67 commits
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6b0fa4ff0d |
feat(ui): Map/House panel — slices 2+3, panel shell + Map tab
Mounts host 0x2100006E slot 0x1000018C (RetailPanelCatalog.MapHouse = 16) as a two-tab UiTabPanel (Map default, House second) through the OP3/FA3 recipe (LayoutImporter.Build -> Bind -> ActivateTabBehavior). Toolbar button 0x1000019A un-ghosts (added to both RetailPanelCatalog.Mounted and .Toolbar). Combined into one commit because MapHousePanelController.Bind depends on both MapPageController and HousePageController existing — splitting them would mean landing dead code first. Map tab (gmMapUI, MapPageController): - Calendar formatter matching gmMapUI::Update's "Date: %s\nTime: %s" shape, reusing WorldTimeService.CurrentCalendar (new Func<DerethDateTime.Calendar> dependency threaded through InteractionRetainedUiDependencies/GameWindow — a stable long-lived service, not routed through the deferred-binding machinery Radar's per-session state needs). MonthName enum values already match retail display text; HourName's "AndHalf" suffix is rewritten to "-and-Half". - Coordinate math + marker placement reuse RadarCoordinates/ LandDefs.GidToLcoord verbatim (both already byte-exact ports of CPlayerSystem::InqPlayerCoords/LandDefs::gid_to_lcoord) — no re-port. PlaceMarkerOnMap's centering math (m_x0 + x - w/2) ported from gmMapUI::PlaceMarkerOnMap @0x004a18b0. Indoor gating clears the coordinate text and hides the player marker, matching gmMapUI::Update's else branch. - 53-town s_rgLocations table ported verbatim into MapLocations.cs. Markers built once at bind time via the panel's own RowTemplateResolver against m_pMap's authored hotspot-template attrs (0x47/0x48), with literal-string tooltips through AuthoredTooltipText/Enabled (RetailTooltipPresenter) — closes divergence-register row TS-85's last item, gmMapUI::AddMapNote @0x004A1C51. - Structural finding: m_pMap (0x100001EC) is itself authored as a Type-1 BUTTON (the GM click-to-teleport hook at gmMapUI::ListenToElementMessage), and the player/house icons (0x100001ED/EE) are its own NESTED children, not siblings — UiButton.ConsumesDatChildren swallows them from the normally-built tree. Both are re-resolved standalone through the same template resolver the town hotspots use and reattached under m_pMap. House tab (gmHouseUI, HousePageController): mounts the ListBox (0x100001E6) with its authored row template, wired to an empty Lines() source by default — genuinely empty until Slice 4's wire lands, matching retail's own PostInit (no Update call, no static content). 21 new tests (7 MapHousePanelControllerTests, 14 MapPageControllerTests): tab table pairing, close button, town-hotspot count/tooltips, calendar formatter golden values (Frostfell 27/119 P.Y., every HourName incl. AndHalf), player/house marker placement and indoor-gating reproduced against the real fixture via already-tested RadarCoordinates (no re-derivation). Fixture map_house_2100006E_1000018C.json captured via the shared RetailLayoutFixtureGenerator (other 34 fixtures deliberately NOT regenerated — out of scope for this batch, would touch unrelated panels' schema drift). Full solution builds clean; App suite 5391/0 failed/71 skipped (non-live; one earlier flaky streaming failure unrelated to this change, confirmed pre-existing on the branch before these commits). Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> |
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0e71d3b829 |
feat(app): Campaign CC slice CC4 — chargen screen shell + Heritage/Profession/Skills/Town pages
Mounts gmCharGenMainUI (enum 0x10000039, root 0x100003CC) via CharacterCreationUiController/CharacterCreationUiMountCoordinator, cloning CharacterManagementUiController's recipe. Master shell ports SetProgressState @0x004e7a10 (Olthoi tab-hide + redirect) and ListenToElementMessage @0x004e9450 (Back/Next/Finish/Help/Exit/Random nav) verbatim, with free tab navigation over all six pages. Heritage, Profession, Skills, and Town pages bind to CC3's RuntimeCharacterCreationState commands; Appearance and Summary mount as content-inert placeholders for CC6b/CC5. Live-DAT probing (CharacterCreationLiveDatTests) found two widget- mapping surprises the decomp's DynamicCast hints don't predict: the Profession slider's value field imports as an editable UiField (wired for direct numeric entry), and the avail/health/stamina/mana/credits displays author as UIElement_Button hosts whose Type-12 value child is swallowed by UiButton.ConsumesDatChildren — substituted with the button's own Label. No new DatWidgetFactory widget types were needed. Threads the installed DAT's real ChargenOptions into Runtime via the new RuntimeCharacterCreationState.InstallOptions, called from ContentEffectsAudioCompositionPhase.Compose (mirrors InstallSpellMetadata's pattern); headless keeps ChargenOptions.Empty unchanged. Wires CC3's F14 status-hook gap (ApplyCharacterCreated/ ApplyCreationFailed) to SessionStatusWriter for both graphical and headless hosts, and adds the CharacterCreation view/command seam through CurrentGameRuntimeAdapter and DeferredGameRuntimeStateCommands alongside CharacterSelection's existing shape. Register: AD-101/102/103, AP-212/213, TS-82 filed for the auto-gender- select interim default, the omitted ToD-account gate, the button-Label widget substitution, the Random-button approximation, the flat-listbox Skills simplification, and the Appearance/Summary placeholders. Runtime 1713/0 (was 1707), App 5117/13 skips (was 5101/6), Headless 165/0 unaffected, full solution Release build green. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> |
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ef96c55489 |
fix(ui,net): Campaign LA gate round 2 — char-select exit confirmation, authored row justify, world name
Finding 1 (Exit button dead): retail's gmCharacterManagementUI Exit
button (element 0x100003A4, offset 7 from the listbox base in
ListenToElementMessage@0x004ed5a0) opens MakeConfirmExitDialog
(0x004ed250), whose exact ID_CharacterManagement_ConfirmExit text
(table 0x23000002) and m_confirmExitDialogContext re-entry guard are
now ported. On confirm (matching RecvNotice_CloseDialog@0x004ed760
case 1's ConfirmationResult check) the client exits through the
EXISTING graceful window-close seam (CharacterSelectionRuntimeBindings
.RequestExit -> d.Window.Close, the same delegate
GameplayInputCommandController's Escape fallback already uses) so
disconnected/exited status events still fire via GameWindow.OnClosing
-> CompleteShutdown. Retail's real post-confirm destination is
QueueUIMode(0x10000009) -> gmEpilogueUI, an epilogue screen this round
does not port — recorded as AD-99. Credits (element 0x100003A3,
QueueUIMode(0x10000005) -> gmCreditsUI) stays visibly ghosted like
Create, same treatment, out of scope this round.
Finding 2 (row names center-aligned, retail is left): the character
row template (LayoutDesc 0x21000004, element 0x100003A5, live-DAT
confirmed HJustify=Left with three stateful Type-3 highlight-art
children and no Type-12 caption child) authors its OWN justify
directly, with no separate text child to lift a label from.
DatWidgetFactory.BuildButton's Left-justify branch required
!ReferenceEquals(labelInfo, info) — true only when a label was LIFTED
from a distinct child — so a button's own direct HJustify=Left was
silently dropped to UiButton's Center default. Widened the branch to
also honor the direct case, preserving the existing lifted-child
LabelOffsetX behavior and leaving genuinely-centered buttons
(CREATE/ENTER/DELETE/RESTORE) untouched.
Finding 3 (World box empty): parsed ACE's GameMessageServerName
(opcode 0xF7E1, ACE.Server/Network/GameMessages/Messages/
GameMessageServerName.cs; retail CM_Login::DispatchUI_WorldInfo
@0x006ad860 -> ClientUISystem::Handle_Login__WorldInfo@0x005641a0 ->
ECM_Login::SendNotice_WorldName@0x00692b10, notice 0x186a2, consumed
by gmCharacterManagementUI::UpdateWorldName@0x004ec120 /
RecvNotice_WorldName@0x004ec360 onto element 0x1000039B) as
src/AcDream.Core.Net/Messages/ServerName.cs, cross-checked against
holtburger's ServerNameData. WorldSession.ServerNameReceived fires
alongside CharacterListReceived (ACE sends both in one
SendConnectResponse batch); RuntimeCharacterSelectionState.
ApplyWorldName is the new J-owner field (ungated by lifecycle, since
either message can arrive first); CharacterManagementUiController
binds it onto the WorldTextElementId UiText. Per the LA1 status
vocabulary, the characterList STATUS event's worldName field is
intentionally NOT added this round (kept bounded to the client-side
fix) — a follow-up if the launcher UI wants it.
Also corrects AD-44, discovered stale while filing AD-99: its opening
claim ("acdream has no retained character-management screen") was
false as of this session — LA7/LA8 shipped the screen in earlier
commits without updating this row.
Tests: exit-confirm open/cancel/confirm/re-entry-guard flow;
DatWidgetFactory own-HJustify-Left/Center regression tests plus the
live-DAT pinned row-justify assertion; ServerName parse round-trip
(byte-exact vs ACE's AceWireWriter fixture, truncation/wrong-opcode
cases); WorldSession dispatch test (roster+world in one wire batch);
RuntimeCharacterSelectionState.ApplyWorldName tests (order-independent
of ApplyRoster, unchanged-value no-op, Reset clears); controller test
binding the World text element to the live snapshot. Extended the
shared RetailDialogFactoryTests.BuildDialogLayout test fixture with a
Confirmation-type branch (Accept/Reject buttons) since this is its
first RetailDialogType.Confirmation consumer.
Suites: full solution Release build green; AcDream.App.Tests 5100/6
skips, AcDream.Core.Net.Tests 965/0, AcDream.Runtime.Tests 1665/0, all
Release, 0 failures; live-DAT probes (ACDREAM_PROBE_LIVE_MOUNT=1)
green.
