📄 aresonvv.c
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susp->bw_pHaSe -= 1.0; /* bw_n gets number of samples before phase exceeds 1.0: */ susp->bw_n = (long) ((1.0 - susp->bw_pHaSe) * susp->output_per_bw); susp->c3co = exp(susp->bw_x1_sample); susp->c3p1 = susp->c3co + 1.0; susp->c3t4 = susp->c3co * 4.0; susp->omc3 = 1.0 - susp->c3co; susp->recompute = true; } togo = MIN(togo, susp->bw_n); bw_val = susp->bw_x1_sample; /* don't run past terminate time */ if (susp->terminate_cnt != UNKNOWN && susp->terminate_cnt <= susp->susp.current + cnt + togo) { togo = susp->terminate_cnt - (susp->susp.current + cnt); if (togo == 0) break; } /* don't run past logical stop time */ if (!susp->logically_stopped && susp->susp.log_stop_cnt != UNKNOWN) { int to_stop = susp->susp.log_stop_cnt - (susp->susp.current + cnt); /* break if to_stop == 0 (we're at the logical stop) * AND cnt > 0 (we're not at the beginning of the * output block). */ if (to_stop < togo) { if (to_stop == 0) { if (cnt) { togo = 0; break; } else /* keep togo as is: since cnt == 0, we * can set the logical stop flag on this * output block */ susp->logically_stopped = true; } else /* limit togo so we can start a new * block at the LST */ togo = to_stop; } } n = togo; c3co_reg = susp->c3co; c3p1_reg = susp->c3p1; c3t4_reg = susp->c3t4; omc3_reg = susp->omc3; coshz_reg = susp->coshz; c2_reg = susp->c2; c1_reg = susp->c1; recompute_reg = susp->recompute; normalization_reg = susp->normalization; y1_reg = susp->y1; y2_reg = susp->y2; hz1_ptr_reg = susp->hz1_ptr; s1_ptr_reg = susp->s1_ptr; out_ptr_reg = out_ptr; if (n) do { /* the inner sample computation loop */ register double y0, current; coshz_reg = cos((hz1_scale_reg * *hz1_ptr_reg++)); recompute_reg = true; if (recompute_reg) { recompute_reg = false; c2_reg = c3t4_reg * coshz_reg / c3p1_reg; c1_reg = (normalization_reg == 0 ? 0.0 : (normalization_reg == 1 ? 1.0 - omc3_reg * sqrt(1.0 - c2_reg * c2_reg / c3t4_reg) : 1.0 - sqrt(c3p1_reg * c3p1_reg - c2_reg * c2_reg) * omc3_reg / c3p1_reg)); }current = *s1_ptr_reg++; y0 = c1_reg * current + c2_reg * y1_reg - c3co_reg * y2_reg; *out_ptr_reg++ = (sample_type) y0; y2_reg = y1_reg; y1_reg = y0 - current; } while (--n); /* inner loop */ susp->recompute = recompute_reg; susp->y1 = y1_reg; susp->y2 = y2_reg; /* using hz1_ptr_reg is a bad idea on RS/6000: */ susp->hz1_ptr += togo; /* using s1_ptr_reg is a bad idea on RS/6000: */ susp->s1_ptr += togo; out_ptr += togo; susp_took(s1_cnt, togo); susp_took(hz1_cnt, togo); susp->bw_pHaSe += togo * susp->bw_pHaSe_iNcR; susp->bw_n -= togo; cnt += togo; } /* outer loop */ /* test for termination */ if (togo == 0 && cnt == 0) { snd_list_terminate(snd_list); } else { snd_list->block_len = cnt; susp->susp.current += cnt; } /* test for logical stop */ if (susp->logically_stopped) { snd_list->logically_stopped = true; } else if (susp->susp.log_stop_cnt == susp->susp.current) { susp->logically_stopped = true; }} /* aresonvv_nsr_fetch */void aresonvv_nis_fetch(register aresonvv_susp_type susp, snd_list_type snd_list){ int cnt = 0; /* how many samples computed */ int togo; int n; sample_block_type out; register sample_block_values_type out_ptr; register