feat(fixtures): curated demo targets + seed script + golden PLC baselines (#187)
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Versioned, reproducible set of representative targets so every scan path can
be exercised repeatably and the nightly regression (#188) has a baseline.

- fixtures/demo-targets/targets.json: 5 targets — PlcSps composite
  (pump_station.st + pump_fbd.xml + optional Modbus live URL + optional
  firmware image), PlcSps pure (conveyor.xml + traffic_light.st), plain git
  SAST (sharang/cra-vuln-demo, pinned), WebApp (juice-shop v19.2.1 + live
  URL), FirmwareRtos (zephyr example-application, pinned). Each carries an
  `expect` golden baseline (min_findings, sast_rule_ids, cwes, control_refs,
  min_sbom_components, scans_offered, pentest_supported, detected_facts).
- compliance-agent::fixtures: typed loader (DemoTargets/DemoTarget/
  DemoArtifact/Expect) + lib tests that keep the manifest well-formed and
  assert the PLC baselines offline by running analyze_tree over the checked-in
  fixtures (runs in the normal --lib CI job).
- scripts/seed-demo-targets.sh: curl+jq seeder over the public onboarding API
  (create → upload → detect → optional --scan), --only, --reset (deletes only
  the "Demo · " prefix), env overrides for infra-dependent artifacts.
- docs/guide/demo-targets.md + sidebar entry.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01EgxGHn22YEfQz5fLHSHkLv
This commit is contained in:
Sharang Parnerkar
2026-08-31 14:33:01 +02:00
co-authored by Claude Fable 5
parent 0834547a74
commit 3ac4b34c29
6 changed files with 732 additions and 0 deletions
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//! Curated demo targets (#187).
//!
//! `fixtures/demo-targets/targets.json` is the versioned, reproducible set of
//! representative targets every scan path can be exercised against: PlcSps
//! (composite), a plain git SAST repo, a WebApp (git + live URL) and an RTOS
//! firmware repo. The manifest is consumed by:
//!
//! * `scripts/seed-demo-targets.sh` — onboards the targets through the
//! public API (optionally triggering a first scan),
//! * the nightly regression (#188) — the `expect` block is the golden
//! baseline per target,
//! * the lib tests below — which keep the manifest well-formed and assert the
//! PLC baselines offline (no Mongo, no network) on every CI run.
//!
//! Artifacts come in two flavours: `source_ref` (git URL / live URL / image
//! ref; may be overridden by the env var named in `source_ref_env`) and
//! `upload` (a file path relative to the workspace root, pushed through
//! `POST /targets/{id}/artifacts/upload`; may instead come from the env var
//! named in `upload_env`). Artifacts flagged `optional` are skipped when their
//! env var is unset, so the set seeds cleanly on a laptop without OT infra.
use std::collections::BTreeMap;
use std::path::{Path, PathBuf};
use compliance_core::models::onboarding::{ArtifactKind, PlcFormat, TargetType};
use serde::{Deserialize, Serialize};
/// Manifest path, relative to the workspace root.
pub const MANIFEST_PATH: &str = "fixtures/demo-targets/targets.json";
/// Why a manifest could not be loaded.
#[derive(Debug, thiserror::Error)]
pub enum FixtureError {
#[error("read {path}: {source}")]
Io {
path: PathBuf,
#[source]
source: std::io::Error,
},
#[error("parse {path}: {source}")]
Parse {
path: PathBuf,
#[source]
source: serde_json::Error,
},
}
/// The whole demo-target set.
#[derive(Debug, Clone, Serialize, Deserialize)]
pub struct DemoTargets {
/// Bumped on incompatible manifest changes.
pub schema_version: u32,
/// Prepended to every target name on seed; the seed script's `--reset`
/// deletes exactly the targets carrying this prefix.
pub name_prefix: String,
pub targets: Vec<DemoTarget>,
}
/// One curated target.
#[derive(Debug, Clone, Serialize, Deserialize)]
pub struct DemoTarget {
/// Stable machine key (used in baseline reports and as the default
/// `repo_id`-ish handle in nightly output).
pub key: String,
/// Human name (without the prefix).
pub name: String,
pub target_type: TargetType,
#[serde(default)]
pub description: Option<String>,
#[serde(default)]
pub artifacts: Vec<DemoArtifact>,
/// Golden baseline for the nightly regression.
