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The Android Open Source Project7c1b96a2008-10-21 07:00:00 -07001/*
2 * Copyright (C) 2005 The Android Open Source Project
3 *
4 * Licensed under the Apache License, Version 2.0 (the "License");
5 * you may not use this file except in compliance with the License.
6 * You may obtain a copy of the License at
7 *
8 * http://www.apache.org/licenses/LICENSE-2.0
9 *
10 * Unless required by applicable law or agreed to in writing, software
11 * distributed under the License is distributed on an "AS IS" BASIS,
12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13 * See the License for the specific language governing permissions and
14 * limitations under the License.
15 */
16
17#define LOG_TAG "Parcel"
18//#define LOG_NDEBUG 0
19
20#include <utils/Parcel.h>
21
22#include <utils/Binder.h>
23#include <utils/BpBinder.h>
24#include <utils/Debug.h>
25#include <utils/ProcessState.h>
26#include <utils/Log.h>
27#include <utils/String8.h>
28#include <utils/String16.h>
29#include <utils/TextOutput.h>
30#include <utils/misc.h>
31
32#include <private/utils/binder_module.h>
33
34#include <stdio.h>
35#include <stdlib.h>
36#include <stdint.h>
37
38#ifndef INT32_MAX
39#define INT32_MAX ((int32_t)(2147483647))
40#endif
41
42#define LOG_REFS(...)
43//#define LOG_REFS(...) LOG(LOG_DEBUG, "Parcel", __VA_ARGS__)
44
45// ---------------------------------------------------------------------------
46
47#define PAD_SIZE(s) (((s)+3)&~3)
48
49// XXX This can be made public if we want to provide
50// support for typed data.
51struct small_flat_data
52{
53 uint32_t type;
54 uint32_t data;
55};
56
57namespace android {
58
59void acquire_object(const sp<ProcessState>& proc,
60 const flat_binder_object& obj, const void* who)
61{
62 switch (obj.type) {
63 case BINDER_TYPE_BINDER:
64 if (obj.binder) {
65 LOG_REFS("Parcel %p acquiring reference on local %p", who, obj.cookie);
66 static_cast<IBinder*>(obj.cookie)->incStrong(who);
67 }
68 return;
69 case BINDER_TYPE_WEAK_BINDER:
70 if (obj.binder)
71 static_cast<RefBase::weakref_type*>(obj.binder)->incWeak(who);
72 return;
73 case BINDER_TYPE_HANDLE: {
74 const sp<IBinder> b = proc->getStrongProxyForHandle(obj.handle);
75 if (b != NULL) {
76 LOG_REFS("Parcel %p acquiring reference on remote %p", who, b.get());
77 b->incStrong(who);
78 }
79 return;
80 }
81 case BINDER_TYPE_WEAK_HANDLE: {
82 const wp<IBinder> b = proc->getWeakProxyForHandle(obj.handle);
83 if (b != NULL) b.get_refs()->incWeak(who);
84 return;
85 }
86 case BINDER_TYPE_FD: {
87 // intentionally blank -- nothing to do to acquire this, but we do
88 // recognize it as a legitimate object type.
89 return;
90 }
91 }
92
93 LOGD("Invalid object type 0x%08lx", obj.type);
94}
95
96void release_object(const sp<ProcessState>& proc,
97 const flat_binder_object& obj, const void* who)
98{
99 switch (obj.type) {
100 case BINDER_TYPE_BINDER:
101 if (obj.binder) {
102 LOG_REFS("Parcel %p releasing reference on local %p", who, obj.cookie);
103 static_cast<IBinder*>(obj.cookie)->decStrong(who);
104 }
105 return;
106 case BINDER_TYPE_WEAK_BINDER:
107 if (obj.binder)
108 static_cast<RefBase::weakref_type*>(obj.binder)->decWeak(who);
109 return;
110 case BINDER_TYPE_HANDLE: {
111 const sp<IBinder> b = proc->getStrongProxyForHandle(obj.handle);
112 if (b != NULL) {
113 LOG_REFS("Parcel %p releasing reference on remote %p", who, b.get());
114 b->decStrong(who);
115 }
116 return;
117 }
118 case BINDER_TYPE_WEAK_HANDLE: {
119 const wp<IBinder> b = proc->getWeakProxyForHandle(obj.handle);
120 if (b != NULL) b.get_refs()->decWeak(who);
121 return;
122 }
123 case BINDER_TYPE_FD: {
124 if (obj.cookie != (void*)0) close(obj.handle);
125 return;
126 }
127 }
128
129 LOGE("Invalid object type 0x%08lx", obj.type);
130}
131
132inline static status_t finish_flatten_binder(
133 const sp<IBinder>& binder, const flat_binder_object& flat, Parcel* out)
134{
135 return out->writeObject(flat, false);
136}
137
138status_t flatten_binder(const sp<ProcessState>& proc,
139 const sp<IBinder>& binder, Parcel* out)
140{
141 flat_binder_object obj;
142
143 obj.flags = 0x7f | FLAT_BINDER_FLAG_ACCEPTS_FDS;
144 if (binder != NULL) {
145 IBinder *local = binder->localBinder();
146 if (!local) {
147 BpBinder *proxy = binder->remoteBinder();
148 if (proxy == NULL) {
149 LOGE("null proxy");
150 }
151 const int32_t handle = proxy ? proxy->handle() : 0;
152 obj.type = BINDER_TYPE_HANDLE;
153 obj.handle = handle;
154 obj.cookie = NULL;
155 } else {
156 obj.type = BINDER_TYPE_BINDER;
157 obj.binder = local->getWeakRefs();
158 obj.cookie = local;
159 }
160 } else {
161 obj.type = BINDER_TYPE_BINDER;
162 obj.binder = NULL;
163 obj.cookie = NULL;
164 }
165
166 return finish_flatten_binder(binder, obj, out);
167}
168
169status_t flatten_binder(const sp<ProcessState>& proc,
170 const wp<IBinder>& binder, Parcel* out)
171{
172 flat_binder_object obj;
173
174 obj.flags = 0x7f | FLAT_BINDER_FLAG_ACCEPTS_FDS;
175 if (binder != NULL) {
176 sp<IBinder> real = binder.promote();
177 if (real != NULL) {
178 IBinder *local = real->localBinder();
179 if (!local) {
180 BpBinder *proxy = real->remoteBinder();
181 if (proxy == NULL) {
182 LOGE("null proxy");
183 }
184 const int32_t handle = proxy ? proxy->handle() : 0;
185 obj.type = BINDER_TYPE_WEAK_HANDLE;
186 obj.handle = handle;
187 obj.cookie = NULL;
188 } else {
189 obj.type = BINDER_TYPE_WEAK_BINDER;
190 obj.binder = binder.get_refs();
191 obj.cookie = binder.unsafe_get();
192 }
193 return finish_flatten_binder(real, obj, out);
194 }
195
196 // XXX How to deal? In order to flatten the given binder,
197 // we need to probe it for information, which requires a primary
198 // reference... but we don't have one.
