Bug 932076 - Add check for MediaExtractor creation failure. r=doublec
[gecko.git] / mfbt / Endian.h
blobcb6bd27c050a103b9dd2962c17b43ec4fca32a2f
1 /* -*- Mode: C++; tab-width: 8; indent-tabs-mode: nil; c-basic-offset: 2 -*- */
2 /* vim: set ts=8 sts=2 et sw=2 tw=80: */
3 /* This Source Code Form is subject to the terms of the Mozilla Public
4 * License, v. 2.0. If a copy of the MPL was not distributed with this
5 * file, You can obtain one at http://mozilla.org/MPL/2.0/. */
7 /* Functions for reading and writing integers in various endiannesses. */
9 /*
10 * The classes LittleEndian and BigEndian expose static methods for
11 * reading and writing 16-, 32-, and 64-bit signed and unsigned integers
12 * in their respective endianness. The naming scheme is:
14 * {Little,Big}Endian::{read,write}{Uint,Int}<bitsize>
16 * For instance, LittleEndian::readInt32 will read a 32-bit signed
17 * integer from memory in little endian format. Similarly,
18 * BigEndian::writeUint16 will write a 16-bit unsigned integer to memory
19 * in big-endian format.
21 * The class NativeEndian exposes methods for conversion of existing
22 * data to and from the native endianness. These methods are intended
23 * for cases where data needs to be transferred, serialized, etc.
24 * swap{To,From}{Little,Big}Endian byteswap a single value if necessary.
25 * Bulk conversion functions are also provided which optimize the
26 * no-conversion-needed case:
28 * - copyAndSwap{To,From}{Little,Big}Endian;
29 * - swap{To,From}{Little,Big}EndianInPlace.
31 * The *From* variants are intended to be used for reading data and the
32 * *To* variants for writing data.
34 * Methods on NativeEndian work with integer data of any type.
35 * Floating-point data is not supported.
37 * For clarity in networking code, "Network" may be used as a synonym
38 * for "Big" in any of the above methods or class names.
40 * As an example, reading a file format header whose fields are stored
41 * in big-endian format might look like:
43 * class ExampleHeader
44 * {
45 * private:
46 * uint32_t magic;
47 * uint32_t length;
48 * uint32_t totalRecords;
49 * uint64_t checksum;
51 * public:
52 * ExampleHeader(const void* data) {
53 * const uint8_t* ptr = static_cast<const uint8_t*>(data);
54 * magic = BigEndian::readUint32(ptr); ptr += sizeof(uint32_t);
55 * length = BigEndian::readUint32(ptr); ptr += sizeof(uint32_t);
56 * totalRecords = BigEndian::readUint32(ptr); ptr += sizeof(uint32_t);
57 * checksum = BigEndian::readUint64(ptr);
58 * }
59 * ...
60 * };
63 #ifndef mozilla_Endian_h
64 #define mozilla_Endian_h
66 #include "mozilla/Assertions.h"
67 #include "mozilla/Attributes.h"
68 #include "mozilla/Compiler.h"
69 #include "mozilla/DebugOnly.h"
70 #include "mozilla/TypeTraits.h"
72 #include <stdint.h>
73 #include <string.h>
75 #if defined(_MSC_VER) && _MSC_VER >= 1300
76 # include <stdlib.h>
77 # pragma intrinsic(_byteswap_ushort)
78 # pragma intrinsic(_byteswap_ulong)
79 # pragma intrinsic(_byteswap_uint64)
80 #endif
82 #if defined(_WIN64)
83 # if defined(_M_X64) || defined(_M_AMD64) || defined(_AMD64_)
84 # define MOZ_LITTLE_ENDIAN 1
85 # else
86 # error "CPU type is unknown"
87 # endif
88 #elif defined(_WIN32)
89 # if defined(_M_IX86)
90 # define MOZ_LITTLE_ENDIAN 1
91 # else
92 # error "CPU type is unknown"
93 # endif
94 #elif defined(__APPLE__)
95 # if __LITTLE_ENDIAN__
96 # define MOZ_LITTLE_ENDIAN 1
97 # elif __BIG_ENDIAN__
98 # define MOZ_BIG_ENDIAN 1
99 # endif
100 #elif defined(__GNUC__) && \
101 defined(__BYTE_ORDER__) && \
102 defined(__ORDER_LITTLE_ENDIAN__) && \
103 defined(__ORDER_BIG_ENDIAN__)
105 * Some versions of GCC provide architecture-independent macros for
106 * this. Yes, there are more than two values for __BYTE_ORDER__.
