xref: /openbmc/linux/tools/testing/selftests/powerpc/alignment/alignment_handler.c (revision e533cda12d8f0e7936354bafdc85c81741f805d2)
1 // SPDX-License-Identifier: GPL-2.0-or-later
2 /*
3  * Test the powerpc alignment handler on POWER8/POWER9
4  *
5  * Copyright (C) 2017 IBM Corporation (Michael Neuling, Andrew Donnellan)
6  */
7 
8 /*
9  * This selftest exercises the powerpc alignment fault handler.
10  *
11  * We create two sets of source and destination buffers, one in regular memory,
12  * the other cache-inhibited (by default we use /dev/fb0 for this, but an
13  * alterative path for cache-inhibited memory may be provided).
14  *
15  * One way to get cache-inhibited memory is to use the "mem" kernel parameter
16  * to limit the kernel to less memory than actually exists.  Addresses above
17  * the limit may still be accessed but will be treated as cache-inhibited. For
18  * example, if there is actually 4GB of memory and the parameter "mem=3GB" is
19  * used, memory from address 0xC0000000 onwards is treated as cache-inhibited.
20  * To access this region /dev/mem is used. The kernel should be configured
21  * without CONFIG_STRICT_DEVMEM. In this case use:
22  *         ./alignment_handler /dev/mem 0xc0000000
23  *
24  * We initialise the source buffers, then use whichever set of load/store
25  * instructions is under test to copy bytes from the source buffers to the
26  * destination buffers. For the regular buffers, these instructions will
27  * execute normally. For the cache-inhibited buffers, these instructions
28  * will trap and cause an alignment fault, and the alignment fault handler
29  * will emulate the particular instruction under test. We then compare the
30  * destination buffers to ensure that the native and emulated cases give the
31  * same result.
32  *
33  * TODO:
34  *   - Any FIXMEs below
35  *   - Test VSX regs < 32 and > 32
36  *   - Test all loads and stores
37  *   - Check update forms do update register
38  *   - Test alignment faults over page boundary
39  *
40  * Some old binutils may not support all the instructions.
41  */
42 
43 
44 #include <sys/mman.h>
45 #include <sys/types.h>
46 #include <sys/stat.h>
47 #include <fcntl.h>
48 #include <unistd.h>
49 #include <stdbool.h>
50 #include <stdio.h>
51 #include <stdlib.h>
52 #include <string.h>
53 #include <assert.h>
54 #include <getopt.h>
55 #include <setjmp.h>
56 #include <signal.h>
57 
58 #include "utils.h"
59 #include "instructions.h"
60 
61 int bufsize;
62 int debug;
63 int testing;
64 volatile int gotsig;
65 bool prefixes_enabled;
66 char *cipath = "/dev/fb0";
67 long cioffset;
68 
69 void sighandler(int sig, siginfo_t *info, void *ctx)
70 {
71 	ucontext_t *ucp = ctx;
72 
73 	if (!testing) {
74 		signal(sig, SIG_DFL);
75 		kill(0, sig);
76 	}
77 	gotsig = sig;
78 #ifdef __powerpc64__
79 	if (prefixes_enabled) {
80 		u32 inst = *(u32 *)ucp->uc_mcontext.gp_regs[PT_NIP];
