1 //
2 // Copyright 2012 Francisco Jerez
3 //
4 // Permission is hereby granted, free of charge, to any person obtaining a
5 // copy of this software and associated documentation files (the "Software"),
6 // to deal in the Software without restriction, including without limitation
7 // the rights to use, copy, modify, merge, publish, distribute, sublicense,
8 // and/or sell copies of the Software, and to permit persons to whom the
9 // Software is furnished to do so, subject to the following conditions:
10 //
11 // The above copyright notice and this permission notice shall be included in
12 // all copies or substantial portions of the Software.
13 //
14 // THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
15 // IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
16 // FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
17 // THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR
18 // OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
19 // ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
20 // OTHER DEALINGS IN THE SOFTWARE.
21 //
22
23 #include <algorithm>
24 #include "core/device.hpp"
25 #include "core/platform.hpp"
26 #include "pipe/p_screen.h"
27 #include "pipe/p_state.h"
28 #include "spirv/invocation.hpp"
29 #include "util/bitscan.h"
30 #include "util/u_debug.h"
31 #include "spirv/invocation.hpp"
32 #include "nir/invocation.hpp"
33 #include <fstream>
34
35 using namespace clover;
36
37 namespace {
38 template<typename T>
39 std::vector<T>
get_compute_param(pipe_screen * pipe,pipe_shader_ir ir_format,pipe_compute_cap cap)40 get_compute_param(pipe_screen *pipe, pipe_shader_ir ir_format,
41 pipe_compute_cap cap) {
42 int sz = pipe->get_compute_param(pipe, ir_format, cap, NULL);
43 std::vector<T> v(sz / sizeof(T));
44
45 pipe->get_compute_param(pipe, ir_format, cap, &v.front());
46 return v;
47 }
48
49 cl_version
get_highest_supported_version(const device & dev)50 get_highest_supported_version(const device &dev) {
51 // All the checks below assume that the device supports FULL_PROFILE
52 // (which is the only profile support by clover) and that a device is
53 // not CUSTOM.
54 assert(dev.type() != CL_DEVICE_TYPE_CUSTOM);
55
56 cl_version version = CL_MAKE_VERSION(0, 0, 0);
57
58 const auto has_extension =
59 [extensions = dev.supported_extensions()](const char *extension_name){
60 return std::find_if(extensions.begin(), extensions.end(),
61 [extension_name](const cl_name_version &extension){
62 return strcmp(extension.name, extension_name) == 0;
63 }) != extensions.end();
64 };
65 const bool supports_images = dev.image_support();
66
67 // Check requirements for OpenCL 1.0
68 if (dev.max_compute_units() < 1 ||
69 dev.max_block_size().size() < 3 ||
70 // TODO: Check CL_DEVICE_MAX_WORK_ITEM_SIZES
71 dev.max_threads_per_block() < 1 ||
72 (dev.address_bits() != 32 && dev.address_bits() != 64) ||
73 dev.max_mem_alloc_size() < std::max(dev.max_mem_global() / 4,
74 (cl_ulong)128 * 1024 * 1024) ||
75 dev.max_mem_input() < 256 ||
76 dev.max_const_buffer_size() < 64 * 1024 ||
77 dev.max_const_buffers() < 8 ||
78 dev.max_mem_local() < 16 * 1024 ||
79 dev.clc_version < CL_MAKE_VERSION(1, 0, 0)) {
80 return version;
81 }
82 version = CL_MAKE_VERSION(1, 0, 0);
83
84 // Check requirements for OpenCL 1.1
85 if (!has_extension("cl_khr_byte_addressable_store") ||
86 !has_extension("cl_khr_global_int32_base_atomics") ||
87 !has_extension("cl_khr_global_int32_extended_atomics") ||
88 !has_extension("cl_khr_local_int32_base_atomics") ||
89 !has_extension("cl_khr_local_int32_extended_atomics") ||
90 // OpenCL 1.1 increased the minimum value for
91 // CL_DEVICE_MAX_PARAMETER_SIZE to 1024 bytes.
92 dev.max_mem_input() < 1024 ||
93 dev.mem_base_addr_align() < sizeof(cl_long16) ||
94 // OpenCL 1.1 increased the minimum value for
95 // CL_DEVICE_LOCAL_MEM_SIZE to 32 KB.
