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/cvs/OpenCL/OpenCL.xs
Revision: 1.73
Committed: Sat May 5 13:30:07 2012 UTC (12 years ago) by root
Branch: MAIN
Changes since 1.72: +9 -0 lines
Log Message:
*** empty log message ***

File Contents

# Content
1 #include "EXTERN.h"
2 #include "perl.h"
3 #include "XSUB.h"
4
5 #include "ecb.h"//D
6
7 #define X_STACKSIZE sizeof (void *) * 512 * 1024 // 2-4mb should be enough, really
8 #include "xthread.h"
9 #include "schmorp.h"
10
11 #ifdef I_DLFCN
12 #include <dlfcn.h>
13 #endif
14
15 // how stupid is that, the 1.2 header files define CL_VERSION_1_1,
16 // but then fail to define the api functions unless you ALSO define
17 // this. This breaks 100% of the opencl 1.1 apps, for what reason?
18 // after all, the functions are deprecated, not removed.
19 // in addition, you cannot test for this in any future-proof way.
20 // each time a new opencl version comes out, you need to make a new
21 // release.
22 #define CL_USE_DEPRECATED_OPENCL_1_2_APIS /* just guessing, you stupid idiots */
23
24 #ifndef PREFER_1_1
25 #define PREFER_1_1 1
26 #endif
27
28 #if PREFER_1_1
29 #define CL_USE_DEPRECATED_OPENCL_1_1_APIS
30 #endif
31
32 #ifdef __APPLE__
33 #include <OpenCL/opencl.h>
34 #else
35 #include <CL/opencl.h>
36 #endif
37
38 #ifndef CL_VERSION_1_2
39 #undef PREFER_1_1
40 #define PREFER_1_1 1
41 #endif
42
43 typedef cl_platform_id OpenCL__Platform;
44 typedef cl_device_id OpenCL__Device;
45 typedef cl_device_id OpenCL__SubDevice;
46 typedef cl_context OpenCL__Context;
47 typedef cl_command_queue OpenCL__Queue;
48 typedef cl_mem OpenCL__Memory;
49 typedef cl_mem OpenCL__Buffer;
50 typedef cl_mem OpenCL__BufferObj;
51 typedef cl_mem OpenCL__Image;
52 typedef cl_mem OpenCL__Memory_ornull;
53 typedef cl_mem OpenCL__Buffer_ornull;
54 typedef cl_mem OpenCL__Image_ornull;
55 typedef cl_sampler OpenCL__Sampler;
56 typedef cl_program OpenCL__Program;
57 typedef cl_kernel OpenCL__Kernel;
58 typedef cl_event OpenCL__Event;
59 typedef cl_event OpenCL__UserEvent;
60
61 typedef struct mapped * OpenCL__Mapped;
62
63 static HV
64 *stash_platform,
65 *stash_device,
66 *stash_subdevice,
67 *stash_context,
68 *stash_queue,
69 *stash_program,
70 *stash_kernel,
71 *stash_sampler,
72 *stash_event,
73 *stash_userevent,
74 *stash_memory,
75 *stash_buffer,
76 *stash_bufferobj,
77 *stash_image,
78 *stash_image1d,
79 *stash_image1darray,
80 *stash_image1dbuffer,
81 *stash_image2d,
82 *stash_image2darray,
83 *stash_image3d,
84 *stash_mapped,
85 *stash_mappedbuffer,
86 *stash_mappedimage;
87
88 /*****************************************************************************/
89
90 // name must include a leading underscore
91 // all of this horrors would be unneceesary if somebody wrote a proper OpenGL module
92 // for perl. doh.
93 static void *
94 glsym (const char *name)
95 {
96 void *fun = 0;
97
98 #if defined I_DLFCN && defined RTLD_DEFAULT
99 fun = dlsym (RTLD_DEFAULT, name + 1);
100 if (!fun) fun = dlsym (RTLD_DEFAULT, name);
101
102 if (!fun)
103 {
104 static void *libgl;
105 static const char *glso[] = {
106 "libGL.so.1",
107 "libGL.so.3",
108 "libGL.so.4.0",
109 "libGL.so",
110 "/usr/lib/libGL.so",
111 "/usr/X11R6/lib/libGL.1.dylib"
112 };
113 int i;
114
115 for (i = 0; !libgl && i < sizeof (glso) / sizeof (glso [0]); ++i)
116 {
117 libgl = dlopen (glso [i], RTLD_LAZY);
118 if (libgl)
119 break;
120 }
121
122 if (libgl)
123 {
124 fun = dlsym (libgl, name + 1);
125 if (!fun) fun = dlsym (libgl, name);
126 }
127 }
128 #endif
129
130 return fun;
131 }
132
133 /*****************************************************************************/
134
135 /* up to two temporary buffers */
136 static void * ecb_noinline
137 tmpbuf (size_t size)
138 {
139 enum { buffers = 4 };
140 static int idx;
141 static void *buf [buffers];
142 static size_t len [buffers];
143
144 idx = (idx + 1) % buffers;
145
146 if (len [idx] < size)
147 {
148 free (buf [idx]);
149 len [idx] = ((size + 31) & ~4095) + 4096 - 32;
150 buf [idx] = malloc (len [idx]);
151 }
152
153 return buf [idx];
154 }
155
156 static const char * ecb_noinline
157 cv_get_name (CV *cv)
158 {
159 static char fullname [256];
160
161 GV *gv = CvGV (cv); // gv better be nonzero
162
163 HV *stash = GvSTASH (gv);
164 const char *hvname = HvNAME_get (stash); // stash also better be nonzero
165 const char *gvname = GvNAME (gv);
166
167 snprintf (fullname, sizeof (fullname), "%s::%s", hvname, gvname);
168 return fullname;
169 }
170
171 /*****************************************************************************/
172
173 typedef struct
174 {
175 IV iv;
176 const char *name;
177 #define const_iv(name) { (IV)CL_ ## name, # name },
178 } ivstr;
179
180 static const char *
181 iv2str (IV value, const ivstr *base, int count, const char *fallback)
182 {
183 int i;
184 static char strbuf [32];
185
186 for (i = count; i--; )
187 if (base [i].iv == value)
188 return base [i].name;
189
190 snprintf (strbuf, sizeof (strbuf), fallback, (int)value);
191
192 return strbuf;
193 }
194
195 static const char *
196 enum2str (cl_uint value)
197 {
198 static const ivstr enumstr[] = {
199 #include "enumstr.h"
200 };
201
202 return iv2str (value, enumstr, sizeof (enumstr) / sizeof (enumstr [0]), "ENUM(0x%04x)");
203 }
204
205 static const char *
206 err2str (cl_int err)
207 {
208 static const ivstr errstr[] = {
209 #include "errstr.h"
210 };
211
212 return iv2str (err, errstr, sizeof (errstr) / sizeof (errstr [0]), "ERROR(%d)");
213 }
214
215 /*****************************************************************************/
216
217 static cl_int res;
218
219 #define FAIL(name) \
220 croak ("cl" # name ": %s", err2str (res));
221
222 #define NEED_SUCCESS(name,args) \
223 do { \
224 res = cl ## name args; \
225 \
226 if (res) \
227 FAIL (name); \
228 } while (0)
229
230 #define NEED_SUCCESS_ARG(retdecl, name, args) \
231 retdecl = cl ## name args; \
232 if (res) \
233 FAIL (name);
234
235 /*****************************************************************************/
236
237 static SV *
238 new_clobj (HV *stash, IV id)
239 {
240 return sv_2mortal (sv_bless (newRV_noinc (newSViv (id)), stash));
241 }
242
243 #define PUSH_CLOBJ(stash,id) PUSHs (new_clobj ((stash), (IV)(id)))
244 #define XPUSH_CLOBJ(stash,id) XPUSHs (new_clobj ((stash), (IV)(id)))
245
246 /* cl objects are either \$iv, or [$iv, ...] */
247 /* they can be upgraded at runtime to the array form */
248 static void * ecb_noinline
249 SvCLOBJ (CV *cv, const char *svname, SV *sv, const char *pkg)
250 {
251 // sv_derived_from is quite slow :(
252 if (SvROK (sv) && sv_derived_from (sv, pkg))
253 return (void *)SvIV (SvRV (sv));
254
255 croak ("%s: %s is not of type %s", cv_get_name (cv), svname, pkg);
256 }
257
258 // the "no-inherit" version of the above
259 static void * ecb_noinline
260 SvCLOBJ_ni (CV *cv, const char *svname, SV *sv, HV *stash)
261 {
262 if (SvROK (sv) && SvSTASH (SvRV (sv)) == stash)
263 return (void *)SvIV (SvRV (sv));
264
265 croak ("%s: %s is not of type %s", cv_get_name (cv), svname, HvNAME (stash));
266 }
267
268 /*****************************************************************************/
269
270 static cl_context_properties * ecb_noinline
271 SvCONTEXTPROPERTIES (CV *cv, const char *svname, SV *sv, cl_context_properties *extra, int extracount)
272 {
273 if (!sv || !SvOK (sv))
274 if (extra)
275 sv = sv_2mortal (newRV_noinc ((SV *)newAV ())); // slow, but rarely used hopefully
276 else
277 return 0;
278
279 if (SvROK (sv) && SvTYPE (SvRV (sv)) == SVt_PVAV)
280 {
281 AV *av = (AV *)SvRV (sv);
282 int i, len = av_len (av) + 1;
283 cl_context_properties *p = tmpbuf (sizeof (cl_context_properties) * (len + extracount + 1));
284 cl_context_properties *l = p;
285
286 if (len & 1)
287 croak ("%s: %s is not a property list (must contain an even number of elements)", cv_get_name (cv), svname);
288
289 while (extracount--)
290 *l++ = *extra++;
291
292 for (i = 0; i < len; i += 2)
293 {
294 cl_context_properties t = SvIV (*av_fetch (av, i , 0));
295 SV *p_sv = *av_fetch (av, i + 1, 0);
296 cl_context_properties v = SvIV (p_sv); // code below can override
297
298 switch (t)
299 {
300 case CL_CONTEXT_PLATFORM:
301 if (SvROK (p_sv))
302 v = (cl_context_properties)SvCLOBJ (cv, svname, p_sv, "OpenCL::Platform");
303 break;
304
305 case CL_GLX_DISPLAY_KHR:
306 if (!SvOK (p_sv))
307 {
308 void *func = glsym ("_glXGetCurrentDisplay");
309 if (func)
310 v = (cl_context_properties)((void *(*)(void))func)();
311 }
312 break;
313
314 case CL_GL_CONTEXT_KHR:
315 if (!SvOK (p_sv))
316 {
317 void *func = glsym ("_glXGetCurrentContext");
318 if (func)
319 v = (cl_context_properties)((void *(*)(void))func)();
320 }
321 break;
322
323 default:
324 /* unknown property, treat as int */
325 break;
326 }
327
328 *l++ = t;
329 *l++ = v;
330 }
331
332 *l = 0;
333
334 return p;
335 }
336
337 croak ("%s: %s is not a property list (either undef or [type => value, ...])", cv_get_name (cv), svname);
338 }
339
340 // parse an array of CLOBJ into a void ** array in C - works only for CLOBJs whose representation
341 // is a pointer (and only on well-behaved systems).
342 static void * ecb_noinline
343 object_list (CV *cv, int or_undef, const char *argname, SV *arg, const char *klass, cl_uint *rcount)
344 {
345 if (!SvROK (arg) || SvTYPE (SvRV (arg)) != SVt_PVAV)
346 croak ("%s: '%s' parameter must be %sa reference to an array of %s objects",
347 cv_get_name (cv), argname, or_undef ? "undef or " : "", klass);
348
349 AV *av = (AV *)SvRV (arg);
350 void **list = 0;
351 cl_uint count = av_len (av) + 1;
352
353 if (count)
354 {
355 list = tmpbuf (sizeof (*list) * count);
356 int i;
357 for (i = 0; i < count; ++i)
358 list [i] = SvCLOBJ (cv, argname, *av_fetch (av, i, 1), klass);
359 }
360
361 if (!count && !or_undef)
362 croak ("%s: '%s' must contain at least one %s object",
363 cv_get_name (cv), argname, klass);
364
365 *rcount = count;
366 return (void *)list;
367 }
368
369 /*****************************************************************************/
370 /* callback stuff */
371
372 /* default context callback, log to stderr */
373 static void CL_CALLBACK
374 context_default_notify (const char *msg, const void *info, size_t cb, void *data)
375 {
376 fprintf (stderr, "OpenCL Context Notify: %s\n", msg);
377 }
378
379 typedef struct
380 {
381 int free_cb;
382 void (*push)(void *data1, void *data2, void *data3);
383 } eq_vtbl;
384
385 typedef struct eq_item
386 {
387 struct eq_item *next;
388 eq_vtbl *vtbl;
389 SV *cb;
390 void *data1, *data2, *data3;
391 } eq_item;
392
393 static void (*eq_signal_func)(void *signal_arg, int value);
394 static void *eq_signal_arg;
395 static xmutex_t eq_lock = X_MUTEX_INIT;
396 static eq_item *eq_head, *eq_tail;
397
398 static void ecb_noinline
399 eq_enq (eq_vtbl *vtbl, SV *cb, void *data1, void *data2, void *data3)
400 {
401 eq_item *item = malloc (sizeof (eq_item));
402
403 item->next = 0;
404 item->vtbl = vtbl;
405 item->cb = cb;
406 item->data1 = data1;
407 item->data2 = data2;
408 item->data3 = data3;
409
410 X_LOCK (eq_lock);
411
412 *(eq_head ? &eq_tail->next : &eq_head) = item;
413 eq_tail = item;
414
415 X_UNLOCK (eq_lock);
416
417 eq_signal_func (eq_signal_arg, 0);
418 }
419
420 static eq_item *
421 eq_dec (void)
422 {
423 eq_item *res;
424
425 X_LOCK (eq_lock);
426
427 res = eq_head;
428 if (res)
429 eq_head = res->next;
430
431 X_UNLOCK (eq_lock);
432
433 return res;
434 }
435
436 static void
437 eq_poll (void)
438 {
439 eq_item *item;
440
441 while ((item = eq_dec ()))
442 {
443 ENTER;
444 SAVETMPS;
445
446 dSP;
447 PUSHMARK (SP);
448 EXTEND (SP, 2);
449
450 if (item->vtbl->free_cb)
451 sv_2mortal (item->cb);
452
453 PUTBACK;
454 item->vtbl->push (item->data1, item->data2, item->data3);
455
456 SV *cb = item->cb;
457 free (item);
458
459 call_sv (cb, G_DISCARD | G_VOID);
460
461 FREETMPS;
462 LEAVE;
463 }
464 }
465