#[serde(default)]
pub expect: Expect,
}
/// One artifact of a curated target.
#[derive(Debug, Clone, Serialize, Deserialize)]
pub struct DemoArtifact {
pub kind: ArtifactKind,
/// Literal reference (git URL, live URL, image ref) — the default when
/// `source_ref_env` is unset in the environment.
#[serde(default)]
pub source_ref: Option<String>,
/// Env var that overrides `source_ref` at seed time.
#[serde(default)]
pub source_ref_env: Option<String>,
/// Workspace-relative file to upload as this artifact's content.
#[serde(default)]
pub upload: Option<String>,
/// Env var holding an absolute path to upload instead of `upload`.
#[serde(default)]
pub upload_env: Option<String>,
#[serde(default)]
pub branch: Option<String>,
/// Commit the baseline was recorded against (informational: the agent
/// clones `branch`; re-pin when the baseline moves).
#[serde(default)]
pub pin: Option<String>,
#[serde(default)]
pub pin_tag: Option<String>,
#[serde(default)]
pub plc_format: Option<PlcFormat>,
/// Skip silently when the env var is unset (needs infra not every
/// environment has).
#[serde(default)]
pub optional: bool,
}
impl DemoArtifact {
/// The upload path, resolved against the workspace root. `None` for
/// reference-style artifacts or env-only uploads whose var is unset.
pub fn upload_path(&self, root: &Path) -> Option<PathBuf> {
if let Some(var) = &self.upload_env {
if let Ok(p) = std::env::var(var) {
if !p.is_empty() {
return Some(PathBuf::from(p));
}
}
}
self.upload.as_ref().map(|p| root.join(p))
}
/// True when this artifact only exists if its env var is provided.
pub fn env_only(&self) -> bool {
self.upload.is_none() && self.source_ref.is_none()
}
}
/// Golden baseline; every field is optional so a target can assert only what
/// is deterministic for it.
#[derive(Debug, Clone, Default, Serialize, Deserialize)]
pub struct Expect {
/// Lower bound on total findings after a full scan.
#[serde(default)]
pub min_findings: Option<usize>,
/// Rule ids that must be present among SAST findings.
#[serde(default)]
pub sast_rule_ids: Vec<String>,
/// CWE ids (`CWE-NNN`) that must be present.
#[serde(default)]
pub cwes: Vec<String>,
/// Control refs (e.g. `cra-ai-8`) that must be stamped on some finding.
#[serde(default)]
pub control_refs: Vec<String>,
/// Lower bound on SBOM components.
#[serde(default)]
pub min_sbom_components: Option<usize>,
/// Scans `applicable-scans` must offer for this target.
#[serde(default)]
pub scans_offered: Vec<String>,
#[serde(default)]
pub pentest_supported: Option<bool>,
/// `key -> value` facts `detect` must surface.
#[serde(default)]
pub detected_facts: BTreeMap<String, String>,
}
impl DemoTargets {
/// Workspace root, derived from this crate's manifest dir.
pub fn workspace_root() -> PathBuf {
Path::new(env!("CARGO_MANIFEST_DIR"))
.parent()
.map(Path::to_path_buf)
.unwrap_or_else(|| PathBuf::from("."))
}
/// Load the checked-in manifest.
pub fn load() -> Result<Self, FixtureError> {
Self::load_from(&Self::workspace_root().join(MANIFEST_PATH))
}
/// Load a manifest from an explicit path.
pub fn load_from(path: &Path) -> Result<Self, FixtureError> {
let raw = std::fs::read_to_string(path).map_err(|source| FixtureError::Io {
path: path.to_path_buf(),
source,
})?;
serde_json::from_str(&raw).map_err(|source| FixtureError::Parse {
path: path.to_path_buf(),
source,
})
}
/// Display name as the seed script creates it.
