<!DOCTYPE html PUBLIC "-//W3C//DTD XHTML 1.0 Transitional//EN" "http://www.w3.org/TR/xhtml1/DTD/xhtml1-transitional.dtd"> <html xmlns="http://www.w3.org/1999/xhtml"> <head> <meta http-equiv="Content-Type" content="text/xhtml;charset=UTF-8"/> <title>SphinxBase: src/libsphinxad/play_win32.c Source File</title> <link href="tabs.css" rel="stylesheet" type="text/css"/> <link href="navtree.css" rel="stylesheet" type="text/css"/> <script type="text/javascript" src="jquery.js"></script> <script type="text/javascript" src="navtree.js"></script> <script type="text/javascript" src="resize.js"></script> <script type="text/javascript"> $(document).ready(initResizable); </script> <link href="doxygen.css" rel="stylesheet" type="text/css"/> </head> <body> <!-- Generated by Doxygen 1.7.3 --> <div id="top"> <div id="titlearea"> <table cellspacing="0" cellpadding="0"> <tbody> <tr style="height: 56px;"> <td style="padding-left: 0.5em;"> <div id="projectname">SphinxBase <span id="projectnumber">0.6</span></div> </td> </tr> </tbody> </table> </div> <div id="navrow1" class="tabs"> <ul class="tablist"> <li><a href="index.html"><span>Main Page</span></a></li> <li><a href="pages.html"><span>Related Pages</span></a></li> <li><a href="annotated.html"><span>Data Structures</span></a></li> <li class="current"><a href="files.html"><span>Files</span></a></li> </ul> </div> <div id="navrow2" class="tabs2"> <ul class="tablist"> <li><a href="files.html"><span>File List</span></a></li> <li><a href="globals.html"><span>Globals</span></a></li> </ul> </div> </div> <div id="side-nav" class="ui-resizable side-nav-resizable"> <div id="nav-tree"> <div id="nav-tree-contents"> </div> </div> <div id="splitbar" style="-moz-user-select:none;" class="ui-resizable-handle"> </div> </div> <script type="text/javascript"> initNavTree('play__win32_8c.html',''); </script> <div id="doc-content"> <div class="header"> <div class="headertitle"> <h1>src/libsphinxad/play_win32.c</h1> </div> </div> <div class="contents"> <div class="fragment"><pre class="fragment"><a name="l00001"></a>00001 <span class="comment">/* -*- c-basic-offset: 4; indent-tabs-mode: nil -*- */</span> <a name="l00002"></a>00002 <span class="comment">/* ====================================================================</span> <a name="l00003"></a>00003 <span class="comment"> * Copyright (c) 1999-2001 Carnegie Mellon University. All rights</span> <a name="l00004"></a>00004 <span class="comment"> * reserved.</span> <a name="l00005"></a>00005 <span class="comment"> *</span> <a name="l00006"></a>00006 <span class="comment"> * Redistribution and use in source and binary forms, with or without</span> <a name="l00007"></a>00007 <span class="comment"> * modification, are permitted provided that the following conditions</span> <a name="l00008"></a>00008 <span class="comment"> * are met:</span> <a name="l00009"></a>00009 <span class="comment"> *</span> <a name="l00010"></a>00010 <span class="comment"> * 1. Redistributions of source code must retain the above copyright</span> <a name="l00011"></a>00011 <span class="comment"> * notice, this list of conditions and the following disclaimer. </span> <a name="l00012"></a>00012 <span class="comment"> *</span> <a name="l00013"></a>00013 <span class="comment"> * 2. Redistributions in binary form must reproduce the above copyright</span> <a name="l00014"></a>00014 <span class="comment"> * notice, this list of conditions and the following disclaimer in</span> <a name="l00015"></a>00015 <span class="comment"> * the documentation and/or other materials provided with the</span> <a name="l00016"></a>00016 <span class="comment"> * distribution.