blob: 0766a452b5add1edfb85cd06e3121a0d125319c2 [file] [log] [blame]
Kirill Batuzov8f2e8c02011-07-07 16:37:12 +04001/*
2 * Optimizations for Tiny Code Generator for QEMU
3 *
4 * Copyright (c) 2010 Samsung Electronics.
5 * Contributed by Kirill Batuzov <batuzovk@ispras.ru>
6 *
7 * Permission is hereby granted, free of charge, to any person obtaining a copy
8 * of this software and associated documentation files (the "Software"), to deal
9 * in the Software without restriction, including without limitation the rights
10 * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
11 * copies of the Software, and to permit persons to whom the Software is
12 * furnished to do so, subject to the following conditions:
13 *
14 * The above copyright notice and this permission notice shall be included in
15 * all copies or substantial portions of the Software.
16 *
17 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
18 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
19 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
20 * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
21 * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
22 * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
23 * THE SOFTWARE.
24 */
25
Peter Maydell757e7252016-01-26 18:17:08 +000026#include "qemu/osdep.h"
Richard Henderson9531c072021-08-26 06:51:39 -070027#include "qemu/int128.h"
Richard Hendersonab84dc32023-08-23 23:04:24 -070028#include "qemu/interval-tree.h"
Richard Hendersonad3d0e42023-03-28 18:17:24 -070029#include "tcg/tcg-op-common.h"
Richard Henderson90163902021-03-18 10:21:45 -060030#include "tcg-internal.h"
Kirill Batuzov8f2e8c02011-07-07 16:37:12 +040031
Kirill Batuzov8f2e8c02011-07-07 16:37:12 +040032#define CASE_OP_32_64(x) \
33 glue(glue(case INDEX_op_, x), _i32): \
34 glue(glue(case INDEX_op_, x), _i64)
Kirill Batuzov8f2e8c02011-07-07 16:37:12 +040035
Richard Henderson170ba882017-11-22 09:07:11 +010036#define CASE_OP_32_64_VEC(x) \
37 glue(glue(case INDEX_op_, x), _i32): \
38 glue(glue(case INDEX_op_, x), _i64): \
39 glue(glue(case INDEX_op_, x), _vec)
40
Richard Hendersonab84dc32023-08-23 23:04:24 -070041typedef struct MemCopyInfo {
42 IntervalTreeNode itree;
43 QSIMPLEQ_ENTRY (MemCopyInfo) next;
44 TCGTemp *ts;
45 TCGType type;
46} MemCopyInfo;
47
Richard Henderson6fcb98e2020-03-30 17:44:30 -070048typedef struct TempOptInfo {
Aurelien Jarnob41059d2015-07-27 12:41:44 +020049 bool is_const;
Richard Henderson63490392017-06-20 13:43:15 -070050 TCGTemp *prev_copy;
51 TCGTemp *next_copy;
Richard Hendersonab84dc32023-08-23 23:04:24 -070052 QSIMPLEQ_HEAD(, MemCopyInfo) mem_copy;
Richard Henderson54795542020-09-06 16:21:32 -070053 uint64_t val;
Richard Hendersonb1fde412021-08-23 13:07:49 -070054 uint64_t z_mask; /* mask bit is 0 if and only if value bit is 0 */
Richard Henderson6d70ddc2024-12-21 21:08:10 -080055 uint64_t s_mask; /* mask bit is 1 if value bit matches msb */
Richard Henderson6fcb98e2020-03-30 17:44:30 -070056} TempOptInfo;
Kirill Batuzov22613af2011-07-07 16:37:13 +040057
Richard Henderson3b3f8472021-08-23 22:06:31 -070058typedef struct OptContext {
Richard Hendersondc849882021-08-24 07:13:45 -070059 TCGContext *tcg;
Richard Hendersond0ed5152021-08-24 07:38:39 -070060 TCGOp *prev_mb;
Richard Henderson3b3f8472021-08-23 22:06:31 -070061 TCGTempSet temps_used;
Richard Henderson137f1f42021-08-24 08:49:25 -070062
Richard Hendersonab84dc32023-08-23 23:04:24 -070063 IntervalTreeRoot mem_copy;
64 QSIMPLEQ_HEAD(, MemCopyInfo) mem_free;
65
Richard Henderson137f1f42021-08-24 08:49:25 -070066 /* In flight values from optimization. */
Richard Hendersonfae450b2021-08-25 22:42:19 -070067 uint64_t z_mask; /* mask bit is 0 iff value bit is 0 */
Richard Henderson6d70ddc2024-12-21 21:08:10 -080068 uint64_t s_mask; /* mask bit is 1 if value bit matches msb */
Richard Henderson67f84c92021-08-25 08:00:20 -070069 TCGType type;
Richard Henderson3b3f8472021-08-23 22:06:31 -070070} OptContext;
71
Richard Henderson6fcb98e2020-03-30 17:44:30 -070072static inline TempOptInfo *ts_info(TCGTemp *ts)
Aurelien Jarnod9c769c2015-07-27 12:41:44 +020073{
Richard Henderson63490392017-06-20 13:43:15 -070074 return ts->state_ptr;
Aurelien Jarnod9c769c2015-07-27 12:41:44 +020075}
76
Richard Henderson6fcb98e2020-03-30 17:44:30 -070077static inline TempOptInfo *arg_info(TCGArg arg)
Aurelien Jarnod9c769c2015-07-27 12:41:44 +020078{
Richard Henderson63490392017-06-20 13:43:15 -070079 return ts_info(arg_temp(arg));
80}
81
Richard Hendersone1b6c142024-12-22 10:26:14 -080082static inline bool ti_is_const(TempOptInfo *ti)
83{
84 return ti->is_const;
85}
86
87static inline uint64_t ti_const_val(TempOptInfo *ti)
88{
89 return ti->val;
90}
91
92static inline bool ti_is_const_val(TempOptInfo *ti, uint64_t val)
93{
94 return ti_is_const(ti) && ti_const_val(ti) == val;
95}
96
Richard Henderson63490392017-06-20 13:43:15 -070097static inline bool ts_is_const(TCGTemp *ts)
98{
Richard Hendersone1b6c142024-12-22 10:26:14 -080099 return ti_is_const(ts_info(ts));
Richard Henderson63490392017-06-20 13:43:15 -0700100}
101
Richard Henderson27cdb852023-10-23 11:38:00 -0700102static inline bool ts_is_const_val(TCGTemp *ts, uint64_t val)
103{
Richard Hendersone1b6c142024-12-22 10:26:14 -0800104 return ti_is_const_val(ts_info(ts), val);
Richard Henderson27cdb852023-10-23 11:38:00 -0700105}
106
Richard Henderson63490392017-06-20 13:43:15 -0700107static inline bool arg_is_const(TCGArg arg)
108{
109 return ts_is_const(arg_temp(arg));
110}
111
Richard Henderson27cdb852023-10-23 11:38:00 -0700112static inline bool arg_is_const_val(TCGArg arg, uint64_t val)
113{
114 return ts_is_const_val(arg_temp(arg), val);
115}
116
Richard Henderson63490392017-06-20 13:43:15 -0700117static inline bool ts_is_copy(TCGTemp *ts)
118{
119 return ts_info(ts)->next_copy != ts;
Aurelien Jarnod9c769c2015-07-27 12:41:44 +0200120}
121
Richard Henderson9f75e522023-11-02 13:37:46 -0700122static TCGTemp *cmp_better_copy(TCGTemp *a, TCGTemp *b)
123{
124 return a->kind < b->kind ? b : a;
125}
126
Aurelien Jarno1208d7d2015-07-27 12:41:44 +0200127/* Initialize and activate a temporary. */
Richard Henderson3b3f8472021-08-23 22:06:31 -0700128static void init_ts_info(OptContext *ctx, TCGTemp *ts)
Aurelien Jarno1208d7d2015-07-27 12:41:44 +0200129{
Richard Henderson63490392017-06-20 13:43:15 -0700130 size_t idx = temp_idx(ts);
Richard Henderson8f17a972020-03-30 19:52:02 -0700131 TempOptInfo *ti;
Richard Henderson63490392017-06-20 13:43:15 -0700132
Richard Henderson3b3f8472021-08-23 22:06:31 -0700133 if (test_bit(idx, ctx->temps_used.l)) {
Richard Henderson8f17a972020-03-30 19:52:02 -0700134 return;
135 }
Richard Henderson3b3f8472021-08-23 22:06:31 -0700136 set_bit(idx, ctx->temps_used.l);
Richard Henderson8f17a972020-03-30 19:52:02 -0700137
138 ti = ts->state_ptr;
139 if (ti == NULL) {
140 ti = tcg_malloc(sizeof(TempOptInfo));
Richard Henderson63490392017-06-20 13:43:15 -0700141 ts->state_ptr = ti;
Richard Henderson8f17a972020-03-30 19:52:02 -0700142 }
143
144 ti->next_copy = ts;
145 ti->prev_copy = ts;
Richard Hendersonab84dc32023-08-23 23:04:24 -0700146 QSIMPLEQ_INIT(&ti->mem_copy);
Richard Henderson8f17a972020-03-30 19:52:02 -0700147 if (ts->kind == TEMP_CONST) {
148 ti->is_const = true;
149 ti->val = ts->val;
Richard Hendersonb1fde412021-08-23 13:07:49 -0700150 ti->z_mask = ts->val;
Richard Henderson6d70ddc2024-12-21 21:08:10 -0800151 ti->s_mask = INT64_MIN >> clrsb64(ts->val);
Richard Henderson8f17a972020-03-30 19:52:02 -0700152 } else {
153 ti->is_const = false;
Richard Hendersonb1fde412021-08-23 13:07:49 -0700154 ti->z_mask = -1;
Richard Henderson57fe5c62021-08-26 12:04:46 -0700155 ti->s_mask = 0;
Aurelien Jarno1208d7d2015-07-27 12:41:44 +0200156 }
157}
158
Richard Hendersonab84dc32023-08-23 23:04:24 -0700159static MemCopyInfo *mem_copy_first(OptContext *ctx, intptr_t s, intptr_t l)
160{
161 IntervalTreeNode *r = interval_tree_iter_first(&ctx->mem_copy, s, l);
162 return r ? container_of(r, MemCopyInfo, itree) : NULL;
163}
164
165static MemCopyInfo *mem_copy_next(MemCopyInfo *mem, intptr_t s, intptr_t l)
166{
167 IntervalTreeNode *r = interval_tree_iter_next(&mem->itree, s, l);
168 return r ? container_of(r, MemCopyInfo, itree) : NULL;
169}
170
171static void remove_mem_copy(OptContext *ctx, MemCopyInfo *mc)
172{
173 TCGTemp *ts = mc->ts;
174 TempOptInfo *ti = ts_info(ts);
175
176 interval_tree_remove(&mc->itree, &ctx->mem_copy);
177 QSIMPLEQ_REMOVE(&ti->mem_copy, mc, MemCopyInfo, next);
178 QSIMPLEQ_INSERT_TAIL(&ctx->mem_free, mc, next);
179}
180
181static void remove_mem_copy_in(OptContext *ctx, intptr_t s, intptr_t l)
182{
183 while (true) {
184 MemCopyInfo *mc = mem_copy_first(ctx, s, l);
185 if (!mc) {
186 break;
187 }
188 remove_mem_copy(ctx, mc);
189 }
190}
191
192static void remove_mem_copy_all(OptContext *ctx)
193{
194 remove_mem_copy_in(ctx, 0, -1);
195 tcg_debug_assert(interval_tree_is_empty(&ctx->mem_copy));
196}
197
Richard Henderson9f75e522023-11-02 13:37:46 -0700198static TCGTemp *find_better_copy(TCGTemp *ts)
Aurelien Jarnoe590d4e2012-09-11 12:31:21 +0200199{
Richard Henderson9f75e522023-11-02 13:37:46 -0700200 TCGTemp *i, *ret;
Aurelien Jarnoe590d4e2012-09-11 12:31:21 +0200201
Richard Henderson4c868ce2020-04-23 09:02:23 -0700202 /* If this is already readonly, we can't do better. */
203 if (temp_readonly(ts)) {
Richard Henderson63490392017-06-20 13:43:15 -0700204 return ts;
Aurelien Jarnoe590d4e2012-09-11 12:31:21 +0200205 }
206
Richard Henderson9f75e522023-11-02 13:37:46 -0700207 ret = ts;
Richard Henderson63490392017-06-20 13:43:15 -0700208 for (i = ts_info(ts)->next_copy; i != ts; i = ts_info(i)->next_copy) {
Richard Henderson9f75e522023-11-02 13:37:46 -0700209 ret = cmp_better_copy(ret, i);
Aurelien Jarnoe590d4e2012-09-11 12:31:21 +0200210 }
Richard Henderson9f75e522023-11-02 13:37:46 -0700211 return ret;
Aurelien Jarnoe590d4e2012-09-11 12:31:21 +0200212}
213
Richard Hendersonab84dc32023-08-23 23:04:24 -0700214static void move_mem_copies(TCGTemp *dst_ts, TCGTemp *src_ts)
215{
216 TempOptInfo *si = ts_info(src_ts);
217 TempOptInfo *di = ts_info(dst_ts);
218 MemCopyInfo *mc;
219
220 QSIMPLEQ_FOREACH(mc, &si->mem_copy, next) {
221 tcg_debug_assert(mc->ts == src_ts);
222 mc->ts = dst_ts;
223 }
224 QSIMPLEQ_CONCAT(&di->mem_copy, &si->mem_copy);
225}
226
227/* Reset TEMP's state, possibly removing the temp for the list of copies. */
228static void reset_ts(OptContext *ctx, TCGTemp *ts)
229{
230 TempOptInfo *ti = ts_info(ts);
231 TCGTemp *pts = ti->prev_copy;
232 TCGTemp *nts = ti->next_copy;
233 TempOptInfo *pi = ts_info(pts);
234 TempOptInfo *ni = ts_info(nts);
235
236 ni->prev_copy = ti->prev_copy;
237 pi->next_copy = ti->next_copy;
238 ti->next_copy = ts;
239 ti->prev_copy = ts;
240 ti->is_const = false;
241 ti->z_mask = -1;
242 ti->s_mask = 0;
243
244 if (!QSIMPLEQ_EMPTY(&ti->mem_copy)) {
245 if (ts == nts) {
246 /* Last temp copy being removed, the mem copies die. */
247 MemCopyInfo *mc;
248 QSIMPLEQ_FOREACH(mc, &ti->mem_copy, next) {
249 interval_tree_remove(&mc->itree, &ctx->mem_copy);
250 }
251 QSIMPLEQ_CONCAT(&ctx->mem_free, &ti->mem_copy);
252 } else {
253 move_mem_copies(find_better_copy(nts), ts);
254 }
255 }
256}
257
258static void reset_temp(OptContext *ctx, TCGArg arg)
259{
260 reset_ts(ctx, arg_temp(arg));
261}
262
263static void record_mem_copy(OptContext *ctx, TCGType type,
264 TCGTemp *ts, intptr_t start, intptr_t last)
265{
266 MemCopyInfo *mc;
267 TempOptInfo *ti;
268
269 mc = QSIMPLEQ_FIRST(&ctx->mem_free);
270 if (mc) {
271 QSIMPLEQ_REMOVE_HEAD(&ctx->mem_free, next);
272 } else {
273 mc = tcg_malloc(sizeof(*mc));
274 }
275
276 memset(mc, 0, sizeof(*mc));
277 mc->itree.start = start;
278 mc->itree.last = last;
279 mc->type = type;
280 interval_tree_insert(&mc->itree, &ctx->mem_copy);
281
282 ts = find_better_copy(ts);
283 ti = ts_info(ts);
284 mc->ts = ts;
285 QSIMPLEQ_INSERT_TAIL(&ti->mem_copy, mc, next);
286}
287
Richard Henderson63490392017-06-20 13:43:15 -0700288static bool ts_are_copies(TCGTemp *ts1, TCGTemp *ts2)
Aurelien Jarnoe590d4e2012-09-11 12:31:21 +0200289{
Richard Henderson63490392017-06-20 13:43:15 -0700290 TCGTemp *i;
Aurelien Jarnoe590d4e2012-09-11 12:31:21 +0200291
Richard Henderson63490392017-06-20 13:43:15 -0700292 if (ts1 == ts2) {
Aurelien Jarnoe590d4e2012-09-11 12:31:21 +0200293 return true;
294 }
295
Richard Henderson63490392017-06-20 13:43:15 -0700296 if (!ts_is_copy(ts1) || !ts_is_copy(ts2)) {
Aurelien Jarnoe590d4e2012-09-11 12:31:21 +0200297 return false;
298 }
299
Richard Henderson63490392017-06-20 13:43:15 -0700300 for (i = ts_info(ts1)->next_copy; i != ts1; i = ts_info(i)->next_copy) {
301 if (i == ts2) {
Aurelien Jarnoe590d4e2012-09-11 12:31:21 +0200302 return true;
303 }
304 }
305
306 return false;
307}
308
Richard Henderson63490392017-06-20 13:43:15 -0700309static bool args_are_copies(TCGArg arg1, TCGArg arg2)
310{
311 return ts_are_copies(arg_temp(arg1), arg_temp(arg2));
312}
313
Richard Hendersonab84dc32023-08-23 23:04:24 -0700314static TCGTemp *find_mem_copy_for(OptContext *ctx, TCGType type, intptr_t s)
315{
316 MemCopyInfo *mc;
317
318 for (mc = mem_copy_first(ctx, s, s); mc; mc = mem_copy_next(mc, s, s)) {
319 if (mc->itree.start == s && mc->type == type) {
320 return find_better_copy(mc->ts);
321 }
322 }
323 return NULL;
324}
325
Richard Henderson26aac972023-10-23 12:31:57 -0700326static TCGArg arg_new_constant(OptContext *ctx, uint64_t val)
327{
328 TCGType type = ctx->type;
329 TCGTemp *ts;
330
331 if (type == TCG_TYPE_I32) {
332 val = (int32_t)val;
333 }
334
335 ts = tcg_constant_internal(type, val);
336 init_ts_info(ctx, ts);
337
338 return temp_arg(ts);
339}
340
Richard Hendersonfb04ab72024-01-10 18:21:58 +1100341static TCGArg arg_new_temp(OptContext *ctx)
342{
343 TCGTemp *ts = tcg_temp_new_internal(ctx->type, TEMP_EBB);
344 init_ts_info(ctx, ts);
345 return temp_arg(ts);
346}
347
Richard Henderson6b99d5b2021-08-24 10:57:56 -0700348static bool tcg_opt_gen_mov(OptContext *ctx, TCGOp *op, TCGArg dst, TCGArg src)
Kirill Batuzov22613af2011-07-07 16:37:13 +0400349{
Richard Henderson63490392017-06-20 13:43:15 -0700350 TCGTemp *dst_ts = arg_temp(dst);
351 TCGTemp *src_ts = arg_temp(src);
Richard Henderson6fcb98e2020-03-30 17:44:30 -0700352 TempOptInfo *di;
353 TempOptInfo *si;
Richard Henderson63490392017-06-20 13:43:15 -0700354 TCGOpcode new_op;
355
356 if (ts_are_copies(dst_ts, src_ts)) {
Richard Hendersondc849882021-08-24 07:13:45 -0700357 tcg_op_remove(ctx->tcg, op);
Richard Henderson6b99d5b2021-08-24 10:57:56 -0700358 return true;
Aurelien Jarno53657182015-06-04 21:53:25 +0200359 }
360
Richard Henderson986cac12023-01-09 13:59:35 -0800361 reset_ts(ctx, dst_ts);
Richard Henderson63490392017-06-20 13:43:15 -0700362 di = ts_info(dst_ts);
363 si = ts_info(src_ts);
Richard Henderson67f84c92021-08-25 08:00:20 -0700364
365 switch (ctx->type) {
366 case TCG_TYPE_I32:
Richard Henderson170ba882017-11-22 09:07:11 +0100367 new_op = INDEX_op_mov_i32;