81 		ucp->uc_mcontext.gp_regs[PT_NIP] += ((inst >> 26 == 1) ? 8 : 4);
82 	} else {
83 		ucp->uc_mcontext.gp_regs[PT_NIP] += 4;
84 	}
85 #else
86 	ucp->uc_mcontext.uc_regs->gregs[PT_NIP] += 4;
87 #endif
88 }
89 
90 #define XFORM(reg, n)  " " #reg " ,%"#n",%2 ;"
91 #define DFORM(reg, n)  " " #reg " ,0(%"#n") ;"
92 
93 #define TEST(name, ld_op, st_op, form, ld_reg, st_reg)		\
94 	void test_##name(char *s, char *d)			\
95 	{							\
96 		asm volatile(					\
97 			#ld_op form(ld_reg, 0)			\
98 			#st_op form(st_reg, 1)			\
99 			:: "r"(s), "r"(d), "r"(0)		\
100 			: "memory", "vs0", "vs32", "r31");	\
101 	}							\
102 	rc |= do_test(#name, test_##name)
103 
104 #define TESTP(name, ld_op, st_op, ld_reg, st_reg)		\
105 	void test_##name(char *s, char *d)			\
106 	{							\
107 		asm volatile(					\
108 			ld_op(ld_reg, %0, 0, 0)			\
109 			st_op(st_reg, %1, 0, 0)			\
110 			:: "r"(s), "r"(d), "r"(0)		\
111 			: "memory", "vs0", "vs32", "r31");	\
112 	}							\
113 	rc |= do_test(#name, test_##name)
114 
115 #define LOAD_VSX_XFORM_TEST(op) TEST(op, op, stxvd2x, XFORM, 32, 32)
116 #define STORE_VSX_XFORM_TEST(op) TEST(op, lxvd2x, op, XFORM, 32, 32)
117 #define LOAD_VSX_DFORM_TEST(op) TEST(op, op, stxv, DFORM, 32, 32)
118 #define STORE_VSX_DFORM_TEST(op) TEST(op, lxv, op, DFORM, 32, 32)
119 #define LOAD_VMX_XFORM_TEST(op) TEST(op, op, stxvd2x, XFORM, 0, 32)
120 #define STORE_VMX_XFORM_TEST(op) TEST(op, lxvd2x, op, XFORM, 32, 0)
121 #define LOAD_VMX_DFORM_TEST(op) TEST(op, op, stxv, DFORM, 0, 32)
122 #define STORE_VMX_DFORM_TEST(op) TEST(op, lxv, op, DFORM, 32, 0)
123 
124 #define LOAD_XFORM_TEST(op) TEST(op, op, stdx, XFORM, 31, 31)
125 #define STORE_XFORM_TEST(op) TEST(op, ldx, op, XFORM, 31, 31)
126 #define LOAD_DFORM_TEST(op) TEST(op, op, std, DFORM, 31, 31)
127 #define STORE_DFORM_TEST(op) TEST(op, ld, op, DFORM, 31, 31)
128 
129 #define LOAD_FLOAT_DFORM_TEST(op)  TEST(op, op, stfd, DFORM, 0, 0)
130 #define STORE_FLOAT_DFORM_TEST(op) TEST(op, lfd, op, DFORM, 0, 0)
131 #define LOAD_FLOAT_XFORM_TEST(op)  TEST(op, op, stfdx, XFORM, 0, 0)
132 #define STORE_FLOAT_XFORM_TEST(op) TEST(op, lfdx, op, XFORM, 0, 0)
133 
134 #define LOAD_MLS_PREFIX_TEST(op) TESTP(op, op, PSTD, 31, 31)
135 #define STORE_MLS_PREFIX_TEST(op) TESTP(op, PLD, op, 31, 31)
136 
137 #define LOAD_8LS_PREFIX_TEST(op) TESTP(op, op, PSTD, 31, 31)
138 #define STORE_8LS_PREFIX_TEST(op) TESTP(op, PLD, op, 31, 31)
139 
140 #define LOAD_FLOAT_MLS_PREFIX_TEST(op) TESTP(op, op, PSTFD, 0, 0)
141 #define STORE_FLOAT_MLS_PREFIX_TEST(op) TESTP(op, PLFD, op, 0, 0)
142 
143 #define LOAD_VSX_8LS_PREFIX_TEST(op, tail) TESTP(op, op, PSTXV ## tail, 0, 32)
144 #define STORE_VSX_8LS_PREFIX_TEST(op, tail) TESTP(op, PLXV ## tail, op, 32, 0)
145 
146 /* FIXME: Unimplemented tests: */
147 // STORE_DFORM_TEST(stq)   /* FIXME: need two registers for quad */
148 // STORE_DFORM_TEST(stswi) /* FIXME: string instruction */
149 
150 // STORE_XFORM_TEST(stwat) /* AMO can't emulate or run on CI */
