25390d5253
SetProjExtState's return describes the whole extname. The persist and the instrument's publish now re-read their key; both refusals can finally fire.
974 lines
50 KiB
C++
974 lines
50 KiB
C++
// Standalone tests for reasampler::wire::bake_wire — no VST3, no REAPER, no framework.
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// Same fast assert loop as the sibling wire tests.
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//
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// Covers: the exact bytes each record encodes to (the two artifacts ship independently, so
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// a field reorder or an inserted field must fail here rather than pass a round-trip and
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// break a mixed-version pair); request + outcome round-trips including bytes that would
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// break a delimiter-based format; the refusals every house wire record shares (wrong tag,
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// truncation, trailing garbage, a swapped record kind); an unrecognized status integer
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// degrading to Failed rather than to Ok; the action lookup name's leading underscore and
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// its channel fork; the two key classifiers each end reads the shared key through; the
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// write-back verdict, driven by a modelled key store that accepts or drops the write; and
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// the persist/upgrade state machine that is the ONLY route to a Banked landing, including
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// the reachability of its Unpersisted limb at both persist outcomes.
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#include "../src/core/wire/bake_wire.h"
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#include "../src/core/version/app_version.h"
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#include "../src/core/wire/ext_state_read.h" // extStateWriteLanded (the write-proof peer)
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#include <cstdint>
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#include <cstdio>
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#include <map>
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#include <optional>
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#include <string>
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using namespace reasampler::wire;
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static int g_fail = 0;
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#define CHECK(cond) do { if(!(cond)) { \
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std::printf("FAIL line %d: %s\n", __LINE__, #cond); ++g_fail; } } while(0)
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// The one answer bake_land emits for a landing its pass could not persist. Pinned once
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// here and used by both blocks below that need it, so the test suite does not become a
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// third place the sentence lives.
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static const std::string kUnpersistedAnswer =
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"the bake reached the bank in memory, but this pass's persist did not confirm its bank "
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"write, so this answer cannot promise a reload will find it";
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int main() {
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// --- The exact bytes on the wire -------------------------------------------------
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// A round-trip alone would pass a reordered or inserted field; the tags exist to guard
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// the LAYOUT, so the layout is what is pinned. Changing either literal below means an
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// already-shipped pair of artifacts can no longer talk — bump the tag, don't edit it.
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{
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BakeRequest req;
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req.instanceGuid = "abcd";
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req.stagedFilePath = "T/b.wav";
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req.sourceSampleId = "cap-1";
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req.sourceRelativePath = "bank/k.wav";
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req.sourceDisplayName = "Kick";
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req.ownUsageKey = "rsusage_abcd";
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req.rootNote = 36;
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req.generation = 1893456000;
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CHECK(encodeBakeRequest(req) ==
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"rsbakereq1"
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"4:abcd"
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"7:T/b.wav"
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"5:cap-1"
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"10:bank/k.wav"
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"4:Kick"
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"12:rsusage_abcd"
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"2:36"
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"10:1893456000");
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BakeOutcome out;
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out.status = BakeStatus::Ok;
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out.sampleId = "bake-1";
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out.relativePath = "bank/k2.wav";
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out.displayName = "Kick r2";
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out.rootNote = 36;
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out.channelCount = 2;
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out.replaced = true;
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out.message = "replaced";
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out.generation = 1893456000;
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CHECK(encodeBakeOutcome(out) ==
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"rsbakeout1"
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"1:0"
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"6:bake-1"
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"11:bank/k2.wav"
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"7:Kick r2"
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"2:36"
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"1:2"
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"1:1"
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"8:replaced"
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"10:1893456000");
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}
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// --- Request round-trip, with hostile field content -----------------------------
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{
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BakeRequest req;
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req.instanceGuid = "0123abcd";
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req.stagedFilePath = "C:/Temp/re:sampler 9000/bake 12:34.wav"; // colons + spaces
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req.sourceSampleId = "cap-1";
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req.sourceRelativePath = "reasampler_bank/kick.wav";
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req.sourceDisplayName = "Kick r2";
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req.ownUsageKey = "rsusage_0123abcd";
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req.rootNote = 36;
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req.generation = 1893456000;
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const std::string encoded = encodeBakeRequest(req);
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const auto decoded = decodeBakeRequest(encoded);
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CHECK(decoded.has_value());
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CHECK(*decoded == req);
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// Empty strings and a zero generation survive too (a first, un-named source).
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BakeRequest bare;
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CHECK(decodeBakeRequest(encodeBakeRequest(bare)) == bare);
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}
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// --- Outcome round-trip -----------------------------------------------------------
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{
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BakeOutcome out;
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out.status = BakeStatus::Ok;
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out.sampleId = "bake-1893456000-kick_1893456000.wav";
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out.relativePath = "reasampler_bank/kick_1893456000.wav";
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out.displayName = "Kick r3";
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out.rootNote = 36;
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out.channelCount = 2;
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out.replaced = true;
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out.message = "replaced the bank entry";
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out.generation = 1893456000;
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const auto decoded = decodeBakeOutcome(encodeBakeOutcome(out));
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CHECK(decoded.has_value());
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CHECK(*decoded == out);
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CHECK(decoded->replaced);
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out.replaced = false;
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CHECK(decodeBakeOutcome(encodeBakeOutcome(out))->replaced == false);
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}
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// --- Malformed input is refused, never half-parsed ---------------------------------
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{
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BakeRequest req;
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req.instanceGuid = "abc";
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req.rootNote = 60;
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const std::string good = encodeBakeRequest(req);
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CHECK(!decodeBakeRequest("").has_value());
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CHECK(!decodeBakeRequest("rsbakereq0" + good.substr(10)).has_value()); // wrong tag
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CHECK(!decodeBakeRequest(good.substr(0, good.size() - 3)).has_value()); // truncated
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CHECK(!decodeBakeRequest(good + "junk").has_value()); // trailing
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// The two records share a key; each must refuse the other's bytes outright.
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CHECK(!decodeBakeOutcome(good).has_value());
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CHECK(!decodeBakeRequest(encodeBakeOutcome(BakeOutcome{})).has_value());
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}
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// --- A status integer this build does not know reads as a FAILURE ------------------
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{
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// Hand-built with a future status value; every other field is well-formed, so only
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// the vocabulary gap is under test.
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BakeOutcome out;
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out.status = BakeStatus::Ok;
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out.generation = 7;
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std::string wire = encodeBakeOutcome(out);
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// The status field is the first after the tag: "<len>':'<digits>".