Richard Henderson67f84c92021-08-25 08:00:20 -0700368 break;
369 case TCG_TYPE_I64:
370 new_op = INDEX_op_mov_i64;
371 break;
372 case TCG_TYPE_V64:
373 case TCG_TYPE_V128:
374 case TCG_TYPE_V256:
375 /* TCGOP_VECL and TCGOP_VECE remain unchanged. */
376 new_op = INDEX_op_mov_vec;
377 break;
378 default:
379 g_assert_not_reached();
Richard Henderson170ba882017-11-22 09:07:11 +0100380 }
Richard Hendersonc45cb8b2014-09-19 13:49:15 -0700381 op->opc = new_op;
Richard Henderson63490392017-06-20 13:43:15 -0700382 op->args[0] = dst;
383 op->args[1] = src;
Richard Hendersona62f6f52014-05-22 10:59:12 -0700384
Richard Hendersonfaa2e102021-08-26 09:03:59 -0700385 di->z_mask = si->z_mask;
Richard Henderson57fe5c62021-08-26 12:04:46 -0700386 di->s_mask = si->s_mask;
Richard Henderson24666ba2014-05-22 11:14:10 -0700387
Richard Henderson63490392017-06-20 13:43:15 -0700388 if (src_ts->type == dst_ts->type) {
Richard Henderson6fcb98e2020-03-30 17:44:30 -0700389 TempOptInfo *ni = ts_info(si->next_copy);
Richard Henderson63490392017-06-20 13:43:15 -0700390
391 di->next_copy = si->next_copy;
392 di->prev_copy = src_ts;
393 ni->prev_copy = dst_ts;
394 si->next_copy = dst_ts;
395 di->is_const = si->is_const;
396 di->val = si->val;
Richard Hendersonab84dc32023-08-23 23:04:24 -0700397
398 if (!QSIMPLEQ_EMPTY(&si->mem_copy)
399 && cmp_better_copy(src_ts, dst_ts) == dst_ts) {
400 move_mem_copies(dst_ts, src_ts);
401 }
Paolo Bonzini3a9d8b12013-01-11 15:42:52 -0800402 }
Richard Henderson6b99d5b2021-08-24 10:57:56 -0700403 return true;
Kirill Batuzov22613af2011-07-07 16:37:13 +0400404}
405
Richard Henderson6b99d5b2021-08-24 10:57:56 -0700406static bool tcg_opt_gen_movi(OptContext *ctx, TCGOp *op,
Richard Hendersondc849882021-08-24 07:13:45 -0700407 TCGArg dst, uint64_t val)
Richard Henderson8fe35e02020-03-30 20:42:43 -0700408{
Richard Hendersonfaa2e102021-08-26 09:03:59 -0700409 /* Convert movi to mov with constant temp. */
Richard Henderson26aac972023-10-23 12:31:57 -0700410 return tcg_opt_gen_mov(ctx, op, dst, arg_new_constant(ctx, val));
Richard Henderson8fe35e02020-03-30 20:42:43 -0700411}
412
Richard Henderson54795542020-09-06 16:21:32 -0700413static uint64_t do_constant_folding_2(TCGOpcode op, uint64_t x, uint64_t y)
Kirill Batuzov53108fb2011-07-07 16:37:14 +0400414{
Richard Henderson03271522013-08-14 14:35:56 -0700415 uint64_t l64, h64;
416
Kirill Batuzov53108fb2011-07-07 16:37:14 +0400417 switch (op) {
418 CASE_OP_32_64(add):
419 return x + y;
420
421 CASE_OP_32_64(sub):
422 return x - y;
423
424 CASE_OP_32_64(mul):
425 return x * y;
426
Richard Hendersonc578ff12021-12-16 06:07:25 -0800427 CASE_OP_32_64_VEC(and):
Kirill Batuzov9a810902011-07-07 16:37:15 +0400428 return x & y;
429
Richard Hendersonc578ff12021-12-16 06:07:25 -0800430 CASE_OP_32_64_VEC(or):
Kirill Batuzov9a810902011-07-07 16:37:15 +0400431 return x | y;
432
Richard Hendersonc578ff12021-12-16 06:07:25 -0800433 CASE_OP_32_64_VEC(xor):
Kirill Batuzov9a810902011-07-07 16:37:15 +0400434 return x ^ y;
435
Kirill Batuzov55c09752011-07-07 16:37:16 +0400436 case INDEX_op_shl_i32:
Richard Henderson50c5c4d2014-03-18 07:45:39 -0700437 return (uint32_t)x << (y & 31);
Kirill Batuzov55c09752011-07-07 16:37:16 +0400438
Kirill Batuzov55c09752011-07-07 16:37:16 +0400439 case INDEX_op_shl_i64:
Richard Henderson50c5c4d2014-03-18 07:45:39 -0700440 return (uint64_t)x << (y & 63);
Kirill Batuzov55c09752011-07-07 16:37:16 +0400441
442 case INDEX_op_shr_i32:
Richard Henderson50c5c4d2014-03-18 07:45:39 -0700443 return (uint32_t)x >> (y & 31);
Kirill Batuzov55c09752011-07-07 16:37:16 +0400444
Kirill Batuzov55c09752011-07-07 16:37:16 +0400445 case INDEX_op_shr_i64:
Richard Henderson50c5c4d2014-03-18 07:45:39 -0700446 return (uint64_t)x >> (y & 63);
Kirill Batuzov55c09752011-07-07 16:37:16 +0400447
448 case INDEX_op_sar_i32:
Richard Henderson50c5c4d2014-03-18 07:45:39 -0700449 return (int32_t)x >> (y & 31);
Kirill Batuzov55c09752011-07-07 16:37:16 +0400450
Kirill Batuzov55c09752011-07-07 16:37:16 +0400451 case INDEX_op_sar_i64:
Richard Henderson50c5c4d2014-03-18 07:45:39 -0700452 return (int64_t)x >> (y & 63);
Kirill Batuzov55c09752011-07-07 16:37:16 +0400453
454 case INDEX_op_rotr_i32:
Richard Henderson50c5c4d2014-03-18 07:45:39 -0700455 return ror32(x, y & 31);
Kirill Batuzov55c09752011-07-07 16:37:16 +0400456
Kirill Batuzov55c09752011-07-07 16:37:16 +0400457 case INDEX_op_rotr_i64:
Richard Henderson50c5c4d2014-03-18 07:45:39 -0700458 return ror64(x, y & 63);
Kirill Batuzov55c09752011-07-07 16:37:16 +0400459
460 case INDEX_op_rotl_i32:
Richard Henderson50c5c4d2014-03-18 07:45:39 -0700461 return rol32(x, y & 31);
Kirill Batuzov55c09752011-07-07 16:37:16 +0400462
Kirill Batuzov55c09752011-07-07 16:37:16 +0400463 case INDEX_op_rotl_i64:
Richard Henderson50c5c4d2014-03-18 07:45:39 -0700464 return rol64(x, y & 63);
Kirill Batuzov55c09752011-07-07 16:37:16 +0400465
Richard Hendersonc578ff12021-12-16 06:07:25 -0800466 CASE_OP_32_64_VEC(not):
Kirill Batuzova640f032011-07-07 16:37:17 +0400467 return ~x;
468
Richard Hendersoncb25c802011-08-17 14:11:47 -0700469 CASE_OP_32_64(neg):
470 return -x;
471
Richard Hendersonc578ff12021-12-16 06:07:25 -0800472 CASE_OP_32_64_VEC(andc):
Richard Hendersoncb25c802011-08-17 14:11:47 -0700473 return x & ~y;
474
Richard Hendersonc578ff12021-12-16 06:07:25 -0800475 CASE_OP_32_64_VEC(orc):
Richard Hendersoncb25c802011-08-17 14:11:47 -0700476 return x | ~y;
477
Richard Hendersoned523472021-12-16 11:17:46 -0800478 CASE_OP_32_64_VEC(eqv):
Richard Hendersoncb25c802011-08-17 14:11:47 -0700479 return ~(x ^ y);
480
Richard Hendersoned523472021-12-16 11:17:46 -0800481 CASE_OP_32_64_VEC(nand):
Richard Hendersoncb25c802011-08-17 14:11:47 -0700482 return ~(x & y);
483
Richard Hendersoned523472021-12-16 11:17:46 -0800484 CASE_OP_32_64_VEC(nor):
Richard Hendersoncb25c802011-08-17 14:11:47 -0700485 return ~(x | y);
486
Richard Henderson0e28d002016-11-16 09:23:28 +0100487 case INDEX_op_clz_i32:
488 return (uint32_t)x ? clz32(x) : y;
489
490 case INDEX_op_clz_i64:
491 return x ? clz64(x) : y;
492
493 case INDEX_op_ctz_i32:
494 return (uint32_t)x ? ctz32(x) : y;
495
496 case INDEX_op_ctz_i64:
497 return x ? ctz64(x) : y;
498
Richard Hendersona768e4e2016-11-21 11:13:39 +0100499 case INDEX_op_ctpop_i32:
500 return ctpop32(x);
501
502 case INDEX_op_ctpop_i64:
503 return ctpop64(x);
504
Richard Henderson25c4d9c2011-08-17 14:11:46 -0700505 CASE_OP_32_64(ext8s):
Kirill Batuzova640f032011-07-07 16:37:17 +0400506 return (int8_t)x;
507
Richard Henderson25c4d9c2011-08-17 14:11:46 -0700508 CASE_OP_32_64(ext16s):
Kirill Batuzova640f032011-07-07 16:37:17 +0400509 return (int16_t)x;
510
Richard Henderson25c4d9c2011-08-17 14:11:46 -0700511 CASE_OP_32_64(ext8u):
Kirill Batuzova640f032011-07-07 16:37:17 +0400512 return (uint8_t)x;
513
Richard Henderson25c4d9c2011-08-17 14:11:46 -0700514 CASE_OP_32_64(ext16u):
Kirill Batuzova640f032011-07-07 16:37:17 +0400515 return (uint16_t)x;
516
Richard Henderson64985942018-11-20 08:53:34 +0100517 CASE_OP_32_64(bswap16):
Richard Henderson0b76ff82021-06-13 13:04:00 -0700518 x = bswap16(x);
519 return y & TCG_BSWAP_OS ? (int16_t)x : x;
Richard Henderson64985942018-11-20 08:53:34 +0100520
521 CASE_OP_32_64(bswap32):
Richard Henderson0b76ff82021-06-13 13:04:00 -0700522 x = bswap32(x);
523 return y & TCG_BSWAP_OS ? (int32_t)x : x;
Richard Henderson64985942018-11-20 08:53:34 +0100524
525 case INDEX_op_bswap64_i64:
526 return bswap64(x);
527
Aurelien Jarno8bcb5c82015-07-27 12:41:45 +0200528 case INDEX_op_ext_i32_i64:
Kirill Batuzova640f032011-07-07 16:37:17 +0400529 case INDEX_op_ext32s_i64:
530 return (int32_t)x;
531
Aurelien Jarno8bcb5c82015-07-27 12:41:45 +0200532 case INDEX_op_extu_i32_i64:
Richard Henderson609ad702015-07-24 07:16:00 -0700533 case INDEX_op_extrl_i64_i32:
Kirill Batuzova640f032011-07-07 16:37:17 +0400534 case INDEX_op_ext32u_i64:
535 return (uint32_t)x;
Kirill Batuzova640f032011-07-07 16:37:17 +0400536
Richard Henderson609ad702015-07-24 07:16:00 -0700537 case INDEX_op_extrh_i64_i32:
538 return (uint64_t)x >> 32;
539
Richard Henderson03271522013-08-14 14:35:56 -0700540 case INDEX_op_muluh_i32:
541 return ((uint64_t)(uint32_t)x * (uint32_t)y) >> 32;
542 case INDEX_op_mulsh_i32:
543 return ((int64_t)(int32_t)x * (int32_t)y) >> 32;
544
545 case INDEX_op_muluh_i64:
546 mulu64(&l64, &h64, x, y);
547 return h64;
548 case INDEX_op_mulsh_i64:
549 muls64(&l64, &h64, x, y);
550 return h64;
551
Richard Henderson01547f72013-08-14 15:22:46 -0700552 case INDEX_op_div_i32:
553 /* Avoid crashing on divide by zero, otherwise undefined. */
554 return (int32_t)x / ((int32_t)y ? : 1);
555 case INDEX_op_divu_i32:
556 return (uint32_t)x / ((uint32_t)y ? : 1);
557 case INDEX_op_div_i64:
558 return (int64_t)x / ((int64_t)y ? : 1);
559 case INDEX_op_divu_i64:
560 return (uint64_t)x / ((uint64_t)y ? : 1);
561
562 case INDEX_op_rem_i32:
563 return (int32_t)x % ((int32_t)y ? : 1);
564 case INDEX_op_remu_i32:
565 return (uint32_t)x % ((uint32_t)y ? : 1);
566 case INDEX_op_rem_i64:
567 return (int64_t)x % ((int64_t)y ? : 1);
568 case INDEX_op_remu_i64:
569 return (uint64_t)x % ((uint64_t)y ? : 1);
570
Kirill Batuzov53108fb2011-07-07 16:37:14 +0400571 default:
Richard Henderson732e89f2023-04-05 12:09:14 -0700572 g_assert_not_reached();
Kirill Batuzov53108fb2011-07-07 16:37:14 +0400573 }
574}
575
Richard Henderson67f84c92021-08-25 08:00:20 -0700576static uint64_t do_constant_folding(TCGOpcode op, TCGType type,
577 uint64_t x, uint64_t y)
Kirill Batuzov53108fb2011-07-07 16:37:14 +0400578{
Richard Henderson54795542020-09-06 16:21:32 -0700579 uint64_t res = do_constant_folding_2(op, x, y);
Richard Henderson67f84c92021-08-25 08:00:20 -0700580 if (type == TCG_TYPE_I32) {
Aurelien Jarno29f3ff82015-07-10 18:03:31 +0200581 res = (int32_t)res;
Kirill Batuzov53108fb2011-07-07 16:37:14 +0400582 }
Kirill Batuzov53108fb2011-07-07 16:37:14 +0400583 return res;
584}
585
Richard Henderson9519da72012-10-02 11:32:26 -0700586static bool do_constant_folding_cond_32(uint32_t x, uint32_t y, TCGCond c)
587{
588 switch (c) {
589 case TCG_COND_EQ:
590 return x == y;
591 case TCG_COND_NE:
592 return x != y;
593 case TCG_COND_LT:
594 return (int32_t)x < (int32_t)y;
595 case TCG_COND_GE:
596 return (int32_t)x >= (int32_t)y;
597 case TCG_COND_LE:
598 return (int32_t)x <= (int32_t)y;
599 case TCG_COND_GT:
600 return (int32_t)x > (int32_t)y;
601 case TCG_COND_LTU:
602 return x < y;
603 case TCG_COND_GEU:
604 return x >= y;
605 case TCG_COND_LEU:
606 return x <= y;
607 case TCG_COND_GTU:
608 return x > y;
Richard Hendersonceb9ee02023-10-23 23:44:27 -0700609 case TCG_COND_TSTEQ:
610 return (x & y) == 0;
611 case TCG_COND_TSTNE:
612 return (x & y) != 0;
613 case TCG_COND_ALWAYS:
614 case TCG_COND_NEVER:
615 break;
Richard Henderson9519da72012-10-02 11:32:26 -0700616 }
Richard Hendersonceb9ee02023-10-23 23:44:27 -0700617 g_assert_not_reached();
Richard Henderson9519da72012-10-02 11:32:26 -0700618}
619
620static bool do_constant_folding_cond_64(uint64_t x, uint64_t y, TCGCond c)
621{
622 switch (c) {
623 case TCG_COND_EQ:
624 return x == y;
625 case TCG_COND_NE:
626 return x != y;
627 case TCG_COND_LT:
628 return (int64_t)x < (int64_t)y;
629 case TCG_COND_GE:
630 return (int64_t)x >= (int64_t)y;
631 case TCG_COND_LE:
632 return (int64_t)x <= (int64_t)y;
633 case TCG_COND_GT:
634 return (int64_t)x > (int64_t)y;
635 case TCG_COND_LTU:
636 return x < y;
637 case TCG_COND_GEU:
638 return x >= y;
639 case TCG_COND_LEU:
640 return x <= y;
641 case TCG_COND_GTU:
642 return x > y;
Richard Hendersonceb9ee02023-10-23 23:44:27 -0700643 case TCG_COND_TSTEQ:
644 return (x & y) == 0;
645 case TCG_COND_TSTNE:
646 return (x & y) != 0;
647 case TCG_COND_ALWAYS:
648 case TCG_COND_NEVER:
649 break;
Richard Henderson9519da72012-10-02 11:32:26 -0700650 }
Richard Hendersonceb9ee02023-10-23 23:44:27 -0700651 g_assert_not_reached();
Richard Henderson9519da72012-10-02 11:32:26 -0700652}
653
Richard Hendersonceb9ee02023-10-23 23:44:27 -0700654static int do_constant_folding_cond_eq(TCGCond c)
Richard Henderson9519da72012-10-02 11:32:26 -0700655{
656 switch (c) {
657 case TCG_COND_GT:
658 case TCG_COND_LTU:
659 case TCG_COND_LT:
660 case TCG_COND_GTU:
661 case TCG_COND_NE:
662 return 0;
663 case TCG_COND_GE:
664 case TCG_COND_GEU:
665 case TCG_COND_LE:
666 case TCG_COND_LEU:
667 case TCG_COND_EQ:
668 return 1;
Richard Hendersonceb9ee02023-10-23 23:44:27 -0700669 case TCG_COND_TSTEQ:
670 case TCG_COND_TSTNE:
671 return -1;
672 case TCG_COND_ALWAYS:
673 case TCG_COND_NEVER:
674 break;
Richard Henderson9519da72012-10-02 11:32:26 -0700675 }
Richard Hendersonceb9ee02023-10-23 23:44:27 -0700676 g_assert_not_reached();
Richard Henderson9519da72012-10-02 11:32:26 -0700677}
678
Richard Henderson8d57bf12021-08-24 08:34:27 -0700679/*
680 * Return -1 if the condition can't be simplified,
681 * and the result of the condition (0 or 1) if it can.
682 */
Richard Henderson67f84c92021-08-25 08:00:20 -0700683static int do_constant_folding_cond(TCGType type, TCGArg x,
Richard Henderson8d57bf12021-08-24 08:34:27 -0700684 TCGArg y, TCGCond c)
Aurelien Jarnof8dd19e2012-09-06 16:47:14 +0200685{
Richard Henderson63490392017-06-20 13:43:15 -0700686 if (arg_is_const(x) && arg_is_const(y)) {
Alex Bennée9becc362022-02-09 11:21:42 +0000687 uint64_t xv = arg_info(x)->val;
688 uint64_t yv = arg_info(y)->val;
689
Richard Henderson67f84c92021-08-25 08:00:20 -0700690 switch (type) {
691 case TCG_TYPE_I32:
Richard Henderson170ba882017-11-22 09:07:11 +0100692 return do_constant_folding_cond_32(xv, yv, c);
Richard Henderson67f84c92021-08-25 08:00:20 -0700693 case TCG_TYPE_I64:
694 return do_constant_folding_cond_64(xv, yv, c);
695 default:
696 /* Only scalar comparisons are optimizable */
697 return -1;
Aurelien Jarnof8dd19e2012-09-06 16:47:14 +0200698 }
Richard Henderson63490392017-06-20 13:43:15 -0700699 } else if (args_are_copies(x, y)) {
Richard Henderson9519da72012-10-02 11:32:26 -0700700 return do_constant_folding_cond_eq(c);
Richard Henderson27cdb852023-10-23 11:38:00 -0700701 } else if (arg_is_const_val(y, 0)) {
Aurelien Jarnob336ceb2012-09-18 19:37:00 +0200702 switch (c) {
703 case TCG_COND_LTU:
Richard Hendersonceb9ee02023-10-23 23:44:27 -0700704 case TCG_COND_TSTNE:
Aurelien Jarnob336ceb2012-09-18 19:37:00 +0200705 return 0;
706 case TCG_COND_GEU:
Richard Hendersonceb9ee02023-10-23 23:44:27 -0700707 case TCG_COND_TSTEQ:
Aurelien Jarnob336ceb2012-09-18 19:37:00 +0200708 return 1;
709 default:
Richard Henderson8d57bf12021-08-24 08:34:27 -0700710 return -1;
Aurelien Jarnob336ceb2012-09-18 19:37:00 +0200711 }
Aurelien Jarnof8dd19e2012-09-06 16:47:14 +0200712 }
Richard Henderson8d57bf12021-08-24 08:34:27 -0700713 return -1;
Aurelien Jarnof8dd19e2012-09-06 16:47:14 +0200714}
715
Richard Henderson7a2f7082021-08-26 07:06:39 -0700716/**
717 * swap_commutative:
718 * @dest: TCGArg of the destination argument, or NO_DEST.