151 // STORE_XFORM_TEST(stdat) /* ^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^ */
152 
153 
154 /* preload byte by byte */
155 void preload_data(void *dst, int offset, int width)
156 {
157 	char *c = dst;
158 	int i;
159 
160 	c += offset;
161 
162 	for (i = 0 ; i < width ; i++)
163 		c[i] = i;
164 }
165 
166 int test_memcpy(void *dst, void *src, int size, int offset,
167 		void (*test_func)(char *, char *))
168 {
169 	char *s, *d;
170 
171 	s = src;
172 	s += offset;
173 	d = dst;
174 	d += offset;
175 
176 	assert(size == 16);
177 	gotsig = 0;
178 	testing = 1;
179 
180 	test_func(s, d); /* run the actual test */
181 
182 	testing = 0;
183 	if (gotsig) {
184 		if (debug)
185 			printf("  Got signal %i\n", gotsig);
186 		return 1;
187 	}
188 	return 0;
189 }
190 
191 void dumpdata(char *s1, char *s2, int n, char *test_name)
192 {
193 	int i;
194 
195 	printf("  %s: unexpected result:\n", test_name);
196 	printf("    mem:");
197 	for (i = 0; i < n; i++)
198 		printf(" %02x", s1[i]);
199 	printf("\n");
200 	printf("    ci: ");
201 	for (i = 0; i < n; i++)
202 		printf(" %02x", s2[i]);
203 	printf("\n");
204 }
205 
206 int test_memcmp(void *s1, void *s2, int n, int offset, char *test_name)
207 {
208 	char *s1c, *s2c;
209 
210 	s1c = s1;
211 	s1c += offset;
212 	s2c = s2;
213 	s2c += offset;
214 
215 	if (memcmp(s1c, s2c, n)) {
216 		if (debug) {
217 			printf("\n  Compare failed. Offset:%i length:%i\n",
218 			       offset, n);
219 			dumpdata(s1c, s2c, n, test_name);
220 		}
221 		return 1;
222 	}
223 	return 0;
224 }
225 
226 /*
227  * Do two memcpy tests using the same instructions. One cachable
228  * memory and the other doesn't.
229  */
230 int do_test(char *test_name, void (*test_func)(char *, char *))
231 {
232 	int offset, width, fd, rc, r;
233 	void *mem0, *mem1, *ci0, *ci1;
234 
235 	printf("\tDoing %s:\t", test_name);
236 
237 	fd = open(cipath, O_RDWR);
238 	if (fd < 0) {
239 		printf("\n");
240 		perror("Can't open ci file now?");
241 		return 1;
242 	}
243 
244 	ci0 = mmap(NULL, bufsize, PROT_WRITE | PROT_READ, MAP_SHARED,
245 		   fd, cioffset);
246 	ci1 = mmap(NULL, bufsize, PROT_WRITE | PROT_READ, MAP_SHARED,
247 		   fd, cioffset + bufsize);
248 
249 	if ((ci0 == MAP_FAILED) || (ci1 == MAP_FAILED)) {
250 		printf("\n");
251 		perror("mmap failed");
252 		SKIP_IF(1);
253 	}
254 
255 	rc = posix_memalign(&mem0, bufsize, bufsize);
256 	if (rc) {
257 		printf("\n");
258 		return rc;
259 	}
260 
261 	rc = posix_memalign(&mem1, bufsize, bufsize);
262 	if (rc) {
263 		printf("\n");
264 		free(mem0);
265 		return rc;
266 	}
267 
268 	rc = 0;
269 	/* offset = 0 no alignment fault, so skip */
270 	for (offset = 1; offset < 16; offset++) {
271 		width = 16; /* vsx == 16 bytes */
272 		r = 0;
273 
274 		/* load pattern into memory byte by byte */
275 		preload_data(ci0, offset, width);
276 		preload_data(mem0, offset, width); // FIXME: remove??
