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Author SHA1 Message Date
cloudinit-bot 23de3c544b docs(P00): complete pre-execution phase — v0.3 Bearers & Documentation
Phase 0 complete: SPECIFY -> CLARIFY -> RESEARCH -> IDEATE -> PLAN -> GRILL.
v0.3 milestone (feature type, tags v0.2.x) established. Bundles Bearers
skeleton (D-020 pattern) + docs site for nomads/freeholders + REQ-012
firewall extension to docs. 13 clarifications (D-034..D-046), 8 ideation
ideas ratified (IDEATE-01..08 -> REQ-010/REQ-022..REQ-028), 50-task plan
across P1-P6, 4 grill binding decisions (G-011..G-014).

---ci---
project: oy
phase: 0
milestone: v0.3
status: complete
tag_base: v0.2.x
milestone_type: feature
phase_role: pre_execution
requirements:
  covered: []
  partial: []
---/ci---
2026-08-17 22:06:50 +00:00
60 changed files with 145 additions and 6090 deletions
+5 -6
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@@ -1,13 +1,12 @@
{
"phase": 0,
"stage": "complete",
"milestone": "v0.4",
"milestone_type": "nfr",
"tag_base": "v0.3.x",
"stage": "grill",
"milestone": "v0.3",
"milestone_type": "feature",
"tag_base": "v0.2.x",
"phase_role": "pre_execution",
"project": "oy",
"attempts": 0,
"updated_at": "2026-08-17T23:30:00Z",
"phase_release_tag": "v0.3.0",
"release_id": 748
"milestone_complete": false
}
+3 -3
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@@ -6,9 +6,9 @@
}
],
"active_project": "oy",
"milestone": "v0.4",
"milestone_type": "nfr",
"tag_base": "v0.3.x",
"milestone": "v0.3",
"milestone_type": "feature",
"tag_base": "v0.2.x",
"autonomy": {
"level": "full",
"escalation_hooks": ["deploy", "delete_data", "merge_to_main"],
+1 -45
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@@ -183,48 +183,4 @@ module's production `.go` files).
> this file) that discuss the banned terms by name for governance reasons — they
> are NOT user-facing docs and are explicitly excluded from the docs firewall
> scan. This mirrors how `lexicon_meta_test.go` excludes itself: the firewall's
> own code is allowed to name the terms it bans.
## v0.4 Architecture (Refinement — NFR)
v0.4 is a refinement-only NFR milestone (D-047): zero `feat:` phases, zero new
production types, zero behavioral changes. It lands durability fixes sourced
from v0.3 forward-references. Tags run on the `v0.3.x` patch line.
### v0.4 Research Findings
**R-029 — Lexicon firewall shared helper (REQ-029, GRILL G-014).**
Verified during v0.4 RESEARCH: `lexicon_meta_test.go` (`TestLexiconMetaSelfTestTable`, lines 83-118) and `lexicon_meta_docs/lexicon_meta_docs_test.go` (`TestLexiconMetaDocsSelfTestTable`, lines 147-182) contain byte-identical duplicate synthetic self-test tables — both build the same 10-string slice by indexing `lexicon.BannedTerms()`. This is exactly the G-014 drift risk: if a future banned-term addition updates one table and not the other, the docs firewall silently loses coverage. The fix is a new `lexicon.SyntheticBannedStrings() []string` helper in `lexicon/lexicon.go` that returns the 10 synthetic strings; both meta-tests consume it instead of building their own copy. The helper's source uses `lexicon.BannedTerms()` (already fragment-assembled) so the lexicon package's own source stays lexicon-clean. Both meta-tests already assert `len(terms) == 10` from `lexicon.BannedTerms()` (the G-014 minimum); the helper closes the drift fully. No behavioral change to detection (`FindBannedTerm` unchanged); refactor + test only.
**R-030 — Cross-package const-equality test (REQ-030, REVIEW P2 / A-304).**
Verified during v0.4 RESEARCH: `x/hub/types/types.go:51,56` defines LOCAL consts `LendingCouponCapBps = uint32(800)` and `LendingCouponFloorBps = uint32(0)`, cross-documented (comment lines 46-55) to `x/bond/types/types.go:21,26` consts `CouponCapBps = 800` and `CouponFloorBps = 0` (D-028 mission-locked). The cross-doc comment flags drift for human review but no automated check exists. The fix is a new test file `x/hub/types/cross_const_test.go` (package `types`) that imports `github.com/oy/openyield/x/bond/types` (test-only, G-003 exempt per the test-import exemption documented in v0.2 GRILL G-003) and asserts `hub.LendingCouponCapBps == bond.CouponCapBps` and `hub.LendingCouponFloorBps == bond.CouponFloorBps`. The test fails closed if either const drifts. No production import is added (G-003 production firewall intact); test-only import only.
**R-031 — Lifecycle type shape-divergence review (REQ-031, AUDIT §193).**
Verified during v0.4 RESEARCH: AUDIT §193 flags two P1 council divergences and one P2 bearers nit:
- **P1-1**: `x/council/types` lacks `Proposal`/`ProposalStatus`/`VoteOption` enums (AUDIT says add "in v0.3 when wiring the council keeper to a live governance runtime"). Adding these is a `feat:`-class addition (new enum types) → REJECTED by D-001 filter for v0.4. Deferred to v0.5+ governance runtime.
- **P1-2**: `SignalKind` has 4 sources (Stash/Standing/Vouch/Capital) vs spec's `VoiceSource` 5 sources (Stash/Standing/Vouch/Freeholder/Guild). AUDIT code rationale: Freeholder is an eligibility property (upstream in `x/standing`), Guild is a council tier, Capital is committed-capital (vision §9.1) — defensible refinement. Changing `SignalKindCount` 4→5 is a locked-const change → REJECTED by D-001 filter for v0.4.
- **P2**: `x/bearers/types` `ValidateGenesis` no-op is CORRECT per spec (AUDIT explicitly notes "no action").
v0.4 REQ-031 scope (D-050): DOCUMENT the divergence decisions in this ARCHITECTURE.md section + add a regression-guard test asserting the current `SignalKindCount==4` shape is intentional (an intent-assertion test, not a shape change). No enum additions, no locked-const changes. The existing `TestSignalKindCountLockedConst` in `x/council/types/types_test.go:102` already asserts the count; REQ-031 adds an intent comment + a test documenting WHY the shape is 4-not-5 (the AUDIT rationale), so a future agent does not "fix" the divergence by silently changing the locked const.
**R-032 — Docs build CI (REQ-032, D-046).**
Verified during v0.4 RESEARCH: no `.github/workflows/` directory exists; Gitea Actions uses `.gitea/workflows/`. `mkdocs.yml` is present at repo root (buildable locally via `mkdocs build`). v0.4 REQ-032 ships a `.gitea/workflows/docs-build.yml` workflow that: (1) runs `go test ./...` (the lexicon firewall + all x/* tests) on push; (2) installs mkdocs + mkdocs-material (build-only Python deps in a separate job/step — does NOT touch `go.mod`, G-006 intact); (3) runs `mkdocs build` to produce `site/`; (4) uploads `site/` as a CI artifact. Full Gitea Pages publishing is DEFERRED (no hosting target configured in v0.4 per D-051). The workflow file is `chore` (CI config), not `feat:` — passes the D-001 filter. The workflow runs on every push to any branch (not just main) so the lexicon firewall + docs build are checked on every change.
### v0.4 Component Map (no new modules)
v0.4 touches NO new `x/*` modules. The touched files are:
- `lexicon/lexicon.go` (add `SyntheticBannedStrings()`) — REQ-029
- `lexicon_meta_test.go` (refactor to consume helper) — REQ-029
- `lexicon_meta_docs/lexicon_meta_docs_test.go` (refactor to consume helper) — REQ-029
- `x/hub/types/cross_const_test.go` (NEW test file) — REQ-030
- `x/council/types/types_test.go` (add intent-assertion test + comment) — REQ-031
- `.ciagent/oy/ARCHITECTURE.md` (this section) — REQ-031
- `.gitea/workflows/docs-build.yml` (NEW CI workflow) — REQ-032
### v0.4 Interface Contracts (unchanged from v0.3)
v0.4 does not change any cross-component interface. The 6 cross-component interfaces (Standing, Forge/Fold, Mirror, Window, Fee Covenant, Voice/Council) are unchanged. REQ-031 documents a divergence in the Voice/Council interface surface (SignalKind shape) but does not change it.
> own code is allowed to name the terms it bans.
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@@ -299,112 +299,4 @@ Escalations: 0
Overall verdict: PASS (after critical fixes)
Confidence: 0.90
AUDIT.md written: /root/oy/.ciagent/oy/AUDIT.md ✓
```
---
# Audit: OpenYield (oy) — v0.3 (Bearers & Documentation) Final Phase (P6)
> **Auditor**: CIAgent doc verifier (final-audit mode, full autonomy)
> **Date**: 2026-08-17
> **Scope**: v0.3 milestone state on `oy/milestone/v0.3-bearers-docs` (HEAD = `oy/phase/06-final-review-ship`)
> **Milestone**: v0.3 — Bearers & Documentation (feature type; tag_base `v0.2.x`)
> **Mode**: multi-project (slug `oy`)
> **Autonomy**: full
---
## v0.3 Final Audit (P6)
### Reconstruction Test — **PASS**
**Git log matches `.ciagent/` files.** `git log v0.1.5..HEAD --oneline` returns 13 commits across P0-P5 (6 phase-ship `docs(P##):` commits, 5 `checkpoint(P##):` advance commits, 1 v0.2 milestone marker inherited via v0.1.5). The 6 `docs(P##): complete ...` commits each carry a `---ci---` block with `status: complete` and the correct phase integer.
**Per-phase `---ci---` block verification:**
| Phase | Commit | Tag | `status` | `requirements.covered` | `requirements.partial` | Verdict |
|---|---|---|---|---|---|---|
| P0 | 23de3c5 | v0.2.0 | complete | [] (pre-execution) | [] | PASS |
| P1 | a780884 | v0.2.1 | complete | [REQ-028] | [REQ-027] | PASS |
| P2 | d09c613 | v0.2.2 | complete | [] (nomads docs) | [REQ-027] | PASS |
| P3 | 2ef3f2e | v0.2.3 | complete | [REQ-027] | [] | PASS |
| P4 | ab43bef | v0.2.4 | complete | [REQ-010, REQ-022, REQ-023] | [] | PASS |
| P5 | c1aa274 | v0.2.5 | complete | [REQ-024, REQ-025, REQ-026] | [] | PASS |
- Phase `---ci---` blocks: 6 (one per phase P0-P5). Each phase's final block shows `status: complete`. ✓
- Tag count: 6 (v0.2.0..v0.2.5). Each tag exists and points at the matching `docs(P##): complete ...` commit. ✓
- REQ coverage vs. expected (P0: none; P1: REQ-028; P2: partial REQ-027; P3: REQ-027; P4: REQ-010/022/023; P5: REQ-024/025/026): **exact match on all 6 phases**. ✓
- IDEATE traceability (REQUIREMENTS.md §"IDEATE Traceability"): 8 IDEATE-NN → REQ-ID mappings present (IDEATE-01→REQ-027 ... IDEATE-08→REQ-026). ✓
- CHECKPOINT.json matches state: `phase: 5`, `stage: complete`, `milestone: v0.3`, `tag_base: v0.2.x`, `milestone_complete: false`, `phase_release_tag: v0.2.5` — consistent with "P5 complete, advancing to P6 final review/audit/ship". ✓
**Reconstruction test verdict: PASS** (6/6 phase blocks well-formed; 6/6 tags present; 6/6 REQ-coverage sets match; CHECKPOINT current).
### File Discipline — **PASS** (after fix)
`.ciagent/oy/` contains: PROJECT.md, ROADMAP.md, REQUIREMENTS.md, ARCHITECTURE.md, RESEARCH.md, PERSONAS.md, PLANS.md, GRILL.md, REVIEW.md, AUDIT.md. Plus historical P1_SHIP_VERIFICATION.md..P4_SHIP_VERIFICATION.md (v0.2 audit artifacts; not orphan — referenced by v0.2 AUDIT.md).
`.ciagent/` (root, multi-project) contains: CHECKPOINT.json, config.json, oy/ (slug subdir). ✓ config.json valid (`projects[]` length 1, `active_project: oy`, `milestone: v0.3`, `tag_base: v0.2.x`, `autonomy.level: full`). ✓
**Stale-content fixes applied during this audit:**
- REQUIREMENTS.md v0.3 table: all 8 REQs were marked `Pending` despite P1-P5 shipping them. Updated REQ-010/022/023/024/025/026 → `Skeleton`, REQ-027/028 → `Complete` to match the `---ci---` coverage blocks.
- ROADMAP.md v0.3 milestone: header read `ACTIVE` with no per-phase completion markers; P0-P5 shipped. Added `[x]` markers for P0-P5 and `[ ]` for P6-in-progress, plus a status line.
No orphan files detected. REVIEW.md exists (v0.2 content; review agent may append v0.3 section concurrently — tracked as pending, non-blocking).
**File discipline verdict: PASS** (after REQUIREMENTS + ROADMAP freshness fixes).
### Branch Hygiene — **PASS**
- `git branch -a` lists: `main`, `oy/milestone/v0.3-bearers-docs`, `oy/phase/06-final-review-ship` (current), `remotes/origin/main`, `remotes/origin/oy/milestone/v0.3-bearers-docs`.
- No leftover execution phase branches (`oy/phase/01-05`): grep for `phase/0[1-5]` returned zero. ✓ Phase branches deleted after merge.
- Milestone branch `oy/milestone/v0.3-bearers-docs` exists and is at the P5-checkpoint commit (62ff0d7), matching the final-phase branch HEAD. ✓
- Final-phase branch `oy/phase/06-final-review-ship` exists and tracks milestone HEAD. ✓
**Branch hygiene verdict: PASS.**
### Commit Discipline — **PASS**
- 6 phase-ship commits follow `docs(P##): complete ...` convention (P00..P05). ✓
- 5 checkpoint commits follow `checkpoint(P##): ...` convention. ✓
- All 6 `---ci---` blocks well-formed (opening `---ci---`, closing `---/ci---`, YAML keys `project: oy`, `phase: N`, `milestone: v0.3`, `status: complete`, `tag_base: v0.2.x`, `phase_role`, `requirements.covered`, `requirements.partial`). ✓
- Multi-project `project: oy` field present in every `---ci---` block. ✓
- No malformed blocks, no missing closing tags, no orphan phase markers.
**Commit discipline verdict: PASS.**
### Build/Test Sanity — **PASS**
- `go build ./...` → GREEN (exit 0). ✓
- `go test ./...` → 26 packages GREEN, 4 packages `[no test files]` (identity/processing/rootpool/vault — pre-existing v0.1 layout), zero FAIL. ✓
- New v0.3 packages present and green: x/exit, x/bridge, x/hub, x/services (plus x/bearers, x/partner, x/bond extended; lexicon_meta_docs at root). ✓
### Fixes Applied
| Fix | File | Change | Severity |
|---|---|---|---|
| 1 | `.ciagent/oy/REQUIREMENTS.md` | v0.3 REQ table statuses: 8 REQs Pending → 6 Skeleton + 2 Complete (matches `---ci---` coverage) | critical (stale docs) |
| 2 | `.ciagent/oy/ROADMAP.md` | v0.3 milestone: added P0-P5 `[x]` completion markers + P6 `[ ]` + status line | critical (stale docs) |
Both fixes are committed under `fix(P06-audit):` per the final-audit protocol (see commit below).
### Overall Audit Verdict — **PASS**
```
Per-check verdicts (v0.3 final):
1. Reconstruction test — PASS (6 phase blocks; 6 tags v0.2.0..v0.2.5; REQ coverage exact on all 6 phases; CHECKPOINT current)
2. File discipline — PASS (after fix; 10 .ciagent/oy/ files + CHECKPOINT.json + config.json; no orphans)
3. Branch hygiene — PASS (no phase/01-05 branches; milestone + final-phase present)
4. Commit discipline — PASS (6 docs(P##) + 5 checkpoint(P##); all ---ci--- well-formed; project: oy present)
5. Build/test sanity — PASS (build GREEN; 26 pkgs GREEN; new v0.3 packages green)
Critical issues: 2 found → 2 fixed → 0 remaining
- Critical-1: REQUIREMENTS.md v0.3 statuses stale (Pending vs Skeleton/Complete) → FIXED
- Critical-2: ROADMAP.md v0.3 P0-P5 completion markers missing → FIXED
Non-critical: 1 (REVIEW.md v0.3 section pending concurrent review agent — non-blocking)
Escalations: 0
Overall verdict: PASS (after critical fixes)
Confidence: 0.92
AUDIT.md appended: /root/oy/.ciagent/oy/AUDIT.md ✓ (v0.3 section appended; v0.2 content preserved)
```
AUDIT.md
```
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@@ -316,73 +316,3 @@ Binding decisions: 4 (G-011..G-014)
Escalations: 0
Overall: SHIP Phase 0 with binding changes (confidence 0.80)
```
---
## Grill Review: OpenYield (oy) — v0.4 (Refinement — NFR) Phase 0
> **Reviewer**: CIAgent adversarial grill (red-team, full autonomy)
> **Date**: 2026-08-17
> **Target**: Phase 0 artifacts (PROJECT.md v0.4 section, REQUIREMENTS.md v0.4 table, ARCHITECTURE.md v0.4 section, PERSONAS.md v0.4, PLANS.md v0.4 plan, config.json) + v0.3 codebase baseline
> **Milestone**: v0.4 — Refinement (NFR)
> **Autonomy**: full (decision_confidence_threshold = 0.60)
> **Mode**: multi-project (slug `oy`)
### Methodology
Each of nine axes was scored against concrete evidence. The v0.4 scope is small (4 REQs, 12 tasks, 5 phases including P0+P4) so the grill is correspondingly focused. The central question: **is v0.4 a legitimate NFR milestone or is it a scope-creep / busywork milestone that should be a single patch or deferred?**
### Evidence baseline (verified against the actual repo)
- v0.3 milestone COMPLETE: checkpoint `milestone_complete: true`, release `v0.2.6` (id 739), HEAD on `main`. Verified.
- v0.3 forward-references for v0.4 scope: REVIEW.md P2 (A-304 cross-const), AUDIT.md §193 (P1-1/P1-2 council divergences, P2 bearers no-op), GRILL.md G-014 (lexicon helper). Verified — all four REQ-029..REQ-032 map to a real v0.3 forward-reference.
- The two synthetic self-test tables are byte-identical duplicates: `lexicon_meta_test.go:93-104` and `lexicon_meta_docs/lexicon_meta_docs_test.go:157-168`. Verified by diff — G-014 drift risk is REAL, not theoretical.
- `x/hub/types/types.go:51,56` defines `LendingCouponCapBps = uint32(800)` and `LendingCouponFloorBps = uint32(0)`; `x/bond/types/types.go:21,26` defines `CouponCapBps = 800` and `CouponFloorBps = 0`. No automated cross-check exists (only a cross-doc comment). Verified — A-304 drift risk is REAL.
- `SignalKindCount = 4` is already a locked-const test (`x/council/types/types_test.go:102`). The AUDIT P1-2 rationale (Freeholder is eligibility, Guild is council tier, Capital is committed-capital) is in AUDIT.md but NOT in ARCHITECTURE.md. Verified — the documentation gap is REAL.
- No `.github/workflows/` and no `.gitea/workflows/` directory exists. Verified — REQ-032 is net-new CI, not a modification.
### Forcing Questions and Verdicts
**1. Is v0.4 a legitimate milestone, or should these fixes be a single v0.3.x patch?**
The four fixes are independent (lexicon helper, cross-const test, lifecycle docs, CI). Bundling them into a milestone with per-phase ship (P1..P3 each ship a patch) gives each fix its own release tag and audit trail. The alternative (one v0.3.1 patch with all four) loses the per-fix release boundary. D-052 phase ordering keeps each phase independently shippable. **Verdict: legitimate milestone** — the per-phase ship cadence (D-052) is the value, not the milestone label. Confidence 0.82.
**2. Does REQ-031 violate the D-001 refinement-only filter by documenting a divergence that mentions `Proposal`/`VoteOption` (which are `feat:`-class types)?**
No. DOCUMENTING a deferred `feat:` in ARCHITECTURE.md is `docs`, not `feat:`. REQ-031 adds NO enum types and changes NO locked consts. The regression-guard test asserts the CURRENT shape (4-signal) is intentional — it does not ADD a type. The D-001 filter rejects the `feat:` (adding Proposal/VoteOption) but accepts the `docs` (documenting why they are absent). **Verdict: passes D-001**. Confidence 0.85.
**3. Does REQ-030's test-only import of `x/bond/types` into `x/hub/types` violate G-003?**
No. G-003 forbids PRODUCTION cross-module struct imports. The import is in `x/hub/types/cross_const_test.go` (a `_test.go` file). The v0.2 GRILL G-003 explicitly documented the test-import exemption (and `x/bearers/types/types_test.go:7` already imports `x/processing/types` as a test-only precedent). The plan's P1-02-01 verification includes a grep confirming no PRODUCTION `.go` file in `x/hub/types/` imports `x/bond/types`. **Verdict: G-003 intact**. Confidence 0.88.
**4. Does REQ-032 (CI workflow with mkdocs) violate G-006 (zero Go deps)?**
No. The CI workflow installs mkdocs + mkdocs-material in a SEPARATE CI job (`docs-build`), not in `go.mod`. `go.mod` is not modified by the workflow (Python deps are isolated to the CI runner). The plan's P3-99-01 verification confirms `go.mod` diff is empty. **Verdict: G-006 intact**. Confidence 0.90.
**5. Is the NFR purity gate enforceable?**
Yes. The gate is `git log --grep "^feat:" <milestone-range>` returns zero. The v0.4 plan explicitly rejects `feat:`-class work (D-050 rejects Proposal/VoteOption; D-051 rejects Pages publish as a feature). The P4 audit (P4-02-01) runs the gate. The only risk: a commit MESSAGE accidentally using `feat:` prefix — the gate checks the prefix, not the content. **Verdict: enforceable**. Confidence 0.85.
### Binding Decisions (G-015..G-016)
| ID | Binding Decision | Rationale | Confidence | Source |
|----|------------------|-----------|------------|--------|
| **G-015** | The P1-02-01 cross-const test MUST also assert the absolute mission-locked values (`LendingCouponCapBps == 800`, `LendingCouponFloorBps == 0`, `CouponCapBps == 800`, `CouponFloorBps == 0`) in addition to the cross-package equality. The cross-package equality test alone would pass if BOTH consts drifted to the same wrong value (e.g., both 900). The absolute-value assertion catches a paired drift. | The plan's P1-02-01 already includes `TestConstsAreMissionLocked800And0` (good). This binding makes it MANDATORY: the test must assert BOTH the cross-equality AND the absolute 800/0 values. Without the absolute assertion, a paired drift (both consts change to the same wrong value) is undetected. | 0.85 | PLANS.md P1-02-01 |
| **G-016** | The P3-01-01 CI workflow MUST run `go test ./...` BEFORE `mkdocs build` is allowed to proceed IF the jobs are serial, OR the `go-test` job must be a REQUIRED check (not advisory) if the jobs are parallel. The lexicon firewall (`go test ./...`) is the higher-priority check; a docs build that passes while the lexicon firewall fails is a false-green deploy. The plan's P3-01-01 runs the jobs in parallel (no dependency) — acceptable ONLY if both are required-status checks. If Gitea Actions does not support required-status on artifact-upload jobs, the jobs MUST be serial (`go-test` then `docs-build` depends-on `go-test`). | A docs build that succeeds while the lexicon firewall fails would publish (or artifact) a docs site from a repo that has a lexicon violation — a false-green. The firewall must gate the docs build. | 0.78 | PLANS.md P3-01-01 |
### Nine-Axis Scorecard (v0.4 Phase 0)
```
1. Scope — PASS (0.85) scoped to 4 v0.3 forward-refs; no scope creep
2. Feasibility — PASS (0.88) all 4 fixes are mechanical; no research risk
3. Specification — PASS (0.82) REQs clear; D-047..D-053 unambiguous
4. Decomposition — PASS (0.80) P1..P3 independent vertical slices; P4 review/ship
5. Risk — PASS (0.85) NFR scope (no behavioral change); low risk
6. Dependency — PASS (0.82) no cross-phase hard blockers; G-003 test-exempt documented
7. Testing — PASS (0.85) each fix has a verification task; NFR purity gate in P4
8. Maintainability — CONDITIONAL (0.78) → fixed by G-015 (absolute-value assertion)
9. Adversarial — PASS (0.82) D-001 filter enforced; no feat: creep
Binding decisions: 2 (G-015, G-016)
Escalations: 0
Overall: SHIP Phase 0 with binding changes (confidence 0.84)
```
### v0.4 Grill Verdict
**SHIP Phase 0** with G-015 (absolute-value const assertion in P1-02-01) and G-016 (firewall-gates-docs-build in P3-01-01) applied. The v0.4 NFR milestone is a legitimate, well-scoped refinement cycle that closes three real v0.3 forward-references (G-014, A-304, AUDIT §193) and lands the deferred docs CI (D-046). The D-001 refinement-only filter is enforced throughout; the NFR purity gate in P4 is enforceable. No escalations.
+92 -51
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@@ -3,80 +3,121 @@ active_personas:
- id: backend-engineer
active: true
phase_specific: false
reason: Owns the v0.4 NFR code work: REQ-029 (lexicon shared helper in `lexicon/lexicon.go` + refactor of both meta-tests to consume it), REQ-030 (new `x/hub/types/cross_const_test.go` test-only import of `x/bond/types`), and REQ-031's regression-guard test (council SignalKind intent-assertion test). The v0.3 frontend/docs-writer personas are deactivated because v0.4 has no docs-content authoring; the only docs-adjacent work is the CI workflow file (REQ-032, owned by lead-developer as infra/config). v0.4 is pure Go test/refactor work, which is backend-engineer's core territory.
frameworks: [Go 1.22 stdlib (zero-dep), Go testing, lexicon firewall]
territory: ["lexicon/**", "lexicon_meta_test.go", "lexicon_meta_docs/**", "x/hub/types/**", "x/bond/types/**", "x/council/types/**"]
constraints: ["zero external deps (G-006 — go.mod stays zero-require)", "D-001 refinement-only filter: refactor/test/quality only, NO feat: (no new enum types, no new production types, no behavioral change)", "G-003 by-ID-string rule preserved in PRODUCTION imports; test-only cross-package imports are EXEMPT (G-003 test exemption — REQ-030 relies on this)", "lexicon firewall stays green on both x/ and docs/ after refactor", "locked-const invariants stay green (SignalKindCount==4 unchanged; LendingCouponCapBps==800, LendingCouponFloorBps==0 unchanged)", "≥80% coverage on any modified package (do not reduce existing coverage)"]
reason: Owns ALL Bearers skeleton Go modules in v0.3 (x/exit, x/bridge, x/bearers ext, x/partner ext, x/hub, x/services, x/bond ext). The v0.2 cosmos-engineer/security-engineer split is collapsed back into backend-engineer for v0.3 because the Cosmos-convention-alignment load is lower (no new IBC/governance/capability modules — x/bridge reuses the v0.2 satellite ICS-20 shape, x/hub is a fresh B2B scaffold). v0.3 is bespoke-type skeleton + tests work, which is backend-engineer's core territory.
frameworks: [Go 1.22 stdlib, Cosmos-style types (zero-dep)]
territory: ["x/exit/**", "x/bridge/**", "x/hub/**", "x/services/**", "x/bearers/**", "x/partner/**", "x/bond/**", "x/**/types/**", "x/**/keeper/**"]
constraints: ["zero external deps (G-006 — go.mod read-only)", "D-020 skeleton+tests pattern (D-035 continues)", "≥80% coverage on new/extended packages", "per-package lexicon assertion (REQ-012) in every new/extended test file", "by-ID-string inter-module refs (G-003 — no struct imports across x/<module>/types)", "locked-const invariants (HubService count, ServiceKind count, BridgeStatus count, ExitStatus count, Anchor credential fields)", "no live chain / no real IBC / no real bearer transports / no live B2B runtime"]
- id: lead-developer
active: true
phase_specific: false
reason: Coordinates v0.4 phase decomposition (P1 lexicon+const hardening → P2 lifecycle divergence docs+guard → P3 docs CI → P4 review/ship), territory enforcement (warn mode per config.json), the final-phase NFR purity gate audit (zero `feat:` commits), and the milestone ship. Owns REQ-031's ARCHITECTURE.md documentation deliverable (the divergence-decision writeup) and REQ-032's CI workflow file (`.gitea/workflows/docs-build.yml`) as infra/config territory. Also owns the v0.4 ROADMAP.md / REQUIREMENTS.md status updates at milestone completion.
frameworks: [cross-cutting, Gitea Actions, Markdown, YAML]
territory: [".ciagent/**", ".gitea/workflows/**", ".ciagent/oy/ARCHITECTURE.md", ".ciagent/oy/ROADMAP.md", ".ciagent/oy/REQUIREMENTS.md"]
constraints: ["D-052 phase ordering (P1 firewall-first; each phase independently shippable)", "milestone versioning (v0.4 NFR / tag_base v0.3.x)", "NFR purity gate: zero feat: commits in the milestone (final-phase audit)", "persona territory warn-mode enforcement", "zero Go deps invariant (G-006) preserved; CI workflow may use build-only Python deps (mkdocs) in a separate job", "D-001 filter: no feat: scope creep — the CI workflow is chore (build+artifact), NOT a publishing feature"]
reason: Coordinates the v0.3 phase decomposition (P1 firewall+docs foundation → P2 nomads → P3 freeholders → P4 Bearers I → P5 Bearers II → P6 review/ship), territory enforcement (warn mode per config.json), and final review. Owns the cross-component dependency finding (x/exit→x/bridge in P4; x/partner-Anchor→x/hub across P4→P5) that constrains phase ordering.
frameworks: [cross-cutting]
territory: [".ciagent/**", "**"]
constraints: ["D-044 phase ordering (firewall-first; P4 before P5 for Anchor→hub dep)", "milestone versioning (v0.3 / tag_base v0.2.x)", "lexicon gate on merge (REQ-012 extends to docs/)", "persona territory warn-mode enforcement", "zero Go deps invariant (G-006); docs build-deps are allowed (D-042)"]
- id: frontend-engineer
active: true
phase_specific: true
reason: v0.3 introduces the docs site (REQ-027) — the first non-skeleton, non-Go deliverable since v0.1's Mesh Experience. frontend-engineer owns the docs territory (docs/**, mkdocs.yml, README.md) and the docs firewall test (lexicon_meta_docs_test.go). Phase-specific: ACTIVE only for P1-P3 (docs phases); removed after P3 once the docs site is complete and the Bearers skeleton phases (P4/P5) are pure Go.
frameworks: [MkDocs Material, Markdown]
territory: ["docs/**", "mkdocs.yml", "README.md", "lexicon_meta_docs_test.go"]
constraints: ["lexicon-clean by construction (REQ-012 extended to docs via D-043 — 10 banned terms must not appear in docs/*.md or README.md; 'yield' banned as standalone word, 'OpenYield' safe via word-boundary regex)", "audience-organized nav (nomads/freeholders/shared/reference per D-042)", "~20-25 pages total per D-045", "no publishing CI in v0.3 (D-046 — mkdocs.yml buildable locally only)", "mkdocs.yml is build-only Python dep; go.mod stays zero-dep (G-006)"]
removed_after: P3
- id: docs-writer
active: true
phase_specific: true
reason: Custom persona for the docs content authoring load (REQ-027, D-045 ~20-25 pages across 4 audiences). Folded as a SEPARATE persona rather than into frontend-engineer because the skills differ: frontend-engineer owns the docs TOOLCHAIN (mkdocs.yml config, theme, nav structure, firewall test wiring) while docs-writer owns the CONTENT (the actual Markdown pages: nomads Reach/Stash/bearers pages, freeholders Standing/Bonds pages, shared Principles/Bread-Scale pages, reference architecture-index). Splitting keeps the toolchain-vs-content boundary explicit so a toolchain change does not entangle content review. Phase-specific: ACTIVE only for P1-P3; removed after P3.
frameworks: [Markdown, MkDocs Material (content authoring only)]
territory: ["docs/nomads/**/*.md", "docs/freeholders/**/*.md", "docs/shared/**/*.md", "docs/reference/**/*.md"]
constraints: ["lexicon-clean by construction (same REQ-012 extension — 'real production'/'real return' not 'real yield'; 'Holder'/'Reach' not 'account'; 'Stash'/'Vault'/'Root-Pool' not 'bank'/'deposit'/'savings')", "audience-organized (each page belongs to exactly one of nomads/freeholders/shared/reference)", "page-count budget per D-045", "no banned-term literals in page source (the docs firewall scans .md files directly, unlike .go which uses fragment assembly)"]
removed_after: P3
deactivated:
- id: frontend-engineer
reason: INACTIVE for v0.4. The v0.3 docs site (docs/**, mkdocs.yml) is COMPLETE; v0.4 does not author or restructure docs content. The only docs-adjacent work is the CI workflow that BUILDS the existing site (REQ-032), which is infra/config territory owned by lead-developer, not frontend toolchain. Reactivate in v0.5+ if docs content is restructured or i18n is added.
- id: docs-writer
reason: INACTIVE for v0.4. v0.3's docs-writer owned page content authoring; v0.4 has zero new docs pages. The only documentation work is the ARCHITECTURE.md divergence-decision section (REQ-031), which is lead-developer's architecture territory, not audience-content authoring. Reactivate if a future milestone adds docs pages.
- id: data-engineer
reason: INACTIVE for v0.4 (carried from v0.3). The project has zero external deps and no database; REQ-031 does not change genesis schemas (it documents divergence, no schema change). Reactivate if a future milestone adds a real store/migration.
reason: INACTIVE for v0.3. The project has zero external deps and no database; the v0.2 data-engineer owned genesis.go schema helpers, which are a thin layer in v0.3's new modules (x/exit, x/bridge, x/hub, x/services each get a small GenesisState + ValidateGenesis following the v0.2 A-212 pattern). That work is owned by backend-engineer in v0.3 (the genesis schema is part of the skeleton type authoring, not a separate schema-design discipline). Reactivate if a future milestone adds a real store/migration.
- id: cosmos-engineer
reason: INACTIVE for v0.4. v0.4 has no new Cosmos-convention-alignment work (no new modules, no IBC, no governance runtime). Reactivate in v0.5+ if live-runtime promotion of the v0.3 Bearers skeletons lands.
reason: The v0.2 custom persona is NOT reactivated for v0.3. v0.3's new modules do not map onto new Cosmos SDK modules the way v0.2's did (x/gov, x/group, x/authz, x/capability, x/ibc-transfer). x/bridge reuses the v0.2 satellite ICS-20 shape (already aligned); x/hub/x/services/x/exit are bespoke B2B/service scaffolds with no direct Cosmos analog. The Cosmos-convention-alignment load drops below the threshold that justified a separate persona. backend-engineer absorbs the work.
- id: security-engineer
reason: INACTIVE for v0.4. v0.4 introduces no new Mission-Lock-class invariant; REQ-029/030/031 are refactor/test/docs, not security invariants. The existing locked-consts stay unchanged. Reactivate if a future milestone adds a new mission-locked const or a new clamp.
reason: The v0.2 custom persona is NOT reactivated for v0.3. v0.3's invariant density is lower than v0.2's (no Mission Lock, no new fee/bond clamp — the 8%/0% consts are reused unchanged from v0.2; the new locked-consts are enum counts: HubService=3, ServiceKind=4, BridgeStatus, ExitStatus). The locked-const + invariant tests are absorbed by backend-engineer's per-package test authoring. The docs firewall (lexicon_meta_docs_test.go) is frontend-engineer's territory. Reactivate in v0.4 if a new Mission-Lock-class invariant lands.
- id: ci-security-auditor
reason: Default deactivated; activate in P4 (final review/ship) for the v0.4 milestone audit and NFR purity gate enforcement.
reason: Default deactivated; activate in P6 (review/ship) for the v0.3 milestone audit.
- id: mesh-engineer
reason: Still not needed in v0.4 (no bearer hardware runtime; OY-SAT/OY-QR remain type stubs). Activate in v0.5+ for real bearer runtime.
reason: Still not needed in v0.3 (OY-SAT/OY-QR are type stubs only; no hardware/RF runtime). Activate in v0.4+ for real bearer runtime.
custom_personas: []
custom_personas:
- id: docs-writer
rationale: v0.3's docs deliverable (~20-25 pages across 4 audiences per D-045) is a substantial content-authoring load distinct from the docs toolchain work. A dedicated docs-writer keeps the content-vs-toolchain boundary explicit: frontend-engineer owns mkdocs.yml/nav/theme/firewall-wiring; docs-writer owns the page content. This split means a toolchain PR (e.g., adding a markdown extension) does not entangle a content review (e.g., a nomads Reach-page rewrite), and vice versa. Distinct from frontend-engineer because content authoring (prose, audience voice, lexicon-safe phrasing) is a different skill from toolchain config (YAML, theme, nav, Go test wiring). Removed after P3 when the docs site is complete.
---
# Personas: OpenYield (oy) — v0.4 (Refinement — NFR)
# Personas: OpenYield (oy) — v0.3 (Bearers & Documentation)
> This file supersedes the v0.3 PERSONAS.md for the v0.4 milestone. v0.4 is a
> refinement-only NFR milestone (D-047): zero `feat:` phases. The active
> roster is **backend-engineer + lead-developer** only. The v0.3
> phase-specific personas (frontend-engineer, docs-writer) are deactivated
> because v0.4 does not author docs content or restructure the docs toolchain;
> the only docs-adjacent work is a CI workflow file (REQ-032) owned by
> lead-developer as infra/config.
> This file supersedes the v0.2 PERSONAS.md for the v0.3 milestone. The v0.2
> custom personas (cosmos-engineer, security-engineer) are NOT reactivated for
> v0.3 — see Deactivated below for rationale. The default four personas are
> backend-engineer, data-engineer, frontend-engineer, lead-developer; v0.3
> activates backend-engineer + lead-developer + frontend-engineer (phase-
> specific) and adds one custom persona (docs-writer, phase-specific).
## Active Roster
| Persona | Active | Phase-specific | Territory |
|---------|--------|-----------------|-----------|
| backend-engineer | yes | no (all phases) | `lexicon/**`, `lexicon_meta*`, `x/hub/types`, `x/bond/types`, `x/council/types` |
| lead-developer | yes | no (all phases) | `.ciagent/**`, `.gitea/workflows/**` |
### backend-engineer
- **Domain**: All Bearers skeleton Go modules in v0.3 — `x/exit`, `x/bridge`, `x/hub`, `x/services` (new); `x/bearers`, `x/partner`, `x/bond` (extended). Owns the D-020 skeleton+tests pattern (D-035 continues): Go types + keeper stubs + invariant tests, no live chain. Absorbs the v0.2 cosmos-engineer/security-engineer split because v0.3's Cosmos-convention and invariant density are lower.
- **Frameworks**: Go 1.22 stdlib, Cosmos-style types (zero-dep).
- **Territory**: `x/exit/**`, `x/bridge/**`, `x/hub/**`, `x/services/**`, `x/bearers/**`, `x/partner/**`, `x/bond/**`, `x/**/types/**`, `x/**/keeper/**`. (`go.mod` is read-only per G-006.)
- **Constraints**: zero external deps (G-006), D-020 skeleton+tests (D-035), ≥80% coverage on new/extended packages, per-package lexicon assertion (REQ-012), by-ID-string inter-module refs (G-003), locked-const invariants (HubService/ServiceKind/BridgeStatus/ExitStatus counts + Anchor credential fields), no live chain/IBC/bearer/B2B runtime.
## Phase-Persona Matrix
### lead-developer
- **Domain**: v0.3 phase decomposition (P1 firewall+docs foundation → P2 nomads → P3 freeholders → P4 Bearers I → P5 Bearers II → P6 review/ship), territory enforcement (warn mode), final review. Owns the cross-component dependency finding that constrains phase ordering: `x/exit``x/bridge` (same phase P4); `x/partner`-Anchor→`x/hub` (P4 before P5).
- **Frameworks**: cross-cutting.
- **Territory**: `.ciagent/**`, `**`.
- **Constraints**: D-044 phase ordering (firewall-first; P4→P5 for Anchor→hub dep), milestone versioning (v0.3 / tag_base v0.2.x), lexicon gate on merge (REQ-012 extends to docs/), persona territory warn-mode, zero Go deps (G-006; docs build-deps allowed per D-042).
| Phase | Personas | Work |
|-------|----------|------|
| P0 (pre-execution) | lead-developer | spec/clarify/research/plan/grill/mvp-ux + ship |
| P1 (lexicon hardening) | backend-engineer | REQ-029 shared helper + REQ-030 cross-const test |
| P2 (lifecycle divergence) | backend-engineer (regression-guard test) + lead-developer (ARCHITECTURE.md docs) | REQ-031 |
| P3 (docs build CI) | lead-developer | REQ-032 `.gitea/workflows/docs-build.yml` |
| P4 (final review/ship) | lead-developer + ci-security-auditor (audit) | review + NFR purity gate + milestone ship |
### frontend-engineer (phase-specific: P1-P3 only)
- **Domain**: v0.3 docs TOOLCHAIN — `mkdocs.yml` (site_name, nav, theme: material, markdown_extensions), the audience-based nav structure (nomads/freeholders/shared/reference per D-042), and the docs firewall test wiring (`lexicon_meta_docs_test.go` mirroring `lexicon_meta_test.go` with `lexicon.FindBannedTerm` + word-boundary regex + self-test table + self-exclusion, scanning `README.md` + `docs/**/*.md`). Owns the firewall landing in P1 BEFORE content (D-044 firewall-first). Removed after P3.
- **Frameworks**: MkDocs Material, Markdown, Go testing (for the firewall test).
- **Territory**: `docs/**` (toolchain), `mkdocs.yml`, `README.md`, `lexicon_meta_docs_test.go`.
- **Constraints**: lexicon-clean by construction (REQ-012 extended via D-043; 10 banned terms absent from docs; "yield" banned standalone, "OpenYield" safe), audience-organized nav, ~20-25 pages total (D-045), no publishing CI in v0.3 (D-046), mkdocs.yml build-only Python dep (go.mod stays zero-dep per G-006).
- **Removed after**: P3.
## D-001 Refinement-Only Filter (governs all v0.4 work)
### docs-writer (custom, phase-specific: P1-P3 only)
- **Domain**: v0.3 docs CONTENT — the actual Markdown pages across the four audiences (nomads: Reach/Stash/bearers/Maps-Pay/Pacts/standing-basics; freeholders: 4-signals/Bayesian-Standing/Stands-Guilds/Councils-Voice/Bonds/Partner-spectrum; shared: Six-Principles/Bread-Scale/Storage-pools/Watchers-Mirror/Lexicon-glossary/Vision-overview; reference: architecture-index/component-map). Split from frontend-engineer so content review and toolchain review do not entangle. Removed after P3.
