VirtualBox

source: vbox/trunk/src/VBox/Devices/Audio/AudioTestService.cpp@ 90911

Last change on this file since 90911 was 90911, checked in by vboxsync, 3 years ago

Audio/ATS: Client disconnection fixes. bugref:10008

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1/* $Id: AudioTestService.cpp 90911 2021-08-26 13:27:36Z vboxsync $ */
2/** @file
3 * AudioTestService - Audio test execution server.
4 */
5
6/*
7 * Copyright (C) 2021 Oracle Corporation
8 *
9 * This file is part of VirtualBox Open Source Edition (OSE), as
10 * available from http://www.virtualbox.org. This file is free software;
11 * you can redistribute it and/or modify it under the terms of the GNU
12 * General Public License (GPL) as published by the Free Software
13 * Foundation, in version 2 as it comes in the "COPYING" file of the
14 * VirtualBox OSE distribution. VirtualBox OSE is distributed in the
15 * hope that it will be useful, but WITHOUT ANY WARRANTY of any kind.
16 */
17
18
19/*********************************************************************************************************************************
20* Header Files *
21*********************************************************************************************************************************/
22#define LOG_GROUP LOG_GROUP_AUDIO_TEST
23#include <iprt/log.h>
24
25#include <iprt/alloca.h>
26#include <iprt/asm.h>
27#include <iprt/assert.h>
28#include <iprt/critsect.h>
29#include <iprt/crc.h>
30#include <iprt/ctype.h>
31#include <iprt/dir.h>
32#include <iprt/env.h>
33#include <iprt/err.h>
34#include <iprt/file.h>
35#include <iprt/getopt.h>
36#include <iprt/handle.h>
37#include <iprt/initterm.h>
38#include <iprt/json.h>
39#include <iprt/list.h>
40#include <iprt/mem.h>
41#include <iprt/message.h>
42#include <iprt/param.h>
43#include <iprt/path.h>
44#include <iprt/pipe.h>
45#include <iprt/poll.h>
46#include <iprt/process.h>
47#include <iprt/stream.h>
48#include <iprt/string.h>
49#include <iprt/thread.h>
50
51#include <VBox/log.h>
52
53#include "AudioTestService.h"
54#include "AudioTestServiceInternal.h"
55
56
57/*********************************************************************************************************************************
58* Structures and Typedefs *
59*********************************************************************************************************************************/
60/**
61 * A generic ATS reply, used by the client
62 * to process the incoming packets.
63 */
64typedef struct ATSSRVREPLY
65{
66 char szOp[ATSPKT_OPCODE_MAX_LEN];
67 void *pvPayload;
68 size_t cbPayload;
69} ATSSRVREPLY;
70/** Pointer to a generic ATS reply. */
71typedef struct ATSSRVREPLY *PATSSRVREPLY;
72
73
74/*********************************************************************************************************************************
75* Global Variables *
76*********************************************************************************************************************************/
77/**
78 * Transport layers.
79 */
80const PCATSTRANSPORT g_apTransports[] =
81{
82 &g_TcpTransport
83};
84/** Number of transport layers in \a g_apTransports. */
85const size_t g_cTransports = RT_ELEMENTS(g_apTransports);
86
87/**
88 * ATS client state.
89 */
90typedef enum ATSCLIENTSTATE
91{
92 /** Invalid client state. */
93 ATSCLIENTSTATE_INVALID = 0,
94 /** Client is initialising, only the HOWDY and BYE packets are allowed. */
95 ATSCLIENTSTATE_INITIALISING,
96 /** Client is in fully cuntional state and ready to process all requests. */
97 ATSCLIENTSTATE_READY,
98 /** Client is destroying. */
99 ATSCLIENTSTATE_DESTROYING,
100 /** 32bit hack. */
101 ATSCLIENTSTATE_32BIT_HACK = 0x7fffffff
102} ATSCLIENTSTATE;
103
104/**
105 * ATS client instance.
106 */
107typedef struct ATSCLIENTINST
108{
109 /** List node for new clients. */
110 RTLISTNODE NdLst;
111 /** The current client state. */
112 ATSCLIENTSTATE enmState;
113 /** Transport backend specific data. */
114 PATSTRANSPORTCLIENT pTransportClient;
115 /** Client hostname. */
116 char *pszHostname;
117} ATSCLIENTINST;
118/** Pointer to a ATS client instance. */
119typedef ATSCLIENTINST *PATSCLIENTINST;
120
121
122/*********************************************************************************************************************************
123* Prototypes *
124*********************************************************************************************************************************/
125static int atsClientDisconnect(PATSSERVER pThis, PATSCLIENTINST pInst);
126
127
128
129/**
130 * Returns the string represenation of the given state.
131 */
132static const char *atsClientStateStringify(ATSCLIENTSTATE enmState)
133{
134 switch (enmState)
135 {
136 case ATSCLIENTSTATE_INVALID:
137 return "INVALID";
138 case ATSCLIENTSTATE_INITIALISING:
139 return "INITIALISING";
140 case ATSCLIENTSTATE_READY:
141 return "READY";
142 case ATSCLIENTSTATE_DESTROYING:
143 return "DESTROYING";
144 case ATSCLIENTSTATE_32BIT_HACK:
145 default:
146 break;
147 }
148
149 AssertMsgFailed(("Unknown state %#x\n", enmState));
150 return "UNKNOWN";
151}
152
153/**
154 * Calculates the checksum value, zero any padding space and send the packet.
155 *
156 * @returns IPRT status code.
157 * @param pThis The ATS instance.
158 * @param pInst The ATS client structure.
159 * @param pPkt The packet to send. Must point to a correctly
160 * aligned buffer.
161 */
162static int atsSendPkt(PATSSERVER pThis, PATSCLIENTINST pInst, PATSPKTHDR pPkt)
163{
164 Assert(pPkt->cb >= sizeof(*pPkt));
165 pPkt->uCrc32 = RTCrc32(pPkt->achOpcode, pPkt->cb - RT_UOFFSETOF(ATSPKTHDR, achOpcode));
166 if (pPkt->cb != RT_ALIGN_32(pPkt->cb, ATSPKT_ALIGNMENT))
167 memset((uint8_t *)pPkt + pPkt->cb, '\0', RT_ALIGN_32(pPkt->cb, ATSPKT_ALIGNMENT) - pPkt->cb);
168
169 LogFlowFunc(("cb=%RU32 (%#x), payload=%RU32 (%#x), opcode=%.8s\n",
170 pPkt->cb, pPkt->cb, pPkt->cb - sizeof(ATSPKTHDR), pPkt->cb - sizeof(ATSPKTHDR), pPkt->achOpcode));
171 int rc = pThis->pTransport->pfnSendPkt(pThis->pTransportInst, pInst->pTransportClient, pPkt);
172 while (RT_UNLIKELY(rc == VERR_INTERRUPTED) && !pThis->fTerminate)
173 rc = pThis->pTransport->pfnSendPkt(pThis->pTransportInst, pInst->pTransportClient, pPkt);
174
175 return rc;
176}
177
178/**
179 * Sends a babble reply and disconnects the client (if applicable).
