xref: /aosp_15_r20/external/cpuinfo/test/mock/blu-r1-hd.cc (revision 2b54f0db79fd8303838913b20ff3780cddaa909f)
1 #include <gtest/gtest.h>
2 
3 #include <cpuinfo.h>
4 #include <cpuinfo-mock.h>
5 
6 
TEST(PROCESSORS,count)7 TEST(PROCESSORS, count) {
8 	ASSERT_EQ(4, cpuinfo_get_processors_count());
9 }
10 
TEST(PROCESSORS,non_null)11 TEST(PROCESSORS, non_null) {
12 	ASSERT_TRUE(cpuinfo_get_processors());
13 }
14 
TEST(PROCESSORS,smt_id)15 TEST(PROCESSORS, smt_id) {
16 	for (uint32_t i = 0; i < cpuinfo_get_processors_count(); i++) {
17 		ASSERT_EQ(0, cpuinfo_get_processor(i)->smt_id);
18 	}
19 }
20 
TEST(PROCESSORS,core)21 TEST(PROCESSORS, core) {
22 	for (uint32_t i = 0; i < cpuinfo_get_processors_count(); i++) {
23 		ASSERT_EQ(cpuinfo_get_core(i), cpuinfo_get_processor(i)->core);
24 	}
25 }
26 
TEST(PROCESSORS,cluster)27 TEST(PROCESSORS, cluster) {
28 	for (uint32_t i = 0; i < cpuinfo_get_processors_count(); i++) {
29 		ASSERT_EQ(cpuinfo_get_cluster(0), cpuinfo_get_processor(i)->cluster);
30 	}
31 }
32 
TEST(PROCESSORS,package)33 TEST(PROCESSORS, package) {
34 	for (uint32_t i = 0; i < cpuinfo_get_processors_count(); i++) {
35 		ASSERT_EQ(cpuinfo_get_package(0), cpuinfo_get_processor(i)->package);
36 	}
37 }
38 
TEST(PROCESSORS,linux_id)39 TEST(PROCESSORS, linux_id) {
40 	for (uint32_t i = 0; i < cpuinfo_get_processors_count(); i++) {
41 		ASSERT_EQ(i, cpuinfo_get_processor(i)->linux_id);
42 	}
43 }
44 
TEST(PROCESSORS,l1i)45 TEST(PROCESSORS, l1i) {
46 	for (uint32_t i = 0; i < cpuinfo_get_processors_count(); i++) {
47 		ASSERT_EQ(cpuinfo_get_l1i_cache(i), cpuinfo_get_processor(i)->cache.l1i);
48 	}
49 }
50 
TEST(PROCESSORS,l1d)51 TEST(PROCESSORS, l1d) {
52 	for (uint32_t i = 0; i < cpuinfo_get_processors_count(); i++) {
53 		ASSERT_EQ(cpuinfo_get_l1d_cache(i), cpuinfo_get_processor(i)->cache.l1d);
54 	}
55 }
56 
TEST(PROCESSORS,l2)57 TEST(PROCESSORS, l2) {
58 	for (uint32_t i = 0; i < cpuinfo_get_processors_count(); i++) {
59 		ASSERT_EQ(cpuinfo_get_l2_cache(0), cpuinfo_get_processor(i)->cache.l2);
60 	}
61 }
62 
TEST(PROCESSORS,l3)63 TEST(PROCESSORS, l3) {
64 	for (uint32_t i = 0; i < cpuinfo_get_processors_count(); i++) {
65 		ASSERT_FALSE(cpuinfo_get_processor(i)->cache.l3);
66 	}
67 }
68 
TEST(PROCESSORS,l4)69 TEST(PROCESSORS, l4) {
70 	for (uint32_t i = 0; i < cpuinfo_get_processors_count(); i++) {
71 		ASSERT_FALSE(cpuinfo_get_processor(i)->cache.l4);
72 	}
73 }
74 
TEST(CORES,count)75 TEST(CORES, count) {
76 	ASSERT_EQ(4, cpuinfo_get_cores_count());