- **Frameworks**: Markdown, MkDocs Material (content authoring only).
- **Territory**: `docs/nomads/**/*.md`, `docs/freeholders/**/*.md`, `docs/shared/**/*.md`, `docs/reference/**/*.md`.
- **Constraints**: lexicon-clean by construction (same REQ-012 extension; "real production"/"real return" not "real yield"; "Holder"/"Reach" not "account"; "Stash"/"Vault"/"Root-Pool" not "bank"/"deposit"/"savings"), audience-organized (each page in exactly one audience dir), page-count budget per D-045, no banned-term literals in page source (docs firewall scans .md directly, unlike .go fragment assembly).
- **Removed after**: P3.
Every v0.4 change must pass the D-001 filter:
- **Accept**: refactor, test, docs, chore, perf, fix, quality, coverage, architecture (drift fix only), improvement (of existing).
- **Reject**: any `add_requirement` + `feat:`-class signal (new capability, new enum type, new production type, new CLI, new distribution channel, new backend).
- **Enforcement**: lead-developer reviews each phase's commit set; the final-phase audit runs the NFR purity gate (`git log --grep "^feat:" --all-match` on the milestone range must return zero).
## Deactivated
## Constraints Carried Forward
- **data-engineer** — INACTIVE for v0.3. Zero deps + no database; the v0.2 genesis.go schema work is a thin layer absorbed by backend-engineer in v0.3's new modules. Reactivate if a future milestone adds a real store/migration.
- **cosmos-engineer** (v0.2 custom) — NOT reactivated. v0.3's new modules do not map onto new Cosmos SDK modules (x/bridge reuses v0.2 satellite shape; x/hub/x/services/x/exit are bespoke). Cosmos-convention load drops below the threshold for a separate persona; backend-engineer absorbs.
- **security-engineer** (v0.2 custom) — NOT reactivated. v0.3's invariant density is lower (no new Mission-Lock/fee-clamp; 8%/0% consts reused unchanged; new locked-consts are enum counts). Locked-const + invariant tests absorbed by backend-engineer's per-package test authoring; docs firewall is frontend-engineer's. Reactivate in v0.4 if a new Mission-Lock-class invariant lands.
- **ci-security-auditor** — Default deactivated; activate in P6 (review/ship) for the milestone audit.
- **mesh-engineer** — Still not needed (OY-SAT/OY-QR are type stubs only). Activate in v0.4+ for real bearer runtime.
- **G-003** by-ID-string rule: preserved in PRODUCTION imports. Test-only cross-package imports are EXEMPT (REQ-030 relies on this exemption — `x/hub/types/cross_const_test.go` imports `x/bond/types` in a `_test.go` file only).
- **G-006** zero Go deps: `go.mod` stays zero-require. The CI workflow (REQ-032) may use build-only Python deps (mkdocs + mkdocs-material) in a separate CI job; this does not touch `go.mod`.
- **G-014** lexicon shared helper: REQ-029 closes the G-014 drift risk by adding `lexicon.SyntheticBannedStrings()` as the single source for the synthetic self-test table consumed by BOTH meta-tests.
- **Locked consts unchanged**: `SignalKindCount==4`, `LendingCouponCapBps==800`, `LendingCouponFloorBps==0`, `CouponCapBps==800`, `CouponFloorBps==0` — v0.4 does NOT change any locked const. REQ-030 asserts they stay in lockstep; REQ-031 asserts the 4-signal shape is intentional.
## Custom Personas
## Removal Notes
- **docs-writer** — v0.3's docs deliverable (~20-25 pages, D-045) is a substantial content-authoring load distinct from the docs toolchain. A dedicated docs-writer keeps the content-vs-toolchain boundary explicit: frontend-engineer owns mkdocs.yml/nav/theme/firewall-wiring; docs-writer owns page content. This split means a toolchain PR does not entangle a content review and vice versa. Distinct from frontend-engineer because prose/audience-voice/lexicon-safe-phrasing is a different skill from YAML/theme/nav/Go-test wiring. Removed after P3 when the docs site is complete.
- frontend-engineer and docs-writer were `removed_after: P3` in v0.3. They are formally deactivated here for v0.4 (not just phase-removed) because v0.4 has no docs-content phase at all.
- No phase-specific personas are created for v0.4. The roster is stable across all phases.
## Framework Alignment
- **Go 1.22** — backend-engineer targets Go 1.22 (`go.mod`); zero external deps (G-006).
- **MkDocs Material** — frontend-engineer + docs-writer target MkDocs Material (D-042); build-only Python dep, NOT a Go dependency. No publishing CI in v0.3 (D-046).
## Territory Alignment
- backend-engineer owns all `x/*` Bearers-skeleton modules (new: exit/bridge/hub/services; extended: bearers/partner/bond) + shared `types/`+`keeper/` authoring.
- frontend-engineer owns the docs toolchain (`docs/**` config, `mkdocs.yml`, `README.md`, `lexicon_meta_docs_test.go`).
- docs-writer owns docs content (`docs/<audience>/**/*.md`).
- lead-developer owns `.ciagent/**` + `**` for cross-cutting coordination.
- `go.mod` is read-only in v0.3 (G-006) — no persona may modify it; docs build-deps are allowed (D-042) but live outside `go.mod`.
## Constraint Alignment
- **Lexicon (REQ-012)** — every active persona carries it; backend-engineer asserts per test file (x/*); frontend-engineer asserts via the docs firewall (docs/* + README.md). The firewall extension is a sibling test, NOT a modification of the v0.2 meta-test (D-043).
- **Skeleton + tests (D-020/D-035)** — backend-engineer enforces.
- **≥80% coverage** — backend-engineer owns the gate for x/* packages.
- **Phase ordering (D-044)** — lead-developer enforces; firewall-first (P1) before content (P2/P3); P4 (exit/bridge/bearers/partner) before P5 (hub/services/bond) for the Anchor→hub dependency.
- **Locked-const invariants** — backend-engineer owns; HubService=3, ServiceKind=4, BridgeStatus count, ExitStatus count, Anchor credential fields, 8%/0% bond consts (reused).
## Phase-Specific Personas
- **frontend-engineer** — phase-specific to v0.3 P1-P3 (docs phases). Removed after P3; the Bearers skeleton phases (P4/P5) are pure Go (backend-engineer). Reassess at v0.4 if new docs work is queued.
- **docs-writer** — phase-specific to v0.3 P1-P3 (docs content). Removed after P3 with frontend-engineer.
+1 -255
View File
@@ -789,258 +789,4 @@ The v0.3 Phase 0 clarify/ideate/research stages produced 13 clarification decisi
| A-311 | OY-SAT surveillance-resistant LOCKED true; OY-QR one-shot | P4-03-01 |
| A-312 | HubServiceCount=3 | P5-01-01 |
| A-313 | OrderSideCount=2, OrderStatusCount=3 | P5-03-01 |
| A-315 | v0.2 cosmos-engineer/security-engineer NOT reactivated | Persona assignments (backend-engineer owns all P4/P5) |
---
## Milestone v0.4 — Refinement (NFR) — Phase Plan
### Milestone Summary
- **Milestone**: v0.4 — Refinement (NFR)
- **Type**: NFR (zero `feat:` phases by construction; D-047). Final-phase audit enforces the NFR purity gate (`git log --grep "^feat:"` on the milestone range returns zero).
- **Tag base**: `v0.3.x` patch line. P0 ships as `v0.3.0`; execution phases `v0.3.1..v0.3.3`; final phase P4 patch `v0.3.4` IS the milestone release. No separate minor tag (D-008).
- **Phases**: 4 execution + 1 final = 5. Phase 0 (this PLAN) is pre-execution.
- **Depth**: refinement-only — refactor + test + docs + chore. No new production types, no new enum types, no behavioral changes. All work passes the D-001 refinement-only filter.
- **Coverage target**: ≥80% on any modified package; do NOT reduce existing coverage (v0.3 floor is 93.3%).
- **New modules**: ZERO. Touched files: `lexicon/lexicon.go` (add helper), `lexicon_meta_test.go` + `lexicon_meta_docs/lexicon_meta_docs_test.go` (refactor to consume helper), `x/hub/types/cross_const_test.go` (NEW test file), `x/council/types/types_test.go` (add intent test), `.ciagent/oy/ARCHITECTURE.md` (docs), `.gitea/workflows/docs-build.yml` (NEW CI).
- **Phase ordering** (D-052): P1 lexicon+const hardening → P2 lifecycle divergence docs+guard → P3 docs build CI → P4 final review/audit/ship. P1 is firewall-first (highest-severity regression risk); each phase independently shippable (vertical slices).
- **Personas**: backend-engineer (P1, P2 code), lead-developer (P2 docs, P3 CI, P4 review/ship). v0.3 frontend-engineer + docs-writer deactivated.
### Cross-Phase Dependency Map
```
P1 (lexicon helper, cross-const test) ──► P4 (review)
P2 (lifecycle docs + regression guard) ─► P4 (review)
P3 (docs build CI) ─► P4 (review)
```
No hard cross-phase blockers (all three execution phases are independent vertical slices). P4 depends on P1+P2+P3 completion only.
### D-001 Refinement-Only Filter (governs every v0.4 task)
- **Accept**: refactor, test, docs, chore, quality, architecture (drift fix only).
- **Reject**: `add_requirement` + `feat:`-class signal (new enum type, new production type, new capability, new CLI, new distribution channel).
- **Pre-seeded NFR REQs** (REQ-029..REQ-032) are exempt — already in REQUIREMENTS.md before PLAN.
---
## Phase P1 — Lexicon + Const Hardening
- **Slug**: `lexicon-const-hardening`
- **Branch**: `oy/phase/01-lexicon-const-hardening`
- **REQs covered**: REQ-029 (lexicon shared helper), REQ-030 (cross-const test)
- **Tag**: `v0.3.1`
- **Goal**: Close the G-014 lexicon-firewall drift risk (shared synthetic-string helper) and the A-304 hub↔bond const drift risk (cross-package equality test). Both are refactor+test; no behavioral change.
### Wave 1 — Shared helper + cross-const test (parallel; no internal deps)
| Task ID | REQ | Persona | Files | Deliverable | Must-have verification | Blocked-by |
|---|---|---|---|---|---|---|
| P1-01-01 | REQ-029 | backend-engineer | `lexicon/lexicon.go` | Add `SyntheticBannedStrings() []string` returning the 10 synthetic strings currently duplicated in both meta-tests. Each string embeds exactly one banned term (from `BannedTerms()`) in a plausible sentence context. Source uses `BannedTerms()` so the lexicon package's own source stays lexicon-clean (fragment-assembled). Add a doc comment cross-referencing G-014 and both consuming meta-tests. | `go build ./lexicon/...` succeeds; `SyntheticBannedStrings()` returns exactly `len(BannedTerms())` strings; each returned string triggers `FindBannedTerm` (self-verifiable in a new test); lexicon package source stays lexicon-clean (the existing `lexicon_meta_test.go` x/ scan does not scan `lexicon/` itself, but the helper must not introduce a banned-term literal). | — |
| P1-01-02 | REQ-029 | backend-engineer | `lexicon_meta_test.go`, `lexicon_meta_docs/lexicon_meta_docs_test.go` | Refactor `TestLexiconMetaSelfTestTable` and `TestLexiconMetaDocsSelfTestTable` to consume `lexicon.SyntheticBannedStrings()` instead of building their own `synthetic` slice. Remove the duplicated 10-string table from both. Keep the per-string `FindBannedTerm` assertion loop (detection coverage unchanged). Keep the `len(terms) == 10` assertion from `BannedTerms()`. Add a `len(synthetic) == len(terms)` assertion derived from the helper. | `go test ./lexicon_meta... ./lexicon_meta_docs/...` passes; both tests still fail if detection breaks; the duplicated table is gone (grep for the old literal sentence fragments returns zero matches in meta-test files); coverage on both meta-tests does not decrease. | P1-01-01 |
| P1-02-01 | REQ-030 | backend-engineer | `x/hub/types/cross_const_test.go` (NEW) | New test file, package `types` (same package as `x/hub/types`). Test-only import `github.com/oy/openyield/x/bond/types` (G-003 test-exempt). Tests: (1) `TestLendingCouponCapMatchesBondCap` asserts `hub.LendingCouponCapBps == bond.CouponCapBps`; (2) `TestLendingCouponFloorMatchesBondFloor` asserts `hub.LendingCouponFloorBps == bond.CouponFloorBps`; (3) `TestConstsAreMissionLocked800And0` asserts both caps == 800 and both floors == 0 (regression guard for the mission-locked values). Doc comment cross-references A-304 and the G-003 test-exemption. | `go test ./x/hub/types/...` passes; all three tests green at current values (800/0); test fails closed if either const drifts; NO production file in `x/hub/types/` imports `x/bond/types` (G-003 production firewall intact — verified by a grep of non-test `.go` files). | — |
### Wave 2 — Verification (blocked-by Wave 1)
| Task ID | REQ | Persona | Files | Deliverable | Must-have verification | Blocked-by |
|---|---|---|---|---|---|---|
| P1-99-01 | REQ-029, REQ-030 | lead-developer | — (verification only) | Run `go test ./...` (all packages, both lexicon firewalls + cross-const test + all v0.3 baseline tests); run `grep -rn "open a .* here\|make a .* now\|compounding .* rate" lexicon_meta_test.go lexicon_meta_docs/` and confirm zero matches (old duplicated table fully removed); confirm `go.mod` unchanged (zero deps, G-006). | `go test ./...` exits 0; grep returns zero; `go.mod` diff is empty. | P1-01-02, P1-02-01 |
### P1 Must-Haves (verification gate before SHIP)
- [ ] `lexicon.SyntheticBannedStrings()` exists and returns 10 strings.
- [ ] Both meta-tests consume the helper (no duplicated table).
- [ ] `x/hub/types/cross_const_test.go` exists and passes.
- [ ] `go test ./...` green (all v0.3 baseline + v0.4 new tests).
- [ ] `go.mod` unchanged.
- [ ] No `feat:` commits in P1 (D-001 filter).
---
## Phase P2 — Lifecycle Divergence Documentation + Regression Guard
- **Slug**: `lifecycle-divergence-docs`
- **Branch**: `oy/phase/02-lifecycle-divergence-docs`
- **REQs covered**: REQ-031
- **Tag**: `v0.3.2`
- **Goal**: Document the AUDIT §193 council lifecycle type divergences (P1-1 Proposal/VoteOption absent; P1-2 SignalKind 4-vs-5) in ARCHITECTURE.md and add an intent-assertion test guarding the current `SignalKindCount==4` shape. No enum additions, no locked-const changes (D-050).
### Wave 1 — Docs + regression guard (parallel; no internal deps)
| Task ID | REQ | Persona | Files | Deliverable | Must-have verification | Blocked-by |
|---|---|---|---|---|---|---|
| P2-01-01 | REQ-031 | lead-developer | `.ciagent/oy/ARCHITECTURE.md` | Add a "Council Voice/Council Interface — Lifecycle Type Divergence Decisions (v0.4)" subsection under the v0.4 Architecture section. Document: (a) P1-1 `Proposal`/`ProposalStatus`/`VoteOption` absent — deferred to v0.5+ governance runtime (feat:-class, rejected by D-001); (b) P1-2 `SignalKind` 4 sources (Stash/Standing/Vouch/Capital) vs spec `VoiceSource` 5 sources — the AUDIT rationale (Freeholder is eligibility, Guild is council tier, Capital is committed-capital per vision §9.1) and the decision to KEEP the 4-source shape; (c) the Bearers `ValidateGenesis` no-op is correct per spec (P2, no action). Cross-reference AUDIT §193 P1-1/P1-2/P2. | The ARCHITECTURE.md section exists and names both P1 divergences + the P2 no-action; a reader can find why Proposal/VoteOption are absent and why SignalKind is 4-not-5 without re-reading AUDIT. | — |
| P2-02-01 | REQ-031 | backend-engineer | `x/council/types/types_test.go` | Add `TestSignalKindShapeIntentional` — an intent-assertion test that documents and guards the 4-source `SignalKind` shape. Asserts: `SignalKindCount == 4`; `AllSignalKinds()` returns exactly [Stash, Standing, Vouch, Capital]; a doc-comment block above the test explaining the AUDIT §193 P1-2 rationale (why Freeholder and Guild are NOT signal kinds, why Capital IS) so a future agent does not "fix" the divergence by silently changing the locked const. This is a regression GUARD, not a shape change — the existing `TestSignalKindCountLockedConst` already locks the count; this test adds the INTENT documentation. | `go test ./x/council/types/...` passes; the new test fails if `SignalKindCount` changes from 4; the test's doc comment explains the rationale. | — |
### Wave 2 — Verification (blocked-by Wave 1)
| Task ID | REQ | Persona | Files | Deliverable | Must-have verification | Blocked-by |
|---|---|---|---|---|---|---|
| P2-99-01 | REQ-031 | lead-developer | — (verification only) | Run `go test ./...`; confirm ARCHITECTURE.md subsection present; confirm no production `.go` file was modified in P2 (only a `_test.go` file + a `.ciagent/` doc). | `go test ./...` exits 0; `git diff --name-only <p2-base> HEAD -- 'x/**/*.go'` returns only `x/council/types/types_test.go` (no production files). | P2-01-01, P2-02-01 |
### P2 Must-Haves (verification gate before SHIP)
- [ ] ARCHITECTURE.md has the Council lifecycle divergence subsection.
- [ ] `TestSignalKindShapeIntentional` exists and passes.
- [ ] `SignalKindCount` unchanged (still 4).
- [ ] No production `.go` files modified in P2 (test + docs only).
- [ ] No `feat:` commits in P2 (D-001 filter).
---
## Phase P3 — Docs Build CI
- **Slug**: `docs-build-ci`
- **Branch**: `oy/phase/03-docs-build-ci`
- **REQs covered**: REQ-032
- **Tag**: `v0.3.3`
- **Goal**: Ship a Gitea Actions workflow that runs the lexicon firewall (`go test ./...`) + builds the docs site (`mkdocs build`) on every push, uploading `site/` as a CI artifact. Full Gitea Pages publishing deferred (no hosting target configured, D-051). The workflow file is `chore` (CI config), not `feat:`.
### Wave 1 — CI workflow (single task; no internal deps)
| Task ID | REQ | Persona | Files | Deliverable | Must-have verification | Blocked-by |
|---|---|---|---|---|---|---|
| P3-01-01 | REQ-032 | lead-developer | `.gitea/workflows/docs-build.yml` (NEW) | Gitea Actions workflow (YAML). Triggers: on push (all branches). Jobs: (1) `go-test` — setup Go 1.22, `go test ./...` (runs lexicon firewall + all x/* tests); (2) `docs-build` — setup Python, `pip install mkdocs mkdocs-material`, `mkdocs build` (produces `site/`), upload `site/` as an artifact. **G-016 binding**: the `docs-build` job MUST depend on `go-test` (serial: `needs: go-test`), so a lexicon-firewall failure blocks the docs build (no false-green docs build from a repo with a lexicon violation). `go.mod` is NOT modified (Python deps are isolated to the `docs-build` job). Doc comment in the YAML references D-046 (forward-reference), D-051 (no Pages publish), and G-016 (firewall-gates-docs-build). | YAML parses; `go test ./...` command matches the local green baseline; `mkdocs build` command matches the README's local build invocation; `docs-build` job has `needs: go-test`; no `go.mod` change. | — |
### Wave 2 — Verification (blocked-by Wave 1)
| Task ID | REQ | Persona | Files | Deliverable | Must-have verification | Blocked-by |
|---|---|---|---|---|---|---|
| P3-99-01 | REQ-032 | lead-developer | — (verification only) | Validate the workflow YAML parses; confirm `go test ./...` still green locally (the workflow does not change Go source); confirm `mkdocs build` succeeds locally (mkdocs installed); confirm `go.mod` unchanged. | YAML parse OK; `go test ./...` exits 0; `mkdocs build` produces `site/`; `go.mod` diff empty. | P3-01-01 |
### P3 Must-Haves (verification gate before SHIP)
- [ ] `.gitea/workflows/docs-build.yml` exists and parses.
- [ ] Workflow runs `go test ./...` and `mkdocs build`.
- [ ] `go.mod` unchanged.
- [ ] No `feat:` commits in P3 (D-001 filter; the workflow is `chore`).
---
## Phase P4 — Final Review + Audit + Milestone Ship
- **Slug**: `final-review-ship`
- **Branch**: `oy/phase/04-final-review-ship`
- **REQs covered**: all v0.4 REQs (REQ-029..REQ-032) — final coverage accounting
- **Tag**: `v0.3.4` (IS the v0.4 milestone release; D-008)
- **Goal**: Multi-persona review across P1..P3, audit (reconstruction test + NFR purity gate), milestone ship (merge to main, tag v0.3.4, release, delete all milestone branches).
### Wave 1 — Review + Audit (parallel; no internal deps)
| Task ID | REQ | Persona | Files | Deliverable | Must-have verification | Blocked-by |
|---|---|---|---|---|---|---|
| P4-01-01 | — | lead-developer (review) | `.ciagent/oy/REVIEW.md` (NEW for v0.4) | Multi-persona code review across P1..P3. Adversarial probes: (1) does the shared helper actually dedupe (grep for old table); (2) does the cross-const test fail closed on drift; (3) does the regression guard lock the 4-signal shape; (4) does the CI workflow YAML parse. Auto-apply P0 fixes; flag P1+ for post-hoc. | REVIEW.md written; P0 issues (if any) fixed in P4; P1+ flagged. | P1, P2, P3 |
| P4-02-01 | — | ci-security-auditor (audit) | `.ciagent/oy/AUDIT.md` (v0.4 section) | Audit: (1) reconstruction test (git log ↔ `.ciagent/` files for v0.4); (2) file/branch/commit discipline; (3) **NFR purity gate**`git log --grep "^feat:" $(git rev-list --tags=v0.3.0..v0.3.4)` returns zero (or the equivalent milestone-range grep); (4) coverage did not decrease on any modified package. | AUDIT.md v0.4 section written; NFR purity gate GREEN (zero feat: commits); reconstruction test passes. | P1, P2, P3 |
### Wave 2 — Ship (blocked-by Wave 1)
| Task ID | REQ | Persona | Files | Deliverable | Must-have verification | Blocked-by |
|---|---|---|---|---|---|---|
| P4-03-01 | REQ-029..REQ-032 | lead-developer (ship) | `.ciagent/oy/REQUIREMENTS.md`, `.ciagent/oy/ROADMAP.md`, `.ciagent/CHECKPOINT.json` | Milestone ship via `ciagent ship 4` (or ShipWorkflow fallback). Merge `oy/phase/04``oy/milestone/v0.4-refinement``main`. Tag `v0.3.4`. Create release (best-effort via `resolveSecret(GITEA_TOKEN)`). Delete all milestone branches (local + remote). Update REQUIREMENTS.md (v0.4 REQs → Complete) + ROADMAP.md (v0.4 → COMPLETE). Commit `docs(milestone): complete v0.4`. Clear CHECKPOINT. | Tag `v0.3.4` created; milestone branch merged to main; release created (or local-only fallback); all `oy/phase/*` and `oy/milestone/v0.4-refinement` branches deleted; REQUIREMENTS.md + ROADMAP.md updated; checkpoint cleared. | P4-01-01, P4-02-01 |
### P4 Must-Haves (verification gate before milestone complete)
- [ ] REVIEW.md v0.4 section written; P0 fixes applied.
- [ ] AUDIT.md v0.4 section written; reconstruction test passes.
- [ ] **NFR purity gate GREEN**: zero `feat:` commits in the v0.4 milestone range.
- [ ] Tag `v0.3.4` created (= milestone release).
- [ ] Milestone branch merged to `main`.
- [ ] All milestone branches deleted (local + remote).
- [ ] REQUIREMENTS.md + ROADMAP.md mark v0.4 COMPLETE.
- [ ] CHECKPOINT.json cleared (milestone complete).
---
## Coverage Targets (D-033) — v0.4
v0.4 does not lower the v0.3 coverage floor (93.3% on the lowest package). The modified packages must not decrease:
- `lexicon` (if coverage applies — it's a helper package): maintain or improve.
- `lexicon_meta` / `lexicon_meta_docs`: maintain 100% (test-only packages).
- `x/hub/types`: the new `cross_const_test.go` ADDS coverage; do not decrease.
- `x/council/types`: the new intent test ADDS coverage; do not decrease.
No new packages are created, so no new 80% floor is set.
## Task Count Summary — v0.4
| Phase | Tasks | Personas | Tag |
|-------|-------|----------|-----|
| P0 | (pre-execution, this plan) | lead-developer | v0.3.0 |
| P1 | 4 (3 code + 1 verify) | backend-engineer, lead-developer | v0.3.1 |
| P2 | 3 (2 deliver + 1 verify) | backend-engineer, lead-developer | v0.3.2 |
| P3 | 2 (1 deliver + 1 verify) | lead-developer | v0.3.3 |
| P4 | 3 (review + audit + ship) | lead-developer, ci-security-auditor | v0.3.4 |
| **Total** | **12 tasks** | | |
## Per-Phase REQ Coverage — v0.4
| Phase | REQs covered | Status after phase |
|-------|--------------|--------------------|
| P1 | REQ-029, REQ-030 | Complete (shipped as v0.3.1) |
| P2 | REQ-031 | Complete (shipped as v0.3.2) |
| P3 | REQ-032 | Complete (shipped as v0.3.3) |
| P4 | (all v0.4 REQs final accounting) | Complete (shipped as v0.3.4) |
## Cross-Phase Blockers (hard) — v0.4
None. P1, P2, P3 are independent vertical slices. P4 depends on P1+P2+P3 completion only (soft ordering for shippable slices).
## v0.4 Decisions Applied (D-047..D-053)
| Decision | Application |
|----------|-------------|
| D-047 | v0.4 NFR type, tags v0.3.x, zero feat: phases | Milestone summary |
| D-048 | REQ-029 lexicon shared helper | P1-01-01, P1-01-02 |
| D-049 | REQ-030 cross-const test (G-003 test-exempt import) | P1-02-01 |
| D-050 | REQ-031 = document only, no feat: enum additions | P2-01-01, P2-02-01 |
| D-051 | REQ-032 docs CI = .gitea/workflows build+artifact, no Pages | P3-01-01 |
| D-052 | Phase ordering P1→P2→P3→P4 | Phase ordering |
| D-053 | No IDEATE in v0.4 (no --ideate flag) | (no IDEATE stage run) |
---
## MVP/UX Check (REQ-MVP-UX-001) — v0.4 NFR Milestone
> Auto-generated at full autonomy per run.md §MVP/UX CHECK. The three required
> sections below name at least one user-facing surface, a happy path written
> BEFORE execute, and explicit UX acceptance criteria. v0.4 is an NFR milestone,
> so "user-facing surface" is developer-facing (the lexicon firewall, the
> cross-const test, the CI workflow) and the docs site build (end-user-facing
> via the published docs artifact).
### User-Facing Surface
1. **Lexicon firewall (developer-facing)**: `go test ./lexicon_meta... ./lexicon_meta_docs/...` — the green test output is the surface a developer sees on every `go test ./...` run. After REQ-029, both meta-tests consume `lexicon.SyntheticBannedStrings()`; a future banned-term addition updates both firewalls from one place.
2. **Cross-const drift test (developer-facing)**: `go test ./x/hub/types/...``TestConstsAreMissionLocked800And0` is the surface a developer sees if the hub↔bond mission-locked consts ever drift.
3. **Docs build CI (end-user-facing via artifact)**: `.gitea/workflows/docs-build.yml` produces a `site/` artifact on every push. A maintainer downloads the artifact to preview the docs site without running `mkdocs build` locally.
4. **ARCHITECTURE.md divergence section (developer-facing)**: a contributor reading `.ciagent/oy/ARCHITECTURE.md` finds the "Council Voice/Council Interface — Lifecycle Type Divergence Decisions (v0.4)" subsection explaining why `SignalKind` is 4-not-5 and why `Proposal`/`VoteOption` are absent.
### Happy Path
**Scenario: a contributor adds an 11th banned term to the lexicon firewall.**
1. The contributor edits `lexicon/lexicon.go` to add a new fragment pair to `fragments` (e.g., a new banned term).
2. `lexicon.BannedTerms()` now returns 11 strings.
3. `lexicon.SyntheticBannedStrings()` (REQ-029) is the single source — the contributor does NOT need to update two meta-test tables (the v0.3 drift risk).
4. `go test ./lexicon_meta... ./lexicon_meta_docs/...` — both meta-tests consume the helper; the `len(terms) == 10` assertion in BOTH meta-tests now fails (expecting 11), alerting the contributor to update the count assertion in both files.
5. The contributor updates the `len(terms) == 11` assertion in both meta-tests (the G-014 minimum — both already derive count from `BannedTerms()`).
6. Both meta-tests pass; the new banned term is now enforced in BOTH the `x/**/*.go` firewall AND the `docs/**/*.md` firewall from one source change.
7. The contributor pushes; `.gitea/workflows/docs-build.yml` (REQ-032) runs `go-test` (green) → `docs-build` (green, G-016 gating) → `site/` artifact uploaded.
**Scenario: a contributor accidentally changes `x/bond.CouponCapBps` from 800 to 900 without updating `x/hub.LendingCouponCapBps`.**
1. `go test ./x/hub/types/...``TestLendingCouponCapMatchesBondCap` (REQ-030) fails: `hub.LendingCouponCapBps (800) != bond.CouponCapBps (900)`.
2. `TestConstsAreMissionLocked800And0` (G-015) ALSO fails: `bond.CouponCapBps (900) != 800`.
3. The contributor sees two failures pointing at the same root cause; the mission-locked 8% cap is defended by the cross-const test. The v0.3 A-304 drift risk is closed.
### UX Acceptance Criteria
The v0.4 deliverable MUST meet these explicit criteria (verified in P4 audit):
1. **REQ-029**: `lexicon.SyntheticBannedStrings()` exists; both `lexicon_meta_test.go` and `lexicon_meta_docs/lexicon_meta_docs_test.go` consume it; the duplicated 10-string table is gone (grep for the old literal sentence fragments returns zero matches in meta-test files).
2. **REQ-030**: `x/hub/types/cross_const_test.go` exists; `TestLendingCouponCapMatchesBondCap`, `TestLendingCouponFloorMatchesBondFloor`, and `TestConstsAreMissionLocked800And0` all pass (G-015); no production `.go` file in `x/hub/types/` imports `x/bond/types` (G-003 production firewall intact).
3. **REQ-031**: ARCHITECTURE.md has the Council lifecycle divergence subsection; `TestSignalKindShapeIntentional` in `x/council/types/types_test.go` passes and documents the 4-signal rationale; `SignalKindCount` unchanged (still 4); no production `.go` files modified in P2.
4. **REQ-032**: `.gitea/workflows/docs-build.yml` parses; runs `go test ./...` then `mkdocs build` (G-016: `docs-build` needs `go-test`); `go.mod` unchanged.
5. **NFR purity gate**: zero `feat:` commits in the v0.4 milestone range (P4 audit enforces).
6. **No regression**: `go test ./...` green; v0.3 coverage floor (93.3%) not reduced on any modified package.
| A-315 | v0.2 cosmos-engineer/security-engineer NOT reactivated | Persona assignments (backend-engineer owns all P4/P5) |
+2 -45
View File
@@ -61,36 +61,7 @@ OpenYield (OY) is a durable, anti-greed, jurisdiction-light financial layer —
- D-009: Rebased history to fix v1.0 → v0.1 in ---ci--- blocks
## Milestone
v0.4Refinement (active milestone; NFR type; tags run on the v0.3.x patch line)
### v0.4 Scope (Refinement-only NFR — v0.3 post-hoc forward-references)
v0.4 is a refinement-only NFR milestone: zero `feat:` phases. It lands the
durability fixes v0.3 flagged but did not block on, sourced from REVIEW.md,
AUDIT.md §193, and GRILL.md G-014. Live-runtime promotions of the v0.3 Bearers
skeletons are out of scope (deferred to v0.5+).
- **REQ-029** Lexicon firewall shared helper (`lexicon.SyntheticBannedStrings()`) — dedupe the synthetic self-test table between `lexicon_meta_test.go` and `lexicon_meta_docs_test.go`. Both meta-tests derive count + strings from the single `lexicon` package source, so a future banned-term addition updates both firewalls from one place. (GRILL G-014)
- **REQ-030** Cross-package const-equality test — `x/hub.LendingCouponCapBps == x/bond.CouponCapBps` (and Floor). Test-only import (G-003 exempt). Catches silent mission-lock drift between hub LOCAL consts and bond D-028 consts. (REVIEW.md P2 / A-304)
- **REQ-031** x/* lifecycle type shape-divergence review + alignment fixes — audit non-must-have lifecycle types across modules flagged by AUDIT §193; align where divergent without behavioral change. (AUDIT.md §193)
- **REQ-032** Docs build CI — Gitea Actions workflow running `go test ./...` (lexicon firewall) + `mkdocs build` on every push; upload `site/` as a CI artifact. Full Gitea Pages publishing deferred if no hosting target configured. (D-046)
### Milestone Type
NFR (all phases are refactor/test/quality/chore). Phase 0 → `v0.3.0`; execution phases `v0.3.1..v0.3.3`; final phase patch `v0.3.4` IS the milestone release. No separate minor tag. The final-phase audit enforces the NFR purity gate (zero `feat:` commits).
### Out of Scope (v0.4)
- Live-runtime promotions: Exit/DEX, OY-SAT/OY-QR hardware, Hub API B2B, bond matching, L2 IBC rollout, Anchors onboarding (all `feat:`, deferred to v0.5+)
- i18n / MkDocs internationalization (`feat:`, rejected by D-001 filter)
- Yield Token, Travel + 11 service categories (ROADMAP Phase 4)
- Cover Pool seniority mechanics (still deferred per PROJECT.md Q7)
### Prior Milestones
- v0.1 — OpenYield Foundation Init (COMPLETE; pre-MVP foundation skeleton; released as v0.0.9)
- v0.2 — The Mesh (COMPLETE; skeleton + tests; released as v0.1.5)
- v0.3 — Bearers & Documentation (COMPLETE; feature; released as v0.2.6)
## Prior Milestone
v0.3 — Bearers & Documentation (complete; feature type; tags ran on the v0.2.x patch line)
v0.3Bearers & Documentation (active milestone; feature type; tags run on the v0.2.x patch line)
### v0.3 Scope (Bearers skeleton + Docs site — ROADMAP Phase 3 partial, plus a docs deliverable)
@@ -174,18 +145,4 @@ Auto-decided defaults logged per clarify workflow Step 4 (full autonomy → acce
### Ideation outcome (Phase 0 — IDEATE stage, autonomy=full)
IDEATE stage ratified 8 ideas (IDEATE-01..IDEATE-08) at full autonomy, mapped to REQ-010/REQ-022..REQ-028. Docs deliverable (IDEATE-01/02) is the user's `--ideate` request; Bearers ideas (IDEATE-03..08) are the ROADMAP Phase 3 subset. Three ideation tiers ran (mechanical, backend-enriched, cross-project); mechanical tier found no `lessons:`/`compound:` tags in v0.1/v0.2 history (convention unused) and v0.2 closed clean (9/9 REQs, 303 tests, ≥95.9% coverage). Defaults accepted per full autonomy; traceability recorded in `.ciagent/oy/REQUIREMENTS.md` (IDEATE Traceability section).
### v0.4 Clarification Decisions (Phase 0 — CLARIFY, autonomy=full)
Auto-decided defaults logged per clarify workflow Step 4 (full autonomy → accept defaults, log decisions). v0.4 is a refinement-only NFR milestone (no `--ideate` flag this run; scope pre-seeded from v0.3 forward-references). The D-001 refinement-only filter governs scope eligibility.
| ID | Decision | Rationale | Confidence | Alternatives |
|----|----------|-----------|------------|--------------|
| D-047 | **v0.4 milestone type = NFR** (all phases refactor/test/quality/chore). Zero `feat:` phases by construction. Tags run on the `v0.3.x` patch line: P0 → `v0.3.0`, P1..P3 → `v0.3.1..v0.3.3`, final phase P4 → `v0.3.4` (milestone release). No separate minor tag. | The candidate work set (REQ-029..REQ-032) is entirely refactor/test/quality/chore. Promoting any Bearers skeleton to live runtime would be `feat:` and is deferred to v0.5+. | 0.90 | [feature milestone promoting v0.3 skeletons to live runtime] |
| D-048 | **REQ-029 lexicon shared helper**: add `lexicon.SyntheticBannedStrings() []string` to the `lexicon` package; both `lexicon_meta_test.go` and `lexicon_meta_docs_test.go` consume it instead of duplicating their own synthetic self-test tables. Both already assert `len(terms) == 10` from `lexicon.BannedTerms()` (G-014 minimum met); the helper closes the drift risk fully. | GRILL G-014 binding fix. Single source of truth for synthetic banned strings; a future banned-term addition updates both firewalls from one place. Refactor+test (NFR-eligible). | 0.88 | [cross-reference comment only (G-014 minimum)] |
| D-049 | **REQ-030 cross-package const-equality test**: new test file `x/hub/types/cross_const_test.go` (package `types`) that imports `x/bond/types` (test-only, G-003 exempt) and asserts `hub.LendingCouponCapBps == bond.CouponCapBps` and `hub.LendingCouponFloorBps == bond.CouponFloorBps`. Test-only import does not violate G-003 (production-import firewall). | REVIEW.md P2 / A-304. Catches silent mission-lock drift between hub LOCAL consts and bond D-028 consts. Test (NFR-eligible). | 0.85 | [document manual-sync requirement in ARCHITECTURE.md only] |
| D-050 | **REQ-031 lifecycle type shape-divergence review scope = DOCUMENT only, no code shape changes**. AUDIT §193 P1-1 (council Proposal/VoteOption absent) and P1-2 (SignalKind 4 vs 5 sources) are `feat:`-class additions (new enum types / locked-const shape changes) and are REJECTED by the D-001 refinement-only filter. v0.4 REQ-031 ships an ARCHITECTURE.md section documenting the divergence decisions (P1-2 defensible per AUDIT code rationale; P1-1 deferred to v0.5+ governance runtime) + a test asserting the current `SignalKindCount==4` locked-const shape is intentional (regression guard, not a shape change). | Adding Proposal/VoteOption enums is `feat:`; changing SignalKind 4→5 is a locked-const change. Both are out-of-scope for an NFR milestone. Documentation + a regression-guard test are NFR-eligible. | 0.82 | [add Proposal/VoteOption enums (feat:, deferred to v0.5+)] |
| D-051 | **REQ-032 docs build CI = Gitea Actions workflow** at `.gitea/workflows/docs-build.yml` running `go test ./...` (lexicon firewall) + `mkdocs build` on every push; upload `site/` as a CI artifact. Full Gitea Pages publishing is deferred (no hosting target configured in v0.4). The workflow file itself is a `chore` (config, not feature). | D-046 forward-reference. `.github/workflows/` does not exist; Gitea Actions uses `.gitea/workflows/`. Build+artifact CI is `chore` (NFR-eligible); full Pages publish needs a hosting target (deferred). | 0.80 | [include full Gitea Pages publish (needs hosting target + secrets)] |
| D-052 | **Phase ordering** (provisional, planner finalizes): P1 lexicon hardening (REQ-029 + REQ-030 — same `lexicon`/test territory, vertical slice) → P2 lifecycle divergence documentation + regression guard (REQ-031) → P3 docs build CI (REQ-032) → P4 final review + audit + milestone ship. Each phase independently shippable; P1 lands the firewall durability fixes first (highest-severity regression risk). | P1 bundles the two lexicon/const firewall fixes (same territory); P2 is documentation+test; P3 is CI config. Vertical slices. | 0.80 | [different wave ordering] |
| D-053 | **No IDEATE stage in v0.4** (no `--ideate` flag this run). The NFR scope was pre-seeded from v0.3 forward-references and ratified at CLARIFY. If `--ideate` is passed on a later v0.4 run, the D-001 refinement-only filter applies. | run.md §IDEATE is conditional on `--ideate`. This invocation has no `--ideate`. | 1.00 | [run IDEATE anyway] |
IDEATE stage ratified 8 ideas (IDEATE-01..IDEATE-08) at full autonomy, mapped to REQ-010/REQ-022..REQ-028. Docs deliverable (IDEATE-01/02) is the user's `--ideate` request; Bearers ideas (IDEATE-03..08) are the ROADMAP Phase 3 subset. Three ideation tiers ran (mechanical, backend-enriched, cross-project); mechanical tier found no `lessons:`/`compound:` tags in v0.1/v0.2 history (convention unused) and v0.2 closed clean (9/9 REQs, 303 tests, ≥95.9% coverage). Defaults accepted per full autonomy; traceability recorded in `.ciagent/oy/REQUIREMENTS.md` (IDEATE Traceability section).
+8 -26
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@@ -30,37 +30,19 @@
| ID | Requirement | Vision § | Priority | Status | Phase |
|----|-------------|----------|----------|--------|-------|
| REQ-010 | Exit layer (Layer 3) — DEX swaps, bridges, off-mesh services | §7 | Medium | Skeleton | v0.3/P4 |
| REQ-022 | Bearers expansion: OY-SAT + OY-QR bearer transports | §14 | Medium | Skeleton | v0.3/P4 |
| REQ-023 | Anchors — first institutional Partner tier | §13 | Medium | Skeleton | v0.3/P4 |
| REQ-024 | Hub API — B2B backbone: custody, lending primitive, compliance | §13 | Medium | Skeleton | v0.3/P5 |
| REQ-025 | Services — Care / SIM / Vault / Mail | §13 | Medium | Skeleton | v0.3/P5 |
| REQ-026 | Bond market depth — Growth Bonds + secondary market | §17 | Medium | Skeleton | v0.3/P5 |
| REQ-027 | README.md + docs site in docs/ for nomads and freeholders | (vision §8) | High | Complete | v0.3/P1-P3 |
| REQ-028 | Extend REQ-012 lexicon firewall to scan docs/ + README.md | §3 | High | Complete | v0.3/P1 |
| REQ-010 | Exit layer (Layer 3) — DEX swaps, bridges, off-mesh services | §7 | Medium | Pending | v0.3/P4 |
| REQ-022 | Bearers expansion: OY-SAT + OY-QR bearer transports | §14 | Medium | Pending | v0.3/P4 |
| REQ-023 | Anchors — first institutional Partner tier | §13 | Medium | Pending | v0.3/P4 |
| REQ-024 | Hub API — B2B backbone: custody, lending primitive, compliance | §13 | Medium | Pending | v0.3/P5 |
| REQ-025 | Services — Care / SIM / Vault / Mail | §13 | Medium | Pending | v0.3/P5 |
| REQ-026 | Bond market depth — Growth Bonds + secondary market | §17 | Medium | Pending | v0.3/P5 |
| REQ-027 | README.md + docs site in docs/ for nomads and freeholders | (vision §8) | High | Pending | v0.3/P1-P3 |
| REQ-028 | Extend REQ-012 lexicon firewall to scan docs/ + README.md | §3 | High | Pending | v0.3/P1 |
> REQ-022 through REQ-028 are NEW in v0.3 (ratified during Phase 0 IDEATE as
> IDEATE-01..IDEATE-07, then assigned final REQ-IDs). REQ-010 is promoted from
> v0.1 Skeleton to a fuller v0.3 skeleton.
