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Martijn Coenen72110162016-08-19 14:28:25 +02001/*
2 * Copyright (C) 2016 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#ifndef ANDROID_HIDL_SUPPORT_H
18#define ANDROID_HIDL_SUPPORT_H
19
Iliyan Malchev692070a2016-09-12 16:30:44 -070020#include <algorithm>
Yifan Hong44ab6232016-11-22 16:28:24 -080021#include <array>
Scott Randolphbb840f72016-11-21 14:39:26 -080022#include <iterator>
Martijn Coenen4d1e9cc2016-11-18 15:20:18 +010023#include <cutils/native_handle.h>
Steven Moreland337c3ae2016-11-22 13:37:32 -080024#include <hidl/HidlInternal.h>
Yifan Honga3c31842016-10-21 10:33:14 -070025#include <hidl/Status.h>
Yifan Hong1e265bb2016-11-08 12:33:44 -080026#include <map>
Yifan Hongbe7a6882017-01-05 17:30:17 -080027#include <sstream>
Yifan Hong64fdf4d2016-12-09 16:22:45 -080028#include <stddef.h>
Andreas Huber00a985c2016-09-28 14:24:53 -070029#include <tuple>
Yifan Hong64fdf4d2016-12-09 16:22:45 -080030#include <type_traits>
Iliyan Malchev692070a2016-09-12 16:30:44 -070031#include <utils/Errors.h>
32#include <utils/RefBase.h>
33#include <utils/StrongPointer.h>
Yifan Hong7f97f442016-11-14 18:31:05 -080034#include <vector>
Martijn Coenen72110162016-08-19 14:28:25 +020035
36namespace android {
Martijn Coenen30791002016-12-01 15:40:46 +010037
Martijn Coenen9b8f9c32016-12-09 15:51:06 +010038// this file is included by all hidl interface, so we must forward declare the
39// IMemory and IBase types.
Martijn Coenen30791002016-12-01 15:40:46 +010040namespace hidl {
41namespace memory {
42namespace V1_0 {
Pirama Arumuga Nainared4c5d02018-04-10 15:46:23 -070043
44struct IMemory;
45
46} // namespace V1_0
47} // namespace memory
48} // namespace hidl
Martijn Coenen30791002016-12-01 15:40:46 +010049
Martijn Coenen9b8f9c32016-12-09 15:51:06 +010050namespace hidl {
51namespace base {
52namespace V1_0 {
Pirama Arumuga Nainared4c5d02018-04-10 15:46:23 -070053
54struct IBase;
55
56} // namespace V1_0
57} // namespace base
58} // namespace hidl
Martijn Coenen9b8f9c32016-12-09 15:51:06 +010059
Martijn Coenen72110162016-08-19 14:28:25 +020060namespace hardware {
61
Yifan Hong24332ef2017-03-07 16:22:19 -080062namespace details {
63// Return true on userdebug / eng builds and false on user builds.
64bool debuggable();
65} // namespace details
66
Martijn Coenen9b8f9c32016-12-09 15:51:06 +010067// hidl_death_recipient is a callback interfaced that can be used with
68// linkToDeath() / unlinkToDeath()
69struct hidl_death_recipient : public virtual RefBase {
70 virtual void serviceDied(uint64_t cookie,
71 const ::android::wp<::android::hidl::base::V1_0::IBase>& who) = 0;
72};
73
Martijn Coenen4d1e9cc2016-11-18 15:20:18 +010074// hidl_handle wraps a pointer to a native_handle_t in a hidl_pointer,
75// so that it can safely be transferred between 32-bit and 64-bit processes.
Martijn Coenen04b91c02017-01-19 14:14:21 +010076// The ownership semantics for this are:
77// 1) The conversion constructor and assignment operator taking a const native_handle_t*
78// do not take ownership of the handle; this is because these operations are usually
79// just done for IPC, and cloning by default is a waste of resources. If you want
80// a hidl_handle to take ownership, call setTo(handle, true /*shouldOwn*/);
81// 2) The copy constructor/assignment operator taking a hidl_handle *DO* take ownership;
82// that is because it's not intuitive that this class encapsulates a native_handle_t
83// which needs cloning to be valid; in particular, this allows constructs like this:
84// hidl_handle copy;
85// foo->someHidlCall([&](auto incoming_handle) {
86// copy = incoming_handle;
87// });
88// // copy and its enclosed file descriptors will remain valid here.
89// 3) The move constructor does what you would expect; it only owns the handle if the
90// original did.
Martijn Coenen4d1e9cc2016-11-18 15:20:18 +010091struct hidl_handle {
Martijn Coenen04b91c02017-01-19 14:14:21 +010092 hidl_handle();
93 ~hidl_handle();
Martijn Coenen4d1e9cc2016-11-18 15:20:18 +010094
Martijn Coenen04b91c02017-01-19 14:14:21 +010095 hidl_handle(const native_handle_t *handle);
Martijn Coenen4d1e9cc2016-11-18 15:20:18 +010096
Martijn Coenen04b91c02017-01-19 14:14:21 +010097 // copy constructor.
98 hidl_handle(const hidl_handle &other);
Martijn Coenen4d1e9cc2016-11-18 15:20:18 +010099
100 // move constructor.
Martijn Coenene8c36e12017-05-30 16:25:07 -0700101 hidl_handle(hidl_handle &&other) noexcept;
Martijn Coenen4d1e9cc2016-11-18 15:20:18 +0100102
Steven Moreland6ffdc2a2017-01-23 12:34:33 -0800103 // assignment operators
Martijn Coenen04b91c02017-01-19 14:14:21 +0100104 hidl_handle &operator=(const hidl_handle &other);
Martijn Coenen4d1e9cc2016-11-18 15:20:18 +0100105
Martijn Coenen04b91c02017-01-19 14:14:21 +0100106 hidl_handle &operator=(const native_handle_t *native_handle);
Martijn Coenen4d1e9cc2016-11-18 15:20:18 +0100107
Martijn Coenene8c36e12017-05-30 16:25:07 -0700108 hidl_handle &operator=(hidl_handle &&other) noexcept;
Martijn Coenen4d1e9cc2016-11-18 15:20:18 +0100109
Martijn Coenen04b91c02017-01-19 14:14:21 +0100110 void setTo(native_handle_t* handle, bool shouldOwn = false);
111
112 const native_handle_t* operator->() const;
113
Martijn Coenen4d1e9cc2016-11-18 15:20:18 +0100114 // implicit conversion to const native_handle_t*
Martijn Coenen04b91c02017-01-19 14:14:21 +0100115 operator const native_handle_t *() const;
116
Martijn Coenen4d1e9cc2016-11-18 15:20:18 +0100117 // explicit conversion
Martijn Coenen04b91c02017-01-19 14:14:21 +0100118 const native_handle_t *getNativeHandle() const;
Nirav Atre564a8d22018-07-26 18:29:12 -0700119
120 // offsetof(hidl_handle, mHandle) exposed since mHandle is private.
