mirror of
https://gitlab.freedesktop.org/pulseaudio/pulseaudio.git
synced 2025-11-02 09:01:46 -05:00
* add typedefs for public structs and enums and drop the struct/enum prefixs from all uses where it makes sense git-svn-id: file:///home/lennart/svn/public/pulseaudio/trunk@447 fefdeb5f-60dc-0310-8127-8f9354f1896f
583 lines
15 KiB
C
583 lines
15 KiB
C
/* $Id: module-waveout.c 333 2005-01-08 21:36:53Z lennart $ */
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/***
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This file is part of polypaudio.
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polypaudio is free software; you can redistribute it and/or modify
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it under the terms of the GNU Lesser General Public License as published
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by the Free Software Foundation; either version 2 of the License,
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or (at your option) any later version.
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polypaudio is distributed in the hope that it will be useful, but
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WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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General Public License for more details.
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You should have received a copy of the GNU Lesser General Public License
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along with polypaudio; if not, write to the Free Software
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Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307
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USA.
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***/
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#ifdef HAVE_CONFIG_H
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#include <config.h>
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#endif
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#include <windows.h>
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#include <mmsystem.h>
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#include <assert.h>
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#include "sink.h"
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#include "source.h"
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#include "module.h"
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#include "mainloop-api.h"
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#include "modargs.h"
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#include "sample-util.h"
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#include "util.h"
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#include "log.h"
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#include "xmalloc.h"
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#include "module-waveout-symdef.h"
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PA_MODULE_AUTHOR("Pierre Ossman")
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PA_MODULE_DESCRIPTION("Windows waveOut Sink/Source")
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PA_MODULE_VERSION(PACKAGE_VERSION)
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PA_MODULE_USAGE("sink_name=<name for the sink> source_name=<name for the source> record=<enable source?> playback=<enable sink?> format=<sample format> channels=<number of channels> rate=<sample rate> fragments=<number of fragments> fragment_size=<fragment size>")
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#define PA_TYPEID_WAVEOUT PA_TYPEID_MAKE('W', 'A', 'V', 'E')
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#define DEFAULT_SINK_NAME "wave_output"
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#define DEFAULT_SOURCE_NAME "wave_input"
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struct userdata {
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pa_sink *sink;
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pa_source *source;
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pa_core *core;
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pa_time_event *event;
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pa_defer_event *defer;
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pa_usec_t poll_timeout;
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uint32_t fragments, fragment_size;
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uint32_t free_ofrags, free_ifrags;
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DWORD written_bytes;
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int cur_ohdr, cur_ihdr;
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unsigned int oremain;
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WAVEHDR *ohdrs, *ihdrs;
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pa_memchunk silence;
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HWAVEOUT hwo;
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HWAVEIN hwi;
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pa_module *module;
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CRITICAL_SECTION crit;
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};
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static const char* const valid_modargs[] = {
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"sink_name",
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"source_name",
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"record",
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"playback",
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"fragments",
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"fragment_size",
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"format",
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"rate",
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"channels",
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NULL
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};
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static void update_usage(struct userdata *u) {
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pa_module_set_used(u->module,
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(u->sink ? pa_idxset_size(u->sink->inputs) : 0) +
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(u->sink ? pa_idxset_size(u->sink->monitor_source->outputs) : 0) +
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(u->source ? pa_idxset_size(u->source->outputs) : 0));
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}
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static void do_write(struct userdata *u)
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{
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uint32_t free_frags, remain;
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pa_memchunk memchunk, *cur_chunk;
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WAVEHDR *hdr;
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MMRESULT res;
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if (!u->sink)
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return;
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EnterCriticalSection(&u->crit);
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free_frags = u->free_ofrags;
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u->free_ofrags = 0;
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LeaveCriticalSection(&u->crit);
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while (free_frags) {
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hdr = &u->ohdrs[u->cur_ohdr];
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if (hdr->dwFlags & WHDR_PREPARED)
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waveOutUnprepareHeader(u->hwo, hdr, sizeof(WAVEHDR));
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remain = u->oremain;
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while (remain) {
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cur_chunk = &memchunk;
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if (pa_sink_render(u->sink, remain, cur_chunk) < 0) {
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/*
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* Don't fill with silence unless we're getting close to
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* underflowing.
