wasapi.c 65 KB

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  1. /**
  2. * OpenAL cross platform audio library
  3. * Copyright (C) 2011 by authors.
  4. * This library is free software; you can redistribute it and/or
  5. * modify it under the terms of the GNU Library General Public
  6. * License as published by the Free Software Foundation; either
  7. * version 2 of the License, or (at your option) any later version.
  8. *
  9. * This library is distributed in the hope that it will be useful,
  10. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  11. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
  12. * Library General Public License for more details.
  13. *
  14. * You should have received a copy of the GNU Library General Public
  15. * License along with this library; if not, write to the
  16. * Free Software Foundation, Inc.,
  17. * 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
  18. * Or go to http://www.gnu.org/copyleft/lgpl.html
  19. */
  20. #include "config.h"
  21. #define COBJMACROS
  22. #include <stdlib.h>
  23. #include <stdio.h>
  24. #include <memory.h>
  25. #include <wtypes.h>
  26. #include <mmdeviceapi.h>
  27. #include <audioclient.h>
  28. #include <cguid.h>
  29. #include <devpropdef.h>
  30. #include <mmreg.h>
  31. #include <propsys.h>
  32. #include <propkey.h>
  33. #include <devpkey.h>
  34. #ifndef _WAVEFORMATEXTENSIBLE_
  35. #include <ks.h>
  36. #include <ksmedia.h>
  37. #endif
  38. #include "alMain.h"
  39. #include "alu.h"
  40. #include "ringbuffer.h"
  41. #include "threads.h"
  42. #include "compat.h"
  43. #include "alstring.h"
  44. #include "converter.h"
  45. #include "backends/base.h"
  46. DEFINE_GUID(KSDATAFORMAT_SUBTYPE_PCM, 0x00000001, 0x0000, 0x0010, 0x80, 0x00, 0x00, 0xaa, 0x00, 0x38, 0x9b, 0x71);
  47. DEFINE_GUID(KSDATAFORMAT_SUBTYPE_IEEE_FLOAT, 0x00000003, 0x0000, 0x0010, 0x80, 0x00, 0x00, 0xaa, 0x00, 0x38, 0x9b, 0x71);
  48. DEFINE_DEVPROPKEY(DEVPKEY_Device_FriendlyName, 0xa45c254e, 0xdf1c, 0x4efd, 0x80,0x20, 0x67,0xd1,0x46,0xa8,0x50,0xe0, 14);
  49. DEFINE_PROPERTYKEY(PKEY_AudioEndpoint_FormFactor, 0x1da5d803, 0xd492, 0x4edd, 0x8c,0x23, 0xe0,0xc0,0xff,0xee,0x7f,0x0e, 0);
  50. DEFINE_PROPERTYKEY(PKEY_AudioEndpoint_GUID, 0x1da5d803, 0xd492, 0x4edd, 0x8c, 0x23,0xe0, 0xc0,0xff,0xee,0x7f,0x0e, 4 );
  51. #define MONO SPEAKER_FRONT_CENTER
  52. #define STEREO (SPEAKER_FRONT_LEFT|SPEAKER_FRONT_RIGHT)
  53. #define QUAD (SPEAKER_FRONT_LEFT|SPEAKER_FRONT_RIGHT|SPEAKER_BACK_LEFT|SPEAKER_BACK_RIGHT)
  54. #define X5DOT1 (SPEAKER_FRONT_LEFT|SPEAKER_FRONT_RIGHT|SPEAKER_FRONT_CENTER|SPEAKER_LOW_FREQUENCY|SPEAKER_SIDE_LEFT|SPEAKER_SIDE_RIGHT)
  55. #define X5DOT1REAR (SPEAKER_FRONT_LEFT|SPEAKER_FRONT_RIGHT|SPEAKER_FRONT_CENTER|SPEAKER_LOW_FREQUENCY|SPEAKER_BACK_LEFT|SPEAKER_BACK_RIGHT)
  56. #define X6DOT1 (SPEAKER_FRONT_LEFT|SPEAKER_FRONT_RIGHT|SPEAKER_FRONT_CENTER|SPEAKER_LOW_FREQUENCY|SPEAKER_BACK_CENTER|SPEAKER_SIDE_LEFT|SPEAKER_SIDE_RIGHT)
  57. #define X7DOT1 (SPEAKER_FRONT_LEFT|SPEAKER_FRONT_RIGHT|SPEAKER_FRONT_CENTER|SPEAKER_LOW_FREQUENCY|SPEAKER_BACK_LEFT|SPEAKER_BACK_RIGHT|SPEAKER_SIDE_LEFT|SPEAKER_SIDE_RIGHT)
  58. #define X7DOT1_WIDE (SPEAKER_FRONT_LEFT|SPEAKER_FRONT_RIGHT|SPEAKER_FRONT_CENTER|SPEAKER_LOW_FREQUENCY|SPEAKER_BACK_LEFT|SPEAKER_BACK_RIGHT|SPEAKER_FRONT_LEFT_OF_CENTER|SPEAKER_FRONT_RIGHT_OF_CENTER)
  59. #define REFTIME_PER_SEC ((REFERENCE_TIME)10000000)
  60. #define DEVNAME_HEAD "OpenAL Soft on "
  61. /* Scales the given value using 64-bit integer math, ceiling the result. */
  62. static inline ALuint64 ScaleCeil(ALuint64 val, ALuint64 new_scale, ALuint64 old_scale)
  63. {
  64. return (val*new_scale + old_scale-1) / old_scale;
  65. }
  66. typedef struct {
  67. al_string name;
  68. al_string endpoint_guid; // obtained from PKEY_AudioEndpoint_GUID , set to "Unknown device GUID" if absent.
  69. WCHAR *devid;
  70. } DevMap;
  71. TYPEDEF_VECTOR(DevMap, vector_DevMap)
  72. static void clear_devlist(vector_DevMap *list)
  73. {
  74. #define CLEAR_DEVMAP(i) do { \
  75. AL_STRING_DEINIT((i)->name); \
  76. AL_STRING_DEINIT((i)->endpoint_guid); \
  77. free((i)->devid); \
  78. (i)->devid = NULL; \
  79. } while(0)
  80. VECTOR_FOR_EACH(DevMap, *list, CLEAR_DEVMAP);
  81. VECTOR_RESIZE(*list, 0, 0);
  82. #undef CLEAR_DEVMAP
  83. }
  84. static vector_DevMap PlaybackDevices;
  85. static vector_DevMap CaptureDevices;
  86. static HANDLE ThreadHdl;
  87. static DWORD ThreadID;
  88. typedef struct {
  89. HANDLE FinishedEvt;
  90. HRESULT result;
  91. } ThreadRequest;
  92. #define WM_USER_First (WM_USER+0)
  93. #define WM_USER_OpenDevice (WM_USER+0)
  94. #define WM_USER_ResetDevice (WM_USER+1)
  95. #define WM_USER_StartDevice (WM_USER+2)
  96. #define WM_USER_StopDevice (WM_USER+3)
  97. #define WM_USER_CloseDevice (WM_USER+4)
  98. #define WM_USER_Enumerate (WM_USER+5)
  99. #define WM_USER_Last (WM_USER+5)
  100. static const char MessageStr[WM_USER_Last+1-WM_USER][20] = {
  101. "Open Device",
  102. "Reset Device",
  103. "Start Device",
  104. "Stop Device",
  105. "Close Device",
  106. "Enumerate Devices",
  107. };
  108. static inline void ReturnMsgResponse(ThreadRequest *req, HRESULT res)
  109. {
  110. req->result = res;
  111. SetEvent(req->FinishedEvt);
  112. }
  113. static HRESULT WaitForResponse(ThreadRequest *req)
  114. {
  115. if(WaitForSingleObject(req->FinishedEvt, INFINITE) == WAIT_OBJECT_0)
  116. return req->result;
  117. ERR("Message response error: %lu\n", GetLastError());
  118. return E_FAIL;
  119. }
  120. static void get_device_name_and_guid(IMMDevice *device, al_string *name, al_string *guid)
  121. {
  122. IPropertyStore *ps;
  123. PROPVARIANT pvname;
  124. PROPVARIANT pvguid;
  125. HRESULT hr;
  126. alstr_copy_cstr(name, DEVNAME_HEAD);
  127. hr = IMMDevice_OpenPropertyStore(device, STGM_READ, &ps);
  128. if(FAILED(hr))
  129. {
  130. WARN("OpenPropertyStore failed: 0x%08lx\n", hr);
  131. alstr_append_cstr(name, "Unknown Device Name");
  132. if(guid!=NULL)alstr_copy_cstr(guid, "Unknown Device GUID");
  133. return;
  134. }
  135. PropVariantInit(&pvname);
  136. hr = IPropertyStore_GetValue(ps, (const PROPERTYKEY*)&DEVPKEY_Device_FriendlyName, &pvname);
  137. if(FAILED(hr))
  138. {
  139. WARN("GetValue Device_FriendlyName failed: 0x%08lx\n", hr);
  140. alstr_append_cstr(name, "Unknown Device Name");
  141. }
  142. else if(pvname.vt == VT_LPWSTR)
  143. alstr_append_wcstr(name, pvname.pwszVal);
  144. else
  145. {
  146. WARN("Unexpected PROPVARIANT type: 0x%04x\n", pvname.vt);
  147. alstr_append_cstr(name, "Unknown Device Name");
  148. }
  149. PropVariantClear(&pvname);
  150. if(guid!=NULL){
  151. PropVariantInit(&pvguid);
  152. hr = IPropertyStore_GetValue(ps, (const PROPERTYKEY*)&PKEY_AudioEndpoint_GUID, &pvguid);
  153. if(FAILED(hr))
  154. {
  155. WARN("GetValue AudioEndpoint_GUID failed: 0x%08lx\n", hr);
  156. alstr_copy_cstr(guid, "Unknown Device GUID");
  157. }
  158. else if(pvguid.vt == VT_LPWSTR)
  159. alstr_copy_wcstr(guid, pvguid.pwszVal);
  160. else
  161. {
  162. WARN("Unexpected PROPVARIANT type: 0x%04x\n", pvguid.vt);
  163. alstr_copy_cstr(guid, "Unknown Device GUID");
  164. }
  165. PropVariantClear(&pvguid);
  166. }
  167. IPropertyStore_Release(ps);
  168. }
  169. static void get_device_formfactor(IMMDevice *device, EndpointFormFactor *formfactor)
  170. {
  171. IPropertyStore *ps;
  172. PROPVARIANT pvform;
  173. HRESULT hr;
  174. hr = IMMDevice_OpenPropertyStore(device, STGM_READ, &ps);
  175. if(FAILED(hr))
  176. {
  177. WARN("OpenPropertyStore failed: 0x%08lx\n", hr);
  178. return;
  179. }
  180. PropVariantInit(&pvform);
  181. hr = IPropertyStore_GetValue(ps, &PKEY_AudioEndpoint_FormFactor, &pvform);
  182. if(FAILED(hr))
  183. WARN("GetValue AudioEndpoint_FormFactor failed: 0x%08lx\n", hr);
  184. else if(pvform.vt == VT_UI4)
  185. *formfactor = pvform.ulVal;
  186. else if(pvform.vt == VT_EMPTY)
  187. *formfactor = UnknownFormFactor;
  188. else
  189. WARN("Unexpected PROPVARIANT type: 0x%04x\n", pvform.vt);
  190. PropVariantClear(&pvform);
  191. IPropertyStore_Release(ps);
  192. }