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const std::string okField = "1:0";
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const std::size_t at = wire.find(okField);
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CHECK(at != std::string::npos);
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wire.replace(at, okField.size(), "2:99");
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const auto decoded = decodeBakeOutcome(wire);
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CHECK(decoded.has_value());
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CHECK(decoded->status == BakeStatus::Failed); // never Ok
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CHECK(decoded->generation == 7);
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// Every status this build DOES know survives its own round trip — including the
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// most recently appended one, which an older reader will see as Failed.
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for (const BakeStatus s :
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{BakeStatus::Ok, BakeStatus::Failed, BakeStatus::NoProject,
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BakeStatus::StagedMissing, BakeStatus::NoSource, BakeStatus::IndexRejected,
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BakeStatus::WrongProject}) {
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BakeOutcome one;
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one.status = s;
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const auto back = decodeBakeOutcome(encodeBakeOutcome(one));
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CHECK(back.has_value() && back->status == s);
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}
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}
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// --- The lookup name carries the underscore the registration string does not -------
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// The load-bearing half is the REGISTRATION string: main.cpp registers that spelling
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// verbatim, and NamedCommandLookup needs exactly one underscore in front of it. If
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// channelCommandId ever grew one of its own, the lookup would carry two and resolve to
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// nothing.
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{
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const std::string registered =
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reasampler::version::channelCommandId(kBakeActionSuffix);
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const std::string lookup = bakeActionLookupName();
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const std::size_t suffixLen = std::string(kBakeActionSuffix).size();
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CHECK(!registered.empty());
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CHECK(registered.front() != '_');
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CHECK(lookup.size() == registered.size() + 1);
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CHECK(lookup.front() == '_' && lookup[1] != '_');
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CHECK(lookup.compare(1, std::string::npos, registered) == 0);
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// The suffix is the TAIL of the id — the channel prefix goes in front of it, and a
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// suffix that drifted into the middle would name a different action.
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CHECK(lookup.size() > suffixLen);
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CHECK(lookup.compare(lookup.size() - suffixLen, suffixLen, kBakeActionSuffix) == 0);
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}
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// --- The action id and the ext-state namespace fork on the SAME channel bit ---------
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// Both frozen families are spelled out, so this holds whichever channel the test binary
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// was built for. Consequence for a cross-channel pair (stable VST + beta extension or
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// the reverse): NamedCommandLookup resolves nothing, bakeAvailable paints the affordance
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// Disabled, and the click cannot reach the no-answer path at all.
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{
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const std::string suffix = kBakeActionSuffix;
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const std::string stableLookup = "_CEREBELLUM_REASAMPLER_" + suffix;
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const std::string betaLookup = "_CEREBELLUM_REASAMPLER_BETA_" + suffix;
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const bool beta = reasampler::version::isBeta();
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CHECK(stableLookup != betaLookup);
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CHECK(bakeActionLookupName() == (beta ? betaLookup : stableLookup));
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CHECK(bakeActionLookupName() != (beta ? stableLookup : betaLookup));
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CHECK(reasampler::version::extStateNamespace() ==
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(beta ? "reasampler_beta" : "reasampler"));
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}
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// --- What the instrument finds under its own key, after the action returned ---------
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{
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BakeRequest sent;
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sent.instanceGuid = "0123abcd";
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sent.stagedFilePath = "C:/Temp/reasampler_bake_0123abcd_1893456000.wav";
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sent.sourceSampleId = "cap-1";
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sent.sourceRelativePath = "reasampler_bank/kick.wav";
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sent.sourceDisplayName = "Kick";
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sent.ownUsageKey = "rsusage_0123abcd";
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sent.rootNote = 36;
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sent.generation = 1893456000;
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BakeOutcome answered;
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answered.status = BakeStatus::Ok;
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answered.sampleId = "bake-1";
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answered.message = "added as a distinct capture";
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answered.generation = sent.generation;
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const BakeAnswer ok =
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classifyBakeAnswer(std::optional<std::string>(encodeBakeOutcome(answered)), sent);
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CHECK(ok.kind == BakeAnswerKind::Answered);
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CHECK(ok.outcome.has_value() && ok.outcome->sampleId == "bake-1");
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// A refusal is an ANSWER — it must never fold into a no-answer kind, or the user is
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// sent to reinstall a binary that in fact answered them.
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BakeOutcome refused;
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refused.status = BakeStatus::WrongProject;
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refused.message = "this bake's project tab is not the one the extension has loaded";
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refused.generation = sent.generation;
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const BakeAnswer refusal =
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classifyBakeAnswer(std::optional<std::string>(encodeBakeOutcome(refused)), sent);
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CHECK(refusal.kind == BakeAnswerKind::Answered);
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CHECK(refusal.outcome.has_value() &&
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refusal.outcome->status == BakeStatus::WrongProject);
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BakeOutcome older = answered;
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older.generation = sent.generation - 1;
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const BakeAnswer foreignOut =
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classifyBakeAnswer(std::optional<std::string>(encodeBakeOutcome(older)), sent);
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CHECK(foreignOut.kind == BakeAnswerKind::ForeignOutcome);
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CHECK(foreignOut.outcome.has_value());
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// Nothing on the extension side read the key: the request is still sitting there
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// byte-for-byte. THE diagnostic that separates a stale/absent landing from a refusal.
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CHECK(classifyBakeAnswer(std::optional<std::string>(encodeBakeRequest(sent)), sent)
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.kind == BakeAnswerKind::Unanswered);
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// A request that is not ours: two instances copied from one another share a
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// persisted instanceGuid, so they name one key.
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BakeRequest sibling = sent;
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sibling.sourceSampleId = "cap-2";
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sibling.generation = sent.generation + 1;
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CHECK(classifyBakeAnswer(std::optional<std::string>(encodeBakeRequest(sibling)), sent)
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.kind == BakeAnswerKind::ForeignRequest);
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// Cleared folds two genuinely different bridge outcomes -- key absent, and key
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// present but empty -- into ONE kind, because the bridge cannot label which
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// occurred. Both must land on the identical kind: a caller's message may claim
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// no more than what the fold actually preserves.
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const BakeAnswer clearedFromAbsent = classifyBakeAnswer(std::nullopt, sent);
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const BakeAnswer clearedFromEmpty =
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classifyBakeAnswer(std::optional<std::string>(""), sent);
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CHECK(clearedFromAbsent.kind == BakeAnswerKind::Cleared);
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CHECK(clearedFromEmpty.kind == BakeAnswerKind::Cleared);
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CHECK(clearedFromAbsent.kind == clearedFromEmpty.kind);
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CHECK(classifyBakeAnswer(std::optional<std::string>("rsbakeout9 whatever"), sent)
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.kind == BakeAnswerKind::Undecodable);
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// No non-Answered kind may carry an outcome the caller could read as a landing.