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*/
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if (free_frags > u->fragments/2)
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cur_chunk = &u->silence;
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else {
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EnterCriticalSection(&u->crit);
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u->free_ofrags += free_frags;
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LeaveCriticalSection(&u->crit);
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u->oremain = remain;
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return;
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}
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}
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assert(cur_chunk->memblock);
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assert(cur_chunk->memblock->data);
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assert(cur_chunk->length);
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memcpy(hdr->lpData + u->fragment_size - remain,
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(char*)cur_chunk->memblock->data + cur_chunk->index,
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(cur_chunk->length < remain)?cur_chunk->length:remain);
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remain -= (cur_chunk->length < remain)?cur_chunk->length:remain;
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if (cur_chunk != &u->silence) {
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pa_memblock_unref(cur_chunk->memblock);
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cur_chunk->memblock = NULL;
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}
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}
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res = waveOutPrepareHeader(u->hwo, hdr, sizeof(WAVEHDR));
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if (res != MMSYSERR_NOERROR) {
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pa_log_error(__FILE__ ": ERROR: Unable to prepare waveOut block: %d\n",
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res);
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}
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res = waveOutWrite(u->hwo, hdr, sizeof(WAVEHDR));
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if (res != MMSYSERR_NOERROR) {
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pa_log_error(__FILE__ ": ERROR: Unable to write waveOut block: %d\n",
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res);
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}
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u->written_bytes += u->fragment_size;
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free_frags--;
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u->cur_ohdr++;
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u->cur_ohdr %= u->fragments;
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u->oremain = u->fragment_size;
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}
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}
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static void do_read(struct userdata *u)
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{
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uint32_t free_frags;
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pa_memchunk memchunk;
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WAVEHDR *hdr;
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MMRESULT res;
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if (!u->source)
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return;
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EnterCriticalSection(&u->crit);
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free_frags = u->free_ifrags;
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u->free_ifrags = 0;
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LeaveCriticalSection(&u->crit);
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while (free_frags) {
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hdr = &u->ihdrs[u->cur_ihdr];
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if (hdr->dwFlags & WHDR_PREPARED)
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waveInUnprepareHeader(u->hwi, hdr, sizeof(WAVEHDR));
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if (hdr->dwBytesRecorded) {
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memchunk.memblock = pa_memblock_new(hdr->dwBytesRecorded, u->core->memblock_stat);
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assert(memchunk.memblock);
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memcpy((char*)memchunk.memblock->data, hdr->lpData, hdr->dwBytesRecorded);
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memchunk.length = memchunk.memblock->length = hdr->dwBytesRecorded;
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memchunk.index = 0;
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pa_source_post(u->source, &memchunk);
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pa_memblock_unref(memchunk.memblock);
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}
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res = waveInPrepareHeader(u->hwi, hdr, sizeof(WAVEHDR));
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if (res != MMSYSERR_NOERROR) {
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pa_log_error(__FILE__ ": ERROR: Unable to prepare waveIn block: %d\n",
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res);
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}
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res = waveInAddBuffer(u->hwi, hdr, sizeof(WAVEHDR));
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if (res != MMSYSERR_NOERROR) {
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pa_log_error(__FILE__ ": ERROR: Unable to add waveIn block: %d\n",
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res);
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}
