blob: d06f0f3612a0806546348e3576bbcf1da65b1258 [file] [log] [blame]
The Android Open Source Project00f06fc2009-03-03 19:32:15 -08001/* //device/libs/telephony/ril.cpp
2**
3** Copyright 2006, The Android Open Source Project
4**
5** Licensed under the Apache License, Version 2.0 (the "License");
6** you may not use this file except in compliance with the License.
7** You may obtain a copy of the License at
8**
9** http://www.apache.org/licenses/LICENSE-2.0
10**
11** Unless required by applicable law or agreed to in writing, software
12** distributed under the License is distributed on an "AS IS" BASIS,
13** WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
14** See the License for the specific language governing permissions and
15** limitations under the License.
16*/
17
18#define LOG_TAG "RILC"
19
20#include <hardware_legacy/power.h>
21
22#include <telephony/ril.h>
Wink Savillef4c4d362009-04-02 01:37:03 -070023#include <telephony/ril_cdma_sms.h>
The Android Open Source Project00f06fc2009-03-03 19:32:15 -080024#include <cutils/sockets.h>
25#include <cutils/jstring.h>
26#include <cutils/record_stream.h>
27#include <utils/Log.h>
28#include <utils/SystemClock.h>
29#include <pthread.h>
30#include <utils/Parcel.h>
31#include <cutils/jstring.h>
32
33#include <sys/types.h>
34#include <pwd.h>
35
36#include <stdio.h>
37#include <stdlib.h>
38#include <stdarg.h>
39#include <string.h>
40#include <unistd.h>
41#include <fcntl.h>
42#include <time.h>
43#include <errno.h>
44#include <assert.h>
45#include <ctype.h>
46#include <alloca.h>
47#include <sys/un.h>
48#include <assert.h>
49#include <netinet/in.h>
50#include <cutils/properties.h>
51
52#include <ril_event.h>
53
54namespace android {
55
56#define PHONE_PROCESS "radio"
57
58#define SOCKET_NAME_RIL "rild"
59#define SOCKET_NAME_RIL_DEBUG "rild-debug"
60
61#define ANDROID_WAKE_LOCK_NAME "radio-interface"
62
63
64#define PROPERTY_RIL_IMPL "gsm.version.ril-impl"
65
66// match with constant in RIL.java
67#define MAX_COMMAND_BYTES (8 * 1024)
68
69// Basically: memset buffers that the client library
70// shouldn't be using anymore in an attempt to find
71// memory usage issues sooner.
72#define MEMSET_FREED 1
73
74#define NUM_ELEMS(a) (sizeof (a) / sizeof (a)[0])
75
Wink Savillef4c4d362009-04-02 01:37:03 -070076#define MIN(a,b) ((a)<(b) ? (a) : (b))
77
The Android Open Source Project00f06fc2009-03-03 19:32:15 -080078/* Constants for response types */
79#define RESPONSE_SOLICITED 0
80#define RESPONSE_UNSOLICITED 1
81
82/* Negative values for private RIL errno's */
83#define RIL_ERRNO_INVALID_RESPONSE -1
84
85// request, response, and unsolicited msg print macro
86#define PRINTBUF_SIZE 8096
87
88// Enable RILC log
89#define RILC_LOG 0
90
91#if RILC_LOG
92 #define startRequest sprintf(printBuf, "(")
93 #define closeRequest sprintf(printBuf, "%s)", printBuf)
94 #define printRequest(token, req) \
95 LOGD("[%04d]> %s %s", token, requestToString(req), printBuf)
96
97 #define startResponse sprintf(printBuf, "%s {", printBuf)
98 #define closeResponse sprintf(printBuf, "%s}", printBuf)
99 #define printResponse LOGD("%s", printBuf)
100
101 #define clearPrintBuf printBuf[0] = 0
102 #define removeLastChar printBuf[strlen(printBuf)-1] = 0
103 #define appendPrintBuf(x...) sprintf(printBuf, x)
104#else
105 #define startRequest
106 #define closeRequest
107 #define printRequest(token, req)
108 #define startResponse
109 #define closeResponse
110 #define printResponse
111 #define clearPrintBuf
112 #define removeLastChar
113 #define appendPrintBuf(x...)
114#endif
115
116enum WakeType {DONT_WAKE, WAKE_PARTIAL};
117
118typedef struct {
119 int requestNumber;
120 void (*dispatchFunction) (Parcel &p, struct RequestInfo *pRI);
121 int(*responseFunction) (Parcel &p, void *response, size_t responselen);
122} CommandInfo;
123
124typedef struct {
125 int requestNumber;
126 int (*responseFunction) (Parcel &p, void *response, size_t responselen);
127 WakeType wakeType;
128} UnsolResponseInfo;
129
130typedef struct RequestInfo {
131 int32_t token; //this is not RIL_Token
132 CommandInfo *pCI;
133 struct RequestInfo *p_next;
134 char cancelled;
135 char local; // responses to local commands do not go back to command process
136} RequestInfo;
137
Wink Saville3d54e742009-05-18 18:00:44 -0700138typedef struct UserCallbackInfo {
The Android Open Source Project00f06fc2009-03-03 19:32:15 -0800139 RIL_TimedCallback p_callback;
140 void *userParam;
141 struct ril_event event;
142 struct UserCallbackInfo *p_next;
143} UserCallbackInfo;
144
145
146/*******************************************************************/
147
148RIL_RadioFunctions s_callbacks = {0, NULL, NULL, NULL, NULL, NULL};
149static int s_registerCalled = 0;
150
151static pthread_t s_tid_dispatch;
152static pthread_t s_tid_reader;
153static int s_started = 0;
154
155static int s_fdListen = -1;
156static int s_fdCommand = -1;
157static int s_fdDebug = -1;
158
159static int s_fdWakeupRead;
160static int s_fdWakeupWrite;
161
162static struct ril_event s_commands_event;
163static struct ril_event s_wakeupfd_event;
164static struct ril_event s_listen_event;
165static struct ril_event s_wake_timeout_event;
166static struct ril_event s_debug_event;
167
168
169static const struct timeval TIMEVAL_WAKE_TIMEOUT = {1,0};
170
171static pthread_mutex_t s_pendingRequestsMutex = PTHREAD_MUTEX_INITIALIZER;
172static pthread_mutex_t s_writeMutex = PTHREAD_MUTEX_INITIALIZER;
173static pthread_mutex_t s_startupMutex = PTHREAD_MUTEX_INITIALIZER;
174static pthread_cond_t s_startupCond = PTHREAD_COND_INITIALIZER;
175
176static pthread_mutex_t s_dispatchMutex = PTHREAD_MUTEX_INITIALIZER;
177static pthread_cond_t s_dispatchCond = PTHREAD_COND_INITIALIZER;
178
179static RequestInfo *s_pendingRequests = NULL;
180
181static RequestInfo *s_toDispatchHead = NULL;
182static RequestInfo *s_toDispatchTail = NULL;
183
184static UserCallbackInfo *s_last_wake_timeout_info = NULL;
185
186static void *s_lastNITZTimeData = NULL;
187static size_t s_lastNITZTimeDataSize;
188
189#if RILC_LOG
190 static char printBuf[PRINTBUF_SIZE];
191#endif
192
193/*******************************************************************/
194
195static void dispatchVoid (Parcel& p, RequestInfo *pRI);
196static void dispatchString (Parcel& p, RequestInfo *pRI);
197static void dispatchStrings (Parcel& p, RequestInfo *pRI);
198static void dispatchInts (Parcel& p, RequestInfo *pRI);
199static void dispatchDial (Parcel& p, RequestInfo *pRI);
200static void dispatchSIM_IO (Parcel& p, RequestInfo *pRI);
201static void dispatchCallForward(Parcel& p, RequestInfo *pRI);
202static void dispatchRaw(Parcel& p, RequestInfo *pRI);
203static void dispatchSmsWrite (Parcel &p, RequestInfo *pRI);
204
Wink Savillef4c4d362009-04-02 01:37:03 -0700205static void dispatchCdmaSms(Parcel &p, RequestInfo *pRI);
206static void dispatchCdmaSmsAck(Parcel &p, RequestInfo *pRI);
207static void dispatchBrSmsCnf(Parcel &p, RequestInfo *pRI);
208static void dispatchCdmaBrSmsCnf(Parcel &p, RequestInfo *pRI);
209static void dispatchRilCdmaSmsWriteArgs(Parcel &p, RequestInfo *pRI);
The Android Open Source Project00f06fc2009-03-03 19:32:15 -0800210static int responseInts(Parcel &p, void *response, size_t responselen);
211static int responseStrings(Parcel &p, void *response, size_t responselen);
212static int responseString(Parcel &p, void *response, size_t responselen);
213static int responseVoid(Parcel &p, void *response, size_t responselen);
214static int responseCallList(Parcel &p, void *response, size_t responselen);
215static int responseSMS(Parcel &p, void *response, size_t responselen);
216static int responseSIM_IO(Parcel &p, void *response, size_t responselen);
217static int responseCallForwards(Parcel &p, void *response, size_t responselen);
Wink Savillef4c4d362009-04-02 01:37:03 -0700218static int responseDataCallList(Parcel &p, void *response, size_t responselen);
The Android Open Source Project00f06fc2009-03-03 19:32:15 -0800219static int responseRaw(Parcel &p, void *response, size_t responselen);
220static int responseSsn(Parcel &p, void *response, size_t responselen);
Wink Savillef4c4d362009-04-02 01:37:03 -0700221static int responseSimStatus(Parcel &p, void *response, size_t responselen);
222static int responseBrSmsCnf(Parcel &p, void *response, size_t responselen);
223static int responseCdmaBrCnf(Parcel &p, void *response, size_t responselen);
224static int responseCdmaSms(Parcel &p, void *response, size_t responselen);
The Android Open Source Project00f06fc2009-03-03 19:32:15 -0800225static int responseCellList(Parcel &p, void *response, size_t responselen);
Wink Saville3d54e742009-05-18 18:00:44 -0700226static int responseCdmaInformationRecords(Parcel &p,void *response, size_t responselen);
227static int responseRilSignalStrength(Parcel &p,void *response, size_t responselen);
228static int responseCallRing(Parcel &p, void *response, size_t responselen);
229static int responseCdmaSignalInfoRecord(Parcel &p,void *response, size_t responselen);
230static int responseCdmaCallWaiting(Parcel &p,void *response, size_t responselen);
The Android Open Source Project00f06fc2009-03-03 19:32:15 -0800231
232extern "C" const char * requestToString(int request);
233extern "C" const char * failCauseToString(RIL_Errno);
234extern "C" const char * callStateToString(RIL_CallState);
235extern "C" const char * radioStateToString(RIL_RadioState);
236
237#ifdef RIL_SHLIB
238extern "C" void RIL_onUnsolicitedResponse(int unsolResponse, void *data,
239 size_t datalen);
240#endif
241
242static UserCallbackInfo * internalRequestTimedCallback
243 (RIL_TimedCallback callback, void *param,
244 const struct timeval *relativeTime);
245
246/** Index == requestNumber */
247static CommandInfo s_commands[] = {
248#include "ril_commands.h"
249};
250
251static UnsolResponseInfo s_unsolResponses[] = {
252#include "ril_unsol_commands.h"
253};
254
255
256static char *
Wink Savillef4c4d362009-04-02 01:37:03 -0700257strdupReadString(Parcel &p) {
The Android Open Source Project00f06fc2009-03-03 19:32:15 -0800258 size_t stringlen;
259 const char16_t *s16;
260
261 s16 = p.readString16Inplace(&stringlen);
262
263 return strndup16to8(s16, stringlen);
264}
265
Wink Savillef4c4d362009-04-02 01:37:03 -0700266static void writeStringToParcel(Parcel &p, const char *s) {
The Android Open Source Project00f06fc2009-03-03 19:32:15 -0800267 char16_t *s16;
268 size_t s16_len;
269 s16 = strdup8to16(s, &s16_len);
270 p.writeString16(s16, s16_len);
271 free(s16);
272}
273
274
275static void
Wink Savillef4c4d362009-04-02 01:37:03 -0700276memsetString (char *s) {
The Android Open Source Project00f06fc2009-03-03 19:32:15 -0800277 if (s != NULL) {
278 memset (s, 0, strlen(s));
279 }
280}
281
282void nullParcelReleaseFunction (const uint8_t* data, size_t dataSize,
283 const size_t* objects, size_t objectsSize,
Wink Savillef4c4d362009-04-02 01:37:03 -0700284 void* cookie) {
The Android Open Source Project00f06fc2009-03-03 19:32:15 -0800285 // do nothing -- the data reference lives longer than the Parcel object
286}
287
288/**
289 * To be called from dispatch thread
290 * Issue a single local request, ensuring that the response
291 * is not sent back up to the command process
292 */
293static void
Wink Savillef4c4d362009-04-02 01:37:03 -0700294issueLocalRequest(int request, void *data, int len) {
The Android Open Source Project00f06fc2009-03-03 19:32:15 -0800295 RequestInfo *pRI;
296 int ret;
297
298 pRI = (RequestInfo *)calloc(1, sizeof(RequestInfo));
299
300 pRI->local = 1;
301 pRI->token = 0xffffffff; // token is not used in this context
302 pRI->pCI = &(s_commands[request]);
303
304 ret = pthread_mutex_lock(&s_pendingRequestsMutex);
305 assert (ret == 0);
306
307 pRI->p_next = s_pendingRequests;
308 s_pendingRequests = pRI;
309
310 ret = pthread_mutex_unlock(&s_pendingRequestsMutex);
311 assert (ret == 0);
312
313 LOGD("C[locl]> %s", requestToString(request));
314
315 s_callbacks.onRequest(request, data, len, pRI);
316}
317
318
319
320static int
Wink Savillef4c4d362009-04-02 01:37:03 -0700321processCommandBuffer(void *buffer, size_t buflen) {
The Android Open Source Project00f06fc2009-03-03 19:32:15 -0800322 Parcel p;
323 status_t status;
324 int32_t request;
325 int32_t token;
326 RequestInfo *pRI;
327 int ret;
328
329 p.setData((uint8_t *) buffer, buflen);
330
331 // status checked at end
332 status = p.readInt32(&request);
333 status = p.readInt32 (&token);
334
335 if (status != NO_ERROR) {
336 LOGE("invalid request block");
337 return 0;
338 }
339
340 if (request < 1 || request >= (int32_t)NUM_ELEMS(s_commands)) {
341 LOGE("unsupported request code %d token %d", request, token);
342 // FIXME this should perhaps return a response
343 return 0;
344 }
345
346
347 pRI = (RequestInfo *)calloc(1, sizeof(RequestInfo));
348
349 pRI->token = token;
350 pRI->pCI = &(s_commands[request]);
351
352 ret = pthread_mutex_lock(&s_pendingRequestsMutex);
353 assert (ret == 0);
354
355 pRI->p_next = s_pendingRequests;
356 s_pendingRequests = pRI;
357
358 ret = pthread_mutex_unlock(&s_pendingRequestsMutex);
359 assert (ret == 0);
360
361/* sLastDispatchedToken = token; */
362
363 pRI->pCI->dispatchFunction(p, pRI);
364
365 return 0;
366}
367
368static void
Wink Savillef4c4d362009-04-02 01:37:03 -0700369invalidCommandBlock (RequestInfo *pRI) {
The Android Open Source Project00f06fc2009-03-03 19:32:15 -0800370 LOGE("invalid command block for token %d request %s",
371 pRI->token, requestToString(pRI->pCI->requestNumber));
372}
373
374/** Callee expects NULL */
375static void
Wink Savillef4c4d362009-04-02 01:37:03 -0700376dispatchVoid (Parcel& p, RequestInfo *pRI) {
The Android Open Source Project00f06fc2009-03-03 19:32:15 -0800377 clearPrintBuf;
378 printRequest(pRI->token, pRI->pCI->requestNumber);
379 s_callbacks.onRequest(pRI->pCI->requestNumber, NULL, 0, pRI);
380}
381
382/** Callee expects const char * */
383static void
Wink Savillef4c4d362009-04-02 01:37:03 -0700384dispatchString (Parcel& p, RequestInfo *pRI) {
The Android Open Source Project00f06fc2009-03-03 19:32:15 -0800385 status_t status;
386 size_t datalen;
387 size_t stringlen;
388 char *string8 = NULL;
