f2bfe466ec
Auto/Manual/Off tail handling for realtime track-tap capture. Auto scans recorded PCM backward for last frame above -72 dB and truncates the wav header-aware (8 s cap); Manual pads a fixed tail; Off is byte-identical. wav_trim rejects WAVE_FORMAT_EXTENSIBLE with non-float SubFormat GUID.
936 lines
46 KiB
C++
936 lines
46 KiB
C++
// main.cpp — the SINGLE translation unit that OWNS the REAPER API pointers.
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//
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// This file is the entire contract between REAPER and the extension:
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// * At startup REAPER scans UserPlugins/ for reaper_*.dll|dylib|so and
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// dlopen()s each one, then looks up ONE exported symbol: ReaperPluginEntry
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// (that name is produced by the REAPER_PLUGIN_ENTRYPOINT macro).
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// * REAPER calls it, handing over `rec` — a small dispatch struct.
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// - rec->GetFunc(name) resolves any REAPER API function to a pointer
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// - rec->Register(what,ptr) plugs OUR callbacks into REAPER
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// * REAPERAPI_LoadAPI(rec->GetFunc) walks reaper_plugin_functions.h and
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// fills in every global function pointer (ShowConsoleMsg, InsertMedia...).
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//
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// Exactly ONE .cpp defines REAPERAPI_IMPLEMENT (this one) — that allocates
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// storage for those global pointers. Every other .cpp includes
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// reaper_plugin_functions.h WITHOUT the define and gets `extern` declarations.
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#define REAPERAPI_IMPLEMENT
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#include "reaper_plugin.h"
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#include "reaper_plugin_functions.h"
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#include <memory>
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#include <string>
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#include <vector>
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#include "actions.h"
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#include "bank_model.h"
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#include "bank_panel.h"
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#include "capture.h"
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#include "insert.h"
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#include "persist.h"
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#include "render_settings.h"
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#include "track_guid.h"
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#include "view.h"
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// Persistent action-id prefix for the ReaSampler action family.
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// Every bindable action (capture / insert / slot / verify) mints its command id
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// from a string beginning with this prefix, e.g. "CEREBELLUM_REASAMPLER_CAPTURE_TRACK".
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// FOREVER-STABLE once shipped: user keybindings key off these strings, so the
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// prefix and any minted id must never change after release.
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#define REASAMPLER_ACTION_PREFIX "CEREBELLUM_REASAMPLER_"
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// Globals other files reference via `extern`.
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REAPER_PLUGIN_HINSTANCE g_hInst = nullptr; // this module's instance handle
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reaper_plugin_info_t* g_rec = nullptr; // REAPER's dispatch struct
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// ---- Capture action family (two FX scopes) ---------------------------------
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// Two bindable SCOPE actions from captureActionTable() (render_settings, pure):
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// capture item / track. Each infers its range (razor-else-time) and enforces the
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// FX-scope invariant via FX-bypass-around-render (FxBypassGuard):
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// Item -> take/item FX only (bypass the item's track + ancestors + master).
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// Track -> item FX + track's own FX (bypass ancestors + master).
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// There is NO master scope — to capture the master you render a track. (The master
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// track's FX/gain/pan are STILL neutralized for both scopes as the out-of-scope
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// chain — master is a bypass target, not a capture scope.) The retired M7
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// CAPTURE_TRACKS_WET / CAPTURE_ITEMS_WET / CAPTURE_RAZOR_WET ids AND the removed
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// CAPTURE_MASTER / CAPTURE_MASTER_REALTIME ids are mirror-unregistered on unload so
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// old keybindings clear cleanly.
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//
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// The minted command ids parallel the table rows 1:1 (same index). gaccel storage
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// must outlive registration (REAPER holds each pointer), so both vectors are file-
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// scope and sized to the table. FOREVER-STABLE id strings live in the table.
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static std::vector<int> g_captureCmdIds;
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static std::vector<gaccel_register_t> g_captureAccels;
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// Retired capture-action command-id strings. Kept ONLY to mirror-unregister them on
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// unload so a user's stale keybindings are cleaned up. Never re-register these.
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// * The M7 four-mode ids (tracks/items/razor WET).
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// * CAPTURE_MASTER and CAPTURE_MASTER_REALTIME — the master offline scope and the
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// master realtime action are REMOVED (capture is now item + track only; realtime
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// taps the selected track). Their shipped ids are retired so old keybindings clear.
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// * CAPTURE_ITEM_TAIL and CAPTURE_TRACK_TAIL — the former per-action tail variants
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// are REMOVED; tail is now a panel-setting toggle, not a paired action. Retired so
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// old keybindings clear.
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static const char* const kRetiredCaptureCmdStrings[] = {
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"CEREBELLUM_REASAMPLER_CAPTURE_TRACKS_WET",
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"CEREBELLUM_REASAMPLER_CAPTURE_ITEMS_WET",
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"CEREBELLUM_REASAMPLER_CAPTURE_RAZOR_WET",
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"CEREBELLUM_REASAMPLER_CAPTURE_MASTER",
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"CEREBELLUM_REASAMPLER_CAPTURE_MASTER_REALTIME",
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"CEREBELLUM_REASAMPLER_CAPTURE_ITEM_TAIL",
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"CEREBELLUM_REASAMPLER_CAPTURE_TRACK_TAIL",
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};
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// Command id for "ReaSampler: toggle bank panel" (M5). FOREVER-STABLE string.
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// The docked grid window is display-only this wave (Wave A) — the action just
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// shows/hides it; it never captures, inserts, or mutates the bank.
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static int g_cmdToggleBankPanel = 0;
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// Command ids for the M6 insert actions. FOREVER-STABLE strings. Two variants that
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// differ ONLY in the InsertOptions they build: the default inserts at native length
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// (no stretch, no conform); the "conform" variant is the EXPLICIT opt-in to REAPER's
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// try-to-match-project-tempo path (CONTEXT.md §insert: conform is opt-in, never
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// silent). Both read the bank panel's current selection and place at the edit cursor.
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static int g_cmdInsertSelected = 0;
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static int g_cmdInsertSelectedConform = 0;
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// Command id for the "capture selected track (realtime)" action. NEW FOREVER-STABLE
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// string. Records the selected track's OWN output in realtime (transport-driven) into
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// a hidden temp track via RealtimeRecordBackend, then moves the recorded file into the
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// bank. The realtime SIBLING of the offline CAPTURE_TRACK scope action: same range
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// logic (razor-else-time), same track selection, same bank/persist path, different
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// backend. Dialog-free. (Replaces the removed CAPTURE_MASTER_REALTIME action.)
