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defs.h
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1/* Simple Plugin API */
2/* SPDX-FileCopyrightText: Copyright © 2018 Wim Taymans */
3/* SPDX-License-Identifier: MIT */
4
5#ifndef SPA_UTILS_DEFS_H
6#define SPA_UTILS_DEFS_H
7
8#include <inttypes.h>
9#include <signal.h>
10#include <stdlib.h>
11#include <string.h>
12#include <stddef.h>
13#include <limits.h>
14#include <stdio.h>
15
16#ifdef __cplusplus
17extern "C" {
18# if __cplusplus >= 201103L
19# define SPA_STATIC_ASSERT_IMPL(expr, msg, ...) static_assert(expr, msg)
20# define SPA_ALIGNOF alignof
21# endif
22#elif __STDC_VERSION__ >= 202311L
23# define SPA_STATIC_ASSERT_IMPL(expr, msg, ...) static_assert(expr, msg)
24# define SPA_ALIGNOF alignof
25#else
26# include <stdbool.h>
27# if __STDC_VERSION__ >= 201112L
28# define SPA_STATIC_ASSERT_IMPL(expr, msg, ...) _Static_assert(expr, msg)
29# define SPA_ALIGNOF _Alignof
30# endif
31#endif
32#ifndef SPA_STATIC_ASSERT_IMPL
33#define SPA_STATIC_ASSERT_IMPL(expr, ...) \
34 ((void)sizeof(struct { int spa_static_assertion_failed : 2 * !!(expr) - 1; }))
35#endif
36#ifndef SPA_ALIGNOF
37#define SPA_ALIGNOF __alignof__
38#endif
39
40#define SPA_STATIC_ASSERT(expr, ...) SPA_STATIC_ASSERT_IMPL(expr, ## __VA_ARGS__, "`" #expr "` evaluated to false")
41
42#define SPA_CONCAT_NOEXPAND(a, b) a ## b
43#define SPA_CONCAT(a, b) SPA_CONCAT_NOEXPAND(a, b)
44
49
54
70#if defined(__clang__) && defined(__cplusplus) && __cplusplus >= 201103L
71 /* clang's fallthrough annotations are only available starting in C++11. */
72# define SPA_FALLTHROUGH [[clang::fallthrough]];
73#elif __GNUC__ >= 7 || __clang_major__ >= 10
74# define SPA_FALLTHROUGH __attribute__ ((fallthrough));
75#else
76# define SPA_FALLTHROUGH /* FALLTHROUGH */
77#endif
78
79#define SPA_FLAG_MASK(field,mask,flag) (((field) & (mask)) == (flag))
80#define SPA_FLAG_IS_SET(field,flag) SPA_FLAG_MASK(field, flag, flag)
81
82#define SPA_FLAG_SET(field,flag) ((field) |= (flag))
83#define SPA_FLAG_CLEAR(field, flag) \
84({ \
85 SPA_STATIC_ASSERT(__builtin_constant_p(flag) ? \
86 (__typeof__(flag))(__typeof__(field))(__typeof__(flag))(flag) == (flag) : \
87 sizeof(field) >= sizeof(flag), \
88 "truncation problem when masking " #field \
89 " with ~" #flag); \
90 ((field) &= ~(__typeof__(field))(flag)); \
91})
92#define SPA_FLAG_UPDATE(field,flag,val) ((val) ? SPA_FLAG_SET((field),(flag)) : SPA_FLAG_CLEAR((field),(flag)))
93
97};
98
99#define SPA_DIRECTION_REVERSE(d) ((d) ^ 1)
100
101#define SPA_RECTANGLE(width,height) ((struct spa_rectangle){ (width), (height) })
102struct spa_rectangle {
103 uint32_t width;
104 uint32_t height;
106
107#define SPA_POINT(x,y) ((struct spa_point){ (x), (y) })
108struct spa_point {
109 int32_t x;
110 int32_t y;
111};
112
113#define SPA_REGION(x,y,width,height) ((struct spa_region){ SPA_POINT(x,y), SPA_RECTANGLE(width,height) })
114struct spa_region {
115 struct spa_point position;
119#define SPA_FRACTION(num,denom) ((struct spa_fraction){ (num), (denom) })
120struct spa_fraction {
121 uint32_t num;
122 uint32_t denom;