389
390 string8 = strdupReadString(p);
391
392 startRequest;
393 appendPrintBuf("%s%s", printBuf, string8);
394 closeRequest;
395 printRequest(pRI->token, pRI->pCI->requestNumber);
396
397 s_callbacks.onRequest(pRI->pCI->requestNumber, string8,
398 sizeof(char *), pRI);
399
400#ifdef MEMSET_FREED
401 memsetString(string8);
402#endif
403
404 free(string8);
405 return;
406invalid:
407 invalidCommandBlock(pRI);
408 return;
409}
410
411/** Callee expects const char ** */
412static void
Wink Savillef4c4d362009-04-02 01:37:03 -0700413dispatchStrings (Parcel &p, RequestInfo *pRI) {
The Android Open Source Project00f06fc2009-03-03 19:32:15 -0800414 int32_t countStrings;
415 status_t status;
416 size_t datalen;
417 char **pStrings;
418
419 status = p.readInt32 (&countStrings);
420
421 if (status != NO_ERROR) {
422 goto invalid;
423 }
424
425 startRequest;
426 if (countStrings == 0) {
427 // just some non-null pointer
428 pStrings = (char **)alloca(sizeof(char *));
429 datalen = 0;
430 } else if (((int)countStrings) == -1) {
431 pStrings = NULL;
432 datalen = 0;
433 } else {
434 datalen = sizeof(char *) * countStrings;
435
436 pStrings = (char **)alloca(datalen);
437
438 for (int i = 0 ; i < countStrings ; i++) {
439 pStrings[i] = strdupReadString(p);
440 appendPrintBuf("%s%s,", printBuf, pStrings[i]);
441 }
442 }
443 removeLastChar;
444 closeRequest;
445 printRequest(pRI->token, pRI->pCI->requestNumber);
446
447 s_callbacks.onRequest(pRI->pCI->requestNumber, pStrings, datalen, pRI);
448
449 if (pStrings != NULL) {
450 for (int i = 0 ; i < countStrings ; i++) {
451#ifdef MEMSET_FREED
452 memsetString (pStrings[i]);
453#endif
454 free(pStrings[i]);
455 }
456
457#ifdef MEMSET_FREED
458 memset(pStrings, 0, datalen);
459#endif
460 }
461
462 return;
463invalid:
464 invalidCommandBlock(pRI);
465 return;
466}
467
468/** Callee expects const int * */
469static void
Wink Savillef4c4d362009-04-02 01:37:03 -0700470dispatchInts (Parcel &p, RequestInfo *pRI) {
The Android Open Source Project00f06fc2009-03-03 19:32:15 -0800471 int32_t count;
472 status_t status;
473 size_t datalen;
474 int *pInts;
475
476 status = p.readInt32 (&count);
477
478 if (status != NO_ERROR || count == 0) {
479 goto invalid;
480 }
481
482 datalen = sizeof(int) * count;
483 pInts = (int *)alloca(datalen);
484
485 startRequest;
486 for (int i = 0 ; i < count ; i++) {
487 int32_t t;
488
489 status = p.readInt32(&t);
490 pInts[i] = (int)t;
491 appendPrintBuf("%s%d,", printBuf, t);
492
493 if (status != NO_ERROR) {
494 goto invalid;
495 }
496 }
497 removeLastChar;
498 closeRequest;
499 printRequest(pRI->token, pRI->pCI->requestNumber);
500
501 s_callbacks.onRequest(pRI->pCI->requestNumber, const_cast<int *>(pInts),
502 datalen, pRI);
503
504#ifdef MEMSET_FREED
505 memset(pInts, 0, datalen);
506#endif
507
508 return;
509invalid:
510 invalidCommandBlock(pRI);
511 return;
512}
513
514
515/**
516 * Callee expects const RIL_SMS_WriteArgs *
517 * Payload is:
518 * int32_t status
519 * String pdu
520 */
521static void
Wink Savillef4c4d362009-04-02 01:37:03 -0700522dispatchSmsWrite (Parcel &p, RequestInfo *pRI) {
The Android Open Source Project00f06fc2009-03-03 19:32:15 -0800523 RIL_SMS_WriteArgs args;
524 int32_t t;
525 status_t status;
526
527 memset (&args, 0, sizeof(args));
528
529 status = p.readInt32(&t);
530 args.status = (int)t;
531
532 args.pdu = strdupReadString(p);
533
534 if (status != NO_ERROR || args.pdu == NULL) {
535 goto invalid;
536 }
537
538 args.smsc = strdupReadString(p);
539
540 startRequest;
541 appendPrintBuf("%s%d,%s,smsc=%s", printBuf, args.status,
542 (char*)args.pdu, (char*)args.smsc);
543 closeRequest;
544 printRequest(pRI->token, pRI->pCI->requestNumber);
545
546 s_callbacks.onRequest(pRI->pCI->requestNumber, &args, sizeof(args), pRI);
547
548#ifdef MEMSET_FREED
549 memsetString (args.pdu);
550#endif
551
552 free (args.pdu);
553
554#ifdef MEMSET_FREED
555 memset(&args, 0, sizeof(args));
556#endif
557
558 return;
559invalid:
560 invalidCommandBlock(pRI);
561 return;
562}
563
564/**
565 * Callee expects const RIL_Dial *
566 * Payload is:
567 * String address
568 * int32_t clir
569 */
570static void
Wink Savillef4c4d362009-04-02 01:37:03 -0700571dispatchDial (Parcel &p, RequestInfo *pRI) {
The Android Open Source Project00f06fc2009-03-03 19:32:15 -0800572 RIL_Dial dial;
573 int32_t t;
574 status_t status;
575
576 memset (&dial, 0, sizeof(dial));
577
578 dial.address = strdupReadString(p);
579
580 status = p.readInt32(&t);
581 dial.clir = (int)t;
582
583 if (status != NO_ERROR || dial.address == NULL) {
584 goto invalid;
585 }
586
587 startRequest;
588 appendPrintBuf("%snum=%s,clir=%d", printBuf, dial.address, dial.clir);
589 closeRequest;
590 printRequest(pRI->token, pRI->pCI->requestNumber);
591
592 s_callbacks.onRequest(pRI->pCI->requestNumber, &dial, sizeof(dial), pRI);
593
594#ifdef MEMSET_FREED
595 memsetString (dial.address);
596#endif
597
598 free (dial.address);
599
600#ifdef MEMSET_FREED
601 memset(&dial, 0, sizeof(dial));
602#endif
603
604 return;
605invalid:
606 invalidCommandBlock(pRI);
607 return;
608}
609
610/**
611 * Callee expects const RIL_SIM_IO *
612 * Payload is:
613 * int32_t command
614 * int32_t fileid
615 * String path
616 * int32_t p1, p2, p3
617 * String data
618 * String pin2
619 */
620static void
Wink Savillef4c4d362009-04-02 01:37:03 -0700621dispatchSIM_IO (Parcel &p, RequestInfo *pRI) {
The Android Open Source Project00f06fc2009-03-03 19:32:15 -0800622 RIL_SIM_IO simIO;
623 int32_t t;
624 status_t status;
625
626 memset (&simIO, 0, sizeof(simIO));
627
628 // note we only check status at the end
629
630 status = p.readInt32(&t);
631 simIO.command = (int)t;
632
633 status = p.readInt32(&t);
634 simIO.fileid = (int)t;
635
636 simIO.path = strdupReadString(p);
637
638 status = p.readInt32(&t);
639 simIO.p1 = (int)t;
640
641 status = p.readInt32(&t);
642 simIO.p2 = (int)t;
643
644 status = p.readInt32(&t);
645 simIO.p3 = (int)t;
646
647 simIO.data = strdupReadString(p);
648 simIO.pin2 = strdupReadString(p);
649
650 startRequest;
651 appendPrintBuf("%scmd=0x%X,efid=0x%X,path=%s,%d,%d,%d,%s,pin2=%s", printBuf,
652 simIO.command, simIO.fileid, (char*)simIO.path,
653 simIO.p1, simIO.p2, simIO.p3,
654 (char*)simIO.data, (char*)simIO.pin2);
655 closeRequest;
656 printRequest(pRI->token, pRI->pCI->requestNumber);
657
658 if (status != NO_ERROR) {
659 goto invalid;
660 }
661
662 s_callbacks.onRequest(pRI->pCI->requestNumber, &simIO, sizeof(simIO), pRI);
663
664#ifdef MEMSET_FREED
665 memsetString (simIO.path);
666 memsetString (simIO.data);
667 memsetString (simIO.pin2);
668#endif
669
670 free (simIO.path);
671 free (simIO.data);
672 free (simIO.pin2);
673
674#ifdef MEMSET_FREED
675 memset(&simIO, 0, sizeof(simIO));
676#endif
677
678 return;
679invalid:
680 invalidCommandBlock(pRI);
681 return;
682}
683
684/**
685 * Callee expects const RIL_CallForwardInfo *
686 * Payload is:
687 * int32_t status/action
688 * int32_t reason
689 * int32_t serviceCode
690 * int32_t toa
691 * String number (0 length -> null)
692 * int32_t timeSeconds
693 */
694static void
Wink Savillef4c4d362009-04-02 01:37:03 -0700695dispatchCallForward(Parcel &p, RequestInfo *pRI) {
The Android Open Source Project00f06fc2009-03-03 19:32:15 -0800696 RIL_CallForwardInfo cff;
697 int32_t t;
698 status_t status;
699
700 memset (&cff, 0, sizeof(cff));
701
702 // note we only check status at the end
703
704 status = p.readInt32(&t);
705 cff.status = (int)t;
706
707 status = p.readInt32(&t);
708 cff.reason = (int)t;
709
710 status = p.readInt32(&t);
711 cff.serviceClass = (int)t;
712
713 status = p.readInt32(&t);
714 cff.toa = (int)t;
715
716 cff.number = strdupReadString(p);
717
718 status = p.readInt32(&t);
719 cff.timeSeconds = (int)t;
720
721 if (status != NO_ERROR) {
722 goto invalid;
723 }
724
725 // special case: number 0-length fields is null
726
727 if (cff.number != NULL && strlen (cff.number) == 0) {
728 cff.number = NULL;
729 }
730
731 startRequest;
732 appendPrintBuf("%sstat=%d,reason=%d,serv=%d,toa=%d,%s,tout=%d", printBuf,
733 cff.status, cff.reason, cff.serviceClass, cff.toa,
734 (char*)cff.number, cff.timeSeconds);
735 closeRequest;
736 printRequest(pRI->token, pRI->pCI->requestNumber);
737
738 s_callbacks.onRequest(pRI->pCI->requestNumber, &cff, sizeof(cff), pRI);
739
740#ifdef MEMSET_FREED
741 memsetString(cff.number);
742#endif
743
744 free (cff.number);
745
746#ifdef MEMSET_FREED
747 memset(&cff, 0, sizeof(cff));
748#endif
749
750 return;
751invalid:
752 invalidCommandBlock(pRI);
753 return;
754}
755
756
757static void
Wink Savillef4c4d362009-04-02 01:37:03 -0700758dispatchRaw(Parcel &p, RequestInfo *pRI) {
The Android Open Source Project00f06fc2009-03-03 19:32:15 -0800759 int32_t len;
760 status_t status;
761 const void *data;
762
763 status = p.readInt32(&len);
764
765 if (status != NO_ERROR) {
766 goto invalid;
767 }
768
769 // The java code writes -1 for null arrays
770 if (((int)len) == -1) {
771 data = NULL;
772 len = 0;
773 }
774
775 data = p.readInplace(len);
776
777 startRequest;
778 appendPrintBuf("%sraw_size=%d", printBuf, len);
779 closeRequest;
780 printRequest(pRI->token, pRI->pCI->requestNumber);
781
782 s_callbacks.onRequest(pRI->pCI->requestNumber, const_cast<void *>(data), len, pRI);
783
784 return;
785invalid:
786 invalidCommandBlock(pRI);
787 return;
788}
789
Wink Savillef4c4d362009-04-02 01:37:03 -0700790static void
791dispatchCdmaSms(Parcel &p, RequestInfo *pRI) {
792 RIL_CDMA_SMS_Message rcsm;
793 int32_t t;
794 uint8_t ut;
795 status_t status;
796 int32_t digitCount;
797 int digitLimit;
798
799 memset(&rcsm, 0, sizeof(rcsm));
800
801 status = p.readInt32(&t);
802 rcsm.uTeleserviceID = (int) t;
803
804 status = p.read(&ut,sizeof(ut));
805 rcsm.bIsServicePresent = (uint8_t) ut;
806
807 status = p.readInt32(&t);
808 rcsm.uServicecategory = (int) t;
809
810 status = p.readInt32(&t);
811 rcsm.sAddress.digit_mode = (RIL_CDMA_SMS_DigitMode) t;
812
813 status = p.readInt32(&t);
814 rcsm.sAddress.number_mode = (RIL_CDMA_SMS_NumberMode) t;
815
816 status = p.readInt32(&t);
817 rcsm.sAddress.number_type = (RIL_CDMA_SMS_NumberType) t;
818
819 status = p.readInt32(&t);
820 rcsm.sAddress.number_plan = (RIL_CDMA_SMS_NumberPlan) t;
821
822 status = p.read(&ut,sizeof(ut));
823 rcsm.sAddress.number_of_digits= (uint8_t) ut;
824
825 digitLimit= MIN((rcsm.sAddress.number_of_digits), RIL_CDMA_SMS_ADDRESS_MAX);
826 for(digitCount =0 ; digitCount < digitLimit; digitCount ++) {
827 status = p.read(&ut,sizeof(ut));
828 rcsm.sAddress.digits[digitCount] = (uint8_t) ut;
829 }
830
831 status = p.readInt32(&t);
832 rcsm.sSubAddress.subaddressType = (RIL_CDMA_SMS_SubaddressType) t;
833
834 status = p.read(&ut,sizeof(ut));
835 rcsm.sSubAddress.odd = (uint8_t) ut;
836
837 status = p.read(&ut,sizeof(ut));
838 rcsm.sSubAddress.number_of_digits = (uint8_t) ut;
839
840 digitLimit= MIN((rcsm.sSubAddress.number_of_digits), RIL_CDMA_SMS_SUBADDRESS_MAX);
841 for(digitCount =0 ; digitCount < digitLimit; digitCount ++) {
842 status = p.read(&ut,sizeof(ut));
843 rcsm.sSubAddress.digits[digitCount] = (uint8_t) ut;
844 }
845
846 status = p.readInt32(&t);
847 rcsm.uBearerDataLen = (int) t;
848
849 digitLimit= MIN((rcsm.uBearerDataLen), RIL_CDMA_SMS_BEARER_DATA_MAX);
850 for(digitCount =0 ; digitCount < digitLimit; digitCount ++) {
851 status = p.read(&ut, sizeof(ut));
852 rcsm.aBearerData[digitCount] = (uint8_t) ut;
853 }
854
855 if (status != NO_ERROR) {
856 goto invalid;
857 }
858
859 startRequest;
860 appendPrintBuf("%suTeleserviceID=%d, bIsServicePresent=%d, uServicecategory=%d, \
Wink Saville1b5fd232009-04-22 14:50:00 -0700861 sAddress.digit_mode=%d, sAddress.Number_mode=%d, sAddress.number_type=%d, ",
Wink Savillef4c4d362009-04-02 01:37:03 -0700862 printBuf, rcsm.uTeleserviceID,rcsm.bIsServicePresent,rcsm.uServicecategory,
Wink Saville1b5fd232009-04-22 14:50:00 -0700863 rcsm.sAddress.digit_mode, rcsm.sAddress.number_mode,rcsm.sAddress.number_type);
Wink Savillef4c4d362009-04-02 01:37:03 -0700864 closeRequest;
865
866 printRequest(pRI->token, pRI->pCI->requestNumber);
867
868 s_callbacks.onRequest(pRI->pCI->requestNumber, &rcsm, sizeof(rcsm),pRI);
869
870#ifdef MEMSET_FREED
871 memset(&rcsm, 0, sizeof(rcsm));
872#endif
873
874 return;
875
876invalid:
877 invalidCommandBlock(pRI);
878 return;
879}
880
881static void
882dispatchCdmaSmsAck(Parcel &p, RequestInfo *pRI) {
883 RIL_CDMA_SMS_Ack rcsa;
884 int32_t t;
885 status_t status;
886 int32_t digitCount;
887
888 memset(&rcsa, 0, sizeof(rcsa));
889
890 status = p.readInt32(&t);
891 rcsa.uErrorClass = (RIL_CDMA_SMS_ErrorClass) t;
892
893 status = p.readInt32(&t);
894 rcsa.uSMSCauseCode = (int) t;
895
896 if (status != NO_ERROR) {
897 goto invalid;
898 }
899
900 startRequest;
Wink Saville1b5fd232009-04-22 14:50:00 -0700901 appendPrintBuf("%suErrorClass=%d, uTLStatus=%d, ",
902 printBuf, rcsa.uErrorClass, rcsa.uSMSCauseCode);
Wink Savillef4c4d362009-04-02 01:37:03 -0700903 closeRequest;
904
905 printRequest(pRI->token, pRI->pCI->requestNumber);
906
907 s_callbacks.onRequest(pRI->pCI->requestNumber, &rcsa, sizeof(rcsa),pRI);
908
909#ifdef MEMSET_FREED
910 memset(&rcsa, 0, sizeof(rcsa));
911#endif
912
913 return;
914
915invalid:
916 invalidCommandBlock(pRI);
917 return;
918}
919
920static void
921dispatchBrSmsCnf(Parcel &p, RequestInfo *pRI) {
922 RIL_BroadcastSMSConfig rbsc;
923 int32_t t;
924 uint8_t ut;
925 status_t status;
926 int32_t digitCount;
927
928 memset(&rbsc, 0, sizeof(rbsc));
929
930 status = p.readInt32(&t);
931 rbsc.size = (int) t;
932
933 status = p.readInt32(&t);
934 rbsc.entries->uFromServiceID = (int) t;
935
936 status = p.readInt32(&t);
937 rbsc.entries->uToserviceID = (int) t;
938
939 //usage of read function on assumption that it reads any length given as 2nd argument
940 status = p.read(&ut,sizeof(ut));
941 rbsc.entries->bSelected = (uint8_t) ut;
942
943 if (status != NO_ERROR) {
944 goto invalid;
945 }
946
947 startRequest;
Wink Saville1b5fd232009-04-22 14:50:00 -0700948 appendPrintBuf("%ssize=%d, entries.uFromServiceID=%d, \
Wink Savillef4c4d362009-04-02 01:37:03 -0700949 entries.uToserviceID=%d, entries.bSelected =%d, ", printBuf,
