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reasampler/tests/test_view_fx_park.cpp

198 lines
8.7 KiB
C++

// Standalone tests for the Design View park surface's pure decisions — no
// REAPER, no test framework.
//
// The properties under test: a pre-park snapshot is never taken from a chain a
// park has already touched, the refusal that follows names its tracks and is
// reported once per changed set, and one mode apply leaves at most ONE undo
// point — none at all when a reapply found everything already where it wanted it.
#include "../src/shell/view/view_fx_park.h"
#include "../src/shell/view/view.h" // applyMintsUndoPoint — the apply's undo-point fold
#include "core/view/view_mode_model.h" // makeParkPlan — the park flags' only producer
#include <cstdio>
#include <string>
#include <vector>
using namespace reasampler;
static int g_fail = 0;
#define CHECK(cond) do { if(!(cond)) { \
std::printf("FAIL line %d: %s\n", __LINE__, #cond); ++g_fail; } } while(0)
// -- may this chain be snapshotted? -------------------------------------------
//
// Rationale: the snapshot-source invariant (view_fx_park.h, this directory's
// CLAUDE.md).
// The live values the fold reads, keyed by Flag — so an assertion names the flag
// it varies rather than a position in makeParkPlan's op order.
struct FlagValues {
int showInTcp = 0, showInMixer = 0, mainSend = 0, fxEnable = 0;
int operator()(Flag f) const {
switch (f) {
case Flag::ShowInTcp: return showInTcp;
case Flag::ShowInMixer: return showInMixer;
case Flag::MainSend: return mainSend;
case Flag::FxEnable: return fxEnable;
}
return -1;
}
};
static void testAChainSittingAtEveryValueTheParkWouldWriteReadsAsParked() {
// The four zeros are what a parked track's driven flags actually read; if
// makeParkPlan ever writes something else, this is the test that says so.
const TrackPlan park = makeParkPlan("{A}", /*fxCount=*/0);
CHECK(park.flags.size() == 4);
CHECK(parkFlagsAlreadyApplied(park.flags, FlagValues{0, 0, 0, 0}));
}
static void testOneFlagStillAtTheUsersValueMeansNoParkReachedTheChain() {
const TrackPlan park = makeParkPlan("{A}", /*fxCount=*/0);
// Each case varies exactly one flag, so together they also prove all four are
// in the plan: a missing op makes its case read parked and fail here.
CHECK(!parkFlagsAlreadyApplied(park.flags, FlagValues{1, 0, 0, 0}));
CHECK(!parkFlagsAlreadyApplied(park.flags, FlagValues{0, 1, 0, 0}));
CHECK(!parkFlagsAlreadyApplied(park.flags, FlagValues{0, 0, 1, 0}));
CHECK(!parkFlagsAlreadyApplied(park.flags, FlagValues{0, 0, 0, 1}));
}
static void testAnEmptyPlanProvesNothing() {
CHECK(!parkFlagsAlreadyApplied(std::vector<TrackFlagOp>{}, FlagValues{0, 0, 0, 0}));
}
static void testEitherHalfOfTheChainReadingParkedIsEnoughToRefuse() {
// Disjunction pinned; rationale at chainReadsParked (view_fx_park.h).
CHECK(!chainReadsParked(/*parkFlagsRead=*/false, /*anyFxOffline=*/false));
CHECK(chainReadsParked(/*parkFlagsRead=*/true, /*anyFxOffline=*/false));
CHECK(chainReadsParked(/*parkFlagsRead=*/false, /*anyFxOffline=*/true));
CHECK(chainReadsParked(/*parkFlagsRead=*/true, /*anyFxOffline=*/true));
}
static void testACleanChainIsSnapshottedThenParked() {
CHECK(decidePark(/*haveSnapshot=*/false, /*chainReadsParked=*/false) ==
ParkAction::SnapshotThenPark);
}
static void testAHeldSnapshotIsNeverOverwrittenWhateverTheChainReads() {
// The held snapshot IS the pre-park truth, so the chain is not consulted —
// which is what lets the shell skip the live flag reads on this path.
CHECK(decidePark(/*haveSnapshot=*/true, /*chainReadsParked=*/false) == ParkAction::ParkOnly);
CHECK(decidePark(/*haveSnapshot=*/true, /*chainReadsParked=*/true) == ParkAction::ParkOnly);
}
static void testAParkedChainWithNoSnapshotIsRefusedRatherThanResnapshotted() {
// The defect this whole section exists for: the truth is gone, so the only
// non-destructive act is to leave the track alone. Snapshotting here commits
// park state as the user's state and no later restore can undo it.