719 * @p1: first paired argument
720 * @p2: second paired argument
721 *
722 * If *@p1 is a constant and *@p2 is not, swap.
723 * If *@p2 matches @dest, swap.
724 * Return true if a swap was performed.
725 */
726
727#define NO_DEST temp_arg(NULL)
728
Richard Henderson24c9ae42012-10-02 11:32:21 -0700729static bool swap_commutative(TCGArg dest, TCGArg *p1, TCGArg *p2)
730{
731 TCGArg a1 = *p1, a2 = *p2;
732 int sum = 0;
Richard Henderson63490392017-06-20 13:43:15 -0700733 sum += arg_is_const(a1);
734 sum -= arg_is_const(a2);
Richard Henderson24c9ae42012-10-02 11:32:21 -0700735
736 /* Prefer the constant in second argument, and then the form
737 op a, a, b, which is better handled on non-RISC hosts. */
738 if (sum > 0 || (sum == 0 && dest == a2)) {
739 *p1 = a2;
740 *p2 = a1;
741 return true;
742 }
743 return false;
744}
745
Richard Henderson0bfcb862012-10-02 11:32:23 -0700746static bool swap_commutative2(TCGArg *p1, TCGArg *p2)
747{
748 int sum = 0;
Richard Henderson63490392017-06-20 13:43:15 -0700749 sum += arg_is_const(p1[0]);
750 sum += arg_is_const(p1[1]);
751 sum -= arg_is_const(p2[0]);
752 sum -= arg_is_const(p2[1]);
Richard Henderson0bfcb862012-10-02 11:32:23 -0700753 if (sum > 0) {
754 TCGArg t;
755 t = p1[0], p1[0] = p2[0], p2[0] = t;
756 t = p1[1], p1[1] = p2[1], p2[1] = t;
757 return true;
758 }
759 return false;
760}
761
Richard Henderson7e64b112023-10-24 16:53:56 -0700762/*
763 * Return -1 if the condition can't be simplified,
764 * and the result of the condition (0 or 1) if it can.
765 */
Richard Hendersonfb04ab72024-01-10 18:21:58 +1100766static int do_constant_folding_cond1(OptContext *ctx, TCGOp *op, TCGArg dest,
Richard Henderson246c4b72023-10-24 16:36:50 -0700767 TCGArg *p1, TCGArg *p2, TCGArg *pcond)
768{
769 TCGCond cond;
770 bool swap;
771 int r;
772
773 swap = swap_commutative(dest, p1, p2);
774 cond = *pcond;
775 if (swap) {
776 *pcond = cond = tcg_swap_cond(cond);
777 }
778
779 r = do_constant_folding_cond(ctx->type, *p1, *p2, cond);
Richard Hendersonceb9ee02023-10-23 23:44:27 -0700780 if (r >= 0) {
781 return r;
782 }
783 if (!is_tst_cond(cond)) {
784 return -1;
785 }
786
787 /*
788 * TSTNE x,x -> NE x,0
789 * TSTNE x,-1 -> NE x,0
790 */
791 if (args_are_copies(*p1, *p2) || arg_is_const_val(*p2, -1)) {
792 *p2 = arg_new_constant(ctx, 0);
793 *pcond = tcg_tst_eqne_cond(cond);
794 return -1;
795 }
796
797 /* TSTNE x,sign -> LT x,0 */
798 if (arg_is_const_val(*p2, (ctx->type == TCG_TYPE_I32
799 ? INT32_MIN : INT64_MIN))) {
800 *p2 = arg_new_constant(ctx, 0);
801 *pcond = tcg_tst_ltge_cond(cond);
Richard Hendersonfb04ab72024-01-10 18:21:58 +1100802 return -1;
803 }
804
805 /* Expand to AND with a temporary if no backend support. */
806 if (!TCG_TARGET_HAS_tst) {
807 TCGOpcode and_opc = (ctx->type == TCG_TYPE_I32
808 ? INDEX_op_and_i32 : INDEX_op_and_i64);
809 TCGOp *op2 = tcg_op_insert_before(ctx->tcg, op, and_opc, 3);
810 TCGArg tmp = arg_new_temp(ctx);
811
812 op2->args[0] = tmp;
813 op2->args[1] = *p1;
814 op2->args[2] = *p2;
815
816 *p1 = tmp;
817 *p2 = arg_new_constant(ctx, 0);
818 *pcond = tcg_tst_eqne_cond(cond);
Richard Hendersonceb9ee02023-10-23 23:44:27 -0700819 }
820 return -1;
Richard Henderson246c4b72023-10-24 16:36:50 -0700821}
822
Richard Hendersonfb04ab72024-01-10 18:21:58 +1100823static int do_constant_folding_cond2(OptContext *ctx, TCGOp *op, TCGArg *args)
Richard Henderson7e64b112023-10-24 16:53:56 -0700824{
825 TCGArg al, ah, bl, bh;
826 TCGCond c;
827 bool swap;
Richard Hendersonceb9ee02023-10-23 23:44:27 -0700828 int r;
Richard Henderson7e64b112023-10-24 16:53:56 -0700829
830 swap = swap_commutative2(args, args + 2);
831 c = args[4];
832 if (swap) {
833 args[4] = c = tcg_swap_cond(c);
834 }
835
836 al = args[0];
837 ah = args[1];
838 bl = args[2];
839 bh = args[3];
840
841 if (arg_is_const(bl) && arg_is_const(bh)) {
842 tcg_target_ulong blv = arg_info(bl)->val;
843 tcg_target_ulong bhv = arg_info(bh)->val;
844 uint64_t b = deposit64(blv, 32, 32, bhv);
845
846 if (arg_is_const(al) && arg_is_const(ah)) {
847 tcg_target_ulong alv = arg_info(al)->val;
848 tcg_target_ulong ahv = arg_info(ah)->val;
849 uint64_t a = deposit64(alv, 32, 32, ahv);
Richard Hendersonceb9ee02023-10-23 23:44:27 -0700850
851 r = do_constant_folding_cond_64(a, b, c);
852 if (r >= 0) {
853 return r;
854 }
Richard Henderson7e64b112023-10-24 16:53:56 -0700855 }
Richard Hendersonceb9ee02023-10-23 23:44:27 -0700856
Richard Henderson7e64b112023-10-24 16:53:56 -0700857 if (b == 0) {
858 switch (c) {
859 case TCG_COND_LTU:
Richard Hendersonceb9ee02023-10-23 23:44:27 -0700860 case TCG_COND_TSTNE:
Richard Henderson7e64b112023-10-24 16:53:56 -0700861 return 0;
862 case TCG_COND_GEU:
Richard Hendersonceb9ee02023-10-23 23:44:27 -0700863 case TCG_COND_TSTEQ:
Richard Henderson7e64b112023-10-24 16:53:56 -0700864 return 1;
865 default:
866 break;
867 }
868 }
Richard Hendersonceb9ee02023-10-23 23:44:27 -0700869
870 /* TSTNE x,-1 -> NE x,0 */
871 if (b == -1 && is_tst_cond(c)) {
872 args[3] = args[2] = arg_new_constant(ctx, 0);
873 args[4] = tcg_tst_eqne_cond(c);
874 return -1;
875 }
876
877 /* TSTNE x,sign -> LT x,0 */
878 if (b == INT64_MIN && is_tst_cond(c)) {
879 /* bl must be 0, so copy that to bh */
880 args[3] = bl;
881 args[4] = tcg_tst_ltge_cond(c);
882 return -1;
883 }
Richard Henderson7e64b112023-10-24 16:53:56 -0700884 }
Richard Hendersonceb9ee02023-10-23 23:44:27 -0700885
Richard Henderson7e64b112023-10-24 16:53:56 -0700886 if (args_are_copies(al, bl) && args_are_copies(ah, bh)) {
Richard Hendersonceb9ee02023-10-23 23:44:27 -0700887 r = do_constant_folding_cond_eq(c);
888 if (r >= 0) {
889 return r;
890 }
891
892 /* TSTNE x,x -> NE x,0 */
893 if (is_tst_cond(c)) {
894 args[3] = args[2] = arg_new_constant(ctx, 0);
895 args[4] = tcg_tst_eqne_cond(c);
896 return -1;
897 }
Richard Henderson7e64b112023-10-24 16:53:56 -0700898 }
Richard Hendersonfb04ab72024-01-10 18:21:58 +1100899
900 /* Expand to AND with a temporary if no backend support. */
901 if (!TCG_TARGET_HAS_tst && is_tst_cond(c)) {
902 TCGOp *op1 = tcg_op_insert_before(ctx->tcg, op, INDEX_op_and_i32, 3);
903 TCGOp *op2 = tcg_op_insert_before(ctx->tcg, op, INDEX_op_and_i32, 3);
904 TCGArg t1 = arg_new_temp(ctx);
905 TCGArg t2 = arg_new_temp(ctx);
906
907 op1->args[0] = t1;
908 op1->args[1] = al;
909 op1->args[2] = bl;
910 op2->args[0] = t2;
911 op2->args[1] = ah;
912 op2->args[2] = bh;
913
914 args[0] = t1;
915 args[1] = t2;
916 args[3] = args[2] = arg_new_constant(ctx, 0);
917 args[4] = tcg_tst_eqne_cond(c);
918 }
Richard Henderson7e64b112023-10-24 16:53:56 -0700919 return -1;
920}
921
Richard Hendersone2577ea2021-08-24 08:00:48 -0700922static void init_arguments(OptContext *ctx, TCGOp *op, int nb_args)
923{
924 for (int i = 0; i < nb_args; i++) {
925 TCGTemp *ts = arg_temp(op->args[i]);
Richard Henderson39004a72022-11-11 10:09:37 +1000926 init_ts_info(ctx, ts);
Richard Hendersone2577ea2021-08-24 08:00:48 -0700927 }
928}
929
Richard Henderson8774dde2021-08-24 08:04:47 -0700930static void copy_propagate(OptContext *ctx, TCGOp *op,
931 int nb_oargs, int nb_iargs)
932{
Richard Henderson8774dde2021-08-24 08:04:47 -0700933 for (int i = nb_oargs; i < nb_oargs + nb_iargs; i++) {
934 TCGTemp *ts = arg_temp(op->args[i]);
Richard Henderson39004a72022-11-11 10:09:37 +1000935 if (ts_is_copy(ts)) {
Richard Henderson9f75e522023-11-02 13:37:46 -0700936 op->args[i] = temp_arg(find_better_copy(ts));
Richard Henderson8774dde2021-08-24 08:04:47 -0700937 }
938 }
939}
940
Richard Henderson15268552024-12-08 07:45:11 -0600941static void finish_bb(OptContext *ctx)
942{
943 /* We only optimize memory barriers across basic blocks. */
944 ctx->prev_mb = NULL;
945}
946
947static void finish_ebb(OptContext *ctx)
948{
949 finish_bb(ctx);
950 /* We only optimize across extended basic blocks. */
951 memset(&ctx->temps_used, 0, sizeof(ctx->temps_used));
952 remove_mem_copy_all(ctx);
953}
954
Richard Hendersonf3ed3cf2024-12-08 18:39:47 -0600955static bool finish_folding(OptContext *ctx, TCGOp *op)
Richard Henderson137f1f42021-08-24 08:49:25 -0700956{
957 const TCGOpDef *def = &tcg_op_defs[op->opc];
958 int i, nb_oargs;
959
Richard Henderson137f1f42021-08-24 08:49:25 -0700960 nb_oargs = def->nb_oargs;
961 for (i = 0; i < nb_oargs; i++) {
Richard Henderson57fe5c62021-08-26 12:04:46 -0700962 TCGTemp *ts = arg_temp(op->args[i]);
Richard Henderson986cac12023-01-09 13:59:35 -0800963 reset_ts(ctx, ts);
Richard Henderson137f1f42021-08-24 08:49:25 -0700964 /*
Richard Henderson57fe5c62021-08-26 12:04:46 -0700965 * Save the corresponding known-zero/sign bits mask for the
Richard Henderson137f1f42021-08-24 08:49:25 -0700966 * first output argument (only one supported so far).
967 */
968 if (i == 0) {
Richard Henderson57fe5c62021-08-26 12:04:46 -0700969 ts_info(ts)->z_mask = ctx->z_mask;
Richard Henderson137f1f42021-08-24 08:49:25 -0700970 }
971 }
Richard Hendersonf3ed3cf2024-12-08 18:39:47 -0600972 return true;
Richard Henderson137f1f42021-08-24 08:49:25 -0700973}
974
Richard Henderson2f9f08b2021-08-25 12:03:48 -0700975/*
976 * The fold_* functions return true when processing is complete,
977 * usually by folding the operation to a constant or to a copy,
978 * and calling tcg_opt_gen_{mov,movi}. They may do other things,
979 * like collect information about the value produced, for use in
980 * optimizing a subsequent operation.
981 *
982 * These first fold_* functions are all helpers, used by other
983 * folders for more specific operations.
984 */
985
986static bool fold_const1(OptContext *ctx, TCGOp *op)
987{
988 if (arg_is_const(op->args[1])) {
989 uint64_t t;
990
991 t = arg_info(op->args[1])->val;
Richard Henderson67f84c92021-08-25 08:00:20 -0700992 t = do_constant_folding(op->opc, ctx->type, t, 0);
Richard Henderson2f9f08b2021-08-25 12:03:48 -0700993 return tcg_opt_gen_movi(ctx, op, op->args[0], t);
994 }
995 return false;
996}
997
998static bool fold_const2(OptContext *ctx, TCGOp *op)
999{
1000 if (arg_is_const(op->args[1]) && arg_is_const(op->args[2])) {
1001 uint64_t t1 = arg_info(op->args[1])->val;
1002 uint64_t t2 = arg_info(op->args[2])->val;
1003
Richard Henderson67f84c92021-08-25 08:00:20 -07001004 t1 = do_constant_folding(op->opc, ctx->type, t1, t2);
Richard Henderson2f9f08b2021-08-25 12:03:48 -07001005 return tcg_opt_gen_movi(ctx, op, op->args[0], t1);
1006 }
1007 return false;
1008}
1009
Richard Hendersonc578ff12021-12-16 06:07:25 -08001010static bool fold_commutative(OptContext *ctx, TCGOp *op)
1011{
1012 swap_commutative(op->args[0], &op->args[1], &op->args[2]);
1013 return false;
1014}
1015
Richard Henderson7a2f7082021-08-26 07:06:39 -07001016static bool fold_const2_commutative(OptContext *ctx, TCGOp *op)
1017{
1018 swap_commutative(op->args[0], &op->args[1], &op->args[2]);
1019 return fold_const2(ctx, op);
1020}
1021
Richard Hendersond582b142024-12-19 10:43:26 -08001022/*
1023 * Record "zero" and "sign" masks for the single output of @op.
1024 * See TempOptInfo definition of z_mask and s_mask.
1025 * If z_mask allows, fold the output to constant zero.
Richard Henderson75c3bf32024-12-19 10:50:40 -08001026 * The passed s_mask may be augmented by z_mask.
Richard Hendersond582b142024-12-19 10:43:26 -08001027 */
1028static bool fold_masks_zs(OptContext *ctx, TCGOp *op,
Richard Henderson6d70ddc2024-12-21 21:08:10 -08001029 uint64_t z_mask, int64_t s_mask)
Richard Hendersonfae450b2021-08-25 22:42:19 -07001030{
Richard Henderson56e06ec2024-12-08 18:26:48 -06001031 const TCGOpDef *def = &tcg_op_defs[op->opc];
1032 TCGTemp *ts;
1033 TempOptInfo *ti;
Richard Henderson6d70ddc2024-12-21 21:08:10 -08001034 int rep;
Richard Henderson56e06ec2024-12-08 18:26:48 -06001035
1036 /* Only single-output opcodes are supported here. */
1037 tcg_debug_assert(def->nb_oargs == 1);
Richard Hendersonfae450b2021-08-25 22:42:19 -07001038
1039 /*
Richard Hendersonfaa2e102021-08-26 09:03:59 -07001040 * 32-bit ops generate 32-bit results, which for the purpose of
1041 * simplifying tcg are sign-extended. Certainly that's how we
1042 * represent our constants elsewhere. Note that the bits will
1043 * be reset properly for a 64-bit value when encountering the
1044 * type changing opcodes.
Richard Hendersonfae450b2021-08-25 22:42:19 -07001045 */
1046 if (ctx->type == TCG_TYPE_I32) {
Richard Hendersonfaa2e102021-08-26 09:03:59 -07001047 z_mask = (int32_t)z_mask;
Richard Henderson6d70ddc2024-12-21 21:08:10 -08001048 s_mask |= INT32_MIN;
Richard Hendersonfae450b2021-08-25 22:42:19 -07001049 }
1050
1051 if (z_mask == 0) {
1052 return tcg_opt_gen_movi(ctx, op, op->args[0], 0);
1053 }
Richard Henderson56e06ec2024-12-08 18:26:48 -06001054
1055 ts = arg_temp(op->args[0]);
1056 reset_ts(ctx, ts);
1057
1058 ti = ts_info(ts);
1059 ti->z_mask = z_mask;
Richard Henderson6d70ddc2024-12-21 21:08:10 -08001060
1061 /* Canonicalize s_mask and incorporate data from z_mask. */
1062 rep = clz64(~s_mask);
1063 rep = MAX(rep, clz64(z_mask));
1064 rep = MAX(rep - 1, 0);
1065 ti->s_mask = INT64_MIN >> rep;
1066
Richard Henderson56e06ec2024-12-08 18:26:48 -06001067 return true;
Richard Henderson045ace32024-12-19 10:33:51 -08001068}
1069
Richard Hendersond582b142024-12-19 10:43:26 -08001070static bool fold_masks(OptContext *ctx, TCGOp *op)
1071{
1072 return fold_masks_zs(ctx, op, ctx->z_mask, ctx->s_mask);
1073}
1074
Richard Henderson045ace32024-12-19 10:33:51 -08001075/*
1076 * An "affected" mask bit is 0 if and only if the result is identical
1077 * to the first input. Thus if the entire mask is 0, the operation
1078 * is equivalent to a copy.
1079 */
1080static bool fold_affected_mask(OptContext *ctx, TCGOp *op, uint64_t a_mask)
1081{
1082 if (ctx->type == TCG_TYPE_I32) {
1083 a_mask = (uint32_t)a_mask;
1084 }
Richard Hendersonfae450b2021-08-25 22:42:19 -07001085 if (a_mask == 0) {
1086 return tcg_opt_gen_mov(ctx, op, op->args[0], op->args[1]);
1087 }
1088 return false;
1089}
1090
Richard Henderson0e0a32b2021-08-24 13:18:01 -07001091/*
1092 * Convert @op to NOT, if NOT is supported by the host.
1093 * Return true f the conversion is successful, which will still
1094 * indicate that the processing is complete.