180 *
181 * @param pThis The ATS instance.
182 * @param pInst The ATS server instance.
183 * @param pszOpcode The BABBLE opcode.
184 */
185static void atsReplyBabble(PATSSERVER pThis, PATSCLIENTINST pInst, const char *pszOpcode)
186{
187 ATSPKTHDR Reply;
188 Reply.cb = sizeof(Reply);
189 Reply.uCrc32 = 0;
190 memcpy(Reply.achOpcode, pszOpcode, sizeof(Reply.achOpcode));
191
192 pThis->pTransport->pfnBabble(pThis->pTransportInst, pInst->pTransportClient, &Reply, 20*1000);
193}
194
195/**
196 * Receive and validate a packet.
197 *
198 * Will send bable responses to malformed packets that results in a error status
199 * code.
200 *
201 * @returns IPRT status code.
202 * @param pThis The ATS instance.
203 * @param pInst The opaque ATS instance structure.
204 * @param ppPktHdr Where to return the packet on success. Free
205 * with RTMemFree.
206 * @param fAutoRetryOnFailure Whether to retry on error.
207 */
208static int atsRecvPkt(PATSSERVER pThis, PATSCLIENTINST pInst, PPATSPKTHDR ppPktHdr, bool fAutoRetryOnFailure)
209{
210 for (;;)
211 {
212 PATSPKTHDR pPktHdr;
213 int rc = pThis->pTransport->pfnRecvPkt(pThis->pTransportInst, pInst->pTransportClient, &pPktHdr);
214 if (RT_SUCCESS(rc))
215 {
216 /* validate the packet. */
217 if ( pPktHdr->cb >= sizeof(ATSPKTHDR)
218 && pPktHdr->cb < ATSPKT_MAX_SIZE)
219 {
220 Log2Func(("pPktHdr=%p cb=%#x crc32=%#x opcode=%.8s\n",
221 pPktHdr, pPktHdr->cb, pPktHdr->uCrc32, pPktHdr->achOpcode));
222 uint32_t uCrc32Calc = pPktHdr->uCrc32 != 0
223 ? RTCrc32(&pPktHdr->achOpcode[0], pPktHdr->cb - RT_UOFFSETOF(ATSPKTHDR, achOpcode))
224 : 0;
225 if (pPktHdr->uCrc32 == uCrc32Calc)
226 {
227 AssertCompileMemberSize(ATSPKTHDR, achOpcode, 8);
228 if ( RT_C_IS_UPPER(pPktHdr->achOpcode[0])
229 && RT_C_IS_UPPER(pPktHdr->achOpcode[1])
230 && (RT_C_IS_UPPER(pPktHdr->achOpcode[2]) || pPktHdr->achOpcode[2] == ' ')
231 && (RT_C_IS_PRINT(pPktHdr->achOpcode[3]) || pPktHdr->achOpcode[3] == ' ')
232 && (RT_C_IS_PRINT(pPktHdr->achOpcode[4]) || pPktHdr->achOpcode[4] == ' ')
233 && (RT_C_IS_PRINT(pPktHdr->achOpcode[5]) || pPktHdr->achOpcode[5] == ' ')
234 && (RT_C_IS_PRINT(pPktHdr->achOpcode[6]) || pPktHdr->achOpcode[6] == ' ')
235 && (RT_C_IS_PRINT(pPktHdr->achOpcode[7]) || pPktHdr->achOpcode[7] == ' ')
236 )
237 {
238 Log(("cb=%#x opcode=%.8s\n", pPktHdr->cb, pPktHdr->achOpcode));
239 *ppPktHdr = pPktHdr;
240 return rc;
241 }
242
243 rc = VERR_IO_BAD_COMMAND;
244 }
245 else
246 {
247 Log(("cb=%#x opcode=%.8s crc32=%#x actual=%#x\n",
248 pPktHdr->cb, pPktHdr->achOpcode, pPktHdr->uCrc32, uCrc32Calc));
249 rc = VERR_IO_CRC;
250 }
251 }
252 else
253 rc = VERR_IO_BAD_LENGTH;
254
255 /* Send babble reply and disconnect the client if the transport is
256 connection oriented. */
257 if (rc == VERR_IO_BAD_LENGTH)
258 atsReplyBabble(pThis, pInst, "BABBLE L");
259 else if (rc == VERR_IO_CRC)
260 atsReplyBabble(pThis, pInst, "BABBLE C");
261 else if (rc == VERR_IO_BAD_COMMAND)
262 atsReplyBabble(pThis, pInst, "BABBLE O");
263 else
264 atsReplyBabble(pThis, pInst, "BABBLE ");
265 RTMemFree(pPktHdr);
266 }
267
268 /* Try again or return failure? */
269 if ( pThis->fTerminate
270 || rc != VERR_INTERRUPTED
271 || !fAutoRetryOnFailure
272 )
273 {
274 Log(("rc=%Rrc\n", rc));
275 return rc;
276 }
277 }
278}
279
280/**
281 * Make a simple reply, only status opcode.
282 *
283 * @returns IPRT status code of the send.
284 * @param pThis The ATS instance.
285 * @param pInst The opaque ATS instance structure.
286 * @param pReply The reply packet.
287 * @param pszOpcode The status opcode. Exactly 8 chars long, padd
288 * with space.
289 * @param cbExtra Bytes in addition to the header.
290 */
291static int atsReplyInternal(PATSSERVER pThis, PATSCLIENTINST pInst, PATSPKTHDR pReply, const char *pszOpcode, size_t cbExtra)
292{
293 /* copy the opcode, don't be too strict in case of a padding screw up. */
294 size_t cchOpcode = strlen(pszOpcode);
295 if (RT_LIKELY(cchOpcode == sizeof(pReply->achOpcode)))
296 memcpy(pReply->achOpcode, pszOpcode, sizeof(pReply->achOpcode));
297 else
298 {
299 Assert(cchOpcode == sizeof(pReply->achOpcode));
300 while (cchOpcode > 0 && pszOpcode[cchOpcode - 1] == ' ')
301 cchOpcode--;
302 AssertMsgReturn(cchOpcode < sizeof(pReply->achOpcode), ("%d/'%.8s'\n", cchOpcode, pszOpcode), VERR_INTERNAL_ERROR_4);
303 memcpy(pReply->achOpcode, pszOpcode, cchOpcode);
304 memset(&pReply->achOpcode[cchOpcode], ' ', sizeof(pReply->achOpcode) - cchOpcode);
305 }
306
307 pReply->cb = (uint32_t)sizeof(ATSPKTHDR) + (uint32_t)cbExtra;
308 pReply->uCrc32 = 0;
309
310 return atsSendPkt(pThis, pInst, pReply);
311}
312
313/**
314 * Make a simple reply, only status opcode.
