315 lines
7.6 KiB
C
315 lines
7.6 KiB
C
/**
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* FreeRDP: A Remote Desktop Protocol Implementation
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* Audio Input Redirection Virtual Channel - WinMM implementation
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*
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* Copyright 2013 Zhang Zhaolong <zhangzl2013@126.com>
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*
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you may not use this file except in compliance with the License.
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* You may obtain a copy of the License at
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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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 <stdio.h>
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#include <stdlib.h>
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#include <string.h>
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#include <Windows.h>
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#include <MMSystem.h>
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#include <winpr/crt.h>
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#include <winpr/cmdline.h>
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#include <freerdp/addin.h>
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#include "audin_main.h"
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typedef struct _AudinWinmmDevice
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{
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IAudinDevice iface;
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char* device_name;
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AudinReceive receive;
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void* user_data;
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HANDLE thread;
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HANDLE stopEvent;
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HWAVEIN hWaveIn;
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PWAVEFORMATEX *ppwfx;
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PWAVEFORMATEX pwfx_cur;
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UINT32 ppwfx_size;
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UINT32 cFormats;
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UINT32 frames_per_packet;
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} AudinWinmmDevice;
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static void CALLBACK waveInProc(HWAVEIN hWaveIn, UINT uMsg, DWORD_PTR dwInstance,
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DWORD_PTR dwParam1, DWORD_PTR dwParam2)
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{
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AudinWinmmDevice* winmm = (AudinWinmmDevice*) dwInstance;
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PWAVEHDR pWaveHdr;
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switch(uMsg)
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{
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case WIM_CLOSE:
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break;
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case WIM_DATA:
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pWaveHdr = (WAVEHDR *)dwParam1;
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if (WHDR_DONE == (WHDR_DONE & pWaveHdr->dwFlags))
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{
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if (pWaveHdr->dwBytesRecorded
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&& !(WaitForSingleObject(winmm->stopEvent, 0) == WAIT_OBJECT_0))
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{
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winmm->receive(pWaveHdr->lpData, pWaveHdr->dwBytesRecorded, winmm->user_data);
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waveInAddBuffer(hWaveIn, pWaveHdr, sizeof(WAVEHDR));
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}
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}
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break;
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case WIM_OPEN:
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break;
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default:
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break;
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}
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}
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static DWORD audin_winmm_thread_func(void* arg)
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{
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AudinWinmmDevice* winmm = (AudinWinmmDevice*) arg;
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char *buffer;
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int size, i;
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WAVEHDR waveHdr[4];
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if (!winmm->hWaveIn)
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{
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if (MMSYSERR_NOERROR != waveInOpen(&winmm->hWaveIn, WAVE_MAPPER, winmm->pwfx_cur,
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(DWORD_PTR)waveInProc, (DWORD_PTR)winmm, CALLBACK_FUNCTION))
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{
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return 0;
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}
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}
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size = (winmm->pwfx_cur->wBitsPerSample * winmm->pwfx_cur->nChannels * winmm->frames_per_packet + 7) / 8;
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for (i = 0; i < 4; i++)
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{
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buffer = (char *) malloc(size);
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waveHdr[i].dwBufferLength = size;
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waveHdr[i].dwFlags = 0;
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waveHdr[i].lpData = buffer;
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if (MMSYSERR_NOERROR != waveInPrepareHeader(winmm->hWaveIn, &waveHdr[i], sizeof(waveHdr[i])))
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{
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DEBUG_DVC("waveInPrepareHeader failed.");
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}
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if (MMSYSERR_NOERROR != waveInAddBuffer(winmm->hWaveIn, &waveHdr[i], sizeof(waveHdr[i])))
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{
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DEBUG_DVC("waveInAddBuffer failed.");
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}
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}
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waveInStart(winmm->hWaveIn);
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WaitForSingleObject(winmm->stopEvent, INFINITE);
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waveInStop(winmm->hWaveIn);
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for (i = 0; i < 4; i++)
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{
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if (MMSYSERR_NOERROR != waveInUnprepareHeader(winmm->hWaveIn, &waveHdr[i], sizeof(waveHdr[i])))
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{
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DEBUG_DVC("waveInUnprepareHeader failed.");
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}
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free(waveHdr[i].lpData);
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}
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waveInClose(winmm->hWaveIn);
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winmm->hWaveIn = NULL;
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return 0;
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}
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static void audin_winmm_free(IAudinDevice* device)
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{
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UINT32 i;
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AudinWinmmDevice* winmm = (AudinWinmmDevice*) device;
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for (i = 0; i < winmm->cFormats; i++)
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{
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free(winmm->ppwfx[i]);
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}
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free(winmm->ppwfx);
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free(winmm->device_name);
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free(winmm);
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}
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static void audin_winmm_close(IAudinDevice* device)
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{
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AudinWinmmDevice* winmm = (AudinWinmmDevice*) device;
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DEBUG_DVC("");
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SetEvent(winmm->stopEvent);
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WaitForSingleObject(winmm->thread, INFINITE);
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CloseHandle(winmm->thread);
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CloseHandle(winmm->stopEvent);
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winmm->thread = NULL;