pub fn full_name(&self, t: &DemoTarget) -> String {
format!("{}{}", self.name_prefix, t.name)
}
}
#[cfg(test)]
mod tests {
use super::*;
use crate::pipeline::plc::analyze_tree;
use std::collections::{BTreeSet, HashSet};
fn manifest() -> DemoTargets {
DemoTargets::load().expect("demo manifest loads")
}
#[test]
fn manifest_is_well_formed() {
let m = manifest();
let root = DemoTargets::workspace_root();
assert_eq!(m.schema_version, 1);
assert!(!m.targets.is_empty());
let mut keys = HashSet::new();
for t in &m.targets {
assert!(keys.insert(t.key.as_str()), "duplicate key {}", t.key);
assert!(!t.artifacts.is_empty(), "{}: needs artifacts", t.key);
for a in &t.artifacts {
let refs = usize::from(a.source_ref.is_some()) + usize::from(a.upload.is_some());
let env_only = a.env_only();
assert!(
refs == 1 || (env_only && a.optional),
"{}: artifact {:?} must have exactly one of source_ref/upload, \
or be optional + env-only",
t.key,
a.kind
);
if let Some(p) = &a.upload {
assert!(root.join(p).is_file(), "{}: upload {p} missing", t.key);
}
match a.kind {
ArtifactKind::PlcProject => {
assert!(
a.plc_format.is_some(),
"{}: PLC upload needs plc_format",
t.key
);
}
ArtifactKind::GitRepo => {
assert!(a.branch.is_some(), "{}: git artifact needs branch", t.key);
assert!(a.pin.is_some(), "{}: git artifact needs a pin", t.key);
}
_ => {}
}
}
}
// Coverage the story asks for: PlcSps, firmware, web app, plain git.
let types: HashSet<TargetType> = m.targets.iter().map(|t| t.target_type).collect();
for want in [
TargetType::PlcSps,
TargetType::FirmwareRtos,
TargetType::WebApp,
TargetType::BackendService,
] {
assert!(types.contains(&want), "manifest lacks a {want:?} target");
}
}
/// Offline golden baseline: the checked-in PLC fixtures must keep producing
/// the rule ids the manifest promises. Runs the real control-logic
/// analyzer over the fixture files.
#[test]
fn plc_fixtures_meet_golden_baseline() {
let m = manifest();
let root = DemoTargets::workspace_root();
let all = analyze_tree(&root.join("examples/plc-demo"), "demo");
for t in m
.targets
.iter()
.filter(|t| t.target_type == TargetType::PlcSps)
{
let files: Vec<String> = t
.artifacts
.iter()
.filter(|a| a.kind == ArtifactKind::PlcProject)
.filter_map(|a| a.upload.as_deref())
.filter_map(|p| Path::new(p).file_name())
.map(|n| n.to_string_lossy().into_owned())
.collect();
assert!(!files.is_empty(), "{}: no PLC uploads", t.key);
let mine: Vec<_> = all
.iter()
.filter(|f| {
f.file_path
.as_deref()
.is_some_and(|p| files.iter().any(|n| p.ends_with(n.as_str())))
})
.collect();
let rules: BTreeSet<&str> = mine.iter().filter_map(|f| f.rule_id.as_deref()).collect();
eprintln!("{} -> {} findings, rules {:?}", t.key, mine.len(), rules);
if let Some(min) = t.expect.min_findings {
assert!(
mine.len() >= min,
"{}: {} findings < min {min}",
t.key,
mine.len()
);
}
for r in &t.expect.sast_rule_ids {
assert!(
rules.contains(r.as_str()),
"{}: missing rule {r}; got {rules:?}",
t.key
);
}
}
}
}
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@@ -7,6 +7,7 @@ pub mod config;
pub mod controls;
pub mod database;
pub mod error;
pub mod fixtures;
pub mod ingest;
pub mod llm;
pub mod pentest;
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@@ -21,6 +21,7 @@ export default withMermaid(defineConfig({
{ text: 'Adding Repositories', link: '/guide/repositories' },
{ text: 'Running Scans', link: '/guide/scanning' },
{ text: 'PLC / SPS (CODESYS)', link: '/guide/plc' },
{ text: 'Demo Targets', link: '/guide/demo-targets' },
{ text: 'Understanding Findings', link: '/guide/findings' },
{ text: 'SBOM & Licenses', link: '/guide/sbom' },
{ text: 'Issues & Tracking', link: '/guide/issues' },
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# Demo Targets
Certifai ships a small, versioned set of **demo targets** — representative
inputs that exercise every scan path repeatably. They double as the fixture
set for the nightly regression and as a ready-made walkthrough for demos.
The set lives in [`fixtures/demo-targets/targets.json`](https://git.breakpilot.com/sharang/compliance-scanner-agent/src/branch/main/fixtures/demo-targets/targets.json).