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static int g_cmdCaptureTrackRealtime = 0;
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// Command id for the M8 "cancel realtime capture" action. FOREVER-STABLE string.
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// Aborts the in-flight realtime capture (stop + restore, non-destructive) so a user
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// who started a long capture can bail without waiting for the range end or hunting for
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// the transport-stop. No-op (with a note) when nothing is in flight.
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static int g_cmdCancelRealtime = 0;
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// The persistence session (M4): owns the in-memory BankIndex and bridges it to
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// project ext state. A timer tick drives g_session.poll() to detect project
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// load / Save-As; capture adds Samples to g_session.bank(); after a capture we
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// serialize the bank back into the active project's ext state so it travels with
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// the .rpp. Replaces the M3 session-only g_bank.
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static reasampler::ReaSamplerSession g_session;
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// --- M8 in-flight realtime capture (async, timer-driven) --------------------
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// A realtime record spans many timer ticks (it takes end-start wall-clock seconds
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// and must NOT block REAPER's UI). The action STARTS it (g_rtBackend.begin), which
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// returns immediately with the in-flight state owned here; OnTimer drives it
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// (g_rtBackend.tick) each tick until a terminal verdict; then this pointer is
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// cleared. Non-null == a capture is in progress (used to reject a second one, and to
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// abort on project switch / unload).
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static reasampler::RealtimeRecordBackend g_rtBackend;
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static reasampler::RealtimeCaptureHandle g_rtCapture;
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// The ReaProject* the in-flight capture belongs to (opaque, compare-only) — lets
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// OnTimer detect a project switch mid-capture and abort+restore rather than leak the
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// temp track/arm/transport into or across projects. Only meaningful when
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// g_rtCapture != nullptr.
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static ReaProject* g_rtCaptureProject = nullptr;
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// Commit a finished realtime capture (a Done tick/abort with an Ok result): add the
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// Sample to the bank, persist + MarkProjectDirty, log. Shared by the tick-completion
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// path and the abort paths. On a non-Ok result, logs the failure only.
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static void CommitRealtimeResult(const reasampler::CaptureResult& res)
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{
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if (res.status != reasampler::CaptureStatus::Ok)
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{
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ShowConsoleMsg(("ReaSampler realtime capture failed: " + res.message + "\n").c_str());
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return;
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}
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reasampler::AddResult added = g_session.bank().add(res.sample);
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g_session.saveToActiveProject(); // persist + MarkProjectDirty (travels with .rpp)
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std::string log = "ReaSampler: " + res.message + "\n";
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log += " bank size now " + std::to_string(g_session.bank().size()) +
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(added == reasampler::AddResult::Added ? " (added)\n"
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: added == reasampler::AddResult::Collapsed ? " (collapsed on hash)\n"
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: " (rejected)\n");
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ShowConsoleMsg(log.c_str());
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}
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// Advance any in-flight realtime capture one tick. Cheap when none is running (a
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// null check) and fast even mid-record (tick() only reads the transport until the
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// terminal tick). Detects a project switch mid-capture and aborts+restores so the
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// capture never leaks across projects. Called from OnTimer BEFORE session.poll() so
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// poll's project-switch handling sees a cleaned-up project.
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static void DriveRealtimeCapture()
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{
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if (!g_rtCapture) return;
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// Project switch guard: if the active project is no longer the one the capture
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// belongs to, a new/other project became active mid-record — abort + restore
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// (into the ORIGINAL project the state is bound to) and drop it. Do NOT finalize
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// into the new project.
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ReaProject* active = EnumProjects(-1, nullptr, 0);
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if (active != g_rtCaptureProject)
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{
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reasampler::RealtimeTickResult r = g_rtBackend.abort(*g_rtCapture);
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// Only commit if the ORIGINAL project is still open and active would be it —
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// on a switch we restored into the original but must not persist into the
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// now-active foreign project. Log the outcome without persisting. On a Failed
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// abort surface abort()'s own message — it distinguishes a clean tab-switch
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// abort from the closed-project DROP (the captured project was closed mid-record,
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// review §1: nothing restored because the pointers were already freed).
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if (r.status == reasampler::RealtimeTickStatus::Done)
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ShowConsoleMsg("ReaSampler realtime capture: project switched mid-record — "
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"captured audio restored into the original project; not "
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"persisted to avoid crossing projects.\n");
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else
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ShowConsoleMsg(("ReaSampler realtime capture: project changed mid-record — " +
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r.result.message + "\n").c_str());
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g_rtCapture.reset();
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g_rtCaptureProject = nullptr;
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return;
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}
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reasampler::RealtimeTickResult r = g_rtBackend.tick(*g_rtCapture);
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if (r.status == reasampler::RealtimeTickStatus::InProgress) return;
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// Terminal (Done or Failed): commit/log and drop the in-flight state.
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CommitRealtimeResult(r.result);
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g_rtCapture.reset();
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g_rtCaptureProject = nullptr;
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}
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// The timer callback REAPER runs periodically (registered via "timer"). It only
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// forwards to the session poll — cheap per tick (reads the active project id and
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// its .rpp path, acts only on a change).
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static void OnTimer()
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{
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// Advance any in-flight realtime capture FIRST, so a project switch is caught and
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// the capture torn down/restored before session.poll() reacts to that switch.
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DriveRealtimeCapture();
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g_session.poll();
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// D4 reapply-on-open glue. persist stays MODEL-ONLY (it loads the saved view
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// model but deliberately does NOT apply visibility — that would couple persist
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// to the view shell). Instead poll() raises a one-shot load signal; here — the
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// integration layer that already drives both persist and the view shell — we
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// drain it and reapply the SAVED active mode's visibility/processing so opening a
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// project saved in Design mode parks the Arrange tracks automatically, no manual
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// toggle. Fires exactly once per load (consumeLoadSignal clears it); idle ticks
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// skip it. proj = nullptr -> REAPER's active project (the one poll just loaded).
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if (g_session.consumeLoadSignal())
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reasampler::applyMode(g_session.view(), g_session.view().activeModeId(), nullptr);
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// Reflect a live bank change (capture / project load) in the docked grid.
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// Cheap when the bank is unchanged (a fingerprint compare); repaints only on
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// an actual change. No-op when the panel is closed.
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reasampler::bankPanelRefresh();
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}
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// --- Scope-action source resolution -----------------------------------------
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// The three scope actions (item / track / master) each resolve to (1) an exact
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// render range in project seconds — razor-else-time, inferred here — and (2) the
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// set of source TRACKS whose ancestor chains drive the FX-bypass plan. All reads
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// are non-destructive: selection, razor, and time selection are read, never
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// mutated. Returning false means "nothing to capture" (empty selection / no
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// range); the caller reports it and writes nothing.