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free_frags--;
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u->cur_ihdr++;
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u->cur_ihdr %= u->fragments;
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}
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}
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static void poll_cb(pa_mainloop_api*a, pa_time_event *e, const struct timeval *tv, void *userdata) {
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struct userdata *u = userdata;
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struct timeval ntv;
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assert(u);
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update_usage(u);
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do_write(u);
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do_read(u);
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pa_gettimeofday(&ntv);
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pa_timeval_add(&ntv, u->poll_timeout);
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a->time_restart(e, &ntv);
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}
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static void defer_cb(pa_mainloop_api*a, pa_defer_event *e, void *userdata) {
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struct userdata *u = userdata;
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assert(u);
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a->defer_enable(e, 0);
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do_write(u);
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do_read(u);
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}
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static void CALLBACK chunk_done_cb(HWAVEOUT hwo, UINT msg, DWORD_PTR inst, DWORD param1, DWORD param2) {
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struct userdata *u = (struct userdata *)inst;
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if (msg != WOM_DONE)
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return;
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EnterCriticalSection(&u->crit);
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u->free_ofrags++;
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assert(u->free_ofrags <= u->fragments);
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LeaveCriticalSection(&u->crit);
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}
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static void CALLBACK chunk_ready_cb(HWAVEIN hwi, UINT msg, DWORD_PTR inst, DWORD param1, DWORD param2) {
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struct userdata *u = (struct userdata *)inst;
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if (msg != WIM_DATA)
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return;
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EnterCriticalSection(&u->crit);
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u->free_ifrags++;
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assert(u->free_ifrags <= u->fragments);
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LeaveCriticalSection(&u->crit);
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}
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static pa_usec_t sink_get_latency_cb(pa_sink *s) {
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struct userdata *u = s->userdata;
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uint32_t free_frags;
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MMTIME mmt;
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assert(s && u && u->sink);
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memset(&mmt, 0, sizeof(mmt));
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mmt.wType = TIME_BYTES;
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if (waveOutGetPosition(u->hwo, &mmt, sizeof(mmt)) == MMSYSERR_NOERROR)
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return pa_bytes_to_usec(u->written_bytes - mmt.u.cb, &s->sample_spec);
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else {
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EnterCriticalSection(&u->crit);
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free_frags = u->free_ofrags;
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LeaveCriticalSection(&u->crit);
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return pa_bytes_to_usec((u->fragments - free_frags) * u->fragment_size,
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&s->sample_spec);
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}
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}
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static pa_usec_t source_get_latency_cb(pa_source *s) {
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pa_usec_t r = 0;
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struct userdata *u = s->userdata;
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uint32_t free_frags;
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assert(s && u && u->sink);
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EnterCriticalSection(&u->crit);
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free_frags = u->free_ifrags;
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LeaveCriticalSection(&u->crit);
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r += pa_bytes_to_usec((free_frags + 1) * u->fragment_size, &s->sample_spec);
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fprintf(stderr, "Latency: %d us\n", (int)r);
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return r;
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}
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static void notify_sink_cb(pa_sink *s) {
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struct userdata *u = s->userdata;
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assert(u);
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u->core->mainloop->defer_enable(u->defer, 1);
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}