## What is in the set
| Key | Target type | Artifacts | What it exercises |
|-----|-------------|-----------|-------------------|
| `plc-pump-station` | PLC / SPS (composite) | `pump_station.st`, `pump_fbd.xml`, optional Modbus live URL, optional firmware image | PLC control-logic SAST (ST **and** FBD-as-XML), ICS probe, semantic CRA/master-control mapping |
| `plc-conveyor-line` | PLC / SPS | `conveyor.xml`, `traffic_light.st` | Pure control-logic SAST on a PLCopen-XML program plus a realistic OpenPLC-style sample with three planted defects |
| `git-cra-vuln-demo` | Backend service | git `sharang/cra-vuln-demo` | Plain git SAST: Semgrep → CWE → CRA control refs (`cra-ai-8/13/20`) |
| `web-juice-shop` | Web app | git `juice-shop/juice-shop` @ v19.2.1 + live URL | SAST + SBOM/CVE on a large Node app, DAST + pentest against the running instance |
| `firmware-zephyr-example` | Firmware (RTOS) | git `zephyrproject-rtos/example-application` | Tramiton detect handoff (`build_system = zephyr`), firmware source SBOM |
The PLC files are the same ones under `examples/plc-demo/` that the PLC rule
tests already run against, so their expected rule ids are enforced offline on
every CI run (`compliance-agent::fixtures` tests).
## Reproducibility
* Git artifacts carry a `pin` (commit SHA, plus `pin_tag` where a release tag
exists). The agent clones `branch`; the pin records **which commit the
baseline was recorded against**. When a baseline drifts, re-pin and update
`expect` in the same change.
* Uploaded artifacts are checked into this repository.
* Anything that needs infrastructure is **optional** and env-driven, so the
set seeds cleanly on a laptop and gains the dynamic pieces on `comp-dev`:
| Env var | Used by | Meaning |
|---------|---------|---------|
| `DEMO_WEB_URL` | `web-juice-shop` | Live URL for DAST/pentest. Default `http://localhost:3000` — run `docker run -d -p 3000:3000 bkimminich/juice-shop:v19.2.1`. |
| `DEMO_PLC_MODBUS_URL` | `plc-pump-station` | Modbus endpoint for the ICS probe (in-cluster default `modbus://plc-sim:502`). Skipped when unset. |
| `DEMO_PLC_FIRMWARE_IMAGE` | `plc-pump-station` | Absolute path to a device firmware image to attach. Skipped when unset. |
## Seeding the targets
```bash
# against a local dev agent (no Keycloak → dev tenant)
scripts/seed-demo-targets.sh
# seed and trigger the first scan of each
scripts/seed-demo-targets.sh --scan
# only some targets
scripts/seed-demo-targets.sh --only web-juice-shop,git-cra-vuln-demo
# wipe every "Demo · " target and reseed
scripts/seed-demo-targets.sh --reset --scan
# a deployed agent
AGENT_URL=https://comp-dev.breakpilot.com AGENT_TOKEN=$TOKEN \
DEMO_PLC_MODBUS_URL=modbus://plc-sim:502 scripts/seed-demo-targets.sh --scan
```
The script uses only `curl` + `jq` and the public onboarding API:
`POST /api/v1/targets`, `POST /api/v1/targets/{id}/artifacts/upload`,
`POST /api/v1/targets/{id}/detect`, `POST /api/v1/targets/{id}/scan`.
Every seeded target is named `Demo · <name>`; `--reset` deletes exactly that
prefix and nothing else.
## Manual (re)onboarding
Each target can also be created through the onboarding wizard:
1. **PLC targets** — pick *PLC / SPS*, upload the `.st` / `.xml` files from
`examples/plc-demo/`, optionally add a `modbus://` live URL. See
[PLC / SPS (CODESYS)](/guide/plc).
2. **Git targets** — pick the type, add the git URL and branch from the
manifest. Public repos need no credentials.
3. **Web app** — add the git repo *and* the live URL; enable DAST and, if
wanted, pentest on the scan-selection step.
## Golden baselines
Each target's `expect` block states what a healthy scan must produce
(`min_findings`, required `sast_rule_ids`, `cwes`, `control_refs`,
`min_sbom_components`, `scans_offered`, `pentest_supported`,
`detected_facts`). The PLC baselines are asserted in unit tests today; the
nightly regression story (#188) runs the full set against a live agent and
alerts on drift.