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// The resolved source: exact bounds + the source tracks (for FX-bypass + Sample
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// provenance GUIDs). `sourceTracks` holds the item-owning tracks (Item scope) or the
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// selected tracks (Track scope).
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struct ResolvedSource
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{
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double startSeconds = 0.0;
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double endSeconds = 0.0;
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std::vector<MediaTrack*> sourceTracks; // item-owning tracks / selected tracks
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std::vector<std::string> trackGuids; // canonical GUIDs of sourceTracks
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};
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// Time selection -> exact bounds (no rounding). GetSet_LoopTimeRange(isSet=false,
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// isLoop=false) reads the current time selection.
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static bool resolveTimeSelection(double& start, double& end)
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{
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start = 0.0; end = 0.0;
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GetSet_LoopTimeRange(false, false, &start, &end, false);
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return end > start;
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}
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// Reads every track's P_RAZOREDITS (SDK header ~2899: space-separated triples of
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// start, end, envGuidString), parses the track-audio areas (pure parseRazorEdits),
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// and returns the union bound. Reads only — never clears the razor selection.
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// Returns false when no track-audio razor area exists on any track.
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static bool resolveRazorRange(double& start, double& end)
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{
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std::vector<reasampler::RazorRange> allRanges;
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const int n = CountTracks(nullptr);
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for (int i = 0; i < n; ++i)
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{
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MediaTrack* tr = GetTrack(nullptr, i);
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if (!tr) continue;
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std::vector<char> buf(8192, '\0');
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if (!GetSetMediaTrackInfo_String(tr, "P_RAZOREDITS", buf.data(), false))
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continue;
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std::vector<reasampler::RazorRange> ranges =
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reasampler::parseRazorEdits(std::string(buf.data()));
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for (auto& r : ranges) allRanges.push_back(r);
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}
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if (allRanges.empty()) return false;
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reasampler::RazorRange u = reasampler::razorUnionBounds(allRanges);
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start = u.startSeconds;
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end = u.endSeconds;
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return end > start;
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}
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// Infers the render RANGE for any scope: razor union when a razor area is present,
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// else the time selection (pure inferRangeSource decides which). Orthogonal to
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// scope. Returns false (with a reason) when neither yields a non-empty range.
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static bool resolveRange(double& start, double& end, std::string& why)
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{
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double rzStart = 0.0, rzEnd = 0.0;
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const bool hasRazor = resolveRazorRange(rzStart, rzEnd);
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if (reasampler::inferRangeSource(hasRazor) == reasampler::RangeSource::Razor)
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{
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start = rzStart; end = rzEnd;
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return true; // resolveRazorRange already verified end > start
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}
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if (resolveTimeSelection(start, end)) return true;
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why = "make a razor area or a time selection first";
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return false;
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}
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// Collects the selected tracks (Track scope) into out.sourceTracks + GUIDs.
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static bool collectSelectedTracks(ResolvedSource& out)
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{
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const int n = CountSelectedTracks(nullptr); // nullptr = active project
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if (n <= 0) return false;
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for (int i = 0; i < n; ++i)
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{
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MediaTrack* tr = GetSelectedTrack(nullptr, i);
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if (!tr) continue;
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out.sourceTracks.push_back(tr);
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std::string g = reasampler::guidString(tr);
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if (!g.empty()) out.trackGuids.push_back(std::move(g));
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}
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return !out.sourceTracks.empty();
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}
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// Collects the tracks that own the selected items (Item scope) into
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// out.sourceTracks (deduped) — these are the tracks whose FX must be bypassed so an
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// item capture hears take/item FX only. GetMediaItem_Track(item) gives the owning
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// track (SDK header, verify). GUIDs recorded for provenance.
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static bool collectSelectedItemTracks(ResolvedSource& out)
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{
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const int n = CountSelectedMediaItems(nullptr);
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if (n <= 0) return false;
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for (int i = 0; i < n; ++i)
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{
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MediaItem* it = GetSelectedMediaItem(nullptr, i);
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if (!it) continue;
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MediaTrack* tr = GetMediaItem_Track(it);
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if (!tr) continue;
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// Dedup: several selected items can share a track.
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bool seen = false;
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for (MediaTrack* t : out.sourceTracks) if (t == tr) { seen = true; break; }
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if (seen) continue;
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out.sourceTracks.push_back(tr);
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std::string g = reasampler::guidString(tr);
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if (!g.empty()) out.trackGuids.push_back(std::move(g));
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}
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return !out.sourceTracks.empty();
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}
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// Resolves the source for a scope: the selection tracks (item/track), plus the
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// inferred range. Returns false with a reason on nothing to do.
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static bool ResolveScopeSource(reasampler::CaptureScope scope,
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ResolvedSource& out, std::string& why)
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{
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using reasampler::CaptureScope;
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switch (scope)
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{
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case CaptureScope::Item:
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if (!collectSelectedItemTracks(out)) {
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why = "select at least one media item"; return false;
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}
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break;
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case CaptureScope::Track:
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if (!collectSelectedTracks(out)) {
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why = "select at least one track"; return false;
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}
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break;
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}
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return resolveRange(out.startSeconds, out.endSeconds, why);
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}
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// --- FX-bypass + full parent-chain neutralize around render (RAII, non-destr.) --
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// For every track a scope must NOT hear the FX of, this ALSO neutralizes that
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// track's fader gain AND its full pan chain (pan/width/law/mode) for the render —
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// because a Track/Item capture renders via master and would otherwise sum through
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// the parent/folder/master FADERS and PAN/WIDTH/LAW, printing their gain and pan
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// coloring into the file (Daniel: the capture is likely re-routed through that
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// same chain later, so parent/master level and pan must not be baked in). The
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// neutralize set is IDENTICAL to the FX-bypass set:
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// Item -> own track + all ancestors + master (take vol/pan kept: item content).
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// Track -> all ancestors + master (selected track's OWN vol/pan kept).
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// (Master is a bypass TARGET for both scopes — never a scope of its own.)