</span> <a name="l00017"></a>00017 <span class="comment"> *</span> <a name="l00018"></a>00018 <span class="comment"> * This work was supported in part by funding from the Defense Advanced </span> <a name="l00019"></a>00019 <span class="comment"> * Research Projects Agency and the National Science Foundation of the </span> <a name="l00020"></a>00020 <span class="comment"> * United States of America, and the CMU Sphinx Speech Consortium.</span> <a name="l00021"></a>00021 <span class="comment"> *</span> <a name="l00022"></a>00022 <span class="comment"> * THIS SOFTWARE IS PROVIDED BY CARNEGIE MELLON UNIVERSITY ``AS IS'' AND </span> <a name="l00023"></a>00023 <span class="comment"> * ANY EXPRESSED OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, </span> <a name="l00024"></a>00024 <span class="comment"> * THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR</span> <a name="l00025"></a>00025 <span class="comment"> * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL CARNEGIE MELLON UNIVERSITY</span> <a name="l00026"></a>00026 <span class="comment"> * NOR ITS EMPLOYEES BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,</span> <a name="l00027"></a>00027 <span class="comment"> * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT </span> <a name="l00028"></a>00028 <span class="comment"> * LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, </span> <a name="l00029"></a>00029 <span class="comment"> * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY </span> <a name="l00030"></a>00030 <span class="comment"> * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT </span> <a name="l00031"></a>00031 <span class="comment"> * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE </span> <a name="l00032"></a>00032 <span class="comment"> * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.</span> <a name="l00033"></a>00033 <span class="comment"> *</span> <a name="l00034"></a>00034 <span class="comment"> * ====================================================================</span> <a name="l00035"></a>00035 <span class="comment"> *</span> <a name="l00036"></a>00036 <span class="comment"> */</span> <a name="l00037"></a>00037 <a name="l00038"></a>00038 <span class="comment">/*</span> <a name="l00039"></a>00039 <span class="comment"> * HISTORY</span> <a name="l00040"></a>00040 <span class="comment"> * </span> <a name="l00041"></a>00041 <span class="comment"> * 17-Apr-98 M K Ravishankar (rkm@cs.cmu.edu) at Carnegie Mellon University</span> <a name="l00042"></a>00042 <span class="comment"> * Added ad_open_play_sps(), and made ad_open_play() call it.</span> <a name="l00043"></a>00043 <span class="comment"> * </span> <a name="l00044"></a>00044 <span class="comment"> * 10-Jun-96 M K Ravishankar (rkm@cs.cmu.edu) at Carnegie Mellon University</span> <a name="l00045"></a>00045 <span class="comment"> * Added ad_play_t type to all calls.</span> <a name="l00046"></a>00046 <span class="comment"> * </span> <a name="l00047"></a>00047 <span class="comment"> * 03-Jun-96 M K Ravishankar (rkm@cs.cmu.edu) at Carnegie Mellon University</span> <a name="l00048"></a>00048 <span class="comment"> * Created.