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{
"schema_version": 1,
"name_prefix": "Demo · ",
"targets": [
{
"key": "plc-pump-station",
"name": "PLC pump station (ST + FBD, composite)",
"target_type": "plc_sps",
"description": "Composite PlcSps demo: Structured Text + FBD-as-PLCopen-XML control logic, plus an optional live Modbus endpoint (in-cluster plc-sim) and an optional device firmware image. Exercises PLC SAST, ICS probe, semantic control mapping.",
"artifacts": [
{
"kind": "plc_project",
"upload": "examples/plc-demo/pump_station.st",
"plc_format": "structured_text"
},
{
"kind": "plc_project",
"upload": "examples/plc-demo/pump_fbd.xml",
"plc_format": "plcopen_xml"
},
{
"kind": "live_url",
"source_ref_env": "DEMO_PLC_MODBUS_URL",
"source_ref": "modbus://plc-sim:502",
"optional": true
},
{
"kind": "firmware_image",
"upload_env": "DEMO_PLC_FIRMWARE_IMAGE",
"optional": true
}
],
"expect": {
"min_findings": 16,
"sast_rule_ids": [
"plc-hardcoded-credential",
"plc-default-password",
"plc-safety-bypass",
"plc-array-unchecked-index",
"plc-insecure-comm",
"plc-insecure-protocol-port",
"plc-unstructured-jump",
"plc-division-by-zero"
],
"cwes": [
"CWE-798",
"CWE-319",
"CWE-1384"
],
"control_refs_any": true
}
},
{
"key": "plc-conveyor-line",
"name": "PLC conveyor + traffic light (PLCopen XML + ST)",
"target_type": "plc_sps",
"description": "Pure PLC SAST demo: a PLCopen-XML conveyor program and a realistic OpenPLC-style traffic-light program with three planted defects. Exercises the control-logic rules without any dynamic infra.",
"artifacts": [
{
"kind": "plc_project",
"upload": "examples/plc-demo/conveyor.xml",
"plc_format": "plcopen_xml"
},
{
"kind": "plc_project",
"upload": "examples/plc-demo/traffic_light.st",
"plc_format": "structured_text"
}
],
"expect": {
"min_findings": 8,
"sast_rule_ids": [
"plc-hardcoded-credential",
"plc-default-password",
"plc-safety-bypass",
"plc-insecure-comm",
"plc-insecure-protocol-port"
]
}
},
{
"key": "git-cra-vuln-demo",
"name": "Git SAST · cra-vuln-demo",
"target_type": "backend_service",
"description": "Plain git SAST target. Small deliberately-vulnerable Python service (hardcoded credential, weak cipher, SQL injection, cleartext transport) used to prove the CWE → CRA control mapping.",
"artifacts": [
{
"kind": "git_repo",
"source_ref": "https://git.breakpilot.com/sharang/cra-vuln-demo.git",
"branch": "main",
"pin": "21951249b9977d0c7feb555a9d5ce42c70ab5ae4"
}
],
"expect": {
"min_findings": 3,
"cwes": [
"CWE-798",
"CWE-327",
"CWE-89"
],
"control_refs": [
"cra-ai-8",
"cra-ai-13",
"cra-ai-20"
]
}
},
{
"key": "web-juice-shop",
"name": "Web app · OWASP Juice Shop",
"target_type": "web_app",
"description": "WebApp target: git repo for SAST/SBOM/CVE plus a live URL for DAST + pentest. Run the instance locally with `docker run -d -p 3000:3000 bkimminich/juice-shop:v19.2.1` or point DEMO_WEB_URL at a deployed copy.",
"artifacts": [
{
"kind": "git_repo",
"source_ref": "https://github.com/juice-shop/juice-shop.git",
"branch": "master",
"pin": "f87c6f58c49b61c9de20e4d69a9bdb1fbd4f3bd3",
"pin_tag": "v19.2.1"
},
{
"kind": "live_url",
"source_ref_env": "DEMO_WEB_URL",
"source_ref": "http://localhost:3000"
}
],
"expect": {
"min_findings": 10,
"min_sbom_components": 500,
"scans_offered": [
"sast",
"dast"
],
"pentest_supported": true
}
},
{
"key": "firmware-zephyr-example",
"name": "Firmware RTOS · Zephyr example-application",
"target_type": "firmware_rtos",
"description": "Upstream Zephyr example application (Apache-2.0). Exercises the tramiton detect handoff (build system = zephyr) and the firmware source SBOM path.",
"artifacts": [
{
"kind": "git_repo",
"source_ref": "https://github.com/zephyrproject-rtos/example-application.git",
"branch": "main",
"pin": "38a6d9b276ed434454900130cacc87d058d3ac62"
}
],
"expect": {
"detected_facts": {
"build_system": "zephyr"
},
"scans_offered": [
"sast"
],
"pentest_supported": false
}
}
]