108 # if __BYTE_ORDER__ == __ORDER_LITTLE_ENDIAN__
109 # define MOZ_LITTLE_ENDIAN 1
110 # elif __BYTE_ORDER__ == __ORDER_BIG_ENDIAN__
111 # define MOZ_BIG_ENDIAN 1
112 # else
113 # error "Can't handle mixed-endian architectures"
114 # endif
116 * We can't include useful headers like <endian.h> or <sys/isa_defs.h>
117 * here because they're not present on all platforms. Instead we have
118 * this big conditional that ideally will catch all the interesting
119 * cases.
121 #elif defined(__sparc) || defined(__sparc__) || \
122 defined(_POWER) || defined(__powerpc__) || \
123 defined(__ppc__) || defined(__hppa) || \
124 defined(_MIPSEB) || defined(__ARMEB__) || \
125 defined(__s390__) || \
126 (defined(__sh__) && defined(__LITTLE_ENDIAN__)) || \
127 (defined(__ia64) && defined(__BIG_ENDIAN__))
128 # define MOZ_BIG_ENDIAN 1
129 #elif defined(__i386) || defined(__i386__) || \
130 defined(__x86_64) || defined(__x86_64__) || \
131 defined(_MIPSEL) || defined(__ARMEL__) || \
132 defined(__alpha__) || \
133 (defined(__sh__) && defined(__BIG_ENDIAN__)) || \
134 (defined(__ia64) && !defined(__BIG_ENDIAN__))
135 # define MOZ_LITTLE_ENDIAN 1
136 #endif
138 #if MOZ_BIG_ENDIAN
139 # define MOZ_LITTLE_ENDIAN 0
140 #elif MOZ_LITTLE_ENDIAN
141 # define MOZ_BIG_ENDIAN 0
142 #else
143 # error "Cannot determine endianness"
144 #endif
146 #if defined(__clang__)
147 # if __has_builtin(__builtin_bswap16)
148 # define MOZ_HAVE_BUILTIN_BYTESWAP16 __builtin_bswap16
149 # endif
150 #elif defined(__GNUC__)
151 # if MOZ_GCC_VERSION_AT_LEAST(4, 8, 0)
152 # define MOZ_HAVE_BUILTIN_BYTESWAP16 __builtin_bswap16
153 # endif
154 #elif defined(_MSC_VER)
155 # define MOZ_HAVE_BUILTIN_BYTESWAP16 _byteswap_ushort
156 #endif
158 namespace mozilla {
160 namespace detail {
163 * We need wrappers here because free functions with default template
164 * arguments and/or partial specialization of function templates are not
165 * supported by all the compilers we use.
167 template<typename T, size_t Size = sizeof(T)>
168 struct Swapper;
170 template<typename T>
171 struct Swapper<T, 2>
173 static T swap(T value)
175 #if defined(MOZ_HAVE_BUILTIN_BYTESWAP16)
176 return MOZ_HAVE_BUILTIN_BYTESWAP16(value);
177 #else
178 return T(((value & 0x00ff) << 8) | ((value & 0xff00) >> 8));
179 #endif
183 template<typename T>
184 struct Swapper<T, 4>
186 static T swap(T value)
188 #if defined(__clang__) || defined(__GNUC__)
189 return T(__builtin_bswap32(value));
190 #elif defined(_MSC_VER)
191 return T(_byteswap_ulong(value));
192 #else
193 return T(((value & 0x000000ffU) << 24) |
194 ((value & 0x0000ff00U) << 8) |
195 ((value & 0x00ff0000U) >> 8) |
196 ((value & 0xff000000U) >> 24));
197 #endif
201 template<typename T>
202 struct Swapper<T, 8>
204 static inline T swap(T value)
206 #if defined(__clang__) || defined(__GNUC__)
207 return T(__builtin_bswap64(value));
208 #elif defined(_MSC_VER)
209 return T(_byteswap_uint64(value));
210 #else
211 return T(((value & 0x00000000000000ffULL) << 56) |
212 ((value & 0x000000000000ff00ULL) << 40) |
213 ((value & 0x0000000000ff0000ULL) << 24) |
214 ((value & 0x00000000ff000000ULL) << 8) |
215 ((value & 0x000000ff00000000ULL) >> 8) |
216 ((value & 0x0000ff0000000000ULL) >> 24) |
217 ((value & 0x00ff000000000000ULL) >> 40) |
218 ((value & 0xff00000000000000ULL) >> 56));
219 #endif
223 enum Endianness { Little, Big };
225 #if MOZ_BIG_ENDIAN
226 # define MOZ_NATIVE_ENDIANNESS detail::Big
227 #else
228 # define MOZ_NATIVE_ENDIANNESS detail::Little
229 #endif
231 class EndianUtils
234 * Assert that the memory regions [dest, dest+count) and [src, src+count]
235 * do not overlap. count is given in bytes.