199 //
200 // The OpenBinder implementation uses a dynamic_cast<> here,
201 // but we can't do that with the different reference counting
202 // implementation we are using.
203 LOGE("Unable to unflatten Binder weak reference!");
204 obj.type = BINDER_TYPE_BINDER;
205 obj.binder = NULL;
206 obj.cookie = NULL;
207 return finish_flatten_binder(NULL, obj, out);
208
209 } else {
210 obj.type = BINDER_TYPE_BINDER;
211 obj.binder = NULL;
212 obj.cookie = NULL;
213 return finish_flatten_binder(NULL, obj, out);
214 }
215}
216
217inline static status_t finish_unflatten_binder(
218 BpBinder* proxy, const flat_binder_object& flat, const Parcel& in)
219{
220 return NO_ERROR;
221}
222
223status_t unflatten_binder(const sp<ProcessState>& proc,
224 const Parcel& in, sp<IBinder>* out)
225{
226 const flat_binder_object* flat = in.readObject(false);
227
228 if (flat) {
229 switch (flat->type) {
230 case BINDER_TYPE_BINDER:
231 *out = static_cast<IBinder*>(flat->cookie);
232 return finish_unflatten_binder(NULL, *flat, in);
233 case BINDER_TYPE_HANDLE:
234 *out = proc->getStrongProxyForHandle(flat->handle);
235 return finish_unflatten_binder(
236 static_cast<BpBinder*>(out->get()), *flat, in);
237 }
238 }
239 return BAD_TYPE;
240}
241
242status_t unflatten_binder(const sp<ProcessState>& proc,
243 const Parcel& in, wp<IBinder>* out)
244{
245 const flat_binder_object* flat = in.readObject(false);
246
247 if (flat) {
248 switch (flat->type) {
249 case BINDER_TYPE_BINDER:
250 *out = static_cast<IBinder*>(flat->cookie);
251 return finish_unflatten_binder(NULL, *flat, in);
252 case BINDER_TYPE_WEAK_BINDER:
253 if (flat->binder != NULL) {
254 out->set_object_and_refs(
255 static_cast<IBinder*>(flat->cookie),
256 static_cast<RefBase::weakref_type*>(flat->binder));
257 } else {
258 *out = NULL;
259 }
260 return finish_unflatten_binder(NULL, *flat, in);
261 case BINDER_TYPE_HANDLE:
262 case BINDER_TYPE_WEAK_HANDLE:
263 *out = proc->getWeakProxyForHandle(flat->handle);
264 return finish_unflatten_binder(
265 static_cast<BpBinder*>(out->unsafe_get()), *flat, in);
266 }
267 }
268 return BAD_TYPE;
269}
270
271// ---------------------------------------------------------------------------
272
273Parcel::Parcel()
274{
275 initState();
276}
277
278Parcel::~Parcel()
279{
280 freeDataNoInit();
281}
282
283const uint8_t* Parcel::data() const
284{
285 return mData;
286}
287
288size_t Parcel::dataSize() const
289{
290 return (mDataSize > mDataPos ? mDataSize : mDataPos);
291}
292
293size_t Parcel::dataAvail() const
294{
295 // TODO: decide what to do about the possibility that this can
296 // report an available-data size that exceeds a Java int's max
297 // positive value, causing havoc. Fortunately this will only
298 // happen if someone constructs a Parcel containing more than two
299 // gigabytes of data, which on typical phone hardware is simply
300 // not possible.
