371 lines
9.0 KiB
C
371 lines
9.0 KiB
C
/*
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* This file is part of the libsigrok project.
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*
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* Copyright (C) 2013 Bert Vermeulen <bert@biot.com>
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*
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* This program is free software: you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation, either version 3 of the License, or
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* (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program. If not, see <http://www.gnu.org/licenses/>.
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*/
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#include <sys/types.h>
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#include <sys/stat.h>
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#include <unistd.h>
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#include <fcntl.h>
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#include <ctype.h>
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#include <string.h>
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#include <stdint.h>
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#include "libsigrok.h"
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#include "libsigrok-internal.h"
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#define LOG_PREFIX "input/wav"
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/* How many bytes at a time to process and send to the session bus. */
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#define CHUNK_SIZE 4096
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/* Minimum size of header + 1 8-bit mono PCM sample. */
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#define MIN_DATA_CHUNK_OFFSET 45
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/* Expect to find the "data" chunk within this offset from the start. */
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#define MAX_DATA_CHUNK_OFFSET 256
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#define WAVE_FORMAT_PCM_ 0x0001
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#define WAVE_FORMAT_IEEE_FLOAT_ 0x0003
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#define WAVE_FORMAT_EXTENSIBLE_ 0xfffe
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struct context {
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gboolean started;
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int fmt_code;
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uint64_t samplerate;
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int samplesize;
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int num_channels;
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int unitsize;
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gboolean found_data;
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};
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static int parse_wav_header(GString *buf, struct context *inc)
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{
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uint64_t samplerate;
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unsigned int fmt_code, samplesize, num_channels, unitsize;
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if (buf->len < MIN_DATA_CHUNK_OFFSET)
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return SR_ERR_NA;
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fmt_code = RL16(buf->str + 20);
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samplerate = RL32(buf->str + 24);
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samplesize = RL16(buf->str + 32);
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num_channels = RL16(buf->str + 22);
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if (num_channels == 0)
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return SR_ERR;
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unitsize = samplesize / num_channels;
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if (unitsize != 1 && unitsize != 2 && unitsize != 4) {
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sr_err("Only 8, 16 or 32 bits per sample supported.");
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return SR_ERR_DATA;
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}
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if (fmt_code == WAVE_FORMAT_PCM_) {
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} else if (fmt_code == WAVE_FORMAT_IEEE_FLOAT_) {
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if (unitsize != 4) {
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sr_err("only 32-bit floats supported.");
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return SR_ERR_DATA;
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}
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} else if (fmt_code == WAVE_FORMAT_EXTENSIBLE_) {
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if (buf->len < 70)
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/* Not enough for extensible header and next chunk. */
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return SR_ERR_NA;
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if (RL16(buf->str + 16) != 40) {
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sr_err("WAV extensible format chunk must be 40 bytes.");
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return SR_ERR;
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}
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if (RL16(buf->str + 36) != 22) {
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sr_err("WAV extension must be 22 bytes.");
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return SR_ERR;
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}
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if (RL16(buf->str + 34) != RL16(buf->str + 38)) {
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sr_err("Reduced valid bits per sample not supported.");
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return SR_ERR_DATA;
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}
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/* Real format code is the first two bytes of the GUID. */
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fmt_code = RL16(buf->str + 44);
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if (fmt_code != WAVE_FORMAT_PCM_ && fmt_code != WAVE_FORMAT_IEEE_FLOAT_) {
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sr_err("Only PCM and floating point samples are supported.");
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return SR_ERR_DATA;
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}
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if (fmt_code == WAVE_FORMAT_IEEE_FLOAT_ && unitsize != 4) {
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sr_err("only 32-bit floats supported.");
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return SR_ERR_DATA;
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}
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} else {
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sr_err("Only PCM and floating point samples are supported.");
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return SR_ERR_DATA;
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}
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if (inc) {
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inc->fmt_code = fmt_code;
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inc->samplerate = samplerate;
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inc->samplesize = samplesize;
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inc->num_channels = num_channels;
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inc->unitsize = unitsize;
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inc->found_data = FALSE;
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}
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return SR_OK;
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}
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static int format_match(GHashTable *metadata)
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{
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GString *buf;
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int ret;
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buf = g_hash_table_lookup(metadata, GINT_TO_POINTER(SR_INPUT_META_HEADER));
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if (strncmp(buf->str, "RIFF", 4))
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return SR_ERR;
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if (strncmp(buf->str + 8, "WAVE", 4))
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return SR_ERR;
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if (strncmp(buf->str + 12, "fmt ", 4))
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return SR_ERR;
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/*
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* Only gets called when we already know this is a WAV file, so
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* this parser can log error messages.