77 }
78 
TEST(CORES,non_null)79 TEST(CORES, non_null) {
80 	ASSERT_TRUE(cpuinfo_get_cores());
81 }
82 
TEST(CORES,processor_start)83 TEST(CORES, processor_start) {
84 	for (uint32_t i = 0; i < cpuinfo_get_cores_count(); i++) {
85 		ASSERT_EQ(i, cpuinfo_get_core(i)->processor_start);
86 	}
87 }
88 
TEST(CORES,processor_count)89 TEST(CORES, processor_count) {
90 	for (uint32_t i = 0; i < cpuinfo_get_cores_count(); i++) {
91 		ASSERT_EQ(1, cpuinfo_get_core(i)->processor_count);
92 	}
93 }
94 
TEST(CORES,core_id)95 TEST(CORES, core_id) {
96 	for (uint32_t i = 0; i < cpuinfo_get_cores_count(); i++) {
97 		ASSERT_EQ(i, cpuinfo_get_core(i)->core_id);
98 	}
99 }
100 
TEST(CORES,cluster)101 TEST(CORES, cluster) {
102 	for (uint32_t i = 0; i < cpuinfo_get_cores_count(); i++) {
103 		ASSERT_EQ(cpuinfo_get_cluster(0), cpuinfo_get_core(i)->cluster);
104 	}
105 }
106 
TEST(CORES,package)107 TEST(CORES, package) {
108 	for (uint32_t i = 0; i < cpuinfo_get_cores_count(); i++) {
109 		ASSERT_EQ(cpuinfo_get_package(0), cpuinfo_get_core(i)->package);
110 	}
111 }
112 
TEST(CORES,vendor)113 TEST(CORES, vendor) {
114 	for (uint32_t i = 0; i < cpuinfo_get_cores_count(); i++) {
115 		ASSERT_EQ(cpuinfo_vendor_arm, cpuinfo_get_core(i)->vendor);
116 	}
117 }
118 
TEST(CORES,uarch)119 TEST(CORES, uarch) {
120 	for (uint32_t i = 0; i < cpuinfo_get_cores_count(); i++) {
121 		ASSERT_EQ(cpuinfo_uarch_cortex_a53, cpuinfo_get_core(i)->uarch);
122 	}
123 }
124 
TEST(CORES,midr)125 TEST(CORES, midr) {
126 	for (uint32_t i = 0; i < cpuinfo_get_cores_count(); i++) {
127 		ASSERT_EQ(UINT32_C(0x410FD033), cpuinfo_get_core(i)->midr);
128 	}
129 }
130 
TEST(CORES,DISABLED_frequency)131 TEST(CORES, DISABLED_frequency) {
132 	for (uint32_t i = 0; i < cpuinfo_get_cores_count(); i++) {
133 		ASSERT_EQ(UINT64_C(1300000000), cpuinfo_get_core(i)->frequency);
134 	}
135 }
136 
TEST(CLUSTERS,count)137 TEST(CLUSTERS, count) {
138 	ASSERT_EQ(1, cpuinfo_get_clusters_count());
139 }
140 
TEST(CLUSTERS,non_null)141 TEST(CLUSTERS, non_null) {
142 	ASSERT_TRUE(cpuinfo_get_clusters());
143 }
144 
TEST(CLUSTERS,processor_start)145 TEST(CLUSTERS, processor_start) {
146 	for (uint32_t i = 0; i < cpuinfo_get_clusters_count(); i++) {
147 		ASSERT_EQ(0, cpuinfo_get_cluster(i)->processor_start);
148 	}
149 }
150 
TEST(CLUSTERS,processor_count)151 TEST(CLUSTERS, processor_count) {
152 	for (uint32_t i = 0; i < cpuinfo_get_clusters_count(); i++) {
153 		ASSERT_EQ(4, cpuinfo_get_cluster(i)->processor_count);