301 return dataSize() - dataPosition();
302}
303
304size_t Parcel::dataPosition() const
305{
306 return mDataPos;
307}
308
309size_t Parcel::dataCapacity() const
310{
311 return mDataCapacity;
312}
313
314status_t Parcel::setDataSize(size_t size)
315{
316 status_t err;
317 err = continueWrite(size);
318 if (err == NO_ERROR) {
319 mDataSize = size;
320 LOGV("setDataSize Setting data size of %p to %d\n", this, mDataSize);
321 }
322 return err;
323}
324
325void Parcel::setDataPosition(size_t pos) const
326{
327 mDataPos = pos;
328 mNextObjectHint = 0;
329}
330
331status_t Parcel::setDataCapacity(size_t size)
332{
333 if (size > mDataSize) return continueWrite(size);
334 return NO_ERROR;
335}
336
337status_t Parcel::setData(const uint8_t* buffer, size_t len)
338{
339 status_t err = restartWrite(len);
340 if (err == NO_ERROR) {
341 memcpy(const_cast<uint8_t*>(data()), buffer, len);
342 mDataSize = len;
343 mFdsKnown = false;
344 }
345 return err;
346}
347
348status_t Parcel::appendFrom(Parcel *parcel, size_t offset, size_t len)
349{
350 const sp<ProcessState> proc(ProcessState::self());
351 status_t err;
352 uint8_t *data = parcel->mData;
353 size_t *objects = parcel->mObjects;
354 size_t size = parcel->mObjectsSize;
355 int startPos = mDataPos;
356 int firstIndex = -1, lastIndex = -2;
357
358 if (len == 0) {
359 return NO_ERROR;
360 }
361
362 // range checks against the source parcel size
363 if ((offset > parcel->mDataSize)
364 || (len > parcel->mDataSize)
365 || (offset + len > parcel->mDataSize)) {
366 return BAD_VALUE;
367 }
368
369 // Count objects in range
370 for (int i = 0; i < (int) size; i++) {
371 size_t off = objects[i];
372 if ((off >= offset) && (off < offset + len)) {
373 if (firstIndex == -1) {
374 firstIndex = i;
375 }
376 lastIndex = i;
377 }
378 }
379 int numObjects = lastIndex - firstIndex + 1;
380
381 // grow data
382 err = growData(len);
383 if (err != NO_ERROR) {
384 return err;
385 }
386
387 // append data
388 memcpy(mData + mDataPos, data + offset, len);
389 mDataPos += len;
390 mDataSize += len;
391
392 if (numObjects > 0) {
393 // grow objects
394 if (mObjectsCapacity < mObjectsSize + numObjects) {
395 int newSize = ((mObjectsSize + numObjects)*3)/2;
396 size_t *objects =
397 (size_t*)realloc(mObjects, newSize*sizeof(size_t));
398 if (objects == (size_t*)0) {
399 return NO_MEMORY;
400 }
401 mObjects = objects;
402 mObjectsCapacity = newSize;
403 }
404
405 // append and acquire objects
406 int idx = mObjectsSize;
407 for (int i = firstIndex; i <= lastIndex; i++) {
408 size_t off = objects[i] - offset + startPos;
409 mObjects[idx++] = off;
410 mObjectsSize++;
411
412 const flat_binder_object* flat
413 = reinterpret_cast<flat_binder_object*>(mData + off);
414 acquire_object(proc, *flat, this);
415
416 // take note if the object is a file descriptor
417 if (flat->type == BINDER_TYPE_FD) {
418 mHasFds = mFdsKnown = true;
419 }
420 }
421 }
422
423 return NO_ERROR;
424}
425
426bool Parcel::hasFileDescriptors() const
427{
428 if (!mFdsKnown) {
429 scanForFds();
430 }
431 return mHasFds;
432}
433
434status_t Parcel::writeInterfaceToken(const String16& interface)
435{
436 // currently the interface identification token is just its name as a string
437 return writeString16(interface);
438}
439
440bool Parcel::enforceInterface(const String16& interface) const
441{
442 String16 str = readString16();
443 if (str == interface) {
444 return true;
445 } else {
446 LOGW("**** enforceInterface() expected '%s' but read '%s'\n",
447 String8(interface).string(), String8(str).string());
448 return false;
449 }
450}
451
452const size_t* Parcel::objects() const
453{
454 return mObjects;
455}
456
457size_t Parcel::objectsCount() const
458{
459 return mObjectsSize;
460}
461
462status_t Parcel::errorCheck() const
463{
464 return mError;
465}
466
467void Parcel::setError(status_t err)
468{
469 mError = err;
470}
471
472status_t Parcel::finishWrite(size_t len)
473{
474 //printf("Finish write of %d\n", len);
475 mDataPos += len;
476 LOGV("finishWrite Setting data pos of %p to %d\n", this, mDataPos);
477 if (mDataPos > mDataSize) {
478 mDataSize = mDataPos;
479 LOGV("finishWrite Setting data size of %p to %d\n", this, mDataSize);
480 }
481 //printf("New pos=%d, size=%d\n", mDataPos, mDataSize);
482 return NO_ERROR;
483}
484
485status_t Parcel::writeUnpadded(const void* data, size_t len)
486{
487 size_t end = mDataPos + len;
488 if (end < mDataPos) {
489 // integer overflow
490 return BAD_VALUE;
491 }
492
493 if (end <= mDataCapacity) {
494restart_write:
495 memcpy(mData+mDataPos, data, len);
496 return finishWrite(len);
497 }
498
499 status_t err = growData(len);
500 if (err == NO_ERROR) goto restart_write;
501 return err;
502}
503
504status_t Parcel::write(const void* data, size_t len)
505{
506 void* const d = writeInplace(len);
507 if (d) {
508 memcpy(d, data, len);
509 return NO_ERROR;
510 }
511 return mError;
512}
513
514void* Parcel::writeInplace(size_t len)
515{
516 const size_t padded = PAD_SIZE(len);
517
518 // sanity check for integer overflow
519 if (mDataPos+padded < mDataPos) {
520 return NULL;
521 }
522
523 if ((mDataPos+padded) <= mDataCapacity) {
524restart_write:
525 //printf("Writing %ld bytes, padded to %ld\n", len, padded);
526 uint8_t* const data = mData+mDataPos;
527
528 // Need to pad at end?
