Commit graph

19 commits

Author SHA1 Message Date
Erik
6cc5e183b9 fix(render): foliage wind keys on the DAT-classified WeatherKind, not the day-group index (Campaign VM VM6)
FoliageWindByDayGroup / FoliageWindDayGroupPoint(int ActiveDayGroup, ...)
becomes FoliageWindByWeather / FoliageWindWeatherPoint(string WeatherKind,
...) in AtmospherePolicyDeclaration (Plugin.Abstractions is BCL-only, so
the key is the exact member name of AcDream.Core.World.WeatherKind rather
than the enum itself). The raw activeDayGroup index carries no weather
meaning by itself; WeatherState.cs already classifies each day group's
authored DAT name into one of five real weather kinds, and that fact was
already threaded through AtmosphericFrameInputs.Weather / uAtmosphereWeather.x
— this reuses it instead of guessing an index-to-category mapping.

Built-in table (BuiltInAtmosphericRenderPack.AtmospherePolicy()): Clear
0.25/0.15, Overcast 0.60/0.35, Rain 0.85/0.60, Snow 0.35/0.20, Storm
1.00/0.75 — all five WeatherKind members declared, the invented "Cloudy"
row dropped. RenderPackAtmospherePolicyEvaluation.FoliageWind now takes a
WeatherKind and matches by weather.ToString() (ordinal) against each
declared point's name; a kind absent from the table falls back to the
declared Clear row, then to (0,0) if Clear itself is undeclared. The
delta-seconds EMA interpolation (EaseTowardTarget) is unchanged.
AtmosphericPostProcessGraph.ResolveFoliageWind and its two callers
(RenderPostProcess via inputs.Weather; RenderDirectionalShadows via
foundation.Atmosphere.Kind) now pass WeatherKind instead of the day-group
int.

RenderPackValidation.ValidateAtmosphere (runs for every pack declaring an
AtmospherePolicy, not gated to Tier2/shadow packs) now rejects an unknown
or non-exact-case weather-kind name and a repeated kind, mirroring the
existing ActiveDayGroupMultiplier duplicate-key check.

Tests: RenderPackAtmospherePolicyEvaluationTests rewritten for the
kind-keyed API (all five kinds resolve to their declared row, an unlisted
kind falls back to Clear, ordinal exact-case matching, null-table
handling); RenderPackSpirvValidatorTests gains four descriptor-validation
cases (unknown name, wrong case, duplicate kind, the five-kind table
accepted); AtmosphericPostProcessGraphTests' three foliage-wind cases now
select WeatherKind.Storm via `with` instead of an assumed day-group index.

Spot-check (per the coordinator's ask, not changed here): yes —
ActiveDayGroupMultiplier / EvaluateDayGroupPolicy (pre-existing, Campaign
AR/VM3-era — BuiltInAtmosphericRenderPack.AtmospherePolicy()'s three rows
`new ActiveDayGroupMultiplier(0, 1.0), (1, 0.35), (2, 0.20)`) key the
sun-ray/shadow/volumetric day-group strength multiplier by the same raw
activeDayGroup index with an undocumented assumed meaning (0=brightest ...
2=dimmest), the identical class of issue this commit fixes for foliage
wind. Left unchanged per instruction; flagging for the coordinator to file.

Full solution Debug and Release builds green. App hermetic filter
6024/6026 — the same 2 pre-existing failures as VM6a/VM6b. Both were
re-run in isolation per the verification ask: both still fail alone (not
a load-flake in this environment) — confirmed via git stash earlier this
session that both already fail on the unmodified pre-VM6 baseline, so
they are pre-existing and unrelated to this change. Core.Tests hermetic
4697/4697. RenderPackValidator.Tests 30/30. No shader/spv changes in this
commit (pure C#/docs fix).

Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
2026-08-23 01:07:54 +02:00
Erik
39e8408c7d feat(render): weather-driven foliage wind for procedural scenery, shadows follow (Campaign VM VM6b)
Procedural-scenery foliage (trees/bushes — entity ids in the
ProceduralSceneryIdAllocator's 0x8XXYYIII namespace) sways with weather in
mesh_atmospheric.vert and all four directional_shadow_world_* caster vertex
shaders, both calling the identical new foliage_wind.glsl include so the
shadow moves with the leaf by construction.