## v0.4 Milestone Requirements (Refinement — NFR)
v0.4 is a refinement-only NFR milestone: zero `feat:` phases. Scope sourced
from v0.3 forward-references (REVIEW.md, AUDIT.md §193, GRILL.md G-014).
Live-runtime promotions are out of scope (deferred to v0.5+). The D-001
refinement-only filter applies to any IDEATE stage.
| ID | Requirement | Source | Class | Priority | Status | Phase |
|----|-------------|--------|-------|----------|--------|-------|
| REQ-029 | Lexicon firewall: shared `lexicon.SyntheticBannedStrings()` helper — dedupe the synthetic self-test table between `lexicon_meta_test.go` and `lexicon_meta_docs_test.go`; both meta-tests derive count + strings from the single source so a future banned-term addition updates both firewalls from one place | GRILL G-014 | refactor/test | High | Pending | v0.4/P1 |
| REQ-030 | Cross-package const-equality test: `x/hub.LendingCouponCapBps == x/bond.CouponCapBps` (and Floor) — test-only import (G-003 exempt), catches silent mission-lock drift between hub LOCAL consts and bond D-028 consts | REVIEW.md P2 / A-304 | test | High | Pending | v0.4/P1 |
| REQ-031 | x/* lifecycle type shape-divergence review + alignment fixes — audit non-must-have lifecycle types across modules flagged by AUDIT §193; align shapes where divergent (no behavioral change) | AUDIT.md §193 | refactor/quality | Medium | Pending | v0.4/P2 |
| REQ-032 | Docs build CI — Gitea Actions workflow that runs `go test ./...` (lexicon firewall) + `mkdocs build` on every push; upload the built `site/` as a CI artifact. Full Gitea Pages publishing deferred if no hosting target is configured (chore, not feat) | D-046 | chore/ci | Medium | Pending | v0.4/P3 |
> REQ-029..REQ-032 are NEW in v0.4. All are NFR classes (refactor/test/quality/
> chore) — zero `feat:` phases by construction. The final-phase audit enforces
> the NFR purity gate (zero `feat:` commits in the milestone).
## IDEATE Traceability (Phase 0 — IDEATE stage, autonomy=full)
The IDEATE stage ran the three ideation tiers (mechanical, backend-enriched,
+1 -110
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@@ -255,113 +255,4 @@ P0 fixes auto-applied: 0
P1+ flags: 2 (x/council/types — Proposal/VoteOption lifecycle absent; VoiceSource→SignalKind 4-not-5)
P2 nits: 1 (bearers ValidateGenesis no-op — correct per spec)
Overall: APPROVE WITH P1+ FLAGS (confidence 0.88) — milestone ship not blocked
```
---
## v0.3 Final Review (P6)
**Reviewer:** Multi-persona final review (correctness, testing, security, performance, maintainability, adversarial)
**Scope:** `v0.1.5..HEAD` — all v0.3 milestone phases (P0 pre-exec + P1 docs foundation + P2 nomads docs + P3 freeholders docs + P4 Bearers I + P5 Bearers II)
**Branch:** `oy/milestone/v0.3-bearers-docs` (reviewed on `oy/phase/06-final-review-ship`)
**Date:** 2026-08-17
**Diff stat:** 56 files changed, 6891 insertions(+), 169 deletions(-)
### Verification commands (all PASS)
```
go build ./... — PASS (zero errors)
go test ./... — PASS (all packages green)
go test -cover ./x/{bridge,exit,bearers,partner,hub,services,bond}/types/ — PASS (coverage below)
go test -run TestLexiconMeta ./lexicon_meta_docs/ . — PASS (docs firewall green)
go test -run TestLexiconMeta ./ — PASS (x/ firewall green, repo-root package)
```
### Coverage on new/extended packages
| Package | Coverage | Threshold (80%) | Verdict |
|---|---|---|---|
| x/bridge/types | 100.0% | ✓ | PASS |
| x/exit/types | 100.0% | ✓ | PASS |
| x/bearers/types | 100.0% | ✓ | PASS |
| x/partner/types | 100.0% | ✓ | PASS |
| x/hub/types | 93.3% | ✓ | PASS |
| x/services/types | 100.0% | ✓ | PASS |
| x/bond/types | 95.1% | ✓ | PASS |
All packages exceed the ≥80% coverage requirement. The two sub-100% packages (hub 93.3%, bond 95.1%) have gaps only in defensive genesis error-branches (e.g., `validateComplianceServices` 87.5%, `Clamp`/`ClampLendingCoupon` 80% — the upper-bound and floor branches each exercised by ≥1 test but not every permutation). No must-have is uncovered; G-012 boundary cases (`currentBps==cap`, `currentBps>cap`, underflow guard) are all explicitly tested (`TestClampGrowthCurrentAtCapReturnsZero`, `TestClampGrowthCurrentAboveCapReturnsZero`, `TestClampGrowthInvariantPostGrowthLeCap`).
### Per-axis verdicts
#### 1. Correctness (backend-engineer) — PASS (0.92)
Locked-const invariants all enforced and tested:
- `BridgeStatusCount = 4` (x/bridge/types/types.go:18) — `AllBridgeStatuses()` returns 4 in REQ-015 order. ✓
- `ExitStatusCount = 5` (x/exit/types/types.go:18) — `AllExitStatuses()` returns 5 in vision §7 order. ✓
- `HubServiceCount = 3` (x/hub/types/types.go:42) — `AllHubServices()` returns 3 (Custody/LendingPrimitive/Compliance). ✓
- `ServiceKindCount = 4` (x/services/types/types.go:37) — locked count asserted. ✓
- `OrderSideCount = 2` (x/bond/types/types.go:171) — Buy/Sell. ✓
- `OrderStatusCount = 3` (x/bond/types/types.go:174) — Open/Filled/Cancelled. ✓
- `PartnerTierCount = 4` (x/partner/types/types.go:18) — regression intact. ✓
- `BondStatusCount = 5` (x/bond/types/types.go:31) — regression intact. ✓
- `CouponCapBps = 800` / `CouponFloorBps = 0` (x/bond/types/types.go:21,26) — D-028 LOCKED, regression firewall in types_test.go asserts both values. ✓
**G-012 (ClampGrowth underflow guard) — CORRECT.** The guard at x/bond/types/types.go:239 (`if currentBps >= CouponCapBps { return 0 }`) runs BEFORE the `CouponCapBps - currentBps` subtraction (line 243), so the uint32 underflow path is unreachable. Five boundary/invariant tests cover: currentBps==0 (full room), currentBps==cap (return 0), currentBps>cap (return 0, NOT wrapped huge), growth>room (clamp to room), growth<room (unchanged), and a meta-assert `current + ClampGrowth(current, growth) <= max(current, cap)` across a fuzz table.
The hub `LendingCouponCapBps`/`LendingCouponFloorBps` LOCAL consts (A-304) mirror x/bond's LOCKED values (800/0) without importing x/bond (G-003 preserved). Genesis-side clamp enforcement present in both `validateLendingPrimitives` (hub) and `ValidateBonds`/`ValidateGrowthBonds` (bond).
#### 2. Testing (backend-engineer) — PASS (0.90)
All new packages ≥93.3% (above 80% threshold). Per-package lexicon assertions present in every new package's types_test.go (TestLexiconNoBannedTermsIn<Pkg>Package + TestLexiconNoBannedTermsIn<Pkg>TestFile) — confirmed in x/bridge, x/exit, x/bearers, x/partner, x/hub, x/services, x/bond. G-012 boundary cases (currentBps==cap, currentBps>cap) explicitly tested. Locked-const regression tests present (Test<Const>LockedConst pattern) for every locked const enumerated above.
#### 3. Security (security) — PASS (0.93)
Both lexicon firewalls green:
- x/ firewall (`lexicon_meta_test.go`, package `lexicon_meta`): `go test -run TestLexiconMeta ./` PASS.
- docs/ firewall (`lexicon_meta_docs/lexicon_meta_docs_test.go`, package `lexicon_meta_docs`): `go test -run TestLexiconMeta ./lexicon_meta_docs/` PASS. Scans README.md + docs/**/*.md.
Adversarial verification: confirmed `lexicon.FindBannedTerm` catches all 10 banned terms (bank, deposit, interest, yield, currency, dollar, euro, account, savings, depositor) via direct injection test. The docs firewall self-test table (G-009 for docs), walk-coverage test (G-013), and self-test drift assertion (G-014) all present and passing — the firewall provably CATCHES banned-term regressions rather than silently scanning nothing.
**G-003 (by-ID-string, no struct imports between x/*) — INTACT.** `grep -rn "oy/openyield/x/"` across all new package non-test .go files returns ZERO struct imports. The only cross-package import in a test file is `x/bearers/types/types_test.go` importing `x/processing/types` (a test-only import for a stub reference; G-003 governs production struct imports, not test imports). All cross-module references in production types use ID-string fields (issuer-stand-id, reach-id, holder-reach-id, custody-provider-id, anchor-id, bond-id, operator-partner-id, etc.) with explicit G-003 doc-comments.
#### 4. Performance (backend-engineer) — PASS (0.95)
`go.mod` UNCHANGED since v0.1.5 (`git diff v0.1.5..HEAD -- go.mod go.sum` is empty) — zero external deps preserved (G-006). The mkdocs build deps (mkdocs + mkdocs-material) are Python-only and documented as non-Go (mkdocs.yml header comment). Skeleton stubs use O(1) maps for registry lookups (x/partner Keeper); no N+1 patterns in the stub code. The genesis validators iterate slices once (O(n) per set) with map-backed uniqueness checks — appropriate for skeleton scale.
#### 5. Maintainability (lead-developer) — PASS (0.91)
**Pattern consistency:** All new modules follow the v0.1/v0.2 file structure (types.go + types_test.go, genesis.go where genesis validation exists). The Params/GenesisState/DefaultGenesisState/ValidateGenesis pattern is uniform across x/bridge, x/exit, x/bearers, x/partner, x/hub, x/services, x/bond. G-008 split (data-engineer's genesis.go schema helpers composed by ValidateGenesis in types.go) is present in x/bond and x/hub. The new modules use the same ModuleName/StoreKey/RouterKey/QuerierRoute const block and the same JSON/YAML struct-tag convention as v0.1/v0.2 modules.
**Docs cross-reference (G-011):** `mkdocs.yml` nav lists ALL 26 pages (1 Home + 8 Nomads + 8 Freeholders + 7 Shared + 2 Reference = 26), matching the 26 .md files under docs/. `docs/reference/components.md` cross-references the new modules (10 mentions of x/* packages). All docs pages are lexicon-clean (firewall green).
**.ciagent/oy/* updates:** PROJECT, ROADMAP, REQUIREMENTS, ARCHITECTURE, RESEARCH, PERSONAS, PLANS, GRILL all updated to reflect v0.3 scope (Bearers & Documentation, REQ-024..REQ-028, D-037..D-046, A-304..A-313, G-011..G-014).
#### 6. Adversarial (adversarial) — PASS (0.88)
Adversarial probes attempted and their outcomes:
1. **Banned term slipped into docs** — the firewall self-test table (`TestLexiconMetaDocsSelfTestTable`, G-009 for docs) injects synthetic banned-term strings and asserts FindBannedTerm detects each; the walk-coverage test (`TestLexiconMetaDocsWalkCoverage`, G-013) injects a real .md fixture under docs/.lexicon_fixture/ and asserts the walk FINDS it. Catches the "silently scans nothing and reports green" failure mode. ✓
2. **Locked-const regression** — every locked const has a `Test<Const>LockedConst` regression test asserting the exact value AND the All<Enum>() entry count/names. A regression (e.g., BridgeStatusCount→5) fails the test. ✓
3. **Struct import breaks G-003** — no production .go file in the new packages imports another x/* package; verified by grep. ✓
4. **ClampGrowth underflow** — the guard returns 0 BEFORE the subtraction; the underflow path is unreachable; tested with currentBps>cap (e.g., 801) asserting return 0 (NOT 4294967295). ✓
5. **Hub A-304 drift from x/bond D-028** — the LOCAL consts are documented as cross-referenced (comment "also 800") and a regression test asserts LendingCouponCapBps==800. A future x/bond cap change without a matching hub change is flagged by the cross-doc comment (not a test — appropriate since they are LOCAL to hub). Note P2 below.
### P0 fixes auto-applied
**0.** No P0 (critical) issues found. The milestone ships clean.
### P1+ flags (post-hoc review — do NOT block ship)
**1.** [P2 nit, maintainability] x/hub `LendingCouponCapBps`/`LendingCouponFloorBps` (A-304) are LOCAL consts cross-documented to x/bond's D-028 consts (both 800/0) but there is no automated cross-check that they stay in lockstep. If a future mission-locked change to x/bond.CouponCapBps does not update the hub LOCAL const, the two packages silently drift. The cross-doc comment in types.go:46-50 flags this for human review, but a shared-const test (e.g., asserting `LendingCouponCapBps == x/bond.CouponCapBps` — though that would require a test-only import, acceptable per G-003 test exemption) would be more robust. Recommend post-hoc: add a cross-package const-equality test OR document the manual-sync requirement in ARCHITECTURE.md. Not a ship blocker — both are currently 800/0.
**2.** [P2 nit, testing] x/hub coverage 93.3% and x/bond coverage 95.1% leave defensive error-branches in `ClampLendingCoupon` (80%), `Clamp` (80%), `validateComplianceServices` (87.5%), `ValidateGrowthBonds` (85.7%) partially exercised. All must-have paths are tested; the uncovered lines are error-return branches for malformed genesis inputs. Recommend post-hoc: add 2-3 negative-case genesis tests per package to close the gaps to 100%. Not a ship blocker (both above the 80% threshold).
**3.** [P2 nit, docs] `docs/reference/architecture.md` has 0 cross-references to x/* packages (vs `docs/reference/components.md` which has 10). The architecture page is conceptual; the components page is the cross-ref hub. Acceptable as-is, but post-hoc adding 1-2 module cross-refs to architecture.md would improve discoverability. Not a ship blocker.
### Overall verdict
**SHIP.**
All verification commands pass. All locked-const invariants enforced and tested. Both lexicon firewalls green (x/ and docs/). G-003 (by-ID-string, no struct imports) intact across all new packages. G-012 (ClampGrowth underflow guard) correctly implemented with explicit boundary tests. Zero external deps (go.mod unchanged). Coverage ≥93.3% on all new/extended packages (above 80% threshold). mkdocs.yml nav complete (26/26 pages, G-011). No P0 issues. Three P2 nits flagged for post-hoc review (none blocking).
**P0 fixes auto-applied: 0**
**P1+ findings: 0 P1, 3 P2 (all nits, post-hoc, non-blocking)**
**Confidence in overall verdict: 0.91**
```
+1 -10
View File
@@ -23,18 +23,9 @@
- [x] P5: Final Review + Ship → v0.1.5 (milestone release)
- Status: COMPLETE (skeleton + tests layer; released as v0.1.5)
## Milestone v0.3 — Bearers & Documentation (COMPLETE; feature type; tags v0.2.x)
## Milestone v0.3 — Bearers & Documentation (ACTIVE; feature type; tags v0.2.x)
Target: Bearers skeleton (ROADMAP Phase 3 subset) + docs site for nomads and freeholders.
- [x] P0: Pre-Execution (spec/clarify/research/ideate/plan/grill) → v0.2.0
- [x] P1: Docs foundation + REQ-012 firewall extension → v0.2.1
- [x] P2: Nomads docs → v0.2.2
- [x] P3: Freeholders docs + reference → v0.2.3 (REQ-027 complete)
- [x] P4: Bearers skeleton I (x/exit, x/bridge, x/bearers, x/partner) → v0.2.4
- [x] P5: Bearers skeleton II (x/hub, x/services, x/bond) → v0.2.5
- [x] P6: Final Review + Audit + Ship → v0.2.6 (milestone release)
- Status: COMPLETE — Bearers skeleton (7 x/* packages) + docs site (26 pages) shipped
> v0.3 bundles two work-streams under one feature milestone: (A) Bearers
> skeleton+tests (D-020 pattern) and (B) README.md + MkDocs Material docs site
> organized by audience, with the REQ-012 lexicon firewall extended to docs.
-83
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@@ -1,83 +0,0 @@
# OpenYield
OpenYield is a jurisdiction-light, public-good mesh for **real production** — a
protocol organized around Holders, Stands, and the Six Principles, designed to
hold real value without the words or the shapes that invite capture. The mesh
runs on OY Chain (Layer 1), a canonical state layer for the Bread unit, the
Storage Pools (Stash, Vault, Root-Pool), Standing, Watcher attestations, and
the Pact / Council / Partner surface. It is anti-greed by construction: Mission
Lock fixes the Six Principles and fee covenant so no council can amend them,
and the 8% coupon cap on bonds is a mission-locked ceiling, not a parameter.
## The Six Principles
1. **Real value** — the mesh holds real production, not speculation.
2. **Sustainability** — fees are floored and capped; the protocol cannot drain its users.
3. **Mission-lock** — the Six Principles and fee covenant are immutable; no council can amend them.
4. **Openness** — anyone may join; the mesh is a public good.
5. **Ownership** — Holders own their Stash and their Reach; custody is theirs.
6. **Self-service** — a Holder can act without a custodian; the mesh is jurisdiction-light.
## Bread unit & scale
The unit of value is **Bread**, scaled in 11 tiers: **Grain → Crumb → Bread →
Loaf → Batch → Cake → Bakery → Granary → Mill → Harvest → Earth.**
## Status
**v0.3 (Bearers & Documentation) — in progress.** The codebase is a skeleton +
tests layer (Go types + keeper stubs + invariant tests, zero external Go deps)
matching the v0.1/v0.2 pre-MVP pattern. See `.ciagent/oy/ROADMAP.md` for the
phase plan and `.ciagent/oy/PROJECT.md` for governance.
## Build & test
OpenYield is pure Go with **zero external dependencies** (`go.mod` has no
`require` lines; `go 1.22`). From the repo root:
```sh
go build ./...
go test ./...
```
## Docs
The docs site is [MkDocs Material](https://squidfunk.github.io/mkdocs-material/)
(a build-only Python dep; **not** a Go dep — `go.mod` is unchanged). To
preview locally:
```sh
mkdocs serve
# or build to a static site/ dir:
mkdocs build
```
The site lives under `docs/` (see `mkdocs.yml` for the nav). Publishing CI is
deferred to v0.4 (D-046); v0.3 ships the source.
## Lexicon firewall
OpenYield bans 10 financial terms as standalone words (REQ-012) across all Go
source (`x/**/*.go`) and all docs (`README.md` + `docs/**/*.md`). The banned
terms are the words you would expect a legacy financial institution to use;
this README and the docs describe them only by their **safe replacements**, so
the firewall itself never trips. The firewall is enforced in code by two
sibling Go tests:
- `lexicon_meta_test.go` (v0.2) — scans `x/**/*.go`.
- `lexicon_meta_docs/lexicon_meta_docs_test.go` (v0.3) — scans `README.md` +
`docs/**/*.md`.
Both use `lexicon.FindBannedTerm` (word-boundary, case-insensitive), so
"OpenYield" is safe (word-boundary does not match the banned term inside an
identifier) but the standalone banned term is not — docs say **"real
production"** / **"real return"**, and a Holder's identity is **Holder** /
**Reach**, never the banned word for a custodial position. See
`docs/shared/lexicon.md` for the glossary of safe replacements.
## Governance
- `.ciagent/oy/PROJECT.md` — full vision, decisions (D-0xx), assumptions.
- `.ciagent/oy/PLANS.md` — phase plans (v0.1, v0.2, v0.3).
- `.ciagent/oy/REQUIREMENTS.md` — REQ coverage matrix.
- `.ciagent/oy/ROADMAP.md` — release roadmap.
-47
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@@ -1,47 +0,0 @@
# Anchor Preview
An **Anchor** (REQ-023) is the fourth and highest tier of the
[Partner Spectrum](partner-spectrum.md) (REQ-018) — the first **institutional**
Partner tier. Anchors are coming in v0.3 P4. This page previews what an Anchor
is and what the v0.3 skeleton will deliver; the runtime behavior is deferred
to v0.4+.
## What an Anchor is
An Anchor is a Partner that carries an **AnchorCredential**: a jurisdiction
(e.g., "EU-MiCA"), a custody provider, and a set of attestation references.
The Anchor tier is how the jurisdiction-light mesh interfaces with
jurisdiction-bound institutional actors without becoming them. An Anchor
holds a credential; the [Holder](../nomads/reach.md) still holds their
[Stash](../nomads/stash.md). The mesh says **custody**, **compliance**, and
**jurisdiction** — never the legacy institutional words banned by the
[lexicon](../shared/lexicon.md).
## What is coming in v0.3 P4
v0.3 P4 (REQ-023) extends `x/partner` with the `AnchorCredential` struct and
a `Partner.AnchorCredential()` accessor (returns nil for non-Anchor tiers).
The four-tier `PartnerTier` enum (Op, Master Op, Pier, Anchor) is **unchanged**
— v0.3 adds Anchor-specific fields, not a new tier. The custody-provider-id
field is a by-ID-string reference to `x/hub` (the Hub API, coming in v0.3 P5),
empty in the v0.3 skeleton because the Hub is not live until P5/v0.4. This is
the P4→P5 ordering edge: `x/hub` in P5 references Anchor partner-ids from P4.
## Why Anchors matter to a Freeholder
A Freeholder engaging an Anchor gets a Partner with a verifiable credential
and a custody/compliance relationship — useful for cross-jurisdiction routes
and institutional [bonds](bonds.md). The Anchor's [Standing](standing.md) and
attestations are visible so the Freeholder can verify the Anchor is real
before opening a [Window](../nomads/window.md). See
[Partner Spectrum](partner-spectrum.md) for the other three tiers, and
[Councils & Voice](councils-voice.md) for how the Mesh Council can suspend or
revoke an Anchor.
## What v0.3 does not deliver
The v0.3 skeleton is types + tests only (D-035): the `AnchorCredential`
struct, the accessor, and the `ListAnchors()` keeper alias. Live custody
routing, attestation verification, and the Hub API integration are v0.4+
runtime work. See [Components](../reference/components.md) for the full
module map.
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# Bonds
A **Mesh Bond** (REQ-021, vision §17) is a [Stand](stands-guilds.md)-issued
instrument that pays a **coupon** to its holder over a term and returns the
principal at maturity. The coupon is bounded by a **mission-locked cap and
floor**: 8% upper cap, 0% floor (locked `CouponCapBps = 800` and
`CouponFloorBps = 0` in `x/bond`). The cap exists so the mesh cannot become a
speculative market; the floor exists so the coupon cannot go negative.
## The coupon clamp
The coupon is clamped to `[floor, cap]` by the `Clamp` helper in `x/bond`
(same shape as the [Fee Covenant](../shared/six-principles.md) clamp): a
coupon above 8% is reduced to 8%; a coupon below 0% is raised to 0%; a coupon
in range is unchanged. The clamp is a tested invariant: below floor → floor,
above cap → cap, in range → unchanged. This is the Mission Lock's expression
in the capital layer.
## Why a cap
OpenYield is a public-good mesh for **real production**, not a speculation
engine. An uncapped coupon market would let a Stand offer arbitrarily high
coupons to attract Bread, turning the mesh into a speculative race. The 8%
cap bounds the coupon at a level consistent with real production returns, and
the [Mission Lock](councils-voice.md) makes the cap non-amendable — no Council
vote can raise it. The mesh says **coupon** and **real return**, never the
passive-value or standalone-metric words banned by the
[lexicon](../shared/lexicon.md).
## The bond lifecycle
A Bond moves through five states (locked `BondStatus` enum in `x/bond`):
Issued → Active → Matured, with Defaulted and Repaid as terminal paths. The
issuer is a Stand (referenced by stand-id); the principal is denominated in
[Grain](../shared/bread-scale.md). The bond market is governed by the
[Stand Council](councils-voice.md) for the issuing Stand.
## Coming in v0.3 P5
v0.3 P5 (REQ-026) extends the bond market with **Growth Bonds** (a coupon that
grows over the term, still clamped to the 8% cap) and a **secondary market**
(Buy/Sell orders on issued bonds). The 8% / 0% consts are unchanged — the
D-028 regression firewall guarantees v0.3 cannot alter the v0.2 mission-locked
ceiling. See [Partner Spectrum](partner-spectrum.md) for how Partners relate
to the bond market, and [Anchor Preview](anchor-preview.md) for the
institutional tier.
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# Councils & Voice
OpenYield governs itself through three **Councils** (REQ-011, vision §19):
the Mesh Council, the Guild Council, and the Stand Council. Each Freeholder
participates through the Councils, weighted by **Voice** — a multi-source
weight that combines [Stash](../nomads/stash.md), [Standing](standing.md),
Vouch, Freeholder status, and Guild membership. The **Mission Lock** makes
the covenant non-amendable: no Council can vote to change the
[Six Principles](../shared/six-principles.md) or the fee covenant.
## The three Councils
- **Mesh Council** — the mesh-wide Council. Handles protocol-level proposals
that affect every Holder and every [Stand](stands-guilds.md).
- **Guild Council** — the Council for [Guilds](stands-guilds.md). Handles
Guild-scope proposals, referenced by guild-id.
- **Stand Council** — the Council for a single Stand, referenced by stand-id.
Handles Stand-scope proposals (e.g., Vault use, [Bond](bonds.md) issuance).
The three-tier shape mirrors the three [Storage Pools](../shared/storage-pools.md):
a Council exists at each layer where custody is held.
## Multi-source Voice
Voice is not one number. It is a weighted tally from five sources (locked as
the `VoiceSource` enum in `x/council`): Stash, Standing, Vouch, Freeholder,
and Guild. A Freeholder with high [Standing](standing.md) and a long-held
Stash carries more Voice than a freshly-minted one. The
[TallyResult](../reference/components.md) mirrors the Cosmos SDK `x/gov`
shape so the governance layer can wire to standard tooling. The VoteOption
enum is **Yes / No / Abstain** — there is no "no-with-veto", an anti-greed
design choice.
## Mission Lock
The Mission Lock is a locked `const bool` in `x/council`
(`MissionLockAmendable = false`). The Six Principles, the fee covenant
(ceiling 0.1% / floor 0.01% / 1-Grain minimum), and the bond coupon cap
([8% / 0%](bonds.md)) cannot be amended by any Council vote. This is the
firewall that keeps the mesh a public good: governance can act *within* the
covenant, never *on* the covenant.
## How a Freeholder participates
A Freeholder submits or votes on proposals in the Councils they belong to.
Each vote is weighted by multi-source Voice; the tally follows `x/gov`
semantics. See [Bonds](bonds.md) for the coupon cap the Mission Lock protects,
and [Standing](standing.md) for the metric that weights a Freeholder's Voice.
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# Freeholders
A **Freeholder** is a Holder who has earned all four Freeholder signals (REQ-005):
a 90-day [Stash](../nomads/stash.md), a [Standing](standing.md) threshold of
4.5★ or higher in 3 categories, the Capital signal, and the Vouch signal. A
Freeholder is the active participant in the OpenYield mesh — they sit in
[Stands & Guilds](stands-guilds.md), vote in the three
[Councils & Voice](councils-voice.md), issue [Bonds](bonds.md), and relate to
the four-tier [Partner Spectrum](partner-spectrum.md).
## The four signals
The signals are the gate to Freeholder participation. They are deliberately
heterogeneous — no single input can be pumped — so the path resists gaming:
- [Signals](signals.md) — the four Freeholder signals (REQ-005): 90-day Stash,
4.5★+ in 3 categories, Capital, Vouch.
- [Standing](standing.md) — the Bayesian anti-gaming formula (REQ-006):
Bayesian prior + time-decay + diversity + voucher-weighting slashes.
- [Stands & Guilds](stands-guilds.md) — the nine Stand types (REQ-016) and
Guilds with free Hand-Passes (REQ-017).
- [Councils & Voice](councils-voice.md) — the three Councils and the
non-amendable Mission Lock (REQ-011).
- [Bonds](bonds.md) — the Mesh Bond Market, the 8% coupon cap / 0% floor
(REQ-021).
- [Partner Spectrum](partner-spectrum.md) — the four Partner tiers (REQ-018):
Op, Master Op, Pier, Anchor.
- [Anchor Preview](anchor-preview.md) — the first institutional Partner tier
(REQ-023), coming in v0.3 P4.
## What a Freeholder does
A Freeholder is a Holder who has crossed the signal gate. From there the mesh
opens: a Freeholder joins a [Stand](stands-guilds.md) (or forms a Guild), votes
in the [Councils](councils-voice.md) with multi-source Voice, issues or holds
[Bonds](bonds.md) under the mission-locked coupon cap, and engages the
[Partner Spectrum](partner-spectrum.md) — including the Anchor tier coming in
v0.3. The covenant is the same for every audience; the Freeholder pages
describe how it shows up in governance and capital.
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# Partner Spectrum
OpenYield defines a four-tier **Partner Spectrum** (REQ-018, vision §13):
**Op**, **Master Op**, **Pier**, and **Anchor**. Partners are the external
actors a [Freeholder](index.md) interacts with through the mesh — service
operators, route providers, and institutional bridges. The four tiers are
locked as the `PartnerTier` enum in `x/partner` (exactly 4, regression-tested).
## The four tiers
- **Op** — a service operator. Runs a service a Holder uses through a
[Window](../nomads/window.md) (e.g., a Maps provider). The lightest tier.
- **Master Op** — a senior operator. Coordinates multiple Ops or runs a
higher-trust service. "Op" is the safe short form; the full word is not
used as a standalone term.
- **Pier** — a routing Partner. Connects the mesh to external venues (e.g.,
a DEX or an off-mesh service) and sources [Forex](../reference/components.md)
rates. Piers route; they do not custody Holder value.
- **Anchor** — the first institutional Partner tier. Carries a credential
(jurisdiction, custody provider, attestations). See
[Anchor Preview](anchor-preview.md) for what is coming in v0.3 P4.
## How Freeholders relate to Partners
A Freeholder authorizes a Partner to act on their behalf through a scoped,
time-limited, revocable [Window](../nomads/window.md) — never by handing over
custody. The Partner holds a credential, not the Holder's [Stash](../nomads/stash.md).
A Partner's [Standing](standing.md) is visible so a Freeholder can choose an
operator with a real history over a freshly-spun-up alternative (see
[Maps & Pay](../nomads/maps-pay.md)).
## Partner status
Each Partner has a status (locked `PartnerStatus` enum in `x/partner`):
Pending → Active, with Suspended and Revoked as the governance paths. The
[Mesh Council](councils-voice.md) can suspend or revoke a Partner. The four
tiers and the status enum are unchanged by v0.3 — v0.3 only *extends*
`x/partner` with the Anchor credential shape (REQ-023), not a new tier.
See [Storage Pools](../shared/storage-pools.md) for why the mesh says
"Holder" and "Reach" rather than the legacy custodial words, and
[Bonds](bonds.md) for the coupon market a Partner may route to.
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# The Four Freeholder Signals
The four **Freeholder signals** (REQ-005) are the gate to Freeholder
participation. A [Holder](../nomads/reach.md) who earns all four becomes a
[Freeholder](index.md) — eligible to join [Stands & Guilds](stands-guilds.md),
vote in the [Councils](councils-voice.md), and issue [Bonds](bonds.md). The
signals are deliberately heterogeneous: no single input can be pumped, so the
path resists gaming.
## 1. The 90-day Stash
A Holder must hold a [Stash](../nomads/stash.md) continuously for 90 days
(REQ-014). The signal is about **continuity, not size** — a small Stash held
steadily counts. This filters out transient actors who spin up a position to
game a vote and then leave. See [Storage Pools](../shared/storage-pools.md)
for the three-pool model.
## 2. Standing of 4.5★ or higher in 3 categories
A Holder must earn a [Standing](standing.md) of 4.5★ or higher in **three
distinct categories** (REQ-006). The diversity requirement is the anti-gaming
core: a Holder cannot reach Freeholder by repeating the same action with the
same counterparty. Three categories force breadth.
## 3. Capital
The Capital signal requires a Holder to hold a meaningful amount of
[Bread](../shared/bread-scale.md) in their Stash. The threshold is set by the
mesh [Councils](councils-voice.md) and is a stake, not a fee: the Holder keeps
the Bread. Capital aligns the Freeholder's stake with the mesh.
## 4. Vouch
The Vouch signal requires another Freeholder to vouch for the Holder. A
vouch from a high-[Standing](standing.md) Freeholder carries more weight
(voucher-weighting), so a single colluding vouch cannot carry a Holder over
the gate. Vouch is the social signal that ties the other three together.
## Why four, not one
Each signal covers a different attack surface: continuity (90-day Stash),
breadth (3-category Standing), stake (Capital), and social trust (Vouch).
Earning all four is the proof a Holder is a participant, not a transient
gamer. See [Standing](standing.md) for the anti-gaming math, and
[Bonds](bonds.md) for what a Freeholder can do once the signals are earned.
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# Bayesian Standing
**Standing** (REQ-006) is a Holder's measured history on the mesh — the
anti-gaming metric that gates [Freeholder](index.md) participation and weighs
[Voice](councils-voice.md) in the [Councils](councils-voice.md). Standing is
not a count of transactions and not a reputation score you can farm. It is a
Bayesian score that resists the obvious attacks: volume spam, self-dealing,
fake vouches.
## The formula, at conceptual depth
Standing combines four signals and a penalty:
- **Bayesian prior + updates.** The mesh starts with a prior for each Holder
and updates it from each observed action. A burst of activity cannot
inflate Standing because the prior anchors it.
- **Time-decay.** Old evidence decays, so a Holder cannot rest on a burst
from years ago. Standing reflects *recent, sustained* real production.
- **Diversity weighting.** A Holder who acts across many services, many
[Stands](stands-guilds.md), and many [bearers](../nomads/bearers.md) accrues
more Standing than one who repeats the same action with the same
counterparty. Diversity is the anti-collusion lever.
- **Voucher-weighting.** A vouch from a high-Standing Freeholder counts for
more than a vouch from a low-Standing one. This makes fake vouches expensive:
the voucher must themselves have Standing to lose.
- **Minus slashes.** Bad behavior (failed attestations, broken Pacts) removes
Standing. Slashes are the penalty that bounds the upside of gaming.
> The full sub-tables (priors, decay rates, diversity categories, slash
> conditions) are deferred per PROJECT.md Q2. This page gives the conceptual
> depth; the [nomads Standing page](../nomads/standing.md) gives the plain-
> language version.
## Why it cannot be gamed
There is no single input a Holder can pump. Volume is bounded by the Bayesian
prior; recency is bounded by time-decay; breadth is bounded by diversity;
social trust is bounded by voucher-weighting; and any attempt that misfires
costs Standing via slashes. The four signals (the [90-day Stash](signals.md),
3-category threshold, Capital, Vouch) sit on top of this metric, so the
Freeholder gate inherits the same anti-gaming property.
## What Standing is not
Standing is not a custodial position, a tier you buy, or legacy history. It
is a measured, decayed, diversified Bayesian score. See
[Storage Pools](../shared/storage-pools.md) for why the mesh says "Stash"
rather than the legacy custodial words, and [Councils & Voice](councils-voice.md)
for how Standing weights a Freeholder's vote.
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# Stands & Guilds
A **Stand** is a governed group of Holders that holds a [Vault](../shared/storage-pools.md)
in common (REQ-016). A **Guild** is a looser association of Holders that can
pass value among its members for free (REQ-017). Both are the organizational
layer a [Freeholder](index.md) joins after earning the four
[signals](signals.md).
## The nine Stand types
OpenYield defines exactly nine Stand types (REQ-016, vision §11), locked as a
const in `x/stand`:
1. **Household** — a family-scale group.
2. **Crew** — a working team.
3. **Entity** — a single legal actor.
4. **Co-op** — a cooperative.
5. **Circle** — an affinity group.
6. **Trust** — a trust arrangement.
7. **Foundation** — a purpose-bound entity.
8. **Confederation** — a federation of Stands.
9. **Shadow** — a privacy-preserving Stand.
A Stand's decision policy (threshold or weighted, mirroring the Cosmos SDK
`x/group` shape) governs how its Vault is used. A Stand can also issue
[Bonds](bonds.md) — the bond issuer is a Stand, referenced by stand-id.
## Guilds and Hand-Passes
A **Guild** is a looser association: it may affiliate with a Stand or stand
alone. Inside a Guild, a **Hand-Pass** moves [Bread](../shared/bread-scale.md)
between members at a **0% protocol fee** (REQ-017, locked `HandPassFeeBps = 0`
in `x/guild`). The 0% fee is mission-locked: the mesh does not tax the social
transfer of value among a self-organized group. See the
[Fee Covenant](../shared/six-principles.md) for the broader fee shape.
## How a Freeholder joins
A Freeholder joins a Stand by becoming a member (the Stand's policy admits
them) or forms a Guild as a founder. Membership is recorded in `x/stand`
and `x/guild` respectively, by stand-id / guild-id and the member's
[Reach](../nomads/reach.md). From a Stand a Freeholder gains Vault access and
the ability to issue [Bonds](bonds.md); from a Guild a Freeholder gains free
Hand-Passes with other members.
See [Councils & Voice](councils-voice.md) for how Stands and Guilds each get a
Council, and [Storage Pools](../shared/storage-pools.md) for the Vault layer.
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# OpenYield
OpenYield is a jurisdiction-light, public-good mesh for **real production**. It
runs on OY Chain (Layer 1), a canonical state layer for the Bread unit, the
Storage Pools, Standing, Watcher attestations, and the Pact / Council /
Partner surface. The mesh is anti-greed by construction: Mission Lock fixes
the Six Principles and fee covenant so no council can amend them, and the
coupon cap on bonds is a mission-locked ceiling, not a parameter.
## Audiences
The docs are organized by audience:
- **Nomads** — the everyday Holder: your Reach, your Stash, your bearers, how
you pay (Maps-Pay), the Pacts you join, and the Window you open. See
[Nomads](nomads/index.md).
- **Freeholders** — the active participant: the four signals, Bayesian
Standing, Stands & Guilds, the three Councils and Voice, the bond market,
and the four-tier Partner Spectrum. See [Freeholders](freeholders/index.md).
- **Shared** — concepts common to every audience: the Six Principles, the
Bread scale, the three Storage Pools, the Watchers & Mirror, the lexicon
glossary, and the vision overview. See [Shared](shared/index.md).
- **Reference** — the architecture and component map. See
[Reference](reference/architecture.md).
## Build the docs
This site is [MkDocs Material](https://squidfunk.github.io/mkdocs-material/),
a build-only Python dep (not a Go dep). To preview locally, see the
[README](../README.md) for build instructions.
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# Bearers
The **bearers** (REQ-019) are how a Nomad reaches the mesh. OpenYield ships
six bearers through a single **Unified Bearer Layer**: the mesh does not
care which bearer a Holder uses — first-to-deliver-wins, and a Nomad can
switch bearers without switching identity. The [Mirror](../shared/watchers-mirror.md)
mirrors the canonical state to every bearer so a Nomad can read the mesh's
real return on any of them.
## The six bearers
| Bearer | Live in v0.2 | What it is |
|---|---|---|
| **Internet** | yes | the default bearer; OY Chain over the open internet. |
| **OY-BLE** | yes | Bluetooth Low Energy; short-range, peer-to-peer, no phone plan. |
| **OY-WiFi-Direct** | yes | WiFi Direct; local mesh without an access point. |
| **OY-LR** | yes | Long Range radio (LoRa-class); long-distance, low-bandwidth, surveillance-resistant. |
| **OY-SAT** | coming (v0.3 P4) | satellite; offline coverage via a satellite constellation. |
| **OY-QR** | coming (v0.3 P4) | signed QR code; one-shot offline transfer scanned by a peer. |
## What this means for a Nomad
A Nomad does not pick "the right bearer". The four already-live bearers
(Internet, OY-BLE, OY-WiFi-Direct, OY-LR) cover the everyday situations:
on the open internet, in a room with another Holder, in a local group with
no router, or kilometers away with no infrastructure. OY-SAT and OY-QR
extend that to true-offline paths and are coming in the next phase.
## Surveillance resistance
OY-LR, OY-BLE, OY-WiFi-Direct, OY-SAT, and OY-QR are designed to be
surveillance-resistant: a Nomad can send or receive value without a
phone plan, a SIM, or a custodial on-ramp. The bearer is the transport; the
[Reach](reach.md) is the identity; the [Stash](stash.md) is the storage. None
of them depends on a custodial position.
## First-to-deliver-wins
The Unified Bearer Layer is first-to-deliver-wins: if a Nomad sends a
transfer over two bearers at once, the mesh accepts the first one that
arrives and drops the duplicate. This is why a Nomad can switch bearers
mid-transfer without double-spending.
See [Watchers & Mirror](../shared/watchers-mirror.md) for how the canonical
state is mirrored to every bearer, and [Maps & Pay](maps-pay.md) for how a
Nomad uses a bearer to find and pay for services.
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# Nomads
A **Nomad** is a person using the OpenYield mesh through a **Reach** — the
protocol-level identity a Holder uses to act on the mesh without a
custodian, a gatekeeper, or a legacy financial position. The Nomad path
is the entry path: a Nomad is a Holder who has a Reach and a [Stash](stash.md)
and is on the way to earning the four Freeholder signals, but has not yet
earned all four.
## The Nomad path
The pages here cover what a Nomad does day-to-day on the mesh:
- [Reach](reach.md) — the identity; the first Freeholder signal (REQ-005).
- [Stash](stash.md) — the personal [Storage Pool](../shared/storage-pools.md)
where a Nomad holds Bread (REQ-014).
- [Bearers](bearers.md) — how a Nomad reaches the mesh (REQ-019): Internet,
OY-BLE, OY-WiFi-Direct, OY-LR live now; OY-SAT and OY-QR coming.
- [Maps & Pay](maps-pay.md) — finding services and paying for them.
- [Pacts](pacts.md) — the six contract shapes a Nomad encounters
(REQ-020): Pause, Ground, Stance, Cover, Stand Registry, Hub API.
- [Standing](standing.md) — the Bayesian anti-gaming metric (REQ-006),
and why the mesh cannot be gamed.
- [Window](window.md) — the delegation primitive (REQ-015): scope,
duration, rate-limit, audit-log, revoke.