125#define SPA_N_ELEMENTS(arr) (sizeof(arr) / sizeof((arr)[0]))
128
131 * SPA_FOR_EACH_ELEMENT(array, f) {
132 * f->bar = baz;
133 * }
134 * ```
135 */
136#define SPA_FOR_EACH_ELEMENT(arr, ptr) \
137 for ((ptr) = arr; (ptr) < (arr) + SPA_N_ELEMENTS(arr); (ptr)++)
139#define SPA_FOR_EACH_ELEMENT_VAR(arr, var) \
140 for (__typeof__((arr)[0])* var = arr; (var) < (arr) + SPA_N_ELEMENTS(arr); (var)++)
141
142#define SPA_ABS(a) \
143({ \
144 __typeof__(a) _a = (a); \
145 SPA_LIKELY(_a >= 0) ? _a : -_a; \
146})
147#define SPA_MIN(a,b) \
148({ \
149 __typeof__(a) _min_a = (a); \
150 __typeof__(b) _min_b = (b); \
151 SPA_LIKELY(_min_a <= _min_b) ? _min_a : _min_b; \
152})
153#define SPA_MAX(a,b) \
154({ \
155 __typeof__(a) _max_a = (a); \
156 __typeof__(b) _max_b = (b); \
157 SPA_LIKELY(_max_a >= _max_b) ? _max_a : _max_b; \
159#define SPA_CLAMP(v,low,high) \
160({ \
161 __typeof__(v) _v = (v); \
162 __typeof__(low) _low = (low); \
163 __typeof__(high) _high = (high); \
164 SPA_MIN(SPA_MAX(_v, _low), _high); \
165})
167#define SPA_CLAMPF(v,low,high) \
168({ \
169 fminf(fmaxf(v, low), high); \
170})
171#define SPA_CLAMPD(v,low,high) \
172({ \
173 fmin(fmax(v, low), high); \
174})
175
176
177#define SPA_SWAP(a,b) \
178({ \
179 __typeof__(a) _t = (a); \
180 (a) = b; (b) = _t; \
181})
182
183#define SPA_TYPECHECK(type,x) \
184({ type _dummy; \
185 typeof(x) _dummy2; \
186 (void)(&_dummy == &_dummy2); \
187 x; \
188})
189
190
190/** 3-way comparison. NaN > NaN and NaN > finite numbers */
191#define SPA_CMP(a, b) \
192({ \
193 __typeof__(a) _a = (a); \
194 __typeof__(b) _b = (b); \
195 (_a > _b) ? 1 : (_a == _b) ? 0 : (_a < _b) ? -1 \
196 : (_a == _a) ? -1 : (_b == _b) ? 1 \
197 : 1; \
198})
199
201
202 */
203#define SPA_PTROFF(ptr_,offset_,type_) ((type_*)((uintptr_t)(ptr_) + (ptrdiff_t)(offset_)))
204#define SPA_PTROFF_ALIGN(ptr_,offset_,alignment_,type_) \
205 SPA_PTR_ALIGN(SPA_PTROFF(ptr_,offset_,type_),alignment_,type_)
206
208
210#define SPA_MEMBER(b,o,t) SPA_PTROFF(b,o,t)
211#define SPA_MEMBER_ALIGN(b,o,a,t) SPA_PTROFF_ALIGN(b,o,a,t)
212
213#define SPA_CONTAINER_OF(p,t,m) ((t*)((uintptr_t)(p) - offsetof(t,m)))
214
215#define SPA_PTRDIFF(p1,p2) ((intptr_t)(p1) - (intptr_t)(p2))
216
217#define SPA_PTR_TO_UINT32(p) ((uint32_t) ((uintptr_t) (p)))
218#define SPA_UINT32_TO_PTR(u) ((void*) ((uintptr_t) (u)))
219
220#define SPA_TIME_INVALID ((int64_t)INT64_MIN)
221#define SPA_IDX_INVALID ((unsigned int)-1)
222#define SPA_ID_INVALID ((uint32_t)0xffffffff)
224#define SPA_NSEC_PER_SEC (1000000000LL)
225#define SPA_NSEC_PER_MSEC (1000000ll)
226#define SPA_NSEC_PER_USEC (1000ll)
227#define SPA_USEC_PER_SEC (1000000ll)
228#define SPA_USEC_PER_MSEC (1000ll)
229#define SPA_MSEC_PER_SEC (1000ll)
230
231#define SPA_TIMESPEC_TO_NSEC(ts) ((ts)->tv_sec * SPA_NSEC_PER_SEC + (ts)->tv_nsec)
232#define SPA_TIMESPEC_TO_USEC(ts) ((ts)->tv_sec * SPA_USEC_PER_SEC + (ts)->tv_nsec / SPA_NSEC_PER_USEC)
233#define SPA_TIMEVAL_TO_NSEC(tv) ((tv)->tv_sec * SPA_NSEC_PER_SEC + (tv)->tv_usec * SPA_NSEC_PER_USEC)
234#define SPA_TIMEVAL_TO_USEC(tv) ((tv)->tv_sec * SPA_USEC_PER_SEC + (tv)->tv_usec)