96 dev.max_mem_local() < 32 * 1024 ||
97 dev.clc_version < CL_MAKE_VERSION(1, 1, 0)) {
98 return version;
99 }
100 version = CL_MAKE_VERSION(1, 1, 0);
101
102 // Check requirements for OpenCL 1.2
103 if ((dev.has_doubles() && !has_extension("cl_khr_fp64")) ||
104 dev.clc_version < CL_MAKE_VERSION(1, 2, 0) ||
105 dev.max_printf_buffer_size() < 1 * 1024 * 1024 ||
106 (supports_images &&
107 (dev.max_image_buffer_size() < 65536 ||
108 dev.max_image_array_number() < 2048))) {
109 return version;
110 }
111 version = CL_MAKE_VERSION(1, 2, 0);
112
113 // Check requirements for OpenCL 3.0
114 if (dev.max_mem_alloc_size() < std::max(std::min((cl_ulong)1024 * 1024 * 1024,
115 dev.max_mem_global() / 4),
116 (cl_ulong)128 * 1024 * 1024) ||
117 // TODO: If pipes are supported, check:
118 // * CL_DEVICE_MAX_PIPE_ARGS
119 // * CL_DEVICE_PIPE_MAX_ACTIVE_RESERVATIONS
120 // * CL_DEVICE_PIPE_MAX_PACKET_SIZE
121 // TODO: If on-device queues are supported, check:
122 // * CL_DEVICE_QUEUE_ON_DEVICE_PROPERTIES
123 // * CL_DEVICE_QUEUE_ON_DEVICE_PREFERRED_SIZE
124 // * CL_DEVICE_QUEUE_ON_DEVICE_MAX_SIZE
125 // * CL_DEVICE_MAX_ON_DEVICE_QUEUES
126 // * CL_DEVICE_MAX_ON_DEVICE_EVENTS
127 dev.clc_version < CL_MAKE_VERSION(3, 0, 0) ||
128 (supports_images &&
129 (dev.max_images_write() < 64 ||
130 dev.max_image_size() < 16384))) {
131 return version;
132 }
133 version = CL_MAKE_VERSION(3, 0, 0);
134
135 return version;
136 }
137 }
138
device(clover::platform & platform,pipe_loader_device * ldev)139 device::device(clover::platform &platform, pipe_loader_device *ldev) :
140 platform(platform), clc_cache(NULL), ldev(ldev) {
141 pipe = pipe_loader_create_screen(ldev);
142 if (pipe && pipe->get_param(pipe, PIPE_CAP_COMPUTE)) {
143 const bool has_supported_ir = supports_ir(PIPE_SHADER_IR_NATIVE) ||
144 supports_ir(PIPE_SHADER_IR_NIR_SERIALIZED);
145 if (has_supported_ir) {
146 unsigned major = 1, minor = 1;
147 debug_get_version_option("CLOVER_DEVICE_CLC_VERSION_OVERRIDE",
148 &major, &minor);
149 clc_version = CL_MAKE_VERSION(major, minor, 0);
150
151 version = get_highest_supported_version(*this);
152 major = CL_VERSION_MAJOR(version);
153 minor = CL_VERSION_MINOR(version);
154 debug_get_version_option("CLOVER_DEVICE_VERSION_OVERRIDE", &major,
155 &minor);
156 version = CL_MAKE_VERSION(major, minor, 0);
157
158 }
159
160 if (supports_ir(PIPE_SHADER_IR_NATIVE))
161 return;
162 #ifdef HAVE_CLOVER_SPIRV
163 if (supports_ir(PIPE_SHADER_IR_NIR_SERIALIZED)) {
164 nir::check_for_libclc(*this);
165 clc_cache = nir::create_clc_disk_cache();
166 clc_nir = lazy<std::shared_ptr<nir_shader>>([&] () { std::string log; return std::shared_ptr<nir_shader>(nir::load_libclc_nir(*this, log), ralloc_free); });
167 return;
168 }
169 #endif
170 }
171 if (pipe)
172 pipe->destroy(pipe);
173 throw error(CL_INVALID_DEVICE);
174 }
175
~device()176 device::~device() {
177 if (clc_cache)
178 disk_cache_destroy(clc_cache);
179 if (pipe)
180 pipe->destroy(pipe);
181 if (ldev)
182 pipe_loader_release(&ldev, 1);
183 }
184
185 bool
operator ==(const device & dev) const186 device::operator==(const device &dev) const {
