Index: media/base/audio_buffer.cc |
diff --git a/media/base/audio_buffer.cc b/media/base/audio_buffer.cc |
index 33d4ecbb1abbd4b3bdc709bdd3a817f530d872a9..993e2a082a70eaf11f50ad8a7e987f087e024660 100644 |
--- a/media/base/audio_buffer.cc |
+++ b/media/base/audio_buffer.cc |
@@ -243,6 +243,89 @@ void AudioBuffer::ReadFrames(int frames_to_copy, |
source_data, dest_frame_offset, frames_to_copy, bytes_per_channel); |
} |
+static inline int32 ConvertS16ToS32(int16 value) { |
+ return static_cast<int32>(value) << 16; |
+} |
+ |
+static inline int32 ConvertF32ToS32(float value) { |
+ return static_cast<int32>(value < 0 |
+ ? (-value) * std::numeric_limits<int32>::min() |
+ : value * std::numeric_limits<int32>::max()); |
+} |
+ |
+template <class Target, typename Converter> |
+void InterleaveToS32(const std::vector<uint8*>& channel_data, |
+ size_t frames_to_copy, |
+ int trim_start, |
+ int32* dest_data, |
+ Converter convert_func) { |
+ for (size_t ch = 0; ch < channel_data.size(); ++ch) { |
+ const Target* source_data = |
+ reinterpret_cast<const Target*>(channel_data[ch]) + trim_start; |
+ for (size_t i = 0, offset = ch; i < frames_to_copy; |
+ ++i, offset += channel_data.size()) |
DaleCurtis
2014/09/29 23:01:32
{} since the for() spans multiple lines.
pwestin(chromium)
2014/09/30 00:15:17
Done.
|
+ dest_data[offset] = convert_func(source_data[i]); |
+ } |
+} |
+ |
+void AudioBuffer::ReadFramesInterleavedS32(int frames_to_copy, |
+ int32* dest_data) { |
+ DCHECK_LE(frames_to_copy, adjusted_frame_count_); |
+ |
+ switch (sample_format_) { |
+ case kSampleFormatU8: |
+ NOTIMPLEMENTED(); |
+ break; |
+ case kSampleFormatS16: |
+ // Format is interleaved signed16. Convert each value into int32 and |
+ // insert into output channel data. |
+ InterleaveToS32<int16>(channel_data_, |
+ frames_to_copy * channel_count_, |
+ trim_start_, |
+ dest_data, |
+ ConvertS16ToS32); |
+ break; |
+ case kSampleFormatS32: { |
+ // Format is interleaved signed32; just copy the data. |
+ const int32* source_data = |
+ reinterpret_cast<const int32*>(channel_data_[0]) + trim_start_; |
+ memcpy(dest_data, |
+ source_data, |
+ frames_to_copy * channel_count_ * sizeof(int32)); |
+ } break; |
+ case kSampleFormatF32: |
+ // Format is interleaved float. Convert each value into int32 and insert |
+ // into output channel data. |
+ InterleaveToS32<float>(channel_data_, |
+ frames_to_copy * channel_count_, |
+ trim_start_, |
+ dest_data, |
+ ConvertF32ToS32); |
+ break; |
+ case kSampleFormatPlanarS16: |
+ // Format is planar signed 16 bit. Convert each value into int32 and |
+ // insert into output channel data. |
+ InterleaveToS32<int16>(channel_data_, |
+ frames_to_copy, |
+ trim_start_, |
+ dest_data, |
+ ConvertS16ToS32); |
+ break; |
+ case kSampleFormatPlanarF32: |
+ // Format is planar float. Convert each value into int32 and insert into |
+ // output channel data. |
+ InterleaveToS32<float>(channel_data_, |
+ frames_to_copy, |
+ trim_start_, |
+ dest_data, |
+ ConvertF32ToS32); |
+ break; |
+ case kUnknownSampleFormat: |
+ NOTREACHED(); |
+ break; |
+ } |
+} |
+ |
void AudioBuffer::TrimStart(int frames_to_trim) { |
CHECK_GE(frames_to_trim, 0); |
CHECK_LE(frames_to_trim, adjusted_frame_count_); |