</span> <a name="l00049"></a>00049 <span class="comment"> */</span> <a name="l00050"></a>00050 <a name="l00051"></a>00051 <a name="l00052"></a>00052 <span class="preprocessor">#include <windows.h></span> <a name="l00053"></a>00053 <span class="preprocessor">#include <mmsystem.h></span> <a name="l00054"></a>00054 <span class="preprocessor">#include <stdio.h></span> <a name="l00055"></a>00055 <span class="preprocessor">#include <stdlib.h></span> <a name="l00056"></a>00056 <span class="preprocessor">#include <string.h></span> <a name="l00057"></a>00057 <a name="l00058"></a>00058 <span class="preprocessor">#include "sphinxbase/prim_type.h"</span> <a name="l00059"></a>00059 <span class="preprocessor">#include "sphinxbase/ad.h"</span> <a name="l00060"></a>00060 <a name="l00061"></a>00061 <a name="l00062"></a>00062 <span class="preprocessor">#define WO_BUFSIZE 3200 </span><span class="comment">/* Samples/buf */</span> <a name="l00063"></a>00063 <span class="preprocessor">#define N_WO_BUF 2 </span><span class="comment">/* #Playback bufs */</span> <a name="l00064"></a>00064 <a name="l00065"></a>00065 <span class="comment">/* Silvio Moioli: using OutputDebugStringW instead of OutputDebugString */</span> <a name="l00066"></a>00066 <span class="preprocessor">#ifdef _WIN32_WCE</span> <a name="l00067"></a>00067 <span class="preprocessor"></span><span class="preprocessor">#include "ckd_alloc.h"</span> <a name="l00068"></a>00068 <span class="keyword">static</span> <span class="keywordtype">void</span> <a name="l00069"></a>00069 waveout_error(<span class="keywordtype">char</span> *src, int32 ret) <a name="l00070"></a>00070 { <a name="l00071"></a>00071 TCHAR errbuf[512]; <a name="l00072"></a>00072 <span class="keywordtype">wchar_t</span>* werrbuf; <a name="l00073"></a>00073 <span class="keywordtype">size_t</span> len; <a name="l00074"></a>00074 <a name="l00075"></a>00075 waveOutGetErrorText(ret, errbuf, <span class="keyword">sizeof</span>(errbuf)); <a name="l00076"></a>00076 len = mbstowcs(NULL, errbuf, 0) + 1; <a name="l00077"></a>00077 werrbuf = <a class="code" href="ckd__alloc_8h.html#aa00ef21903bc4f8a972488417adc8d2e" title="Macros to simplify the use of above functions.">ckd_calloc</a>(len, <span class="keyword">sizeof</span>(*werrbuf)); <a name="l00078"></a>00078 mbstowcs(werrbuf, errbuf, len); <a name="l00079"></a>00079 <a name="l00080"></a>00080 OutputDebugStringW(werrbuf); <a name="l00081"></a>00081 } <a name="l00082"></a>00082 <a name="l00083"></a>00083 <span class="preprocessor">#else</span> <a name="l00084"></a>00084 <span class="preprocessor"></span><span class="keyword">static</span> <span class="keywordtype">void</span> <a name="l00085"></a>00085 waveout_error(<span class="keywordtype">char</span> *src, int32 ret) <a name="l00086"></a>00086 { <a name="l00087"></a>00087 <span class="keywordtype">char</span> errbuf[1024]; <a name="l00088"></a>00088 <a name="l00089"></a>00089 waveOutGetErrorText(ret, errbuf, <span class="keyword">sizeof</span>(errbuf)); <a name="l00090"></a>00090 fprintf(stderr, <span class="stringliteral">"%s error %d: %s\n"</span>, src, ret, errbuf); <a name="l00091"></a>00091 } <a name="l00092"></a>00092 <span class="preprocessor">#endif</span> <a name="l00093"></a>00093 <span class="preprocessor"></span> <a name="l00094"></a>00094 <a name="l00095"></a>00095 <span class="keyword">static</span> <span class="keywordtype">void</span> <a name="l00096"></a>00096 waveout_free_buf(ad_wbuf_t * b) <a name="l00097"></a>00097 { <a name="l00098"></a>00098 GlobalUnlock(b->h_whdr); <a name="l00099"></a>00099 GlobalFree(b->h_whdr); <a name="l00100"></a>00100 GlobalUnlock(b->h_buf); <a name="l00101"></a>00101 GlobalFree(b->h_buf); <a name="l00102"></a>00102 } <a name="l00103"></a>00103 <a name="l00104"></a>00104 <a name="l00105"></a>00105 <span class="keyword">static</span> int32 <a name="l00106"></a>00106 waveout_alloc_buf(ad_wbuf_t * b, int32 samples_per_buf) <a name="l00107"></a>00107 { <a name="l00108"></a>00108 HGLOBAL h_buf; <a name="l00109"></a>00109 LPSTR p_buf; <a name="l00110"></a>00110 HGLOBAL h_whdr; <a name="l00111"></a>00111 LPWAVEHDR p_whdr; <a name="l00112"></a>00112 <a name="l00113"></a>00113 <span