187 return this == &dev;
188 }
189
190 cl_device_type
type() const191 device::type() const {
192 switch (ldev->type) {
193 case PIPE_LOADER_DEVICE_SOFTWARE:
194 return CL_DEVICE_TYPE_CPU;
195 case PIPE_LOADER_DEVICE_PCI:
196 case PIPE_LOADER_DEVICE_PLATFORM:
197 return CL_DEVICE_TYPE_GPU;
198 default:
199 unreachable("Unknown device type.");
200 }
201 }
202
203 cl_uint
vendor_id() const204 device::vendor_id() const {
205 switch (ldev->type) {
206 case PIPE_LOADER_DEVICE_SOFTWARE:
207 case PIPE_LOADER_DEVICE_PLATFORM:
208 return 0;
209 case PIPE_LOADER_DEVICE_PCI:
210 return ldev->u.pci.vendor_id;
211 default:
212 unreachable("Unknown device type.");
213 }
214 }
215
216 size_t
max_images_read() const217 device::max_images_read() const {
218 return pipe->get_shader_param(pipe, PIPE_SHADER_COMPUTE,
219 PIPE_SHADER_CAP_MAX_SAMPLER_VIEWS);
220 }
221
222 size_t
max_images_write() const223 device::max_images_write() const {
224 return pipe->get_shader_param(pipe, PIPE_SHADER_COMPUTE,
225 PIPE_SHADER_CAP_MAX_SHADER_IMAGES);
226 }
227
228 size_t
max_image_buffer_size() const229 device::max_image_buffer_size() const {
230 return pipe->get_param(pipe, PIPE_CAP_MAX_TEXEL_BUFFER_ELEMENTS_UINT);
231 }
232
233 cl_uint
max_image_size() const234 device::max_image_size() const {
235 return pipe->get_param(pipe, PIPE_CAP_MAX_TEXTURE_2D_SIZE);
236 }
237
238 cl_uint
max_image_size_3d() const239 device::max_image_size_3d() const {
240 return 1 << (pipe->get_param(pipe, PIPE_CAP_MAX_TEXTURE_3D_LEVELS) - 1);
241 }
242
243 size_t
max_image_array_number() const244 device::max_image_array_number() const {
245 return pipe->get_param(pipe, PIPE_CAP_MAX_TEXTURE_ARRAY_LAYERS);
246 }
247
248 cl_uint
max_samplers() const249 device::max_samplers() const {
250 return pipe->get_shader_param(pipe, PIPE_SHADER_COMPUTE,
251 PIPE_SHADER_CAP_MAX_TEXTURE_SAMPLERS);
252 }
253
254 cl_ulong
max_mem_global() const255 device::max_mem_global() const {
256 return get_compute_param<uint64_t>(pipe, ir_format(),
257 PIPE_COMPUTE_CAP_MAX_GLOBAL_SIZE)[0];
258 }
259
260 cl_ulong
max_mem_local() const261 device::max_mem_local() const {
262 return get_compute_param<uint64_t>(pipe, ir_format(),
263 PIPE_COMPUTE_CAP_MAX_LOCAL_SIZE)[0];
264 }
265
266 cl_ulong
max_mem_input() const267 device::max_mem_input() const {
268 return get_compute_param<uint64_t>(pipe, ir_format(),
269 PIPE_COMPUTE_CAP_MAX_INPUT_SIZE)[0];
270 }
271
272 cl_ulong
max_const_buffer_size() const273 device::max_const_buffer_size() const {
274 return pipe->get_shader_param(pipe, PIPE_SHADER_COMPUTE,
275 PIPE_SHADER_CAP_MAX_CONST_BUFFER0_SIZE);
276 }
277
278 cl_uint
max_const_buffers() const279 device::max_const_buffers() const {
280 return pipe->get_shader_param(pipe, PIPE_SHADER_COMPUTE,
281 PIPE_SHADER_CAP_MAX_CONST_BUFFERS);
282 }
283
284 size_t
max_threads_per_block() const285 device::max_threads_per_block() const {
286 return get_compute_param<uint64_t>(
287 pipe, ir_format(), PIPE_COMPUTE_CAP_MAX_THREADS_PER_BLOCK)[0];
288 }
289
290 cl_ulong