315 *
316 * @returns IPRT status code of the send.
317 * @param pThis The ATS instance.
318 * @param pInst The opaque ATS instance structure.
319 * @param pPktHdr The original packet (for future use).
320 * @param pszOpcode The status opcode. Exactly 8 chars long, padd
321 * with space.
322 */
323static int atsReplySimple(PATSSERVER pThis, PATSCLIENTINST pInst, PATSPKTHDR pPktHdr, const char *pszOpcode)
324{
325 return atsReplyInternal(pThis, pInst, pPktHdr, pszOpcode, 0);
326}
327
328/**
329 * Acknowledges a packet with success.
330 *
331 * @returns IPRT status code of the send.
332 * @param pThis The ATS instance.
333 * @param pInst The opaque ATS instance structure.
334 * @param pPktHdr The original packet (for future use).
335 */
336static int atsReplyAck(PATSSERVER pThis, PATSCLIENTINST pInst, PATSPKTHDR pPktHdr)
337{
338 return atsReplySimple(pThis, pInst, pPktHdr, "ACK ");
339}
340
341/**
342 * Replies with a failure.
343 *
344 * @returns IPRT status code of the send.
345 * @param pThis The ATS instance.
346 * @param pInst The opaque ATS instance structure.
347 * @param pPktHdr The original packet (for future use).
348 * @param pszOpcode The status opcode. Exactly 8 chars long, padd
349 * with space.
350 * @param rcReq The status code of the request.
351 * @param pszDetailFmt Longer description of the problem (format string).
352 * @param va Format arguments.
353 */
354static int atsReplyFailureV(PATSSERVER pThis, PATSCLIENTINST pInst, PATSPKTHDR pPktHdr,
355 const char *pszOpcode, int rcReq, const char *pszDetailFmt, va_list va)
356{
357 RT_NOREF(pPktHdr);
358 union
359 {
360 ATSPKTHDR Hdr;
361 int rc;
362 char ach[256];
363 } uPkt;
364 RT_ZERO(uPkt);
365
366 size_t cchDetail = RTStrPrintfV(&uPkt.ach[sizeof(ATSPKTHDR)],
367 sizeof(uPkt) - sizeof(ATSPKTHDR),
368 pszDetailFmt, va);
369
370 uPkt.rc = rcReq;
371
372 return atsReplyInternal(pThis, pInst, &uPkt.Hdr, pszOpcode, sizeof(int) + cchDetail + 1);
373}
374
375/**
376 * Replies with a failure.
377 *
378 * @returns IPRT status code of the send.
379 * @param pThis The ATS instance.
380 * @param pInst The opaque ATS instance structure.
381 * @param pPktHdr The original packet (for future use).
382 * @param pszOpcode The status opcode. Exactly 8 chars long, padd
383 * with space.
384 * @param rcReq Status code.
385 * @param pszDetailFmt Longer description of the problem (format string).
386 * @param ... Format arguments.
387 */
388static int atsReplyFailure(PATSSERVER pThis, PATSCLIENTINST pInst, PATSPKTHDR pPktHdr,
389 const char *pszOpcode, int rcReq, const char *pszDetailFmt, ...)
390{
391 va_list va;
392 va_start(va, pszDetailFmt);
393 int rc = atsReplyFailureV(pThis, pInst, pPktHdr, pszOpcode, rcReq, pszDetailFmt, va);
394 va_end(va);
395 return rc;
396}
397
398/**
399 * Replies according to the return code.
400 *
401 * @returns IPRT status code of the send.
402 * @param pThis The ATS instance.
403 * @param pInst The opaque ATS instance structure.
404 * @param pPktHdr The packet to reply to.
405 * @param rcOperation The status code to report.
406 * @param pszOperationFmt The operation that failed. Typically giving the
407 * function call with important arguments.
408 * @param ... Arguments to the format string.
409 */
410static int atsReplyRC(PATSSERVER pThis,
411 PATSCLIENTINST pInst, PATSPKTHDR pPktHdr, int rcOperation, const char *pszOperationFmt, ...)
412{
413 if (RT_SUCCESS(rcOperation))
414 return atsReplyAck(pThis, pInst, pPktHdr);
415
416 char szOperation[128];
417 va_list va;
418 va_start(va, pszOperationFmt);
419 RTStrPrintfV(szOperation, sizeof(szOperation), pszOperationFmt, va);
420 va_end(va);
421
422 return atsReplyFailure(pThis, pInst, pPktHdr, "FAILED ", rcOperation, "%s failed with rc=%Rrc (opcode '%.8s')",
423 szOperation, rcOperation, pPktHdr->achOpcode);
424}
425
426/**
427 * Signal a bad packet exact size.
428 *
429 * @returns IPRT status code of the send.
430 * @param pThis The ATS instance.
431 * @param pInst The opaque ATS instance structure.
432 * @param pPktHdr The packet to reply to.
433 * @param cb The wanted size.
434 */
435static int atsReplyBadSize(PATSSERVER pThis, PATSCLIENTINST pInst, PATSPKTHDR pPktHdr, size_t cb)
436{
437 return atsReplyFailure(pThis, pInst, pPktHdr, "BAD SIZE", VERR_INVALID_PARAMETER, "Expected at %zu bytes, got %u (opcode '%.8s')",
438 cb, pPktHdr->cb, pPktHdr->achOpcode);
439}
440
441/**
442 * Deals with a unknown command.
443 *
444 * @returns IPRT status code of the send.
445 * @param pThis The ATS instance.
446 * @param pInst The opaque ATS instance structure.
447 * @param pPktHdr The packet to reply to.
448 */
449static int atsReplyUnknown(PATSSERVER pThis, PATSCLIENTINST pInst, PATSPKTHDR pPktHdr)
450{
451 return atsReplyFailure(pThis, pInst, pPktHdr, "UNKNOWN ", VERR_NOT_FOUND, "Opcode '%.8s' is not known", pPktHdr->achOpcode);
452}
453
454/**
455 * Deals with a command sent in an invalid client state.
456 *
457 * @returns IPRT status code of the send.
458 * @param pThis The ATS instance.