121 static const size_t kOffsetOfNativeHandle;
122
Martijn Coenen4d1e9cc2016-11-18 15:20:18 +0100123private:
Martijn Coenen04b91c02017-01-19 14:14:21 +0100124 void freeHandle();
125
Andreas Huber6688d602017-03-30 10:58:29 -0700126 details::hidl_pointer<const native_handle_t> mHandle __attribute__ ((aligned(8)));
127 bool mOwnsHandle __attribute ((aligned(8)));
Martijn Coenen4d1e9cc2016-11-18 15:20:18 +0100128};
129
Martijn Coenen72110162016-08-19 14:28:25 +0200130struct hidl_string {
131 hidl_string();
132 ~hidl_string();
133
Yifan Hong602b85a2016-10-24 13:40:01 -0700134 // copy constructor.
Martijn Coenen72110162016-08-19 14:28:25 +0200135 hidl_string(const hidl_string &);
Steven Morelanda21d84f2017-02-16 09:23:45 -0800136 // copy from a C-style string. nullptr will create an empty string
Steven Morelande03c0872016-10-24 10:43:50 -0700137 hidl_string(const char *);
Steven Moreland53120f72017-01-12 09:39:26 -0800138 // copy the first length characters from a C-style string.
139 hidl_string(const char *, size_t length);
Yifan Hong602b85a2016-10-24 13:40:01 -0700140 // copy from an std::string.
141 hidl_string(const std::string &);
142
143 // move constructor.
Martijn Coenene8c36e12017-05-30 16:25:07 -0700144 hidl_string(hidl_string &&) noexcept;
Martijn Coenen72110162016-08-19 14:28:25 +0200145
146 const char *c_str() const;
147 size_t size() const;
148 bool empty() const;
149
Yifan Hong602b85a2016-10-24 13:40:01 -0700150 // copy assignment operator.
Steven Morelande03c0872016-10-24 10:43:50 -0700151 hidl_string &operator=(const hidl_string &);
Yifan Hong602b85a2016-10-24 13:40:01 -0700152 // copy from a C-style string.
Martijn Coenen72110162016-08-19 14:28:25 +0200153 hidl_string &operator=(const char *s);
Yifan Hong602b85a2016-10-24 13:40:01 -0700154 // copy from an std::string.
155 hidl_string &operator=(const std::string &);
156 // move assignment operator.
Martijn Coenene8c36e12017-05-30 16:25:07 -0700157 hidl_string &operator=(hidl_string &&other) noexcept;
Yifan Hong602b85a2016-10-24 13:40:01 -0700158 // cast to std::string.
159 operator std::string() const;
Steven Morelande03c0872016-10-24 10:43:50 -0700160
Martijn Coenen72110162016-08-19 14:28:25 +0200161 void clear();
162
163 // Reference an external char array. Ownership is _not_ transferred.
164 // Caller is responsible for ensuring that underlying memory is valid
165 // for the lifetime of this hidl_string.
Steven Moreland57c6fcb2018-03-06 11:31:33 -0800166 //
167 // size == strlen(data)
Martijn Coenen72110162016-08-19 14:28:25 +0200168 void setToExternal(const char *data, size_t size);
169
Andreas Huberebfeb362016-08-25 13:39:05 -0700170 // offsetof(hidl_string, mBuffer) exposed since mBuffer is private.
171 static const size_t kOffsetOfBuffer;
172
Martijn Coenen72110162016-08-19 14:28:25 +0200173private:
Martijn Coenen4ca39a02016-11-11 15:58:51 +0100174 details::hidl_pointer<const char> mBuffer;
175 uint32_t mSize; // NOT including the terminating '\0'.
Yifan Hong602b85a2016-10-24 13:40:01 -0700176 bool mOwnsBuffer; // if true then mBuffer is a mutable char *
Martijn Coenen72110162016-08-19 14:28:25 +0200177
Yifan Hong602b85a2016-10-24 13:40:01 -0700178 // copy from data with size. Assume that my memory is freed
179 // (through clear(), for example)
180 void copyFrom(const char *data, size_t size);
181 // move from another hidl_string
182 void moveFrom(hidl_string &&);
Martijn Coenen72110162016-08-19 14:28:25 +0200183};
184
Chih-Hung Hsiehb30feca2017-08-01 15:40:48 -0700185// Use NOLINT to suppress missing parentheses warnings around OP.
Janis Danisevskis62a38df2017-11-22 13:47:33 -0800186#define HIDL_STRING_OPERATOR(OP) \
187 inline bool operator OP(const hidl_string& hs1, const hidl_string& hs2) { \
188 return strcmp(hs1.c_str(), hs2.c_str()) OP 0; /* NOLINT */ \
189 } \
190 inline bool operator OP(const hidl_string& hs, const char* s) { \
191 return strcmp(hs.c_str(), s) OP 0; /* NOLINT */ \
192 } \
193 inline bool operator OP(const char* s, const hidl_string& hs) { \
194 return strcmp(s, hs.c_str()) OP 0; /* NOLINT */ \
Steven Moreland551396a2017-02-13 18:33:20 -0800195 }
Scott Randolphbb840f72016-11-21 14:39:26 -0800196
Steven Moreland551396a2017-02-13 18:33:20 -0800197HIDL_STRING_OPERATOR(==)
198HIDL_STRING_OPERATOR(!=)
199HIDL_STRING_OPERATOR(<)
200HIDL_STRING_OPERATOR(<=)
201HIDL_STRING_OPERATOR(>)
202HIDL_STRING_OPERATOR(>=)
Scott Randolphbb840f72016-11-21 14:39:26 -0800203
Steven Moreland551396a2017-02-13 18:33:20 -0800204#undef HIDL_STRING_OPERATOR
Yifan Hong5708fb42016-10-26 17:50:29 -0700205
Scott Randolph0c84ab42017-04-03 14:07:14 -0700206// Send our content to the output stream
207std::ostream& operator<<(std::ostream& os, const hidl_string& str);
208
209
Martijn Coenen30791002016-12-01 15:40:46 +0100210// hidl_memory is a structure that can be used to transfer
211// pieces of shared memory between processes. The assumption
212// of this object is that the memory remains accessible as
213// long as the file descriptors in the enclosed mHandle
214// - as well as all of its cross-process dups() - remain opened.
215struct hidl_memory {
216
Martijn Coenen04b91c02017-01-19 14:14:21 +0100217 hidl_memory() : mHandle(nullptr), mSize(0), mName("") {
Martijn Coenen30791002016-12-01 15:40:46 +0100218 }
219
220 /**
Steven Moreland3f8c4162017-10-11 13:47:00 -0700221 * Creates a hidl_memory object whose handle has the same lifetime
222 * as the handle moved into it.