  193. static void add_device(IMMDevice *device, const WCHAR *devid, vector_DevMap *list)
  194. {
  195. int count = 0;
  196. al_string tmpname;
  197. DevMap entry;
  198. AL_STRING_INIT(tmpname);
  199. AL_STRING_INIT(entry.name);
  200. AL_STRING_INIT(entry.endpoint_guid);
  201. entry.devid = strdupW(devid);
  202. get_device_name_and_guid(device, &tmpname, &entry.endpoint_guid);
  203. while(1)
  204. {
  205. const DevMap *iter;
  206. alstr_copy(&entry.name, tmpname);
  207. if(count != 0)
  208. {
  209. char str[64];
  210. snprintf(str, sizeof(str), " #%d", count+1);
  211. alstr_append_cstr(&entry.name, str);
  212. }
  213. #define MATCH_ENTRY(i) (alstr_cmp(entry.name, (i)->name) == 0)
  214. VECTOR_FIND_IF(iter, const DevMap, *list, MATCH_ENTRY);
  215. if(iter == VECTOR_END(*list)) break;
  216. #undef MATCH_ENTRY
  217. count++;
  218. }
  219. TRACE("Got device \"%s\", \"%s\", \"%ls\"\n", alstr_get_cstr(entry.name), alstr_get_cstr(entry.endpoint_guid), entry.devid);
  220. VECTOR_PUSH_BACK(*list, entry);
  221. AL_STRING_DEINIT(tmpname);
  222. }
  223. static WCHAR *get_device_id(IMMDevice *device)
  224. {
  225. WCHAR *devid;
  226. HRESULT hr;
  227. hr = IMMDevice_GetId(device, &devid);
  228. if(FAILED(hr))
  229. {
  230. ERR("Failed to get device id: %lx\n", hr);
  231. return NULL;
  232. }
  233. return devid;
  234. }
  235. static HRESULT probe_devices(IMMDeviceEnumerator *devenum, EDataFlow flowdir, vector_DevMap *list)
  236. {
  237. IMMDeviceCollection *coll;
  238. IMMDevice *defdev = NULL;
  239. WCHAR *defdevid = NULL;
  240. HRESULT hr;
  241. UINT count;
  242. UINT i;
  243. hr = IMMDeviceEnumerator_EnumAudioEndpoints(devenum, flowdir, DEVICE_STATE_ACTIVE, &coll);
  244. if(FAILED(hr))
  245. {
  246. ERR("Failed to enumerate audio endpoints: 0x%08lx\n", hr);
  247. return hr;
  248. }
  249. count = 0;
  250. hr = IMMDeviceCollection_GetCount(coll, &count);
  251. if(SUCCEEDED(hr) && count > 0)
  252. {
  253. clear_devlist(list);
  254. VECTOR_RESIZE(*list, 0, count);
  255. hr = IMMDeviceEnumerator_GetDefaultAudioEndpoint(devenum, flowdir,
  256. eMultimedia, &defdev);
  257. }
  258. if(SUCCEEDED(hr) && defdev != NULL)
  259. {
  260. defdevid = get_device_id(defdev);
  261. if(defdevid)
  262. add_device(defdev, defdevid, list);
  263. }
  264. for(i = 0;i < count;++i)
  265. {
  266. IMMDevice *device;
  267. WCHAR *devid;
  268. hr = IMMDeviceCollection_Item(coll, i, &device);
  269. if(FAILED(hr)) continue;
  270. devid = get_device_id(device);
  271. if(devid)
  272. {
  273. if(wcscmp(devid, defdevid) != 0)
  274. add_device(device, devid, list);
  275. CoTaskMemFree(devid);
  276. }
  277. IMMDevice_Release(device);
  278. }
  279. if(defdev) IMMDevice_Release(defdev);
  280. if(defdevid) CoTaskMemFree(defdevid);
  281. IMMDeviceCollection_Release(coll);
  282. return S_OK;
  283. }
  284. /* Proxy interface used by the message handler. */
  285. struct ALCwasapiProxyVtable;
  286. typedef struct ALCwasapiProxy {
  287. const struct ALCwasapiProxyVtable *vtbl;
  288. } ALCwasapiProxy;
  289. struct ALCwasapiProxyVtable {
  290. HRESULT (*const openProxy)(ALCwasapiProxy*);
  291. void (*const closeProxy)(ALCwasapiProxy*);
  292. HRESULT (*const resetProxy)(ALCwasapiProxy*);
  293. HRESULT (*const startProxy)(ALCwasapiProxy*);
  294. void (*const stopProxy)(ALCwasapiProxy*);
  295. };
  296. #define DEFINE_ALCWASAPIPROXY_VTABLE(T) \
  297. DECLARE_THUNK(T, ALCwasapiProxy, HRESULT, openProxy) \
  298. DECLARE_THUNK(T, ALCwasapiProxy, void, closeProxy) \
  299. DECLARE_THUNK(T, ALCwasapiProxy, HRESULT, resetProxy) \
  300. DECLARE_THUNK(T, ALCwasapiProxy, HRESULT, startProxy) \
  301. DECLARE_THUNK(T, ALCwasapiProxy, void, stopProxy) \
  302. \
  303. static const struct ALCwasapiProxyVtable T##_ALCwasapiProxy_vtable = { \
  304. T##_ALCwasapiProxy_openProxy, \
  305. T##_ALCwasapiProxy_closeProxy, \
  306. T##_ALCwasapiProxy_resetProxy, \
  307. T##_ALCwasapiProxy_startProxy, \
  308. T##_ALCwasapiProxy_stopProxy, \
  309. }
  310. static void ALCwasapiProxy_Construct(ALCwasapiProxy* UNUSED(self)) { }
  311. static void ALCwasapiProxy_Destruct(ALCwasapiProxy* UNUSED(self)) { }
  312. static DWORD CALLBACK ALCwasapiProxy_messageHandler(void *ptr)
  313. {
  314. ThreadRequest *req = ptr;
  315. IMMDeviceEnumerator *Enumerator;
  316. ALuint deviceCount = 0;
  317. ALCwasapiProxy *proxy;
  318. HRESULT hr, cohr;
  319. MSG msg;
  320. TRACE("Starting message thread\n");
  321. cohr = CoInitializeEx(NULL, COINIT_MULTITHREADED);
  322. if(FAILED(cohr))
  323. {
  324. WARN("Failed to initialize COM: 0x%08lx\n", cohr);
  325. ReturnMsgResponse(req, cohr);
  326. return 0;
  327. }
  328. hr = CoCreateInstance(&CLSID_MMDeviceEnumerator, NULL, CLSCTX_INPROC_SERVER, &IID_IMMDeviceEnumerator, &ptr);
  329. if(FAILED(hr))
  330. {
  331. WARN("Failed to create IMMDeviceEnumerator instance: 0x%08lx\n", hr);
  332. CoUninitialize();
  333. ReturnMsgResponse(req, hr);
  334. return 0;
  335. }
  336. Enumerator = ptr;
  337. IMMDeviceEnumerator_Release(Enumerator);
  338. Enumerator = NULL;
  339. CoUninitialize();
  340. /* HACK: Force Windows to create a message queue for this thread before
  341. * returning success, otherwise PostThreadMessage may fail if it gets
  342. * called before GetMessage.
  343. */
  344. PeekMessage(&msg, NULL, WM_USER, WM_USER, PM_NOREMOVE);
  345. TRACE("Message thread initialization complete\n");
  346. ReturnMsgResponse(req, S_OK);
  347. TRACE("Starting message loop\n");
  348. while(GetMessage(&msg, NULL, WM_USER_First, WM_USER_Last))
  349. {
  350. TRACE("Got message \"%s\" (0x%04x, lparam=%p, wparam=%p)\n",
  351. (msg.message >= WM_USER && msg.message <= WM_USER_Last) ?
  352. MessageStr[msg.message-WM_USER] : "Unknown",
  353. msg.message, (void*)msg.lParam, (void*)msg.wParam
  354. );
  355. switch(msg.message)
  356. {
  357. case WM_USER_OpenDevice:
  358. req = (ThreadRequest*)msg.wParam;
  359. proxy = (ALCwasapiProxy*)msg.lParam;
  360. hr = cohr = S_OK;
  361. if(++deviceCount == 1)
  362. hr = cohr = CoInitializeEx(NULL, COINIT_MULTITHREADED);
  363. if(SUCCEEDED(hr))
  364. hr = V0(proxy,openProxy)();
  365. if(FAILED(hr))
  366. {
  367. if(--deviceCount == 0 && SUCCEEDED(cohr))
  368. CoUninitialize();
  369. }
  370. ReturnMsgResponse(req, hr);
  371. continue;
  372. case WM_USER_ResetDevice:
  373. req = (ThreadRequest*)msg.wParam;
  374. proxy = (ALCwasapiProxy*)msg.lParam;
  375. hr = V0(proxy,resetProxy)();
  376. ReturnMsgResponse(req, hr);
  377. continue;
  378. case WM_USER_StartDevice:
  379. req = (ThreadRequest*)msg.wParam;
  380. proxy = (ALCwasapiProxy*)msg.lParam;
  381. hr = V0(proxy,startProxy)();
  382. ReturnMsgResponse(req, hr);
  383. continue;
  384. case WM_USER_StopDevice:
  385. req = (ThreadRequest*)msg.wParam;
  386. proxy = (ALCwasapiProxy*)msg.lParam;
  387. V0(proxy,stopProxy)();
  388. ReturnMsgResponse(req, S_OK);
  389. continue;
  390. case WM_USER_CloseDevice:
  391. req = (ThreadRequest*)msg.wParam;
  392. proxy = (ALCwasapiProxy*)msg.lParam;
  393. V0(proxy,closeProxy)();
  394. if(--deviceCount == 0)
  395. CoUninitialize();
  396. ReturnMsgResponse(req, S_OK);
  397. continue;
  398. case WM_USER_Enumerate:
  399. req = (ThreadRequest*)msg.wParam;
  400. hr = cohr = S_OK;
  401. if(++deviceCount == 1)
  402. hr = cohr = CoInitializeEx(NULL, COINIT_MULTITHREADED);
  403. if(SUCCEEDED(hr))
  404. hr = CoCreateInstance(&CLSID_MMDeviceEnumerator, NULL, CLSCTX_INPROC_SERVER, &IID_IMMDeviceEnumerator, &ptr);
  405. if(SUCCEEDED(hr))
  406. {
  407. Enumerator = ptr;
  408. if(msg.lParam == ALL_DEVICE_PROBE)
  409. hr = probe_devices(Enumerator, eRender, &PlaybackDevices);
  410. else if(msg.lParam == CAPTURE_DEVICE_PROBE)
  411. hr = probe_devices(Enumerator, eCapture, &CaptureDevices);
  412. IMMDeviceEnumerator_Release(Enumerator);
  413. Enumerator = NULL;
  414. }
  415. if(--deviceCount == 0 && SUCCEEDED(cohr))
  416. CoUninitialize();
  417. ReturnMsgResponse(req, hr);
  418. continue;
  419. default:
  420. ERR("Unexpected message: %u\n", msg.message);
  421. continue;
  422. }
  423. }
  424. TRACE("Message loop finished\n");
  425. return 0;
  426. }