237 static void assertNoOverlap(const void* dest, const void* src, size_t count)
239 DebugOnly<const uint8_t*> byteDestPtr = static_cast<const uint8_t*>(dest);
240 DebugOnly<const uint8_t*> byteSrcPtr = static_cast<const uint8_t*>(src);
241 MOZ_ASSERT((byteDestPtr <= byteSrcPtr &&
242 byteDestPtr + count <= byteSrcPtr) ||
243 (byteSrcPtr <= byteDestPtr &&
244 byteSrcPtr + count <= byteDestPtr));
247 template<typename T>
248 static void assertAligned(T* ptr)
250 MOZ_ASSERT((uintptr_t(ptr) % sizeof(T)) == 0, "Unaligned pointer!");
253 protected:
255 * Return |value| converted from SourceEndian encoding to DestEndian
256 * encoding.
258 template<Endianness SourceEndian, Endianness DestEndian, typename T>
259 static inline T maybeSwap(T value)
261 if (SourceEndian == DestEndian)
262 return value;
264 return Swapper<T>::swap(value);
268 * Convert |count| elements at |ptr| from SourceEndian encoding to
269 * DestEndian encoding.
271 template<Endianness SourceEndian, Endianness DestEndian, typename T>
272 static inline void maybeSwapInPlace(T* ptr, size_t count)
274 assertAligned(ptr);
276 if (SourceEndian == DestEndian)
277 return;
279 for (size_t i = 0; i < count; i++)
280 ptr[i] = Swapper<T>::swap(ptr[i]);
284 * Write |count| elements to the unaligned address |dest| in DestEndian
285 * format, using elements found at |src| in SourceEndian format.
287 template<Endianness SourceEndian, Endianness DestEndian, typename T>
288 static void copyAndSwapTo(void* dest, const T* src, size_t count)
290 assertNoOverlap(dest, src, count * sizeof(T));
291 assertAligned(src);
293 if (SourceEndian == DestEndian) {
294 memcpy(dest, src, count * sizeof(T));
295 return;
298 uint8_t* byteDestPtr = static_cast<uint8_t*>(dest);
299 for (size_t i = 0; i < count; ++i) {
300 union {
301 T val;
302 uint8_t buffer[sizeof(T)];
303 } u;
304 u.val = maybeSwap<SourceEndian, DestEndian>(src[i]);
305 memcpy(byteDestPtr, u.buffer, sizeof(T));
306 byteDestPtr += sizeof(T);
311 * Write |count| elements to |dest| in DestEndian format, using elements
312 * found at the unaligned address |src| in SourceEndian format.
314 template<Endianness SourceEndian, Endianness DestEndian, typename T>
315 static void copyAndSwapFrom(T* dest, const void* src, size_t count)
317 assertNoOverlap(dest, src, count * sizeof(T));
318 assertAligned(dest);
320 if (SourceEndian == DestEndian) {
321 memcpy(dest, src, count * sizeof(T));
322 return;
325 const uint8_t* byteSrcPtr = static_cast<const uint8_t*>(src);
326 for (size_t i = 0; i < count; ++i) {
327 union {
328 T val;
329 uint8_t buffer[sizeof(T)];
330 } u;
331 memcpy(u.buffer, byteSrcPtr, sizeof(T));
332 dest[i] = maybeSwap<SourceEndian, DestEndian>(u.val);
333 byteSrcPtr += sizeof(T);
338 template<Endianness ThisEndian>
339 class Endian : private EndianUtils
341 protected:
342 /** Read a uint16_t in ThisEndian endianness from |p| and return it. */
343 static MOZ_WARN_UNUSED_RESULT uint16_t readUint16(const void* p) {
344 return read<uint16_t>(p);
347 /** Read a uint32_t in ThisEndian endianness from |p| and return it. */
348 static MOZ_WARN_UNUSED_RESULT uint32_t readUint32(const void* p) {
349 return read<uint32_t>(p);
352 /** Read a uint64_t in ThisEndian endianness from |p| and return it. */
353 static MOZ_WARN_UNUSED_RESULT uint64_t readUint64(const void* p) {
354 return read<uint64_t>(p);
357 /** Read an int16_t in ThisEndian endianness from |p| and return it. */
358 static MOZ_WARN_UNUSED_RESULT int16_t readInt16(const void* p) {
359 return read<int16_t>(p);
362 /** Read an int32_t in ThisEndian endianness from |p| and return it. */
363 static MOZ_WARN_UNUSED_RESULT int32_t readInt32(const void* p) {
364 return read<uint32_t>(p);
367 /** Read an int64_t in ThisEndian endianness from |p| and return it. */