529 if (padded != len) {
530#if BYTE_ORDER == BIG_ENDIAN
531 static const uint32_t mask[4] = {
532 0x00000000, 0xffffff00, 0xffff0000, 0xff000000
533 };
534#endif
535#if BYTE_ORDER == LITTLE_ENDIAN
536 static const uint32_t mask[4] = {
537 0x00000000, 0x00ffffff, 0x0000ffff, 0x000000ff
538 };
539#endif
540 //printf("Applying pad mask: %p to %p\n", (void*)mask[padded-len],
541 // *reinterpret_cast<void**>(data+padded-4));
542 *reinterpret_cast<uint32_t*>(data+padded-4) &= mask[padded-len];
543 }
544
545 finishWrite(padded);
546 return data;
547 }
548
549 status_t err = growData(padded);
550 if (err == NO_ERROR) goto restart_write;
551 return NULL;
552}
553
554status_t Parcel::writeInt32(int32_t val)
555{
556 if ((mDataPos+sizeof(val)) <= mDataCapacity) {
557restart_write:
558 *reinterpret_cast<int32_t*>(mData+mDataPos) = val;
559 return finishWrite(sizeof(val));
560 }
561
562 status_t err = growData(sizeof(val));
563 if (err == NO_ERROR) goto restart_write;
564 return err;
565}
566
567status_t Parcel::writeInt64(int64_t val)
568{
569 if ((mDataPos+sizeof(val)) <= mDataCapacity) {
570restart_write:
571 *reinterpret_cast<int64_t*>(mData+mDataPos) = val;
572 return finishWrite(sizeof(val));
573 }
574
575 status_t err = growData(sizeof(val));
576 if (err == NO_ERROR) goto restart_write;
577 return err;
578}
579
580status_t Parcel::writeFloat(float val)
581{
582 if ((mDataPos+sizeof(val)) <= mDataCapacity) {
583restart_write:
584 *reinterpret_cast<float*>(mData+mDataPos) = val;
585 return finishWrite(sizeof(val));
586 }
587
588 status_t err = growData(sizeof(val));
589 if (err == NO_ERROR) goto restart_write;
590 return err;
591}
592
593status_t Parcel::writeDouble(double val)
594{
595 if ((mDataPos+sizeof(val)) <= mDataCapacity) {
596restart_write:
597 *reinterpret_cast<double*>(mData+mDataPos) = val;
598 return finishWrite(sizeof(val));
599 }
600
601 status_t err = growData(sizeof(val));
602 if (err == NO_ERROR) goto restart_write;
603 return err;
604}
605
606status_t Parcel::writeCString(const char* str)
607{
608 return write(str, strlen(str)+1);
609}
610
611status_t Parcel::writeString8(const String8& str)
612{
613 status_t err = writeInt32(str.bytes());
614 if (err == NO_ERROR) {
615 err = write(str.string(), str.bytes()+1);
616 }
617 return err;
618}
619
620status_t Parcel::writeString16(const String16& str)
621{
622 return writeString16(str.string(), str.size());
623}
624
625status_t Parcel::writeString16(const char16_t* str, size_t len)
626{
627 if (str == NULL) return writeInt32(-1);
628
629 status_t err = writeInt32(len);
630 if (err == NO_ERROR) {
631 len *= sizeof(char16_t);
632 uint8_t* data = (uint8_t*)writeInplace(len+sizeof(char16_t));
633 if (data) {
634 memcpy(data, str, len);
635 *reinterpret_cast<char16_t*>(data+len) = 0;
636 return NO_ERROR;
637 }
638 err = mError;
639 }
640 return err;
641}
642
643status_t Parcel::writeStrongBinder(const sp<IBinder>& val)
644{
645 return flatten_binder(ProcessState::self(), val, this);
646}
647
648status_t Parcel::writeWeakBinder(const wp<IBinder>& val)
649{
650 return flatten_binder(ProcessState::self(), val, this);
651}
652
The Android Open Source Project5f78a482009-01-20 14:03:58 -0800653status_t Parcel::writeNativeHandle(const native_handle& handle)
654{
655 if (handle.version != sizeof(native_handle))
656 return BAD_TYPE;
657
658 status_t err;
659 err = writeInt32(handle.numFds);
660 if (err != NO_ERROR) return err;
661
662 err = writeInt32(handle.numInts);
663 if (err != NO_ERROR) return err;
664
665 for (int i=0 ; err==NO_ERROR && i<handle.numFds ; i++)
666 err = writeDupFileDescriptor(handle.data[i]);
667
668 err = write(handle.data + handle.numFds, sizeof(int)*handle.numInts);
669
670 return err;
671}
672
The Android Open Source Project7c1b96a2008-10-21 07:00:00 -0700673status_t Parcel::writeFileDescriptor(int fd)
674{
675 flat_binder_object obj;
676 obj.type = BINDER_TYPE_FD;
677 obj.flags = 0x7f | FLAT_BINDER_FLAG_ACCEPTS_FDS;
678 obj.handle = fd;
679 obj.cookie = (void*)0;
680 return writeObject(obj, true);
681}
682
683status_t Parcel::writeDupFileDescriptor(int fd)
684{
685 flat_binder_object obj;
686 obj.type = BINDER_TYPE_FD;
687 obj.flags = 0x7f | FLAT_BINDER_FLAG_ACCEPTS_FDS;
688 obj.handle = dup(fd);
689 obj.cookie = (void*)1;
690 return writeObject(obj, true);
691}
692
693status_t Parcel::writeObject(const flat_binder_object& val, bool nullMetaData)
694{
695 const bool enoughData = (mDataPos+sizeof(val)) <= mDataCapacity;
696 const bool enoughObjects = mObjectsSize < mObjectsCapacity;
697 if (enoughData && enoughObjects) {
698restart_write:
699 *reinterpret_cast<flat_binder_object*>(mData+mDataPos) = val;
700
701 // Need to write meta-data?