466 static void
467 eq_poll_interrupt (pTHX_ void *c_arg, int value)
468 {
469 eq_poll ();
470 }
471
472 /*****************************************************************************/
473 /* context notify */
474
475 static void ecb_noinline
476 eq_context_push (void *data1, void *data2, void *data3)
477 {
478 dSP;
479 PUSHs (sv_2mortal (newSVpv (data1, 0)));
480 PUSHs (sv_2mortal (newSVpvn (data2, (STRLEN)data3)));
481 PUTBACK;
482
483 free (data1);
484 free (data2);
485 }
486
487 static eq_vtbl eq_context_vtbl = { 0, eq_context_push };
488
489 static void CL_CALLBACK
490 eq_context_notify (const char *msg, const void *pvt, size_t cb, void *user_data)
491 {
492 void *pvt_copy = malloc (cb);
493 memcpy (pvt_copy, pvt, cb);
494 eq_enq (&eq_context_vtbl, user_data, strdup (msg), pvt_copy, (void *)cb);
495 }
496
497 #define CONTEXT_NOTIFY_CALLBACK \
498 void (CL_CALLBACK *pfn_notify)(const char *, const void *, size_t, void *) = context_default_notify; \
499 void *user_data = 0; \
500 \
501 if (SvOK (notify)) \
502 { \
503 pfn_notify = eq_context_notify; \
504 user_data = s_get_cv (notify); \
505 }
506
507 static SV * ecb_noinline
508 new_clobj_context (cl_context ctx, void *user_data)
509 {
510 SV *sv = new_clobj (stash_context, (IV)ctx);
511
512 if (user_data)
513 sv_magicext (SvRV (sv), user_data, PERL_MAGIC_ext, 0, 0, 0);
514
515 return sv;
516 }
517
518 #define XPUSH_CLOBJ_CONTEXT XPUSHs (new_clobj_context (ctx, user_data));
519
520 /*****************************************************************************/
521 /* build/compile/link notify */
522
523 static void
524 eq_program_push (void *data1, void *data2, void *data3)
525 {
526 dSP;
527 PUSH_CLOBJ (stash_program, data1);
528 PUTBACK;
529 }
530
531 static eq_vtbl eq_program_vtbl = { 1, eq_program_push };
532
533 static void CL_CALLBACK
534 eq_program_notify (cl_program program, void *user_data)
535 {
536 clRetainProgram (program);
537
538 eq_enq (&eq_program_vtbl, user_data, (void *)program, 0, 0);
539 }
540
541 typedef void (CL_CALLBACK *program_callback)(cl_program program, void *user_data);
542
543 static program_callback ecb_noinline
544 make_program_callback (SV *notify, void **ruser_data)
545 {
546 if (SvOK (notify))
547 {
548 *ruser_data = SvREFCNT_inc (s_get_cv (notify));
549 return eq_program_notify;
550 }
551 else
552 {
553 *ruser_data = 0;
554 return 0;
555 }
556 }
557
558 struct build_args
559 {
560 cl_program program;
561 char *options;
562 void *user_data;
563 cl_uint num_devices;
564 };
565
566 X_THREAD_PROC (build_program_thread)
567 {
568 struct build_args *arg = thr_arg;
569
570 clBuildProgram (arg->program, arg->num_devices, arg->num_devices ? (void *)(arg + 1) : 0, arg->options, 0, 0);
571
572 if (arg->user_data)
573 eq_program_notify (arg->program, arg->user_data);
574 else
575 clReleaseProgram (arg->program);
576
577 free (arg->options);
578 free (arg);
579
580 return 0;
581 }
582
583 static void
584 build_program_async (cl_program program, cl_uint num_devices, const cl_device_id *device_list, const char *options, void *user_data)
585 {
586 struct build_args *arg = malloc (sizeof (struct build_args) + sizeof (*device_list) * num_devices);
587
588 arg->program = program;
589 arg->options = strdup (options);
590 arg->user_data = user_data;
591 arg->num_devices = num_devices;
592 memcpy (arg + 1, device_list, sizeof (*device_list) * num_devices);
593
594 xthread_t id;
595 thread_create (&id, build_program_thread, arg);
596 }
597
598 /*****************************************************************************/
599 /* event objects */
600
601 static void
602 eq_event_push (void *data1, void *data2, void *data3)
603 {
604 dSP;
605 PUSH_CLOBJ (stash_event, data1);
606 PUSHs (sv_2mortal (newSViv ((IV)data2)));
607 PUTBACK;
608 }
609
610 static eq_vtbl eq_event_vtbl = { 1, eq_event_push };
611
612 static void CL_CALLBACK
613 eq_event_notify (cl_event event, cl_int event_command_exec_status, void *user_data)
614 {
615 clRetainEvent (event);
616 eq_enq (&eq_event_vtbl, user_data, (void *)event, (void *)(IV)event_command_exec_status, 0);
617 }
618
619 /*****************************************************************************/
620 /* utilities for XS code */
621
622 static size_t
623 img_row_pitch (cl_mem img)
624 {
625 size_t res;
626 clGetImageInfo (img, CL_IMAGE_ROW_PITCH, sizeof (res), &res, 0);
627 return res;
628 }
629
630 static cl_event * ecb_noinline
631 event_list (CV *cv, SV **items, cl_uint *rcount, cl_event extra)
632 {
633 cl_uint count = *rcount;
634
635 if (count > 0x7fffffffU) // yeah, it's a hack - the caller might have underflowed
636 *rcount = count = 0;
637
638 if (!count && !extra)
639 return 0;
640
641 cl_event *list = tmpbuf (sizeof (cl_event) * (count + 1));
642 int i = 0;
643
644 while (count--)
645 if (SvOK (items [count]))
646 list [i++] = SvCLOBJ (cv, "wait_events", items [count], "OpenCL::Event");
647
648 if (extra)
649 list [i++] = extra;
650
651 *rcount = i;
652
653 return i ? list : 0;
654 }
655
656 #define EVENT_LIST(skip) \
657 cl_uint event_list_count = items - (skip); \
658 cl_event *event_list_ptr = event_list (cv, &ST (skip), &event_list_count, 0)
659
660 #define INFO(class) \
661 { \
662 size_t size; \
663 NEED_SUCCESS (Get ## class ## Info, (self, name, 0, 0, &size)); \
664 SV *sv = sv_2mortal (newSV (size)); \
665 SvUPGRADE (sv, SVt_PV); \
666 SvPOK_only (sv); \
667 SvCUR_set (sv, size); \
668 NEED_SUCCESS (Get ## class ## Info, (self, name, size, SvPVX (sv), 0)); \
669 XPUSHs (sv); \
670 }
671
672 /*****************************************************************************/
673 /* mapped_xxx */
674
675 static OpenCL__Mapped
676 SvMAPPED (SV *sv)
677 {
678 // no typechecking atm., keep your fingers crossed
679 return (OpenCL__Mapped)SvMAGIC (SvRV (sv))->mg_ptr;
680 }
681
682 struct mapped
683 {
684 cl_command_queue queue;
685 cl_mem memobj;
686 void *ptr;
687 size_t cb;
688 cl_event event;
689 size_t row_pitch;
690 size_t slice_pitch;
691 };
692
693 static SV *
694 mapped_new (HV *stash, cl_command_queue queue, cl_mem memobj, cl_map_flags flags, void *ptr, size_t cb, cl_event ev, size_t row_pitch, size_t slice_pitch)
695 {
696 SV *data = newSV (0);
697 SvUPGRADE (data, SVt_PVMG);
698
699 OpenCL__Mapped mapped;
700 New (0, mapped, 1, struct mapped);
701
702 clRetainCommandQueue (queue);
703
704 mapped->queue = queue;
705 mapped->memobj = memobj;
706 mapped->ptr = ptr;
707 mapped->cb = cb;
708 mapped->event = ev;
709 mapped->row_pitch = row_pitch;
710 mapped->slice_pitch = slice_pitch;
711
712 sv_magicext (data, 0, PERL_MAGIC_ext, 0, (char *)mapped, 0);
713
714 if (SvLEN (data))
715 Safefree (data);
716
717 SvPVX (data) = (char *)ptr;
718 SvCUR_set (data, cb);
719 SvLEN_set (data, 0);
720 SvPOK_only (data);
721
722 SV *obj = sv_2mortal (sv_bless (newRV_noinc (data), stash));
723
724 if (!(flags & CL_MAP_WRITE))
725 SvREADONLY_on (data);
726
727 return obj;
728 }
729
730 static void
731 mapped_detach (SV *sv, OpenCL__Mapped mapped)
732 {
733 SV *data = SvRV (sv);
734
735 // the next check checks both before AND after detach, where SvPVX should STILL be 0
736 if (SvPVX (data) != (char *)mapped->ptr)
737 warn ("FATAL: OpenCL memory mapped scalar changed location, detected");
738 else
739 {
740 SvREADONLY_off (data);
741 SvCUR_set (data, 0);
742 SvPVX (data) = 0;
743 SvOK_off (data);
744 }
745
746 mapped->ptr = 0;
747 }
748
749 static void
750 mapped_unmap (CV *cv, SV *self, OpenCL__Mapped mapped, cl_command_queue queue, SV **wait_list, cl_uint event_list_count)
751 {
752 cl_event *event_list_ptr = event_list (cv, wait_list, &event_list_count, mapped->event);
753 cl_event ev;
754
755 NEED_SUCCESS (EnqueueUnmapMemObject, (queue, mapped->memobj, mapped->ptr, event_list_count, event_list_ptr, &ev));
756
757 clReleaseEvent (mapped->event);
758 mapped->event = ev;
759
760 mapped_detach (self, mapped);
761 }
762
763 /*****************************************************************************/
764
765 MODULE = OpenCL PACKAGE = OpenCL
766
767 PROTOTYPES: ENABLE
768
769 void
770 poll ()
771 CODE:
772 eq_poll ();
773
774 void
775 _eq_initialise (IV func, IV arg)
776 CODE:
777 eq_signal_func = (void (*)(void *, int))func;
778 eq_signal_arg = (void*)arg;
779
780 BOOT:
781 {
782 HV *stash = gv_stashpv ("OpenCL", 1);
783 static const ivstr *civ, const_iv[] = {
784 { sizeof (cl_char ), "SIZEOF_CHAR" },
785 { sizeof (cl_uchar ), "SIZEOF_UCHAR" },
786 { sizeof (cl_short ), "SIZEOF_SHORT" },
787 { sizeof (cl_ushort), "SIZEOF_USHORT" },
788 { sizeof (cl_int ), "SIZEOF_INT" },
789 { sizeof (cl_uint ), "SIZEOF_UINT" },
790 { sizeof (cl_long ), "SIZEOF_LONG" },
791 { sizeof (cl_ulong ), "SIZEOF_ULONG" },
792 { sizeof (cl_half ), "SIZEOF_HALF" },
793 { sizeof (cl_float ), "SIZEOF_FLOAT" },
794 { sizeof (cl_double), "SIZEOF_DOUBLE" },
795 { PREFER_1_1 , "PREFER_1_1" },
796 #include "constiv.h"
797 };
798
799 for (civ = const_iv + sizeof (const_iv) / sizeof (const_iv [0]); civ > const_iv; civ--)
800 newCONSTSUB (stash, (char *)civ[-1].name, newSViv (civ[-1].iv));
801
802 stash_platform = gv_stashpv ("OpenCL::Platform", GV_ADD);
803 stash_device = gv_stashpv ("OpenCL::Device", GV_ADD);
804 stash_subdevice = gv_stashpv ("OpenCL::SubDevice", GV_ADD);
805 stash_context = gv_stashpv ("OpenCL::Context", GV_ADD);
806 stash_queue = gv_stashpv ("OpenCL::Queue", GV_ADD);
807 stash_program = gv_stashpv ("OpenCL::Program", GV_ADD);
808 stash_kernel = gv_stashpv ("OpenCL::Kernel", GV_ADD);
809 stash_sampler = gv_stashpv ("OpenCL::Sampler", GV_ADD);
810 stash_event = gv_stashpv ("OpenCL::Event", GV_ADD);
811 stash_userevent = gv_stashpv ("OpenCL::UserEvent", GV_ADD);
812 stash_memory = gv_stashpv ("OpenCL::Memory", GV_ADD);
813 stash_buffer = gv_stashpv ("OpenCL::Buffer", GV_ADD);
814 stash_bufferobj = gv_stashpv ("OpenCL::BufferObj", GV_ADD);
815 stash_image = gv_stashpv ("OpenCL::Image", GV_ADD);
816 stash_image1d = gv_stashpv ("OpenCL::Image1D", GV_ADD);
817 stash_image1darray = gv_stashpv ("OpenCL::Image1DArray", GV_ADD);
818 stash_image1dbuffer = gv_stashpv ("OpenCL::Image1DBuffer", GV_ADD);
819 stash_image2d = gv_stashpv ("OpenCL::Image2D", GV_ADD);
820 stash_image2darray = gv_stashpv ("OpenCL::Image2DArray", GV_ADD);
821 stash_image3d = gv_stashpv ("OpenCL::Image3D", GV_ADD);
822 stash_mapped = gv_stashpv ("OpenCL::Mapped", GV_ADD);
823 stash_mappedbuffer = gv_stashpv ("OpenCL::MappedBuffer", GV_ADD);
824 stash_mappedimage = gv_stashpv ("OpenCL::MappedImage", GV_ADD);
825
826 sv_setiv (perl_get_sv ("OpenCL::POLL_FUNC", TRUE), (IV)eq_poll_interrupt);
827 }
828
829 cl_int
830 errno ()
831 CODE:
832 RETVAL = res;
833 OUTPUT:
834 RETVAL
835
836 const char *
837 err2str (cl_int err = res)
838
839 const char *
840 enum2str (cl_uint value)
841
842 void
843 platforms ()
844 PPCODE:
845 cl_platform_id *list;
846 cl_uint count;
847 int i;
848
849 NEED_SUCCESS (GetPlatformIDs, (0, 0, &count));
850 list = tmpbuf (sizeof (*list) * count);
851 NEED_SUCCESS (GetPlatformIDs, (count, list, 0));
852
853 EXTEND (SP, count);
854 for (i = 0; i < count; ++i)
855 PUSH_CLOBJ (stash_platform, list [i]);
856
857 void
858 context_from_type (cl_context_properties *properties = 0, cl_device_type type = CL_DEVICE_TYPE_DEFAULT, SV *notify = &PL_sv_undef)
859 PPCODE:
860 CONTEXT_NOTIFY_CALLBACK;
861 NEED_SUCCESS_ARG (cl_context ctx, CreateContextFromType, (properties, type, pfn_notify, user_data, &res));
862 XPUSH_CLOBJ_CONTEXT;
863
864 void
865 context (cl_context_properties *properties, SV *devices, SV *notify = &PL_sv_undef)
866 PPCODE:
867 cl_uint device_count;
868 cl_device_id *device_list = object_list (cv, 0, "devices", devices, "OpenCL::Device", &device_count);
869
870 CONTEXT_NOTIFY_CALLBACK;
871 NEED_SUCCESS_ARG (cl_context ctx, CreateContext, (properties, device_count, device_list, pfn_notify, user_data, &res));
872 XPUSH_CLOBJ_CONTEXT;
873
874 void
875 wait_for_events (...)