223 */
224 hidl_memory(const hidl_string& name, hidl_handle&& handle, size_t size)
225 : mHandle(std::move(handle)), mSize(size), mName(name) {}
226
227 /**
Martijn Coenen04b91c02017-01-19 14:14:21 +0100228 * Creates a hidl_memory object, but doesn't take ownership of
229 * the passed in native_handle_t; callers are responsible for
230 * making sure the handle remains valid while this object is
231 * used.
Martijn Coenen30791002016-12-01 15:40:46 +0100232 */
Martijn Coenen04b91c02017-01-19 14:14:21 +0100233 hidl_memory(const hidl_string &name, const native_handle_t *handle, size_t size)
234 : mHandle(handle),
Martijn Coenen30791002016-12-01 15:40:46 +0100235 mSize(size),
236 mName(name)
237 {}
238
239 // copy constructor
240 hidl_memory(const hidl_memory& other) {
241 *this = other;
242 }
243
244 // copy assignment
245 hidl_memory &operator=(const hidl_memory &other) {
246 if (this != &other) {
Martijn Coenen04b91c02017-01-19 14:14:21 +0100247 mHandle = other.mHandle;
Martijn Coenen30791002016-12-01 15:40:46 +0100248 mSize = other.mSize;
249 mName = other.mName;
250 }
251
252 return *this;
253 }
254
Hridya Valsaraju01268892017-02-27 08:48:38 -0800255 // move constructor
Martijn Coenene8c36e12017-05-30 16:25:07 -0700256 hidl_memory(hidl_memory&& other) noexcept {
Hridya Valsaraju01268892017-02-27 08:48:38 -0800257 *this = std::move(other);
258 }
259
260 // move assignment
Martijn Coenene8c36e12017-05-30 16:25:07 -0700261 hidl_memory &operator=(hidl_memory &&other) noexcept {
Hridya Valsaraju01268892017-02-27 08:48:38 -0800262 if (this != &other) {
263 mHandle = std::move(other.mHandle);
264 mSize = other.mSize;
265 mName = std::move(other.mName);
266 other.mSize = 0;
267 }
268
269 return *this;
270 }
271
Martijn Coenen30791002016-12-01 15:40:46 +0100272
273 ~hidl_memory() {
Martijn Coenen30791002016-12-01 15:40:46 +0100274 }
275
276 const native_handle_t* handle() const {
277 return mHandle;
278 }
279
280 const hidl_string &name() const {
281 return mName;
282 }
283
Hridya Valsaraju6d4acb12017-03-03 14:24:43 -0800284 uint64_t size() const {
Martijn Coenen30791002016-12-01 15:40:46 +0100285 return mSize;
286 }
287
Howard Chen9bc35c42017-10-13 14:21:46 +0800288 // @return true if it's valid
289 inline bool valid() const { return handle() != nullptr; }
290
Martijn Coenen30791002016-12-01 15:40:46 +0100291 // offsetof(hidl_memory, mHandle) exposed since mHandle is private.
292 static const size_t kOffsetOfHandle;
293 // offsetof(hidl_memory, mName) exposed since mHandle is private.
294 static const size_t kOffsetOfName;
Jeff Tinker0f3461d2017-01-03 10:40:55 -0800295
Martijn Coenen30791002016-12-01 15:40:46 +0100296private:
Hridya Valsaraju6d4acb12017-03-03 14:24:43 -0800297 hidl_handle mHandle __attribute__ ((aligned(8)));
298 uint64_t mSize __attribute__ ((aligned(8)));
299 hidl_string mName __attribute__ ((aligned(8)));
Martijn Coenen30791002016-12-01 15:40:46 +0100300};
301
Howard Chen9bc35c42017-10-13 14:21:46 +0800302// HidlMemory is a wrapper class to support sp<> for hidl_memory. It also
303// provides factory methods to create an instance from hidl_memory or
304// from a opened file descriptor. The number of factory methods can be increase
305// to support other type of hidl_memory without break the ABI.
306class HidlMemory : public virtual hidl_memory, public virtual ::android::RefBase {
307public:
Howard Chen8e42f5a2017-11-09 13:58:28 +0800308 static sp<HidlMemory> getInstance(const hidl_memory& mem);
309
Howard Chen9bc35c42017-10-13 14:21:46 +0800310 static sp<HidlMemory> getInstance(hidl_memory&& mem);
311
312 static sp<HidlMemory> getInstance(const hidl_string& name, hidl_handle&& handle, uint64_t size);
313 // @param fd, shall be opened and points to the resource.
314 // @note this method takes the ownership of the fd and will close it in
315 // destructor
Howard Chen8e42f5a2017-11-09 13:58:28 +0800316 // @return nullptr in failure with the fd closed
Howard Chen9bc35c42017-10-13 14:21:46 +0800317 static sp<HidlMemory> getInstance(const hidl_string& name, int fd, uint64_t size);
318
Howard Chen280af0a2017-10-20 13:58:36 +0800319 virtual ~HidlMemory();
Howard Chen8e42f5a2017-11-09 13:58:28 +0800320
Howard Chen9bc35c42017-10-13 14:21:46 +0800321protected:
Howard Chen8e42f5a2017-11-09 13:58:28 +0800322 HidlMemory();
323 HidlMemory(const hidl_string& name, hidl_handle&& handle, size_t size);
Howard Chen9bc35c42017-10-13 14:21:46 +0800324};
Andreas Huber20dce082016-09-22 19:39:13 -0700325////////////////////////////////////////////////////////////////////////////////
326
Martijn Coenen72110162016-08-19 14:28:25 +0200327template<typename T>
Hridya Valsarajub7370302017-03-08 14:39:23 -0800328struct hidl_vec {
Steven Moreland5cc16912019-04-18 12:54:56 -0700329 hidl_vec() {
Hridya Valsaraju6d4acb12017-03-03 14:24:43 -0800330 static_assert(hidl_vec<T>::kOffsetOfBuffer == 0, "wrong offset");
Steven Moreland5cc16912019-04-18 12:54:56 -0700331
332 memset(this, 0, sizeof(*this));
333 // mSize is 0
334 // mBuffer is nullptr
335
336 // this is for consistency with the original implementation
337 mOwnsBuffer = true;
Martijn Coenen72110162016-08-19 14:28:25 +0200338 }
339
Steven Morelandaa661fc2017-10-06 09:40:18 -0700340 // Note, does not initialize primitive types.