CHECK(decidePark(/*haveSnapshot=*/false, /*chainReadsParked=*/true) == ParkAction::Refuse);
}
static void testRefusalNamesEveryRefusedTrackAndSaysNothingWhenNoneWere() {
CHECK(describeRefusedParks({}).empty());
const std::string one = describeRefusedParks({"Bass"});
CHECK(one.find("1 track ") != std::string::npos);
CHECK(one.find("Bass") != std::string::npos);
const std::string two = describeRefusedParks({"Bass", "Drum bus"});
CHECK(two.find("2 tracks ") != std::string::npos);
CHECK(two.find("Bass") != std::string::npos);
CHECK(two.find("Drum bus") != std::string::npos);
}
static void testRefusalRecoveryNamesThePerFxHalfAndAssertsNoCause() {
const std::string msg = describeRefusedParks({"Bass"});
// I_FXEN is the chain bypass: a user who restores only the four flags leaves
// every individually offlined FX offline and walks straight back into a
// refusal, so the recovery has to spell the per-FX step out.
CHECK(msg.find("every FX in its chain online") != std::string::npos);
// And it must not name a cause: the pair has several routes, and on a track
// the user themselves keeps hidden/bypassed there was no lost state at all.
CHECK(msg.find("undo") == std::string::npos);
CHECK(msg.find("lost") == std::string::npos);
}
// -- the refusal memo's print-suppression gate --------------------------------
//
// reportRefusedParks' own memo (owner + last-reported names, both REAPER-side
// statics) can't be driven from here, but the pure gate behind it can: prints
// (i.e. updates the memo) on any change, stays silent on an exact repeat, and
// treats a fresh empty set as a change too, so a later real refusal is never
// mistaken for a repeat of one that already healed.
static void testUnchangedOwnerAndSetStaysSilent() {
CHECK(!shouldReport(/*sameOwnerAsLast=*/true, {"Bass"}, {"Bass"}));
}
static void testADifferentNamedSetReports() {
CHECK(shouldReport(/*sameOwnerAsLast=*/true, {"Bass"}, {"Bass", "Drum bus"}));
}
static void testADifferentOwnerReportsEvenWithTheSameNames() {
// Two alternating project tabs must not suppress each other's first refusal.
CHECK(shouldReport(/*sameOwnerAsLast=*/false, {"Bass"}, {"Bass"}));
}
static void testAFreshEmptySetReportsAndResetsTheMemo() {
CHECK(shouldReport(/*sameOwnerAsLast=*/true, {"Bass"}, {}));
// Already empty, same owner: nothing changed, stays silent.
CHECK(!shouldReport(/*sameOwnerAsLast=*/true, {}, {}));
}
// -- the apply's one undo point ----------------------------------------------
//
// These pin applyMintsUndoPoint's fold only. The `wroteAnything` verdict it
// consumes — writeIfChanged / parkTrack / restoreTrack, all running against live
// REAPER calls — cannot be pinned here; docs/VERIFICATION.md §"Mode switching"
// is the sole cover for that plumbing being wired correctly.
static void testARealSwitchAlwaysLeavesAPointEvenWithNothingToWrite() {
// An explicitly fired action stays undoable even when the plan found nothing
// to write — the discard form is for reapplies only.
CHECK(applyMintsUndoPoint(/*realSwitch=*/true, /*wroteAnything=*/false));
CHECK(applyMintsUndoPoint(/*realSwitch=*/true, /*wroteAnything=*/true));
}
static void testAReapplyThatWroteSomethingLeavesAPoint() {
// A tag/untag reapply that actually parked a track: real project state moved.
CHECK(applyMintsUndoPoint(/*realSwitch=*/false, /*wroteAnything=*/true));
}
static void testAReapplyThatWroteNothingLeavesNoPointAtAll() {
// The project-load reapply over a project saved fully parked: every flag and
// every FX already sit where the plan wants them. Opening a project must not
// cost the user an undo step.
CHECK(!applyMintsUndoPoint(/*realSwitch=*/false, /*wroteAnything=*/false));
}
int main() {
testAChainSittingAtEveryValueTheParkWouldWriteReadsAsParked();
testOneFlagStillAtTheUsersValueMeansNoParkReachedTheChain();
testAnEmptyPlanProvesNothing();
testEitherHalfOfTheChainReadingParkedIsEnoughToRefuse();
testACleanChainIsSnapshottedThenParked();
testAHeldSnapshotIsNeverOverwrittenWhateverTheChainReads();
testAParkedChainWithNoSnapshotIsRefusedRatherThanResnapshotted();
testRefusalNamesEveryRefusedTrackAndSaysNothingWhenNoneWere();
testRefusalRecoveryNamesThePerFxHalfAndAssertsNoCause();
testUnchangedOwnerAndSetStaysSilent();
testADifferentNamedSetReports();
testADifferentOwnerReportsEvenWithTheSameNames();
testAFreshEmptySetReportsAndResetsTheMemo();
testARealSwitchAlwaysLeavesAPointEvenWithNothingToWrite();
testAReapplyThatWroteSomethingLeavesAPoint();
testAReapplyThatWroteNothingLeavesNoPointAtAll();
if (g_fail == 0) std::printf("All tests passed.\n");
return g_fail ? 1 : 0;
}