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CHECK(!classifyBakeAnswer(std::nullopt, sent).outcome.has_value());
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CHECK(!classifyBakeAnswer(std::optional<std::string>(encodeBakeRequest(sent)), sent)
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.outcome.has_value());
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CHECK(!classifyBakeAnswer(std::optional<std::string>("garbage"), sent)
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.outcome.has_value());
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}
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// --- answeredOutcome: the guarded read, not switch exhaustiveness alone -------------
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{
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BakeRequest sent;
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sent.instanceGuid = "abcd";
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sent.generation = 42;
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BakeOutcome landed;
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landed.status = BakeStatus::Ok;
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landed.sampleId = "bake-1";
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landed.generation = sent.generation;
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// The one state that may yield a non-null pointer, and it points at the SAME
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// outcome classifyBakeAnswer decoded.
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const BakeAnswer answered =
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classifyBakeAnswer(std::optional<std::string>(encodeBakeOutcome(landed)), sent);
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const BakeOutcome* ptr = answeredOutcome(answered);
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CHECK(ptr != nullptr);
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CHECK(ptr->sampleId == "bake-1");
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// Every other real classification nulls out.
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CHECK(answeredOutcome(classifyBakeAnswer(std::nullopt, sent)) == nullptr);
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CHECK(answeredOutcome(classifyBakeAnswer(
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std::optional<std::string>(encodeBakeRequest(sent)), sent)) == nullptr);
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CHECK(answeredOutcome(classifyBakeAnswer(std::optional<std::string>("garbage"), sent))
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== nullptr);
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BakeOutcome foreign = landed;
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foreign.generation = sent.generation + 1;
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CHECK(answeredOutcome(classifyBakeAnswer(
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std::optional<std::string>(encodeBakeOutcome(foreign)), sent)) == nullptr);
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// The defensive arm: a hand-built Answered with no outcome set (what a future
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// BakeAnswerKind enumerator falling through an un-updated switch would look like
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// to this accessor) fails closed rather than being dereferenced.
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BakeAnswer malformed;
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malformed.kind = BakeAnswerKind::Answered;
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CHECK(!malformed.outcome.has_value());
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CHECK(answeredOutcome(malformed) == nullptr);
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}
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// --- kMaxRequestAgeSeconds: a regression pin on the bound itself --------------------
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// The bound's meaning depends on the instrument stamping `generation` immediately
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// before publishing (AFTER staging the WAV) -- a shell-side ordering fix this pure
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// suite cannot observe directly. Pinning the literal at least catches a silent
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// widen/narrow of the budget itself.
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CHECK(kMaxRequestAgeSeconds == 30);
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// --- The extension's per-key verdict over the open tabs -----------------------------
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{
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const std::int64_t now = 1893456000;
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// The session has polled a project and that project is REAPER's active tab — the
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// steady state a project opened from disk reaches on the next timer tick.
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const BakeScanContext loadedAndActive{true};
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BakeScanKey own{true, true, now, true};
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CHECK(classifyBakeScan(loadedAndActive, own, now) == BakeScanVerdict::Land);
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// A request found in a tab the extension has NOT loaded — the multi-tab case. It is
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// REFUSED, which is an answer the asking instance can read; it is never landed into
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// the loaded tab's bank, and never dropped silently.
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BakeScanKey otherTab{true, true, now, false};
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CHECK(classifyBakeScan(loadedAndActive, otherTab, now) ==
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BakeScanVerdict::RefuseWrongProject);
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// The loaded tab is no longer the active one, so a persist would write elsewhere:
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// even the loaded tab's own request is refused rather than half-landed.
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CHECK(classifyBakeScan(BakeScanContext{false}, own, now) ==
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BakeScanVerdict::RefuseWrongProject);
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// The window before any project is loaded: matchesLoadedProject cannot be true for
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// ANY key here — a key can only match a project that is loaded — so this is the
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|
// shell-reachable stand-in for "no book yet", not `own` (which the shell could
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// never actually pair with an unloaded session).
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CHECK(classifyBakeScan(BakeScanContext{false}, BakeScanKey{true, true, now, false},
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now) == BakeScanVerdict::RefuseWrongProject);
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// Stale in EITHER direction (a clock that moved backwards counts too).
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BakeScanKey old{true, true, now - kMaxRequestAgeSeconds - 1, true};
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BakeScanKey future{true, true, now + kMaxRequestAgeSeconds + 1, true};
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CHECK(classifyBakeScan(loadedAndActive, old, now) == BakeScanVerdict::ClearStale);
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CHECK(classifyBakeScan(loadedAndActive, future, now) == BakeScanVerdict::ClearStale);
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// Exactly at the bound is still landable — the ceiling is inclusive.
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BakeScanKey atBound{true, true, now - kMaxRequestAgeSeconds, true};
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CHECK(classifyBakeScan(loadedAndActive, atBound, now) == BakeScanVerdict::Land);
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// Staleness outranks the project check: a request nobody can read is cleared, not
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// answered, wherever it sits.
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BakeScanKey oldElsewhere{true, true, now - kMaxRequestAgeSeconds - 1, false};
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CHECK(classifyBakeScan(loadedAndActive, oldElsewhere, now) ==
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BakeScanVerdict::ClearStale);
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// A value that is not a request (an outcome the writer has not collected) is left
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|
// alone — answering it would clobber an answer in flight.
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BakeScanKey notARequest{true, false, 0, true};
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CHECK(classifyBakeScan(loadedAndActive, notARequest, now) ==
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BakeScanVerdict::IgnoreNotARequest);
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CHECK(classifyBakeScan(BakeScanContext{false}, notARequest, now) ==
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BakeScanVerdict::IgnoreNotARequest);
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|
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// A key the enumerator listed but the reader could not return whole is its OWN
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|
// verdict, not folded into the one above: the extension failing to read a request
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// that may well be there is a different fault from a key holding something else,
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// and neither is visible from the instrument's end.
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BakeScanKey unreadable{false, false, 0, true};
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CHECK(classifyBakeScan(loadedAndActive, unreadable, now) ==
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BakeScanVerdict::IgnoreUnreadable);
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CHECK(classifyBakeScan(BakeScanContext{false}, unreadable, now) ==
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BakeScanVerdict::IgnoreUnreadable);
|
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// Unreadable outranks even staleness — an age read off a request that was never
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// decoded would be a made-up number.