## Where a Nomad starts
A Nomad starts with a Reach and a Stash — that is enough to begin. From
there the bearers carry value to the Stash, Maps finds services, Pay and
the Window let a Nomad use them without giving up custody, and Standing
accrues as the Nomad acts. A Nomad who earns the 90-day Stash signal, the
Standing threshold, the Capital signal, and the Vouch signal becomes a
Freeholder (see the Freeholders section).
## Shared concepts
The Nomad path rests on the [shared concepts](../shared/index.md): the
[Six Principles](../shared/six-principles.md), the [Bread scale](../shared/bread-scale.md),
the [Storage Pools](../shared/storage-pools.md), the [Watchers & Mirror](../shared/watchers-mirror.md),
and the [Lexicon](../shared/lexicon.md). The covenant is the same for
every audience; the Nomad pages describe how it shows up in everyday use.
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# Maps & Pay
**Maps** and **Pay** are the day-to-day Mesh Experience a Nomad uses on the
mesh. Maps finds services; Pay settles them. Both run over the
[bearers](bearers.md) and read the [Mirror](../shared/watchers-mirror.md) so a
Nomad can find and pay for a service on a surveillance-resistant bearer
without an internet connection to OY Chain.
## Maps
Maps is the directory of services a Nomad can reach. A service is anything
a Partner or a Stand exposes to the mesh: a Care service, a SIM, a Vault,
a Mailbox (preview of v0.3 P5 — see [Pacts](pacts.md) for the Hub API). Maps
is sorted by geographic proximity (REQ-007): a Nomad physically closer to a
service or its operator is shown that service first. There is no paid
ranking; the order is proximity, not promotion.
## Pay
Pay is how a Nomad settles a service. A payment is a transfer of Bread
from the Nomad's [Stash](stash.md) to the service operator's Stash, signed
by the Nomad's [Reach](reach.md). The fee covenant floors and caps the fee;
inside a Guild, a Hand-Pass is free at the protocol level (REQ-017). Pay
runs over any bearer, first-to-deliver-wins.
## Authorize, don't hand over
For recurring services a Nomad does not re-sign every payment. Instead
the Nomad opens a [Window](window.md) to the service: a scoped,
time-limited, rate-limited, revocable capability that lets the service pull
value from the Stash within bounds the Nomad set. The Window is audited;
the Nomad can revoke it at any time. This is the self-service principle in
practice: the Nomad delegates a capability, not custody.
## Find, pay, verify
A Nomad's loop is:
1. **Find** a service on Maps.
2. **Pay** once, or **authorize** a [Window](window.md) for recurring use.
3. **Verify** the service against the Watcher attestations on the Mirror
(see [Watchers & Mirror](../shared/watchers-mirror.md)).
See [Stash](stash.md) for where the Bread comes from, [Window](window.md)
for the delegation primitive, and [Standing](standing.md) for how a
service operator's history is measured.
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# Pacts
The **six Pacts** (REQ-020) are the contract shapes a Nomad encounters on
the mesh. A Pact is a typed, mission-locked agreement between parties; the
core terms of the Pause, Ground, and Stance Pacts are **non-amendable**
no Council can rewrite them after the fact. A Nomad mostly interacts with
Pacts through [Maps & Pay](maps-pay.md) and the [Window](window.md)
primitive, but it helps to know what each one is.
## The six Pacts
| Pact | What it does for a Nomad |
|---|---|
| **Pause** | A temporary hold. A Nomad can pause a recurring payment or a Window without voiding it; the Pause core terms are non-amendable. |
| **Ground** | A baseline obligation the mesh enforces by default — the "ground rules" between a Nomad and a service operator. Non-amendable. |
| **Stance** | A stated position a party commits to (e.g., a service operator's Stance on jurisdiction-light operation). Non-amendable. |
| **Cover** | A flat commitment a Stand or a Partner offers to cover a Nomad against a defined failure; a Nomad reads Cover when choosing a service. |
| **Stand Registry** | The registry of the nine [Stand](../shared/storage-pools.md) types (Household, Crew, Entity, Co-op, Circle, Trust, Foundation, Confederation, Shadow) a Nomad can join. |
| **Hub API** | The B2B backbone (preview of v0.3 P5) — the Hub Pact exposes custody, a lending primitive, and compliance to service operators. A Nomad sees the Hub through Maps, not directly. |
## What a Nomad actually does with Pacts
A Nomad does not draft Pacts by hand. The flow is:
1. **Find** a service on [Maps & Pay](maps-pay.md).
2. The service's terms are backed by one or more Pacts (e.g., a recurring
payment is a Pause-able Window; a Stand's service is registered in the
Stand Registry).
3. The Nomad **authorizes** a [Window](window.md) scoped to those terms.
## Mission Lock
The Pause, Ground, and Stance core terms are mission-locked: a `const`
flag in the Pact module marks them non-amendable, and an invariant test
asserts that flag can never flip. A Nomad can rely on the ground rules
not changing. See [Six Principles](../shared/six-principles.md) for the
mission-lock covenant.
See [Window](window.md) for the delegation primitive the Pacts are
delivered through, and [Standing](standing.md) for how a service
operator's history is measured.
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# Reach
A **Nomad** is a person using the OpenYield mesh through a **Reach** — the
protocol-level identity that lets a Holder act on the mesh without a
custodian, a gatekeeper, or a legacy financial position. The Reach is the
first of the four Freeholder signals (REQ-005), and it is the baseline every
Nomad starts from: a Nomad is a Holder who has a Reach and a Stash but has not
yet earned all four Freeholder signals.
## What a Reach is
A Reach is an identity, not a custodial position. It is the by-ID-string a
Holder uses to receive value, open a [Window](window.md), join a Stand, or
pay for a service. The protocol does not require KYC at the protocol layer;
the Reach is the unit of self-service (see [Six
Principles](../shared/six-principles.md)).
## How a Nomad starts
A Nomad starts with two things:
1. **A Reach** — the identity.
2. **A [Stash](stash.md)** — the personal [Storage Pool](../shared/storage-pools.md)
where the Holder holds Bread.
That pair is enough to begin. From there a Nomad can use the [bearers](bearers.md)
to reach the mesh, find services on [Maps & Pay](maps-pay.md), authorize a
[Window](window.md) to a partner, and accrue [Standing](standing.md).
## Geographic proximity
The mesh processes actions first-come, first-served with a
geographic-proximity preference (REQ-007) — a Nomad physically closer to a
service or a Stand's region is served first. The Reach is how the mesh
identifies the Nomad for that ordering; there is no separate tier to buy into.
## The four Freeholder signals
The Reach is the first Freeholder signal. The four signals (REQ-005) are
earned over time: the 90-day [Stash](stash.md) signal, the Standing
threshold, the Capital signal, and the Vouch signal. A Nomad who earns all
four becomes a Freeholder (see the Freeholders section). The pages here cover
the Nomad path — everything up to that point.
See [Stash](stash.md) for the Storage Pool a Reach holds Bread in,
[Bearers](bearers.md) for how to reach the mesh, and
[Standing](standing.md) for the anti-gaming metric that accrues as a Nomad
acts on the mesh.
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# Standing
**Standing** (REQ-006) is a Holder's measured history on the mesh. It is
the anti-gaming metric: a Bayesian score with time-decay, diversity
weighting, and voucher-weighting, minus slashes for bad behavior. For a
Nomad, the headline is that the mesh **cannot be gamed** — Standing
rewards real production and resists the obvious attacks (volume spam,
self-dealing, fake vouches).
## What Standing is, in plain language
Standing is not a count of transactions. It is a Bayesian score: the mesh
starts with a prior, updates it from each observed action, and decays
old evidence so a Holder cannot rest on a burst of activity from years
ago. Diversity weighting means a Nomad who acts across many services,
many Stands, and many bearers accrues more Standing than a Nomad who
repeats the same action with the same counterparty. Voucher-weighting
means a vouch from a Holder with high Standing counts for more.
## Why it matters to a Nomad
A Nomad mostly reads Standing, not computes it. Two places it shows up:
- **Choosing a service.** Maps shows a service operator's Standing so a
Nomad can pick an operator with a real history over a freshly-spun-up
alternative (see [Maps & Pay](maps-pay.md)).
- **The Freeholder path.** Earning a Standing threshold in 3 categories
is one of the four Freeholder signals (REQ-005). A Nomad who accrues
Standing over time is on the path to becoming a Freeholder.
## What Standing is not
Standing is not a custodial position, a tier you buy, or a reputation
score you can farm. It is not legacy custodial history. The
Bayesian + time-decay + diversity design is exactly what makes it hard to
game: there is no single input a Holder can pump.
## The math, deferred
The full Bayesian formula (priors, decay rates, diversity sub-tables,
slash conditions) is documented in the Freeholders section — a Nomad does
not need the math to use the mesh. See
[Six Principles](../shared/six-principles.md) for the covenant Standing
enforces, and [Reach](reach.md) for the identity a Standing accrues to.
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# Stash
A **Stash** is a Holder's personal [Storage Pool](../shared/storage-pools.md)
(REQ-014). It is the place a Nomad holds Bread, and it is the second thing a
Nomad needs after a [Reach](reach.md) to begin. The Stash is the unit of
self-service: the Holder owns it, controls it, and can delegate a scoped,
time-limited, revocable [Window](window.md) to a partner or a service
without giving up custody.
## What a Stash is
The Stash is the Holder-level layer of the three Storage Pools (Stash,
Vault, Root-Pool). It is a storage layer, not a custodial position: the
protocol holds the canonical state that records who owns what; the Holder
holds the value. There is no custodian between a Nomad and their Stash.
## How a Nomad uses a Stash
A Nomad moves Bread into a Stash through the [bearers](bearers.md) — a
Holder on a surveillance-resistant bearer can receive value without an
internet connection to OY Chain. From the Stash a Nomad can:
- **Hold** Bread (the unit of value — see [Bread scale](../shared/bread-scale.md)).
- **Pass** value to another Reach (the Hand-Pass, free at the protocol
level inside a Guild).
- **Pay** for a service via [Maps & Pay](maps-pay.md).
- **Authorize** a [Window](window.md) so a partner or service can read the
Stash within bounds the Holder set.
## The 90-day Freeholder signal
Holding a Stash continuously for 90 days is the first of the four
Freeholder signals (REQ-005). The Stash does not need to hold a large
amount — the signal is about continuity, not size. A Nomad who keeps a
Stash for 90 days and earns the other three signals (Standing, Capital,
Vouch) becomes a Freeholder.
## Delegation, not custody
The Stash stays the Holder's. When a Nomad opens a Window to a service,
the service gets a scoped capability (e.g., "read Stash balance for the
next hour", "spend up to N Grain on this service this week") — it does not
get custody. The Window is revocable, rate-limited, and audited. See
[Window](window.md) for the primitive.
See [Storage Pools](../shared/storage-pools.md) for the full three-pool
model, and [Bearers](bearers.md) for how value reaches a Stash over a
surveillance-resistant bearer.
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# Window
A **Window** (REQ-015) is the primitive a Nomad uses to delegate a
capability without delegating custody. It is scoped, time-limited,
rate-limited, audited, and revocable. A Nomad opens a Window so a partner
or a service can act on the Nomad's [Stash](stash.md) within bounds the
Nomad set — the partner never gets custody, and the Nomad can close the
Window at any time.
## The five parts of a Window
| Part | What it bounds |
|---|---|
| **Scope** | what the grantee can do (e.g., read Stash balance, spend up to N Grain on a specific service). |
| **Duration** | when the Window starts and ends (a start time and an end time). |
| **Rate limit** | how many actions per duration window (e.g., at most 10 reads per hour). |
| **Audit log** | an append-only log of every action the grantee took under the Window. |
| **Revoke** | the Nomad can revoke the Window at any time; revoke after expiry is a no-op. |
## Why a Nomad opens one
A Nomad opens a Window for the same reason a Nomad uses [Maps & Pay](maps-pay.md):
to let a service do something on the Nomad's behalf without handing over
the Stash. Common examples:
- A recurring service (e.g., a Care service) pulls a capped amount of
Bread from the Stash each week, within a rate limit the Nomad set.
- A partner reads the Stash balance for a compliance check, scoped to
read-only, time-limited to one hour.
- A Stand operator processes a Pass-Act on the Nomad's behalf inside a
scoped, audited Window.
## Lifecycle
A Window moves through a fixed lifecycle: **Open → Active → Revoked** or
**Expired**. A Nomad can revoke at any point; revoking after expiry is a
no-op (idempotent). The lifecycle is mission-locked: a partner cannot
extend a Window past its end time — the Nomad must open a new one.
## Self-service, by design
The Window is the self-service principle in code. The protocol records
the Window on OY Chain; the partner holds only the capability, never the
value. See [Six Principles](../shared/six-principles.md) for the covenant,
and [Pacts](pacts.md) for the contract shapes delivered through Windows.
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# Architecture
This is the architecture index for OpenYield. The mesh is built from 14
modular components and 6 cross-component interfaces, with a critical blocker
chain that fixes the build order. The full governance source lives in
`.ciagent/oy/ARCHITECTURE.md`; this page is the user-facing rewrite, kept
lexicon-clean by the [docs firewall](../shared/lexicon.md).
## The 14 modular components
| # | Component | Vision § | Phase |
|---|---|---|---|
| 1 | OY Chain & Mirror | §7 | P1 |
| 2 | Cross-Chain & Exit | §7 | P3 |
| 3 | Bread Unit & Root Basket | §6, §16 | P1 |
| 4 | Bloom Engine | §6 | P1 |
| 5 | Storage Substrate | §5 | P1 |
| 6 | Identity, Standing & Citizenship | §8, §9 | P1 |
| 7 | Window Primitive | §10 | P2 |
| 8 | Pacts Suite (Pause, Ground, Stance, Cover, Stand Registry, Hub API, Bonds) | §16, §17 | P2 |
| 9 | Mesh Experience (Maps, Pay) | §8 | P1 |
| 10 | Organizational Primitives (Stands, Guilds) | §11, §12 | P2 |
| 11 | Partner Spectrum & Forex | §13 | P2 |
| 12 | Bearers & Processing Mesh | §14, §15 | P1 |
| 13 | Fee Covenant | §18 | P1 |
| 14 | Governance (Mesh/Guild/Stand Councils) | §19 | P2 |
## The 6 cross-component interfaces
1. **Standing API** — consumed by Identity, Window, Pacts, Orgs, Partners,
and Governance. See [Standing](../freeholders/standing.md).
2. **Forge / Fold Interface** — mints [Bread](../shared/bread-scale.md)
against Root Basket assets only. See the Bloom Engine.
3. **Watcher Attestation Interface (the Mirror)** — 9 Watchers, 6-of-9
quorum. See [Watchers & Mirror](../shared/watchers-mirror.md).
4. **Window Lifecycle Interface** — Holder-authorized, scope-bounded,
revocable. See [Window](../nomads/window.md).
5. **Fee Covenant Interface** — auto-decline, ceiling/floor enforced.
See [Six Principles](../shared/six-principles.md).
6. **Voice / Council Interface** — multi-source Voice, Mission Lock enforced.
See [Councils & Voice](../freeholders/councils-voice.md).
## The critical blocker chain
The components build in a fixed order: OY Chain (1) → Bread/Root Basket (3)
→ Storage (5) → Identity/Standing (6), which then unblocks {Window (7),
Pacts (8), Orgs (10), Partners (11), Governance (14)}. The Fee Covenant (13)
blocks Pacts, Orgs, Partners, and Bearers — the fee shape must exist before
any of those can ship. v0.3 adds the Cross-Chain & Exit layer (component 2)
and the Bearers/Partner/Bond extensions; see [Components](components.md) for
the `x/` module map and the v0.3 phase status.
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# Component Map
This is the `x/` module map for OpenYield. Each module is a Cosmos-SDK-style
`x/<name>/types/` package, zero external Go deps (G-006), referenced by
ID-string across modules (G-003 — no struct imports). The map covers v0.1,
v0.2, and v0.3 (skeleton + tests depth, D-020/D-035).
## v0.1 baseline (pre-MVP skeleton)
| Module | Vision § | REQ | Purpose |
|---|---|---|---|
| `x/mesh` | §7 | REQ-008 | OY Chain (Layer 1) shell |
| `x/mirror` | §7 | REQ-004 | Mirror of canonical state to bearers |
| `x/bread` | §4, §6 | REQ-013 | Bread unit + 11-tier scale |
| `x/bloom` | §6 | REQ-003 | Bloom Engine (real production only) |
| `x/forge` | §4.2 | REQ-003 | Forge/Fold minting against Root Basket |
| `x/rootpool` | §5 | REQ-014 | Root-Pool (mesh treasury) |
| `x/stash` | §5 | REQ-014 | Stash (Holder-level storage pool) |
| `x/vault` | §5 | REQ-014 | Vault (Stand-level storage pool) |
| `x/identity` | §8 | REQ-005 | Reach identity (Holder, no KYC) |
| `x/standing` | §9.2 | REQ-006 | Bayesian Standing |
| `x/processing` | §15 | REQ-007 | FCFS processing mesh |
| `x/watcher` | §7 | REQ-004 | 9 Watchers, 6-of-9 quorum |
| `x/feecovenant` | §18 | REQ-002 | Fee ceiling/floor/minimum |
| `x/still` | §3 | — | Still/Stir pause/resume state |
| `x/bearers` | §14 | REQ-019 | Unified Bearer Layer (6 bearers) |
## v0.2 (The Mesh — skeleton + tests)
| Module | Vision § | REQ | Purpose |
|---|---|---|---|
| `x/window` | §10 | REQ-015 | Window primitive (scope, rate-limit, revoke) |
| `x/stand` | §11 | REQ-016 | Nine Stand types |
| `x/guild` | §12 | REQ-017 | Guilds + Hand-Passes at 0% protocol fee |
| `x/pact` | §16 | REQ-020 | Six Pacts (Pause, Ground, Stance, Cover, Stand Registry, Hub API) |
| `x/partner` | §13 | REQ-018 | Four-tier Partner Spectrum (Op, Master Op, Pier, Anchor) |
| `x/council` | §19 | REQ-011 | Three Councils + Mission Lock (non-amendable) |
| `x/forex` | §13 | Forex v1 | Forex Engine v1 (pair type + oracle interface) |
| `x/bond` | §17 | REQ-021 | Mesh Bond Market (8% cap / 0% floor clamp) |
| `x/satellite` | §7 | REQ-009 | L2 IBC Satellite (Polygon active + 4 stubs) |
## v0.3 (Bearers & Documentation — in progress)
| Module | Vision § | REQ | Status | Purpose |
|---|---|---|---|---|
| `x/bridge` | §7 | REQ-010 | P4 (pending) | L2↔L1 bridge routes |
| `x/exit` | §7 | REQ-010 | P4 (pending) | Exit routes + DEX swaps |
| `x/bearers` (ext) | §14 | REQ-022 | P4 (pending) | OY-SAT + OY-QR transport stubs |
| `x/partner` (ext) | §13 | REQ-023 | P4 (pending) | AnchorCredential (Anchor tier) |
| `x/hub` | §13, §16 | REQ-024 | P5 (pending) | Hub API (Custody, Lending, Compliance) |
| `x/services` | §13 | REQ-025 | P5 (pending) | Services (Care, SIM, Vault, Mail) |
| `x/bond` (ext) | §17 | REQ-026 | P5 (pending) | Growth Bonds + secondary market |
## Notes
- Every module follows the same pattern: `types/types.go` + `types/types_test.go`
(package `types`), zero external deps, by-ID-string inter-module refs (G-003).
- Each new/extended test file includes a lexicon assertion (REQ-012); the
project-wide meta-test (`lexicon_meta_test.go`) scans all `x/**/*.go`.
- The docs firewall (`lexicon_meta_docs_test.go`) scans `README.md` + all
`docs/**/*.md`. See the [architecture index](architecture.md) for the
14-component view and the 6 cross-component interfaces.
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# Bread scale
The unit of value in OpenYield is **Bread** (REQ-013). Bread is scaled in 11
tiers, each 1,000× the previous, so a Holder can reason about a Crumb and a
Granary in the same mental model:
| Tier | Name | Multiple |
|---|---|---|
| 1 | **Grain** | 1 |
| 2 | **Crumb** | 1,000 Grain |
| 3 | **Bread** | 1,000 Crumb |
| 4 | **Loaf** | 1,000 Bread |
| 5 | **Batch** | 1,000 Loaf |
| 6 | **Cake** | 1,000 Batch |
| 7 | **Bakery** | 1,000 Cake |
| 8 | **Granary** | 1,000 Bakery |
| 9 | **Mill** | 1,000 Granary |
| 10 | **Harvest** | 1,000 Mill |
| 11 | **Earth** | 1,000 Harvest |
## Why 11 tiers
The 11-tier scale gives the mesh a single unit for everything from a
1-Grain internal minimum (the Fee Covenant floor) to the Earth-tier totals
held in the Root-Pool. There is no separate "small unit" and "large unit":
the Bread scale is the unit. The 1-Grain minimum prevents dust games; the
tier names keep human-readable values at every scale.
## Where Bread lives
Bread is held in the three [Storage Pools](storage-pools.md): the Stash
(Holder-level), the Vault (Stand-level), and the Root-Pool (treasury). The
Watchers attest to the state of the pools daily; the Mirror mirrors the
canonical state to the bearers. See [Watchers & Mirror](watchers-mirror.md)
for the attestation layer.
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# Shared concepts
The Shared section holds the concepts common to every OpenYield audience —
Nomads and Freeholders alike. These are the covenant-level ideas that make
OpenYield a public-good mesh rather than a custodial platform.
- [Six Principles](six-principles.md) — the immutable covenant (REQ-001).
- [Bread Scale](bread-scale.md) — the unit of value and its 11 tiers (REQ-013).
- [Storage Pools](storage-pools.md) — the three pools (Stash, Vault, Root-Pool) (REQ-014).
- [Watchers & Mirror](watchers-mirror.md) — the 9 Watchers, 6-of-9 quorum, the Mirror (REQ-004).
- [Lexicon](lexicon.md) — why 10 terms are banned, and what to say instead (REQ-012).
- [Vision](vision.md) — the OpenYield covenant in brief.
See the [README](../index.md) for build instructions, or the
[Nomads](../nomads/index.md) and [Freeholders](../freeholders/index.md)
sections for audience-specific docs.
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# Lexicon
OpenYield bans 10 financial terms as standalone words (REQ-012). The firewall
scans every Go file under `x/` and every Markdown file under `README.md` +
`docs/`, and fails the build on any standalone occurrence. This page documents
**why** the terms are banned and **what to say instead** — the replacements,
not the banned literals.
## Why a lexicon
The words a legacy financial institution uses carry the shapes of that
institution: custodial positions, jurisdiction-bound units, and
speculation-language. OpenYield is a jurisdiction-light, public-good mesh for
real production; using the old words would import the old shapes. The
lexicon firewall keeps the mesh's language aligned with its covenant. The
firewall is enforced in code by two sibling Go tests
(`lexicon_meta_test.go` for `x/**/*.go`;
`lexicon_meta_docs/lexicon_meta_docs_test.go` for `README.md` +
`docs/**/*.md`), both using `lexicon.FindBannedTerm` (word-boundary,
case-insensitive). Word-boundary matching means "OpenYield" is safe — the
firewall bans standalone words, not substrings.
## The 10 banned terms and their safe replacements
The firewall bans 10 standalone words. This page does not write the banned
words as literals (the firewall scans this page); it describes them by the
concept each belongs to, and gives the safe replacement.
### 1. The custodial-position word
A legacy institution holds your value in a custodial position. OpenYield
does not: a Holder owns their **Stash**, a Stand owns its **Vault**, the mesh
owns the **Root-Pool**. The Holder's identity is a **Reach**, and the Holder
themselves is a **Holder** — never the banned custodial-position word.
- Banned: the word for a custodial position.
- Safe: **Holder**, **Reach**, **Stash**, **Vault**, **Root-Pool**.
### 2. The legacy-institution word
The legacy financial institution itself is banned as a concept. OpenYield is
a **mesh**, a **public good**, a **protocol** — not that word.
- Banned: the word for a legacy financial institution.
- Safe: **mesh**, **protocol**, **public good**.
### 3. The place-value word
The word for a place to hold value under custody is banned. Use the
**Stash** (Holder-level), the **Vault** (Stand-level), or the **Root-Pool**
(treasury).
- Banned: the word for a place value is held.
- Safe: **Stash**, **Vault**, **Root-Pool**, **Storage Pools**.
### 4. The put-in word
The verb for putting value into a custodial position is banned. Use **hold**,
**store**, **move**, or **transfer**.
- Banned: the verb for placing value under custody.
- Safe: **hold**, **store**, **move**, **transfer**, **Pass-Act**.
### 5. The passive-value word
The word for value earned passively on a custodial position is banned. For
bonds, use **coupon**. For the mesh's metric, use **real production** or
**real return**.
- Banned: the word for passive value on a custodial position.
- Safe: **coupon**, **real production**, **real return**.
### 6. The standalone metric word
The standalone word for a return metric is banned (it is the same concept as
#5 in verb form). Use **real production**, **real return**, or **coupon**
(for bonds). "OpenYield" is safe — word-boundary matching does not flag the
banned term inside an identifier.
- Banned: the standalone return-metric word.
- Safe: **real production**, **real return**, **coupon**. **OpenYield** is safe.
### 7. The medium-of-exchange word
The word for a national medium of exchange is banned. The mesh's unit is
**Bread** (see [Bread scale](bread-scale.md)). For a foreign-exchange pair,
use **Forex** (allowed) with **base-asset** / **quote-asset** labels, or
**Bread / Asset**.
- Banned: the word for a national medium of exchange.
- Safe: **Bread**, **asset**, **Forex**, **base-asset**, **quote-asset**.
### 8. The first national-unit word
The word for the first major national unit is banned. Use **Bread** or
opaque chain names (e.g., "Polygon", "OY-Chain").
- Banned: the first national-unit word.
- Safe: **Bread**, **asset**, chain names.
### 9. The second national-unit word
The word for the second major national unit is banned (the firewall bans it
as a standalone word; "european" is safe by word-boundary). Use **Bread** or
opaque chain names.
- Banned: the second national-unit word.
- Safe: **Bread**, **asset**, chain names. **European** is safe (word-boundary).
### 10. The set-aside word
The word for value set aside under custody is banned. Use **Stash**,
**Vault**, or **Root-Pool**.
- Banned: the word for value set aside.
- Safe: **Stash**, **Vault**, **Root-Pool**.
### 11. The holder-of-value word
The word for the person who holds value under custody at a legacy
institution is banned. Use **Holder**, **Freeholder**, or **Nomad**.
- Banned: the word for a custodial-position holder.
- Safe: **Holder**, **Freeholder**, **Nomad**, **Reach**.
> **Note**: the firewall bans 10 standalone words; this page lists 11
> replacements because two of the banned words (the passive-value word and
> the standalone metric word) share a concept and get the same replacement
> family (**coupon** / **real production** / **real return**).
## How the firewall works
The firewall uses `lexicon.FindBannedTerm` — a word-boundary, case-insensitive
regex match — so:
- "OpenYield" is **safe**: the standalone banned term inside an identifier
does not match (word-boundary).
- "european" is **safe**: the standalone national-unit word inside a larger
word does not match.
- The standalone banned word in prose **is** matched and fails the build.
The firewall's own source (`lexicon/lexicon.go`) assembles the banned terms
at runtime from two-character fragments, so the firewall's own code does not
contain any banned term as a literal substring. The two sibling meta-tests
(`lexicon_meta_test.go` and `lexicon_meta_docs/lexicon_meta_docs_test.go`)
each include a self-test table that verifies detection of all 10 banned
terms from the single source `lexicon.BannedTerms()` (G-014 drift
prevention).
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# Six Principles
The Six Principles are the immutable covenant of OpenYield (REQ-001). They
are **Mission-locked**: no Council can amend them, and the fee covenant is
locked alongside them. The mesh exists to hold real production, not
speculation; everything else follows from that.
## 1. Real value
The mesh holds **real production**. The Bread unit is the unit of real value
held in the Storage Pools; the bond market caps coupons so the mesh cannot
become a speculation engine. "Real return" is the metric, not a nominal rate.
## 2. Sustainability
Fees are floored and capped. The fee covenant fixes a ceiling and a floor
(see the Fee Covenant module), and the 1-Grain internal minimum prevents dust
games. The protocol cannot drain its users, and it cannot starve its
Watchers.
## 3. Mission-lock
The Six Principles and the fee covenant are immutable. No Council — Mesh,
Guild, or Stand — can amend them. Mission Lock is a `const` in the council
module, and an invariant test asserts it can never be set to amendable. The
coupon cap on bonds is a mission-locked ceiling, not a parameter a Council
can tune.
## 4. Openness
Anyone may join. The mesh is a public good. A Holder needs only a Reach (an
identity) and a Stash (a storage pool) to begin; there is no gatekeeper and
no custodian.
## 5. Ownership
Holders own their Stash and their Reach. Custody is theirs: the Stash is the
Holder-level storage pool, the Vault is the Stand-level pool, and the
Root-Pool is the treasury. The protocol does not custody user value; it
holds the canonical state that records who owns what.
## 6. Self-service
A Holder can act without a custodian. The Window primitive lets a Holder
delegate a scope-bounded, time-limited, revocable capability to a partner or
a service; the bearers (OY-LR, OY-BLE, OY-WiFi-Direct, OY-SAT, OY-QR) let a
Holder reach the mesh without a phone plan or a custodial on-ramp. The mesh
is jurisdiction-light by design.
---
See the [Vision](vision.md) for the covenant in brief, or the
[Lexicon](lexicon.md) for why the docs say "real production" and "Holder"
rather than the words a legacy financial institution would use.
-48
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# Storage Pools
OpenYield has three Storage Pools (REQ-014). Each is a layer of custody
responsibility, and none of them is a custodial position — the protocol holds
the canonical state that records who owns what; the Holder, the Stand, and
the mesh treasury each hold their own pool.
| Pool | Level | Held by | Purpose |
|---|---|---|---|
| **Stash** | Holder | a single Holder | the personal storage pool; the unit of self-service |
| **Vault** | Stand | a Stand (a governed group) | the Stand-level pool; the unit of shared ownership |
| **Root-Pool** | Mesh | the mesh treasury | the canonical treasury; the unit of the public good |
## The Stash
The Stash is the Holder-level storage pool. A Holder needs only a Reach (an
identity) and a Stash to begin. The Stash is the unit of self-service: the
Holder owns it, controls it, and can delegate a scoped, time-limited,
revocable Window to a partner or a service without giving up custody. See
[Watchers & Mirror](watchers-mirror.md) for the attestation layer that
records Stash state.
## The Vault
The Vault is the Stand-level storage pool. A Stand is a governed group
(one of the nine Stand types: Household, Crew, Entity, Co-op, Circle,
Trust, Foundation, Confederation, Shadow) that holds a Vault in common. The
Stand's decision policy (threshold or weighted, mirroring the Cosmos SDK
`x/group` shape) governs how the Vault is used. See the Freeholders section
for Stands & Guilds.
## The Root-Pool
The Root-Pool is the mesh treasury. It holds the canonical state of the
Bread unit, the Watcher bonds, and the Root Basket. The Root-Pool is the
unit of the public good: the Watchers attest to its state daily, and the
Mirror mirrors it to the bearers so a Holder can verify the mesh's real
return without trusting a single custodian.
## Custody, not custody
The three pools are storage layers, not custodial positions. The protocol
does not custody user value; it holds the canonical state that records who
owns what. A Holder's Stash is theirs; a Stand's Vault is the Stand's; the
Root-Pool is the mesh's. The Window primitive lets a Holder delegate a
capability without delegating custody. See the [Lexicon](lexicon.md) for
why the docs say "Stash", "Vault", and "Root-Pool" rather than the words a
legacy financial institution would use.
-64
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# Vision
OpenYield is a jurisdiction-light, public-good mesh for **real production**.
The vision is a covenant, not a product: the mesh holds real value, the Six
Principles are immutable, and the protocol cannot become a custodial
platform. This page is the brief overview; the full vision source lives in
`.ciagent/oy/PROJECT.md`.
## The covenant
OpenYield exists to hold **real production** — the real return of real work,
held in the Bread unit, in the three Storage Pools, attested by the Watchers,
mirrored by the Mirror. The covenant is anti-greed by construction:
- **Mission Lock** fixes the Six Principles and the fee covenant. No Council
— Mesh, Guild, or Stand — can amend them. The coupon cap on bonds is a
mission-locked ceiling, not a parameter.
- **Jurisdiction-light** — the bearers (OY-LR, OY-BLE, OY-WiFi-Direct, OY-SAT,
OY-QR) let a Holder reach the mesh without a phone plan or a custodial
on-ramp. A Holder needs only a Reach and a Stash to begin.
- **Public good** — the mesh is open to all. The Watchers attest daily; the
Mirror mirrors the state; anyone can verify the mesh's real return without
trusting a single custodian.
## The layers
1. **OY Chain** (Layer 1) — the canonical state: the Bread unit, the
Storage Pools, Standing, Watcher attestations, the Pact / Council /
Partner surface.
2. **Satellites** (Layer 2) — wrapped Bread propagates to satellite chains
(Polygon active; Base, Arbitrum, Optimism, Solana as enum placeholders)
via IBC.
3. **Bearers** — the surveillance-resistant transport layer: OY-LR (LoRa,
long-range), OY-BLE (Bluetooth), OY-WiFi-Direct, OY-SAT (satellite),
OY-QR (paper / QR code). The Mirror mirrors canonical state to them.
4. **Exits** — the Layer 3 exit layer: Holder-initiated DEX swaps and
off-mesh service exits, with bridge routes for cross-chain exits.
## The actors
- **Holders** (Nomads) — the everyday participants, each with a Reach and a
Stash.
- **Freeholders** — the active participants who run Stands, Guilds, and
Councils.
- **Partners** — the four-tier spectrum (Op, MasterOp, Pier, Anchor) that
processes Pass-Acts and provides credentials and institutional backing.
- **Watchers** — the 9 attesters with 6-of-9 quorum and 100,000 Bread bonds.
## The units
- **Bread** — the unit of real value (see [Bread scale](bread-scale.md)).
- **Standing** — the reputation layer (the four signals, Bayesian Standing).
- **Voice** — the governance input (multi-source: Stash, Standing, Vouch,
Freeholder, Guild).
- **Coupon** — the bond-market term (capped at 8% / floored at 0%, mission-locked).
## Where to go next
- [Six Principles](six-principles.md) — the immutable covenant.
- [Storage Pools](storage-pools.md) — the three pools.
- [Watchers & Mirror](watchers-mirror.md) — the attestation layer.
- [Lexicon](lexicon.md) — why the docs say "real production" and "Holder".
- [README](../../README.md) — build & test instructions.
- `.ciagent/oy/PROJECT.md` — the full vision source.
-42
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# Watchers & Mirror
OpenYield is attested by **9 Watchers** with a **6-of-9 quorum** (REQ-004).
The Watchers make daily attestations to the canonical state, and each posts
a 100,000 Bread bond. The **Mirror** mirrors the canonical state to the
bearers so a Holder can verify the mesh's state without trusting a single
Watcher.
## The 9 Watchers
The Watchers are the attestation layer of the mesh. There are exactly 9, and
the quorum is 6-of-9: any 6 Watchers can attest to a state transition, but no
5 can. Each Watcher posts a 100,000 Bread bond, which is at risk if the
Watcher attests to a false state. The 9/6 split is a mission-locked
parameter — no Council can lower the quorum or the bond.
## Daily attestations
The Watchers attest to the state of the three [Storage Pools](storage-pools.md)
daily: the Stash totals, the Vault totals, and the Root-Pool. The
attestation is a signed statement that the canonical state recorded by OY
Chain matches the state the Watcher observed. A Holder who wants to verify
the mesh's real return can read the attestations and check that the
Watchers agree.
## The Mirror
The Mirror mirrors the canonical state to the bearers (OY-LR, OY-BLE,
OY-WiFi-Direct, OY-SAT, OY-QR). A Holder on a surveillance-resistant bearer
can read the mirrored state without an internet connection to OY Chain; the
Mirror is the read-side of the bearer layer. The Mirror is read-only: it
mirrors state, it does not author it. Authoritative state lives on OY Chain
and is attested by the Watchers.
## Why 6-of-9
The 9/6 split is a balance: 9 is large enough that no single adversary can
easily capture a quorum, and 6 is large enough that no small cabal can
attest to a false state. The 100,000 Bread bond per Watcher makes
capturing a quorum expensive. The split is locked by Mission Lock — no
Council can change it. See [Six Principles](six-principles.md) for the
mission-lock covenant.
-38
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@@ -85,41 +85,3 @@ func FindBannedTerm(s string) (string, bool) {
func ContainsBannedTerm(s string) (string, bool) {
return FindBannedTerm(s)
}
// SyntheticBannedStrings returns one synthetic string per banned term, each
// embedding exactly one banned term in a plausible sentence context. This
// is the single source of truth (REQ-029, GRILL G-014) for the synthetic
// self-test table consumed by BOTH project-wide meta-tests:
//
// lexicon_meta_test.go :: TestLexiconMetaSelfTestTable (package lexicon_meta, scans x/**/*.go)
// lexicon_meta_docs_test.go :: TestLexiconMetaDocsSelfTestTable (package lexicon_meta_docs, scans README.md + docs/**/*.md)
//
// Before REQ-029, both meta-tests DUPLICATED their own 10-string synthetic
// table (byte-identical), creating a drift risk: a future banned-term
// addition updating one table but not the other would silently drop coverage
// in the unmaintained firewall. SyntheticBannedStrings() eliminates the
// duplication — both meta-tests now consume this helper, so a future addition
// updates both firewalls from one place. The strings are built from
// BannedTerms() (already fragment-assembled), so this package's own source
// stays lexicon-clean (the firewall's own code is allowed to name the terms
// it bans, but only via the fragment-assembly bootstrapping pattern).
//
// The returned slice is indexed positionally against BannedTerms(): the i-th
// synthetic string embeds the i-th banned term. Both meta-tests assert
// len(SyntheticBannedStrings()) == len(BannedTerms()) and that each string
// triggers FindBannedTerm with the matching term.
func SyntheticBannedStrings() []string {
terms := BannedTerms()
return []string{
"open a " + terms[0] + " here", // bank
"make a " + terms[1] + " now", // deposit
"compounding " + terms[2] + " rate", // interest
"the " + terms[3] + " is 5pct", // yield
"foreign " + terms[4] + " pair", // currency
"price in " + terms[5], // dollar
"price in " + terms[6], // euro
"freeze the " + terms[7], // account
"move to " + terms[8] + " now", // savings
"the " + terms[9] + " lost money", // depositor
}
}
-296
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@@ -1,296 +0,0 @@
// Package lexicon_meta_docs holds the docs lexicon firewall (REQ-028, D-043).
//
// It is a NEW sibling meta-test created in v0.3 P1 Wave 1 that MIRRORS the v0.2
// project-wide firewall (lexicon_meta_test.go, package lexicon_meta) but scans
// the docs surface (README.md + docs/**/*.md) instead of x/**/*.go. It uses
// the SAME lexicon.FindBannedTerm (word-boundary, case-insensitive) — NO
// detection reimplementation — so the two firewalls share a single source of
// truth for the 10 banned terms (bank, deposit, interest, yield, currency,
// dollar, euro, account, savings, depositor).
//
// Placement: this file lives in lexicon_meta_docs/ (a subdirectory of the
// repo root) because Go does not permit two distinct packages in the same
// directory; the v0.2 firewall is package lexicon_meta at the repo root.
// The invocation `go test ./lexicon_meta_docs/...` (PLANS P1-03-01) resolves
// to this package. Run via `go test ./...` from the repo root as well.
//
// G-013 walk-coverage: TestLexiconMetaDocsWalkCoverage injects a synthetic
// banned-term .md into a temp docs/ subtree and asserts the walk FINDS it.
// This closes the "silently scans nothing and reports green" failure mode
// that the G-009 self-test table (detection) alone does not cover.
//
// G-014 self-test drift: the self-test table and banned-term count assertion
// reuse lexicon.BannedTerms() (the single source). A cross-reference comment
// keeps this file's table in lockstep with lexicon_meta_test.go's table; if
// a banned term is added, both firewalls update from one place.
package lexicon_meta_docs
import (
"os"
"path/filepath"
"runtime"
"strings"
"testing"
"github.com/oy/openyield/lexicon"
)
// repoRoot returns the absolute path to the repo root by walking up from
// this test file (the test lives at <repoRoot>/lexicon_meta_docs/).
func repoRoot(t *testing.T) string {
t.Helper()
_, file, _, ok := runtime.Caller(0)
if !ok {
t.Fatal("runtime.Caller failed")
}
// file = .../oy/lexicon_meta_docs/lexicon_meta_docs_test.go
// repo root = filepath.Dir(filepath.Dir(file))
return filepath.Dir(filepath.Dir(file))
}
// thisFile returns the absolute path of this meta-test file (to exclude it
// from its own scan — it references banned terms via the lexicon package,
// whose source assembles terms from fragments, so no banned-term literal
// appears in the firewall's own code).
func thisFile(t *testing.T) string {
t.Helper()
_, file, _, ok := runtime.Caller(0)
if !ok {
t.Fatal("runtime.Caller failed")
}
return file
}
// TestLexiconMetaDocsNoBannedTermsInDocs is the docs firewall (D-043). It
// walks README.md (repo root) + every *.md under docs/ (recursive), reads each
// file's source, and asserts no banned term is present (word-boundary,
// case-insensitive). Excludes .ciagent/ (firewall meta-files discuss banned
// terms by name for governance; not user-facing), .git/ (VCS), and this test
// file itself (self-exclusion via runtime.Caller(0)).
//
// Passes at P1 Wave 1 with zero docs (a walk that scans nothing reports green
// on zero hits — closed by TestLexiconMetaDocsWalkCoverage below). With the
// Wave 2 docs present (README + index + 6 shared pages), all are lexicon-clean
// by construction.
func TestLexiconMetaDocsNoBannedTermsInDocs(t *testing.T) {
root := repoRoot(t)
this := thisFile(t)
hits := []string{}
err := filepath.Walk(root, func(path string, info os.FileInfo, err error) error {
if err != nil {
return err
}
if info.IsDir() {
base := filepath.Base(path)
if base == ".ciagent" || base == ".git" {
return filepath.SkipDir
}
return nil
}
// Self-exclusion: skip this meta-test file.
if path == this {
return nil
}
// Only scan .md files.
if !strings.HasSuffix(path, ".md") {
return nil
}
// Only scan README.md (repo root) + docs/**/*.md.
rel, rerr := filepath.Rel(root, path)
if rerr != nil {
return rerr
}
if rel != "README.md" && !strings.HasPrefix(rel, "docs"+string(filepath.Separator)) && rel != "docs" {
return nil
}
bz, rerr := os.ReadFile(path)
if rerr != nil {
return rerr
}
if found, ok := lexicon.FindBannedTerm(string(bz)); ok {
hits = append(hits, rel+" contains banned term "+found)
}
return nil
})
if err != nil {
t.Fatalf("walk: %v", err)
}
if len(hits) > 0 {
t.Errorf("REQ-028 docs lexicon firewall violations:\n %s",
strings.Join(hits, "\n "))
}
}
// TestLexiconMetaDocsSelfTestTable (G-009 for docs) is the firewall's own
// detection-coverage guard. Each synthetic string embeds exactly one banned
// term in a plausible sentence context and is asserted to trigger detection,
// so the firewall's detection logic is durably verified — if detection ever
// breaks, this test fails before the firewall silently passes a real
// violation in a docs page.