277 		memcpy(ci0, mem0, bufsize);
278 		memcpy(ci1, mem1, bufsize); /* initialise output to the same */
279 
280 		/* sanity check */
281 		test_memcmp(mem0, ci0, width, offset, test_name);
282 
283 		r |= test_memcpy(ci1,  ci0,  width, offset, test_func);
284 		r |= test_memcpy(mem1, mem0, width, offset, test_func);
285 		if (r && !debug) {
286 			printf("FAILED: Got signal");
287 			rc = 1;
288 			break;
289 		}
290 
291 		r |= test_memcmp(mem1, ci1, width, offset, test_name);
292 		if (r && !debug) {
293 			printf("FAILED: Wrong Data");
294 			rc = 1;
295 			break;
296 		}
297 	}
298 
299 	if (rc == 0)
300 		printf("PASSED");
301 
302 	printf("\n");
303 
304 	munmap(ci0, bufsize);
305 	munmap(ci1, bufsize);
306 	free(mem0);
307 	free(mem1);
308 	close(fd);
309 
310 	return rc;
311 }
312 
313 static bool can_open_cifile(void)
314 {
315 	int fd;
316 
317 	fd = open(cipath, O_RDWR);
318 	if (fd < 0)
319 		return false;
320 
321 	close(fd);
322 	return true;
323 }
324 
325 int test_alignment_handler_vsx_206(void)
326 {
327 	int rc = 0;
328 
329 	SKIP_IF(!can_open_cifile());
330 	SKIP_IF(!have_hwcap(PPC_FEATURE_ARCH_2_06));
331 
332 	printf("VSX: 2.06B\n");
333 	LOAD_VSX_XFORM_TEST(lxvd2x);
334 	LOAD_VSX_XFORM_TEST(lxvw4x);
335 	LOAD_VSX_XFORM_TEST(lxsdx);
336 	LOAD_VSX_XFORM_TEST(lxvdsx);
337 	STORE_VSX_XFORM_TEST(stxvd2x);
338 	STORE_VSX_XFORM_TEST(stxvw4x);
339 	STORE_VSX_XFORM_TEST(stxsdx);
340 	return rc;
341 }
342 
343 int test_alignment_handler_vsx_207(void)
344 {
345 	int rc = 0;
346 
347 	SKIP_IF(!can_open_cifile());
348 	SKIP_IF(!have_hwcap2(PPC_FEATURE2_ARCH_2_07));
349 
350 	printf("VSX: 2.07B\n");
351 	LOAD_VSX_XFORM_TEST(lxsspx);
352 	LOAD_VSX_XFORM_TEST(lxsiwax);
353 	LOAD_VSX_XFORM_TEST(lxsiwzx);
354 	STORE_VSX_XFORM_TEST(stxsspx);
355 	STORE_VSX_XFORM_TEST(stxsiwx);
356 	return rc;
357 }
358 
359 int test_alignment_handler_vsx_300(void)
360 {
361 	int rc = 0;
362 
363 	SKIP_IF(!can_open_cifile());
364 
365 	SKIP_IF(!have_hwcap2(PPC_FEATURE2_ARCH_3_00));
366 	printf("VSX: 3.00B\n");
367 	LOAD_VMX_DFORM_TEST(lxsd);
368 	LOAD_VSX_XFORM_TEST(lxsibzx);
369 	LOAD_VSX_XFORM_TEST(lxsihzx);
370 	LOAD_VMX_DFORM_TEST(lxssp);
371 	LOAD_VSX_DFORM_TEST(lxv);
372 	LOAD_VSX_XFORM_TEST(lxvb16x);
373 	LOAD_VSX_XFORM_TEST(lxvh8x);
374 	LOAD_VSX_XFORM_TEST(lxvx);
375 	LOAD_VSX_XFORM_TEST(lxvwsx);
376 	LOAD_VSX_XFORM_TEST(lxvl);
377 	LOAD_VSX_XFORM_TEST(lxvll);
378 	STORE_VMX_DFORM_TEST(stxsd);
379 	STORE_VSX_XFORM_TEST(stxsibx);
380 	STORE_VSX_XFORM_TEST(stxsihx);
381 	STORE_VMX_DFORM_TEST(stxssp);
382 	STORE_VSX_DFORM_TEST(stxv);
383 	STORE_VSX_XFORM_TEST(stxvb16x);
384 	STORE_VSX_XFORM_TEST(stxvh8x);
385 	STORE_VSX_XFORM_TEST(stxvx);
386 	STORE_VSX_XFORM_TEST(stxvl);
