Added YUV routines needed for v4l driver, and in the future possibly
[wine/gsoc-2012-control.git] / dlls / quartz / acmwrapper.c
blobd963f9f98d298c5458546809c48f2bdc647ee323
1 /*
2 * ACM Wrapper
4 * Copyright 2005 Christian Costa
6 * This library is free software; you can redistribute it and/or
7 * modify it under the terms of the GNU Lesser General Public
8 * License as published by the Free Software Foundation; either
9 * version 2.1 of the License, or (at your option) any later version.
11 * This library is distributed in the hope that it will be useful,
12 * but WITHOUT ANY WARRANTY; without even the implied warranty of
13 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
14 * Lesser General Public License for more details.
16 * You should have received a copy of the GNU Lesser General Public
17 * License along with this library; if not, write to the Free Software
18 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
21 #include "config.h"
23 #include "quartz_private.h"
24 #include "control_private.h"
25 #include "pin.h"
27 #include "uuids.h"
28 #include "mmreg.h"
29 #include "windef.h"
30 #include "winbase.h"
31 #include "dshow.h"
32 #include "strmif.h"
33 #include "vfwmsgs.h"
34 #include "evcode.h"
35 #include "msacm.h"
37 #include <assert.h>
39 #include "wine/unicode.h"
40 #include "wine/debug.h"
42 #include "transform.h"
44 WINE_DEFAULT_DEBUG_CHANNEL(quartz);
46 /* FIXME: Improve buffers management */
47 #define OUTPUT_BUFFER_SIZE 15000
48 #define INPUT_BUFFER_SIZE 4096
50 typedef struct ACMWrapperImpl
52 TransformFilterImpl tf;
53 HACMSTREAM has;
54 LPWAVEFORMATEX pWfIn;
55 LPWAVEFORMATEX pWfOut;
56 BYTE buffer[INPUT_BUFFER_SIZE];
57 DWORD max_size;
58 DWORD current_size;
59 BOOL reinit_codec; /* FIXME: Should use sync points instead */
60 } ACMWrapperImpl;
62 static HRESULT ACMWrapper_ProcessSampleData(TransformFilterImpl* pTransformFilter, LPBYTE data, DWORD size)
64 ACMWrapperImpl* This = (ACMWrapperImpl*)pTransformFilter;
65 AM_MEDIA_TYPE amt;
66 HRESULT hr;
67 IMediaSample* pSample = NULL;
68 DWORD cbDstStream;
69 LPBYTE pbDstStream;
70 ACMSTREAMHEADER ash;
71 DWORD offset = 0;
72 BOOL stop = FALSE;
73 BOOL unprepare_header = FALSE;
74 MMRESULT res;
76 TRACE("(%p)->(%p,%ld)\n", This, data, size);
78 hr = IPin_ConnectionMediaType(This->tf.ppPins[0], &amt);
79 if (FAILED(hr)) {
80 ERR("Unable to retrieve media type\n");
81 goto error;
84 while(!stop)
86 DWORD rem_buf = This->max_size - This->current_size;
87 DWORD rem_smp = size - offset;
88 DWORD copy_size = min(rem_buf, rem_smp);
90 memcpy(This->buffer + This->current_size, data + offset, copy_size);
91 This->current_size += copy_size;
92 offset += copy_size;
94 if (offset == size)
95 stop = TRUE;
96 if (This->current_size < This->max_size)
97 break;
99 hr = OutputPin_GetDeliveryBuffer((OutputPin*)This->tf.ppPins[1], &pSample, NULL, NULL, 0);
100 if (FAILED(hr)) {
101 ERR("Unable to get delivery buffer (%lx)\n", hr);
102 goto error;
105 hr = IMediaSample_SetActualDataLength(pSample, 0);
106 assert(hr == S_OK);
108 hr = IMediaSample_GetPointer(pSample, &pbDstStream);
109 if (FAILED(hr)) {
110 ERR("Unable to get pointer to buffer (%lx)\n", hr);
111 goto error;
113 cbDstStream = IMediaSample_GetSize(pSample);
115 ash.cbStruct = sizeof(ash);
116 ash.fdwStatus = 0;
117 ash.dwUser = 0;
118 ash.pbSrc = This->buffer;
119 ash.cbSrcLength = This->current_size;
120 ash.pbDst = pbDstStream;
121 ash.cbDstLength = cbDstStream;
123 if ((res = acmStreamPrepareHeader(This->has, &ash, 0))) {
124 ERR("Cannot prepare header %d\n", res);
125 goto error;
128 unprepare_header = TRUE;
130 if ((res = acmStreamConvert(This->has, &ash, This->reinit_codec ? ACM_STREAMCONVERTF_START : 0))) {
131 ERR("Cannot convert data header %d\n", res);
132 goto error;