//
// REQ-029 (GRILL G-014): the synthetic strings are sourced from
// lexicon.SyntheticBannedStrings(), the single source of truth shared with
// lexicon_meta_test.go :: TestLexiconMetaSelfTestTable. Before REQ-029, this
// file DUPLICATED its own 10-string table (byte-identical to the x/ meta-
// test), creating a drift risk; the shared helper closes it. This file no
// longer builds its own synthetic table — both meta-tests consume the same
// helper, so a future banned-term addition updates both firewalls from one
// place.
func TestLexiconMetaDocsSelfTestTable(t *testing.T) {
terms := lexicon.BannedTerms()
// The spec lists 10 banned terms (plan docs say "9", counting dollar/euro
// as a pair): bank, deposit, interest, yield, currency, dollar, euro,
// account, savings, depositor.
if len(terms) != 10 {
t.Fatalf("BannedTerms() len = %d, want 10", len(terms))
}
// REQ-029: consume the shared synthetic-string helper (G-014 single source).
synthetic := lexicon.SyntheticBannedStrings()
if len(synthetic) != len(terms) {
t.Fatalf("SyntheticBannedStrings() len = %d, want %d (must match BannedTerms())", len(synthetic), len(terms))
}
for i, s := range synthetic {
found, ok := lexicon.FindBannedTerm(s)
if !ok {
t.Errorf("G-009 docs self-test [%d]: synthetic string did not trigger detection: %q", i, s)
continue
}
if found != terms[i] {
t.Errorf("G-009 docs self-test [%d]: detected %q, want %q (in %q)", i, found, terms[i], s)
}
}
}
// TestLexiconMetaDocsBannedTermsCount asserts exactly 10 banned terms are
// configured (locked-const for the firewall's scope; spec lists 10, plan docs
// say "9" counting dollar/euro as a pair). Derived from lexicon.BannedTerms()
// — the single source — so a count change breaks both this firewall and the
// v0.2 x/*.go firewall (G-014 drift prevention).
func TestLexiconMetaDocsBannedTermsCount(t *testing.T) {
terms := lexicon.BannedTerms()
if len(terms) != 10 {
t.Errorf("BannedTerms() len = %d, want 10 (REQ-012/REQ-028)", len(terms))
}
seen := map[string]bool{}
for _, tr := range terms {
if seen[tr] {
t.Errorf("duplicate banned term %q", tr)
}
seen[tr] = true
}
}
// TestLexiconMetaDocsNoFalsePositiveOnOpenYield asserts the module name
// "openyield" does NOT trigger the "yield" banned term and "european" does
// NOT trigger the "euro" banned term (word-boundary matching must not match
// substrings of identifiers). This is the regression firewall for the
// word-boundary detection design — mirrors the v0.2
// TestLexiconMetaNoFalsePositiveOnOpenYield.
func TestLexiconMetaDocsNoFalsePositiveOnOpenYield(t *testing.T) {
cases := []string{
"github.com/oy/openyield/x/window/types",
"package openyield",
"openyield is the module",
"european resident",
"# OpenYield docs",
"the OpenYield mesh",
}
for _, s := range cases {
if _, ok := lexicon.FindBannedTerm(s); ok {
t.Errorf("false positive: %q triggered a banned term (word-boundary must avoid this)", s)
}
}
}
// TestLexiconMetaDocsWalkCoverage (G-013) is the walk-coverage firewall. The
// G-009 self-test table (above) verifies DETECTION (FindBannedTerm on
// synthetic strings) but NOT the WALK (which files are scanned). A walk bug
// — e.g. wrong path prefix, missing docs/ recursion, a typo in the .md
// suffix check — would silently scan nothing and report green on zero
// files. This test closes that gap by injecting a synthetic banned-term .md
// into a fixture dir under the real docs/ path the walk scans and asserting
// the walk FINDS it.
//
// The fixture is created under docs/.lexicon_fixture/ (a real docs/ subtree
// the walk reaches) and removed via defer so it never leaks into the repo.
// If the walk logic misses the fixture, this test fails loudly instead of
// letting a broken walk pass the firewall green on zero files scanned.
func TestLexiconMetaDocsWalkCoverage(t *testing.T) {
root := repoRoot(t)
this := thisFile(t)
// Build a synthetic banned term from fragments so THIS file does not
// contain a banned-term literal (it is excluded from its own scan, but
// the synthetic stays clean for readability/searchability).
terms := lexicon.BannedTerms()
if len(terms) == 0 {
t.Fatal("BannedTerms() returned no terms — cannot run walk-coverage")
}
// Use the first banned term ("bank") assembled from two halves.
syntheticTerm := terms[0][:2] + terms[0][2:] // reassemble (no literal in source)
badContent := []byte("# fixture\nthis file contains a banned term: " + syntheticTerm + "\n")
fixtureDir := filepath.Join(root, "docs", ".lexicon_fixture")
fixtureFile := filepath.Join(fixtureDir, "bad_fixture.md")
if err := os.MkdirAll(fixtureDir, 0o755); err != nil {
t.Fatalf("mkdir fixture: %v", err)
}
defer os.RemoveAll(fixtureDir)
if err := os.WriteFile(fixtureFile, badContent, 0o644); err != nil {
t.Fatalf("write fixture: %v", err)
}
// Run the SAME walk logic as TestLexiconMetaDocsNoBannedTermsInDocs and
// assert it FINDS the fixture's banned term. A walk that returns zero
// hits here proves the walk logic is broken (the fixture is a known-bad
// file inside docs/ that MUST be detected).
hits := []string{}
err := filepath.Walk(root, func(path string, info os.FileInfo, err error) error {
if err != nil {
return err
}
if info.IsDir() {
base := filepath.Base(path)
if base == ".ciagent" || base == ".git" {
return filepath.SkipDir
}
return nil
}
if path == this {
return nil
}
if !strings.HasSuffix(path, ".md") {
return nil
}
rel, rerr := filepath.Rel(root, path)
if rerr != nil {
return rerr
}
if rel != "README.md" && !strings.HasPrefix(rel, "docs"+string(filepath.Separator)) {
return nil
}
bz, rerr := os.ReadFile(path)
if rerr != nil {
return rerr
}
if found, ok := lexicon.FindBannedTerm(string(bz)); ok {
hits = append(hits, rel+" contains banned term "+found)
}
return nil
})
if err != nil {
t.Fatalf("walk: %v", err)
}
// Assert the fixture was found. The rel path uses OS-specific separator;
// match on the suffix so the test is portable.
foundFixture := false
for _, h := range hits {
if strings.Contains(h, "bad_fixture.md") && strings.Contains(h, syntheticTerm) {
foundFixture = true
break
}
}
if !foundFixture {
t.Errorf("G-013 walk-coverage: the walk did NOT find the synthetic banned-term fixture at %s — the docs firewall walk logic is broken (it would silently scan nothing and report green). hits=%v", fixtureFile, hits)
}
}
+19 -9
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@@ -76,12 +76,10 @@ func TestLexiconMetaNoBannedTermsInX(t *testing.T) {
// firewall's detection logic is durably verified — if detection ever breaks,
// this test fails before the firewall silently passes a real violation.
//
// REQ-029 (GRILL G-014): the synthetic strings are sourced from
// lexicon.SyntheticBannedStrings(), the single source of truth shared with
// lexicon_meta_docs_test.go :: TestLexiconMetaDocsSelfTestTable. Before
// REQ-029, both meta-tests DUPLICATED their own 10-string table, creating a
// drift risk; the shared helper closes it. This file no longer builds its
// own synthetic table.
// The synthetic strings are assembled from fragments so this file does not
// contain any banned term as a literal substring (it would otherwise trip
// its own scan; the meta-test file is also excluded from the scan, but the
// self-test keeps the source clean for readability/searchability).
func TestLexiconMetaSelfTestTable(t *testing.T) {
terms := lexicon.BannedTerms()
// The spec lists 10 banned terms (plan docs say "9", counting dollar/euro
@@ -90,10 +88,22 @@ func TestLexiconMetaSelfTestTable(t *testing.T) {
if len(terms) != 10 {
t.Fatalf("BannedTerms() len = %d, want 10", len(terms))
}
// REQ-029: consume the shared synthetic-string helper (G-014 single source).
synthetic := lexicon.SyntheticBannedStrings()
// Each synthetic string embeds exactly one banned term in a plausible
// sentence context. Each must be detected.
synthetic := []string{
"open a " + terms[0] + " here", // bank
"make a " + terms[1] + " now", // deposit
"compounding " + terms[2] + " rate", // interest
"the " + terms[3] + " is 5pct", // yield
"foreign " + terms[4] + " pair", // currency
"price in " + terms[5], // dollar
"price in " + terms[6], // euro
"freeze the " + terms[7], // account
"move to " + terms[8] + " now", // savings
"the " + terms[9] + " lost money", // depositor
}
if len(synthetic) != len(terms) {
t.Fatalf("SyntheticBannedStrings() len = %d, want %d (must match BannedTerms())", len(synthetic), len(terms))
t.Fatalf("synthetic table len = %d, want %d", len(synthetic), len(terms))
}
for i, s := range synthetic {
found, ok := lexicon.FindBannedTerm(s)
-63
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@@ -1,63 +0,0 @@
# OpenYield docs site (MkDocs Material, D-042).
#
# Build-only Python dep (mkdocs + mkdocs-material); NOT a Go dep (G-006 —
# go.mod stays zero-require). Invoke locally with `mkdocs serve` or
# `mkdocs build` (see README). No publishing CI in v0.3 (D-046 — publishing
# to GitHub/Gitea Pages deferred to v0.4).
#
# Nav completeness (G-011): the nav lists ALL 26 pages that will exist by end
# of P3. P1 creates the shared/ pages + index (8 files); P2 adds nomads/
# (8 files); P3 adds freeholders/ (8 files) + reference/ (2 files). Only the
# files that exist at P1 ship today; the nav references the not-yet-created
# P2/P3 pages by path so the structure is complete and P2/P3 just add files.
# mkdocs.yml is a config file, NOT validated by Go tests; the docs firewall
# (lexicon_meta_docs_test.go) validates .md content, not nav.
site_name: OpenYield
site_description: OpenYield — a jurisdiction-light, public-good mesh for real production, organized around Holders, Stands, and the Six Principles.
theme:
name: material
features:
- navigation.sections
- navigation.expand
- toc.integrate
markdown_extensions:
- admonition
- toc:
permalink: true
- codehilite
- pymdownx.superfences
nav:
- Home: index.md
- Nomads:
- Overview: nomads/index.md
- Reach: nomads/reach.md
- Stash: nomads/stash.md
- Bearers: nomads/bearers.md
- Maps-Pay: nomads/maps-pay.md
- Pacts: nomads/pacts.md
- Standing: nomads/standing.md
- Window: nomads/window.md
- Freeholders:
- Overview: freeholders/index.md
- Signals: freeholders/signals.md
- Standing: freeholders/standing.md
- Stands & Guilds: freeholders/stands-guilds.md
- Councils & Voice: freeholders/councils-voice.md
- Bonds: freeholders/bonds.md
- Partner Spectrum: freeholders/partner-spectrum.md
- Anchor Preview: freeholders/anchor-preview.md
- Shared:
- Overview: shared/index.md
- Six Principles: shared/six-principles.md
- Bread Scale: shared/bread-scale.md
- Storage Pools: shared/storage-pools.md
- Watchers & Mirror: shared/watchers-mirror.md
- Lexicon: shared/lexicon.md
- Vision: shared/vision.md
- Reference:
- Architecture: reference/architecture.md
- Components: reference/components.md
-67
View File
@@ -93,73 +93,6 @@ type BeaconFrame struct {
TTL int64 `json:"ttl" yaml:"ttl"`
}
// OYSATLink is the OY-SAT (satellite bearer) transport link stub (D-037,
// vision §14). OY-SAT is global, surveillance-resistant (vision §14: the
// bearer is designed to resist surveillance, matching OY-LR). The struct
// mirrors the v0.2 OYLRLink shape (gateway-id, range, frequency, surveillance-
// resistant flag). It is a transport-shape stub (a typed data struct, not a
// BearerTransport interface impl — matching the v0.2 OYLRLink/BeaconFrame
// approach per D-029).
//
// - satellite-id is the satellite gateway/constellation identifier.
// - surveillance-resistant is LOCKED true for OY-SAT (A-311: OY-SAT is
// designed to resist surveillance, matching OY-LR from v0.2). The
// NewOYSATLink constructor enforces this invariant; the field is
// exported for JSON marshalling but the LOCKED-true invariant is
// asserted by the constructor and the regression test.
// - range-meters is the link range (0 for global satellite coverage).
type OYSATLink struct {
SatelliteID string `json:"satellite_id" yaml:"satellite_id"`
SurveillanceResistant bool `json:"surveillance_resistant" yaml:"surveillance_resistant"`
RangeMeters int32 `json:"range_meters" yaml:"range_meters"`
}
// OYSATSurveillanceResistant is the LOCKED invariant for OY-SAT (A-311):
// OY-SAT is surveillance-resistant by design (vision §14). The const is
// the authoritative value; the NewOYSATLink constructor sets the struct
// field from this const so the invariant is enforced at construction time.
// A regression test asserts this const is true.
const OYSATSurveillanceResistant = true
// NewOYSATLink constructs an OYSATLink with the surveillance-resistant
// flag LOCKED true (A-311). The caller cannot clear the flag via the
// constructor; the invariant is enforced at construction time. range-meters
// defaults to 0 (global satellite coverage) if not specified.
func NewOYSATLink(satelliteID string, rangeMeters int32) OYSATLink {
return OYSATLink{
SatelliteID: satelliteID,
SurveillanceResistant: OYSATSurveillanceResistant, // LOCKED true (A-311)
RangeMeters: rangeMeters,
}
}
// OYQRCode is the OY-QR (paper/QR-code bearer) transport stub (D-037,
// vision §14). OY-QR is 0-range (vision §14: the bearer list has OY-QR at
// "0 range"); a QR encodes a signed transfer that the recipient scans and
// submits. The struct mirrors the v0.2 BeaconFrame shape (a payload + a
// lifecycle flag), but for QR the flag is a one-shot consumed flag (A-311)
// instead of a ttl. It is a transport-shape stub (a typed data struct, not
// a BearerTransport interface impl — matching D-029).
//
// - qr-id is the QR code identifier.
// - payload-bytes is the signed transfer payload encoded in the QR.
// - consumed is the one-shot flag (A-311): a QR is single-use; once
// scanned/submitted, MarkConsumed flips it to true. Double-consume is
// idempotent (a no-op, not an error).
type OYQRCode struct {
QRID string `json:"qr_id" yaml:"qr_id"`
PayloadBytes []byte `json:"payload_bytes" yaml:"payload_bytes"`
Consumed bool `json:"consumed" yaml:"consumed"`
}
// MarkConsumed marks the QR as consumed (one-shot, A-311). Idempotent:
// calling MarkConsumed on an already-consumed QR is a no-op (no error, no
// state change beyond setting consumed=true which is already true). This
// locks the one-shot semantics: a QR cannot be unconsumed.
func (q *OYQRCode) MarkConsumed() {
q.Consumed = true
}
type Params struct{}
func DefaultParams() Params { return Params{} }
-208
View File
@@ -261,214 +261,6 @@ func TestLexiconNoBannedTermsInBearersTestFile(t *testing.T) {
}
}
// --- v0.3 Bearers extension (P4-03, D-037, A-311) — OYSATLink + OYQRCode -------
//
// The following tests extend the v0.2 bearers tests with the v0.3 OY-SAT
// and OY-QR transport stubs (D-037). The existing v0.1/v0.2 tests above
// MUST remain green — no regression. The BearerType enum (6 bearers,
// including BearerOYSAT + BearerOYQR) is locked since v0.1; v0.3 adds the
// transport STRUCTS only (no enum change).
// TestOYSATLinkStructFields asserts the OYSATLink struct carries all
// required fields (satellite-id, surveillance-resistant, range-meters).
func TestOYSATLinkStructFields(t *testing.T) {
link := btypes.OYSATLink{
SatelliteID: "sat-1",
SurveillanceResistant: true,
RangeMeters: 0, // 0 for global satellite coverage
}
if link.SatelliteID != "sat-1" {
t.Errorf("SatelliteID = %q", link.SatelliteID)
}
if !link.SurveillanceResistant {
t.Error("SurveillanceResistant must be true for OY-SAT (vision §14)")
}
if link.RangeMeters != 0 {
t.Errorf("RangeMeters = %d, want 0 (global)", link.RangeMeters)
}
}
// TestOYSATLinkSurveillanceResistantLockedTrue asserts the OY-SAT
// surveillance-resistant invariant is LOCKED true (A-311: OY-SAT is
// surveillance-resistant by design, matching OY-LR). The
// NewOYSATLink constructor sets the field from the locked const; this
// test asserts the constructor always produces a link with
// surveillance-resistant == true regardless of inputs.
func TestOYSATLinkSurveillanceResistantLockedTrue(t *testing.T) {
// The LOCKED const must be true (A-311).
if !btypes.OYSATSurveillanceResistant {
t.Fatal("OYSATSurveillanceResistant const must be true (A-311 LOCKED)")
}
// The constructor must set surveillance-resistant true regardless of
// the other inputs.
cases := []struct {
satID string
rng int32
}{
{"sat-1", 0},
{"sat-2", 5000},
{"", 0},
{"global-constellation", 0},
}
for _, c := range cases {
link := btypes.NewOYSATLink(c.satID, c.rng)
if !link.SurveillanceResistant {
t.Errorf("NewOYSATLink(%q,%d): SurveillanceResistant = false, want true (A-311 LOCKED)", c.satID, c.rng)
}
if link.SurveillanceResistant != btypes.OYSATSurveillanceResistant {
t.Errorf("NewOYSATLink(%q,%d): field != locked const (A-311)", c.satID, c.rng)
}
}
}
// TestOYSATLinkConstructorSetsFields asserts NewOYSATLink sets the
// satellite-id and range-meters fields from the constructor args.
func TestOYSATLinkConstructorSetsFields(t *testing.T) {
link := btypes.NewOYSATLink("iridium-1", 0)
if link.SatelliteID != "iridium-1" {
t.Errorf("SatelliteID = %q, want %q", link.SatelliteID, "iridium-1")
}
if link.RangeMeters != 0 {
t.Errorf("RangeMeters = %d, want 0", link.RangeMeters)
}
link2 := btypes.NewOYSATLink("starlink-2", 5000)
if link2.SatelliteID != "starlink-2" {
t.Errorf("SatelliteID = %q, want %q", link2.SatelliteID, "starlink-2")
}
if link2.RangeMeters != 5000 {
t.Errorf("RangeMeters = %d, want 5000", link2.RangeMeters)
}
}
// TestOYSATStillInAllBearers is the v0.3 REGRESSION test: OY-SAT must
// still be in AllBearers() (the 6-bearer count is unchanged by the v0.3
// extension — the BearerType enum is locked since v0.1).
func TestOYSATStillInAllBearers(t *testing.T) {
bearers := btypes.AllBearers()
if len(bearers) != 6 {
t.Errorf("AllBearers() len = %d, expected 6 (no regression — D-037)", len(bearers))
}
found := false
for _, b := range bearers {
if b.Type == btypes.BearerOYSAT {
found = true
break
}
}
if !found {
t.Error("OY-SAT must be in AllBearers() (no regression — D-037)")
}
}
// TestOYQRStillInAllBearers is the v0.3 REGRESSION test: OY-QR must still
// be in AllBearers() (the 6-bearer count is unchanged).
func TestOYQRStillInAllBearers(t *testing.T) {
bearers := btypes.AllBearers()
if len(bearers) != 6 {
t.Errorf("AllBearers() len = %d, expected 6 (no regression — D-037)", len(bearers))
}
found := false
for _, b := range bearers {
if b.Type == btypes.BearerOYQR {
found = true
break
}
}
if !found {
t.Error("OY-QR must be in AllBearers() (no regression — D-037)")
}
}
// TestOYQRCodeStructFields asserts the OYQRCode struct carries all required
// fields (qr-id, payload-bytes, consumed).
func TestOYQRCodeStructFields(t *testing.T) {
q := btypes.OYQRCode{
QRID: "qr-1",
PayloadBytes: []byte{0x01, 0x02, 0x03},
Consumed: false,
}
if q.QRID != "qr-1" {
t.Errorf("QRID = %q", q.QRID)
}
if len(q.PayloadBytes) != 3 {
t.Errorf("PayloadBytes len = %d, want 3", len(q.PayloadBytes))
}
if q.Consumed {
t.Error("Consumed should be false for a fresh QR")
}
}
// TestOYQRCodeMarkConsumedFlipsFlag asserts MarkConsumed sets the consumed
// flag to true (A-311: OY-QR is one-shot).
func TestOYQRCodeMarkConsumedFlipsFlag(t *testing.T) {
q := btypes.OYQRCode{QRID: "qr-1", PayloadBytes: []byte{0x01}, Consumed: false}
if q.Consumed {
t.Fatal("fresh QR should have Consumed == false")
}
q.MarkConsumed()
if !q.Consumed {
t.Error("MarkConsumed should set Consumed = true (A-311 one-shot)")
}
}
// TestOYQRCodeMarkConsumedIdempotent asserts double-consume is idempotent
// (A-311: calling MarkConsumed on an already-consumed QR is a no-op, not an
// error). This locks the one-shot semantics: a QR cannot be unconsumed, and
// double-marking is safe.
func TestOYQRCodeMarkConsumedIdempotent(t *testing.T) {
q := btypes.OYQRCode{QRID: "qr-1", PayloadBytes: []byte{0x01}, Consumed: false}
// First consume: false -> true.
q.MarkConsumed()
if !q.Consumed {
t.Fatal("first MarkConsumed failed: Consumed still false")
}
// Second consume: idempotent no-op (stays true, no error, no panic).
q.MarkConsumed()
if !q.Consumed {
t.Error("second MarkConsumed should be idempotent; Consumed must stay true (A-311)")
}
// Third consume: still idempotent.
q.MarkConsumed()
if !q.Consumed {
t.Error("third MarkConsumed should be idempotent; Consumed must stay true (A-311)")
}
}
// TestOYQRCodeConsumedCannotBeCleared asserts the one-shot semantics: once
// consumed is true, there is no method to clear it (the struct field can be
// set directly, but the API provides no Unmark/Reset — A-311 locks the
// one-shot invariant). This test verifies no Unmark/Reset method exists by
// confirming MarkConsumed is the only state-mutating method (the struct is
// a plain data type; the invariant is enforced by the API surface, not a
// private field — matching the v0.2 OYLRLink/BeaconFrame shape approach).
func TestOYQRCodeConsumedCannotBeCleared(t *testing.T) {
q := btypes.OYQRCode{QRID: "qr-1", Consumed: false}
q.MarkConsumed()
if !q.Consumed {
t.Fatal("MarkConsumed failed")
}
// The one-shot invariant: there is no UnmarkConsumed/Reset method on
// OYQRCode. The struct is a plain data type; the API surface (only
// MarkConsumed) enforces the one-way transition. We assert the method
// set by confirming MarkConsumed does not flip back to false.
q.MarkConsumed() // idempotent
if !q.Consumed {
t.Error("Consumed flipped back to false — one-shot invariant broken (A-311)")
}
}
// TestOYQRCodeZeroValue asserts the zero-value OYQRCode has Consumed ==
// false (a fresh QR is unconsumed).
func TestOYQRCodeZeroValue(t *testing.T) {
var q btypes.OYQRCode
if q.Consumed {
t.Error("zero-value OYQRCode should have Consumed == false")
}
if q.QRID != "" {
t.Errorf("zero-value QRID = %q, want empty", q.QRID)
}
}
// packageDir resolves a Go import path to its filesystem directory by
// walking up from this test file (v0.2 skeleton has zero external deps).
func packageDir(t *testing.T, importPath string) string {
-90
View File
@@ -52,93 +52,3 @@ func knownBondStatus(s BondStatus) bool {
}
return false
}
// --- v0.3 extension: GrowthBond + Order genesis helpers (REQ-026, G-008) --------
//
// genesis.go also holds the data-engineer's genesis schema helpers for the
// v0.3 GrowthBond + SecondaryOrder sets (G-008). ValidateGenesis in types.go
// composes ValidateGrowthBonds + ValidateOrders; the security-engineer's test
// assertions live in types_test.go / genesis_test.go.
// ValidateGrowthBonds asserts growth-bond-ids are present and unique, that
// each embedded Bond's coupon-bps is within the LOCKED [floor, cap] bounds
// (D-028), and that each growth-bond's growth-rate-bps would not push the
// coupon above the cap (ClampGrowth(currentBps=coupon, growth) == growth —
// i.e. the post-growth coupon stays <= cap). The genesis-side clamp is the
// authoritative check (a genesis growth-bond with an out-of-bounds coupon or
// growth rate is rejected rather than silently clamped).
func ValidateGrowthBonds(gbs []GrowthBond) error {
seen := make(map[string]bool, len(gbs))
for i, gb := range gbs {
if gb.BondID == "" {
return fmt.Errorf("growth bond [%d]: empty bond-id", i)
}
if seen[gb.BondID] {
return fmt.Errorf("growth bond: duplicate bond-id %q", gb.BondID)
}
seen[gb.BondID] = true
if !knownBondStatus(gb.Status) {
return fmt.Errorf("growth bond %q: unknown bond status %q", gb.BondID, gb.Status)
}
// D-028 clamp on the embedded Bond's coupon.
if gb.CouponBps < CouponFloorBps || gb.CouponBps > CouponCapBps {
return fmt.Errorf("growth bond %q: coupon-bps %d outside [%d, %d] (D-028 clamp at genesis load)",
gb.BondID, gb.CouponBps, CouponFloorBps, CouponCapBps)
}
// G-012 / A-306: the growth-rate must not push the coupon above the
// cap. ClampGrowth(coupon, growth) must equal growth (i.e. the
// requested growth fits within the room-to-cap); otherwise the
// genesis growth-bond is rejected as out-of-bounds.
if ClampGrowth(gb.CouponBps, gb.GrowthRateBps) != gb.GrowthRateBps {
return fmt.Errorf("growth bond %q: growth-rate-bps %d would push coupon-bps %d above cap %d (G-012/A-306 clamp at genesis load)",
gb.BondID, gb.GrowthRateBps, gb.CouponBps, CouponCapBps)
}
}
return nil
}
// ValidateOrders asserts order-ids are present and unique, that each order's
// bond-id is present, that the side is a known OrderSide, and that the status
// is a known OrderStatus (A-212, A-313).
func ValidateOrders(orders []SecondaryOrder) error {
seen := make(map[string]bool, len(orders))
for i, o := range orders {
if o.OrderID == "" {
return fmt.Errorf("order [%d]: empty order-id", i)
}
if seen[o.OrderID] {
return fmt.Errorf("order: duplicate order-id %q", o.OrderID)
}
seen[o.OrderID] = true
if o.BondID == "" {
return fmt.Errorf("order %q: empty bond-id", o.OrderID)
}
if !knownOrderSide(o.Side) {
return fmt.Errorf("order %q: unknown order side %q", o.OrderID, o.Side)
}
if !knownOrderStatus(o.Status) {
return fmt.Errorf("order %q: unknown order status %q", o.OrderID, o.Status)
}
}
return nil
}
// knownOrderSide reports whether s is one of the two OrderSide values.
func knownOrderSide(s OrderSide) bool {
for _, ss := range AllOrderSides() {
if s == ss {
return true
}
}
return false
}
// knownOrderStatus reports whether s is one of the three OrderStatus values.
func knownOrderStatus(s OrderStatus) bool {
for _, ss := range AllOrderStatuses() {
if s == ss {
return true
}
}
return false
}
+11 -167
View File
@@ -113,33 +113,26 @@ type Params struct{}
func DefaultParams() Params { return Params{} }
// GenesisState defines the bond module genesis state (REQ-021, REQ-026).
// Bonds is the top-level set of issued bonds (v0.2). GrowthBonds (v0.3) and
// Orders (v0.3) extend the genesis with growth bonds and secondary-market
// orders. ValidateGenesis enforces bond-id / growth-bond-id / order-id
// uniqueness and the coupon clamp at genesis load (the data-engineer's
// genesis.go holds the schema helpers per G-008).
// GenesisState defines the bond module genesis state (REQ-021). Bonds is the
// top-level set of issued bonds. ValidateGenesis enforces bond-id uniqueness
// and the coupon clamp at genesis load (the data-engineer's genesis.go holds
// the schema helpers per G-008).
type GenesisState struct {
Params Params `json:"params" yaml:"params"`
Bonds []Bond `json:"bonds" yaml:"bonds"`
GrowthBonds []GrowthBond `json:"growth_bonds" yaml:"growth_bonds"`
Orders []SecondaryOrder `json:"orders" yaml:"orders"`
Params Params `json:"params" yaml:"params"`
Bonds []Bond `json:"bonds" yaml:"bonds"`
}
func DefaultGenesisState() *GenesisState {
return &GenesisState{
Params: DefaultParams(),
Bonds: []Bond{},
GrowthBonds: []GrowthBond{},
Orders: []SecondaryOrder{},
Params: DefaultParams(),
Bonds: []Bond{},
}
}
// ValidateGenesis performs ID-uniqueness checks (A-212 upgrade from v0.1
// no-op): rejects duplicate bond-ids / growth-bond-ids / order-ids, and runs
// the coupon clamp at genesis load (each genesis bond's coupon-bps must be
// within [floor, cap]). Delegates to the data-engineer's genesis.go helpers
// (G-008).
// no-op): rejects duplicate bond-ids, and runs the coupon clamp at genesis
// load (each genesis bond's coupon-bps must be within [floor, cap]). Delegates
// to the data-engineer's genesis.go helpers (G-008).
func ValidateGenesis(bz json.RawMessage) error {
var gs GenesisState
if err := json.Unmarshal(bz, &gs); err != nil {
@@ -148,154 +141,5 @@ func ValidateGenesis(bz json.RawMessage) error {
if err := ValidateBonds(gs.Bonds); err != nil {
return fmt.Errorf("bond: %w", err)
}
if err := ValidateGrowthBonds(gs.GrowthBonds); err != nil {
return fmt.Errorf("bond: %w", err)
}
if err := ValidateOrders(gs.Orders); err != nil {
return fmt.Errorf("bond: %w", err)
}
return nil
}
// --- v0.3 extension: GrowthBond + secondary market (REQ-026, D-041, G-012) -------
//
// The v0.3 bond extension adds GrowthBond (a bond whose coupon grows with
// protocol health, vision §17) and secondary-market order types. The 8%/0%
// consts (D-028) are UNCHANGED — the regression firewall in types_test.go
// asserts CouponCapBps==800 and CouponFloorBps==0 are still the v0.2 values.
// Full secondary-market matching is deferred to v0.4.
// OrderSideCount is the locked count of OrderSide enum values (vision §17
// secondary market, A-313). A regression firewall: adding/removing/renaming
// an order side breaks this const's test.
const OrderSideCount = 2
// OrderStatusCount is the locked count of OrderStatus enum values (A-313).
const OrderStatusCount = 3
// OrderSide enumerates the two sides of a secondary-market order (vision §17,
// REQ-026, A-313): Buy (a bid for a bond), Sell (an ask for a bond).
type OrderSide string
const (
OrderBuy OrderSide = "Buy" // bid
OrderSell OrderSide = "Sell" // ask
)
// AllOrderSides returns both OrderSide values in vision-§17 order. Locked-
// const test asserts exactly 2 entries with these names (A-313).
func AllOrderSides() []OrderSide {
return []OrderSide{
OrderBuy,
OrderSell,
}
}
// OrderStatus enumerates the three lifecycle states of a secondary-market
// order (vision §17, REQ-026, A-313): Open (resting on the book), Filled
// (matched and settled), Cancelled (removed by the holder or expired). The
// matching engine is v0.4; v0.3 types the order shape only.
type OrderStatus string
const (
OrderOpen OrderStatus = "Open" // resting on the book
OrderFilled OrderStatus = "Filled" // matched and settled
OrderCancelled OrderStatus = "Cancelled" // removed by the holder or expired
)
// AllOrderStatuses returns all three OrderStatus values in A-313 order.
// Locked-const test asserts exactly 3 entries with these names.
func AllOrderStatuses() []OrderStatus {
return []OrderStatus{
OrderOpen,
OrderFilled,
OrderCancelled,
}
}
// ClampGrowth returns the additional bps a GrowthBond's coupon can grow so
// that the post-growth coupon (currentBps + additional) never exceeds
// CouponCapBps (D-028, A-306, G-012). The "post-growth coupon <= cap"
// invariant holds UNCONDITIONALLY.
//
// G-012 BINDING: ClampGrowth MUST guard currentBps > CouponCapBps BEFORE
// computing cap - current. The naive `min(cap - current, growth)` underflows
// uint32 when current > cap (cap - current wraps to a huge value, then min
// picks growthBps — the invariant is violated). This implementation guards
// explicitly:
// - If currentBps >= CouponCapBps: return 0 (no room to grow; the cap is
// already reached or exceeded — the post-growth coupon cannot grow
// without breaching the cap).
// - Otherwise: return min(CouponCapBps - currentBps, growthBps) (the room-
// to-cap, clamped by the requested growth).
//
// The two G-012-mandated test cases are: currentBps == CouponCapBps (return 0,
// the at-cap boundary) and currentBps > CouponCapBps (return 0, the guard
// against uint32 underflow — NOT a wrapped huge value).
func ClampGrowth(currentBps, growthBps uint32) uint32 {
// G-012 guard: at-or-above cap means no room to grow. This MUST be checked
// before the cap - current subtraction to avoid uint32 underflow when
// currentBps > cap.
if currentBps >= CouponCapBps {
return 0
}
// currentBps < cap is guaranteed here; cap - current does not underflow.
room := CouponCapBps - currentBps
if growthBps < room {
return growthBps
}
return room
}
// GrowthBond is a bond whose coupon grows with protocol health (vision §17,
// REQ-026, D-041, A-306). It embeds the v0.2 Bond (anonymous field) so it
// carries all Bond fields (bond-id, issuer-stand-id, principal-grain,
// coupon-bps, term-days, issued-at, maturity, status) PLUS a GrowthRateBps
// field (the per-period growth rate of the coupon, in bps). The growth rate
// is clamped at issuance so that the post-growth coupon never exceeds
// CouponCapBps (800 bps) — see IssueGrowth, which clamps couponBps via Clamp
// and growthRateBps via ClampGrowth (with currentBps=couponBps).
//
// The 8%/0% consts (D-028) apply to GrowthBonds too: the growth coupon is
// clamped to [0, 800] bps at any point. GrowthBond is in the same package as
// Bond (no G-003 concern for the Clamp/ClampGrowth reuse).
type GrowthBond struct {
Bond // anonymous embed — carries all v0.2 Bond fields
GrowthRateBps uint32 `json:"growth_rate_bps" yaml:"growth_rate_bps"`
}
// IssueGrowth is the GrowthBond issuance stub (REQ-026, D-041). It constructs a
// GrowthBond with the coupon clamped to [CouponFloorBps, CouponCapBps] via
// Clamp, and the growth-rate clamped so that coupon + growth never exceeds
// CouponCapBps via ClampGrowth (with currentBps=couponBps). The returned
// GrowthBond has status BondIssued (inherited from Issue's Bond construction).
// The stub does not persist or enforce referential integrity of issuer-stand-
// id (a v0.4 keeper concern); it only enforces the coupon + growth clamp
// invariants at construction time.
func IssueGrowth(bondID, issuerStandID string, principalGrain int64, couponBps, growthRateBps uint32, termDays uint32, issuedAt, maturity int64) GrowthBond {
clampedCoupon := Clamp(couponBps)
clampedGrowth := ClampGrowth(clampedCoupon, growthRateBps)
return GrowthBond{
Bond: Issue(bondID, issuerStandID, principalGrain, clampedCoupon, termDays, issuedAt, maturity),
GrowthRateBps: clampedGrowth,
}
}
// SecondaryOrder is a secondary-market order on an issued bond (vision §17,
// REQ-026, D-041, A-313). order-id is the unique identifier. bond-id references
// a Bond (by-ID-string ref to a Bond — same package, so this is an in-package
// ID-string ref, not a cross-module G-003 concern). side picks OrderSide
// (Buy/Sell). price-grain is the order price in Grain (fraction of principal,
// expressed in Grain for fixed-point precision). holder-reach-id references
// an x/identity Reach by ID-string (G-003 — use "holder-reach-id" not the
// banned Holder-identity term). status is the OrderStatus. created-at is the
// unix timestamp.
type SecondaryOrder struct {
OrderID string `json:"order_id" yaml:"order_id"`
BondID string `json:"bond_id" yaml:"bond_id"`
Side OrderSide `json:"side" yaml:"side"`
PriceGrain int64 `json:"price_grain" yaml:"price_grain"`
HolderReachID string `json:"holder_reach_id" yaml:"holder_reach_id"`
Status OrderStatus `json:"status" yaml:"status"`
CreatedAt int64 `json:"created_at" yaml:"created_at"`
}
-533
View File
@@ -416,539 +416,6 @@ func TestLexiconNoBannedTermsInBondTestFile(t *testing.T) {
}
}
// --- v0.3 extension: ClampGrowth (G-012 BINDING) ---------------------------------
// ClampGrowth is the G-012 binding decision: it MUST guard currentBps >
// CouponCapBps before computing cap - current, otherwise the uint32
// subtraction underflows (cap - current wraps to a huge value, then min picks
// growthBps — the post-growth coupon invariant is violated). These tests are
// written FIRST (TDD) to confirm the guard works before the function existed;
// they are the highest-severity v0.3 bond firewall.
//
// The five G-012-mandated test cases:
// 1. currentBps == 0 (full growth room)
// 2. currentBps == CouponCapBps (no room, return 0 — the at-cap boundary)
// 3. currentBps > CouponCapBps (the underflow GUARD — return 0, NOT a wrapped
// huge value)
// 4. growthBps larger than room (clamp to room)
// 5. growthBps smaller than room (return growthBps)
// TestClampGrowthCurrentZeroFullRoom asserts case 1: currentBps == 0 leaves
// the full room to the cap; the growth is clamped to min(cap, growth).
func TestClampGrowthCurrentZeroFullRoom(t *testing.T) {
// growth < cap (room) -> return growth
if got := btypes.ClampGrowth(0, 500); got != 500 {
t.Errorf("ClampGrowth(0, 500) = %d, expected 500 (full room, growth < cap)", got)
}
// growth == cap (room) -> return cap (room)
if got := btypes.ClampGrowth(0, btypes.CouponCapBps); got != btypes.CouponCapBps {
t.Errorf("ClampGrowth(0, cap) = %d, expected cap %d (full room, growth == cap)", got, btypes.CouponCapBps)
}
// growth > cap (room) -> return cap (room)
if got := btypes.ClampGrowth(0, 1000); got != btypes.CouponCapBps {
t.Errorf("ClampGrowth(0, 1000) = %d, expected cap %d (full room, growth > cap clamps to cap)", got, btypes.CouponCapBps)
}
}
// TestClampGrowthCurrentAtCapReturnsZero asserts case 2: currentBps ==
// CouponCapBps (the at-cap boundary). There is no room to grow; return 0.
// This is the G-012-mandated at-cap test.
func TestClampGrowthCurrentAtCapReturnsZero(t *testing.T) {
got := btypes.ClampGrowth(btypes.CouponCapBps, 100)
if got != 0 {
t.Errorf("ClampGrowth(cap, 100) = %d, expected 0 (at-cap boundary — no room to grow, G-012)", got)
}
}
// TestClampGrowthCurrentAboveCapReturnsZero asserts case 3: currentBps >
// CouponCapBps (the uint32 underflow GUARD). The naive min(cap-current,
// growth) would underflow uint32 (cap-current wraps to a huge value, then min
// picks growth — invariant violated). ClampGrowth MUST return 0, NOT a
// wrapped huge value. This is the G-012-mandated above-cap test.
func TestClampGrowthCurrentAboveCapReturnsZero(t *testing.T) {
cases := []struct {
current uint32
growth uint32
}{
{uint32(btypes.CouponCapBps) + 1, 100},
{uint32(btypes.CouponCapBps) + 100, 500},
{uint32(btypes.CouponCapBps) + 1000, 50},
{5000, 100},
{100_000, 1},
}
for _, c := range cases {
got := btypes.ClampGrowth(c.current, c.growth)
if got != 0 {
t.Errorf("ClampGrowth(%d, %d) = %d, expected 0 (above-cap GUARD — uint32 underflow must NOT happen, G-012)",
c.current, c.growth, got)
}
}
}
// TestClampGrowthGrowthLargerThanRoomClampsToRoom asserts case 4: growthBps
// larger than the room-to-cap is clamped to the room.
func TestClampGrowthGrowthLargerThanRoomClampsToRoom(t *testing.T) {
// current=500, cap=800, room=300. growth=400 > room -> return 300.
got := btypes.ClampGrowth(500, 400)
if got != 300 {
t.Errorf("ClampGrowth(500, 400) = %d, expected 300 (growth larger than room clamps to room)", got)
}
// current=799, cap=800, room=1. growth=50 > room -> return 1.
got = btypes.ClampGrowth(799, 50)
if got != 1 {
t.Errorf("ClampGrowth(799, 50) = %d, expected 1 (room=1, growth clamps to room)", got)
}
}
// TestClampGrowthGrowthSmallerThanRoomReturnsGrowth asserts case 5: growthBps
// smaller than the room-to-cap is returned unchanged.
func TestClampGrowthGrowthSmallerThanRoomReturnsGrowth(t *testing.T) {
// current=500, cap=800, room=300. growth=200 < room -> return 200.
got := btypes.ClampGrowth(500, 200)
if got != 200 {
t.Errorf("ClampGrowth(500, 200) = %d, expected 200 (growth < room, unchanged)", got)
}
// current=0, cap=800, room=800. growth=100 < room -> return 100.
got = btypes.ClampGrowth(0, 100)
if got != 100 {
t.Errorf("ClampGrowth(0, 100) = %d, expected 100 (growth < room, unchanged)", got)
}
}
// TestClampGrowthInvariantPostGrowthLeCap is the meta-assert: ClampGrowth
// never ADDS growth that would push the post-growth coupon past the cap. The
// invariant is: current + ClampGrowth(current, growth) <= max(current, cap).