max_mem_alloc_size() const291 device::max_mem_alloc_size() const {
292 return get_compute_param<uint64_t>(pipe, ir_format(),
293 PIPE_COMPUTE_CAP_MAX_MEM_ALLOC_SIZE)[0];
294 }
295
296 cl_uint
max_clock_frequency() const297 device::max_clock_frequency() const {
298 return get_compute_param<uint32_t>(pipe, ir_format(),
299 PIPE_COMPUTE_CAP_MAX_CLOCK_FREQUENCY)[0];
300 }
301
302 cl_uint
max_compute_units() const303 device::max_compute_units() const {
304 return get_compute_param<uint32_t>(pipe, ir_format(),
305 PIPE_COMPUTE_CAP_MAX_COMPUTE_UNITS)[0];
306 }
307
308 cl_uint
max_printf_buffer_size() const309 device::max_printf_buffer_size() const {
310 return 1024 * 1024;
311 }
312
313 bool
image_support() const314 device::image_support() const {
315 bool supports_images = get_compute_param<uint32_t>(pipe, ir_format(),
316 PIPE_COMPUTE_CAP_IMAGES_SUPPORTED)[0];
317 if (!supports_images)
318 return false;
319
320 /* If the gallium driver supports images, but does not support the
321 * minimum requirements for opencl 1.0 images, then don't claim to
322 * support images.
323 */
324 if (max_images_read() < 128 ||
325 max_images_write() < 8 ||
326 max_image_size() < 8192 ||
327 max_image_size_3d() < 2048 ||
328 max_samplers() < 16)
329 return false;
330
331 return true;
332 }
333
334 bool
has_doubles() const335 device::has_doubles() const {
336 return pipe->get_param(pipe, PIPE_CAP_DOUBLES);
337 }
338
339 bool
has_halves() const340 device::has_halves() const {
341 return pipe->get_shader_param(pipe, PIPE_SHADER_COMPUTE,
342 PIPE_SHADER_CAP_FP16);
343 }
344
345 bool
has_int64_atomics() const346 device::has_int64_atomics() const {
347 return pipe->get_shader_param(pipe, PIPE_SHADER_COMPUTE,
348 PIPE_SHADER_CAP_INT64_ATOMICS);
349 }
350
351 bool
has_unified_memory() const352 device::has_unified_memory() const {
353 return pipe->get_param(pipe, PIPE_CAP_UMA);
354 }
355
356 size_t
mem_base_addr_align() const357 device::mem_base_addr_align() const {
358 uint64_t page_size = 0;
359 os_get_page_size(&page_size);
360 return std::max((size_t)page_size, sizeof(cl_long) * 16);
361 }
362
363 cl_device_svm_capabilities
svm_support() const364 device::svm_support() const {
365 // Without CAP_RESOURCE_FROM_USER_MEMORY SVM and CL_MEM_USE_HOST_PTR
366 // interactions won't work according to spec as clover manages a GPU side
367 // copy of the host data.
368 //
369 // The biggest problem are memory buffers created with CL_MEM_USE_HOST_PTR,
370 // but the application and/or the kernel updates the memory via SVM and not
371 // the cl_mem buffer.
372 // We can't even do proper tracking on what memory might have been accessed
373 // as the host ptr to the buffer could be within a SVM region, where through
374 // the CL API there is no reliable way of knowing if a certain cl_mem buffer
375 // was accessed by a kernel or not and the runtime can't reliably know from
376 // which side the GPU buffer content needs to be updated.
377 //
378 // Another unsolvable scenario is a cl_mem object passed by cl_mem reference
379 // and SVM pointer into the same kernel at the same time.