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
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6cfab727f1 | Implement retail character management screen | ||
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0e82cbf700 | feat(runtime): own character selection flow | ||
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a7ae756b44 |
fix #387: window resize never recreated the Vulkan swapchain (stretch)
User report: resolution picks (and window drags) stretched the image instead of changing the pixel count. Root cause: Campaign V slice V11 deleted the GL viewport target and left a null target, assuming the driver's OUT_OF_DATE/SUBOPTIMAL acquire/present results would drive swapchain recreation on resize. That is driver-dependent and spec-insufficient — this machine's Windows AMD driver keeps presenting the stale-extent swapchain scaled to the new window indefinitely, so OnFramebufferResize only ever updated the camera aspect while every pass (UI included) kept rendering at the old extent. Fix: SwapchainRecreateViewportTarget implements the existing IFramebufferViewportTarget seam for Vulkan and arms VulkanGraphicsContext.RequestRecreate() on every resize event; the next PrepareFrame rebuilds the swapchain at the live FramebufferSize (bursts collapse to one recreation, stale events cannot install a stale extent, minimised sizes stay gated by FramebufferResizeController). Tests: SwapchainRecreateViewportTargetTests (target contract, size- agnostic arming, null hook, controller-to-target end-to-end with the minimised gate). Full Debug App suite 4,941/3 skips. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> |
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cced83b483 |
feat(app): FA2 -- fellowship/allegiance command routing for graphical + headless hosts
Both LiveSocialSessionBindings construction sites updated together (LiveSessionRuntimeFactory.cs, HeadlessSessionHost.cs) so the single GameEventWiring.WireAll registration site serves both hosts identically (the K-slice unification). CurrentGameRuntimeCommandAdapter implements IRuntimeFellowshipCommands/IRuntimeAllegianceCommands over the App command bus (LiveSessionCommandRouter gains 12 new *RuntimeCmd records + registrations + LiveSessionCommandBindings send delegates), mirroring DirectGameRuntimeCommandAdapter's direct-session shape including the identical Quit leader-hand-off rule read from RuntimeFellowshipState. CurrentGameRuntimeAdapter (the graphical IGameRuntimeView/ IGameRuntimeCommands composite) exposes the two new views/command groups. Headless's DirectGameRuntimeCommandAdapter needed no changes -- it already implements both new interfaces from the Runtime-layer commit. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> |
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b4edee970f |
feat(ui): Campaign OP slice OP8 — Configure Keyboard
Ports retail's Configure Keyboard screen (gmKeyboardUI, LayoutDesc 0x21000009) — its own separate full-screen window, not a fifth Options- panel tab. Retires OP3's INERT contract for the Gameplay tab's Configure Keyboard button (0x10000204). DAT reader (src/AcDream.Core/Input/RetailActionMap.cs): reads the ActionMap singleton (DID 0x26000000, empirically the only one — not 0x27000000 as GetDBOType's Turbine-internal tag would suggest) and both MasterInputMap defaults (0x14000000 "gmDefaultMap"/0x14000002 "DefaultMap"), union-merged per (InputMapId, ActionId) — proven order- independent since the two maps' one shared context (0x5) has disjoint action-id sets. Empirically resolved three lane-D unknowns against the live DAT: the six ActionClass values (1=Movement, 2=Camera, 3=UI, 4=Combat, 5=Emote, 7=CharacterSettings — 6 is genuinely absent), that the six unnamed InputMaps are 100% non-bindable (render nothing, not an unlabeled group), and that the enum-to-DID pairing for the two master maps is inconsequential to the merge result. Identity table (src/AcDream.UI.Abstractions/Input/RetailActionIdentityTable.cs): maps DAT (InputMapId, ActionId) pairs to acdream's InputAction where a live consumer exists (~140 of 306 user-bindable rows — Movement/Camera/ Combat map almost completely; UI/Quickslot/Chat partially; only 5 of 87 Emotes and none of 48 CharacterSettings hotkeys, since acdream has no general emote player or hotkey-to-option-toggle dispatcher yet). Every entry cross-verified by label match AND a DAT-default-vs- KeyBindings.RetailDefaults() byte comparison (RetailActionIdentityRoundTripTests), which caught a real off-by-one in the Quickslot 13-18 block before it shipped and found three genuine pre-existing RetailDefaults() gaps (walk-mode's Shift-echoed chord, ten CameraAlternateControls arrow-key alternates, and the Quickslot Ctrl+N use-vs-select ambiguity) — none introduced by this slice, all documented rather than silently patched. KeyboardConfigController: six ActionClass list boxes built from the DAT, merged with live KeyBindings for mapped rows (rebind applies immediately through the same InputDispatcher every other input path uses) and a new sibling RetailUnmappedKeyBindings store for rows with no InputAction yet. Left-click a key button opens real InputDispatcher modal capture; right-click erases that slot. N-way conflict detection scans every other row plus the live KeyBindings table for acdream-only actions (Ctrl+M mute, debug F-keys) as the non-user-bindable refusal analogue, using retail's own byte-verified "Could not overwrite " string (table 0x23000004). OK/Cancel/Defaults/Revert reuse the OptionPage/IOptionRow verb model via a new ActionKeyMapOptionRow. Persistence is keybinds.json only (D4 — no .keymap file interchange). Five register rows: AP-202 (.keymap interchange narrowing), AP-203 (store-only rows with no live consumer), AP-204 (silent auto-reassign instead of retail's confirm dialog; OK/Cancel ported as left-click not right-click-release). Small supporting additions: UiButton.OnRightClick (additive, no existing behavior changed), InputDispatcher.Bindings getter (the screen's single live-truth read seam), RetailScanCodeMap (DIK scan code <-> Silk.NET Key, keyboard + the one mouse-device row). 19 new tests (6 ActionMap reader conformance incl. live-DAT row-count/ label pins, 1 DAT-vs-RetailDefaults round-trip, 12 controller behavior tests against the committed keyboard_config_21000009.json fixture) — full solution suite 13,147 passed / 4 skipped / 0 failed (baseline 13,128/4/0, zero regressions). Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> |
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86c0a7e0ee |
feat(runtime,net): Campaign OP slice OP1 — full character-option table, dirty model, real 0x01A1 blob builder
The retail Options panel (Campaign OP) needs a Runtime-owned option map
covering all 53 PlayerOption ids and the real batched SetCharacterOptions
(0x01A1) blob before any UI can be built on top of it. Today's surface only
modeled 6 ListenTo*Chat ids and the 0x01A1 builder was a malformed 16-byte
stub (deleted at Campaign CH slice CH3, docs/research/2026-08-09-chat-side-
channels-vs-ace.md).
- CharacterOptionTable.cs: the ONE typed table, PlayerOption id (0x00..0x34)
-> (Options1/Options2 word, mask, IsAutoSave, ClientDefault), transcribed
from acclient.h's verbatim CharacterOption/CharacterOptions2/PlayerOption
enums and byte-verified against IsAutoSaveOption @0x0059A600 (the 21-id
auto-save table) and GetDefaultOptionValue @0x005D2A30 (the Defaults-
button table). Reconstructing CharacterOptions1/2 defaults from the
ClientDefault column independently reproduces 0x50C4A54A / 0x00008700,
cross-confirming the id-mask mapping. CharacterOptionId (SocialActions.cs)
widened from 6 to all 53 ids to match.
- RuntimeCharacterOptionsState: SetOptionBit now resolves through the full
table (was a 6-case switch). New TrySetOption is the ONE shared local-
write-then-send/dirty seam — mirrors CPlayerModule::OnChanged exactly:
write the bit locally first, then either send 0x0005 immediately (auto-
save ids) or MarkDirty for the batched blob, no-op on an unchanged value
(retail's own early-return) or an unmodeled id. New dirty model (IsDirty/
FirstDirtiedAt/MarkDirty/TryFlush/TryFlushIfAutoSaveDue) uses an injected
TimeProvider so it's fully unit-testable without a live clock.
- Both IRuntimeCharacterCommands.SetSingleOption adapters (Direct + Current)
now route through TrySetOption instead of duplicating the write; this
fixes the headless local-write gap the OP1 research flagged (the direct
adapter previously sent the wire message without writing the bit first,
same class of bug CH4 fixed for the graphical host). Both also reject an
id outside the table instead of silently accepting it. LiveSessionRuntime
Factory's SendSingleCharacterOption closure now delegates to the same
seam instead of duplicating write-then-send inline.
- New IRuntimeCharacterCommands.SaveOptions(generation) — the explicit
blob-flush verb (retail's SaveToServer(force: 0)) — wired end-to-end in
both adapters, including a new SaveCharacterOptionsRuntimeCmd on the
graphical router.
- SocialActions.BuildSetCharacterOptions + WorldSession.SendSetCharacterOptions:
the real PlayerModule::Pack body per the wire research's field-by-field
layout — header always 0x460 OR'd with 0x001/0x008 when shortcuts/desired
comps are non-empty, favorite spells always 8 lists, never sets 0x100 or
0x200. Echoes last-parsed shortcuts/favorites/desired-comps/spellbook
filters (via new CharacterOptionsBlobSource) instead of zeroing them.
Conformance: a hand-computed golden byte vector (not generated by the
builder under test — the CH3 builder died of tests that pinned a wrong
shape and looked green) plus a round-trip through PlayerDescriptionParser.
Contract deviation: the 480 s auto-save timer and the flush-before-logout
trigger are implemented as fully-tested pure state-machine logic
(TryFlushIfAutoSaveDue) but are NOT wired into either host's live per-frame
loop or graceful-shutdown sequence in this slice — only the explicit
SaveOptions verb is production-wired. Wiring the timer touches App's
UpdateFrameOrchestrator graph and Headless's tick loop (outside this
slice's Runtime/wire-layer scope); wiring logout risks the already-fragile
graceful-shutdown sequence CLAUDE.md flags. Filed as TS-71 per the plan's
own escape valve ("target: not deferred" with a register row if deferred).
Also filed: AP-193 (the 0x34 HearPKDeathMessages id/mask is ACE-sourced,
unverifiable against the 2013 binary) and AP-194 (GetDefaultOptionValue's
table disagrees with the constructor default for ConfirmVolatileRareUse/
ShowHelm/ShowCloak — retail's own quirk, reproduced not fixed).
Tests: table completeness x53, auto-save/client-default split pinned
id-by-id against the byte-verified tables, unknown/reserved-id rejection
(0x35/0x36 landmines), local-write-then-send on both adapters + the router,
the dirty/flush state machine, SaveOptions, and the wire golden vector +
PlayerDescriptionParser round-trip. Full Release suite: 12,745 passed / 4
skipped / 0 failed (baseline 12,611/4/0 — slice adds 134 passing tests,
zero regressions).