class="comment">/* Allocate data buffer */</span> <a name="l00114"></a>00114 h_buf = <a name="l00115"></a>00115 GlobalAlloc(GMEM_MOVEABLE | GMEM_SHARE, <a name="l00116"></a>00116 samples_per_buf * <span class="keyword">sizeof</span>(int16)); <a name="l00117"></a>00117 <span class="keywordflow">if</span> (!h_buf) { <a name="l00118"></a>00118 fprintf(stderr, <span class="stringliteral">"GlobalAlloc failed\n"</span>); <a name="l00119"></a>00119 <span class="keywordflow">return</span> -1; <a name="l00120"></a>00120 } <a name="l00121"></a>00121 <span class="keywordflow">if</span> ((p_buf = GlobalLock(h_buf)) == NULL) { <a name="l00122"></a>00122 GlobalFree(h_buf); <a name="l00123"></a>00123 fprintf(stderr, <span class="stringliteral">"GlobalLock failed\n"</span>); <a name="l00124"></a>00124 <span class="keywordflow">return</span> -1; <a name="l00125"></a>00125 } <a name="l00126"></a>00126 <a name="l00127"></a>00127 <span class="comment">/* Allocate WAVEHDR structure */</span> <a name="l00128"></a>00128 h_whdr = GlobalAlloc(GMEM_MOVEABLE | GMEM_SHARE, <span class="keyword">sizeof</span>(WAVEHDR)); <a name="l00129"></a>00129 <span class="keywordflow">if</span> (h_whdr == NULL) { <a name="l00130"></a>00130 GlobalUnlock(h_buf); <a name="l00131"></a>00131 GlobalFree(h_buf); <a name="l00132"></a>00132 <a name="l00133"></a>00133 fprintf(stderr, <span class="stringliteral">"GlobalAlloc failed\n"</span>); <a name="l00134"></a>00134 <span class="keywordflow">return</span> -1; <a name="l00135"></a>00135 } <a name="l00136"></a>00136 <span class="keywordflow">if</span> ((p_whdr = GlobalLock(h_whdr)) == NULL) { <a name="l00137"></a>00137 GlobalUnlock(h_buf); <a name="l00138"></a>00138 GlobalFree(h_buf); <a name="l00139"></a>00139 GlobalFree(h_whdr); <a name="l00140"></a>00140 <a name="l00141"></a>00141 fprintf(stderr, <span class="stringliteral">"GlobalLock failed\n"</span>); <a name="l00142"></a>00142 <span class="keywordflow">return</span> -1; <a name="l00143"></a>00143 } <a name="l00144"></a>00144 <a name="l00145"></a>00145 b->h_buf = h_buf; <a name="l00146"></a>00146 b->p_buf = p_buf; <a name="l00147"></a>00147 b->h_whdr = h_whdr; <a name="l00148"></a>00148 b->p_whdr = p_whdr; <a name="l00149"></a>00149 <a name="l00150"></a>00150 p_whdr->lpData = p_buf; <a name="l00151"></a>00151 p_whdr->dwBufferLength = samples_per_buf * <span class="keyword">sizeof</span>(int16); <a name="l00152"></a>00152 p_whdr->dwUser = 0L; <a name="l00153"></a>00153 p_whdr->dwFlags = 0L; <a name="l00154"></a>00154 p_whdr->dwLoops = 0L; <a name="l00155"></a>00155 <a name="l00156"></a>00156 <span class="keywordflow">return</span> 0; <a name="l00157"></a>00157 } <a name="l00158"></a>00158 <a name="l00159"></a>00159 <a name="l00160"></a>00160 <span class="keyword">static</span> int32 <a name="l00161"></a>00161 waveout_enqueue_buf(HWAVEOUT h, LPWAVEHDR whdr) <a name="l00162"></a>00162 { <a name="l00163"></a>00163 int32 st; <a name="l00164"></a>00164 <a name="l00165"></a>00165 <span class="keywordflow">if</span> ((st = waveOutPrepareHeader(h, whdr, <span class="keyword">sizeof</span>(WAVEHDR))) != 0) { <a name="l00166"></a>00166 waveout_error(<span class="stringliteral">"waveOutPrepareHeader"</span>, st); <a name="l00167"></a>00167 <span class="keywordflow">return</span> -1; <a name="l00168"></a>00168 } <a name="l00169"></a>00169 <a name="l00170"></a>00170 <span class="keywordflow">if</span> ((st = waveOutWrite(h, whdr, <span class="keyword">sizeof</span>(WAVEHDR))) != 0) { <a name="l00171"></a>00171 waveout_error(<span class="stringliteral">"waveOutWrite"</span>, st); <a name="l00172"></a>00172 <span class="keywordflow">return</span> -1; <a name="l00173"></a>00173 } <a name="l00174"></a>00174 <a name="l00175"></a>00175 <span class="keywordflow">return</span> 0; <a name="l00176"></a>00176 } <a name="l00177"></a>00177 <a name="l00178"></a>00178 <a name="l00179"></a>00179 <span class="keyword">static</span> HWAVEOUT <a name="l00180"></a>00180 waveout_open(int32 samples_per_sec, int32 bytes_per_sample) <a name="l00181"></a>00181 { <a name="l00182"></a>00182 WAVEFORMATEX wfmt; <a name="l00183"></a>00183 int32 st; <a name="l00184"></a>00184 HWAVEOUT h; <a name="l00185"></a>00185 <a name="l00186"></a>00186 <span class="keywordflow">if</span> (bytes_per_sample != <span class="keyword">sizeof</span>(int16)) { <a name="l00187"></a>00187 fprintf(stderr, <span class="stringliteral">"bytes/sample != %d\n"</span>, <span class="keyword">sizeof</span>(int16)); <a name="l00188"></a>00188 <span class="keywordflow">return</span> NULL; <a name="l00189"></a>00189 } <a name="l00190"></a>00190 <a name="l00191"></a>00191 wfmt.wFormatTag = WAVE_FORMAT_PCM; <a name="l00192"></a>00192 wfmt.nChannels = 1; <a name="l00193"></a>00193 wfmt.nSamplesPerSec = samples_per_sec; <a name="l00194"></a>00194 wfmt.nAvgBytesPerSec = samples_per_sec * bytes_per_sample; <a name="l00195"></a>00195 wfmt.nBlockAlign = bytes_per_sample; <a name="l00196"></a>00196 wfmt.wBitsPerSample = 8 * bytes_per_sample; <a name="l00197"></a>00197 wfmt.cbSize = 0; <a name="l00198"></a>00198 <a name="l00199"></a>00199 <span class="comment">/* There should be a check here for a device of the desired type; later... */</span> <a name="l00200"></a>00200 <a name="l00201"></a>00201 st = waveOutOpen((LPHWAVEOUT) & h, WAVE_MAPPER, <a name="l00202"></a>00202 (LPWAVEFORMATEX) & wfmt, (DWORD) 0L, 0L, <a name="l00203"></a>00203 (DWORD) CALLBACK_NULL); <a name="l00204"></a>00204 <span class="keywordflow">if</span> (st != 0) { <a name="l00205"></a>00205 waveout_error(<span class="stringliteral">"waveOutOpen"</span>, st); <a name="l00206"></a>00206 <span class="keywordflow">return</span> NULL; <a name="l00207"></a>00207 } <a name="l00208"></a>00208 <a name="l00209"></a>00209 <span class="keywordflow">return</span> h; <a name="l00210"></a>00210 } <a name="l00211"></a>00211 <a name="l00212"></a>00212 <a name="l00213"></a>00213 <span class="keyword">static</span> <span class="keywordtype">void</span> <a name="l00214"></a>00214 waveout_mem_cleanup(<a class="code" href="structad__play__t.html">ad_play_t</a> * p, int32 n_buf) <a name="l00215"></a>00215 { <a name="l00216"></a>00216 int32 i; <a name="l00217"></a>00217 <a name="l00218"></a>00218 <span class="keywordflow">for</span> (i = 0; i < n_buf; i++) <a name="l00219"></a>00219 waveout_free_buf(&(p->wo_buf[i])); <a name="l00220"></a>00220 <span class="keywordflow">if</span> (p->wo_buf) <a name="l00221"></a>00221 free(p->wo_buf); <a name="l00222"></a>00222 <span class="keywordflow">if</span> (p->busy) <a name="l00223"></a>00223 free(p->busy); <a name="l00224"></a>00224 } <a name="l00225"></a>00225 <a name="l00226"></a>00226 <a name="l00227"></a>00227 <span class="keyword">static</span> int32 <a name="l00228"></a>00228 waveout_close(<a class="code" href="structad__play__t.html">ad_play_t</a> * p) <a name="l00229"></a>00229 { <a name="l00230"></a>00230 int32 st; <a name="l00231"></a>00231 <a name="l00232"></a>00232 waveout_mem_cleanup(p, N_WO_BUF); <a name="l00233"></a>00233 <a name="l00234"></a>00234 <span class="keywordflow">if</span> ((st = waveOutClose(p->h_waveout)) != 0) { <a name="l00235"></a>00235 waveout_error(<span class="stringliteral">"waveOutClose"</span>, st); <a name="l00236"></a>00236 <span class="keywordflow">return</span> -1; <a name="l00237"></a>00237 } <a