1095 */
1096static bool fold_not(OptContext *ctx, TCGOp *op);
1097static bool fold_to_not(OptContext *ctx, TCGOp *op, int idx)
1098{
1099 TCGOpcode not_op;
1100 bool have_not;
1101
1102 switch (ctx->type) {
1103 case TCG_TYPE_I32:
1104 not_op = INDEX_op_not_i32;
1105 have_not = TCG_TARGET_HAS_not_i32;
1106 break;
1107 case TCG_TYPE_I64:
1108 not_op = INDEX_op_not_i64;
1109 have_not = TCG_TARGET_HAS_not_i64;
1110 break;
1111 case TCG_TYPE_V64:
1112 case TCG_TYPE_V128:
1113 case TCG_TYPE_V256:
1114 not_op = INDEX_op_not_vec;
1115 have_not = TCG_TARGET_HAS_not_vec;
1116 break;
1117 default:
1118 g_assert_not_reached();
1119 }
1120 if (have_not) {
1121 op->opc = not_op;
1122 op->args[1] = op->args[idx];
1123 return fold_not(ctx, op);
1124 }
1125 return false;
1126}
1127
Richard Hendersonda48e272021-08-25 20:42:04 -07001128/* If the binary operation has first argument @i, fold to @i. */
1129static bool fold_ix_to_i(OptContext *ctx, TCGOp *op, uint64_t i)
1130{
Richard Henderson27cdb852023-10-23 11:38:00 -07001131 if (arg_is_const_val(op->args[1], i)) {
Richard Hendersonda48e272021-08-25 20:42:04 -07001132 return tcg_opt_gen_movi(ctx, op, op->args[0], i);
1133 }
1134 return false;
1135}
1136
Richard Henderson0e0a32b2021-08-24 13:18:01 -07001137/* If the binary operation has first argument @i, fold to NOT. */
1138static bool fold_ix_to_not(OptContext *ctx, TCGOp *op, uint64_t i)
1139{
Richard Henderson27cdb852023-10-23 11:38:00 -07001140 if (arg_is_const_val(op->args[1], i)) {
Richard Henderson0e0a32b2021-08-24 13:18:01 -07001141 return fold_to_not(ctx, op, 2);
1142 }
1143 return false;
1144}
1145
Richard Hendersone8679952021-08-25 13:19:52 -07001146/* If the binary operation has second argument @i, fold to @i. */
1147static bool fold_xi_to_i(OptContext *ctx, TCGOp *op, uint64_t i)
1148{
Richard Henderson27cdb852023-10-23 11:38:00 -07001149 if (arg_is_const_val(op->args[2], i)) {
Richard Hendersone8679952021-08-25 13:19:52 -07001150 return tcg_opt_gen_movi(ctx, op, op->args[0], i);
1151 }
1152 return false;
1153}
1154
Richard Hendersona63ce0e2021-08-25 20:28:53 -07001155/* If the binary operation has second argument @i, fold to identity. */
1156static bool fold_xi_to_x(OptContext *ctx, TCGOp *op, uint64_t i)
1157{
Richard Henderson27cdb852023-10-23 11:38:00 -07001158 if (arg_is_const_val(op->args[2], i)) {
Richard Hendersona63ce0e2021-08-25 20:28:53 -07001159 return tcg_opt_gen_mov(ctx, op, op->args[0], op->args[1]);
1160 }
1161 return false;
1162}
1163
Richard Henderson0e0a32b2021-08-24 13:18:01 -07001164/* If the binary operation has second argument @i, fold to NOT. */
1165static bool fold_xi_to_not(OptContext *ctx, TCGOp *op, uint64_t i)
1166{
Richard Henderson27cdb852023-10-23 11:38:00 -07001167 if (arg_is_const_val(op->args[2], i)) {
Richard Henderson0e0a32b2021-08-24 13:18:01 -07001168 return fold_to_not(ctx, op, 1);
1169 }
1170 return false;
1171}
1172
Richard Hendersoncbe42fb2021-08-25 13:02:00 -07001173/* If the binary operation has both arguments equal, fold to @i. */
1174static bool fold_xx_to_i(OptContext *ctx, TCGOp *op, uint64_t i)
1175{
1176 if (args_are_copies(op->args[1], op->args[2])) {
1177 return tcg_opt_gen_movi(ctx, op, op->args[0], i);
1178 }
1179 return false;
1180}
1181
Richard Hendersonca7bb042021-08-25 13:14:21 -07001182/* If the binary operation has both arguments equal, fold to identity. */
1183static bool fold_xx_to_x(OptContext *ctx, TCGOp *op)
1184{
1185 if (args_are_copies(op->args[1], op->args[2])) {
1186 return tcg_opt_gen_mov(ctx, op, op->args[0], op->args[1]);
1187 }
1188 return false;
1189}
1190
Richard Henderson2f9f08b2021-08-25 12:03:48 -07001191/*
1192 * These outermost fold_<op> functions are sorted alphabetically.
Richard Hendersonca7bb042021-08-25 13:14:21 -07001193 *
1194 * The ordering of the transformations should be:
1195 * 1) those that produce a constant
1196 * 2) those that produce a copy
1197 * 3) those that produce information about the result value.
Richard Henderson2f9f08b2021-08-25 12:03:48 -07001198 */
1199
1200static bool fold_add(OptContext *ctx, TCGOp *op)
1201{
Richard Henderson7a2f7082021-08-26 07:06:39 -07001202 if (fold_const2_commutative(ctx, op) ||
Richard Hendersona63ce0e2021-08-25 20:28:53 -07001203 fold_xi_to_x(ctx, op, 0)) {
1204 return true;
1205 }
Richard Hendersonf3ed3cf2024-12-08 18:39:47 -06001206 return finish_folding(ctx, op);
Richard Henderson2f9f08b2021-08-25 12:03:48 -07001207}
1208
Richard Hendersonc578ff12021-12-16 06:07:25 -08001209/* We cannot as yet do_constant_folding with vectors. */
1210static bool fold_add_vec(OptContext *ctx, TCGOp *op)
1211{
1212 if (fold_commutative(ctx, op) ||
1213 fold_xi_to_x(ctx, op, 0)) {
1214 return true;
1215 }
Richard Hendersonf3ed3cf2024-12-08 18:39:47 -06001216 return finish_folding(ctx, op);
Richard Hendersonc578ff12021-12-16 06:07:25 -08001217}
1218
Richard Henderson9531c072021-08-26 06:51:39 -07001219static bool fold_addsub2(OptContext *ctx, TCGOp *op, bool add)
Richard Hendersone3f7dc22021-08-24 10:30:38 -07001220{
Richard Hendersonf2457572023-10-25 18:39:44 -07001221 bool a_const = arg_is_const(op->args[2]) && arg_is_const(op->args[3]);
1222 bool b_const = arg_is_const(op->args[4]) && arg_is_const(op->args[5]);
1223
1224 if (a_const && b_const) {
Richard Henderson9531c072021-08-26 06:51:39 -07001225 uint64_t al = arg_info(op->args[2])->val;
1226 uint64_t ah = arg_info(op->args[3])->val;
1227 uint64_t bl = arg_info(op->args[4])->val;
1228 uint64_t bh = arg_info(op->args[5])->val;
Richard Hendersone3f7dc22021-08-24 10:30:38 -07001229 TCGArg rl, rh;
Richard Henderson9531c072021-08-26 06:51:39 -07001230 TCGOp *op2;
Richard Hendersone3f7dc22021-08-24 10:30:38 -07001231
Richard Henderson9531c072021-08-26 06:51:39 -07001232 if (ctx->type == TCG_TYPE_I32) {
1233 uint64_t a = deposit64(al, 32, 32, ah);
1234 uint64_t b = deposit64(bl, 32, 32, bh);
1235
1236 if (add) {
1237 a += b;
1238 } else {
1239 a -= b;
1240 }
1241
1242 al = sextract64(a, 0, 32);
1243 ah = sextract64(a, 32, 32);
Richard Hendersone3f7dc22021-08-24 10:30:38 -07001244 } else {
Richard Henderson9531c072021-08-26 06:51:39 -07001245 Int128 a = int128_make128(al, ah);
1246 Int128 b = int128_make128(bl, bh);
1247
1248 if (add) {
1249 a = int128_add(a, b);
1250 } else {
1251 a = int128_sub(a, b);
1252 }
1253
1254 al = int128_getlo(a);
1255 ah = int128_gethi(a);
Richard Hendersone3f7dc22021-08-24 10:30:38 -07001256 }
1257
1258 rl = op->args[0];
1259 rh = op->args[1];
Richard Henderson9531c072021-08-26 06:51:39 -07001260
1261 /* The proper opcode is supplied by tcg_opt_gen_mov. */
Philippe Mathieu-Daudéd4478942022-12-18 22:18:31 +01001262 op2 = tcg_op_insert_before(ctx->tcg, op, 0, 2);
Richard Henderson9531c072021-08-26 06:51:39 -07001263
1264 tcg_opt_gen_movi(ctx, op, rl, al);
1265 tcg_opt_gen_movi(ctx, op2, rh, ah);
Richard Hendersone3f7dc22021-08-24 10:30:38 -07001266 return true;
1267 }
Richard Hendersonf2457572023-10-25 18:39:44 -07001268
1269 /* Fold sub2 r,x,i to add2 r,x,-i */
1270 if (!add && b_const) {
1271 uint64_t bl = arg_info(op->args[4])->val;
1272 uint64_t bh = arg_info(op->args[5])->val;
1273
1274 /* Negate the two parts without assembling and disassembling. */
1275 bl = -bl;
1276 bh = ~bh + !bl;
1277
1278 op->opc = (ctx->type == TCG_TYPE_I32
1279 ? INDEX_op_add2_i32 : INDEX_op_add2_i64);
1280 op->args[4] = arg_new_constant(ctx, bl);
1281 op->args[5] = arg_new_constant(ctx, bh);
1282 }
Richard Hendersonf3ed3cf2024-12-08 18:39:47 -06001283 return finish_folding(ctx, op);
Richard Hendersone3f7dc22021-08-24 10:30:38 -07001284}
1285
Richard Henderson9531c072021-08-26 06:51:39 -07001286static bool fold_add2(OptContext *ctx, TCGOp *op)
Richard Hendersone3f7dc22021-08-24 10:30:38 -07001287{
Richard Henderson7a2f7082021-08-26 07:06:39 -07001288 /* Note that the high and low parts may be independently swapped. */
1289 swap_commutative(op->args[0], &op->args[2], &op->args[4]);
1290 swap_commutative(op->args[1], &op->args[3], &op->args[5]);
1291
Richard Henderson9531c072021-08-26 06:51:39 -07001292 return fold_addsub2(ctx, op, true);
Richard Hendersone3f7dc22021-08-24 10:30:38 -07001293}
1294
Richard Henderson2f9f08b2021-08-25 12:03:48 -07001295static bool fold_and(OptContext *ctx, TCGOp *op)
1296{
Richard Henderson1ca73722024-12-08 18:47:15 -06001297 uint64_t z1, z2, z_mask, s_mask;
1298 TempOptInfo *t1, *t2;
Richard Hendersonfae450b2021-08-25 22:42:19 -07001299
Richard Henderson7a2f7082021-08-26 07:06:39 -07001300 if (fold_const2_commutative(ctx, op) ||
Richard Hendersone8679952021-08-25 13:19:52 -07001301 fold_xi_to_i(ctx, op, 0) ||
Richard Hendersona63ce0e2021-08-25 20:28:53 -07001302 fold_xi_to_x(ctx, op, -1) ||
Richard Hendersonca7bb042021-08-25 13:14:21 -07001303 fold_xx_to_x(ctx, op)) {
1304 return true;
1305 }
Richard Hendersonfae450b2021-08-25 22:42:19 -07001306
Richard Henderson1ca73722024-12-08 18:47:15 -06001307 t1 = arg_info(op->args[1]);
1308 t2 = arg_info(op->args[2]);
1309 z1 = t1->z_mask;
1310 z2 = t2->z_mask;
Richard Henderson3f2b1f82021-08-26 13:08:54 -07001311
1312 /*
Richard Hendersonfae450b2021-08-25 22:42:19 -07001313 * Known-zeros does not imply known-ones. Therefore unless
1314 * arg2 is constant, we can't infer affected bits from it.
1315 */
Richard Henderson1ca73722024-12-08 18:47:15 -06001316 if (ti_is_const(t2) && fold_affected_mask(ctx, op, z1 & ~z2)) {
Richard Henderson045ace32024-12-19 10:33:51 -08001317 return true;
Richard Hendersonfae450b2021-08-25 22:42:19 -07001318 }
1319
Richard Henderson1ca73722024-12-08 18:47:15 -06001320 z_mask = z1 & z2;
1321
1322 /*
1323 * Sign repetitions are perforce all identical, whether they are 1 or 0.
1324 * Bitwise operations preserve the relative quantity of the repetitions.
1325 */
1326 s_mask = t1->s_mask & t2->s_mask;
1327
1328 return fold_masks_zs(ctx, op, z_mask, s_mask);
Richard Henderson2f9f08b2021-08-25 12:03:48 -07001329}
1330
1331static bool fold_andc(OptContext *ctx, TCGOp *op)
1332{
Richard Henderson21e2b5f2024-12-08 18:56:55 -06001333 uint64_t z_mask, s_mask;
1334 TempOptInfo *t1, *t2;
Richard Hendersonfae450b2021-08-25 22:42:19 -07001335
Richard Hendersoncbe42fb2021-08-25 13:02:00 -07001336 if (fold_const2(ctx, op) ||
Richard Henderson0e0a32b2021-08-24 13:18:01 -07001337 fold_xx_to_i(ctx, op, 0) ||
Richard Hendersona63ce0e2021-08-25 20:28:53 -07001338 fold_xi_to_x(ctx, op, 0) ||
Richard Henderson0e0a32b2021-08-24 13:18:01 -07001339 fold_ix_to_not(ctx, op, -1)) {
Richard Hendersoncbe42fb2021-08-25 13:02:00 -07001340 return true;
1341 }
Richard Hendersonfae450b2021-08-25 22:42:19 -07001342
Richard Henderson21e2b5f2024-12-08 18:56:55 -06001343 t1 = arg_info(op->args[1]);
1344 t2 = arg_info(op->args[2]);
1345 z_mask = t1->z_mask;
Richard Hendersonfae450b2021-08-25 22:42:19 -07001346
1347 /*
1348 * Known-zeros does not imply known-ones. Therefore unless
1349 * arg2 is constant, we can't infer anything from it.
1350 */
Richard Henderson21e2b5f2024-12-08 18:56:55 -06001351 if (ti_is_const(t2)) {
1352 uint64_t v2 = ti_const_val(t2);
1353 if (fold_affected_mask(ctx, op, z_mask & v2)) {
Richard Henderson045ace32024-12-19 10:33:51 -08001354 return true;
1355 }
Richard Henderson21e2b5f2024-12-08 18:56:55 -06001356 z_mask &= ~v2;
Richard Hendersonfae450b2021-08-25 22:42:19 -07001357 }
Richard Hendersonfae450b2021-08-25 22:42:19 -07001358
Richard Henderson21e2b5f2024-12-08 18:56:55 -06001359 s_mask = t1->s_mask & t2->s_mask;
1360 return fold_masks_zs(ctx, op, z_mask, s_mask);
Richard Henderson2f9f08b2021-08-25 12:03:48 -07001361}
1362
Richard Henderson079b0802021-08-24 09:30:59 -07001363static bool fold_brcond(OptContext *ctx, TCGOp *op)
1364{
Richard Hendersonfb04ab72024-01-10 18:21:58 +11001365 int i = do_constant_folding_cond1(ctx, op, NO_DEST, &op->args[0],
Richard Henderson246c4b72023-10-24 16:36:50 -07001366 &op->args[1], &op->args[2]);
Richard Henderson079b0802021-08-24 09:30:59 -07001367 if (i == 0) {
1368 tcg_op_remove(ctx->tcg, op);
1369 return true;
1370 }
1371 if (i > 0) {
1372 op->opc = INDEX_op_br;
1373 op->args[0] = op->args[3];
Richard Henderson15268552024-12-08 07:45:11 -06001374 finish_ebb(ctx);
1375 } else {
1376 finish_bb(ctx);
Richard Henderson079b0802021-08-24 09:30:59 -07001377 }
Richard Henderson15268552024-12-08 07:45:11 -06001378 return true;
Richard Henderson079b0802021-08-24 09:30:59 -07001379}
1380
Richard Henderson764d2ab2021-08-24 09:22:11 -07001381static bool fold_brcond2(OptContext *ctx, TCGOp *op)
1382{
Richard Henderson7e64b112023-10-24 16:53:56 -07001383 TCGCond cond;
1384 TCGArg label;
Richard Henderson7a2f7082021-08-26 07:06:39 -07001385 int i, inv = 0;
Richard Henderson764d2ab2021-08-24 09:22:11 -07001386
Richard Hendersonfb04ab72024-01-10 18:21:58 +11001387 i = do_constant_folding_cond2(ctx, op, &op->args[0]);
Richard Henderson7e64b112023-10-24 16:53:56 -07001388 cond = op->args[4];
1389 label = op->args[5];
Richard Henderson764d2ab2021-08-24 09:22:11 -07001390 if (i >= 0) {
1391 goto do_brcond_const;
1392 }
1393
1394 switch (cond) {
1395 case TCG_COND_LT:
1396 case TCG_COND_GE:
1397 /*
1398 * Simplify LT/GE comparisons vs zero to a single compare
1399 * vs the high word of the input.
1400 */
Richard Henderson27cdb852023-10-23 11:38:00 -07001401 if (arg_is_const_val(op->args[2], 0) &&
1402 arg_is_const_val(op->args[3], 0)) {
Richard Henderson764d2ab2021-08-24 09:22:11 -07001403 goto do_brcond_high;
1404 }
1405 break;
1406
1407 case TCG_COND_NE:
1408 inv = 1;
1409 QEMU_FALLTHROUGH;
1410 case TCG_COND_EQ:
1411 /*
1412 * Simplify EQ/NE comparisons where one of the pairs
1413 * can be simplified.