950 rbsc.size,rbsc.entries->uFromServiceID, rbsc.entries->uToserviceID,
951 rbsc.entries->bSelected);
952 closeRequest;
953
954 printRequest(pRI->token, pRI->pCI->requestNumber);
955
956 s_callbacks.onRequest(pRI->pCI->requestNumber, &rbsc, sizeof(rbsc),pRI);
957
958#ifdef MEMSET_FREED
959 memset(&rbsc, 0, sizeof(rbsc));
960#endif
961
962 return;
963
964invalid:
965 invalidCommandBlock(pRI);
966 return;
967
968}
969
970static void
971dispatchCdmaBrSmsCnf(Parcel &p, RequestInfo *pRI) {
972 RIL_CDMA_BroadcastSMSConfig rcbsc;
973 int32_t t;
974 uint8_t ut;
975 status_t status;
976 int32_t digitCount;
977
Wink Savillef4c4d362009-04-02 01:37:03 -0700978 status = p.readInt32(&t);
979 rcbsc.size = (int) t;
980
Wink Savillef5903df2009-04-24 11:54:14 -0700981 if (rcbsc.size != 0) {
982 RIL_CDMA_BroadcastServiceInfo cdmaBsi[rcbsc.size];
983 for (int i = 0 ; i < rcbsc.size ; i++ ) {
984 status = p.readInt32(&t);
985 cdmaBsi[i].uServiceCategory = (int) t;
Wink Savillef4c4d362009-04-02 01:37:03 -0700986
Wink Savillef5903df2009-04-24 11:54:14 -0700987 status = p.readInt32(&t);
988 cdmaBsi[i].uLanguage = (int) t;
989
990 status = p.readInt32(&t);
991 cdmaBsi[i].bSelected = (uint8_t) t;
992
993 startRequest;
994 appendPrintBuf("%sentries.uServicecategory=%d, entries.uLanguage =%d, \
995 entries.bSelected =%d, ", printBuf, cdmaBsi[i].uServiceCategory,
996 cdmaBsi[i].uLanguage, cdmaBsi[i].bSelected);
997 closeRequest;
998 }
999 rcbsc.entries = (RIL_CDMA_BroadcastServiceInfo *)calloc(rcbsc.size,
1000 sizeof(RIL_CDMA_BroadcastServiceInfo));
1001 memcpy(rcbsc.entries, cdmaBsi, (sizeof(RIL_CDMA_BroadcastServiceInfo) * rcbsc.size));
1002 } else {
1003 rcbsc.entries = NULL;
1004 }
Wink Savillef4c4d362009-04-02 01:37:03 -07001005
1006 if (status != NO_ERROR) {
1007 goto invalid;
1008 }
1009
Wink Savillef5903df2009-04-24 11:54:14 -07001010 s_callbacks.onRequest(pRI->pCI->requestNumber,
1011 &rcbsc,
1012 (sizeof(RIL_CDMA_BroadcastServiceInfo) * rcbsc.size) + sizeof(int),
1013 pRI);
Wink Savillef4c4d362009-04-02 01:37:03 -07001014
1015#ifdef MEMSET_FREED
1016 memset(&rcbsc, 0, sizeof(rcbsc));
1017#endif
1018
1019 return;
1020
1021invalid:
1022 invalidCommandBlock(pRI);
1023 return;
1024
1025}
1026
1027static void dispatchRilCdmaSmsWriteArgs(Parcel &p, RequestInfo *pRI) {
1028 RIL_CDMA_SMS_WriteArgs rcsw;
1029 int32_t t;
1030 uint32_t ut;
1031 uint8_t uct;
1032 status_t status;
1033 int32_t digitCount;
1034
1035 memset(&rcsw, 0, sizeof(rcsw));
1036
1037 status = p.readInt32(&t);
1038 rcsw.status = t;
1039
1040 status = p.readInt32(&t);
1041 rcsw.message.uTeleserviceID = (int) t;
1042
1043 status = p.read(&uct,sizeof(uct));
1044 rcsw.message.bIsServicePresent = (uint8_t) uct;
1045
1046 status = p.readInt32(&t);
1047 rcsw.message.uServicecategory = (int) t;
1048
1049 status = p.readInt32(&t);
1050 rcsw.message.sAddress.digit_mode = (RIL_CDMA_SMS_DigitMode) t;
1051
1052 status = p.readInt32(&t);
1053 rcsw.message.sAddress.number_mode = (RIL_CDMA_SMS_NumberMode) t;
1054
1055 status = p.readInt32(&t);
1056 rcsw.message.sAddress.number_type = (RIL_CDMA_SMS_NumberType) t;
1057
1058 status = p.readInt32(&t);
1059 rcsw.message.sAddress.number_plan = (RIL_CDMA_SMS_NumberPlan) t;
1060
1061 status = p.read(&uct,sizeof(uct));
1062 rcsw.message.sAddress.number_of_digits = (uint8_t) uct;
1063
1064 for(digitCount = 0 ; digitCount < RIL_CDMA_SMS_ADDRESS_MAX; digitCount ++) {
1065 status = p.read(&uct,sizeof(uct));
1066 rcsw.message.sAddress.digits[digitCount] = (uint8_t) uct;
1067 }
1068
1069 status = p.readInt32(&t);
1070 rcsw.message.sSubAddress.subaddressType = (RIL_CDMA_SMS_SubaddressType) t;
1071
1072 status = p.read(&uct,sizeof(uct));
1073 rcsw.message.sSubAddress.odd = (uint8_t) uct;
1074
1075 status = p.read(&uct,sizeof(uct));
1076 rcsw.message.sSubAddress.number_of_digits = (uint8_t) uct;
1077
1078 for(digitCount = 0 ; digitCount < RIL_CDMA_SMS_SUBADDRESS_MAX; digitCount ++) {
1079 status = p.read(&uct,sizeof(uct));
1080 rcsw.message.sSubAddress.digits[digitCount] = (uint8_t) uct;
1081 }
1082
1083 status = p.readInt32(&t);
1084 rcsw.message.uBearerDataLen = (int) t;
1085
1086 for(digitCount = 0 ; digitCount < RIL_CDMA_SMS_BEARER_DATA_MAX; digitCount ++) {
1087 status = p.read(&uct, sizeof(uct));
1088 rcsw.message.aBearerData[digitCount] = (uint8_t) uct;
1089 }
1090
1091 if (status != NO_ERROR) {
1092 goto invalid;
1093 }
1094
1095 startRequest;
Wink Saville1b5fd232009-04-22 14:50:00 -07001096 appendPrintBuf("%sstatus=%d, message.uTeleserviceID=%d, message.bIsServicePresent=%d, \
1097 message.uServicecategory=%d, message.sAddress.digit_mode=%d, \
1098 message.sAddress.number_mode=%d, \
1099 message.sAddress.number_type=%d, ",
Wink Savillef4c4d362009-04-02 01:37:03 -07001100 printBuf, rcsw.status, rcsw.message.uTeleserviceID, rcsw.message.bIsServicePresent,
Wink Saville1b5fd232009-04-22 14:50:00 -07001101 rcsw.message.uServicecategory, rcsw.message.sAddress.digit_mode,
1102 rcsw.message.sAddress.number_mode,
1103 rcsw.message.sAddress.number_type);
Wink Savillef4c4d362009-04-02 01:37:03 -07001104 closeRequest;
1105
1106 printRequest(pRI->token, pRI->pCI->requestNumber);
1107
1108 s_callbacks.onRequest(pRI->pCI->requestNumber, &rcsw, sizeof(rcsw),pRI);
1109
1110#ifdef MEMSET_FREED
1111 memset(&rcsw, 0, sizeof(rcsw));
1112#endif
1113
1114 return;
1115
1116invalid:
1117 invalidCommandBlock(pRI);
1118 return;
1119
1120}
1121
The Android Open Source Project00f06fc2009-03-03 19:32:15 -08001122static int
Wink Savillef4c4d362009-04-02 01:37:03 -07001123blockingWrite(int fd, const void *buffer, size_t len) {
The Android Open Source Project00f06fc2009-03-03 19:32:15 -08001124 size_t writeOffset = 0;
1125 const uint8_t *toWrite;
1126
1127 toWrite = (const uint8_t *)buffer;
1128
1129 while (writeOffset < len) {
1130 ssize_t written;
1131 do {
1132 written = write (fd, toWrite + writeOffset,
1133 len - writeOffset);
1134 } while (written < 0 && errno == EINTR);
1135
1136 if (written >= 0) {
1137 writeOffset += written;
1138 } else { // written < 0
1139 LOGE ("RIL Response: unexpected error on write errno:%d", errno);
1140 close(fd);
1141 return -1;
1142 }
1143 }
1144
1145 return 0;
1146}
1147
1148static int
Wink Savillef4c4d362009-04-02 01:37:03 -07001149sendResponseRaw (const void *data, size_t dataSize) {
The Android Open Source Project00f06fc2009-03-03 19:32:15 -08001150 int fd = s_fdCommand;
1151 int ret;
1152 uint32_t header;
1153
1154 if (s_fdCommand < 0) {
1155 return -1;
1156 }
1157
1158 if (dataSize > MAX_COMMAND_BYTES) {
1159 LOGE("RIL: packet larger than %u (%u)",
1160 MAX_COMMAND_BYTES, (unsigned int )dataSize);
1161
1162 return -1;
1163 }
1164
1165
1166 // FIXME is blocking here ok? issue #550970
1167
1168 pthread_mutex_lock(&s_writeMutex);
1169
1170 header = htonl(dataSize);
1171
1172 ret = blockingWrite(fd, (void *)&header, sizeof(header));
1173
1174 if (ret < 0) {
1175 return ret;
1176 }
1177
1178 blockingWrite(fd, data, dataSize);
1179
1180 if (ret < 0) {
1181 return ret;
1182 }
1183
1184 pthread_mutex_unlock(&s_writeMutex);
1185
1186 return 0;
1187}
1188
1189static int
Wink Savillef4c4d362009-04-02 01:37:03 -07001190sendResponse (Parcel &p) {
The Android Open Source Project00f06fc2009-03-03 19:32:15 -08001191 printResponse;
1192 return sendResponseRaw(p.data(), p.dataSize());
1193}
1194
1195/** response is an int* pointing to an array of ints*/
1196
1197static int
Wink Savillef4c4d362009-04-02 01:37:03 -07001198responseInts(Parcel &p, void *response, size_t responselen) {
The Android Open Source Project00f06fc2009-03-03 19:32:15 -08001199 int numInts;
1200
1201 if (response == NULL && responselen != 0) {
1202 LOGE("invalid response: NULL");
1203 return RIL_ERRNO_INVALID_RESPONSE;
1204 }
1205 if (responselen % sizeof(int) != 0) {
1206 LOGE("invalid response length %d expected multiple of %d\n",
1207 (int)responselen, (int)sizeof(int));
1208 return RIL_ERRNO_INVALID_RESPONSE;
1209 }
1210
1211 int *p_int = (int *) response;
1212
1213 numInts = responselen / sizeof(int *);
1214 p.writeInt32 (numInts);
1215
1216 /* each int*/
1217 startResponse;
1218 for (int i = 0 ; i < numInts ; i++) {
1219 appendPrintBuf("%s%d,", printBuf, p_int[i]);
1220 p.writeInt32(p_int[i]);
1221 }
1222 removeLastChar;
1223 closeResponse;
1224
1225 return 0;
1226}
1227
1228/** response is a char **, pointing to an array of char *'s */
Wink Savillef4c4d362009-04-02 01:37:03 -07001229static int responseStrings(Parcel &p, void *response, size_t responselen) {
The Android Open Source Project00f06fc2009-03-03 19:32:15 -08001230 int numStrings;
1231
1232 if (response == NULL && responselen != 0) {
1233 LOGE("invalid response: NULL");
1234 return RIL_ERRNO_INVALID_RESPONSE;
1235 }
1236 if (responselen % sizeof(char *) != 0) {
1237 LOGE("invalid response length %d expected multiple of %d\n",
1238 (int)responselen, (int)sizeof(char *));
1239 return RIL_ERRNO_INVALID_RESPONSE;
1240 }
1241
1242 if (response == NULL) {
1243 p.writeInt32 (0);
1244 } else {
1245 char **p_cur = (char **) response;
1246
1247 numStrings = responselen / sizeof(char *);
1248 p.writeInt32 (numStrings);
1249
1250 /* each string*/
1251 startResponse;
1252 for (int i = 0 ; i < numStrings ; i++) {
1253 appendPrintBuf("%s%s,", printBuf, (char*)p_cur[i]);
1254 writeStringToParcel (p, p_cur[i]);
1255 }
1256 removeLastChar;
1257 closeResponse;
1258 }
1259 return 0;
1260}
1261
1262
1263/**
1264 * NULL strings are accepted
1265 * FIXME currently ignores responselen
1266 */
Wink Savillef4c4d362009-04-02 01:37:03 -07001267static int responseString(Parcel &p, void *response, size_t responselen) {
The Android Open Source Project00f06fc2009-03-03 19:32:15 -08001268 /* one string only */
1269 startResponse;
1270 appendPrintBuf("%s%s", printBuf, (char*)response);
1271 closeResponse;
1272
1273 writeStringToParcel(p, (const char *)response);
1274
1275 return 0;
1276}
1277
Wink Savillef4c4d362009-04-02 01:37:03 -07001278static int responseVoid(Parcel &p, void *response, size_t responselen) {
The Android Open Source Project00f06fc2009-03-03 19:32:15 -08001279 startResponse;
1280 removeLastChar;
1281 return 0;
1282}
1283
Wink Savillef4c4d362009-04-02 01:37:03 -07001284static int responseCallList(Parcel &p, void *response, size_t responselen) {
The Android Open Source Project00f06fc2009-03-03 19:32:15 -08001285 int num;
1286
1287 if (response == NULL && responselen != 0) {
1288 LOGE("invalid response: NULL");
1289 return RIL_ERRNO_INVALID_RESPONSE;
1290 }
1291
1292 if (responselen % sizeof (RIL_Call *) != 0) {
Wink Saville3d54e742009-05-18 18:00:44 -07001293 LOGE("invalid response length %d expected multiple of %d\n",
The Android Open Source Project00f06fc2009-03-03 19:32:15 -08001294 (int)responselen, (int)sizeof (RIL_Call *));
1295 return RIL_ERRNO_INVALID_RESPONSE;
1296 }
1297
1298 startResponse;
1299 /* number of call info's */
1300 num = responselen / sizeof(RIL_Call *);
1301 p.writeInt32(num);
1302
1303 for (int i = 0 ; i < num ; i++) {
Wink Saville1b5fd232009-04-22 14:50:00 -07001304 /* NEWRIL:TODO Remove this conditional and the else clause when we have the new ril */
1305#if NEWRIL
1306 LOGD("Compilied for NEWRIL"); // NEWRIL:TODO remove when we have the new ril
The Android Open Source Project00f06fc2009-03-03 19:32:15 -08001307 RIL_Call *p_cur = ((RIL_Call **) response)[i];
1308 /* each call info */
1309 p.writeInt32(p_cur->state);
1310 p.writeInt32(p_cur->index);
1311 p.writeInt32(p_cur->toa);
1312 p.writeInt32(p_cur->isMpty);
1313 p.writeInt32(p_cur->isMT);
1314 p.writeInt32(p_cur->als);
1315 p.writeInt32(p_cur->isVoice);
Wink Saville1b5fd232009-04-22 14:50:00 -07001316 p.writeInt32(p_cur->isVoicePrivacy);
1317 writeStringToParcel(p, p_cur->number);
John Wangff368742009-03-24 17:56:29 -07001318 p.writeInt32(p_cur->numberPresentation);
Wink Saville1b5fd232009-04-22 14:50:00 -07001319 writeStringToParcel(p, p_cur->name);
1320 p.writeInt32(p_cur->namePresentation);
Wink Saville3d54e742009-05-18 18:00:44 -07001321 appendPrintBuf("%s[id=%d,%s,toa=%d,",
John Wangff368742009-03-24 17:56:29 -07001322 printBuf,
Wink Saville1b5fd232009-04-22 14:50:00 -07001323 p_cur->index,
The Android Open Source Project00f06fc2009-03-03 19:32:15 -08001324 callStateToString(p_cur->state),
Wink Saville3d54e742009-05-18 18:00:44 -07001325 p_cur->toa);
1326 appendPrintBuf("%s%s,%s,als=%d,%s,%s,",
1327 printBuf,
Wink Saville1b5fd232009-04-22 14:50:00 -07001328 (p_cur->isMpty)?"conf":"norm",
The Android Open Source Project00f06fc2009-03-03 19:32:15 -08001329 (p_cur->isMT)?"mt":"mo",
1330 p_cur->als,
1331 (p_cur->isVoice)?"voc":"nonvoc",
Wink Saville3d54e742009-05-18 18:00:44 -07001332 (p_cur->isVoicePrivacy)?"evp":"noevp");
1333 appendPrintBuf("%s%s,cli=%d,name='%s',%d]",
1334 printBuf,
Wink Saville1b5fd232009-04-22 14:50:00 -07001335 p_cur->number,
1336 p_cur->numberPresentation,
1337 p_cur->name,
1338 p_cur->namePresentation);
1339#else
1340 LOGD("Old RIL");
1341 RIL_CallOld *p_cur = ((RIL_CallOld **) response)[i];
1342 /* each call info */
1343 p.writeInt32(p_cur->state);
1344 p.writeInt32(p_cur->index);
1345 p.writeInt32(p_cur->toa);
1346 p.writeInt32(p_cur->isMpty);
1347 p.writeInt32(p_cur->isMT);
1348 p.writeInt32(p_cur->als);
1349 p.writeInt32(p_cur->isVoice);
1350 p.writeInt32(0); // p_cur->isVoicePrivacy);
1351 writeStringToParcel (p, p_cur->number);
1352 p.writeInt32(p_cur->numberPresentation);
1353 writeStringToParcel (p, "a-person");
1354 p.writeInt32(2); // p_cur->namePresentation);
Wink Saville3d54e742009-05-18 18:00:44 -07001355 appendPrintBuf("%s[id=%d,%s,toa=%d,",
Wink Saville1b5fd232009-04-22 14:50:00 -07001356 printBuf,
1357 p_cur->index,
1358 callStateToString(p_cur->state),
Wink Saville3d54e742009-05-18 18:00:44 -07001359 p_cur->toa);
1360 appendPrintBuf("%s%s,%s,als=%d,%s,%s,",
1361 printBuf,
Wink Saville1b5fd232009-04-22 14:50:00 -07001362 (p_cur->isMpty)?"conf":"norm",
1363 (p_cur->isMT)?"mt":"mo",
1364 p_cur->als,
Wink Saville3d54e742009-05-18 18:00:44 -07001365 (p_cur->isVoice)?"voc":"nonvoc");
1366 appendPrintBuf("%s%s,cli=%d]",
1367 printBuf,
Wink Saville1b5fd232009-04-22 14:50:00 -07001368 p_cur->number,
Wink Saville3d54e742009-05-18 18:00:44 -07001369 p_cur->numberPresentation);