459 * @param pInst The opaque ATS instance structure.
460 * @param pPktHdr The packet containing the unterminated string.
461 */
462static int atsReplyInvalidState(PATSSERVER pThis, PATSCLIENTINST pInst, PATSPKTHDR pPktHdr)
463{
464 return atsReplyFailure(pThis, pInst, pPktHdr, "INVSTATE", VERR_INVALID_STATE, "Opcode '%.8s' is not supported at client state '%s",
465 pPktHdr->achOpcode, atsClientStateStringify(pInst->enmState));
466}
467
468/**
469 * Verifies and acknowledges a "BYE" request.
470 *
471 * @returns IPRT status code.
472 * @param pThis The ATS instance.
473 * @param pInst The opaque ATS instance structure.
474 * @param pPktHdr The bye packet.
475 */
476static int atsDoBye(PATSSERVER pThis, PATSCLIENTINST pInst, PATSPKTHDR pPktHdr)
477{
478 int rc;
479 if (pPktHdr->cb == sizeof(ATSPKTHDR))
480 {
481 if (pThis->Callbacks.pfnBye)
482 {
483 rc = pThis->Callbacks.pfnBye(pThis->Callbacks.pvUser);
484 }
485 else
486 rc = VINF_SUCCESS;
487
488 if (RT_SUCCESS(rc))
489 {
490 rc = atsReplyAck(pThis, pInst, pPktHdr);
491 }
492 else
493 rc = atsReplyRC(pThis, pInst, pPktHdr, rc, "Disconnecting client failed");
494 }
495 else
496 rc = atsReplyBadSize(pThis, pInst, pPktHdr, sizeof(ATSPKTHDR));
497 return rc;
498}
499
500/**
501 * Verifies and acknowledges a "HOWDY" request.
502 *
503 * @returns IPRT status code.
504 * @param pThis The ATS instance.
505 * @param pInst The opaque ATS instance structure.
506 * @param pPktHdr The howdy packet.
507 */
508static int atsDoHowdy(PATSSERVER pThis, PATSCLIENTINST pInst, PATSPKTHDR pPktHdr)
509{
510 int rc = VINF_SUCCESS;
511
512 if (pPktHdr->cb != sizeof(ATSPKTREQHOWDY))
513 return atsReplyBadSize(pThis, pInst, pPktHdr, sizeof(ATSPKTREQHOWDY));
514
515 if (pInst->enmState != ATSCLIENTSTATE_INITIALISING)
516 return atsReplyInvalidState(pThis, pInst, pPktHdr);
517
518 PATSPKTREQHOWDY pReq = (PATSPKTREQHOWDY)pPktHdr;
519
520 if (pReq->uVersion != ATS_PROTOCOL_VS)
521 return atsReplyRC(pThis, pInst, pPktHdr, VERR_VERSION_MISMATCH, "The given version %#x is not supported", pReq->uVersion);
522
523 ATSPKTREPHOWDY Rep;
524 RT_ZERO(Rep);
525
526 Rep.uVersion = ATS_PROTOCOL_VS;
527
528 rc = atsReplyInternal(pThis, pInst, &Rep.Hdr, "ACK ", sizeof(Rep) - sizeof(ATSPKTHDR));
529 if (RT_SUCCESS(rc))
530 {
531 pThis->pTransport->pfnNotifyHowdy(pThis->pTransportInst, pInst->pTransportClient);
532
533 if (pThis->Callbacks.pfnHowdy)
534 rc = pThis->Callbacks.pfnHowdy(pThis->Callbacks.pvUser);
535
536 if (RT_SUCCESS(rc))
537 pInst->enmState = ATSCLIENTSTATE_READY;
538 }
539
540 return rc;
541}
542
543/**
544 * Verifies and acknowledges a "TSET BEG" request.
545 *
546 * @returns IPRT status code.
547 * @param pThis The ATS instance.
548 * @param pInst The opaque ATS instance structure.
549 * @param pPktHdr The test set begin packet.
550 */
551static int atsDoTestSetBegin(PATSSERVER pThis, PATSCLIENTINST pInst, PATSPKTHDR pPktHdr)
552{
553 if (pPktHdr->cb != sizeof(ATSPKTREQTSETBEG))
554 return atsReplyBadSize(pThis, pInst, pPktHdr, sizeof(ATSPKTREQTSETBEG));
555
556 PATSPKTREQTSETBEG pReq = (PATSPKTREQTSETBEG)pPktHdr;
557
558 int rc = VINF_SUCCESS;
559
560 if (pThis->Callbacks.pfnTestSetBegin)
561 {
562 rc = pThis->Callbacks.pfnTestSetBegin(pThis->Callbacks.pvUser, pReq->szTag);
563 if (RT_FAILURE(rc))
564 return atsReplyRC(pThis, pInst, pPktHdr, rc, "Beginning test set '%s' failed", pReq->szTag);
565 }
566
567 if (RT_SUCCESS(rc))
568 {
569 rc = atsReplyAck(pThis, pInst, pPktHdr);
570 }
571 else
572 rc = atsReplyRC(pThis, pInst, pPktHdr, rc, "Beginning test set failed");
573
574 return rc;
575}
576
577/**
578 * Verifies and acknowledges a "TSET END" request.
579 *
580 * @returns IPRT status code.
581 * @param pThis The ATS instance.
582 * @param pInst The opaque ATS instance structure.
583 * @param pPktHdr The test set end packet.
584 */
585static int atsDoTestSetEnd(PATSSERVER pThis, PATSCLIENTINST pInst, PATSPKTHDR pPktHdr)
586{
587 if (pPktHdr->cb != sizeof(ATSPKTREQTSETEND))
588 return atsReplyBadSize(pThis, pInst, pPktHdr, sizeof(ATSPKTREQTSETEND));
589
590 PATSPKTREQTSETEND pReq = (PATSPKTREQTSETEND)pPktHdr;
591
592 int rc = VINF_SUCCESS;
593
594 if (pThis->Callbacks.pfnTestSetEnd)
595 {
596 rc = pThis->Callbacks.pfnTestSetEnd(pThis->Callbacks.pvUser, pReq->szTag);
597 if (RT_FAILURE(rc))
598 return atsReplyRC(pThis, pInst, pPktHdr, rc, "Ending test set '%s' failed", pReq->szTag);
599 }
600 if (RT_SUCCESS(rc))
601 {
602 rc = atsReplyAck(pThis, pInst, pPktHdr);
603 }
604 else
605 rc = atsReplyRC(pThis, pInst, pPktHdr, rc, "Ending test set failed");
606
607 return rc;
608}
609
610/**
611 * Used by atsDoTestSetSend to wait for a reply ACK from the client.