  427. typedef struct ALCwasapiPlayback {
  428. DERIVE_FROM_TYPE(ALCbackend);
  429. DERIVE_FROM_TYPE(ALCwasapiProxy);
  430. WCHAR *devid;
  431. IMMDevice *mmdev;
  432. IAudioClient *client;
  433. IAudioRenderClient *render;
  434. HANDLE NotifyEvent;
  435. HANDLE MsgEvent;
  436. ATOMIC(UINT32) Padding;
  437. ATOMIC(int) killNow;
  438. althrd_t thread;
  439. } ALCwasapiPlayback;
  440. static int ALCwasapiPlayback_mixerProc(void *arg);
  441. static void ALCwasapiPlayback_Construct(ALCwasapiPlayback *self, ALCdevice *device);
  442. static void ALCwasapiPlayback_Destruct(ALCwasapiPlayback *self);
  443. static ALCenum ALCwasapiPlayback_open(ALCwasapiPlayback *self, const ALCchar *name);
  444. static HRESULT ALCwasapiPlayback_openProxy(ALCwasapiPlayback *self);
  445. static void ALCwasapiPlayback_closeProxy(ALCwasapiPlayback *self);
  446. static ALCboolean ALCwasapiPlayback_reset(ALCwasapiPlayback *self);
  447. static HRESULT ALCwasapiPlayback_resetProxy(ALCwasapiPlayback *self);
  448. static ALCboolean ALCwasapiPlayback_start(ALCwasapiPlayback *self);
  449. static HRESULT ALCwasapiPlayback_startProxy(ALCwasapiPlayback *self);
  450. static void ALCwasapiPlayback_stop(ALCwasapiPlayback *self);
  451. static void ALCwasapiPlayback_stopProxy(ALCwasapiPlayback *self);
  452. static DECLARE_FORWARD2(ALCwasapiPlayback, ALCbackend, ALCenum, captureSamples, ALCvoid*, ALCuint)
  453. static DECLARE_FORWARD(ALCwasapiPlayback, ALCbackend, ALCuint, availableSamples)
  454. static ClockLatency ALCwasapiPlayback_getClockLatency(ALCwasapiPlayback *self);
  455. static DECLARE_FORWARD(ALCwasapiPlayback, ALCbackend, void, lock)
  456. static DECLARE_FORWARD(ALCwasapiPlayback, ALCbackend, void, unlock)
  457. DECLARE_DEFAULT_ALLOCATORS(ALCwasapiPlayback)
  458. DEFINE_ALCWASAPIPROXY_VTABLE(ALCwasapiPlayback);
  459. DEFINE_ALCBACKEND_VTABLE(ALCwasapiPlayback);
  460. static void ALCwasapiPlayback_Construct(ALCwasapiPlayback *self, ALCdevice *device)
  461. {
  462. SET_VTABLE2(ALCwasapiPlayback, ALCbackend, self);
  463. SET_VTABLE2(ALCwasapiPlayback, ALCwasapiProxy, self);
  464. ALCbackend_Construct(STATIC_CAST(ALCbackend, self), device);
  465. ALCwasapiProxy_Construct(STATIC_CAST(ALCwasapiProxy, self));
  466. self->devid = NULL;
  467. self->mmdev = NULL;
  468. self->client = NULL;
  469. self->render = NULL;
  470. self->NotifyEvent = NULL;
  471. self->MsgEvent = NULL;
  472. ATOMIC_INIT(&self->Padding, 0);
  473. ATOMIC_INIT(&self->killNow, 0);
  474. }
  475. static void ALCwasapiPlayback_Destruct(ALCwasapiPlayback *self)
  476. {
  477. if(self->MsgEvent)
  478. {
  479. ThreadRequest req = { self->MsgEvent, 0 };
  480. if(PostThreadMessage(ThreadID, WM_USER_CloseDevice, (WPARAM)&req, (LPARAM)STATIC_CAST(ALCwasapiProxy, self)))
  481. (void)WaitForResponse(&req);
  482. CloseHandle(self->MsgEvent);
  483. self->MsgEvent = NULL;
  484. }
  485. if(self->NotifyEvent)
  486. CloseHandle(self->NotifyEvent);
  487. self->NotifyEvent = NULL;
  488. free(self->devid);
  489. self->devid = NULL;
  490. if(self->NotifyEvent != NULL)
  491. CloseHandle(self->NotifyEvent);
  492. self->NotifyEvent = NULL;
  493. if(self->MsgEvent != NULL)
  494. CloseHandle(self->MsgEvent);
  495. self->MsgEvent = NULL;
  496. free(self->devid);
  497. self->devid = NULL;
  498. ALCwasapiProxy_Destruct(STATIC_CAST(ALCwasapiProxy, self));
  499. ALCbackend_Destruct(STATIC_CAST(ALCbackend, self));
  500. }
  501. FORCE_ALIGN static int ALCwasapiPlayback_mixerProc(void *arg)
  502. {
  503. ALCwasapiPlayback *self = arg;
  504. ALCdevice *device = STATIC_CAST(ALCbackend, self)->mDevice;
  505. UINT32 buffer_len, written;
  506. ALuint update_size, len;
  507. BYTE *buffer;
  508. HRESULT hr;
  509. hr = CoInitializeEx(NULL, COINIT_MULTITHREADED);
  510. if(FAILED(hr))
  511. {
  512. ERR("CoInitializeEx(NULL, COINIT_MULTITHREADED) failed: 0x%08lx\n", hr);
  513. V0(device->Backend,lock)();
  514. aluHandleDisconnect(device, "COM init failed: 0x%08lx", hr);
  515. V0(device->Backend,unlock)();
  516. return 1;
  517. }
  518. SetRTPriority();
  519. althrd_setname(althrd_current(), MIXER_THREAD_NAME);
  520. update_size = device->UpdateSize;
  521. buffer_len = update_size * device->NumUpdates;
  522. while(!ATOMIC_LOAD(&self->killNow, almemory_order_relaxed))
  523. {
  524. hr = IAudioClient_GetCurrentPadding(self->client, &written);
  525. if(FAILED(hr))
  526. {
  527. ERR("Failed to get padding: 0x%08lx\n", hr);
  528. V0(device->Backend,lock)();
  529. aluHandleDisconnect(device, "Failed to retrieve buffer padding: 0x%08lx", hr);
  530. V0(device->Backend,unlock)();
  531. break;
  532. }
  533. ATOMIC_STORE(&self->Padding, written, almemory_order_relaxed);
  534. len = buffer_len - written;
  535. if(len < update_size)
  536. {
  537. DWORD res;
  538. res = WaitForSingleObjectEx(self->NotifyEvent, 2000, FALSE);
  539. if(res != WAIT_OBJECT_0)
  540. ERR("WaitForSingleObjectEx error: 0x%lx\n", res);
  541. continue;
  542. }
  543. len -= len%update_size;
  544. hr = IAudioRenderClient_GetBuffer(self->render, len, &buffer);
  545. if(SUCCEEDED(hr))
  546. {
  547. ALCwasapiPlayback_lock(self);
  548. aluMixData(device, buffer, len);
  549. ATOMIC_STORE(&self->Padding, written + len, almemory_order_relaxed);
  550. ALCwasapiPlayback_unlock(self);
  551. hr = IAudioRenderClient_ReleaseBuffer(self->render, len, 0);
  552. }
  553. if(FAILED(hr))
  554. {
  555. ERR("Failed to buffer data: 0x%08lx\n", hr);
  556. V0(device->Backend,lock)();
  557. aluHandleDisconnect(device, "Failed to send playback samples: 0x%08lx", hr);
  558. V0(device->Backend,unlock)();
  559. break;
  560. }
  561. }
  562. ATOMIC_STORE(&self->Padding, 0, almemory_order_release);
  563. CoUninitialize();
  564. return 0;
  565. }
  566. static ALCboolean MakeExtensible(WAVEFORMATEXTENSIBLE *out, const WAVEFORMATEX *in)
  567. {
  568. memset(out, 0, sizeof(*out));
  569. if(in->wFormatTag == WAVE_FORMAT_EXTENSIBLE)
  570. *out = *(const WAVEFORMATEXTENSIBLE*)in;
  571. else if(in->wFormatTag == WAVE_FORMAT_PCM)
  572. {
  573. out->Format = *in;
  574. out->Format.wFormatTag = WAVE_FORMAT_EXTENSIBLE;
  575. out->Format.cbSize = sizeof(*out) - sizeof(*in);
  576. if(out->Format.nChannels == 1)
  577. out->dwChannelMask = MONO;
  578. else if(out->Format.nChannels == 2)
  579. out->dwChannelMask = STEREO;
  580. else
  581. ERR("Unhandled PCM channel count: %d\n", out->Format.nChannels);
  582. out->SubFormat = KSDATAFORMAT_SUBTYPE_PCM;
  583. }
  584. else if(in->wFormatTag == WAVE_FORMAT_IEEE_FLOAT)
  585. {
  586. out->Format = *in;
  587. out->Format.wFormatTag = WAVE_FORMAT_EXTENSIBLE;
  588. out->Format.cbSize = sizeof(*out) - sizeof(*in);
  589. if(out->Format.nChannels == 1)
  590. out->dwChannelMask = MONO;
  591. else if(out->Format.nChannels == 2)
  592. out->dwChannelMask = STEREO;
  593. else
  594. ERR("Unhandled IEEE float channel count: %d\n", out->Format.nChannels);
  595. out->SubFormat = KSDATAFORMAT_SUBTYPE_IEEE_FLOAT;
  596. }
  597. else
  598. {
  599. ERR("Unhandled format tag: 0x%04x\n", in->wFormatTag);
  600. return ALC_FALSE;
  601. }
  602. return ALC_TRUE;
  603. }
  604. static ALCenum ALCwasapiPlayback_open(ALCwasapiPlayback *self, const ALCchar *deviceName)
  605. {
  606. HRESULT hr = S_OK;
  607. self->NotifyEvent = CreateEventW(NULL, FALSE, FALSE, NULL);
  608. self->MsgEvent = CreateEventW(NULL, FALSE, FALSE, NULL);
  609. if(self->NotifyEvent == NULL || self->MsgEvent == NULL)
  610. {
  611. ERR("Failed to create message events: %lu\n", GetLastError());
  612. hr = E_FAIL;
  613. }
  614. if(SUCCEEDED(hr))
  615. {
  616. if(deviceName)
  617. {
  618. const DevMap *iter;
  619. if(VECTOR_SIZE(PlaybackDevices) == 0)
  620. {
  621. ThreadRequest req = { self->MsgEvent, 0 };
  622. if(PostThreadMessage(ThreadID, WM_USER_Enumerate, (WPARAM)&req, ALL_DEVICE_PROBE))
  623. (void)WaitForResponse(&req);
  624. }
  625. hr = E_FAIL;
  626. #define MATCH_NAME(i) (alstr_cmp_cstr((i)->name, deviceName) == 0 || \
  627. alstr_cmp_cstr((i)->endpoint_guid, deviceName) == 0)
  628. VECTOR_FIND_IF(iter, const DevMap, PlaybackDevices, MATCH_NAME);
  629. #undef MATCH_NAME
