flacenc: Allow more flexible shift calculation in LPC.
Originally committed as revision 14789 to svn://svn.ffmpeg.org/ffmpeg/trunk
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@ -680,7 +680,7 @@ static void compute_lpc_coefs(const double *autoc, int max_order,
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* Quantize LPC coefficients
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*/
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static void quantize_lpc_coefs(double *lpc_in, int order, int precision,
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int32_t *lpc_out, int *shift)
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int32_t *lpc_out, int *shift, int max_shift, int zero_shift)
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{
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int i;
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double cmax, error;
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@ -697,14 +697,14 @@ static void quantize_lpc_coefs(double *lpc_in, int order, int precision,
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}
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/* if maximum value quantizes to zero, return all zeros */
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if(cmax * (1 << MAX_LPC_SHIFT) < 1.0) {
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*shift = 0;
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if(cmax * (1 << max_shift) < 1.0) {
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*shift = zero_shift;
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memset(lpc_out, 0, sizeof(int32_t) * order);
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return;
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}
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/* calculate level shift which scales max coeff to available bits */
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sh = MAX_LPC_SHIFT;
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sh = max_shift;
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while((cmax * (1 << sh) > qmax) && (sh > 0)) {
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sh--;
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}
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@ -745,10 +745,10 @@ static int estimate_best_order(double *ref, int max_order)
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/**
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* Calculate LPC coefficients for multiple orders
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*/
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static int lpc_calc_coefs(FlacEncodeContext *s,
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static int lpc_calc_coefs(DSPContext *s,
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const int32_t *samples, int blocksize, int max_order,
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int precision, int32_t coefs[][MAX_LPC_ORDER],
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int *shift, int use_lpc, int omethod)
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int *shift, int use_lpc, int omethod, int max_shift, int zero_shift)
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{
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double autoc[MAX_LPC_ORDER+1];
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double ref[MAX_LPC_ORDER];
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@ -759,7 +759,7 @@ static int lpc_calc_coefs(FlacEncodeContext *s,
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assert(max_order >= MIN_LPC_ORDER && max_order <= MAX_LPC_ORDER);
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if(use_lpc == 1){
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s->dsp.flac_compute_autocorr(samples, blocksize, max_order, autoc);
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s->flac_compute_autocorr(samples, blocksize, max_order, autoc);
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compute_lpc_coefs(autoc, max_order, lpc, ref);
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}else{
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@ -804,10 +804,10 @@ static int lpc_calc_coefs(FlacEncodeContext *s,
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if(omethod == ORDER_METHOD_EST) {
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opt_order = estimate_best_order(ref, max_order);
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i = opt_order-1;
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quantize_lpc_coefs(lpc[i], i+1, precision, coefs[i], &shift[i]);
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quantize_lpc_coefs(lpc[i], i+1, precision, coefs[i], &shift[i], max_shift, zero_shift);
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} else {
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for(i=0; i<max_order; i++) {
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quantize_lpc_coefs(lpc[i], i+1, precision, coefs[i], &shift[i]);
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quantize_lpc_coefs(lpc[i], i+1, precision, coefs[i], &shift[i], max_shift, zero_shift);
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}
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}
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@ -1042,7 +1042,8 @@ static int encode_residual(FlacEncodeContext *ctx, int ch)
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}
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/* LPC */
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opt_order = lpc_calc_coefs(ctx, smp, n, max_order, precision, coefs, shift, ctx->options.use_lpc, omethod);
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opt_order = lpc_calc_coefs(&ctx->dsp, smp, n, max_order, precision, coefs,
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shift, ctx->options.use_lpc, omethod, MAX_LPC_SHIFT, 0);
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if(omethod == ORDER_METHOD_2LEVEL ||
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omethod == ORDER_METHOD_4LEVEL ||
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