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https://github.com/claunia/flac.git
synced 2025-12-16 18:54:26 +00:00
add bps checks so we can use miroslav's mmx versions of some routines
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@@ -77,6 +77,7 @@ typedef struct FLAC__EncoderPrivate {
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unsigned (*local_fixed_compute_best_predictor)(const int32 data[], unsigned data_len, real residual_bits_per_sample[FLAC__MAX_FIXED_ORDER+1]);
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void (*local_lpc_compute_autocorrelation)(const real data[], unsigned data_len, unsigned lag, real autoc[]);
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void (*local_lpc_compute_residual_from_qlp_coefficients)(const int32 data[], unsigned data_len, const int32 qlp_coeff[], unsigned order, int lp_quantization, int32 residual[]);
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void (*local_lpc_compute_residual_from_qlp_coefficients_16bit)(const int32 data[], unsigned data_len, const int32 qlp_coeff[], unsigned order, int lp_quantization, int32 residual[]);
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bool use_slow; /* use slow 64-bit versions of some functions */
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FLAC__EncoderWriteStatus (*write_callback)(const FLAC__Encoder *encoder, const byte buffer[], unsigned bytes, unsigned samples, unsigned current_frame, void *client_data);
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void (*metadata_callback)(const FLAC__Encoder *encoder, const FLAC__StreamMetaData *metadata, void *client_data);
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@@ -329,6 +330,7 @@ FLAC__EncoderState FLAC__encoder_init(FLAC__Encoder *encoder, FLAC__EncoderWrite
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encoder->guts->local_lpc_compute_autocorrelation = FLAC__lpc_compute_autocorrelation;
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encoder->guts->local_fixed_compute_best_predictor = FLAC__fixed_compute_best_predictor;
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encoder->guts->local_lpc_compute_residual_from_qlp_coefficients = FLAC__lpc_compute_residual_from_qlp_coefficients;
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encoder->guts->local_lpc_compute_residual_from_qlp_coefficients_16bit = FLAC__lpc_compute_residual_from_qlp_coefficients;
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/* now override with asm where appropriate */
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#ifndef FLAC__NO_ASM
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FLAC__ASSERT(encoder->guts->cpuinfo.use_asm);
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@@ -364,17 +366,16 @@ fprintf(stderr,"@@@ got _asm_i386 of lpc_compute_autocorrelation()\n");}
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{//@@@
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encoder->guts->local_fixed_compute_best_predictor = FLAC__fixed_compute_best_predictor_asm_i386_mmx_cmov;
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fprintf(stderr,"@@@ got _asm_i386_mmx_cmov of fixed_compute_best_predictor()\n");}
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#if 0
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/* @@@ MMX version needs bps check */
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if(encoder->guts->cpuinfo.data.ia32.mmx && @@@bps check here@@@)
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{//@@@
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encoder->guts->local_lpc_compute_residual_from_qlp_coefficients = FLAC__lpc_compute_residual_from_qlp_coefficients_asm_i386_mmx;
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fprintf(stderr,"@@@ got _asm_i386_mmx of lpc_compute_residual_from_qlp_coefficients()\n");}
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else
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#endif
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{//@@@
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if(encoder->guts->cpuinfo.data.ia32.mmx) {
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encoder->guts->local_lpc_compute_residual_from_qlp_coefficients = FLAC__lpc_compute_residual_from_qlp_coefficients_asm_i386;
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fprintf(stderr,"@@@ got _asm_i386 of lpc_compute_residual_from_qlp_coefficients()\n");}
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encoder->guts->local_lpc_compute_residual_from_qlp_coefficients_16bit = FLAC__lpc_compute_residual_from_qlp_coefficients_asm_i386_mmx;
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fprintf(stderr,"@@@ got _asm_i386_mmx of lpc_compute_residual_from_qlp_coefficients()\n");
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}
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else {
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encoder->guts->local_lpc_compute_residual_from_qlp_coefficients = FLAC__lpc_compute_residual_from_qlp_coefficients_asm_i386;
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encoder->guts->local_lpc_compute_residual_from_qlp_coefficients_16bit = FLAC__lpc_compute_residual_from_qlp_coefficients_asm_i386;
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fprintf(stderr,"@@@ got _asm_i386 of lpc_compute_residual_from_qlp_coefficients()\n");
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}
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#endif
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#endif
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#endif
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@@ -1101,6 +1102,9 @@ unsigned encoder_evaluate_lpc_subframe_(FLAC__Encoder *encoder, const int32 sign
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if(ret != 0)
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return 0; /* this is a hack to indicate to the caller that we can't do lp at this order on this subframe */
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if(subframe_bps <= 16 && qlp_coeff_precision <= 16)