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//
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// Per track in that set we snapshot & set the full parent-chain-independence set,
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// so a Track/Item capture is uncolored by the parent/folder/master it renders
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// through — no FX, no fader, and no pan/width/law/mode coloring:
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// I_FXEN -> 0 (FX bypassed; SDK ~2194)
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// D_VOL -> 1.0 (unity trim volume; SDK ~2226 "1=+0dB")
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// D_PAN -> 0.0 (center; SDK ~2227 "trim pan of track, -1..1")
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// D_WIDTH -> 1.0 (full/neutral stereo width; SDK ~2228 "width, -1..1",
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// 1.0 = full width = no narrowing/collapse)
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// D_PANLAW -> 1.0 (no coloring; SDK ~2232 "1=+0dB" — pan-law applies no gain)
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// I_PANMODE -> 5 (stereo pan; SDK ~2231 "0=classic,3=balance,5=stereo,6=dual")
|
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// All are restored to their ORIGINAL values on EVERY exit path (RAII).
|
|
//
|
|
// Why also force I_PANMODE (pan mode). D_PAN's effect is mode-dependent. In modes
|
|
// 0/3/5, D_PAN=0 + D_WIDTH=1 is a provable pass-through. But in mode 6 (dual pan)
|
|
// D_PAN/D_WIDTH are ignored — routing is governed instead by D_DUALPANL/D_DUALPANR
|
|
// (SDK ~2229-2230, live only when I_PANMODE==6), whose neutral pass-through the
|
|
// header does not state as such. Rather than snapshot two more mode-conditional
|
|
// params and infer their neutral values, we force I_PANMODE=5 (stereo pan) for the
|
|
// render, where D_PAN=0 + D_WIDTH=1 is unambiguously uncolored, then restore the
|
|
// original mode. This fully neutralizes pan for every original mode with no
|
|
// residual — the "handle it fully" the brief requires. (See Snap dual-pan note.)
|
|
//
|
|
// Structurally non-destructive: no takes, no items, no project restructuring —
|
|
// only transient FX-enable + trim-volume toggles, always restored.
|
|
class FxBypassGuard
|
|
{
|
|
public:
|
|
// scope drives fxBypassPlanFor; sourceTracks are the captured tracks whose
|
|
// ancestor chains (walked via GetParentTrack) + the master are bypassed per the
|
|
// plan. proj is the active project (for GetMasterTrack).
|
|
FxBypassGuard(reasampler::CaptureScope scope,
|
|
const std::vector<MediaTrack*>& sourceTracks,
|
|
ReaProject* proj)
|
|
{
|
|
const reasampler::FxBypassPlan plan = reasampler::fxBypassPlanFor(scope);
|
|
|
|
for (MediaTrack* tr : sourceTracks)
|
|
{
|
|
if (!tr) continue;
|
|
if (plan.bypassSelfFx) bypass(tr);
|
|
if (plan.bypassAncestorFx)
|
|
{
|
|
// Walk parents to the top: GetParentTrack returns the immediate
|
|
// parent (folder) track, nullptr at the outermost level (SDK
|
|
// header ~2407). The master is NOT returned here — handled below.
|
|
for (MediaTrack* p = GetParentTrack(tr); p; p = GetParentTrack(p))
|
|
bypass(p);
|
|
}
|
|
}
|
|
if (plan.bypassMaster)
|
|
{
|
|
// GetMasterTrack(proj) -> the master track (SDK header ~1925). bypass()
|
|
// neutralizes its FX (I_FXEN), gain (D_VOL) AND pan/width/law/mode on it
|
|
// just like any other in-scope track; only the master's summing/routing
|
|
// topology (the mix bus itself) remains — that is not a per-track param.
|
|
if (MediaTrack* master = GetMasterTrack(proj)) bypass(master);
|
|
}
|
|
}
|
|
|
|
~FxBypassGuard()
|
|
{
|
|
// Restore in reverse for symmetry (order is not load-bearing — each track
|
|
// appears once, snapshots are independent). EVERY snapshotted param is
|
|
// restored to its ORIGINAL value on this (every) exit path. Restore
|
|
// I_PANMODE before the pan values so any mode-conditional params (e.g. dual
|
|
// pan) settle under the original mode.
|
|
for (auto it = snapshots_.rbegin(); it != snapshots_.rend(); ++it)
|
|
{
|
|
SetMediaTrackInfo_Value(it->track, "I_FXEN", it->fxen);
|
|
SetMediaTrackInfo_Value(it->track, "D_VOL", it->vol);
|
|
SetMediaTrackInfo_Value(it->track, "I_PANMODE", it->panmode);
|
|
SetMediaTrackInfo_Value(it->track, "D_PAN", it->pan);
|
|
SetMediaTrackInfo_Value(it->track, "D_WIDTH", it->width);
|
|
SetMediaTrackInfo_Value(it->track, "D_PANLAW", it->panlaw);
|
|
}
|
|
}
|
|
|
|
FxBypassGuard(const FxBypassGuard&) = delete;
|
|
FxBypassGuard& operator=(const FxBypassGuard&) = delete;
|
|
|
|
private:
|
|
// One snapshot per bypassed track: all params we neutralize, at their originals.
|
|
// panmode captures I_PANMODE so we can force stereo-pan for the render and put
|
|
// the original mode back — which also makes D_DUALPANL/D_DUALPANR (live only when
|
|
// I_PANMODE==6, SDK ~2229-2230) irrelevant during the render without us having to
|
|
// touch or guess neutral values for them.
|
|
struct Snap
|
|
{
|
|
MediaTrack* track;
|
|
double fxen;
|
|
double vol;
|
|
double pan;
|
|
double width;
|
|
double panlaw;
|
|
double panmode;
|
|
};
|
|
std::vector<Snap> snapshots_;
|
|
|
|
// Snapshot every neutralized param once per track (dedup: an ancestor shared by
|
|
// two selected tracks must be restored to its ORIGINAL values, not to a
|
|
// re-snapshot of the already-neutralized state), then read ALL originals, push
|
|
// one Snap, and set all to neutral — bypass FX, unity gain, uncolored pan chain.
|
|
void bypass(MediaTrack* tr)
|
|
{
|
|
for (const Snap& s : snapshots_) if (s.track == tr) return; // already done
|
|
// Read ALL originals first (atomic snapshot), then push, then neutralize.