134 This->reinit_codec = FALSE;
136 TRACE("used in %lu, used out %lu\n", ash.cbSrcLengthUsed, ash.cbDstLengthUsed);
138 hr = IMediaSample_SetActualDataLength(pSample, ash.cbDstLengthUsed);
139 assert(hr == S_OK);
141 if (ash.cbSrcLengthUsed < ash.cbSrcLength) {
142 This->current_size = ash.cbSrcLength - ash.cbSrcLengthUsed;
143 memmove(This->buffer, This->buffer + ash.cbSrcLengthUsed, This->current_size);
145 else
146 This->current_size = 0;
148 hr = OutputPin_SendSample((OutputPin*)This->tf.ppPins[1], pSample);
149 if (hr != S_OK && hr != VFW_E_NOT_CONNECTED) {
150 ERR("Error sending sample (%lx)\n", hr);
151 goto error;
154 error:
155 if (unprepare_header && (res = acmStreamUnprepareHeader(This->has, &ash, 0)))
156 ERR("Cannot unprepare header %d\n", res);
158 if (pSample)
159 IMediaSample_Release(pSample);
162 return hr;
165 static HRESULT ACMWrapper_ConnectInput(TransformFilterImpl* pTransformFilter, const AM_MEDIA_TYPE * pmt)
167 ACMWrapperImpl* This = (ACMWrapperImpl*)pTransformFilter;
168 MMRESULT res;
170 TRACE("(%p)->(%p)\n", This, pmt);
172 if ((IsEqualIID(&pmt->majortype, &MEDIATYPE_Audio)) &&
173 (!memcmp(((char*)&pmt->subtype)+4, ((char*)&MEDIATYPE_Audio)+4, sizeof(GUID)-4)) && /* Check root (GUID w/o FOURCC) */
174 (IsEqualIID(&pmt->formattype, &FORMAT_WaveFormatEx)))
176 HACMSTREAM drv;
177 AM_MEDIA_TYPE* outpmt = &((OutputPin*)This->tf.ppPins[1])->pin.mtCurrent;
178 This->pWfIn = (LPWAVEFORMATEX)pmt->pbFormat;
180 /* HACK */
181 /* TRACE("ALIGN = %d\n", pACMWrapper->pWfIn->nBlockAlign); */
182 /* pACMWrapper->pWfIn->nBlockAlign = 1; */
184 /* Set output audio data to PCM */
185 CopyMediaType(outpmt, pmt);
186 outpmt->subtype.Data1 = WAVE_FORMAT_PCM;
187 This->pWfOut = (WAVEFORMATEX*)outpmt->pbFormat;
188 This->pWfOut->wFormatTag = WAVE_FORMAT_PCM;
189 This->pWfOut->wBitsPerSample = 16;
190 This->pWfOut->nBlockAlign = 4;
191 This->pWfOut->cbSize = 0;
192 This->pWfOut->nAvgBytesPerSec = This->pWfOut->nChannels * This->pWfOut->nSamplesPerSec
193 * (This->pWfOut->wBitsPerSample/8);
195 if (!(res = acmStreamOpen(&drv, NULL, This->pWfIn, This->pWfOut, NULL, 0, 0, 0)))
197 This->has = drv;
199 if ((res = acmStreamSize(drv, OUTPUT_BUFFER_SIZE, &This->max_size, ACM_STREAMSIZEF_DESTINATION))) {
200 ERR("Cannot retrieve input buffer size error %d!\n", res);
201 This->max_size = INPUT_BUFFER_SIZE;
204 TRACE("input buffer size %ld\n", This->max_size);
206 /* Update buffer size of media samples in output */
207 ((OutputPin*)This->tf.ppPins[1])->allocProps.cbBuffer = OUTPUT_BUFFER_SIZE;
209 TRACE("Connection accepted\n");
210 return S_OK;
212 else
213 FIXME("acmStreamOpen returned %d\n", res);
214 DeleteMediaType(outpmt);
215 TRACE("Unable to find a suitable ACM decompressor\n");
218 TRACE("Connection refused\n");
219 return S_FALSE;
222 static HRESULT ACMWrapper_Cleanup(TransformFilterImpl* pTransformFilter)
224 ACMWrapperImpl* This = (ACMWrapperImpl*)pTransformFilter;
226 TRACE("(%p)->()\n", This);
228 if (This->has)
229 acmStreamClose(This->has, 0);
231 This->has = 0;
233 return S_OK;
236 TransformFuncsTable ACMWrapper_FuncsTable = {
237 NULL,
238 ACMWrapper_ProcessSampleData,
239 NULL,
240 ACMWrapper_ConnectInput,
241 ACMWrapper_Cleanup
244 HRESULT ACMWrapper_create(IUnknown * pUnkOuter, LPVOID * ppv)
246 HRESULT hr;
247 ACMWrapperImpl* This;
249 TRACE("(%p, %p)\n", pUnkOuter, ppv);
251 *ppv = NULL;
253 if (pUnkOuter)
254 return CLASS_E_NOAGGREGATION;
256 /* Note: This memory is managed by the transform filter once created */
257 This = CoTaskMemAlloc(sizeof(ACMWrapperImpl));
259 This->has = 0;
260 This->reinit_codec = TRUE;
262 hr = TransformFilter_Create(&(This->tf), &CLSID_ACMWrapper, &ACMWrapper_FuncsTable);
264 if (FAILED(hr))
265 return hr;
267 *ppv = (LPVOID)This;
269 return hr;