sample_block_values_type out_ptr_reg; register double c3co_reg; register double c3p1_reg; register double c3t4_reg; register double omc3_reg; register double coshz_reg; register double c2_reg; register double c1_reg; register boolean recompute_reg; register int normalization_reg; register double y1_reg; register double y2_reg; register sample_type bw_scale_reg = susp->bw->scale; register sample_block_values_type bw_ptr_reg; register double hz1_pHaSe_iNcR_rEg = susp->hz1_pHaSe_iNcR; register double hz1_pHaSe_ReG; register sample_type hz1_x1_sample_reg; register sample_block_values_type s1_ptr_reg; falloc_sample_block(out, "aresonvv_nis_fetch"); out_ptr = out->samples; snd_list->block = out; /* make sure sounds are primed with first values */ if (!susp->started) { susp->started = true; susp_check_term_samples(hz1, hz1_ptr, hz1_cnt); susp->hz1_x1_sample = susp_fetch_sample(hz1, hz1_ptr, hz1_cnt); susp->coshz = cos(susp->hz1_x1_sample); susp->recompute = true; } while (cnt < max_sample_block_len) { /* outer loop */ /* first compute how many samples to generate in inner loop: */ /* don't overflow the output sample block: */ togo = max_sample_block_len - cnt; /* don't run past the s1 input sample block: */ susp_check_term_log_samples(s1, s1_ptr, s1_cnt); togo = MIN(togo, susp->s1_cnt); /* don't run past the bw input sample block: */ susp_check_term_samples(bw, bw_ptr, bw_cnt); togo = MIN(togo, susp->bw_cnt); /* don't run past terminate time */ if (susp->terminate_cnt != UNKNOWN && susp->terminate_cnt <= susp->susp.current + cnt + togo) { togo = susp->terminate_cnt - (susp->susp.current + cnt); if (togo == 0) break; } /* don't run past logical stop time */ if (!susp->logically_stopped && susp->susp.log_stop_cnt != UNKNOWN) { int to_stop = susp->susp.log_stop_cnt - (susp->susp.current + cnt); /* break if to_stop == 0 (we're at the logical stop) * AND cnt > 0 (we're not at the beginning of the * output block). */ if (to_stop < togo) { if (to_stop == 0) { if (cnt) { togo = 0; break; } else /* keep togo as is: since cnt == 0, we * can set the logical stop flag on this * output block */ susp->logically_stopped = true; } else /* limit togo so we can start a new * block at the LST */ togo = to_stop; } } n = togo; c3co_reg = susp->c3co; c3p1_reg = susp->c3p1; c3t4_reg = susp->c3t4; omc3_reg = susp->omc3; coshz_reg = susp->coshz; c2_reg = susp->c2; c1_reg = susp->c1; recompute_reg = susp->recompute; normalization_reg = susp->normalization; y1_reg = susp->y1; y2_reg = susp->y2; bw_ptr_reg = susp->bw_ptr; hz1_pHaSe_ReG = susp->hz1_pHaSe; hz1_x1_sample_reg = susp->hz1_x1_sample; s1_ptr_reg = susp->s1_ptr; out_ptr_reg = out_ptr; if (n) do { /* the inner sample computation loop */ register double y0, current; if (hz1_pHaSe_ReG >= 1.0) {/* fixup-depends hz1 */ /* pick up next sample as hz1_x1_sample: */ susp->hz1_ptr++; susp_took(hz1_cnt, 1); hz1_pHaSe_ReG -= 1.0; susp_check_term_samples_break(hz1, hz1_ptr, hz1_cnt, hz1_x1_sample_reg); hz1_x1_sample_reg = susp_current_sample(hz1, hz1_ptr); coshz_reg = susp->coshz = cos(hz1_x1_sample_reg); recompute_reg = susp->recompute = true; } c3co_reg = exp((bw_scale_reg * *bw_ptr_reg++)); c3p1_reg = c3co_reg + 1.0; c3t4_reg = c3co_reg * 4.0; omc3_reg = 1.0 - c3co_reg; recompute_reg = true; if (recompute_reg) { recompute_reg = false; c2_reg = c3t4_reg * coshz_reg / c3p1_reg; c1_reg = (normalization_reg == 0 ? 