1414 */
Richard Henderson67f84c92021-08-25 08:00:20 -07001415 i = do_constant_folding_cond(TCG_TYPE_I32, op->args[0],
Richard Henderson764d2ab2021-08-24 09:22:11 -07001416 op->args[2], cond);
1417 switch (i ^ inv) {
1418 case 0:
1419 goto do_brcond_const;
1420 case 1:
1421 goto do_brcond_high;
1422 }
1423
Richard Henderson67f84c92021-08-25 08:00:20 -07001424 i = do_constant_folding_cond(TCG_TYPE_I32, op->args[1],
Richard Henderson764d2ab2021-08-24 09:22:11 -07001425 op->args[3], cond);
1426 switch (i ^ inv) {
1427 case 0:
1428 goto do_brcond_const;
1429 case 1:
Richard Hendersonceb9ee02023-10-23 23:44:27 -07001430 goto do_brcond_low;
1431 }
1432 break;
1433
1434 case TCG_COND_TSTEQ:
1435 case TCG_COND_TSTNE:
1436 if (arg_is_const_val(op->args[2], 0)) {
1437 goto do_brcond_high;
1438 }
1439 if (arg_is_const_val(op->args[3], 0)) {
1440 goto do_brcond_low;
Richard Henderson764d2ab2021-08-24 09:22:11 -07001441 }
1442 break;
1443
1444 default:
1445 break;
1446
Richard Hendersonceb9ee02023-10-23 23:44:27 -07001447 do_brcond_low:
1448 op->opc = INDEX_op_brcond_i32;
1449 op->args[1] = op->args[2];
1450 op->args[2] = cond;
1451 op->args[3] = label;
1452 return fold_brcond(ctx, op);
1453
Richard Henderson764d2ab2021-08-24 09:22:11 -07001454 do_brcond_high:
1455 op->opc = INDEX_op_brcond_i32;
1456 op->args[0] = op->args[1];
1457 op->args[1] = op->args[3];
1458 op->args[2] = cond;
1459 op->args[3] = label;
Richard Hendersonceb9ee02023-10-23 23:44:27 -07001460 return fold_brcond(ctx, op);
Richard Henderson764d2ab2021-08-24 09:22:11 -07001461
1462 do_brcond_const:
1463 if (i == 0) {
1464 tcg_op_remove(ctx->tcg, op);
1465 return true;
1466 }
1467 op->opc = INDEX_op_br;
1468 op->args[0] = label;
Richard Henderson15268552024-12-08 07:45:11 -06001469 finish_ebb(ctx);
1470 return true;
Richard Henderson764d2ab2021-08-24 09:22:11 -07001471 }
Richard Henderson15268552024-12-08 07:45:11 -06001472
1473 finish_bb(ctx);
1474 return true;
Richard Henderson764d2ab2021-08-24 09:22:11 -07001475}
1476
Richard Henderson09bacdc2021-08-24 11:58:12 -07001477static bool fold_bswap(OptContext *ctx, TCGOp *op)
1478{
Richard Henderson57fe5c62021-08-26 12:04:46 -07001479 uint64_t z_mask, s_mask, sign;
Richard Hendersonc1e7b982024-12-08 19:42:20 -06001480 TempOptInfo *t1 = arg_info(op->args[1]);
Richard Hendersonfae450b2021-08-25 22:42:19 -07001481
Richard Hendersonc1e7b982024-12-08 19:42:20 -06001482 if (ti_is_const(t1)) {
1483 return tcg_opt_gen_movi(ctx, op, op->args[0],
1484 do_constant_folding(op->opc, ctx->type,
1485 ti_const_val(t1),
1486 op->args[2]));
Richard Henderson09bacdc2021-08-24 11:58:12 -07001487 }
Richard Hendersonfae450b2021-08-25 22:42:19 -07001488
Richard Hendersonc1e7b982024-12-08 19:42:20 -06001489 z_mask = t1->z_mask;
Richard Hendersonfae450b2021-08-25 22:42:19 -07001490 switch (op->opc) {
1491 case INDEX_op_bswap16_i32:
1492 case INDEX_op_bswap16_i64:
1493 z_mask = bswap16(z_mask);
1494 sign = INT16_MIN;
1495 break;
1496 case INDEX_op_bswap32_i32:
1497 case INDEX_op_bswap32_i64:
1498 z_mask = bswap32(z_mask);
1499 sign = INT32_MIN;
1500 break;
1501 case INDEX_op_bswap64_i64:
1502 z_mask = bswap64(z_mask);
1503 sign = INT64_MIN;
1504 break;
1505 default:
1506 g_assert_not_reached();
1507 }
1508
Richard Henderson75c3bf32024-12-19 10:50:40 -08001509 s_mask = 0;
Richard Hendersonfae450b2021-08-25 22:42:19 -07001510 switch (op->args[2] & (TCG_BSWAP_OZ | TCG_BSWAP_OS)) {
1511 case TCG_BSWAP_OZ:
1512 break;
1513 case TCG_BSWAP_OS:
1514 /* If the sign bit may be 1, force all the bits above to 1. */
1515 if (z_mask & sign) {
1516 z_mask |= sign;
1517 }
Richard Hendersonc1e7b982024-12-08 19:42:20 -06001518 /* The value and therefore s_mask is explicitly sign-extended. */
1519 s_mask = sign;
Richard Hendersonfae450b2021-08-25 22:42:19 -07001520 break;
1521 default:
1522 /* The high bits are undefined: force all bits above the sign to 1. */
1523 z_mask |= sign << 1;
1524 break;
1525 }
Richard Hendersonfae450b2021-08-25 22:42:19 -07001526
Richard Hendersonc1e7b982024-12-08 19:42:20 -06001527 return fold_masks_zs(ctx, op, z_mask, s_mask);
Richard Henderson09bacdc2021-08-24 11:58:12 -07001528}
1529
Richard Henderson5cf32be2021-08-24 08:17:08 -07001530static bool fold_call(OptContext *ctx, TCGOp *op)
1531{
1532 TCGContext *s = ctx->tcg;
1533 int nb_oargs = TCGOP_CALLO(op);
1534 int nb_iargs = TCGOP_CALLI(op);
1535 int flags, i;
1536
1537 init_arguments(ctx, op, nb_oargs + nb_iargs);
1538 copy_propagate(ctx, op, nb_oargs, nb_iargs);
1539
1540 /* If the function reads or writes globals, reset temp data. */
1541 flags = tcg_call_flags(op);
1542 if (!(flags & (TCG_CALL_NO_READ_GLOBALS | TCG_CALL_NO_WRITE_GLOBALS))) {
1543 int nb_globals = s->nb_globals;
1544
1545 for (i = 0; i < nb_globals; i++) {
1546 if (test_bit(i, ctx->temps_used.l)) {
Richard Henderson986cac12023-01-09 13:59:35 -08001547 reset_ts(ctx, &ctx->tcg->temps[i]);
Richard Henderson5cf32be2021-08-24 08:17:08 -07001548 }
1549 }
1550 }
1551
Richard Hendersonab84dc32023-08-23 23:04:24 -07001552 /* If the function has side effects, reset mem data. */
1553 if (!(flags & TCG_CALL_NO_SIDE_EFFECTS)) {
1554 remove_mem_copy_all(ctx);
1555 }
1556
Richard Henderson5cf32be2021-08-24 08:17:08 -07001557 /* Reset temp data for outputs. */
1558 for (i = 0; i < nb_oargs; i++) {
Richard Henderson986cac12023-01-09 13:59:35 -08001559 reset_temp(ctx, op->args[i]);
Richard Henderson5cf32be2021-08-24 08:17:08 -07001560 }
1561
1562 /* Stop optimizing MB across calls. */
1563 ctx->prev_mb = NULL;
1564 return true;
1565}
1566
Richard Henderson30dd0bf2021-08-24 10:51:34 -07001567static bool fold_count_zeros(OptContext *ctx, TCGOp *op)
1568{
Richard Hendersonce1d6632024-12-08 19:47:51 -06001569 uint64_t z_mask, s_mask;
1570 TempOptInfo *t1 = arg_info(op->args[1]);
1571 TempOptInfo *t2 = arg_info(op->args[2]);
Richard Hendersonfae450b2021-08-25 22:42:19 -07001572
Richard Hendersonce1d6632024-12-08 19:47:51 -06001573 if (ti_is_const(t1)) {
1574 uint64_t t = ti_const_val(t1);
Richard Henderson30dd0bf2021-08-24 10:51:34 -07001575
1576 if (t != 0) {
Richard Henderson67f84c92021-08-25 08:00:20 -07001577 t = do_constant_folding(op->opc, ctx->type, t, 0);
Richard Henderson30dd0bf2021-08-24 10:51:34 -07001578 return tcg_opt_gen_movi(ctx, op, op->args[0], t);
1579 }
1580 return tcg_opt_gen_mov(ctx, op, op->args[0], op->args[2]);
1581 }
Richard Hendersonfae450b2021-08-25 22:42:19 -07001582
1583 switch (ctx->type) {
1584 case TCG_TYPE_I32:
1585 z_mask = 31;
1586 break;
1587 case TCG_TYPE_I64:
1588 z_mask = 63;
1589 break;
1590 default:
1591 g_assert_not_reached();
1592 }
Richard Hendersonce1d6632024-12-08 19:47:51 -06001593 s_mask = ~z_mask;
1594 z_mask |= t2->z_mask;
1595 s_mask &= t2->s_mask;
1596
1597 return fold_masks_zs(ctx, op, z_mask, s_mask);
Richard Henderson30dd0bf2021-08-24 10:51:34 -07001598}
1599
Richard Henderson2f9f08b2021-08-25 12:03:48 -07001600static bool fold_ctpop(OptContext *ctx, TCGOp *op)
1601{
Richard Hendersonfae450b2021-08-25 22:42:19 -07001602 if (fold_const1(ctx, op)) {
1603 return true;
1604 }
1605
1606 switch (ctx->type) {
1607 case TCG_TYPE_I32:
1608 ctx->z_mask = 32 | 31;
1609 break;
1610 case TCG_TYPE_I64:
1611 ctx->z_mask = 64 | 63;
1612 break;
1613 default:
1614 g_assert_not_reached();
1615 }
1616 return false;
Richard Henderson2f9f08b2021-08-25 12:03:48 -07001617}
1618
Richard Henderson1b1907b2021-08-24 10:47:04 -07001619static bool fold_deposit(OptContext *ctx, TCGOp *op)
1620{
Richard Henderson8f7a8402023-08-13 11:03:05 -07001621 TCGOpcode and_opc;
1622
Richard Henderson1b1907b2021-08-24 10:47:04 -07001623 if (arg_is_const(op->args[1]) && arg_is_const(op->args[2])) {
1624 uint64_t t1 = arg_info(op->args[1])->val;
1625 uint64_t t2 = arg_info(op->args[2])->val;
1626
1627 t1 = deposit64(t1, op->args[3], op->args[4], t2);
1628 return tcg_opt_gen_movi(ctx, op, op->args[0], t1);
1629 }
Richard Hendersonfae450b2021-08-25 22:42:19 -07001630
Richard Henderson8f7a8402023-08-13 11:03:05 -07001631 switch (ctx->type) {
1632 case TCG_TYPE_I32:
1633 and_opc = INDEX_op_and_i32;
1634 break;
1635 case TCG_TYPE_I64:
1636 and_opc = INDEX_op_and_i64;
1637 break;
1638 default:
1639 g_assert_not_reached();
1640 }
1641
1642 /* Inserting a value into zero at offset 0. */
Richard Henderson27cdb852023-10-23 11:38:00 -07001643 if (arg_is_const_val(op->args[1], 0) && op->args[3] == 0) {
Richard Henderson8f7a8402023-08-13 11:03:05 -07001644 uint64_t mask = MAKE_64BIT_MASK(0, op->args[4]);
1645
1646 op->opc = and_opc;
1647 op->args[1] = op->args[2];
Richard Henderson26aac972023-10-23 12:31:57 -07001648 op->args[2] = arg_new_constant(ctx, mask);
Richard Henderson8f7a8402023-08-13 11:03:05 -07001649 ctx->z_mask = mask & arg_info(op->args[1])->z_mask;
1650 return false;
1651 }
1652
1653 /* Inserting zero into a value. */
Richard Henderson27cdb852023-10-23 11:38:00 -07001654 if (arg_is_const_val(op->args[2], 0)) {
Richard Henderson8f7a8402023-08-13 11:03:05 -07001655 uint64_t mask = deposit64(-1, op->args[3], op->args[4], 0);
1656
1657 op->opc = and_opc;
Richard Henderson26aac972023-10-23 12:31:57 -07001658 op->args[2] = arg_new_constant(ctx, mask);
Richard Henderson8f7a8402023-08-13 11:03:05 -07001659 ctx->z_mask = mask & arg_info(op->args[1])->z_mask;
1660 return false;
1661 }
1662
Richard Hendersonfae450b2021-08-25 22:42:19 -07001663 ctx->z_mask = deposit64(arg_info(op->args[1])->z_mask,
1664 op->args[3], op->args[4],
1665 arg_info(op->args[2])->z_mask);
Richard Henderson1b1907b2021-08-24 10:47:04 -07001666 return false;
1667}
1668
Richard Henderson2f9f08b2021-08-25 12:03:48 -07001669static bool fold_divide(OptContext *ctx, TCGOp *op)
1670{
Richard Henderson2f9d9a32021-10-25 11:30:14 -07001671 if (fold_const2(ctx, op) ||
1672 fold_xi_to_x(ctx, op, 1)) {
1673 return true;
1674 }
1675 return false;
Richard Henderson2f9f08b2021-08-25 12:03:48 -07001676}
1677
Richard Henderson8cdb3fc2021-08-24 12:06:33 -07001678static bool fold_dup(OptContext *ctx, TCGOp *op)
1679{
1680 if (arg_is_const(op->args[1])) {
1681 uint64_t t = arg_info(op->args[1])->val;
1682 t = dup_const(TCGOP_VECE(op), t);
1683 return tcg_opt_gen_movi(ctx, op, op->args[0], t);
1684 }
1685 return false;
1686}
1687
1688static bool fold_dup2(OptContext *ctx, TCGOp *op)
1689{
1690 if (arg_is_const(op->args[1]) && arg_is_const(op->args[2])) {
1691 uint64_t t = deposit64(arg_info(op->args[1])->val, 32, 32,
1692 arg_info(op->args[2])->val);
1693 return tcg_opt_gen_movi(ctx, op, op->args[0], t);
1694 }
1695
1696 if (args_are_copies(op->args[1], op->args[2])) {
1697 op->opc = INDEX_op_dup_vec;
1698 TCGOP_VECE(op) = MO_32;
1699 }
1700 return false;
1701}
1702
Richard Henderson2f9f08b2021-08-25 12:03:48 -07001703static bool fold_eqv(OptContext *ctx, TCGOp *op)
1704{
Richard Henderson7a2f7082021-08-26 07:06:39 -07001705 if (fold_const2_commutative(ctx, op) ||
Richard Hendersona63ce0e2021-08-25 20:28:53 -07001706 fold_xi_to_x(ctx, op, -1) ||
Richard Henderson0e0a32b2021-08-24 13:18:01 -07001707 fold_xi_to_not(ctx, op, 0)) {
1708 return true;
1709 }
Richard Henderson3f2b1f82021-08-26 13:08:54 -07001710
1711 ctx->s_mask = arg_info(op->args[1])->s_mask
1712 & arg_info(op->args[2])->s_mask;
Richard Henderson0e0a32b2021-08-24 13:18:01 -07001713 return false;
Richard Henderson2f9f08b2021-08-25 12:03:48 -07001714}
1715
Richard Hendersonb6617c82021-08-24 10:44:53 -07001716static bool fold_extract(OptContext *ctx, TCGOp *op)
1717{
Richard Hendersonfae450b2021-08-25 22:42:19 -07001718 uint64_t z_mask_old, z_mask;
Richard Henderson57fe5c62021-08-26 12:04:46 -07001719 int pos = op->args[2];
1720 int len = op->args[3];
Richard Hendersonfae450b2021-08-25 22:42:19 -07001721
Richard Hendersonb6617c82021-08-24 10:44:53 -07001722 if (arg_is_const(op->args[1])) {
1723 uint64_t t;
1724
1725 t = arg_info(op->args[1])->val;
Richard Henderson57fe5c62021-08-26 12:04:46 -07001726 t = extract64(t, pos, len);
Richard Hendersonb6617c82021-08-24 10:44:53 -07001727 return tcg_opt_gen_movi(ctx, op, op->args[0], t);
1728 }
Richard Hendersonfae450b2021-08-25 22:42:19 -07001729
1730 z_mask_old = arg_info(op->args[1])->z_mask;
Richard Henderson57fe5c62021-08-26 12:04:46 -07001731 z_mask = extract64(z_mask_old, pos, len);
Richard Henderson045ace32024-12-19 10:33:51 -08001732 if (pos == 0 && fold_affected_mask(ctx, op, z_mask_old ^ z_mask)) {
1733 return true;
Richard Hendersonfae450b2021-08-25 22:42:19 -07001734 }
1735 ctx->z_mask = z_mask;
1736
1737 return fold_masks(ctx, op);
Richard Hendersonb6617c82021-08-24 10:44:53 -07001738}
1739
Richard Hendersondcd08992021-08-24 10:41:39 -07001740static bool fold_extract2(OptContext *ctx, TCGOp *op)
1741{
1742 if (arg_is_const(op->args[1]) && arg_is_const(op->args[2])) {
1743 uint64_t v1 = arg_info(op->args[1])->val;
1744 uint64_t v2 = arg_info(op->args[2])->val;
1745 int shr = op->args[3];
1746
1747 if (op->opc == INDEX_op_extract2_i64) {
1748 v1 >>= shr;
1749 v2 <<= 64 - shr;
1750 } else {
1751 v1 = (uint32_t)v1 >> shr;
Richard Henderson225bec02021-11-09 23:17:59 +01001752 v2 = (uint64_t)((int32_t)v2 << (32 - shr));
Richard Hendersondcd08992021-08-24 10:41:39 -07001753 }
1754 return tcg_opt_gen_movi(ctx, op, op->args[0], v1 | v2);
1755 }
1756 return false;
1757}
1758
Richard Henderson2f9f08b2021-08-25 12:03:48 -07001759static bool fold_exts(OptContext *ctx, TCGOp *op)
1760{
Richard Henderson57fe5c62021-08-26 12:04:46 -07001761 uint64_t s_mask_old, s_mask, z_mask, sign;
Richard Hendersonfae450b2021-08-25 22:42:19 -07001762 bool type_change = false;
1763
1764 if (fold_const1(ctx, op)) {
1765 return true;
1766 }
1767
Richard Henderson57fe5c62021-08-26 12:04:46 -07001768 z_mask = arg_info(op->args[1])->z_mask;
1769 s_mask = arg_info(op->args[1])->s_mask;
1770 s_mask_old = s_mask;
Richard Hendersonfae450b2021-08-25 22:42:19 -07001771
1772 switch (op->opc) {
1773 CASE_OP_32_64(ext8s):
1774 sign = INT8_MIN;
1775 z_mask = (uint8_t)z_mask;
1776 break;
1777 CASE_OP_32_64(ext16s):
1778 sign = INT16_MIN;
1779 z_mask = (uint16_t)z_mask;
1780 break;
1781 case INDEX_op_ext_i32_i64:
1782 type_change = true;
1783 QEMU_FALLTHROUGH;
1784 case INDEX_op_ext32s_i64:
1785 sign = INT32_MIN;
1786 z_mask = (uint32_t)z_mask;
1787 break;
1788 default:
1789 g_assert_not_reached();
1790 }
1791
1792 if (z_mask & sign) {
1793 z_mask |= sign;
Richard Hendersonfae450b2021-08-25 22:42:19 -07001794 }
Richard Henderson57fe5c62021-08-26 12:04:46 -07001795 s_mask |= sign << 1;
1796
Richard Hendersonfae450b2021-08-25 22:42:19 -07001797 ctx->z_mask = z_mask;
Richard Henderson57fe5c62021-08-26 12:04:46 -07001798 ctx->s_mask = s_mask;
Richard Henderson6d70ddc2024-12-21 21:08:10 -08001799 if (0 && !type_change && fold_affected_mask(ctx, op, s_mask & ~s_mask_old)) {
Richard Henderson045ace32024-12-19 10:33:51 -08001800 return true;
Richard Henderson57fe5c62021-08-26 12:04:46 -07001801 }
Richard Hendersonfae450b2021-08-25 22:42:19 -07001802
1803 return fold_masks(ctx, op);
Richard Henderson2f9f08b2021-08-25 12:03:48 -07001804}
1805
1806static bool fold_extu(OptContext *ctx, TCGOp *op)
1807{
Richard Hendersonfae450b2021-08-25 22:42:19 -07001808 uint64_t z_mask_old, z_mask;
1809 bool type_change = false;
1810
1811 if (fold_const1(ctx, op)) {
1812 return true;
1813 }
1814
1815 z_mask_old = z_mask = arg_info(op->args[1])->z_mask;
1816
1817 switch (op->opc) {
1818 CASE_OP_32_64(ext8u):
1819 z_mask = (uint8_t)z_mask;
1820 break;
1821 CASE_OP_32_64(ext16u):
1822 z_mask = (uint16_t)z_mask;
1823 break;
1824 case INDEX_op_extrl_i64_i32:
1825 case INDEX_op_extu_i32_i64:
1826 type_change = true;
1827 QEMU_FALLTHROUGH;
1828 case INDEX_op_ext32u_i64:
1829 z_mask = (uint32_t)z_mask;
1830 break;
1831 case INDEX_op_extrh_i64_i32:
1832 type_change = true;
1833 z_mask >>= 32;
1834 break;
1835 default:
1836 g_assert_not_reached();
1837 }
1838
1839 ctx->z_mask = z_mask;
Richard Henderson045ace32024-12-19 10:33:51 -08001840 if (!type_change && fold_affected_mask(ctx, op, z_mask_old ^ z_mask)) {
1841 return true;
Richard Hendersonfae450b2021-08-25 22:42:19 -07001842 }
1843 return fold_masks(ctx, op);
Richard Henderson2f9f08b2021-08-25 12:03:48 -07001844}
1845
Richard Henderson3eefdf22021-08-25 11:06:43 -07001846static bool fold_mb(OptContext *ctx, TCGOp *op)
1847{
1848 /* Eliminate duplicate and redundant fence instructions. */
1849 if (ctx->prev_mb) {
1850 /*
1851 * Merge two barriers of the same type into one,
1852 * or a weaker barrier into a stronger one,
1853 * or two weaker barriers into a stronger one.