387 	STORE_VSX_XFORM_TEST(stxvll);
388 	return rc;
389 }
390 
391 int test_alignment_handler_vsx_prefix(void)
392 {
393 	int rc = 0;
394 
395 	SKIP_IF(!can_open_cifile());
396 	SKIP_IF(!have_hwcap2(PPC_FEATURE2_ARCH_3_1));
397 
398 	printf("VSX: PREFIX\n");
399 	LOAD_VSX_8LS_PREFIX_TEST(PLXSD, 0);
400 	LOAD_VSX_8LS_PREFIX_TEST(PLXSSP, 0);
401 	LOAD_VSX_8LS_PREFIX_TEST(PLXV0, 0);
402 	LOAD_VSX_8LS_PREFIX_TEST(PLXV1, 1);
403 	STORE_VSX_8LS_PREFIX_TEST(PSTXSD, 0);
404 	STORE_VSX_8LS_PREFIX_TEST(PSTXSSP, 0);
405 	STORE_VSX_8LS_PREFIX_TEST(PSTXV0, 0);
406 	STORE_VSX_8LS_PREFIX_TEST(PSTXV1, 1);
407 	return rc;
408 }
409 
410 int test_alignment_handler_integer(void)
411 {
412 	int rc = 0;
413 
414 	SKIP_IF(!can_open_cifile());
415 
416 	printf("Integer\n");
417 	LOAD_DFORM_TEST(lbz);
418 	LOAD_DFORM_TEST(lbzu);
419 	LOAD_XFORM_TEST(lbzx);
420 	LOAD_XFORM_TEST(lbzux);
421 	LOAD_DFORM_TEST(lhz);
422 	LOAD_DFORM_TEST(lhzu);
423 	LOAD_XFORM_TEST(lhzx);
424 	LOAD_XFORM_TEST(lhzux);
425 	LOAD_DFORM_TEST(lha);
426 	LOAD_DFORM_TEST(lhau);
427 	LOAD_XFORM_TEST(lhax);
428 	LOAD_XFORM_TEST(lhaux);
429 	LOAD_XFORM_TEST(lhbrx);
430 	LOAD_DFORM_TEST(lwz);
431 	LOAD_DFORM_TEST(lwzu);
432 	LOAD_XFORM_TEST(lwzx);
433 	LOAD_XFORM_TEST(lwzux);
434 	LOAD_DFORM_TEST(lwa);
435 	LOAD_XFORM_TEST(lwax);
436 	LOAD_XFORM_TEST(lwaux);
437 	LOAD_XFORM_TEST(lwbrx);
438 	LOAD_DFORM_TEST(ld);
439 	LOAD_DFORM_TEST(ldu);
440 	LOAD_XFORM_TEST(ldx);
441 	LOAD_XFORM_TEST(ldux);
442 	LOAD_DFORM_TEST(lmw);
443 	STORE_DFORM_TEST(stb);
444 	STORE_XFORM_TEST(stbx);
445 	STORE_DFORM_TEST(stbu);
446 	STORE_XFORM_TEST(stbux);
447 	STORE_DFORM_TEST(sth);
448 	STORE_XFORM_TEST(sthx);
449 	STORE_DFORM_TEST(sthu);
450 	STORE_XFORM_TEST(sthux);
451 	STORE_XFORM_TEST(sthbrx);
452 	STORE_DFORM_TEST(stw);
453 	STORE_XFORM_TEST(stwx);
454 	STORE_DFORM_TEST(stwu);
455 	STORE_XFORM_TEST(stwux);
456 	STORE_XFORM_TEST(stwbrx);
457 	STORE_DFORM_TEST(std);
458 	STORE_XFORM_TEST(stdx);
459 	STORE_DFORM_TEST(stdu);
460 	STORE_XFORM_TEST(stdux);
461 	STORE_DFORM_TEST(stmw);
462 
463 	return rc;
464 }
465 
466 int test_alignment_handler_integer_206(void)
467 {
468 	int rc = 0;
469 
470 	SKIP_IF(!can_open_cifile());
471 	SKIP_IF(!have_hwcap(PPC_FEATURE_ARCH_2_06));
472 
473 	printf("Integer: 2.06\n");
474 
475 	LOAD_XFORM_TEST(ldbrx);
476 	STORE_XFORM_TEST(stdbrx);
477 
478 	return rc;
479 }
480 
481 int test_alignment_handler_integer_prefix(void)
482 {
483 	int rc = 0;
484 
485 	SKIP_IF(!can_open_cifile());
486 	SKIP_IF(!have_hwcap2(PPC_FEATURE2_ARCH_3_1));
487 
488 	printf("Integer: PREFIX\n");
489 	LOAD_MLS_PREFIX_TEST(PLBZ);
490 	LOAD_MLS_PREFIX_TEST(PLHZ);
491 	LOAD_MLS_PREFIX_TEST(PLHA);
492 	LOAD_MLS_PREFIX_TEST(PLWZ);