}
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#!/usr/bin/env bash
# Seed the curated demo targets (#187) into a running compliance-agent.
#
# Reads fixtures/demo-targets/targets.json and, for every target:
# 1. POST /api/v1/targets (name = name_prefix + name)
# 2. POST /api/v1/targets/{id}/artifacts/upload for each `upload` artifact
# 3. POST /api/v1/targets/{id}/detect (surface detected facts)
# 4. POST /api/v1/targets/{id}/scan (only with --scan)
#
# Artifact env overrides (see the manifest): DEMO_WEB_URL, DEMO_PLC_MODBUS_URL,
# DEMO_PLC_FIRMWARE_IMAGE. Optional artifacts whose env var is unset are
# skipped, so the set seeds on a bare laptop; set them on comp-dev / Orca.
#
# Usage:
# scripts/seed-demo-targets.sh # seed all
# scripts/seed-demo-targets.sh --scan # seed + trigger first scan
# scripts/seed-demo-targets.sh --only web-juice-shop,git-cra-vuln-demo
# scripts/seed-demo-targets.sh --reset # delete every "Demo · " target
# scripts/seed-demo-targets.sh --reset --scan # reset, reseed, scan
#
# Env:
# AGENT_URL base URL of the agent (default http://localhost:3011)
# AGENT_TOKEN bearer token; omit for dev mode (no Keycloak → dev tenant)
# MANIFEST alternative manifest path
set -euo pipefail
AGENT_URL="${AGENT_URL:-http://localhost:3011}"
ROOT="$(cd "$(dirname "${BASH_SOURCE[0]}")/.." && pwd)"
MANIFEST="${MANIFEST:-$ROOT/fixtures/demo-targets/targets.json}"
DO_SCAN=0
DO_RESET=0
ONLY=""
while [[ $# -gt 0 ]]; do
case "$1" in
--scan) DO_SCAN=1 ;;
--reset) DO_RESET=1 ;;
--only) ONLY="$2"; shift ;;
-h|--help) sed -n '2,25p' "$0" | sed 's/^# \{0,1\}//'; exit 0 ;;
*) echo "unknown arg: $1" >&2; exit 2 ;;
esac
shift
done
for bin in jq curl; do
command -v "$bin" >/dev/null || { echo "need $bin" >&2; exit 1; }
done
[[ -f "$MANIFEST" ]] || { echo "manifest not found: $MANIFEST" >&2; exit 1; }
AUTH=()
[[ -n "${AGENT_TOKEN:-}" ]] && AUTH=(-H "Authorization: Bearer ${AGENT_TOKEN}")
green() { printf '\033[32m%s\033[0m' "$*"; }
yellow() { printf '\033[33m%s\033[0m' "$*"; }
red() { printf '\033[31m%s\033[0m' "$*"; }
# api METHOD PATH [curl args...] → body on stdout; non-2xx → exit 1 with body.
api() {
local method="$1" path="$2"; shift 2
local out code
out=$(curl -sS -X "$method" "${AGENT_URL}${path}" "${AUTH[@]}" -w '\n%{http_code}' "$@")
code="${out##*$'\n'}"
out="${out%$'\n'*}"
if [[ "$code" != 2* ]]; then
echo "$(red "HTTP $code") $method $path" >&2
echo "$out" >&2
return 1
fi
printf '%s' "$out"
}
PREFIX="$(jq -r '.name_prefix' "$MANIFEST")"
reset_targets() {
echo "== reset: deleting targets named '${PREFIX}*'"
local list ids
list=$(api GET "/api/v1/targets?limit=500")
ids=$(jq -r --arg p "$PREFIX" '.data[] | select(.name | startswith($p)) | ._id."$oid"' <<<"$list")
local n=0
for id in $ids; do
api DELETE "/api/v1/targets/${id}" >/dev/null && n=$((n + 1))
done
echo " deleted $n"