// When current <= cap, this means post-growth <= cap (no growth past the
// cap). When current > cap (the G-012 misuse/guard case), ClampGrowth returns
// 0 (no additional growth), so post == current (the already-broken state is
// not made worse; the guard prevents the uint32 underflow from adding a
// wrapped-huge value as growth).
func TestClampGrowthInvariantPostGrowthLeCap(t *testing.T) {
cases := []struct {
current uint32
growth uint32
}{
{0, 0},
{0, 800},
{0, 1000},
{400, 400},
{400, 500},
{799, 1},
{799, 100},
{800, 100}, // at-cap
{801, 100}, // above-cap (guard)
{5000, 1000}, // way above-cap (guard)
}
for _, c := range cases {
got := btypes.ClampGrowth(c.current, c.growth)
post := c.current + got
// The bound: post <= max(current, cap). When current <= cap, this is
// post <= cap (no growth past the cap). When current > cap, this is
// post <= current (no additional growth — the guard returned 0).
upper := c.current
if uint32(btypes.CouponCapBps) > upper {
upper = btypes.CouponCapBps
}
if post > upper {
t.Errorf("ClampGrowth(%d, %d) = %d; post-growth coupon %d > %d (G-012 invariant violated)",
c.current, c.growth, got, post, upper)
}
// Stronger assert for the in-bounds case: when current <= cap, post
// must be <= cap exactly (no growth past the cap).
if c.current <= btypes.CouponCapBps && post > btypes.CouponCapBps {
t.Errorf("ClampGrowth(%d, %d) = %d; post-growth coupon %d > cap %d (in-bounds invariant violated)",
c.current, c.growth, got, post, btypes.CouponCapBps)
}
}
}
// --- D-028 regression: 8%/0% consts unchanged (v0.3 must not change v0.2) -------
// These tests are re-declared here in the v0.3 block to make the regression
// firewall explicit in the extension context. The v0.2 tests above
// (TestCouponCapBpsLockedConst / TestCouponFloorBpsLockedConst) are the
// primary firewall; this block re-asserts in the v0.3 extension context.
// TestD028RegressionCouponCapUnchanged asserts CouponCapBps is still 800
// after the v0.3 GrowthBond extension (D-028 regression firewall).
func TestD028RegressionCouponCapUnchanged(t *testing.T) {
if btypes.CouponCapBps != 800 {
t.Errorf("D-028 regression: CouponCapBps = %d, expected 800 (v0.3 must not change v0.2 const)", btypes.CouponCapBps)
}
}
// TestD028RegressionCouponFloorUnchanged asserts CouponFloorBps is still 0.
func TestD028RegressionCouponFloorUnchanged(t *testing.T) {
if btypes.CouponFloorBps != 0 {
t.Errorf("D-028 regression: CouponFloorBps = %d, expected 0 (v0.3 must not change v0.2 const)", btypes.CouponFloorBps)
}
}
// TestD028RegressionBondStatusCountUnchanged asserts BondStatusCount is still
// 5 (the v0.2 enum is unchanged by the v0.3 extension).
func TestD028RegressionBondStatusCountUnchanged(t *testing.T) {
if btypes.BondStatusCount != 5 {
t.Errorf("D-028 regression: BondStatusCount = %d, expected 5 (v0.2 enum unchanged)", btypes.BondStatusCount)
}
}
// --- OrderSide enum coverage (2) ----------------------------------------------
// TestOrderSideCountLockedConst asserts OrderSideCount == 2 and AllOrderSides()
// returns exactly 2 (A-313). A regression firewall.
func TestOrderSideCountLockedConst(t *testing.T) {
if btypes.OrderSideCount != 2 {
t.Errorf("OrderSideCount = %d, expected 2 (A-313 LOCKED)", btypes.OrderSideCount)
}
all := btypes.AllOrderSides()
if len(all) != 2 {
t.Errorf("AllOrderSides() len = %d, expected 2", len(all))
}
}
// TestAllOrderSidesNames asserts the 2 A-313 names in order with no extras, no
// dups, no renames.
func TestAllOrderSidesNames(t *testing.T) {
want := []string{"Buy", "Sell"}
all := btypes.AllOrderSides()
if len(all) != len(want) {
t.Fatalf("len = %d, want %d", len(all), len(want))
}
seen := map[string]bool{}
for i, s := range all {
if string(s) != want[i] {
t.Errorf("AllOrderSides()[%d] = %q, want %q", i, s, want[i])
}
if seen[string(s)] {
t.Errorf("duplicate OrderSide %q", s)
}
seen[string(s)] = true
}
}
// TestOrderSideValues asserts each named const matches its AllOrderSides entry.
func TestOrderSideValues(t *testing.T) {
if btypes.OrderBuy != "Buy" {
t.Errorf("OrderBuy = %q", btypes.OrderBuy)
}
if btypes.OrderSell != "Sell" {
t.Errorf("OrderSell = %q", btypes.OrderSell)
}
}
// --- OrderStatus enum coverage (3) -------------------------------------------
// TestOrderStatusCountLockedConst asserts OrderStatusCount == 3 and
// AllOrderStatuses() returns exactly 3 (A-313). A regression firewall.
func TestOrderStatusCountLockedConst(t *testing.T) {
if btypes.OrderStatusCount != 3 {
t.Errorf("OrderStatusCount = %d, expected 3 (A-313 LOCKED)", btypes.OrderStatusCount)
}
all := btypes.AllOrderStatuses()
if len(all) != 3 {
t.Errorf("AllOrderStatuses() len = %d, expected 3", len(all))
}
}
// TestAllOrderStatusesNames asserts the 3 A-313 names in order with no extras,
// no dups, no renames.
func TestAllOrderStatusesNames(t *testing.T) {
want := []string{"Open", "Filled", "Cancelled"}
all := btypes.AllOrderStatuses()
if len(all) != len(want) {
t.Fatalf("len = %d, want %d", len(all), len(want))
}
seen := map[string]bool{}
for i, s := range all {
if string(s) != want[i] {
t.Errorf("AllOrderStatuses()[%d] = %q, want %q", i, s, want[i])
}
if seen[string(s)] {
t.Errorf("duplicate OrderStatus %q", s)
}
seen[string(s)] = true
}
}
// TestOrderStatusValues asserts each named const matches its AllOrderStatuses
// entry.
func TestOrderStatusValues(t *testing.T) {
if btypes.OrderOpen != "Open" {
t.Errorf("OrderOpen = %q", btypes.OrderOpen)
}
if btypes.OrderFilled != "Filled" {
t.Errorf("OrderFilled = %q", btypes.OrderFilled)
}
if btypes.OrderCancelled != "Cancelled" {
t.Errorf("OrderCancelled = %q", btypes.OrderCancelled)
}
}
// --- GrowthBond + IssueGrowth --------------------------------------------------
// TestGrowthBondStructFields asserts GrowthBond embeds Bond and adds
// GrowthRateBps.
func TestGrowthBondStructFields(t *testing.T) {
gb := btypes.GrowthBond{
Bond: btypes.Bond{BondID: "gb-1", IssuerStandID: "stand-1", PrincipalGrain: 1_000_000, CouponBps: 500, TermDays: 365, IssuedAt: 1000, Maturity: 1365, Status: btypes.BondIssued},
GrowthRateBps: 200,
}
if gb.BondID != "gb-1" || gb.IssuerStandID != "stand-1" || gb.PrincipalGrain != 1_000_000 ||
gb.CouponBps != 500 || gb.TermDays != 365 || gb.IssuedAt != 1000 || gb.Maturity != 1365 ||
gb.Status != btypes.BondIssued || gb.GrowthRateBps != 200 {
t.Error("GrowthBond fields not set correctly")
}
// The embedded Bond is accessible via the anonymous field.
if gb.Bond.BondID != "gb-1" {
t.Errorf("embedded Bond.BondID = %q", gb.Bond.BondID)
}
}
// TestIssueGrowthConstruction asserts IssueGrowth clamps the coupon via Clamp
// and the growth-rate via ClampGrowth, and returns status BondIssued.
func TestIssueGrowthConstruction(t *testing.T) {
// In-range coupon and growth: both unchanged.
gb := btypes.IssueGrowth("gb-2", "stand-1", 1_000_000, 500, 200, 365, 1000, 1365)
if gb.BondID != "gb-2" {
t.Errorf("BondID = %q", gb.BondID)
}
if gb.CouponBps != 500 {
t.Errorf("CouponBps = %d, expected 500 (in-range, unchanged)", gb.CouponBps)
}
if gb.GrowthRateBps != 200 {
t.Errorf("GrowthRateBps = %d, expected 200 (in-range, growth < room)", gb.GrowthRateBps)
}
if gb.Status != btypes.BondIssued {
t.Errorf("Status = %q, expected BondIssued", gb.Status)
}
}
// TestIssueGrowthClampsAboveCapCoupon asserts IssueGrowth clamps an above-cap
// coupon down to the cap (via Clamp), and the growth-rate is then clamped
// against the clamped coupon (currentBps=cap -> growth returns 0, G-012).
func TestIssueGrowthClampsAboveCapCoupon(t *testing.T) {
gb := btypes.IssueGrowth("gb-3", "stand-1", 1_000_000, 1200, 100, 365, 1000, 1365)
if gb.CouponBps != btypes.CouponCapBps {
t.Errorf("CouponBps = %d, expected cap %d (IssueGrowth must clamp above-cap coupon)", gb.CouponBps, btypes.CouponCapBps)
}
// coupon clamped to cap -> ClampGrowth(cap, 100) == 0 (no room, G-012).
if gb.GrowthRateBps != 0 {
t.Errorf("GrowthRateBps = %d, expected 0 (coupon at cap -> no room, G-012)", gb.GrowthRateBps)
}
}
// TestIssueGrowthClampsGrowthToRoom asserts IssueGrowth clamps a growth-rate
// that would push the coupon above the cap down to the room-to-cap.
func TestIssueGrowthClampsGrowthToRoom(t *testing.T) {
// coupon=500, cap=800, room=300. growth=400 -> clamped to 300.
gb := btypes.IssueGrowth("gb-4", "stand-1", 1_000_000, 500, 400, 365, 1000, 1365)
if gb.CouponBps != 500 {
t.Errorf("CouponBps = %d, expected 500", gb.CouponBps)
}
if gb.GrowthRateBps != 300 {
t.Errorf("GrowthRateBps = %d, expected 300 (growth clamped to room, G-012)", gb.GrowthRateBps)
}
// post-growth coupon: 500 + 300 = 800 == cap (invariant holds).
if gb.CouponBps+gb.GrowthRateBps > btypes.CouponCapBps {
t.Errorf("post-growth coupon %d > cap %d (G-012 invariant)", gb.CouponBps+gb.GrowthRateBps, btypes.CouponCapBps)
}
}
// --- SecondaryOrder struct ----------------------------------------------------
// TestSecondaryOrderStructFields asserts SecondaryOrder carries order-id,
// bond-id (by-ID-string ref to a Bond — in-package), side, price-grain,
// holder-reach-id (by-ID-string ref to x/identity — G-003), status, created-at.
func TestSecondaryOrderStructFields(t *testing.T) {
o := btypes.SecondaryOrder{
OrderID: "order-1",
BondID: "bond-1",
Side: btypes.OrderBuy,
PriceGrain: 950_000,
HolderReachID: "reach-holder-1",
Status: btypes.OrderOpen,
CreatedAt: 5000,
}
if o.OrderID != "order-1" || o.BondID != "bond-1" || o.Side != btypes.OrderBuy ||
o.PriceGrain != 950_000 || o.HolderReachID != "reach-holder-1" ||
o.Status != btypes.OrderOpen || o.CreatedAt != 5000 {
t.Error("SecondaryOrder fields not set correctly")
}
}
// TestSecondaryOrderBondIDIsString asserts bond-id is string-typed (in-package
// by-ID-string ref to a Bond — same package, not a G-003 cross-module import).
func TestSecondaryOrderBondIDIsString(t *testing.T) {
o := btypes.SecondaryOrder{BondID: "bond-xyz"}
if o.BondID != "bond-xyz" {
t.Errorf("BondID = %q", o.BondID)
}
}
// TestSecondaryOrderHolderReachIDIsString asserts holder-reach-id is
// string-typed (G-003 by-ID-string ref to x/identity Reach — no struct import).
func TestSecondaryOrderHolderReachIDIsString(t *testing.T) {
o := btypes.SecondaryOrder{HolderReachID: "reach-abc"}
if o.HolderReachID != "reach-abc" {
t.Errorf("HolderReachID = %q", o.HolderReachID)
}
}
// --- Genesis v0.3 extension: GrowthBonds + Orders -----------------------------
// TestDefaultGenesisStateV3Empty asserts DefaultGenesisState returns non-nil
// empty slices for the v0.3 GrowthBonds and Orders sets.
func TestDefaultGenesisStateV3Empty(t *testing.T) {
gs := btypes.DefaultGenesisState()
if gs.GrowthBonds == nil || len(gs.GrowthBonds) != 0 {
t.Errorf("Default GrowthBonds should be non-nil empty slice; got len=%d nil=%v", len(gs.GrowthBonds), gs.GrowthBonds == nil)
}
if gs.Orders == nil || len(gs.Orders) != 0 {
t.Errorf("Default Orders should be non-nil empty slice; got len=%d nil=%v", len(gs.Orders), gs.Orders == nil)
}
}
// TestValidateGenesisRejectsDupGrowthBondIDs asserts A-212: duplicate
// growth-bond-ids are rejected.
func TestValidateGenesisRejectsDupGrowthBondIDs(t *testing.T) {
gs := btypes.GenesisState{
GrowthBonds: []btypes.GrowthBond{
{Bond: btypes.Bond{BondID: "gb1", IssuerStandID: "s1", CouponBps: 500, Status: btypes.BondIssued}, GrowthRateBps: 100},
{Bond: btypes.Bond{BondID: "gb1", IssuerStandID: "s2", CouponBps: 200, Status: btypes.BondActive}, GrowthRateBps: 50}, // dup
},
}
bz, _ := json.Marshal(gs)
if err := btypes.ValidateGenesis(bz); err == nil {
t.Error("ValidateGenesis should reject duplicate growth-bond-ids")
}
}
// TestValidateGenesisRejectsGrowthBondCouponAboveCap asserts a genesis
// GrowthBond with coupon-bps above the cap is rejected (D-028 at genesis).
func TestValidateGenesisRejectsGrowthBondCouponAboveCap(t *testing.T) {
gs := btypes.GenesisState{
GrowthBonds: []btypes.GrowthBond{
{Bond: btypes.Bond{BondID: "gb1", IssuerStandID: "s1", CouponBps: 900, Status: btypes.BondIssued}, GrowthRateBps: 0},
},
}
bz, _ := json.Marshal(gs)
if err := btypes.ValidateGenesis(bz); err == nil {
t.Error("ValidateGenesis should reject growth-bond coupon above cap (D-028)")
}
}
// TestValidateGenesisRejectsGrowthBondGrowthAboveRoom asserts a genesis
// GrowthBond whose growth-rate would push the coupon above the cap is
// rejected (G-012 / A-306 at genesis).
func TestValidateGenesisRejectsGrowthBondGrowthAboveRoom(t *testing.T) {
gs := btypes.GenesisState{
GrowthBonds: []btypes.GrowthBond{
// coupon=500, cap=800, room=300. growth=400 -> would push to 900 > cap.
{Bond: btypes.Bond{BondID: "gb1", IssuerStandID: "s1", CouponBps: 500, Status: btypes.BondIssued}, GrowthRateBps: 400},
},
}
bz, _ := json.Marshal(gs)
if err := btypes.ValidateGenesis(bz); err == nil {
t.Error("ValidateGenesis should reject growth-bond growth-rate above room (G-012/A-306)")
}
}
// TestValidateGenesisRejectsDupOrderIDs asserts A-212: duplicate order-ids are
// rejected.
func TestValidateGenesisRejectsDupOrderIDs(t *testing.T) {
gs := btypes.GenesisState{
Orders: []btypes.SecondaryOrder{
{OrderID: "o1", BondID: "b1", Side: btypes.OrderBuy, Status: btypes.OrderOpen},
{OrderID: "o1", BondID: "b2", Side: btypes.OrderSell, Status: btypes.OrderOpen}, // dup
},
}
bz, _ := json.Marshal(gs)
if err := btypes.ValidateGenesis(bz); err == nil {
t.Error("ValidateGenesis should reject duplicate order-ids")
}
}
// TestValidateGenesisRejectsEmptyOrderBondID asserts an order with an empty
// bond-id is rejected.
func TestValidateGenesisRejectsEmptyOrderBondID(t *testing.T) {
gs := btypes.GenesisState{
Orders: []btypes.SecondaryOrder{{OrderID: "o1", BondID: "", Side: btypes.OrderBuy, Status: btypes.OrderOpen}},
}
bz, _ := json.Marshal(gs)
if err := btypes.ValidateGenesis(bz); err == nil {
t.Error("ValidateGenesis should reject empty order bond-id")
}
}
// TestValidateGenesisRejectsUnknownOrderSide asserts an unknown OrderSide is
// rejected.
func TestValidateGenesisRejectsUnknownOrderSide(t *testing.T) {
gs := btypes.GenesisState{
Orders: []btypes.SecondaryOrder{{OrderID: "o1", BondID: "b1", Side: btypes.OrderSide("Bogus"), Status: btypes.OrderOpen}},
}
bz, _ := json.Marshal(gs)
if err := btypes.ValidateGenesis(bz); err == nil {
t.Error("ValidateGenesis should reject unknown order side")
}
}
// TestValidateGenesisRejectsUnknownOrderStatus asserts an unknown OrderStatus
// is rejected.
func TestValidateGenesisRejectsUnknownOrderStatus(t *testing.T) {
gs := btypes.GenesisState{
Orders: []btypes.SecondaryOrder{{OrderID: "o1", BondID: "b1", Side: btypes.OrderBuy, Status: btypes.OrderStatus("Bogus")}},
}
bz, _ := json.Marshal(gs)
if err := btypes.ValidateGenesis(bz); err == nil {
t.Error("ValidateGenesis should reject unknown order status")
}
}
// TestValidateGenesisAcceptsCleanV3 asserts a clean v0.3 genesis (bonds +
// growth bonds + orders) validates.
func TestValidateGenesisAcceptsCleanV3(t *testing.T) {
gs := btypes.GenesisState{
Bonds: []btypes.Bond{
{BondID: "b1", IssuerStandID: "s1", CouponBps: 100, Status: btypes.BondIssued},
},
GrowthBonds: []btypes.GrowthBond{
{Bond: btypes.Bond{BondID: "gb1", IssuerStandID: "s1", CouponBps: 500, Status: btypes.BondIssued}, GrowthRateBps: 200},
{Bond: btypes.Bond{BondID: "gb2", IssuerStandID: "s1", CouponBps: 800, Status: btypes.BondActive}, GrowthRateBps: 0},
},
Orders: []btypes.SecondaryOrder{
{OrderID: "o1", BondID: "b1", Side: btypes.OrderBuy, PriceGrain: 950_000, HolderReachID: "r1", Status: btypes.OrderOpen, CreatedAt: 1000},
{OrderID: "o2", BondID: "gb1", Side: btypes.OrderSell, PriceGrain: 1_050_000, HolderReachID: "r2", Status: btypes.OrderFilled, CreatedAt: 2000},
},
}
bz, _ := json.Marshal(gs)
if err := btypes.ValidateGenesis(bz); err != nil {
t.Errorf("ValidateGenesis should accept clean v0.3 genesis, got: %v", err)
}
}
// TestValidateGrowthBondsAcceptsClean asserts the data-engineer's
// ValidateGrowthBonds helper accepts a clean set.
func TestValidateGrowthBondsAcceptsClean(t *testing.T) {
gbs := []btypes.GrowthBond{
{Bond: btypes.Bond{BondID: "gb1", CouponBps: 0, Status: btypes.BondIssued}, GrowthRateBps: 800},
{Bond: btypes.Bond{BondID: "gb2", CouponBps: 500, Status: btypes.BondActive}, GrowthRateBps: 300},
{Bond: btypes.Bond{BondID: "gb3", CouponBps: 800, Status: btypes.BondMatured}, GrowthRateBps: 0},
}
if err := btypes.ValidateGrowthBonds(gbs); err != nil {
t.Errorf("ValidateGrowthBonds should accept clean set; got: %v", err)
}
}
// TestValidateOrdersAcceptsClean asserts ValidateOrders accepts a clean set.
func TestValidateOrdersAcceptsClean(t *testing.T) {
orders := []btypes.SecondaryOrder{
{OrderID: "o1", BondID: "b1", Side: btypes.OrderBuy, Status: btypes.OrderOpen},
{OrderID: "o2", BondID: "b1", Side: btypes.OrderSell, Status: btypes.OrderFilled},
{OrderID: "o3", BondID: "b2", Side: btypes.OrderBuy, Status: btypes.OrderCancelled},
}
if err := btypes.ValidateOrders(orders); err != nil {
t.Errorf("ValidateOrders should accept clean set; got: %v", err)
}
}
// packageDir resolves a Go import path to its filesystem directory by
// walking up from this test file (v0.2 skeleton has zero external deps).
func packageDir(t *testing.T, importPath string) string {
-48
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@@ -1,48 +0,0 @@
package types
import "fmt"
// genesis.go holds the data-engineer's genesis schema helpers for the
// bridge module (G-008 split). ValidateGenesis in types.go composes these
// helpers; the security-engineer's test assertions live in types_test.go.
//
// The Bridge genesis schema has one top-level set: Routes (the bridge
// routes). The invariants enforced at genesis load are (1) bridge-id
// uniqueness, (2) bridge-id non-empty, and (3) status is a known
// BridgeStatus. The route's l2-chain and watcher-quorum-id are by-ID-string
// refs (G-003) and are NOT referentially checked at genesis (the referenced
// x/satellite and x/watcher state is in separate modules; cross-module
// referential integrity is a v0.4 keeper concern, not a v0.3 skeleton
// concern per A-304).
// ValidateRoutes asserts bridge-ids are present and unique, and that each
// route's status is a known BridgeStatus. ValidateRoutes is the
// data-engineer's schema validator, composed by ValidateGenesis in
// types.go.
func ValidateRoutes(routes []BridgeRoute) error {
seen := make(map[string]bool, len(routes))
for i, r := range routes {
if r.BridgeID == "" {
return fmt.Errorf("bridge [%d]: empty bridge-id", i)
}
if seen[r.BridgeID] {
return fmt.Errorf("bridge: duplicate bridge-id %q", r.BridgeID)
}
seen[r.BridgeID] = true
if !knownBridgeStatus(r.Status) {
return fmt.Errorf("bridge %q: unknown bridge status %q", r.BridgeID, r.Status)
}
}
return nil
}
// knownBridgeStatus reports whether s is one of the four BridgeStatus
// values.
func knownBridgeStatus(s BridgeStatus) bool {
for _, ss := range AllBridgeStatuses() {
if s == ss {
return true
}
}
return false
}
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package types
import (
"encoding/json"
"fmt"
)
const (
ModuleName = "bridge"
StoreKey = ModuleName
RouterKey = ModuleName
QuerierRoute = ModuleName
// BridgeStatusCount is the locked count of BridgeStatus enum values
// (vision §7, REQ-010, D-036). Four route-level lifecycle states:
// Pending, Attested, Active, Closed. A regression firewall:
// adding/removing/renaming a status breaks this const's test.
BridgeStatusCount = 4
)
// BridgeStatus enumerates the route-level lifecycle of an L2↔L1 bridge
// (vision §7, REQ-010, D-036). The four-state lifecycle sits above the
// ICS-20 channel handshake (x/satellite ChannelStatus): a bridge route is
// Pending until Watcher attestation confirms it (Attested), then it
// becomes Active for transfers, and is Closed when the route is retired.
// The Attested state references a Watcher quorum by ID-string (the
// attestation is a by-ID-string field, not a struct import — G-003).
type BridgeStatus string
const (
BridgePending BridgeStatus = "Pending" // route declared, awaiting attestation
BridgeAttested BridgeStatus = "Attested" // Watcher quorum confirmed the route
BridgeActive BridgeStatus = "Active" // route open for transfers
BridgeClosed BridgeStatus = "Closed" // route retired
)
// AllBridgeStatuses returns all four BridgeStatus values in vision §7
// route-lifecycle order. Locked-const test asserts exactly 4 entries.
func AllBridgeStatuses() []BridgeStatus {
return []BridgeStatus{
BridgePending,
BridgeAttested,
BridgeActive,
BridgeClosed,
}
}
// BridgeRoute is a single L2↔L1 bridge route (REQ-010, D-036). The route
// is the higher-level abstraction over the v0.2 satellite IBC transfer
// channel: it carries the route-level status lifecycle and the Watcher
// attestation ref, while the underlying channel handshake lives in
// x/satellite. All cross-module references are by-ID-string per G-003:
//
// - bridge-id is this route's unique identifier.
// - l2-chain references an x/satellite L2Chain by ID-string (the L2
// satellite chain this route bridges to/from). No struct import of
// x/satellite (G-003).
// - watcher-quorum-id references an x/watcher quorum by ID-string; it is
// set when status transitions to Attested (the Watcher 6-of-9 quorum
// attests the route per vision §7). No struct import of x/watcher.
//
// status is the route-level lifecycle (BridgeStatus), distinct from the
// channel-level handshake (x/satellite ChannelStatus).
type BridgeRoute struct {
BridgeID string `json:"bridge_id" yaml:"bridge_id"`
L2Chain string `json:"l2_chain" yaml:"l2_chain"`
WatcherQuorumID string `json:"watcher_quorum_id" yaml:"watcher_quorum_id"`
Status BridgeStatus `json:"status" yaml:"status"`
}
// Params for the bridge module (skeleton — no tunables in v0.3).
type Params struct{}
func DefaultParams() Params { return Params{} }
// GenesisState defines the bridge module genesis state (REQ-010). Routes
// is the set of bridge routes. ValidateGenesis enforces bridge-id
// uniqueness and status validity. The data-engineer's genesis.go holds
// the schema helpers (G-008 split).
type GenesisState struct {
Params Params `json:"params" yaml:"params"`
Routes []BridgeRoute `json:"routes" yaml:"routes"`
}
func DefaultGenesisState() *GenesisState {
return &GenesisState{
Params: DefaultParams(),
Routes: []BridgeRoute{},
}
}
// ValidateGenesis performs ID-uniqueness checks (A-212 upgrade from v0.1
// no-op): rejects duplicate bridge-ids and unknown statuses. Delegates to
// the data-engineer's genesis.go helpers (G-008).
func ValidateGenesis(bz json.RawMessage) error {
var gs GenesisState
if err := json.Unmarshal(bz, &gs); err != nil {
return fmt.Errorf("bridge: invalid genesis: %w", err)
}
if err := ValidateRoutes(gs.Routes); err != nil {
return fmt.Errorf("bridge: %w", err)
}
return nil
}
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package types_test
import (
"encoding/json"
"os"
"path/filepath"
"runtime"
"strings"
"testing"
"github.com/oy/openyield/lexicon"
btypes "github.com/oy/openyield/x/bridge/types"
)
// --- BridgeStatus enum (exactly 4) ---------------------------------------------
// TestBridgeStatusCountLockedConst asserts BridgeStatusCount == 4 and
// AllBridgeStatuses() returns exactly 4 (vision §7, REQ-010, D-036). A
// regression firewall: adding/removing/renaming a status breaks this test.
func TestBridgeStatusCountLockedConst(t *testing.T) {
if btypes.BridgeStatusCount != 4 {
t.Errorf("BridgeStatusCount = %d, expected 4 (vision §7 LOCKED)", btypes.BridgeStatusCount)
}
all := btypes.AllBridgeStatuses()
if len(all) != 4 {
t.Errorf("AllBridgeStatuses() len = %d, expected 4", len(all))
}
}
// TestAllBridgeStatusesNames asserts the 4 vision §7 route-lifecycle names
// in order with no extras, no dups, no renames (Pending, Attested, Active,
// Closed).
func TestAllBridgeStatusesNames(t *testing.T) {
want := []string{"Pending", "Attested", "Active", "Closed"}
all := btypes.AllBridgeStatuses()
if len(all) != len(want) {
t.Fatalf("len = %d, want %d", len(all), len(want))
}
seen := map[string]bool{}
for i, s := range all {
if string(s) != want[i] {
t.Errorf("AllBridgeStatuses()[%d] = %q, want %q", i, s, want[i])
}
if seen[string(s)] {
t.Errorf("duplicate BridgeStatus %q", s)
}
seen[string(s)] = true
}
}
// TestBridgeStatusValues asserts each named const matches its AllBridgeStatuses
// entry.
func TestBridgeStatusValues(t *testing.T) {
if btypes.BridgePending != "Pending" {
t.Errorf("BridgePending = %q", btypes.BridgePending)
}
if btypes.BridgeAttested != "Attested" {
t.Errorf("BridgeAttested = %q", btypes.BridgeAttested)
}
if btypes.BridgeActive != "Active" {
t.Errorf("BridgeActive = %q", btypes.BridgeActive)
}
if btypes.BridgeClosed != "Closed" {
t.Errorf("BridgeClosed = %q", btypes.BridgeClosed)
}
}
// --- BridgeRoute struct (by-ID-string refs — G-003) -----------------------------
// TestBridgeRouteStructFields asserts BridgeRoute carries all required
// fields including the by-ID-string refs to x/satellite (l2-chain) and
// x/watcher (watcher-quorum-id) per G-003. No struct imports of either
// referenced module (the G-003 import-invariant test enforces this).
func TestBridgeRouteStructFields(t *testing.T) {
r := btypes.BridgeRoute{
BridgeID: "bridge-1",
L2Chain: "Polygon", // by-ID-string ref to x/satellite L2Chain (G-003)
WatcherQuorumID: "quorum-1",
Status: btypes.BridgeActive,
}
if r.BridgeID != "bridge-1" {
t.Errorf("BridgeID = %q", r.BridgeID)
}
if r.L2Chain != "Polygon" {
t.Errorf("L2Chain = %q", r.L2Chain)
}
if r.WatcherQuorumID != "quorum-1" {
t.Errorf("WatcherQuorumID = %q", r.WatcherQuorumID)
}
if r.Status != btypes.BridgeActive {
t.Errorf("Status = %q", r.Status)
}
}
// TestBridgeRouteL2ChainIsString asserts the L2Chain field is an opaque
// string (by-ID-string ref — G-003), NOT a typed enum import from
// x/satellite. This locks the by-ID-string invariant at the type level.
func TestBridgeRouteL2ChainIsString(t *testing.T) {
r := btypes.BridgeRoute{L2Chain: "Polygon"}
// The field must be assignable from a plain string (no satellite.L2Chain
// type needed).
r.L2Chain = "Base"
if r.L2Chain != "Base" {
t.Errorf("L2Chain = %q, want %q (must be plain string)", r.L2Chain, "Base")
}
}
// TestBridgeRouteWatcherQuorumIDIsString asserts the WatcherQuorumID field
// is an opaque string (by-ID-string ref to x/watcher — G-003).
func TestBridgeRouteWatcherQuorumIDIsString(t *testing.T) {
r := btypes.BridgeRoute{WatcherQuorumID: "quorum-9"}
if r.WatcherQuorumID != "quorum-9" {
t.Errorf("WatcherQuorumID = %q", r.WatcherQuorumID)
}
}
// --- Genesis tests (A-212) ------------------------------------------------------
// TestDefaultGenesisStateEmpty asserts DefaultGenesisState returns a non-nil
// empty slice for Routes.
func TestDefaultGenesisStateEmpty(t *testing.T) {
gs := btypes.DefaultGenesisState()
if gs == nil {
t.Fatal("DefaultGenesisState returned nil")
}
if gs.Routes == nil || len(gs.Routes) != 0 {
t.Errorf("Default Routes should be non-nil empty slice; got len=%d nil=%v", len(gs.Routes), gs.Routes == nil)
}
}
// TestValidateGenesisRejectsDupBridgeIDs asserts A-212: duplicate bridge-ids
// are rejected.
func TestValidateGenesisRejectsDupBridgeIDs(t *testing.T) {
gs := btypes.GenesisState{
Routes: []btypes.BridgeRoute{
{BridgeID: "b1", L2Chain: "Polygon", Status: btypes.BridgePending},
{BridgeID: "b1", L2Chain: "Base", Status: btypes.BridgeActive}, // dup
},
}
bz, _ := json.Marshal(gs)
if err := btypes.ValidateGenesis(bz); err == nil {
t.Error("ValidateGenesis should reject duplicate bridge-ids")
}
}
// TestValidateGenesisRejectsEmptyBridgeID asserts empty bridge-id is rejected.
func TestValidateGenesisRejectsEmptyBridgeID(t *testing.T) {
gs := btypes.GenesisState{
Routes: []btypes.BridgeRoute{{BridgeID: "", L2Chain: "Polygon", Status: btypes.BridgePending}},
}
bz, _ := json.Marshal(gs)
if err := btypes.ValidateGenesis(bz); err == nil {
t.Error("ValidateGenesis should reject empty bridge-id")
}
}
// TestValidateGenesisRejectsUnknownStatus asserts an unknown BridgeStatus
// is rejected.
func TestValidateGenesisRejectsUnknownStatus(t *testing.T) {
gs := btypes.GenesisState{
Routes: []btypes.BridgeRoute{{BridgeID: "b1", L2Chain: "Polygon", Status: btypes.BridgeStatus("Bogus")}},
}
bz, _ := json.Marshal(gs)
if err := btypes.ValidateGenesis(bz); err == nil {
t.Error("ValidateGenesis should reject unknown bridge status")
}
}
// TestValidateGenesisRejectsBadJSON asserts malformed JSON is rejected.
func TestValidateGenesisRejectsBadJSON(t *testing.T) {
if err := btypes.ValidateGenesis(json.RawMessage(`{not json`)); err == nil {
t.Error("ValidateGenesis should reject malformed JSON")
}
}
// TestValidateGenesisAcceptsClean asserts a clean genesis validates.
func TestValidateGenesisAcceptsClean(t *testing.T) {
gs := btypes.GenesisState{
Routes: []btypes.BridgeRoute{
{BridgeID: "b1", L2Chain: "Polygon", WatcherQuorumID: "q1", Status: btypes.BridgeActive},
{BridgeID: "b2", L2Chain: "Base", Status: btypes.BridgePending},
},
}
bz, _ := json.Marshal(gs)
if err := btypes.ValidateGenesis(bz); err != nil {
t.Errorf("ValidateGenesis should accept clean genesis, got: %v", err)
}
}
// --- Module consts -------------------------------------------------------------
// TestModuleConsts asserts the four Cosmos-convention module consts.
func TestModuleConsts(t *testing.T) {
if btypes.ModuleName != "bridge" {
t.Errorf("ModuleName = %q", btypes.ModuleName)
}
if btypes.StoreKey != "bridge" {
t.Errorf("StoreKey = %q", btypes.StoreKey)
}
if btypes.RouterKey != "bridge" {
t.Errorf("RouterKey = %q", btypes.RouterKey)
}
if btypes.QuerierRoute != "bridge" {
t.Errorf("QuerierRoute = %q", btypes.QuerierRoute)
}
}
// TestDefaultParams asserts DefaultParams returns a zero-value Params.
func TestDefaultParams(t *testing.T) {
_ = btypes.DefaultParams() // no panics
}
// --- Lexicon assertion (REQ-012) -------------------------------------------------
//
// The bridge module must avoid the banned financial holder terms (the
// lexicon firewall's banned list). Use "Holder"/"Reach" instead. The lexicon
// helpers are used here — no banned literals are inlined.
// TestLexiconNoBannedTermsInBridgePackage scans every non-test .go file in
// the bridge/types package directory for the banned terms (case-insensitive).
// Production files only — the test file references banned terms via the
// lexicon package helpers (standard lexicon-test bootstrapping pattern).
func TestLexiconNoBannedTermsInBridgePackage(t *testing.T) {
pkgDir := packageDir(t, "github.com/oy/openyield/x/bridge/types")
files, err := filepath.Glob(filepath.Join(pkgDir, "*.go"))
if err != nil {
t.Fatalf("glob: %v", err)
}
prodFiles := []string{}
for _, f := range files {
if strings.HasSuffix(f, "_test.go") {
continue
}
prodFiles = append(prodFiles, f)
}
if len(prodFiles) == 0 {
t.Fatal("no production .go files found in bridge/types")
}
for _, f := range prodFiles {
bz, err := os.ReadFile(f)
if err != nil {
t.Fatalf("read %s: %v", f, err)
}
if found, ok := lexicon.FindBannedTerm(string(bz)); ok {
t.Errorf("%s: banned term %q (REQ-012 lexicon firewall — use Holder/Reach, not banned financial terms)", filepath.Base(f), found)
}
}
}
// TestLexiconNoBannedTermsInBridgeTestFile asserts this test file itself
// does not contain any banned term as a literal.
func TestLexiconNoBannedTermsInBridgeTestFile(t *testing.T) {
_, thisFile, _, ok := runtime.Caller(0)
if !ok {
t.Fatal("runtime.Caller failed")
}
bz, err := os.ReadFile(thisFile)
if err != nil {
t.Fatalf("read self: %v", err)
}
if found, ok := lexicon.FindBannedTerm(string(bz)); ok {
t.Fatalf("bridge test file contains banned term %q — use lexicon helpers, not literals", found)
}
}
// packageDir resolves a Go import path to its filesystem directory by
// walking up from this test file (v0.3 skeleton has zero external deps).
func packageDir(t *testing.T, importPath string) string {
t.Helper()
_, file, _, ok := runtime.Caller(0)
if !ok {
t.Fatal("runtime.Caller failed")
}
// file = .../oy/x/bridge/types/types_test.go -> repoRoot = .../oy (4 dirs up)
repoRoot := filepath.Dir(filepath.Dir(filepath.Dir(filepath.Dir(file))))
rel := strings.TrimPrefix(importPath, "github.com/oy/openyield/")
return filepath.Join(repoRoot, rel)
}
-66
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@@ -1,66 +0,0 @@
package types
import "fmt"
// genesis.go holds the data-engineer's genesis schema helpers for the
// exit module (G-008 split). ValidateGenesis in types.go composes these
// helpers; the security-engineer's test assertions live in types_test.go.
//
// The Exit genesis schema has two top-level sets: Routes (exit routes) and
// Swaps (DEX swaps). The invariants enforced at genesis load are (1)
// route-id uniqueness, (2) swap-id uniqueness, and (3) status validity.
// The route's bridge-route-id is a by-ID-string ref (G-003) and is NOT
// referentially checked at genesis (the referenced x/bridge state is in a
// separate module; cross-module referential integrity is a v0.4 keeper
// concern, not a v0.3 skeleton concern per A-308).
// ValidateRoutes asserts route-ids are present and unique, and that each
// route's status is a known ExitStatus. ValidateRoutes is the
// data-engineer's schema validator, composed by ValidateGenesis in
// types.go.
func ValidateRoutes(routes []ExitRoute) error {
seen := make(map[string]bool, len(routes))
for i, r := range routes {
if r.RouteID == "" {
return fmt.Errorf("exit [%d]: empty route-id", i)
}
if seen[r.RouteID] {
return fmt.Errorf("exit: duplicate route-id %q", r.RouteID)
}
seen[r.RouteID] = true
if !knownExitStatus(r.Status) {
return fmt.Errorf("exit %q: unknown exit status %q", r.RouteID, r.Status)
}
}
return nil
}
// ValidateSwaps asserts swap-ids are present and unique, and that each
// swap's status is a known ExitStatus. The venue is an opaque string
// (A-308) and is not validated against a locked enum.
func ValidateSwaps(swaps []DEXSwap) error {
seen := make(map[string]bool, len(swaps))
for i, s := range swaps {
if s.SwapID == "" {
return fmt.Errorf("exit [%d]: empty swap-id", i)
}
if seen[s.SwapID] {
return fmt.Errorf("exit: duplicate swap-id %q", s.SwapID)
}
seen[s.SwapID] = true
if !knownExitStatus(s.Status) {
return fmt.Errorf("exit swap %q: unknown exit status %q", s.SwapID, s.Status)
}
}
return nil
}
// knownExitStatus reports whether s is one of the five ExitStatus values.
func knownExitStatus(s ExitStatus) bool {
for _, ss := range AllExitStatuses() {
if s == ss {
return true
}
}
return false
}
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@@ -1,122 +0,0 @@
package types
import (
"encoding/json"
"fmt"
)
const (
ModuleName = "exit"
StoreKey = ModuleName
RouterKey = ModuleName
QuerierRoute = ModuleName
// ExitStatusCount is the locked count of ExitStatus enum values
// (vision §7, REQ-010, D-036). Five exit lifecycle states: Proposed,
// InProgress, Settled, Failed, Refunded. A regression firewall:
// adding/removing/renaming a status breaks this const's test.
ExitStatusCount = 5
)
// ExitStatus enumerates the lifecycle of a Layer-3 exit (vision §7,
// REQ-010, D-036). The five-state lifecycle covers both successful exits
// (Proposed → InProgress → Settled) and the failure/recovery paths
// (Failed → Refunded). Refunded is the terminal recovery state when an
// exit fails and the holder is made whole.
type ExitStatus string
const (
ExitProposed ExitStatus = "Proposed" // exit declared, not yet executing
ExitInProgress ExitStatus = "InProgress" // exit executing (swap/bridge hop)
ExitSettled ExitStatus = "Settled" // exit completed, holder paid out
ExitFailed ExitStatus = "Failed" // exit failed (slippage/timeout)
ExitRefunded ExitStatus = "Refunded" // failed exit refunded to holder
)
// AllExitStatuses returns all five ExitStatus values in vision §7 lifecycle
// order. Locked-const test asserts exactly 5 entries.
func AllExitStatuses() []ExitStatus {
return []ExitStatus{
ExitProposed,
ExitInProgress,
ExitSettled,
ExitFailed,
ExitRefunded,
}
}
// ExitRoute is a Holder-initiated exit route (REQ-010, D-036, A-308). The
// route describes a holder's intent to exit the mesh via a DEX swap and
// (optionally) a cross-chain bridge hop. All cross-module references are
// by-ID-string per G-003:
//
// - route-id is this route's unique identifier.
// - bridge-route-id references an x/bridge BridgeRoute by ID-string
// (A-308, G-003). It is optional (empty for same-chain exits) and
// present for cross-chain exits. No struct import of x/bridge.
// - status is the exit lifecycle (ExitStatus).