Eran Messeri6329c3e2019-02-26 11:34:32 +0000341 hidl_vec(size_t size) : hidl_vec() { resize(size); }
Steven Moreland96e9de02017-09-29 14:11:20 -0700342
Yifan Hong602b85a2016-10-24 13:40:01 -0700343 hidl_vec(const hidl_vec<T> &other) : hidl_vec() {
Martijn Coenen72110162016-08-19 14:28:25 +0200344 *this = other;
345 }
346
Steven Moreland5cc16912019-04-18 12:54:56 -0700347 hidl_vec(hidl_vec<T> &&other) noexcept : hidl_vec() {
Janis Danisevskisd3ddf622016-10-24 11:40:50 +0100348 *this = std::move(other);
Alexey Polyudov0ebdbe82016-10-18 09:31:46 -0700349 }
350
Siarhei Vishniakouc48d4f62019-02-08 12:48:04 -0800351 hidl_vec(const std::initializer_list<T> list) : hidl_vec() { *this = list; }
Steven Moreland9fbfe472016-11-14 16:49:17 -0800352
Yifan Hong602b85a2016-10-24 13:40:01 -0700353 hidl_vec(const std::vector<T> &other) : hidl_vec() {
354 *this = other;
355 }
356
Tomasz Wasilczyka9f60732017-06-30 10:53:22 -0700357 template <typename InputIterator,
358 typename = typename std::enable_if<std::is_convertible<
359 typename std::iterator_traits<InputIterator>::iterator_category,
360 std::input_iterator_tag>::value>::type>
Steven Moreland5cc16912019-04-18 12:54:56 -0700361 hidl_vec(InputIterator first, InputIterator last) : hidl_vec() {
Tomasz Wasilczyka9f60732017-06-30 10:53:22 -0700362 auto size = std::distance(first, last);
363 if (size > static_cast<int64_t>(UINT32_MAX)) {
364 details::logAlwaysFatal("hidl_vec can't hold more than 2^32 elements.");
365 }
366 if (size < 0) {
367 details::logAlwaysFatal("size can't be negative.");
368 }
369 mSize = static_cast<uint32_t>(size);
Steven Moreland97e2d172019-04-30 17:56:45 -0700370 mBuffer = new T[mSize]();
Steven Moreland5cc16912019-04-18 12:54:56 -0700371 mOwnsBuffer = true;
Tomasz Wasilczyka9f60732017-06-30 10:53:22 -0700372
373 size_t idx = 0;
374 for (; first != last; ++first) {
375 mBuffer[idx++] = static_cast<T>(*first);
376 }
377 }
378
Martijn Coenen72110162016-08-19 14:28:25 +0200379 ~hidl_vec() {
380 if (mOwnsBuffer) {
381 delete[] mBuffer;
382 }
Stephen Hinesfd9ecee2017-09-27 18:52:52 -0700383 mBuffer = nullptr;
Martijn Coenen72110162016-08-19 14:28:25 +0200384 }
385
Alexey Polyudove2299012016-10-19 09:52:00 -0700386 // Reference an existing array, optionally taking ownership. It is the
Martijn Coenen72110162016-08-19 14:28:25 +0200387 // caller's responsibility to ensure that the underlying memory stays
388 // valid for the lifetime of this hidl_vec.
Alexey Polyudove2299012016-10-19 09:52:00 -0700389 void setToExternal(T *data, size_t size, bool shouldOwn = false) {
Martijn Coenen72110162016-08-19 14:28:25 +0200390 if (mOwnsBuffer) {
391 delete [] mBuffer;
392 }
393 mBuffer = data;
Martijn Coenen4ca39a02016-11-11 15:58:51 +0100394 if (size > UINT32_MAX) {
Hridya Valsarajub7370302017-03-08 14:39:23 -0800395 details::logAlwaysFatal("external vector size exceeds 2^32 elements.");
Martijn Coenen4ca39a02016-11-11 15:58:51 +0100396 }
397 mSize = static_cast<uint32_t>(size);
Alexey Polyudove2299012016-10-19 09:52:00 -0700398 mOwnsBuffer = shouldOwn;
Martijn Coenen72110162016-08-19 14:28:25 +0200399 }
400
Alexey Polyudov6f0c9a12016-10-18 09:37:35 -0700401 T *data() {
402 return mBuffer;
403 }
404
405 const T *data() const {
406 return mBuffer;
407 }
408
Alexey Polyudovc98a99c2016-10-18 09:43:56 -0700409 T *releaseData() {
410 if (!mOwnsBuffer && mSize > 0) {
411 resize(mSize);
412 }
413 mOwnsBuffer = false;
414 return mBuffer;
415 }
416
Martijn Coenene8c36e12017-05-30 16:25:07 -0700417 hidl_vec &operator=(hidl_vec &&other) noexcept {
Janis Danisevskisd3ddf622016-10-24 11:40:50 +0100418 if (mOwnsBuffer) {
419 delete[] mBuffer;
420 }
Alexey Polyudov0ebdbe82016-10-18 09:31:46 -0700421 mBuffer = other.mBuffer;
422 mSize = other.mSize;
423 mOwnsBuffer = other.mOwnsBuffer;
424 other.mOwnsBuffer = false;
425 return *this;
426 }
427
Martijn Coenen72110162016-08-19 14:28:25 +0200428 hidl_vec &operator=(const hidl_vec &other) {
429 if (this != &other) {
430 if (mOwnsBuffer) {
431 delete[] mBuffer;
432 }
Yifan Hong602b85a2016-10-24 13:40:01 -0700433 copyFrom(other, other.mSize);
Martijn Coenen72110162016-08-19 14:28:25 +0200434 }
435
436 return *this;
437 }
438
Yifan Hong602b85a2016-10-24 13:40:01 -0700439 // copy from an std::vector.
440 hidl_vec &operator=(const std::vector<T> &other) {
441 if (mOwnsBuffer) {
442 delete[] mBuffer;
443 }
444 copyFrom(other, other.size());
445 return *this;
446 }
447
Siarhei Vishniakouc48d4f62019-02-08 12:48:04 -0800448 hidl_vec& operator=(const std::initializer_list<T> list) {
449 if (list.size() > UINT32_MAX) {
450 details::logAlwaysFatal("hidl_vec can't hold more than 2^32 elements.");
451 }
452 if (mOwnsBuffer) {
453 delete[] mBuffer;
454 }
455 mSize = static_cast<uint32_t>(list.size());
Steven Moreland97e2d172019-04-30 17:56:45 -0700456 mBuffer = new T[mSize]();
Siarhei Vishniakouc48d4f62019-02-08 12:48:04 -0800457 mOwnsBuffer = true;
458
459 size_t idx = 0;
460 for (auto it = list.begin(); it != list.end(); ++it) {
461 mBuffer[idx++] = *it;
462 }
463 return *this;
464 }
465
Yifan Hong602b85a2016-10-24 13:40:01 -0700466 // cast to an std::vector.
467 operator std::vector<T>() const {
468 std::vector<T> v(mSize);
469 for (size_t i = 0; i < mSize; ++i) {
470 v[i] = mBuffer[i];
471 }
472 return v;
473 }
474
Yifan Hong9fcbb362016-12-20 16:46:41 -0800475 // equality check, assuming that T::operator== is defined.
476 bool operator==(const hidl_vec &other) const {
477 if (mSize != other.size()) {
478 return false;
479 }
480 for (size_t i = 0; i < mSize; ++i) {
481 if (!(mBuffer[i] == other.mBuffer[i])) {
482 return false;
483 }
484 }
485 return true;
486 }
487
488 // inequality check, assuming that T::operator== is defined.