876 CODE:
877 EVENT_LIST (0);
878 NEED_SUCCESS (WaitForEvents, (event_list_count, event_list_ptr));
879
880 PROTOTYPES: DISABLE
881
882 MODULE = OpenCL PACKAGE = OpenCL::Platform
883
884 void
885 info (OpenCL::Platform self, cl_platform_info name)
886 PPCODE:
887 INFO (Platform)
888
889 void
890 unload_compiler (OpenCL::Platform self)
891 CODE:
892 #if CL_VERSION_1_2
893 clUnloadPlatformCompiler (self);
894 #endif
895
896 #BEGIN:platform
897
898 void
899 profile (OpenCL::Platform self)
900 ALIAS:
901 profile = CL_PLATFORM_PROFILE
902 version = CL_PLATFORM_VERSION
903 name = CL_PLATFORM_NAME
904 vendor = CL_PLATFORM_VENDOR
905 extensions = CL_PLATFORM_EXTENSIONS
906 PPCODE:
907 size_t size;
908 NEED_SUCCESS (GetPlatformInfo, (self, ix, 0, 0, &size));
909 char *value = tmpbuf (size);
910 NEED_SUCCESS (GetPlatformInfo, (self, ix, size, value, 0));
911 EXTEND (SP, 1);
912 const int i = 0;
913 PUSHs (sv_2mortal (newSVpv (value, 0)));
914
915 #END:platform
916
917 void
918 devices (OpenCL::Platform self, cl_device_type type = CL_DEVICE_TYPE_ALL)
919 PPCODE:
920 cl_device_id *list;
921 cl_uint count;
922 int i;
923
924 NEED_SUCCESS (GetDeviceIDs, (self, type, 0, 0, &count));
925 list = tmpbuf (sizeof (*list) * count);
926 NEED_SUCCESS (GetDeviceIDs, (self, type, count, list, 0));
927
928 EXTEND (SP, count);
929 for (i = 0; i < count; ++i)
930 PUSH_CLOBJ (stash_device, list [i]);
931
932 void
933 context (OpenCL::Platform self, SV *properties, SV *devices, SV *notify = &PL_sv_undef)
934 PPCODE:
935 cl_context_properties extra[] = { CL_CONTEXT_PLATFORM, (cl_context_properties)self };
936 cl_context_properties *props = SvCONTEXTPROPERTIES (cv, "properties", properties, extra, 2);
937
938 cl_uint device_count;
939 cl_device_id *device_list = object_list (cv, 0, "devices", devices, "OpenCL::Device", &device_count);
940
941 CONTEXT_NOTIFY_CALLBACK;
942 NEED_SUCCESS_ARG (cl_context ctx, CreateContext, (props, device_count, device_list, pfn_notify, user_data, &res));
943 XPUSH_CLOBJ_CONTEXT;
944
945 void
946 context_from_type (OpenCL::Platform self, SV *properties = 0, cl_device_type type = CL_DEVICE_TYPE_DEFAULT, SV *notify = &PL_sv_undef)
947 PPCODE:
948 cl_context_properties extra[] = { CL_CONTEXT_PLATFORM, (cl_context_properties)self };
949 cl_context_properties *props = SvCONTEXTPROPERTIES (cv, "properties", properties, extra, 2);
950
951 CONTEXT_NOTIFY_CALLBACK;
952 NEED_SUCCESS_ARG (cl_context ctx, CreateContextFromType, (props, type, pfn_notify, user_data, &res));
953 XPUSH_CLOBJ_CONTEXT;
954
955 MODULE = OpenCL PACKAGE = OpenCL::Device
956
957 void
958 info (OpenCL::Device self, cl_device_info name)
959 PPCODE:
960 INFO (Device)
961
962 #if CL_VERSION_1_2
963
964 void
965 sub_devices (OpenCL::Device self, SV *properties)
966 PPCODE:
967 if (!SvROK (properties) || SvTYPE (SvRV (properties)) != SVt_PVAV)
968 croak ("OpenCL::Device::sub_devices: properties must be specified as reference to an array of property-value pairs");
969
970 properties = SvRV (properties);
971
972 cl_uint count = av_len ((AV *)properties) + 1;
973 cl_device_partition_property *props = tmpbuf (sizeof (*props) * count + 1);
974
975 int i;
976 for (i = 0; i < count; ++i)
977 props [i] = (cl_device_partition_property)SvIV (*av_fetch ((AV *)properties, i, 0));
978
979 props [count] = 0;
980
981 cl_uint num_devices;
982 NEED_SUCCESS (CreateSubDevices, (self, props, 0, 0, &num_devices));
983 cl_device_id *list = tmpbuf (sizeof (*list) * num_devices);
984 NEED_SUCCESS (CreateSubDevices, (self, props, num_devices, list, 0));
985
986 EXTEND (SP, num_devices);
987 for (i = 0; i < count; ++i)
988 PUSH_CLOBJ (stash_subdevice, list [i]);
989
990 #endif
991
992 #BEGIN:device
993
994 void
995 type (OpenCL::Device self)
996 PPCODE:
997 cl_device_type value [1];
998 NEED_SUCCESS (GetDeviceInfo, (self, CL_DEVICE_TYPE, sizeof (value), value, 0));
999 EXTEND (SP, 1);
1000 const int i = 0;
1001 PUSHs (sv_2mortal (newSVuv (value [i])));
1002
1003 void
1004 vendor_id (OpenCL::Device self)
1005 ALIAS:
1006 vendor_id = CL_DEVICE_VENDOR_ID
1007 max_compute_units = CL_DEVICE_MAX_COMPUTE_UNITS
1008 max_work_item_dimensions = CL_DEVICE_MAX_WORK_ITEM_DIMENSIONS
1009 preferred_vector_width_char = CL_DEVICE_PREFERRED_VECTOR_WIDTH_CHAR
1010 preferred_vector_width_short = CL_DEVICE_PREFERRED_VECTOR_WIDTH_SHORT
1011 preferred_vector_width_int = CL_DEVICE_PREFERRED_VECTOR_WIDTH_INT
1012 preferred_vector_width_long = CL_DEVICE_PREFERRED_VECTOR_WIDTH_LONG
1013 preferred_vector_width_float = CL_DEVICE_PREFERRED_VECTOR_WIDTH_FLOAT
1014 preferred_vector_width_double = CL_DEVICE_PREFERRED_VECTOR_WIDTH_DOUBLE
1015 max_clock_frequency = CL_DEVICE_MAX_CLOCK_FREQUENCY
1016 max_read_image_args = CL_DEVICE_MAX_READ_IMAGE_ARGS
1017 max_write_image_args = CL_DEVICE_MAX_WRITE_IMAGE_ARGS
1018 image_support = CL_DEVICE_IMAGE_SUPPORT
1019 max_samplers = CL_DEVICE_MAX_SAMPLERS
1020 mem_base_addr_align = CL_DEVICE_MEM_BASE_ADDR_ALIGN
1021 min_data_type_align_size = CL_DEVICE_MIN_DATA_TYPE_ALIGN_SIZE
1022 global_mem_cacheline_size = CL_DEVICE_GLOBAL_MEM_CACHELINE_SIZE
1023 max_constant_args = CL_DEVICE_MAX_CONSTANT_ARGS
1024 preferred_vector_width_half = CL_DEVICE_PREFERRED_VECTOR_WIDTH_HALF
1025 native_vector_width_char = CL_DEVICE_NATIVE_VECTOR_WIDTH_CHAR
1026 native_vector_width_short = CL_DEVICE_NATIVE_VECTOR_WIDTH_SHORT
1027 native_vector_width_int = CL_DEVICE_NATIVE_VECTOR_WIDTH_INT
1028 native_vector_width_long = CL_DEVICE_NATIVE_VECTOR_WIDTH_LONG
1029 native_vector_width_float = CL_DEVICE_NATIVE_VECTOR_WIDTH_FLOAT
1030 native_vector_width_double = CL_DEVICE_NATIVE_VECTOR_WIDTH_DOUBLE
1031 native_vector_width_half = CL_DEVICE_NATIVE_VECTOR_WIDTH_HALF
1032 reference_count_ext = CL_DEVICE_REFERENCE_COUNT_EXT
1033 PPCODE:
1034 cl_uint value [1];
1035 NEED_SUCCESS (GetDeviceInfo, (self, ix, sizeof (value), value, 0));
1036 EXTEND (SP, 1);
1037 const int i = 0;
1038 PUSHs (sv_2mortal (newSVuv (value [i])));
1039
1040 void
1041 max_work_group_size (OpenCL::Device self)
1042 ALIAS:
1043 max_work_group_size = CL_DEVICE_MAX_WORK_GROUP_SIZE
1044 image2d_max_width = CL_DEVICE_IMAGE2D_MAX_WIDTH
1045 image2d_max_height = CL_DEVICE_IMAGE2D_MAX_HEIGHT
1046 image3d_max_width = CL_DEVICE_IMAGE3D_MAX_WIDTH
1047 image3d_max_height = CL_DEVICE_IMAGE3D_MAX_HEIGHT
1048 image3d_max_depth = CL_DEVICE_IMAGE3D_MAX_DEPTH
1049 max_parameter_size = CL_DEVICE_MAX_PARAMETER_SIZE
1050 profiling_timer_resolution = CL_DEVICE_PROFILING_TIMER_RESOLUTION
1051 PPCODE:
1052 size_t value [1];
1053 NEED_SUCCESS (GetDeviceInfo, (self, ix, sizeof (value), value, 0));
1054 EXTEND (SP, 1);
1055 const int i = 0;
1056 PUSHs (sv_2mortal (newSVuv (value [i])));
1057
1058 void
1059 max_work_item_sizes (OpenCL::Device self)
1060 PPCODE:
1061 size_t size;
1062 NEED_SUCCESS (GetDeviceInfo, (self, CL_DEVICE_MAX_WORK_ITEM_SIZES, 0, 0, &size));
1063 size_t *value = tmpbuf (size);
1064 NEED_SUCCESS (GetDeviceInfo, (self, CL_DEVICE_MAX_WORK_ITEM_SIZES, size, value, 0));
1065 int i, n = size / sizeof (*value);
1066 EXTEND (SP, n);
1067 for (i = 0; i < n; ++i)
1068 PUSHs (sv_2mortal (newSVuv (value [i])));
1069
1070 void
1071 address_bits (OpenCL::Device self)
1072 PPCODE:
1073 cl_bitfield value [1];
1074 NEED_SUCCESS (GetDeviceInfo, (self, CL_DEVICE_ADDRESS_BITS, sizeof (value), value, 0));
1075 EXTEND (SP, 1);
1076 const int i = 0;
1077 PUSHs (sv_2mortal (newSVuv (value [i])));
1078
1079 void
1080 max_mem_alloc_size (OpenCL::Device self)
1081 ALIAS:
1082 max_mem_alloc_size = CL_DEVICE_MAX_MEM_ALLOC_SIZE
1083 global_mem_cache_size = CL_DEVICE_GLOBAL_MEM_CACHE_SIZE
1084 global_mem_size = CL_DEVICE_GLOBAL_MEM_SIZE
1085 max_constant_buffer_size = CL_DEVICE_MAX_CONSTANT_BUFFER_SIZE
1086 local_mem_size = CL_DEVICE_LOCAL_MEM_SIZE
1087 PPCODE:
1088 cl_ulong value [1];
1089 NEED_SUCCESS (GetDeviceInfo, (self, ix, sizeof (value), value, 0));
1090 EXTEND (SP, 1);
1091 const int i = 0;
1092 PUSHs (sv_2mortal (newSVuv (value [i])));
1093
1094 void
1095 single_fp_config (OpenCL::Device self)
1096 ALIAS:
1097 single_fp_config = CL_DEVICE_SINGLE_FP_CONFIG
1098 double_fp_config = CL_DEVICE_DOUBLE_FP_CONFIG
1099 half_fp_config = CL_DEVICE_HALF_FP_CONFIG
1100 PPCODE:
1101 cl_device_fp_config value [1];
1102 NEED_SUCCESS (GetDeviceInfo, (self, ix, sizeof (value), value, 0));
1103 EXTEND (SP, 1);
1104 const int i = 0;
1105 PUSHs (sv_2mortal (newSVuv (value [i])));
1106
1107 void
1108 global_mem_cache_type (OpenCL::Device self)
1109 PPCODE:
1110 cl_device_mem_cache_type value [1];
1111 NEED_SUCCESS (GetDeviceInfo, (self, CL_DEVICE_GLOBAL_MEM_CACHE_TYPE, sizeof (value), value, 0));
1112 EXTEND (SP, 1);
1113 const int i = 0;
1114 PUSHs (sv_2mortal (newSVuv (value [i])));
1115
1116 void
1117 local_mem_type (OpenCL::Device self)
1118 PPCODE:
1119 cl_device_local_mem_type value [1];
1120 NEED_SUCCESS (GetDeviceInfo, (self, CL_DEVICE_LOCAL_MEM_TYPE, sizeof (value), value, 0));
1121 EXTEND (SP, 1);
1122 const int i = 0;
1123 PUSHs (sv_2mortal (newSVuv (value [i])));
1124
1125 void
1126 error_correction_support (OpenCL::Device self)
1127 ALIAS:
1128 error_correction_support = CL_DEVICE_ERROR_CORRECTION_SUPPORT
1129 endian_little = CL_DEVICE_ENDIAN_LITTLE
1130 available = CL_DEVICE_AVAILABLE
1131 compiler_available = CL_DEVICE_COMPILER_AVAILABLE
1132 host_unified_memory = CL_DEVICE_HOST_UNIFIED_MEMORY
1133 PPCODE:
1134 cl_bool value [1];
1135 NEED_SUCCESS (GetDeviceInfo, (self, ix, sizeof (value), value, 0));
1136 EXTEND (SP, 1);
1137 const int i = 0;
1138 PUSHs (sv_2mortal (value [i] ? &PL_sv_yes : &PL_sv_no));
1139
1140 void
1141 execution_capabilities (OpenCL::Device self)
1142 PPCODE:
1143 cl_device_exec_capabilities value [1];
1144 NEED_SUCCESS (GetDeviceInfo, (self, CL_DEVICE_EXECUTION_CAPABILITIES, sizeof (value), value, 0));
1145 EXTEND (SP, 1);
1146 const int i = 0;
1147 PUSHs (sv_2mortal (newSVuv (value [i])));
1148
1149 void
1150 properties (OpenCL::Device self)
1151 PPCODE:
1152 cl_command_queue_properties value [1];
1153 NEED_SUCCESS (GetDeviceInfo, (self, CL_DEVICE_QUEUE_PROPERTIES, sizeof (value), value, 0));
1154 EXTEND (SP, 1);
1155 const int i = 0;
1156 PUSHs (sv_2mortal (newSVuv (value [i])));
1157
1158 void
1159 platform (OpenCL::Device self)
1160 PPCODE:
1161 cl_platform_id value [1];
1162 NEED_SUCCESS (GetDeviceInfo, (self, CL_DEVICE_PLATFORM, sizeof (value), value, 0));
1163 EXTEND (SP, 1);
1164 const int i = 0;
1165 {
1166 PUSH_CLOBJ (stash_platform, value [i]);
1167 }
1168
1169 void
1170 name (OpenCL::Device self)
1171 ALIAS:
1172 name = CL_DEVICE_NAME
1173 vendor = CL_DEVICE_VENDOR
1174 driver_version = CL_DRIVER_VERSION
1175 profile = CL_DEVICE_PROFILE
1176 version = CL_DEVICE_VERSION
1177 extensions = CL_DEVICE_EXTENSIONS
1178 PPCODE:
1179 size_t size;
1180 NEED_SUCCESS (GetDeviceInfo, (self, ix, 0, 0, &size));
1181 char *value = tmpbuf (size);
1182 NEED_SUCCESS (GetDeviceInfo, (self, ix, size, value, 0));
1183 EXTEND (SP, 1);
1184 const int i = 0;
1185 PUSHs (sv_2mortal (newSVpv (value, 0)));
1186
1187 void
1188 parent_device_ext (OpenCL::Device self)
1189 PPCODE:
1190 cl_device_id value [1];
1191 NEED_SUCCESS (GetDeviceInfo, (self, CL_DEVICE_PARENT_DEVICE_EXT, sizeof (value), value, 0));
1192 EXTEND (SP, 1);
1193 const int i = 0;
1194 {
1195 PUSH_CLOBJ (stash_device, value [i]);
1196 }
1197
1198 void
1199 partition_types_ext (OpenCL::Device self)
1200 ALIAS:
1201 partition_types_ext = CL_DEVICE_PARTITION_TYPES_EXT
1202 affinity_domains_ext = CL_DEVICE_AFFINITY_DOMAINS_EXT
1203 partition_style_ext = CL_DEVICE_PARTITION_STYLE_EXT
1204 PPCODE:
1205 size_t size;
1206 NEED_SUCCESS (GetDeviceInfo, (self, ix, 0, 0, &size));
1207 cl_device_partition_property_ext *value = tmpbuf (size);
1208 NEED_SUCCESS (GetDeviceInfo, (self, ix, size, value, 0));
1209 int i, n = size / sizeof (*value);
1210 EXTEND (SP, n);
1211 for (i = 0; i < n; ++i)
1212 PUSHs (sv_2mortal (newSVuv (value [i])));
1213
1214 #END:device
1215
1216 MODULE = OpenCL PACKAGE = OpenCL::SubDevice
1217
1218 #if CL_VERSION_1_2
1219
1220 void
1221 DESTROY (OpenCL::SubDevice self)
1222 CODE:
1223 clReleaseDevice (self);
1224
1225 #endif
1226
1227 MODULE = OpenCL PACKAGE = OpenCL::Context
1228
1229 void
1230 DESTROY (OpenCL::Context self)
1231 CODE:
1232 clReleaseContext (self);
1233
1234 void
1235 info (OpenCL::Context self, cl_context_info name)
1236 PPCODE:
1237 INFO (Context)
1238
1239 void
1240 queue (OpenCL::Context self, OpenCL::Device device, cl_command_queue_properties properties = 0)
1241 PPCODE:
1242 NEED_SUCCESS_ARG (cl_command_queue queue, CreateCommandQueue, (self, device, properties, &res));
1243 XPUSH_CLOBJ (stash_queue, queue);
1244
1245 void
1246 user_event (OpenCL::Context self)
1247 PPCODE:
1248 NEED_SUCCESS_ARG (cl_event ev, CreateUserEvent, (self, &res));
1249 XPUSH_CLOBJ (stash_userevent, ev);
1250
1251 void
1252 buffer (OpenCL::Context self, cl_mem_flags flags, size_t len)
1253 PPCODE:
1254 if (flags & (CL_MEM_USE_HOST_PTR | CL_MEM_COPY_HOST_PTR))
1255 croak ("OpenCL::Context::buffer: cannot use/copy host ptr when no data is given, use $context->buffer_sv instead?");
1256
1257 NEED_SUCCESS_ARG (cl_mem mem, CreateBuffer, (self, flags, len, 0, &res));
1258 XPUSH_CLOBJ (stash_bufferobj, mem);
1259
1260 void
1261 buffer_sv (OpenCL::Context self, cl_mem_flags flags, SV *data)
1262 PPCODE:
1263 STRLEN len;
1264 char *ptr = SvOK (data) ? SvPVbyte (data, len) : 0;
1265 if (!(flags & (CL_MEM_USE_HOST_PTR | CL_MEM_COPY_HOST_PTR)))
1266 croak ("OpenCL::Context::buffer_sv: you have to specify use or copy host ptr when buffer data is given, use $context->buffer instead?");
1267 NEED_SUCCESS_ARG (cl_mem mem, CreateBuffer, (self, flags, len, ptr, &res));
1268 XPUSH_CLOBJ (stash_bufferobj, mem);
1269
1270 #if CL_VERSION_1_2
1271
1272 void
1273 image (OpenCL::Context self, cl_mem_flags flags, cl_channel_order channel_order, cl_channel_type channel_type, cl_mem_object_type type, size_t width, size_t height, size_t depth = 0, size_t array_size = 0, size_t row_pitch = 0, size_t slice_pitch = 0, cl_uint num_mip_level = 0, cl_uint num_samples = 0, SV *data = &PL_sv_undef)
1274 PPCODE:
1275 STRLEN len;
1276 char *ptr = SvOK (data) ? SvPVbyte (data, len) : 0;
1277 const cl_image_format format = { channel_order, channel_type };
1278 const cl_image_desc desc = {
1279 type,
1280 width, height, depth,
1281 array_size, row_pitch, slice_pitch,
1282 num_mip_level, num_samples,
1283 type == CL_MEM_OBJECT_IMAGE1D_BUFFER ? (cl_mem)SvCLOBJ (cv, "data", data, "OpenCL::Buffer") : 0
1284 };
1285 NEED_SUCCESS_ARG (cl_mem mem, CreateImage, (self, flags, &format, &desc, ptr, &res));
1286 HV *stash = stash_image;
1287 switch (type)
1288 {
1289 case CL_MEM_OBJECT_IMAGE1D_BUFFER: stash = stash_image1dbuffer; break;
1290 case CL_MEM_OBJECT_IMAGE1D: stash = stash_image1d; break;
1291 case CL_MEM_OBJECT_IMAGE1D_ARRAY: stash = stash_image2darray; break;
1292 case CL_MEM_OBJECT_IMAGE2D: stash = stash_image2d; break;
1293 case CL_MEM_OBJECT_IMAGE2D_ARRAY: stash = stash_image2darray; break;
1294 case CL_MEM_OBJECT_IMAGE3D: stash = stash_image3d; break;
1295 }
1296 XPUSH_CLOBJ (stash, mem);
1297
1298 #endif
1299
1300 void
1301 image2d (OpenCL::Context self, cl_mem_flags flags, cl_channel_order channel_order, cl_channel_type channel_type, size_t width, size_t height, size_t row_pitch = 0, SV *data = &PL_sv_undef)
1302 PPCODE:
1303 STRLEN len;
1304 char *ptr = SvOK (data) ? SvPVbyte (data, len) : 0;
1305 const cl_image_format format = { channel_order, channel_type };
1306 #if PREFER_1_1
1307 NEED_SUCCESS_ARG (cl_mem mem, CreateImage2D, (self, flags, &format, width, height, row_pitch, ptr, &res));
1308 #else
1309 const cl_image_desc desc = { CL_MEM_OBJECT_IMAGE2D, width, height, 0, 0, row_pitch, 0, 0, 0, 0 };
1310 NEED_SUCCESS_ARG (cl_mem mem, CreateImage, (self, flags, &format, &desc, ptr, &res));
1311 #endif
1312 XPUSH_CLOBJ (stash_image2d, mem);
1313
1314 void
1315 image3d (OpenCL::Context self, cl_mem_flags flags, cl_channel_order channel_order, cl_channel_type channel_type, size_t width, size_t height, size_t depth, size_t row_pitch = 0, size_t slice_pitch = 0, SV *data = &PL_sv_undef)
1316 PPCODE:
1317 STRLEN len;
1318 char *ptr = SvOK (data) ? SvPVbyte (data, len) : 0;
1319 const cl_image_format format = { channel_order, channel_type };
1320 #if PREFER_1_1
1321 NEED_SUCCESS_ARG (cl_mem mem, CreateImage3D, (self, flags, &format, width, height, depth, row_pitch, slice_pitch, ptr, &res));
1322 #else
1323 const cl_image_desc desc = { CL_MEM_OBJECT_IMAGE3D, width, height, depth, 0, row_pitch, slice_pitch, 0, 0, 0 };
1324 NEED_SUCCESS_ARG (cl_mem mem, CreateImage, (self, flags, &format, &desc, ptr, &res));
1325 #endif
1326 XPUSH_CLOBJ (stash_image3d, mem);
1327
1328 #if cl_apple_gl_sharing || cl_khr_gl_sharing
1329
1330 void
1331 gl_buffer (OpenCL::Context self, cl_mem_flags flags, cl_GLuint bufobj)
1332 PPCODE:
1333 NEED_SUCCESS_ARG (cl_mem mem, CreateFromGLBuffer, (self, flags, bufobj, &res));
1334 XPUSH_CLOBJ (stash_bufferobj, mem);
1335
1336 void
1337 gl_renderbuffer (OpenCL::Context self, cl_mem_flags flags, cl_GLuint renderbuffer)
1338 PPCODE:
1339 NEED_SUCCESS_ARG (cl_mem mem, CreateFromGLRenderbuffer, (self, flags, renderbuffer, &res));
1340 XPUSH_CLOBJ (stash_image2d, mem);
1341
1342 #if CL_VERSION_1_2
1343
1344 void
1345 gl_texture (OpenCL::Context self, cl_mem_flags flags, cl_GLenum target, cl_GLint miplevel, cl_GLuint texture)
1346 ALIAS:
1347 PPCODE:
1348 NEED_SUCCESS_ARG (cl_mem mem, CreateFromGLTexture, (self, flags, target, miplevel, texture, &res));
1349 cl_gl_object_type type;