0.0 : (normalization_reg == 1 ? 1.0 - omc3_reg * sqrt(1.0 - c2_reg * c2_reg / c3t4_reg) : 1.0 - sqrt(c3p1_reg * c3p1_reg - c2_reg * c2_reg) * omc3_reg / c3p1_reg)); }current = *s1_ptr_reg++; y0 = c1_reg * current + c2_reg * y1_reg - c3co_reg * y2_reg; *out_ptr_reg++ = (sample_type) y0; y2_reg = y1_reg; y1_reg = y0 - current; hz1_pHaSe_ReG += hz1_pHaSe_iNcR_rEg; } while (--n); /* inner loop */ togo -= n; susp->recompute = recompute_reg; susp->y1 = y1_reg; susp->y2 = y2_reg; /* using bw_ptr_reg is a bad idea on RS/6000: */ susp->bw_ptr += togo; susp->hz1_pHaSe = hz1_pHaSe_ReG; susp->hz1_x1_sample = hz1_x1_sample_reg; /* using s1_ptr_reg is a bad idea on RS/6000: */ susp->s1_ptr += togo; out_ptr += togo; susp_took(s1_cnt, togo); susp_took(bw_cnt, togo); cnt += togo; } /* outer loop */ /* test for termination */ if (togo == 0 && cnt == 0) { snd_list_terminate(snd_list); } else { snd_list->block_len = cnt; susp->susp.current += cnt; } /* test for logical stop */ if (susp->logically_stopped) { snd_list->logically_stopped = true; } else if (susp->susp.log_stop_cnt == susp->susp.current) { susp->logically_stopped = true; }} /* aresonvv_nis_fetch */void aresonvv_nii_fetch(register aresonvv_susp_type susp, snd_list_type snd_list){ int cnt = 0; /* how many samples computed */ int togo; int n; sample_block_type out; register sample_block_values_type out_ptr; register sample_block_values_type out_ptr_reg; register double c3co_reg; register double c3p1_reg; register double c3t4_reg; register double omc3_reg; register double coshz_reg; register double c2_reg; register double c1_reg; register boolean recompute_reg; register int normalization_reg; register double y1_reg; register double y2_reg; register double bw_pHaSe_iNcR_rEg = susp->bw_pHaSe_iNcR; register double bw_pHaSe_ReG; register sample_type bw_x1_sample_reg; register double hz1_pHaSe_iNcR_rEg = susp->hz1_pHaSe_iNcR; register double hz1_pHaSe_ReG; register sample_type hz1_x1_sample_reg; register sample_block_values_type s1_ptr_reg; falloc_sample_block(out, "aresonvv_nii_fetch"); out_ptr = out->samples; snd_list->block = out; /* make sure sounds are primed with first values */ if (!susp->started) { susp->started = true; susp_check_term_samples(hz1, hz1_ptr, hz1_cnt); susp->hz1_x1_sample = susp_fetch_sample(hz1, hz1_ptr, hz1_cnt); susp->coshz = cos(susp->hz1_x1_sample); susp->recompute = true; susp_check_term_samples(bw, bw_ptr, bw_cnt); susp->bw_x1_sample = susp_fetch_sample(bw, bw_ptr, bw_cnt); susp->c3co = exp(susp->bw_x1_sample); susp->c3p1 = susp->c3co + 1.0; susp->c3t4 = susp->c3co * 4.0; susp->omc3 = 1.0 - susp->c3co; susp->recompute = true; } while (cnt < max_sample_block_len) { /* outer loop */ /* first compute how many samples to generate in inner loop: */ /* don't overflow the output sample block: */ togo = max_sample_block_len - cnt; /* don't run past the s1 input sample block: */ susp_check_term_log_samples(s1, s1_ptr, s1_cnt); togo = MIN(togo, susp->s1_cnt); /* don't