Classification (FoliageWindClassification, AcDream.App.Rendering.Wb): two
new BatchData.flags bits, computed once per (entity, subset) from four
inputs — entity id (bit 31 for procedural scenery), the pack's declared
FoliageExclusions membership, the subset's TranslucencyKind, and
ObjectRenderData.HasCutoutSubset (computed once per mesh at build time, not
per frame). Bit 1 marks an alpha-cutout leaf subset; bit 2 marks an opaque
trunk subset (only when its own mesh also owns a cutout subset, so rocks
stay still). WbDrawDispatcher.ClassifyBatches (world receiver) and
AddDirectionalShadowBatches (caster) call this with the same four inputs, so
casters and receivers classify identically without needing to share state.
Retail's mesh_modern/terrain_modern/mesh_detail pipelines never read these
bits, so pack-off output is unaffected.

Motion model (foliage_wind.glsl, mirrored bit-for-bit in the new
FoliageWindModel for hermetic CPU tests): height-squared-scaled slow lean
for every foliage subset, plus branch swing and per-vertex-hash-decorrelated
flutter for cutout subsets only. AtmosphericPostProcessGraph.ResolveFoliageWind
resolves the wind block once per frame.Serial — advanced by whichever of
RenderDirectionalShadows (which runs first) or RenderPostProcess is called
first that frame, with the second reading the already-advanced state, which
is what keeps the caster and receiver reading byte-identical clock/strength
values. The per-day-group mean/gust target (AtmospherePolicyDeclaration.
FoliageWindByDayGroup, keyed by the same day-group index convention
ActiveDayGroupMultipliers already established: Clear/Cloudy/Overcast/Rainy)
eases toward its target over WeatherSystem.TransitionSeconds (10s) so a
weather change never snaps; wind-enabled off or indoor instead gates the
OUTPUT to an exact zero (not an asymptotic approach) so a settings toggle or
cell transition is immediate. The wind clock is a Stopwatch started at graph
construction (monotonic, session-relative magnitude for GPU sin() accuracy),
overridable by the same ACDREAM_SKY_PHASE_SECONDS pin SkyRenderer already
uses, for deterministic offline gates.

New settings: wind-enabled, wind-strength, wind-direction-degrees (225°
default — no authored retail wind direction exists to read),
wind-lean-metres, wind-branch-metres, wind-flutter-metres (0 on Low),
wind-canopy-height-metres.

Register row IA-25 files this as an intentional, strictly opt-in divergence:
retail applies no per-vertex wind displacement to any geometry. Known,
accepted limitation: classification is per mesh-subset (one BatchData.flags
word per indirect-draw batch), not per entity instance, so the rare case of
one mesh subset being reachable from both a procedural-scenery and a
non-scenery placement would classify all of that subset's instances alike.

Tests: FoliageWindClassificationTests (the full classification matrix),
FoliageWindModelTests (identity on non-foliage/calm-wind/base-vertex,
canopy-top displacement bound, z-never-increases, trunk has no flutter
term), RenderPackAtmospherePolicyEvaluationTests (exact day-group lookup,
no interpolation across day-group ids, easing convergence without overshoot
or discontinuity), AtmosphericShaderAbiTests (each of the five shaders calls
acdreamFoliageDisplace exactly once; mesh_modern/terrain/mesh_detail call it
never), and four AtmosphericPostProcessGraphTests additions (indoor/disabled
exact-zero gating, settings-to-UBO wiring, same-frame-Serial idempotency —
the last proxies the caster/receiver agreement invariant without needing
this hermetic harness's WbDrawDispatcher/TerrainModernRenderer dependency
chain to exercise RenderDirectionalShadows directly).

App hermetic filter: 6015/6017 (the same 2 pre-existing failures as VM6a,
confirmed unrelated). Core.Tests hermetic: 4697/4697. RenderPackValidator.Tests:
30/30. Full solution Debug and Release builds green. Shader recompile
touched exactly the 5 edited files' .spv (plus manifest); the retail oracle
set and every other pack shader are byte-identical.

Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
2026-08-23 00:56:34 +02:00
Erik
0930c35d1d feat(render): shader ABI v2 - AtmosphericFrame gains clock/wind blocks; caster pass binds it (Campaign VM VM6a)
AtmosphericFrame (set 3/binding 5) grows additively from 160 to 192 bytes:
two appended vec4 members, uAtmosphereClockWind and uAtmosphereWindAmplitude,
carry the foliage-wind clock/weather and amplitude inputs VM6b's shader
displacement will read. RenderPackShaderAbi renames the old constant to
AtmosphericFrameSizeBytesV1 (160), adds AtmosphericFrameSizeBytesV2 (192),
keeps AtmosphericFrameSizeBytes pointing at the current (v2) size, and adds
ShaderAbiVersion = 2. RenderPackSpirvValidator.ValidateAtmosphericFrame
accepts either the v1 (seven-member, 160-byte) or v2 (nine-member, 192-byte)
shape and rejects anything else naming both — this is why the frozen
external sample packs under samples/*/Shaders/*.spv, whose GLSL sources are
not in this tree, need no rebuild: a v1 shader bound to the 192-byte buffer
still reads correctly, since a bound range only needs to be >= the block's
own declared size.

DirectionalSunShadowRenderer's caster pass now binds AtmosphericFrame too
(both the multiview and per-cascade sites), through a new
AtmosphericFrameBufferBinding the graph owns and supplies via
DirectionalSunShadowRenderInput. AtmosphericPostProcessGraph.RenderDirectionalShadows
builds its own 192-byte ring allocation for this, separate from the world
receiver's frame block, because the caster pass runs before RenderPostProcess
constructs that block within the same frame. The four world caster pipeline
variants (opaque/cutout, base/multiview) are now allowed to declare binding
5 in the validator; terrain casters are untouched.

This commit is plumbing only: the two new members are always written but
never read by any shader yet (zero placeholders), so pack-on and pack-off
output are both pixel-identical to before. VM6b wires the real weather-driven
values and the shader-side displacement.

App hermetic filter: 5972/5974 (2 pre-existing failures unrelated to this
change, confirmed against the unmodified baseline). Core.Tests hermetic:
4697/4697. RenderPackValidator.Tests: 30/30. VulkanShaderManifestTests
(retail oracle set): 7/7, byte-identical.

Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
2026-08-23 00:30:02 +02:00
Erik
7a5f96ede5 feat(render): implement Campaign AR and terrain fidelity 2026-08-22 13:13:29 +02:00
Erik
fe1e68e5fe feat(quest): QT6 — plugins can read the contract tracker
The last piece of QT6's own scope: r10-quest-dialogs.md §11.6's contract half.
IGameState.Contracts exposes what the client structurally knows about quests,
which — per that same research — is the tracker and nothing else. The rest of
§11.6 (chat stream, tells, give, use, confirmations) is other features and
stays out of this campaign.

A pull-through source rather than a pushed mirror. Contracts change rarely and
are already owned canonically, so a second copy would only be a thing to keep
in step; reading through means a plugin cannot observe a stale list.

Both hosts implement it. The headless one carries contract id, stage and
progress but no names — a bot has no dat access — because losing the TEXT is
expected while losing the QUEST would leave a bot silently unable to see what
it is on. Same rule covers a contract the installed dat has never heard of: it
still projects, with empty text and a correct status, rather than vanishing.

The interface member is defaulted so a host predating this campaign still
satisfies IGameState.

Two lazy catalog loads exist (the panel's and this one) rather than one shared
instance. That is deliberate: threading a shared ContractCatalog through three
composition records to avoid reading a 322-row immutable table at most twice
per session would be plumbing for no correctness or performance gain, and the
comment at the call site says so.

Campaign QT is complete; the connected user gate is owed.

Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
2026-08-21 15:22:22 +02:00
Erik
cd6eefd0ba feat(plugins): enforce apiVersion; launcher plugins default ON with "none" opt-out
Two gaps from the MossTank shipment review.

**apiVersion was declared in every manifest and checked by nothing.** The
loader now refuses an unsupported contract BEFORE loading any code from the
plugin — checking after the fact is not equivalent, because by then the
assembly is in a collectible context and the mismatch surfaces as a type-load
or missing-member failure from inside the plugin, which reads like the plugin
is broken rather than built for a different host. PluginApi (Current /
MinimumSupported) lives in Plugin.Abstractions beside the contract it
versions, and the refusal is a distinct PluginApiVersionException so callers
can tell "update the client or the plugin" from "this plugin is broken". The
tests pin the ordering too: a manifest with a future apiVersion AND a missing
dll must fail on the version, a supported one on the dll.

**A launcher-launched client loaded no plugins until the user typed ids.**
LA5 distinguishes an omitted allow-list (load all) from an explicit empty one
(load none); a fresh character profile's list is empty, so it composed to
load-none. Direct launches pass null and load everything -- which is why the
gap never showed in development: the two launch paths disagreed and the
launcher was the one users get. This REVERSES the LA5 default deliberately:
"nothing configured" now composes to the omitted list, so plugins are on by
default, including ones installed later. The opt-out is kept -- losing it
would be a real regression for stripped sessions -- respelled as the literal
id "none", and the launcher's plugin box says so.