235
236#ifdef __GNUC__
237#define SPA_PRINTF_FUNC(fmt, arg1) __attribute__((format(printf, fmt, arg1)))
238#define SPA_FORMAT_ARG_FUNC(arg1) __attribute__((format_arg(arg1)))
239#define SPA_ALIGNED(align) __attribute__((aligned(align)))
240#define SPA_DEPRECATED __attribute__ ((deprecated))
241#define SPA_EXPORT __attribute__((visibility("default")))
242#define SPA_SENTINEL __attribute__((__sentinel__))
243#define SPA_UNUSED __attribute__ ((unused))
244#define SPA_NORETURN __attribute__ ((noreturn))
245#define SPA_WARN_UNUSED_RESULT __attribute__ ((warn_unused_result))
246#define SPA_BARRIER __asm__ __volatile__("": : :"memory")
247#else
248#define SPA_PRINTF_FUNC(fmt, arg1)
249#define SPA_FORMAT_ARG_FUNC(arg1)
250#define SPA_ALIGNED(align)
251#define SPA_DEPRECATED
252#define SPA_EXPORT
253#define SPA_SENTINEL
254#define SPA_UNUSED
255#define SPA_NORETURN
256#define SPA_WARN_UNUSED_RESULT
257#define SPA_BARRIER
258#endif
259
260#ifndef SPA_API_IMPL
261#define SPA_API_PROTO static inline
262#define SPA_API_IMPL static inline
263#endif
265#ifndef SPA_API_UTILS_DEFS
266 #ifdef SPA_API_IMPL
267 #define SPA_API_UTILS_DEFS SPA_API_IMPL
268 #else
269 #define SPA_API_UTILS_DEFS static inline
270 #endif
271#endif
272
274#if defined(__STDC_VERSION__) && __STDC_VERSION__ >= 199901L
275#define SPA_RESTRICT restrict
276#elif defined(__GNUC__) && __GNUC__ >= 4
277#define SPA_RESTRICT __restrict__
278#else
279#define SPA_RESTRICT
280#endif
281
282#define SPA_ROUND_DOWN(num,value) \
283({ \
284 __typeof__(num) _num = (num); \
285 ((_num) - ((_num) % (value))); \
286})
287#define SPA_ROUND_UP(num,value) \
288({ \
289 __typeof__(value) _v = (value); \
290 ((((num) + (_v) - 1) / (_v)) * (_v)); \
291})
292
293#define SPA_ROUND_MASK(num,mask) ((__typeof__(num))((mask)-1))
294
295#define SPA_ROUND_DOWN_N(num,align) ((num) & ~SPA_ROUND_MASK(num, align))
296#define SPA_ROUND_UP_N(num,align) ((((num)-1) | SPA_ROUND_MASK(num, align))+1)
297
298#define SPA_SCALE32(val,num,denom) \
299({ \
300 uint64_t _val = (val); \
301 uint64_t _denom = (denom); \
302 (uint32_t)(((_val) * (num)) / (_denom)); \
303})
305#define SPA_SCALE32_UP(val,num,denom) \
306({ \
307 uint64_t _val = (val); \
308 uint64_t _denom = (denom); \
309 (uint32_t)(((_val) * (num) + (_denom)-1) / (_denom)); \
311
312/* Macros for getting the next highest power of two, for 32 and 64 bit
313 * unsigned integers. If the integers are already a power of two, the
314 * result is unchanged. Source:
315 * https://graphics.stanford.edu/%7Eseander/bithacks.html#RoundUpPowerOf2 */
317#define SPA_ROUND_UP_POW2_32(num) \
318({ \
319 uint32_t _n = (uint32_t)(num) - 1; \
320 _n |= _n >> 1; \
321 _n |= _n >> 2; \
322 _n |= _n >> 4; \
323 _n |= _n >> 8; \
324 _n |= _n >> 16; \
325 _n + 1; \
326})
327
328#define SPA_ROUND_UP_POW2_64(num) \
329({ \
330 uint64_t _n = (uint64_t)(num) - 1; \
331 _n |= _n >> 1; \
332 _n |= _n >> 2; \
333 _n |= _n >> 4; \
334 _n |= _n >> 8; \
335 _n |= _n >> 16; \
336 _n |= _n >> 32; \
337 _n + 1; \
338})
339
340/* The vast majority of real world machines use a two's complement method.