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BakeScanKey unreadableOld{false, false, now - kMaxRequestAgeSeconds - 1, true};
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CHECK(classifyBakeScan(loadedAndActive, unreadableOld, now) ==
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BakeScanVerdict::IgnoreUnreadable);
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}
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|
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// --- The scan summary: silent ONLY when nothing went unanswered ---------------------
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|
// `answered` is pass-wide and counts a QUEUED write, so gating on it alone let two real
|
|
// faults print nothing: a pass that answered another key while skipping ours, and a
|
|
// pass whose own answer write was rejected. Those two are what the gate below pins.
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|
{
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BakeScanTally clean;
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clean.tabsScanned = 1;
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clean.keysFound = 1;
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clean.activeTabKeys = 1;
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clean.answered = 1;
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CHECK(describeBakeScan(clean).empty());
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|
|
// THE regression: some OTHER key was answered while ours was skipped. Under the old
|
|
// `answered > 0` gate this printed nothing at all, and the instrument then told the
|
|
// user a silent console proved the action never ran.
|
|
for (int BakeScanTally::*skip :
|
|
{&BakeScanTally::unreadable, &BakeScanTally::notARequest,
|
|
&BakeScanTally::staleCleared}) {
|
|
BakeScanTally mixed = clean;
|
|
mixed.keysFound = 2;
|
|
mixed.*skip = 1;
|
|
const std::string said = describeBakeScan(mixed);
|
|
CHECK(!said.empty());
|
|
CHECK(said.find("left 1 unanswered") != std::string::npos);
|
|
}
|
|
|
|
// THE other regression: our answer was queued (so `answered` counted it) and the
|
|
// SetProjExtState write was rejected. Nothing else went wrong, and it must still
|
|
// speak.
|
|
BakeScanTally rejected = clean;
|
|
rejected.writeFailed = 1;
|
|
const std::string wrote = describeBakeScan(rejected);
|
|
CHECK(!wrote.empty());
|
|
CHECK(wrote.find("1 answer could not be written back") != std::string::npos);
|
|
CHECK(wrote.find("sees no answer at all") != std::string::npos);
|
|
// Plural agrees, and the count is the tally's own, not a hardcoded 1.
|
|
BakeScanTally rejectedTwo = clean;
|
|
rejectedTwo.answered = 2;
|
|
rejectedTwo.writeFailed = 2;
|
|
CHECK(describeBakeScan(rejectedTwo).find("2 answers could not be written back") !=
|
|
std::string::npos);
|
|
|
|
// An answer whose write-and-check THREW is neither landed nor known-failed, and it
|
|
// must break the silence too: the whole point of the gate is that no fault in the
|
|
// pass leaves the asking instance with a no-answer and an empty console.
|
|
BakeScanTally unproven = clean;
|
|
unproven.writeUnproven = 1;
|
|
const std::string unsure = describeBakeScan(unproven);
|
|
CHECK(!unsure.empty());
|
|
CHECK(unsure.find("1 answer could not be checked after writing") !=
|
|
std::string::npos);
|
|
CHECK(unsure.find("is unknown") != std::string::npos);
|
|
// ...and it is NOT reported as a rejection, which is a different claim.
|
|
CHECK(unsure.find("could not be written back") == std::string::npos);
|
|
BakeScanTally unprovenTwo = clean;
|
|
unprovenTwo.answered = 2;
|
|
unprovenTwo.writeUnproven = 2;
|
|
CHECK(describeBakeScan(unprovenTwo).find("2 answers could not be checked") !=
|
|
std::string::npos);
|
|
|
|
// Nothing found at all: the observation is stated and the candidates listed, with
|
|
// no winner picked — the enumeration's visibility of a key set but not yet saved is
|
|
// undocumented, so "not the same project's ext state" may not name it.
|
|
BakeScanTally nothing;
|
|
nothing.tabsScanned = 2;
|
|
const std::string none = describeBakeScan(nothing);
|
|
CHECK(!none.empty());
|
|
CHECK(none.find("2 project tabs") != std::string::npos);
|
|
CHECK(none.find("No rsbake_ key was visible") != std::string::npos);
|
|
CHECK(none.find("this pass cannot tell which apart") != std::string::npos);
|
|
CHECK(none.find("are not reading the same project") == std::string::npos);
|
|
CHECK(none.back() == '\n');
|
|
|
|
// One tab is singular, not "1 project tabs".
|
|
BakeScanTally oneTab;
|
|
oneTab.tabsScanned = 1;
|
|
CHECK(describeBakeScan(oneTab).find("1 project tab.") != std::string::npos);
|
|
|
|
// Found but unreadable — the fact the old scan discarded.
|
|
BakeScanTally unreadable;
|
|
unreadable.tabsScanned = 1;
|
|
unreadable.keysFound = 1;
|
|
unreadable.activeTabKeys = 1;
|
|
unreadable.unreadable = 1;
|
|
const std::string unread = describeBakeScan(unreadable);
|
|
CHECK(unread.find("1 could not be read back") != std::string::npos);
|
|
CHECK(unread.find("held something other than a request") == std::string::npos);
|
|
// keysFound counts EVERY rsbake_ key, not pending requests only — a label that
|
|
// said otherwise produced "3 pending request keys ... 3 held something else".
|
|
CHECK(unread.find("1 rsbake_ key") != std::string::npos);
|
|
CHECK(unread.find("pending request key") == std::string::npos);
|
|
|
|
// Found, readable, but not a request.
|
|
BakeScanTally foreign;
|
|
foreign.tabsScanned = 1;
|
|
foreign.keysFound = 1;
|
|
foreign.activeTabKeys = 1;
|
|
foreign.notARequest = 1;
|
|
const std::string other = describeBakeScan(foreign);
|
|
CHECK(other.find("1 held something other than a request") != std::string::npos);
|
|
CHECK(other.find("could not be read back") == std::string::npos);
|
|
|
|
// Cleared as stale: an answer was never written, so this too must report. The
|
|
// summary may NOT say the clears were written — whether each one took is a per-key
|
|
// read-back, and only describeBakeKey has seen it.
|
|
BakeScanTally stale;
|
|
stale.tabsScanned = 1;
|
|
stale.keysFound = 1;
|
|
stale.activeTabKeys = 1;
|
|
stale.staleCleared = 1;
|
|
const std::string aged = describeBakeScan(stale);
|
|
CHECK(aged.find("past the age bound") != std::string::npos);
|
|
CHECK(aged.find("were cleared") == std::string::npos);
|
|
|
|
// activeTabKeys is REAPER's ACTIVE tab and nothing more. It cannot discriminate the
|
|
// multi-tab mis-target — a genuine background-tab request classifies as
|
|
// RefuseWrongProject, which is an ANSWER — so no sentence may claim it does, and
|
|
// none may call it "the tab this bake was fired against" (whether REAPER makes the
|
|
// invoking instance's project current is DAW-unverified).