493 	LOAD_8LS_PREFIX_TEST(PLWA);
494 	LOAD_8LS_PREFIX_TEST(PLD);
495 	STORE_MLS_PREFIX_TEST(PSTB);
496 	STORE_MLS_PREFIX_TEST(PSTH);
497 	STORE_MLS_PREFIX_TEST(PSTW);
498 	STORE_8LS_PREFIX_TEST(PSTD);
499 	return rc;
500 }
501 
502 int test_alignment_handler_vmx(void)
503 {
504 	int rc = 0;
505 
506 	SKIP_IF(!can_open_cifile());
507 	SKIP_IF(!have_hwcap(PPC_FEATURE_HAS_ALTIVEC));
508 
509 	printf("VMX\n");
510 	LOAD_VMX_XFORM_TEST(lvx);
511 
512 	/*
513 	 * FIXME: These loads only load part of the register, so our
514 	 * testing method doesn't work. Also they don't take alignment
515 	 * faults, so it's kinda pointless anyway
516 	 *
517 	 LOAD_VMX_XFORM_TEST(lvebx)
518 	 LOAD_VMX_XFORM_TEST(lvehx)
519 	 LOAD_VMX_XFORM_TEST(lvewx)
520 	 LOAD_VMX_XFORM_TEST(lvxl)
521 	*/
522 	STORE_VMX_XFORM_TEST(stvx);
523 	STORE_VMX_XFORM_TEST(stvebx);
524 	STORE_VMX_XFORM_TEST(stvehx);
525 	STORE_VMX_XFORM_TEST(stvewx);
526 	STORE_VMX_XFORM_TEST(stvxl);
527 	return rc;
528 }
529 
530 int test_alignment_handler_fp(void)
531 {
532 	int rc = 0;
533 
534 	SKIP_IF(!can_open_cifile());
535 
536 	printf("Floating point\n");
537 	LOAD_FLOAT_DFORM_TEST(lfd);
538 	LOAD_FLOAT_XFORM_TEST(lfdx);
539 	LOAD_FLOAT_DFORM_TEST(lfdu);
540 	LOAD_FLOAT_XFORM_TEST(lfdux);
541 	LOAD_FLOAT_DFORM_TEST(lfs);
542 	LOAD_FLOAT_XFORM_TEST(lfsx);
543 	LOAD_FLOAT_DFORM_TEST(lfsu);
544 	LOAD_FLOAT_XFORM_TEST(lfsux);
545 	STORE_FLOAT_DFORM_TEST(stfd);
546 	STORE_FLOAT_XFORM_TEST(stfdx);
547 	STORE_FLOAT_DFORM_TEST(stfdu);
548 	STORE_FLOAT_XFORM_TEST(stfdux);
549 	STORE_FLOAT_DFORM_TEST(stfs);
550 	STORE_FLOAT_XFORM_TEST(stfsx);
551 	STORE_FLOAT_DFORM_TEST(stfsu);
552 	STORE_FLOAT_XFORM_TEST(stfsux);
553 	STORE_FLOAT_XFORM_TEST(stfiwx);
554 
555 	return rc;
556 }
557 
558 int test_alignment_handler_fp_205(void)
559 {
560 	int rc = 0;
561 
562 	SKIP_IF(!can_open_cifile());
563 	SKIP_IF(!have_hwcap(PPC_FEATURE_ARCH_2_05));
564 
565 	printf("Floating point: 2.05\n");
566 
567 	LOAD_FLOAT_DFORM_TEST(lfdp);
568 	LOAD_FLOAT_XFORM_TEST(lfdpx);
569 	LOAD_FLOAT_XFORM_TEST(lfiwax);
570 	STORE_FLOAT_DFORM_TEST(stfdp);
571 	STORE_FLOAT_XFORM_TEST(stfdpx);
572 
573 	return rc;
574 }
575 
576 int test_alignment_handler_fp_206(void)
577 {
578 	int rc = 0;
579 
580 	SKIP_IF(!can_open_cifile());
581 	SKIP_IF(!have_hwcap(PPC_FEATURE_ARCH_2_06));
582 
583 	printf("Floating point: 2.06\n");
584 
585 	LOAD_FLOAT_XFORM_TEST(lfiwzx);
586 
587 	return rc;
588 }
589 
590 
591 int test_alignment_handler_fp_prefix(void)
592 {
593 	int rc = 0;
594 
595 	SKIP_IF(!can_open_cifile());
596 	SKIP_IF(!have_hwcap2(PPC_FEATURE2_ARCH_3_1));
597 
598 	printf("Floating point: PREFIX\n");
599 	LOAD_FLOAT_DFORM_TEST(lfs);