//
// The bridge-route-id is the P4 intra-phase dependency edge (x/bridge is
// authored first within P4; x/exit references it by ID-string only).
type ExitRoute struct {
RouteID string `json:"route_id" yaml:"route_id"`
BridgeRouteID string `json:"bridge_route_id" yaml:"bridge_route_id"`
Status ExitStatus `json:"status" yaml:"status"`
}
// DEXSwap is a single DEX swap executed as part of an exit route (REQ-010,
// D-036, A-308). The venue is an OPAQUE string (e.g. "uniswap-v3", "oy-dex")
// — NOT a locked enum. A-308: venues are operational, not protocol-locked;
// locking an enum now risks churn (uniswap-v3/v4, oy-dex, etc. change over
// time). The skeleton keeps the venue as a free-form string so the type
// shape is stable across venue additions. status reuses ExitStatus (a swap
// shares the exit lifecycle: Proposed → InProgress → Settled/Failed).
//
// - swap-id is this swap's unique identifier.
// - venue is the opaque DEX venue string (A-308 — not a locked enum).
// - status is the swap lifecycle (ExitStatus).
type DEXSwap struct {
SwapID string `json:"swap_id" yaml:"swap_id"`
Venue string `json:"venue" yaml:"venue"`
Status ExitStatus `json:"status" yaml:"status"`
}
// Params for the exit module (skeleton — no tunables in v0.3).
type Params struct{}
func DefaultParams() Params { return Params{} }
// GenesisState defines the exit module genesis state (REQ-010). Routes is
// the set of exit routes; Swaps is the set of DEX swaps. ValidateGenesis
// enforces route-id and swap-id uniqueness. The data-engineer's genesis.go
// holds the schema helpers (G-008 split).
type GenesisState struct {
Params Params `json:"params" yaml:"params"`
Routes []ExitRoute `json:"routes" yaml:"routes"`
Swaps []DEXSwap `json:"swaps" yaml:"swaps"`
}
func DefaultGenesisState() *GenesisState {
return &GenesisState{
Params: DefaultParams(),
Routes: []ExitRoute{},
Swaps: []DEXSwap{},
}
}
// ValidateGenesis performs ID-uniqueness checks (A-212 upgrade from v0.1
// no-op): rejects duplicate route-ids and swap-ids. Delegates to the
// data-engineer's genesis.go helpers (G-008).
func ValidateGenesis(bz json.RawMessage) error {
var gs GenesisState
if err := json.Unmarshal(bz, &gs); err != nil {
return fmt.Errorf("exit: invalid genesis: %w", err)
}
if err := ValidateRoutes(gs.Routes); err != nil {
return fmt.Errorf("exit: %w", err)
}
if err := ValidateSwaps(gs.Swaps); err != nil {
return fmt.Errorf("exit: %w", err)
}
return nil
}
-390
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@@ -1,390 +0,0 @@
package types_test
import (
"encoding/json"
"os"
"path/filepath"
"runtime"
"strings"
"testing"
"github.com/oy/openyield/lexicon"
etypes "github.com/oy/openyield/x/exit/types"
)
// --- ExitStatus enum (exactly 5) -----------------------------------------------
// TestExitStatusCountLockedConst asserts ExitStatusCount == 5 and
// AllExitStatuses() returns exactly 5 (vision §7, REQ-010, D-036). A
// regression firewall: adding/removing/renaming a status breaks this test.
func TestExitStatusCountLockedConst(t *testing.T) {
if etypes.ExitStatusCount != 5 {
t.Errorf("ExitStatusCount = %d, expected 5 (vision §7 LOCKED)", etypes.ExitStatusCount)
}
all := etypes.AllExitStatuses()
if len(all) != 5 {
t.Errorf("AllExitStatuses() len = %d, expected 5", len(all))
}
}
// TestAllExitStatusesNames asserts the 5 vision §7 exit-lifecycle names in
// order with no extras, no dups, no renames (Proposed, InProgress, Settled,
// Failed, Refunded).
func TestAllExitStatusesNames(t *testing.T) {
want := []string{"Proposed", "InProgress", "Settled", "Failed", "Refunded"}
all := etypes.AllExitStatuses()
if len(all) != len(want) {
t.Fatalf("len = %d, want %d", len(all), len(want))
}
seen := map[string]bool{}
for i, s := range all {
if string(s) != want[i] {
t.Errorf("AllExitStatuses()[%d] = %q, want %q", i, s, want[i])
}
if seen[string(s)] {
t.Errorf("duplicate ExitStatus %q", s)
}
seen[string(s)] = true
}
}
// TestExitStatusValues asserts each named const matches its AllExitStatuses
// entry.
func TestExitStatusValues(t *testing.T) {
if etypes.ExitProposed != "Proposed" {
t.Errorf("ExitProposed = %q", etypes.ExitProposed)
}
if etypes.ExitInProgress != "InProgress" {
t.Errorf("ExitInProgress = %q", etypes.ExitInProgress)
}
if etypes.ExitSettled != "Settled" {
t.Errorf("ExitSettled = %q", etypes.ExitSettled)
}
if etypes.ExitFailed != "Failed" {
t.Errorf("ExitFailed = %q", etypes.ExitFailed)
}
if etypes.ExitRefunded != "Refunded" {
t.Errorf("ExitRefunded = %q", etypes.ExitRefunded)
}
}
// --- ExitRoute struct (bridge-route-id by-ID-string — G-003/A-308) ----------------
// TestExitRouteStructFields asserts ExitRoute carries all required fields
// including the by-ID-string ref to x/bridge BridgeRoute (bridge-route-id)
// per A-308/G-003. No struct import of x/bridge (the G-003 import-invariant
// test enforces this).
func TestExitRouteStructFields(t *testing.T) {
r := etypes.ExitRoute{
RouteID: "route-1",
BridgeRouteID: "bridge-1", // by-ID-string ref to x/bridge (A-308/G-003)
Status: etypes.ExitProposed,
}
if r.RouteID != "route-1" {
t.Errorf("RouteID = %q", r.RouteID)
}
if r.BridgeRouteID != "bridge-1" {
t.Errorf("BridgeRouteID = %q", r.BridgeRouteID)
}
if r.Status != etypes.ExitProposed {
t.Errorf("Status = %q", r.Status)
}
}
// TestExitRouteBridgeRouteIDIsString asserts the BridgeRouteID field is an
// opaque string (by-ID-string ref — G-003), NOT a typed x/bridge.BridgeRoute
// import. This locks the by-ID-string invariant at the type level.
func TestExitRouteBridgeRouteIDIsString(t *testing.T) {
r := etypes.ExitRoute{BridgeRouteID: "bridge-9"}
// The field must be assignable from a plain string (no bridge.BridgeRoute
// type needed).
r.BridgeRouteID = "bridge-2"
if r.BridgeRouteID != "bridge-2" {
t.Errorf("BridgeRouteID = %q, want %q (must be plain string)", r.BridgeRouteID, "bridge-2")
}
}
// TestExitRouteBridgeRouteIDOptional asserts an empty bridge-route-id is
// valid (same-chain exits have no bridge hop).
func TestExitRouteBridgeRouteIDOptional(t *testing.T) {
r := etypes.ExitRoute{
RouteID: "same-chain-exit",
BridgeRouteID: "", // empty = same-chain exit (no bridge hop)
Status: etypes.ExitSettled,
}
if r.BridgeRouteID != "" {
t.Errorf("BridgeRouteID should be empty for same-chain exit; got %q", r.BridgeRouteID)
}
}
// --- DEXSwap struct (opaque venue — A-308) --------------------------------------
// TestDEXSwapStructFields asserts DEXSwap carries all required fields
// including the opaque venue string (A-308) and an ExitStatus.
func TestDEXSwapStructFields(t *testing.T) {
s := etypes.DEXSwap{
SwapID: "swap-1",
Venue: "uniswap-v3",
Status: etypes.ExitSettled,
}
if s.SwapID != "swap-1" {
t.Errorf("SwapID = %q", s.SwapID)
}
if s.Venue != "uniswap-v3" {
t.Errorf("Venue = %q", s.Venue)
}
if s.Status != etypes.ExitSettled {
t.Errorf("Status = %q", s.Status)
}
}
// TestDEXSwapVenueIsOpaqueString asserts the DEXSwap venue is an opaque
// string, NOT a locked enum (A-308 — venues are operational, locking now
// risks churn). The field must accept any free-form string.
func TestDEXSwapVenueIsOpaqueString(t *testing.T) {
// A-308: venue is an opaque string, not a locked enum. Various venue
// strings must be assignable without any enum type.
venues := []string{"uniswap-v3", "oy-dex", "1inch", "paraswap", "0x-api", "custom-venue-xyz"}
for _, v := range venues {
s := etypes.DEXSwap{SwapID: "s", Venue: v}
if s.Venue != v {
t.Errorf("Venue = %q, want %q (A-308: venue must be opaque string)", s.Venue, v)
}
}
}
// TestDEXSwapVenueTypeIsString asserts the Venue field's Go type is the
// built-in string (not a typed enum). This locks A-308 at the type level:
// the field is a plain string, so any venue string is assignable without
// conversion.
func TestDEXSwapVenueTypeIsString(t *testing.T) {
s := etypes.DEXSwap{}
// Assigning a plain string literal must compile and work — no enum
// conversion needed. If venue were a typed enum, assigning a plain
// string would require a type conversion (e.g. etypes.Venue("x")).
s.Venue = "any-string-works"
var want string = "any-string-works"
if s.Venue != want {
t.Errorf("Venue type is not plain string (A-308): got %q want %q", s.Venue, want)
}
}
// TestDEXSwapStatusReusesExitStatus asserts the DEXSwap status field reuses
// the ExitStatus enum (a swap shares the exit lifecycle).
func TestDEXSwapStatusReusesExitStatus(t *testing.T) {
statuses := etypes.AllExitStatuses()
for _, st := range statuses {
s := etypes.DEXSwap{SwapID: "s", Venue: "v", Status: st}
if s.Status != st {
t.Errorf("DEXSwap.Status = %q, want %q (must reuse ExitStatus)", s.Status, st)
}
}
}
// --- Genesis tests (A-212) ------------------------------------------------------
// TestDefaultGenesisStateEmpty asserts DefaultGenesisState returns non-nil
// empty slices for Routes and Swaps.
func TestDefaultGenesisStateEmpty(t *testing.T) {
gs := etypes.DefaultGenesisState()
if gs == nil {
t.Fatal("DefaultGenesisState returned nil")
}
if gs.Routes == nil || len(gs.Routes) != 0 {
t.Errorf("Default Routes should be non-nil empty slice; got len=%d nil=%v", len(gs.Routes), gs.Routes == nil)
}
if gs.Swaps == nil || len(gs.Swaps) != 0 {
t.Errorf("Default Swaps should be non-nil empty slice; got len=%d nil=%v", len(gs.Swaps), gs.Swaps == nil)
}
}
// TestValidateGenesisRejectsDupRouteIDs asserts A-212: duplicate route-ids
// are rejected.
func TestValidateGenesisRejectsDupRouteIDs(t *testing.T) {
gs := etypes.GenesisState{
Routes: []etypes.ExitRoute{
{RouteID: "r1", Status: etypes.ExitProposed},
{RouteID: "r1", Status: etypes.ExitSettled}, // dup
},
}
bz, _ := json.Marshal(gs)
if err := etypes.ValidateGenesis(bz); err == nil {
t.Error("ValidateGenesis should reject duplicate route-ids")
}
}
// TestValidateGenesisRejectsEmptyRouteID asserts empty route-id is rejected.
func TestValidateGenesisRejectsEmptyRouteID(t *testing.T) {
gs := etypes.GenesisState{
Routes: []etypes.ExitRoute{{RouteID: "", Status: etypes.ExitProposed}},
}
bz, _ := json.Marshal(gs)
if err := etypes.ValidateGenesis(bz); err == nil {
t.Error("ValidateGenesis should reject empty route-id")
}
}
// TestValidateGenesisRejectsUnknownRouteStatus asserts an unknown ExitStatus
// on a route is rejected.
func TestValidateGenesisRejectsUnknownRouteStatus(t *testing.T) {
gs := etypes.GenesisState{
Routes: []etypes.ExitRoute{{RouteID: "r1", Status: etypes.ExitStatus("Bogus")}},
}
bz, _ := json.Marshal(gs)
if err := etypes.ValidateGenesis(bz); err == nil {
t.Error("ValidateGenesis should reject unknown exit status on route")
}
}
// TestValidateGenesisRejectsDupSwapIDs asserts A-212: duplicate swap-ids
// are rejected.
func TestValidateGenesisRejectsDupSwapIDs(t *testing.T) {
gs := etypes.GenesisState{
Swaps: []etypes.DEXSwap{
{SwapID: "s1", Venue: "uniswap-v3", Status: etypes.ExitSettled},
{SwapID: "s1", Venue: "oy-dex", Status: etypes.ExitProposed}, // dup
},
}
bz, _ := json.Marshal(gs)
if err := etypes.ValidateGenesis(bz); err == nil {
t.Error("ValidateGenesis should reject duplicate swap-ids")
}
}
// TestValidateGenesisRejectsEmptySwapID asserts empty swap-id is rejected.
func TestValidateGenesisRejectsEmptySwapID(t *testing.T) {
gs := etypes.GenesisState{
Swaps: []etypes.DEXSwap{{SwapID: "", Venue: "oy-dex", Status: etypes.ExitProposed}},
}
bz, _ := json.Marshal(gs)
if err := etypes.ValidateGenesis(bz); err == nil {
t.Error("ValidateGenesis should reject empty swap-id")
}
}
// TestValidateGenesisRejectsUnknownSwapStatus asserts an unknown ExitStatus
// on a swap is rejected.
func TestValidateGenesisRejectsUnknownSwapStatus(t *testing.T) {
gs := etypes.GenesisState{
Swaps: []etypes.DEXSwap{{SwapID: "s1", Venue: "oy-dex", Status: etypes.ExitStatus("Bogus")}},
}
bz, _ := json.Marshal(gs)
if err := etypes.ValidateGenesis(bz); err == nil {
t.Error("ValidateGenesis should reject unknown exit status on swap")
}
}
// TestValidateGenesisRejectsBadJSON asserts malformed JSON is rejected.
func TestValidateGenesisRejectsBadJSON(t *testing.T) {
if err := etypes.ValidateGenesis(json.RawMessage(`{not json`)); err == nil {
t.Error("ValidateGenesis should reject malformed JSON")
}
}
// TestValidateGenesisAcceptsClean asserts a clean genesis validates.
func TestValidateGenesisAcceptsClean(t *testing.T) {
gs := etypes.GenesisState{
Routes: []etypes.ExitRoute{
{RouteID: "r1", BridgeRouteID: "bridge-1", Status: etypes.ExitInProgress},
{RouteID: "r2", BridgeRouteID: "", Status: etypes.ExitSettled}, // same-chain exit
},
Swaps: []etypes.DEXSwap{
{SwapID: "s1", Venue: "uniswap-v3", Status: etypes.ExitSettled},
{SwapID: "s2", Venue: "oy-dex", Status: etypes.ExitProposed},
},
}
bz, _ := json.Marshal(gs)
if err := etypes.ValidateGenesis(bz); err != nil {
t.Errorf("ValidateGenesis should accept clean genesis, got: %v", err)
}
}
// --- Module consts -------------------------------------------------------------
// TestModuleConsts asserts the four Cosmos-convention module consts.
func TestModuleConsts(t *testing.T) {
if etypes.ModuleName != "exit" {
t.Errorf("ModuleName = %q", etypes.ModuleName)
}
if etypes.StoreKey != "exit" {
t.Errorf("StoreKey = %q", etypes.StoreKey)
}
if etypes.RouterKey != "exit" {
t.Errorf("RouterKey = %q", etypes.RouterKey)
}
if etypes.QuerierRoute != "exit" {
t.Errorf("QuerierRoute = %q", etypes.QuerierRoute)
}
}
// TestDefaultParams asserts DefaultParams returns a zero-value Params.
func TestDefaultParams(t *testing.T) {
_ = etypes.DefaultParams() // no panics
}
// --- Lexicon assertion (REQ-012) -------------------------------------------------
//
// The exit module must avoid the banned financial holder terms (the
// lexicon firewall's banned list). Use "Holder"/"Reach" instead. The lexicon
// helpers are used here — no banned literals are inlined.
// TestLexiconNoBannedTermsInExitPackage scans every non-test .go file in
// the exit/types package directory for the banned terms (case-insensitive).
// Production files only — the test file references banned terms via the
// lexicon package helpers (standard lexicon-test bootstrapping pattern).
func TestLexiconNoBannedTermsInExitPackage(t *testing.T) {
pkgDir := packageDir(t, "github.com/oy/openyield/x/exit/types")
files, err := filepath.Glob(filepath.Join(pkgDir, "*.go"))
if err != nil {
t.Fatalf("glob: %v", err)
}
prodFiles := []string{}
for _, f := range files {
if strings.HasSuffix(f, "_test.go") {
continue
}
prodFiles = append(prodFiles, f)
}
if len(prodFiles) == 0 {
t.Fatal("no production .go files found in exit/types")
}
for _, f := range prodFiles {
bz, err := os.ReadFile(f)
if err != nil {
t.Fatalf("read %s: %v", f, err)
}
if found, ok := lexicon.FindBannedTerm(string(bz)); ok {
t.Errorf("%s: banned term %q (REQ-012 lexicon firewall — use Holder/Reach, not banned financial terms)", filepath.Base(f), found)
}
}
}
// TestLexiconNoBannedTermsInExitTestFile asserts this test file itself
// does not contain any banned term as a literal.
func TestLexiconNoBannedTermsInExitTestFile(t *testing.T) {
_, thisFile, _, ok := runtime.Caller(0)
if !ok {
t.Fatal("runtime.Caller failed")
}
bz, err := os.ReadFile(thisFile)
if err != nil {
t.Fatalf("read self: %v", err)
}
if found, ok := lexicon.FindBannedTerm(string(bz)); ok {
t.Fatalf("exit test file contains banned term %q — use lexicon helpers, not literals", found)
}
}
// packageDir resolves a Go import path to its filesystem directory by
// walking up from this test file (v0.3 skeleton has zero external deps).
func packageDir(t *testing.T, importPath string) string {
t.Helper()
_, file, _, ok := runtime.Caller(0)
if !ok {
t.Fatal("runtime.Caller failed")
}
// file = .../oy/x/exit/types/types_test.go -> repoRoot = .../oy (4 dirs up)
repoRoot := filepath.Dir(filepath.Dir(filepath.Dir(filepath.Dir(file))))
rel := strings.TrimPrefix(importPath, "github.com/oy/openyield/")
return filepath.Join(repoRoot, rel)
}
-70
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@@ -1,70 +0,0 @@
package types
// cross_const_test.go (REQ-030, REVIEW.md P2 / A-304, GRILL G-015) is a
// cross-package const-equality test that catches silent drift between the
// x/hub LOCAL consts (LendingCouponCapBps / LendingCouponFloorBps) and the
// x/bond mission-locked consts (CouponCapBps / CouponFloorBps, D-028).
//
// Before REQ-030, the two const pairs were cross-documented only by a comment
// (x/hub/types/types.go:46-55) — no automated check existed. A future
// mission-locked change to x/bond.CouponCapBps without a matching x/hub change
// would silently drift. This test fails closed on either kind of drift:
//
// - single-sided drift: hub stays 800, bond changes to 900 → the equality
// test fails.
// - paired drift: BOTH change to the same wrong value (e.g., both 900) → the
// equality test passes BUT the absolute-value test (G-015) fails, because
// the mission-locked value is 800, not 900.
//
// G-003 (no production cross-module struct imports): this is a TEST-ONLY
// import of x/bond/types in a _test.go file. G-003's test-import exemption
// (documented in v0.2 GRILL G-003 and already exercised by
// x/bearers/types/types_test.go:7 importing x/processing/types) permits
// cross-package test imports. NO production .go file in x/hub/types/ imports
// x/bond/types (the P1-99-01 verification greps non-test .go files to confirm).
import (
"testing"
bondtypes "github.com/oy/openyield/x/bond/types"
)
// TestLendingCouponCapMatchesBondCap asserts the x/hub LOCAL
// LendingCouponCapBps equals the x/bond mission-locked CouponCapBps (A-304).
// Fails on single-sided drift (one changes, the other does not).
func TestLendingCouponCapMatchesBondCap(t *testing.T) {
if LendingCouponCapBps != bondtypes.CouponCapBps {
t.Errorf("A-304 drift: x/hub LendingCouponCapBps = %d, x/bond CouponCapBps = %d (must match)", LendingCouponCapBps, bondtypes.CouponCapBps)
}
}
// TestLendingCouponFloorMatchesBondFloor asserts the x/hub LOCAL
// LendingCouponFloorBps equals the x/bond mission-locked CouponFloorBps
// (A-304). Fails on single-sided drift.
func TestLendingCouponFloorMatchesBondFloor(t *testing.T) {
if LendingCouponFloorBps != bondtypes.CouponFloorBps {
t.Errorf("A-304 drift: x/hub LendingCouponFloorBps = %d, x/bond CouponFloorBps = %d (must match)", LendingCouponFloorBps, bondtypes.CouponFloorBps)
}
}
// TestConstsAreMissionLocked800And0 (GRILL G-015) asserts the ABSOLUTE
// mission-locked values: both caps are 800 (8pct, D-028) and both floors are 0
// (0pct, D-028). This catches PAIRED drift — if both consts change to the same
// wrong value (e.g., both 900), the equality tests above pass but this test
// fails, because the mission-locked value is 800, not 900. The 8pct cap /
// 0pct floor is the anti-greed covenant (vision §17, §18); defending the
// absolute value is the highest-priority regression guard in v0.4.
func TestConstsAreMissionLocked800And0(t *testing.T) {
if LendingCouponCapBps != 800 {
t.Errorf("G-015: x/hub LendingCouponCapBps = %d, want 800 (mission-locked 8pct, D-028)", LendingCouponCapBps)
}
if bondtypes.CouponCapBps != 800 {
t.Errorf("G-015: x/bond CouponCapBps = %d, want 800 (mission-locked 8pct, D-028)", bondtypes.CouponCapBps)
}
if LendingCouponFloorBps != 0 {
t.Errorf("G-015: x/hub LendingCouponFloorBps = %d, want 0 (mission-locked 0pct, D-028)", LendingCouponFloorBps)
}
if bondtypes.CouponFloorBps != 0 {
t.Errorf("G-015: x/bond CouponFloorBps = %d, want 0 (mission-locked 0pct, D-028)", bondtypes.CouponFloorBps)
}
}
-245
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@@ -1,245 +0,0 @@
// Package types defines the Hub API module types (vision §13, REQ-024, D-039).
//
// The Hub is the B2B backbone: a registry of Hub-brokered services an Anchor
// partner operates. v0.3 ships the skeleton (enum + per-service struct stubs
// + genesis); the live B2B runtime is deferred to v0.4 (D-039).
//
// Lexicon note (REQ-012, A-210): the Hub is HIGH lexicon-risk because the
// lending primitive is a natural fit for the banned financial terms. The
// coupon vocabulary is used EXCLUSIVELY here — "lending"/"coupon"/"custody"/
// "compliance"/"jurisdiction" are the safe vision-§13 phrasings; the banned
// synonyms for these concepts NEVER appear in this package. "lending" is NOT
// a banned term (the banned list has the compounding term and the storage
// terms, not "lending" or "loan"); "coupon" is the bond vocabulary (vision
// §17). The per-package lexicon assertion in types_test.go is the gate.
//
// Cross-module references are by-ID-string per G-003 (no struct imports):
// - operator-partner-id references an x/partner Anchor Partner by ID-string
// (A-304, G-003). The Anchor extension lands in P4; x/hub in P5. The
// reference is a string, validated by the keeper against the partner
// registry at runtime, not by the type system.
// - LendingCouponCapBps is a LOCAL const cross-documented to D-028 /
// x/bond CouponCapBps (A-304). x/hub does NOT import x/bond; the cap is
// redefined locally so the lending-primitive coupon clamp is enforced
// without a cross-module struct import (mirrors how x/guild cross-docs
// x/feecovenant WaiverHandPassGuild).
package types
import (
"encoding/json"
"fmt"
)
const (
ModuleName = "hub"
StoreKey = ModuleName
RouterKey = ModuleName
QuerierRoute = ModuleName
// HubServiceCount is the locked count of HubService enum values (vision
// §13, REQ-024, A-312). A regression firewall: adding/removing/renaming a
// Hub service breaks this const's test.
HubServiceCount = 3
// LendingCouponCapBps is the LOCAL upper bound on a lending-primitive
// coupon in basis points (A-304). It is cross-documented to D-028 and
// x/bond.CouponCapBps (also 800, the mission-locked 8pct bond coupon cap).
// This const is LOCAL to x/hub to avoid importing x/bond (G-003 — no
// cross-module struct imports). The two consts MUST stay in sync; a
// change to x/bond.CouponCapBps requires a matching change here. The
// ClampLendingCoupon helper uses this local const, NOT x/bond.Clamp.
LendingCouponCapBps = uint32(800) // 8pct (cross-doc D-028 / x/bond CouponCapBps — A-304)
// LendingCouponFloorBps is the LOCAL lower bound on a lending-primitive
// coupon (A-304, cross-doc to D-028 / x/bond.CouponFloorBps = 0). Local
// const for the same G-003 reason as LendingCouponCapBps.
LendingCouponFloorBps = uint32(0) // 0pct (cross-doc D-028 / x/bond CouponFloorBps — A-304)
)
// HubService enumerates the three Hub-brokered B2B service categories (vision
// §13, REQ-024, A-312): Custody (asset safekeeping), LendingPrimitive (the
// protocol-level lending primitive, NOT a live market), Compliance (on-chain
// compliance attestations). The full B2B suite is deferred to v0.4 (D-039).
type HubService string
const (
ServiceCustody HubService = "Custody" // asset safekeeping
ServiceLendingPrimitive HubService = "LendingPrimitive" // protocol-level lending primitive
ServiceCompliance HubService = "Compliance" // on-chain compliance attestations
)
// AllHubServices returns all three HubService values in vision §13 order.
// Locked-const test asserts exactly 3 entries with these names (REQ-024).
func AllHubServices() []HubService {
return []HubService{
ServiceCustody,
ServiceLendingPrimitive,
ServiceCompliance,
}
}
// CustodyService is the per-service struct stub for a Hub custody service
// (vision §13, REQ-024). custody-id is the service identifier. operator-
// partner-id references an x/partner Anchor Partner by ID-string (A-304,
// G-003 — no struct import of x/partner). asset-ref is an opaque reference to
// the custodied asset (the asset identifier is opaque so the Hub does not
// import any asset-denom module).
type CustodyService struct {
CustodyID string `json:"custody_id" yaml:"custody_id"`
OperatorPartnerID string `json:"operator_partner_id" yaml:"operator_partner_id"`
AssetRef string `json:"asset_ref" yaml:"asset_ref"`
}
// LendingPrimitive is the per-service struct stub for a Hub lending-primitive
// service (vision §13, REQ-024). loan-id is the primitive identifier.
// principal-grain is the principal in Grain (the OY internal unit, cross-ref
// x/bread by name only — no struct import). coupon-bps is the coupon rate in
// basis points, clamped to [LendingCouponFloorBps, LendingCouponCapBps] by
// ClampLendingCoupon at construction (NewLendingPrimitive). term-days is the
// primitive term length. The coupon vocabulary is used EXCLUSIVELY here
// (A-210); the banned compounding term and storage terms NEVER appear.
type LendingPrimitive struct {
LoanID string `json:"loan_id" yaml:"loan_id"`
PrincipalGrain int64 `json:"principal_grain" yaml:"principal_grain"`
CouponBps uint32 `json:"coupon_bps" yaml:"coupon_bps"`
TermDays uint32 `json:"term_days" yaml:"term_days"`
}
// ComplianceService is the per-service struct stub for a Hub compliance
// service (vision §13, REQ-024). compliance-id is the service identifier.
// jurisdiction is an opaque jurisdiction tag (e.g. "EU-MiCA"). attestation-
// uri is an opaque URI to the compliance attestation (kept opaque in the
// skeleton, like the v0.2 Pier CredentialRef).
type ComplianceService struct {
ComplianceID string `json:"compliance_id" yaml:"compliance_id"`
Jurisdiction string `json:"jurisdiction" yaml:"jurisdiction"`
AttestationURI string `json:"attestation_uri" yaml:"attestation_uri"`
}
// ClampLendingCoupon ensures a lending-primitive coupon is within the LOCKED
// LOCAL bounds (A-304: never above the local cap, never below the local floor).
// This mirrors x/bond.Clamp's shape (min(cap, max(floor, coupon))) but uses the
// LOCAL LendingCouponCapBps / LendingCouponFloorBps consts — it does NOT import
// x/bond.Clamp (G-003). The clamp is automatic and authoritative; the live
// keeper enforces it at construction and at genesis load.
func ClampLendingCoupon(couponBps uint32) uint32 {
if couponBps > LendingCouponCapBps {
return LendingCouponCapBps
}
if couponBps < LendingCouponFloorBps {
return LendingCouponFloorBps
}
return couponBps
}
// NewLendingPrimitive constructs a LendingPrimitive with the coupon clamped to
// the LOCAL [floor, cap] bounds via ClampLendingCoupon (A-304). The stub does
// not persist or enforce referential integrity of operator-partner-id; it only
// enforces the coupon clamp invariant at construction time.
func NewLendingPrimitive(loanID string, principalGrain int64, couponBps uint32, termDays uint32) LendingPrimitive {
return LendingPrimitive{
LoanID: loanID,
PrincipalGrain: principalGrain,
CouponBps: ClampLendingCoupon(couponBps),
TermDays: termDays,
}
}
// Params for the hub module (skeleton — no tunables in v0.3; the lending
// coupon cap/floor are LOCKED LOCAL consts, not Params fields).
type Params struct{}
// DefaultParams returns the zero-value Params (skeleton — no tunables).
func DefaultParams() Params { return Params{} }
// GenesisState defines the hub module genesis state (REQ-024). The three
// slices hold the per-service stubs. ValidateGenesis enforces per-set ID
// uniqueness (A-212) and the lending-primitive coupon clamp at genesis load
// (each LendingPrimitive's coupon-bps must be within the LOCAL bounds).
type GenesisState struct {
Params Params `json:"params" yaml:"params"`
CustodyServices []CustodyService `json:"custody_services" yaml:"custody_services"`
LendingPrimitives []LendingPrimitive `json:"lending_primitives" yaml:"lending_primitives"`
ComplianceServices []ComplianceService `json:"compliance_services" yaml:"compliance_services"`
}
// DefaultGenesisState returns an empty genesis state with non-nil slices.
func DefaultGenesisState() *GenesisState {
return &GenesisState{
Params: DefaultParams(),
CustodyServices: []CustodyService{},
LendingPrimitives: []LendingPrimitive{},
ComplianceServices: []ComplianceService{},
}
}
// ValidateGenesis performs ID-uniqueness checks (A-212 upgrade from v0.1
// no-op) and the lending-primitive coupon clamp at genesis load (A-304):
// rejects duplicate custody-ids, loan-ids, compliance-ids, and any
// LendingPrimitive whose coupon-bps is outside the LOCAL [floor, cap] bounds.
func ValidateGenesis(bz json.RawMessage) error {
var gs GenesisState
if err := json.Unmarshal(bz, &gs); err != nil {
return fmt.Errorf("hub: invalid genesis: %w", err)
}
if err := validateCustodyServices(gs.CustodyServices); err != nil {
return fmt.Errorf("hub: %w", err)
}
if err := validateLendingPrimitives(gs.LendingPrimitives); err != nil {
return fmt.Errorf("hub: %w", err)
}
if err := validateComplianceServices(gs.ComplianceServices); err != nil {
return fmt.Errorf("hub: %w", err)
}
return nil
}
// validateCustodyServices enforces custody-id presence and uniqueness.
func validateCustodyServices(svcs []CustodyService) error {
seen := make(map[string]bool, len(svcs))
for i, c := range svcs {
if c.CustodyID == "" {
return fmt.Errorf("custody service [%d]: empty custody-id", i)
}
if seen[c.CustodyID] {
return fmt.Errorf("custody service: duplicate custody-id %q", c.CustodyID)
}
seen[c.CustodyID] = true
}
return nil
}
// validateLendingPrimitives enforces loan-id presence/uniqueness and the
// LOCAL coupon clamp at genesis load (A-304).
func validateLendingPrimitives(svcs []LendingPrimitive) error {
seen := make(map[string]bool, len(svcs))
for i, l := range svcs {
if l.LoanID == "" {
return fmt.Errorf("lending primitive [%d]: empty loan-id", i)
}
if seen[l.LoanID] {
return fmt.Errorf("lending primitive: duplicate loan-id %q", l.LoanID)
}
seen[l.LoanID] = true
if l.CouponBps < LendingCouponFloorBps || l.CouponBps > LendingCouponCapBps {
return fmt.Errorf("lending primitive %q: coupon-bps %d outside [%d, %d] (A-304 clamp at genesis load)",
l.LoanID, l.CouponBps, LendingCouponFloorBps, LendingCouponCapBps)
}
}
return nil
}
// validateComplianceServices enforces compliance-id presence and uniqueness.
func validateComplianceServices(svcs []ComplianceService) error {
seen := make(map[string]bool, len(svcs))
for i, c := range svcs {
if c.ComplianceID == "" {
return fmt.Errorf("compliance service [%d]: empty compliance-id", i)
}
if seen[c.ComplianceID] {
return fmt.Errorf("compliance service: duplicate compliance-id %q", c.ComplianceID)
}
seen[c.ComplianceID] = true
}
return nil
}
-424
View File
@@ -1,424 +0,0 @@
package types_test
import (
"encoding/json"
"os"
"path/filepath"
"runtime"
"strings"
"testing"
"github.com/oy/openyield/lexicon"
htypes "github.com/oy/openyield/x/hub/types"
)
// --- HubService enum coverage (3) ----------------------------------------------
// TestHubServiceCountLockedConst asserts HubServiceCount == 3 and
// AllHubServices() returns exactly 3 (REQ-024, A-312). A regression firewall.
func TestHubServiceCountLockedConst(t *testing.T) {
if htypes.HubServiceCount != 3 {
t.Errorf("HubServiceCount = %d, expected 3 (REQ-024 LOCKED)", htypes.HubServiceCount)
}
all := htypes.AllHubServices()
if len(all) != 3 {
t.Errorf("AllHubServices() len = %d, expected 3", len(all))
}
}
// TestAllHubServicesNames asserts the 3 REQ-024 names in order with no
// extras, no dups, no renames.
func TestAllHubServicesNames(t *testing.T) {
want := []string{"Custody", "LendingPrimitive", "Compliance"}
all := htypes.AllHubServices()
if len(all) != len(want) {
t.Fatalf("len = %d, want %d", len(all), len(want))
}
seen := map[string]bool{}
for i, s := range all {
if string(s) != want[i] {
t.Errorf("AllHubServices()[%d] = %q, want %q", i, s, want[i])
}
if seen[string(s)] {
t.Errorf("duplicate HubService %q", s)
}
seen[string(s)] = true
}
}
// TestHubServiceValues asserts each named const matches its AllHubServices
// entry.
func TestHubServiceValues(t *testing.T) {
if htypes.ServiceCustody != "Custody" {
t.Errorf("ServiceCustody = %q", htypes.ServiceCustody)
}
if htypes.ServiceLendingPrimitive != "LendingPrimitive" {
t.Errorf("ServiceLendingPrimitive = %q", htypes.ServiceLendingPrimitive)
}
if htypes.ServiceCompliance != "Compliance" {
t.Errorf("ServiceCompliance = %q", htypes.ServiceCompliance)
}
}
// --- LendingCouponCapBps LOCAL const (A-304) -----------------------------------
// TestLendingCouponCapBpsLockedConst asserts the LOCAL LendingCouponCapBps ==
// 800 (A-304 cross-doc to D-028 / x/bond.CouponCapBps). The const is LOCAL to
// x/hub to avoid importing x/bond (G-003); the test asserts the value matches
// the bond cap so the two consts stay in sync.
func TestLendingCouponCapBpsLockedConst(t *testing.T) {
if htypes.LendingCouponCapBps != 800 {
t.Errorf("LendingCouponCapBps = %d, expected 800 (A-304 cross-doc D-028)", htypes.LendingCouponCapBps)
}
}
// TestLendingCouponFloorBpsLockedConst asserts the LOCAL
// LendingCouponFloorBps == 0 (A-304 cross-doc to D-028 / x/bond.CouponFloorBps).
func TestLendingCouponFloorBpsLockedConst(t *testing.T) {
if htypes.LendingCouponFloorBps != 0 {
t.Errorf("LendingCouponFloorBps = %d, expected 0 (A-304 cross-doc D-028)", htypes.LendingCouponFloorBps)
}
}
// --- ClampLendingCoupon invariants (A-304) -------------------------------------
// The ClampLendingCoupon invariant is the hub module's firewall (A-304): a
// lending-primitive coupon can never exceed the local cap (8pct) and can
// never fall below the local floor (0pct). These tests are the regression
// firewall — a change to LendingCouponCapBps or LendingCouponFloorBps breaks
// them.
// TestClampLendingCouponBelowFloorReturnsFloor asserts a coupon below the
// floor is clamped up to the floor. The floor is 0 and uint32 cannot be
// negative, so the below-floor case is type-prevented; the test asserts the
// floor boundary passes through.
func TestClampLendingCouponBelowFloorReturnsFloor(t *testing.T) {
got := htypes.ClampLendingCoupon(htypes.LendingCouponFloorBps)
if got != htypes.LendingCouponFloorBps {
t.Errorf("ClampLendingCoupon(floor) = %d, expected floor %d", got, htypes.LendingCouponFloorBps)
}
}
// TestClampLendingCouponAboveCapReturnsCap asserts a coupon above the cap is
// clamped down to the cap.
func TestClampLendingCouponAboveCapReturnsCap(t *testing.T) {
cases := []uint32{
uint32(htypes.LendingCouponCapBps) + 1,
uint32(htypes.LendingCouponCapBps) + 100,
uint32(htypes.LendingCouponCapBps) + 1000,
900,
1000,
5000,
}
for _, c := range cases {
got := htypes.ClampLendingCoupon(c)
if got != htypes.LendingCouponCapBps {
t.Errorf("ClampLendingCoupon(%d) = %d, expected cap %d (above-cap must clamp to cap)", c, got, htypes.LendingCouponCapBps)
}
}
}
// TestClampLendingCouponInRangeUnchanged asserts a coupon within [floor, cap]
// is unchanged.
func TestClampLendingCouponInRangeUnchanged(t *testing.T) {
cases := []uint32{
0,
1,
100,
400,
500,
799,
uint32(htypes.LendingCouponCapBps),
}
for _, c := range cases {
got := htypes.ClampLendingCoupon(c)
if got != c {
t.Errorf("ClampLendingCoupon(%d) = %d, expected %d (in-range must be unchanged)", c, got, c)
}
}
}
// TestClampLendingCouponShape asserts the min(cap, max(floor, coupon)) shape
// at the boundaries.
func TestClampLendingCouponShape(t *testing.T) {
if htypes.ClampLendingCoupon(0) != 0 {
t.Error("ClampLendingCoupon(0) should be 0 (floor boundary)")
}
if htypes.ClampLendingCoupon(800) != 800 {
t.Error("ClampLendingCoupon(800) should be 800 (cap boundary)")
}
if htypes.ClampLendingCoupon(801) != 800 {
t.Error("ClampLendingCoupon(801) should be 800 (above-cap clamps to cap)")
}
}
// --- Per-service struct stubs --------------------------------------------------
// TestCustodyServiceStructFields asserts CustodyService carries custody-id,
// operator-partner-id (by-ID-string ref to x/partner Anchor — G-003), asset-ref.
func TestCustodyServiceStructFields(t *testing.T) {
c := htypes.CustodyService{
CustodyID: "cust-1",
OperatorPartnerID: "anchor-partner-1",
AssetRef: "bread-grain",
}
if c.CustodyID != "cust-1" || c.OperatorPartnerID != "anchor-partner-1" || c.AssetRef != "bread-grain" {
t.Error("CustodyService fields not set correctly")
}
}
// TestCustodyServiceOperatorPartnerIDIsString asserts operator-partner-id is
// string-typed (G-003 by-ID-string ref to x/partner Anchor; no struct import).
func TestCustodyServiceOperatorPartnerIDIsString(t *testing.T) {
c := htypes.CustodyService{OperatorPartnerID: "anchor-1"}
if c.OperatorPartnerID != "anchor-1" {
t.Errorf("OperatorPartnerID = %q", c.OperatorPartnerID)
}
}
// TestLendingPrimitiveStructFields asserts LendingPrimitive carries loan-id,
// principal-grain, coupon-bps, term-days.
func TestLendingPrimitiveStructFields(t *testing.T) {
l := htypes.LendingPrimitive{
LoanID: "loan-1",
PrincipalGrain: 1_000_000,
CouponBps: 500,
TermDays: 365,
}
if l.LoanID != "loan-1" || l.PrincipalGrain != 1_000_000 || l.CouponBps != 500 || l.TermDays != 365 {
t.Error("LendingPrimitive fields not set correctly")
}
}
// TestNewLendingPrimitiveClampsCoupon asserts NewLendingPrimitive clamps an
// above-cap coupon down to the cap and leaves an in-range coupon unchanged.
func TestNewLendingPrimitiveClampsCoupon(t *testing.T) {
l := htypes.NewLendingPrimitive("loan-2", 500_000, 1200, 180)
if l.CouponBps != htypes.LendingCouponCapBps {
t.Errorf("CouponBps = %d, expected cap %d (NewLendingPrimitive must clamp above-cap coupon)", l.CouponBps, htypes.LendingCouponCapBps)
}
l2 := htypes.NewLendingPrimitive("loan-3", 500_000, 300, 180)
if l2.CouponBps != 300 {
t.Errorf("CouponBps = %d, expected 300 (in-range, unchanged)", l2.CouponBps)
}
}
// TestComplianceServiceStructFields asserts ComplianceService carries
// compliance-id, jurisdiction, attestation-uri.
func TestComplianceServiceStructFields(t *testing.T) {
c := htypes.ComplianceService{
ComplianceID: "comp-1",
Jurisdiction: "EU-MiCA",
AttestationURI: "ipfs://attestation/abc",
}
if c.ComplianceID != "comp-1" || c.Jurisdiction != "EU-MiCA" || c.AttestationURI != "ipfs://attestation/abc" {
t.Error("ComplianceService fields not set correctly")
}
}
// --- Module consts + Params ----------------------------------------------------
// TestModuleConsts asserts the four Cosmos-convention module consts.
func TestModuleConsts(t *testing.T) {
if htypes.ModuleName != "hub" {
t.Errorf("ModuleName = %q", htypes.ModuleName)
}
if htypes.StoreKey != "hub" {
t.Errorf("StoreKey = %q", htypes.StoreKey)
}
if htypes.RouterKey != "hub" {
t.Errorf("RouterKey = %q", htypes.RouterKey)
}
if htypes.QuerierRoute != "hub" {
t.Errorf("QuerierRoute = %q", htypes.QuerierRoute)
}
}
// TestDefaultParams asserts DefaultParams returns a zero-value Params.
func TestDefaultParams(t *testing.T) {
_ = htypes.DefaultParams() // no panics
}
// --- Genesis -------------------------------------------------------------------
// TestDefaultGenesisStateEmpty asserts DefaultGenesisState returns non-nil
// empty slices for all three service sets.
func TestDefaultGenesisStateEmpty(t *testing.T) {
gs := htypes.DefaultGenesisState()
if gs == nil {
t.Fatal("DefaultGenesisState returned nil")
}
if gs.CustodyServices == nil || len(gs.CustodyServices) != 0 {
t.Errorf("Default CustodyServices should be non-nil empty slice; got len=%d nil=%v", len(gs.CustodyServices), gs.CustodyServices == nil)
}
if gs.LendingPrimitives == nil || len(gs.LendingPrimitives) != 0 {
t.Errorf("Default LendingPrimitives should be non-nil empty slice; got len=%d nil=%v", len(gs.LendingPrimitives), gs.LendingPrimitives == nil)
}
if gs.ComplianceServices == nil || len(gs.ComplianceServices) != 0 {
t.Errorf("Default ComplianceServices should be non-nil empty slice; got len=%d nil=%v", len(gs.ComplianceServices), gs.ComplianceServices == nil)
}
}
// TestValidateGenesisRejectsDupCustodyIDs asserts A-212: duplicate custody-ids
// are rejected.
func TestValidateGenesisRejectsDupCustodyIDs(t *testing.T) {
gs := htypes.GenesisState{
CustodyServices: []htypes.CustodyService{
{CustodyID: "c1", OperatorPartnerID: "a1"},
{CustodyID: "c1", OperatorPartnerID: "a2"}, // dup
},
}
bz, _ := json.Marshal(gs)
if err := htypes.ValidateGenesis(bz); err == nil {
t.Error("ValidateGenesis should reject duplicate custody-ids")
}
}
// TestValidateGenesisRejectsEmptyCustodyID asserts empty custody-id is rejected.
func TestValidateGenesisRejectsEmptyCustodyID(t *testing.T) {
gs := htypes.GenesisState{
CustodyServices: []htypes.CustodyService{{CustodyID: "", OperatorPartnerID: "a1"}},
}
bz, _ := json.Marshal(gs)
if err := htypes.ValidateGenesis(bz); err == nil {
t.Error("ValidateGenesis should reject empty custody-id")
}
}
// TestValidateGenesisRejectsDupLoanIDs asserts duplicate loan-ids are rejected.
func TestValidateGenesisRejectsDupLoanIDs(t *testing.T) {
gs := htypes.GenesisState{
LendingPrimitives: []htypes.LendingPrimitive{
{LoanID: "l1", CouponBps: 100},
{LoanID: "l1", CouponBps: 200}, // dup
},
}
bz, _ := json.Marshal(gs)
if err := htypes.ValidateGenesis(bz); err == nil {
t.Error("ValidateGenesis should reject duplicate loan-ids")
}
}
// TestValidateGenesisRejectsCouponAboveCap asserts the genesis-side clamp: a
// LendingPrimitive with coupon-bps above the local cap is rejected (A-304).
func TestValidateGenesisRejectsCouponAboveCap(t *testing.T) {
gs := htypes.GenesisState{
LendingPrimitives: []htypes.LendingPrimitive{
{LoanID: "l1", CouponBps: uint32(htypes.LendingCouponCapBps) + 1},
},
}
bz, _ := json.Marshal(gs)
if err := htypes.ValidateGenesis(bz); err == nil {
t.Error("ValidateGenesis should reject lending-primitive coupon-bps above local cap (A-304)")
}
}
// TestValidateGenesisRejectsDupComplianceIDs asserts duplicate compliance-ids
// are rejected.
func TestValidateGenesisRejectsDupComplianceIDs(t *testing.T) {
gs := htypes.GenesisState{
ComplianceServices: []htypes.ComplianceService{
{ComplianceID: "comp-1"},
{ComplianceID: "comp-1"}, // dup
},
}
bz, _ := json.Marshal(gs)
if err := htypes.ValidateGenesis(bz); err == nil {
t.Error("ValidateGenesis should reject duplicate compliance-ids")
}
}
// TestValidateGenesisRejectsBadJSON asserts malformed JSON is rejected.
func TestValidateGenesisRejectsBadJSON(t *testing.T) {
if err := htypes.ValidateGenesis(json.RawMessage(`{not json`)); err == nil {
t.Error("ValidateGenesis should reject malformed JSON")
}
}
// TestValidateGenesisAcceptsClean asserts a clean genesis validates.
func TestValidateGenesisAcceptsClean(t *testing.T) {
gs := htypes.GenesisState{
CustodyServices: []htypes.CustodyService{
{CustodyID: "c1", OperatorPartnerID: "a1", AssetRef: "bread"},
},
LendingPrimitives: []htypes.LendingPrimitive{
{LoanID: "l1", PrincipalGrain: 1_000_000, CouponBps: 500, TermDays: 365},
{LoanID: "l2", PrincipalGrain: 500_000, CouponBps: 800, TermDays: 180},
},
ComplianceServices: []htypes.ComplianceService{
{ComplianceID: "comp-1", Jurisdiction: "EU-MiCA", AttestationURI: "ipfs://x"},
},
}
bz, _ := json.Marshal(gs)
if err := htypes.ValidateGenesis(bz); err != nil {
t.Errorf("ValidateGenesis should accept clean genesis, got: %v", err)
}
}
// --- Lexicon assertion (REQ-012) -------------------------------------------------
// The hub module is HIGH lexicon-risk (lending primitive): the banned terms
// that are natural fit-words for a lending primitive (the compounding term,
// the storage terms, the tradable-unit terms) must NEVER appear. The coupon
// + lending vocabulary is used EXCLUSIVELY. The lexicon helpers are used
// here — no banned literals are inlined in this test file.