612 *
613 * @returns VINF_SUCCESS on ACK, VERR_GENERAL_FAILURE on NACK,
614 * VERR_NET_NOT_CONNECTED on unknown response (sending a bable reply),
615 * or whatever atsRecvPkt returns.
616 * @param pThis The ATS instance.
617 * @param pInst The opaque ATS instance structure.
618 * @param pPktHdr The original packet (for future use).
619 */
620static int atsWaitForAck(PATSSERVER pThis, PATSCLIENTINST pInst, PATSPKTHDR pPktHdr)
621{
622 RT_NOREF(pPktHdr);
623 /** @todo timeout? */
624 PATSPKTHDR pReply;
625 int rc = atsRecvPkt(pThis, pInst, &pReply, false /*fAutoRetryOnFailure*/);
626 if (RT_SUCCESS(rc))
627 {
628 if (atsIsSameOpcode(pReply, "ACK"))
629 rc = VINF_SUCCESS;
630 else if (atsIsSameOpcode(pReply, "NACK"))
631 rc = VERR_GENERAL_FAILURE;
632 else
633 {
634 atsReplyBabble(pThis, pInst, "BABBLE ");
635 rc = VERR_NET_NOT_CONNECTED;
636 }
637 RTMemFree(pReply);
638 }
639 return rc;
640}
641
642/**
643 * Verifies and acknowledges a "TSET SND" request.
644 *
645 * @returns IPRT status code.
646 * @param pThis The ATS instance.
647 * @param pInst The opaque ATS instance structure.
648 * @param pPktHdr The test set end packet.
649 */
650static int atsDoTestSetSend(PATSSERVER pThis, PATSCLIENTINST pInst, PATSPKTHDR pPktHdr)
651{
652 if (pPktHdr->cb != sizeof(ATSPKTREQTSETSND))
653 return atsReplyBadSize(pThis, pInst, pPktHdr, sizeof(ATSPKTREQTSETSND));
654
655 PATSPKTREQTSETSND pReq = (PATSPKTREQTSETSND)pPktHdr;
656
657 int rc = VINF_SUCCESS;
658
659 if (!pThis->Callbacks.pfnTestSetSendRead)
660 return atsReplyRC(pThis, pInst, pPktHdr, VERR_NOT_SUPPORTED, "Sending test set not implemented");
661
662 if (pThis->Callbacks.pfnTestSetSendBegin)
663 {
664 rc = pThis->Callbacks.pfnTestSetSendBegin(pThis->Callbacks.pvUser, pReq->szTag);
665 if (RT_FAILURE(rc))
666 return atsReplyRC(pThis, pInst, pPktHdr, rc, "Beginning sending test set '%s' failed", pReq->szTag);
667 }
668
669 for (;;)
670 {
671 uint32_t uMyCrc32 = RTCrc32Start();
672 struct
673 {
674 ATSPKTHDR Hdr;
675 uint32_t uCrc32;
676 char ab[_64K];
677 char abPadding[ATSPKT_ALIGNMENT];
678 } Pkt;
679#ifdef DEBUG
680 RT_ZERO(Pkt);
681#endif
682 size_t cbRead = 0;
683 rc = pThis->Callbacks.pfnTestSetSendRead(pThis->Callbacks.pvUser, pReq->szTag, &Pkt.ab, sizeof(Pkt.ab), &cbRead);
684 if ( RT_FAILURE(rc)
685 || cbRead == 0)
686 {
687 if ( rc == VERR_EOF
688 || (RT_SUCCESS(rc) && cbRead == 0))
689 {
690 Pkt.uCrc32 = RTCrc32Finish(uMyCrc32);
691 rc = atsReplyInternal(pThis, pInst, &Pkt.Hdr, "DATA EOF", sizeof(uint32_t) /* uCrc32 */);
692 if (RT_SUCCESS(rc))
693 rc = atsWaitForAck(pThis, pInst, &Pkt.Hdr);
694 }
695 else
696 rc = atsReplyRC(pThis, pInst, pPktHdr, rc, "Sending data for test set '%s' failed", pReq->szTag);
697 break;
698 }
699
700 uMyCrc32 = RTCrc32Process(uMyCrc32, &Pkt.ab[0], cbRead);
701 Pkt.uCrc32 = RTCrc32Finish(uMyCrc32);
702
703 Log2Func(("cbRead=%zu -> uCrc32=%#x\n", cbRead, Pkt.uCrc32));
704
705 Assert(cbRead <= sizeof(Pkt.ab));
706
707 rc = atsReplyInternal(pThis, pInst, &Pkt.Hdr, "DATA ", sizeof(uint32_t) /* uCrc32 */ + cbRead);
708 if (RT_FAILURE(rc))
709 break;
710
711 rc = atsWaitForAck(pThis, pInst, &Pkt.Hdr);
712 if (RT_FAILURE(rc))
713 break;
714 }
715
716 if (pThis->Callbacks.pfnTestSetSendEnd)
717 {
718 int rc2 = pThis->Callbacks.pfnTestSetSendEnd(pThis->Callbacks.pvUser, pReq->szTag);
719 if (RT_FAILURE(rc2))
720 return atsReplyRC(pThis, pInst, pPktHdr, rc2, "Ending sending test set '%s' failed", pReq->szTag);
721 }
722
723 return rc;
724}
725
726/**
727 * Verifies and processes a "TN PLY" request.
728 *
729 * @returns IPRT status code.
730 * @param pThis The ATS instance.
731 * @param pInst The opaque ATS instance structure.
732 * @param pPktHdr The packet header.
733 */
734static int atsDoTonePlay(PATSSERVER pThis, PATSCLIENTINST pInst, PATSPKTHDR pPktHdr)
735{
736 int rc = VINF_SUCCESS;
737
738 if (pPktHdr->cb < sizeof(ATSPKTREQTONEPLAY))
739 return atsReplyBadSize(pThis, pInst, pPktHdr, sizeof(ATSPKTREQTONEPLAY));
740
741 if (pInst->enmState != ATSCLIENTSTATE_READY)
742 return atsReplyInvalidState(pThis, pInst, pPktHdr);
743
744 if (!pThis->Callbacks.pfnTonePlay)
745 return atsReplyRC(pThis, pInst, pPktHdr, VERR_NOT_SUPPORTED, "Playing tones not supported");
746
747 PATSPKTREQTONEPLAY pReq = (PATSPKTREQTONEPLAY)pPktHdr;
748 rc = pThis->Callbacks.pfnTonePlay(pThis->Callbacks.pvUser, &pReq->ToneParms);
749
750 int rc2 = atsReplyAck(pThis, pInst, pPktHdr);
751 if (RT_SUCCESS(rc))
752 rc = rc2;
753
754 return rc;
755}
756
757/**
758 * Verifies and processes a "TN REC" request.
