mirror of
https://github.com/cookiengineer/audacity
synced 2025-05-03 17:19:43 +02:00
108 lines
2.7 KiB
C
108 lines
2.7 KiB
C
#include "stdio.h"
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#ifndef mips
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#include "stdlib.h"
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#endif
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#include "xlisp.h"
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#include "sound.h"
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#include "falloc.h"
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#include "cext.h"
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#include "white.h"
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void white_free(snd_susp_type a_susp);
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typedef struct white_susp_struct {
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snd_susp_node susp;
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long terminate_cnt;
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} white_susp_node, *white_susp_type;
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void white__fetch(snd_susp_type a_susp, snd_list_type snd_list)
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{
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white_susp_type susp = (white_susp_type) a_susp;
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int cnt = 0; /* how many samples computed */
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int togo;
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int n;
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sample_block_type out;
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register sample_block_values_type out_ptr;
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register sample_block_values_type out_ptr_reg;
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falloc_sample_block(out, "white__fetch");
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out_ptr = out->samples;
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snd_list->block = out;
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while (cnt < max_sample_block_len) { /* outer loop */
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/* first compute how many samples to generate in inner loop: */
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/* don't overflow the output sample block: */
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togo = max_sample_block_len - cnt;
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/* don't run past terminate time */
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if (susp->terminate_cnt != UNKNOWN &&
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susp->terminate_cnt <= susp->susp.current + cnt + togo) {
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togo = susp->terminate_cnt - (susp->susp.current + cnt);
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if (togo < 0) togo = 0; /* avoids rounding errros */
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if (togo == 0) break;
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}
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n = togo;
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out_ptr_reg = out_ptr;
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if (n) do { /* the inner sample computation loop */
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*out_ptr_reg++ = (sample_type) (rand() * rand_scale - 1.0);
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} while (--n); /* inner loop */
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out_ptr += togo;
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cnt += togo;
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} /* outer loop */
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/* test for termination */
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if (togo == 0 && cnt == 0) {
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snd_list_terminate(snd_list);
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} else {
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snd_list->block_len = cnt;
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susp->susp.current += cnt;
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}
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} /* white__fetch */
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void white_free(snd_susp_type a_susp)
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{
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white_susp_type susp = (white_susp_type) a_susp;
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ffree_generic(susp, sizeof(white_susp_node), "white_free");
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}
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void white_print_tree(snd_susp_type a_susp, int n)
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{
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}
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sound_type snd_make_white(time_type t0, rate_type sr, time_type d)
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{
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register white_susp_type susp;
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/* sr specified as input parameter */
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/* t0 specified as input parameter */
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sample_type scale_factor = 1.0F;
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falloc_generic(susp, white_susp_node, "snd_make_white");
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susp->susp.fetch = white__fetch;
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susp->terminate_cnt = check_terminate_cnt(round((d) * sr));
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/* initialize susp state */
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susp->susp.free = white_free;
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susp->susp.sr = sr;
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susp->susp.t0 = t0;
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susp->susp.mark = NULL;
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susp->susp.print_tree = white_print_tree;
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susp->susp.name = "white";
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susp->susp.log_stop_cnt = UNKNOWN;
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susp->susp.current = 0;
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return sound_create((snd_susp_type)susp, t0, sr, scale_factor);
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}
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sound_type snd_white(time_type t0, rate_type sr, time_type d)
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{
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return snd_make_white(t0, sr, d);
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}
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