|
|
BakeScanTally elsewhere;
|
|
elsewhere.tabsScanned = 2;
|
|
elsewhere.keysFound = 1;
|
|
elsewhere.activeTabKeys = 0;
|
|
elsewhere.notARequest = 1;
|
|
const std::string away = describeBakeScan(elsewhere);
|
|
CHECK(away.find("0 of them in REAPER's active tab") != std::string::npos);
|
|
CHECK(away.find("fired against") == std::string::npos);
|
|
}
|
|
|
|
// --- The per-key line: the only thing that names WHICH key ---------------------------
|
|
// The tally counts; it cannot say whose key was skipped. This line is printed for every
|
|
// enumerated key, answered or not, and the key carries the asking instance's guid — so
|
|
// it is what lets one instance find its own verdict in a multi-instance session.
|
|
{
|
|
const std::string key = "rsbake_0123abcd";
|
|
|
|
BakeKeyOutcome landed;
|
|
landed.verdict = BakeScanVerdict::Land;
|
|
landed.landing = BakeLanding::Banked;
|
|
landed.proof = BakeWriteProof::Confirmed;
|
|
landed.detail = "added as a distinct capture";
|
|
const std::string ok = describeBakeKey(key, landed);
|
|
CHECK(ok.find(key) != std::string::npos);
|
|
CHECK(ok.find("landed into the bank") != std::string::npos);
|
|
CHECK(ok.find("The answer was written back") != std::string::npos);
|
|
CHECK(ok.back() == '\n');
|
|
// The outcome's own reason rides the SAME line: one self-contained line per key,
|
|
// rather than a keyed verdict and an unkeyed reason the reader has to pair up.
|
|
CHECK(ok.find("(added as a distinct capture)") != std::string::npos);
|
|
// The sentence names the OBSERVATION behind the flag (see BakeLanding) and stops
|
|
// there — it may not claim the .rpp on disk already holds the entry.
|
|
CHECK(ok.find("read back as exactly what this pass wrote") != std::string::npos);
|
|
CHECK(ok.find(".rpp") == std::string::npos);
|
|
CHECK(ok.find("carries it") == std::string::npos);
|
|
|
|
// A landing whose answer write was REJECTED — the state the instrument reads as
|
|
// Unanswered. This line is the only place it is ever named.
|
|
BakeKeyOutcome lost = landed;
|
|
lost.proof = BakeWriteProof::Rejected;
|
|
const std::string dropped = describeBakeKey(key, lost);
|
|
CHECK(dropped.find("landed into the bank") != std::string::npos);
|
|
CHECK(dropped.find("could NOT be written back") != std::string::npos);
|
|
CHECK(dropped.find("will report no answer") != std::string::npos);
|
|
|
|
// The write-and-check itself failing is a THIRD state, not a rejection: claiming
|
|
// the answer did not land would be a fact this pass never observed.
|
|
BakeKeyOutcome unchecked = landed;
|
|
unchecked.proof = BakeWriteProof::Unknown;
|
|
const std::string unsure = describeBakeKey(key, unchecked);
|
|
CHECK(unsure.find("is unknown") != std::string::npos);
|
|
CHECK(unsure.find("could NOT be written back") == std::string::npos);
|
|
CHECK(unsure.find("The answer was written back") == std::string::npos);
|
|
CHECK(unsure != ok && unsure != dropped);
|
|
|
|
// The four landing states are four different lines: a bake the project never
|
|
// persisted, and one that threw mid-write, may not read as a clean success or as a
|
|
// clean refusal.
|
|
BakeKeyOutcome unpersisted = landed;
|
|
unpersisted.landing = BakeLanding::Unpersisted;
|
|
const std::string memoryOnly = describeBakeKey(key, unpersisted);
|
|
CHECK(memoryOnly.find("IN MEMORY ONLY") != std::string::npos);
|
|
CHECK(memoryOnly.find("persist did not confirm its bank write") != std::string::npos);
|
|
CHECK(memoryOnly != ok);
|
|
// It may NOT claim what the project's saved state holds: the persist can fail
|
|
// before writing anything or throw part-way, and a dedup hit's target may have
|
|
// been in the project since long before this pass.
|
|
CHECK(memoryOnly.find("does not carry it") == std::string::npos);
|
|
|
|
BakeKeyOutcome partial = landed;
|
|
partial.landing = BakeLanding::Partial;
|
|
partial.detail = "the landing failed while writing: bad allocation";
|
|
const std::string half = describeBakeKey(key, partial);
|
|
CHECK(half.find("after it had begun writing") != std::string::npos);
|
|
CHECK(half.find("may have left a file") != std::string::npos);
|
|
CHECK(half.find("the landing was refused") == std::string::npos);
|
|
|
|
BakeKeyOutcome bankRefused;
|
|
bankRefused.verdict = BakeScanVerdict::Land;
|
|
bankRefused.landing = BakeLanding::Refused;
|
|
bankRefused.proof = BakeWriteProof::Confirmed;
|
|
bankRefused.detail = "the bank refused the new capture";
|
|
const std::string refusedLine = describeBakeKey(key, bankRefused);
|
|
CHECK(refusedLine.find("the landing was refused") != std::string::npos);
|
|
// The refusal's REASON is what the keyed line used to lack entirely.
|
|
CHECK(refusedLine.find("(the bank refused the new capture)") != std::string::npos);
|
|
|
|
BakeKeyOutcome wrongTab;
|
|
wrongTab.verdict = BakeScanVerdict::RefuseWrongProject;
|
|
wrongTab.proof = BakeWriteProof::Confirmed;
|
|
wrongTab.detail =
|
|
"this bake's project tab is not the one the extension has loaded -- focus that "
|
|
"tab and try again";
|
|
const std::string refused = describeBakeKey(key, wrongTab);
|
|
CHECK(refused.find("not the one the extension has loaded") != std::string::npos);
|
|
CHECK(refused.find("focus that tab and try again") != std::string::npos);
|
|
CHECK(refused.find("The answer was written back") != std::string::npos);
|
|
|
|
// A clear is a write too: it may be claimed only where it was read back.