489 inline bool operator!=(const hidl_vec &other) const {
490 return !((*this) == other);
491 }
492
Martijn Coenen72110162016-08-19 14:28:25 +0200493 size_t size() const {
494 return mSize;
495 }
496
497 T &operator[](size_t index) {
498 return mBuffer[index];
499 }
500
501 const T &operator[](size_t index) const {
502 return mBuffer[index];
503 }
504
Steven Morelandaa661fc2017-10-06 09:40:18 -0700505 // Does not initialize primitive types if new size > old size.
Martijn Coenen72110162016-08-19 14:28:25 +0200506 void resize(size_t size) {
Martijn Coenen4ca39a02016-11-11 15:58:51 +0100507 if (size > UINT32_MAX) {
Hridya Valsarajub7370302017-03-08 14:39:23 -0800508 details::logAlwaysFatal("hidl_vec can't hold more than 2^32 elements.");
Martijn Coenen4ca39a02016-11-11 15:58:51 +0100509 }
Steven Moreland97e2d172019-04-30 17:56:45 -0700510 T* newBuffer = new T[size]();
Martijn Coenen72110162016-08-19 14:28:25 +0200511
Martijn Coenen4ca39a02016-11-11 15:58:51 +0100512 for (size_t i = 0; i < std::min(static_cast<uint32_t>(size), mSize); ++i) {
Martijn Coenen72110162016-08-19 14:28:25 +0200513 newBuffer[i] = mBuffer[i];
514 }
515
516 if (mOwnsBuffer) {
517 delete[] mBuffer;
518 }
519 mBuffer = newBuffer;
520
Martijn Coenen4ca39a02016-11-11 15:58:51 +0100521 mSize = static_cast<uint32_t>(size);
Martijn Coenen72110162016-08-19 14:28:25 +0200522 mOwnsBuffer = true;
523 }
524
Yifan Hong089ae132016-11-11 11:32:52 -0800525 // offsetof(hidl_string, mBuffer) exposed since mBuffer is private.
526 static const size_t kOffsetOfBuffer;
Scott Randolphbb840f72016-11-21 14:39:26 -0800527
Yifan Hong64fdf4d2016-12-09 16:22:45 -0800528private:
Scott Randolphbb840f72016-11-21 14:39:26 -0800529 // Define std interator interface for walking the array contents
Yifan Hong64fdf4d2016-12-09 16:22:45 -0800530 template<bool is_const>
531 class iter : public std::iterator<
532 std::random_access_iterator_tag, /* Category */
533 T,
534 ptrdiff_t, /* Distance */
535 typename std::conditional<is_const, const T *, T *>::type /* Pointer */,
536 typename std::conditional<is_const, const T &, T &>::type /* Reference */>
Scott Randolphbb840f72016-11-21 14:39:26 -0800537 {
Yifan Hong64fdf4d2016-12-09 16:22:45 -0800538 using traits = std::iterator_traits<iter>;
539 using ptr_type = typename traits::pointer;
540 using ref_type = typename traits::reference;
541 using diff_type = typename traits::difference_type;
Scott Randolphbb840f72016-11-21 14:39:26 -0800542 public:
Yifan Hong64fdf4d2016-12-09 16:22:45 -0800543 iter(ptr_type ptr) : mPtr(ptr) { }
544 inline iter &operator++() { mPtr++; return *this; }
545 inline iter operator++(int) { iter i = *this; mPtr++; return i; }
546 inline iter &operator--() { mPtr--; return *this; }
547 inline iter operator--(int) { iter i = *this; mPtr--; return i; }
548 inline friend iter operator+(diff_type n, const iter &it) { return it.mPtr + n; }
549 inline iter operator+(diff_type n) const { return mPtr + n; }
550 inline iter operator-(diff_type n) const { return mPtr - n; }
551 inline diff_type operator-(const iter &other) const { return mPtr - other.mPtr; }
552 inline iter &operator+=(diff_type n) { mPtr += n; return *this; }
553 inline iter &operator-=(diff_type n) { mPtr -= n; return *this; }
554 inline ref_type operator*() const { return *mPtr; }
555 inline ptr_type operator->() const { return mPtr; }
556 inline bool operator==(const iter &rhs) const { return mPtr == rhs.mPtr; }
557 inline bool operator!=(const iter &rhs) const { return mPtr != rhs.mPtr; }
558 inline bool operator< (const iter &rhs) const { return mPtr < rhs.mPtr; }
559 inline bool operator> (const iter &rhs) const { return mPtr > rhs.mPtr; }
560 inline bool operator<=(const iter &rhs) const { return mPtr <= rhs.mPtr; }
561 inline bool operator>=(const iter &rhs) const { return mPtr >= rhs.mPtr; }
562 inline ref_type operator[](size_t n) const { return mPtr[n]; }
Scott Randolphbb840f72016-11-21 14:39:26 -0800563 private:
Yifan Hong64fdf4d2016-12-09 16:22:45 -0800564 ptr_type mPtr;
Scott Randolphbb840f72016-11-21 14:39:26 -0800565 };
Yifan Hong64fdf4d2016-12-09 16:22:45 -0800566public:
567 using iterator = iter<false /* is_const */>;
568 using const_iterator = iter<true /* is_const */>;
569
Scott Randolphbb840f72016-11-21 14:39:26 -0800570 iterator begin() { return data(); }
571 iterator end() { return data()+mSize; }
Yifan Hong64fdf4d2016-12-09 16:22:45 -0800572 const_iterator begin() const { return data(); }
573 const_iterator end() const { return data()+mSize; }
Scott Randolphbb840f72016-11-21 14:39:26 -0800574
Martijn Coenen72110162016-08-19 14:28:25 +0200575private:
Martijn Coenen4ca39a02016-11-11 15:58:51 +0100576 details::hidl_pointer<T> mBuffer;
577 uint32_t mSize;
Martijn Coenen72110162016-08-19 14:28:25 +0200578 bool mOwnsBuffer;
Yifan Hong602b85a2016-10-24 13:40:01 -0700579
580 // copy from an array-like object, assuming my resources are freed.