154 	}
155 }
156 
TEST(CLUSTERS,core_start)157 TEST(CLUSTERS, core_start) {
158 	for (uint32_t i = 0; i < cpuinfo_get_clusters_count(); i++) {
159 		ASSERT_EQ(0, cpuinfo_get_cluster(i)->core_start);
160 	}
161 }
162 
TEST(CLUSTERS,core_count)163 TEST(CLUSTERS, core_count) {
164 	for (uint32_t i = 0; i < cpuinfo_get_clusters_count(); i++) {
165 		ASSERT_EQ(4, cpuinfo_get_cluster(i)->core_count);
166 	}
167 }
168 
TEST(CLUSTERS,cluster_id)169 TEST(CLUSTERS, cluster_id) {
170 	for (uint32_t i = 0; i < cpuinfo_get_clusters_count(); i++) {
171 		ASSERT_EQ(i, cpuinfo_get_cluster(i)->cluster_id);
172 	}
173 }
174 
TEST(CLUSTERS,package)175 TEST(CLUSTERS, package) {
176 	for (uint32_t i = 0; i < cpuinfo_get_clusters_count(); i++) {
177 		ASSERT_EQ(cpuinfo_get_package(0), cpuinfo_get_cluster(i)->package);
178 	}
179 }
180 
TEST(CLUSTERS,vendor)181 TEST(CLUSTERS, vendor) {
182 	for (uint32_t i = 0; i < cpuinfo_get_clusters_count(); i++) {
183 		ASSERT_EQ(cpuinfo_vendor_arm, cpuinfo_get_cluster(i)->vendor);
184 	}
185 }
186 
TEST(CLUSTERS,uarch)187 TEST(CLUSTERS, uarch) {
188 	for (uint32_t i = 0; i < cpuinfo_get_clusters_count(); i++) {
189 		ASSERT_EQ(cpuinfo_uarch_cortex_a53, cpuinfo_get_cluster(i)->uarch);
190 	}
191 }
192 
TEST(CLUSTERS,midr)193 TEST(CLUSTERS, midr) {
194 	for (uint32_t i = 0; i < cpuinfo_get_clusters_count(); i++) {
195 		ASSERT_EQ(UINT32_C(0x410FD033), cpuinfo_get_cluster(i)->midr);
196 	}
197 }
198 
TEST(CLUSTERS,DISABLED_frequency)199 TEST(CLUSTERS, DISABLED_frequency) {
200 	for (uint32_t i = 0; i < cpuinfo_get_clusters_count(); i++) {
201 		ASSERT_EQ(UINT64_C(1300000000), cpuinfo_get_cluster(i)->frequency);
202 	}
203 }
204 
TEST(PACKAGES,count)205 TEST(PACKAGES, count) {
206 	ASSERT_EQ(1, cpuinfo_get_packages_count());
207 }
208 
TEST(PACKAGES,non_null)209 TEST(PACKAGES, non_null) {
210 	ASSERT_TRUE(cpuinfo_get_packages());
211 }
212 
TEST(PACKAGES,name)213 TEST(PACKAGES, name) {
214 	for (uint32_t i = 0; i < cpuinfo_get_packages_count(); i++) {
215 		ASSERT_EQ("MediaTek MT6735",
216 			std::string(cpuinfo_get_package(i)->name,
217 				strnlen(cpuinfo_get_package(i)->name, CPUINFO_PACKAGE_NAME_MAX)));
218 	}
219 }
220 
TEST(PACKAGES,processor_start)221 TEST(PACKAGES, processor_start) {
222 	for (uint32_t i = 0; i < cpuinfo_get_packages_count(); i++) {
223 		ASSERT_EQ(0, cpuinfo_get_package(i)->processor_start);
224 	}
225 }
226 
TEST(PACKAGES,processor_count)227 TEST(PACKAGES, processor_count) {