// TestLexiconNoBannedTermsInHubPackage scans every non-test .go file in the
// hub/types package directory for the banned terms (case-insensitive).
// Production files only — the test file references banned terms via the
// lexicon package helpers (standard lexicon-test bootstrapping pattern).
func TestLexiconNoBannedTermsInHubPackage(t *testing.T) {
pkgDir := packageDir(t, "github.com/oy/openyield/x/hub/types")
files, err := filepath.Glob(filepath.Join(pkgDir, "*.go"))
if err != nil {
t.Fatalf("glob: %v", err)
}
prodFiles := []string{}
for _, f := range files {
if strings.HasSuffix(f, "_test.go") {
continue
}
prodFiles = append(prodFiles, f)
}
if len(prodFiles) == 0 {
t.Fatal("no production .go files found in hub/types")
}
for _, f := range prodFiles {
bz, err := os.ReadFile(f)
if err != nil {
t.Fatalf("read %s: %v", f, err)
}
if found, ok := lexicon.FindBannedTerm(string(bz)); ok {
t.Errorf("%s: banned term %q (REQ-012 lexicon firewall — coupon+lending vocabulary only)", filepath.Base(f), found)
}
}
}
// TestLexiconNoBannedTermsInHubTestFile asserts this test file itself does not
// contain any banned term as a literal (the firewall scans test files too;
// the lexicon helpers must be used rather than inlining banned terms).
func TestLexiconNoBannedTermsInHubTestFile(t *testing.T) {
_, thisFile, _, ok := runtime.Caller(0)
if !ok {
t.Fatal("runtime.Caller failed")
}
bz, err := os.ReadFile(thisFile)
if err != nil {
t.Fatalf("read self: %v", err)
}
if found, ok := lexicon.FindBannedTerm(string(bz)); ok {
t.Fatalf("hub test file contains banned term %q — use lexicon helpers, not literals", found)
}
}
// packageDir resolves a Go import path to its filesystem directory by walking
// up from this test file (v0.3 skeleton has zero external deps).
func packageDir(t *testing.T, importPath string) string {
t.Helper()
_, file, _, ok := runtime.Caller(0)
if !ok {
t.Fatal("runtime.Caller failed")
}
// file = .../oy/x/hub/types/types_test.go -> repoRoot = .../oy (4 dirs up)
repoRoot := filepath.Dir(filepath.Dir(filepath.Dir(filepath.Dir(file))))
rel := strings.TrimPrefix(importPath, "github.com/oy/openyield/")
return filepath.Join(repoRoot, rel)
}
-47
View File
@@ -155,53 +155,6 @@ func (k *Keeper) ListByTier(tier PartnerTier) []Partner {
return out
}
// AnchorCredential is the institutional onboarding metadata for an Anchor
// tier Partner (REQ-023, D-038, A-305). The Anchor tier (the 4th of the
// 4-tier Partner Spectrum, REQ-018) gets institution-specific credential
// fields in v0.3. v0.2 defined the 4-tier enum + Partner struct +
// CredentialRef; v0.3 adds this AnchorCredential struct carrying the
// institutional onboarding metadata. No live institutional onboarding in
// v0.3 (the skeleton defines the type shape only).
//
// All cross-module references are by-ID-string per G-003:
//
// - anchor-id references a Partner with Tier=Anchor by ID-string
// (G-003). No struct import; the reference is validated against the
// Partner registry by the keeper, not the type system.
// - custody-provider-id references an x/hub custody service by ID-string
// (A-304/G-003). The hub is NOT live until P5/v0.4, so this field is
// EMPTY in the v0.3 skeleton (NewAnchorCredential sets it to "").
// The field exists so the shape is stable when the hub comes online.
// No struct import of x/hub.
// - credential-uri is an opaque URI to the institutional credential
// (regulatory jurisdiction, attestation refs, etc.) — like the v0.2
// Pier CredentialRef, kept opaque in the skeleton.
// - attestation-count is the number of Watcher/auditor attestations on
// the credential (starts at 0 in the skeleton).
type AnchorCredential struct {
AnchorID string `json:"anchor_id" yaml:"anchor_id"`
CustodyProviderID string `json:"custody_provider_id" yaml:"custody_provider_id"`
CredentialURI string `json:"credential_uri" yaml:"credential_uri"`
AttestationCount uint32 `json:"attestation_count" yaml:"attestation_count"`
}
// NewAnchorCredential constructs an AnchorCredential for an Anchor-tier
// Partner (D-038, A-305). The custody-provider-id is set to "" (empty)
// because the x/hub custody service is NOT live until P5/v0.4 (A-304:
// the field is typed-but-empty in the v0.3 skeleton; the hub is live in
// P5, so the field exists but is not validated against hub yet). The
// attestation-count is set to 0 (no attestations in the skeleton). The
// caller supplies the anchor-id (the Anchor Partner's ID) and the opaque
// credential-uri.
func NewAnchorCredential(anchorID, credentialURI string) AnchorCredential {
return AnchorCredential{
AnchorID: anchorID,
CustodyProviderID: "", // empty — hub not live until P5/v0.4 (A-304)
CredentialURI: credentialURI,
AttestationCount: 0, // no attestations in the skeleton
}
}
// Params for the partner module (skeleton — no tunables in v0.2).
type Params struct{}
-145
View File
@@ -411,151 +411,6 @@ func TestLexiconNoBannedTermsInPartnerTestFile(t *testing.T) {
}
}
// --- v0.3 Partner extension (P4-04, D-038, A-305) — AnchorCredential -------------
//
// The following tests extend the v0.2 partner tests with the v0.3
// AnchorCredential struct (D-038). The existing v0.1/v0.2 tests above
// MUST remain green — no regression. The PartnerTier enum (4 tiers) is
// locked since v0.2; v0.3 adds the AnchorCredential STRUCT only (no new
// tier — A-305).
// TestAnchorCredentialStructFields asserts the AnchorCredential struct
// carries all required fields (anchor-id, custody-provider-id,
// credential-uri, attestation-count) per D-038/A-305.
func TestAnchorCredentialStructFields(t *testing.T) {
c := types.AnchorCredential{
AnchorID: "anchor-1",
CustodyProviderID: "hub-custody-1",
CredentialURI: "oy:cred:anchor-1/jurisdiction/EU-MiCA",
AttestationCount: 3,
}
if c.AnchorID != "anchor-1" {
t.Errorf("AnchorID = %q", c.AnchorID)
}
if c.CustodyProviderID != "hub-custody-1" {
t.Errorf("CustodyProviderID = %q", c.CustodyProviderID)
}
if c.CredentialURI != "oy:cred:anchor-1/jurisdiction/EU-MiCA" {
t.Errorf("CredentialURI = %q", c.CredentialURI)
}
if c.AttestationCount != 3 {
t.Errorf("AttestationCount = %d, want 3", c.AttestationCount)
}
}
// TestAnchorCredentialAnchorIDIsString asserts the AnchorID field is an
// opaque string (by-ID-string ref to a Partner with Tier=Anchor — G-003),
// NOT a typed Partner import. This locks the by-ID-string invariant at
// the type level.
func TestAnchorCredentialAnchorIDIsString(t *testing.T) {
c := types.AnchorCredential{AnchorID: "partner-9"}
c.AnchorID = "partner-2"
if c.AnchorID != "partner-2" {
t.Errorf("AnchorID = %q, want %q (must be plain string — G-003)", c.AnchorID, "partner-2")
}
}
// TestAnchorCredentialCustodyProviderIDIsString asserts the
// CustodyProviderID field is an opaque string (by-ID-string ref to an
// x/hub custody service — A-304/G-003), NOT a typed x/hub import.
func TestAnchorCredentialCustodyProviderIDIsString(t *testing.T) {
c := types.AnchorCredential{CustodyProviderID: "hub-custody-9"}
c.CustodyProviderID = "hub-custody-2"
if c.CustodyProviderID != "hub-custody-2" {
t.Errorf("CustodyProviderID = %q, want %q (must be plain string — A-304/G-003)", c.CustodyProviderID, "hub-custody-2")
}
}
// TestNewAnchorCredentialConstruction asserts NewAnchorCredential sets
// the anchor-id and credential-uri from the constructor args, AND sets
// custody-provider-id to "" (empty — hub not live until P5/v0.4 per
// A-304), AND attestation-count to 0 (no attestations in the skeleton).
func TestNewAnchorCredentialConstruction(t *testing.T) {
c := types.NewAnchorCredential("anchor-1", "oy:cred:anchor-1/EU-MiCA")
if c.AnchorID != "anchor-1" {
t.Errorf("AnchorID = %q, want %q", c.AnchorID, "anchor-1")
}
if c.CredentialURI != "oy:cred:anchor-1/EU-MiCA" {
t.Errorf("CredentialURI = %q, want %q", c.CredentialURI, "oy:cred:anchor-1/EU-MiCA")
}
// custody-provider-id must be EMPTY in the skeleton (A-304: hub not
// live until P5/v0.4).
if c.CustodyProviderID != "" {
t.Errorf("CustodyProviderID = %q, want empty (A-304: hub not live until P5)", c.CustodyProviderID)
}
// attestation-count must be 0 in the skeleton.
if c.AttestationCount != 0 {
t.Errorf("AttestationCount = %d, want 0 (skeleton)", c.AttestationCount)
}
}
// TestNewAnchorCredentialCustodyProviderIDEmptyInvariant asserts the
// A-304 invariant: NewAnchorCredential ALWAYS sets custody-provider-id to
// "" regardless of inputs (the hub is not live until P5/v0.4; the field
// is typed-but-empty in the v0.3 skeleton). This is the dependency edge
// that forces P4 before P5 (D-044): x/partner Anchor lands in P4, x/hub
// in P5.
func TestNewAnchorCredentialCustodyProviderIDEmptyInvariant(t *testing.T) {
cases := []struct {
anchorID string
credURI string
}{
{"anchor-1", "oy:cred:a/EU-MiCA"},
{"anchor-2", "oy:cred:a/US-SOC2"},
{"", ""},
{"anchor-3", ""},
}
for _, c := range cases {
got := types.NewAnchorCredential(c.anchorID, c.credURI)
if got.CustodyProviderID != "" {
t.Errorf("NewAnchorCredential(%q,%q): CustodyProviderID = %q, want empty (A-304 LOCKED)", c.anchorID, c.credURI, got.CustodyProviderID)
}
if got.AttestationCount != 0 {
t.Errorf("NewAnchorCredential(%q,%q): AttestationCount = %d, want 0 (skeleton)", c.anchorID, c.credURI, got.AttestationCount)
}
}
}
// TestNewAnchorCredentialAttestationCountZero asserts the constructor sets
// attestation-count to 0 (no attestations in the skeleton; attestations
// are a v0.4 keeper concern).
func TestNewAnchorCredentialAttestationCountZero(t *testing.T) {
c := types.NewAnchorCredential("anchor-1", "oy:cred:anchor-1/x")
if c.AttestationCount != 0 {
t.Errorf("AttestationCount = %d, want 0 (skeleton — attestations are v0.4)", c.AttestationCount)
}
}
// TestAnchorCredentialZeroValue asserts the zero-value AnchorCredential
// has empty strings and a 0 attestation-count.
func TestAnchorCredentialZeroValue(t *testing.T) {
var c types.AnchorCredential
if c.AnchorID != "" || c.CustodyProviderID != "" || c.CredentialURI != "" {
t.Error("zero-value AnchorCredential should have empty string fields")
}
if c.AttestationCount != 0 {
t.Errorf("zero-value AttestationCount = %d, want 0", c.AttestationCount)
}
}
// TestPartnerTierCountStillFour is the v0.3 REGRESSION test (A-305): the
// PartnerTier enum is LOCKED at 4 tiers since v0.2; v0.3 adds the
// AnchorCredential STRUCT, NOT a new tier. This test asserts the count
// is still 4 (no new tier added by the v0.3 extension).
func TestPartnerTierCountStillFour(t *testing.T) {
if types.PartnerTierCount != 4 {
t.Errorf("PartnerTierCount = %d, expected 4 (A-305: v0.3 adds AnchorCredential struct, not a tier)", types.PartnerTierCount)
}
all := types.AllPartnerTiers()
if len(all) != 4 {
t.Errorf("AllPartnerTiers() len = %d, expected 4 (A-305 regression)", len(all))
}
// Anchor must still be the 4th tier (no new tier added before/after it).
if all[3] != types.TierAnchor {
t.Errorf("AllPartnerTiers()[3] = %q, want %q (Anchor must remain 4th tier)", all[3], types.TierAnchor)
}
}
// packageDir resolves a Go import path to its filesystem directory by
// walking up from this test file (v0.2 skeleton has zero external deps).
func packageDir(t *testing.T, importPath string) string {
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// Package types defines the Services module types (vision §13, REQ-025,
// D-040, A-307).
//
// OY-protocol services beyond the financial layer: Care (community care),
// SIM (connectivity), Vault (storage service), Mail (messaging). v0.3 ships
// the skeleton (enum + per-service struct stubs + genesis); no live services.
//
// Lexicon note (REQ-012): "Mail"/"SIM"/"Care"/"Vault" are not banned terms.
// Avoid the banned Holder-identity term (use "operator-reach-id" not the
// banned term). The per-package lexicon assertion in types_test.go is the gate.
//
// Cross-module references are by-ID-string per G-003 (no struct imports):
// - operator-reach-id references an x/identity Reach by ID-string (G-003).
// - window-id references an x/window Window by ID-string (A-307, G-003).
// A service-grant opens a Window on the holder's behalf (the Window
// Lifecycle interface hook, typed in v0.3, invoked at runtime in v0.4).
// - mailbox-id (MailService) and storage-quota-grain (VaultService) are
// opaque / in-package values; VaultService references x/vault by name only
// (the ServiceKind "Vault" is a service kind, NOT a struct import of
// x/vault — the naming collision is concept-level, not package-level).
package types
import (
"encoding/json"
"fmt"
)
const (
ModuleName = "services"
StoreKey = ModuleName
RouterKey = ModuleName
QuerierRoute = ModuleName
// ServiceKindCount is the locked count of ServiceKind enum values (vision
// §13, REQ-025, A-307). A regression firewall: adding/removing/renaming a
// service kind breaks this const's test.
ServiceKindCount = 4
)
// ServiceKind enumerates the four OY-protocol service kinds (vision §13,
// REQ-025, A-307): Care (community care), SIM (subscriber identity module /
// connectivity), Vault (storage service), Mail (messaging). The full services
// suite (the real-return token, Travel, +11 more) is Phase 4, out of v0.3
// scope (D-040). The real-return token's name in vision §13 uses a banned
// standalone term; this comment uses the lexicon-safe "real-return" phrasing.
type ServiceKind string
const (
KindCare ServiceKind = "Care" // community care
KindSIM ServiceKind = "SIM" // connectivity
KindVault ServiceKind = "Vault" // storage service
KindMail ServiceKind = "Mail" // messaging
)
// AllServiceKinds returns all four ServiceKind values in vision §13 order.
// Locked-const test asserts exactly 4 entries with these names (REQ-025).
func AllServiceKinds() []ServiceKind {
return []ServiceKind{
KindCare,
KindSIM,
KindVault,
KindMail,
}
}
// ServiceStatus enumerates the lifecycle states of a service (REQ-025). This
// is a LOCAL redefinition of the 4-state shape (mirrors the v0.2 PartnerStatus
// shape); no struct import of x/partner (G-003).
type ServiceStatus string
const (
ServicePending ServiceStatus = "Pending" // registered, not yet active
ServiceActive ServiceStatus = "Active" // live
ServiceSuspended ServiceStatus = "Suspended" // temporarily halted
ServiceRevoked ServiceStatus = "Revoked" // permanently revoked
)
// ServiceStatusCount is the locked count of ServiceStatus enum values.
const ServiceStatusCount = 4
// ServiceInfo is the registry record for a service (REQ-025, A-307).
// service-id is the unique identifier. kind picks the ServiceKind.
// operator-reach-id references an x/identity Reach by ID-string (G-003 — use
// "operator-reach-id" not the banned Holder-identity term). name is a human-
// readable label. status is the lifecycle state. window-id references an
// x/window Window by ID-string (A-307, G-003 — a service-grant opens a Window
// on the holder's behalf; the Window Lifecycle interface hook, typed in v0.3,
// invoked at runtime in v0.4). The window-id field is the by-ID-string ref
// that ties a service-grant to a Window scope.
type ServiceInfo struct {
ServiceID string `json:"service_id" yaml:"service_id"`
Kind ServiceKind `json:"kind" yaml:"kind"`
OperatorReachID string `json:"operator_reach_id" yaml:"operator_reach_id"`
Name string `json:"name" yaml:"name"`
Status ServiceStatus `json:"status" yaml:"status"`
WindowID string `json:"window_id" yaml:"window_id"`
}
// CareService is the per-service struct stub for a Care service (vision §13,
// REQ-025). care-id is the service identifier. care-kind is an opaque string
// (the kind of community care, e.g. "mutual-aid" — opaque so the enum is not
// locked in v0.3; care kinds are operational, not protocol-locked).
type CareService struct {
CareID string `json:"care_id" yaml:"care_id"`
CareKind string `json:"care_kind" yaml:"care_kind"`
}
// SIMService is the per-service struct stub for a SIM (connectivity) service
// (vision §13, REQ-025). sim-id is the service identifier. carrier is an
// opaque string (the connectivity carrier — opaque so the enum is not locked
// in v0.3 per A-308 venue pattern; carriers are operational).
type SIMService struct {
SIMID string `json:"sim_id" yaml:"sim_id"`
Carrier string `json:"carrier" yaml:"carrier"`
}
// VaultService is the per-service struct stub for a Vault (storage) service
// (vision §13, REQ-025). vault-id is the service identifier. holder-reach-id
// references an x/identity Reach by ID-string (G-003 — use "holder-reach-id"
// not the banned Holder-identity term). storage-quota-grain is the storage
// quota in Grain (the OY internal unit, by name only — no x/bread import).
// "Vault" here is a service kind, NOT a struct import of x/vault (the naming
// collision is concept-level; VaultService references x/vault by ID-string at
// runtime, not by Go import).
type VaultService struct {
VaultID string `json:"vault_id" yaml:"vault_id"`
HolderReachID string `json:"holder_reach_id" yaml:"holder_reach_id"`
StorageQuotaGrain int64 `json:"storage_quota_grain" yaml:"storage_quota_grain"`
}
// MailService is the per-service struct stub for a Mail (messaging) service
// (vision §13, REQ-025). mail-id is the service identifier. holder-reach-id
// references an x/identity Reach by ID-string (G-003). mailbox-id is the
// opaque mailbox identifier.
type MailService struct {
MailID string `json:"mail_id" yaml:"mail_id"`
HolderReachID string `json:"holder_reach_id" yaml:"holder_reach_id"`
MailboxID string `json:"mailbox_id" yaml:"mailbox_id"`
}
// Params for the services module (skeleton — no tunables in v0.3).
type Params struct{}
// DefaultParams returns the zero-value Params (skeleton — no tunables).
func DefaultParams() Params { return Params{} }
// GenesisState defines the services module genesis state (REQ-025). The
// ServiceInfos slice holds the registry records. The per-service stub slices
// hold the service-specific metadata. ValidateGenesis enforces service-id
// uniqueness across the registry (A-212).
type GenesisState struct {
Params Params `json:"params" yaml:"params"`
ServiceInfos []ServiceInfo `json:"service_infos" yaml:"service_infos"`
CareServices []CareService `json:"care_services" yaml:"care_services"`
SIMServices []SIMService `json:"sim_services" yaml:"sim_services"`
VaultServices []VaultService `json:"vault_services" yaml:"vault_services"`
MailServices []MailService `json:"mail_services" yaml:"mail_services"`
}
// DefaultGenesisState returns an empty genesis state with non-nil slices.
func DefaultGenesisState() *GenesisState {
return &GenesisState{
Params: DefaultParams(),
ServiceInfos: []ServiceInfo{},
CareServices: []CareService{},
SIMServices: []SIMService{},
VaultServices: []VaultService{},
MailServices: []MailService{},
}
}
// ValidateGenesis performs ID-uniqueness checks (A-212 upgrade from v0.1
// no-op): rejects duplicate or empty service-ids in the registry, and unknown
// ServiceKind / ServiceStatus values.
func ValidateGenesis(bz json.RawMessage) error {
var gs GenesisState
if err := json.Unmarshal(bz, &gs); err != nil {
return fmt.Errorf("services: invalid genesis: %w", err)
}
if err := validateServiceInfos(gs.ServiceInfos); err != nil {
return fmt.Errorf("services: %w", err)
}
return nil
}
// validateServiceInfos enforces service-id presence and uniqueness, and that
// each Kind/Status is a known enum value.
func validateServiceInfos(infos []ServiceInfo) error {
seen := make(map[string]bool, len(infos))
for i, s := range infos {
if s.ServiceID == "" {
return fmt.Errorf("service info [%d]: empty service-id", i)
}
if seen[s.ServiceID] {
return fmt.Errorf("service info: duplicate service-id %q", s.ServiceID)
}
seen[s.ServiceID] = true
if !knownServiceKind(s.Kind) {
return fmt.Errorf("service %q: unknown service kind %q", s.ServiceID, s.Kind)
}
if !knownServiceStatus(s.Status) {
return fmt.Errorf("service %q: unknown service status %q", s.ServiceID, s.Status)
}
}
return nil
}
// knownServiceKind reports whether k is one of the four ServiceKind values.
func knownServiceKind(k ServiceKind) bool {
for _, kk := range AllServiceKinds() {
if k == kk {
return true
}
}
return false
}
// knownServiceStatus reports whether s is one of the four ServiceStatus values.
func knownServiceStatus(s ServiceStatus) bool {
switch s {
case ServicePending, ServiceActive, ServiceSuspended, ServiceRevoked:
return true
}
return false
}
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package types_test
import (
"encoding/json"
"os"
"path/filepath"
"runtime"
"strings"
"testing"
"github.com/oy/openyield/lexicon"
stypes "github.com/oy/openyield/x/services/types"
)
// --- ServiceKind enum coverage (4) --------------------------------------------
// TestServiceKindCountLockedConst asserts ServiceKindCount == 4 and
// AllServiceKinds() returns exactly 4 (REQ-025, A-307). A regression firewall.
func TestServiceKindCountLockedConst(t *testing.T) {
if stypes.ServiceKindCount != 4 {
t.Errorf("ServiceKindCount = %d, expected 4 (REQ-025 LOCKED)", stypes.ServiceKindCount)
}
all := stypes.AllServiceKinds()
if len(all) != 4 {
t.Errorf("AllServiceKinds() len = %d, expected 4", len(all))
}
}
// TestAllServiceKindsNames asserts the 4 REQ-025 names in order with no extras,
// no dups, no renames.
func TestAllServiceKindsNames(t *testing.T) {
want := []string{"Care", "SIM", "Vault", "Mail"}
all := stypes.AllServiceKinds()
if len(all) != len(want) {
t.Fatalf("len = %d, want %d", len(all), len(want))
}
seen := map[string]bool{}
for i, k := range all {
if string(k) != want[i] {
t.Errorf("AllServiceKinds()[%d] = %q, want %q", i, k, want[i])
}
if seen[string(k)] {
t.Errorf("duplicate ServiceKind %q", k)
}
seen[string(k)] = true
}
}
// TestServiceKindValues asserts each named const matches its AllServiceKinds
// entry.
func TestServiceKindValues(t *testing.T) {
if stypes.KindCare != "Care" {
t.Errorf("KindCare = %q", stypes.KindCare)
}
if stypes.KindSIM != "SIM" {
t.Errorf("KindSIM = %q", stypes.KindSIM)
}
if stypes.KindVault != "Vault" {
t.Errorf("KindVault = %q", stypes.KindVault)
}
if stypes.KindMail != "Mail" {
t.Errorf("KindMail = %q", stypes.KindMail)
}
}
// --- ServiceStatus enum coverage (4) ------------------------------------------
// TestServiceStatusCountLockedConst asserts ServiceStatusCount == 4.
func TestServiceStatusCountLockedConst(t *testing.T) {
if stypes.ServiceStatusCount != 4 {
t.Errorf("ServiceStatusCount = %d, expected 4", stypes.ServiceStatusCount)
}
}
// TestServiceStatusValues asserts the four ServiceStatus named consts.
func TestServiceStatusValues(t *testing.T) {
if stypes.ServicePending != "Pending" {
t.Errorf("ServicePending = %q", stypes.ServicePending)
}
if stypes.ServiceActive != "Active" {
t.Errorf("ServiceActive = %q", stypes.ServiceActive)
}
if stypes.ServiceSuspended != "Suspended" {
t.Errorf("ServiceSuspended = %q", stypes.ServiceSuspended)
}
if stypes.ServiceRevoked != "Revoked" {
t.Errorf("ServiceRevoked = %q", stypes.ServiceRevoked)
}
}
// --- ServiceInfo struct + by-ID-string refs (G-003, A-307) --------------------
// TestServiceInfoStructFields asserts ServiceInfo carries service-id, kind,
// operator-reach-id, name, status, window-id.
func TestServiceInfoStructFields(t *testing.T) {
s := stypes.ServiceInfo{
ServiceID: "svc-1",
Kind: stypes.KindCare,
OperatorReachID: "reach-holder-1",
Name: "Care Service",
Status: stypes.ServiceActive,
WindowID: "window-1",
}
if s.ServiceID != "svc-1" || s.Kind != stypes.KindCare || s.OperatorReachID != "reach-holder-1" ||
s.Name != "Care Service" || s.Status != stypes.ServiceActive || s.WindowID != "window-1" {
t.Error("ServiceInfo fields not set correctly")
}
}
// TestServiceInfoWindowIDIsString asserts window-id is string-typed (A-307
// by-ID-string ref to x/window — G-003, no struct import). This is the
// window-id by-ID-string ref presence test mandated by the P5 task spec.
func TestServiceInfoWindowIDIsString(t *testing.T) {
s := stypes.ServiceInfo{WindowID: "window-abc"}
if s.WindowID != "window-abc" {
t.Errorf("WindowID = %q", s.WindowID)
}
}
// TestServiceInfoOperatorReachIDIsString asserts operator-reach-id is
// string-typed (G-003 by-ID-string ref to x/identity Reach — no struct import).
func TestServiceInfoOperatorReachIDIsString(t *testing.T) {
s := stypes.ServiceInfo{OperatorReachID: "reach-xyz"}
if s.OperatorReachID != "reach-xyz" {
t.Errorf("OperatorReachID = %q", s.OperatorReachID)
}
}
// --- Per-service struct stubs --------------------------------------------------
// TestCareServiceStructFields asserts CareService carries care-id, care-kind.
func TestCareServiceStructFields(t *testing.T) {
c := stypes.CareService{CareID: "care-1", CareKind: "mutual-aid"}
if c.CareID != "care-1" || c.CareKind != "mutual-aid" {
t.Error("CareService fields not set correctly")
}
}
// TestSIMServiceStructFields asserts SIMService carries sim-id, carrier.
func TestSIMServiceStructFields(t *testing.T) {
s := stypes.SIMService{SIMID: "sim-1", Carrier: "oy-mobile"}
if s.SIMID != "sim-1" || s.Carrier != "oy-mobile" {
t.Error("SIMService fields not set correctly")
}
}
// TestVaultServiceStructFields asserts VaultService carries vault-id,
// holder-reach-id (by-ID-string ref to x/identity — G-003), storage-quota-grain.
func TestVaultServiceStructFields(t *testing.T) {
v := stypes.VaultService{
VaultID: "vault-1",
HolderReachID: "reach-holder-1",
StorageQuotaGrain: 1_000_000,
}
if v.VaultID != "vault-1" || v.HolderReachID != "reach-holder-1" || v.StorageQuotaGrain != 1_000_000 {
t.Error("VaultService fields not set correctly")
}
}
// TestVaultServiceHolderReachIDIsString asserts holder-reach-id is string-typed
// (G-003 by-ID-string ref to x/identity Reach — no struct import).
func TestVaultServiceHolderReachIDIsString(t *testing.T) {
v := stypes.VaultService{HolderReachID: "reach-abc"}
if v.HolderReachID != "reach-abc" {
t.Errorf("HolderReachID = %q", v.HolderReachID)
}
}
// TestMailServiceStructFields asserts MailService carries mail-id,
// holder-reach-id (by-ID-string ref to x/identity — G-003), mailbox-id.
func TestMailServiceStructFields(t *testing.T) {
m := stypes.MailService{
MailID: "mail-1",
HolderReachID: "reach-holder-1",
MailboxID: "mbox-1",
}
if m.MailID != "mail-1" || m.HolderReachID != "reach-holder-1" || m.MailboxID != "mbox-1" {
t.Error("MailService fields not set correctly")
}
}
// --- Module consts + Params ----------------------------------------------------
// TestModuleConsts asserts the four Cosmos-convention module consts.
func TestModuleConsts(t *testing.T) {
if stypes.ModuleName != "services" {
t.Errorf("ModuleName = %q", stypes.ModuleName)
}
if stypes.StoreKey != "services" {
t.Errorf("StoreKey = %q", stypes.StoreKey)
}
if stypes.RouterKey != "services" {
t.Errorf("RouterKey = %q", stypes.RouterKey)
}
if stypes.QuerierRoute != "services" {
t.Errorf("QuerierRoute = %q", stypes.QuerierRoute)
}
}
// TestDefaultParams asserts DefaultParams returns a zero-value Params.
func TestDefaultParams(t *testing.T) {
_ = stypes.DefaultParams() // no panics
}
// --- Genesis -------------------------------------------------------------------
// TestDefaultGenesisStateEmpty asserts DefaultGenesisState returns non-nil
// empty slices for all five sets.
func TestDefaultGenesisStateEmpty(t *testing.T) {
gs := stypes.DefaultGenesisState()
if gs == nil {
t.Fatal("DefaultGenesisState returned nil")
}
if gs.ServiceInfos == nil || len(gs.ServiceInfos) != 0 {
t.Errorf("Default ServiceInfos should be non-nil empty slice; got len=%d nil=%v", len(gs.ServiceInfos), gs.ServiceInfos == nil)
}
if gs.CareServices == nil || len(gs.CareServices) != 0 {
t.Errorf("Default CareServices should be non-nil empty slice; got len=%d nil=%v", len(gs.CareServices), gs.CareServices == nil)
}
if gs.SIMServices == nil || len(gs.SIMServices) != 0 {
t.Errorf("Default SIMServices should be non-nil empty slice; got len=%d nil=%v", len(gs.SIMServices), gs.SIMServices == nil)
}
if gs.VaultServices == nil || len(gs.VaultServices) != 0 {
t.Errorf("Default VaultServices should be non-nil empty slice; got len=%d nil=%v", len(gs.VaultServices), gs.VaultServices == nil)
}
if gs.MailServices == nil || len(gs.MailServices) != 0 {
t.Errorf("Default MailServices should be non-nil empty slice; got len=%d nil=%v", len(gs.MailServices), gs.MailServices == nil)
}
}
// TestValidateGenesisRejectsDupServiceIDs asserts A-212: duplicate service-ids
// are rejected.
func TestValidateGenesisRejectsDupServiceIDs(t *testing.T) {
gs := stypes.GenesisState{
ServiceInfos: []stypes.ServiceInfo{
{ServiceID: "s1", Kind: stypes.KindCare, Status: stypes.ServiceActive},
{ServiceID: "s1", Kind: stypes.KindSIM, Status: stypes.ServiceActive}, // dup
},
}
bz, _ := json.Marshal(gs)
if err := stypes.ValidateGenesis(bz); err == nil {
t.Error("ValidateGenesis should reject duplicate service-ids")
}
}
// TestValidateGenesisRejectsEmptyServiceID asserts empty service-id is rejected.
func TestValidateGenesisRejectsEmptyServiceID(t *testing.T) {
gs := stypes.GenesisState{
ServiceInfos: []stypes.ServiceInfo{{ServiceID: "", Kind: stypes.KindCare, Status: stypes.ServiceActive}},
}
bz, _ := json.Marshal(gs)
if err := stypes.ValidateGenesis(bz); err == nil {
t.Error("ValidateGenesis should reject empty service-id")
}
}
// TestValidateGenesisRejectsUnknownServiceKind asserts an unknown ServiceKind
// is rejected.
func TestValidateGenesisRejectsUnknownServiceKind(t *testing.T) {
gs := stypes.GenesisState{
ServiceInfos: []stypes.ServiceInfo{{ServiceID: "s1", Kind: stypes.ServiceKind("Bogus"), Status: stypes.ServiceActive}},
}
bz, _ := json.Marshal(gs)
if err := stypes.ValidateGenesis(bz); err == nil {
t.Error("ValidateGenesis should reject unknown service kind")
}
}
// TestValidateGenesisRejectsUnknownServiceStatus asserts an unknown
// ServiceStatus is rejected.
func TestValidateGenesisRejectsUnknownServiceStatus(t *testing.T) {
gs := stypes.GenesisState{
ServiceInfos: []stypes.ServiceInfo{{ServiceID: "s1", Kind: stypes.KindCare, Status: stypes.ServiceStatus("Bogus")}},
}
bz, _ := json.Marshal(gs)
if err := stypes.ValidateGenesis(bz); err == nil {
t.Error("ValidateGenesis should reject unknown service status")
}
}
// TestValidateGenesisRejectsBadJSON asserts malformed JSON is rejected.
func TestValidateGenesisRejectsBadJSON(t *testing.T) {
if err := stypes.ValidateGenesis(json.RawMessage(`{not json`)); err == nil {
t.Error("ValidateGenesis should reject malformed JSON")
}
}
// TestValidateGenesisAcceptsClean asserts a clean genesis validates.
func TestValidateGenesisAcceptsClean(t *testing.T) {
gs := stypes.GenesisState{
ServiceInfos: []stypes.ServiceInfo{
{ServiceID: "s1", Kind: stypes.KindCare, OperatorReachID: "r1", Name: "Care", Status: stypes.ServiceActive, WindowID: "w1"},
{ServiceID: "s2", Kind: stypes.KindMail, OperatorReachID: "r2", Name: "Mail", Status: stypes.ServicePending, WindowID: "w2"},
},
}
bz, _ := json.Marshal(gs)
if err := stypes.ValidateGenesis(bz); err != nil {
t.Errorf("ValidateGenesis should accept clean genesis, got: %v", err)
}
}
// --- Lexicon assertion (REQ-012) -------------------------------------------------
// The services module must avoid the banned Holder-identity term (use
// "operator-reach-id"/"holder-reach-id" not the banned term). "Mail"/"SIM"/
// "Care"/"Vault" are not banned. The lexicon helpers are used here — no
// banned literals are inlined in this test file.
// TestLexiconNoBannedTermsInServicesPackage scans every non-test .go file in
// the services/types package directory for the banned terms
// (case-insensitive). Production files only — the test file references banned
// terms via the lexicon package helpers (standard lexicon-test bootstrapping
// pattern).
func TestLexiconNoBannedTermsInServicesPackage(t *testing.T) {
pkgDir := packageDir(t, "github.com/oy/openyield/x/services/types")
files, err := filepath.Glob(filepath.Join(pkgDir, "*.go"))
if err != nil {
t.Fatalf("glob: %v", err)
}
prodFiles := []string{}
for _, f := range files {
if strings.HasSuffix(f, "_test.go") {
continue
}
prodFiles = append(prodFiles, f)
}
if len(prodFiles) == 0 {
t.Fatal("no production .go files found in services/types")
}
for _, f := range prodFiles {
bz, err := os.ReadFile(f)
if err != nil {
t.Fatalf("read %s: %v", f, err)
}
if found, ok := lexicon.FindBannedTerm(string(bz)); ok {
t.Errorf("%s: banned term %q (REQ-012 lexicon firewall — use operator-reach-id not the banned Holder-identity term)", filepath.Base(f), found)
}
}
}
// TestLexiconNoBannedTermsInServicesTestFile asserts this test file itself does
// not contain any banned term as a literal (the firewall scans test files too;
// the lexicon helpers must be used rather than inlining banned terms).
func TestLexiconNoBannedTermsInServicesTestFile(t *testing.T) {
_, thisFile, _, ok := runtime.Caller(0)
if !ok {
t.Fatal("runtime.Caller failed")
}
bz, err := os.ReadFile(thisFile)
if err != nil {
t.Fatalf("read self: %v", err)
}
if found, ok := lexicon.FindBannedTerm(string(bz)); ok {
t.Fatalf("services test file contains banned term %q — use lexicon helpers, not literals", found)
}
}
// packageDir resolves a Go import path to its filesystem directory by walking
// up from this test file (v0.3 skeleton has zero external deps).
func packageDir(t *testing.T, importPath string) string {
t.Helper()
_, file, _, ok := runtime.Caller(0)
if !ok {
t.Fatal("runtime.Caller failed")
}
// file = .../oy/x/services/types/types_test.go -> repoRoot = .../oy (4 dirs up)
repoRoot := filepath.Dir(filepath.Dir(filepath.Dir(filepath.Dir(file))))
rel := strings.TrimPrefix(importPath, "github.com/oy/openyield/")
return filepath.Join(repoRoot, rel)
}