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winmm->stopEvent = NULL;
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winmm->receive = NULL;
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winmm->user_data = NULL;
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}
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static void audin_winmm_set_format(IAudinDevice* device, audinFormat* format, UINT32 FramesPerPacket)
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{
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UINT32 i;
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AudinWinmmDevice* winmm = (AudinWinmmDevice*) device;
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winmm->frames_per_packet = FramesPerPacket;
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for (i = 0; i < winmm->cFormats; i++)
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{
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if (winmm->ppwfx[i]->wFormatTag == format->wFormatTag
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&& winmm->ppwfx[i]->nChannels == format->nChannels
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&& winmm->ppwfx[i]->wBitsPerSample == format->wBitsPerSample)
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{
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winmm->pwfx_cur = winmm->ppwfx[i];
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break;
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}
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}
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}
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static BOOL audin_winmm_format_supported(IAudinDevice* device, audinFormat* format)
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{
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AudinWinmmDevice* winmm = (AudinWinmmDevice*) device;
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PWAVEFORMATEX pwfx;
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BYTE *data;
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pwfx = (PWAVEFORMATEX)malloc(sizeof(WAVEFORMATEX) + format->cbSize);
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pwfx->cbSize = format->cbSize;
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pwfx->wFormatTag = format->wFormatTag;
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pwfx->nChannels = format->nChannels;
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pwfx->nSamplesPerSec = format->nSamplesPerSec;
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pwfx->nBlockAlign = format->nBlockAlign;
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pwfx->wBitsPerSample = format->wBitsPerSample;
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data = (BYTE *)pwfx + sizeof(WAVEFORMATEX);
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memcpy(data, format->data, format->cbSize);
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if (pwfx->wFormatTag == WAVE_FORMAT_PCM)
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{
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pwfx->nAvgBytesPerSec = pwfx->nSamplesPerSec * pwfx->nBlockAlign;
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if (MMSYSERR_NOERROR == waveInOpen(NULL, WAVE_MAPPER, pwfx, 0, 0, WAVE_FORMAT_QUERY))
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{
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if (winmm->cFormats >= winmm->ppwfx_size)
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{
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PWAVEFORMATEX *tmp_ppwfx;
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tmp_ppwfx = realloc(winmm->ppwfx, sizeof(PWAVEFORMATEX) * winmm->ppwfx_size * 2);
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if (!tmp_ppwfx)
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return 0;
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winmm->ppwfx_size *= 2;
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winmm->ppwfx = tmp_ppwfx;
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}
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winmm->ppwfx[winmm->cFormats++] = pwfx;
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return 1;
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}
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}
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free(pwfx);
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return 0;
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}
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static void audin_winmm_open(IAudinDevice* device, AudinReceive receive, void* user_data)
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{
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AudinWinmmDevice* winmm = (AudinWinmmDevice*) device;
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DEBUG_DVC("");
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winmm->receive = receive;
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winmm->user_data = user_data;
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winmm->stopEvent = CreateEvent(NULL, TRUE, FALSE, NULL);
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winmm->thread = CreateThread(NULL, 0, (LPTHREAD_START_ROUTINE) audin_winmm_thread_func, winmm, 0, NULL);
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}
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static COMMAND_LINE_ARGUMENT_A audin_winmm_args[] =
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{
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{ "dev", COMMAND_LINE_VALUE_REQUIRED, "<device>", NULL, NULL, -1, NULL, "audio device name" },
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{ NULL, 0, NULL, NULL, NULL, -1, NULL, NULL }
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};
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static void audin_winmm_parse_addin_args(AudinWinmmDevice* device, ADDIN_ARGV* args)
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{
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int status;
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DWORD flags;
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COMMAND_LINE_ARGUMENT_A* arg;
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AudinWinmmDevice* winmm = (AudinWinmmDevice*) device;
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flags = COMMAND_LINE_SIGIL_NONE | COMMAND_LINE_SEPARATOR_COLON | COMMAND_LINE_IGN_UNKNOWN_KEYWORD;
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status = CommandLineParseArgumentsA(args->argc, (const char**) args->argv, audin_winmm_args, flags, winmm, NULL, NULL);
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arg = audin_winmm_args;
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do
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{
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if (!(arg->Flags & COMMAND_LINE_VALUE_PRESENT))
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continue;
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CommandLineSwitchStart(arg)
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CommandLineSwitchCase(arg, "dev")
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{
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winmm->device_name = _strdup(arg->Value);
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}
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CommandLineSwitchEnd(arg)
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}
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while ((arg = CommandLineFindNextArgumentA(arg)) != NULL);
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}
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#ifdef STATIC_CHANNELS
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#define freerdp_audin_client_subsystem_entry winmm_freerdp_audin_client_subsystem_entry
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#endif
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int freerdp_audin_client_subsystem_entry(PFREERDP_AUDIN_DEVICE_ENTRY_POINTS pEntryPoints)
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{
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ADDIN_ARGV* args;
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AudinWinmmDevice* winmm;
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winmm = (AudinWinmmDevice*) malloc(sizeof(AudinWinmmDevice));
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ZeroMemory(winmm, sizeof(AudinWinmmDevice));
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winmm->iface.Open = audin_winmm_open;
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winmm->iface.FormatSupported = audin_winmm_format_supported;
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winmm->iface.SetFormat = audin_winmm_set_format;
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winmm->iface.Close = audin_winmm_close;
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winmm->iface.Free = audin_winmm_free;
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args = pEntryPoints->args;
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audin_winmm_parse_addin_args(winmm, args);
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if (!winmm->device_name)
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winmm->device_name = _strdup("default");
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winmm->ppwfx_size = 10;
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winmm->ppwfx = malloc(sizeof(PWAVEFORMATEX) * winmm->ppwfx_size);
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pEntryPoints->pRegisterAudinDevice(pEntryPoints->plugin, (IAudinDevice*) winmm);
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return 0;
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}
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