name="l00238"></a>00238 <a name="l00239"></a>00239 free(p); <a name="l00240"></a>00240 <a name="l00241"></a>00241 <span class="keywordflow">return</span> 0; <a name="l00242"></a>00242 } <a name="l00243"></a>00243 <a name="l00244"></a>00244 <a name="l00245"></a>00245 <a class="code" href="structad__play__t.html">ad_play_t</a> * <a name="l00246"></a>00246 ad_open_play_sps(int32 sps) <a name="l00247"></a>00247 { <a name="l00248"></a>00248 <a class="code" href="structad__play__t.html">ad_play_t</a> *p; <a name="l00249"></a>00249 int32 i; <a name="l00250"></a>00250 HWAVEOUT h; <a name="l00251"></a>00251 <a name="l00252"></a>00252 <span class="keywordflow">if</span> ((h = waveout_open(sps, <span class="keyword">sizeof</span>(int16))) == NULL) <a name="l00253"></a>00253 <span class="keywordflow">return</span> NULL; <a name="l00254"></a>00254 <a name="l00255"></a>00255 <span class="keywordflow">if</span> ((p = (<a class="code" href="structad__play__t.html">ad_play_t</a> *) calloc(1, <span class="keyword">sizeof</span>(<a class="code" href="structad__play__t.html">ad_play_t</a>))) == NULL) { <a name="l00256"></a>00256 fprintf(stderr, <span class="stringliteral">"calloc(1,%d) failed\n"</span>, <span class="keyword">sizeof</span>(<a class="code" href="structad__play__t.html">ad_play_t</a>)); <a name="l00257"></a>00257 waveOutClose(h); <a name="l00258"></a>00258 <span class="keywordflow">return</span> NULL; <a name="l00259"></a>00259 } <a name="l00260"></a>00260 <span class="keywordflow">if</span> ((p->wo_buf = <a name="l00261"></a>00261 (ad_wbuf_t *) calloc(N_WO_BUF, <span class="keyword">sizeof</span>(ad_wbuf_t))) == NULL) { <a name="l00262"></a>00262 fprintf(stderr, <span class="stringliteral">"calloc(%d,%d) failed\n"</span>, N_WO_BUF, <a name="l00263"></a>00263 <span class="keyword">sizeof</span>(ad_wbuf_t)); <a name="l00264"></a>00264 free(p); <a name="l00265"></a>00265 waveOutClose(h); <a name="l00266"></a>00266 <a name="l00267"></a>00267 <span class="keywordflow">return</span> NULL; <a name="l00268"></a>00268 } <a name="l00269"></a>00269 <span class="keywordflow">if</span> ((p->busy = (<span class="keywordtype">char</span> *) calloc(N_WO_BUF, <span class="keyword">sizeof</span>(<span class="keywordtype">char</span>))) == NULL) { <a name="l00270"></a>00270 fprintf(stderr, <span class="stringliteral">"calloc(%d,%d) failed\n"</span>, N_WO_BUF, <span class="keyword">sizeof</span>(<span class="keywordtype">char</span>)); <a name="l00271"></a>00271 waveout_mem_cleanup(p, 0); <a name="l00272"></a>00272 free(p); <a name="l00273"></a>00273 waveOutClose(h); <a name="l00274"></a>00274 <a name="l00275"></a>00275 <span class="keywordflow">return</span> NULL; <a name="l00276"></a>00276 } <a name="l00277"></a>00277 <span class="keywordflow">for</span> (i = 0; i < N_WO_BUF; i++) { <a name="l00278"></a>00278 <span class="keywordflow">if</span> (waveout_alloc_buf(&(p->wo_buf[i]), WO_BUFSIZE) < 0) { <a name="l00279"></a>00279 waveout_mem_cleanup(p, i); <a name="l00280"></a>00280 free(p); <a name="l00281"></a>00281 waveOutClose(h); <a name="l00282"></a>00282 <a name="l00283"></a>00283 <span class="keywordflow">return</span> NULL; <a name="l00284"></a>00284 } <a name="l00285"></a>00285 } <a name="l00286"></a>00286 <a name="l00287"></a>00287 p->h_waveout = h; <a name="l00288"></a>00288 p->playing = 0; <a name="l00289"></a>00289 p->opened = 1; <a name="l00290"></a>00290 p->nxtbuf = 0; <a name="l00291"></a>00291 p->sps = sps; <a name="l00292"></a>00292 p->bps = <span class="keyword">sizeof</span>(int16); <span class="comment">/* HACK!! Hardwired value for bytes/sec */</span> <a name="l00293"></a>00293 <a name="l00294"></a>00294 <span