Wink Saville1b5fd232009-04-22 14:50:00 -07001370#endif
The Android Open Source Project00f06fc2009-03-03 19:32:15 -08001371 }
1372 removeLastChar;
1373 closeResponse;
1374
1375 return 0;
1376}
1377
Wink Savillef4c4d362009-04-02 01:37:03 -07001378static int responseSMS(Parcel &p, void *response, size_t responselen) {
The Android Open Source Project00f06fc2009-03-03 19:32:15 -08001379 if (response == NULL) {
1380 LOGE("invalid response: NULL");
1381 return RIL_ERRNO_INVALID_RESPONSE;
1382 }
1383
1384 if (responselen != sizeof (RIL_SMS_Response) ) {
1385 LOGE("invalid response length %d expected %d",
1386 (int)responselen, (int)sizeof (RIL_SMS_Response));
1387 return RIL_ERRNO_INVALID_RESPONSE;
1388 }
1389
1390 RIL_SMS_Response *p_cur = (RIL_SMS_Response *) response;
1391
1392 p.writeInt32(p_cur->messageRef);
1393 writeStringToParcel(p, p_cur->ackPDU);
1394
1395 startResponse;
1396 appendPrintBuf("%s%d,%s", printBuf, p_cur->messageRef,
1397 (char*)p_cur->ackPDU);
1398 closeResponse;
1399
1400 return 0;
1401}
1402
Wink Savillef4c4d362009-04-02 01:37:03 -07001403static int responseDataCallList(Parcel &p, void *response, size_t responselen)
The Android Open Source Project00f06fc2009-03-03 19:32:15 -08001404{
1405 if (response == NULL && responselen != 0) {
1406 LOGE("invalid response: NULL");
1407 return RIL_ERRNO_INVALID_RESPONSE;
1408 }
1409
Wink Savillef4c4d362009-04-02 01:37:03 -07001410 if (responselen % sizeof(RIL_Data_Call_Response) != 0) {
The Android Open Source Project00f06fc2009-03-03 19:32:15 -08001411 LOGE("invalid response length %d expected multiple of %d",
Wink Savillef4c4d362009-04-02 01:37:03 -07001412 (int)responselen, (int)sizeof(RIL_Data_Call_Response));
The Android Open Source Project00f06fc2009-03-03 19:32:15 -08001413 return RIL_ERRNO_INVALID_RESPONSE;
1414 }
1415
Wink Savillef4c4d362009-04-02 01:37:03 -07001416 int num = responselen / sizeof(RIL_Data_Call_Response);
The Android Open Source Project00f06fc2009-03-03 19:32:15 -08001417 p.writeInt32(num);
1418
Wink Savillef4c4d362009-04-02 01:37:03 -07001419 RIL_Data_Call_Response *p_cur = (RIL_Data_Call_Response *) response;
The Android Open Source Project00f06fc2009-03-03 19:32:15 -08001420 startResponse;
1421 int i;
1422 for (i = 0; i < num; i++) {
1423 p.writeInt32(p_cur[i].cid);
1424 p.writeInt32(p_cur[i].active);
1425 writeStringToParcel(p, p_cur[i].type);
1426 writeStringToParcel(p, p_cur[i].apn);
1427 writeStringToParcel(p, p_cur[i].address);
1428 appendPrintBuf("%s[cid=%d,%s,%s,%s,%s],", printBuf,
1429 p_cur[i].cid,
1430 (p_cur[i].active==0)?"down":"up",
1431 (char*)p_cur[i].type,
1432 (char*)p_cur[i].apn,
1433 (char*)p_cur[i].address);
1434 }
1435 removeLastChar;
1436 closeResponse;
1437
1438 return 0;
1439}
1440
Wink Savillef4c4d362009-04-02 01:37:03 -07001441static int responseRaw(Parcel &p, void *response, size_t responselen) {
The Android Open Source Project00f06fc2009-03-03 19:32:15 -08001442 if (response == NULL && responselen != 0) {
1443 LOGE("invalid response: NULL with responselen != 0");
1444 return RIL_ERRNO_INVALID_RESPONSE;
1445 }
1446
1447 // The java code reads -1 size as null byte array
1448 if (response == NULL) {
1449 p.writeInt32(-1);
1450 } else {
1451 p.writeInt32(responselen);
1452 p.write(response, responselen);
1453 }
1454
1455 return 0;
1456}
1457
1458
Wink Savillef4c4d362009-04-02 01:37:03 -07001459static int responseSIM_IO(Parcel &p, void *response, size_t responselen) {
The Android Open Source Project00f06fc2009-03-03 19:32:15 -08001460 if (response == NULL) {
1461 LOGE("invalid response: NULL");
1462 return RIL_ERRNO_INVALID_RESPONSE;
1463 }
1464
1465 if (responselen != sizeof (RIL_SIM_IO_Response) ) {
1466 LOGE("invalid response length was %d expected %d",
1467 (int)responselen, (int)sizeof (RIL_SIM_IO_Response));
1468 return RIL_ERRNO_INVALID_RESPONSE;
1469 }
1470
1471 RIL_SIM_IO_Response *p_cur = (RIL_SIM_IO_Response *) response;
1472 p.writeInt32(p_cur->sw1);
1473 p.writeInt32(p_cur->sw2);
1474 writeStringToParcel(p, p_cur->simResponse);
1475
1476 startResponse;
1477 appendPrintBuf("%ssw1=0x%X,sw2=0x%X,%s", printBuf, p_cur->sw1, p_cur->sw2,
1478 (char*)p_cur->simResponse);
1479 closeResponse;
1480
1481
1482 return 0;
1483}
1484
Wink Savillef4c4d362009-04-02 01:37:03 -07001485static int responseCallForwards(Parcel &p, void *response, size_t responselen) {
The Android Open Source Project00f06fc2009-03-03 19:32:15 -08001486 int num;
1487
1488 if (response == NULL && responselen != 0) {
1489 LOGE("invalid response: NULL");
1490 return RIL_ERRNO_INVALID_RESPONSE;
1491 }
1492
1493 if (responselen % sizeof(RIL_CallForwardInfo *) != 0) {
1494 LOGE("invalid response length %d expected multiple of %d",
1495 (int)responselen, (int)sizeof(RIL_CallForwardInfo *));
1496 return RIL_ERRNO_INVALID_RESPONSE;
1497 }
1498
1499 /* number of call info's */
1500 num = responselen / sizeof(RIL_CallForwardInfo *);
1501 p.writeInt32(num);
1502
1503 startResponse;
1504 for (int i = 0 ; i < num ; i++) {
1505 RIL_CallForwardInfo *p_cur = ((RIL_CallForwardInfo **) response)[i];
1506
1507 p.writeInt32(p_cur->status);
1508 p.writeInt32(p_cur->reason);
1509 p.writeInt32(p_cur->serviceClass);
1510 p.writeInt32(p_cur->toa);
1511 writeStringToParcel(p, p_cur->number);
1512 p.writeInt32(p_cur->timeSeconds);
1513 appendPrintBuf("%s[%s,reason=%d,cls=%d,toa=%d,%s,tout=%d],", printBuf,
1514 (p_cur->status==1)?"enable":"disable",
1515 p_cur->reason, p_cur->serviceClass, p_cur->toa,
1516 (char*)p_cur->number,
1517 p_cur->timeSeconds);
1518 }
1519 removeLastChar;
1520 closeResponse;
1521
1522 return 0;
1523}
1524
Wink Savillef4c4d362009-04-02 01:37:03 -07001525static int responseSsn(Parcel &p, void *response, size_t responselen) {
The Android Open Source Project00f06fc2009-03-03 19:32:15 -08001526 if (response == NULL) {
1527 LOGE("invalid response: NULL");
1528 return RIL_ERRNO_INVALID_RESPONSE;
1529 }
1530
1531 if (responselen != sizeof(RIL_SuppSvcNotification)) {
1532 LOGE("invalid response length was %d expected %d",
1533 (int)responselen, (int)sizeof (RIL_SuppSvcNotification));
1534 return RIL_ERRNO_INVALID_RESPONSE;
1535 }
1536
1537 RIL_SuppSvcNotification *p_cur = (RIL_SuppSvcNotification *) response;
1538 p.writeInt32(p_cur->notificationType);
1539 p.writeInt32(p_cur->code);
1540 p.writeInt32(p_cur->index);
1541 p.writeInt32(p_cur->type);
1542 writeStringToParcel(p, p_cur->number);
1543
1544 startResponse;
1545 appendPrintBuf("%s%s,code=%d,id=%d,type=%d,%s", printBuf,
1546 (p_cur->notificationType==0)?"mo":"mt",
1547 p_cur->code, p_cur->index, p_cur->type,
1548 (char*)p_cur->number);
1549 closeResponse;
1550
1551 return 0;
1552}
1553
Wink Saville3d54e742009-05-18 18:00:44 -07001554static int responseCellList(Parcel &p, void *response, size_t responselen) {
The Android Open Source Project00f06fc2009-03-03 19:32:15 -08001555 int num;
1556
1557 if (response == NULL && responselen != 0) {
1558 LOGE("invalid response: NULL");
1559 return RIL_ERRNO_INVALID_RESPONSE;
1560 }
1561
1562 if (responselen % sizeof (RIL_NeighboringCell *) != 0) {
1563 LOGE("invalid response length %d expected multiple of %d\n",
1564 (int)responselen, (int)sizeof (RIL_NeighboringCell *));
1565 return RIL_ERRNO_INVALID_RESPONSE;
1566 }
1567
1568 startResponse;
Wink Saville3d54e742009-05-18 18:00:44 -07001569 /* number of records */
The Android Open Source Project00f06fc2009-03-03 19:32:15 -08001570 num = responselen / sizeof(RIL_NeighboringCell *);
1571 p.writeInt32(num);
1572
1573 for (int i = 0 ; i < num ; i++) {
1574 RIL_NeighboringCell *p_cur = ((RIL_NeighboringCell **) response)[i];
1575
The Android Open Source Project00f06fc2009-03-03 19:32:15 -08001576 p.writeInt32(p_cur->rssi);
1577 writeStringToParcel (p, p_cur->cid);
1578
1579 appendPrintBuf("%s[cid=%s,rssi=%d],", printBuf,
1580 p_cur->cid, p_cur->rssi);
1581 }
1582 removeLastChar;
1583 closeResponse;
1584
1585 return 0;
1586}
1587
Wink Saville3d54e742009-05-18 18:00:44 -07001588/**
1589 * Marshall the signalInfoRecord into the parcel if it exists.
1590 */
1591static void marshallSignalInfoRecord(Parcel &p, RIL_CDMA_SignalInfoRecord &p_signalInfoRecord) {
1592 p.writeInt32(p_signalInfoRecord.isPresent);
1593 p.writeInt32(p_signalInfoRecord.signalType);
1594 p.writeInt32(p_signalInfoRecord.alertPitch);
1595 p.writeInt32(p_signalInfoRecord.signal);
1596}
1597
1598static int responseCdmaInformationRecords(Parcel &p,void *response, size_t responselen) {
1599 int num;
1600 int digitCount;
1601 int digitLimit;
1602
1603 if (response == NULL && responselen != 0) {
1604 LOGE("invalid response: NULL");
1605 return RIL_ERRNO_INVALID_RESPONSE;
1606 }
1607
1608 if (responselen != sizeof(RIL_CDMA_InformationRecords)) {
1609 LOGE("invalid response length %d expected %d\n",
1610 (int)responselen, (int)sizeof (RIL_CDMA_InformationRecords));
1611 return RIL_ERRNO_INVALID_RESPONSE;
1612 }
1613
1614
1615 /* TODO(Teleca): Wink believes this should be deleted? */
1616// num = responselen / sizeof(RIL_CDMA_InformationRecords *);
1617// p.writeInt32(num);
1618
1619 RIL_CDMA_InformationRecords *p_cur = ((RIL_CDMA_InformationRecords *) response);
1620
1621 /* Number of records */
1622 p.writeInt32(p_cur->numberOfInfoRecs);
1623
1624 startResponse;
1625
1626 digitLimit = MIN((p_cur->numberOfInfoRecs),RIL_CDMA_MAX_NUMBER_OF_INFO_RECS);
1627 for (digitCount = 0 ; digitCount < digitLimit; digitCount ++) {
1628 switch(p_cur->infoRec[digitCount].name){
1629 case RIL_CDMA_DISPLAY_INFO_REC:
1630 p.writeInt32(p_cur->infoRec[digitCount].rec.display.alpha_len);
1631 for(int i =0;i<(int)(p_cur->infoRec[digitCount].rec.display.alpha_len);i++){
1632 p.writeInt32(p_cur->infoRec[digitCount].rec.display.alpha_buf[i]);
1633 }
1634 appendPrintBuf("%s[rec.display.alpha_len%c, rec.display.alpha_buf%s],",
1635 printBuf,
1636 p_cur->infoRec[digitCount].rec.display.alpha_len,
1637 p_cur->infoRec[digitCount].rec.display.alpha_buf);
1638 break;
1639 case RIL_CDMA_CALLED_PARTY_NUMBER_INFO_REC:
1640 p.writeInt32(p_cur->infoRec[digitCount].rec.number.len);
1641 for(int i =0;i<(int)(p_cur->infoRec[digitCount].rec.number.len);i++){
1642 p.writeInt32(p_cur->infoRec[digitCount].rec.number.buf[i]);
1643 }
1644 p.writeInt32(p_cur->infoRec[digitCount].rec.number.number_type);
1645 p.writeInt32(p_cur->infoRec[digitCount].rec.number.number_plan);
1646 p.writeInt32(p_cur->infoRec[digitCount].rec.number.pi);
1647 p.writeInt32(p_cur->infoRec[digitCount].rec.number.si);
1648 appendPrintBuf("%s[len=%c,buf=%s,number_type=%c,number_plan=%c,",
1649 printBuf,
1650 p_cur->infoRec[digitCount].rec.number.len,
1651 p_cur->infoRec[digitCount].rec.number.buf,
1652 p_cur->infoRec[digitCount].rec.number.number_type,
1653 p_cur->infoRec[digitCount].rec.number.number_plan);
1654 appendPrintBuf("%spi=%c,si=%c]",
1655 printBuf,
1656 p_cur->infoRec[digitCount].rec.number.pi,
1657 p_cur->infoRec[digitCount].rec.number.si);
1658 break;
1659 case RIL_CDMA_CALLING_PARTY_NUMBER_INFO_REC:
1660 p.writeInt32(p_cur->infoRec[digitCount].rec.number.len);
1661 for (int i =0;i<(int)(p_cur->infoRec[digitCount].rec.number.len);i++) {
1662 p.writeInt32(p_cur->infoRec[digitCount].rec.number.buf[i]);
1663 }
1664 p.writeInt32(p_cur->infoRec[digitCount].rec.number.number_type);
1665 p.writeInt32(p_cur->infoRec[digitCount].rec.number.number_plan);
1666 p.writeInt32(p_cur->infoRec[digitCount].rec.number.pi);
1667 p.writeInt32(p_cur->infoRec[digitCount].rec.number.si);
1668 appendPrintBuf("%s[len=%c,buf=%s,number_type=%c,number_plan=%c,",
1669 printBuf,
1670 p_cur->infoRec[digitCount].rec.number.len,
1671 p_cur->infoRec[digitCount].rec.number.buf,
1672 p_cur->infoRec[digitCount].rec.number.number_type,
1673 p_cur->infoRec[digitCount].rec.number.number_plan);
1674 appendPrintBuf("%spi=%c,si=%c]",
1675 printBuf,
1676 p_cur->infoRec[digitCount].rec.number.pi,
1677 p_cur->infoRec[digitCount].rec.number.si);
1678 break;
1679 case RIL_CDMA_CONNECTED_NUMBER_INFO_REC:
1680 p.writeInt32(p_cur->infoRec[digitCount].rec.number.len);
1681 for(int i =0;i<(int)(p_cur->infoRec[digitCount].rec.number.len);i++){
1682 p.writeInt32(p_cur->infoRec[digitCount].rec.number.buf[i]);
1683 }
1684 p.writeInt32(p_cur->infoRec[digitCount].rec.number.number_type);
1685 p.writeInt32(p_cur->infoRec[digitCount].rec.number.number_plan);
1686 p.writeInt32(p_cur->infoRec[digitCount].rec.number.pi);
1687 p.writeInt32(p_cur->infoRec[digitCount].rec.number.si);
1688 appendPrintBuf("%s[len=%c,buf=%s,number_type=%c,number_plan=%c,",
1689 printBuf,
1690 p_cur->infoRec[digitCount].rec.number.len,
1691 p_cur->infoRec[digitCount].rec.number.buf,
1692 p_cur->infoRec[digitCount].rec.number.number_type,
1693 p_cur->infoRec[digitCount].rec.number.number_plan);
1694 appendPrintBuf("%spi=%c,si=%c]",
1695 printBuf,
1696 p_cur->infoRec[digitCount].rec.number.pi,
1697 p_cur->infoRec[digitCount].rec.number.si);
1698 break;
1699 case RIL_CDMA_SIGNAL_INFO_REC:
1700 marshallSignalInfoRecord(p, p_cur->infoRec[digitCount].rec.signal);
1701 appendPrintBuf("%s[isPresent=%c,signalType=%c,alertPitch=%c,signal=%c]",
1702 printBuf,
1703 p_cur->infoRec[digitCount].rec.signal.isPresent,
1704 p_cur->infoRec[digitCount].rec.signal.signalType,
1705 p_cur->infoRec[digitCount].rec.signal.alertPitch,
1706 p_cur->infoRec[digitCount].rec.signal.signal);
1707 break;
1708 case RIL_CDMA_REDIRECTING_NUMBER_INFO_REC:
1709 p.writeInt32(p_cur->infoRec[digitCount].rec.redir.redirectingNumber.len);
1710 for (int i =0;\
1711 i<(int)(p_cur->infoRec[digitCount].rec.redir.redirectingNumber.len);i++){
1712 p.writeInt32(p_cur->infoRec[digitCount].rec.redir.redirectingNumber.buf[i]);
1713 }
1714 p.writeInt32(p_cur->infoRec[digitCount].rec.redir.redirectingNumber.number_type);
1715 p.writeInt32(p_cur->infoRec[digitCount].rec.redir.redirectingNumber.number_plan);
1716 p.writeInt32(p_cur->infoRec[digitCount].rec.redir.redirectingNumber.pi);
1717 p.writeInt32(p_cur->infoRec[digitCount].rec.redir.redirectingNumber.si);
1718 p.writeInt32(p_cur->infoRec[digitCount].rec.redir.redirectingReason);
1719 appendPrintBuf("%s[len=%c,buf=%s,number_type=%c,number_plan=%c,",
1720 printBuf,
1721 p_cur->infoRec[digitCount].rec.number.len,