1854 * mb X; mb Y => mb X|Y
1855 * mb; strl => mb; st
1856 * ldaq; mb => ld; mb
1857 * ldaq; strl => ld; mb; st
1858 * Other combinations are also merged into a strong
1859 * barrier. This is stricter than specified but for
1860 * the purposes of TCG is better than not optimizing.
1861 */
1862 ctx->prev_mb->args[0] |= op->args[0];
1863 tcg_op_remove(ctx->tcg, op);
1864 } else {
1865 ctx->prev_mb = op;
1866 }
1867 return true;
1868}
1869
Richard Henderson2cfac7f2021-08-25 13:05:43 -07001870static bool fold_mov(OptContext *ctx, TCGOp *op)
1871{
1872 return tcg_opt_gen_mov(ctx, op, op->args[0], op->args[1]);
1873}
1874
Richard Henderson0c310a32021-08-24 10:37:24 -07001875static bool fold_movcond(OptContext *ctx, TCGOp *op)
1876{
Richard Henderson7a2f7082021-08-26 07:06:39 -07001877 int i;
Richard Henderson0c310a32021-08-24 10:37:24 -07001878
Richard Henderson141125e2024-09-06 21:00:10 -07001879 /* If true and false values are the same, eliminate the cmp. */
1880 if (args_are_copies(op->args[3], op->args[4])) {
1881 return tcg_opt_gen_mov(ctx, op, op->args[0], op->args[3]);
1882 }
1883
Richard Henderson7a2f7082021-08-26 07:06:39 -07001884 /*
1885 * Canonicalize the "false" input reg to match the destination reg so
1886 * that the tcg backend can implement a "move if true" operation.
1887 */
1888 if (swap_commutative(op->args[0], &op->args[4], &op->args[3])) {
Richard Henderson246c4b72023-10-24 16:36:50 -07001889 op->args[5] = tcg_invert_cond(op->args[5]);
Richard Henderson7a2f7082021-08-26 07:06:39 -07001890 }
1891
Richard Hendersonfb04ab72024-01-10 18:21:58 +11001892 i = do_constant_folding_cond1(ctx, op, NO_DEST, &op->args[1],
Richard Henderson246c4b72023-10-24 16:36:50 -07001893 &op->args[2], &op->args[5]);
Richard Henderson0c310a32021-08-24 10:37:24 -07001894 if (i >= 0) {
1895 return tcg_opt_gen_mov(ctx, op, op->args[0], op->args[4 - i]);
1896 }
1897
Richard Hendersonfae450b2021-08-25 22:42:19 -07001898 ctx->z_mask = arg_info(op->args[3])->z_mask
1899 | arg_info(op->args[4])->z_mask;
Richard Henderson3f2b1f82021-08-26 13:08:54 -07001900 ctx->s_mask = arg_info(op->args[3])->s_mask
1901 & arg_info(op->args[4])->s_mask;
Richard Hendersonfae450b2021-08-25 22:42:19 -07001902
Richard Henderson0c310a32021-08-24 10:37:24 -07001903 if (arg_is_const(op->args[3]) && arg_is_const(op->args[4])) {
1904 uint64_t tv = arg_info(op->args[3])->val;
1905 uint64_t fv = arg_info(op->args[4])->val;
Richard Henderson36355022023-08-04 23:24:04 +00001906 TCGOpcode opc, negopc = 0;
Richard Henderson246c4b72023-10-24 16:36:50 -07001907 TCGCond cond = op->args[5];
Richard Henderson0c310a32021-08-24 10:37:24 -07001908
Richard Henderson67f84c92021-08-25 08:00:20 -07001909 switch (ctx->type) {
1910 case TCG_TYPE_I32:
1911 opc = INDEX_op_setcond_i32;
Richard Henderson36355022023-08-04 23:24:04 +00001912 if (TCG_TARGET_HAS_negsetcond_i32) {
1913 negopc = INDEX_op_negsetcond_i32;
1914 }
1915 tv = (int32_t)tv;
1916 fv = (int32_t)fv;
Richard Henderson67f84c92021-08-25 08:00:20 -07001917 break;
1918 case TCG_TYPE_I64:
1919 opc = INDEX_op_setcond_i64;
Richard Henderson36355022023-08-04 23:24:04 +00001920 if (TCG_TARGET_HAS_negsetcond_i64) {
1921 negopc = INDEX_op_negsetcond_i64;
1922 }
Richard Henderson67f84c92021-08-25 08:00:20 -07001923 break;
1924 default:
1925 g_assert_not_reached();
1926 }
Richard Henderson0c310a32021-08-24 10:37:24 -07001927
1928 if (tv == 1 && fv == 0) {
1929 op->opc = opc;
1930 op->args[3] = cond;
1931 } else if (fv == 1 && tv == 0) {
1932 op->opc = opc;
1933 op->args[3] = tcg_invert_cond(cond);
Richard Henderson36355022023-08-04 23:24:04 +00001934 } else if (negopc) {
1935 if (tv == -1 && fv == 0) {
1936 op->opc = negopc;
1937 op->args[3] = cond;
1938 } else if (fv == -1 && tv == 0) {
1939 op->opc = negopc;
1940 op->args[3] = tcg_invert_cond(cond);
1941 }
Richard Henderson0c310a32021-08-24 10:37:24 -07001942 }
1943 }
1944 return false;
1945}
1946
Richard Henderson2f9f08b2021-08-25 12:03:48 -07001947static bool fold_mul(OptContext *ctx, TCGOp *op)
1948{
Richard Hendersone8679952021-08-25 13:19:52 -07001949 if (fold_const2(ctx, op) ||
Richard Henderson5b5cf472021-10-25 11:19:14 -07001950 fold_xi_to_i(ctx, op, 0) ||
1951 fold_xi_to_x(ctx, op, 1)) {
Richard Hendersone8679952021-08-25 13:19:52 -07001952 return true;
1953 }
1954 return false;
Richard Henderson2f9f08b2021-08-25 12:03:48 -07001955}
1956
1957static bool fold_mul_highpart(OptContext *ctx, TCGOp *op)
1958{
Richard Henderson7a2f7082021-08-26 07:06:39 -07001959 if (fold_const2_commutative(ctx, op) ||
Richard Hendersone8679952021-08-25 13:19:52 -07001960 fold_xi_to_i(ctx, op, 0)) {
1961 return true;
1962 }
1963 return false;
Richard Henderson2f9f08b2021-08-25 12:03:48 -07001964}
1965
Richard Henderson407112b2021-08-26 06:33:04 -07001966static bool fold_multiply2(OptContext *ctx, TCGOp *op)
Richard Henderson6b8ac0d2021-08-24 10:24:12 -07001967{
Richard Henderson7a2f7082021-08-26 07:06:39 -07001968 swap_commutative(op->args[0], &op->args[2], &op->args[3]);
1969
Richard Henderson6b8ac0d2021-08-24 10:24:12 -07001970 if (arg_is_const(op->args[2]) && arg_is_const(op->args[3])) {
Richard Henderson407112b2021-08-26 06:33:04 -07001971 uint64_t a = arg_info(op->args[2])->val;
1972 uint64_t b = arg_info(op->args[3])->val;
1973 uint64_t h, l;
Richard Henderson6b8ac0d2021-08-24 10:24:12 -07001974 TCGArg rl, rh;
Richard Henderson407112b2021-08-26 06:33:04 -07001975 TCGOp *op2;
1976
1977 switch (op->opc) {
1978 case INDEX_op_mulu2_i32:
1979 l = (uint64_t)(uint32_t)a * (uint32_t)b;
1980 h = (int32_t)(l >> 32);
1981 l = (int32_t)l;
1982 break;
1983 case INDEX_op_muls2_i32:
1984 l = (int64_t)(int32_t)a * (int32_t)b;
1985 h = l >> 32;
1986 l = (int32_t)l;
1987 break;
1988 case INDEX_op_mulu2_i64:
1989 mulu64(&l, &h, a, b);
1990 break;
1991 case INDEX_op_muls2_i64:
1992 muls64(&l, &h, a, b);
1993 break;
1994 default:
1995 g_assert_not_reached();
1996 }
Richard Henderson6b8ac0d2021-08-24 10:24:12 -07001997
1998 rl = op->args[0];
1999 rh = op->args[1];
Richard Henderson407112b2021-08-26 06:33:04 -07002000
2001 /* The proper opcode is supplied by tcg_opt_gen_mov. */
Philippe Mathieu-Daudéd4478942022-12-18 22:18:31 +01002002 op2 = tcg_op_insert_before(ctx->tcg, op, 0, 2);
Richard Henderson407112b2021-08-26 06:33:04 -07002003
2004 tcg_opt_gen_movi(ctx, op, rl, l);
2005 tcg_opt_gen_movi(ctx, op2, rh, h);
Richard Henderson6b8ac0d2021-08-24 10:24:12 -07002006 return true;
2007 }
2008 return false;
2009}
2010
Richard Henderson2f9f08b2021-08-25 12:03:48 -07002011static bool fold_nand(OptContext *ctx, TCGOp *op)
2012{
Richard Henderson7a2f7082021-08-26 07:06:39 -07002013 if (fold_const2_commutative(ctx, op) ||
Richard Henderson0e0a32b2021-08-24 13:18:01 -07002014 fold_xi_to_not(ctx, op, -1)) {
2015 return true;
2016 }
Richard Henderson3f2b1f82021-08-26 13:08:54 -07002017
2018 ctx->s_mask = arg_info(op->args[1])->s_mask
2019 & arg_info(op->args[2])->s_mask;
Richard Henderson0e0a32b2021-08-24 13:18:01 -07002020 return false;
Richard Henderson2f9f08b2021-08-25 12:03:48 -07002021}
2022
Richard Hendersone25fe882024-04-04 20:53:50 +00002023static bool fold_neg_no_const(OptContext *ctx, TCGOp *op)
Richard Henderson2f9f08b2021-08-25 12:03:48 -07002024{
Richard Hendersonfae450b2021-08-25 22:42:19 -07002025 /* Set to 1 all bits to the left of the rightmost. */
Richard Hendersone25fe882024-04-04 20:53:50 +00002026 uint64_t z_mask = arg_info(op->args[1])->z_mask;
Richard Hendersonfae450b2021-08-25 22:42:19 -07002027 ctx->z_mask = -(z_mask & -z_mask);
2028
Richard Henderson9caca882021-08-24 13:30:32 -07002029 /*
2030 * Because of fold_sub_to_neg, we want to always return true,
2031 * via finish_folding.
2032 */
2033 finish_folding(ctx, op);
2034 return true;
Richard Henderson2f9f08b2021-08-25 12:03:48 -07002035}
2036
Richard Hendersone25fe882024-04-04 20:53:50 +00002037static bool fold_neg(OptContext *ctx, TCGOp *op)
2038{
2039 return fold_const1(ctx, op) || fold_neg_no_const(ctx, op);
2040}
2041
Richard Henderson2f9f08b2021-08-25 12:03:48 -07002042static bool fold_nor(OptContext *ctx, TCGOp *op)
2043{
Richard Henderson7a2f7082021-08-26 07:06:39 -07002044 if (fold_const2_commutative(ctx, op) ||
Richard Henderson0e0a32b2021-08-24 13:18:01 -07002045 fold_xi_to_not(ctx, op, 0)) {
2046 return true;
2047 }
Richard Henderson3f2b1f82021-08-26 13:08:54 -07002048
2049 ctx->s_mask = arg_info(op->args[1])->s_mask
2050 & arg_info(op->args[2])->s_mask;
Richard Henderson0e0a32b2021-08-24 13:18:01 -07002051 return false;
Richard Henderson2f9f08b2021-08-25 12:03:48 -07002052}
2053
2054static bool fold_not(OptContext *ctx, TCGOp *op)
2055{
Richard Henderson0e0a32b2021-08-24 13:18:01 -07002056 if (fold_const1(ctx, op)) {
2057 return true;
2058 }
2059
Richard Henderson3f2b1f82021-08-26 13:08:54 -07002060 ctx->s_mask = arg_info(op->args[1])->s_mask;
2061
Richard Henderson0e0a32b2021-08-24 13:18:01 -07002062 /* Because of fold_to_not, we want to always return true, via finish. */
2063 finish_folding(ctx, op);
2064 return true;
Richard Henderson2f9f08b2021-08-25 12:03:48 -07002065}
2066
2067static bool fold_or(OptContext *ctx, TCGOp *op)
2068{
Richard Henderson7a2f7082021-08-26 07:06:39 -07002069 if (fold_const2_commutative(ctx, op) ||
Richard Hendersona63ce0e2021-08-25 20:28:53 -07002070 fold_xi_to_x(ctx, op, 0) ||
Richard Hendersonca7bb042021-08-25 13:14:21 -07002071 fold_xx_to_x(ctx, op)) {
2072 return true;
2073 }
Richard Hendersonfae450b2021-08-25 22:42:19 -07002074
2075 ctx->z_mask = arg_info(op->args[1])->z_mask
2076 | arg_info(op->args[2])->z_mask;
Richard Henderson3f2b1f82021-08-26 13:08:54 -07002077 ctx->s_mask = arg_info(op->args[1])->s_mask
2078 & arg_info(op->args[2])->s_mask;
Richard Hendersonfae450b2021-08-25 22:42:19 -07002079 return fold_masks(ctx, op);
Richard Henderson2f9f08b2021-08-25 12:03:48 -07002080}
2081
2082static bool fold_orc(OptContext *ctx, TCGOp *op)
2083{
Richard Henderson0e0a32b2021-08-24 13:18:01 -07002084 if (fold_const2(ctx, op) ||
Richard Henderson4e858d92021-08-26 07:31:13 -07002085 fold_xx_to_i(ctx, op, -1) ||
Richard Hendersona63ce0e2021-08-25 20:28:53 -07002086 fold_xi_to_x(ctx, op, -1) ||
Richard Henderson0e0a32b2021-08-24 13:18:01 -07002087 fold_ix_to_not(ctx, op, 0)) {
2088 return true;
2089 }
Richard Henderson3f2b1f82021-08-26 13:08:54 -07002090
2091 ctx->s_mask = arg_info(op->args[1])->s_mask
2092 & arg_info(op->args[2])->s_mask;
Richard Henderson0e0a32b2021-08-24 13:18:01 -07002093 return false;
Richard Henderson2f9f08b2021-08-25 12:03:48 -07002094}
2095
Richard Henderson3eefdf22021-08-25 11:06:43 -07002096static bool fold_qemu_ld(OptContext *ctx, TCGOp *op)
2097{
Richard Hendersonfae450b2021-08-25 22:42:19 -07002098 const TCGOpDef *def = &tcg_op_defs[op->opc];
2099 MemOpIdx oi = op->args[def->nb_oargs + def->nb_iargs];
2100 MemOp mop = get_memop(oi);
2101 int width = 8 * memop_size(mop);
2102
Richard Henderson57fe5c62021-08-26 12:04:46 -07002103 if (width < 64) {
Richard Henderson75c3bf32024-12-19 10:50:40 -08002104 if (mop & MO_SIGN) {
2105 ctx->s_mask = MAKE_64BIT_MASK(width, 64 - width);
2106 } else {
Richard Henderson57fe5c62021-08-26 12:04:46 -07002107 ctx->z_mask = MAKE_64BIT_MASK(0, width);
Richard Henderson57fe5c62021-08-26 12:04:46 -07002108 }
Richard Hendersonfae450b2021-08-25 22:42:19 -07002109 }
2110
Richard Henderson3eefdf22021-08-25 11:06:43 -07002111 /* Opcodes that touch guest memory stop the mb optimization. */
2112 ctx->prev_mb = NULL;
2113 return false;
2114}
2115
2116static bool fold_qemu_st(OptContext *ctx, TCGOp *op)
2117{
2118 /* Opcodes that touch guest memory stop the mb optimization. */
2119 ctx->prev_mb = NULL;
2120 return false;
2121}
2122
Richard Henderson2f9f08b2021-08-25 12:03:48 -07002123static bool fold_remainder(OptContext *ctx, TCGOp *op)
2124{
Richard Henderson267c17e2021-10-25 11:30:33 -07002125 if (fold_const2(ctx, op) ||
2126 fold_xx_to_i(ctx, op, 0)) {
2127 return true;
2128 }
2129 return false;
Richard Henderson2f9f08b2021-08-25 12:03:48 -07002130}
2131
Richard Henderson8d65cda2024-03-26 16:00:40 -10002132static bool fold_setcond_zmask(OptContext *ctx, TCGOp *op, bool neg)
2133{
2134 uint64_t a_zmask, b_val;
2135 TCGCond cond;
2136
2137 if (!arg_is_const(op->args[2])) {
2138 return false;
2139 }
2140
2141 a_zmask = arg_info(op->args[1])->z_mask;
2142 b_val = arg_info(op->args[2])->val;
2143 cond = op->args[3];
2144
2145 if (ctx->type == TCG_TYPE_I32) {
2146 a_zmask = (uint32_t)a_zmask;
2147 b_val = (uint32_t)b_val;
2148 }
2149
2150 /*
2151 * A with only low bits set vs B with high bits set means that A < B.
2152 */
2153 if (a_zmask < b_val) {
2154 bool inv = false;
2155
2156 switch (cond) {
2157 case TCG_COND_NE:
2158 case TCG_COND_LEU:
2159 case TCG_COND_LTU:
2160 inv = true;
2161 /* fall through */
2162 case TCG_COND_GTU:
2163 case TCG_COND_GEU:
2164 case TCG_COND_EQ:
2165 return tcg_opt_gen_movi(ctx, op, op->args[0], neg ? -inv : inv);
2166 default:
2167 break;
2168 }
2169 }
2170
2171 /*
2172 * A with only lsb set is already boolean.