228 	for (uint32_t i = 0; i < cpuinfo_get_packages_count(); i++) {
229 		ASSERT_EQ(4, cpuinfo_get_package(i)->processor_count);
230 	}
231 }
232 
TEST(PACKAGES,core_start)233 TEST(PACKAGES, core_start) {
234 	for (uint32_t i = 0; i < cpuinfo_get_packages_count(); i++) {
235 		ASSERT_EQ(0, cpuinfo_get_package(i)->core_start);
236 	}
237 }
238 
TEST(PACKAGES,core_count)239 TEST(PACKAGES, core_count) {
240 	for (uint32_t i = 0; i < cpuinfo_get_packages_count(); i++) {
241 		ASSERT_EQ(4, cpuinfo_get_package(i)->core_count);
242 	}
243 }
244 
TEST(PACKAGES,cluster_start)245 TEST(PACKAGES, cluster_start) {
246 	for (uint32_t i = 0; i < cpuinfo_get_packages_count(); i++) {
247 		ASSERT_EQ(0, cpuinfo_get_package(i)->cluster_start);
248 	}
249 }
250 
TEST(PACKAGES,cluster_count)251 TEST(PACKAGES, cluster_count) {
252 	for (uint32_t i = 0; i < cpuinfo_get_packages_count(); i++) {
253 		ASSERT_EQ(1, cpuinfo_get_package(i)->cluster_count);
254 	}
255 }
256 
TEST(ISA,thumb)257 TEST(ISA, thumb) {
258 	ASSERT_TRUE(cpuinfo_has_arm_thumb());
259 }
260 
TEST(ISA,thumb2)261 TEST(ISA, thumb2) {
262 	ASSERT_TRUE(cpuinfo_has_arm_thumb2());
263 }
264 
TEST(ISA,armv5e)265 TEST(ISA, armv5e) {
266 	ASSERT_TRUE(cpuinfo_has_arm_v5e());
267 }
268 
TEST(ISA,armv6)269 TEST(ISA, armv6) {
270 	ASSERT_TRUE(cpuinfo_has_arm_v6());
271 }
272 
TEST(ISA,armv6k)273 TEST(ISA, armv6k) {
274 	ASSERT_TRUE(cpuinfo_has_arm_v6k());
275 }
276 
TEST(ISA,armv7)277 TEST(ISA, armv7) {
278 	ASSERT_TRUE(cpuinfo_has_arm_v7());
279 }
280 
TEST(ISA,armv7mp)281 TEST(ISA, armv7mp) {
282 	ASSERT_TRUE(cpuinfo_has_arm_v7mp());
283 }
284 
TEST(ISA,idiv)285 TEST(ISA, idiv) {
286 	ASSERT_TRUE(cpuinfo_has_arm_idiv());
287 }
288 
TEST(ISA,vfpv2)289 TEST(ISA, vfpv2) {
290 	ASSERT_FALSE(cpuinfo_has_arm_vfpv2());
291 }
292 
TEST(ISA,vfpv3)293 TEST(ISA, vfpv3) {
294 	ASSERT_TRUE(cpuinfo_has_arm_vfpv3());
295 }
296 
TEST(ISA,vfpv3_d32)297 TEST(ISA, vfpv3_d32) {
298 	ASSERT_TRUE(cpuinfo_has_arm_vfpv3_d32());
299 }
300 
TEST(ISA,vfpv3_fp16)301 TEST(ISA, vfpv3_fp16) {
302 	ASSERT_TRUE(cpuinfo_has_arm_vfpv3_fp16());
303 }
304 
TEST(ISA,vfpv3_fp16_d32)305 TEST(ISA, vfpv3_fp16_d32) {
306 	ASSERT_TRUE(cpuinfo_has_arm_vfpv3_fp16_d32());
307 }
308 
TEST(ISA,vfpv4)309 TEST(ISA, vfpv4) {
310 	ASSERT_TRUE(cpuinfo_has_arm_vfpv4());
311 }
312 
TEST(ISA,vfpv4_d32)313 TEST(ISA, vfpv4_d32) {
314 	ASSERT_TRUE(cpuinfo_has_arm_vfpv4_d32());
315 }
316 
TEST(ISA,wmmx)317 TEST(ISA, wmmx) {
318 	ASSERT_FALSE(cpuinfo_has_arm_wmmx());
319 }
320 