1722 p_cur->infoRec[digitCount].rec.number.buf,
1723 p_cur->infoRec[digitCount].rec.number.number_type,
1724 p_cur->infoRec[digitCount].rec.number.number_plan);
1725 appendPrintBuf("%spi=%c,si=%c]",
1726 printBuf,
1727 p_cur->infoRec[digitCount].rec.number.pi,
1728 p_cur->infoRec[digitCount].rec.number.si);
1729 break;
1730 case RIL_CDMA_LINE_CONTROL_INFO_REC:
1731 p.writeInt32(p_cur->infoRec[digitCount].rec.lineCtrl.lineCtrlPolarityIncluded);
1732 p.writeInt32(p_cur->infoRec[digitCount].rec.lineCtrl.lineCtrlToggle);
1733 p.writeInt32(p_cur->infoRec[digitCount].rec.lineCtrl.lineCtrlReverse);
1734 p.writeInt32( p_cur->infoRec[digitCount].rec.lineCtrl.lineCtrlPowerDenial);
1735 appendPrintBuf("%s[PolarityIncluded=%c,CtrlToggle=%c,CtrlReverse=%c,\
1736 CtrlPowerDenial=%c]",
1737 printBuf,
1738 p_cur->infoRec[digitCount].rec.lineCtrl.lineCtrlPolarityIncluded,
1739 p_cur->infoRec[digitCount].rec.lineCtrl.lineCtrlToggle,
1740 p_cur->infoRec[digitCount].rec.lineCtrl.lineCtrlReverse,
1741 p_cur->infoRec[digitCount].rec.lineCtrl.lineCtrlPowerDenial);
1742 break;
1743 case RIL_CDMA_EXTENDED_DISPLAY_INFO_REC:
1744 break;
1745 case RIL_CDMA_T53_CLIR_INFO_REC:
1746 p.writeInt32(p_cur->infoRec[digitCount].rec.clir.cause);
1747 appendPrintBuf("%s[cause=%c]",printBuf,p_cur->infoRec[digitCount].rec.clir.cause);
1748 break;
1749
1750 case RIL_CDMA_T53_RELEASE_INFO_REC:
1751 break;
1752 case RIL_CDMA_T53_AUDIO_CONTROL_INFO_REC:
1753 p.writeInt32(p_cur->infoRec[digitCount].rec.audioCtrl.upLink);
1754 p.writeInt32(p_cur->infoRec[digitCount].rec.audioCtrl.downLink);
1755 appendPrintBuf("%s[uplink=%c,downlink=%c]",
1756 printBuf,p_cur->infoRec[digitCount].rec.audioCtrl.upLink,
1757 p_cur->infoRec[digitCount].rec.audioCtrl.downLink);
1758 break;
1759 default:
1760 LOGE ("Invalid request");
1761 break;
1762 }
1763 }
1764
1765
1766 closeResponse;
1767
1768 return 0;
1769}
1770
1771static int responseRilSignalStrength(Parcel &p, void *response, size_t responselen) {
1772 if (response == NULL && responselen != 0) {
1773 LOGE("invalid response: NULL");
1774 return RIL_ERRNO_INVALID_RESPONSE;
1775 }
1776
1777 if ((responselen != sizeof (RIL_SignalStrength))
1778 && (responselen % sizeof (void *) == 0)) {
1779 // Old RIL deprecated
1780 RIL_GW_SignalStrength *p_cur = ((RIL_GW_SignalStrength *) response);
1781
1782 p.writeInt32(7);
1783 p.writeInt32(p_cur->signalStrength);
1784 p.writeInt32(p_cur->bitErrorRate);
1785 for (int i = 0; i < 5; i++) {
1786 p.writeInt32(0);
1787 }
1788 } else if (responselen == sizeof (RIL_SignalStrength)) {
1789 // New RIL
1790 RIL_SignalStrength *p_cur = ((RIL_SignalStrength *) response);
1791
1792 p.writeInt32(7);
1793 p.writeInt32(p_cur->GW_SignalStrength.signalStrength);
1794 p.writeInt32(p_cur->GW_SignalStrength.bitErrorRate);
1795 p.writeInt32(p_cur->CDMA_SignalStrength.dbm);
1796 p.writeInt32(p_cur->CDMA_SignalStrength.ecio);
1797 p.writeInt32(p_cur->EVDO_SignalStrength.dbm);
1798 p.writeInt32(p_cur->EVDO_SignalStrength.ecio);
1799 p.writeInt32(p_cur->EVDO_SignalStrength.signalNoiseRatio);
1800 } else {
1801 LOGE("invalid response length");
1802 return RIL_ERRNO_INVALID_RESPONSE;
1803 }
1804
1805 startResponse;
1806 appendPrintBuf("%s[signalStrength=%d,bitErrorRate=%d,\
1807 CDMA_SignalStrength.dbm=%d,CDMA_SignalStrength.ecio=%d,\
1808 EVDO_SignalStrength.dbm =%d,EVDO_SignalStrength.ecio=%d,\
1809 EVDO_SignalStrength.signalNoiseRatio=%d]",
1810 printBuf,
1811 p_cur->GW_SignalStrength.signalStrength,
1812 p_cur->GW_SignalStrength.bitErrorRate,
1813 p_cur->CDMA_SignalStrength.dbm,
1814 p_cur->CDMA_SignalStrength.ecio,
1815 p_cur->EVDO_SignalStrength.dbm,
1816 p_cur->EVDO_SignalStrength.ecio,
1817 p_cur->EVDO_SignalStrength.signalNoiseRatio);
1818
1819 closeResponse;
1820
1821 return 0;
1822}
1823
1824static int responseCallRing(Parcel &p, void *response, size_t responselen) {
1825 if ((response == NULL) || (responselen == 0)) {
1826 return responseVoid(p, response, responselen);
1827 } else {
1828 return responseCdmaSignalInfoRecord(p, response, responselen);
1829 }
1830}
1831
1832static int responseCdmaSignalInfoRecord(Parcel &p, void *response, size_t responselen) {
1833 if (response == NULL || responselen == 0) {
1834 LOGE("invalid response: NULL");
1835 return RIL_ERRNO_INVALID_RESPONSE;
1836 }
1837
1838 if (responselen != sizeof (RIL_CDMA_SignalInfoRecord)) {
1839 LOGE("invalid response length %d expected sizeof (RIL_CDMA_SignalInfoRecord) of %d\n",
1840 (int)responselen, (int)sizeof (RIL_CDMA_SignalInfoRecord));
1841 return RIL_ERRNO_INVALID_RESPONSE;
1842 }
1843
1844 startResponse;
1845
1846 RIL_CDMA_SignalInfoRecord *p_cur = ((RIL_CDMA_SignalInfoRecord *) response);
1847 marshallSignalInfoRecord(p, *p_cur);
1848
1849 appendPrintBuf("%s[isPresent=%d,signalType=%d,alertPitch=%d\
1850 signal=%d]",
1851 printBuf,
1852 p_cur->isPresent,
1853 p_cur->signalType,
1854 p_cur->alertPitch,
1855 p_cur->signal);
1856
1857 closeResponse;
1858 return 0;
1859}
1860
1861static int responseCdmaCallWaiting(Parcel &p,void *response, size_t responselen) {
1862 if (response == NULL && responselen != 0) {
1863 LOGE("invalid response: NULL");
1864 return RIL_ERRNO_INVALID_RESPONSE;
1865 }
1866
1867 if (responselen != sizeof(RIL_CDMA_CallWaiting)) {
1868 LOGE("invalid response length %d expected %d\n",
1869 (int)responselen, (int)sizeof(RIL_CDMA_CallWaiting));
1870 return RIL_ERRNO_INVALID_RESPONSE;
1871 }
1872
1873 startResponse;
1874 RIL_CDMA_CallWaiting *p_cur = ((RIL_CDMA_CallWaiting *) response);
1875
1876 writeStringToParcel (p, p_cur->number);
1877 p.writeInt32(p_cur->numberPresentation);
1878 writeStringToParcel (p, p_cur->name);
1879 marshallSignalInfoRecord(p, p_cur->signalInfoRecord);
1880
1881 appendPrintBuf("%snumber=%s,numberPresentation=%d, name=%s,\
1882 signalInfoRecord[isPresent=%d,signalType=%d,alertPitch=%d\
1883 signal=%d]",
1884 printBuf,
1885 p_cur->number,
1886 p_cur->numberPresentation,
1887 p_cur->name,
1888 p_cur->signalInfoRecord.isPresent,
1889 p_cur->signalInfoRecord.signalType,
1890 p_cur->signalInfoRecord.alertPitch,
1891 p_cur->signalInfoRecord.signal);
1892
1893 closeResponse;
1894
1895 return 0;
1896}
1897
1898static void triggerEvLoop() {
The Android Open Source Project00f06fc2009-03-03 19:32:15 -08001899 int ret;
1900 if (!pthread_equal(pthread_self(), s_tid_dispatch)) {
1901 /* trigger event loop to wakeup. No reason to do this,
1902 * if we're in the event loop thread */
1903 do {
1904 ret = write (s_fdWakeupWrite, " ", 1);
1905 } while (ret < 0 && errno == EINTR);
1906 }
1907}
1908
Wink Saville3d54e742009-05-18 18:00:44 -07001909static void rilEventAddWakeup(struct ril_event *ev) {
The Android Open Source Project00f06fc2009-03-03 19:32:15 -08001910 ril_event_add(ev);
1911 triggerEvLoop();
1912}
1913
Wink Savillef4c4d362009-04-02 01:37:03 -07001914static int responseSimStatus(Parcel &p, void *response, size_t responselen) {
1915 int i;
1916
1917 if (response == NULL && responselen != 0) {
1918 LOGE("invalid response: NULL");
1919 return RIL_ERRNO_INVALID_RESPONSE;
1920 }
1921
1922 if (responselen % sizeof (RIL_CardStatus *) != 0) {
Wink Saville3d54e742009-05-18 18:00:44 -07001923 LOGE("invalid response length %d expected multiple of %d\n",
Wink Savillef4c4d362009-04-02 01:37:03 -07001924 (int)responselen, (int)sizeof (RIL_CardStatus *));
1925 return RIL_ERRNO_INVALID_RESPONSE;
1926 }
1927
1928 RIL_CardStatus *p_cur = ((RIL_CardStatus *) response);
1929
1930 p.writeInt32(p_cur->card_state);
1931 p.writeInt32(p_cur->universal_pin_state);
1932 p.writeInt32(p_cur->gsm_umts_subscription_app_index);
1933 p.writeInt32(p_cur->cdma_subscription_app_index);
1934 p.writeInt32(p_cur->num_applications);
1935
1936 startResponse;
1937 for (i = 0; i < p_cur->num_applications; i++) {
1938 p.writeInt32(p_cur->applications[i].app_type);
1939 p.writeInt32(p_cur->applications[i].app_state);
1940 p.writeInt32(p_cur->applications[i].perso_substate);
1941 writeStringToParcel (p, (const char*)(p_cur->applications[i].aid_ptr));
1942 writeStringToParcel (p, (const char*)(p_cur->applications[i].app_label_ptr));
1943 p.writeInt32(p_cur->applications[i].pin1_replaced);
1944 p.writeInt32(p_cur->applications[i].pin1);
1945 p.writeInt32(p_cur->applications[i].pin2);
1946 appendPrintBuf("%s[app_type=%d,app_state=%d,perso_substate=%d,aid_ptr=%s,\
1947 app_label_ptr=%s,pin1_replaced=%d,pin1=%d,pin2=%d],",
1948 printBuf,
1949 p_cur->applications[i].app_type,
1950 p_cur->applications[i].app_state,
1951 p_cur->applications[i].perso_substate,
1952 p_cur->applications[i].aid_ptr,
1953 p_cur->applications[i].app_label_ptr,
1954 p_cur->applications[i].pin1_replaced,
1955 p_cur->applications[i].pin1,
1956 p_cur->applications[i].pin2);
1957 }
1958 closeResponse;
1959
1960 return 0;
Wink Saville3d54e742009-05-18 18:00:44 -07001961}
Wink Savillef4c4d362009-04-02 01:37:03 -07001962
1963static int responseBrSmsCnf(Parcel &p, void *response, size_t responselen) {
1964 int num;
1965
1966 if (response == NULL && responselen != 0) {
1967 LOGE("invalid response: NULL");
1968 return RIL_ERRNO_INVALID_RESPONSE;
1969 }
1970
Wink Savillef5903df2009-04-24 11:54:14 -07001971 if (responselen % sizeof(RIL_BroadcastSMSConfig) != 0) {
Wink Saville3d54e742009-05-18 18:00:44 -07001972 LOGE("invalid response length %d expected multiple of %d",
Wink Savillef5903df2009-04-24 11:54:14 -07001973 (int)responselen, (int)sizeof(RIL_BroadcastSMSConfig));
Wink Savillef4c4d362009-04-02 01:37:03 -07001974 return RIL_ERRNO_INVALID_RESPONSE;
1975 }
1976
1977 /* number of call info's */
1978 num = responselen / sizeof(RIL_BroadcastSMSConfig *);
1979 p.writeInt32(num);
1980
1981 RIL_BroadcastSMSConfig *p_cur = (RIL_BroadcastSMSConfig *) response;
1982 p.writeInt32(p_cur->size);
1983 p.writeInt32(p_cur->entries->uFromServiceID);
1984 p.writeInt32(p_cur->entries->uToserviceID);
1985 p.write(&(p_cur->entries->bSelected),sizeof(p_cur->entries->bSelected));
Wink Saville3d54e742009-05-18 18:00:44 -07001986
Wink Savillef4c4d362009-04-02 01:37:03 -07001987 startResponse;
Wink Saville1b5fd232009-04-22 14:50:00 -07001988 appendPrintBuf("%s size=%d, entries.uFromServiceID=%d, \
Wink Savillef4c4d362009-04-02 01:37:03 -07001989 entries.uToserviceID=%d, entries.bSelected =%d, ",
1990 printBuf, p_cur->size,p_cur->entries->uFromServiceID,
Wink Saville1b5fd232009-04-22 14:50:00 -07001991 p_cur->entries->uToserviceID, p_cur->entries->bSelected);
Wink Savillef4c4d362009-04-02 01:37:03 -07001992 closeResponse;
1993
1994 return 0;
1995}
1996
1997static int responseCdmaBrCnf(Parcel &p, void *response, size_t responselen) {
Wink Savillef5903df2009-04-24 11:54:14 -07001998 int numServiceCategories;
Wink Savillef4c4d362009-04-02 01:37:03 -07001999
2000 if (response == NULL && responselen != 0) {
2001 LOGE("invalid response: NULL");
2002 return RIL_ERRNO_INVALID_RESPONSE;
2003 }
2004
Wink Savillef5903df2009-04-24 11:54:14 -07002005 if (responselen == 0) {
2006 LOGE("invalid response length %d expected >= of %d",
2007 (int)responselen, (int)sizeof(RIL_BroadcastSMSConfig));
Wink Savillef4c4d362009-04-02 01:37:03 -07002008 return RIL_ERRNO_INVALID_RESPONSE;
2009 }
2010
Wink Savillef5903df2009-04-24 11:54:14 -07002011 RIL_CDMA_BroadcastSMSConfig *p_cur = (RIL_CDMA_BroadcastSMSConfig *) response;
Wink Savillef4c4d362009-04-02 01:37:03 -07002012
Wink Savillef5903df2009-04-24 11:54:14 -07002013 numServiceCategories = p_cur->size;
Wink Savillef4c4d362009-04-02 01:37:03 -07002014 p.writeInt32(p_cur->size);
Wink Savillef4c4d362009-04-02 01:37:03 -07002015
2016 startResponse;
Wink Savillef5903df2009-04-24 11:54:14 -07002017 appendPrintBuf("%ssize=%d ", printBuf,p_cur->size);
Wink Savillef4c4d362009-04-02 01:37:03 -07002018 closeResponse;
2019
Wink Savillef5903df2009-04-24 11:54:14 -07002020 if (numServiceCategories != 0) {
2021 RIL_CDMA_BroadcastServiceInfo cdmaBsi[numServiceCategories];
2022 memcpy(cdmaBsi, p_cur->entries,
2023 sizeof(RIL_CDMA_BroadcastServiceInfo) * numServiceCategories);
2024
2025 for (int i = 0 ; i < numServiceCategories ; i++ ) {
2026 p.writeInt32(cdmaBsi[i].uServiceCategory);
2027 p.writeInt32(cdmaBsi[i].uLanguage);
2028 p.writeInt32(cdmaBsi[i].bSelected);
2029
2030 startResponse;
2031 appendPrintBuf("%sentries[%d].uServicecategory=%d, entries[%d].uLanguage =%d, \
2032 entries[%d].bSelected =%d, ", printBuf, i, cdmaBsi[i].uServiceCategory, i,
2033 cdmaBsi[i].uLanguage, i, cdmaBsi[i].bSelected);
2034 closeResponse;
2035 }
2036 } else {
2037 p.writeInt32(NULL);
2038 }
2039
Wink Savillef4c4d362009-04-02 01:37:03 -07002040 return 0;
2041}
2042
2043static int responseCdmaSms(Parcel &p, void *response, size_t responselen) {
2044 int num;
2045 int digitCount;
2046 int digitLimit;
2047 uint8_t uct;
2048 void* dest;
2049
Wink Savillef5903df2009-04-24 11:54:14 -07002050 LOGD("Inside responseCdmaSms");
2051
Wink Savillef4c4d362009-04-02 01:37:03 -07002052 if (response == NULL && responselen != 0) {
2053 LOGE("invalid response: NULL");
2054 return RIL_ERRNO_INVALID_RESPONSE;
2055 }
2056
Wink Savillef5903df2009-04-24 11:54:14 -07002057 if (responselen != sizeof(RIL_CDMA_SMS_Message)) {
Wink Savillef4c4d362009-04-02 01:37:03 -07002058 LOGE("invalid response length was %d expected %d",
Wink Savillef5903df2009-04-24 11:54:14 -07002059 (int)responselen, (int)sizeof(RIL_CDMA_SMS_Message));
Wink Savillef4c4d362009-04-02 01:37:03 -07002060 return RIL_ERRNO_INVALID_RESPONSE;
2061 }
2062
2063 RIL_CDMA_SMS_Message *p_cur = (RIL_CDMA_SMS_Message *) response;
2064 p.writeInt32(p_cur->uTeleserviceID);
2065 p.write(&(p_cur->bIsServicePresent),sizeof(uct));
2066 p.writeInt32(p_cur->uServicecategory);
2067 p.writeInt32(p_cur->sAddress.digit_mode);
2068 p.writeInt32(p_cur->sAddress.number_mode);
2069 p.writeInt32(p_cur->sAddress.number_type);
2070 p.writeInt32(p_cur->sAddress.number_plan);
2071 p.write(&(p_cur->sAddress.number_of_digits), sizeof(uct));
2072 digitLimit= MIN((p_cur->sAddress.number_of_digits), RIL_CDMA_SMS_ADDRESS_MAX);
2073 for(digitCount =0 ; digitCount < digitLimit; digitCount ++) {
2074 p.write(&(p_cur->sAddress.digits[digitCount]),sizeof(uct));
2075 }
2076
2077 p.writeInt32(p_cur->sSubAddress.subaddressType);