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
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f7a6f46ba0 |
fix(chat): consolidated-review fixes — retail /help Detail extraction, seam wiring test
SHOULD-FIX 1: RetailClientCommandCatalog's ~45 catalog leaf verbs were showing acdream-authored Summary text for /help <verb> instead of retail's own Detail_HelpType(2) text. Byte-swept every Help* handler against the PDB-paired acclient.exe (verified MATCH), confirmed each Detail/Summary branch by reading the actual decompiled if/else shape (address order and string length both proved unreliable alone), and fixed a sweep_weenie_strings.py 800-char truncation bug that silently dropped several longer Detail branches. Resolved every ambiguous CmdHashData-registered verb (hor/hr/hom/hoa/alh/ah/friends_add/ friends_remove/squelch/unsquelch) by reading for Binary Ninja's nullptr-4th-arg decompiler artifact instead of trusting it. Coverage: 42 of 47 distinct catalog Definitions verbatim-extracted, 4 confirmed-null (index/clist/on/off register with a genuinely null help pointer — DoHelp falls to UnknownCommand for these, now reproduced), 1 honest UNVERIFIED (messagetypes builds its text from a runtime enum table, not a static string). ChatCommandRouter now prefers retail Detail text over the catalog summary; RetailCommandHelpTable's class doc no longer overclaims its own scope. SHOULD-FIX 2: extracted the a5a7eb4f-class OnInterfaceText wiring into a testable CreateChatViewModel method and added ComposedChatViewModelWiresOnInterfaceTextToSpewBox, which the prior FakeFactory-based test suite could never exercise. SHOULD-FIX 3: retires register row AP-113. DoLifestone/DoMarketplace print their own 0x1A refusal text (byte-recovered, UTF-16LE) instead of falling through to the generic 0x26 fallback; ChatCommandRouter's comment corrected to state the fallback's real scope. SHOULD-FIX 4: corrected the divergence register's stale AP section header sentence about AP-190's opacity default (refuted by |
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614a1e055f |
feat(chat): Campaign CH slice CH3 — side-channel membership, wire, and echo parity
Ports retail's SendTurbineChat (@0x0057db10) local pre-send membership gate so Roleplay/Society/Olthoi stop silently swallowing outbound chat: a new TurbineChatMembershipGate checks Turbine availability and the player's own Hear*Chat option before sending, raising "Turbine chat is not available." or the 0x0551 YouAreNotListeningTo_Channel refusal through the CH2 AddText chokepoint instead. Wired into both the graphical (LiveSessionCommandRouter) and headless (DirectGameRuntimeCommandAdapter) send paths so they can't diverge. Retracts the 26-day-old false "ACE doesn't run a TurbineChat server" claim from ISSUES.md, the roadmap, and project_chat_pipeline.md — ACE's TurbineChat implementation is complete and on by default; the real bug was treating Hear*Chat as a display filter instead of room membership. Also: implements SetSingleCharacterOption (0x0005), the only wire message that actually joins/leaves a Turbine room, and wires the five Settings Chat toggles to it (publish on Save, changed bits only) plus seeds ChatSettings from the server's own CharacterOptions2 on every PlayerDescription. Fixes the legacy-channel double-print (Fellow/Vassals/Patron/Monarch/CoVassals skip the local echo now that ChatChannelInfo.IsSelfEchoChannel is finally consulted). Routes /a to Turbine unconditionally (retail's @a never falls back to the legacy bitflag) and adds /ab for the legacy AllegianceBroadcast verb retail actually has. Surfaces a nonzero TurbineChat ack HResult instead of discarding it silently. Deletes the malformed, callerless SetCharacterOptions (0x01A1) and AddChannel/RemoveChannel (0x0145/0x0146) builders. Files every AC-specific algorithm change cites the named retail decomp (SendTurbineChat 0x0057db10, StartupTurbineChatSystem 0x0057EFB0, GameActionSetSingleCharacterOption) plus ACE/holtburger cross-checks. Register rows AP-181 (no client-side spam throttle) and UN-9 (an incidentally-discovered CharacterOptions1.Default literal mismatch, not investigated further) filed per the divergence-register rule. 11,957 passed / 4 skipped / 0 failed (full Release suite, up from the 11,916/4/0 baseline). Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> |
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7c4dd1ade7 |
feat(audio): Campaign A slice A5 — retail's region ambient soundscape
acdream had no ambient system: StartAmbient minted a handle and played nothing. Retail's is a weighted-accumulation + timer-queue engine, not looping voices. On every objcell change (24 m) CellManager::ChangePosition rebuilds per-sound weights over the 3x3 landblock ring x 64 land cells each, decoding each cell's terrain word through the region file's terrain -> scene -> AmbientSTBDesc chain; playback is a min-heap of absolute deadlines drained from the frame tick, where each pop fires a one-shot and re-arms. A continuous bed (base_chance == 0) is non-positional, crossfaded by its share of the TOTAL weight, and re-fired every min_rate seconds — that rate is the author's intended loop period, and re-firing is how retail fakes a sustained bed with no looping voice, re-rolling the variant and the crossfade each time. An intermittent one keeps its authored volume, plays at a random accumulated compass bearing at min + (max-min)*t^2, and is dice-gated. Indoors is silent by design: CEnvCell's contributor is a folded ret and EnvCell carries no sound data. The Opus review caught four bugs before this landed, one fatal: - Cell offsets were built in ABSOLUTE world coordinates and differenced against the listener's STREAMED-frame position, so every one of 576 offsets came out ~32 km, every contribution was culled, and the whole feature was silent with nothing logged. Offsets are now landblock-local the way Position::get_offset builds them, and the streamed-frame position is carried separately for playback, where it belongs. - The cell's weight was added to the shared denominator once per DESCRIPTOR instead of once per CELL, dividing every bed's crossfade by the table's entry count — enough to push a typical authored volume under the 0.03 audibility floor. - The drain used where retail's UseTime is strictly below, so a descriptor authored with a zero rate re-armed at the same instant and spun the frame forever. - Arming only enqueued; retail's UpdatePlayQueue PLAYS and then re-arms, so a newly audible ambient was silent for a full period after the crossing that made it audible. Also: beds now go through retail's single 16-voice priority pool rather than acdream's UI pool (retail has one pool; parking beds in the UI pool let an A4 portal cue chop one mid-wave and discarded the authored priority), and CalcDir's in-block test is XY-only, since CalcWeight includes Z on purpose and CalcDir excludes it on purpose. Two behaviours are knowingly incomplete and registered rather than guessed at slice end: TS-66 (sky-lit interiors should keep the outdoor set) and TS-67 (contribution weight is computed in-plane). Retires TS-29. The frame-loop hook is a typed IAmbientFramePhase, not a callback — the first attempt used an Action<float> and the architecture guard ExtractedUpdateOwners_DoNotRetainAnonymousCallbacks correctly rejected it. Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> |
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6eaa490bb3 |
feat(audio): Campaign A slice A4 — the interface sound bus
Retail's UI sound bank was absent, so three families of cue were silent: the portal enter/exit stingers, the AdminEnvirons dungeon atmosphere (chanting, drums, whispers, thunder — what players remember as dungeon 'music'), and every other interface slot. The bank's DID is not a literal anywhere in retail: GetUISoundTable @0x00563FB0 asks GetByEnum for enum slot 7, and DBCache::GetDIDFromEnum @0x00413940 resolves it through two EnumIDMap hops off the portal dat header's master map. UiSoundTableResolver walks that chain the way RetailCursorResolver already walks it for cursors. Against the shipped dats it resolves to 0x2000004B, and that table holds exactly the 32 UI_* slots (UI_EnterPortal 0x6A .. UI_Thunder6 0x8A) — content that confirms the walk independently of the decode. UiSoundTableResolutionTests pins the walk, the DID, and the content, and skips when dats are absent. Two corrections to the research along the way. The lane-5 note recorded GetByEnum's arguments transposed: the 0x22 it called a fileType is the CACHE type (CLOCache(cache, CSoundTable::Allocator, 0x22)) and the real second-hop key is 0x10000003; walking it the other way finds nothing. And its claim that the interface volume pref applies is wrong — GetAttenuation with ambient=0 multiplies by the EFFECT knob, so retail's interface_sound_volume stays the dead knob lane 1 byte-decoded it to be. EnvironSoundCueMap is an explicit 21-case table read straight out of Handle_Admin__Environs @0x0055DE20, not arithmetic: codes 0x65..0x72 sit 0x11 below their SoundType, but 0x73/0x74 have no case, so 0x75 lands on UI_Squeal (0x84) where an offset gives 0x86, and the switch ends at 0x7B with no 0x7C case. Verified case-by-case against the decomp rather than from the lane note, whose tail table was ambiguous. Cues are attached where retail plays them: the teleport-animation boundary for the portal pair, and the AdminEnvirons handler for the stingers. PlaySoundFromCenter's pan-0 / distance-0 shape is what PlayUiWave already implements after A2. Retires TS-54. Narrows AP-115 to its notice-presentation residual. Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> |
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e42b99482e |
feat(audio): Campaign A slice A2 — retail's 2D pan+gain mixer replaces AL 3D
Retail is not a 3D audio engine. Every gameplay buffer is created with m_3D = 0 and the DirectSound 3D listener the client sets up is dead code; spatialization is two CPU scalars per voice, frozen at emission. This slice ports that math and demotes OpenAL to a voice bank. RetailSoundMixer (new, Core) carries the byte-decoded curve from SoundManager::GetAttenuation @0x00550020: g = dist < 5 ? vol : 25*vol/d2, clamped to 1 BEFORE the single master multiply, db = ceil(20*log10 g), with a hard -50 dB floor at which retail does not start the voice at all (audible radius ~94.2 m at unity). Pan is PlaySoundInternal @0x00550170's (int)(-15*sin(delta-bearing)) in whole decibels, truncating toward zero, forced to dead centre when (int)distance < 5, with no front/back and no elevation cue. Every AL source is now source-relative with rolloff 0 and the global distance model is None: AL's InverseDistanceClamped was first-power (2/d), quieter than retail up close and far louder at range with no cutoff whatsoever. That was the largest audible divergence in the subsystem (AP-28, retired here). RetailVoicePool (new, Core) ports the allocator at 0x0054FEC0: ring scan for a free or finished slot, then evict the first slot whose DAT priority is strictly lower, else drop. Eviction compared GAIN before, so a loud unimportant sound could silence a quiet important one. It lives in Core because the engine's play path talks to native AL handles and could not be tested; the pool now has 12 conformance tests. The listener keeps using the camera position, which the decode shows is retail-faithful (SmartBox::set_viewer @0x00452D36 hands the same collided camera Position to SoundManager) — only the heading extraction changes, since retail reads one compass bearing and never a forward/up basis. An earlier draft of the plan called this a defect; corrected in the plan so it is not fixed backwards. Opus review found and this commit fixes: a linear pan-to-azimuth mapping that saturated to full separation at 30 degrees (OpenAL Soft's own speaker angle) where retail gives 15 dB — now inverts the constant-power pan law, so full deflection reaches 0.776 of the arc and both channels stay live; the stale FUN_00550ad0 / gain-eviction class header, which contradicted the register row this commit writes; missing discriminating tests for clamp order and pan truncation; dead PlayingGain state whose comment invented a retail symbol; and a third in-tree copy of Position::heading, now delegating to MoveToMath.PositionHeading. MasterVolume folds into the mixer's one multiply instead of AL listener gain, so the cutoff, radius and dB quantisation move with the slider. Register: AP-28 retired; AP-173 (pan law), AP-174 (volume taxonomy), TS-64 (two unimplemented sound prefs), TS-65 (volume-squared quirk, applied on the ambient path only) filed. Research note corrected twice where its summary contradicted its own decode (30 m dB, floor vs trunc). Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> |
