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author | Lioncash <mathew1800@gmail.com> | 2019-01-29 23:33:25 +0100 |
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committer | Lioncash <mathew1800@gmail.com> | 2019-01-30 04:53:35 +0100 |
commit | eb1a3c1f4a33eac87ac0fd3aa75f4f4e28a799ca (patch) | |
tree | 29dff63289f7eba9937d3db32b2b65bbe5ebed6c /src | |
parent | hwopus: Fill in the rest of the unknown service function names (diff) | |
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Diffstat (limited to 'src')
-rw-r--r-- | src/core/hle/service/audio/hwopus.cpp | 24 |
1 files changed, 16 insertions, 8 deletions
diff --git a/src/core/hle/service/audio/hwopus.cpp b/src/core/hle/service/audio/hwopus.cpp index abe21b992..67aa9f6ad 100644 --- a/src/core/hle/service/audio/hwopus.cpp +++ b/src/core/hle/service/audio/hwopus.cpp @@ -95,12 +95,13 @@ private: std::vector<opus_int16>& output, std::optional<std::reference_wrapper<u64>> performance_time = std::nullopt) { const auto start_time = std::chrono::high_resolution_clock::now(); - std::size_t raw_output_sz = output.size() * sizeof(opus_int16); + const std::size_t raw_output_sz = output.size() * sizeof(opus_int16); if (sizeof(OpusHeader) > input.size()) { LOG_ERROR(Audio, "Input is smaller than the header size, header_sz={}, input_sz={}", sizeof(OpusHeader), input.size()); return false; } + OpusHeader hdr{}; std::memcpy(&hdr, input.data(), sizeof(OpusHeader)); if (sizeof(OpusHeader) + static_cast<u32>(hdr.sz) > input.size()) { @@ -108,8 +109,9 @@ private: sizeof(OpusHeader) + static_cast<u32>(hdr.sz), input.size()); return false; } - auto frame = input.data() + sizeof(OpusHeader); - auto decoded_sample_count = opus_packet_get_nb_samples( + + const auto frame = input.data() + sizeof(OpusHeader); + const auto decoded_sample_count = opus_packet_get_nb_samples( frame, static_cast<opus_int32>(input.size() - sizeof(OpusHeader)), static_cast<opus_int32>(sample_rate)); if (decoded_sample_count * channel_count * sizeof(u16) > raw_output_sz) { @@ -119,8 +121,9 @@ private: decoded_sample_count * channel_count * sizeof(u16), raw_output_sz); return false; } + const int frame_size = (static_cast<int>(raw_output_sz / sizeof(s16) / channel_count)); - auto out_sample_count = + const auto out_sample_count = opus_decode(decoder.get(), frame, hdr.sz, output.data(), frame_size, 0); if (out_sample_count < 0) { LOG_ERROR(Audio, @@ -129,6 +132,7 @@ private: out_sample_count, frame_size, static_cast<u32>(hdr.sz)); return false; } + const auto end_time = std::chrono::high_resolution_clock::now() - start_time; sample_count = out_sample_count; consumed = static_cast<u32>(sizeof(OpusHeader) + hdr.sz); @@ -136,6 +140,7 @@ private: performance_time->get() = std::chrono::duration_cast<std::chrono::milliseconds>(end_time).count(); } + return true; } @@ -159,6 +164,7 @@ void HwOpus::GetWorkBufferSize(Kernel::HLERequestContext& ctx) { IPC::RequestParser rp{ctx}; const auto sample_rate = rp.Pop<u32>(); const auto channel_count = rp.Pop<u32>(); + LOG_DEBUG(Audio, "called with sample_rate={}, channel_count={}", sample_rate, channel_count); ASSERT_MSG(sample_rate == 48000 || sample_rate == 24000 || sample_rate == 16000 || @@ -176,9 +182,10 @@ void HwOpus::GetWorkBufferSize(Kernel::HLERequestContext& ctx) { void HwOpus::OpenOpusDecoder(Kernel::HLERequestContext& ctx) { IPC::RequestParser rp{ctx}; - auto sample_rate = rp.Pop<u32>(); - auto channel_count = rp.Pop<u32>(); - auto buffer_sz = rp.Pop<u32>(); + const auto sample_rate = rp.Pop<u32>(); + const auto channel_count = rp.Pop<u32>(); + const auto buffer_sz = rp.Pop<u32>(); + LOG_DEBUG(Audio, "called sample_rate={}, channel_count={}, buffer_size={}", sample_rate, channel_count, buffer_sz); @@ -187,8 +194,9 @@ void HwOpus::OpenOpusDecoder(Kernel::HLERequestContext& ctx) { "Invalid sample rate"); ASSERT_MSG(channel_count == 1 || channel_count == 2, "Invalid channel count"); - std::size_t worker_sz = WorkerBufferSize(channel_count); + const std::size_t worker_sz = WorkerBufferSize(channel_count); ASSERT_MSG(buffer_sz >= worker_sz, "Worker buffer too large"); + std::unique_ptr<OpusDecoder, OpusDeleter> decoder{ static_cast<OpusDecoder*>(operator new(worker_sz))}; if (const int err = opus_decoder_init(decoder.get(), sample_rate, channel_count)) { |