mfplat: Partially implement MFInitMediaTypeFromWaveFormatEx().

Signed-off-by: Nikolay Sivov <nsivov@codeweavers.com>
Signed-off-by: Alexandre Julliard <julliard@winehq.org>
This commit is contained in:
Nikolay Sivov 2020-04-08 17:21:28 +03:00 committed by Alexandre Julliard
parent f2c9614303
commit 2cc0116da0
4 changed files with 170 additions and 1 deletions

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@ -2089,3 +2089,74 @@ HRESULT WINAPI MFCreateWaveFormatExFromMFMediaType(IMFMediaType *mediatype, WAVE
return S_OK;
}
static void mediatype_set_uint32(IMFMediaType *mediatype, const GUID *attr, unsigned int value, HRESULT *hr)
{
if (SUCCEEDED(*hr))
*hr = IMFMediaType_SetUINT32(mediatype, attr, value);
}
static void mediatype_set_guid(IMFMediaType *mediatype, const GUID *attr, const GUID *value, HRESULT *hr)
{
if (SUCCEEDED(*hr))
*hr = IMFMediaType_SetGUID(mediatype, attr, value);
}
/***********************************************************************
* MFInitMediaTypeFromWaveFormatEx (mfplat.@)
*/
HRESULT WINAPI MFInitMediaTypeFromWaveFormatEx(IMFMediaType *mediatype, const WAVEFORMATEX *format, UINT32 size)
{
GUID subtype;
HRESULT hr;
TRACE("%p, %p, %u.\n", mediatype, format, size);
if (!mediatype || !format)
return E_POINTER;
if (format->wFormatTag == WAVE_FORMAT_EXTENSIBLE)
{
FIXME("WAVE_FORMAT_EXTENSIBLE is not supported.\n");
return E_NOTIMPL;
}
else
{
hr = IMFMediaType_DeleteAllItems(mediatype);
mediatype_set_guid(mediatype, &MF_MT_MAJOR_TYPE, &MFMediaType_Audio, &hr);
memcpy(&subtype, &MFAudioFormat_Base, sizeof(subtype));
subtype.Data1 = format->wFormatTag;
mediatype_set_guid(mediatype, &MF_MT_SUBTYPE, &subtype, &hr);
if (format->nChannels)
mediatype_set_uint32(mediatype, &MF_MT_AUDIO_NUM_CHANNELS, format->nChannels, &hr);
if (format->nSamplesPerSec)
mediatype_set_uint32(mediatype, &MF_MT_AUDIO_SAMPLES_PER_SECOND, format->nSamplesPerSec, &hr);
if (format->nAvgBytesPerSec)
mediatype_set_uint32(mediatype, &MF_MT_AUDIO_AVG_BYTES_PER_SECOND, format->nAvgBytesPerSec, &hr);
if (format->nBlockAlign)
mediatype_set_uint32(mediatype, &MF_MT_AUDIO_BLOCK_ALIGNMENT, format->nBlockAlign, &hr);
if (format->wBitsPerSample)
mediatype_set_uint32(mediatype, &MF_MT_AUDIO_BITS_PER_SAMPLE, format->wBitsPerSample, &hr);
mediatype_set_uint32(mediatype, &MF_MT_AUDIO_PREFER_WAVEFORMATEX, 1, &hr);
}
switch (subtype.Data1)
{
case WAVE_FORMAT_PCM:
case WAVE_FORMAT_IEEE_FLOAT:
mediatype_set_uint32(mediatype, &MF_MT_ALL_SAMPLES_INDEPENDENT, 1, &hr);
break;
default:
FIXME("Unhandled type %d.\n", subtype.Data1);
}
return hr;
}

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@ -121,7 +121,7 @@
@ stub MFInitMediaTypeFromMPEG2VideoInfo
@ stub MFInitMediaTypeFromVideoInfoHeader2
@ stub MFInitMediaTypeFromVideoInfoHeader
@ stub MFInitMediaTypeFromWaveFormatEx
@ stdcall MFInitMediaTypeFromWaveFormatEx(ptr ptr long)
@ stub MFInitVideoFormat
@ stub MFInitVideoFormat_RGB
@ stdcall MFInvokeCallback(ptr)