2078 p.write(&(p_cur->sSubAddress.odd),sizeof(uct));
2079 p.write(&(p_cur->sSubAddress.number_of_digits),sizeof(uct));
2080 digitLimit= MIN((p_cur->sSubAddress.number_of_digits), RIL_CDMA_SMS_SUBADDRESS_MAX);
2081 for(digitCount =0 ; digitCount < digitLimit; digitCount ++) {
2082 p.write(&(p_cur->sSubAddress.digits[digitCount]),sizeof(uct));
2083 }
2084
2085 digitLimit= MIN((p_cur->uBearerDataLen), RIL_CDMA_SMS_BEARER_DATA_MAX);
2086 p.writeInt32(p_cur->uBearerDataLen);
2087 for(digitCount =0 ; digitCount < digitLimit; digitCount ++) {
2088 p.write(&(p_cur->aBearerData[digitCount]), sizeof(uct));
2089 }
2090
2091 startResponse;
2092 appendPrintBuf("%suTeleserviceID=%d, bIsServicePresent=%d, uServicecategory=%d, \
Wink Saville1b5fd232009-04-22 14:50:00 -07002093 sAddress.digit_mode=%d, sAddress.number_mode=%d, sAddress.number_type=%d, ",
Wink Savillef4c4d362009-04-02 01:37:03 -07002094 printBuf, p_cur->uTeleserviceID,p_cur->bIsServicePresent,p_cur->uServicecategory,
2095 p_cur->sAddress.digit_mode, p_cur->sAddress.number_mode,p_cur->sAddress.number_type);
2096 closeResponse;
2097
2098 return 0;
2099}
2100
The Android Open Source Project00f06fc2009-03-03 19:32:15 -08002101/**
2102 * A write on the wakeup fd is done just to pop us out of select()
2103 * We empty the buffer here and then ril_event will reset the timers on the
2104 * way back down
2105 */
Wink Savillef4c4d362009-04-02 01:37:03 -07002106static void processWakeupCallback(int fd, short flags, void *param) {
The Android Open Source Project00f06fc2009-03-03 19:32:15 -08002107 char buff[16];
2108 int ret;
2109
2110 LOGV("processWakeupCallback");
2111
2112 /* empty our wakeup socket out */
2113 do {
2114 ret = read(s_fdWakeupRead, &buff, sizeof(buff));
2115 } while (ret > 0 || (ret < 0 && errno == EINTR));
2116}
2117
Wink Savillef4c4d362009-04-02 01:37:03 -07002118static void onCommandsSocketClosed() {
The Android Open Source Project00f06fc2009-03-03 19:32:15 -08002119 int ret;
2120 RequestInfo *p_cur;
2121
2122 /* mark pending requests as "cancelled" so we dont report responses */
2123
2124 ret = pthread_mutex_lock(&s_pendingRequestsMutex);
2125 assert (ret == 0);
2126
2127 p_cur = s_pendingRequests;
2128
2129 for (p_cur = s_pendingRequests
2130 ; p_cur != NULL
2131 ; p_cur = p_cur->p_next
2132 ) {
2133 p_cur->cancelled = 1;
2134 }
2135
2136 ret = pthread_mutex_unlock(&s_pendingRequestsMutex);
2137 assert (ret == 0);
2138}
2139
Wink Savillef4c4d362009-04-02 01:37:03 -07002140static void processCommandsCallback(int fd, short flags, void *param) {
The Android Open Source Project00f06fc2009-03-03 19:32:15 -08002141 RecordStream *p_rs;
2142 void *p_record;
2143 size_t recordlen;
2144 int ret;
2145
2146 assert(fd == s_fdCommand);
2147
2148 p_rs = (RecordStream *)param;
2149
2150 for (;;) {
2151 /* loop until EAGAIN/EINTR, end of stream, or other error */
2152 ret = record_stream_get_next(p_rs, &p_record, &recordlen);
2153
2154 if (ret == 0 && p_record == NULL) {
2155 /* end-of-stream */
2156 break;
2157 } else if (ret < 0) {
2158 break;
2159 } else if (ret == 0) { /* && p_record != NULL */
2160 processCommandBuffer(p_record, recordlen);
2161 }
2162 }
2163
2164 if (ret == 0 || !(errno == EAGAIN || errno == EINTR)) {
2165 /* fatal error or end-of-stream */
2166 if (ret != 0) {
2167 LOGE("error on reading command socket errno:%d\n", errno);
2168 } else {
2169 LOGW("EOS. Closing command socket.");
2170 }
2171
2172 close(s_fdCommand);
2173 s_fdCommand = -1;
2174
2175 ril_event_del(&s_commands_event);
2176
2177 record_stream_free(p_rs);
2178
2179 /* start listening for new connections again */
2180 rilEventAddWakeup(&s_listen_event);
2181
2182 onCommandsSocketClosed();
2183 }
2184}
2185
2186
Wink Savillef4c4d362009-04-02 01:37:03 -07002187static void onNewCommandConnect() {
The Android Open Source Project00f06fc2009-03-03 19:32:15 -08002188 // implicit radio state changed
2189 RIL_onUnsolicitedResponse(RIL_UNSOL_RESPONSE_RADIO_STATE_CHANGED,
2190 NULL, 0);
2191
2192 // Send last NITZ time data, in case it was missed
2193 if (s_lastNITZTimeData != NULL) {
2194 sendResponseRaw(s_lastNITZTimeData, s_lastNITZTimeDataSize);
2195
2196 free(s_lastNITZTimeData);
2197 s_lastNITZTimeData = NULL;
2198 }
2199
2200 // Get version string
2201 if (s_callbacks.getVersion != NULL) {
2202 const char *version;
2203 version = s_callbacks.getVersion();
2204 LOGI("RIL Daemon version: %s\n", version);
2205
2206 property_set(PROPERTY_RIL_IMPL, version);
2207 } else {
2208 LOGI("RIL Daemon version: unavailable\n");
2209 property_set(PROPERTY_RIL_IMPL, "unavailable");
2210 }
2211
2212}
2213
Wink Savillef4c4d362009-04-02 01:37:03 -07002214static void listenCallback (int fd, short flags, void *param) {
The Android Open Source Project00f06fc2009-03-03 19:32:15 -08002215 int ret;
2216 int err;
2217 int is_phone_socket;
2218 RecordStream *p_rs;
2219
2220 struct sockaddr_un peeraddr;
2221 socklen_t socklen = sizeof (peeraddr);
2222
2223 struct ucred creds;
2224 socklen_t szCreds = sizeof(creds);
2225
2226 struct passwd *pwd = NULL;
2227
2228 assert (s_fdCommand < 0);
2229 assert (fd == s_fdListen);
2230
2231 s_fdCommand = accept(s_fdListen, (sockaddr *) &peeraddr, &socklen);
2232
2233 if (s_fdCommand < 0 ) {
2234 LOGE("Error on accept() errno:%d", errno);
2235 /* start listening for new connections again */
2236 rilEventAddWakeup(&s_listen_event);
Wink Savillef4c4d362009-04-02 01:37:03 -07002237 return;
The Android Open Source Project00f06fc2009-03-03 19:32:15 -08002238 }
2239
2240 /* check the credential of the other side and only accept socket from
2241 * phone process
2242 */
2243 errno = 0;
2244 is_phone_socket = 0;
Wink Savillef4c4d362009-04-02 01:37:03 -07002245
The Android Open Source Project00f06fc2009-03-03 19:32:15 -08002246 err = getsockopt(s_fdCommand, SOL_SOCKET, SO_PEERCRED, &creds, &szCreds);
Wink Savillef4c4d362009-04-02 01:37:03 -07002247
The Android Open Source Project00f06fc2009-03-03 19:32:15 -08002248 if (err == 0 && szCreds > 0) {
Wink Savillef4c4d362009-04-02 01:37:03 -07002249 errno = 0;
2250 pwd = getpwuid(creds.uid);
2251 if (pwd != NULL) {
2252 if (strcmp(pwd->pw_name, PHONE_PROCESS) == 0) {
2253 is_phone_socket = 1;
2254 } else {
2255 LOGE("RILD can't accept socket from process %s", pwd->pw_name);
2256 }
2257 } else {
2258 LOGE("Error on getpwuid() errno: %d", errno);
2259 }
The Android Open Source Project00f06fc2009-03-03 19:32:15 -08002260 } else {
Wink Savillef4c4d362009-04-02 01:37:03 -07002261 LOGD("Error on getsockopt() errno: %d", errno);
The Android Open Source Project00f06fc2009-03-03 19:32:15 -08002262 }
2263
2264 if ( !is_phone_socket ) {
2265 LOGE("RILD must accept socket from %s", PHONE_PROCESS);
2266
2267 close(s_fdCommand);
2268 s_fdCommand = -1;
2269
2270 onCommandsSocketClosed();
2271
2272 /* start listening for new connections again */
2273 rilEventAddWakeup(&s_listen_event);
2274
2275 return;
2276 }
2277
2278 ret = fcntl(s_fdCommand, F_SETFL, O_NONBLOCK);
2279
2280 if (ret < 0) {
2281 LOGE ("Error setting O_NONBLOCK errno:%d", errno);
2282 }
2283
2284 LOGI("libril: new connection");
2285
2286 p_rs = record_stream_new(s_fdCommand, MAX_COMMAND_BYTES);
2287
2288 ril_event_set (&s_commands_event, s_fdCommand, 1,
2289 processCommandsCallback, p_rs);
2290
2291 rilEventAddWakeup (&s_commands_event);
2292
2293 onNewCommandConnect();
2294}
2295
2296static void freeDebugCallbackArgs(int number, char **args) {
2297 for (int i = 0; i < number; i++) {
2298 if (args[i] != NULL) {
2299 free(args[i]);
2300 }
2301 }
2302 free(args);
2303}
2304
Wink Savillef4c4d362009-04-02 01:37:03 -07002305static void debugCallback (int fd, short flags, void *param) {
The Android Open Source Project00f06fc2009-03-03 19:32:15 -08002306 int acceptFD, option;
2307 struct sockaddr_un peeraddr;
2308 socklen_t socklen = sizeof (peeraddr);
2309 int data;
2310 unsigned int qxdm_data[6];
2311 const char *deactData[1] = {"1"};
2312 char *actData[1];
2313 RIL_Dial dialData;
2314 int hangupData[1] = {1};
2315 int number;
2316 char **args;
2317
2318 acceptFD = accept (fd, (sockaddr *) &peeraddr, &socklen);
2319
2320 if (acceptFD < 0) {
2321 LOGE ("error accepting on debug port: %d\n", errno);
2322 return;
2323 }
2324
2325 if (recv(acceptFD, &number, sizeof(int), 0) != sizeof(int)) {
2326 LOGE ("error reading on socket: number of Args: \n");
2327 return;
2328 }
2329 args = (char **) malloc(sizeof(char*) * number);
2330
2331 for (int i = 0; i < number; i++) {
2332 int len;
2333 if (recv(acceptFD, &len, sizeof(int), 0) != sizeof(int)) {
2334 LOGE ("error reading on socket: Len of Args: \n");
2335 freeDebugCallbackArgs(i, args);
2336 return;
2337 }
2338 // +1 for null-term
2339 args[i] = (char *) malloc((sizeof(char) * len) + 1);
2340 if (recv(acceptFD, args[i], sizeof(char) * len, 0)
Wink Saville1b5fd232009-04-22 14:50:00 -07002341 != (int)sizeof(char) * len) {
The Android Open Source Project00f06fc2009-03-03 19:32:15 -08002342 LOGE ("error reading on socket: Args[%d] \n", i);
2343 freeDebugCallbackArgs(i, args);
2344 return;
2345 }
2346 char * buf = args[i];
2347 buf[len] = 0;
2348 }
2349
2350 switch (atoi(args[0])) {
2351 case 0:
2352 LOGI ("Connection on debug port: issuing reset.");
2353 issueLocalRequest(RIL_REQUEST_RESET_RADIO, NULL, 0);
2354 break;
2355 case 1:
2356 LOGI ("Connection on debug port: issuing radio power off.");
2357 data = 0;
2358 issueLocalRequest(RIL_REQUEST_RADIO_POWER, &data, sizeof(int));
2359 // Close the socket
2360 close(s_fdCommand);
2361 s_fdCommand = -1;
2362 break;
2363 case 2:
2364 LOGI ("Debug port: issuing unsolicited network change.");
2365 RIL_onUnsolicitedResponse(RIL_UNSOL_RESPONSE_NETWORK_STATE_CHANGED,
2366 NULL, 0);
2367 break;
2368 case 3:
2369 LOGI ("Debug port: QXDM log enable.");
2370 qxdm_data[0] = 65536;
2371 qxdm_data[1] = 16;
2372 qxdm_data[2] = 1;
2373 qxdm_data[3] = 32;
2374 qxdm_data[4] = 0;
2375 qxdm_data[4] = 8;
2376 issueLocalRequest(RIL_REQUEST_OEM_HOOK_RAW, qxdm_data,
2377 6 * sizeof(int));
2378 break;
2379 case 4:
2380 LOGI ("Debug port: QXDM log disable.");
2381 qxdm_data[0] = 65536;
2382 qxdm_data[1] = 16;
2383 qxdm_data[2] = 0;
2384 qxdm_data[3] = 32;
2385 qxdm_data[4] = 0;
2386 qxdm_data[4] = 8;
2387 issueLocalRequest(RIL_REQUEST_OEM_HOOK_RAW, qxdm_data,
2388 6 * sizeof(int));
2389 break;
2390 case 5:
2391 LOGI("Debug port: Radio On");
2392 data = 1;
2393 issueLocalRequest(RIL_REQUEST_RADIO_POWER, &data, sizeof(int));
2394 sleep(2);
2395 // Set network selection automatic.
2396 issueLocalRequest(RIL_REQUEST_SET_NETWORK_SELECTION_AUTOMATIC, NULL, 0);
2397 break;
2398 case 6:
Wink Savillef4c4d362009-04-02 01:37:03 -07002399 LOGI("Debug port: Setup Data Call, Apn :%s\n", args[1]);
The Android Open Source Project00f06fc2009-03-03 19:32:15 -08002400 actData[0] = args[1];
Wink Savillef4c4d362009-04-02 01:37:03 -07002401 issueLocalRequest(RIL_REQUEST_SETUP_DATA_CALL, &actData,
The Android Open Source Project00f06fc2009-03-03 19:32:15 -08002402 sizeof(actData));
2403 break;
2404 case 7:
Wink Savillef4c4d362009-04-02 01:37:03 -07002405 LOGI("Debug port: Deactivate Data Call");
2406 issueLocalRequest(RIL_REQUEST_DEACTIVATE_DATA_CALL, &deactData,
The Android Open Source Project00f06fc2009-03-03 19:32:15 -08002407 sizeof(deactData));
2408 break;
2409 case 8:
2410 LOGI("Debug port: Dial Call");
2411 dialData.clir = 0;
2412 dialData.address = args[1];
2413 issueLocalRequest(RIL_REQUEST_DIAL, &dialData, sizeof(dialData));
2414 break;
2415 case 9:
2416 LOGI("Debug port: Answer Call");
2417 issueLocalRequest(RIL_REQUEST_ANSWER, NULL, 0);
2418 break;
2419 case 10:
2420 LOGI("Debug port: End Call");
2421 issueLocalRequest(RIL_REQUEST_HANGUP, &hangupData,
2422 sizeof(hangupData));
2423 break;
2424 default:
2425 LOGE ("Invalid request");
2426 break;
2427 }
2428 freeDebugCallbackArgs(number, args);
2429 close(acceptFD);
2430}
2431
2432
Wink Savillef4c4d362009-04-02 01:37:03 -07002433static void userTimerCallback (int fd, short flags, void *param) {
The Android Open Source Project00f06fc2009-03-03 19:32:15 -08002434 UserCallbackInfo *p_info;
2435
2436 p_info = (UserCallbackInfo *)param;
2437
2438 p_info->p_callback(p_info->userParam);
2439
2440
2441 // FIXME generalize this...there should be a cancel mechanism
2442 if (s_last_wake_timeout_info != NULL && s_last_wake_timeout_info == p_info) {
2443 s_last_wake_timeout_info = NULL;
2444 }
2445
2446 free(p_info);
2447}
2448
2449
2450static void *
Wink Savillef4c4d362009-04-02 01:37:03 -07002451eventLoop(void *param) {
The Android Open Source Project00f06fc2009-03-03 19:32:15 -08002452 int ret;
2453 int filedes[2];
2454
2455 ril_event_init();
2456
2457 pthread_mutex_lock(&s_startupMutex);
2458
2459 s_started = 1;
2460 pthread_cond_broadcast(&s_startupCond);
2461
2462 pthread_mutex_unlock(&s_startupMutex);
2463
2464 ret = pipe(filedes);
2465
2466 if (ret < 0) {
2467 LOGE("Error in pipe() errno:%d", errno);
2468 return NULL;
2469 }
2470
2471 s_fdWakeupRead = filedes[0];
2472 s_fdWakeupWrite = filedes[1];
2473
2474 fcntl(s_fdWakeupRead, F_SETFL, O_NONBLOCK);
2475
2476 ril_event_set (&s_wakeupfd_event, s_fdWakeupRead, true,
2477 processWakeupCallback, NULL);
2478
2479 rilEventAddWakeup (&s_wakeupfd_event);
2480
2481 // Only returns on error
2482 ril_event_loop();
2483 LOGE ("error in event_loop_base errno:%d", errno);
2484
2485 return NULL;
2486}
2487
2488extern "C" void
Wink Savillef4c4d362009-04-02 01:37:03 -07002489RIL_startEventLoop(void) {
The Android Open Source Project00f06fc2009-03-03 19:32:15 -08002490 int ret;
2491 pthread_attr_t attr;
2492
2493 /* spin up eventLoop thread and wait for it to get started */
2494 s_started = 0;
2495 pthread_mutex_lock(&s_startupMutex);
2496
2497 pthread_attr_init (&attr);
2498 pthread_attr_setdetachstate(&attr, PTHREAD_CREATE_DETACHED);
2499 ret = pthread_create(&s_tid_dispatch, &attr, eventLoop, NULL);
2500
2501 while (s_started == 0) {
2502 pthread_cond_wait(&s_startupCond, &s_startupMutex);
2503 }
2504
2505 pthread_mutex_unlock(&s_startupMutex);
2506
2507 if (ret < 0) {
2508 LOGE("Failed to create dispatch thread errno:%d", errno);
2509 return;
2510 }
2511}
2512
2513// Used for testing purpose only.