The cross-host shared fixture composes its explicit-load-none case through
the new spelling, keeping the reader-side contract tests (App and Headless
both preserve an explicit empty list) exactly as they were.

Complete Release suite: 14,469 tests pass on the standard hermetic lane
filter, 0 failures.

Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
2026-08-20 21:28:04 +02:00
Erik
81e6a48603 feat(mosstank): banes, protections and weapon auras
Three whole categories of buff were missing, for two different reasons, and
both were my errors.

**Protections and weapon auras were silently dropped by the description
parser.** They are self-targeted and were sitting in the spellbook the whole
time, but retail words them differently and the pattern only accepted
"Increases the caster's X by N":

    Fire Protection Self  -> "Reduces damage the caster takes from Fire by 9%."
    Armor Self            -> "Increases the caster's natural armor by 20 points."
    Aura of Blood Drinker -> "Increases a weapon's damage value by 2 points."

So the weapon and wand buffs do exist as self-cast "Aura of" lines and are now
cast. Each category has its own toggle, matching VTank's separate
BuffProfile_Prots and BuffProfile_Banes.

The underlying flaw mattered more than the two missing patterns: anything
unmatched was DISCARDED. It now falls into an Other bucket (off by default)
instead, so nothing self-targeted is lost without a word. A test caught a
second instance immediately -- regeneration spells say "Restores..." and were
vanishing the same way.

**Banes were excluded because I misread a flag.** I took IsSelfTargeted as
"can be cast on you". It means "needs no selection". Retail's own bane text
says exactly how they work:

    "Increases a shield or piece of armor's resistance to slashing damage by
     10%. Target yourself to cast this spell on all of your equipped armor."

So banes ARE cast on the person, and the catalogue now includes every
beneficial non-untargeted spell rather than only flagged self-casts, leaving
EvaluateGate to decide what a given target accepts. Before casting anything
without the self flag, MossTank selects the player -- and restores whatever
was selected before the pass, so targeting yourself does not quietly steal
the selection.

They are matched on retail's "Target yourself..." sentence rather than on the
word "Bane", so the classification comes from what the spell says it does.

Solution builds clean; 14,450 tests pass on the standard hermetic lane filter,
0 failures.

Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
2026-08-20 19:49:51 +02:00
Erik
b9674b1f1e fix(mosstank): unclickable button, empty skill list, dev font, and chat output
Four defects from the first in-world look, three of them with a definite root
cause rather than a plausible one.

**The Buff button did nothing.** Not a hit-testing problem -- the pointer found
the button perfectly. UiRoot's press handling asks the pressed widget whether
it owns the pointer; a widget that does not claim the press falls through to
"move the ancestor window", and a window drag returns early on release without
ever emitting a Click. UiButton and UiClickablePanel both override
HandlesClick for exactly this reason; UiSimpleButton never did. Latent since
that class was written, and invisible until it was put inside a draggable
window -- which is precisely what a markup plugin panel is.

Found by reproducing it headlessly through the real UiRoot dispatcher rather
than by reasoning about it: MarkupPanelClickTests drives press-and-release over
the button and asserts the bound action ran, with a separate test asserting the
pointer finds the button at all, so a future failure says which half broke.
My earlier guess -- that a modal at character select was swallowing the click
-- was wrong, and the screenshot of the panel live in world disproved it.

**"0 trained skills".** The skill-name table was read in OnLoad *before*
GameWindowCompositionPipeline.Run, which is what publishes the DAT collection,
so _dats was still null, the whole block was skipped, and the surface reported
an empty skill list with nothing to explain it. Bound in PublishDatCollection
instead -- the moment the data exists -- so it cannot run early again whatever
the phase ordering does, and a genuinely missing SkillTable now says so.

**Plugin text used the development bitmap font.** UiLabel and UiSimpleButton
gained a DatFont, and MarkupDocument now takes the retail interface font from
the host, so plugin panels render through the same glyph path (including
retail's two-plane outline) as authored panels.

**MossTank now writes to chat.** New BCL-only IPluginChat routes to retail's
ClientLocal log type (0x1A) -- the channel the client uses for its own notices,
local to this client, so a plugin cannot speak in the player's name. MossTank
announces the start, the finish with a cast count, and a stall.