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encoder->guts->local_lpc_compute_residual_from_qlp_coefficients_16bit(signal+order, residual_samples, qlp_coeff, order, quantization, residual);
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else
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encoder->guts->local_lpc_compute_residual_from_qlp_coefficients(signal+order, residual_samples, qlp_coeff, order, quantization, residual);
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subframe->type = FLAC__SUBFRAME_TYPE_LPC;
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@@ -34,6 +34,7 @@ typedef struct FLAC__StreamDecoderPrivate {
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void (*metadata_callback)(const FLAC__StreamDecoder *decoder, const FLAC__StreamMetaData *metadata, void *client_data);
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void (*error_callback)(const FLAC__StreamDecoder *decoder, FLAC__StreamDecoderErrorStatus status, void *client_data);
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void (*local_lpc_restore_signal)(const int32 residual[], unsigned data_len, const int32 qlp_coeff[], unsigned order, int lp_quantization, int32 data[]);
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void (*local_lpc_restore_signal_16bit)(const int32 residual[], unsigned data_len, const int32 qlp_coeff[], unsigned order, int lp_quantization, int32 data[]);
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void *client_data;
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FLAC__BitBuffer input;
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int32 *output[FLAC__MAX_CHANNELS];
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@@ -166,23 +167,23 @@ FLAC__StreamDecoderState FLAC__stream_decoder_init(
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FLAC__cpu_info(&decoder->guts->cpuinfo);
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/* first default to the non-asm routines */
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decoder->guts->local_lpc_restore_signal = FLAC__lpc_restore_signal;
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decoder->guts->local_lpc_restore_signal_16bit = FLAC__lpc_restore_signal;
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/* now override with asm where appropriate */
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#ifndef FLAC__NO_ASM
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FLAC__ASSERT(decoder->guts->cpuinfo.use_asm);
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#ifdef FLAC__CPU_IA32
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FLAC__ASSERT(decoder->guts->cpuinfo.type == FLAC__CPUINFO_TYPE_IA32);
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#ifdef FLAC__HAS_NASM
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#if 0
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/* @@@ MMX version needs bps check */
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if(decoder->guts->cpuinfo.data.ia32.mmx && @@@bps check here@@@)
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{//@@@
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decoder->guts->local_lpc_restore_signal = FLAC__lpc_restore_signal_asm_i386_mmx;
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fprintf(stderr,"@@@ got _asm_i386_mmx of lpc_restore_signal()\n");}
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else
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#endif
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{//@@@
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if(decoder->guts->cpuinfo.data.ia32.mmx) {
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decoder->guts->local_lpc_restore_signal = FLAC__lpc_restore_signal_asm_i386;
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fprintf(stderr,"@@@ got _asm_i386 of lpc_restore_signal()\n");}
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decoder->guts->local_lpc_restore_signal_16bit = FLAC__lpc_restore_signal_asm_i386_mmx;
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fprintf(stderr,"@@@ got _asm_i386_mmx of lpc_restore_signal()\n");
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}
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else {
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decoder->guts->local_lpc_restore_signal = FLAC__lpc_restore_signal_asm_i386;
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decoder->guts->local_lpc_restore_signal_16bit = FLAC__lpc_restore_signal_asm_i386;
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fprintf(stderr,"@@@ got _asm_i386 of lpc_restore_signal()\n");
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}
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#endif
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#endif
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#endif
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@@ -1301,6 +1302,9 @@ bool stream_decoder_read_subframe_lpc_(FLAC__StreamDecoder *decoder, unsigned ch
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/* decode the subframe */
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memcpy(decoder->guts->output[channel], subframe->warmup, sizeof(int32) * order);
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if(bps <= 16 && subframe->qlp_coeff_precision <= 16)
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decoder->guts->local_lpc_restore_signal_16bit(decoder->guts->residual[channel], decoder->guts->frame.header.blocksize-order, subframe->qlp_coeff, order, subframe->quantization_level, decoder->guts->output[channel]+order);
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else
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decoder->guts->local_lpc_restore_signal(decoder->guts->residual[channel], decoder->guts->frame.header.blocksize-order, subframe->qlp_coeff, order, subframe->quantization_level, decoder->guts->output[channel]+order);
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return true;
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