2514extern "C" void RIL_setcallbacks (const RIL_RadioFunctions *callbacks) {
2515 memcpy(&s_callbacks, callbacks, sizeof (RIL_RadioFunctions));
2516}
2517
2518extern "C" void
Wink Savillef4c4d362009-04-02 01:37:03 -07002519RIL_register (const RIL_RadioFunctions *callbacks) {
The Android Open Source Project00f06fc2009-03-03 19:32:15 -08002520 int ret;
2521 int flags;
2522
2523 if (callbacks == NULL
2524 || ! (callbacks->version == RIL_VERSION || callbacks->version == 1)
2525 ) {
2526 LOGE(
2527 "RIL_register: RIL_RadioFunctions * null or invalid version"
2528 " (expected %d)", RIL_VERSION);
2529 return;
2530 }
2531
2532 if (s_registerCalled > 0) {
2533 LOGE("RIL_register has been called more than once. "
2534 "Subsequent call ignored");
2535 return;
2536 }
2537
2538 memcpy(&s_callbacks, callbacks, sizeof (RIL_RadioFunctions));
2539
2540 s_registerCalled = 1;
2541
2542 // Little self-check
2543
Wink Savillef4c4d362009-04-02 01:37:03 -07002544 for (int i = 0; i < (int)NUM_ELEMS(s_commands); i++) {
The Android Open Source Project00f06fc2009-03-03 19:32:15 -08002545 assert(i == s_commands[i].requestNumber);
2546 }
2547
Wink Savillef4c4d362009-04-02 01:37:03 -07002548 for (int i = 0; i < (int)NUM_ELEMS(s_unsolResponses); i++) {
The Android Open Source Project00f06fc2009-03-03 19:32:15 -08002549 assert(i + RIL_UNSOL_RESPONSE_BASE
2550 == s_unsolResponses[i].requestNumber);
2551 }
2552
2553 // New rild impl calls RIL_startEventLoop() first
2554 // old standalone impl wants it here.
2555
2556 if (s_started == 0) {
2557 RIL_startEventLoop();
2558 }
2559
2560 // start listen socket
2561
2562#if 0
2563 ret = socket_local_server (SOCKET_NAME_RIL,
2564 ANDROID_SOCKET_NAMESPACE_ABSTRACT, SOCK_STREAM);
2565
2566 if (ret < 0) {
2567 LOGE("Unable to bind socket errno:%d", errno);
2568 exit (-1);
2569 }
2570 s_fdListen = ret;
2571
2572#else
2573 s_fdListen = android_get_control_socket(SOCKET_NAME_RIL);
2574 if (s_fdListen < 0) {
2575 LOGE("Failed to get socket '" SOCKET_NAME_RIL "'");
2576 exit(-1);
2577 }
2578
2579 ret = listen(s_fdListen, 4);
2580
2581 if (ret < 0) {
2582 LOGE("Failed to listen on control socket '%d': %s",
2583 s_fdListen, strerror(errno));
2584 exit(-1);
2585 }
2586#endif
2587
2588
2589 /* note: non-persistent so we can accept only one connection at a time */
2590 ril_event_set (&s_listen_event, s_fdListen, false,
2591 listenCallback, NULL);
2592
2593 rilEventAddWakeup (&s_listen_event);
2594
2595#if 1
2596 // start debug interface socket
2597
2598 s_fdDebug = android_get_control_socket(SOCKET_NAME_RIL_DEBUG);
2599 if (s_fdDebug < 0) {
2600 LOGE("Failed to get socket '" SOCKET_NAME_RIL_DEBUG "' errno:%d", errno);
2601 exit(-1);
2602 }
2603
2604 ret = listen(s_fdDebug, 4);
2605
2606 if (ret < 0) {
2607 LOGE("Failed to listen on ril debug socket '%d': %s",
2608 s_fdDebug, strerror(errno));
2609 exit(-1);
2610 }
2611
2612 ril_event_set (&s_debug_event, s_fdDebug, true,
2613 debugCallback, NULL);
2614
2615 rilEventAddWakeup (&s_debug_event);
2616#endif
2617
2618}
2619
2620static int
Wink Savillef4c4d362009-04-02 01:37:03 -07002621checkAndDequeueRequestInfo(struct RequestInfo *pRI) {
The Android Open Source Project00f06fc2009-03-03 19:32:15 -08002622 int ret = 0;
2623
2624 if (pRI == NULL) {
2625 return 0;
2626 }
2627
2628 pthread_mutex_lock(&s_pendingRequestsMutex);
2629
2630 for(RequestInfo **ppCur = &s_pendingRequests
2631 ; *ppCur != NULL
2632 ; ppCur = &((*ppCur)->p_next)
2633 ) {
2634 if (pRI == *ppCur) {
2635 ret = 1;
2636
2637 *ppCur = (*ppCur)->p_next;
2638 break;
2639 }
2640 }
2641
2642 pthread_mutex_unlock(&s_pendingRequestsMutex);
2643
2644 return ret;
2645}
2646
2647
2648extern "C" void
Wink Savillef4c4d362009-04-02 01:37:03 -07002649RIL_onRequestComplete(RIL_Token t, RIL_Errno e, void *response, size_t responselen) {
The Android Open Source Project00f06fc2009-03-03 19:32:15 -08002650 RequestInfo *pRI;
2651 int ret;
2652 size_t errorOffset;
2653
2654 pRI = (RequestInfo *)t;
2655
2656 if (!checkAndDequeueRequestInfo(pRI)) {
2657 LOGE ("RIL_onRequestComplete: invalid RIL_Token");
2658 return;
2659 }
2660
2661 if (pRI->local > 0) {
2662 // Locally issued command...void only!
2663 // response does not go back up the command socket
2664 LOGD("C[locl]< %s", requestToString(pRI->pCI->requestNumber));
2665
2666 goto done;
2667 }
2668
2669 appendPrintBuf("[%04d]< %s",
2670 pRI->token, requestToString(pRI->pCI->requestNumber));
2671
2672 if (pRI->cancelled == 0) {
2673 Parcel p;
2674
2675 p.writeInt32 (RESPONSE_SOLICITED);
2676 p.writeInt32 (pRI->token);
2677 errorOffset = p.dataPosition();
2678
2679 p.writeInt32 (e);
2680
2681 if (e == RIL_E_SUCCESS) {
2682 /* process response on success */
2683 ret = pRI->pCI->responseFunction(p, response, responselen);
2684
2685 /* if an error occurred, rewind and mark it */
2686 if (ret != 0) {
2687 p.setDataPosition(errorOffset);
2688 p.writeInt32 (ret);
2689 }
2690 } else {
2691 appendPrintBuf("%s returns %s", printBuf, failCauseToString(e));
2692 }
2693
2694 if (s_fdCommand < 0) {
2695 LOGD ("RIL onRequestComplete: Command channel closed");
2696 }
2697 sendResponse(p);
2698 }
2699
2700done:
2701 free(pRI);
2702}
2703
2704
2705static void
Wink Savillef4c4d362009-04-02 01:37:03 -07002706grabPartialWakeLock() {
The Android Open Source Project00f06fc2009-03-03 19:32:15 -08002707 acquire_wake_lock(PARTIAL_WAKE_LOCK, ANDROID_WAKE_LOCK_NAME);
2708}
2709
2710static void
Wink Savillef4c4d362009-04-02 01:37:03 -07002711releaseWakeLock() {
The Android Open Source Project00f06fc2009-03-03 19:32:15 -08002712 release_wake_lock(ANDROID_WAKE_LOCK_NAME);
2713}
2714
2715/**
2716 * Timer callback to put us back to sleep before the default timeout
2717 */
2718static void
Wink Savillef4c4d362009-04-02 01:37:03 -07002719wakeTimeoutCallback (void *param) {
The Android Open Source Project00f06fc2009-03-03 19:32:15 -08002720 // We're using "param != NULL" as a cancellation mechanism
2721 if (param == NULL) {
2722 //LOGD("wakeTimeout: releasing wake lock");
2723
2724 releaseWakeLock();
2725 } else {
2726 //LOGD("wakeTimeout: releasing wake lock CANCELLED");
2727 }
2728}
2729
2730extern "C"
2731void RIL_onUnsolicitedResponse(int unsolResponse, void *data,
2732 size_t datalen)
2733{
2734 int unsolResponseIndex;
2735 int ret;
2736 int64_t timeReceived = 0;
2737 bool shouldScheduleTimeout = false;
2738
2739 if (s_registerCalled == 0) {
2740 // Ignore RIL_onUnsolicitedResponse before RIL_register
2741 LOGW("RIL_onUnsolicitedResponse called before RIL_register");
2742 return;
2743 }
The Android Open Source Project34a51082009-03-05 14:34:37 -08002744
The Android Open Source Project00f06fc2009-03-03 19:32:15 -08002745 unsolResponseIndex = unsolResponse - RIL_UNSOL_RESPONSE_BASE;
2746
2747 if ((unsolResponseIndex < 0)
2748 || (unsolResponseIndex >= (int32_t)NUM_ELEMS(s_unsolResponses))) {
2749 LOGE("unsupported unsolicited response code %d", unsolResponse);
2750 return;
2751 }
2752
2753 // Grab a wake lock if needed for this reponse,
2754 // as we exit we'll either release it immediately
2755 // or set a timer to release it later.
2756 switch (s_unsolResponses[unsolResponseIndex].wakeType) {
2757 case WAKE_PARTIAL:
2758 grabPartialWakeLock();
2759 shouldScheduleTimeout = true;
2760 break;
2761
2762 case DONT_WAKE:
2763 default:
2764 // No wake lock is grabed so don't set timeout
2765 shouldScheduleTimeout = false;
2766 break;
2767 }
2768
2769 // Mark the time this was received, doing this
2770 // after grabing the wakelock incase getting
2771 // the elapsedRealTime might cause us to goto
2772 // sleep.
2773 if (unsolResponse == RIL_UNSOL_NITZ_TIME_RECEIVED) {
2774 timeReceived = elapsedRealtime();
2775 }
2776
2777 appendPrintBuf("[UNSL]< %s", requestToString(unsolResponse));
2778
2779 Parcel p;
2780
2781 p.writeInt32 (RESPONSE_UNSOLICITED);
2782 p.writeInt32 (unsolResponse);
2783
2784 ret = s_unsolResponses[unsolResponseIndex]
2785 .responseFunction(p, data, datalen);
2786 if (ret != 0) {
2787 // Problem with the response. Don't continue;
2788 goto error_exit;
2789 }
2790
2791 // some things get more payload
2792 switch(unsolResponse) {
2793 case RIL_UNSOL_RESPONSE_RADIO_STATE_CHANGED:
2794 p.writeInt32(s_callbacks.onStateRequest());
2795 appendPrintBuf("%s {%s}", printBuf,
2796 radioStateToString(s_callbacks.onStateRequest()));
2797 break;
2798
2799
2800 case RIL_UNSOL_NITZ_TIME_RECEIVED:
2801 // Store the time that this was received so the
2802 // handler of this message can account for
2803 // the time it takes to arrive and process. In
2804 // particular the system has been known to sleep
2805 // before this message can be processed.
2806 p.writeInt64(timeReceived);
2807 break;
2808 }
2809
2810 ret = sendResponse(p);
2811 if (ret != 0 && unsolResponse == RIL_UNSOL_NITZ_TIME_RECEIVED) {
2812
2813 // Unfortunately, NITZ time is not poll/update like everything
2814 // else in the system. So, if the upstream client isn't connected,
2815 // keep a copy of the last NITZ response (with receive time noted
2816 // above) around so we can deliver it when it is connected
2817
2818 if (s_lastNITZTimeData != NULL) {
2819 free (s_lastNITZTimeData);
2820 s_lastNITZTimeData = NULL;
2821 }
2822
2823 s_lastNITZTimeData = malloc(p.dataSize());
2824 s_lastNITZTimeDataSize = p.dataSize();
2825 memcpy(s_lastNITZTimeData, p.data(), p.dataSize());
2826 }
2827
2828 // For now, we automatically go back to sleep after TIMEVAL_WAKE_TIMEOUT
2829 // FIXME The java code should handshake here to release wake lock
2830
2831 if (shouldScheduleTimeout) {
2832 // Cancel the previous request
2833 if (s_last_wake_timeout_info != NULL) {
2834 s_last_wake_timeout_info->userParam = (void *)1;
2835 }
2836
2837 s_last_wake_timeout_info
2838 = internalRequestTimedCallback(wakeTimeoutCallback, NULL,
2839 &TIMEVAL_WAKE_TIMEOUT);
2840 }
2841
2842 // Normal exit
2843 return;
2844
2845error_exit:
The Android Open Source Project00f06fc2009-03-03 19:32:15 -08002846 if (shouldScheduleTimeout) {
2847 releaseWakeLock();
2848 }
2849}
2850
2851/** FIXME generalize this if you track UserCAllbackInfo, clear it
2852 when the callback occurs
2853*/
2854static UserCallbackInfo *
2855internalRequestTimedCallback (RIL_TimedCallback callback, void *param,
2856 const struct timeval *relativeTime)
The Android Open Source Project00f06fc2009-03-03 19:32:15 -08002857{
2858 struct timeval myRelativeTime;
2859 UserCallbackInfo *p_info;
2860
2861 p_info = (UserCallbackInfo *) malloc (sizeof(UserCallbackInfo));
2862
2863 p_info->p_callback = callback;
2864 p_info->userParam = param;
2865
2866 if (relativeTime == NULL) {
2867 /* treat null parameter as a 0 relative time */
2868 memset (&myRelativeTime, 0, sizeof(myRelativeTime));
2869 } else {
2870 /* FIXME I think event_add's tv param is really const anyway */
2871 memcpy (&myRelativeTime, relativeTime, sizeof(myRelativeTime));
2872 }
2873
2874 ril_event_set(&(p_info->event), -1, false, userTimerCallback, p_info);
2875
2876 ril_timer_add(&(p_info->event), &myRelativeTime);
2877
2878 triggerEvLoop();
2879 return p_info;
2880}
2881
2882
2883extern "C" void
2884RIL_requestTimedCallback (RIL_TimedCallback callback, void *param,
Wink Savillef4c4d362009-04-02 01:37:03 -07002885 const struct timeval *relativeTime) {
The Android Open Source Project00f06fc2009-03-03 19:32:15 -08002886 internalRequestTimedCallback (callback, param, relativeTime);
2887}
2888
2889const char *
Wink Savillef4c4d362009-04-02 01:37:03 -07002890failCauseToString(RIL_Errno e) {
The Android Open Source Project00f06fc2009-03-03 19:32:15 -08002891 switch(e) {
2892 case RIL_E_SUCCESS: return "E_SUCCESS";
2893 case RIL_E_RADIO_NOT_AVAILABLE: return "E_RAIDO_NOT_AVAILABLE";
2894 case RIL_E_GENERIC_FAILURE: return "E_GENERIC_FAILURE";
2895 case RIL_E_PASSWORD_INCORRECT: return "E_PASSWORD_INCORRECT";
2896 case RIL_E_SIM_PIN2: return "E_SIM_PIN2";
2897 case RIL_E_SIM_PUK2: return "E_SIM_PUK2";
2898 case RIL_E_REQUEST_NOT_SUPPORTED: return "E_REQUEST_NOT_SUPPORTED";
2899 case RIL_E_CANCELLED: return "E_CANCELLED";
2900 case RIL_E_OP_NOT_ALLOWED_DURING_VOICE_CALL: return "E_OP_NOT_ALLOWED_DURING_VOICE_CALL";
2901 case RIL_E_OP_NOT_ALLOWED_BEFORE_REG_TO_NW: return "E_OP_NOT_ALLOWED_BEFORE_REG_TO_NW";
2902 case RIL_E_SMS_SEND_FAIL_RETRY: return "E_SMS_SEND_FAIL_RETRY";
Wink Savillef4c4d362009-04-02 01:37:03 -07002903 case RIL_E_SIM_ABSENT:return "E_SIM_ABSENT";