Not addressed here: the cursor showing blue rather than amber. Traced but not
fixed -- CursorFeedbackController picks the cursor family from combat mode, and
CombatMode.Magic selects the blue Magic cursor where Default is amber. That is
a combat-mode question, unrelated to this change, and worth its own look rather
than a speculative fix folded in here.

Solution builds clean; 14,437 tests pass on the standard hermetic lane filter,
0 failures.

Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
2026-08-20 18:27:28 +02:00
Erik
17ebfc434d feat(mosstank): buff trained skills and attributes, pick tiers by skill, manage mana
Reworks MossTank against user feedback and the Virindi Tank feature docs
(virindi.net is reachable again over https with a self-signed cert; the
research doc's "unreachable" note is stale).

VTank's stated default is the spec: "automatically buffs every Attribute and
Skill you have trained", and "all buff spells are recast when they go below 5
minutes". The previous pass buffed the whole spellbook and refreshed at 60s;
both are corrected.

The hard problem was working out WHICH stat each buff raises. The client's
spell table has no such link -- it arrives from the server with the
enchantment -- and the naming is too irregular to infer: Invulnerability
raises Melee Defense, Impregnability raises Missile Defense, Fealty raises
Loyalty, Sprint raises Run, Arcane Enlightenment raises Arcane Lore, and the
line called Willpower raises the attribute named Self. Any name-matching
scheme dies on that last one.

Retail states it outright in each spell's own description ("Increases the
caster's Life Magic skill by 10 points"), so BuffProfile derives the whole
mapping from shipped data at runtime. It also carries the one alias the data
needs: the spell text says "Assess Monster" where the skill table says "Assess
Creature", and without that the skill silently never matches.

Two data facts that would each have caused a real bug, found by dumping the
spell table rather than assuming:

* Family is NOT a spell-line identity in general. Retail groups the
  instantaneous vital transfers by SOURCE vital, so family 89 holds both
  "Stamina to Health" and "Stamina to Mana". Picking the strongest tier in a
  family would convert into the wrong vital about half the time. Buff lines
  group by family (correct for duration buffs, which is retail's own stacking
  bucket); the conversions are found by name stem instead.
* Instantaneous spells have no duration and must be excluded from buff lines
  entirely, or they are treated as buffs that never appear to land.

Tier selection now follows the character's skill in the casting school against
the spell's difficulty (VTank's SpellDiffExcessThreshold-Buff), which is why
PluginSpellInfo gained School as a SKILL id -- MagicSchool is retail's 1-5
school enum, not something a character trains.

Mana upkeep is the loop asked for: convert stamina to mana when mana is low,
Revitalize when that leaves stamina too low to convert, and refuse to drain
stamina past a floor. Unknown vitals read as zero and are treated as "no
information" rather than "empty", so it will not cast on a healthy character.

Panel no longer shows at character select. IsAvailable is now the runtime's
own lifecycle state rather than a proxy, and markup gained visible="{Binding}"
plus UiElement.VisibleSource -- evaluated before the visible gate, because
TickSelfAndChildren returns early when hidden and an element could otherwise
never un-hide itself.

Also: a generated SpellId enum of all 6,266 spells (tools/SpellDump --enum),
generated from portal.dat rather than copied, so it cannot drift and carries
no third-party licence; skill and spell names now come from the retail tables
for display; and the Buff click logs unconditionally, so "nothing happened"
can be told apart from "the click never arrived".

Solution builds clean; 14,433 tests pass on the standard hermetic lane filter,
0 failures, including 21 covering the buff profile, tier selection and mana
loop.

Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
2026-08-20 18:09:02 +02:00
Erik
9d1117b923 feat(plugins): MossTank — a self-buffing plugin, and the automation surface it needed
First consumer of acdream's plugin automation surface, and the first slice of
the VTank-class plugin milestone
(docs/research/2026-07-29-vtank-plugin-automation-requirements.md).

MossTank shows a panel with a Buff button; clicking it casts every self-buff
the character is missing, skips what is already in force at an equal or higher
tier, and refreshes what is nearly expired.

The host/plugin line is the load-bearing decision here. The host publishes
spell DATA -- family, tier, difficulty, mana, duration -- plus a cast
primitive with a preflight gate. The plugin owns the POLICY. That is the
architectural conclusion the requirements research reached: VTank's engine
lived in plugin-land, built on Decal's primitives, and baking "best buff for
skill X" into the host would start pulling the engine inward one convenience
at a time.