|
|
BakeKeyOutcome cleared;
|
|
cleared.verdict = BakeScanVerdict::ClearStale;
|
|
cleared.proof = BakeWriteProof::Confirmed;
|
|
CHECK(describeBakeKey(key, cleared).find("cleared unanswered") != std::string::npos);
|
|
BakeKeyOutcome clearLost = cleared;
|
|
clearLost.proof = BakeWriteProof::Rejected;
|
|
const std::string stuck = describeBakeKey(key, clearLost);
|
|
CHECK(stuck.find("the clear did NOT take") != std::string::npos);
|
|
CHECK(stuck.find("next pass will see it again") != std::string::npos);
|
|
CHECK(stuck.find("it was cleared") == std::string::npos);
|
|
// Rejected also covers a clear that was never issued, so the line may not describe
|
|
// a read that did not happen.
|
|
CHECK(stuck.find("read back") == std::string::npos);
|
|
// And the clear's third state, same as an answer's: unchecked is not disproven.
|
|
BakeKeyOutcome clearUnchecked = cleared;
|
|
clearUnchecked.proof = BakeWriteProof::Unknown;
|
|
const std::string maybeCleared = describeBakeKey(key, clearUnchecked);
|
|
CHECK(maybeCleared.find("whether the clear took is unknown") != std::string::npos);
|
|
CHECK(maybeCleared.find("it was cleared unanswered") == std::string::npos);
|
|
CHECK(maybeCleared.find("could NOT be read back") == std::string::npos);
|
|
|
|
BakeKeyOutcome notRequest;
|
|
notRequest.verdict = BakeScanVerdict::IgnoreNotARequest;
|
|
CHECK(describeBakeKey(key, notRequest).find("other than a pending request") !=
|
|
std::string::npos);
|
|
|
|
// Absent and Overflow both yield IgnoreUnreadable, but they are different faults to
|
|
// go fix, so the line keeps them apart where the verdict cannot.
|
|
BakeKeyOutcome empty;
|
|
empty.verdict = BakeScanVerdict::IgnoreUnreadable;
|
|
BakeKeyOutcome huge = empty;
|
|
huge.oversized = true;
|
|
const std::string emptyLine = describeBakeKey(key, empty);
|
|
const std::string hugeLine = describeBakeKey(key, huge);
|
|
CHECK(emptyLine.find("read back empty") != std::string::npos);
|
|
CHECK(hugeLine.find("too large to read back whole") != std::string::npos);
|
|
CHECK(emptyLine != hugeLine);
|
|
|
|
// Every line names its own key, so two instances' lines are never confusable.
|
|
CHECK(describeBakeKey("rsbake_ffff0000", landed).find("rsbake_ffff0000") !=
|
|
std::string::npos);
|
|
CHECK(describeBakeKey("rsbake_ffff0000", landed) != ok);
|
|
|
|
// A LANDING this build has no word for must not be reported as a VERDICT gap: the
|
|
// two are different enums and send a reader to two different places.
|
|
BakeKeyOutcome futureLanding = landed;
|
|
futureLanding.landing = static_cast<BakeLanding>(99);
|
|
const std::string unnamed = describeBakeKey(key, futureLanding);
|
|
CHECK(unnamed.find("a landing state this build has no word for") !=
|
|
std::string::npos);
|
|
CHECK(unnamed.find("a verdict this build has no word for") == std::string::npos);
|
|
// A VERDICT gap still reports as one.
|
|
BakeKeyOutcome futureVerdict;
|
|
futureVerdict.verdict = static_cast<BakeScanVerdict>(99);
|
|
CHECK(describeBakeKey(key, futureVerdict).find(
|
|
"a verdict this build has no word for") != std::string::npos);
|
|
}
|
|
|
|
// --- The persist/upgrade state machine: the ONE route to Banked -----------------------
|
|
// The shell assigns every Land verdict's landing without knowing whether the pass's
|
|
// persist ran, then threads the flag through here. The bug this pins: a dedup hit used
|
|
// to be answered Banked directly, on the grounds that it changed nothing — false
|
|
// exactly when the entry it deduped against was one the SAME pass had just added and
|
|
// then failed to persist, which answers Ok for an entry the project does not carry.
|
|
{
|
|
// A dedup hit and a fresh add are INDISTINGUISHABLE here, by construction: the shell
|
|
// assigns Unpersisted to both, so both need the same observation to be promoted.
|
|
CHECK(bakeLandingAfterPersist(BakeLanding::Unpersisted, true) == BakeLanding::Banked);
|
|
CHECK(bakeLandingAfterPersist(BakeLanding::Unpersisted, false) ==
|
|
BakeLanding::Unpersisted);
|
|
|
|
// Exhaustive over both arguments: (Unpersisted, persisted) is the ONLY pair that
|
|
// produces Banked from anything else, and nothing else is altered at all — so a
|
|
// persist that ran cannot launder a refusal or a half-written landing into a
|
|
// success, and a persist that did not cannot demote one.
|
|
for (const BakeLanding from : {BakeLanding::Refused, BakeLanding::Partial,
|
|
BakeLanding::Unpersisted, BakeLanding::Banked}) {
|
|
for (const bool persisted : {false, true}) {
|
|
const BakeLanding to = bakeLandingAfterPersist(from, persisted);
|
|
const bool promotes = from == BakeLanding::Unpersisted && persisted;
|
|
CHECK(to == (promotes ? BakeLanding::Banked : from));
|
|
CHECK((to == BakeLanding::Banked) ==
|
|
(promotes || from == BakeLanding::Banked));
|
|
}
|
|
}
|
|
|
|
// A dedup hit driven end to end at both persist outcomes: what the instrument is
|
|
// told and what the console prints both follow the flag, and they never disagree.
|
|
for (const bool persisted : {true, false}) {
|
|
BakeKeyOutcome deduped;
|
|
deduped.verdict = BakeScanVerdict::Land;
|
|
deduped.landing = bakeLandingAfterPersist(BakeLanding::Unpersisted, persisted);
|
|
|
|
// A landing the pass could not persist is re-encoded as a FAILURE, not the Ok
|
|
// it was headed for, so no instance adopts an entry a reload may not find.
|
|
BakeOutcome answer;
|
|
answer.status = BakeStatus::Ok;
|
|
answer.sampleId = "bake-1";
|
|
answer.generation = 1893456000;
|
|
if (deduped.landing == BakeLanding::Unpersisted) {
|
|
answer.status = BakeStatus::Failed;
|
|
answer.message = kUnpersistedAnswer;
|
|
}
|
|
const auto back = decodeBakeOutcome(encodeBakeOutcome(answer));
|
|
CHECK(back.has_value());
|
|
CHECK(back.has_value() &&
|
|
back->status == (persisted ? BakeStatus::Ok : BakeStatus::Failed));
|
|
|
|
// The console line and the wire answer never disagree about the same key.
