide —
general DOCA programming patterns shared by every library: the
canonical pkg-config + meson build pattern, the universal
modify-a-shipped-sample first-app workflow, the universal
lifecycle, the cross-library DOCA_ERROR_* taxonomy, and the
program-side debug order. This skill layers SHA specifics on
top.
doca-debug — the cross-cutting
debug ladder (install / version / build / link / runtime /
program / driver). SHA-specific debug (algorithm-not-supported,
destination-buffer-too-small, partial-hash-out-of-order) overlays
on top of that ladder.