Why the plan is driven off the spellbook rather than off trained skills, which
is the obvious reading of "buff every trained and specialised skill": the
client cannot honestly make that mapping. The link between a spell and the
stat it modifies arrives from the SERVER in the enchantment message and is
absent from the client's own spell table. What the client does know is which
spells the character has learned -- and a character only learns buffs for the
skills they use, so the spellbook reaches the same set without inventing a
mapping the client has no grounds for.

Surface added, all BCL-only so Plugin.Abstractions keeps its zero project
references:

* ICharacterInfo, ISpellCatalog, IMagicCommands, grouped behind one
  IAutomationSurface so IPluginHost grows by one member rather than three.
* IEvents.Tick. Automation is sequences, not single calls -- a buff pass casts
  several spells and must wait between them. Without a host tick a plugin
  would need its own timer thread re-entering the host off its update thread.
* NoOpAutomationSurface for hosts with no live session, so a plugin keeps one
  code path and checks IsAvailable.

Markup gained <button> and <label>; it previously supported only <meter>, with
a comment promising the rest. Buttons bind onclick to an Action property and
FAIL THE PANEL LOAD if it does not resolve -- a silently dead button is worse
than a panel that refuses to load, because the user clicks and there is
nothing to diagnose. Labels bind through a Func so a status line tracks its
binding instead of freezing at build time.

Enchantment reads use EnchantmentsInEffectSnapshot rather than the raw active
set: retail leaves a weaker same-family enchantment in the registry while a
stronger one is in force, and a plugin asking "am I buffed?" means in force.

BuffPlan is a pure function of (known buffs, active enchantments) precisely so
it can be tested without a session; 9 tests cover tier supersede, the
family-0 no-stack bucket that must not be de-duplicated, expiry refresh, and
plan stability across the rebuilds the tick loop performs.

Solution builds clean; 14,421 tests pass on the standard hermetic lane filter,
0 failures.

Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
2026-08-20 16:22:28 +02:00
Erik
c38f6b8852 build: make release restore reproducible 2026-08-18 10:29:00 +02:00
Erik
fbe9c8a288 fix(plugins): close LA5 host lifecycle review 2026-08-14 19:05:13 +02:00
Erik
95f4be94db feat(plugins): complete Campaign LA5 cross-host hosting 2026-08-14 18:12:59 +02:00
Erik
7983309d23 feat(ui): centralize retail selection state 2026-07-11 00:51:20 +02:00
Erik
019350fa31 feat(D.2b): IUiRegistry plugin UI surface + buffered drain into UiHost
Adds the plugin-facing UI registration surface (Task 9, final D.2b task).
Plugins call host.Ui.AddMarkupPanel(path, binding) from Enable(); calls are
buffered in BufferedUiRegistry before the GL window opens, then drained into
UiHost.Root in GameWindow.OnLoad inside the RetailUi block after the first-
party vitals panel. Faulty plugin markup is isolated (try/catch per panel,
logged + skipped). IPluginHost.Ui added; AppPluginHost wired; StubHost in
Core.Tests updated; BufferedUiRegistryTests confirms drain-once semantics.

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
2026-06-14 17:46:37 +02:00
Erik
0c0c042dca feat(core): add IGameState, IEvents, WorldEvents with replay-on-subscribe
Adds WorldEntitySnapshot, IGameState, IEvents abstractions; WorldEvents
implements replay-on-subscribe with per-handler exception swallowing;
WorldGameState tracks entities; AppPluginHost exposes all three; stubs
wired in Program.cs to keep build green ahead of Task 9 live wiring.

Co-Authored-By: Claude Sonnet 4.6 <noreply@anthropic.com>
2026-04-10 20:29:29 +02:00
Erik
9dfbc05052 refactor(abstractions): rename ILogger to IPluginLogger, doc Initialize
Addresses code quality review of ed1c2d0:
- ILogger would collide with Microsoft.Extensions.Logging.ILogger and Serilog.ILogger
  in any plugin file that imports both namespaces; renamed to IPluginLogger
- IAcDreamPlugin.Initialize now has an XML doc clarifying its lifecycle contract
2026-04-10 09:46:30 +02:00
Erik
ed1c2d061c feat(abstractions): add IAcDreamPlugin, IPluginHost, ILogger 2026-04-10 09:42:52 +02:00
Erik
caf57cca3e chore: phase 1 — add Core, Abstractions, App, Tests projects 2026-04-10 09:22:33 +02:00