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55b07f6a62 |
refactor(physics): hoist the live-entity collision builder to Runtime (#330 groundwork)
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LiveEntityCollisionBuilder and LiveEntityDefaultPoseResolver move from AcDream.App.Physics to AcDream.Runtime.Physics with no behaviour change — diff-verified byte-identical shape math by both review lenses. The Build signature's App-record parameter is replaced by presentation-free primitives with identical guard semantics, INCLUDING the FinalPhysicsState read the contract had missed and the implementer surfaced rather than dropped. Visibility stays internal: Runtime's existing InternalsVisibleTo grants already cover every consumer, so the implementation's public widening is reverted per the architecture review's finding 11. The registration WIRING is deliberately WITHHELD. Both Opus lenses failed it, converging: a shadow registered at spawn freezes there (RuntimeRemotePhysicsUpdater is Runtime-homed but App-driven — nothing headless ticks it), so a walking NPC becomes a phantom obstacle at its spawn point while the real NPC still passes through the bot; three of five shadow-lifetime edges leaked (pickup leaves a permanent invisible collider, supersession orphans a duplicate, generation reset never unregisters and the K-ledger convergence oracle only checks retained shadows AFTER disposal clears them); and headless cannot resolve BSP collision assets at all, so doors and chests would still be walk-through. The frozen-shadow root was the SESSION LEAD's contract error (fact 3), not the implementer's. #330 stays OPEN, rewritten as the seven-point scope map the reviews produced — the honest overnight deliverable is that map, not a half-mechanism carrying new divergences. Suite 11,235 passed / 4 skipped / 0 failed (the withheld seam's two tests account for the delta from the implementation run's 11,237). Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> |
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dae5b1ea68 |
fix(physics): TS-46 - seed the sweep from the Setup's own sphere list
Campaign P Slice P3 item 1. Retail CPhysicsObj::transition (0x00512dc0) seeds the collision sweep from CPartArray::GetSphere (the Setup's own <=2-sphere list, each origin+radius scaled by m_scale) via SPHEREPATH::init_sphere (0x0050c670) -- not from a symmetric two-scalar (radius, height) capsule reconstruction. The human Setup 0x02000001's authored spheres are (0,0,0.475) r=.48 and (0,0,1.350) r=.48; the old reconstruction from (0.48, 1.835) produced (0,0,0.48) + (0,0,1.355), a 5 mm head-center offset the TS-46 register row documented as a residual. Port: - SpherePath.InitPath gains a sphere-list overload (ImmutableArray< FlatCollisionSphere>, scale) sharing a new InitPathCore with the existing (radius, height) overload, which is now the degenerate 2-scalar case of the same code -- byte-for-byte unchanged, so every captured-fixture replay (CellarUpTrajectoryReplayTests, DoorBugTrajectoryReplayTests, CellarLipWedgeTests) keeps passing unmodified. - PhysicsEngine.ResolveWithTransition gains optional sphereList/ sphereScale parameters; empty/default preserves the legacy scalar path for every pre-existing caller. - LiveEntityMotionRuntimeController.GetSetupMoverShape is a new sibling of GetSetupCylinder (left untouched) that resolves the Setup's own sphere list plus Setup-derived step-up/step-down (CPartArray::GetStepUpHeight/GetStepDownHeight, 0x005180d0/0x005180f0, x ObjScale, 0.4 m fallback matching the pre-existing literal). - Threaded through PlayerMovementController (both resolve call sites, new SphereList property set by PlayerModeController.ApplyStepHeights and the Headless world projection), RuntimeRemotePhysicsUpdater (Tick + TickHidden), and RuntimeOrdinaryPhysicsUpdater.TryBegin. Remote/ordinary step heights are now Setup-derived instead of a hardcoded 0.4f literal. Projectile and camera-probe sweeps are untouched (already single-sphere-exact). - PlayerModeController.ApplyStepHeights also now applies the x ObjScale multiply to the player's own step heights (previously only the remote/ordinary paths did), closing an adjacent gap the P3 research flagged. Ts46SphereListConformanceTests proves the sphere-list overload sees the exact dat spheres (not the reconstruction), that the scalar overload is unchanged, and that ResolveWithTransition's sphereList parameter actually drives the sweep (a decoy-scalar control pair using a head-height obstacle sphere). Register: TS-46 retired (both residuals it named are closed); header count corrected to 40 active TS rows. dotnet build + dotnet test (Core.Tests 3991/2 skip, Runtime.Tests 425/0, App.Tests 3968/3 skip, complete solution build) all green. Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> |
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7a0227c12e |
feat(render): Vulkan campaign V11 step 3 — drop the GL packages and shaders
Commit 2 deleted the GL rendering backend's implementations; this step removes the package references and shader vocabulary they leave behind, so nothing in the App project still spells Silk.NET.OpenGL. Silk.NET.OpenGL and Silk.NET.OpenGL.Extensions.ARB are dropped from AcDream.App.csproj. Chorizite.Core stays — the audit is NOT clean: its Render.Enums (TextureFormat, BufferUsage) and Lib.BoundingBox types are used directly and extensively across the Wb texture/mesh pipeline, independent of the deleted GL IUniformBuffer implementers the package comment used to cite. The stale comment is corrected in place. IMeshPipelineDevice.Gl is removed along with the GL? gl parameter threaded through WbMeshAdapter's four constructors, WorldRenderComposition's CreateMeshAdapter, and VulkanMeshPipelineDevice's Gl => null implementation — nothing read any of them once the legacy per-mesh upload bodies were gone (confirmed by grep: the sole non-doc-comment hit was a test assertion). While in WbMeshAdapter.Dispose(), found and fixed a real bug along the way: its teardown still pattern-matched the deleted GL GpuFrameFlightController to decide whether to wait for submitted work, which VulkanFrameFlightController replaced at slice V6a without this site being updated — so the wait had been silently dead on every Vulkan run since then. Retargeted to VulkanFrameFlightController, which carries the same WaitForSubmittedWork(). The GL pixel-format vocabulary (Silk.NET.OpenGL.PixelFormat/PixelType) that WorldTextureArray/TextureFormatExtensions/TextureAtlasManager used for upload validation is replaced by AcDream.Content's existing Silk.NET-free UploadPixelFormat/UploadPixelType enums (added at MP1a to keep the bake tool GL-free); two new members (Rgb, Red, Float) extend that enum with their GL ABI constants to cover the full vocabulary WorldTextureArray needs, since MP1a's original set only covered what the extractor itself emits. ObjectMeshManager's App-boundary cast `(Silk.NET.OpenGL.PixelFormat?)batch.UploadPixelFormat` becomes a direct pass-through now that both sides share the type. GpuBindingModel.StorageTextureTable (the GL-only binding=9 emulation of the Vulkan texture table) is deleted and StorageBindingCount drops from 10 to 9; the descriptor-set-layout code that builds from that count (VulkanPipelineLayouts, VulkanFrameBindings) is untouched and just allocates one fewer always-dummy-seeded, always-unused binding. Several fully dead GL-only classes came along for the ride, confirmed by zero construction sites: SilkFramebufferViewportTarget (NullFramebufferViewportTarget is the sole production IFramebufferViewportTarget), SilkRenderGlStateReader (NullRenderGlStateReader.Instance is the sole IRenderGlStateReader), RuntimeRenderFrameClearPhase (VulkanRenderFrameClearPhase is the sole IRenderFrameClearPhase, expressing the same atmosphere-clear logic as a pass load-op instead), and GpuFrameTimer plus FrameProfiler's GL-owning FrameBoundary(GL) overload and BeginGpuFrame/EndGpuFrame bracket (RecordGpuSample is the only GPU-timing path any backend uses now — the ACDREAM_WB_DIAG nested-query exclusion these existed for no longer applies, since WbDrawDispatcher's own diagnostic GPU sampling already moved to the device's Vulkan timer pool). GpuFrameFlightController itself stays (never constructed with a real fence API in production, but its retirement-ledger/serial-ring logic is backend-neutral and still covered by its own unit tests) — only its GL-specific parts (the public GL constructor overload, SilkGpuFenceApi) are deleted, since removing the whole class would mean restructuring the frozen Slice-8 composition shape's GpuFrameFlightController? threading, which is out of this commit's scope. TextureParameters.cs and BufferUsageExtensions.cs (zero callers each) are deleted outright. common.glsl is deleted: nothing in the actual Vulkan .spv build reads it. tools/ShaderCompiler/Program.cs compiles each .vert/.frag pair directly and tools/ShaderCompiler/VulkanGlslPreamble.cs injects its own complete self-contained preamble per file; common.glsl's textual concatenation was exclusively Shader.cs's GL-only mechanism, deleted at Commit 2. The five shader files that named it in comments (mesh_modern.vert, particle.vert, particle.frag, sky.frag, terrain_modern.frag) are corrected to point at VulkanGlslPreamble.cs instead. mesh.vert/mesh.frag — the pre-N.5 legacy shader pair the mandatory modern path already made unreachable, with zero C# consumers and no compiled .spv — are deleted too. Regenerated via tools/compile-shaders.ps1: 9/9 remaining shader pairs compile (previously 9/10, with mesh the sole failure — the VulkanShaderManifestTests doc comment's "nine of ten are not Vulkan-expressible" was already stale before this commit). Test fallout: dead-subject test methods/files are deleted rather than patched (TextRendererFailureSafetyTests.cs, ClipFrameUploadTests.cs, GpuResourceRetirementTransactionTests.cs's GL queue tests, one WorldRenderDiagnosticsTests source-order test, one RenderFrameResourceControllerTests clear-phase-order test); tests whose subject moved or was renamed are updated in place rather than deleted (GpuContractTests, VulkanCapabilityGateTests, MeshPipelineDeviceSeamTests' pinned seven-member surface now reads six, ParticleBindlessInstanceTests' cross-dialect check now covers the one surviving dialect, WbMeshAdapterTests' misleadingly-named null-gl test — gpuDevice was always the parameter that actually threw). Build: `dotnet build AcDream.slnx -c Release` — 0 warnings, 0 errors, with the Silk.NET.OpenGL/.Extensions.ARB package references physically removed from the csproj (not just unreferenced in code). Tests: full-solution `dotnet test` green across every project. Zero remaining `using Silk.NET.OpenGL` anywhere in src/ or tests/. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> |
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8a7a0837e1 |
feat(render): Vulkan campaign V11 step 2 — delete the OpenGL backend
Vulkan is the sole, user-signed-off backend (V10 landed) and step 1 already removed ImGui/Studio/DevTools. This step deletes the GL rendering backend itself: every Gpu/Gl/** implementation, the Wb ManagedGL*/GLHelpers/GLSLShader/GLStateScope/RenderStateCache/ BindlessSupport family, Shader/ShaderProgramConstruction/SamplerCache, RenderBootstrap, and RenderFrameGlStateController. GameWindow.cs's Run()/CreateGraphics()/CreateBackbufferReader()/ OnLoad() collapse to their Vulkan-only arm; GameWindowGraphics loses its OpenGlGameWindowGraphics subclass. RuntimeOptions.RenderBackend and RenderBackendKind (incl. the Gl member of GpuBackendKind) are gone — there is nothing left to select between. The five world-draw dual-arm renderers (WbDrawDispatcher, EnvCellRenderer, TerrainModernRenderer, ParticleRenderer, SkyRenderer) and the composition roots (WorldRenderComposition, HostInputCameraComposition, LivePresentationComposition, FrameRootComposition) collapse to their RHI-only arm. GL-only diagnostic properties with a live external reader (DynamicBufferCount and friends) simplify to a documented `=> 0`/no-op rather than disappearing, since the reader is out of this commit's scope. A few GL-flavored mechanisms turned out to be backend-neutral once isolated: GlConstructionCleanupLedger is renamed ResourceConstructionCleanupLedger (exception-chain walking has nothing to do with GL), and GlfwNativePlatformProbe moved out of the otherwise GL-only GraphicalCapabilityRecord.cs into GraphicalWindowBackendSelection.cs before the rest of that file was deleted. Test files with no surviving subject are deleted outright (GraphicalCapabilityRequirementsTests, ShaderProgramConstructionTests, PortalDepthShaderParityTests, TextureCacheBindlessTests, TextRendererFailureSafetyTests, ClipFrameUploadTests, every Gpu/Gl/*Tests, GlTextureOwnershipTests, RenderFrameGlStateControllerTests); others get their dead GL-only members trimmed while their live assertions stay (ClipFrameLayoutTests' MeshClipSsboBinding check now reads GpuBindingModel.StorageClipRegions, the same binding index under its new backend-neutral name; GpuResourceRetirementTransactionTests drops its OpenGLGraphicsDevice-subclassing test double and the two GL queue tests it existed for). EnvCellRendererTests' construction helper now builds a real ObjectMeshManager via VulkanMeshPipelineDevice instead of passing null through a null-forgiving operator, since the RHI constructor never tolerated a null mesh manager and the old GL constructor (which did) is gone. Deferred to the next two steps, deliberately not touched here: the Silk.NET.OpenGL/.Extensions.ARB package references, IMeshPipelineDevice.Gl (WbMeshAdapter's GL? threading stays in place), Chorizite.Core's stale csproj comment (the package itself is still load-bearing — TextureFormat and friends are used well beyond the deleted ManagedGLUniformBuffer), and the CI/gate scripts. Build: `dotnet build AcDream.slnx -c Release` — 0 warnings, 0 errors. Tests: full-solution `dotnet test` green across every project (App.Tests 3937/3940 + 3 skips, Core.Tests 3296/3298 + 2 skips, all others 100%); the 2 App.Tests names that flake under full-suite parallel execution (#250-family, documented pre-existing) pass in isolation. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> |