class="keywordflow">return</span> p; <a name="l00295"></a>00295 } <a name="l00296"></a>00296 <a name="l00297"></a>00297 <a name="l00298"></a>00298 <a class="code" href="structad__play__t.html">ad_play_t</a> * <a name="l00299"></a>00299 ad_open_play(<span class="keywordtype">void</span>) <a name="l00300"></a>00300 { <a name="l00301"></a>00301 <span class="keywordflow">return</span> (ad_open_play_sps(DEFAULT_SAMPLES_PER_SEC)); <a name="l00302"></a>00302 } <a name="l00303"></a>00303 <a name="l00304"></a>00304 <a name="l00305"></a>00305 int32 <a name="l00306"></a>00306 ad_close_play(<a class="code" href="structad__play__t.html">ad_play_t</a> * p) <a name="l00307"></a>00307 { <a name="l00308"></a>00308 <span class="keywordflow">if</span> (!p->opened) <a name="l00309"></a>00309 <span class="keywordflow">return</span> 0; <a name="l00310"></a>00310 <a name="l00311"></a>00311 <span class="keywordflow">if</span> (p->playing) <a name="l00312"></a>00312 <span class="keywordflow">if</span> (ad_stop_play(p) < 0) <a name="l00313"></a>00313 <span class="keywordflow">return</span> -1; <a name="l00314"></a>00314 <a name="l00315"></a>00315 <span class="keywordflow">if</span> (waveout_close(p) < 0) <a name="l00316"></a>00316 <span class="keywordflow">return</span> -1; <a name="l00317"></a>00317 <a name="l00318"></a>00318 <span class="keywordflow">return</span> 0; <a name="l00319"></a>00319 } <a name="l00320"></a>00320 <a name="l00321"></a>00321 <a name="l00322"></a>00322 int32 <a name="l00323"></a>00323 ad_start_play(<a class="code" href="structad__play__t.html">ad_play_t</a> * p) <a name="l00324"></a>00324 { <a name="l00325"></a>00325 int32 i; <a name="l00326"></a>00326 <a name="l00327"></a>00327 <span class="keywordflow">if</span> ((!p->opened) || p->playing) <a name="l00328"></a>00328 <span class="keywordflow">return</span> -1; <a name="l00329"></a>00329 <a name="l00330"></a>00330 <span class="keywordflow">for</span> (i = 0; i < N_WO_BUF; i++) <a name="l00331"></a>00331 p->busy[i] = 0; <a name="l00332"></a>00332 p->nxtbuf = 0; <a name="l00333"></a>00333 p->playing = 1; <a name="l00334"></a>00334 <a name="l00335"></a>00335 <span class="keywordflow">return</span> 0; <a name="l00336"></a>00336 } <a name="l00337"></a>00337 <a name="l00338"></a>00338 <a name="l00339"></a>00339 int32 <a name="l00340"></a>00340 ad_stop_play(<a class="code" href="structad__play__t.html">ad_play_t</a> * p) <a name="l00341"></a>00341 { <a name="l00342"></a>00342 int32 i, st; <a name="l00343"></a>00343 LPWAVEHDR whdr; <a name="l00344"></a>00344 <a name="l00345"></a>00345 <span class="keywordflow">if</span> ((!p->opened) || (!p->playing)) <a name="l00346"></a>00346 <span class="keywordflow">return</span> -1; <a name="l00347"></a>00347 <a name="l00348"></a>00348 <span class="preprocessor">#if 0</span> <a name="l00349"></a>00349 <span class="preprocessor"></span> whdr->dwUser = (plen <= 0) ? 1 : 0; <a name="l00350"></a>00350 <span class="preprocessor">#endif</span> <a name="l00351"></a>00351 <span class="preprocessor"></span> <a name="l00352"></a>00352 <span class="comment">/* Wait for all buffers to be emptied and unprepare them */</span> <a name="l00353"></a>00353 <span class="keywordflow">for</span> (i = 0; i < N_WO_BUF; i++) { <a name="l00354"></a>00354 whdr = p->wo_buf[i].p_whdr; <a name="l00355"></a>00355 <a name="l00356"></a>00356 <span class="keywordflow">while</span> (p->busy[i] && (!