2904#ifdef FEATURE_MULTIMODE_ANDROID
2905 case RIL_E_SUBSCRIPTION_NOT_AVAILABLE:return "E_SUBSCRIPTION_NOT_AVAILABLE";
2906 case RIL_E_MODE_NOT_SUPPORTED:return "E_MODE_NOT_SUPPORTED";
2907#endif
The Android Open Source Project00f06fc2009-03-03 19:32:15 -08002908 default: return "<unknown error>";
2909 }
2910}
2911
2912const char *
Wink Savillef4c4d362009-04-02 01:37:03 -07002913radioStateToString(RIL_RadioState s) {
The Android Open Source Project00f06fc2009-03-03 19:32:15 -08002914 switch(s) {
2915 case RADIO_STATE_OFF: return "RADIO_OFF";
2916 case RADIO_STATE_UNAVAILABLE: return "RADIO_UNAVAILABLE";
2917 case RADIO_STATE_SIM_NOT_READY: return "RADIO_SIM_NOT_READY";
2918 case RADIO_STATE_SIM_LOCKED_OR_ABSENT: return "RADIO_SIM_LOCKED_OR_ABSENT";
2919 case RADIO_STATE_SIM_READY: return "RADIO_SIM_READY";
Wink Savillef4c4d362009-04-02 01:37:03 -07002920 case RADIO_STATE_RUIM_NOT_READY:return"RADIO_RUIM_NOT_READY";
2921 case RADIO_STATE_RUIM_READY:return"RADIO_RUIM_READY";
2922 case RADIO_STATE_RUIM_LOCKED_OR_ABSENT:return"RADIO_RUIM_LOCKED_OR_ABSENT";
2923 case RADIO_STATE_NV_NOT_READY:return"RADIO_NV_NOT_READY";
2924 case RADIO_STATE_NV_READY:return"RADIO_NV_READY";
The Android Open Source Project00f06fc2009-03-03 19:32:15 -08002925 default: return "<unknown state>";
2926 }
2927}
2928
2929const char *
Wink Savillef4c4d362009-04-02 01:37:03 -07002930callStateToString(RIL_CallState s) {
The Android Open Source Project00f06fc2009-03-03 19:32:15 -08002931 switch(s) {
2932 case RIL_CALL_ACTIVE : return "ACTIVE";
2933 case RIL_CALL_HOLDING: return "HOLDING";
2934 case RIL_CALL_DIALING: return "DIALING";
2935 case RIL_CALL_ALERTING: return "ALERTING";
2936 case RIL_CALL_INCOMING: return "INCOMING";
2937 case RIL_CALL_WAITING: return "WAITING";
2938 default: return "<unknown state>";
2939 }
2940}
2941
2942const char *
Wink Savillef4c4d362009-04-02 01:37:03 -07002943requestToString(int request) {
The Android Open Source Project00f06fc2009-03-03 19:32:15 -08002944/*
2945 cat libs/telephony/ril_commands.h \
2946 | egrep "^ *{RIL_" \
2947 | sed -re 's/\{RIL_([^,]+),[^,]+,([^}]+).+/case RIL_\1: return "\1";/'
2948
2949
2950 cat libs/telephony/ril_unsol_commands.h \
2951 | egrep "^ *{RIL_" \
2952 | sed -re 's/\{RIL_([^,]+),([^}]+).+/case RIL_\1: return "\1";/'
2953
2954*/
2955 switch(request) {
2956 case RIL_REQUEST_GET_SIM_STATUS: return "GET_SIM_STATUS";
2957 case RIL_REQUEST_ENTER_SIM_PIN: return "ENTER_SIM_PIN";
2958 case RIL_REQUEST_ENTER_SIM_PUK: return "ENTER_SIM_PUK";
2959 case RIL_REQUEST_ENTER_SIM_PIN2: return "ENTER_SIM_PIN2";
2960 case RIL_REQUEST_ENTER_SIM_PUK2: return "ENTER_SIM_PUK2";
2961 case RIL_REQUEST_CHANGE_SIM_PIN: return "CHANGE_SIM_PIN";
2962 case RIL_REQUEST_CHANGE_SIM_PIN2: return "CHANGE_SIM_PIN2";
2963 case RIL_REQUEST_ENTER_NETWORK_DEPERSONALIZATION: return "ENTER_NETWORK_DEPERSONALIZATION";
2964 case RIL_REQUEST_GET_CURRENT_CALLS: return "GET_CURRENT_CALLS";
2965 case RIL_REQUEST_DIAL: return "DIAL";
2966 case RIL_REQUEST_GET_IMSI: return "GET_IMSI";
2967 case RIL_REQUEST_HANGUP: return "HANGUP";
2968 case RIL_REQUEST_HANGUP_WAITING_OR_BACKGROUND: return "HANGUP_WAITING_OR_BACKGROUND";
2969 case RIL_REQUEST_HANGUP_FOREGROUND_RESUME_BACKGROUND: return "HANGUP_FOREGROUND_RESUME_BACKGROUND";
2970 case RIL_REQUEST_SWITCH_WAITING_OR_HOLDING_AND_ACTIVE: return "SWITCH_WAITING_OR_HOLDING_AND_ACTIVE";
2971 case RIL_REQUEST_CONFERENCE: return "CONFERENCE";
2972 case RIL_REQUEST_UDUB: return "UDUB";
2973 case RIL_REQUEST_LAST_CALL_FAIL_CAUSE: return "LAST_CALL_FAIL_CAUSE";
2974 case RIL_REQUEST_SIGNAL_STRENGTH: return "SIGNAL_STRENGTH";
2975 case RIL_REQUEST_REGISTRATION_STATE: return "REGISTRATION_STATE";
2976 case RIL_REQUEST_GPRS_REGISTRATION_STATE: return "GPRS_REGISTRATION_STATE";
2977 case RIL_REQUEST_OPERATOR: return "OPERATOR";
2978 case RIL_REQUEST_RADIO_POWER: return "RADIO_POWER";
2979 case RIL_REQUEST_DTMF: return "DTMF";
2980 case RIL_REQUEST_SEND_SMS: return "SEND_SMS";
2981 case RIL_REQUEST_SEND_SMS_EXPECT_MORE: return "SEND_SMS_EXPECT_MORE";
Wink Savillef4c4d362009-04-02 01:37:03 -07002982 case RIL_REQUEST_SETUP_DATA_CALL: return "SETUP_DATA_CALL";
The Android Open Source Project00f06fc2009-03-03 19:32:15 -08002983 case RIL_REQUEST_SIM_IO: return "SIM_IO";
2984 case RIL_REQUEST_SEND_USSD: return "SEND_USSD";
2985 case RIL_REQUEST_CANCEL_USSD: return "CANCEL_USSD";
2986 case RIL_REQUEST_GET_CLIR: return "GET_CLIR";
2987 case RIL_REQUEST_SET_CLIR: return "SET_CLIR";
2988 case RIL_REQUEST_QUERY_CALL_FORWARD_STATUS: return "QUERY_CALL_FORWARD_STATUS";
2989 case RIL_REQUEST_SET_CALL_FORWARD: return "SET_CALL_FORWARD";
2990 case RIL_REQUEST_QUERY_CALL_WAITING: return "QUERY_CALL_WAITING";
2991 case RIL_REQUEST_SET_CALL_WAITING: return "SET_CALL_WAITING";
2992 case RIL_REQUEST_SMS_ACKNOWLEDGE: return "SMS_ACKNOWLEDGE";
2993 case RIL_REQUEST_GET_IMEI: return "GET_IMEI";
2994 case RIL_REQUEST_GET_IMEISV: return "GET_IMEISV";
2995 case RIL_REQUEST_ANSWER: return "ANSWER";
Wink Savillef4c4d362009-04-02 01:37:03 -07002996 case RIL_REQUEST_DEACTIVATE_DATA_CALL: return "DEACTIVATE_DATA_CALL";
The Android Open Source Project00f06fc2009-03-03 19:32:15 -08002997 case RIL_REQUEST_QUERY_FACILITY_LOCK: return "QUERY_FACILITY_LOCK";
2998 case RIL_REQUEST_SET_FACILITY_LOCK: return "SET_FACILITY_LOCK";
2999 case RIL_REQUEST_CHANGE_BARRING_PASSWORD: return "CHANGE_BARRING_PASSWORD";
3000 case RIL_REQUEST_QUERY_NETWORK_SELECTION_MODE: return "QUERY_NETWORK_SELECTION_MODE";
3001 case RIL_REQUEST_SET_NETWORK_SELECTION_AUTOMATIC: return "SET_NETWORK_SELECTION_AUTOMATIC";
3002 case RIL_REQUEST_SET_NETWORK_SELECTION_MANUAL: return "SET_NETWORK_SELECTION_MANUAL";
3003 case RIL_REQUEST_QUERY_AVAILABLE_NETWORKS : return "QUERY_AVAILABLE_NETWORKS ";
3004 case RIL_REQUEST_DTMF_START: return "DTMF_START";
3005 case RIL_REQUEST_DTMF_STOP: return "DTMF_STOP";
3006 case RIL_REQUEST_BASEBAND_VERSION: return "BASEBAND_VERSION";
3007 case RIL_REQUEST_SEPARATE_CONNECTION: return "SEPARATE_CONNECTION";
3008 case RIL_REQUEST_SET_PREFERRED_NETWORK_TYPE: return "SET_PREFERRED_NETWORK_TYPE";
3009 case RIL_REQUEST_GET_PREFERRED_NETWORK_TYPE: return "GET_PREFERRED_NETWORK_TYPE";
3010 case RIL_REQUEST_GET_NEIGHBORING_CELL_IDS: return "GET_NEIGHBORING_CELL_IDS";
3011 case RIL_REQUEST_SET_MUTE: return "SET_MUTE";
3012 case RIL_REQUEST_GET_MUTE: return "GET_MUTE";
3013 case RIL_REQUEST_QUERY_CLIP: return "QUERY_CLIP";
Wink Savillef4c4d362009-04-02 01:37:03 -07003014 case RIL_REQUEST_LAST_DATA_CALL_FAIL_CAUSE: return "LAST_DATA_CALL_FAIL_CAUSE";
3015 case RIL_REQUEST_DATA_CALL_LIST: return "DATA_CALL_LIST";
The Android Open Source Project00f06fc2009-03-03 19:32:15 -08003016 case RIL_REQUEST_RESET_RADIO: return "RESET_RADIO";
3017 case RIL_REQUEST_OEM_HOOK_RAW: return "OEM_HOOK_RAW";
3018 case RIL_REQUEST_OEM_HOOK_STRINGS: return "OEM_HOOK_STRINGS";
Wink Savillef4c4d362009-04-02 01:37:03 -07003019 case RIL_REQUEST_SET_BAND_MODE: return "SET_BAND_MODE";
3020 case RIL_REQUEST_QUERY_AVAILABLE_BAND_MODE: return "QUERY_AVAILABLE_BAND_MODE";
The Android Open Source Project00f06fc2009-03-03 19:32:15 -08003021 case RIL_REQUEST_STK_GET_PROFILE: return "STK_GET_PROFILE";
3022 case RIL_REQUEST_STK_SET_PROFILE: return "STK_SET_PROFILE";
3023 case RIL_REQUEST_STK_SEND_ENVELOPE_COMMAND: return "STK_SEND_ENVELOPE_COMMAND";
3024 case RIL_REQUEST_STK_SEND_TERMINAL_RESPONSE: return "STK_SEND_TERMINAL_RESPONSE";
3025 case RIL_REQUEST_STK_HANDLE_CALL_SETUP_REQUESTED_FROM_SIM: return "STK_HANDLE_CALL_SETUP_REQUESTED_FROM_SIM";
3026 case RIL_REQUEST_SCREEN_STATE: return "SCREEN_STATE";
3027 case RIL_REQUEST_EXPLICIT_CALL_TRANSFER: return "EXPLICIT_CALL_TRANSFER";
3028 case RIL_REQUEST_SET_LOCATION_UPDATES: return "SET_LOCATION_UPDATES";
Wink Savillef4c4d362009-04-02 01:37:03 -07003029 case RIL_REQUEST_CDMA_SET_SUBSCRIPTION:return"CDMA_SET_SUBSCRIPTION";
3030 case RIL_REQUEST_CDMA_SET_ROAMING_PREFERENCE:return"CDMA_SET_ROAMING_PREFERENCE";
3031 case RIL_REQUEST_CDMA_QUERY_ROAMING_PREFERENCE:return"CDMA_QUERY_ROAMING_PREFERENCE";
3032 case RIL_REQUEST_SET_TTY_MODE:return"SET_TTY_MODE";
3033 case RIL_REQUEST_QUERY_TTY_MODE:return"QUERY_TTY_MODE";
3034 case RIL_REQUEST_CDMA_SET_PREFERRED_VOICE_PRIVACY_MODE:return"CDMA_SET_PREFERRED_VOICE_PRIVACY_MODE";
3035 case RIL_REQUEST_CDMA_QUERY_PREFERRED_VOICE_PRIVACY_MODE:return"CDMA_QUERY_PREFERRED_VOICE_PRIVACY_MODE";
3036 case RIL_REQUEST_CDMA_FLASH:return"CDMA_FLASH";
3037 case RIL_REQUEST_CDMA_BURST_DTMF:return"CDMA_BURST_DTMF";
3038 case RIL_REQUEST_CDMA_SEND_SMS:return"CDMA_SEND_SMS";
3039 case RIL_REQUEST_CDMA_SMS_ACKNOWLEDGE:return"CDMA_SMS_ACKNOWLEDGE";
3040 case RIL_REQUEST_GET_BROADCAST_CONFIG:return"GET_BROADCAST_CONFIG";
3041 case RIL_REQUEST_SET_BROADCAST_CONFIG:return"SET_BROADCAST_CONFIG";
3042 case RIL_REQUEST_CDMA_GET_BROADCAST_CONFIG:return "CDMA_GET_BROADCAST_CONFIG";
3043 case RIL_REQUEST_CDMA_SET_BROADCAST_CONFIG:return "SET_CDMA_BROADCAST_CONFIG";
3044 case RIL_REQUEST_BROADCAST_ACTIVATION:return "BROADCAST_ACTIVATION";
3045 case RIL_REQUEST_CDMA_VALIDATE_AKEY: return"CDMA_VALIDATE_AKEY";
3046 case RIL_REQUEST_CDMA_SUBSCRIPTION: return"CDMA_SUBSCRIPTION";
3047 case RIL_REQUEST_CDMA_WRITE_SMS_TO_RUIM: return "CDMA_WRITE_SMS_TO_RUIM";
3048 case RIL_REQUEST_CDMA_DELETE_SMS_ON_RUIM: return "CDMA_DELETE_SMS_ON_RUIM";
3049 case RIL_REQUEST_DEVICE_IDENTITY: return "DEVICE_IDENTITY";
jsh000a9fe2009-05-11 14:52:35 -07003050 case RIL_REQUEST_EXIT_EMERGENCY_CALLBACK_MODE: return "EXIT_EMERGENCY_CALLBACK_MODE";
3051 case RIL_REQUEST_GET_SMSC_ADDRESS: return "GET_SMSC_ADDRESS";
3052 case RIL_REQUEST_SET_SMSC_ADDRESS: return "SET_SMSC_ADDRESS";
The Android Open Source Project00f06fc2009-03-03 19:32:15 -08003053 case RIL_UNSOL_RESPONSE_RADIO_STATE_CHANGED: return "UNSOL_RESPONSE_RADIO_STATE_CHANGED";
3054 case RIL_UNSOL_RESPONSE_CALL_STATE_CHANGED: return "UNSOL_RESPONSE_CALL_STATE_CHANGED";
3055 case RIL_UNSOL_RESPONSE_NETWORK_STATE_CHANGED: return "UNSOL_RESPONSE_NETWORK_STATE_CHANGED";
3056 case RIL_UNSOL_RESPONSE_NEW_SMS: return "UNSOL_RESPONSE_NEW_SMS";
3057 case RIL_UNSOL_RESPONSE_NEW_SMS_STATUS_REPORT: return "UNSOL_RESPONSE_NEW_SMS_STATUS_REPORT";
3058 case RIL_UNSOL_RESPONSE_NEW_SMS_ON_SIM: return "UNSOL_RESPONSE_NEW_SMS_ON_SIM";
3059 case RIL_UNSOL_ON_USSD: return "UNSOL_ON_USSD";
3060 case RIL_UNSOL_ON_USSD_REQUEST: return "UNSOL_ON_USSD_REQUEST(obsolete)";
3061 case RIL_UNSOL_NITZ_TIME_RECEIVED: return "UNSOL_NITZ_TIME_RECEIVED";
3062 case RIL_UNSOL_SIGNAL_STRENGTH: return "UNSOL_SIGNAL_STRENGTH";
3063 case RIL_UNSOL_STK_SESSION_END: return "UNSOL_STK_SESSION_END";
3064 case RIL_UNSOL_STK_PROACTIVE_COMMAND: return "UNSOL_STK_PROACTIVE_COMMAND";
3065 case RIL_UNSOL_STK_EVENT_NOTIFY: return "UNSOL_STK_EVENT_NOTIFY";
3066 case RIL_UNSOL_STK_CALL_SETUP: return "UNSOL_STK_CALL_SETUP";
3067 case RIL_UNSOL_SIM_SMS_STORAGE_FULL: return "UNSOL_SIM_SMS_STORAGE_FUL";
3068 case RIL_UNSOL_SIM_REFRESH: return "UNSOL_SIM_REFRESH";
Wink Savillef4c4d362009-04-02 01:37:03 -07003069 case RIL_UNSOL_DATA_CALL_LIST_CHANGED: return "UNSOL_DATA_CALL_LIST_CHANGED";
The Android Open Source Project00f06fc2009-03-03 19:32:15 -08003070 case RIL_UNSOL_CALL_RING: return "UNSOL_CALL_RING";
Wink Savillef4c4d362009-04-02 01:37:03 -07003071 case RIL_UNSOL_RESPONSE_SIM_STATUS_CHANGED: return "UNSOL_RESPONSE_SIM_STATUS_CHANGED";
3072 case RIL_UNSOL_RESPONSE_CDMA_NEW_SMS: return "UNSOL_NEW_CDMA_SMS";
3073 case RIL_UNSOL_RESPONSE_NEW_BROADCAST_SMS: return "UNSOL_NEW_BROADCAST_SMS";
3074 case RIL_UNSOL_CDMA_RUIM_SMS_STORAGE_FULL: return "UNSOL_CDMA_RUIM_SMS_STORAGE_FULL";
Wink Saville3d54e742009-05-18 18:00:44 -07003075 case RIL_UNSOL_RESTRICTED_STATE_CHANGED: return "UNSOL_RESTRICTED_STATE_CHANGED";
3076 case RIL_UNSOL_ENTER_EMERGENCY_CALLBACK_MODE: return "UNSOL_ENTER_EMERGENCY_CALLBACK_MODE";
3077 case RIL_UNSOL_CDMA_CALL_WAITING: return "UNSOL_CDMA_CALL_WAITING";
3078 case RIL_UNSOL_CDMA_OTA_PROVISION_STATUS: return "UNSOL_CDMA_OTA_PROVISION_STATUS";
3079 case RIL_UNSOL_CDMA_INFO_REC: return "UNSOL_CDMA_INFO_REC";
Jaikumar Ganeshaf6ecbf2009-04-29 13:27:51 -07003080 case RIL_UNSOL_OEM_HOOK_RAW: return "UNSOL_OEM_HOOK_RAW";
The Android Open Source Project00f06fc2009-03-03 19:32:15 -08003081 default: return "<unknown request>";
3082 }
3083}
3084
3085} /* namespace android */