1350 NEED_SUCCESS (GetGLObjectInfo, (mem, &type, 0)); // TODO: use target instead?
1351 HV *stash = stash_memory;
1352 switch (type)
1353 {
1354 case CL_GL_OBJECT_TEXTURE_BUFFER: stash = stash_image1dbuffer; break;
1355 case CL_GL_OBJECT_TEXTURE1D: stash = stash_image1d; break;
1356 case CL_GL_OBJECT_TEXTURE1D_ARRAY: stash = stash_image2darray; break;
1357 case CL_GL_OBJECT_TEXTURE2D: stash = stash_image2d; break;
1358 case CL_GL_OBJECT_TEXTURE2D_ARRAY: stash = stash_image2darray; break;
1359 case CL_GL_OBJECT_TEXTURE3D: stash = stash_image3d; break;
1360 }
1361 XPUSH_CLOBJ (stash, mem);
1362
1363 #endif
1364
1365 void
1366 gl_texture2d (OpenCL::Context self, cl_mem_flags flags, cl_GLenum target, cl_GLint miplevel, cl_GLuint texture)
1367 PPCODE:
1368 #if PREFER_1_1
1369 NEED_SUCCESS_ARG (cl_mem mem, CreateFromGLTexture2D, (self, flags, target, miplevel, texture, &res));
1370 #else
1371 NEED_SUCCESS_ARG (cl_mem mem, CreateFromGLTexture , (self, flags, target, miplevel, texture, &res));
1372 #endif
1373 XPUSH_CLOBJ (stash_image2d, mem);
1374
1375 void
1376 gl_texture3d (OpenCL::Context self, cl_mem_flags flags, cl_GLenum target, cl_GLint miplevel, cl_GLuint texture)
1377 PPCODE:
1378 #if PREFER_1_1
1379 NEED_SUCCESS_ARG (cl_mem mem, CreateFromGLTexture3D, (self, flags, target, miplevel, texture, &res));
1380 #else
1381 NEED_SUCCESS_ARG (cl_mem mem, CreateFromGLTexture , (self, flags, target, miplevel, texture, &res));
1382 #endif
1383 XPUSH_CLOBJ (stash_image3d, mem);
1384
1385 #endif
1386
1387 void
1388 supported_image_formats (OpenCL::Context self, cl_mem_flags flags, cl_mem_object_type image_type)
1389 PPCODE:
1390 {
1391 cl_uint count;
1392 cl_image_format *list;
1393 int i;
1394
1395 NEED_SUCCESS (GetSupportedImageFormats, (self, flags, image_type, 0, 0, &count));
1396 Newx (list, count, cl_image_format);
1397 NEED_SUCCESS (GetSupportedImageFormats, (self, flags, image_type, count, list, 0));
1398
1399 EXTEND (SP, count);
1400 for (i = 0; i < count; ++i)
1401 {
1402 AV *av = newAV ();
1403 av_store (av, 1, newSVuv (list [i].image_channel_data_type));
1404 av_store (av, 0, newSVuv (list [i].image_channel_order));
1405 PUSHs (sv_2mortal (newRV_noinc ((SV *)av)));
1406 }
1407 }
1408
1409 void
1410 sampler (OpenCL::Context self, cl_bool normalized_coords, cl_addressing_mode addressing_mode, cl_filter_mode filter_mode)
1411 PPCODE:
1412 NEED_SUCCESS_ARG (cl_sampler sampler, CreateSampler, (self, normalized_coords, addressing_mode, filter_mode, &res));
1413 XPUSH_CLOBJ (stash_sampler, sampler);
1414
1415 void
1416 program_with_source (OpenCL::Context self, SV *program)
1417 PPCODE:
1418 STRLEN len;
1419 size_t len2;
1420 const char *ptr = SvPVbyte (program, len);
1421
1422 len2 = len;
1423 NEED_SUCCESS_ARG (cl_program prog, CreateProgramWithSource, (self, 1, &ptr, &len2, &res));
1424 XPUSH_CLOBJ (stash_program, prog);
1425
1426 void
1427 program_with_binary (OpenCL::Context self, SV *devices, SV *binaries)
1428 PPCODE:
1429 cl_uint device_count;
1430 cl_device_id *device_list = object_list (cv, 0, "devices", devices, "OpenCL::Device", &device_count);
1431
1432 if (!SvROK (binaries) || SvTYPE (SvRV (binaries)) != SVt_PVAV)
1433 croak ("OpenCL::Context::program_with_binary: binaries must be specified as reference to an array of strings");
1434
1435 binaries = SvRV (binaries);
1436
1437 if (device_count != av_len ((AV *)binaries) + 1)
1438 croak ("OpenCL::Context::program_with_binary: differing numbers of devices and binaries are not allowed");
1439
1440 size_t *length_list = tmpbuf (sizeof (*length_list) * device_count);
1441 const unsigned char **binary_list = tmpbuf (sizeof (*binary_list) * device_count);
1442 cl_int *status_list = tmpbuf (sizeof (*status_list) * device_count);
1443
1444 int i;
1445 for (i = 0; i < device_count; ++i)
1446 {
1447 STRLEN len;
1448 binary_list [i] = (const unsigned char *)SvPVbyte (*av_fetch ((AV *)binaries, i, 0), len);
1449 length_list [i] = len;
1450 }
1451
1452 NEED_SUCCESS_ARG (cl_program prog, CreateProgramWithBinary, (self, device_count, device_list,
1453 length_list, binary_list,
1454 GIMME_V == G_ARRAY ? status_list : 0, &res));
1455
1456 EXTEND (SP, 2);
1457 PUSH_CLOBJ (stash_program, prog);
1458
1459 if (GIMME_V == G_ARRAY)
1460 {
1461 AV *av = newAV ();
1462 PUSHs (sv_2mortal (newRV_noinc ((SV *)av)));
1463
1464 for (i = device_count; i--; )
1465 av_store (av, i, newSViv (status_list [i]));
1466 }
1467
1468 #if CL_VERSION_1_2
1469
1470 void
1471 program_with_built_in_kernels (OpenCL::Context self, SV *devices, SV *kernel_names)
1472 PPCODE:
1473 cl_uint device_count;
1474 cl_device_id *device_list = object_list (cv, 0, "devices", devices, "OpenCL::Device", &device_count);
1475
1476 NEED_SUCCESS_ARG (cl_program prog, CreateProgramWithBuiltInKernels, (self, device_count, device_list, SvPVbyte_nolen (kernel_names), &res));
1477
1478 XPUSH_CLOBJ (stash_program, prog);
1479
1480 void
1481 link_program (OpenCL::Context self, SV *devices, SV *options, SV *programs, SV *notify = &PL_sv_undef)
1482 CODE:
1483 cl_uint device_count = 0;
1484 cl_device_id *device_list = 0;
1485
1486 if (SvOK (devices))
1487 device_list = object_list (cv, 1, "devices", devices, "OpenCL::Device", &device_count);
1488
1489 cl_uint program_count;
1490 cl_program *program_list = object_list (cv, 0, "programs", programs, "OpenCL::Program", &program_count);
1491
1492 void *user_data;
1493 program_callback pfn_notify = make_program_callback (notify, &user_data);
1494
1495 NEED_SUCCESS_ARG (cl_program prog, LinkProgram, (self, device_count, device_list, SvPVbyte_nolen (options),
1496 program_count, program_list, pfn_notify, user_data, &res));
1497
1498 XPUSH_CLOBJ (stash_program, prog);
1499
1500 #endif
1501
1502 #BEGIN:context
1503
1504 void
1505 reference_count (OpenCL::Context self)
1506 ALIAS:
1507 reference_count = CL_CONTEXT_REFERENCE_COUNT
1508 num_devices = CL_CONTEXT_NUM_DEVICES
1509 PPCODE:
1510 cl_uint value [1];
1511 NEED_SUCCESS (GetContextInfo, (self, ix, sizeof (value), value, 0));
1512 EXTEND (SP, 1);
1513 const int i = 0;
1514 PUSHs (sv_2mortal (newSVuv (value [i])));
1515
1516 void
1517 devices (OpenCL::Context self)
1518 PPCODE:
1519 size_t size;
1520 NEED_SUCCESS (GetContextInfo, (self, CL_CONTEXT_DEVICES, 0, 0, &size));
1521 cl_device_id *value = tmpbuf (size);
1522 NEED_SUCCESS (GetContextInfo, (self, CL_CONTEXT_DEVICES, size, value, 0));
1523 int i, n = size / sizeof (*value);
1524 EXTEND (SP, n);
1525 for (i = 0; i < n; ++i)
1526 {
1527 PUSH_CLOBJ (stash_device, value [i]);
1528 }
1529
1530 void
1531 properties (OpenCL::Context self)
1532 PPCODE:
1533 size_t size;
1534 NEED_SUCCESS (GetContextInfo, (self, CL_CONTEXT_PROPERTIES, 0, 0, &size));
1535 cl_context_properties *value = tmpbuf (size);
1536 NEED_SUCCESS (GetContextInfo, (self, CL_CONTEXT_PROPERTIES, size, value, 0));
1537 int i, n = size / sizeof (*value);
1538 EXTEND (SP, n);
1539 for (i = 0; i < n; ++i)
1540 PUSHs (sv_2mortal (newSVuv ((UV)value [i])));
1541
1542 #END:context
1543
1544 MODULE = OpenCL PACKAGE = OpenCL::Queue
1545
1546 void
1547 DESTROY (OpenCL::Queue self)
1548 CODE:
1549 clReleaseCommandQueue (self);
1550
1551 void
1552 read_buffer (OpenCL::Queue self, OpenCL::Buffer mem, cl_bool blocking, size_t offset, size_t len, SV *data, ...)
1553 ALIAS:
1554 enqueue_read_buffer = 0
1555 PPCODE:
1556 EVENT_LIST (6);
1557
1558 SvUPGRADE (data, SVt_PV);
1559 SvGROW (data, len);
1560 SvPOK_only (data);
1561 SvCUR_set (data, len);
1562
1563 cl_event ev = 0;
1564 NEED_SUCCESS (EnqueueReadBuffer, (self, mem, blocking, offset, len, SvPVX (data), event_list_count, event_list_ptr, GIMME_V != G_VOID ? &ev : 0));
1565
1566 if (ev)
1567 XPUSH_CLOBJ (stash_event, ev);
1568
1569 void
1570 write_buffer (OpenCL::Queue self, OpenCL::Buffer mem, cl_bool blocking, size_t offset, SV *data, ...)
1571 ALIAS:
1572 enqueue_write_buffer = 0
1573 PPCODE:
1574 EVENT_LIST (5);
1575
1576 STRLEN len;
1577 char *ptr = SvPVbyte (data, len);
1578
1579 cl_event ev = 0;
1580 NEED_SUCCESS (EnqueueWriteBuffer, (self, mem, blocking, offset, len, ptr, event_list_count, event_list_ptr, GIMME_V != G_VOID ? &ev : 0));
1581
1582 if (ev)
1583 XPUSH_CLOBJ (stash_event, ev);
1584
1585 #if CL_VERSION_1_2
1586
1587 void
1588 fill_buffer (OpenCL::Queue self, OpenCL::Buffer mem, SV *data, size_t offset, size_t size, ...)
1589 ALIAS:
1590 enqueue_fill_buffer = 0
1591 PPCODE:
1592 EVENT_LIST (5);
1593
1594 STRLEN len;
1595 char *ptr = SvPVbyte (data, len);
1596
1597 cl_event ev = 0;
1598 NEED_SUCCESS (EnqueueFillBuffer, (self, mem, ptr, len, offset, size, event_list_count, event_list_ptr, GIMME_V != G_VOID ? &ev : 0));
1599
1600 if (ev)
1601 XPUSH_CLOBJ (stash_event, ev);
1602
1603 void
1604 fill_image (OpenCL::Queue self, OpenCL::Image img, NV r, NV g, NV b, NV a, size_t x, size_t y, size_t z, size_t width, size_t height, size_t depth, ...)
1605 ALIAS:
1606 enqueue_fill_image = 0
1607 PPCODE:
1608 EVENT_LIST (12);
1609
1610 const size_t origin [3] = { x, y, z };
1611 const size_t region [3] = { width, height, depth };
1612
1613 const cl_float c_f [4] = { r, g, b, a };
1614 const cl_uint c_u [4] = { r, g, b, a };
1615 const cl_int c_s [4] = { r, g, b, a };
1616 const void *c_fus [3] = { &c_f, &c_u, &c_s };
1617 static const char fus [] = { 0, 0, 0, 0, 0, 0, 0, 2, 2, 2, 1, 1, 1, 0, 0 };
1618 cl_image_format format;
1619 NEED_SUCCESS (GetImageInfo, (img, CL_IMAGE_FORMAT, sizeof (format), &format, 0));
1620 assert (sizeof (fus) == CL_FLOAT + 1 - CL_SNORM_INT8);
1621 if (format.image_channel_data_type < CL_SNORM_INT8 || CL_FLOAT < format.image_channel_data_type)
1622 croak ("enqueue_fill_image: image has unsupported channel type, only opencl 1.2 channel types supported.");
1623
1624 cl_event ev = 0;
1625 NEED_SUCCESS (EnqueueFillImage, (self, img, c_fus [fus [format.image_channel_data_type - CL_SNORM_INT8]],
1626 origin, region, event_list_count, event_list_ptr, GIMME_V != G_VOID ? &ev : 0));
1627
1628 if (ev)
1629 XPUSH_CLOBJ (stash_event, ev);
1630
1631 #endif
1632
1633 void
1634 copy_buffer (OpenCL::Queue self, OpenCL::Buffer src, OpenCL::Buffer dst, size_t src_offset, size_t dst_offset, size_t len, ...)