581 template <typename Array>
582 void copyFrom(const Array &data, size_t size) {
Chia-I Wu4b48edc2016-12-07 22:31:17 +0800583 mSize = static_cast<uint32_t>(size);
Yifan Hong602b85a2016-10-24 13:40:01 -0700584 mOwnsBuffer = true;
585 if (mSize > 0) {
Steven Moreland97e2d172019-04-30 17:56:45 -0700586 mBuffer = new T[size]();
Yifan Hong602b85a2016-10-24 13:40:01 -0700587 for (size_t i = 0; i < size; ++i) {
588 mBuffer[i] = data[i];
589 }
590 } else {
Stephen Hinesfd9ecee2017-09-27 18:52:52 -0700591 mBuffer = nullptr;
Yifan Hong602b85a2016-10-24 13:40:01 -0700592 }
593 }
Martijn Coenen72110162016-08-19 14:28:25 +0200594};
595
Yifan Hong089ae132016-11-11 11:32:52 -0800596template <typename T>
597const size_t hidl_vec<T>::kOffsetOfBuffer = offsetof(hidl_vec<T>, mBuffer);
598
Andreas Huber20dce082016-09-22 19:39:13 -0700599////////////////////////////////////////////////////////////////////////////////
600
601namespace details {
602
603 template<size_t SIZE1, size_t... SIZES>
604 struct product {
605 static constexpr size_t value = SIZE1 * product<SIZES...>::value;
606 };
607
608 template<size_t SIZE1>
609 struct product<SIZE1> {
610 static constexpr size_t value = SIZE1;
611 };
612
613 template<typename T, size_t SIZE1, size_t... SIZES>
Yifan Hong44ab6232016-11-22 16:28:24 -0800614 struct std_array {
615 using type = std::array<typename std_array<T, SIZES...>::type, SIZE1>;
616 };
617
618 template<typename T, size_t SIZE1>
619 struct std_array<T, SIZE1> {
620 using type = std::array<T, SIZE1>;
621 };
622
623 template<typename T, size_t SIZE1, size_t... SIZES>
Andreas Huber20dce082016-09-22 19:39:13 -0700624 struct accessor {
Yifan Hong44ab6232016-11-22 16:28:24 -0800625
626 using std_array_type = typename std_array<T, SIZE1, SIZES...>::type;
627
Andreas Huber20dce082016-09-22 19:39:13 -0700628 explicit accessor(T *base)
629 : mBase(base) {
630 }
631
632 accessor<T, SIZES...> operator[](size_t index) {
633 return accessor<T, SIZES...>(
634 &mBase[index * product<SIZES...>::value]);
635 }
636
Yifan Hong44ab6232016-11-22 16:28:24 -0800637 accessor &operator=(const std_array_type &other) {
638 for (size_t i = 0; i < SIZE1; ++i) {
639 (*this)[i] = other[i];
640 }
641 return *this;
642 }
643
Andreas Huber20dce082016-09-22 19:39:13 -0700644 private:
645 T *mBase;
646 };
647
648 template<typename T, size_t SIZE1>
649 struct accessor<T, SIZE1> {
Yifan Hong44ab6232016-11-22 16:28:24 -0800650
651 using std_array_type = typename std_array<T, SIZE1>::type;
652
Andreas Huber20dce082016-09-22 19:39:13 -0700653 explicit accessor(T *base)
654 : mBase(base) {
655 }
656
657 T &operator[](size_t index) {
658 return mBase[index];
659 }
660
Yifan Hong44ab6232016-11-22 16:28:24 -0800661 accessor &operator=(const std_array_type &other) {
662 for (size_t i = 0; i < SIZE1; ++i) {
663 (*this)[i] = other[i];
664 }
665 return *this;
666 }
667
Andreas Huber20dce082016-09-22 19:39:13 -0700668 private:
669 T *mBase;
670 };
671
672 template<typename T, size_t SIZE1, size_t... SIZES>
673 struct const_accessor {
Yifan Hong44ab6232016-11-22 16:28:24 -0800674
675 using std_array_type = typename std_array<T, SIZE1, SIZES...>::type;
676
Andreas Huber20dce082016-09-22 19:39:13 -0700677 explicit const_accessor(const T *base)
678 : mBase(base) {
679 }
680
Yifan Hongbe7a6882017-01-05 17:30:17 -0800681 const_accessor<T, SIZES...> operator[](size_t index) const {
Andreas Huber20dce082016-09-22 19:39:13 -0700682 return const_accessor<T, SIZES...>(
683 &mBase[index * product<SIZES...>::value]);
684 }
685
Yifan Hong44ab6232016-11-22 16:28:24 -0800686 operator std_array_type() {
687 std_array_type array;
688 for (size_t i = 0; i < SIZE1; ++i) {
689 array[i] = (*this)[i];
690 }
691 return array;
692 }
693
Andreas Huber20dce082016-09-22 19:39:13 -0700694 private:
695 const T *mBase;
696 };
697
698 template<typename T, size_t SIZE1>
699 struct const_accessor<T, SIZE1> {
Yifan Hong44ab6232016-11-22 16:28:24 -0800700
701 using std_array_type = typename std_array<T, SIZE1>::type;
702
Andreas Huber20dce082016-09-22 19:39:13 -0700703 explicit const_accessor(const T *base)
704 : mBase(base) {
705 }
706
707 const T &operator[](size_t index) const {
708 return mBase[index];
709 }
710
Yifan Hong44ab6232016-11-22 16:28:24 -0800711 operator std_array_type() {
712 std_array_type array;
713 for (size_t i = 0; i < SIZE1; ++i) {
714 array[i] = (*this)[i];
715 }
716 return array;
717 }
718
Andreas Huber20dce082016-09-22 19:39:13 -0700719 private:
720 const T *mBase;
721 };
722
723} // namespace details
724
725////////////////////////////////////////////////////////////////////////////////
726
Yifan Hong44ab6232016-11-22 16:28:24 -0800727// A multidimensional array of T's. Assumes that T::operator=(const T &) is defined.
Andreas Huber20dce082016-09-22 19:39:13 -0700728template<typename T, size_t SIZE1, size_t... SIZES>
729struct hidl_array {
Yifan Hong44ab6232016-11-22 16:28:24 -0800730
731 using std_array_type = typename details::std_array<T, SIZE1, SIZES...>::type;
732
Andreas Huber20dce082016-09-22 19:39:13 -0700733 hidl_array() = default;
734
Yifan Hong44ab6232016-11-22 16:28:24 -0800735 // Copies the data from source, using T::operator=(const T &).
736 hidl_array(const T *source) {
737 for (size_t i = 0; i < elementCount(); ++i) {
738 mBuffer[i] = source[i];
739 }
740 }
741
742 // Copies the data from the given std::array, using T::operator=(const T &).
743 hidl_array(const std_array_type &array) {
744 details::accessor<T, SIZE1, SIZES...> modifier(mBuffer);
745 modifier = array;
746 }
747
Andreas Huber20dce082016-09-22 19:39:13 -0700748 T *data() { return mBuffer; }
749 const T *data() const { return mBuffer; }
750
751 details::accessor<T, SIZES...> operator[](size_t index) {
752 return details::accessor<T, SIZES...>(
753 &mBuffer[index * details::product<SIZES...>::value]);
754 }
755
756 details::const_accessor<T, SIZES...> operator[](size_t index) const {
757 return details::const_accessor<T, SIZES...>(
758 &mBuffer[index * details::product<SIZES...>::value]);
759 }
760
Yifan Hong9fcbb362016-12-20 16:46:41 -0800761 // equality check, assuming that T::operator== is defined.