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@ -5084,6 +5084,102 @@ static void test_MFCreateMediaBufferFromMediaType(void)
IMFMediaType_Release(media_type);
}
static void validate_media_type(IMFMediaType *mediatype, const WAVEFORMATEX *format)
{
GUID guid, subtype;
UINT32 value;
HRESULT hr;
hr = IMFMediaType_GetMajorType(mediatype, &guid);
ok(hr == S_OK, "Failed to get major type, hr %#x.\n", hr);
ok(IsEqualGUID(&guid, &MFMediaType_Audio), "Unexpected major type %s.\n", wine_dbgstr_guid(&guid));
hr = IMFMediaType_GetGUID(mediatype, &MF_MT_SUBTYPE, &guid);
ok(hr == S_OK, "Failed to get subtype, hr %#x.\n", hr);
if (format->wFormatTag == WAVE_FORMAT_EXTENSIBLE)
{
}
else
{
memcpy(&subtype, &MFAudioFormat_Base, sizeof(subtype));
subtype.Data1 = format->wFormatTag;
ok(IsEqualGUID(&guid, &subtype), "Unexpected subtype %s.\n", wine_dbgstr_guid(&guid));
if (format->nChannels)
{
hr = IMFMediaType_GetUINT32(mediatype, &MF_MT_AUDIO_NUM_CHANNELS, &value);
ok(hr == S_OK, "Failed to get attribute, hr %#x.\n", hr);
ok(value == format->nChannels, "Unexpected NUM_CHANNELS %u.\n", value);
}
if (format->nSamplesPerSec)
{
hr = IMFMediaType_GetUINT32(mediatype, &MF_MT_AUDIO_SAMPLES_PER_SECOND, &value);
ok(hr == S_OK, "Failed to get attribute, hr %#x.\n", hr);
ok(value == format->nSamplesPerSec, "Unexpected SAMPLES_PER_SECOND %u.\n", value);
}
if (format->nAvgBytesPerSec)
{
hr = IMFMediaType_GetUINT32(mediatype, &MF_MT_AUDIO_AVG_BYTES_PER_SECOND, &value);
ok(hr == S_OK, "Failed to get attribute, hr %#x.\n", hr);
ok(value == format->nAvgBytesPerSec, "Unexpected AVG_BYTES_PER_SECOND %u.\n", value);
}
if (format->nBlockAlign)
{
hr = IMFMediaType_GetUINT32(mediatype, &MF_MT_AUDIO_BLOCK_ALIGNMENT, &value);
ok(hr == S_OK, "Failed to get attribute, hr %#x.\n", hr);
ok(value == format->nBlockAlign, "Unexpected BLOCK_ALIGNMENT %u.\n", value);
}
if (format->wBitsPerSample)
{
hr = IMFMediaType_GetUINT32(mediatype, &MF_MT_AUDIO_BITS_PER_SAMPLE, &value);
ok(hr == S_OK, "Failed to get attribute, hr %#x.\n", hr);
ok(value == format->wBitsPerSample, "Unexpected BITS_PER_SAMPLE %u.\n", value);
}
hr = IMFMediaType_GetUINT32(mediatype, &MF_MT_AUDIO_PREFER_WAVEFORMATEX, &value);
ok(hr == S_OK, "Failed to get attribute, hr %#x.\n", hr);
ok(value, "Unexpected value.\n");
}
/* Only set for uncompressed formats. */
if (SUCCEEDED(IMFMediaType_GetUINT32(mediatype, &MF_MT_ALL_SAMPLES_INDEPENDENT, &value)))
ok(value, "Unexpected ALL_SAMPLES_INDEPENDENT value.\n");
}
static void test_MFInitMediaTypeFromWaveFormatEx(void)
{
static const WAVEFORMATEX waveformatex_tests[] =
{
{ WAVE_FORMAT_PCM, 2, 44100, 0, 2, 8 },
{ WAVE_FORMAT_PCM, 2, 44100, 1, 2, 8 },
{ WAVE_FORMAT_PCM, 0, 44100, 0, 0, 0 },
{ WAVE_FORMAT_PCM, 0, 0, 0, 0, 0 },
{ 1234, 0, 0, 0, 0, 0 },
{ WAVE_FORMAT_MPEGLAYER3, 0, 0, 0, 0, 0 },
};
IMFMediaType *mediatype;
unsigned int i;
HRESULT hr;
hr = MFCreateMediaType(&mediatype);
ok(hr == S_OK, "Failed to create mediatype, hr %#x.\n", hr);
for (i = 0; i < ARRAY_SIZE(waveformatex_tests); ++i)
{
hr = MFInitMediaTypeFromWaveFormatEx(mediatype, &waveformatex_tests[i], sizeof(waveformatex_tests[i]));
ok(hr == S_OK, "Failed to initialize media type, hr %#x.\n", hr);
validate_media_type(mediatype, &waveformatex_tests[i]);
}
IMFMediaType_Release(mediatype);
}
START_TEST(mfplat)
{
char **argv;
@ -5138,6 +5234,7 @@ START_TEST(mfplat)
test_MFGetStrideForBitmapInfoHeader();
test_MFCreate2DMediaBuffer();
test_MFCreateMediaBufferFromMediaType();
test_MFInitMediaTypeFromWaveFormatEx();
CoUninitialize();
}

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@ -532,6 +532,7 @@ HRESULT WINAPI MFTEnumEx(GUID category, UINT32 flags, const MFT_REGISTER_TYPE_IN
const MFT_REGISTER_TYPE_INFO *output_type, IMFActivate ***activate,
UINT32 *pcount);
HRESULT WINAPI MFInitAttributesFromBlob(IMFAttributes *attributes, const UINT8 *buffer, UINT size);
HRESULT WINAPI MFInitMediaTypeFromWaveFormatEx(IMFMediaType *mediatype, const WAVEFORMATEX *format, UINT32 size);
HRESULT WINAPI MFInvokeCallback(IMFAsyncResult *result);
HRESULT WINAPI MFLockPlatform(void);
HRESULT WINAPI MFPutWorkItem(DWORD queue, IMFAsyncCallback *callback, IUnknown *state);