}
# Build the JSON artifact list for reference-style (non-upload) artifacts.
# Prints one JSON object per artifact that should be created inline.
inline_artifacts() {
local target_json="$1"
jq -c '.artifacts[] | select(.upload == null and .upload_env == null)' <<<"$target_json" |
while IFS= read -r a; do
local kind env ref optional branch
kind=$(jq -r '.kind' <<<"$a")
env=$(jq -r '.source_ref_env // empty' <<<"$a")
ref=$(jq -r '.source_ref // empty' <<<"$a")
optional=$(jq -r '.optional // false' <<<"$a")
branch=$(jq -r '.branch // empty' <<<"$a")
if [[ -n "$env" && -n "${!env:-}" ]]; then
ref="${!env}"
elif [[ -n "$env" && "$optional" == "true" ]]; then
echo " $(yellow skip) $kind (set \$$env to include)" >&2
continue
fi
[[ -n "$ref" ]] || continue
jq -cn --arg k "$kind" --arg r "$ref" --arg b "$branch" \
'{kind:$k, source_ref:$r} + (if $b != "" then {branch:$b} else {} end)'
done
}
# Upload every `upload` / `upload_env` artifact of the target.
upload_artifacts() {
local id="$1" target_json="$2"
jq -c '.artifacts[] | select(.upload != null or .upload_env != null)' <<<"$target_json" |
while IFS= read -r a; do
local kind path env fmt optional
kind=$(jq -r '.kind' <<<"$a")
env=$(jq -r '.upload_env // empty' <<<"$a")
path=$(jq -r '.upload // empty' <<<"$a")
fmt=$(jq -r '.plc_format // empty' <<<"$a")
optional=$(jq -r '.optional // false' <<<"$a")
if [[ -n "$env" && -n "${!env:-}" ]]; then
path="${!env}"
elif [[ -n "$path" ]]; then
path="$ROOT/$path"
elif [[ "$optional" == "true" ]]; then
echo " $(yellow skip) $kind (set \$$env to include)" >&2
continue
fi
[[ -f "$path" ]] || { echo " $(red missing) $path" >&2; return 1; }
local form=(-F "file=@${path}" -F "kind=${kind}")
[[ -n "$fmt" ]] && form+=(-F "plc_format=${fmt}")
api POST "/api/v1/targets/${id}/artifacts/upload" "${form[@]}" >/dev/null
echo " $(green upload) $kind $(basename "$path")"
done
}
seed_target() {
local t="$1"
local key name type desc
key=$(jq -r '.key' <<<"$t")
name="${PREFIX}$(jq -r '.name' <<<"$t")"
type=$(jq -r '.target_type' <<<"$t")
desc=$(jq -r '.description // ""' <<<"$t")
echo "== $key ($type)"
local arts body resp id
arts=$(inline_artifacts "$t" | jq -cs '.')
body=$(jq -cn --arg n "$name" --arg tt "$type" --arg d "$desc" --argjson a "$arts" \
'{name:$n, target_type:$tt, description:$d, artifacts:$a}')
resp=$(api POST "/api/v1/targets" -H 'Content-Type: application/json' -d "$body")
id=$(jq -r '.data._id."$oid"' <<<"$resp")
echo " $(green created) $id $(jq -r '.data.artifacts|length' <<<"$resp") inline artifact(s)"
upload_artifacts "$id" "$t"
local det
det=$(api POST "/api/v1/targets/${id}/detect" -H 'Content-Type: application/json' -d '{}' || true)
if [[ -n "$det" ]]; then
echo " detect → $(jq -r '.data.classification.suggested // "n/a"' <<<"$det")"
fi
if [[ "$DO_SCAN" == 1 ]]; then
api POST "/api/v1/targets/${id}/scan" -H 'Content-Type: application/json' -d '{}' >/dev/null
echo " $(green scan) triggered"
fi
}
[[ "$DO_RESET" == 1 ]] && reset_targets
echo "== seeding from $MANIFEST$AGENT_URL"
jq -c '.targets[]' "$MANIFEST" | while IFS= read -r t; do
key=$(jq -r '.key' <<<"$t")
if [[ -n "$ONLY" && ",$ONLY," != *",$key,"* ]]; then
continue
fi
seed_target "$t"
done
echo "== done"