|
|
const double fxen = GetMediaTrackInfo_Value(tr, "I_FXEN");
|
|
const double vol = GetMediaTrackInfo_Value(tr, "D_VOL");
|
|
const double pan = GetMediaTrackInfo_Value(tr, "D_PAN");
|
|
const double width = GetMediaTrackInfo_Value(tr, "D_WIDTH");
|
|
const double panlaw = GetMediaTrackInfo_Value(tr, "D_PANLAW");
|
|
const double panmode = GetMediaTrackInfo_Value(tr, "I_PANMODE");
|
|
snapshots_.push_back({tr, fxen, vol, pan, width, panlaw, panmode});
|
|
SetMediaTrackInfo_Value(tr, "I_FXEN", 0.0); // 0 = bypassed (SDK ~2194)
|
|
SetMediaTrackInfo_Value(tr, "D_VOL", 1.0); // 1.0 = unity gain (SDK ~2226)
|
|
SetMediaTrackInfo_Value(tr, "I_PANMODE", 5.0); // 5 = stereo pan (SDK ~2231)
|
|
SetMediaTrackInfo_Value(tr, "D_PAN", 0.0); // 0.0 = center (SDK ~2227)
|
|
SetMediaTrackInfo_Value(tr, "D_WIDTH", 1.0); // 1.0 = full width (SDK ~2228)
|
|
SetMediaTrackInfo_Value(tr, "D_PANLAW", 1.0); // 1.0 = +0dB, no law (SDK ~2232)
|
|
}
|
|
};
|
|
|
|
// Runs one capture-action-table row: resolve its scope source + range, snapshot &
|
|
// clear the out-of-scope FX AND neutralize their fader gain + pan chain (RAII),
|
|
// render via the offline backend, add the Sample to the bank, persist + mark dirty.
|
|
// The load-bearing principle holds structurally — this path writes a file + a bank
|
|
// index entry ONLY; it never calls InsertMedia or touches the arrange/timeline.
|
|
// Non-destructive: FX-enable + fader gain + pan/width/law/mode are fully restored
|
|
// on every path by FxBypassGuard, and the backend restores every RENDER_* setting.
|
|
static void RunCapture(const reasampler::CaptureActionDef& def)
|
|
{
|
|
ResolvedSource src;
|
|
std::string why;
|
|
if (!ResolveScopeSource(def.scope, src, why))
|
|
{
|
|
ShowConsoleMsg(("ReaSampler capture: " + why + ".\n").c_str());
|
|
return;
|
|
}
|
|
|
|
// The tail mode is a PANEL SETTING (docked bank panel's toggle), not a per-action
|
|
// variant: the plain capture actions apply whatever the panel is set to. Default
|
|
// is None (exact bounds / byte-identical to today) until the user opts in via the
|
|
// toggle. tailMs is meaningful only for Manual and is pre-clamped by the panel.
|
|
const reasampler::TailSetting tail = reasampler::bankPanelTailSetting();
|
|
|
|
reasampler::CaptureRequest req;
|
|
req.sourceMode = reasampler::sourceModeForScope(def.scope);
|
|
req.startSeconds = src.startSeconds; // exact bounds — no rounding
|
|
req.endSeconds = src.endSeconds;
|
|
req.wetDry = 1.0; // wet post the FX left enabled by the scope
|
|
req.tailMode = tail.mode; // None / Auto / Manual, from the panel toggle
|
|
req.tailMs = tail.manualMs; // Manual-only (clamped); ignored for None/Auto
|
|
req.sampleRate = 0; // follow project rate
|
|
req.channelCount = 2;
|
|
req.bitDepth = reasampler::WavBitDepth::Float32; // deterministic, no dither
|
|
req.baseName = def.baseName;
|
|
req.trackGuids = src.trackGuids; // recorded on the Sample (provenance)
|
|
|
|
// Bypass the out-of-scope FX and neutralize their fader gain (D_VOL -> unity)
|
|
// AND full pan chain (D_PAN/D_WIDTH/D_PANLAW/I_PANMODE -> uncolored) for the
|
|
// duration of the render — so parent/master fader level AND pan/width/law/mode
|
|
// are not baked into the file (see the FxBypassGuard header comment for the
|
|
// authoritative neutralize set). Restored on EVERY exit path below (RAII),
|
|
// including backend failures. proj = active project.
|
|
ReaProject* proj = EnumProjects(-1, nullptr, 0);
|
|
FxBypassGuard fxGuard(def.scope, src.sourceTracks, proj);
|
|
|
|
reasampler::OfflineRenderBackend backend;
|
|
reasampler::CaptureResult res = backend.capture(req);
|
|
|
|
if (res.status != reasampler::CaptureStatus::Ok)
|
|
{
|
|
ShowConsoleMsg(("ReaSampler capture failed: " + res.message + "\n").c_str());
|
|
return;
|
|
}
|
|
|
|
reasampler::AddResult added = g_session.bank().add(res.sample);
|
|
// Persist the updated bank into the active project's ext state so the capture
|
|
// survives Save / close+reopen (M4) and travels with the .rpp. saveToActiveProject
|
|
// also calls MarkProjectDirty. Non-destructive: writes only our own ext-state key.
|
|
g_session.saveToActiveProject();
|
|
|
|
std::string log = "ReaSampler: " + res.message + "\n";
|
|
log += " bank size now " + std::to_string(g_session.bank().size()) +
|
|
(added == reasampler::AddResult::Added ? " (added)\n"
|
|
: added == reasampler::AddResult::Collapsed ? " (collapsed on hash)\n"
|
|
: " (rejected)\n");
|
|
ShowConsoleMsg(log.c_str());
|
|
}
|
|
|
|
// STARTS the REALTIME track capture and returns immediately — the record runs across
|
|
// timer ticks (DriveRealtimeCapture), so REAPER's UI stays responsive. Resolves the
|
|
// selected tracks + the range (razor-else-time, the same orthogonal range logic as the
|
|
// offline scopes) and starts recording each selected track's OWN output into a hidden
|
|
// temp track via RealtimeRecordBackend::begin (a send FROM each source track INTO the
|
|
// temp — see capture_realtime.cpp §TAP); OnTimer drives it to completion, then adds the
|
|
// Sample and persists. TRACK scope only this increment (item realtime is deferred).
|
|
// Dialog-free. Non-bit-identical by nature (it is realtime) — offline stays the
|
|
// deterministic default. FxBypassGuard is NOT used here — the track-output tap is
|
|
// PRE-parent by construction (§TAP), so there is no live chain to neutralize. The
|
|
// load-bearing principle holds structurally — this writes a file + a bank entry ONLY;
|
|
// the temp track is a transient sink removed by the backend, nothing lands in arrange.
|
|
//
|
|
// A SECOND realtime capture requested while one is in progress is REJECTED — the
|
|
// first keeps running (we own the transport for its window; starting a second would
|
|
// collide on the transport and the temp-track/arm snapshot).
|
|
static void RunCaptureRealtimeTrack()
|
|
{
|
|
if (g_rtCapture)
|
|
{
|
|
ShowConsoleMsg("ReaSampler realtime capture: a capture is already in "
|
|
"progress — let it finish (or stop the transport) first.\n");
|
|
return;
|
|
}
|
|
|
|
// Resolve the selected tracks + range exactly as the offline Track scope does.