2173 */
2174 if (a_zmask <= 1) {
2175 bool convert = false;
2176 bool inv = false;
2177
2178 switch (cond) {
2179 case TCG_COND_EQ:
2180 inv = true;
2181 /* fall through */
2182 case TCG_COND_NE:
2183 convert = (b_val == 0);
2184 break;
2185 case TCG_COND_LTU:
2186 case TCG_COND_TSTEQ:
2187 inv = true;
2188 /* fall through */
2189 case TCG_COND_GEU:
2190 case TCG_COND_TSTNE:
2191 convert = (b_val == 1);
2192 break;
2193 default:
2194 break;
2195 }
2196 if (convert) {
2197 TCGOpcode add_opc, xor_opc, neg_opc;
2198
2199 if (!inv && !neg) {
2200 return tcg_opt_gen_mov(ctx, op, op->args[0], op->args[1]);
2201 }
2202
2203 switch (ctx->type) {
2204 case TCG_TYPE_I32:
2205 add_opc = INDEX_op_add_i32;
2206 neg_opc = INDEX_op_neg_i32;
2207 xor_opc = INDEX_op_xor_i32;
2208 break;
2209 case TCG_TYPE_I64:
2210 add_opc = INDEX_op_add_i64;
2211 neg_opc = INDEX_op_neg_i64;
2212 xor_opc = INDEX_op_xor_i64;
2213 break;
2214 default:
2215 g_assert_not_reached();
2216 }
2217
2218 if (!inv) {
2219 op->opc = neg_opc;
2220 } else if (neg) {
2221 op->opc = add_opc;
2222 op->args[2] = arg_new_constant(ctx, -1);
2223 } else {
2224 op->opc = xor_opc;
2225 op->args[2] = arg_new_constant(ctx, 1);
2226 }
2227 return false;
2228 }
2229 }
2230
2231 return false;
2232}
2233
Richard Hendersonceb9ee02023-10-23 23:44:27 -07002234static void fold_setcond_tst_pow2(OptContext *ctx, TCGOp *op, bool neg)
2235{
Paolo Bonziniff202812024-02-28 12:06:41 +01002236 TCGOpcode and_opc, sub_opc, xor_opc, neg_opc, shr_opc;
2237 TCGOpcode uext_opc = 0, sext_opc = 0;
Richard Hendersonceb9ee02023-10-23 23:44:27 -07002238 TCGCond cond = op->args[3];
2239 TCGArg ret, src1, src2;
2240 TCGOp *op2;
2241 uint64_t val;
2242 int sh;
2243 bool inv;
2244
2245 if (!is_tst_cond(cond) || !arg_is_const(op->args[2])) {
2246 return;
2247 }
2248
2249 src2 = op->args[2];
2250 val = arg_info(src2)->val;
2251 if (!is_power_of_2(val)) {
2252 return;
2253 }
2254 sh = ctz64(val);
2255
2256 switch (ctx->type) {
2257 case TCG_TYPE_I32:
2258 and_opc = INDEX_op_and_i32;
2259 sub_opc = INDEX_op_sub_i32;
2260 xor_opc = INDEX_op_xor_i32;
2261 shr_opc = INDEX_op_shr_i32;
2262 neg_opc = INDEX_op_neg_i32;
2263 if (TCG_TARGET_extract_i32_valid(sh, 1)) {
2264 uext_opc = TCG_TARGET_HAS_extract_i32 ? INDEX_op_extract_i32 : 0;
2265 sext_opc = TCG_TARGET_HAS_sextract_i32 ? INDEX_op_sextract_i32 : 0;
2266 }
2267 break;
2268 case TCG_TYPE_I64:
2269 and_opc = INDEX_op_and_i64;
2270 sub_opc = INDEX_op_sub_i64;
2271 xor_opc = INDEX_op_xor_i64;
2272 shr_opc = INDEX_op_shr_i64;
2273 neg_opc = INDEX_op_neg_i64;
2274 if (TCG_TARGET_extract_i64_valid(sh, 1)) {
2275 uext_opc = TCG_TARGET_HAS_extract_i64 ? INDEX_op_extract_i64 : 0;
2276 sext_opc = TCG_TARGET_HAS_sextract_i64 ? INDEX_op_sextract_i64 : 0;
2277 }
2278 break;
2279 default:
2280 g_assert_not_reached();
2281 }
2282
2283 ret = op->args[0];
2284 src1 = op->args[1];
2285 inv = cond == TCG_COND_TSTEQ;
2286
2287 if (sh && sext_opc && neg && !inv) {
2288 op->opc = sext_opc;
2289 op->args[1] = src1;
2290 op->args[2] = sh;
2291 op->args[3] = 1;
2292 return;
2293 } else if (sh && uext_opc) {
2294 op->opc = uext_opc;
2295 op->args[1] = src1;
2296 op->args[2] = sh;
2297 op->args[3] = 1;
2298 } else {
2299 if (sh) {
2300 op2 = tcg_op_insert_before(ctx->tcg, op, shr_opc, 3);
2301 op2->args[0] = ret;
2302 op2->args[1] = src1;
2303 op2->args[2] = arg_new_constant(ctx, sh);
2304 src1 = ret;
2305 }
2306 op->opc = and_opc;
2307 op->args[1] = src1;
2308 op->args[2] = arg_new_constant(ctx, 1);
2309 }
2310
2311 if (neg && inv) {
2312 op2 = tcg_op_insert_after(ctx->tcg, op, sub_opc, 3);
2313 op2->args[0] = ret;
2314 op2->args[1] = ret;
2315 op2->args[2] = arg_new_constant(ctx, 1);
2316 } else if (inv) {
2317 op2 = tcg_op_insert_after(ctx->tcg, op, xor_opc, 3);
2318 op2->args[0] = ret;
2319 op2->args[1] = ret;
2320 op2->args[2] = arg_new_constant(ctx, 1);
2321 } else if (neg) {
2322 op2 = tcg_op_insert_after(ctx->tcg, op, neg_opc, 2);
2323 op2->args[0] = ret;
2324 op2->args[1] = ret;
2325 }
2326}
2327
Richard Hendersonc63ff552021-08-24 09:35:30 -07002328static bool fold_setcond(OptContext *ctx, TCGOp *op)
2329{
Richard Hendersonfb04ab72024-01-10 18:21:58 +11002330 int i = do_constant_folding_cond1(ctx, op, op->args[0], &op->args[1],
Richard Henderson246c4b72023-10-24 16:36:50 -07002331 &op->args[2], &op->args[3]);
Richard Hendersonc63ff552021-08-24 09:35:30 -07002332 if (i >= 0) {
2333 return tcg_opt_gen_movi(ctx, op, op->args[0], i);
2334 }
Richard Henderson8d65cda2024-03-26 16:00:40 -10002335
2336 if (fold_setcond_zmask(ctx, op, false)) {
2337 return true;
2338 }
Richard Hendersonceb9ee02023-10-23 23:44:27 -07002339 fold_setcond_tst_pow2(ctx, op, false);
Richard Hendersonfae450b2021-08-25 22:42:19 -07002340
2341 ctx->z_mask = 1;
Richard Hendersonc63ff552021-08-24 09:35:30 -07002342 return false;
2343}
2344
Richard Henderson36355022023-08-04 23:24:04 +00002345static bool fold_negsetcond(OptContext *ctx, TCGOp *op)
2346{
Richard Hendersonfb04ab72024-01-10 18:21:58 +11002347 int i = do_constant_folding_cond1(ctx, op, op->args[0], &op->args[1],
Richard Henderson246c4b72023-10-24 16:36:50 -07002348 &op->args[2], &op->args[3]);
Richard Henderson36355022023-08-04 23:24:04 +00002349 if (i >= 0) {
2350 return tcg_opt_gen_movi(ctx, op, op->args[0], -i);
2351 }
Richard Henderson8d65cda2024-03-26 16:00:40 -10002352
2353 if (fold_setcond_zmask(ctx, op, true)) {
2354 return true;
2355 }
Richard Hendersonceb9ee02023-10-23 23:44:27 -07002356 fold_setcond_tst_pow2(ctx, op, true);
Richard Henderson36355022023-08-04 23:24:04 +00002357
2358 /* Value is {0,-1} so all bits are repetitions of the sign. */
2359 ctx->s_mask = -1;
2360 return false;
2361}
2362
Richard Hendersonbc47b1a2021-08-24 09:09:35 -07002363static bool fold_setcond2(OptContext *ctx, TCGOp *op)
2364{
Richard Henderson7e64b112023-10-24 16:53:56 -07002365 TCGCond cond;
Richard Henderson7a2f7082021-08-26 07:06:39 -07002366 int i, inv = 0;
Richard Hendersonbc47b1a2021-08-24 09:09:35 -07002367
Richard Hendersonfb04ab72024-01-10 18:21:58 +11002368 i = do_constant_folding_cond2(ctx, op, &op->args[1]);
Richard Henderson7e64b112023-10-24 16:53:56 -07002369 cond = op->args[5];
Richard Hendersonbc47b1a2021-08-24 09:09:35 -07002370 if (i >= 0) {
2371 goto do_setcond_const;
2372 }
2373
2374 switch (cond) {
2375 case TCG_COND_LT:
2376 case TCG_COND_GE:
2377 /*
2378 * Simplify LT/GE comparisons vs zero to a single compare
2379 * vs the high word of the input.
2380 */
Richard Henderson27cdb852023-10-23 11:38:00 -07002381 if (arg_is_const_val(op->args[3], 0) &&
2382 arg_is_const_val(op->args[4], 0)) {
Richard Hendersonbc47b1a2021-08-24 09:09:35 -07002383 goto do_setcond_high;
2384 }
2385 break;
2386
2387 case TCG_COND_NE:
2388 inv = 1;
2389 QEMU_FALLTHROUGH;
2390 case TCG_COND_EQ:
2391 /*
2392 * Simplify EQ/NE comparisons where one of the pairs
2393 * can be simplified.
2394 */
Richard Henderson67f84c92021-08-25 08:00:20 -07002395 i = do_constant_folding_cond(TCG_TYPE_I32, op->args[1],
Richard Hendersonbc47b1a2021-08-24 09:09:35 -07002396 op->args[3], cond);
2397 switch (i ^ inv) {
2398 case 0:
2399 goto do_setcond_const;
2400 case 1:
2401 goto do_setcond_high;
2402 }
2403
Richard Henderson67f84c92021-08-25 08:00:20 -07002404 i = do_constant_folding_cond(TCG_TYPE_I32, op->args[2],
Richard Hendersonbc47b1a2021-08-24 09:09:35 -07002405 op->args[4], cond);
2406 switch (i ^ inv) {
2407 case 0:
2408 goto do_setcond_const;
2409 case 1:
Richard Hendersonceb9ee02023-10-23 23:44:27 -07002410 goto do_setcond_low;
2411 }
2412 break;
2413
2414 case TCG_COND_TSTEQ:
2415 case TCG_COND_TSTNE:
Richard Hendersona71d9df2024-06-30 19:46:23 -07002416 if (arg_is_const_val(op->args[3], 0)) {
Richard Hendersonceb9ee02023-10-23 23:44:27 -07002417 goto do_setcond_high;
2418 }
2419 if (arg_is_const_val(op->args[4], 0)) {
2420 goto do_setcond_low;
Richard Hendersonbc47b1a2021-08-24 09:09:35 -07002421 }
2422 break;
2423
2424 default:
2425 break;
2426
Richard Hendersonceb9ee02023-10-23 23:44:27 -07002427 do_setcond_low:
2428 op->args[2] = op->args[3];
2429 op->args[3] = cond;
2430 op->opc = INDEX_op_setcond_i32;
2431 return fold_setcond(ctx, op);
2432
Richard Hendersonbc47b1a2021-08-24 09:09:35 -07002433 do_setcond_high:
2434 op->args[1] = op->args[2];
2435 op->args[2] = op->args[4];
2436 op->args[3] = cond;
2437 op->opc = INDEX_op_setcond_i32;
Richard Hendersonceb9ee02023-10-23 23:44:27 -07002438 return fold_setcond(ctx, op);
Richard Hendersonbc47b1a2021-08-24 09:09:35 -07002439 }
Richard Hendersonfae450b2021-08-25 22:42:19 -07002440
2441 ctx->z_mask = 1;
Richard Hendersonbc47b1a2021-08-24 09:09:35 -07002442 return false;
2443
2444 do_setcond_const:
2445 return tcg_opt_gen_movi(ctx, op, op->args[0], i);
2446}
2447
Richard Henderson1f106542024-09-06 12:22:41 -07002448static bool fold_cmp_vec(OptContext *ctx, TCGOp *op)
2449{
2450 /* Canonicalize the comparison to put immediate second. */
2451 if (swap_commutative(NO_DEST, &op->args[1], &op->args[2])) {
2452 op->args[3] = tcg_swap_cond(op->args[3]);
2453 }
2454 return false;
2455}
2456
2457static bool fold_cmpsel_vec(OptContext *ctx, TCGOp *op)
2458{
2459 /* If true and false values are the same, eliminate the cmp. */
2460 if (args_are_copies(op->args[3], op->args[4])) {
2461 return tcg_opt_gen_mov(ctx, op, op->args[0], op->args[3]);
2462 }
2463
2464 /* Canonicalize the comparison to put immediate second. */
2465 if (swap_commutative(NO_DEST, &op->args[1], &op->args[2])) {
2466 op->args[5] = tcg_swap_cond(op->args[5]);
2467 }
2468 /*
2469 * Canonicalize the "false" input reg to match the destination,
2470 * so that the tcg backend can implement "move if true".
2471 */
2472 if (swap_commutative(op->args[0], &op->args[4], &op->args[3])) {
2473 op->args[5] = tcg_invert_cond(op->args[5]);
2474 }
2475 return false;
2476}
2477
Richard Hendersonb6617c82021-08-24 10:44:53 -07002478static bool fold_sextract(OptContext *ctx, TCGOp *op)
2479{
Richard Henderson57fe5c62021-08-26 12:04:46 -07002480 uint64_t z_mask, s_mask, s_mask_old;
2481 int pos = op->args[2];
2482 int len = op->args[3];
Richard Hendersonfae450b2021-08-25 22:42:19 -07002483
Richard Hendersonb6617c82021-08-24 10:44:53 -07002484 if (arg_is_const(op->args[1])) {
2485 uint64_t t;
2486
2487 t = arg_info(op->args[1])->val;
Richard Henderson57fe5c62021-08-26 12:04:46 -07002488 t = sextract64(t, pos, len);
Richard Hendersonb6617c82021-08-24 10:44:53 -07002489 return tcg_opt_gen_movi(ctx, op, op->args[0], t);
2490 }
Richard Hendersonfae450b2021-08-25 22:42:19 -07002491
Richard Henderson57fe5c62021-08-26 12:04:46 -07002492 z_mask = arg_info(op->args[1])->z_mask;
2493 z_mask = sextract64(z_mask, pos, len);
Richard Hendersonfae450b2021-08-25 22:42:19 -07002494 ctx->z_mask = z_mask;
2495
Richard Henderson57fe5c62021-08-26 12:04:46 -07002496 s_mask_old = arg_info(op->args[1])->s_mask;
2497 s_mask = sextract64(s_mask_old, pos, len);
2498 s_mask |= MAKE_64BIT_MASK(len, 64 - len);
2499 ctx->s_mask = s_mask;
2500
Richard Henderson6d70ddc2024-12-21 21:08:10 -08002501 if (0 && pos == 0 && fold_affected_mask(ctx, op, s_mask & ~s_mask_old)) {
Richard Henderson045ace32024-12-19 10:33:51 -08002502 return true;
Richard Henderson57fe5c62021-08-26 12:04:46 -07002503 }
2504
Richard Hendersonfae450b2021-08-25 22:42:19 -07002505 return fold_masks(ctx, op);
Richard Hendersonb6617c82021-08-24 10:44:53 -07002506}
2507
Richard Henderson2f9f08b2021-08-25 12:03:48 -07002508static bool fold_shift(OptContext *ctx, TCGOp *op)
2509{
Richard Henderson93a967f2021-08-26 13:24:59 -07002510 uint64_t s_mask, z_mask, sign;
2511
Richard Hendersona63ce0e2021-08-25 20:28:53 -07002512 if (fold_const2(ctx, op) ||
Richard Hendersonda48e272021-08-25 20:42:04 -07002513 fold_ix_to_i(ctx, op, 0) ||
Richard Hendersona63ce0e2021-08-25 20:28:53 -07002514 fold_xi_to_x(ctx, op, 0)) {
2515 return true;
2516 }
Richard Hendersonfae450b2021-08-25 22:42:19 -07002517
Richard Henderson93a967f2021-08-26 13:24:59 -07002518 s_mask = arg_info(op->args[1])->s_mask;
2519 z_mask = arg_info(op->args[1])->z_mask;
2520
Richard Hendersonfae450b2021-08-25 22:42:19 -07002521 if (arg_is_const(op->args[2])) {
Richard Henderson93a967f2021-08-26 13:24:59 -07002522 int sh = arg_info(op->args[2])->val;
2523
2524 ctx->z_mask = do_constant_folding(op->opc, ctx->type, z_mask, sh);
2525
2526 s_mask = do_constant_folding(op->opc, ctx->type, s_mask, sh);
Richard Henderson93a967f2021-08-26 13:24:59 -07002527
Richard Hendersonfae450b2021-08-25 22:42:19 -07002528 return fold_masks(ctx, op);
2529 }
Richard Henderson93a967f2021-08-26 13:24:59 -07002530
2531 switch (op->opc) {
2532 CASE_OP_32_64(sar):
2533 /*
2534 * Arithmetic right shift will not reduce the number of
2535 * input sign repetitions.
2536 */
2537 ctx->s_mask = s_mask;
2538 break;
2539 CASE_OP_32_64(shr):
2540 /*
2541 * If the sign bit is known zero, then logical right shift
2542 * will not reduced the number of input sign repetitions.