702 if (nullMetaData || val.binder != NULL) {
703 mObjects[mObjectsSize] = mDataPos;
704 acquire_object(ProcessState::self(), val, this);
705 mObjectsSize++;
706 }
707
708 // remember if it's a file descriptor
709 if (val.type == BINDER_TYPE_FD) {
710 mHasFds = mFdsKnown = true;
711 }
712
713 return finishWrite(sizeof(flat_binder_object));
714 }
715
716 if (!enoughData) {
717 const status_t err = growData(sizeof(val));
718 if (err != NO_ERROR) return err;
719 }
720 if (!enoughObjects) {
721 size_t newSize = ((mObjectsSize+2)*3)/2;
722 size_t* objects = (size_t*)realloc(mObjects, newSize*sizeof(size_t));
723 if (objects == NULL) return NO_MEMORY;
724 mObjects = objects;
725 mObjectsCapacity = newSize;
726 }
727
728 goto restart_write;
729}
730
731
732void Parcel::remove(size_t start, size_t amt)
733{
734 LOG_ALWAYS_FATAL("Parcel::remove() not yet implemented!");
735}
736
737status_t Parcel::read(void* outData, size_t len) const
738{
739 if ((mDataPos+PAD_SIZE(len)) >= mDataPos && (mDataPos+PAD_SIZE(len)) <= mDataSize) {
740 memcpy(outData, mData+mDataPos, len);
741 mDataPos += PAD_SIZE(len);
742 LOGV("read Setting data pos of %p to %d\n", this, mDataPos);
743 return NO_ERROR;
744 }
745 return NOT_ENOUGH_DATA;
746}
747
748const void* Parcel::readInplace(size_t len) const
749{
750 if ((mDataPos+PAD_SIZE(len)) >= mDataPos && (mDataPos+PAD_SIZE(len)) <= mDataSize) {
751 const void* data = mData+mDataPos;
752 mDataPos += PAD_SIZE(len);
753 LOGV("readInplace Setting data pos of %p to %d\n", this, mDataPos);
754 return data;
755 }
756 return NULL;
757}
758
759status_t Parcel::readInt32(int32_t *pArg) const
760{
761 if ((mDataPos+sizeof(int32_t)) <= mDataSize) {
762 const void* data = mData+mDataPos;
763 mDataPos += sizeof(int32_t);
764 *pArg = *reinterpret_cast<const int32_t*>(data);
765 return NO_ERROR;
766 } else {
767 return NOT_ENOUGH_DATA;
768 }
769}
770
771int32_t Parcel::readInt32() const
772{
773 if ((mDataPos+sizeof(int32_t)) <= mDataSize) {
774 const void* data = mData+mDataPos;
775 mDataPos += sizeof(int32_t);
776 LOGV("readInt32 Setting data pos of %p to %d\n", this, mDataPos);
777 return *reinterpret_cast<const int32_t*>(data);
778 }
779 return 0;
780}
781
782
783status_t Parcel::readInt64(int64_t *pArg) const
784{
785 if ((mDataPos+sizeof(int64_t)) <= mDataSize) {
786 const void* data = mData+mDataPos;
787 mDataPos += sizeof(int64_t);
788 *pArg = *reinterpret_cast<const int64_t*>(data);
789 LOGV("readInt64 Setting data pos of %p to %d\n", this, mDataPos);
790 return NO_ERROR;
791 } else {
792 return NOT_ENOUGH_DATA;
793 }
794}
795
796
797int64_t Parcel::readInt64() const
798{
799 if ((mDataPos+sizeof(int64_t)) <= mDataSize) {
800 const void* data = mData+mDataPos;
801 mDataPos += sizeof(int64_t);
802 LOGV("readInt64 Setting data pos of %p to %d\n", this, mDataPos);
803 return *reinterpret_cast<const int64_t*>(data);
804 }
805 return 0;
806}
807
808status_t Parcel::readFloat(float *pArg) const
809{
810 if ((mDataPos+sizeof(float)) <= mDataSize) {
811 const void* data = mData+mDataPos;
812 mDataPos += sizeof(float);
813 LOGV("readFloat Setting data pos of %p to %d\n", this, mDataPos);
814 *pArg = *reinterpret_cast<const float*>(data);
815 return NO_ERROR;
816 } else {
817 return NOT_ENOUGH_DATA;
818 }
819}
820
821
822float Parcel::readFloat() const
823{
824 if ((mDataPos+sizeof(float)) <= mDataSize) {
825 const void* data = mData+mDataPos;
826 mDataPos += sizeof(float);
827 LOGV("readFloat Setting data pos of %p to %d\n", this, mDataPos);
828 return *reinterpret_cast<const float*>(data);
829 }
830 return 0;
831}
832
833status_t Parcel::readDouble(double *pArg) const
834{
835 if ((mDataPos+sizeof(double)) <= mDataSize) {
836 const void* data = mData+mDataPos;
837 mDataPos += sizeof(double);
838 LOGV("readDouble Setting data pos of %p to %d\n", this, mDataPos);
839 *pArg = *reinterpret_cast<const double*>(data);
840 return NO_ERROR;
841 } else {
842 return NOT_ENOUGH_DATA;
843 }
844}
845
846
847double Parcel::readDouble() const
848{
849 if ((mDataPos+sizeof(double)) <= mDataSize) {
850 const void* data = mData+mDataPos;
851 mDataPos += sizeof(double);
852 LOGV("readDouble Setting data pos of %p to %d\n", this, mDataPos);
853 return *reinterpret_cast<const double*>(data);
854 }
855 return 0;
856}
857
858
859const char* Parcel::readCString() const
860{
861 const size_t avail = mDataSize-mDataPos;
862 if (avail > 0) {
863 const char* str = reinterpret_cast<const char*>(mData+mDataPos);
864 // is the string's trailing NUL within the parcel's valid bounds?