1635 ALIAS:
1636 enqueue_copy_buffer = 0
1637 PPCODE:
1638 EVENT_LIST (6);
1639
1640 cl_event ev = 0;
1641 NEED_SUCCESS (EnqueueCopyBuffer, (self, src, dst, src_offset, dst_offset, len, event_list_count, event_list_ptr, GIMME_V != G_VOID ? &ev : 0));
1642
1643 if (ev)
1644 XPUSH_CLOBJ (stash_event, ev);
1645
1646 void
1647 read_buffer_rect (OpenCL::Queue self, OpenCL::Memory buf, cl_bool blocking, size_t buf_x, size_t buf_y, size_t buf_z, size_t host_x, size_t host_y, size_t host_z, size_t width, size_t height, size_t depth, size_t buf_row_pitch, size_t buf_slice_pitch, size_t host_row_pitch, size_t host_slice_pitch, SV *data, ...)
1648 ALIAS:
1649 enqueue_read_buffer_rect = 0
1650 PPCODE:
1651 EVENT_LIST (17);
1652
1653 const size_t buf_origin [3] = { buf_x , buf_y , buf_z };
1654 const size_t host_origin[3] = { host_x, host_y, host_z };
1655 const size_t region[3] = { width, height, depth };
1656
1657 if (!buf_row_pitch)
1658 buf_row_pitch = region [0];
1659
1660 if (!buf_slice_pitch)
1661 buf_slice_pitch = region [1] * buf_row_pitch;
1662
1663 if (!host_row_pitch)
1664 host_row_pitch = region [0];
1665
1666 if (!host_slice_pitch)
1667 host_slice_pitch = region [1] * host_row_pitch;
1668
1669 size_t len = host_row_pitch * host_slice_pitch * region [2];
1670
1671 SvUPGRADE (data, SVt_PV);
1672 SvGROW (data, len);
1673 SvPOK_only (data);
1674 SvCUR_set (data, len);
1675
1676 cl_event ev = 0;
1677 NEED_SUCCESS (EnqueueReadBufferRect, (self, buf, blocking, buf_origin, host_origin, region, buf_row_pitch, buf_slice_pitch, host_row_pitch, host_slice_pitch, SvPVX (data), event_list_count, event_list_ptr, GIMME_V != G_VOID ? &ev : 0));
1678
1679 if (ev)
1680 XPUSH_CLOBJ (stash_event, ev);
1681
1682 void
1683 write_buffer_rect (OpenCL::Queue self, OpenCL::Memory buf, cl_bool blocking, size_t buf_x, size_t buf_y, size_t buf_z, size_t host_x, size_t host_y, size_t host_z, size_t width, size_t height, size_t depth, size_t buf_row_pitch, size_t buf_slice_pitch, size_t host_row_pitch, size_t host_slice_pitch, SV *data, ...)
1684 ALIAS:
1685 enqueue_write_buffer_rect = 0
1686 PPCODE:
1687 EVENT_LIST (17);
1688
1689 const size_t buf_origin [3] = { buf_x , buf_y , buf_z };
1690 const size_t host_origin[3] = { host_x, host_y, host_z };
1691 const size_t region[3] = { width, height, depth };
1692 STRLEN len;
1693 char *ptr = SvPVbyte (data, len);
1694
1695 if (!buf_row_pitch)
1696 buf_row_pitch = region [0];
1697
1698 if (!buf_slice_pitch)
1699 buf_slice_pitch = region [1] * buf_row_pitch;
1700
1701 if (!host_row_pitch)
1702 host_row_pitch = region [0];
1703
1704 if (!host_slice_pitch)
1705 host_slice_pitch = region [1] * host_row_pitch;
1706
1707 size_t min_len = host_row_pitch * host_slice_pitch * region [2];
1708
1709 if (len < min_len)
1710 croak ("clEnqueueWriteImage: data string is shorter than what would be transferred");
1711
1712 cl_event ev = 0;
1713 NEED_SUCCESS (EnqueueWriteBufferRect, (self, buf, blocking, buf_origin, host_origin, region, buf_row_pitch, buf_slice_pitch, host_row_pitch, host_slice_pitch, ptr, event_list_count, event_list_ptr, GIMME_V != G_VOID ? &ev : 0));
1714
1715 if (ev)
1716 XPUSH_CLOBJ (stash_event, ev);
1717
1718 void
1719 copy_buffer_rect (OpenCL::Queue self, OpenCL::Buffer src, OpenCL::Buffer dst, size_t src_x, size_t src_y, size_t src_z, size_t dst_x, size_t dst_y, size_t dst_z, size_t width, size_t height, size_t depth, size_t src_row_pitch, size_t src_slice_pitch, size_t dst_row_pitch, size_t dst_slice_pitch, ...)
1720 ALIAS:
1721 enqueue_copy_buffer_rect = 0
1722 PPCODE:
1723 EVENT_LIST (16);
1724
1725 const size_t src_origin[3] = { src_x, src_y, src_z };
1726 const size_t dst_origin[3] = { dst_x, dst_y, dst_z };
1727 const size_t region[3] = { width, height, depth };
1728
1729 cl_event ev = 0;
1730 NEED_SUCCESS (EnqueueCopyBufferRect, (self, src, dst, src_origin, dst_origin, region, src_row_pitch, src_slice_pitch, dst_row_pitch, dst_slice_pitch, event_list_count, event_list_ptr, GIMME_V != G_VOID ? &ev : 0));
1731
1732 if (ev)
1733 XPUSH_CLOBJ (stash_event, ev);
1734
1735 void
1736 read_image (OpenCL::Queue self, OpenCL::Image src, cl_bool blocking, size_t src_x, size_t src_y, size_t src_z, size_t width, size_t height, size_t depth, size_t row_pitch, size_t slice_pitch, SV *data, ...)
1737 ALIAS:
1738 enqueue_read_image = 0
1739 PPCODE:
1740 EVENT_LIST (12);
1741
1742 const size_t src_origin[3] = { src_x, src_y, src_z };
1743 const size_t region[3] = { width, height, depth };
1744
1745 if (!row_pitch)
1746 row_pitch = img_row_pitch (src);
1747
1748 if (depth > 1 && !slice_pitch)
1749 slice_pitch = row_pitch * height;
1750
1751 size_t len = slice_pitch ? slice_pitch * depth : row_pitch * height;
1752
1753 SvUPGRADE (data, SVt_PV);
1754 SvGROW (data, len);
1755 SvPOK_only (data);
1756 SvCUR_set (data, len);
1757
1758 cl_event ev = 0;
1759 NEED_SUCCESS (EnqueueReadImage, (self, src, blocking, src_origin, region, row_pitch, slice_pitch, SvPVX (data), event_list_count, event_list_ptr, GIMME_V != G_VOID ? &ev : 0));
1760
1761 if (ev)
1762 XPUSH_CLOBJ (stash_event, ev);
1763
1764 void
1765 write_image (OpenCL::Queue self, OpenCL::Image dst, cl_bool blocking, size_t dst_x, size_t dst_y, size_t dst_z, size_t width, size_t height, size_t depth, size_t row_pitch, size_t slice_pitch, SV *data, ...)
1766 ALIAS:
1767 enqueue_write_image = 0
1768 PPCODE:
1769 EVENT_LIST (12);
1770
1771 const size_t dst_origin[3] = { dst_x, dst_y, dst_z };
1772 const size_t region[3] = { width, height, depth };
1773 STRLEN len;
1774 char *ptr = SvPVbyte (data, len);
1775
1776 if (!row_pitch)
1777 row_pitch = img_row_pitch (dst);
1778
1779 if (depth > 1 && !slice_pitch)
1780 slice_pitch = row_pitch * height;
1781
1782 size_t min_len = slice_pitch ? slice_pitch * depth : row_pitch * height;
1783
1784 if (len < min_len)
1785 croak ("clEnqueueWriteImage: data string is shorter than what would be transferred");
1786
1787 cl_event ev = 0;
1788 NEED_SUCCESS (EnqueueWriteImage, (self, dst, blocking, dst_origin, region, row_pitch, slice_pitch, ptr, event_list_count, event_list_ptr, GIMME_V != G_VOID ? &ev : 0));
1789
1790 if (ev)
1791 XPUSH_CLOBJ (stash_event, ev);
1792
1793 void
1794 copy_image (OpenCL::Queue self, OpenCL::Image src, OpenCL::Image dst, size_t src_x, size_t src_y, size_t src_z, size_t dst_x, size_t dst_y, size_t dst_z, size_t width, size_t height, size_t depth, ...)
1795 ALIAS:
1796 enqueue_copy_image = 0
1797 PPCODE:
1798 EVENT_LIST (12);
1799
1800 const size_t src_origin[3] = { src_x, src_y, src_z };
1801 const size_t dst_origin[3] = { dst_x, dst_y, dst_z };
1802 const size_t region[3] = { width, height, depth };
1803
1804 cl_event ev = 0;
1805 NEED_SUCCESS (EnqueueCopyImage, (self, src, dst, src_origin, dst_origin, region, event_list_count, event_list_ptr, GIMME_V != G_VOID ? &ev : 0));
1806
1807 if (ev)
1808 XPUSH_CLOBJ (stash_event, ev);
1809
1810 void
1811 copy_image_to_buffer (OpenCL::Queue self, OpenCL::Image src, OpenCL::Buffer dst, size_t src_x, size_t src_y, size_t src_z, size_t width, size_t height, size_t depth, size_t dst_offset, ...)
1812 ALIAS:
1813 enqueue_copy_image_to_buffer = 0
1814 PPCODE:
1815 EVENT_LIST (10);
1816
1817 const size_t src_origin[3] = { src_x, src_y, src_z };
1818 const size_t region [3] = { width, height, depth };
1819
1820 cl_event ev = 0;
1821 NEED_SUCCESS (EnqueueCopyImageToBuffer, (self, src, dst, src_origin, region, dst_offset, event_list_count, event_list_ptr, GIMME_V != G_VOID ? &ev : 0));
1822
1823 if (ev)
1824 XPUSH_CLOBJ (stash_event, ev);
1825
1826 void
1827 copy_buffer_to_image (OpenCL::Queue self, OpenCL::Buffer src, OpenCL::Image dst, size_t src_offset, size_t dst_x, size_t dst_y, size_t dst_z, size_t width, size_t height, size_t depth, ...)
1828 ALIAS:
1829 enqueue_copy_buffer_to_image = 0
1830 PPCODE:
1831 EVENT_LIST (10);
1832
1833 const size_t dst_origin[3] = { dst_x, dst_y, dst_z };
1834 const size_t region [3] = { width, height, depth };
1835
1836 cl_event ev = 0;
1837 NEED_SUCCESS (EnqueueCopyBufferToImage, (self, src, dst, src_offset, dst_origin, region, event_list_count, event_list_ptr, GIMME_V != G_VOID ? &ev : 0));
1838
1839 if (ev)
1840 XPUSH_CLOBJ (stash_event, ev);
1841
1842 void
1843 map_buffer (OpenCL::Queue self, OpenCL::Buffer buf, cl_bool blocking = 1, cl_map_flags map_flags = CL_MAP_READ | CL_MAP_WRITE, size_t offset = 0, SV *cb_ = &PL_sv_undef, ...)
1844 ALIAS:
1845 enqueue_map_buffer = 0
1846 PPCODE:
1847 EVENT_LIST (6);
1848
1849 size_t cb = SvIV (cb_);
1850
1851 if (!SvOK (cb_))
1852 {
1853 NEED_SUCCESS (GetMemObjectInfo, (buf, CL_MEM_SIZE, sizeof (cb), &cb, 0));
1854 cb -= offset;
1855 }
1856
1857 cl_event ev;
1858 NEED_SUCCESS_ARG (void *ptr, EnqueueMapBuffer, (self, buf, blocking, map_flags, offset, cb, event_list_count, event_list_ptr, &ev, &res));
1859 XPUSHs (mapped_new (stash_mappedbuffer, self, buf, map_flags, ptr, cb, ev, 0, 0));
1860
1861 void
1862 map_image (OpenCL::Queue self, OpenCL::Image img, cl_bool blocking = 1, cl_map_flags map_flags = CL_MAP_READ | CL_MAP_WRITE, size_t x = 0, size_t y = 0, size_t z = 0, SV *width_ = &PL_sv_undef, SV *height_ = &PL_sv_undef, SV *depth_ = &PL_sv_undef, ...)
1863 ALIAS:
1864 enqueue_map_image = 0
1865 PPCODE:
1866 size_t width = SvIV (width_);
1867 if (!SvOK (width_))
1868 {
1869 NEED_SUCCESS (GetImageInfo, (img, CL_IMAGE_WIDTH, sizeof (width), &width, 0));
1870 width -= x;
1871 }
1872
1873 size_t height = SvIV (width_);
1874 if (!SvOK (height_))
1875 {
1876 NEED_SUCCESS (GetImageInfo, (img, CL_IMAGE_HEIGHT, sizeof (height), &height, 0));
1877 height -= y;
1878 }
1879
1880 size_t depth = SvIV (width_);
1881 if (!SvOK (depth_))
1882 {
1883 NEED_SUCCESS (GetImageInfo, (img, CL_IMAGE_DEPTH, sizeof (depth), &depth, 0));
1884 depth -= z;
1885
1886 // stupid opencl returns 0 for depth, but requires 1 for 2d images
1887 if (!depth)
1888 depth = 1;
1889 }
1890
1891 const size_t origin[3] = { x, y, z };
1892 const size_t region[3] = { width, height, depth };
1893 size_t row_pitch, slice_pitch;
1894 EVENT_LIST (10);
1895
1896 cl_event ev;
1897 NEED_SUCCESS_ARG (void *ptr, EnqueueMapImage, (self, img, blocking, map_flags, origin, region, &row_pitch, &slice_pitch, event_list_count, event_list_ptr, &ev, &res));
1898
1899 size_t cb = slice_pitch ? slice_pitch * region [2]
1900 : row_pitch ? row_pitch * region [1]
1901 : region [0];
1902
1903 XPUSHs (mapped_new (stash_mappedimage, self, img, map_flags, ptr, cb, ev, row_pitch, slice_pitch));
1904
1905 void
1906 unmap (OpenCL::Queue self, OpenCL::Mapped mapped, ...)
1907 PPCODE:
1908 mapped_unmap (cv, ST (1), mapped, self, &ST (2), items - 2);
1909 if (GIMME_V != G_VOID)
1910 {
1911 clRetainEvent (mapped->event);
1912 XPUSH_CLOBJ (stash_event, mapped->event);
1913 }
1914
1915 void
1916 task (OpenCL::Queue self, OpenCL::Kernel kernel, ...)
1917 ALIAS:
1918 enqueue_task = 0
1919 PPCODE:
1920 EVENT_LIST (2);
1921
1922 cl_event ev = 0;
1923 NEED_SUCCESS (EnqueueTask, (self, kernel, event_list_count, event_list_ptr, GIMME_V != G_VOID ? &ev : 0));
1924
1925 if (ev)
1926 XPUSH_CLOBJ (stash_event, ev);
1927
1928 void
1929 nd_range_kernel (OpenCL::Queue self, OpenCL::Kernel kernel, SV *global_work_offset, SV *global_work_size, SV *local_work_size = &PL_sv_undef, ...)