TEST(ISA,wmmx2)321 TEST(ISA, wmmx2) {
322 	ASSERT_FALSE(cpuinfo_has_arm_wmmx2());
323 }
324 
TEST(ISA,neon)325 TEST(ISA, neon) {
326 	ASSERT_TRUE(cpuinfo_has_arm_neon());
327 }
328 
TEST(ISA,neon_fp16)329 TEST(ISA, neon_fp16) {
330 	ASSERT_TRUE(cpuinfo_has_arm_neon_fp16());
331 }
332 
TEST(ISA,neon_fma)333 TEST(ISA, neon_fma) {
334 	ASSERT_TRUE(cpuinfo_has_arm_neon_fma());
335 }
336 
TEST(ISA,atomics)337 TEST(ISA, atomics) {
338 	ASSERT_FALSE(cpuinfo_has_arm_atomics());
339 }
340 
TEST(ISA,neon_rdm)341 TEST(ISA, neon_rdm) {
342 	ASSERT_FALSE(cpuinfo_has_arm_neon_rdm());
343 }
344 
TEST(ISA,fp16_arith)345 TEST(ISA, fp16_arith) {
346 	ASSERT_FALSE(cpuinfo_has_arm_fp16_arith());
347 }
348 
TEST(ISA,neon_fp16_arith)349 TEST(ISA, neon_fp16_arith) {
350 	ASSERT_FALSE(cpuinfo_has_arm_neon_fp16_arith());
351 }
352 
TEST(ISA,neon_dot)353 TEST(ISA, neon_dot) {
354 	ASSERT_FALSE(cpuinfo_has_arm_neon_dot());
355 }
356 
TEST(ISA,jscvt)357 TEST(ISA, jscvt) {
358 	ASSERT_FALSE(cpuinfo_has_arm_jscvt());
359 }
360 
TEST(ISA,fcma)361 TEST(ISA, fcma) {
362 	ASSERT_FALSE(cpuinfo_has_arm_fcma());
363 }
364 
TEST(ISA,aes)365 TEST(ISA, aes) {
366 	ASSERT_FALSE(cpuinfo_has_arm_aes());
367 }
368 
TEST(ISA,sha1)369 TEST(ISA, sha1) {
370 	ASSERT_FALSE(cpuinfo_has_arm_sha1());
371 }
372 
TEST(ISA,sha2)373 TEST(ISA, sha2) {
374 	ASSERT_TRUE(cpuinfo_has_arm_sha2());
375 }
376 
TEST(ISA,pmull)377 TEST(ISA, pmull) {
378 	ASSERT_FALSE(cpuinfo_has_arm_pmull());
379 }
380 
TEST(ISA,crc32)381 TEST(ISA, crc32) {
382 	ASSERT_FALSE(cpuinfo_has_arm_crc32());
383 }
384 
TEST(L1I,count)385 TEST(L1I, count) {
386 	ASSERT_EQ(4, cpuinfo_get_l1i_caches_count());
387 }
388 
TEST(L1I,non_null)389 TEST(L1I, non_null) {
390 	ASSERT_TRUE(cpuinfo_get_l1i_caches());
391 }
392 
TEST(L1I,size)393 TEST(L1I, size) {
394 	for (uint32_t i = 0; i < cpuinfo_get_l1i_caches_count(); i++) {
395 		ASSERT_EQ(16 * 1024, cpuinfo_get_l1i_cache(i)->size);
396 	}
397 }
398 
TEST(L1I,associativity)399 TEST(L1I, associativity) {
400 	for (uint32_t i = 0; i < cpuinfo_get_l1i_caches_count(); i++) {
401 		ASSERT_EQ(2, cpuinfo_get_l1i_cache(i)->associativity);
402 	}
403 }
404 
TEST(L1I,sets)405 TEST(L1I, sets) {
406 	for (uint32_t i = 0; i < cpuinfo_get_l1i_caches_count(); i++) {
407 		ASSERT_EQ(cpuinfo_get_l1i_cache(i)->size,
408 			cpuinfo_get_l1i_cache(i)->sets * cpuinfo_get_l1i_cache(i)->line_size * cpuinfo_get_l1i_cache(i)->partitions * cpuinfo_get_l1i_cache(i)->associativity);
409 	}
410 }
411 
TEST(L1I,partitions)412 TEST(L1I, partitions) {