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*/
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if ((ret = parse_wav_header(buf, NULL)) != SR_OK)
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return ret;
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return SR_OK;
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}
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static int init(struct sr_input *in, GHashTable *options)
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{
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(void)options;
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in->sdi = g_malloc0(sizeof(struct sr_dev_inst));
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in->priv = g_malloc0(sizeof(struct context));
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return SR_OK;
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}
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static int find_data_chunk(GString *buf, int initial_offset)
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{
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unsigned int offset, i;
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offset = initial_offset;
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while (offset < MIN(MAX_DATA_CHUNK_OFFSET, buf->len)) {
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if (!memcmp(buf->str + offset, "data", 4))
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/* Skip into the samples. */
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return offset + 8;
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for (i = 0; i < 4; i++) {
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if (!isalnum(buf->str[offset + i])
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&& !isblank(buf->str[offset + i]))
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/* Doesn't look like a chunk ID. */
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return -1;
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}
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/* Skip past this chunk. */
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offset += 8 + RL32(buf->str + offset + 4);
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}
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return offset;
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}
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static void send_chunk(const struct sr_input *in, int offset, int num_samples)
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{
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struct sr_datafeed_packet packet;
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struct sr_datafeed_analog analog;
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struct context *inc;
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float fdata[CHUNK_SIZE];
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uint64_t sample;
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int total_samples, samplenum;
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char *s, *d;
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inc = in->priv;
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s = in->buf->str + offset;
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d = (char *)fdata;
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memset(fdata, 0, CHUNK_SIZE);
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total_samples = num_samples * inc->num_channels;
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for (samplenum = 0; samplenum < total_samples; samplenum++) {
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if (inc->fmt_code == WAVE_FORMAT_PCM_) {
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sample = 0;
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memcpy(&sample, s, inc->unitsize);
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switch (inc->samplesize) {
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case 1:
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/* 8-bit PCM samples are unsigned. */
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fdata[samplenum] = (uint8_t)sample / (float)255;
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break;
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case 2:
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fdata[samplenum] = RL16S(&sample) / (float)INT16_MAX;
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break;
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case 4:
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fdata[samplenum] = RL32S(&sample) / (float)INT32_MAX;
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break;
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}
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} else {
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/* BINARY32 float */
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#ifdef WORDS_BIGENDIAN
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int i;
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for (i = 0; i < inc->unitsize; i++)
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d[i] = s[inc->unitsize - 1 - i];
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#else
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memcpy(d, s, inc->unitsize);
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#endif
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}
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s += inc->unitsize;
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d += inc->unitsize;
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}
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packet.type = SR_DF_ANALOG;
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packet.payload = &analog;
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analog.channels = in->sdi->channels;
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analog.num_samples = num_samples;
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analog.mq = 0;
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analog.mqflags = 0;
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analog.unit = 0;
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analog.data = fdata;
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sr_session_send(in->sdi, &packet);
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}
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static int process_buffer(struct sr_input *in)
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{
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struct context *inc;
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struct sr_datafeed_packet packet;
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struct sr_datafeed_meta meta;
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struct sr_config *src;
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int offset, chunk_samples, total_samples, processed, max_chunk_samples;
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int num_samples, i;
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char channelname[8];
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inc = in->priv;
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if (!inc->started) {
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for (i = 0; i < inc->num_channels; i++) {
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snprintf(channelname, 8, "CH%d", i + 1);
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sr_channel_new(in->sdi, i, SR_CHANNEL_ANALOG, TRUE, channelname);
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}
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std_session_send_df_header(in->sdi, LOG_PREFIX);
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packet.type = SR_DF_META;
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packet.payload = &meta;
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src = sr_config_new(SR_CONF_SAMPLERATE, g_variant_new_uint64(inc->samplerate));
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meta.config = g_slist_append(NULL, src);
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sr_session_send(in->sdi, &packet);
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sr_config_free(src);
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inc->started = TRUE;
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}
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if (!inc->found_data) {
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/* Skip past size of 'fmt ' chunk. */
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i = 20 + RL32(in->buf->str + 16);
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offset = find_data_chunk(in->buf, i);
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if (offset < 0) {
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if (in->buf->len > MAX_DATA_CHUNK_OFFSET) {
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sr_err("Couldn't find data chunk.");
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return SR_ERR;
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}
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}
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inc->found_data = TRUE;
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} else
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offset = 0;
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/* Round off up to the last channels * unitsize boundary. */
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chunk_samples = (in->buf->len - offset) / inc->num_channels / inc->unitsize;
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max_chunk_samples = CHUNK_SIZE / inc->num_channels / inc->unitsize;
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processed = 0;
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total_samples = chunk_samples;
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while (processed < total_samples) {
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if (chunk_samples > max_chunk_samples)
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num_samples = max_chunk_samples;
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else
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num_samples = chunk_samples;
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send_chunk(in, offset, num_samples);
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offset += num_samples * inc->unitsize;
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chunk_samples -= num_samples;
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processed += num_samples;
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}
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if ((unsigned int)offset < in->buf->len) {
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/*
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* The incoming buffer wasn't processed completely. Stash
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* the leftover data for next time.
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*/
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g_string_erase(in->buf, 0, offset);
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} else
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g_string_truncate(in->buf, 0);
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return SR_OK;
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}
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static int receive(struct sr_input *in, GString *buf)
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{
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struct context *inc;
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int ret;
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g_string_append_len(in->buf, buf->str, buf->len);
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if (in->buf->len < MIN_DATA_CHUNK_OFFSET) {
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/*
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* Don't even try until there's enough room
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* for the data segment to start.
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*/
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return SR_OK;
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}
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inc = in->priv;
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if (!in->sdi_ready) {
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if ((ret = parse_wav_header(in->buf, inc)) == SR_ERR_NA)
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/* Not enough data yet. */
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return SR_OK;
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else if (ret != SR_OK)
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return ret;
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/* sdi is ready, notify frontend. */
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in->sdi_ready = TRUE;
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return SR_OK;
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}
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ret = process_buffer(in);
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return ret;
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}
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static int end(struct sr_input *in)
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{
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struct sr_datafeed_packet packet;
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struct context *inc;
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int ret;
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if (in->sdi_ready)
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ret = process_buffer(in);
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else
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ret = SR_OK;
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inc = in->priv;
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if (inc->started) {
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packet.type = SR_DF_END;
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sr_session_send(in->sdi, &packet);
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}
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return ret;
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}
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SR_PRIV struct sr_input_module input_wav = {
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.id = "wav",
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.name = "WAV",
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.desc = "WAV file",
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.exts = (const char*[]){"wav", NULL},
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.metadata = { SR_INPUT_META_HEADER | SR_INPUT_META_REQUIRED },
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.format_match = format_match,
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.init = init,
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.receive = receive,
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.end = end,
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};
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