  630. if(iter == VECTOR_END(PlaybackDevices))
  631. {
  632. int len;
  633. if((len=MultiByteToWideChar(CP_UTF8, 0, deviceName, -1, NULL, 0)) > 0)
  634. {
  635. WCHAR *wname = calloc(sizeof(WCHAR), len);
  636. MultiByteToWideChar(CP_UTF8, 0, deviceName, -1, wname, len);
  637. #define MATCH_NAME(i) (wcscmp((i)->devid, wname) == 0)
  638. VECTOR_FIND_IF(iter, const DevMap, PlaybackDevices, MATCH_NAME);
  639. #undef MATCH_NAME
  640. free(wname);
  641. }
  642. }
  643. if(iter == VECTOR_END(PlaybackDevices))
  644. WARN("Failed to find device name matching \"%s\"\n", deviceName);
  645. else
  646. {
  647. ALCdevice *device = STATIC_CAST(ALCbackend,self)->mDevice;
  648. self->devid = strdupW(iter->devid);
  649. alstr_copy(&device->DeviceName, iter->name);
  650. hr = S_OK;
  651. }
  652. }
  653. }
  654. if(SUCCEEDED(hr))
  655. {
  656. ThreadRequest req = { self->MsgEvent, 0 };
  657. hr = E_FAIL;
  658. if(PostThreadMessage(ThreadID, WM_USER_OpenDevice, (WPARAM)&req, (LPARAM)STATIC_CAST(ALCwasapiProxy, self)))
  659. hr = WaitForResponse(&req);
  660. else
  661. ERR("Failed to post thread message: %lu\n", GetLastError());
  662. }
  663. if(FAILED(hr))
  664. {
  665. if(self->NotifyEvent != NULL)
  666. CloseHandle(self->NotifyEvent);
  667. self->NotifyEvent = NULL;
  668. if(self->MsgEvent != NULL)
  669. CloseHandle(self->MsgEvent);
  670. self->MsgEvent = NULL;
  671. free(self->devid);
  672. self->devid = NULL;
  673. ERR("Device init failed: 0x%08lx\n", hr);
  674. return ALC_INVALID_VALUE;
  675. }
  676. return ALC_NO_ERROR;
  677. }
  678. static HRESULT ALCwasapiPlayback_openProxy(ALCwasapiPlayback *self)
  679. {
  680. ALCdevice *device = STATIC_CAST(ALCbackend, self)->mDevice;
  681. void *ptr;
  682. HRESULT hr;
  683. hr = CoCreateInstance(&CLSID_MMDeviceEnumerator, NULL, CLSCTX_INPROC_SERVER, &IID_IMMDeviceEnumerator, &ptr);
  684. if(SUCCEEDED(hr))
  685. {
  686. IMMDeviceEnumerator *Enumerator = ptr;
  687. if(!self->devid)
  688. hr = IMMDeviceEnumerator_GetDefaultAudioEndpoint(Enumerator, eRender, eMultimedia, &self->mmdev);
  689. else
  690. hr = IMMDeviceEnumerator_GetDevice(Enumerator, self->devid, &self->mmdev);
  691. IMMDeviceEnumerator_Release(Enumerator);
  692. Enumerator = NULL;
  693. }
  694. if(SUCCEEDED(hr))
  695. hr = IMMDevice_Activate(self->mmdev, &IID_IAudioClient, CLSCTX_INPROC_SERVER, NULL, &ptr);
  696. if(SUCCEEDED(hr))
  697. {
  698. self->client = ptr;
  699. if(alstr_empty(device->DeviceName))
  700. get_device_name_and_guid(self->mmdev, &device->DeviceName, NULL);
  701. }
  702. if(FAILED(hr))
  703. {
  704. if(self->mmdev)
  705. IMMDevice_Release(self->mmdev);
  706. self->mmdev = NULL;
  707. }
  708. return hr;
  709. }
  710. static void ALCwasapiPlayback_closeProxy(ALCwasapiPlayback *self)
  711. {
  712. if(self->client)
  713. IAudioClient_Release(self->client);
  714. self->client = NULL;
  715. if(self->mmdev)
  716. IMMDevice_Release(self->mmdev);
  717. self->mmdev = NULL;
  718. }
  719. static ALCboolean ALCwasapiPlayback_reset(ALCwasapiPlayback *self)
  720. {
  721. ThreadRequest req = { self->MsgEvent, 0 };
  722. HRESULT hr = E_FAIL;
  723. if(PostThreadMessage(ThreadID, WM_USER_ResetDevice, (WPARAM)&req, (LPARAM)STATIC_CAST(ALCwasapiProxy, self)))
  724. hr = WaitForResponse(&req);
  725. return SUCCEEDED(hr) ? ALC_TRUE : ALC_FALSE;
  726. }
  727. static HRESULT ALCwasapiPlayback_resetProxy(ALCwasapiPlayback *self)
  728. {
  729. ALCdevice *device = STATIC_CAST(ALCbackend, self)->mDevice;
  730. EndpointFormFactor formfactor = UnknownFormFactor;
  731. WAVEFORMATEXTENSIBLE OutputType;
  732. WAVEFORMATEX *wfx = NULL;
  733. REFERENCE_TIME min_per, buf_time;
  734. UINT32 buffer_len, min_len;
  735. void *ptr = NULL;
  736. HRESULT hr;
  737. if(self->client)
  738. IAudioClient_Release(self->client);
  739. self->client = NULL;
  740. hr = IMMDevice_Activate(self->mmdev, &IID_IAudioClient, CLSCTX_INPROC_SERVER, NULL, &ptr);
  741. if(FAILED(hr))
  742. {
  743. ERR("Failed to reactivate audio client: 0x%08lx\n", hr);
  744. return hr;
  745. }
  746. self->client = ptr;
  747. hr = IAudioClient_GetMixFormat(self->client, &wfx);
  748. if(FAILED(hr))
  749. {
  750. ERR("Failed to get mix format: 0x%08lx\n", hr);
  751. return hr;
  752. }
  753. if(!MakeExtensible(&OutputType, wfx))
  754. {
  755. CoTaskMemFree(wfx);
  756. return E_FAIL;
  757. }
  758. CoTaskMemFree(wfx);
  759. wfx = NULL;
  760. buf_time = ScaleCeil(device->UpdateSize*device->NumUpdates, REFTIME_PER_SEC,
  761. device->Frequency);
  762. if(!(device->Flags&DEVICE_FREQUENCY_REQUEST))
  763. device->Frequency = OutputType.Format.nSamplesPerSec;
  764. if(!(device->Flags&DEVICE_CHANNELS_REQUEST))
  765. {
  766. if(OutputType.Format.nChannels == 1 && OutputType.dwChannelMask == MONO)
  767. device->FmtChans = DevFmtMono;
  768. else if(OutputType.Format.nChannels == 2 && OutputType.dwChannelMask == STEREO)
  769. device->FmtChans = DevFmtStereo;
  770. else if(OutputType.Format.nChannels == 4 && OutputType.dwChannelMask == QUAD)
  771. device->FmtChans = DevFmtQuad;
  772. else if(OutputType.Format.nChannels == 6 && OutputType.dwChannelMask == X5DOT1)
  773. device->FmtChans = DevFmtX51;
  774. else if(OutputType.Format.nChannels == 6 && OutputType.dwChannelMask == X5DOT1REAR)
  775. device->FmtChans = DevFmtX51Rear;
  776. else if(OutputType.Format.nChannels == 7 && OutputType.dwChannelMask == X6DOT1)
  777. device->FmtChans = DevFmtX61;
  778. else if(OutputType.Format.nChannels == 8 && (OutputType.dwChannelMask == X7DOT1 || OutputType.dwChannelMask == X7DOT1_WIDE))
  779. device->FmtChans = DevFmtX71;
  780. else
  781. ERR("Unhandled channel config: %d -- 0x%08lx\n", OutputType.Format.nChannels, OutputType.dwChannelMask);
  782. }
  783. switch(device->FmtChans)
  784. {
  785. case DevFmtMono:
  786. OutputType.Format.nChannels = 1;
  787. OutputType.dwChannelMask = MONO;
  788. break;
  789. case DevFmtAmbi3D:
  790. device->FmtChans = DevFmtStereo;
  791. /*fall-through*/
  792. case DevFmtStereo:
  793. OutputType.Format.nChannels = 2;
  794. OutputType.dwChannelMask = STEREO;
  795. break;
  796. case DevFmtQuad:
  797. OutputType.Format.nChannels = 4;
  798. OutputType.dwChannelMask = QUAD;
  799. break;
  800. case DevFmtX51:
  801. OutputType.Format.nChannels = 6;
  802. OutputType.dwChannelMask = X5DOT1;
  803. break;
  804. case DevFmtX51Rear:
  805. OutputType.Format.nChannels = 6;
  806. OutputType.dwChannelMask = X5DOT1REAR;
  807. break;
  808. case DevFmtX61:
  809. OutputType.Format.nChannels = 7;
  810. OutputType.dwChannelMask = X6DOT1;
  811. break;
  812. case DevFmtX71:
  813. OutputType.Format.nChannels = 8;
  814. OutputType.dwChannelMask = X7DOT1;
  815. break;
  816. }
  817. switch(device->FmtType)
  818. {
  819. case DevFmtByte:
  820. device->FmtType = DevFmtUByte;
  821. /* fall-through */
  822. case DevFmtUByte:
  823. OutputType.Format.wBitsPerSample = 8;
  824. OutputType.Samples.wValidBitsPerSample = 8;
  825. OutputType.SubFormat = KSDATAFORMAT_SUBTYPE_PCM;
  826. break;
  827. case DevFmtUShort:
  828. device->FmtType = DevFmtShort;
  829. /* fall-through */
  830. case DevFmtShort:
  831. OutputType.Format.wBitsPerSample = 16;
  832. OutputType.Samples.wValidBitsPerSample = 16;
  833. OutputType.SubFormat = KSDATAFORMAT_SUBTYPE_PCM;
  834. break;
  835. case DevFmtUInt:
  836. device->FmtType = DevFmtInt;
  837. /* fall-through */
  838. case DevFmtInt:
  839. OutputType.Format.wBitsPerSample = 32;
  840. OutputType.Samples.wValidBitsPerSample = 32;
  841. OutputType.SubFormat = KSDATAFORMAT_SUBTYPE_PCM;
  842. break;
  843. case DevFmtFloat:
  844. OutputType.Format.wBitsPerSample = 32;
  845. OutputType.Samples.wValidBitsPerSample = 32;
  846. OutputType.SubFormat = KSDATAFORMAT_SUBTYPE_IEEE_FLOAT;
  847. break;
  848. }
  849. OutputType.Format.nSamplesPerSec = device->Frequency;
  850. OutputType.Format.nBlockAlign = OutputType.Format.nChannels *
  851. OutputType.Format.wBitsPerSample / 8;
  852. OutputType.Format.nAvgBytesPerSec = OutputType.Format.nSamplesPerSec *
  853. OutputType.Format.nBlockAlign;