759 *
760 * @returns IPRT status code.
761 * @param pThis The ATS instance.
762 * @param pInst The opaque ATS instance structure.
763 * @param pPktHdr The packet header.
764 */
765static int atsDoToneRecord(PATSSERVER pThis, PATSCLIENTINST pInst, PATSPKTHDR pPktHdr)
766{
767 int rc = VINF_SUCCESS;
768
769 if (pPktHdr->cb < sizeof(ATSPKTREQTONEREC))
770 return atsReplyBadSize(pThis, pInst, pPktHdr, sizeof(ATSPKTREQTONEREC));
771
772 if (pInst->enmState != ATSCLIENTSTATE_READY)
773 return atsReplyInvalidState(pThis, pInst, pPktHdr);
774
775 if (!pThis->Callbacks.pfnToneRecord)
776 return atsReplyRC(pThis, pInst, pPktHdr, VERR_NOT_SUPPORTED, "Recording tones not supported");
777
778 PATSPKTREQTONEREC pReq = (PATSPKTREQTONEREC)pPktHdr;
779 rc = pThis->Callbacks.pfnToneRecord(pThis->Callbacks.pvUser, &pReq->ToneParms);
780
781 int rc2 = atsReplyAck(pThis, pInst, pPktHdr);
782 if (RT_SUCCESS(rc))
783 rc = rc2;
784
785 return rc;
786}
787
788/**
789 * Main request processing routine for each client.
790 *
791 * @returns IPRT status code.
792 * @param pThis The ATS instance.
793 * @param pInst The ATS client structure sending the request.
794 * @param pfDisconnect Where to return whether to disconnect the client on success or not.
795 */
796static int atsClientReqProcess(PATSSERVER pThis, PATSCLIENTINST pInst, bool *pfDisconnect)
797{
798 /*
799 * Read client command packet and process it.
800 */
801 PATSPKTHDR pPktHdr = NULL;
802 int rc = atsRecvPkt(pThis, pInst, &pPktHdr, true /*fAutoRetryOnFailure*/);
803 if (RT_FAILURE(rc))
804 return rc;
805
806 /*
807 * Do a string switch on the opcode bit.
808 */
809 /* Connection: */
810 if ( atsIsSameOpcode(pPktHdr, ATSPKT_OPCODE_HOWDY))
811 rc = atsDoHowdy(pThis, pInst, pPktHdr);
812 else if (atsIsSameOpcode(pPktHdr, ATSPKT_OPCODE_BYE))
813 {
814 rc = atsDoBye(pThis, pInst, pPktHdr);
815 if (RT_SUCCESS(rc))
816 *pfDisconnect = true;
817 }
818 /* Test set handling: */
819 else if (atsIsSameOpcode(pPktHdr, ATSPKT_OPCODE_TESTSET_BEGIN))
820 rc = atsDoTestSetBegin(pThis, pInst, pPktHdr);
821 else if (atsIsSameOpcode(pPktHdr, ATSPKT_OPCODE_TESTSET_END))
822 rc = atsDoTestSetEnd(pThis, pInst, pPktHdr);
823 else if (atsIsSameOpcode(pPktHdr, ATSPKT_OPCODE_TESTSET_SEND))
824 rc = atsDoTestSetSend(pThis, pInst, pPktHdr);
825 /* Audio testing: */
826 else if (atsIsSameOpcode(pPktHdr, ATSPKT_OPCODE_TONE_PLAY))
827 rc = atsDoTonePlay(pThis, pInst, pPktHdr);
828 else if (atsIsSameOpcode(pPktHdr, ATSPKT_OPCODE_TONE_RECORD))
829 rc = atsDoToneRecord(pThis, pInst, pPktHdr);
830 /* Misc: */
831 else
832 rc = atsReplyUnknown(pThis, pInst, pPktHdr);
833
834 RTMemFree(pPktHdr);
835
836 return rc;
837}
838
839static int atsClientDisconnect(PATSSERVER pThis, PATSCLIENTINST pInst)
840{
841 AssertReturn(pInst->enmState != ATSCLIENTSTATE_DESTROYING, VERR_WRONG_ORDER);
842
843 pInst->enmState = ATSCLIENTSTATE_DESTROYING;
844 pThis->pTransport->pfnNotifyBye(pThis->pTransportInst, pInst->pTransportClient);
845
846 return VINF_SUCCESS;
847}
848
849/**
850 * Free's (destroys) a client instance.
851 *
852 * @returns nothing.
853 * @param pInst The opaque ATS instance structure.
854 */
855static void atsClientFree(PATSCLIENTINST pInst)
856{
857 if (pInst->pszHostname)
858 RTStrFree(pInst->pszHostname);
859 RTMemFree(pInst);
860}
861
862/**
863 * The main thread worker serving the clients.
