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Both emit float seconds, converted from the runtime's sample-index spans, and both take a counted reference to the loaded model through snapshot() and hold it for the whole call: a Free arriving mid-request drops only the global's reference, so whichever request finishes last destroys the model instead of one of them running on freed weights. An AddressSanitizer build reproduces exactly that heap-use-after-free inside ggml_vec_dot_f32 when the handler keeps a raw pointer instead, which is why the shape is what it is. The inference lane is taken before session_for, not after. session_for reads and writes an unsynchronised session cache and the offline run calls prepare(), which mutates the session, so both belong inside the lane. Diarize routes before it reads the input file, so a family that cannot diarize at all says so rather than complaining about the audio first. Its per-segment text stays empty because audio.cpp's SpeakerTurn carries a span and a speaker label only, and nested or overlapping turns are passed through untouched: a sortformer turn inside another speaker's turn is correct output for overlapped speech, and LocalAI is overlap-tolerant downstream. Duration counts frames rather than floats, so a stereo input does not report twice its length. Verified end to end against upstream's bundled silero_vad, which needs no download, using the bundled 16 kHz speech asset: a synthetic tone returns nothing, correctly, because silero detects speech and a sine is not speech. Assisted-by: Claude:claude-opus-5 [Claude Code] Signed-off-by: Ettore Di Giacinto <mudler@localai.io>
442 lines
19 KiB
C++
442 lines
19 KiB
C++
#include "loaded_model.h"
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#include "family_gate.h"
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#include "engine/framework/assets/tensor_source.h"
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#include <filesystem>
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#include <utility>
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#if defined(__APPLE__)
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#include <mach-o/dyld.h>
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#include <cstdint>
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#include <vector>
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#elif defined(__linux__)
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#include <unistd.h>
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#endif
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namespace audiocpp_backend {
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// --------------------------------------------------------------------------
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// Enum coupling
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//
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// audiocpp_backend::Task mirrors engine::runtime::VoiceTaskKind positionally so
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// capability_routing can stay stdlib-only and testable without an audio.cpp
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// checkout. Nothing about that mirroring is enforced by the type system, and a
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// drift is silent in the worst possible way: every unit still compiles, every
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// test still passes, and the backend runs a different task than the one the
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// caller asked for.
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//
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// Two mechanisms pin it, and both are needed because they catch different edits:
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//
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// 1. The assertions below pin every enumerator's value on both sides. An
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// insertion or a reorder anywhere before the last member shifts the values
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// after it and fails the build here.
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// 2. An enumerator APPENDED after the last one shifts nothing, so no value
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// assertion can see it. What sees it is the switch in from_engine_task,
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// which covers the engine enum with no `default:` label. CMakeLists.txt
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// compiles this file with -Werror=switch so that omission is an error
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// rather than a warning nobody reads.
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//
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// Neither mechanism catches a pure RENAME of an upstream enumerator, but that
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// does not need catching: the switch stops naming an enumerator that exists and
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// the build fails on its own.
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// --------------------------------------------------------------------------
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namespace {
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constexpr int kEngine(engine::runtime::VoiceTaskKind kind) {
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return static_cast<int>(kind);
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}
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constexpr int kMirror(Task task) { return static_cast<int>(task); }
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} // namespace
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static_assert(kEngine(engine::runtime::VoiceTaskKind::Vad) == 0, "VoiceTaskKind drifted");
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static_assert(kEngine(engine::runtime::VoiceTaskKind::Asr) == 1, "VoiceTaskKind drifted");
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static_assert(kEngine(engine::runtime::VoiceTaskKind::Diarization) == 2, "VoiceTaskKind drifted");
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static_assert(kEngine(engine::runtime::VoiceTaskKind::SourceSeparation) == 3, "VoiceTaskKind drifted");
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static_assert(kEngine(engine::runtime::VoiceTaskKind::AudioGeneration) == 4, "VoiceTaskKind drifted");
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static_assert(kEngine(engine::runtime::VoiceTaskKind::Tts) == 5, "VoiceTaskKind drifted");
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static_assert(kEngine(engine::runtime::VoiceTaskKind::VoiceCloning) == 6, "VoiceTaskKind drifted");
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static_assert(kEngine(engine::runtime::VoiceTaskKind::VoiceConversion) == 7, "VoiceTaskKind drifted");
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static_assert(kEngine(engine::runtime::VoiceTaskKind::SpeechToSpeech) == 8, "VoiceTaskKind drifted");
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static_assert(kEngine(engine::runtime::VoiceTaskKind::Alignment) == 9, "VoiceTaskKind drifted");
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static_assert(kEngine(engine::runtime::VoiceTaskKind::VoiceDesign) == 10, "VoiceTaskKind drifted");
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static_assert(kEngine(engine::runtime::VoiceTaskKind::SpeakerRecognition) == 11, "VoiceTaskKind drifted");
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// The last member. Pinning it pins the member count too, as long as the
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// enumerators stay contiguous and unassigned, which upstream's declaration is.