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static void notify_source_cb(pa_source *s) {
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struct userdata *u = s->userdata;
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assert(u);
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u->core->mainloop->defer_enable(u->defer, 1);
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}
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static int ss_to_waveformat(pa_sample_spec *ss, LPWAVEFORMATEX wf) {
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wf->wFormatTag = WAVE_FORMAT_PCM;
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if (ss->channels > 2) {
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pa_log_error(__FILE__": ERROR: More than two channels not supported.\n");
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return -1;
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}
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wf->nChannels = ss->channels;
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switch (ss->rate) {
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case 8000:
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case 11025:
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case 22005:
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case 44100:
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break;
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default:
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pa_log_error(__FILE__": ERROR: Unsupported sample rate.\n");
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return -1;
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}
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wf->nSamplesPerSec = ss->rate;
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if (ss->format == PA_SAMPLE_U8)
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wf->wBitsPerSample = 8;
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else if (ss->format == PA_SAMPLE_S16NE)
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wf->wBitsPerSample = 16;
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else {
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pa_log_error(__FILE__": ERROR: Unsupported sample format.\n");
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return -1;
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}
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wf->nBlockAlign = wf->nChannels * wf->wBitsPerSample/8;
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wf->nAvgBytesPerSec = wf->nSamplesPerSec * wf->nBlockAlign;
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wf->cbSize = 0;
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return 0;
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}
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int pa__init(pa_core *c, pa_module*m) {
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struct userdata *u = NULL;
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HWAVEOUT hwo = INVALID_HANDLE_VALUE;
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HWAVEIN hwi = INVALID_HANDLE_VALUE;
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WAVEFORMATEX wf;
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int nfrags, frag_size;
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int record = 1, playback = 1;
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pa_sample_spec ss;
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pa_modargs *ma = NULL;
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unsigned int i;
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struct timeval tv;
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assert(c && m);
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if (!(ma = pa_modargs_new(m->argument, valid_modargs))) {
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pa_log(__FILE__": failed to parse module arguments.\n");
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goto fail;
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}
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if (pa_modargs_get_value_boolean(ma, "record", &record) < 0 || pa_modargs_get_value_boolean(ma, "playback", &playback) < 0) {
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pa_log(__FILE__": record= and playback= expect boolean argument.\n");
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goto fail;
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}
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if (!playback && !record) {
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pa_log(__FILE__": neither playback nor record enabled for device.\n");
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goto fail;
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}
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nfrags = 20;
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frag_size = 1024;
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if (pa_modargs_get_value_s32(ma, "fragments", &nfrags) < 0 || pa_modargs_get_value_s32(ma, "fragment_size", &frag_size) < 0) {
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pa_log(__FILE__": failed to parse fragments arguments\n");
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goto fail;
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}
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ss = c->default_sample_spec;
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if (pa_modargs_get_sample_spec(ma, &ss) < 0) {
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pa_log(__FILE__": failed to parse sample specification\n");
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goto fail;
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}
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if (ss_to_waveformat(&ss, &wf) < 0)
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goto fail;
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u = pa_xmalloc(sizeof(struct userdata));
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if (record) {