|
|
deduped.proof = BakeWriteProof::Confirmed;
|
|
const std::string line = describeBakeKey("rsbake_0123abcd", deduped);
|
|
CHECK((line.find("IN MEMORY ONLY") != std::string::npos) == !persisted);
|
|
}
|
|
}
|
|
|
|
// --- A rejected write is REACHABLE, and it is what the tally and the line come from ---
|
|
// Judging this by SetProjExtState's return made `writeFailed` unproducible on the
|
|
// landing path and its sentence dead code (extStateWriteLanded owns why). The verdict is
|
|
// the read-back, which a store that drops the write does produce. The store is modelled
|
|
// here; the three shells bind these same two calls to SetProjExtState and the
|
|
// grow-loop read.
|
|
{
|
|
struct FakeKeyStore {
|
|
std::map<std::string, std::string> values;
|
|
bool dropWrites = false;
|
|
|
|
void write(const std::string& k, const std::string& v) {
|
|
if (dropWrites) return; // REAPER rejected it
|
|
if (v.empty()) values.erase(k); // SetProjExtState("") deletes
|
|
else values[k] = v;
|
|
}
|
|
std::optional<std::string> read(const std::string& k) const {
|
|
const auto it = values.find(k);
|
|
return it == values.end() ? std::nullopt
|
|
: std::optional<std::string>(it->second);
|
|
}
|
|
};
|
|
|
|
const std::string key = "rsbake_0123abcd";
|
|
BakeRequest pending;
|
|
pending.instanceGuid = "0123abcd";
|
|
pending.generation = 1893456000;
|
|
BakeOutcome landedOk;
|
|
landedOk.status = BakeStatus::Ok;
|
|
landedOk.sampleId = "bake-1";
|
|
landedOk.message = "added as a distinct capture";
|
|
landedOk.generation = pending.generation;
|
|
const std::string answer = encodeBakeOutcome(landedOk);
|
|
|
|
// Rejected: the key still holds the request the instrument left there.
|
|
FakeKeyStore rejecting;
|
|
rejecting.values[key] = encodeBakeRequest(pending);
|
|
rejecting.dropWrites = true;
|
|
rejecting.write(key, answer);
|
|
CHECK(!extStateWriteLanded(answer, rejecting.read(key)));
|
|
// ...which is exactly what the ASKING end reads as a no-answer. The two classifiers
|
|
// agree about this one state, which is why the extension has to name it.
|
|
CHECK(classifyBakeAnswer(rejecting.read(key), pending).kind ==
|
|
BakeAnswerKind::Unanswered);
|
|
|
|
// The shell's write loop from that verdict through to both strings it prints.
|
|
BakeScanTally tally;
|
|
tally.tabsScanned = 1;
|
|
tally.keysFound = 1;
|
|
tally.activeTabKeys = 1;
|
|
tally.answered = 1;
|
|
BakeKeyOutcome report;
|
|
report.verdict = BakeScanVerdict::Land;
|
|
// The shell reaches Banked only through the upgrade — never by assignment.
|
|
report.landing = bakeLandingAfterPersist(BakeLanding::Unpersisted, true);
|
|
report.detail = landedOk.message;
|
|
report.proof = extStateWriteLanded(answer, rejecting.read(key))
|
|
? BakeWriteProof::Confirmed
|
|
: BakeWriteProof::Rejected;
|
|
if (report.proof == BakeWriteProof::Rejected) ++tally.writeFailed;
|
|
CHECK(tally.writeFailed == 1);
|
|
CHECK(describeBakeKey(key, report).find("could NOT be written back") !=
|
|
std::string::npos);
|
|
CHECK(describeBakeScan(tally).find("1 answer could not be written back") !=
|
|
std::string::npos);
|
|
|
|
// The same store ACCEPTING the write: the verdict flips, the tally stays at zero and
|
|
// the summary goes silent — so neither answer above is a constant.
|
|
FakeKeyStore accepting;
|
|
accepting.values[key] = encodeBakeRequest(pending);
|
|
accepting.write(key, answer);
|
|
CHECK(extStateWriteLanded(answer, accepting.read(key)));
|
|
CHECK(classifyBakeAnswer(accepting.read(key), pending).kind ==
|
|
BakeAnswerKind::Answered);
|
|
BakeScanTally clean = tally;
|
|
clean.writeFailed = 0;
|
|
CHECK(describeBakeScan(clean).empty());
|
|
|
|
// A CLEAR is proven the other way round: it lands as an ABSENT key, and a dropped
|
|
// clear leaves the stale request standing for the next pass to find.
|
|
FakeKeyStore clearing;
|
|
clearing.values[key] = encodeBakeRequest(pending);
|
|
clearing.write(key, "");
|
|
CHECK(extStateWriteLanded("", clearing.read(key)));
|
|
FakeKeyStore clearDropped;
|
|
clearDropped.values[key] = encodeBakeRequest(pending);
|
|
clearDropped.dropWrites = true;
|
|
clearDropped.write(key, "");
|
|
CHECK(!extStateWriteLanded("", clearDropped.read(key)));
|
|
|
|
// Byte equality is the claim the line makes: a truncated or foreign value under the
|
|
// key is not the answer we wrote, and an unreadable key proves nothing at all.
|
|
CHECK(!extStateWriteLanded(answer, std::optional<std::string>(
|
|
answer.substr(0, answer.size() - 1))));
|
|
CHECK(!extStateWriteLanded(answer, std::optional<std::string>(
|
|
encodeBakeRequest(pending))));
|
|
CHECK(!extStateWriteLanded(answer, std::nullopt));
|
|
CHECK(!extStateWriteLanded("", std::optional<std::string>("leftover")));
|
|
}
|
|
|
|
// --- The Unpersisted limb is REACHABLE, through the same predicate ------------------
|
|
// `persisted` used to be structurally true wherever a landing could observe it: the
|
|
// session reported it from SetProjExtState's unread return, and by the time a landing
|
|
// exists the only two conditions that return could reflect (no active project, an
|
|
// unsaved one) are already excluded by the Land verdict. So the Unpersisted limb, the
|
|
// wire answer for it and its console clause were all dead. The session now proves the
|
|
// `banks` key the same way the landing proves its own — modelled below at both
|
|
// outcomes, so neither branch is a constant.