864 */
865static DECLCALLBACK(int) atsClientWorker(RTTHREAD hThread, void *pvUser)
866{
867 RT_NOREF(hThread);
868
869 PATSSERVER pThis = (PATSSERVER)pvUser;
870 AssertPtrReturn(pThis, VERR_INVALID_POINTER);
871
872 unsigned cClientsMax = 0;
873 unsigned cClientsCur = 0;
874 PATSCLIENTINST *papInsts = NULL;
875
876 /* Add the pipe to the poll set. */
877 int rc = RTPollSetAddPipe(pThis->hPollSet, pThis->hPipeR, RTPOLL_EVT_READ | RTPOLL_EVT_ERROR, 0);
878 if (RT_SUCCESS(rc))
879 {
880 while (!pThis->fTerminate)
881 {
882 uint32_t fEvts;
883 uint32_t uId;
884 rc = RTPoll(pThis->hPollSet, RT_INDEFINITE_WAIT, &fEvts, &uId);
885 if (RT_SUCCESS(rc))
886 {
887 if (uId == 0)
888 {
889 if (fEvts & RTPOLL_EVT_ERROR)
890 break;
891
892 /* We got woken up because of a new client. */
893 Assert(fEvts & RTPOLL_EVT_READ);
894
895 uint8_t bRead;
896 size_t cbRead = 0;
897 rc = RTPipeRead(pThis->hPipeR, &bRead, 1, &cbRead);
898 AssertRC(rc);
899
900 RTCritSectEnter(&pThis->CritSectClients);
901 /* Walk the list and add all new clients. */
902 PATSCLIENTINST pIt, pItNext;
903 RTListForEachSafe(&pThis->LstClientsNew, pIt, pItNext, ATSCLIENTINST, NdLst)
904 {
905 RTListNodeRemove(&pIt->NdLst);
906 Assert(cClientsCur <= cClientsMax);
907 if (cClientsCur == cClientsMax)
908 {
909 /* Realloc to accommodate for the new clients. */
910 PATSCLIENTINST *papInstsNew = (PATSCLIENTINST *)RTMemReallocZ(papInsts, cClientsMax * sizeof(PATSCLIENTINST), (cClientsMax + 10) * sizeof(PATSCLIENTINST));
911 if (RT_LIKELY(papInstsNew))
912 {
913 cClientsMax += 10;
914 papInsts = papInstsNew;
915 }
916 }
917 if (cClientsCur < cClientsMax)
918 {
919 /* Find a free slot in the client array. */
920 unsigned idxSlt = 0;
921 while ( idxSlt < cClientsMax
922 && papInsts[idxSlt] != NULL)
923 idxSlt++;
924
925 rc = pThis->pTransport->pfnPollSetAdd(pThis->pTransportInst, pThis->hPollSet, pIt->pTransportClient, idxSlt + 1);
926 if (RT_SUCCESS(rc))
927 {
928 cClientsCur++;
929 papInsts[idxSlt] = pIt;
930 }
931 else
932 {
933 atsClientDisconnect(pThis, pIt);
934 atsClientFree(pIt);
935 pIt = NULL;
936 }
937 }
938 else
939 {
940 atsClientDisconnect(pThis, pIt);
941 atsClientFree(pIt);
942 pIt = NULL;
943 }
944 }
945 RTCritSectLeave(&pThis->CritSectClients);
946 }
947 else
948 {
949 bool fDisconnect = false;
950
951 /* Client sends a request, pick the right client and process it. */
952 PATSCLIENTINST pInst = papInsts[uId - 1];
953 AssertPtr(pInst);
954 if (fEvts & RTPOLL_EVT_READ)
955 rc = atsClientReqProcess(pThis, pInst, &fDisconnect);
956
957 if ( (fEvts & RTPOLL_EVT_ERROR)
958 || RT_FAILURE(rc)
959 || fDisconnect)
960 {
961 /* Close connection and remove client from array. */
962 int rc2 = pThis->pTransport->pfnPollSetRemove(pThis->pTransportInst, pThis->hPollSet, pInst->pTransportClient, uId);
963 AssertRC(rc2);
964
965 atsClientDisconnect(pThis, pInst);
966 atsClientFree(pInst);
967 pInst = NULL;
968
969 papInsts[uId - 1] = NULL;
970 Assert(cClientsCur);
971 cClientsCur--;
972 }
973 }
974 }
975 }
976 }
977
978 return rc;
979}
980
981/**
982 * The main thread waiting for new client connections.
983 *
984 * @returns VBox status code.
985 */
986static DECLCALLBACK(int) atsMainThread(RTTHREAD hThread, void *pvUser)
987{
988 RT_NOREF(hThread);
989
990 PATSSERVER pThis = (PATSSERVER)pvUser;
991 AssertPtrReturn(pThis, VERR_INVALID_POINTER);
992
993 int rc = RTThreadUserSignal(hThread);
994 AssertRCReturn(rc, rc);
995
996 while (!pThis->fTerminate)
997 {
998 /*
999 * Wait for new connection and spin off a new thread
1000 * for every new client.
1001 */
1002 PATSTRANSPORTCLIENT pTransportClient;
1003 rc = pThis->pTransport->pfnWaitForConnect(pThis->pTransportInst, &pTransportClient);
1004 if (RT_FAILURE(rc))
1005 continue;
1006
1007 /*
1008 * New connection, create new client structure and spin of
1009 * the request handling thread.
1010 */
1011 PATSCLIENTINST pInst = (PATSCLIENTINST)RTMemAllocZ(sizeof(ATSCLIENTINST));
1012 if (RT_LIKELY(pInst))
1013 {
1014 pInst->enmState = ATSCLIENTSTATE_INITIALISING;
1015 pInst->pTransportClient = pTransportClient;
1016 pInst->pszHostname = NULL;
1017
1018 /* Add client to the new list and inform the worker thread. */
1019 RTCritSectEnter(&pThis->CritSectClients);
1020 RTListAppend(&pThis->LstClientsNew, &pInst->NdLst);
1021 RTCritSectLeave(&pThis->CritSectClients);
1022
1023 size_t cbWritten = 0;
1024 rc = RTPipeWrite(pThis->hPipeW, "", 1, &cbWritten);
1025 if (RT_FAILURE(rc))
1026 LogRel(("Failed to inform worker thread of a new client, rc=%Rrc\n", rc));
1027 }
1028 else
1029 {
1030 LogRel(("Creating new client structure failed with out of memory error\n"));
1031 pThis->pTransport->pfnNotifyBye(pThis->pTransportInst, pTransportClient);
1032 }
1033 }
1034
1035 return rc;
1036}
1037
1038/**
1039 * Creates an ATS instance.
1040 *
1041 * @returns VBox status code.
1042 * @param pThis The ATS instance to create.
1043 */
1044int AudioTestSvcCreate(PATSSERVER pThis)
1045{
1046 /*
1047 * The default transporter is the first one.
1048 */
1049 pThis->pTransport = g_apTransports[0]; /** @todo Make this dynamic. */
1050
1051 return pThis->pTransport->pfnCreate(&pThis->pTransportInst);
1052}
1053
1054/**
1055 * Initializes an ATS instance.
1056 *
1057 * @returns VBox status code.
1058 * @param pThis The ATS instance.
1059 * @param pCallbacks The callbacks table to use.
1060 */
1061int AudioTestSvcInit(PATSSERVER pThis, PCATSCALLBACKS pCallbacks)
1062{
1063 memcpy(&pThis->Callbacks, pCallbacks, sizeof(ATSCALLBACKS));
1064
1065 pThis->fStarted = false;
1066 pThis->fTerminate = false;
1067
1068 pThis->hPipeR = NIL_RTPIPE;
1069 pThis->hPipeW = NIL_RTPIPE;
1070
1071 RTListInit(&pThis->LstClientsNew);
1072
1073 /*
1074 * Initialize the transport layer.