762 bool operator==(const hidl_array &other) const {
763 for (size_t i = 0; i < elementCount(); ++i) {
764 if (!(mBuffer[i] == other.mBuffer[i])) {
765 return false;
766 }
767 }
768 return true;
769 }
770
771 inline bool operator!=(const hidl_array &other) const {
772 return !((*this) == other);
773 }
774
Andreas Huber00a985c2016-09-28 14:24:53 -0700775 using size_tuple_type = std::tuple<decltype(SIZE1), decltype(SIZES)...>;
776
777 static constexpr size_tuple_type size() {
778 return std::make_tuple(SIZE1, SIZES...);
779 }
780
Yifan Hong44ab6232016-11-22 16:28:24 -0800781 static constexpr size_t elementCount() {
782 return details::product<SIZE1, SIZES...>::value;
783 }
784
785 operator std_array_type() const {
786 return details::const_accessor<T, SIZE1, SIZES...>(mBuffer);
787 }
788
Andreas Huber20dce082016-09-22 19:39:13 -0700789private:
Yifan Hong44ab6232016-11-22 16:28:24 -0800790 T mBuffer[elementCount()];
Andreas Huber20dce082016-09-22 19:39:13 -0700791};
792
Yifan Hong44ab6232016-11-22 16:28:24 -0800793// An array of T's. Assumes that T::operator=(const T &) is defined.
Andreas Huber20dce082016-09-22 19:39:13 -0700794template<typename T, size_t SIZE1>
795struct hidl_array<T, SIZE1> {
Yifan Hong44ab6232016-11-22 16:28:24 -0800796
797 using std_array_type = typename details::std_array<T, SIZE1>::type;
798
Andreas Huber20dce082016-09-22 19:39:13 -0700799 hidl_array() = default;
Yifan Hong44ab6232016-11-22 16:28:24 -0800800
801 // Copies the data from source, using T::operator=(const T &).
Sasha Levitskiy3da68482016-11-17 16:48:43 -0800802 hidl_array(const T *source) {
Yifan Hong44ab6232016-11-22 16:28:24 -0800803 for (size_t i = 0; i < elementCount(); ++i) {
804 mBuffer[i] = source[i];
805 }
Sasha Levitskiy3da68482016-11-17 16:48:43 -0800806 }
Andreas Huber20dce082016-09-22 19:39:13 -0700807
Yifan Hong44ab6232016-11-22 16:28:24 -0800808 // Copies the data from the given std::array, using T::operator=(const T &).
809 hidl_array(const std_array_type &array) : hidl_array(array.data()) {}
810
Andreas Huber20dce082016-09-22 19:39:13 -0700811 T *data() { return mBuffer; }
812 const T *data() const { return mBuffer; }
813
814 T &operator[](size_t index) {
815 return mBuffer[index];
816 }
817
818 const T &operator[](size_t index) const {
819 return mBuffer[index];
820 }
821
Yifan Hong9fcbb362016-12-20 16:46:41 -0800822 // equality check, assuming that T::operator== is defined.
823 bool operator==(const hidl_array &other) const {
824 for (size_t i = 0; i < elementCount(); ++i) {
825 if (!(mBuffer[i] == other.mBuffer[i])) {
826 return false;
827 }
828 }
829 return true;
830 }
831
832 inline bool operator!=(const hidl_array &other) const {
833 return !((*this) == other);
834 }
835
Andreas Huber00a985c2016-09-28 14:24:53 -0700836 static constexpr size_t size() { return SIZE1; }
Yifan Hong44ab6232016-11-22 16:28:24 -0800837 static constexpr size_t elementCount() { return SIZE1; }
838
839 // Copies the data to an std::array, using T::operator=(T).
840 operator std_array_type() const {
841 std_array_type array;
842 for (size_t i = 0; i < SIZE1; ++i) {
843 array[i] = mBuffer[i];
844 }
845 return array;
846 }
Andreas Huber00a985c2016-09-28 14:24:53 -0700847
Andreas Huber20dce082016-09-22 19:39:13 -0700848private:
849 T mBuffer[SIZE1];
850};
851
Martijn Coenen72110162016-08-19 14:28:25 +0200852// ----------------------------------------------------------------------
853// Version functions
854struct hidl_version {
855public:
Steven Moreland5cc16912019-04-18 12:54:56 -0700856 constexpr hidl_version(uint16_t major, uint16_t minor) : mMajor(major), mMinor(minor) {
857 static_assert(sizeof(*this) == 4, "wrong size");
858 }
Martijn Coenen72110162016-08-19 14:28:25 +0200859
Steven Moreland5d5ef7f2016-10-20 19:19:55 -0700860 bool operator==(const hidl_version& other) const {
Martijn Coenen72110162016-08-19 14:28:25 +0200861 return (mMajor == other.get_major() && mMinor == other.get_minor());
862 }
Martijn Coenenc28f1152016-08-22 14:06:56 +0200863
Steven Morelandb328f012018-06-25 16:07:22 -0700864 bool operator!=(const hidl_version& other) const {
865 return !(*this == other);
866 }
867
Eino-Ville Talvala19f4db52016-12-14 15:19:28 -0800868 bool operator<(const hidl_version& other) const {
869 return (mMajor < other.get_major() ||
870 (mMajor == other.get_major() && mMinor < other.get_minor()));
871 }
872
873 bool operator>(const hidl_version& other) const {
874 return other < *this;
875 }
876
877 bool operator<=(const hidl_version& other) const {
878 return !(*this > other);
879 }
880
881 bool operator>=(const hidl_version& other) const {
882 return !(*this < other);
883 }
884
Martijn Coenen097a7672016-09-08 16:56:41 +0200885 constexpr uint16_t get_major() const { return mMajor; }
886 constexpr uint16_t get_minor() const { return mMinor; }
Martijn Coenen72110162016-08-19 14:28:25 +0200887
Martijn Coenen72110162016-08-19 14:28:25 +0200888private:
889 uint16_t mMajor;
890 uint16_t mMinor;
891};
892
893inline android::hardware::hidl_version make_hidl_version(uint16_t major, uint16_t minor) {
894 return hidl_version(major,minor);
895}
896
Yifan Hongbe7a6882017-01-05 17:30:17 -0800897///////////////////// toString functions
898
Hridya Valsaraju4ff88a32017-03-09 16:01:02 -0800899std::string toString(const void *t);
Yifan Hongbe7a6882017-01-05 17:30:17 -0800900
901// toString alias for numeric types
902template<typename T, typename = typename std::enable_if<std::is_arithmetic<T>::value, T>::type>
903inline std::string toString(T t) {
904 return std::to_string(t);
905}
906
Hridya Valsaraju4ff88a32017-03-09 16:01:02 -0800907namespace details {
908
Yifan Hongbe7a6882017-01-05 17:30:17 -0800909template<typename T, typename = typename std::enable_if<std::is_arithmetic<T>::value, T>::type>
910inline std::string toHexString(T t, bool prefix = true) {
911 std::ostringstream os;
912 if (prefix) { os << std::showbase; }
913 os << std::hex << t;
914 return os.str();
915}
916
917template<>
918inline std::string toHexString(uint8_t t, bool prefix) {
919 return toHexString(static_cast<int32_t>(t), prefix);
920}
921
922template<>
923inline std::string toHexString(int8_t t, bool prefix) {
924 return toHexString(static_cast<int32_t>(t), prefix);
925}
926
Hridya Valsaraju4ff88a32017-03-09 16:01:02 -0800927template<typename Array>
928std::string arrayToString(const Array &a, size_t size);
929
930template<size_t SIZE1>
931std::string arraySizeToString() {
932 return std::string{"["} + toString(SIZE1) + "]";
933}
934
935template<size_t SIZE1, size_t SIZE2, size_t... SIZES>
936std::string arraySizeToString() {
937 return std::string{"["} + toString(SIZE1) + "]" + arraySizeToString<SIZE2, SIZES...>();
938}
939
940template<typename T, size_t SIZE1>
941std::string toString(details::const_accessor<T, SIZE1> a) {
942 return arrayToString(a, SIZE1);
943}
944
945template<typename Array>
946std::string arrayToString(const Array &a, size_t size) {
947 using android::hardware::toString;
948 std::string os;
949 os += "{";
950 for (size_t i = 0; i < size; ++i) {
951 if (i > 0) {
952 os += ", ";
953 }
954 os += toString(a[i]);
955 }
956 os += "}";
957 return os;
958}
959
960template<typename T, size_t SIZE1, size_t SIZE2, size_t... SIZES>
961std::string toString(details::const_accessor<T, SIZE1, SIZE2, SIZES...> a) {
962 return arrayToString(a, SIZE1);
963}
964
965} //namespace details
966
967inline std::string toString(const void *t) {
968 return details::toHexString(reinterpret_cast<uintptr_t>(t));
Yifan Hongbe7a6882017-01-05 17:30:17 -0800969}
970
971// debug string dump. There will be quotes around the string!