413 	for (uint32_t i = 0; i < cpuinfo_get_l1i_caches_count(); i++) {
414 		ASSERT_EQ(1, cpuinfo_get_l1i_cache(i)->partitions);
415 	}
416 }
417 
TEST(L1I,line_size)418 TEST(L1I, line_size) {
419 	for (uint32_t i = 0; i < cpuinfo_get_l1i_caches_count(); i++) {
420 		ASSERT_EQ(64, cpuinfo_get_l1i_cache(i)->line_size);
421 	}
422 }
423 
TEST(L1I,flags)424 TEST(L1I, flags) {
425 	for (uint32_t i = 0; i < cpuinfo_get_l1i_caches_count(); i++) {
426 		ASSERT_EQ(0, cpuinfo_get_l1i_cache(i)->flags);
427 	}
428 }
429 
TEST(L1I,processors)430 TEST(L1I, processors) {
431 	for (uint32_t i = 0; i < cpuinfo_get_l1i_caches_count(); i++) {
432 		ASSERT_EQ(i, cpuinfo_get_l1i_cache(i)->processor_start);
433 		ASSERT_EQ(1, cpuinfo_get_l1i_cache(i)->processor_count);
434 	}
435 }
436 
TEST(L1D,count)437 TEST(L1D, count) {
438 	ASSERT_EQ(4, cpuinfo_get_l1d_caches_count());
439 }
440 
TEST(L1D,non_null)441 TEST(L1D, non_null) {
442 	ASSERT_TRUE(cpuinfo_get_l1d_caches());
443 }
444 
TEST(L1D,size)445 TEST(L1D, size) {
446 	for (uint32_t i = 0; i < cpuinfo_get_l1d_caches_count(); i++) {
447 		ASSERT_EQ(16 * 1024, cpuinfo_get_l1d_cache(i)->size);
448 	}
449 }
450 
TEST(L1D,associativity)451 TEST(L1D, associativity) {
452 	for (uint32_t i = 0; i < cpuinfo_get_l1d_caches_count(); i++) {
453 		ASSERT_EQ(4, cpuinfo_get_l1d_cache(i)->associativity);
454 	}
455 }
456 
TEST(L1D,sets)457 TEST(L1D, sets) {
458 	for (uint32_t i = 0; i < cpuinfo_get_l1d_caches_count(); i++) {
459 		ASSERT_EQ(cpuinfo_get_l1d_cache(i)->size,
460 			cpuinfo_get_l1d_cache(i)->sets * cpuinfo_get_l1d_cache(i)->line_size * cpuinfo_get_l1d_cache(i)->partitions * cpuinfo_get_l1d_cache(i)->associativity);
461 	}
462 }
463 
TEST(L1D,partitions)464 TEST(L1D, partitions) {
465 	for (uint32_t i = 0; i < cpuinfo_get_l1d_caches_count(); i++) {
466 		ASSERT_EQ(1, cpuinfo_get_l1d_cache(i)->partitions);
467 	}
468 }
469 
TEST(L1D,line_size)470 TEST(L1D, line_size) {
471 	for (uint32_t i = 0; i < cpuinfo_get_l1d_caches_count(); i++) {
472 		ASSERT_EQ(64, cpuinfo_get_l1d_cache(i)->line_size);
473 	}
474 }
475 
TEST(L1D,flags)476 TEST(L1D, flags) {
477 	for (uint32_t i = 0; i < cpuinfo_get_l1d_caches_count(); i++) {
478 		ASSERT_EQ(0, cpuinfo_get_l1d_cache(i)->flags);
479 	}
480 }
481 
TEST(L1D,processors)482 TEST(L1D, processors) {
483 	for (uint32_t i = 0; i < cpuinfo_get_l1d_caches_count(); i++) {
484 		ASSERT_EQ(i, cpuinfo_get_l1d_cache(i)->processor_start);
485 		ASSERT_EQ(1, cpuinfo_get_l1d_cache(i)->processor_count);