1930 ALIAS:
1931 enqueue_nd_range_kernel = 0
1932 PPCODE:
1933 EVENT_LIST (5);
1934
1935 size_t *gwo = 0, *gws, *lws = 0;
1936 int gws_len;
1937 size_t *lists;
1938 int i;
1939
1940 if (!SvROK (global_work_size) || SvTYPE (SvRV (global_work_size)) != SVt_PVAV)
1941 croak ("clEnqueueNDRangeKernel: global_work_size must be an array reference");
1942
1943 gws_len = AvFILLp (SvRV (global_work_size)) + 1;
1944
1945 lists = tmpbuf (sizeof (size_t) * 3 * gws_len);
1946
1947 gws = lists + gws_len * 0;
1948 for (i = 0; i < gws_len; ++i)
1949 {
1950 gws [i] = SvIV (AvARRAY (SvRV (global_work_size))[i]);
1951 // at least nvidia crashes for 0-sized work group sizes, work around
1952 if (!gws [i])
1953 croak ("clEnqueueNDRangeKernel: global_work_size[%d] is zero, must be non-zero", i);
1954 }
1955
1956 if (SvOK (global_work_offset))
1957 {
1958 if (!SvROK (global_work_offset) || SvTYPE (SvRV (global_work_offset)) != SVt_PVAV)
1959 croak ("clEnqueueNDRangeKernel: global_work_offset must be undef or an array reference");
1960
1961 if (AvFILLp (SvRV (global_work_size)) + 1 != gws_len)
1962 croak ("clEnqueueNDRangeKernel: global_work_offset must be undef or an array of same size as global_work_size");
1963
1964 gwo = lists + gws_len * 1;
1965 for (i = 0; i < gws_len; ++i)
1966 gwo [i] = SvIV (AvARRAY (SvRV (global_work_offset))[i]);
1967 }
1968
1969 if (SvOK (local_work_size))
1970 {
1971 if ((SvOK (local_work_size) && !SvROK (local_work_size)) || SvTYPE (SvRV (local_work_size)) != SVt_PVAV)
1972 croak ("clEnqueueNDRangeKernel: local_work_size must be undef or an array reference");
1973
1974 if (AvFILLp (SvRV (local_work_size)) + 1 != gws_len)
1975 croak ("clEnqueueNDRangeKernel: local_work_local must be undef or an array of same size as global_work_size");
1976
1977 lws = lists + gws_len * 2;
1978 for (i = 0; i < gws_len; ++i)
1979 {
1980 lws [i] = SvIV (AvARRAY (SvRV (local_work_size))[i]);
1981 // at least nvidia crashes for 0-sized work group sizes, work around
1982 if (!lws [i])
1983 croak ("clEnqueueNDRangeKernel: local_work_size[%d] is zero, must be non-zero", i);
1984 }
1985 }
1986
1987 cl_event ev = 0;
1988 NEED_SUCCESS (EnqueueNDRangeKernel, (self, kernel, gws_len, gwo, gws, lws, event_list_count, event_list_ptr, GIMME_V != G_VOID ? &ev : 0));
1989
1990 if (ev)
1991 XPUSH_CLOBJ (stash_event, ev);
1992
1993 #if CL_VERSION_1_2
1994
1995 void
1996 migrate_mem_objects (OpenCL::Queue self, SV *objects, cl_mem_migration_flags flags, ...)
1997 ALIAS:
1998 enqueue_migrate_mem_objects = 0
1999 PPCODE:
2000 EVENT_LIST (3);
2001
2002 cl_uint obj_count;
2003 cl_mem *obj_list = object_list (cv, 0, "objects", objects, "OpenCL::Memory", &obj_count);
2004
2005 cl_event ev = 0;
2006 NEED_SUCCESS (EnqueueMigrateMemObjects, (self, obj_count, obj_list, flags, event_list_count, event_list_ptr, GIMME_V != G_VOID ? &ev : 0));
2007
2008 if (ev)
2009 XPUSH_CLOBJ (stash_event, ev);
2010
2011 #endif
2012
2013 #if cl_apple_gl_sharing || cl_khr_gl_sharing
2014
2015 void
2016 acquire_gl_objects (OpenCL::Queue self, SV *objects, ...)
2017 ALIAS:
2018 release_gl_objects = 1
2019 enqueue_acquire_gl_objects = 0
2020 enqueue_release_gl_objects = 1
2021 PPCODE:
2022 EVENT_LIST (2);
2023
2024 cl_uint obj_count;
2025 cl_mem *obj_list = object_list (cv, 0, "objects", objects, "OpenCL::Memory", &obj_count);
2026
2027 cl_event ev = 0;
2028
2029 if (ix)
2030 NEED_SUCCESS (EnqueueReleaseGLObjects, (self, obj_count, obj_list, event_list_count, event_list_ptr, GIMME_V != G_VOID ? &ev : 0));
2031 else
2032 NEED_SUCCESS (EnqueueAcquireGLObjects, (self, obj_count, obj_list, event_list_count, event_list_ptr, GIMME_V != G_VOID ? &ev : 0));
2033
2034 if (ev)
2035 XPUSH_CLOBJ (stash_event, ev);
2036
2037 #endif
2038
2039 void
2040 wait_for_events (OpenCL::Queue self, ...)
2041 ALIAS:
2042 enqueue_wait_for_events = 0
2043 CODE:
2044 EVENT_LIST (1);
2045 #if PREFER_1_1
2046 NEED_SUCCESS (EnqueueWaitForEvents, (self, event_list_count, event_list_ptr));
2047 #else
2048 NEED_SUCCESS (EnqueueBarrierWithWaitList, (self, event_list_count, event_list_ptr, 0));
2049 #endif
2050
2051 void
2052 marker (OpenCL::Queue self, ...)
2053 ALIAS:
2054 enqueue_marker = 0
2055 PPCODE:
2056 EVENT_LIST (1);
2057 cl_event ev = 0;
2058 #if PREFER_1_1
2059 if (!event_list_count)
2060 NEED_SUCCESS (EnqueueMarker, (self, GIMME_V != G_VOID ? &ev : 0));
2061 else
2062 #if CL_VERSION_1_2
2063 NEED_SUCCESS (EnqueueMarkerWithWaitList, (self, event_list_count, event_list_ptr, GIMME_V != G_VOID ? &ev : 0));
2064 #else
2065 {
2066 NEED_SUCCESS (EnqueueWaitForEvents, (self, event_list_count, event_list_ptr)); // also a barrier
2067 NEED_SUCCESS (EnqueueMarker, (self, GIMME_V != G_VOID ? &ev : 0));
2068 }
2069 #endif
2070 #else
2071 NEED_SUCCESS (EnqueueMarkerWithWaitList, (self, event_list_count, event_list_ptr, GIMME_V != G_VOID ? &ev : 0));
2072 #endif
2073 if (ev)
2074 XPUSH_CLOBJ (stash_event, ev);
2075
2076 void
2077 barrier (OpenCL::Queue self, ...)
2078 ALIAS:
2079 enqueue_barrier = 0
2080 PPCODE:
2081 EVENT_LIST (1);
2082 cl_event ev = 0;
2083 #if PREFER_1_1
2084 if (!event_list_count && GIMME_V == G_VOID)
2085 NEED_SUCCESS (EnqueueBarrier, (self));
2086 else
2087 #if CL_VERSION_1_2
2088 NEED_SUCCESS (EnqueueBarrierWithWaitList, (self, event_list_count, event_list_ptr, GIMME_V != G_VOID ? &ev : 0));
2089 #else
2090 {
2091 if (event_list_count)
2092 NEED_SUCCESS (EnqueueWaitForEvents, (self, event_list_count, event_list_ptr));
2093
2094 if (GIMME_V != G_VOID)
2095 NEED_SUCCESS (EnqueueMarker, (self, &ev));
2096 }
2097 #endif
2098 #else
2099 NEED_SUCCESS (EnqueueBarrierWithWaitList, (self, event_list_count, event_list_ptr, GIMME_V != G_VOID ? &ev : 0));
2100 #endif
2101 if (ev)
2102 XPUSH_CLOBJ (stash_event, ev);
2103
2104 void
2105 flush (OpenCL::Queue self)
2106 CODE:
2107 NEED_SUCCESS (Flush, (self));
2108
2109 void
2110 finish (OpenCL::Queue self)
2111 CODE:
2112 NEED_SUCCESS (Finish, (self));
2113
2114 void
2115 info (OpenCL::Queue self, cl_command_queue_info name)
2116 PPCODE:
2117 INFO (CommandQueue)
2118
2119 #BEGIN:command_queue
2120
2121 void
2122 context (OpenCL::Queue self)
2123 PPCODE:
2124 cl_context value [1];
2125 NEED_SUCCESS (GetCommandQueueInfo, (self, CL_QUEUE_CONTEXT, sizeof (value), value, 0));
2126 EXTEND (SP, 1);
2127 const int i = 0;
2128 {
2129 NEED_SUCCESS (RetainContext, (value [i]));
2130 PUSH_CLOBJ (stash_context, value [i]);
2131 }
2132
2133 void
2134 device (OpenCL::Queue self)
2135 PPCODE:
2136 cl_device_id value [1];
2137 NEED_SUCCESS (GetCommandQueueInfo, (self, CL_QUEUE_DEVICE, sizeof (value), value, 0));
2138 EXTEND (SP, 1);
2139 const int i = 0;
2140 {
2141 PUSH_CLOBJ (stash_device, value [i]);
2142 }
2143
2144 void
2145 reference_count (OpenCL::Queue self)
2146 PPCODE:
2147 cl_uint value [1];
2148 NEED_SUCCESS (GetCommandQueueInfo, (self, CL_QUEUE_REFERENCE_COUNT, sizeof (value), value, 0));
2149 EXTEND (SP, 1);
2150 const int i = 0;
2151 PUSHs (sv_2mortal (newSVuv (value [i])));
2152
2153 void
2154 properties (OpenCL::Queue self)
2155 PPCODE:
2156 cl_command_queue_properties value [1];
2157 NEED_SUCCESS (GetCommandQueueInfo, (self, CL_QUEUE_PROPERTIES, sizeof (value), value, 0));
2158 EXTEND (SP, 1);
2159 const int i = 0;
2160 PUSHs (sv_2mortal (newSVuv (value [i])));
2161
2162 #END:command_queue
2163
2164 MODULE = OpenCL PACKAGE = OpenCL::Memory
2165
2166 void
2167 DESTROY (OpenCL::Memory self)
2168 CODE:
2169 clReleaseMemObject (self);
2170
2171 void
2172 info (OpenCL::Memory self, cl_mem_info name)
2173 PPCODE:
2174 INFO (MemObject)
2175
2176 #BEGIN:mem
2177
2178 void
2179 type (OpenCL::Memory self)
2180 PPCODE:
2181 cl_mem_object_type value [1];
2182 NEED_SUCCESS (GetMemObjectInfo, (self, CL_MEM_TYPE, sizeof (value), value, 0));
2183 EXTEND (SP, 1);
2184 const int i = 0;
2185 PUSHs (sv_2mortal (newSVuv (value [i])));
2186
2187 void
2188 flags (OpenCL::Memory self)
2189 PPCODE:
2190 cl_mem_flags value [1];
2191 NEED_SUCCESS (GetMemObjectInfo, (self, CL_MEM_FLAGS, sizeof (value), value, 0));
2192 EXTEND (SP, 1);
2193 const int i = 0;
2194 PUSHs (sv_2mortal (newSVuv (value [i])));
2195
2196 void
2197 size (OpenCL::Memory self)
2198 ALIAS:
2199 size = CL_MEM_SIZE
2200 offset = CL_MEM_OFFSET
2201 PPCODE:
2202 size_t value [1];
2203 NEED_SUCCESS (GetMemObjectInfo, (self, ix, sizeof (value), value, 0));
2204 EXTEND (SP, 1);
2205 const int i = 0;
2206 PUSHs (sv_2mortal (newSVuv (value [i])));
2207
2208 void
2209 host_ptr (OpenCL::Memory self)
2210 PPCODE:
2211 void * value [1];
2212 NEED_SUCCESS (GetMemObjectInfo, (self, CL_MEM_HOST_PTR, sizeof (value), value, 0));
2213 EXTEND (SP, 1);
2214 const int i = 0;
2215 PUSHs (sv_2mortal (newSVuv ((IV)(intptr_t)value [i])));
2216
2217 void
2218 map_count (OpenCL::Memory self)
2219 ALIAS:
2220 map_count = CL_MEM_MAP_COUNT
2221 reference_count = CL_MEM_REFERENCE_COUNT
2222 PPCODE:
2223 cl_uint value [1];
2224 NEED_SUCCESS (GetMemObjectInfo, (self, ix, sizeof (value), value, 0));
2225 EXTEND (SP, 1);
2226 const int i = 0;
2227 PUSHs (sv_2mortal (newSVuv (value [i])));
2228
2229 void
2230 context (OpenCL::Memory self)
2231 PPCODE:
2232 cl_context value [1];
2233 NEED_SUCCESS (GetMemObjectInfo, (self, CL_MEM_CONTEXT, sizeof (value), value, 0));
2234 EXTEND (SP, 1);
2235 const int i = 0;
2236 {
2237 NEED_SUCCESS (RetainContext, (value [i]));
2238 PUSH_CLOBJ (stash_context, value [i]);
2239 }
2240
2241 void
2242 associated_memobject (OpenCL::Memory self)
2243 PPCODE:
2244 cl_mem value [1];
2245 NEED_SUCCESS (GetMemObjectInfo, (self, CL_MEM_ASSOCIATED_MEMOBJECT, sizeof (value), value, 0));
2246 EXTEND (SP, 1);
2247 const int i = 0;
2248 {
2249 NEED_SUCCESS (RetainMemObject, (value [i]));
2250 PUSH_CLOBJ (stash_memory, value [i]);
2251 }
2252
2253 #END:mem
2254
2255 #if cl_apple_gl_sharing || cl_khr_gl_sharing
2256
2257 void
2258 gl_object_info (OpenCL::Memory self)
2259 PPCODE:
2260 cl_gl_object_type type;
2261 cl_GLuint name;
2262 NEED_SUCCESS (GetGLObjectInfo, (self, &type, &name));
2263 EXTEND (SP, 2);
2264 PUSHs (sv_2mortal (newSVuv (type)));
2265 PUSHs (sv_2mortal (newSVuv (name)));
2266
2267 #endif
2268
2269 MODULE = OpenCL PACKAGE = OpenCL::BufferObj
2270
2271 void
2272 sub_buffer_region (OpenCL::BufferObj self, cl_mem_flags flags, size_t origin, size_t size)
2273 PPCODE:
2274 if (flags & (CL_MEM_USE_HOST_PTR | CL_MEM_COPY_HOST_PTR | CL_MEM_ALLOC_HOST_PTR))
2275 croak ("clCreateSubBuffer: cannot use/copy/alloc host ptr, doesn't make sense, check your flags!");
2276
2277 cl_buffer_region crdata = { origin, size };
2278
2279 NEED_SUCCESS_ARG (cl_mem mem, CreateSubBuffer, (self, flags, CL_BUFFER_CREATE_TYPE_REGION, &crdata, &res));
2280 XPUSH_CLOBJ (stash_buffer, mem);
2281
2282 MODULE = OpenCL PACKAGE = OpenCL::Image
2283
2284 void
2285 image_info (OpenCL::Image self, cl_image_info name)
2286 PPCODE:
2287 INFO (Image)
2288
2289 void
2290 format (OpenCL::Image self)
2291 PPCODE:
2292 cl_image_format format;
2293 NEED_SUCCESS (GetImageInfo, (self, CL_IMAGE_FORMAT, sizeof (format), &format, 0));