|
|
// No track selected -> refuse (same no-op as offline track scope).
|
|
ResolvedSource src;
|
|
std::string why;
|
|
if (!ResolveScopeSource(reasampler::CaptureScope::Track, src, why))
|
|
{
|
|
ShowConsoleMsg(("ReaSampler realtime capture: " + why + ".\n").c_str());
|
|
return;
|
|
}
|
|
|
|
// The tail mode is the SAME panel setting the offline capture actions read (the
|
|
// docked bank panel's toggle). Realtime honors it via a parallel path: the backend
|
|
// records a generous window past the range end, then trims by PCM decay-scan (T2 /
|
|
// capture-tail.md §The realtime path) — it does NOT drive RENDER_*. Default None
|
|
// keeps realtime exact-bounds / byte-identical to today.
|
|
const reasampler::TailSetting tail = reasampler::bankPanelTailSetting();
|
|
|
|
reasampler::CaptureRequest req;
|
|
req.sourceMode = reasampler::SourceMode::SelectedTracks; // realtime track scope
|
|
req.startSeconds = src.startSeconds; // exact bounds — no rounding
|
|
req.endSeconds = src.endSeconds;
|
|
req.wetDry = 1.0; // fully wet (post-fader tap)
|
|
req.tailMode = tail.mode; // None / Auto / Manual, from the panel toggle
|
|
req.tailMs = tail.manualMs; // Manual-only (pre-clamped); ignored for None/Auto
|
|
req.sampleRate = 0; // follow project rate
|
|
req.channelCount = 2;
|
|
req.bitDepth = reasampler::WavBitDepth::Float32;
|
|
req.baseName = "realtime";
|
|
req.trackGuids = src.trackGuids; // provenance on the Sample
|
|
|
|
reasampler::CaptureResult failure;
|
|
reasampler::RealtimeCaptureHandle st =
|
|
g_rtBackend.begin(req, src.sourceTracks, failure);
|
|
if (!st)
|
|
{
|
|
// begin() validated/failed and already restored anything it touched.
|
|
ShowConsoleMsg(("ReaSampler realtime capture failed: " + failure.message + "\n").c_str());
|
|
return;
|
|
}
|
|
|
|
// Started. Store the in-flight state + its project; OnTimer drives it to
|
|
// completion across ticks (UI stays responsive).
|
|
g_rtCaptureProject = EnumProjects(-1, nullptr, 0);
|
|
g_rtCapture = std::move(st);
|
|
// With a tail mode the recorded window runs PAST the range end (Auto: +8 s then
|
|
// decay-trim; Manual: +the set length), so the completion note names the window,
|
|
// not just the range end.
|
|
const char* doneWhen =
|
|
(tail.mode == reasampler::TailMode::None)
|
|
? "the bank updates when it reaches the range end."
|
|
: "the bank updates after the extra tail window (past the range end).";
|
|
ShowConsoleMsg((std::string("ReaSampler: realtime capture started — recording in "
|
|
"the background; ") + doneWhen + "\n").c_str());
|
|
}
|
|
|
|
// Cancels the in-flight realtime capture on demand (bindable action). Force-terminates
|
|
// via abort() — stop the transport + restore ALL snapshotted state (non-destructive),
|
|
// committing whatever audio was already captured (best effort) so a cancel near the end
|
|
// still keeps the take. Runs only against the record's OWN project (abort() self-guards
|
|
// the closed-project case, review §1). No-op with a note when nothing is in flight.
|
|
static void RunCancelRealtime()
|
|
{
|
|
if (!g_rtCapture)
|
|
{
|
|
ShowConsoleMsg("ReaSampler: no realtime capture in progress to cancel.\n");
|
|
return;
|
|
}
|
|
reasampler::RealtimeTickResult r = g_rtBackend.abort(*g_rtCapture);
|
|
if (r.status == reasampler::RealtimeTickStatus::Done)
|
|
CommitRealtimeResult(r.result); // Ok: keep what was captured up to the cancel
|
|
else
|
|
ShowConsoleMsg(("ReaSampler realtime capture cancelled — " +
|
|
r.result.message + "\n").c_str());
|
|
g_rtCapture.reset();
|
|
g_rtCaptureProject = nullptr;
|
|
}
|
|
|
|
// Runs the M6 insert: place the bank panel's selected sample(s) at the edit cursor
|
|
// via InsertMedia, undo-wrapped. `conform` selects the explicit opt-in tempo-match
|
|
// variant (never silent — it fires only from the distinct "conform" action). This
|
|
// is the INTENDED placement path: it adds items to the arrange on purpose
|
|
// (CONTEXT.md §load-bearing principle) and runs only from a user-invoked action.
|
|
static void RunInsertSelected(bool conform)
|
|
{
|
|
reasampler::InsertRequest req;
|
|
// target defaults to CurrentTrack (InsertOptions::target) — inserts onto the
|
|
// user's currently-selected track(s) at the edit cursor.
|
|
req.options.conform =
|
|
conform ? reasampler::TempoConform::Ratio1x : reasampler::TempoConform::None;
|
|
// preservePitch stays true: a tempo conform matches tempo without varispeeding
|
|
// pitch. (A pitch-shifting variant is a later opt-in if wanted — YAGNI now.)
|
|
|
|
reasampler::InsertResult res = reasampler::runInsert(&g_session, req);
|
|
|
|
std::string msg;
|
|
switch (res.status)
|
|
{
|
|
case reasampler::InsertStatus::Ok:
|
|
msg = "ReaSampler: inserted onto " + std::to_string(res.inserted) +
|
|
(res.inserted == 1 ? " track" : " tracks") +
|
|
(conform ? " (conformed to tempo)" : " (native length)") + "\n";
|
|
break;
|
|
case reasampler::InsertStatus::NoSelection:
|
|
// "select a track first" is printed by runInsert when no track is
|
|
// selected; this branch covers the no-panel-selection case.
|
|
msg = "ReaSampler insert: nothing selected in the bank panel.\n";
|
|
break;
|
|
case reasampler::InsertStatus::NoProject:
|
|
msg = "ReaSampler insert: no saved project, so the bank has no location.\n";
|
|
break;
|
|
case reasampler::InsertStatus::NothingResolved:
|
|
msg = "ReaSampler insert: selected sample(s) could not be resolved to a file.\n";
|
|
break;
|
|
}
|
|
ShowConsoleMsg(msg.c_str());
|
|
}
|
|
|
|
// REAPER calls this for EVERY action fired anywhere; claim only our own id,
|
|
// return false otherwise so REAPER keeps looking.