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static_assert(kEngine(engine::runtime::VoiceTaskKind::Svc) == 12,
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"engine::runtime::VoiceTaskKind gained, lost or reordered a member. "
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"audiocpp_backend::Task mirrors it positionally: update capability_routing.h, "
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"to_engine_task and from_engine_task together, then move this pin.");
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static_assert(kMirror(Task::Vad) == 0, "Task drifted from VoiceTaskKind");
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static_assert(kMirror(Task::Asr) == 1, "Task drifted from VoiceTaskKind");
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static_assert(kMirror(Task::Diarization) == 2, "Task drifted from VoiceTaskKind");
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static_assert(kMirror(Task::SourceSeparation) == 3, "Task drifted from VoiceTaskKind");
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static_assert(kMirror(Task::AudioGeneration) == 4, "Task drifted from VoiceTaskKind");
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static_assert(kMirror(Task::Tts) == 5, "Task drifted from VoiceTaskKind");
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static_assert(kMirror(Task::VoiceCloning) == 6, "Task drifted from VoiceTaskKind");
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static_assert(kMirror(Task::VoiceConversion) == 7, "Task drifted from VoiceTaskKind");
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static_assert(kMirror(Task::SpeechToSpeech) == 8, "Task drifted from VoiceTaskKind");
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static_assert(kMirror(Task::Alignment) == 9, "Task drifted from VoiceTaskKind");
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static_assert(kMirror(Task::VoiceDesign) == 10, "Task drifted from VoiceTaskKind");
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static_assert(kMirror(Task::SpeakerRecognition) == 11, "Task drifted from VoiceTaskKind");
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static_assert(kMirror(Task::Svc) == 12, "Task drifted from VoiceTaskKind");
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static_assert(static_cast<int>(engine::runtime::RunMode::Offline) == 0, "RunMode drifted");
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static_assert(static_cast<int>(engine::runtime::RunMode::Streaming) == 1,
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"engine::runtime::RunMode gained, lost or reordered a member. "
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"audiocpp_backend::Mode mirrors it positionally.");
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static_assert(static_cast<int>(Mode::Offline) == 0, "Mode drifted from RunMode");
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static_assert(static_cast<int>(Mode::Streaming) == 1, "Mode drifted from RunMode");
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namespace {
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engine::core::BackendType parse_backend_type(const std::string &value) {
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if (value == "cuda") {
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return engine::core::BackendType::Cuda;
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}
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if (value == "vulkan") {
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return engine::core::BackendType::Vulkan;
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}
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if (value == "metal") {
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return engine::core::BackendType::Metal;
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}
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if (value == "best") {
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return engine::core::BackendType::BestAvailable;
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}
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if (value == "cpu" || value.empty()) {
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return engine::core::BackendType::Cpu;
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}
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throw ConfigError("audio-cpp: unknown backend option '" + value +
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"'. Known backends: cpu, cuda, vulkan, metal, best");
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}
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std::filesystem::path executable_directory() {
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#if defined(__APPLE__)
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std::uint32_t size = 0;
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_NSGetExecutablePath(nullptr, &size);
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std::vector<char> buffer(size + 1, '\0');
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if (_NSGetExecutablePath(buffer.data(), &size) != 0) {
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return std::filesystem::current_path();
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}
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return std::filesystem::path(buffer.data()).parent_path();
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#elif defined(__linux__)
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std::error_code ec;
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const auto self = std::filesystem::read_symlink("/proc/self/exe", ec);
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if (ec) {
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return std::filesystem::current_path();
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}
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return self.parent_path();
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#else
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return std::filesystem::current_path();
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#endif
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}
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// Runs the load gate. Throws ConfigError rather than returning a decision,
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// because the only caller is a delegating constructor whose member initializer
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// list has nowhere to put a failure.