2294 EXTEND (SP, 2);
2295 PUSHs (sv_2mortal (newSVuv (format.image_channel_order)));
2296 PUSHs (sv_2mortal (newSVuv (format.image_channel_data_type)));
2297
2298 #BEGIN:image
2299
2300 void
2301 element_size (OpenCL::Image self)
2302 ALIAS:
2303 element_size = CL_IMAGE_ELEMENT_SIZE
2304 row_pitch = CL_IMAGE_ROW_PITCH
2305 slice_pitch = CL_IMAGE_SLICE_PITCH
2306 width = CL_IMAGE_WIDTH
2307 height = CL_IMAGE_HEIGHT
2308 depth = CL_IMAGE_DEPTH
2309 PPCODE:
2310 size_t value [1];
2311 NEED_SUCCESS (GetImageInfo, (self, ix, sizeof (value), value, 0));
2312 EXTEND (SP, 1);
2313 const int i = 0;
2314 PUSHs (sv_2mortal (newSVuv (value [i])));
2315
2316 #END:image
2317
2318 #if cl_apple_gl_sharing || cl_khr_gl_sharing
2319
2320 #BEGIN:gl_texture
2321
2322 void
2323 target (OpenCL::Image self)
2324 PPCODE:
2325 cl_GLenum value [1];
2326 NEED_SUCCESS (GetGLTextureInfo, (self, CL_GL_TEXTURE_TARGET, sizeof (value), value, 0));
2327 EXTEND (SP, 1);
2328 const int i = 0;
2329 PUSHs (sv_2mortal (newSVuv (value [i])));
2330
2331 void
2332 gl_mipmap_level (OpenCL::Image self)
2333 PPCODE:
2334 cl_GLint value [1];
2335 NEED_SUCCESS (GetGLTextureInfo, (self, CL_GL_MIPMAP_LEVEL, sizeof (value), value, 0));
2336 EXTEND (SP, 1);
2337 const int i = 0;
2338 PUSHs (sv_2mortal (newSViv (value [i])));
2339
2340 #END:gl_texture
2341
2342 #endif
2343
2344 MODULE = OpenCL PACKAGE = OpenCL::Sampler
2345
2346 void
2347 DESTROY (OpenCL::Sampler self)
2348 CODE:
2349 clReleaseSampler (self);
2350
2351 void
2352 info (OpenCL::Sampler self, cl_sampler_info name)
2353 PPCODE:
2354 INFO (Sampler)
2355
2356 #BEGIN:sampler
2357
2358 void
2359 reference_count (OpenCL::Sampler self)
2360 PPCODE:
2361 cl_uint value [1];
2362 NEED_SUCCESS (GetSamplerInfo, (self, CL_SAMPLER_REFERENCE_COUNT, sizeof (value), value, 0));
2363 EXTEND (SP, 1);
2364 const int i = 0;
2365 PUSHs (sv_2mortal (newSVuv (value [i])));
2366
2367 void
2368 context (OpenCL::Sampler self)
2369 PPCODE:
2370 cl_context value [1];
2371 NEED_SUCCESS (GetSamplerInfo, (self, CL_SAMPLER_CONTEXT, sizeof (value), value, 0));
2372 EXTEND (SP, 1);
2373 const int i = 0;
2374 {
2375 NEED_SUCCESS (RetainContext, (value [i]));
2376 PUSH_CLOBJ (stash_context, value [i]);
2377 }
2378
2379 void
2380 normalized_coords (OpenCL::Sampler self)
2381 PPCODE:
2382 cl_addressing_mode value [1];
2383 NEED_SUCCESS (GetSamplerInfo, (self, CL_SAMPLER_NORMALIZED_COORDS, sizeof (value), value, 0));
2384 EXTEND (SP, 1);
2385 const int i = 0;
2386 PUSHs (sv_2mortal (newSVuv (value [i])));
2387
2388 void
2389 addressing_mode (OpenCL::Sampler self)
2390 PPCODE:
2391 cl_filter_mode value [1];
2392 NEED_SUCCESS (GetSamplerInfo, (self, CL_SAMPLER_ADDRESSING_MODE, sizeof (value), value, 0));
2393 EXTEND (SP, 1);
2394 const int i = 0;
2395 PUSHs (sv_2mortal (newSVuv (value [i])));
2396
2397 void
2398 filter_mode (OpenCL::Sampler self)
2399 PPCODE:
2400 cl_bool value [1];
2401 NEED_SUCCESS (GetSamplerInfo, (self, CL_SAMPLER_FILTER_MODE, sizeof (value), value, 0));
2402 EXTEND (SP, 1);
2403 const int i = 0;
2404 PUSHs (sv_2mortal (value [i] ? &PL_sv_yes : &PL_sv_no));
2405
2406 #END:sampler
2407
2408 MODULE = OpenCL PACKAGE = OpenCL::Program
2409
2410 void
2411 DESTROY (OpenCL::Program self)
2412 CODE:
2413 clReleaseProgram (self);
2414
2415 void
2416 build (OpenCL::Program self, SV *devices = &PL_sv_undef, SV *options = &PL_sv_undef, SV *notify = &PL_sv_undef)
2417 ALIAS:
2418 build_async = 1
2419 CODE:
2420 cl_uint device_count = 0;
2421 cl_device_id *device_list = 0;
2422
2423 if (SvOK (devices))
2424 device_list = object_list (cv, 1, "devices", devices, "OpenCL::Device", &device_count);
2425
2426 void *user_data;
2427 program_callback pfn_notify = make_program_callback (notify, &user_data);
2428
2429 if (ix)
2430 build_program_async (self, device_count, device_list, SvPVbyte_nolen (options), user_data);
2431 else
2432 NEED_SUCCESS (BuildProgram, (self, device_count, device_list, SvPVbyte_nolen (options), pfn_notify, user_data));
2433
2434 #if CL_VERSION_1_2
2435
2436 void
2437 compile (OpenCL::Program self, SV *devices, SV *options = &PL_sv_undef, SV *headers = &PL_sv_undef, SV *notify = &PL_sv_undef)
2438 CODE:
2439 cl_uint device_count = 0;
2440 cl_device_id *device_list = 0;
2441
2442 if (SvOK (devices))
2443 device_list = object_list (cv, 1, "devices", devices, "OpenCL::Device", &device_count);
2444
2445 cl_uint header_count = 0;
2446 cl_program *header_list = 0;
2447 const char **header_name = 0;
2448
2449 if (SvOK (headers))
2450 {
2451 if (!SvROK (devices) || SvTYPE (SvRV (devices)) != SVt_PVHV)
2452 croak ("clCompileProgram: headers must be undef or a hashref of name => OpenCL::Program pairs");
2453
2454 HV *hv = (HV *)SvRV (devices);
2455
2456 header_count = hv_iterinit (hv);
2457 header_list = tmpbuf (sizeof (*header_list) * header_count);
2458 header_name = tmpbuf (sizeof (*header_name) * header_count);
2459
2460 HE *he;
2461 int i = 0;
2462 while (he = hv_iternext (hv))
2463 {
2464 header_name [i] = SvPVbyte_nolen (HeSVKEY_force (he));
2465 header_list [i] = SvCLOBJ (cv, "headers", HeVAL (he), "OpenCL::Program");
2466 ++i;
2467 }
2468 }
2469
2470 void *user_data;
2471 program_callback pfn_notify = make_program_callback (notify, &user_data);
2472
2473 NEED_SUCCESS (CompileProgram, (self, device_count, device_list, SvPVbyte_nolen (options),
2474 header_count, header_list, header_name, pfn_notify, user_data));
2475
2476 #endif
2477
2478 void
2479 build_info (OpenCL::Program self, OpenCL::Device device, cl_program_build_info name)
2480 PPCODE:
2481 size_t size;
2482 NEED_SUCCESS (GetProgramBuildInfo, (self, device, name, 0, 0, &size));
2483 SV *sv = sv_2mortal (newSV (size));
2484 SvUPGRADE (sv, SVt_PV);
2485 SvPOK_only (sv);
2486 SvCUR_set (sv, size);
2487 NEED_SUCCESS (GetProgramBuildInfo, (self, device, name, size, SvPVX (sv), 0));
2488 XPUSHs (sv);
2489
2490 #BEGIN:program_build
2491
2492 void
2493 build_status (OpenCL::Program self, OpenCL::Device device)
2494 PPCODE:
2495 cl_build_status value [1];
2496 NEED_SUCCESS (GetProgramBuildInfo, (self, device, CL_PROGRAM_BUILD_STATUS, sizeof (value), value, 0));
2497 EXTEND (SP, 1);
2498 const int i = 0;
2499 PUSHs (sv_2mortal (newSViv (value [i])));
2500
2501 void
2502 build_options (OpenCL::Program self, OpenCL::Device device)
2503 ALIAS:
2504 build_options = CL_PROGRAM_BUILD_OPTIONS
2505 build_log = CL_PROGRAM_BUILD_LOG
2506 PPCODE:
2507 size_t size;
2508 NEED_SUCCESS (GetProgramBuildInfo, (self, device, ix, 0, 0, &size));
2509 char *value = tmpbuf (size);
2510 NEED_SUCCESS (GetProgramBuildInfo, (self, device, ix, size, value, 0));
2511 EXTEND (SP, 1);
2512 const int i = 0;
2513 PUSHs (sv_2mortal (newSVpv (value, 0)));
2514
2515 void
2516 binary_type (OpenCL::Program self, OpenCL::Device device)
2517 PPCODE:
2518 cl_program_binary_type value [1];
2519 NEED_SUCCESS (GetProgramBuildInfo, (self, device, CL_PROGRAM_BINARY_TYPE, sizeof (value), value, 0));
2520 EXTEND (SP, 1);
2521 const int i = 0;
2522 PUSHs (sv_2mortal (newSVuv (UV)value [i])));
2523
2524 #END:program_build
2525
2526 void
2527 kernel (OpenCL::Program program, SV *function)
2528 PPCODE:
2529 NEED_SUCCESS_ARG (cl_kernel kernel, CreateKernel, (program, SvPVbyte_nolen (function), &res));
2530 XPUSH_CLOBJ (stash_kernel, kernel);
2531
2532 void
2533 kernels_in_program (OpenCL::Program program)
2534 PPCODE:
2535 cl_uint num_kernels;
2536 NEED_SUCCESS (CreateKernelsInProgram, (program, 0, 0, &num_kernels));
2537 cl_kernel *kernels = tmpbuf (sizeof (cl_kernel) * num_kernels);
2538 NEED_SUCCESS (CreateKernelsInProgram, (program, num_kernels, kernels, 0));
2539
2540 int i;
2541 EXTEND (SP, num_kernels);
2542 for (i = 0; i < num_kernels; ++i)
2543 PUSH_CLOBJ (stash_kernel, kernels [i]);
2544
2545 void
2546 info (OpenCL::Program self, cl_program_info name)
2547 PPCODE:
2548 INFO (Program)
2549
2550 void
2551 binaries (OpenCL::Program self)
2552 PPCODE:
2553 cl_uint n, i;
2554 size_t size;
2555
2556 NEED_SUCCESS (GetProgramInfo, (self, CL_PROGRAM_NUM_DEVICES , sizeof (n) , &n , 0));
2557 if (!n) XSRETURN_EMPTY;
2558
2559 size_t *sizes = tmpbuf (sizeof (*sizes) * n);
2560 NEED_SUCCESS (GetProgramInfo, (self, CL_PROGRAM_BINARY_SIZES, sizeof (*sizes) * n, sizes, &size));
2561 if (size != sizeof (*sizes) * n) XSRETURN_EMPTY;
2562 unsigned char **ptrs = tmpbuf (sizeof (*ptrs) * n);
2563
2564 EXTEND (SP, n);
2565 for (i = 0; i < n; ++i)
2566 {
2567 SV *sv = sv_2mortal (newSV (sizes [i]));
2568 SvUPGRADE (sv, SVt_PV);
2569 SvPOK_only (sv);
2570 SvCUR_set (sv, sizes [i]);
2571 ptrs [i] = (void *)SvPVX (sv);
2572 PUSHs (sv);
2573 }
2574
2575 NEED_SUCCESS (GetProgramInfo, (self, CL_PROGRAM_BINARIES , sizeof (*ptrs ) * n, ptrs , &size));
2576 if (size != sizeof (*ptrs) * n) XSRETURN_EMPTY;
2577
2578 #BEGIN:program
2579
2580 void
2581 reference_count (OpenCL::Program self)
2582 ALIAS:
2583 reference_count = CL_PROGRAM_REFERENCE_COUNT
2584 num_devices = CL_PROGRAM_NUM_DEVICES
2585 PPCODE:
2586 cl_uint value [1];
2587 NEED_SUCCESS (GetProgramInfo, (self, ix, sizeof (value), value, 0));
2588 EXTEND (SP, 1);
2589 const int i = 0;
2590 PUSHs (sv_2mortal (newSVuv (value [i])));
2591
2592 void
2593 context (OpenCL::Program self)
2594 PPCODE:
2595 cl_context value [1];
2596 NEED_SUCCESS (GetProgramInfo, (self, CL_PROGRAM_CONTEXT, sizeof (value), value, 0));
2597 EXTEND (SP, 1);
2598 const int i = 0;
2599 {
2600 NEED_SUCCESS (RetainContext, (value [i]));
2601 PUSH_CLOBJ (stash_context, value [i]);
2602 }
2603
2604 void
2605 devices (OpenCL::Program self)
2606 PPCODE:
2607 size_t size;
2608 NEED_SUCCESS (GetProgramInfo, (self, CL_PROGRAM_DEVICES, 0, 0, &size));
2609 cl_device_id *value = tmpbuf (size);
2610 NEED_SUCCESS (GetProgramInfo, (self, CL_PROGRAM_DEVICES, size, value, 0));
2611 int i, n = size / sizeof (*value);
2612 EXTEND (SP, n);
2613 for (i = 0; i < n; ++i)
2614 {
2615 PUSH_CLOBJ (stash_device, value [i]);
2616 }
2617
2618 void
2619 source (OpenCL::Program self)
2620 PPCODE:
2621 size_t size;
2622 NEED_SUCCESS (GetProgramInfo, (self, CL_PROGRAM_SOURCE, 0, 0, &size));
2623 char *value = tmpbuf (size);
2624 NEED_SUCCESS (GetProgramInfo, (self, CL_PROGRAM_SOURCE, size, value, 0));
2625 EXTEND (SP, 1);
2626 const int i = 0;
2627 PUSHs (sv_2mortal (newSVpv (value, 0)));
2628
2629 void
2630 binary_sizes (OpenCL::Program self)
2631 PPCODE:
2632 size_t size;
2633 NEED_SUCCESS (GetProgramInfo, (self, CL_PROGRAM_BINARY_SIZES, 0, 0, &size));
2634 size_t *value = tmpbuf (size);
2635 NEED_SUCCESS (GetProgramInfo, (self, CL_PROGRAM_BINARY_SIZES, size, value, 0));
2636 int i, n = size / sizeof (*value);
2637 EXTEND (SP, n);
2638 for (i = 0; i < n; ++i)
2639 PUSHs (sv_2mortal (newSVuv (value [i])));
2640
2641 #END:program
2642
2643 MODULE = OpenCL PACKAGE = OpenCL::Kernel
2644
2645 void
2646 DESTROY (OpenCL::Kernel self)
2647 CODE:
2648 clReleaseKernel (self);
2649
2650 void
2651 setf (OpenCL::Kernel self, const char *format, ...)