|
|
static bool OnHookCommand(int command, int /*flag*/)
|
|
{
|
|
if (command == 0) return false;
|
|
// Three-scope capture family: command ids parallel captureActionTable() 1:1 by index.
|
|
// Claim the fired id if it is one of ours and route to its table row.
|
|
for (std::size_t i = 0; i < g_captureCmdIds.size(); ++i)
|
|
if (command == g_captureCmdIds[i])
|
|
{
|
|
RunCapture(reasampler::captureActionTable()[i]);
|
|
return true;
|
|
}
|
|
if (command == g_cmdToggleBankPanel) { reasampler::bankPanelToggle(); return true; }
|
|
if (command == g_cmdInsertSelected) { RunInsertSelected(false); return true; }
|
|
if (command == g_cmdInsertSelectedConform) { RunInsertSelected(true); return true; }
|
|
if (command == g_cmdCaptureTrackRealtime) { RunCaptureRealtimeTrack(); return true; }
|
|
if (command == g_cmdCancelRealtime) { RunCancelRealtime(); return true; }
|
|
// Design View action family (D4). Claims only its own ids; returns false for the
|
|
// rest so this hook keeps looking (per the contract).
|
|
if (reasampler::designViewHandleCommand(command)) return true;
|
|
return false;
|
|
}
|
|
|
|
// REAPER polls this to render each of OUR actions' checked state in menus/toolbars.
|
|
// Return 1 (on) / 0 (off) for ids we own, -1 for everything else (per the contract).
|
|
static int OnToggleAction(int command)
|
|
{
|
|
if (command == g_cmdToggleBankPanel)
|
|
return reasampler::bankPanelIsOpen() ? 1 : 0;
|
|
return -1; // not ours / non-toggling
|
|
}
|
|
|
|
// gaccel storage must outlive registration — REAPER holds the pointer.
|
|
// (The capture family's accels live in g_captureAccels, sized to the table.)
|
|
static gaccel_register_t g_accelToggleBankPanel{};
|
|
static gaccel_register_t g_accelInsertSelected{};
|
|
static gaccel_register_t g_accelInsertSelectedConform{};
|
|
static gaccel_register_t g_accelCaptureTrackRealtime{};
|
|
static gaccel_register_t g_accelCancelRealtime{};
|
|
|
|
extern "C" REAPER_PLUGIN_DLL_EXPORT int REAPER_PLUGIN_ENTRYPOINT(
|
|
REAPER_PLUGIN_HINSTANCE hInstance, reaper_plugin_info_t* rec)
|
|
{
|
|
if (!rec)
|
|
{
|
|
// rec == nullptr => REAPER is UNLOADING us. Mirror-unregister every
|
|
// callback with the same strings prefixed '-' (per the contract).
|
|
if (g_rec)
|
|
{
|
|
// Abort any in-flight realtime capture FIRST, while the API pointers are
|
|
// still live — finalize-or-abort + restore so we never leave a temp track,
|
|
// an armed track, or an altered transport/cursor in the user's project on
|
|
// unload. Commit whatever was captured (best effort) before tearing down.
|
|
if (g_rtCapture)
|
|
{
|
|
reasampler::RealtimeTickResult r = g_rtBackend.abort(*g_rtCapture);
|
|
CommitRealtimeResult(r.result);
|
|
g_rtCapture.reset();
|
|
g_rtCaptureProject = nullptr;
|
|
}
|
|
|
|
g_rec->Register("-timer", (void*)&OnTimer);
|
|
g_rec->Register("-toggleaction", (void*)&OnToggleAction);
|
|
g_rec->Register("-hookcommand", (void*)&OnHookCommand);
|
|
// Tear down the Design View action family (D4) — mirror-unregisters each
|
|
// gaccel + command_id with '-'-prefixed strings. After the hook is gone.
|
|
reasampler::designViewUnregisterActions(g_rec);
|
|
g_rec->Register("-gaccel", (void*)&g_accelCancelRealtime);
|
|
g_rec->Register("-command_id",
|
|
(void*)(REASAMPLER_ACTION_PREFIX "CANCEL_REALTIME_CAPTURE"));
|
|
g_rec->Register("-gaccel", (void*)&g_accelCaptureTrackRealtime);
|
|
g_rec->Register("-command_id",
|
|
(void*)(REASAMPLER_ACTION_PREFIX "CAPTURE_TRACK_REALTIME"));
|
|
g_rec->Register("-gaccel", (void*)&g_accelInsertSelectedConform);
|
|
g_rec->Register("-command_id",
|
|
(void*)(REASAMPLER_ACTION_PREFIX "INSERT_SELECTED_CONFORM"));
|
|
g_rec->Register("-gaccel", (void*)&g_accelInsertSelected);
|
|
g_rec->Register("-command_id",
|
|
(void*)(REASAMPLER_ACTION_PREFIX "INSERT_SELECTED"));
|
|
g_rec->Register("-gaccel", (void*)&g_accelToggleBankPanel);
|
|
g_rec->Register("-command_id",
|
|
(void*)(REASAMPLER_ACTION_PREFIX "TOGGLE_BANK_PANEL"));
|
|
// Mirror-unregister the capture family: gaccel + command_id per row,
|
|
// with '-'-prefixed strings (per the contract). The FOREVER-STABLE id
|
|
// strings come from the same table used to register them.
|
|
{
|
|
const auto& table = reasampler::captureActionTable();
|
|
for (std::size_t i = 0; i < table.size(); ++i)
|
|
{
|
|
if (i < g_captureAccels.size())
|
|
g_rec->Register("-gaccel", (void*)&g_captureAccels[i]);
|
|
g_rec->Register("-command_id", (void*)table[i].commandString);
|
|
}
|
|
}
|
|
// Retire the removed M7 command ids (command_id only — we never held a
|
|
// gaccel for them this session). Clears stale user keybindings on unload.
|
|
for (const char* id : kRetiredCaptureCmdStrings)
|
|
g_rec->Register("-command_id", (void*)id);
|
|
}
|
|
// Destroy the docked window and release cached thumbnails before we drop
|
|
// the API pointers (DockWindowRemove/DestroyWindow need them live).
|
|
reasampler::bankPanelShutdown();
|
|
g_rec = nullptr;
|
|
return 0;
|
|
}
|
|
|
|
// ABI guard: the struct layout we compiled against must match this REAPER.
|
|
if (rec->caller_version != REAPER_PLUGIN_VERSION)
|
|
return 0;
|
|
|
|
// Resolve every REAPER API function pointer. Returns the number that FAILED
|
|
// to load; 0 == success. Non-zero usually means REAPER is older than our SDK.
