mirror of https://github.com/mgba-emu/mgba.git
GBAAudioResampleNN returns how many (destination) samples were read
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@ -420,13 +420,14 @@ unsigned GBAAudioCopy(struct GBAAudio* audio, void* left, void* right, unsigned
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return read;
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}
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void GBAAudioResampleNN(struct GBAAudio* audio, float ratio, float* drift, struct GBAStereoSample* output, unsigned nSamples) {
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unsigned GBAAudioResampleNN(struct GBAAudio* audio, float ratio, float* drift, struct GBAStereoSample* output, unsigned nSamples) {
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int32_t left[GBA_AUDIO_SAMPLES];
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int32_t right[GBA_AUDIO_SAMPLES];
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// toRead is in GBA samples
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// TODO: Do this with fixed-point math
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unsigned toRead = ceilf(nSamples / ratio);
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unsigned totalRead = 0;
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while (nSamples) {
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unsigned currentRead = GBA_AUDIO_SAMPLES;
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if (currentRead > toRead) {
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@ -441,18 +442,20 @@ void GBAAudioResampleNN(struct GBAAudio* audio, float ratio, float* drift, struc
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output->left = left[i];
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output->right = right[i];
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++output;
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++totalRead;
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--nSamples;
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*drift -= 1.f;
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if (!nSamples) {
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return;
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return totalRead;
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}
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}
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}
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if (read < currentRead) {
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memset(output, 0, nSamples * sizeof(struct GBAStereoSample));
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return;
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break;
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}
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}
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return totalRead;
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}
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static int32_t _updateSquareChannel(struct GBAAudioSquareControl* control, int duty) {
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@ -234,7 +234,7 @@ void GBAAudioWriteFIFO(struct GBAAudio* audio, int address, uint32_t value);
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void GBAAudioSampleFIFO(struct GBAAudio* audio, int fifoId, int32_t cycles);
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unsigned GBAAudioCopy(struct GBAAudio* audio, void* left, void* right, unsigned nSamples);
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void GBAAudioResampleNN(struct GBAAudio*, float ratio, float* drift, struct GBAStereoSample* output, unsigned nSamples);
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unsigned GBAAudioResampleNN(struct GBAAudio*, float ratio, float* drift, struct GBAStereoSample* output, unsigned nSamples);
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struct GBASerializedState;
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void GBAAudioSerialize(const struct GBAAudio* audio, struct GBASerializedState* state);
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