368 static MOZ_WARN_UNUSED_RESULT int64_t readInt64(const void* p) {
369 return read<int64_t>(p);
372 /** Write |val| to |p| using ThisEndian endianness. */
373 static void writeUint16(void* p, uint16_t val) {
374 write(p, val);
376 /** Write |val| to |p| using ThisEndian endianness. */
377 static void writeUint32(void* p, uint32_t val) {
378 write(p, val);
380 /** Write |val| to |p| using ThisEndian endianness. */
381 static void writeUint64(void* p, uint64_t val) {
382 write(p, val);
385 /** Write |val| to |p| using ThisEndian endianness. */
386 static void writeInt16(void* p, int16_t val) {
387 write(p, val);
389 /** Write |val| to |p| using ThisEndian endianness. */
390 static void writeInt32(void* p, int32_t val) {
391 write(p, val);
393 /** Write |val| to |p| using ThisEndian endianness. */
394 static void writeInt64(void* p, int64_t val) {
395 write(p, val);
399 * Converts a value of type T to little-endian format.
401 * This function is intended for cases where you have data in your
402 * native-endian format and you need it to appear in little-endian
403 * format for transmission.
405 template<typename T>
406 MOZ_WARN_UNUSED_RESULT static T swapToLittleEndian(T value) {
407 return maybeSwap<ThisEndian, Little>(value);
410 * Copies count values of type T starting at src to dest, converting
411 * them to little-endian format if ThisEndian is Big.
412 * As with memcpy, dest and src must not overlap.
414 template<typename T>
415 static void copyAndSwapToLittleEndian(void* dest, const T* src,
416 size_t count) {
417 copyAndSwapTo<ThisEndian, Little>(dest, src, count);
420 * Likewise, but converts values in place.
422 template<typename T>
423 static void swapToLittleEndianInPlace(T* p, size_t count) {
424 maybeSwapInPlace<ThisEndian, Little>(p, count);
428 * Converts a value of type T to big-endian format.
430 template<typename T>
431 MOZ_WARN_UNUSED_RESULT static T swapToBigEndian(T value) {
432 return maybeSwap<ThisEndian, Big>(value);
435 * Copies count values of type T starting at src to dest, converting
436 * them to big-endian format if ThisEndian is Little.
437 * As with memcpy, dest and src must not overlap.
439 template<typename T>
440 static void copyAndSwapToBigEndian(void* dest, const T* src, size_t count) {
441 copyAndSwapTo<ThisEndian, Big>(dest, src, count);
444 * Likewise, but converts values in place.
446 template<typename T>
447 static void swapToBigEndianInPlace(T* p, size_t count) {
448 maybeSwapInPlace<ThisEndian, Big>(p, count);
452 * Synonyms for the big-endian functions, for better readability
453 * in network code.
455 template<typename T>
456 MOZ_WARN_UNUSED_RESULT static T swapToNetworkOrder(T value) {
457 return swapToBigEndian(value);
459 template<typename T>
460 static void
461 copyAndSwapToNetworkOrder(void* dest, const T* src, size_t count) {
462 copyAndSwapToBigEndian(dest, src, count);
464 template<typename T>
465 static void
466 swapToNetworkOrderInPlace(T* p, size_t count) {
467 swapToBigEndianInPlace(p, count);
471 * Converts a value of type T from little-endian format.
473 template<typename T>
474 MOZ_WARN_UNUSED_RESULT static T swapFromLittleEndian(T value) {
475 return maybeSwap<Little, ThisEndian>(value);
478 * Copies count values of type T starting at src to dest, converting
479 * them to little-endian format if ThisEndian is Big.
480 * As with memcpy, dest and src must not overlap.
482 template<typename T>
483 static void copyAndSwapFromLittleEndian(T* dest, const void* src,
484 size_t count) {
485 copyAndSwapFrom<Little, ThisEndian>(dest, src, count);
488 * Likewise, but converts values in place.
490 template<typename T>
491 static void swapFromLittleEndianInPlace(T* p, size_t count) {
492 maybeSwapInPlace<Little, ThisEndian>(p, count);
496 * Converts a value of type T from big-endian format.