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844cf092a1 |
feat(render): Campaign V slice V11 commit 1 - delete ImGui, Studio, and the DevTools frontend
The ImGui developer-tools stack (AcDream.UI.ImGui), UI Studio (src/AcDream.App/Studio), and the DevToolsFramePresenter/ SettingsDevToolsCompositionPhase ImGui composition machinery are removed. Vulkan never composed a DevTools frontend (DevToolsEnabled already forced false whenever the backend was Vulkan); this commit makes that permanent by deleting the only implementation rather than leaving a dead branch behind. What moved: Studio/SampleData.cs is a live production dependency (InteractionRetainedUiComposition's character-sheet fallback, plus three UI.Layout test files) - git mv'd to src/AcDream.App/UI/Layout/SampleData.cs, namespace AcDream.App.UI.Layout, and trimmed to the SampleCharacter API that is actually still called (BuildObjectTable/AddItem/AddEquipped/the item-guid and icon constants had zero callers left once the Studio fixture provider that used them was deleted). What survives as backend-neutral seams, per the tests that still exercise them: IDevToolsFrameLifecycle (moved into RenderFramePreparationController.cs, now always bound to null), IFramebufferDevToolsTarget/FramebufferDevToolsBinding in FramebufferResizeController.cs (its concrete DevToolsFramebufferTarget adapter is deleted), and IDevToolsGameplayCommands in GameplayInputCommandController.cs (DevToolsGameplayCommands becomes a documented no-op instead of forwarding to the deleted presenter). A follow-up re-homes Settings/Debug onto the retained UI through IPanelRenderer; until then keybind remapping falls back to editing keybinds.json. DevToolsEnabled is now `private const bool DevToolsEnabled = false`. RuntimeOptions.DevTools is unchanged and still reaches VulkanGraphicsContext for the optional debug-utils extensions; Program.cs now logs one line when ACDREAM_DEVTOOLS=1 explaining that the ImGui UI is gone and the flag is Vulkan-only now. Removed: AcDream.UI.ImGui (project + ImGui.NET/Silk.NET.OpenGL.Extensions.ImGui package refs), src/AcDream.App/Studio (minus SampleData.cs), DevToolsFramePresenter.cs and everything only it constructed (ISettingsDevToolsCompositionFactory, RetailSettingsDevToolsCompositionFactory, DevToolsCompositionOwner, IGameWindowSettingsDevToolsPublication, SettingsDevToolsOptionalDependencies, the "developer tools" shutdown-ledger stage and its DevTools-typed fields on IngressShutdownRoots/ RenderShutdownRoots), the ui-studio Program.cs verb, and the cimgui native manifest entries in GraphicalHostPlatformServices. GameWindow.cs's DevTools composition branch, its _vitalsVm/_debugVm/_devToolsComposition/ _devToolsFramePresenter/_devToolsCommandBus fields, and every settingsDevTools .DevTools?.* access across FrameRootComposition.cs/SessionPlayerComposition.cs are gone with it. Build green; complete Release solution suite 8,830 / 5 skips (App Tests 4,097/3 skips run standalone - one #250-family zero-allocation test flakes under the full parallel `dotnet test AcDream.slnx` run, a pre-existing, documented class unrelated to this change). Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> |
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59c6b2ae94 |
feat(render): Campaign V slice V6m commit 1 - portal space draws on Vulkan
PortalTunnelPresentation was the last raw-GL world-adjacent renderer. It now
draws on both arms, and the composition that used to hand the Vulkan arm a
portal-less teleport presentation is gone with it.
Nothing about the scene changed. Same synthetic DAT Setup resolved through the
same client-enum mapping, same 40 fps CSequence, same retail rotation cadence,
same distant light, drawn through the same already-dual-arm WbDrawDispatcher.
What forked is only where the draw is recorded:
* GL keeps its GLStateScope, its viewport/scissor/depth/cull/blend statements
and its depth-only glClear, untouched.
* The RHI arm opens a backbuffer pass of its own and publishes it on
IWorldPassScope for the span of the draw - the shape V6l gave the two
offscreen viewports, and required for the same reason: the dispatcher's RHI
arm borrows its pass rather than opening one. Publication comes after
BeginPass and before UploadRetailLight, because publishing resets the
frame-global sections and this scene wants its own light, not the world's.
The one substantive decision is the pass's COLOUR load op, and it is a Clear
rather than a Load. Retail preserves the colour target and only clears depth
(UIViewportObject::DrawContent @ 0x006950A5 -> Clear(4) = D3DCLEAR_ZBUFFER), and
so does the GL arm. A Vulkan pass cannot inherit an image the way a bound
framebuffer can: under MSAA the frame's world pass RESOLVES into the swapchain
image and stores DontCare into the multisampled scratch, so a second
multisampled pass declaring Load would load undefined contents - plan section
5.5.12 item 5, the same hazard that merged the clear into the world pass.
Re-clearing is exact rather than approximate because of an invariant the frame
graph already enforces. RenderFrameFoundation.PortalViewportVisible and this
scene's IsVisible are the same value, read once at the top of the frame, and
WorldSceneRenderer returns without drawing when it is set. So whenever portal
space draws, the backbuffer holds exactly the opaque black
SceneTool::BeginScene @ 0x0043DAD0 establishes and nothing else, and clearing to
that same black changes no pixel. The alternative - a single-sampled Load pass
over the resolved image - would have been both a silent MSAA divergence and
invalid, since the backbuffer's depth attachment is multisampled.
The pass takes IWorldPassScope.SampleCount, so WbDrawDispatcher's sample-count
pipeline variants (V6l) select the backbuffer set, and depth matches the
attachment.
CreateRequired becomes internal: its two new seams are internal RHI contracts
and composition is its only caller. The TYPE keeps its visibility - plan section
7.1 rule 3.
Gates. Release build green. App tests 4,132 / 3 skips against the 4,129
baseline (three new: the retail black constant, the RHI arm's composition
precondition, and the both-arms composition assertion). Complete Release suite
9,195 / 5; one AcDream.Content failure in the solution-wide run that passes
124/124 rerun alone - the documented rerun-singly flake class, not carried
forward as a claim. Strict GL offline pixel gate against
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f84eef3256 |
feat(render): Campaign V slice V6j commit 2 - Dereth draws on Vulkan
The three world renderers' submission arms, both pass executors, and the
composition that reaches them. This is the unit three predecessors stopped at.
What it produces. ACDREAM_RENDER_BACKEND=vulkan on the offline scene renders
terrain with blended textures and road overlays, the water edge, static world
meshes, procedural scenery, and the complete retained UI - the same frame the GL
pixel gate captures, from the same camera, minus the sky. artifacts/v6j-vk2.
The shape, and why it is not V4c's. Section 5.5.6 chose option (B) after NVIDIA
rendered the V4c binary 10/10 where AMD's GL stack did not: GL keeps its raw
world path through to V10 as a documented fork confined to the submission seam,
and the RHI world path ships on Vulkan. So V4c's and V4d-2's content returns as a
SECOND arm rather than a replacement. The GL arm issues the same GL statements in
the same order against the same objects; the encoder arm lives in three .Rhi.cs
partials and is entered by one branch per submission site.
Three differences from V4c, each because the tree moved under it. There is no
binding-9 texture table - V4t put the slot on the device and Vulkan binds set 2,
so the arm that used to intern bindless handles simply has nothing to do. The
pipelines carry the device's sample count rather than 1, because Vulkan requires
rasterizationSamples to match the pass and alpha-to-coverage is a no-op at one
sample. And no renderer opens a pass.
That last one is structural, not tidiness. Under MSAA the frame's one backbuffer
pass resolves into the swapchain image and stores DONT_CARE into the multisampled
scratch, so a second pass declaring Load would load undefined contents; the
backend also permits one open pass per frame. VulkanWorldScenePhase therefore
opens the pass, publishes the encoder on VulkanWorldPassScope for exactly the
span of the inner WorldSceneRenderer, and every renderer borrows it.
Three sections are frame-global on GL and cannot be on Vulkan: the SceneLighting
UBO, the per-cell clip regions, and the terrain clip block. GL binds each to a
global binding point and every consumer inherits it. Vulkan binds a descriptor
set per draw, and a renderer's own binds are what select the scope those sections
must land in - so their writers PUBLISH into WorldFrameSections and each renderer
binds them inside the pass, after its own binds. SceneLightingUboBinding's
per-flight-slot buffer pool disappears with it: a ring allocation is already
distinct memory that lives until the frame retires, which is the property the
pool existed to provide.
Both pass executors became backend-neutral rather than gaining twins. Everything
they do is delegation to a renderer except four concerns - the clip-frame
publication, the doorway scissor, gl_ClipDistance enablement, and retail's
interior depth clear - so those four move behind IWorldPassSurface and retail's
ordering, which is what these classes are actually for, is written once. The GL
implementation issues the statements the executors used to issue inline.
Clip distances are no-ops on the Vulkan arm, and that is safe rather than a
divergence: Vulkan activates every element the shader declares, and all three
world vertex shaders already write 1.0 into every slot past the active count.
The interior depth clear becomes vkCmdClearAttachments, reached through the scope
so the pinned contract stays frozen and the backend-only verb stays in the
backend. The hook for it was already committed at V6i-3 with a cref to a type
that did not exist yet; it exists now.
The collision-wireframe DebugLineRenderer is composed as null on the Vulkan arm.
DrawAndPublish flushes it INSIDE the world phase and it opens its own pass, which
the one-pass rule forbids. The toggle is DevTools-only and DevTools is not
composed there, so nothing is lost - composing it would throw on the first
wireframe frame rather than silently misdraw.
Two seams widened rather than invented. GameWindowGraphics answers whether the
backend has a world-pass seam, because the three composition phases that need it
already borrow that handle and "does this backend work that way" is what the type
exists to answer. And MeshSourceReady replaces the anyVao != 0 gate with the same
question in backend-neutral form - V6i-3 published HasStores for exactly this -
so the predicate evaluates identically on GL.
What is NOT here, and is expected. Sky and weather are still raw GL (V4f), so the
Vulkan frame's sky is the atmosphere fog clear. Particles (V4e), the paperdoll and
appraisal viewports and the portal depth mask (V4g) likewise. The executors
already accepted all of them as absent.