  854. hr = IAudioClient_IsFormatSupported(self->client, AUDCLNT_SHAREMODE_SHARED, &OutputType.Format, &wfx);
  855. if(FAILED(hr))
  856. {
  857. ERR("Failed to check format support: 0x%08lx\n", hr);
  858. hr = IAudioClient_GetMixFormat(self->client, &wfx);
  859. }
  860. if(FAILED(hr))
  861. {
  862. ERR("Failed to find a supported format: 0x%08lx\n", hr);
  863. return hr;
  864. }
  865. if(wfx != NULL)
  866. {
  867. if(!MakeExtensible(&OutputType, wfx))
  868. {
  869. CoTaskMemFree(wfx);
  870. return E_FAIL;
  871. }
  872. CoTaskMemFree(wfx);
  873. wfx = NULL;
  874. device->Frequency = OutputType.Format.nSamplesPerSec;
  875. if(OutputType.Format.nChannels == 1 && OutputType.dwChannelMask == MONO)
  876. device->FmtChans = DevFmtMono;
  877. else if(OutputType.Format.nChannels == 2 && OutputType.dwChannelMask == STEREO)
  878. device->FmtChans = DevFmtStereo;
  879. else if(OutputType.Format.nChannels == 4 && OutputType.dwChannelMask == QUAD)
  880. device->FmtChans = DevFmtQuad;
  881. else if(OutputType.Format.nChannels == 6 && OutputType.dwChannelMask == X5DOT1)
  882. device->FmtChans = DevFmtX51;
  883. else if(OutputType.Format.nChannels == 6 && OutputType.dwChannelMask == X5DOT1REAR)
  884. device->FmtChans = DevFmtX51Rear;
  885. else if(OutputType.Format.nChannels == 7 && OutputType.dwChannelMask == X6DOT1)
  886. device->FmtChans = DevFmtX61;
  887. else if(OutputType.Format.nChannels == 8 && (OutputType.dwChannelMask == X7DOT1 || OutputType.dwChannelMask == X7DOT1_WIDE))
  888. device->FmtChans = DevFmtX71;
  889. else
  890. {
  891. ERR("Unhandled extensible channels: %d -- 0x%08lx\n", OutputType.Format.nChannels, OutputType.dwChannelMask);
  892. device->FmtChans = DevFmtStereo;
  893. OutputType.Format.nChannels = 2;
  894. OutputType.dwChannelMask = STEREO;
  895. }
  896. if(IsEqualGUID(&OutputType.SubFormat, &KSDATAFORMAT_SUBTYPE_PCM))
  897. {
  898. if(OutputType.Format.wBitsPerSample == 8)
  899. device->FmtType = DevFmtUByte;
  900. else if(OutputType.Format.wBitsPerSample == 16)
  901. device->FmtType = DevFmtShort;
  902. else if(OutputType.Format.wBitsPerSample == 32)
  903. device->FmtType = DevFmtInt;
  904. else
  905. {
  906. device->FmtType = DevFmtShort;
  907. OutputType.Format.wBitsPerSample = 16;
  908. }
  909. }
  910. else if(IsEqualGUID(&OutputType.SubFormat, &KSDATAFORMAT_SUBTYPE_IEEE_FLOAT))
  911. {
  912. device->FmtType = DevFmtFloat;
  913. OutputType.Format.wBitsPerSample = 32;
  914. }
  915. else
  916. {
  917. ERR("Unhandled format sub-type\n");
  918. device->FmtType = DevFmtShort;
  919. OutputType.Format.wBitsPerSample = 16;
  920. OutputType.SubFormat = KSDATAFORMAT_SUBTYPE_PCM;
  921. }
  922. OutputType.Samples.wValidBitsPerSample = OutputType.Format.wBitsPerSample;
  923. }
  924. get_device_formfactor(self->mmdev, &formfactor);
  925. device->IsHeadphones = (device->FmtChans == DevFmtStereo &&
  926. (formfactor == Headphones || formfactor == Headset)
  927. );
  928. SetDefaultWFXChannelOrder(device);
  929. hr = IAudioClient_Initialize(self->client, AUDCLNT_SHAREMODE_SHARED,
  930. AUDCLNT_STREAMFLAGS_EVENTCALLBACK,
  931. buf_time, 0, &OutputType.Format, NULL);
  932. if(FAILED(hr))
  933. {
  934. ERR("Failed to initialize audio client: 0x%08lx\n", hr);
  935. return hr;
  936. }
  937. hr = IAudioClient_GetDevicePeriod(self->client, &min_per, NULL);
  938. if(SUCCEEDED(hr))
  939. {
  940. min_len = (UINT32)ScaleCeil(min_per, device->Frequency, REFTIME_PER_SEC);
  941. /* Find the nearest multiple of the period size to the update size */
  942. if(min_len < device->UpdateSize)
  943. min_len *= (device->UpdateSize + min_len/2)/min_len;
  944. hr = IAudioClient_GetBufferSize(self->client, &buffer_len);
  945. }
  946. if(FAILED(hr))
  947. {
  948. ERR("Failed to get audio buffer info: 0x%08lx\n", hr);
  949. return hr;
  950. }
  951. device->UpdateSize = min_len;
  952. device->NumUpdates = buffer_len / device->UpdateSize;
  953. if(device->NumUpdates <= 1)
  954. {
  955. ERR("Audio client returned buffer_len < period*2; expect break up\n");
  956. device->NumUpdates = 2;
  957. device->UpdateSize = buffer_len / device->NumUpdates;
  958. }
  959. hr = IAudioClient_SetEventHandle(self->client, self->NotifyEvent);
  960. if(FAILED(hr))
  961. {
  962. ERR("Failed to set event handle: 0x%08lx\n", hr);
  963. return hr;
  964. }
  965. return hr;
  966. }
  967. static ALCboolean ALCwasapiPlayback_start(ALCwasapiPlayback *self)
  968. {
  969. ThreadRequest req = { self->MsgEvent, 0 };
  970. HRESULT hr = E_FAIL;
  971. if(PostThreadMessage(ThreadID, WM_USER_StartDevice, (WPARAM)&req, (LPARAM)STATIC_CAST(ALCwasapiProxy, self)))
  972. hr = WaitForResponse(&req);
  973. return SUCCEEDED(hr) ? ALC_TRUE : ALC_FALSE;
  974. }
  975. static HRESULT ALCwasapiPlayback_startProxy(ALCwasapiPlayback *self)
  976. {
  977. HRESULT hr;
  978. void *ptr;
  979. ResetEvent(self->NotifyEvent);
  980. hr = IAudioClient_Start(self->client);
  981. if(FAILED(hr))
  982. ERR("Failed to start audio client: 0x%08lx\n", hr);
  983. if(SUCCEEDED(hr))
  984. hr = IAudioClient_GetService(self->client, &IID_IAudioRenderClient, &ptr);
  985. if(SUCCEEDED(hr))
  986. {
  987. self->render = ptr;
  988. ATOMIC_STORE(&self->killNow, 0, almemory_order_release);
  989. if(althrd_create(&self->thread, ALCwasapiPlayback_mixerProc, self) != althrd_success)
  990. {
  991. if(self->render)
  992. IAudioRenderClient_Release(self->render);
  993. self->render = NULL;
  994. IAudioClient_Stop(self->client);
  995. ERR("Failed to start thread\n");
  996. hr = E_FAIL;
  997. }
  998. }
  999. return hr;
  1000. }
  1001. static void ALCwasapiPlayback_stop(ALCwasapiPlayback *self)
  1002. {
  1003. ThreadRequest req = { self->MsgEvent, 0 };
  1004. if(PostThreadMessage(ThreadID, WM_USER_StopDevice, (WPARAM)&req, (LPARAM)STATIC_CAST(ALCwasapiProxy, self)))
  1005. (void)WaitForResponse(&req);
  1006. }
  1007. static void ALCwasapiPlayback_stopProxy(ALCwasapiPlayback *self)
  1008. {
  1009. int res;
  1010. if(!self->render)
  1011. return;
  1012. ATOMIC_STORE_SEQ(&self->killNow, 1);
  1013. althrd_join(self->thread, &res);
  1014. IAudioRenderClient_Release(self->render);
  1015. self->render = NULL;
  1016. IAudioClient_Stop(self->client);
  1017. }
  1018. static ClockLatency ALCwasapiPlayback_getClockLatency(ALCwasapiPlayback *self)
  1019. {
  1020. ALCdevice *device = STATIC_CAST(ALCbackend, self)->mDevice;
  1021. ClockLatency ret;
  1022. ALCwasapiPlayback_lock(self);
  1023. ret.ClockTime = GetDeviceClockTime(device);
  1024. ret.Latency = ATOMIC_LOAD(&self->Padding, almemory_order_relaxed) * DEVICE_CLOCK_RES /
  1025. device->Frequency;
  1026. ALCwasapiPlayback_unlock(self);
  1027. return ret;
  1028. }
  1029. typedef struct ALCwasapiCapture {
  1030. DERIVE_FROM_TYPE(ALCbackend);
  1031. DERIVE_FROM_TYPE(ALCwasapiProxy);
  1032. WCHAR *devid;
  1033. IMMDevice *mmdev;
  1034. IAudioClient *client;
  1035. IAudioCaptureClient *capture;
  1036. HANDLE NotifyEvent;
  1037. HANDLE MsgEvent;
  1038. ChannelConverter *ChannelConv;
  1039. SampleConverter *SampleConv;
  1040. ll_ringbuffer_t *Ring;
  1041. ATOMIC(int) killNow;
  1042. althrd_t thread;
  1043. } ALCwasapiCapture;
  1044. static int ALCwasapiCapture_recordProc(void *arg);
  1045. static void ALCwasapiCapture_Construct(ALCwasapiCapture *self, ALCdevice *device);
  1046. static void ALCwasapiCapture_Destruct(ALCwasapiCapture *self);
  1047. static ALCenum ALCwasapiCapture_open(ALCwasapiCapture *self, const ALCchar *name);
  1048. static HRESULT ALCwasapiCapture_openProxy(ALCwasapiCapture *self);
  1049. static void ALCwasapiCapture_closeProxy(ALCwasapiCapture *self);
  1050. static DECLARE_FORWARD(ALCwasapiCapture, ALCbackend, ALCboolean, reset)
  1051. static HRESULT ALCwasapiCapture_resetProxy(ALCwasapiCapture *self);
  1052. static ALCboolean ALCwasapiCapture_start(ALCwasapiCapture *self);
  1053. static HRESULT ALCwasapiCapture_startProxy(ALCwasapiCapture *self);
  1054. static void ALCwasapiCapture_stop(ALCwasapiCapture *self);
  1055. static void ALCwasapiCapture_stopProxy(ALCwasapiCapture *self);
  1056. static ALCenum ALCwasapiCapture_captureSamples(ALCwasapiCapture *self, ALCvoid *buffer, ALCuint samples);