1075 */
1076 int rc = RTCritSectInit(&pThis->CritSectClients);
1077 if (RT_SUCCESS(rc))
1078 {
1079 rc = RTPollSetCreate(&pThis->hPollSet);
1080 if (RT_SUCCESS(rc))
1081 {
1082 rc = RTPipeCreate(&pThis->hPipeR, &pThis->hPipeW, 0);
1083 if (RT_SUCCESS(rc))
1084 {
1085 /* Spin off the thread serving connections. */
1086 rc = RTThreadCreate(&pThis->hThreadServing, atsClientWorker, pThis, 0, RTTHREADTYPE_IO, RTTHREADFLAGS_WAITABLE,
1087 "AUDTSTSRVC");
1088 if (RT_SUCCESS(rc))
1089 return VINF_SUCCESS;
1090 else
1091 LogRel(("Creating the client worker thread failed with %Rrc\n", rc));
1092
1093 RTPipeClose(pThis->hPipeR);
1094 RTPipeClose(pThis->hPipeW);
1095 }
1096 else
1097 LogRel(("Creating communications pipe failed with %Rrc\n", rc));
1098
1099 RTPollSetDestroy(pThis->hPollSet);
1100 }
1101 else
1102 LogRel(("Creating pollset failed with %Rrc\n", rc));
1103
1104 RTCritSectDelete(&pThis->CritSectClients);
1105 }
1106 else
1107 LogRel(("Creating global critical section failed with %Rrc\n", rc));
1108
1109 return rc;
1110}
1111
1112/**
1113 * Handles a command line option.
1114 *
1115 * @returns VBox status code.
1116 * @param pThis The ATS instance to handle option for.
1117 * @param ch Option (short) to handle.
1118 * @param pVal Option union to store the result in on success.
1119 */
1120int AudioTestSvcHandleOption(PATSSERVER pThis, int ch, PCRTGETOPTUNION pVal)
1121{
1122 AssertPtrReturn(pThis->pTransport, VERR_WRONG_ORDER); /* Must be creatd first. */
1123 if (!pThis->pTransport->pfnOption)
1124 return VERR_GETOPT_UNKNOWN_OPTION;
1125 return pThis->pTransport->pfnOption(pThis->pTransportInst, ch, pVal);
1126}
1127
1128/**
1129 * Starts a formerly initialized ATS instance.
1130 *
1131 * @returns VBox status code.
1132 * @param pThis The ATS instance to start.
1133 */
1134int AudioTestSvcStart(PATSSERVER pThis)
1135{
1136 int rc = pThis->pTransport->pfnStart(pThis->pTransportInst);
1137 if (RT_SUCCESS(rc))
1138 {
1139 /* Spin off the connection thread. */
1140 rc = RTThreadCreate(&pThis->hThreadMain, atsMainThread, pThis, 0, RTTHREADTYPE_DEFAULT, RTTHREADFLAGS_WAITABLE,
1141 "AUDTSTSRVM");
1142 if (RT_SUCCESS(rc))
1143 {
1144 rc = RTThreadUserWait(pThis->hThreadMain, RT_MS_30SEC);
1145 if (RT_SUCCESS(rc))
1146 pThis->fStarted = true;
1147 }
1148 }
1149
1150 return rc;
1151}
1152
1153/**
1154 * Shuts down a formerly started ATS instance.
1155 *
1156 * @returns VBox status code.
1157 * @param pThis The ATS instance.
1158 */
1159int AudioTestSvcShutdown(PATSSERVER pThis)
1160{
1161 if (!pThis->fStarted)
1162 return VINF_SUCCESS;
1163
1164 ASMAtomicXchgBool(&pThis->fTerminate, true);
1165
1166 if (pThis->pTransport)
1167 pThis->pTransport->pfnTerm(pThis->pTransportInst);
1168
1169 size_t cbWritten;
1170 int rc = RTPipeWrite(pThis->hPipeW, "", 1, &cbWritten);
1171 AssertRCReturn(rc, rc);
1172
1173 /* First close serving thread. */
1174 int rcThread;
1175 rc = RTThreadWait(pThis->hThreadServing, RT_MS_30SEC, &rcThread);
1176 if (RT_SUCCESS(rc))
1177 {
1178 rc = rcThread;
1179 if (RT_SUCCESS(rc))
1180 {
1181 /* Close the main thread last. */
1182 rc = RTThreadWait(pThis->hThreadMain, RT_MS_30SEC, &rcThread);
1183 if (RT_SUCCESS(rc))
1184 rc = rcThread;
1185
1186 if (rc == VERR_TCP_SERVER_DESTROYED)
1187 rc = VINF_SUCCESS;
1188 }
1189 }
1190
1191 if (RT_SUCCESS(rc))
1192 pThis->fStarted = false;
1193
1194 return rc;
1195}
1196
1197/**
1198 * Destroys an ATS instance, internal version.
1199 *
1200 * @returns VBox status code.
1201 * @param pThis ATS instance to destroy.
1202 */
1203static int audioTestSvcDestroyInternal(PATSSERVER pThis)
1204{
1205 int rc = VINF_SUCCESS;
1206
1207 if (pThis->hPipeR != NIL_RTPIPE)
1208 {
1209 rc = RTPipeClose(pThis->hPipeR);
1210 AssertRCReturn(rc, rc);
1211 pThis->hPipeR = NIL_RTPIPE;
1212 }
1213
1214 if (pThis->hPipeW != NIL_RTPIPE)
1215 {
1216 rc = RTPipeClose(pThis->hPipeW);
1217 AssertRCReturn(rc, rc);
1218 pThis->hPipeW = NIL_RTPIPE;
1219 }
1220
1221 RTPollSetDestroy(pThis->hPollSet);
1222 pThis->hPollSet = NIL_RTPOLLSET;
1223
1224 PATSCLIENTINST pIt, pItNext;
1225 RTListForEachSafe(&pThis->LstClientsNew, pIt, pItNext, ATSCLIENTINST, NdLst)
1226 {
1227 RTListNodeRemove(&pIt->NdLst);
1228
1229 RTMemFree(pIt);
1230 pIt = NULL;
1231 }
1232
1233 if (RTCritSectIsInitialized(&pThis->CritSectClients))
1234 {
1235 rc = RTCritSectDelete(&pThis->CritSectClients);
1236 AssertRCReturn(rc, rc);
1237 }
1238
1239 return rc;
1240}
1241
1242/**
1243 * Destroys an ATS instance.
1244 *
1245 * @returns VBox status code.
1246 * @param pThis ATS instance to destroy.
1247 */
1248int AudioTestSvcDestroy(PATSSERVER pThis)
1249{
1250 int rc = audioTestSvcDestroyInternal(pThis);
1251 if (RT_SUCCESS(rc))
1252 {
1253 if (pThis->pTransport)
1254 {
1255 if ( pThis->pTransport->pfnDestroy
1256 && pThis->pTransportInst)
1257 {
1258 pThis->pTransport->pfnDestroy(pThis->pTransportInst);
1259 pThis->pTransportInst = NULL;
1260 }
1261 }
1262 }
1263
1264 return rc;
1265}
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