380 if (allows_user_pointers() && pipe->get_param(pipe, PIPE_CAP_SYSTEM_SVM))
381 // we can emulate all lower levels if we support fine grain system
382 return CL_DEVICE_SVM_FINE_GRAIN_SYSTEM |
383 CL_DEVICE_SVM_COARSE_GRAIN_BUFFER |
384 CL_DEVICE_SVM_FINE_GRAIN_BUFFER;
385 return 0;
386 }
387
388 bool
allows_user_pointers() const389 device::allows_user_pointers() const {
390 return pipe->get_param(pipe, PIPE_CAP_RESOURCE_FROM_USER_MEMORY) ||
391 pipe->get_param(pipe, PIPE_CAP_RESOURCE_FROM_USER_MEMORY_COMPUTE_ONLY);
392 }
393
394 std::vector<size_t>
max_block_size() const395 device::max_block_size() const {
396 auto v = get_compute_param<uint64_t>(pipe, ir_format(),
397 PIPE_COMPUTE_CAP_MAX_BLOCK_SIZE);
398 return { v.begin(), v.end() };
399 }
400
401 cl_uint
subgroup_size() const402 device::subgroup_size() const {
403 return get_compute_param<uint32_t>(pipe, ir_format(),
404 PIPE_COMPUTE_CAP_SUBGROUP_SIZE)[0];
405 }
406
407 cl_uint
address_bits() const408 device::address_bits() const {
409 return get_compute_param<uint32_t>(pipe, ir_format(),
410 PIPE_COMPUTE_CAP_ADDRESS_BITS)[0];
411 }
412
413 std::string
device_name() const414 device::device_name() const {
415 return pipe->get_name(pipe);
416 }
417
418 std::string
vendor_name() const419 device::vendor_name() const {
420 return pipe->get_device_vendor(pipe);
421 }
422
423 enum pipe_shader_ir
ir_format() const424 device::ir_format() const {
425 if (supports_ir(PIPE_SHADER_IR_NATIVE))
426 return PIPE_SHADER_IR_NATIVE;
427
428 assert(supports_ir(PIPE_SHADER_IR_NIR_SERIALIZED));
429 return PIPE_SHADER_IR_NIR_SERIALIZED;
430 }
431
432 std::string
ir_target() const433 device::ir_target() const {
434 std::vector<char> target = get_compute_param<char>(
435 pipe, ir_format(), PIPE_COMPUTE_CAP_IR_TARGET);
436 return { target.data() };
437 }
438
439 enum pipe_endian
endianness() const440 device::endianness() const {
441 return (enum pipe_endian)pipe->get_param(pipe, PIPE_CAP_ENDIANNESS);
442 }
443
444 std::string
device_version_as_string() const445 device::device_version_as_string() const {
446 static const std::string version_string =
447 std::to_string(CL_VERSION_MAJOR(version)) + "." +
448 std::to_string(CL_VERSION_MINOR(version));
449 return version_string;
450 }
451
452 std::string
device_clc_version_as_string() const453 device::device_clc_version_as_string() const {
454 int major = CL_VERSION_MAJOR(clc_version);
455 int minor = CL_VERSION_MINOR(clc_version);
456
457 /* for CL 3.0 we need this to be 1.2 until we support 2.0. */
458 if (major == 3) {
459 major = 1;
460 minor = 2;
461 }
462 static const std::string version_string =
463 std::to_string(major) + "." +
464 std::to_string(minor);
465 return version_string;
466 }
467
468 bool
supports_ir(enum pipe_shader_ir ir) const469 device::supports_ir(enum pipe_shader_ir ir) const {
470 return pipe->get_shader_param(pipe, PIPE_SHADER_COMPUTE,
471 PIPE_SHADER_CAP_SUPPORTED_IRS) & (1 << ir);
472 }
473
474 std::vector<cl_name_version>
supported_extensions() const475 device::supported_extensions() const {
476 std::vector<cl_name_version> vec;
477
478 vec.push_back( cl_name_version{ CL_MAKE_VERSION(1, 0, 0), "cl_khr_byte_addressable_store" } );
479 vec.push_back( cl_name_version{ CL_MAKE_VERSION(1, 0, 0), "cl_khr_global_int32_base_atomics" } );
480 vec.push_back( cl_name_version{ CL_MAKE_VERSION(1, 0, 0), "cl_khr_global_int32_extended_atomics" } );
481 vec.push_back( cl_name_version{ CL_MAKE_VERSION(1, 0, 0), "cl_khr_local_int32_base_atomics" } );