865 const char* eos = reinterpret_cast<const char*>(memchr(str, 0, avail));
866 if (eos) {
867 const size_t len = eos - str;
868 mDataPos += PAD_SIZE(len+1);
869 LOGV("readCString Setting data pos of %p to %d\n", this, mDataPos);
870 return str;
871 }
872 }
873 return NULL;
874}
875
876String8 Parcel::readString8() const
877{
878 int32_t size = readInt32();
879 // watch for potential int overflow adding 1 for trailing NUL
880 if (size > 0 && size < INT32_MAX) {
881 const char* str = (const char*)readInplace(size+1);
882 if (str) return String8(str, size);
883 }
884 return String8();
885}
886
887String16 Parcel::readString16() const
888{
889 size_t len;
890 const char16_t* str = readString16Inplace(&len);
891 if (str) return String16(str, len);
892 LOGE("Reading a NULL string not supported here.");
893 return String16();
894}
895
896const char16_t* Parcel::readString16Inplace(size_t* outLen) const
897{
898 int32_t size = readInt32();
899 // watch for potential int overflow from size+1
900 if (size >= 0 && size < INT32_MAX) {
901 *outLen = size;
902 const char16_t* str = (const char16_t*)readInplace((size+1)*sizeof(char16_t));
903 if (str != NULL) {
904 return str;
905 }
906 }
907 *outLen = 0;
908 return NULL;
909}
910
911sp<IBinder> Parcel::readStrongBinder() const
912{
913 sp<IBinder> val;
914 unflatten_binder(ProcessState::self(), *this, &val);
915 return val;
916}
917
918wp<IBinder> Parcel::readWeakBinder() const
919{
920 wp<IBinder> val;
921 unflatten_binder(ProcessState::self(), *this, &val);
922 return val;
923}
924
The Android Open Source Project5f78a482009-01-20 14:03:58 -0800925
926native_handle* Parcel::readNativeHandle(native_handle* (*alloc)(void*, int, int), void* cookie) const
927{
928 int numFds, numInts;
929 status_t err;
930 err = readInt32(&numFds);
931 if (err != NO_ERROR) return 0;
932 err = readInt32(&numInts);
933 if (err != NO_ERROR) return 0;
934
935 native_handle* h;
936 if (alloc == 0) {
937 size_t size = sizeof(native_handle) + sizeof(int)*(numFds + numInts);
938 h = (native_handle*)malloc(size);
939 h->version = sizeof(native_handle);
940 h->numFds = numFds;
941 h->numInts = numInts;
942 } else {
943 h = alloc(cookie, numFds, numInts);
944 if (h->version != sizeof(native_handle)) {
945 return 0;
946 }
947 }
The Android Open Source Project5f78a482009-01-20 14:03:58 -0800948 for (int i=0 ; err==NO_ERROR && i<numFds ; i++) {
Rebecca Schultz Zavin360211f2009-02-13 16:34:38 -0800949 h->data[i] = dup(readFileDescriptor());
The Android Open Source Project5f78a482009-01-20 14:03:58 -0800950 if (h->data[i] < 0) err = BAD_VALUE;
951 }
Rebecca Schultz Zavin360211f2009-02-13 16:34:38 -0800952
The Android Open Source Project5f78a482009-01-20 14:03:58 -0800953 err = read(h->data + numFds, sizeof(int)*numInts);
Rebecca Schultz Zavin360211f2009-02-13 16:34:38 -0800954
The Android Open Source Project5f78a482009-01-20 14:03:58 -0800955 if (err != NO_ERROR) {
956 if (alloc == 0) {
957 free(h);
958 }
959 h = 0;
960 }
961 return h;
962}
963
964
The Android Open Source Project7c1b96a2008-10-21 07:00:00 -0700965int Parcel::readFileDescriptor() const
966{
967 const flat_binder_object* flat = readObject(true);
968 if (flat) {
969 switch (flat->type) {
970 case BINDER_TYPE_FD:
971 //LOGI("Returning file descriptor %ld from parcel %p\n", flat->handle, this);
972 return flat->handle;
973 }
974 }
975 return BAD_TYPE;
976}
977
978const flat_binder_object* Parcel::readObject(bool nullMetaData) const
979{
980 const size_t DPOS = mDataPos;
981 if ((DPOS+sizeof(flat_binder_object)) <= mDataSize) {
982 const flat_binder_object* obj
983 = reinterpret_cast<const flat_binder_object*>(mData+DPOS);
984 mDataPos = DPOS + sizeof(flat_binder_object);
985 if (!nullMetaData && (obj->cookie == NULL && obj->binder == NULL)) {
The Android Open Source Project5f78a482009-01-20 14:03:58 -0800986 // When transferring a NULL object, we don't write it into
The Android Open Source Project7c1b96a2008-10-21 07:00:00 -0700987 // the object list, so we don't want to check for it when
988 // reading.
989 LOGV("readObject Setting data pos of %p to %d\n", this, mDataPos);
990 return obj;
991 }
992
993 // Ensure that this object is valid...
994 size_t* const OBJS = mObjects;
995 const size_t N = mObjectsSize;
996 size_t opos = mNextObjectHint;
997
998 if (N > 0) {
999 LOGV("Parcel %p looking for obj at %d, hint=%d\n",
1000 this, DPOS, opos);
1001
1002 // Start at the current hint position, looking for an object at
1003 // the current data position.
1004 if (opos < N) {
1005 while (opos < (N-1) && OBJS[opos] < DPOS) {
1006 opos++;
1007 }
1008 } else {
1009 opos = N-1;
1010 }
1011 if (OBJS[opos] == DPOS) {
1012 // Found it!
1013 LOGV("Parcel found obj %d at index %d with forward search",
1014 this, DPOS, opos);
1015 mNextObjectHint = opos+1;
1016 LOGV("readObject Setting data pos of %p to %d\n", this, mDataPos);
1017 return obj;
1018 }
1019
1020 // Look backwards for it...
1021 while (opos > 0 && OBJS[opos] > DPOS) {
1022 opos--;
1023 }
1024 if (OBJS[opos] == DPOS) {
1025 // Found it!
