mirror of
https://github.com/cookiengineer/audacity
synced 2025-05-05 14:18:53 +02:00
171 lines
4.9 KiB
C
171 lines
4.9 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 "fromarraystream.h"
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void fromarraystream_free();
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typedef struct fromarraystream_susp_struct {
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snd_susp_node susp;
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long index;
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long length;
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LVAL array;
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LVAL src;
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sample_type *samples;
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} fromarraystream_susp_node, *fromarraystream_susp_type;
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/* IMPLEMENTATION NOTE:
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* The src argument is an XLisp object that returns either an
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* array of samples or NIL. The output of ifft is simply the
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* concatenation of the samples taken from the array. Later,
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* an ifft will be plugged in and this will return overlapped
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* adds of the ifft's.
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*/
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#include "samples.h"
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void fromarraystream__fetch(register fromarraystream_susp_type susp, snd_list_type snd_list)
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{
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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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register long index_reg;
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register sample_type * samples_reg;
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falloc_sample_block(out, "fromarraystream__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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if (susp->src == NULL) {
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out: togo = 0; /* indicate termination */
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break; /* we're done */
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}
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if (susp->index >= susp->length) {
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long i;
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susp->index = 0;
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susp->array = xleval(cons(s_send, cons(susp->src, consa(s_next))));
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susp->index = 0;
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if (susp->array == NULL) {
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susp->src = NULL;
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goto out;
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} else if (!vectorp(susp->array)) {
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xlerror("array expected", susp->array);
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} else if (susp->samples == NULL) {
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/* assume arrays are all the same size as first one;
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now that we know the size, we just have to do this
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first allocation.
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*/
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susp->length = getsize(susp->array);
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if (susp->length < 1) xlerror("array has no elements", susp->array);
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susp->samples =
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(sample_type *) calloc(susp->length,
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sizeof(sample_type));
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} else if (getsize(susp->array) != susp->length) {
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xlerror("arrays must all be the same length", susp->array);
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}
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/* at this point, we have a new array and a place to put samples */
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for (i = 0; i < susp->length; i++) {
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LVAL elem = getelement(susp->array, i);
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if (ntype(elem) != FLONUM) {
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xlerror("flonum expected", elem);
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}
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susp->samples[i] = (sample_type) getflonum(elem);
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}
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susp->array = NULL; /* free the array */
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}
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togo = min(togo, susp->length - susp->index);
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n = togo;
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index_reg = susp->index;
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samples_reg = susp->samples;
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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++ = samples_reg[index_reg++];;
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} while (--n); /* inner loop */
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susp->index = index_reg;
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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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} /* fromarraystream__fetch */
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void fromarraystream_mark(fromarraystream_susp_type susp)
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{
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if (susp->src) mark(susp->src);
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if (susp->array) mark(susp->array);
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}
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void fromarraystream_free(fromarraystream_susp_type susp)
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{
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free(susp->samples);
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ffree_generic(susp, sizeof(fromarraystream_susp_node), "fromarraystream_free");
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}
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void fromarraystream_print_tree(fromarraystream_susp_type susp, int n)
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{
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}
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sound_type snd_make_fromarraystream(time_type t0, rate_type sr, LVAL src)
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{
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register fromarraystream_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, fromarraystream_susp_node, "snd_make_fromarraystream");
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susp->index = 0;
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susp->length = 0;
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susp->array = NULL;
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susp->src = src;
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susp->samples = NULL;;
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susp->susp.fetch = fromarraystream__fetch;
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/* initialize susp state */
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susp->susp.free = fromarraystream_free;
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susp->susp.sr = sr;
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susp->susp.t0 = t0;
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susp->susp.mark = fromarraystream_mark;
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susp->susp.print_tree = fromarraystream_print_tree;
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susp->susp.name = "fromarraystream";
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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_fromarraystream(time_type t0, rate_type sr, LVAL src)
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{
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return snd_make_fromarraystream(t0, sr, src);
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}
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