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if (waveInOpen(&hwi, WAVE_MAPPER, &wf, (DWORD_PTR)chunk_ready_cb, (DWORD_PTR)u, CALLBACK_FUNCTION) != MMSYSERR_NOERROR)
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goto fail;
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if (waveInStart(hwi) != MMSYSERR_NOERROR)
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goto fail;
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pa_log_debug(__FILE__": Opened waveIn subsystem.\n");
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}
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if (playback) {
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if (waveOutOpen(&hwo, WAVE_MAPPER, &wf, (DWORD_PTR)chunk_done_cb, (DWORD_PTR)u, CALLBACK_FUNCTION) != MMSYSERR_NOERROR)
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goto fail;
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pa_log_debug(__FILE__": Opened waveOut subsystem.\n");
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}
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InitializeCriticalSection(&u->crit);
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if (hwi != INVALID_HANDLE_VALUE) {
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u->source = pa_source_new(c, PA_TYPEID_WAVEOUT, pa_modargs_get_value(ma, "source_name", DEFAULT_SOURCE_NAME), 0, &ss);
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assert(u->source);
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u->source->userdata = u;
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u->source->notify = notify_source_cb;
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u->source->get_latency = source_get_latency_cb;
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pa_source_set_owner(u->source, m);
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u->source->description = pa_sprintf_malloc("Windows waveIn PCM");
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} else
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u->source = NULL;
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|
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if (hwo != INVALID_HANDLE_VALUE) {
|
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u->sink = pa_sink_new(c, PA_TYPEID_WAVEOUT, pa_modargs_get_value(ma, "sink_name", DEFAULT_SINK_NAME), 0, &ss);
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assert(u->sink);
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u->sink->notify = notify_sink_cb;
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u->sink->get_latency = sink_get_latency_cb;
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u->sink->userdata = u;
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pa_sink_set_owner(u->sink, m);
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|
u->sink->description = pa_sprintf_malloc("Windows waveOut PCM");
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} else
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u->sink = NULL;
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|
|
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assert(u->source || u->sink);
|
|
|
|
u->core = c;
|
|
u->hwi = hwi;
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|
u->hwo = hwo;
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|
|
|
u->fragments = nfrags;
|
|
u->free_ifrags = u->fragments;
|
|
u->free_ofrags = u->fragments;
|
|
u->fragment_size = frag_size - (frag_size % pa_frame_size(&ss));
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|
|
|
u->written_bytes = 0;
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|
|
|
u->oremain = u->fragment_size;
|
|
|
|
u->poll_timeout = pa_bytes_to_usec(u->fragments * u->fragment_size / 3, &ss);
|
|
|
|
pa_gettimeofday(&tv);
|
|
pa_timeval_add(&tv, u->poll_timeout);
|
|
|
|
u->event = c->mainloop->time_new(c->mainloop, &tv, poll_cb, u);
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|
assert(u->event);
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|
|
|
u->defer = c->mainloop->defer_new(c->mainloop, defer_cb, u);
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|
assert(u->defer);
|
|
c->mainloop->defer_enable(u->defer, 0);
|
|
|
|
u->cur_ihdr = 0;
|
|
u->cur_ohdr = 0;
|
|
u->ihdrs = pa_xmalloc0(sizeof(WAVEHDR) * u->fragments);
|
|
assert(u->ihdrs);
|
|
u->ohdrs = pa_xmalloc0(sizeof(WAVEHDR) * u->fragments);
|
|
assert(u->ohdrs);
|
|
for (i = 0;i < u->fragments;i++) {
|
|
u->ihdrs[i].dwBufferLength = u->fragment_size;
|
|
u->ohdrs[i].dwBufferLength = u->fragment_size;
|
|
u->ihdrs[i].lpData = pa_xmalloc(u->fragment_size);
|
|
assert(u->ihdrs);
|
|
u->ohdrs[i].lpData = pa_xmalloc(u->fragment_size);
|
|
assert(u->ohdrs);
|
|
}
|
|
|
|
u->silence.length = u->fragment_size;
|
|
u->silence.memblock = pa_memblock_new(u->silence.length, u->core->memblock_stat);
|
|
assert(u->silence.memblock);
|
|
pa_silence_memblock(u->silence.memblock, &ss);
|
|
u->silence.index = 0;
|
|
|
|
u->module = m;
|
|
m->userdata = u;
|
|
|
|
pa_modargs_free(ma);
|
|
|
|
return 0;
|
|
|
|
fail:
|
|
if (hwi != INVALID_HANDLE_VALUE)
|
|
waveInClose(hwi);
|
|
|
|
if (hwo != INVALID_HANDLE_VALUE)
|
|
waveOutClose(hwo);
|
|
|
|
if (u)
|
|
pa_xfree(u);
|
|
|
|
if (ma)
|
|
pa_modargs_free(ma);
|
|
|
|
return -1;
|
|
}
|
|
|
|
void pa__done(pa_core *c, pa_module*m) {
|
|
struct userdata *u;
|
|
unsigned int i;
|
|
|
|
assert(c && m);
|
|
|
|
if (!(u = m->userdata))
|
|
return;
|
|
|
|
if (u->event)
|
|
c->mainloop->time_free(u->event);
|
|
|
|
if (u->defer)
|
|
c->mainloop->defer_free(u->defer);
|
|
|
|
if (u->sink) {
|
|
pa_sink_disconnect(u->sink);
|
|
pa_sink_unref(u->sink);
|
|
}
|
|
|
|
if (u->source) {
|
|
pa_source_disconnect(u->source);
|
|
pa_source_unref(u->source);
|
|
}
|
|
|
|
if (u->hwi != INVALID_HANDLE_VALUE) {
|
|
waveInReset(u->hwi);
|
|
waveInClose(u->hwi);
|
|
}
|
|
|
|
if (u->hwo != INVALID_HANDLE_VALUE) {
|
|
waveOutReset(u->hwo);
|
|
waveOutClose(u->hwo);
|
|
}
|
|
|
|
for (i = 0;i < u->fragments;i++) {
|
|
pa_xfree(u->ihdrs[i].lpData);
|
|
pa_xfree(u->ohdrs[i].lpData);
|
|
}
|
|
|
|
pa_xfree(u->ihdrs);
|
|
pa_xfree(u->ohdrs);
|
|
|
|
DeleteCriticalSection(&u->crit);
|
|
|
|
pa_xfree(u);
|
|
}
|