1026 LOGV("Parcel found obj %d at index %d with backward search",
1027 this, DPOS, opos);
1028 mNextObjectHint = opos+1;
1029 LOGV("readObject Setting data pos of %p to %d\n", this, mDataPos);
1030 return obj;
1031 }
1032 }
1033 LOGW("Attempt to read object from Parcel %p at offset %d that is not in the object list",
1034 this, DPOS);
1035 }
1036 return NULL;
1037}
1038
1039void Parcel::closeFileDescriptors()
1040{
1041 size_t i = mObjectsSize;
1042 if (i > 0) {
1043 //LOGI("Closing file descriptors for %d objects...", mObjectsSize);
1044 }
1045 while (i > 0) {
1046 i--;
1047 const flat_binder_object* flat
1048 = reinterpret_cast<flat_binder_object*>(mData+mObjects[i]);
1049 if (flat->type == BINDER_TYPE_FD) {
1050 //LOGI("Closing fd: %ld\n", flat->handle);
1051 close(flat->handle);
1052 }
1053 }
1054}
1055
1056const uint8_t* Parcel::ipcData() const
1057{
1058 return mData;
1059}
1060
1061size_t Parcel::ipcDataSize() const
1062{
1063 return (mDataSize > mDataPos ? mDataSize : mDataPos);
1064}
1065
1066const size_t* Parcel::ipcObjects() const
1067{
1068 return mObjects;
1069}
1070
1071size_t Parcel::ipcObjectsCount() const
1072{
1073 return mObjectsSize;
1074}
1075
1076void Parcel::ipcSetDataReference(const uint8_t* data, size_t dataSize,
1077 const size_t* objects, size_t objectsCount, release_func relFunc, void* relCookie)
1078{
1079 freeDataNoInit();
1080 mError = NO_ERROR;
1081 mData = const_cast<uint8_t*>(data);
1082 mDataSize = mDataCapacity = dataSize;
1083 //LOGI("setDataReference Setting data size of %p to %lu (pid=%d)\n", this, mDataSize, getpid());
1084 mDataPos = 0;
1085 LOGV("setDataReference Setting data pos of %p to %d\n", this, mDataPos);
1086 mObjects = const_cast<size_t*>(objects);
1087 mObjectsSize = mObjectsCapacity = objectsCount;
1088 mNextObjectHint = 0;
1089 mOwner = relFunc;
1090 mOwnerCookie = relCookie;
1091 scanForFds();
1092}
1093
1094void Parcel::print(TextOutput& to, uint32_t flags) const
1095{
1096 to << "Parcel(";
1097
1098 if (errorCheck() != NO_ERROR) {
1099 const status_t err = errorCheck();
1100 to << "Error: " << (void*)err << " \"" << strerror(-err) << "\"";
1101 } else if (dataSize() > 0) {
1102 const uint8_t* DATA = data();
1103 to << indent << HexDump(DATA, dataSize()) << dedent;
1104 const size_t* OBJS = objects();
1105 const size_t N = objectsCount();
1106 for (size_t i=0; i<N; i++) {
1107 const flat_binder_object* flat
1108 = reinterpret_cast<const flat_binder_object*>(DATA+OBJS[i]);
1109 to << endl << "Object #" << i << " @ " << (void*)OBJS[i] << ": "
1110 << TypeCode(flat->type & 0x7f7f7f00)
1111 << " = " << flat->binder;
1112 }
1113 } else {
1114 to << "NULL";
1115 }
1116
1117 to << ")";
1118}
1119
1120void Parcel::releaseObjects()
1121{
1122 const sp<ProcessState> proc(ProcessState::self());
1123 size_t i = mObjectsSize;
1124 uint8_t* const data = mData;
1125 size_t* const objects = mObjects;
1126 while (i > 0) {
1127 i--;
1128 const flat_binder_object* flat
1129 = reinterpret_cast<flat_binder_object*>(data+objects[i]);
1130 release_object(proc, *flat, this);
1131 }
1132}
1133
1134void Parcel::acquireObjects()
1135{
1136 const sp<ProcessState> proc(ProcessState::self());
1137 size_t i = mObjectsSize;
1138 uint8_t* const data = mData;
1139 size_t* const objects = mObjects;
1140 while (i > 0) {
1141 i--;
1142 const flat_binder_object* flat
1143 = reinterpret_cast<flat_binder_object*>(data+objects[i]);
1144 acquire_object(proc, *flat, this);
1145 }
1146}
1147
1148void Parcel::freeData()
1149{
1150 freeDataNoInit();
1151 initState();
1152}
1153
1154void Parcel::freeDataNoInit()
1155{
1156 if (mOwner) {
1157 //LOGI("Freeing data ref of %p (pid=%d)\n", this, getpid());
1158 mOwner(this, mData, mDataSize, mObjects, mObjectsSize, mOwnerCookie);
1159 } else {
1160 releaseObjects();
1161 if (mData) free(mData);
1162 if (mObjects) free(mObjects);
1163 }
1164}
1165
1166status_t Parcel::growData(size_t len)
1167{
1168 size_t newSize = ((mDataSize+len)*3)/2;
1169 return (newSize <= mDataSize)
1170 ? (status_t) NO_MEMORY
1171 : continueWrite(newSize);
1172}
1173
1174status_t Parcel::restartWrite(size_t desired)
1175{
1176 if (mOwner) {
1177 freeData();
1178 return continueWrite(desired);
1179 }
1180
1181 uint8_t* data = (uint8_t*)realloc(mData, desired);
1182 if (!data && desired > mDataCapacity) {
1183 mError = NO_MEMORY;
1184 return NO_MEMORY;
1185 }
1186
1187 releaseObjects();
1188
1189 if (data) {
1190 mData = data;
1191 mDataCapacity = desired;
1192 }
1193
1194 mDataSize = mDataPos = 0;
1195 LOGV("restartWrite Setting data size of %p to %d\n", this, mDataSize);
1196 LOGV("restartWrite Setting data pos of %p to %d\n", this, mDataPos);
1197
1198 free(mObjects);
1199 mObjects = NULL;
1200 mObjectsSize = mObjectsCapacity = 0;
1201 mNextObjectHint = 0;
1202 mHasFds = false;
1203 mFdsKnown = true;
1204
1205 return NO_ERROR;
1206}
1207
1208status_t Parcel::continueWrite(size_t desired)
1209{
1210 // If shrinking, first adjust for any objects that appear
1211 // after the new data size.