2652 CODE:
2653 int i;
2654 for (i = 2; ; ++i)
2655 {
2656 while (*format == ' ')
2657 ++format;
2658
2659 char type = *format++;
2660
2661 if (!type)
2662 break;
2663
2664 if (i >= items)
2665 croak ("OpenCL::Kernel::setf format string too long (not enough arguments)");
2666
2667 SV *sv = ST (i);
2668
2669 union
2670 {
2671 cl_char cc; cl_uchar cC; cl_short cs; cl_ushort cS;
2672 cl_int ci; cl_uint cI; cl_long cl; cl_ulong cL;
2673 cl_half ch; cl_float cf; cl_double cd;
2674 cl_mem cm;
2675 cl_sampler ca;
2676 size_t cz;
2677 cl_event ce;
2678 } arg;
2679 size_t size;
2680 int nullarg = 0;
2681
2682 switch (type)
2683 {
2684 case 'c': arg.cc = SvIV (sv); size = sizeof (arg.cc); break;
2685 case 'C': arg.cC = SvUV (sv); size = sizeof (arg.cC); break;
2686 case 's': arg.cs = SvIV (sv); size = sizeof (arg.cs); break;
2687 case 'S': arg.cS = SvUV (sv); size = sizeof (arg.cS); break;
2688 case 'i': arg.ci = SvIV (sv); size = sizeof (arg.ci); break;
2689 case 'I': arg.cI = SvUV (sv); size = sizeof (arg.cI); break;
2690 case 'l': arg.cl = SvIV (sv); size = sizeof (arg.cl); break;
2691 case 'L': arg.cL = SvUV (sv); size = sizeof (arg.cL); break;
2692
2693 case 'h': arg.ch = SvUV (sv); size = sizeof (arg.ch); break;
2694 case 'f': arg.cf = SvNV (sv); size = sizeof (arg.cf); break;
2695 case 'd': arg.cd = SvNV (sv); size = sizeof (arg.cd); break;
2696
2697 case 'z': nullarg = 1; size = SvIV (sv); break;
2698
2699 case 'm': nullarg = !SvOK (sv); arg.cm = SvCLOBJ (cv, "m", sv, "OpenCL::Memory" ); size = sizeof (arg.cm); break;
2700 case 'a': nullarg = !SvOK (sv); arg.ca = SvCLOBJ (cv, "a", sv, "OpenCL::Sampler"); size = sizeof (arg.ca); break;
2701 case 'e': nullarg = !SvOK (sv); arg.ca = SvCLOBJ (cv, "e", sv, "OpenCL::Event" ); size = sizeof (arg.ce); break;
2702
2703 default:
2704 croak ("OpenCL::Kernel::setf format character '%c' not supported", type);
2705 }
2706
2707 res = clSetKernelArg (self, i - 2, size, nullarg ? 0 : &arg);
2708 if (res)
2709 croak ("OpenCL::Kernel::setf kernel parameter '%c' (#%d): %s", type, i - 2, err2str (res));
2710 }
2711
2712 if (i != items)
2713 croak ("OpenCL::Kernel::setf format string too short (too many arguments)");
2714
2715 void
2716 set_char (OpenCL::Kernel self, cl_uint idx, cl_char value)
2717 CODE:
2718 clSetKernelArg (self, idx, sizeof (value), &value);
2719
2720 void
2721 set_uchar (OpenCL::Kernel self, cl_uint idx, cl_uchar value)
2722 CODE:
2723 clSetKernelArg (self, idx, sizeof (value), &value);
2724
2725 void
2726 set_short (OpenCL::Kernel self, cl_uint idx, cl_short value)
2727 CODE:
2728 clSetKernelArg (self, idx, sizeof (value), &value);
2729
2730 void
2731 set_ushort (OpenCL::Kernel self, cl_uint idx, cl_ushort value)
2732 CODE:
2733 clSetKernelArg (self, idx, sizeof (value), &value);
2734
2735 void
2736 set_int (OpenCL::Kernel self, cl_uint idx, cl_int value)
2737 CODE:
2738 clSetKernelArg (self, idx, sizeof (value), &value);
2739
2740 void
2741 set_uint (OpenCL::Kernel self, cl_uint idx, cl_uint value)
2742 CODE:
2743 clSetKernelArg (self, idx, sizeof (value), &value);
2744
2745 void
2746 set_long (OpenCL::Kernel self, cl_uint idx, cl_long value)
2747 CODE:
2748 clSetKernelArg (self, idx, sizeof (value), &value);
2749
2750 void
2751 set_ulong (OpenCL::Kernel self, cl_uint idx, cl_ulong value)
2752 CODE:
2753 clSetKernelArg (self, idx, sizeof (value), &value);
2754
2755 void
2756 set_half (OpenCL::Kernel self, cl_uint idx, cl_half value)
2757 CODE:
2758 clSetKernelArg (self, idx, sizeof (value), &value);
2759
2760 void
2761 set_float (OpenCL::Kernel self, cl_uint idx, cl_float value)
2762 CODE:
2763 clSetKernelArg (self, idx, sizeof (value), &value);
2764
2765 void
2766 set_double (OpenCL::Kernel self, cl_uint idx, cl_double value)
2767 CODE:
2768 clSetKernelArg (self, idx, sizeof (value), &value);
2769
2770 void
2771 set_memory (OpenCL::Kernel self, cl_uint idx, OpenCL::Memory_ornull value)
2772 CODE:
2773 clSetKernelArg (self, idx, sizeof (value), value ? &value : 0);
2774
2775 void
2776 set_buffer (OpenCL::Kernel self, cl_uint idx, OpenCL::Buffer_ornull value)
2777 CODE:
2778 clSetKernelArg (self, idx, sizeof (value), value ? &value : 0);
2779
2780 void
2781 set_image (OpenCL::Kernel self, cl_uint idx, OpenCL::Image_ornull value)
2782 ALIAS:
2783 set_image2d = 0
2784 set_image3d = 0
2785 CODE:
2786 clSetKernelArg (self, idx, sizeof (value), value ? &value : 0);
2787
2788 void
2789 set_sampler (OpenCL::Kernel self, cl_uint idx, OpenCL::Sampler value)
2790 CODE:
2791 clSetKernelArg (self, idx, sizeof (value), &value);
2792
2793 void
2794 set_local (OpenCL::Kernel self, cl_uint idx, size_t size)
2795 CODE:
2796 clSetKernelArg (self, idx, size, 0);
2797
2798 void
2799 set_event (OpenCL::Kernel self, cl_uint idx, OpenCL::Event value)
2800 CODE:
2801 clSetKernelArg (self, idx, sizeof (value), &value);
2802
2803 void
2804 info (OpenCL::Kernel self, cl_kernel_info name)
2805 PPCODE:
2806 INFO (Kernel)
2807
2808 #BEGIN:kernel
2809
2810 void
2811 function_name (OpenCL::Kernel self)
2812 PPCODE:
2813 size_t size;
2814 NEED_SUCCESS (GetKernelInfo, (self, CL_KERNEL_FUNCTION_NAME, 0, 0, &size));
2815 char *value = tmpbuf (size);
2816 NEED_SUCCESS (GetKernelInfo, (self, CL_KERNEL_FUNCTION_NAME, size, value, 0));
2817 EXTEND (SP, 1);
2818 const int i = 0;
2819 PUSHs (sv_2mortal (newSVpv (value, 0)));
2820
2821 void
2822 num_args (OpenCL::Kernel self)
2823 ALIAS:
2824 num_args = CL_KERNEL_NUM_ARGS
2825 reference_count = CL_KERNEL_REFERENCE_COUNT
2826 PPCODE:
2827 cl_uint value [1];
2828 NEED_SUCCESS (GetKernelInfo, (self, ix, sizeof (value), value, 0));
2829 EXTEND (SP, 1);
2830 const int i = 0;
2831 PUSHs (sv_2mortal (newSVuv (value [i])));
2832
2833 void
2834 context (OpenCL::Kernel self)
2835 PPCODE:
2836 cl_context value [1];
2837 NEED_SUCCESS (GetKernelInfo, (self, CL_KERNEL_CONTEXT, sizeof (value), value, 0));
2838 EXTEND (SP, 1);
2839 const int i = 0;
2840 {
2841 NEED_SUCCESS (RetainContext, (value [i]));
2842 PUSH_CLOBJ (stash_context, value [i]);
2843 }
2844
2845 void
2846 program (OpenCL::Kernel self)
2847 PPCODE:
2848 cl_program value [1];
2849 NEED_SUCCESS (GetKernelInfo, (self, CL_KERNEL_PROGRAM, sizeof (value), value, 0));
2850 EXTEND (SP, 1);
2851 const int i = 0;
2852 {
2853 NEED_SUCCESS (RetainProgram, (value [i]));
2854 PUSH_CLOBJ (stash_program, value [i]);
2855 }
2856
2857 #END:kernel
2858
2859 void
2860 work_group_info (OpenCL::Kernel self, OpenCL::Device device, cl_kernel_work_group_info name)
2861 PPCODE:
2862 size_t size;
2863 NEED_SUCCESS (GetKernelWorkGroupInfo, (self, device, name, 0, 0, &size));
2864 SV *sv = sv_2mortal (newSV (size));
2865 SvUPGRADE (sv, SVt_PV);
2866 SvPOK_only (sv);
2867 SvCUR_set (sv, size);
2868 NEED_SUCCESS (GetKernelWorkGroupInfo, (self, device, name, size, SvPVX (sv), 0));
2869 XPUSHs (sv);
2870
2871 #BEGIN:kernel_work_group
2872
2873 void
2874 work_group_size (OpenCL::Kernel self, OpenCL::Device device)
2875 ALIAS:
2876 work_group_size = CL_KERNEL_WORK_GROUP_SIZE
2877 preferred_work_group_size_multiple = CL_KERNEL_PREFERRED_WORK_GROUP_SIZE_MULTIPLE
2878 PPCODE:
2879 size_t value [1];
2880 NEED_SUCCESS (GetKernelWorkGroupInfo, (self, device, ix, sizeof (value), value, 0));
2881 EXTEND (SP, 1);
2882 const int i = 0;
2883 PUSHs (sv_2mortal (newSVuv (value [i])));
2884
2885 void
2886 compile_work_group_size (OpenCL::Kernel self, OpenCL::Device device)
2887 PPCODE:
2888 size_t size;
2889 NEED_SUCCESS (GetKernelWorkGroupInfo, (self, device, CL_KERNEL_COMPILE_WORK_GROUP_SIZE, 0, 0, &size));
2890 size_t *value = tmpbuf (size);
2891 NEED_SUCCESS (GetKernelWorkGroupInfo, (self, device, CL_KERNEL_COMPILE_WORK_GROUP_SIZE, size, value, 0));
2892 int i, n = size / sizeof (*value);
2893 EXTEND (SP, n);
2894 for (i = 0; i < n; ++i)
2895 PUSHs (sv_2mortal (newSVuv (value [i])));
2896
2897 void
2898 local_mem_size (OpenCL::Kernel self, OpenCL::Device device)
2899 ALIAS:
2900 local_mem_size = CL_KERNEL_LOCAL_MEM_SIZE
2901 private_mem_size = CL_KERNEL_PRIVATE_MEM_SIZE
2902 PPCODE:
2903 cl_ulong value [1];
2904 NEED_SUCCESS (GetKernelWorkGroupInfo, (self, device, ix, sizeof (value), value, 0));
2905 EXTEND (SP, 1);
2906 const int i = 0;
2907 PUSHs (sv_2mortal (newSVuv (value [i])));
2908
2909 #END:kernel_work_group
2910
2911 #if CL_VERSION_1_2
2912
2913 void
2914 arg_info (OpenCL::Kernel self, cl_uint idx, cl_kernel_arg_info name)
2915 PPCODE:
2916 size_t size;
2917 NEED_SUCCESS (GetKernelArgInfo, (self, idx, name, 0, 0, &size));
2918 SV *sv = sv_2mortal (newSV (size));
2919 SvUPGRADE (sv, SVt_PV);
2920 SvPOK_only (sv);
2921 SvCUR_set (sv, size);
2922 NEED_SUCCESS (GetKernelArgInfo, (self, idx, name, size, SvPVX (sv), 0));
2923 XPUSHs (sv);
2924
2925 #BEGIN:kernel_arg
2926
2927 void
2928 arg_address_qualifier (OpenCL::Kernel self, cl_uint idx)
2929 PPCODE:
2930 cl_kernel_arg_address_qualifier value [1];
2931 NEED_SUCCESS (GetKernelArgInfo, (self, idx, CL_KERNEL_ARG_ADDRESS_QUALIFIER, sizeof (value), value, 0));
2932 EXTEND (SP, 1);
2933 const int i = 0;
2934 PUSHs (sv_2mortal (newSVuv (value [i])));
2935
2936 void
2937 arg_access_qualifier (OpenCL::Kernel self, cl_uint idx)
2938 PPCODE:
2939 cl_kernel_arg_access_qualifier value [1];
2940 NEED_SUCCESS (GetKernelArgInfo, (self, idx, CL_KERNEL_ARG_ACCESS_QUALIFIER, sizeof (value), value, 0));
2941 EXTEND (SP, 1);
2942 const int i = 0;
2943 PUSHs (sv_2mortal (newSVuv (value [i])));
2944
2945 void
2946 arg_type_name (OpenCL::Kernel self, cl_uint idx)
2947 ALIAS:
2948 arg_type_name = CL_KERNEL_ARG_TYPE_NAME
2949 arg_name = CL_KERNEL_ARG_NAME
2950 PPCODE:
2951 size_t size;
2952 NEED_SUCCESS (GetKernelArgInfo, (self, idx, ix, 0, 0, &size));
2953 char *value = tmpbuf (size);
2954 NEED_SUCCESS (GetKernelArgInfo, (self, idx, ix, size, value, 0));
2955 EXTEND (SP, 1);
2956 const int i = 0;
2957 PUSHs (sv_2mortal (newSVpv (value, 0)));
2958
2959 void
2960 arg_type_qualifier (OpenCL::Kernel self, cl_uint idx)
2961 PPCODE:
2962 cl_kernel_arg_type_qualifier value [1];
2963 NEED_SUCCESS (GetKernelArgInfo, (self, idx, CL_KERNEL_ARG_TYPE_QUALIFIER, sizeof (value), value, 0));
2964 EXTEND (SP, 1);
2965 const int i = 0;
2966 PUSHs (sv_2mortal (newSVuv (value [i])));
2967
2968 #END:kernel_arg
2969
2970 #endif
2971
2972 MODULE = OpenCL PACKAGE = OpenCL::Event
2973
2974 void
2975 DESTROY (OpenCL::Event self)
2976 CODE:
2977 clReleaseEvent (self);
2978
2979 void
2980 wait (OpenCL::Event self)
2981 CODE:
2982 clWaitForEvents (1, &self);
2983
2984 void
2985 cb (OpenCL::Event self, cl_int command_exec_callback_type, SV *cb)
2986 CODE:
2987 clSetEventCallback (self, command_exec_callback_type, eq_event_notify, SvREFCNT_inc (s_get_cv (cb)));
2988
2989 void
2990 info (OpenCL::Event self, cl_event_info name)
2991 PPCODE:
2992 INFO (Event)
2993
2994 #BEGIN:event
2995
2996 void
2997 command_queue (OpenCL::Event self)
2998 PPCODE:
2999 cl_command_queue value [1];
3000 NEED_SUCCESS (GetEventInfo, (self, CL_EVENT_COMMAND_QUEUE, sizeof (value), value, 0));
3001 EXTEND (SP, 1);
3002 const int i = 0;
3003 {
3004 NEED_SUCCESS (RetainCommandQueue, (value [i]));
3005 PUSH_CLOBJ (stash_queue, value [i]);
3006 }
3007
3008 void
3009 command_type (OpenCL::Event self)
3010 PPCODE:
3011 cl_command_type value [1];
3012 NEED_SUCCESS (GetEventInfo, (self, CL_EVENT_COMMAND_TYPE, sizeof (value), value, 0));
3013 EXTEND (SP, 1);
3014 const int i = 0;
3015 PUSHs (sv_2mortal (newSVuv (value [i])));
3016
3017 void
3018 reference_count (OpenCL::Event self)
3019 ALIAS:
3020 reference_count = CL_EVENT_REFERENCE_COUNT
3021 command_execution_status = CL_EVENT_COMMAND_EXECUTION_STATUS
3022 PPCODE:
3023 cl_uint value [1];
3024 NEED_SUCCESS (GetEventInfo, (self, ix, sizeof (value), value, 0));
3025 EXTEND (SP, 1);
3026 const int i = 0;
3027 PUSHs (sv_2mortal (newSVuv (value [i])));
3028
3029 void
3030 context (OpenCL::Event self)
3031 PPCODE:
3032 cl_context value [1];
3033 NEED_SUCCESS (GetEventInfo, (self, CL_EVENT_CONTEXT, sizeof (value), value, 0));
3034 EXTEND (SP, 1);
3035 const int i = 0;
3036 {
3037 NEED_SUCCESS (RetainContext, (value [i]));
3038 PUSH_CLOBJ (stash_context, value [i]);
3039 }
3040
3041 #END:event
3042
3043 void
3044 profiling_info (OpenCL::Event self, cl_profiling_info name)
3045 PPCODE:
3046 INFO (EventProfiling)
3047
3048 #BEGIN:profiling
3049
3050 void
3051 profiling_command_queued (OpenCL::Event self)
3052 ALIAS:
3053 profiling_command_queued = CL_PROFILING_COMMAND_QUEUED
3054 profiling_command_submit = CL_PROFILING_COMMAND_SUBMIT
3055 profiling_command_start = CL_PROFILING_COMMAND_START
3056 profiling_command_end = CL_PROFILING_COMMAND_END
3057 PPCODE:
3058 cl_ulong value [1];
3059 NEED_SUCCESS (GetEventProfilingInfo, (self, ix, sizeof (value), value, 0));
3060 EXTEND (SP, 1);
3061 const int i = 0;
3062 PUSHs (sv_2mortal (newSVuv (value [i])));
3063
3064 #END:profiling
3065
3066 MODULE = OpenCL PACKAGE = OpenCL::UserEvent
3067
3068 void
3069 set_status (OpenCL::UserEvent self, cl_int execution_status)
3070 CODE:
3071 clSetUserEventStatus (self, execution_status);
3072
3073 MODULE = OpenCL PACKAGE = OpenCL::Mapped
3074
3075 void
3076 DESTROY (SV *self)
3077 CODE:
3078 OpenCL__Mapped mapped = SvMAPPED (self);
3079
3080 clEnqueueUnmapMemObject (mapped->queue, mapped->memobj, mapped->ptr, 1, &mapped->event, 0);
3081 mapped_detach (self, mapped);
3082
3083 clReleaseCommandQueue (mapped->queue);
3084 clReleaseEvent (mapped->event);
3085 Safefree (mapped);
3086
3087 void
3088 unmap (OpenCL::Mapped self, ...)
3089 CODE:
3090 mapped_unmap (cv, ST (0), self, self->queue, &ST (1), items - 1);
3091
3092 bool
3093 mapped (OpenCL::Mapped self)
3094 CODE:
3095 RETVAL = !!self->ptr;
3096 OUTPUT:
3097 RETVAL
3098
3099 void
3100 wait (OpenCL::Mapped self)
3101 PPCODE:
3102 if (self->event)
3103 NEED_SUCCESS (WaitForEvents, (1, &self->event));
3104
3105 void
3106 event (OpenCL::Mapped self)
3107 PPCODE:
3108 if (!self->event)
3109 XSRETURN_UNDEF;
3110
3111 clRetainEvent (self->event);
3112 XPUSH_CLOBJ (stash_event, self->event);
3113
3114 size_t
3115 size (OpenCL::Mapped self)
3116 CODE:
3117 RETVAL = self->cb;
3118 OUTPUT:
3119 RETVAL
3120
3121 IV
3122 ptr (OpenCL::Mapped self)
3123 CODE:
3124 RETVAL = PTR2IV (self->ptr);
3125 OUTPUT:
3126 RETVAL
3127
3128 void
3129 set (OpenCL::Mapped self, size_t offset, SV *data)
3130 CODE:
3131 STRLEN len;
3132 const char *ptr = SvPVbyte (data, len);
3133
3134 if (offset + len > self->cb)
3135 croak ("OpenCL::Mapped::set out of bound condition detected");
3136
3137 memcpy (offset + (char *)self->ptr, ptr, len);
3138
3139 MODULE = OpenCL PACKAGE = OpenCL::MappedBuffer
3140
3141 MODULE = OpenCL PACKAGE = OpenCL::MappedImage
3142
3143 IV
3144 row_pitch (OpenCL::Mapped self)
3145 ALIAS:
3146 slice_pitch = 1
3147 CODE:
3148 RETVAL = ix ? self->slice_pitch : self->row_pitch;
3149 OUTPUT:
3150 RETVAL
3151
3152
3153