  1057. static ALuint ALCwasapiCapture_availableSamples(ALCwasapiCapture *self);
  1058. static DECLARE_FORWARD(ALCwasapiCapture, ALCbackend, ClockLatency, getClockLatency)
  1059. static DECLARE_FORWARD(ALCwasapiCapture, ALCbackend, void, lock)
  1060. static DECLARE_FORWARD(ALCwasapiCapture, ALCbackend, void, unlock)
  1061. DECLARE_DEFAULT_ALLOCATORS(ALCwasapiCapture)
  1062. DEFINE_ALCWASAPIPROXY_VTABLE(ALCwasapiCapture);
  1063. DEFINE_ALCBACKEND_VTABLE(ALCwasapiCapture);
  1064. static void ALCwasapiCapture_Construct(ALCwasapiCapture *self, ALCdevice *device)
  1065. {
  1066. SET_VTABLE2(ALCwasapiCapture, ALCbackend, self);
  1067. SET_VTABLE2(ALCwasapiCapture, ALCwasapiProxy, self);
  1068. ALCbackend_Construct(STATIC_CAST(ALCbackend, self), device);
  1069. ALCwasapiProxy_Construct(STATIC_CAST(ALCwasapiProxy, self));
  1070. self->devid = NULL;
  1071. self->mmdev = NULL;
  1072. self->client = NULL;
  1073. self->capture = NULL;
  1074. self->NotifyEvent = NULL;
  1075. self->MsgEvent = NULL;
  1076. self->ChannelConv = NULL;
  1077. self->SampleConv = NULL;
  1078. self->Ring = NULL;
  1079. ATOMIC_INIT(&self->killNow, 0);
  1080. }
  1081. static void ALCwasapiCapture_Destruct(ALCwasapiCapture *self)
  1082. {
  1083. if(self->MsgEvent)
  1084. {
  1085. ThreadRequest req = { self->MsgEvent, 0 };
  1086. if(PostThreadMessage(ThreadID, WM_USER_CloseDevice, (WPARAM)&req, (LPARAM)STATIC_CAST(ALCwasapiProxy, self)))
  1087. (void)WaitForResponse(&req);
  1088. CloseHandle(self->MsgEvent);
  1089. self->MsgEvent = NULL;
  1090. }
  1091. if(self->NotifyEvent != NULL)
  1092. CloseHandle(self->NotifyEvent);
  1093. self->NotifyEvent = NULL;
  1094. ll_ringbuffer_free(self->Ring);
  1095. self->Ring = NULL;
  1096. DestroySampleConverter(&self->SampleConv);
  1097. DestroyChannelConverter(&self->ChannelConv);
  1098. free(self->devid);
  1099. self->devid = NULL;
  1100. ALCwasapiProxy_Destruct(STATIC_CAST(ALCwasapiProxy, self));
  1101. ALCbackend_Destruct(STATIC_CAST(ALCbackend, self));
  1102. }
  1103. FORCE_ALIGN int ALCwasapiCapture_recordProc(void *arg)
  1104. {
  1105. ALCwasapiCapture *self = arg;
  1106. ALCdevice *device = STATIC_CAST(ALCbackend, self)->mDevice;
  1107. ALfloat *samples = NULL;
  1108. size_t samplesmax = 0;
  1109. HRESULT hr;
  1110. hr = CoInitializeEx(NULL, COINIT_MULTITHREADED);
  1111. if(FAILED(hr))
  1112. {
  1113. ERR("CoInitializeEx(NULL, COINIT_MULTITHREADED) failed: 0x%08lx\n", hr);
  1114. V0(device->Backend,lock)();
  1115. aluHandleDisconnect(device, "COM init failed: 0x%08lx", hr);
  1116. V0(device->Backend,unlock)();
  1117. return 1;
  1118. }
  1119. althrd_setname(althrd_current(), RECORD_THREAD_NAME);
  1120. while(!ATOMIC_LOAD(&self->killNow, almemory_order_relaxed))
  1121. {
  1122. UINT32 avail;
  1123. DWORD res;
  1124. hr = IAudioCaptureClient_GetNextPacketSize(self->capture, &avail);
  1125. if(FAILED(hr))
  1126. ERR("Failed to get next packet size: 0x%08lx\n", hr);
  1127. else if(avail > 0)
  1128. {
  1129. UINT32 numsamples;
  1130. DWORD flags;
  1131. BYTE *rdata;
  1132. hr = IAudioCaptureClient_GetBuffer(self->capture,
  1133. &rdata, &numsamples, &flags, NULL, NULL
  1134. );
  1135. if(FAILED(hr))
  1136. ERR("Failed to get capture buffer: 0x%08lx\n", hr);
  1137. else
  1138. {
  1139. ll_ringbuffer_data_t data[2];
  1140. size_t dstframes = 0;
  1141. if(self->ChannelConv)
  1142. {
  1143. if(samplesmax < numsamples)
  1144. {
  1145. size_t newmax = RoundUp(numsamples, 4096);
  1146. ALfloat *tmp = al_calloc(DEF_ALIGN, newmax*2*sizeof(ALfloat));
  1147. al_free(samples);
  1148. samples = tmp;
  1149. samplesmax = newmax;
  1150. }
  1151. ChannelConverterInput(self->ChannelConv, rdata, samples, numsamples);
  1152. rdata = (BYTE*)samples;
  1153. }
  1154. ll_ringbuffer_get_write_vector(self->Ring, data);
  1155. if(self->SampleConv)
  1156. {
  1157. const ALvoid *srcdata = rdata;
  1158. ALsizei srcframes = numsamples;
  1159. dstframes = SampleConverterInput(self->SampleConv,
  1160. &srcdata, &srcframes, data[0].buf, (ALsizei)minz(data[0].len, INT_MAX)
  1161. );
  1162. if(srcframes > 0 && dstframes == data[0].len && data[1].len > 0)
  1163. {
  1164. /* If some source samples remain, all of the first dest
  1165. * block was filled, and there's space in the second
  1166. * dest block, do another run for the second block.
  1167. */
  1168. dstframes += SampleConverterInput(self->SampleConv,
  1169. &srcdata, &srcframes, data[1].buf, (ALsizei)minz(data[1].len, INT_MAX)
  1170. );
  1171. }
  1172. }
  1173. else
  1174. {
  1175. ALuint framesize = FrameSizeFromDevFmt(device->FmtChans, device->FmtType,
  1176. device->AmbiOrder);
  1177. size_t len1 = minz(data[0].len, numsamples);
  1178. size_t len2 = minz(data[1].len, numsamples-len1);
  1179. memcpy(data[0].buf, rdata, len1*framesize);
  1180. if(len2 > 0)
  1181. memcpy(data[1].buf, rdata+len1*framesize, len2*framesize);
  1182. dstframes = len1 + len2;
  1183. }
  1184. ll_ringbuffer_write_advance(self->Ring, dstframes);
  1185. hr = IAudioCaptureClient_ReleaseBuffer(self->capture, numsamples);
  1186. if(FAILED(hr)) ERR("Failed to release capture buffer: 0x%08lx\n", hr);
  1187. }
  1188. }
  1189. if(FAILED(hr))
  1190. {
  1191. V0(device->Backend,lock)();
  1192. aluHandleDisconnect(device, "Failed to capture samples: 0x%08lx", hr);
  1193. V0(device->Backend,unlock)();
  1194. break;
  1195. }
  1196. res = WaitForSingleObjectEx(self->NotifyEvent, 2000, FALSE);
  1197. if(res != WAIT_OBJECT_0)
  1198. ERR("WaitForSingleObjectEx error: 0x%lx\n", res);
  1199. }
  1200. al_free(samples);
  1201. samples = NULL;
  1202. samplesmax = 0;
  1203. CoUninitialize();
  1204. return 0;
  1205. }
  1206. static ALCenum ALCwasapiCapture_open(ALCwasapiCapture *self, const ALCchar *deviceName)
  1207. {
  1208. HRESULT hr = S_OK;
  1209. self->NotifyEvent = CreateEventW(NULL, FALSE, FALSE, NULL);
  1210. self->MsgEvent = CreateEventW(NULL, FALSE, FALSE, NULL);
  1211. if(self->NotifyEvent == NULL || self->MsgEvent == NULL)
  1212. {
  1213. ERR("Failed to create message events: %lu\n", GetLastError());
  1214. hr = E_FAIL;
  1215. }
  1216. if(SUCCEEDED(hr))
  1217. {
  1218. if(deviceName)
  1219. {
  1220. const DevMap *iter;
  1221. if(VECTOR_SIZE(CaptureDevices) == 0)
  1222. {
  1223. ThreadRequest req = { self->MsgEvent, 0 };
  1224. if(PostThreadMessage(ThreadID, WM_USER_Enumerate, (WPARAM)&req, CAPTURE_DEVICE_PROBE))
  1225. (void)WaitForResponse(&req);
  1226. }
  1227. hr = E_FAIL;
  1228. #define MATCH_NAME(i) (alstr_cmp_cstr((i)->name, deviceName) == 0 || \
  1229. alstr_cmp_cstr((i)->endpoint_guid, deviceName) == 0)
  1230. VECTOR_FIND_IF(iter, const DevMap, CaptureDevices, MATCH_NAME);
  1231. #undef MATCH_NAME
  1232. if(iter == VECTOR_END(CaptureDevices))
  1233. {
  1234. int len;
  1235. if((len=MultiByteToWideChar(CP_UTF8, 0, deviceName, -1, NULL, 0)) > 0)
  1236. {
  1237. WCHAR *wname = calloc(sizeof(WCHAR), len);
  1238. MultiByteToWideChar(CP_UTF8, 0, deviceName, -1, wname, len);
  1239. #define MATCH_NAME(i) (wcscmp((i)->devid, wname) == 0)
  1240. VECTOR_FIND_IF(iter, const DevMap, CaptureDevices, MATCH_NAME);
  1241. #undef MATCH_NAME
  1242. free(wname);
  1243. }
  1244. }
  1245. if(iter == VECTOR_END(CaptureDevices))
  1246. WARN("Failed to find device name matching \"%s\"\n", deviceName);
  1247. else
  1248. {
  1249. ALCdevice *device = STATIC_CAST(ALCbackend,self)->mDevice;
  1250. self->devid = strdupW(iter->devid);
  1251. alstr_copy(&device->DeviceName, iter->name);
  1252. hr = S_OK;
  1253. }
  1254. }
  1255. }
  1256. if(SUCCEEDED(hr))
  1257. {
  1258. ThreadRequest req = { self->MsgEvent, 0 };
  1259. hr = E_FAIL;
  1260. if(PostThreadMessage(ThreadID, WM_USER_OpenDevice, (WPARAM)&req, (LPARAM)STATIC_CAST(ALCwasapiProxy, self)))
  1261. hr = WaitForResponse(&req);
  1262. else
  1263. ERR("Failed to post thread message: %lu\n", GetLastError());
  1264. }
  1265. if(FAILED(hr))
  1266. {
  1267. if(self->NotifyEvent != NULL)
  1268. CloseHandle(self->NotifyEvent);
  1269. self->NotifyEvent = NULL;