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std::string require_family(const std::string &resolved_path,
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const ModelOptions &options) {
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const std::filesystem::path path(resolved_path);
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std::error_code ec;
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if (!std::filesystem::exists(path, ec)) {
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throw ConfigError("audio-cpp: model path does not exist: " + resolved_path);
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}
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const bool is_gguf = path_looks_like_gguf(resolved_path);
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// Only a GGUF is asked for embedded metadata. A directory has no single
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// file to read it from, and probing one would make the gate's refusal
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// depend on which file happened to be inside.
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const std::string embedded =
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is_gguf ? read_gguf_family(resolved_path) : std::string();
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const FamilyDecision decision =
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decide_family(is_gguf, embedded, options.family);
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if (!decision.ok) {
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throw ConfigError(decision.error);
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}
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return decision.family;
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}
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} // namespace
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engine::runtime::VoiceTaskKind to_engine_task(Task task) {
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using K = engine::runtime::VoiceTaskKind;
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// An explicit switch, never a cast: a cast would keep compiling through
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// exactly the drift the assertions above exist to catch.
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switch (task) {
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case Task::Vad: return K::Vad;
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case Task::Asr: return K::Asr;
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case Task::Diarization: return K::Diarization;
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case Task::SourceSeparation: return K::SourceSeparation;
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case Task::AudioGeneration: return K::AudioGeneration;
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case Task::Tts: return K::Tts;
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case Task::VoiceCloning: return K::VoiceCloning;
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case Task::VoiceConversion: return K::VoiceConversion;
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case Task::SpeechToSpeech: return K::SpeechToSpeech;
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case Task::Alignment: return K::Alignment;
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case Task::VoiceDesign: return K::VoiceDesign;
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case Task::SpeakerRecognition: return K::SpeakerRecognition;
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case Task::Svc: return K::Svc;
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}
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// Unreachable for any valid enumerator. No `default:` label, so -Wswitch
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// still reports a member this switch stops covering.
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return K::Vad;
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}
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Task from_engine_task(engine::runtime::VoiceTaskKind kind) {
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using K = engine::runtime::VoiceTaskKind;
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switch (kind) {
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case K::Vad: return Task::Vad;
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case K::Asr: return Task::Asr;
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case K::Diarization: return Task::Diarization;
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case K::SourceSeparation: return Task::SourceSeparation;
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case K::AudioGeneration: return Task::AudioGeneration;
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case K::Tts: return Task::Tts;
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case K::VoiceCloning: return Task::VoiceCloning;
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case K::VoiceConversion: return Task::VoiceConversion;
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case K::SpeechToSpeech: return Task::SpeechToSpeech;
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case K::Alignment: return Task::Alignment;
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case K::VoiceDesign: return Task::VoiceDesign;
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case K::SpeakerRecognition: return Task::SpeakerRecognition;
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case K::Svc: return Task::Svc;
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}
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return Task::Vad;
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}
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engine::runtime::RunMode to_engine_mode(Mode mode) {
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using M = engine::runtime::RunMode;
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switch (mode) {
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case Mode::Offline: return M::Offline;
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case Mode::Streaming: return M::Streaming;
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}
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return M::Offline;
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}
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Mode from_engine_mode(engine::runtime::RunMode mode) {
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using M = engine::runtime::RunMode;
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switch (mode) {
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case M::Offline: return Mode::Offline;
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case M::Streaming: return Mode::Streaming;
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}
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return Mode::Offline;
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}
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Capabilities to_capabilities(const std::string &family,
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const engine::runtime::CapabilitySet &set) {
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Capabilities caps;
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caps.family = family;
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caps.tasks.reserve(set.supported_tasks.size());
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for (const auto &supported : set.supported_tasks) {
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TaskCapability capability;
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capability.task = from_engine_task(supported.task);
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capability.modes.reserve(supported.modes.size());
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for (const auto mode : supported.modes) {
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capability.modes.push_back(from_engine_mode(mode));
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}
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caps.tasks.push_back(std::move(capability));
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}
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return caps;
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}
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std::string read_gguf_family(const std::string &path) {
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try {
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const auto spec =
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engine::assets::read_gguf_embedded_model_spec(std::filesystem::path(path));
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if (spec.has_value()) {
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return spec->family;
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}
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} catch (...) {
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// A file that is not a readable GGUF simply has no family. The load
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// gate turns that into a clear refusal; a throw here would surface as
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// an opaque internal error during backend probing.