1212 size_t objectsSize = mObjectsSize;
1213 if (desired < mDataSize) {
1214 if (desired == 0) {
1215 objectsSize = 0;
1216 } else {
1217 while (objectsSize > 0) {
1218 if (mObjects[objectsSize-1] < desired)
1219 break;
1220 objectsSize--;
1221 }
1222 }
1223 }
1224
1225 if (mOwner) {
1226 // If the size is going to zero, just release the owner's data.
1227 if (desired == 0) {
1228 freeData();
1229 return NO_ERROR;
1230 }
1231
1232 // If there is a different owner, we need to take
1233 // posession.
1234 uint8_t* data = (uint8_t*)malloc(desired);
1235 if (!data) {
1236 mError = NO_MEMORY;
1237 return NO_MEMORY;
1238 }
1239 size_t* objects = NULL;
1240
1241 if (objectsSize) {
1242 objects = (size_t*)malloc(objectsSize*sizeof(size_t));
1243 if (!objects) {
1244 mError = NO_MEMORY;
1245 return NO_MEMORY;
1246 }
1247
1248 // Little hack to only acquire references on objects
1249 // we will be keeping.
1250 size_t oldObjectsSize = mObjectsSize;
1251 mObjectsSize = objectsSize;
1252 acquireObjects();
1253 mObjectsSize = oldObjectsSize;
1254 }
1255
1256 if (mData) {
1257 memcpy(data, mData, mDataSize < desired ? mDataSize : desired);
1258 }
1259 if (objects && mObjects) {
1260 memcpy(objects, mObjects, objectsSize*sizeof(size_t));
1261 }
1262 //LOGI("Freeing data ref of %p (pid=%d)\n", this, getpid());
1263 mOwner(this, mData, mDataSize, mObjects, mObjectsSize, mOwnerCookie);
1264 mOwner = NULL;
1265
1266 mData = data;
1267 mObjects = objects;
1268 mDataSize = (mDataSize < desired) ? mDataSize : desired;
1269 LOGV("continueWrite Setting data size of %p to %d\n", this, mDataSize);
1270 mDataCapacity = desired;
1271 mObjectsSize = mObjectsCapacity = objectsSize;
1272 mNextObjectHint = 0;
1273
1274 } else if (mData) {
1275 if (objectsSize < mObjectsSize) {
1276 // Need to release refs on any objects we are dropping.
1277 const sp<ProcessState> proc(ProcessState::self());
1278 for (size_t i=objectsSize; i<mObjectsSize; i++) {
1279 const flat_binder_object* flat
1280 = reinterpret_cast<flat_binder_object*>(mData+mObjects[i]);
1281 if (flat->type == BINDER_TYPE_FD) {
1282 // will need to rescan because we may have lopped off the only FDs
1283 mFdsKnown = false;
1284 }
1285 release_object(proc, *flat, this);
1286 }
1287 size_t* objects =
1288 (size_t*)realloc(mObjects, objectsSize*sizeof(size_t));
1289 if (objects) {
1290 mObjects = objects;
1291 }
1292 mObjectsSize = objectsSize;
1293 mNextObjectHint = 0;
1294 }
1295
1296 // We own the data, so we can just do a realloc().
1297 if (desired > mDataCapacity) {
1298 uint8_t* data = (uint8_t*)realloc(mData, desired);
1299 if (data) {
1300 mData = data;
1301 mDataCapacity = desired;
1302 } else if (desired > mDataCapacity) {
1303 mError = NO_MEMORY;
1304 return NO_MEMORY;
1305 }
1306 } else {
1307 mDataSize = desired;
1308 LOGV("continueWrite Setting data size of %p to %d\n", this, mDataSize);
1309 if (mDataPos > desired) {
1310 mDataPos = desired;
1311 LOGV("continueWrite Setting data pos of %p to %d\n", this, mDataPos);
1312 }
1313 }
1314
1315 } else {
1316 // This is the first data. Easy!
1317 uint8_t* data = (uint8_t*)malloc(desired);
1318 if (!data) {
1319 mError = NO_MEMORY;
1320 return NO_MEMORY;
1321 }
1322
1323 if(!(mDataCapacity == 0 && mObjects == NULL
1324 && mObjectsCapacity == 0)) {
1325 LOGE("continueWrite: %d/%p/%d/%d", mDataCapacity, mObjects, mObjectsCapacity, desired);
1326 }
1327
1328 mData = data;
1329 mDataSize = mDataPos = 0;
1330 LOGV("continueWrite Setting data size of %p to %d\n", this, mDataSize);
1331 LOGV("continueWrite Setting data pos of %p to %d\n", this, mDataPos);
1332 mDataCapacity = desired;
1333 }
1334
1335 return NO_ERROR;
1336}
1337
1338void Parcel::initState()
1339{
1340 mError = NO_ERROR;
1341 mData = 0;
1342 mDataSize = 0;
1343 mDataCapacity = 0;
1344 mDataPos = 0;
1345 LOGV("initState Setting data size of %p to %d\n", this, mDataSize);
1346 LOGV("initState Setting data pos of %p to %d\n", this, mDataPos);
1347 mObjects = NULL;
1348 mObjectsSize = 0;
1349 mObjectsCapacity = 0;
1350 mNextObjectHint = 0;
1351 mHasFds = false;
1352 mFdsKnown = true;
1353 mOwner = NULL;
1354}
1355
1356void Parcel::scanForFds() const
1357{
1358 bool hasFds = false;
1359 for (size_t i=0; i<mObjectsSize; i++) {
1360 const flat_binder_object* flat
1361 = reinterpret_cast<const flat_binder_object*>(mData + mObjects[i]);
1362 if (flat->type == BINDER_TYPE_FD) {
1363 hasFds = true;
1364 break;
1365 }
1366 }
1367 mHasFds = hasFds;
1368 mFdsKnown = true;
1369}
1370
1371}; // namespace android