  1270. if(self->MsgEvent != NULL)
  1271. CloseHandle(self->MsgEvent);
  1272. self->MsgEvent = NULL;
  1273. free(self->devid);
  1274. self->devid = NULL;
  1275. ERR("Device init failed: 0x%08lx\n", hr);
  1276. return ALC_INVALID_VALUE;
  1277. }
  1278. else
  1279. {
  1280. ThreadRequest req = { self->MsgEvent, 0 };
  1281. hr = E_FAIL;
  1282. if(PostThreadMessage(ThreadID, WM_USER_ResetDevice, (WPARAM)&req, (LPARAM)STATIC_CAST(ALCwasapiProxy, self)))
  1283. hr = WaitForResponse(&req);
  1284. else
  1285. ERR("Failed to post thread message: %lu\n", GetLastError());
  1286. if(FAILED(hr))
  1287. {
  1288. if(hr == E_OUTOFMEMORY)
  1289. return ALC_OUT_OF_MEMORY;
  1290. return ALC_INVALID_VALUE;
  1291. }
  1292. }
  1293. return ALC_NO_ERROR;
  1294. }
  1295. static HRESULT ALCwasapiCapture_openProxy(ALCwasapiCapture *self)
  1296. {
  1297. ALCdevice *device = STATIC_CAST(ALCbackend, self)->mDevice;
  1298. void *ptr;
  1299. HRESULT hr;
  1300. hr = CoCreateInstance(&CLSID_MMDeviceEnumerator, NULL, CLSCTX_INPROC_SERVER, &IID_IMMDeviceEnumerator, &ptr);
  1301. if(SUCCEEDED(hr))
  1302. {
  1303. IMMDeviceEnumerator *Enumerator = ptr;
  1304. if(!self->devid)
  1305. hr = IMMDeviceEnumerator_GetDefaultAudioEndpoint(Enumerator, eCapture, eMultimedia, &self->mmdev);
  1306. else
  1307. hr = IMMDeviceEnumerator_GetDevice(Enumerator, self->devid, &self->mmdev);
  1308. IMMDeviceEnumerator_Release(Enumerator);
  1309. Enumerator = NULL;
  1310. }
  1311. if(SUCCEEDED(hr))
  1312. hr = IMMDevice_Activate(self->mmdev, &IID_IAudioClient, CLSCTX_INPROC_SERVER, NULL, &ptr);
  1313. if(SUCCEEDED(hr))
  1314. {
  1315. self->client = ptr;
  1316. if(alstr_empty(device->DeviceName))
  1317. get_device_name_and_guid(self->mmdev, &device->DeviceName, NULL);
  1318. }
  1319. if(FAILED(hr))
  1320. {
  1321. if(self->mmdev)
  1322. IMMDevice_Release(self->mmdev);
  1323. self->mmdev = NULL;
  1324. }
  1325. return hr;
  1326. }
  1327. static void ALCwasapiCapture_closeProxy(ALCwasapiCapture *self)
  1328. {
  1329. if(self->client)
  1330. IAudioClient_Release(self->client);
  1331. self->client = NULL;
  1332. if(self->mmdev)
  1333. IMMDevice_Release(self->mmdev);
  1334. self->mmdev = NULL;
  1335. }
  1336. static HRESULT ALCwasapiCapture_resetProxy(ALCwasapiCapture *self)
  1337. {
  1338. ALCdevice *device = STATIC_CAST(ALCbackend, self)->mDevice;
  1339. WAVEFORMATEXTENSIBLE OutputType;
  1340. WAVEFORMATEX *wfx = NULL;
  1341. enum DevFmtType srcType;
  1342. REFERENCE_TIME buf_time;
  1343. UINT32 buffer_len;
  1344. void *ptr = NULL;
  1345. HRESULT hr;
  1346. if(self->client)
  1347. IAudioClient_Release(self->client);
  1348. self->client = NULL;
  1349. hr = IMMDevice_Activate(self->mmdev, &IID_IAudioClient, CLSCTX_INPROC_SERVER, NULL, &ptr);
  1350. if(FAILED(hr))
  1351. {
  1352. ERR("Failed to reactivate audio client: 0x%08lx\n", hr);
  1353. return hr;
  1354. }
  1355. self->client = ptr;
  1356. buf_time = ScaleCeil(device->UpdateSize*device->NumUpdates, REFTIME_PER_SEC,
  1357. device->Frequency);
  1358. // Make sure buffer is at least 100ms in size
  1359. buf_time = maxu64(buf_time, REFTIME_PER_SEC/10);
  1360. device->UpdateSize = (ALuint)ScaleCeil(buf_time, device->Frequency, REFTIME_PER_SEC) /
  1361. device->NumUpdates;
  1362. OutputType.Format.wFormatTag = WAVE_FORMAT_EXTENSIBLE;
  1363. switch(device->FmtChans)
  1364. {
  1365. case DevFmtMono:
  1366. OutputType.Format.nChannels = 1;
  1367. OutputType.dwChannelMask = MONO;
  1368. break;
  1369. case DevFmtStereo:
  1370. OutputType.Format.nChannels = 2;
  1371. OutputType.dwChannelMask = STEREO;
  1372. break;
  1373. case DevFmtQuad:
  1374. OutputType.Format.nChannels = 4;
  1375. OutputType.dwChannelMask = QUAD;
  1376. break;
  1377. case DevFmtX51:
  1378. OutputType.Format.nChannels = 6;
  1379. OutputType.dwChannelMask = X5DOT1;
  1380. break;
  1381. case DevFmtX51Rear:
  1382. OutputType.Format.nChannels = 6;
  1383. OutputType.dwChannelMask = X5DOT1REAR;
  1384. break;
  1385. case DevFmtX61:
  1386. OutputType.Format.nChannels = 7;
  1387. OutputType.dwChannelMask = X6DOT1;
  1388. break;
  1389. case DevFmtX71:
  1390. OutputType.Format.nChannels = 8;
  1391. OutputType.dwChannelMask = X7DOT1;
  1392. break;
  1393. case DevFmtAmbi3D:
  1394. return E_FAIL;
  1395. }
  1396. switch(device->FmtType)
  1397. {
  1398. /* NOTE: Signedness doesn't matter, the converter will handle it. */
  1399. case DevFmtByte:
  1400. case DevFmtUByte:
  1401. OutputType.Format.wBitsPerSample = 8;
  1402. OutputType.SubFormat = KSDATAFORMAT_SUBTYPE_PCM;
  1403. break;
  1404. case DevFmtShort:
  1405. case DevFmtUShort:
  1406. OutputType.Format.wBitsPerSample = 16;
  1407. OutputType.SubFormat = KSDATAFORMAT_SUBTYPE_PCM;
  1408. break;
  1409. case DevFmtInt:
  1410. case DevFmtUInt:
  1411. OutputType.Format.wBitsPerSample = 32;
  1412. OutputType.SubFormat = KSDATAFORMAT_SUBTYPE_PCM;
  1413. break;
  1414. case DevFmtFloat:
  1415. OutputType.Format.wBitsPerSample = 32;
  1416. OutputType.SubFormat = KSDATAFORMAT_SUBTYPE_IEEE_FLOAT;
  1417. break;
  1418. }
  1419. OutputType.Samples.wValidBitsPerSample = OutputType.Format.wBitsPerSample;
  1420. OutputType.Format.nSamplesPerSec = device->Frequency;
  1421. OutputType.Format.nBlockAlign = OutputType.Format.nChannels *
  1422. OutputType.Format.wBitsPerSample / 8;
  1423. OutputType.Format.nAvgBytesPerSec = OutputType.Format.nSamplesPerSec *
  1424. OutputType.Format.nBlockAlign;
  1425. OutputType.Format.cbSize = sizeof(OutputType) - sizeof(OutputType.Format);
  1426. hr = IAudioClient_IsFormatSupported(self->client,
  1427. AUDCLNT_SHAREMODE_SHARED, &OutputType.Format, &wfx
  1428. );
  1429. if(FAILED(hr))
  1430. {
  1431. ERR("Failed to check format support: 0x%08lx\n", hr);
  1432. return hr;
  1433. }
  1434. DestroySampleConverter(&self->SampleConv);
  1435. DestroyChannelConverter(&self->ChannelConv);
  1436. if(wfx != NULL)
  1437. {
  1438. if(!(wfx->nChannels == OutputType.Format.nChannels ||
  1439. (wfx->nChannels == 1 && OutputType.Format.nChannels == 2) ||
  1440. (wfx->nChannels == 2 && OutputType.Format.nChannels == 1)))
  1441. {
  1442. ERR("Failed to get matching format, wanted: %s %s %uhz, got: %d channel%s %d-bit %luhz\n",
  1443. DevFmtChannelsString(device->FmtChans), DevFmtTypeString(device->FmtType),
  1444. device->Frequency, wfx->nChannels, (wfx->nChannels==1)?"":"s", wfx->wBitsPerSample,
  1445. wfx->nSamplesPerSec);
  1446. CoTaskMemFree(wfx);
  1447. return E_FAIL;
  1448. }
  1449. if(!MakeExtensible(&OutputType, wfx))
  1450. {
  1451. CoTaskMemFree(wfx);
  1452. return E_FAIL;
  1453. }
  1454. CoTaskMemFree(wfx);
  1455. wfx = NULL;
  1456. }
  1457. if(IsEqualGUID(&OutputType.SubFormat, &KSDATAFORMAT_SUBTYPE_PCM))
  1458. {
  1459. if(OutputType.Format.wBitsPerSample == 8)
  1460. srcType = DevFmtUByte;
  1461. else if(OutputType.Format.wBitsPerSample == 16)
  1462. srcType = DevFmtShort;
  1463. else if(OutputType.Format.wBitsPerSample == 32)
  1464. srcType = DevFmtInt;
  1465. else
  1466. {
  1467. ERR("Unhandled integer bit depth: %d\n", OutputType.Format.wBitsPerSample);
  1468. return E_FAIL;
  1469. }
  1470. }
  1471. else if(IsEqualGUID(&OutputType.SubFormat, &KSDATAFORMAT_SUBTYPE_IEEE_FLOAT))
  1472. {
  1473. if(OutputType.Format.wBitsPerSample == 32)
  1474. srcType = DevFmtFloat;
  1475. else
  1476. {
  1477. ERR("Unhandled float bit depth: %d\n", OutputType.Format.wBitsPerSample);
  1478. return E_FAIL;
  1479. }
  1480. }
  1481. else
  1482. {
  1483. ERR("Unhandled format sub-type\n");
  1484. return E_FAIL;
  1485. }
  1486. if(device->FmtChans == DevFmtMono && OutputType.Format.nChannels == 2)
  1487. {
  1488. self->ChannelConv = CreateChannelConverter(srcType, DevFmtStereo,
  1489. device->FmtChans);
  1490. if(!self->ChannelConv)
  1491. {
  1492. ERR("Failed to create %s stereo-to-mono converter\n", DevFmtTypeString(srcType));
  1493. return E_FAIL;
  1494. }
  1495. TRACE("Created %s stereo-to-mono converter\n", DevFmtTypeString(srcType));
  1496. /* The channel converter always outputs float, so change the input type
  1497. * for the resampler/type-converter.