972inline std::string toString(const hidl_string &hs) {
973 return std::string{"\""} + hs.c_str() + "\"";
974}
975
976// debug string dump
977inline std::string toString(const hidl_handle &hs) {
978 return toString(hs.getNativeHandle());
979}
980
981inline std::string toString(const hidl_memory &mem) {
982 return std::string{"memory {.name = "} + toString(mem.name()) + ", .size = "
983 + toString(mem.size())
984 + ", .handle = " + toString(mem.handle()) + "}";
985}
986
987inline std::string toString(const sp<hidl_death_recipient> &dr) {
988 return std::string{"death_recipient@"} + toString(dr.get());
989}
990
Yifan Hongbe7a6882017-01-05 17:30:17 -0800991// debug string dump, assuming that toString(T) is defined.
992template<typename T>
993std::string toString(const hidl_vec<T> &a) {
994 std::string os;
995 os += "[" + toString(a.size()) + "]";
Hridya Valsaraju4ff88a32017-03-09 16:01:02 -0800996 os += details::arrayToString(a, a.size());
Yifan Hongbe7a6882017-01-05 17:30:17 -0800997 return os;
998}
999
Yifan Hongbe7a6882017-01-05 17:30:17 -08001000template<typename T, size_t SIZE1>
1001std::string toString(const hidl_array<T, SIZE1> &a) {
Hridya Valsaraju4ff88a32017-03-09 16:01:02 -08001002 return details::arraySizeToString<SIZE1>()
1003 + details::toString(details::const_accessor<T, SIZE1>(a.data()));
Yifan Hongbe7a6882017-01-05 17:30:17 -08001004}
1005
1006template<typename T, size_t SIZE1, size_t SIZE2, size_t... SIZES>
1007std::string toString(const hidl_array<T, SIZE1, SIZE2, SIZES...> &a) {
Hridya Valsaraju4ff88a32017-03-09 16:01:02 -08001008 return details::arraySizeToString<SIZE1, SIZE2, SIZES...>()
1009 + details::toString(details::const_accessor<T, SIZE1, SIZE2, SIZES...>(a.data()));
Yifan Hongbe7a6882017-01-05 17:30:17 -08001010}
1011
Steven Moreland39d9f882018-10-26 15:34:01 -07001012namespace details {
1013// Never instantiated. Used as a placeholder for template variables.
1014template <typename T>
1015struct hidl_invalid_type;
1016
1017// HIDL generates specializations of this for enums. See hidl_enum_range.
1018template <typename T, typename = std::enable_if_t<std::is_enum<T>::value>>
1019constexpr hidl_invalid_type<T> hidl_enum_values;
1020} // namespace details
1021
Steven Morelandabce0c72017-11-17 15:37:09 -08001022/**
Steven Moreland39d9f882018-10-26 15:34:01 -07001023 * Every HIDL generated enum supports this function.
Steven Moreland5f3a8cf2018-04-25 11:57:35 -07001024 * E.x.: for(const auto v : hidl_enum_range<Enum>) { ... }
Steven Morelandabce0c72017-11-17 15:37:09 -08001025 */
Steven Moreland2f2c9632018-05-01 12:24:14 -07001026template <typename T, typename = std::enable_if_t<std::is_enum<T>::value>>
Steven Moreland39d9f882018-10-26 15:34:01 -07001027struct hidl_enum_range {
1028 constexpr auto begin() const { return std::begin(details::hidl_enum_values<T>); }
1029 constexpr auto cbegin() const { return begin(); }
1030 constexpr auto rbegin() const { return std::rbegin(details::hidl_enum_values<T>); }
1031 constexpr auto crbegin() const { return rbegin(); }
1032 constexpr auto end() const { return std::end(details::hidl_enum_values<T>); }
1033 constexpr auto cend() const { return end(); }
1034 constexpr auto rend() const { return std::rend(details::hidl_enum_values<T>); }
1035 constexpr auto crend() const { return rend(); }
1036};
Steven Moreland5f3a8cf2018-04-25 11:57:35 -07001037
Steven Moreland2f2c9632018-05-01 12:24:14 -07001038template <typename T, typename = std::enable_if_t<std::is_enum<T>::value>>
1039struct hidl_enum_iterator {
1040 static_assert(!std::is_enum<T>::value,
1041 "b/78573628: hidl_enum_iterator was renamed to hidl_enum_range because it is not "
1042 "actually an iterator. Please use that type instead.");
1043};
Steven Morelandabce0c72017-11-17 15:37:09 -08001044
Steven Morelanda6752122017-12-28 13:35:20 -08001045/**
1046 * Bitfields in HIDL are the underlying type of the enumeration.
1047 */
1048template <typename Enum>
1049using hidl_bitfield = typename std::underlying_type<Enum>::type;
1050
Martijn Coenen72110162016-08-19 14:28:25 +02001051} // namespace hardware
1052} // namespace android
1053
Martijn Coenenc28f1152016-08-22 14:06:56 +02001054
Martijn Coenen72110162016-08-19 14:28:25 +02001055#endif // ANDROID_HIDL_SUPPORT_H