486 	}
487 }
488 
TEST(L2,count)489 TEST(L2, count) {
490 	ASSERT_EQ(1, cpuinfo_get_l2_caches_count());
491 }
492 
TEST(L2,non_null)493 TEST(L2, non_null) {
494 	ASSERT_TRUE(cpuinfo_get_l2_caches());
495 }
496 
TEST(L2,size)497 TEST(L2, size) {
498 	for (uint32_t i = 0; i < cpuinfo_get_l2_caches_count(); i++) {
499 		ASSERT_EQ(256 * 1024, cpuinfo_get_l2_cache(i)->size);
500 	}
501 }
502 
TEST(L2,associativity)503 TEST(L2, associativity) {
504 	for (uint32_t i = 0; i < cpuinfo_get_l2_caches_count(); i++) {
505 		ASSERT_EQ(16, cpuinfo_get_l2_cache(i)->associativity);
506 	}
507 }
508 
TEST(L2,sets)509 TEST(L2, sets) {
510 	for (uint32_t i = 0; i < cpuinfo_get_l2_caches_count(); i++) {
511 		ASSERT_EQ(cpuinfo_get_l2_cache(i)->size,
512 			cpuinfo_get_l2_cache(i)->sets * cpuinfo_get_l2_cache(i)->line_size * cpuinfo_get_l2_cache(i)->partitions * cpuinfo_get_l2_cache(i)->associativity);
513 	}
514 }
515 
TEST(L2,partitions)516 TEST(L2, partitions) {
517 	for (uint32_t i = 0; i < cpuinfo_get_l2_caches_count(); i++) {
518 		ASSERT_EQ(1, cpuinfo_get_l2_cache(i)->partitions);
519 	}
520 }
521 
TEST(L2,line_size)522 TEST(L2, line_size) {
523 	for (uint32_t i = 0; i < cpuinfo_get_l2_caches_count(); i++) {
524 		ASSERT_EQ(64, cpuinfo_get_l2_cache(i)->line_size);
525 	}
526 }
527 
TEST(L2,flags)528 TEST(L2, flags) {
529 	for (uint32_t i = 0; i < cpuinfo_get_l2_caches_count(); i++) {
530 		ASSERT_EQ(0, cpuinfo_get_l2_cache(i)->flags);
531 	}
532 }
533 
TEST(L2,processors)534 TEST(L2, processors) {
535 	for (uint32_t i = 0; i < cpuinfo_get_l2_caches_count(); i++) {
536 		ASSERT_EQ(0, cpuinfo_get_l2_cache(i)->processor_start);
537 		ASSERT_EQ(4, cpuinfo_get_l2_cache(i)->processor_count);
538 	}
539 }
540 
TEST(L3,none)541 TEST(L3, none) {
542 	ASSERT_EQ(0, cpuinfo_get_l3_caches_count());
543 	ASSERT_FALSE(cpuinfo_get_l3_caches());
544 }
545 
TEST(L4,none)546 TEST(L4, none) {
547 	ASSERT_EQ(0, cpuinfo_get_l4_caches_count());
548 	ASSERT_FALSE(cpuinfo_get_l4_caches());
549 }
550 
551 #include <blu-r1-hd.h>
552 
main(int argc,char * argv[])553 int main(int argc, char* argv[]) {
554 #if CPUINFO_ARCH_ARM
555 	cpuinfo_set_hwcap(UINT32_C(0x003FB0D6));
556 	cpuinfo_set_hwcap2(UINT32_C(0x00000008));
557 #endif
558 	cpuinfo_mock_filesystem(filesystem);
559 #ifdef __ANDROID__
560 	cpuinfo_mock_android_properties(properties);
561 #endif
562 	cpuinfo_initialize();
563 	::testing::InitGoogleTest(&argc, argv);
564 	return RUN_ALL_TESTS();
565 }
566