|
|
{
|
|
const std::string banksJson = R"({"banks":[{"id":"pool","samples":[]}]})";
|
|
|
|
// The write REJECTED: the project still holds whatever it held before, which is a
|
|
// book without the entry this pass just landed in memory.
|
|
const std::optional<std::string> stale{R"({"banks":[]})"};
|
|
const bool persistedAfterDrop = extStateWriteLanded(banksJson, stale);
|
|
CHECK(!persistedAfterDrop);
|
|
|
|
BakeKeyOutcome entry;
|
|
entry.verdict = BakeScanVerdict::Land;
|
|
entry.landing =
|
|
bakeLandingAfterPersist(BakeLanding::Unpersisted, persistedAfterDrop);
|
|
entry.proof = BakeWriteProof::Confirmed; // the ANSWER wrote fine; the persist did not
|
|
CHECK(entry.landing == BakeLanding::Unpersisted);
|
|
const std::string line = describeBakeKey("rsbake_0123abcd", entry);
|
|
CHECK(line.find("IN MEMORY ONLY") != std::string::npos);
|
|
CHECK(line.find("The answer was written back") != std::string::npos);
|
|
|
|
// ...and that landing is answered as a FAILURE on the wire, so no instance adopts
|
|
// an entry a reload would not find.
|
|
BakeOutcome answered;
|
|
answered.status = BakeStatus::Failed;
|
|
answered.message = kUnpersistedAnswer;
|
|
answered.generation = 1893456000;
|
|
const auto back = decodeBakeOutcome(encodeBakeOutcome(answered));
|
|
CHECK(back.has_value() && back->status == BakeStatus::Failed);
|
|
CHECK(back.has_value() && back->message == kUnpersistedAnswer);
|
|
|
|
// The write ACCEPTED, same predicate, same inputs but for the read-back: the limb
|
|
// above is a real branch, not a constant.
|
|
const bool persistedAfterTake =
|
|
extStateWriteLanded(banksJson, std::optional<std::string>(banksJson));
|
|
CHECK(persistedAfterTake);
|
|
CHECK(bakeLandingAfterPersist(BakeLanding::Unpersisted, persistedAfterTake) ==
|
|
BakeLanding::Banked);
|
|
// An unreadable read-back must NOT be folded in as an absence-and-therefore-a-clear:
|
|
// the session routes Overflow to false before it ever reaches this predicate, and a
|
|
// non-empty write against an absent key is false here regardless.
|
|
CHECK(!extStateWriteLanded(banksJson, std::nullopt));
|
|
}
|
|
|
|
// --- Every outcome bake_land actually emits survives the key round trip -------------
|
|
// The landing writes these and the instrument reads them back; a field the encoder and
|
|
// the decoder disagreed about would strand exactly the bake that produced it.
|
|
{
|
|
BakeOutcome added;
|
|
added.status = BakeStatus::Ok;
|
|
added.sampleId = "bake-1893456000-a1b2c3d4-kick_1893456000.wav";
|
|
added.relativePath = "reasampler_bank/kick_1893456000-a1b2c3d4.wav";
|
|
added.displayName = "Kick 2";
|
|
added.rootNote = 36;
|
|
added.channelCount = 2;
|
|
added.replaced = false;
|
|
added.message = "added as a distinct capture";
|
|
added.generation = 1893456000;
|
|
|
|
BakeOutcome replaced = added;
|
|
replaced.replaced = true;
|
|
replaced.displayName = "Kick";
|
|
replaced.message = "replaced the bank entry";
|
|
|
|
BakeOutcome deduped = added;
|
|
deduped.message = "identical to an existing capture -- pointed at it";
|
|
|
|
BakeOutcome noProject;
|
|
noProject.status = BakeStatus::NoProject;
|
|
noProject.message = "no saved project, so the bank has no location";
|
|
noProject.generation = added.generation;
|
|
|
|
BakeOutcome stagedMissing = noProject;
|
|
stagedMissing.status = BakeStatus::StagedMissing;
|
|
stagedMissing.message = "the staged render is not a usable WAV";
|
|
|
|
BakeOutcome noSource = noProject;
|
|
noSource.status = BakeStatus::NoSource;
|
|
noSource.message = "the resampled capture is not in any bank";
|
|
|
|
BakeOutcome indexRejected = noProject;
|
|
indexRejected.status = BakeStatus::IndexRejected;
|
|
indexRejected.message = "the bank refused the new capture";
|
|
|
|
BakeOutcome wrongProject = noProject;
|
|
wrongProject.status = BakeStatus::WrongProject;
|
|
wrongProject.message =
|
|
"this bake's project tab is not the one the extension has "
|
|
"loaded -- focus that tab and try again";
|
|
|
|
BakeOutcome writeFailed = noProject;
|
|
writeFailed.status = BakeStatus::Failed;
|
|
writeFailed.message = "could not write the bake into the bank folder";
|
|
|
|
// A landing the project would not persist is answered as a FAILURE, not as the Ok
|
|
// it was on its way to being: the entry exists in memory only, so an instance that
|
|
// adopted it would be pointing at something no reload will have.
|
|
BakeOutcome unpersisted = noProject;
|
|
unpersisted.status = BakeStatus::Failed;
|
|
unpersisted.message = kUnpersistedAnswer;
|
|
|
|
BakeOutcome partial = noProject;
|
|
partial.status = BakeStatus::Failed;
|
|
partial.message = "the landing failed while writing: bad allocation";
|
|
|
|
for (const BakeOutcome& emitted :
|
|
{added, replaced, deduped, noProject, stagedMissing, noSource, indexRejected,
|
|
wrongProject, writeFailed, unpersisted, partial}) {
|
|
const auto back = decodeBakeOutcome(encodeBakeOutcome(emitted));
|
|
CHECK(back.has_value());
|
|
CHECK(back.has_value() && *back == emitted);
|
|
// Field for field as well: operator== is hand-written, so a field missing from
|
|
// BOTH the codec and the comparison would pass the aggregate check above.
|
|
CHECK(back.has_value() && back->status == emitted.status &&
|
|
back->sampleId == emitted.sampleId &&
|
|
back->relativePath == emitted.relativePath &&
|
|
back->displayName == emitted.displayName &&
|
|
back->rootNote == emitted.rootNote &&
|
|
back->channelCount == emitted.channelCount &&
|
|
back->replaced == emitted.replaced &&
|
|
back->message == emitted.message &&
|
|
back->generation == emitted.generation);
|
|
}
|
|
}
|
|
|
|
if (g_fail == 0) std::printf("bake_wire: all tests passed\n");
|
|
return g_fail ? 1 : 0;
|
|
}
|