|
|
if (REAPERAPI_LoadAPI(rec->GetFunc) != 0)
|
|
return 0;
|
|
|
|
g_hInst = hInstance;
|
|
g_rec = rec;
|
|
|
|
// Register the three-scope capture action family (command_id -> gaccel per table row).
|
|
// The single hookcommand below routes every fired id back to its row by index.
|
|
// g_captureAccels must be sized BEFORE the loop and never reallocated after —
|
|
// REAPER holds a pointer to each element until we mirror-unregister it.
|
|
{
|
|
const auto& table = reasampler::captureActionTable();
|
|
g_captureCmdIds.assign(table.size(), 0);
|
|
g_captureAccels.assign(table.size(), gaccel_register_t{});
|
|
for (std::size_t i = 0; i < table.size(); ++i)
|
|
{
|
|
const int cmd =
|
|
rec->Register("command_id", (void*)table[i].commandString);
|
|
g_captureCmdIds[i] = cmd;
|
|
if (cmd)
|
|
{
|
|
g_captureAccels[i].accel.cmd = cmd;
|
|
g_captureAccels[i].desc = table[i].description;
|
|
rec->Register("gaccel", (void*)&g_captureAccels[i]);
|
|
}
|
|
}
|
|
}
|
|
|
|
// Point the bank panel at the live session BEFORE registering its action, so
|
|
// a toggle firing immediately has a session to read (M5). Does not open the
|
|
// window — only stores the session pointer.
|
|
reasampler::bankPanelInit(&g_session);
|
|
|
|
// Register the M5 "toggle bank panel" action (command_id -> gaccel ->
|
|
// hookcommand + toggleaction for the checked state).
|
|
g_cmdToggleBankPanel = rec->Register(
|
|
"command_id",
|
|
(void*)(REASAMPLER_ACTION_PREFIX "TOGGLE_BANK_PANEL"));
|
|
if (g_cmdToggleBankPanel)
|
|
{
|
|
g_accelToggleBankPanel.accel.cmd = g_cmdToggleBankPanel;
|
|
g_accelToggleBankPanel.desc = "ReaSampler: toggle bank panel";
|
|
rec->Register("gaccel", (void*)&g_accelToggleBankPanel);
|
|
rec->Register("toggleaction", (void*)&OnToggleAction);
|
|
}
|
|
|
|
// Register the M6 insert actions (command_id -> gaccel -> hookcommand). Two
|
|
// variants: native-length (default, no stretch) and the EXPLICIT conform-to-
|
|
// tempo opt-in. Both read the bank panel selection and place at the edit cursor.
|
|
g_cmdInsertSelected = rec->Register(
|
|
"command_id",
|
|
(void*)(REASAMPLER_ACTION_PREFIX "INSERT_SELECTED"));
|
|
if (g_cmdInsertSelected)
|
|
{
|
|
g_accelInsertSelected.accel.cmd = g_cmdInsertSelected;
|
|
g_accelInsertSelected.desc =
|
|
"ReaSampler: insert selected sample at edit cursor";
|
|
rec->Register("gaccel", (void*)&g_accelInsertSelected);
|
|
}
|
|
|
|
g_cmdInsertSelectedConform = rec->Register(
|
|
"command_id",
|
|
(void*)(REASAMPLER_ACTION_PREFIX "INSERT_SELECTED_CONFORM"));
|
|
if (g_cmdInsertSelectedConform)
|
|
{
|
|
g_accelInsertSelectedConform.accel.cmd = g_cmdInsertSelectedConform;
|
|
g_accelInsertSelectedConform.desc =
|
|
"ReaSampler: insert selected sample at edit cursor (conform to tempo)";
|
|
rec->Register("gaccel", (void*)&g_accelInsertSelectedConform);
|
|
}
|
|
|
|
// Register the "capture selected track (realtime)" action (command_id -> gaccel ->
|
|
// hookcommand). Realtime sibling of the offline CAPTURE_TRACK scope: records the
|
|
// selected track's own output in realtime into a hidden temp track, moves it into
|
|
// the bank. Dialog-free. NEW FOREVER-STABLE id string.
|
|
g_cmdCaptureTrackRealtime = rec->Register(
|
|
"command_id",
|
|
(void*)(REASAMPLER_ACTION_PREFIX "CAPTURE_TRACK_REALTIME"));
|
|
if (g_cmdCaptureTrackRealtime)
|
|
{
|
|
g_accelCaptureTrackRealtime.accel.cmd = g_cmdCaptureTrackRealtime;
|
|
g_accelCaptureTrackRealtime.desc =
|
|
"ReaSampler: capture selected track (realtime)";
|
|
rec->Register("gaccel", (void*)&g_accelCaptureTrackRealtime);
|
|
}
|
|
|
|
// Cancel-in-flight sibling: aborts a running realtime capture (stop + restore).
|
|
// FOREVER-STABLE id string.
|
|
g_cmdCancelRealtime = rec->Register(
|
|
"command_id",
|
|
(void*)(REASAMPLER_ACTION_PREFIX "CANCEL_REALTIME_CAPTURE"));
|
|
if (g_cmdCancelRealtime)
|
|
{
|
|
g_accelCancelRealtime.accel.cmd = g_cmdCancelRealtime;
|
|
g_accelCancelRealtime.desc = "ReaSampler: cancel realtime capture";
|
|
rec->Register("gaccel", (void*)&g_accelCancelRealtime);
|
|
}
|
|
|
|
// Register the Design View action family (D4): toggle/activate mode, tag/untag/
|
|
// show-both selected tracks. Each mints its own command_id + gaccel; the single
|
|
// hookcommand below routes them via designViewHandleCommand. Registered before
|
|
// the hook so every id is minted first.
|
|
reasampler::designViewRegisterActions(rec, &g_session);
|
|
|
|
// One hookcommand routes every ReaSampler action (spike + toggle + Design View).
|
|
// Registered once, after all command ids are minted.
|
|
rec->Register("hookcommand", (void*)&OnHookCommand);
|
|
|
|
// Drive project-load / Save-As detection (M4 persist). The timer polls the
|
|
// active project each tick; on a project load it reloads the bank from ext
|
|
// state, on a Save-As it relocates the bank folder under the new .rpp.
|
|
rec->Register("timer", (void*)&OnTimer);
|
|
|
|
ShowConsoleMsg("ReaSampler loaded.\n");
|
|
|
|
return 1; // success — REAPER keeps us loaded
|
|
}
|