600 	LOAD_FLOAT_MLS_PREFIX_TEST(PLFS);
601 	LOAD_FLOAT_MLS_PREFIX_TEST(PLFD);
602 	STORE_FLOAT_MLS_PREFIX_TEST(PSTFS);
603 	STORE_FLOAT_MLS_PREFIX_TEST(PSTFD);
604 	return rc;
605 }
606 
607 void usage(char *prog)
608 {
609 	printf("Usage: %s [options] [path [offset]]\n", prog);
610 	printf("  -d	Enable debug error output\n");
611 	printf("\n");
612 	printf("This test requires a POWER8, POWER9 or POWER10 CPU ");
613 	printf("and either a usable framebuffer at /dev/fb0 or ");
614 	printf("the path to usable cache inhibited memory and optional ");
615 	printf("offset to be provided\n");
616 }
617 
618 int main(int argc, char *argv[])
619 {
620 
621 	struct sigaction sa;
622 	int rc = 0;
623 	int option = 0;
624 
625 	while ((option = getopt(argc, argv, "d")) != -1) {
626 		switch (option) {
627 		case 'd':
628 			debug++;
629 			break;
630 		default:
631 			usage(argv[0]);
632 			exit(1);
633 		}
634 	}
635 	argc -= optind;
636 	argv += optind;
637 
638 	if (argc > 0)
639 		cipath = argv[0];
640 	if (argc > 1)
641 		cioffset = strtol(argv[1], 0, 0x10);
642 
643 	bufsize = getpagesize();
644 
645 	sa.sa_sigaction = sighandler;
646 	sigemptyset(&sa.sa_mask);
647 	sa.sa_flags = SA_SIGINFO;
648 	if (sigaction(SIGSEGV, &sa, NULL) == -1
649 	    || sigaction(SIGBUS, &sa, NULL) == -1
650 	    || sigaction(SIGILL, &sa, NULL) == -1) {
651 		perror("sigaction");
652 		exit(1);
653 	}
654 
655 	prefixes_enabled = have_hwcap2(PPC_FEATURE2_ARCH_3_1);
656 
657 	rc |= test_harness(test_alignment_handler_vsx_206,
658 			   "test_alignment_handler_vsx_206");
659 	rc |= test_harness(test_alignment_handler_vsx_207,
660 			   "test_alignment_handler_vsx_207");
661 	rc |= test_harness(test_alignment_handler_vsx_300,
662 			   "test_alignment_handler_vsx_300");
663 	rc |= test_harness(test_alignment_handler_vsx_prefix,
664 			   "test_alignment_handler_vsx_prefix");
665 	rc |= test_harness(test_alignment_handler_integer,
666 			   "test_alignment_handler_integer");
667 	rc |= test_harness(test_alignment_handler_integer_206,
668 			   "test_alignment_handler_integer_206");
669 	rc |= test_harness(test_alignment_handler_integer_prefix,
670 			   "test_alignment_handler_integer_prefix");
671 	rc |= test_harness(test_alignment_handler_vmx,
672 			   "test_alignment_handler_vmx");
673 	rc |= test_harness(test_alignment_handler_fp,
674 			   "test_alignment_handler_fp");
675 	rc |= test_harness(test_alignment_handler_fp_205,
676 			   "test_alignment_handler_fp_205");
677 	rc |= test_harness(test_alignment_handler_fp_206,
678 			   "test_alignment_handler_fp_206");
679 	rc |= test_harness(test_alignment_handler_fp_prefix,
680 			   "test_alignment_handler_fp_prefix");
681 	return rc;
682 }
683