482 vec.push_back( cl_name_version{ CL_MAKE_VERSION(1, 0, 0), "cl_khr_local_int32_extended_atomics" } );
483 if (has_int64_atomics()) {
484 vec.push_back( cl_name_version{ CL_MAKE_VERSION(1, 0, 0), "cl_khr_int64_base_atomics" } );
485 vec.push_back( cl_name_version{ CL_MAKE_VERSION(1, 0, 0), "cl_khr_int64_extended_atomics" } );
486 }
487 if (has_doubles())
488 vec.push_back( cl_name_version{ CL_MAKE_VERSION(1, 0, 0), "cl_khr_fp64" } );
489 if (has_halves())
490 vec.push_back( cl_name_version{ CL_MAKE_VERSION(1, 0, 0), "cl_khr_fp16" } );
491 if (svm_support())
492 vec.push_back( cl_name_version{ CL_MAKE_VERSION(1, 0, 0), "cl_arm_shared_virtual_memory" } );
493 if (!clover::spirv::supported_versions().empty() &&
494 supports_ir(PIPE_SHADER_IR_NIR_SERIALIZED))
495 vec.push_back( cl_name_version{ CL_MAKE_VERSION(1, 0, 0), "cl_khr_il_program" } );
496 vec.push_back( cl_name_version{ CL_MAKE_VERSION(1, 0, 0), "cl_khr_extended_versioning" } );
497 return vec;
498 }
499
500 std::string
supported_extensions_as_string() const501 device::supported_extensions_as_string() const {
502 static std::string extensions_string;
503
504 if (!extensions_string.empty())
505 return extensions_string;
506
507 const auto extension_list = supported_extensions();
508 for (const auto &extension : extension_list) {
509 if (!extensions_string.empty())
510 extensions_string += " ";
511 extensions_string += extension.name;
512 }
513 return extensions_string;
514 }
515
516 std::vector<cl_name_version>
supported_il_versions() const517 device::supported_il_versions() const {
518 return clover::spirv::supported_versions();
519 }
520
521 const void *
get_compiler_options(enum pipe_shader_ir ir) const522 device::get_compiler_options(enum pipe_shader_ir ir) const {
523 return pipe->get_compiler_options(pipe, ir, PIPE_SHADER_COMPUTE);
524 }
525
526 cl_version
device_version() const527 device::device_version() const {
528 return version;
529 }
530
531 cl_version
device_clc_version(bool api) const532 device::device_clc_version(bool api) const {
533 /*
534 * For the API we have to limit this to 1.2,
535 * but internally we want 3.0 if it works.
536 */
537 if (!api)
538 return clc_version;
539
540 int major = CL_VERSION_MAJOR(clc_version);
541 /* for CL 3.0 we need this to be 1.2 until we support 2.0. */
542 if (major == 3) {
543 return CL_MAKE_VERSION(1, 2, 0);
544 }
545 return clc_version;
546 }
547
548 std::vector<cl_name_version>
opencl_c_all_versions() const549 device::opencl_c_all_versions() const {
550 std::vector<cl_name_version> vec;
551 vec.push_back( cl_name_version{ CL_MAKE_VERSION(1, 0, 0), "OpenCL C" } );
552 vec.push_back( cl_name_version{ CL_MAKE_VERSION(1, 1, 0), "OpenCL C" } );
553
554 if (CL_VERSION_MAJOR(clc_version) == 1 &&
555 CL_VERSION_MINOR(clc_version) == 2)
556 vec.push_back( cl_name_version{ CL_MAKE_VERSION(1, 2, 0), "OpenCL C" } );
557 if (CL_VERSION_MAJOR(clc_version) == 3) {
558 vec.push_back( cl_name_version{ CL_MAKE_VERSION(1, 2, 0), "OpenCL C" } );
559 vec.push_back( cl_name_version{ CL_MAKE_VERSION(3, 0, 0), "OpenCL C" } );
560 }
561 return vec;
562 }
563
564 std::vector<cl_name_version>
opencl_c_features() const565 device::opencl_c_features() const {
566 std::vector<cl_name_version> vec;
567
568 vec.push_back( cl_name_version {CL_MAKE_VERSION(3, 0, 0), "__opencl_c_int64" });
569 if (has_doubles())
570 vec.push_back( cl_name_version {CL_MAKE_VERSION(3, 0, 0), "__opencl_c_fp64" });
571
572 return vec;
573 }
574