341 * However, it is still prudent to check for that instead of just assuming.
342 * Fortunately, it is simple to check for this by negating INT_MAX and
343 * subtracting 1 from that. In two's complement, there is one more negative
344 * integer than there are positive integers (due to two's complement having
345 * only one zero representation), and this check exploits that particular
346 * asymmetry.
347 * It is very important to make sure limits.h is included for this to work,
348 * since otherwise, INT_MIN and INT_MAX will be missing, and this will _not_
349 * cause a preprocessor error - instead, the #if check here silently fails,
350 * as if the machine used something other than a two's complement method. */
351#if INT_MIN == (-(INT_MAX) - 1)
352#define SPA_MACHINE_USES_TWOS_COMPLEMENT
353#endif
354
355
356#define SPA_PTR_ALIGNMENT(p,align) ((uintptr_t)(p) & ((align)-1))
357#define SPA_IS_ALIGNED(p,align) (SPA_PTR_ALIGNMENT(p,align) == 0)
358#define SPA_PTR_ALIGN(p,align,type) ((type*)SPA_ROUND_UP_N((intptr_t)(p), (intptr_t)(align)))
359
360#ifndef SPA_LIKELY
361#ifdef __GNUC__
362#define SPA_LIKELY(x) (__builtin_expect(!!(x),1))
363#define SPA_UNLIKELY(x) (__builtin_expect(!!(x),0))
364#else
365#define SPA_LIKELY(x) (x)
366#define SPA_UNLIKELY(x) (x)
367#endif
368#endif
369
370SPA_API_UTILS_DEFS bool spa_ptrinside(const void *p1, size_t s1, const void *p2, size_t s2,
371 size_t *remaining)
372{
373 if (SPA_LIKELY((uintptr_t)p1 <= (uintptr_t)p2 && s2 <= s1 &&
374 (uintptr_t)p2 - (uintptr_t)p1 <= s1 - s2)) {
375 if (remaining != NULL)
376 *remaining = ((uintptr_t)p1 + s1) - ((uintptr_t)p2 + s2);
377 return true;
378 } else {
379 if (remaining != NULL)
380 *remaining = 0;
381 return false;
382 }
383}
384
385SPA_API_UTILS_DEFS bool spa_ptr_inside_and_aligned(const void *p1, size_t s1,
386 const void *p2, size_t s2, size_t align,
387 size_t *remaining)
388{
389 if (SPA_IS_ALIGNED(p2, align)) {
390 return spa_ptrinside(p1, s1, p2, s2, remaining);
391 } else {
392 if (remaining != NULL)
393 *remaining = 0;
394 return false;
395 }
396}
398#define spa_ptr_type_inside(p1, s1, p2, type, remaining) \
399 spa_ptr_inside_and_aligned(p1, s1, p2, sizeof(type), SPA_ALIGNOF(type), remaining)
400
401#define SPA_PTR_TO_INT(p) ((int) ((intptr_t) (p)))
402#define SPA_INT_TO_PTR(u) ((void*) ((intptr_t) (u)))
403
404#define SPA_STRINGIFY_1(...) #__VA_ARGS__
405#define SPA_STRINGIFY(...) SPA_STRINGIFY_1(__VA_ARGS__)
406
407struct spa_error_location {
408 int line;
409 int col;
410 size_t len;
411 const char *location;
412 const char *reason;
413};
414
415#define spa_return_if_fail(expr) \
416 do { \
417 if (SPA_UNLIKELY(!(expr))) { \
418 fprintf(stderr, "'%s' failed at %s:%u %s()\n", \
419 #expr , __FILE__, __LINE__, __func__); \
420 return; \
421 } \
422 } while(false)
423
424#define spa_return_val_if_fail(expr, val) \
425 do { \
426 if (SPA_UNLIKELY(!(expr))) { \
427 fprintf(stderr, "'%s' failed at %s:%u %s()\n", \
428 #expr , __FILE__, __LINE__, __func__); \
429 return (val); \
430 } \
431 } while(false)
432
433#define spa_goto_if_fail(expr, label) \
434 do { \
435 if (SPA_UNLIKELY(!(expr))) { \
436 fprintf(stderr, "'%s' failed at %s:%u %s()\n", \
437 #expr , __FILE__, __LINE__, __func__); \
438 goto label; \
439 } \
440 } while(false)
442
443/* spa_assert_se() is an assert which guarantees side effects of x,