Gates. Release build green. App tests 4,112 passed / 3 skipped, the unchanged
baseline; complete Release suite 9,175 / 5. Strict GL offline pixel gate against
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fe8abacfc6 |
feat(render): Campaign V slice V6i-3 commit 1 — the mesh pipeline's upload bodies cross the seam
V6i-2 cut IMeshPipelineDevice at the measured surface and proved the mesh
pipeline could be CONSTRUCTED without naming a backend. It said plainly what it
did not claim: "the mesh pipeline does not RUN on Vulkan. Its upload bodies are
still raw GL — GlobalMeshBuffer, the VAO/IBO construction, the layer transfers."
This moves them, and gives the interface its second implementation.
GlobalMeshBuffer takes GL?. The two backing stores were already IGpuBuffer
(V4b); what still needed a context was the vertex array and the attribute
pointers, which have no RHI verb because Vulkan bakes vertex input into the
pipeline. So a backend with none builds the stores and nothing else, publishes
0 for VAO/VBO/IBO, and publishes VertexStore/IndexStore — the same buffers,
named the way a pass encoder binds them. HasStores is the backend-neutral form
of the VAO != 0 readiness test the raw-GL draw paths make. Two bodies fork on
the context and nothing else does: InitBuffers skips the vertex array, and
CommitMigration skips the rebind — on the encoder arm the field swap IS the
atomic publication, because the next pass reads whatever the field then holds.
The store deletion likewise splits: GL keeps its immediate DeleteRetired,
because the arena's own flight gate has already proven no submitted frame can
reference the store, while the other arm has no second deferral to skip and
Dispose is its retirement-queued release.
ObjectMeshManager's RequireGl narrowed to the LEGACY per-mesh upload. Its three
call sites were one modern-path constructor argument and two bodies whose every
GL statement sits inside `if (!_useModernRendering)`. The constructor now hands
the arena the nullable context; the two bodies resolve one lazily inside the
legacy branch. That branch is unreachable in every shipping configuration —
missing bindless or draw-parameters throws at startup under the N.5 ship
amendment — so the accessor survives as the guard on dead code rather than as a
blocker, and it is deleted with that code.
VulkanMeshPipelineDevice is the second implementation, and it is four
properties and two no-ops. Two things about it are worth stating rather than
leaving to be inferred. HasBindless and HasOpenGL43 answer TRUE: their names are
GL-shaped because the seam was cut from a GL device, but what they gate is the
MODERN path — one shared arena, table texture indexing, multi-draw indirect —
which Vulkan supplies unconditionally and the capability gate rejects a device
for lacking, so answering false would disable the only path that exists.
HasPendingWork answers false because the GL device's queue exists to defer work
onto the thread holding the context, and Vulkan resource work is recorded into
the frame's command buffer or routed through the retirement queue.
WbMeshAdapter selects between them once, in the one place the mesh pipeline
still names a backend. The GL arm is unchanged, including the queue-drain
guarantee its construction rollback asserts.
So composition builds the mesh pipeline on BOTH arms, and NullWbMeshAdapter is
deleted — it existed for exactly the gap this closes, and the landblock spawn
ledger now registers against the real adapter. Streaming's publication into GPU
state stops being a no-op there: the Vulkan run below builds real render data,
including the [up-null] zero-vertex caching path.
Gates. Release build green. App tests 4,112 passed / 3 skipped, against a 4,109
baseline plus the three added here. Strict GL offline pixel gate against
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c8d0f70bbe |
feat(render): Campaign V slice V6i-2 commit 2 — world texture creation crosses to IGpuTexture
Plan §5.5.11 recorded what V4t deliberately left behind: it moved the table
ENTRY of every world texture to the device and kept CREATION with the caches,
because "creating world textures through IGpuTexture is real remaining work and
it belongs with the Vulkan world arm, which is the first thing that cannot use a
GL handle at all." §5.5.12 item 1 handed it forward and named the missing piece
exactly — "an ITextureArray implementation over IGpuTexture, not a codec",
because V6b's BlockCompressionCodec and BlockCompressionMipChain already supply
the BC chains. This is that work.
IWorldTextureArray is the seam, and the slot is what crosses it. Before this
commit ObjectMeshManager read BindlessWrapHandle/BindlessClampHandle off the
concrete GL array and interned them into the device table itself. A 64-bit
ARB_bindless_texture handle has no Vulkan spelling, so the array now answers the
question the caller was really asking — ResolveSlot(wrapping) — and each arm gets
there its own way: ManagedGLTextureArray makes the same idempotent interning call
one level down, and RhiWorldTextureArray returns a pair it registered at
construction. ReleaseTextureSlots replaces the snapshot dictionary the manager
kept for the same reason, and still runs only once physical retirement completes.
Which implementation exists is decided ONCE, by the IWorldTextureArrayFactory
composition builds — plan §3.1's no-runtime-fork rule. Everything above the seam
(capacity policy, slot allocation, ref counting, layer retirement, empty-atlas
eviction, and the whole of ObjectMeshManager's atlas policy) is written once and
branches on nothing.
Three things the RHI array does differently, each because the backends genuinely
differ rather than by choice: BC mip chains are CPU-built through
BlockCompressionMipChain, since Vulkan cannot blit into a compressed image, while
RGBA8 uses the device's blit; filtering lives in an immutable sampler rather than
a texture parameter, so both address modes are registered up front exactly as the
GL array holds two resident handles; and RGB8/A8/Rgba32f are refused at creation
with the reason named. A8 is the interesting refusal — the GL array serves it by
swizzling R into A, and a Vulkan swizzle lives in the image VIEW, which the pinned
GpuTextureDescription does not describe. A silent substitution would render wrong
and look like a shader bug.
TerrainAtlas gains the second construction path V6i drafted and reverted. The
decode is factored out and shared, so both arms read the same DATs, in the same
order, with the same resize-to-max policy; only the upload forks.
ICompositeTextureArrayBackend gains its RHI arm, which is four small methods
because that seam was already a seam.
The Vulkan arm is EXERCISED, not merely present. That is the whole reason the
V6i draft was reverted rather than landed — "built then reverted because nothing
exercised it" — and it is the same failure §5.5.12 measured twice in the
descriptor layouts. So the composition host now builds the real terrain atlas
through IGpuDevice.CreateTexture on the arm with no GL context, and creates and
releases one shared array of each format family plus one composite array at
startup. Creation only; nothing draws them. Releasing them in the same statement
covers one thing a retained bundle would not — that both slot pairs come back and
the images route through the retirement queue.
Gates: Release build; App tests 4,104 / 3 skips; strict GL offline pixel gate vs
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b8bcaa3ef2 |
feat(render): Campaign V slice V4t-1 — terrain crosses to GpuTextureSlot
V4t moves the world texture stack off the raw 64-bit ARB_bindless_texture handle and onto GpuTextureSlot. This first commit does terrain only, because terrain is the one branch of that stack whose producer and consumer are a single pair — TerrainAtlas and TerrainModernRenderer — so it can carry the new device seam on its own pixel gate before the mesh/composite/particle retype lands on top of it. Why the device's table can now be reached, when §5.2 said it could not. That paragraph's reason was the flush: GlGpuDevice drains its dirty table runs inside FlushBeforeDraw, which only an encoder-recorded draw reaches, so a raw-GL renderer would sample a stale table. §5.5.6 then closed the GL re-land of V4c/V4d, which means the world renderers stay raw GL through to V10 — so "wait for the encoder" stopped being a plan and became an indefinite block on V4t, which the Vulkan world arm cannot be written without. The resolution is the smallest one that keeps the seam honest: the drain is factored out as GlGpuDevice.FlushTextureTable, and a raw-GL renderer calls it and binds TextureTableGlName at binding 9 itself, immediately before its own draw — the same shape its retired private GlBindlessHandleTable had, against a table that is now the device's. Nothing else of the backend is exposed, and both members are deleted with the raw-GL world path. Residency ownership deliberately does NOT move. RegisterWorldTextureHandle interns an already-resident handle and owns only the table entry; the atlas still creates, makes resident and destroys its own textures. That is what separates it from RegisterTexture, which owns the residency it creates, and it is why this slice can retype the data model without also porting GL texture creation onto IGpuTexture. TerrainAtlas.GetBindlessHandles becomes GetTextureSlots(GlGpuDevice). Registration is idempotent by handle, so the per-draw call is two dictionary lookups — the cadence GetOrAdd already had. It is conditional on the handle having changed because SetAnisotropic makes both textures non-resident and re-acquires them: without that check a quality-preset change would strand a slot holding a non-resident handle, so the superseded entry is retired in the same step through the device's retirement queue. Ordering is unaffected. Terrain's two slots travel as loose uniforms (uTextureIndexA/B) and enter no sort and no bucket key, so a different slot NUMBER changes nothing about what is drawn or in what order — only which table index resolves to the same handle. Gates. GL offline pixel gate vs |
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b16f820643 |
feat(render): Campaign V slice V6h — the Vulkan composition host
ACDREAM_RENDER_BACKEND=vulkan now runs the real GameWindow composition rather
than a second main(). All nine phases execute: DAT load, streaming, camera,
entity table, session, and the real retained UiHost drawing through the RHI.
No world renderers — they are raw GL until V4t and the world arm behind it.
The offline log is the client's own (acdream.pak opened, 6266 spells, Region
0x13000000, "loading world view centered on 0xA9B4FFFF", fourteen retail
LayoutDesc lines, streaming radii), and the captured frame is the retail
retained UI: vitals, combat/spell bar with DAT scarab icons, the nine-slot
toolbar, chat with tabs and Send, radar/compass with dat-font glyphs. Sampled
against the GL capture the widgets agree — chat interior RGBA (25,24,27,158)
vs (22,21,23,158), vitals bar (117,1,0) and toolbar slot (0,11,17) identical.
Three seams, as §5.5.9 specified:
1. Platform acquisition — already generic — publishes GameWindowGraphics
instead of a bare GL. Phases that still speak raw GL read Graphics.Gl and
take their Vulkan arm when it is null; each branch names the slice that
removes it.
2. VulkanHostInputCameraCompositionFactory is a new file and the whole of the
Phase-1 fork: four graphics members differ, input/camera/pointer delegate.
The default factory is chosen inside the phase from the platform result.
HostInputCameraResult gained backend-neutral Retirement and FrameSlots.
3. The frame root forks on one condition. The GL world-scene assembly is
unchanged, wrapped in `if (gl is not null)`; the Vulkan arm's graph is one
backbuffer clear pass computing the same RenderFrameFoundation from the same
clock and weather owners, then private presentation over it.
§5.5.9's three TextureCache couplings are unpicked: the constructor takes GL?
and rejects bindless without one, world entry points route through a Gl
property that throws naming V4t, and the (GlGpuTexture) VRAM-accounting cast
became a backend test. That cast's stated reason — DrawSprite's texture-unit
binding — was already stale, deleted at V6d.
VulkanBringUpHost is reduced to the capability-probe harness it is named for:
the instance/surface/device/swapchain sequence moved into VulkanGraphicsContext,
which the composition host and the harness now share. It is reached only with
ACDREAM_VULKAN_PROBE=1.