(whdr->dwFlags & WHDR_DONE))) <a name="l00357"></a>00357 Sleep(100); <a name="l00358"></a>00358 <a name="l00359"></a>00359 st = waveOutUnprepareHeader(p->h_waveout, whdr, <span class="keyword">sizeof</span>(WAVEHDR)); <a name="l00360"></a>00360 <span class="keywordflow">if</span> (st != 0) { <a name="l00361"></a>00361 waveout_error(<span class="stringliteral">"waveOutUnprepareHeader"</span>, st); <a name="l00362"></a>00362 <span class="keywordflow">return</span> -1; <a name="l00363"></a>00363 } <a name="l00364"></a>00364 <a name="l00365"></a>00365 p->busy[i] = 0; <a name="l00366"></a>00366 } <a name="l00367"></a>00367 <a name="l00368"></a>00368 <span class="keywordflow">return</span> 0; <a name="l00369"></a>00369 } <a name="l00370"></a>00370 <a name="l00371"></a>00371 <a name="l00372"></a>00372 int32 <a name="l00373"></a><a class="code" href="ad_8h.html#aea278a0c26051f4fe011778f225ea9c4">00373</a> <a class="code" href="ad_8h.html#aea278a0c26051f4fe011778f225ea9c4" title="Queue a block of audio samples for playback.">ad_write</a>(<a class="code" href="structad__play__t.html">ad_play_t</a> * p, int16 * buf, int32 size) <a name="l00374"></a>00374 { <a name="l00375"></a>00375 int32 i, k, len, st; <a name="l00376"></a>00376 LPWAVEHDR whdr; <a name="l00377"></a>00377 <a name="l00378"></a>00378 <span class="keywordflow">if</span> ((!p->opened) || (!p->playing)) <a name="l00379"></a>00379 <span class="keywordflow">return</span> -1; <a name="l00380"></a>00380 <a name="l00381"></a>00381 len = 0; <a name="l00382"></a>00382 <a name="l00383"></a>00383 <span class="keywordflow">for</span> (i = 0; (i < N_WO_BUF) && (size > 0); i++) { <a name="l00384"></a>00384 whdr = p->wo_buf[p->nxtbuf].p_whdr; <a name="l00385"></a>00385 <a name="l00386"></a>00386 <span class="keywordflow">if</span> (p->busy[p->nxtbuf]) { <a name="l00387"></a>00387 <span class="keywordflow">if</span> (!(whdr->dwFlags & WHDR_DONE)) <a name="l00388"></a>00388 <span class="keywordflow">return</span> len; <a name="l00389"></a>00389 <a name="l00390"></a>00390 st = waveOutUnprepareHeader(p->h_waveout, whdr, <a name="l00391"></a>00391 <span class="keyword">sizeof</span>(WAVEHDR)); <a name="l00392"></a>00392 <span class="keywordflow">if</span> (st != 0) { <a name="l00393"></a>00393 waveout_error(<span class="stringliteral">"waveOutUnprepareHeader"</span>, st); <a name="l00394"></a>00394 <span class="keywordflow">return</span> -1; <a name="l00395"></a>00395 } <a name="l00396"></a>00396 <a name="l00397"></a>00397 p->busy[p->nxtbuf] = 0; <a name="l00398"></a>00398 } <a name="l00399"></a>00399 <a name="l00400"></a>00400 k = (size > WO_BUFSIZE) ? WO_BUFSIZE : size; <a name="l00401"></a>00401 <a name="l00402"></a>00402 whdr->dwBufferLength = k * <span class="keyword">sizeof</span>(int16); <a name="l00403"></a>00403 memcpy(whdr->lpData, (LPSTR) buf, k * <span class="keyword">sizeof</span>(int16)); <a name="l00404"></a>00404 <a name="l00405"></a>00405 <span class="keywordflow">if</span> (waveout_enqueue_buf(p->h_waveout, whdr) < 0) <a name="l00406"></a>00406 <span class="keywordflow">return</span> -1; <a name="l00407"></a>00407 <a name="l00408"></a>00408 buf += k; <a name="l00409"></a>00409 size -= k; <a name="l00410"></a>00410 len += k; <a name="l00411"></a>00411 <a name="l00412"></a>00412 p->busy[(p->nxtbuf)++] = 1; <a name="l00413"></a>00413 <span class="keywordflow">if</span> (p->nxtbuf >= N_WO_BUF) <a name="l00414"></a>00414 p->nxtbuf = 0; <a name="l00415"></a>00415 } <a name="l00416"></a>00416 <a name="l00417"></a>00417 <span class="keywordflow">return</span> len; <a name="l00418"></a>00418 } </pre></div></div> </div> <div id="nav-path" class="navpath"> <ul> <li class="navelem"><b>play_win32.c</b> </li> <li class="footer">Generated on Tue Apr 19 2011 for SphinxBase by  <a href="http://www.doxygen.org/index.html"> <img class="footer" src="doxygen.png" alt="doxygen"/></a> 1.7.3 </li> </ul> </div> </body> </html>