444 * i.e. is never optimized away, regardless of NDEBUG or FASTPATH. */
445#ifndef __COVERITY__
446#define spa_assert_se(expr) \
447 do { \
448 if (SPA_UNLIKELY(!(expr))) { \
449 fprintf(stderr, "'%s' failed at %s:%u %s()\n", \
450 #expr , __FILE__, __LINE__, __func__); \
451 abort(); \
452 } \
453 } while (false)
454#else
455#define spa_assert_se(expr) \
456 do { \
457 int _unique_var = (expr); \
458 if (!_unique_var) \
459 abort(); \
460 } while (false)
461#endif
463/* Does exactly nothing */
464#define spa_nop() do {} while (false)
465
466#ifdef NDEBUG
467#define spa_assert(expr) spa_nop()
468#elif defined (FASTPATH)
469#define spa_assert(expr) spa_assert_se(expr)
470#else
471#define spa_assert(expr) spa_assert_se(expr)
472#endif
473
474#ifdef NDEBUG
475#define spa_assert_not_reached() abort()
476#else
477#define spa_assert_not_reached() \
478 do { \
479 fprintf(stderr, "Code should not be reached at %s:%u %s()\n", \
480 __FILE__, __LINE__, __func__); \
481 abort(); \
482 } while (false)
483#endif
485#define spa_memzero(x,l) (memset((x), 0, (l)))
486#define spa_zero(x) (spa_memzero(&(x), sizeof(x)))
487
488#ifdef SPA_DEBUG_MEMCPY
489#define spa_memcpy(d,s,n) \
490({ \
491 fprintf(stderr, "%s:%u %s() memcpy(%p, %p, %zd)\n", \
492 __FILE__, __LINE__, __func__, (d), (s), (size_t)(n)); \
493 memcpy(d,s,n); \
494})
495#define spa_memmove(d,s,n) \
496({ \
497 fprintf(stderr, "%s:%u %s() memmove(%p, %p, %zd)\n", \
498 __FILE__, __LINE__, __func__, (d), (s), (size_t)(n)); \
499 memmove(d,s,n); \
500})
501#else
502#define spa_memcpy(d,s,n) memcpy(d,s,n)
503#define spa_memmove(d,s,n) memmove(d,s,n)
504#endif
506#define spa_aprintf(_fmt, ...) \
507({ \
508 char *_strp; \
509 if (asprintf(&(_strp), (_fmt), ## __VA_ARGS__ ) == -1) \
510 _strp = NULL; \
511 _strp; \
512})
513
514#define spa_alloca(n, size, max_size) \
515({ \
516 void *_res = NULL; \
517 if ((size_t)n > (size_t)max_size / (size_t)size) \
518 errno = ENOMEM; \
519 else \
520 _res = alloca((size_t)n * (size_t)size); \
521 _res; \
522})
523
528#ifdef __cplusplus
529} /* extern "C" */
530#endif
531
532#endif /* SPA_UTILS_DEFS_H */
SPA_API_UTILS_DEFS bool spa_ptr_inside_and_aligned(const void *p1, size_t s1, const void *p2, size_t s2, size_t align, size_t *remaining)
Definition defs.h:462
#define SPA_API_UTILS_DEFS
Definition defs.h:329
#define SPA_LIKELY(x)
Definition defs.h:441
spa_direction
Definition defs.h:107
SPA_API_UTILS_DEFS bool spa_ptrinside(const void *p1, size_t s1, const void *p2, size_t s2, size_t *remaining)
Definition defs.h:447
#define SPA_IS_ALIGNED(p, align)
Definition defs.h:429
@ SPA_DIRECTION_INPUT
Definition defs.h:108
@ SPA_DIRECTION_OUTPUT
Definition defs.h:109
spa/utils/string.h
Definition defs.h:488
int line
Definition defs.h:489
const char * location
Definition defs.h:492
int col
Definition defs.h:490
size_t len
Definition defs.h:491
const char * reason
Definition defs.h:493
Definition defs.h:138
uint32_t num
Definition defs.h:139
uint32_t denom
Definition defs.h:140
Definition defs.h:124
int32_t y
Definition defs.h:126
int32_t x
Definition defs.h:125
Definition defs.h:117
uint32_t width
Definition defs.h:118
uint32_t height
Definition defs.h:119
Definition defs.h:131
struct spa_point position
Definition defs.h:132
struct spa_rectangle size
Definition defs.h:133