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}
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return {};
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}
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std::string resolve_model_path(const std::string &model_path_dir,
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const std::string &model_file,
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const std::string &model_name) {
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const std::string candidate = !model_file.empty() ? model_file : model_name;
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const std::string bundled_prefix = "bundled:";
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if (candidate.rfind(bundled_prefix, 0) == 0) {
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const std::string name = candidate.substr(bundled_prefix.size());
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return (executable_directory() / "assets" / name).string();
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}
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std::filesystem::path path(candidate);
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if (path.is_absolute() || model_path_dir.empty()) {
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return path.string();
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}
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return (std::filesystem::path(model_path_dir) / path).string();
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}
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LoadedModel::LoadedModel(const std::string &resolved_path,
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const ModelOptions &options)
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: LoadedModel(resolved_path, options, require_family(resolved_path, options)) {}
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LoadedModel::LoadedModel(const std::string &resolved_path,
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const ModelOptions &options, std::string family)
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: lane_(family), registry_(engine::runtime::make_default_registry()) {
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if (!registry_.supports_family(family)) {
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throw ConfigError("audio-cpp: unknown audio.cpp family '" + family + "'");
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}
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// Session options are built BEFORE the load, because parse_backend_type
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// rejects an unknown backend name. Validating after the load would make
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// `backend:cudaa` cost a full model load, on a fault a string comparison
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// could have caught.
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session_options_.backend.type = parse_backend_type(options.backend);
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session_options_.backend.device = options.device;
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if (options.threads > 0) {
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session_options_.backend.threads = options.threads;
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}
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for (const auto &entry : options.session_options) {
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session_options_.options[entry.first] = entry.second;
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}
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pinned_task_ = options.task;
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wait_budget_ceiling_ms_ = options.busy_timeout_ms;
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engine::runtime::ModelLoadRequest request;
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request.model_path = std::filesystem::path(resolved_path);
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request.family_hint = family;
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if (!options.model_spec_override.empty()) {
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request.model_spec_override =
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std::filesystem::path(options.model_spec_override);
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}
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for (const auto &entry : options.load_options) {
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request.options[entry.first] = entry.second;
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}
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try {
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model_ = registry_.load(request);
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} catch (const std::exception &err) {
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throw ConfigError("audio-cpp: failed to load family '" + family +
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"' from " + resolved_path + ": " + err.what());
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}
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if (model_ == nullptr) {
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throw ConfigError("audio-cpp: the registry returned no model for " +
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resolved_path);
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}
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const auto &metadata = model_->metadata();
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const auto &engine_caps = model_->capabilities();
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variant_ = metadata.variant;
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description_ = metadata.description;
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languages_ = engine_caps.languages;
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supports_timestamps_ = engine_caps.supports_timestamps;
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capabilities_ = to_capabilities(family, engine_caps);
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}
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LoadedModel::Session LoadedModel::session_for(Rpc rpc, const RequestShape &shape) {
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const Route route = resolve_route(rpc, shape, capabilities_);
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if (!route.ok) {
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throw CapabilityError(route.error);
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}
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const SessionKey key{static_cast<int>(route.task), static_cast<int>(route.mode)};
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auto found = sessions_.find(key);
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const bool cache_hit = found != sessions_.end();
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if (!cache_hit) {
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engine::runtime::TaskSpec spec;
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spec.task = to_engine_task(route.task);
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spec.mode = to_engine_mode(route.mode);
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std::unique_ptr<engine::runtime::IVoiceTaskSession> created;
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try {
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created = model_->create_task_session(spec, session_options_);
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} catch (const std::exception &err) {
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// NOT a CapabilityError. The family said it supports this pair, and
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// a throw from here is overwhelmingly an environment fault: a ggml
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// backend .so that package.sh did not ship, an out of memory, a CUDA
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// device that is not there. UNIMPLEMENTED would tell LocalAI and
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// every client "this model cannot do this, never retry", and send an
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// operator hunting a capability bug instead of a packaging one. A
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// plain runtime_error maps to INTERNAL, which is what a fixable
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// deployment fault should look like.