One latent Vulkan defect surfaced and is fixed here. The first composition-host
frame died with ErrorDeviceLost; validation named VUID-vkCmdDraw-None-08600 —
descriptor set 2 never bound. VulkanGpuPassEncoder bound sets 0/1/2 only as a
side effect of BindStorageBuffer/BindUniformBuffer, so a pass sampling the
texture table while binding no buffer — every retained-UI and debug-line pass —
drew with the table unbound. It survived V6c-V6g because the bring-up host
always drew VulkanRhiScene first and the UI pass inherited its binds; the
composition host has no 3-D scene. The fix is one line in the encoder's
constructor beside the viewport and scissor defaults, which exist for exactly
the same reason: a pass opens with complete binding state rather than depending
on what preceded it.
Gates: strict GL offline pixel gate against
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ad61f250fb |
Revert "feat(render): Campaign V slice V4d-2 - move terrain onto the RHI"
This reverts commit
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b064668b63 |
feat(render): Campaign V slice V4d-2 - move terrain onto the RHI
TerrainModernRenderer records through IGpuPassEncoder instead of calling GL directly. V4d-1 already converged its two matrix uniforms; this is the plumbing. What moved. The per-frame indirect command array became an IGpuFrame.AllocateRing slice, which retires the three-deep per-frame-slot indirect buffer pool outright. That pool existed so a second terrain draw within one frame - a retail outside view can issue several - could not overwrite an earlier draw's still-pending commands; the frame ring gives that structurally, because every allocation within a frame is distinct memory that lives until the frame retires. DynamicIndirectBufferCount now reports 0, which is the truth rather than a silent change. The vertex and index arena became an IGpuBuffer pair. AddLandblock's two BufferSubData calls are Upload, and EnsureCapacity's grow-and-copy is IGpuBuffer.CopyTo, still device-side so resident landblock meshes never round-trip through system memory. The global VAO is gone: the pipeline owns one shaped by the vertex layout, and the encoder re-issues attribute pointers on every BindVertexBuffer. Locations 2-5 use GpuVertexFormat.UByte4UInt, added at |
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e946b46f75 |
feat(render): Campaign V slice V4b - move the mesh arena onto IGpuBuffer
The shared vertex/index arena is the largest single GPU allocation acdream
makes (384 MiB + 128 MiB) and the one the Vulkan backend has the most specific
plan for (campaign doc section 4.3). This slice swaps the resource handle type
underneath it and changes nothing else: the reclaimable-range allocator, the
growth quanta, the budgeted incremental grow-and-copy, the retirement-ledger
gating, the abort ticket, the LRU that drives eviction, and the 896 MiB
dual-generation physical ceiling are all untouched. That is deliberate - those
are the semantics section 4.3 says the Vulkan arena must mirror exactly, so
preserving them is the point of the slice rather than an incidental constraint.
What moved:
- GlobalMeshBuffer's two GL buffer objects became IGpuBuffer, allocated through
IGpuDevice.CreateBuffer with DeviceLocal residency and Vertex-or-Index plus
both transfer usages (the arena is simultaneously a draw source and both ends
of its own migration, which is exactly why GpuBufferUsage is a flags enum).
- UploadMesh's two hand-rolled BufferSubData sites became IGpuBuffer.Upload.
The old code staged indices through GL_COPY_WRITE_BUFFER specifically so an
upload could not mutate whichever VAO a preceding render pass left bound;
Upload stages through a neutral binding point of the backend's choosing, so
that property now comes for free instead of by hand.
- AdvanceMigration's CopyBufferSubData became IGpuBuffer.CopyTo - a device-side
copy, which the Vulkan backend will record as vkCmdCopyBuffer. The live
prefix still never round-trips through system memory.
- BeginMigration/CommitMigration/AbortMigration/Dispose now carry IGpuBuffer in
the migration record and the abort ticket instead of raw uint names, so the
ticket's identity check is a resource identity rather than a number that goes
stale the moment the buffer is deleted.
What deliberately did not move. A VAO has no RHI verb - Vulkan bakes vertex
input into the pipeline - and WbDrawDispatcher, EnvCellRenderer and
ParticleRenderer still bind VAO/VBO/IBO with raw GL until V4c hands them the
pass encoder. So GlobalMeshBuffer keeps its GL handle for the vertex array and
its attribute layout, and VBO/IBO became computed properties that publish the
backing GL name of the buffer the arena now owns as an IGpuBuffer. One private
RequireGlBuffer helper is the single place that reaches through the interface,
and it disappears with those consumers. ObjectMeshManager therefore needed no
upload-path change at all - it reads those same three properties.
Two decisions worth recording.
First, arena deletes do not route through IGpuBuffer.Dispose. The arena already
gates every delete behind its own GpuRetirementLedger and decrements its
physical-capacity accounting in the same retirement stage; Dispose would defer
the physical free through the device queue a second time, so the accounting
would run ahead of real GPU residency and could admit a migration that breaches
the 896 MiB ceiling. GlGpuBuffer gains DeleteRetired for callers that have
already proved flight safety, and GlobalMeshBuffer composes it into a release
whose four stages match TrackedGlResource.CreateRetryableBufferDeletion exactly
- precondition, mutation-with-validation, byte accounting, resource-count
accounting - so a driver failure re-issues only the delete and never
double-counts.
Second, two corrections in the GL backend, both required to keep this port
behaviour-preserving rather than merely compiling. GlGpuBuffer's glBufferData
usage hint now follows residency (DeviceLocal -> StaticDraw), which is what the
arena has always requested; the host-writable rings and texture table keep
DynamicDraw and are unaffected. And a failed allocation now releases the GL
name it had already created - GL_OUT_OF_MEMORY is a real outcome for a 384 MiB
growth destination, and the previous code leaked the name on that path.
Plumbing: the device reaches the arena through WbMeshAdapter and
ObjectMeshManager. Their constructors became internal because IGpuDevice is an
internal type by the pinned contract, matching what V4a did for BitmapFont,
DebugLineRenderer and TextRenderer; both classes stay public and every caller
already lives inside AcDream.App or its InternalsVisibleTo test assemblies. The
unused public GlobalMeshBuffer(GL) convenience constructor is gone - it could
not supply a device and had no callers.
Gates. Release build green with TreatWarningsAsErrors. App tests 3,843 passed /
3 skipped, exactly the slice baseline; complete Release suite 8,906 passed / 5
skipped. Offline pixel gate against
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096dd203fa |
feat(render): Campaign V slice V4a - port TextRenderer/BitmapFont/DebugLineRenderer/TextureCache UI path onto IGpuDevice
Second attempt at V4a after |
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9aaf97e785 |
Revert "Campaign V slice V4a" - it lost world multisampling
This reverts
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ceec3bc440 |
feat(render): Campaign V slice V4a - port TextRenderer/BitmapFont/DebugLineRenderer/TextureCache onto IGpuDevice
TextRenderer, BitmapFont, DebugLineRenderer, and TextureCache's UI-texture
upload path (GetOrUploadRenderSurface/UploadRgba8) now issue every draw and
resource creation through the pinned IGpuDevice/IGpuFrame/IGpuPassEncoder
RHI contract instead of raw GL. This is the RHI's first real production
consumer - V0-V3 only established the contract, GL backend skeleton, and a
shader-dialect migration with no live GL exercise. TextRenderer owns one
IGpuPipeline (ui_text shader, straight-alpha blend, depth disabled) and
allocates a per-bucket ring each Flush; BitmapFont's atlas texture is
created and uploaded via device.CreateTexture/.Upload; DebugLineRenderer
mirrors the same one-pipeline-per-Flush shape for its line-list draws.
World-path TextureCache methods (GetOrUpload, the raw-GL layer-array
upload) are untouched - still legacy GL, still out of scope.
Frame lifecycle: GpuDeviceFrameLifetime (RenderFrameOrchestrator.cs) wraps
IGpuDevice.BeginFrame()/IGpuFrame.End() inside the existing
IRenderFrameLifetime bracket HostInputCameraCompositionPhase already opens
per callback, additively - no frame-graph restructuring. Ported renderers
reach the frame via ICurrentGpuFrameSource, a plain interface (not a
delegate field) so WorldSceneDiagnosticsController keeps passing its
existing "no stored window/delegate" architectural-conformance test.
Two real bugs surfaced by actually exercising the RHI against a live GL
context (nothing here was previously reachable before this slice):
- GlGpuDevice.BeginFrame() now resets the render-state cache every frame.
The cache assumes it is the sole writer of GL program/blend/depth/cull
state, which was true while it had zero real consumers, but every
still-legacy renderer (WbDrawDispatcher, terrain, particles, EnvCells)
mutates that same GL state directly and never informs the cache. Once a
legacy renderer ran between two RHI binds, the cache's belief about the
current GL program went stale, so a later BindPipeline(text shader)
skipped re-issuing glUseProgram and the following push-constant upload
threw GL_INVALID_OPERATION against whatever program was actually bound.
Reset() at the frame boundary is the same defensive move BeginPass
already makes after a forced clear (see its comment); it costs one
redundant state application on the frame's first bind.
- GL_MULTISAMPLE has no representation in the pinned contract. Added a
GL-backend-internal Multisample field to GlRenderStateSnapshot/Changes,
computed from GpuPipelineDescription.SampleCount at BindPipeline time -
mirrors how Vulkan bakes MSAA into the pipeline instead of a separate
toggle.
Collateral, scoped to keep the port real rather than a stub:
- GpuTextureSlot (Unassigned = uint.MaxValue, NOT 0) now flows through
every consumer of TextureCache.GetOrUploadRenderSurface/UploadRgba8 and
TextRenderer.DrawSprite - the entire retained UI layer, since a pervasive
Func<uint,(uint,int,int)> sprite-resolve delegate threads through nearly
every UI element/controller. Every prior `== 0` / `!= 0` "no texture"
check became `.IsAssigned` / `!.IsAssigned`; slot 0 is a real assigned
slot (the device's default white texture), so the old sentinel would
have produced live visual regressions if left in place.
- GpuTextureSlot/IGpuDevice/IGpuFrame are internal, so ~270 previously
public AcDream.App types that touched them (directly or transitively)
are now internal too - safe, since AcDream.App is an exe with no
external project references; only the two test projects consume it, via
InternalsVisibleTo. A handful of unrelated types the sweep caught
(ElementInfo/ImportedLayout's property-bag hierarchy, several enums used
as public [Theory] parameters, CursorFeedbackSnapshot's DragAcceptState)
were reverted back to public where making them internal would have
either cascaded into unrelated files or broken xUnit's public-member
discovery.
- ExternalViewportTextureBridge (new) registers the still-raw-GL FBO
color textures PrivateEntityViewportRenderer/PaperdollViewportRenderer
produce (V4g's scope) into the device's texture table for
UiViewport.TextureHandle, via a temporary
GlGpuDevice.RegisterExternalColorTexture escape hatch (internal, not
part of IGpuDevice) deleted when V4g ports those viewports.
- TextRenderGlStateScope.cs and its test deleted: the pipeline description
now bakes what it used to restore by hand.