  1498. */
  1499. srcType = DevFmtFloat;
  1500. }
  1501. else if(device->FmtChans == DevFmtStereo && OutputType.Format.nChannels == 1)
  1502. {
  1503. self->ChannelConv = CreateChannelConverter(srcType, DevFmtMono,
  1504. device->FmtChans);
  1505. if(!self->ChannelConv)
  1506. {
  1507. ERR("Failed to create %s mono-to-stereo converter\n", DevFmtTypeString(srcType));
  1508. return E_FAIL;
  1509. }
  1510. TRACE("Created %s mono-to-stereo converter\n", DevFmtTypeString(srcType));
  1511. srcType = DevFmtFloat;
  1512. }
  1513. if(device->Frequency != OutputType.Format.nSamplesPerSec || device->FmtType != srcType)
  1514. {
  1515. self->SampleConv = CreateSampleConverter(
  1516. srcType, device->FmtType, ChannelsFromDevFmt(device->FmtChans, device->AmbiOrder),
  1517. OutputType.Format.nSamplesPerSec, device->Frequency
  1518. );
  1519. if(!self->SampleConv)
  1520. {
  1521. ERR("Failed to create converter for %s format, dst: %s %uhz, src: %s %luhz\n",
  1522. DevFmtChannelsString(device->FmtChans), DevFmtTypeString(device->FmtType),
  1523. device->Frequency, DevFmtTypeString(srcType), OutputType.Format.nSamplesPerSec);
  1524. return E_FAIL;
  1525. }
  1526. TRACE("Created converter for %s format, dst: %s %uhz, src: %s %luhz\n",
  1527. DevFmtChannelsString(device->FmtChans), DevFmtTypeString(device->FmtType),
  1528. device->Frequency, DevFmtTypeString(srcType), OutputType.Format.nSamplesPerSec);
  1529. }
  1530. hr = IAudioClient_Initialize(self->client,
  1531. AUDCLNT_SHAREMODE_SHARED, AUDCLNT_STREAMFLAGS_EVENTCALLBACK,
  1532. buf_time, 0, &OutputType.Format, NULL
  1533. );
  1534. if(FAILED(hr))
  1535. {
  1536. ERR("Failed to initialize audio client: 0x%08lx\n", hr);
  1537. return hr;
  1538. }
  1539. hr = IAudioClient_GetBufferSize(self->client, &buffer_len);
  1540. if(FAILED(hr))
  1541. {
  1542. ERR("Failed to get buffer size: 0x%08lx\n", hr);
  1543. return hr;
  1544. }
  1545. buffer_len = maxu(device->UpdateSize*device->NumUpdates, buffer_len);
  1546. ll_ringbuffer_free(self->Ring);
  1547. self->Ring = ll_ringbuffer_create(buffer_len,
  1548. FrameSizeFromDevFmt(device->FmtChans, device->FmtType, device->AmbiOrder),
  1549. false
  1550. );
  1551. if(!self->Ring)
  1552. {
  1553. ERR("Failed to allocate capture ring buffer\n");
  1554. return E_OUTOFMEMORY;
  1555. }
  1556. hr = IAudioClient_SetEventHandle(self->client, self->NotifyEvent);
  1557. if(FAILED(hr))
  1558. {
  1559. ERR("Failed to set event handle: 0x%08lx\n", hr);
  1560. return hr;
  1561. }
  1562. return hr;
  1563. }
  1564. static ALCboolean ALCwasapiCapture_start(ALCwasapiCapture *self)
  1565. {
  1566. ThreadRequest req = { self->MsgEvent, 0 };
  1567. HRESULT hr = E_FAIL;
  1568. if(PostThreadMessage(ThreadID, WM_USER_StartDevice, (WPARAM)&req, (LPARAM)STATIC_CAST(ALCwasapiProxy, self)))
  1569. hr = WaitForResponse(&req);
  1570. return SUCCEEDED(hr) ? ALC_TRUE : ALC_FALSE;
  1571. }
  1572. static HRESULT ALCwasapiCapture_startProxy(ALCwasapiCapture *self)
  1573. {
  1574. HRESULT hr;
  1575. void *ptr;
  1576. ResetEvent(self->NotifyEvent);
  1577. hr = IAudioClient_Start(self->client);
  1578. if(FAILED(hr))
  1579. {
  1580. ERR("Failed to start audio client: 0x%08lx\n", hr);
  1581. return hr;
  1582. }
  1583. hr = IAudioClient_GetService(self->client, &IID_IAudioCaptureClient, &ptr);
  1584. if(SUCCEEDED(hr))
  1585. {
  1586. self->capture = ptr;
  1587. ATOMIC_STORE(&self->killNow, 0, almemory_order_release);
  1588. if(althrd_create(&self->thread, ALCwasapiCapture_recordProc, self) != althrd_success)
  1589. {
  1590. ERR("Failed to start thread\n");
  1591. IAudioCaptureClient_Release(self->capture);
  1592. self->capture = NULL;
  1593. hr = E_FAIL;
  1594. }
  1595. }
  1596. if(FAILED(hr))
  1597. {
  1598. IAudioClient_Stop(self->client);
  1599. IAudioClient_Reset(self->client);
  1600. }
  1601. return hr;
  1602. }
  1603. static void ALCwasapiCapture_stop(ALCwasapiCapture *self)
  1604. {
  1605. ThreadRequest req = { self->MsgEvent, 0 };
  1606. if(PostThreadMessage(ThreadID, WM_USER_StopDevice, (WPARAM)&req, (LPARAM)STATIC_CAST(ALCwasapiProxy, self)))
  1607. (void)WaitForResponse(&req);
  1608. }
  1609. static void ALCwasapiCapture_stopProxy(ALCwasapiCapture *self)
  1610. {
  1611. int res;
  1612. if(!self->capture)
  1613. return;
  1614. ATOMIC_STORE_SEQ(&self->killNow, 1);
  1615. althrd_join(self->thread, &res);
  1616. IAudioCaptureClient_Release(self->capture);
  1617. self->capture = NULL;
  1618. IAudioClient_Stop(self->client);
  1619. IAudioClient_Reset(self->client);
  1620. }
  1621. ALuint ALCwasapiCapture_availableSamples(ALCwasapiCapture *self)
  1622. {
  1623. return (ALuint)ll_ringbuffer_read_space(self->Ring);
  1624. }
  1625. ALCenum ALCwasapiCapture_captureSamples(ALCwasapiCapture *self, ALCvoid *buffer, ALCuint samples)
  1626. {
  1627. if(ALCwasapiCapture_availableSamples(self) < samples)
  1628. return ALC_INVALID_VALUE;
  1629. ll_ringbuffer_read(self->Ring, buffer, samples);
  1630. return ALC_NO_ERROR;
  1631. }
  1632. static inline void AppendAllDevicesList2(const DevMap *entry)
  1633. { AppendAllDevicesList(alstr_get_cstr(entry->name)); }
  1634. static inline void AppendCaptureDeviceList2(const DevMap *entry)
  1635. { AppendCaptureDeviceList(alstr_get_cstr(entry->name)); }
  1636. typedef struct ALCwasapiBackendFactory {
  1637. DERIVE_FROM_TYPE(ALCbackendFactory);
  1638. } ALCwasapiBackendFactory;
  1639. #define ALCWASAPIBACKENDFACTORY_INITIALIZER { { GET_VTABLE2(ALCwasapiBackendFactory, ALCbackendFactory) } }
  1640. static ALCboolean ALCwasapiBackendFactory_init(ALCwasapiBackendFactory *self);
  1641. static void ALCwasapiBackendFactory_deinit(ALCwasapiBackendFactory *self);
  1642. static ALCboolean ALCwasapiBackendFactory_querySupport(ALCwasapiBackendFactory *self, ALCbackend_Type type);
  1643. static void ALCwasapiBackendFactory_probe(ALCwasapiBackendFactory *self, enum DevProbe type);
  1644. static ALCbackend* ALCwasapiBackendFactory_createBackend(ALCwasapiBackendFactory *self, ALCdevice *device, ALCbackend_Type type);
  1645. DEFINE_ALCBACKENDFACTORY_VTABLE(ALCwasapiBackendFactory);
  1646. static ALCboolean ALCwasapiBackendFactory_init(ALCwasapiBackendFactory* UNUSED(self))
  1647. {
  1648. static HRESULT InitResult;
  1649. VECTOR_INIT(PlaybackDevices);
  1650. VECTOR_INIT(CaptureDevices);
  1651. if(!ThreadHdl)
  1652. {
  1653. ThreadRequest req;
  1654. InitResult = E_FAIL;
  1655. req.FinishedEvt = CreateEventW(NULL, FALSE, FALSE, NULL);
  1656. if(req.FinishedEvt == NULL)
  1657. ERR("Failed to create event: %lu\n", GetLastError());
  1658. else
  1659. {
  1660. ThreadHdl = CreateThread(NULL, 0, ALCwasapiProxy_messageHandler, &req, 0, &ThreadID);
  1661. if(ThreadHdl != NULL)
  1662. InitResult = WaitForResponse(&req);
  1663. CloseHandle(req.FinishedEvt);
  1664. }
  1665. }
  1666. return SUCCEEDED(InitResult) ? ALC_TRUE : ALC_FALSE;
  1667. }
  1668. static void ALCwasapiBackendFactory_deinit(ALCwasapiBackendFactory* UNUSED(self))
  1669. {
  1670. clear_devlist(&PlaybackDevices);
  1671. VECTOR_DEINIT(PlaybackDevices);
  1672. clear_devlist(&CaptureDevices);
  1673. VECTOR_DEINIT(CaptureDevices);
  1674. if(ThreadHdl)
  1675. {
  1676. TRACE("Sending WM_QUIT to Thread %04lx\n", ThreadID);
  1677. PostThreadMessage(ThreadID, WM_QUIT, 0, 0);
  1678. CloseHandle(ThreadHdl);
  1679. ThreadHdl = NULL;
  1680. }
  1681. }
  1682. static ALCboolean ALCwasapiBackendFactory_querySupport(ALCwasapiBackendFactory* UNUSED(self), ALCbackend_Type type)
  1683. {
  1684. if(type == ALCbackend_Playback || type == ALCbackend_Capture)
  1685. return ALC_TRUE;
  1686. return ALC_FALSE;
  1687. }
  1688. static void ALCwasapiBackendFactory_probe(ALCwasapiBackendFactory* UNUSED(self), enum DevProbe type)
  1689. {
  1690. ThreadRequest req = { NULL, 0 };
  1691. req.FinishedEvt = CreateEventW(NULL, FALSE, FALSE, NULL);
  1692. if(req.FinishedEvt == NULL)
  1693. ERR("Failed to create event: %lu\n", GetLastError());
  1694. else
  1695. {
  1696. HRESULT hr = E_FAIL;
  1697. if(PostThreadMessage(ThreadID, WM_USER_Enumerate, (WPARAM)&req, type))
  1698. hr = WaitForResponse(&req);
  1699. if(SUCCEEDED(hr)) switch(type)
  1700. {
  1701. case ALL_DEVICE_PROBE:
  1702. VECTOR_FOR_EACH(const DevMap, PlaybackDevices, AppendAllDevicesList2);
  1703. break;
  1704. case CAPTURE_DEVICE_PROBE:
  1705. VECTOR_FOR_EACH(const DevMap, CaptureDevices, AppendCaptureDeviceList2);
  1706. break;
  1707. }
  1708. CloseHandle(req.FinishedEvt);
  1709. req.FinishedEvt = NULL;
  1710. }
  1711. }
  1712. static ALCbackend* ALCwasapiBackendFactory_createBackend(ALCwasapiBackendFactory* UNUSED(self), ALCdevice *device, ALCbackend_Type type)
  1713. {
  1714. if(type == ALCbackend_Playback)
  1715. {
  1716. ALCwasapiPlayback *backend;
  1717. NEW_OBJ(backend, ALCwasapiPlayback)(device);
  1718. if(!backend) return NULL;
  1719. return STATIC_CAST(ALCbackend, backend);
  1720. }
  1721. if(type == ALCbackend_Capture)
  1722. {
  1723. ALCwasapiCapture *backend;
  1724. NEW_OBJ(backend, ALCwasapiCapture)(device);
  1725. if(!backend) return NULL;
  1726. return STATIC_CAST(ALCbackend, backend);
  1727. }
  1728. return NULL;
  1729. }
  1730. ALCbackendFactory *ALCwasapiBackendFactory_getFactory(void)
  1731. {
  1732. static ALCwasapiBackendFactory factory = ALCWASAPIBACKENDFACTORY_INITIALIZER;
  1733. return STATIC_CAST(ALCbackendFactory, &factory);
  1734. }