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throw std::runtime_error(
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std::string("audio-cpp: family '") + capabilities_.family +
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"' advertises " + task_name(route.task) + "/" +
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mode_name(route.mode) + " but refused to create the session: " +
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err.what());
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}
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if (created == nullptr) {
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// A null return with no throw is the family declining, which is a
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// genuine capability answer and stays UNIMPLEMENTED.
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throw CapabilityError(std::string("audio-cpp: family '") +
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capabilities_.family +
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"' returned no session for " +
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task_name(route.task) + "/" +
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mode_name(route.mode));
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}
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found = sessions_.emplace(key, std::move(created)).first;
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}
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Session session;
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session.task = route.task;
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session.mode = route.mode;
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engine::runtime::IVoiceTaskSession *raw = found->second.get();
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if (route.mode == Mode::Streaming) {
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session.streaming =
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dynamic_cast<engine::runtime::IStreamingVoiceTaskSession *>(raw);
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if (session.streaming == nullptr) {
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throw CapabilityError(std::string("audio-cpp: family '") +
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capabilities_.family +
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"' advertises " + task_name(route.task) +
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"/streaming but its session is not streaming");
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}
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// Deliberately NOT reset here, though a cached streaming session does
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// carry state across chunks. reset() is not callable at this point:
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// silero_vad's implementation throws "session prepare() must be called
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// before Silero VAD reset()", so resetting on a cache hit would turn an
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// ordinary second fetch into a hard error, which is worse than the leak
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// it would prevent.
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//
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// The state is instead cleared by the sequence every streaming caller
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// owes anyway. IStreamingVoiceTaskSession::start_stream's base
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// implementation IS a call to reset(), so a caller that runs
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// prepare(...) then start_stream(...) at the top of each stream gets a
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// clean session for free. See the STATE CONTRACT in loaded_model.h.
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} else {
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session.offline =
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dynamic_cast<engine::runtime::IOfflineVoiceTaskSession *>(raw);
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if (session.offline == nullptr) {
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throw CapabilityError(std::string("audio-cpp: family '") +
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capabilities_.family +
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"' advertises " + task_name(route.task) +
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"/offline but its session is not offline");
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}
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}
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return session;
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}
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LaneEntry LoadedModel::acquire(int requested_timeout_ms) {
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// Constructed straight into the return value. C++17 requires that, which is
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// what lets an immovable type be returned at all; a named local here would
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// not compile.
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return LaneEntry(lane_,
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resolve_wait_budget_ms(wait_budget_ceiling_ms_,
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requested_timeout_ms));
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}
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engine::runtime::TaskResult run_offline(const LoadedModel::Session &session,
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const engine::runtime::TaskRequest &request) {
|
|
if (session.offline == nullptr) {
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throw CapabilityError("audio-cpp: no offline session for this request");
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}
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|
session.offline->prepare(engine::runtime::build_preparation_request(request));
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|
return session.offline->run(request);
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|
}
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|
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std::unique_ptr<LaneEntry> LoadedModel::acquire_owned(int requested_timeout_ms) {
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return std::make_unique<LaneEntry>(
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|
lane_,
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|
resolve_wait_budget_ms(wait_budget_ceiling_ms_, requested_timeout_ms));
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}
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|
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} // namespace audiocpp_backend
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