- ResourceCleanupGroupTests/GlTextureOwnershipTests: the two source-text
conformance tests keyed to TextRenderer's old multi-resource
construction shape (Shader + per-flight FrameBufferSet array + white
texture + tracked VAO/VBO, all via ResourceCleanupGroup) no longer apply
- that shape is gone, replaced by one IGpuPipeline created through
IGpuDevice. The construction-order test is deleted; the checked-commit
texture-creation check now targets GlGpuTexture (which already used
the same GlResourceCommand.CreateName primitive before this slice).
Gates:
- dotnet build -c Release: 0 warnings, 0 errors (AcDream.App has
TreatWarningsAsErrors).
- dotnet test tests/AcDream.App.Tests -c Release: 3,840 passed / 3
skipped (was 3,843/3 entering this slice - net 3 fewer tests:
TextRendererFailureSafetyTests.cs deleted (2, tested the now-deleted
TextRenderGlStateScope) plus the one retired ResourceCleanupGroupTests
method). Full solution: 8,908 passed / 5 skipped across all nine test
projects.
- Offline pixel gate (tools/run-offline-pixel-gate.ps1, parent
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4f94ad7ddd |
feat(render): Campaign V slice V1 - OpenGL RHI backend (dark)
Implements GlGpuDevice and the rest of AcDream.App.Rendering.Gpu.Gl,
filling the V0-pinned IGpuDevice contract on OpenGL 4.3. This is the
first of the port slices described in
docs/plans/2026-07-27-vulkan-campaign.md: every later renderer port
(V2 onward) needs a real, driver-proven GL implementation of the RHI
to port onto, and the GL backend is deliberately built to be
behaviour-preserving rather than optimal, because that is what turns
each subsequent slice's pixel gate into a strict identity check
instead of a moving target. The Vulkan backend (V5+) is where the
actual efficiency gains land.
GlGpuDevice is a fresh root, not derived from Chorizite's
BaseGraphicsDevice/OpenGLGraphicsDevice - shedding that inheritance is
one of the things this campaign explicitly does. It owns its own
BindlessSupport instance rather than sharing the legacy WB render
path's, which is what lets it be constructed the moment a GL context
and a GpuFrameFlightController exist, with no dependency on when
WorldRenderCompositionPhase happens to detect bindless support later
in startup. The ring buffer keeps a managed staging array plus a real
GL buffer per flight slot and flushes with one BufferSubData
immediately before each Draw/DrawIndexed/MultiDrawIndexedIndirect
(never at bind time, since a renderer may still write after binding);
V1 throws on an over-capacity ring request rather than growing it,
since nothing consumes the device yet and a silent grow would hide a
future renderer's real working set. The texture table is a bump/free-
list allocator over a managed uvec2 handle array, gated through the
frame-flight retirement queue so a released slot cannot be reused
while a submitted frame might still read it. Push constants are
applied by uniform name on the currently-bound program, cached per
program, and explicitly re-applied whenever BindPipeline switches
programs - GL uniforms are per-program state, so the "survives
pipeline changes within a pass" guarantee the interface documents (a
freebie on Vulkan's shared pipeline layout) has to be emulated here.
BindlessSupport gained one additive method,
GetResidentHandle(texture, sampler), calling the same
ArbBindlessTexture.GetTextureSamplerHandle entry point
ManagedGLTextureArray already uses through a different path. The
existing GetResidentHandle(texture) cannot express
IGpuDevice.RegisterTexture's documented pair semantics ("the same
texture registered with two samplers occupies two slots"), so this
was the minimal change needed rather than a workaround.
The pure bookkeeping - ring watermark/alignment arithmetic, the
texture-slot allocator, render-state diffing, the push-constant field-
to-uniform-name table, and GL format mapping - lives in small GL-free
classes so it is unit-testable without a live context, following the
same seam pattern GpuFrameFlightController already uses for its fence
API. GlGpuTimerPool follows suit with an injectable timer-query API.
The device is constructed in HostInputCameraCompositionPhase
immediately after the frame-flight controller (the same phase that
already builds GpuFrameFlightController), rather than in
WorldRenderCompositionPhase as first considered: GlGpuDevice's self-
contained bindless detection means it has no ordering dependency on
the legacy WB path's BindlessSupport, so it can be proven against the
real driver as early as possible while keeping the composition change
to one phase. Composition, publication, and shutdown wiring follow
the existing acquire/publish/fault-injection pattern exactly, and GPU
device disposal is scheduled through the frame-flight retirement queue
before that queue itself is torn down. Nothing consumes the device
yet - that starts at V4a - so this slice's pixel gate is trivially a
tripwire.
App tests: 3834 passed / 3 skipped (V0 baseline 3785 + 49 new: ring,
texture-slot, render-state, push-constant, format-mapping, enum-
mapping, and timer-pool tests, plus one new fault-injection point in
the existing composition theory).
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
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66f114b258 | feat(linux): add graphical platform services | ||
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9569dadb57 | feat(headless): share immutable gameplay content | ||
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ce41efb9e5 |
refactor(runtime): cut graphical host over to canonical root
Make every App composition phase borrow one GameRuntime, retire the duplicate view/event adapters, and dispose the root only after its graphical borrowers release. This preserves synchronous UI commands while giving shutdown one exact ownership ledger. Co-authored-by: OpenAI Codex <codex@openai.com> |
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902076c0a4 | refactor(runtime): own world environment state | ||
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aa3f4a60f8 |
refactor(runtime): own local movement and outbound cadence
Move the canonical local movement controller, body/motion managers, object clock, movement wire data, and MTS/jump/AP sender into AcDream.Runtime. Replace process skill defaults with typed Runtime character options, make graphical and direct commands borrow one autorun owner, retain the construction-time PartArray seam, and include movement in terminal ownership convergence. Preserve the accepted pre-inbound movement/jump and post-inbound autonomous-position order while moving the exact packet/cadence fixtures into Runtime tests. Add graphical/direct parity, two-instance isolation, teardown, allocation, architecture, and divergence-path coverage. Co-authored-by: Codex <noreply@openai.com> |
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20df9d155d |
refactor(runtime): own combat and magic intent
Move attack build/repeat state, combat-mode policy, authoritative auto-target transitions, and spell-cast intent beneath RuntimeActionState. Keep App as the input, world-query, DAT-policy, transport, and presentation adapter while preserving retail request and busy ordering. Add direct/graphical parity, reset, failure, and instance-isolation coverage. Co-authored-by: Codex <noreply@openai.com> |
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b298f99f91 |
refactor(runtime): own canonical action state
Move selection, combat, and interaction target mode under one Runtime owner; make plugins, retained UI, session routing, and typed runtime views borrow its exact children; and add failure-safe reset, instance isolation, source ownership, and normalized checkpoint coverage without changing retail ordering. Co-authored-by: Codex <codex@openai.com> |
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dcb61efb5a |
refactor(runtime): expose canonical gameplay state
Move character options and movement skills into the Runtime-owned character graph, expose borrowed inventory, character, and social views, and route retained UI state commands through generation-gated typed Runtime contracts. Preserve the existing synchronous wire path while deleting the App-owned option and skill mirrors and extending normalized parity checkpoints. Co-authored-by: Codex <codex@openai.com> |
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d02a12ceac |
refactor(runtime): own magic and player state
Move the coupled Spellbook and LocalPlayerState into one Runtime-owned character graph, route content, live-session, retained UI, reset, and shutdown through that exact owner, and delete the duplicate desired-component snapshot from inventory state. Preserve synchronous retail update and reset ordering while adding independent-instance and retryable-failure coverage. Co-authored-by: Codex <codex@openai.com> |
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011efbeaa7 |
refactor(runtime): own inventory transaction state
Move the retail one-request-at-a-time gate, shared use busy references, external-container state, item mana, shortcuts, and desired-component snapshots into one Runtime-owned graph over J3's exact ClientObjectTable. Retained UI and session routing now borrow that owner; reset and shutdown preserve the existing order while failure/reentrancy tests protect the transaction boundary. Co-authored-by: Codex <codex@openai.com> |
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c9d25ade50 |
refactor(runtime): own communication and social state
Construct chat history, negotiated channels, friends, squelch, and reply targets in one presentation-independent Runtime owner. Make live routing, retained UI, devtools, and current-runtime projections borrow the exact instances, preserve reconnect reset semantics, and publish failure-isolated reentrant-safe chat commits. Co-authored-by: Codex <codex@openai.com> |
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5ef8b5371d |
refactor(runtime): own canonical entity and object lifetime
Introduce one presentation-free RuntimeEntityObjectLifetime for the exact entity directory and ClientObjectTable. Make GameWindow, graphical projections, retained UI, interaction, session routing, create/delete integration, and reset borrow that owner while preserving synchronous retail ordering, dormant retention, and retry semantics. Co-authored-by: Codex <codex@openai.com> |
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420e5eea70 |
refactor(app): key live projections by runtime identity
Move materialized live-object sidecars and presentation worksets to exact RuntimeEntityKey ownership. Runtime remains the only GUID/incarnation/local-ID authority while hydration, animation, effects, lights, equipped children, renderer resources, visibility, liveness, and teardown resolve exact projection identities. Preserve synchronous callbacks, local-ID allocation order, and current rendering behavior. |
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7593078774 |
refactor(runtime): move session lifetime and ordered transport
Move the canonical WorldSession generation, connect/enter/tick/stop transaction, inbound subscription owner, and retryable teardown acknowledgements into AcDream.Runtime. Keep App as a borrowing graphical host with a single inertable command projection and no mirrored session state. Validated by 79 Runtime tests, 3,776 App tests with three existing skips, the Release solution build, and 8,428 complete Release tests with five existing skips. Co-authored-by: Codex <codex@openai.com> |
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854d9e9cd1 |
feat(runtime): define borrowed views commands and ordered events
Establish the J1 presentation-independent contract with instance-scoped clocks and generations, immutable borrowed views, typed generation-gated commands, normalized ordered diagnostics, and teardown acknowledgements. Route graphical startup plus press-time selection, movement, and combat through focused App adapters over the exact existing owners without adding a queue or mirrored world. Validated by the Release solution build, 13 Runtime tests, 3,838 App tests with three existing skips, and the complete 8,424-test Release suite with five existing skips. Co-authored-by: Codex <codex@openai.com> |
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d9446030e6 |
feat(streaming): shadow-publish flat collision assets
Carry one immutable prepared collision closure with each accepted near-tier generation and install graph plus flat views through the same retained publication receipt. Apply the same strict package-only rule to live entities, add exact sampled graph-authoritative comparison artifacts and lifecycle counters, and prove cancellation, demotion, rehydrate, revisit, teardown, reconnect, and the nine-stop route with 14,064 zero-mismatch samples. Co-authored-by: OpenAI Codex <codex@openai.com> |
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0eb6648589 |
feat(rendering): compare the incremental shadow scene
Construct Slice F's non-drawing scene only for lifecycle automation, drain accepted static and live deltas at the final update boundary, and compare exact current-path fingerprints at cadence and checkpoints. Publish bounded mismatch, journal, index, digest, and memory evidence without changing normal launches or draw submission. Release: 8,211 passed, 5 skipped. |
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1853a57c12 |
feat(diagnostics): complete residency pressure ledger
Complete Slice D4 by adding aggregate lifecycle occupancy and traffic facts, validating physical source reports, and including decoded audio under the typed startup budget. Exercise every domain under forced pressure and retain the real cache/fence convergence gates. |