498 template<typename T>
499 MOZ_WARN_UNUSED_RESULT static T swapFromBigEndian(T value) {
500 return maybeSwap<Big, ThisEndian>(value);
503 * Copies count values of type T starting at src to dest, converting
504 * them to big-endian format if ThisEndian is Little.
505 * As with memcpy, dest and src must not overlap.
507 template<typename T>
508 static void copyAndSwapFromBigEndian(T* dest, const void* src,
509 size_t count) {
510 copyAndSwapFrom<Big, ThisEndian>(dest, src, count);
513 * Likewise, but converts values in place.
515 template<typename T>
516 static void swapFromBigEndianInPlace(T* p, size_t count) {
517 maybeSwapInPlace<Big, ThisEndian>(p, count);
521 * Synonyms for the big-endian functions, for better readability
522 * in network code.
524 template<typename T>
525 MOZ_WARN_UNUSED_RESULT static T swapFromNetworkOrder(T value) {
526 return swapFromBigEndian(value);
528 template<typename T>
529 static void copyAndSwapFromNetworkOrder(T* dest, const void* src,
530 size_t count) {
531 copyAndSwapFromBigEndian(dest, src, count);
533 template<typename T>
534 static void swapFromNetworkOrderInPlace(T* p, size_t count) {
535 swapFromBigEndianInPlace(p, count);
538 private:
540 * Read a value of type T, encoded in endianness ThisEndian from |p|.
541 * Return that value encoded in native endianness.
543 template<typename T>
544 static T read(const void* p) {
545 union {
546 T val;
547 uint8_t buffer[sizeof(T)];
548 } u;
549 memcpy(u.buffer, p, sizeof(T));
550 return maybeSwap<ThisEndian, MOZ_NATIVE_ENDIANNESS>(u.val);
554 * Write a value of type T, in native endianness, to |p|, in ThisEndian
555 * endianness.
557 template<typename T>
558 static void write(void* p, T value) {
559 T tmp = maybeSwap<MOZ_NATIVE_ENDIANNESS, ThisEndian>(value);
560 memcpy(p, &tmp, sizeof(T));
563 Endian() MOZ_DELETE;
564 Endian(const Endian& other) MOZ_DELETE;
565 void operator=(const Endian& other) MOZ_DELETE;
568 template<Endianness ThisEndian>
569 class EndianReadWrite : public Endian<ThisEndian>
571 private:
572 typedef Endian<ThisEndian> super;
574 public:
575 using super::readUint16;
576 using super::readUint32;
577 using super::readUint64;
578 using super::readInt16;
579 using super::readInt32;
580 using super::readInt64;
581 using super::writeUint16;
582 using super::writeUint32;
583 using super::writeUint64;
584 using super::writeInt16;
585 using super::writeInt32;
586 using super::writeInt64;
589 } /* namespace detail */
591 class LittleEndian MOZ_FINAL : public detail::EndianReadWrite<detail::Little>
594 class BigEndian MOZ_FINAL : public detail::EndianReadWrite<detail::Big>
597 typedef BigEndian NetworkEndian;
599 class NativeEndian MOZ_FINAL : public detail::Endian<MOZ_NATIVE_ENDIANNESS>
601 private:
602 typedef detail::Endian<MOZ_NATIVE_ENDIANNESS> super;
604 public:
606 * These functions are intended for cases where you have data in your
607 * native-endian format and you need the data to appear in the appropriate
608 * endianness for transmission, serialization, etc.
610 using super::swapToLittleEndian;
611 using super::copyAndSwapToLittleEndian;
612 using super::swapToLittleEndianInPlace;
613 using super::swapToBigEndian;
614 using super::copyAndSwapToBigEndian;
615 using super::swapToBigEndianInPlace;
616 using super::swapToNetworkOrder;
617 using super::copyAndSwapToNetworkOrder;
618 using super::swapToNetworkOrderInPlace;
621 * These functions are intended for cases where you have data in the
622 * given endianness (e.g. reading from disk or a file-format) and you
623 * need the data to appear in native-endian format for processing.
625 using super::swapFromLittleEndian;
626 using super::copyAndSwapFromLittleEndian;
627 using super::swapFromLittleEndianInPlace;
628 using super::swapFromBigEndian;
629 using super::copyAndSwapFromBigEndian;
630 using super::swapFromBigEndianInPlace;
631 using super::swapFromNetworkOrder;
632 using super::copyAndSwapFromNetworkOrder;
633 using super::swapFromNetworkOrderInPlace;
636 #undef MOZ_NATIVE_ENDIANNESS
638 } /* namespace mozilla */
640 #endif /* mozilla_Endian_h */