run past terminate time */ if (susp->terminate_cnt != UNKNOWN && susp->terminate_cnt <= susp->susp.current + cnt + togo) { togo = susp->terminate_cnt - (susp->susp.current + cnt); if (togo == 0) break; } /* don't run past logical stop time */ if (!susp->logically_stopped && susp->susp.log_stop_cnt != UNKNOWN) { int to_stop = susp->susp.log_stop_cnt - (susp->susp.current + cnt); /* break if to_stop == 0 (we're at the logical stop) * AND cnt > 0 (we're not at the beginning of the * output block). */ if (to_stop < togo) { if (to_stop == 0) { if (cnt) { togo = 0; break; } else /* keep togo as is: since cnt == 0, we * can set the logical stop flag on this * output block */ susp->logically_stopped = true; } else /* limit togo so we can start a new * block at the LST */ togo = to_stop; } } n = togo; c3co_reg = susp->c3co; c3p1_reg = susp->c3p1; c3t4_reg = susp->c3t4; omc3_reg = susp->omc3; coshz_reg = susp->coshz; c2_reg = susp->c2; c1_reg = susp->c1; recompute_reg = susp->recompute; normalization_reg = susp->normalization; y1_reg = susp->y1; y2_reg = susp->y2; bw_pHaSe_ReG = susp->bw_pHaSe; bw_x1_sample_reg = susp->bw_x1_sample; hz1_pHaSe_ReG = susp->hz1_pHaSe; hz1_x1_sample_reg = susp->hz1_x1_sample; s1_ptr_reg = susp->s1_ptr; out_ptr_reg = out_ptr; if (n) do { /* the inner sample computation loop */ register double y0, current; if (hz1_pHaSe_ReG >= 1.0) {/* fixup-depends hz1 */ /* pick up next sample as hz1_x1_sample: */ susp->hz1_ptr++; susp_took(hz1_cnt, 1); hz1_pHaSe_ReG -= 1.0; susp_check_term_samples_break(hz1, hz1_ptr, hz1_cnt, hz1_x1_sample_reg); hz1_x1_sample_reg = susp_current_sample(hz1, hz1_ptr); coshz_reg = susp->coshz = cos(hz1_x1_sample_reg); recompute_reg = susp->recompute = true; } if (bw_pHaSe_ReG >= 1.0) {/* fixup-depends bw */ /* pick up next sample as bw_x1_sample: */ susp->bw_ptr++; susp_took(bw_cnt, 1); bw_pHaSe_ReG -= 1.0; susp_check_term_samples_break(bw, bw_ptr, bw_cnt, bw_x1_sample_reg); bw_x1_sample_reg = susp_current_sample(bw, bw_ptr); c3co_reg = susp->c3co = exp(bw_x1_sample_reg); c3p1_reg = susp->c3p1 = c3co_reg + 1.0; c3t4_reg = susp->c3t4 = c3co_reg * 4.0; omc3_reg = susp->omc3 = 1.0 - c3co_reg; recompute_reg = susp->recompute = true; } if (recompute_reg) { recompute_reg = false; c2_reg = c3t4_reg * coshz_reg / c3p1_reg; c1_reg = (normalization_reg == 0 ? 0.0 : (normalization_reg == 1 ? 1.0 - omc3_reg * sqrt(1.0 - c2_reg * c2_reg / c3t4_reg) : 1.0 - sqrt(c3p1_reg * c3p1_reg - c2_reg * c2_reg) * omc3_reg / c3p1_reg)); }current = *s1_ptr_reg++; y0 = c1_reg * current + c2_reg * y1_reg - c3co_reg * y2_reg; *out_ptr_reg++ = (sample_type) y0; y2_reg = y1_reg; y1_reg = y0 - current; hz1_pHaSe_ReG += hz1_pHaSe_iNcR_rEg; bw_pHaSe_ReG += bw_pHaSe_iNcR_rEg; } while (--n); /* inner loop */ togo -= n; susp->recompute = recompute_reg; susp->y1 = y1_reg; susp->y2 = y2_reg; susp->bw_pHaSe = bw_pHaSe_ReG; susp->bw_x1_sample = bw_x1_sample_reg; susp->hz1_pHaSe = hz1_pHaSe_ReG; susp->hz1_x1_sample = hz1_x1_sample_reg; /* using s1_ptr_reg is a bad idea on RS/6000: */ susp->s1_ptr += togo; out_ptr += togo; susp_took(s1_cnt, togo); cnt += togo; } /* outer loop */
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