2543 */
2544 sign = (s_mask & -s_mask) >> 1;
Richard Henderson2911e9b2024-03-26 11:21:38 -10002545 if (sign && !(z_mask & sign)) {
Richard Henderson93a967f2021-08-26 13:24:59 -07002546 ctx->s_mask = s_mask;
2547 }
2548 break;
2549 default:
2550 break;
2551 }
2552
Richard Hendersona63ce0e2021-08-25 20:28:53 -07002553 return false;
Richard Henderson2f9f08b2021-08-25 12:03:48 -07002554}
2555
Richard Henderson9caca882021-08-24 13:30:32 -07002556static bool fold_sub_to_neg(OptContext *ctx, TCGOp *op)
2557{
2558 TCGOpcode neg_op;
2559 bool have_neg;
2560
2561 if (!arg_is_const(op->args[1]) || arg_info(op->args[1])->val != 0) {
2562 return false;
2563 }
2564
2565 switch (ctx->type) {
2566 case TCG_TYPE_I32:
2567 neg_op = INDEX_op_neg_i32;
Richard Hendersonb701f192023-10-25 21:14:04 -07002568 have_neg = true;
Richard Henderson9caca882021-08-24 13:30:32 -07002569 break;
2570 case TCG_TYPE_I64:
2571 neg_op = INDEX_op_neg_i64;
Richard Hendersonb701f192023-10-25 21:14:04 -07002572 have_neg = true;
Richard Henderson9caca882021-08-24 13:30:32 -07002573 break;
2574 case TCG_TYPE_V64:
2575 case TCG_TYPE_V128:
2576 case TCG_TYPE_V256:
2577 neg_op = INDEX_op_neg_vec;
2578 have_neg = (TCG_TARGET_HAS_neg_vec &&
2579 tcg_can_emit_vec_op(neg_op, ctx->type, TCGOP_VECE(op)) > 0);
2580 break;
2581 default:
2582 g_assert_not_reached();
2583 }
2584 if (have_neg) {
2585 op->opc = neg_op;
2586 op->args[1] = op->args[2];
Richard Hendersone25fe882024-04-04 20:53:50 +00002587 return fold_neg_no_const(ctx, op);
Richard Henderson9caca882021-08-24 13:30:32 -07002588 }
2589 return false;
2590}
2591
Richard Hendersonc578ff12021-12-16 06:07:25 -08002592/* We cannot as yet do_constant_folding with vectors. */
2593static bool fold_sub_vec(OptContext *ctx, TCGOp *op)
Richard Henderson2f9f08b2021-08-25 12:03:48 -07002594{
Richard Hendersonc578ff12021-12-16 06:07:25 -08002595 if (fold_xx_to_i(ctx, op, 0) ||
Richard Hendersona63ce0e2021-08-25 20:28:53 -07002596 fold_xi_to_x(ctx, op, 0) ||
Richard Henderson9caca882021-08-24 13:30:32 -07002597 fold_sub_to_neg(ctx, op)) {
Richard Hendersoncbe42fb2021-08-25 13:02:00 -07002598 return true;
2599 }
2600 return false;
Richard Henderson2f9f08b2021-08-25 12:03:48 -07002601}
2602
Richard Hendersonc578ff12021-12-16 06:07:25 -08002603static bool fold_sub(OptContext *ctx, TCGOp *op)
2604{
Richard Henderson6334a962023-10-25 18:39:43 -07002605 if (fold_const2(ctx, op) || fold_sub_vec(ctx, op)) {
2606 return true;
2607 }
2608
2609 /* Fold sub r,x,i to add r,x,-i */
2610 if (arg_is_const(op->args[2])) {
2611 uint64_t val = arg_info(op->args[2])->val;
2612
2613 op->opc = (ctx->type == TCG_TYPE_I32
2614 ? INDEX_op_add_i32 : INDEX_op_add_i64);
2615 op->args[2] = arg_new_constant(ctx, -val);
2616 }
2617 return false;
Richard Hendersonc578ff12021-12-16 06:07:25 -08002618}
2619
Richard Henderson9531c072021-08-26 06:51:39 -07002620static bool fold_sub2(OptContext *ctx, TCGOp *op)
Richard Hendersone3f7dc22021-08-24 10:30:38 -07002621{
Richard Henderson9531c072021-08-26 06:51:39 -07002622 return fold_addsub2(ctx, op, false);
Richard Hendersone3f7dc22021-08-24 10:30:38 -07002623}
2624
Richard Hendersonfae450b2021-08-25 22:42:19 -07002625static bool fold_tcg_ld(OptContext *ctx, TCGOp *op)
2626{
2627 /* We can't do any folding with a load, but we can record bits. */
2628 switch (op->opc) {
Richard Henderson57fe5c62021-08-26 12:04:46 -07002629 CASE_OP_32_64(ld8s):
2630 ctx->s_mask = MAKE_64BIT_MASK(8, 56);
2631 break;
Richard Hendersonfae450b2021-08-25 22:42:19 -07002632 CASE_OP_32_64(ld8u):
2633 ctx->z_mask = MAKE_64BIT_MASK(0, 8);
Richard Henderson57fe5c62021-08-26 12:04:46 -07002634 break;
2635 CASE_OP_32_64(ld16s):
2636 ctx->s_mask = MAKE_64BIT_MASK(16, 48);
Richard Hendersonfae450b2021-08-25 22:42:19 -07002637 break;
2638 CASE_OP_32_64(ld16u):
2639 ctx->z_mask = MAKE_64BIT_MASK(0, 16);
Richard Henderson57fe5c62021-08-26 12:04:46 -07002640 break;
2641 case INDEX_op_ld32s_i64:
2642 ctx->s_mask = MAKE_64BIT_MASK(32, 32);
Richard Hendersonfae450b2021-08-25 22:42:19 -07002643 break;
2644 case INDEX_op_ld32u_i64:
2645 ctx->z_mask = MAKE_64BIT_MASK(0, 32);
2646 break;
2647 default:
2648 g_assert_not_reached();
2649 }
2650 return false;
2651}
2652
Richard Hendersonab84dc32023-08-23 23:04:24 -07002653static bool fold_tcg_ld_memcopy(OptContext *ctx, TCGOp *op)
2654{
2655 TCGTemp *dst, *src;
2656 intptr_t ofs;
2657 TCGType type;
2658
2659 if (op->args[1] != tcgv_ptr_arg(tcg_env)) {
2660 return false;
2661 }
2662
2663 type = ctx->type;
2664 ofs = op->args[2];
2665 dst = arg_temp(op->args[0]);
2666 src = find_mem_copy_for(ctx, type, ofs);
2667 if (src && src->base_type == type) {
2668 return tcg_opt_gen_mov(ctx, op, temp_arg(dst), temp_arg(src));
2669 }
2670
2671 reset_ts(ctx, dst);
2672 record_mem_copy(ctx, type, dst, ofs, ofs + tcg_type_size(type) - 1);
2673 return true;
2674}
2675
2676static bool fold_tcg_st(OptContext *ctx, TCGOp *op)
2677{
2678 intptr_t ofs = op->args[2];
2679 intptr_t lm1;
2680
2681 if (op->args[1] != tcgv_ptr_arg(tcg_env)) {
2682 remove_mem_copy_all(ctx);
2683 return false;
2684 }
2685
2686 switch (op->opc) {
2687 CASE_OP_32_64(st8):
2688 lm1 = 0;
2689 break;
2690 CASE_OP_32_64(st16):
2691 lm1 = 1;
2692 break;
2693 case INDEX_op_st32_i64:
2694 case INDEX_op_st_i32:
2695 lm1 = 3;
2696 break;
2697 case INDEX_op_st_i64:
2698 lm1 = 7;
2699 break;
2700 case INDEX_op_st_vec:
2701 lm1 = tcg_type_size(ctx->type) - 1;
2702 break;
2703 default:
2704 g_assert_not_reached();
2705 }
2706 remove_mem_copy_in(ctx, ofs, ofs + lm1);
2707 return false;
2708}
2709
2710static bool fold_tcg_st_memcopy(OptContext *ctx, TCGOp *op)
2711{
2712 TCGTemp *src;
2713 intptr_t ofs, last;
2714 TCGType type;
2715
2716 if (op->args[1] != tcgv_ptr_arg(tcg_env)) {
2717 fold_tcg_st(ctx, op);
2718 return false;
2719 }
2720
2721 src = arg_temp(op->args[0]);
2722 ofs = op->args[2];
2723 type = ctx->type;
Richard Henderson3eaadae2023-08-23 23:13:06 -07002724
2725 /*
2726 * Eliminate duplicate stores of a constant.
2727 * This happens frequently when the target ISA zero-extends.
2728 */
2729 if (ts_is_const(src)) {
2730 TCGTemp *prev = find_mem_copy_for(ctx, type, ofs);
2731 if (src == prev) {
2732 tcg_op_remove(ctx->tcg, op);
2733 return true;
2734 }
2735 }
2736
Richard Hendersonab84dc32023-08-23 23:04:24 -07002737 last = ofs + tcg_type_size(type) - 1;
2738 remove_mem_copy_in(ctx, ofs, last);
2739 record_mem_copy(ctx, type, src, ofs, last);
2740 return false;
2741}
2742
Richard Henderson2f9f08b2021-08-25 12:03:48 -07002743static bool fold_xor(OptContext *ctx, TCGOp *op)
2744{
Richard Henderson7a2f7082021-08-26 07:06:39 -07002745 if (fold_const2_commutative(ctx, op) ||
Richard Henderson0e0a32b2021-08-24 13:18:01 -07002746 fold_xx_to_i(ctx, op, 0) ||
Richard Hendersona63ce0e2021-08-25 20:28:53 -07002747 fold_xi_to_x(ctx, op, 0) ||
Richard Henderson0e0a32b2021-08-24 13:18:01 -07002748 fold_xi_to_not(ctx, op, -1)) {
Richard Hendersoncbe42fb2021-08-25 13:02:00 -07002749 return true;
2750 }
Richard Hendersonfae450b2021-08-25 22:42:19 -07002751
2752 ctx->z_mask = arg_info(op->args[1])->z_mask
2753 | arg_info(op->args[2])->z_mask;
Richard Henderson3f2b1f82021-08-26 13:08:54 -07002754 ctx->s_mask = arg_info(op->args[1])->s_mask
2755 & arg_info(op->args[2])->s_mask;
Richard Hendersonfae450b2021-08-25 22:42:19 -07002756 return fold_masks(ctx, op);
Richard Henderson2f9f08b2021-08-25 12:03:48 -07002757}
2758
Richard Hendersone58b9772024-09-06 22:30:01 -07002759static bool fold_bitsel_vec(OptContext *ctx, TCGOp *op)
2760{
2761 /* If true and false values are the same, eliminate the cmp. */
2762 if (args_are_copies(op->args[2], op->args[3])) {
2763 return tcg_opt_gen_mov(ctx, op, op->args[0], op->args[2]);
2764 }
2765
2766 if (arg_is_const(op->args[2]) && arg_is_const(op->args[3])) {
2767 uint64_t tv = arg_info(op->args[2])->val;
2768 uint64_t fv = arg_info(op->args[3])->val;
2769
2770 if (tv == -1 && fv == 0) {
2771 return tcg_opt_gen_mov(ctx, op, op->args[0], op->args[1]);
2772 }
2773 if (tv == 0 && fv == -1) {
2774 if (TCG_TARGET_HAS_not_vec) {
2775 op->opc = INDEX_op_not_vec;
2776 return fold_not(ctx, op);
2777 } else {
2778 op->opc = INDEX_op_xor_vec;
2779 op->args[2] = arg_new_constant(ctx, -1);
2780 return fold_xor(ctx, op);
2781 }
2782 }
2783 }
2784 if (arg_is_const(op->args[2])) {
2785 uint64_t tv = arg_info(op->args[2])->val;
2786 if (tv == -1) {
2787 op->opc = INDEX_op_or_vec;
2788 op->args[2] = op->args[3];
2789 return fold_or(ctx, op);
2790 }
2791 if (tv == 0 && TCG_TARGET_HAS_andc_vec) {
2792 op->opc = INDEX_op_andc_vec;
2793 op->args[2] = op->args[1];
2794 op->args[1] = op->args[3];
2795 return fold_andc(ctx, op);
2796 }
2797 }
2798 if (arg_is_const(op->args[3])) {
2799 uint64_t fv = arg_info(op->args[3])->val;
2800 if (fv == 0) {
2801 op->opc = INDEX_op_and_vec;
2802 return fold_and(ctx, op);
2803 }
2804 if (fv == -1 && TCG_TARGET_HAS_orc_vec) {
2805 op->opc = INDEX_op_orc_vec;
2806 op->args[2] = op->args[1];
2807 op->args[1] = op->args[3];
2808 return fold_orc(ctx, op);
2809 }
2810 }
2811 return false;
2812}
2813
Kirill Batuzov22613af2011-07-07 16:37:13 +04002814/* Propagate constants and copies, fold constant expressions. */
Aurelien Jarno36e60ef2015-06-04 21:53:27 +02002815void tcg_optimize(TCGContext *s)
Kirill Batuzov8f2e8c02011-07-07 16:37:12 +04002816{
Richard Henderson5cf32be2021-08-24 08:17:08 -07002817 int nb_temps, i;
Richard Hendersond0ed5152021-08-24 07:38:39 -07002818 TCGOp *op, *op_next;
Richard Hendersondc849882021-08-24 07:13:45 -07002819 OptContext ctx = { .tcg = s };
Richard Henderson5d8f5362012-09-21 10:13:38 -07002820
Richard Hendersonab84dc32023-08-23 23:04:24 -07002821 QSIMPLEQ_INIT(&ctx.mem_free);
2822
Kirill Batuzov22613af2011-07-07 16:37:13 +04002823 /* Array VALS has an element for each temp.
2824 If this temp holds a constant then its value is kept in VALS' element.
Aurelien Jarnoe590d4e2012-09-11 12:31:21 +02002825 If this temp is a copy of other ones then the other copies are
2826 available through the doubly linked circular list. */
Kirill Batuzov8f2e8c02011-07-07 16:37:12 +04002827
2828 nb_temps = s->nb_temps;
Richard Henderson8f17a972020-03-30 19:52:02 -07002829 for (i = 0; i < nb_temps; ++i) {
2830 s->temps[i].state_ptr = NULL;
2831 }
Kirill Batuzov8f2e8c02011-07-07 16:37:12 +04002832
Richard Henderson15fa08f2017-11-02 15:19:14 +01002833 QTAILQ_FOREACH_SAFE(op, &s->ops, link, op_next) {
Richard Hendersonc45cb8b2014-09-19 13:49:15 -07002834 TCGOpcode opc = op->opc;
Richard Henderson5cf32be2021-08-24 08:17:08 -07002835 const TCGOpDef *def;
Richard Henderson404a1482021-08-24 11:08:21 -07002836 bool done = false;
Richard Hendersonc45cb8b2014-09-19 13:49:15 -07002837
Richard Henderson5cf32be2021-08-24 08:17:08 -07002838 /* Calls are special. */
Richard Hendersonc45cb8b2014-09-19 13:49:15 -07002839 if (opc == INDEX_op_call) {
Richard Henderson5cf32be2021-08-24 08:17:08 -07002840 fold_call(&ctx, op);
2841 continue;
Richard Hendersoncf066672014-03-22 20:06:52 -07002842 }
Richard Henderson5cf32be2021-08-24 08:17:08 -07002843
2844 def = &tcg_op_defs[opc];
Richard Hendersonec5d4cb2021-08-24 08:20:27 -07002845 init_arguments(&ctx, op, def->nb_oargs + def->nb_iargs);
2846 copy_propagate(&ctx, op, def->nb_oargs, def->nb_iargs);
Kirill Batuzov22613af2011-07-07 16:37:13 +04002847
Richard Henderson67f84c92021-08-25 08:00:20 -07002848 /* Pre-compute the type of the operation. */
2849 if (def->flags & TCG_OPF_VECTOR) {
2850 ctx.type = TCG_TYPE_V64 + TCGOP_VECL(op);
2851 } else if (def->flags & TCG_OPF_64BIT) {
2852 ctx.type = TCG_TYPE_I64;
2853 } else {
2854 ctx.type = TCG_TYPE_I32;
2855 }
2856
Richard Henderson57fe5c62021-08-26 12:04:46 -07002857 /* Assume all bits affected, no bits known zero, no sign reps. */
Richard Hendersonfae450b2021-08-25 22:42:19 -07002858 ctx.z_mask = -1;
Richard Henderson57fe5c62021-08-26 12:04:46 -07002859 ctx.s_mask = 0;
Paolo Bonzini633f6502013-01-11 15:42:53 -08002860
Richard Henderson2cfac7f2021-08-25 13:05:43 -07002861 /*
2862 * Process each opcode.
2863 * Sorted alphabetically by opcode as much as possible.
2864 */
Richard Hendersonc45cb8b2014-09-19 13:49:15 -07002865 switch (opc) {
Richard Hendersonc578ff12021-12-16 06:07:25 -08002866 CASE_OP_32_64(add):
Richard Henderson2f9f08b2021-08-25 12:03:48 -07002867 done = fold_add(&ctx, op);
2868 break;
Richard Hendersonc578ff12021-12-16 06:07:25 -08002869 case INDEX_op_add_vec:
2870 done = fold_add_vec(&ctx, op);
2871 break;
Richard Henderson9531c072021-08-26 06:51:39 -07002872 CASE_OP_32_64(add2):
2873 done = fold_add2(&ctx, op);
Richard Hendersone3f7dc22021-08-24 10:30:38 -07002874 break;
Richard Henderson2f9f08b2021-08-25 12:03:48 -07002875 CASE_OP_32_64_VEC(and):
2876 done = fold_and(&ctx, op);
2877 break;
2878 CASE_OP_32_64_VEC(andc):
2879 done = fold_andc(&ctx, op);
2880 break;
Richard Henderson079b0802021-08-24 09:30:59 -07002881 CASE_OP_32_64(brcond):
2882 done = fold_brcond(&ctx, op);
2883 break;
Richard Henderson764d2ab2021-08-24 09:22:11 -07002884 case INDEX_op_brcond2_i32:
2885 done = fold_brcond2(&ctx, op);
2886 break;
Richard Henderson09bacdc2021-08-24 11:58:12 -07002887 CASE_OP_32_64(bswap16):
2888 CASE_OP_32_64(bswap32):
2889 case INDEX_op_bswap64_i64:
2890 done = fold_bswap(&ctx, op);
2891 break;
Richard Henderson30dd0bf2021-08-24 10:51:34 -07002892 CASE_OP_32_64(clz):
2893 CASE_OP_32_64(ctz):
2894 done = fold_count_zeros(&ctx, op);
2895 break;
Richard Henderson2f9f08b2021-08-25 12:03:48 -07002896 CASE_OP_32_64(ctpop):
2897 done = fold_ctpop(&ctx, op);
2898 break;
Richard Henderson1b1907b2021-08-24 10:47:04 -07002899 CASE_OP_32_64(deposit):
2900 done = fold_deposit(&ctx, op);
2901 break;
Richard Henderson2f9f08b2021-08-25 12:03:48 -07002902 CASE_OP_32_64(div):
2903 CASE_OP_32_64(divu):
2904 done = fold_divide(&ctx, op);
2905 break;
Richard Henderson8cdb3fc2021-08-24 12:06:33 -07002906 case INDEX_op_dup_vec:
2907 done = fold_dup(&ctx, op);
2908 break;
2909 case INDEX_op_dup2_vec:
2910 done = fold_dup2(&ctx, op);
2911 break;
Richard Hendersoned523472021-12-16 11:17:46 -08002912 CASE_OP_32_64_VEC(eqv):
Richard Henderson2f9f08b2021-08-25 12:03:48 -07002913 done = fold_eqv(&ctx, op);
2914 break;
Richard Hendersonb6617c82021-08-24 10:44:53 -07002915 CASE_OP_32_64(extract):
2916 done = fold_extract(&ctx, op);
2917 break;
Richard Hendersondcd08992021-08-24 10:41:39 -07002918 CASE_OP_32_64(extract2):
2919 done = fold_extract2(&ctx, op);
2920 break;
Richard Henderson2f9f08b2021-08-25 12:03:48 -07002921 CASE_OP_32_64(ext8s):
2922 CASE_OP_32_64(ext16s):
2923 case INDEX_op_ext32s_i64:
2924 case INDEX_op_ext_i32_i64:
2925 done = fold_exts(&ctx, op);
2926 break;
2927 CASE_OP_32_64(ext8u):
2928 CASE_OP_32_64(ext16u):
2929 case INDEX_op_ext32u_i64:
2930 case INDEX_op_extu_i32_i64:
2931 case INDEX_op_extrl_i64_i32:
2932 case INDEX_op_extrh_i64_i32:
2933 done = fold_extu(&ctx, op);
2934 break;
Richard Henderson57fe5c62021-08-26 12:04:46 -07002935 CASE_OP_32_64(ld8s):
Richard Hendersonfae450b2021-08-25 22:42:19 -07002936 CASE_OP_32_64(ld8u):
Richard Henderson57fe5c62021-08-26 12:04:46 -07002937 CASE_OP_32_64(ld16s):
Richard Hendersonfae450b2021-08-25 22:42:19 -07002938 CASE_OP_32_64(ld16u):
Richard Henderson57fe5c62021-08-26 12:04:46 -07002939 case INDEX_op_ld32s_i64:
Richard Hendersonfae450b2021-08-25 22:42:19 -07002940 case INDEX_op_ld32u_i64:
2941 done = fold_tcg_ld(&ctx, op);
2942 break;
Richard Hendersonab84dc32023-08-23 23:04:24 -07002943 case INDEX_op_ld_i32:
2944 case INDEX_op_ld_i64:
2945 case INDEX_op_ld_vec:
2946 done = fold_tcg_ld_memcopy(&ctx, op);
2947 break;
2948 CASE_OP_32_64(st8):
2949 CASE_OP_32_64(st16):
2950 case INDEX_op_st32_i64:
2951 done = fold_tcg_st(&ctx, op);
2952 break;
2953 case INDEX_op_st_i32:
2954 case INDEX_op_st_i64:
2955 case INDEX_op_st_vec:
2956 done = fold_tcg_st_memcopy(&ctx, op);
2957 break;
Richard Henderson3eefdf22021-08-25 11:06:43 -07002958 case INDEX_op_mb:
2959 done = fold_mb(&ctx, op);
2960 break;
Richard Henderson2cfac7f2021-08-25 13:05:43 -07002961 CASE_OP_32_64_VEC(mov):
2962 done = fold_mov(&ctx, op);
2963 break;
Richard Henderson0c310a32021-08-24 10:37:24 -07002964 CASE_OP_32_64(movcond):
2965 done = fold_movcond(&ctx, op);
2966 break;
Richard Henderson2f9f08b2021-08-25 12:03:48 -07002967 CASE_OP_32_64(mul):
2968 done = fold_mul(&ctx, op);
2969 break;
2970 CASE_OP_32_64(mulsh):
2971 CASE_OP_32_64(muluh):
2972 done = fold_mul_highpart(&ctx, op);
2973 break;
Richard Henderson407112b2021-08-26 06:33:04 -07002974 CASE_OP_32_64(muls2):
2975 CASE_OP_32_64(mulu2):
2976 done = fold_multiply2(&ctx, op);
Richard Henderson6b8ac0d2021-08-24 10:24:12 -07002977 break;
Richard Hendersoned523472021-12-16 11:17:46 -08002978 CASE_OP_32_64_VEC(nand):
Richard Henderson2f9f08b2021-08-25 12:03:48 -07002979 done = fold_nand(&ctx, op);
2980 break;
2981 CASE_OP_32_64(neg):
2982 done = fold_neg(&ctx, op);
2983 break;
Richard Hendersoned523472021-12-16 11:17:46 -08002984 CASE_OP_32_64_VEC(nor):
Richard Henderson2f9f08b2021-08-25 12:03:48 -07002985 done = fold_nor(&ctx, op);
2986 break;
2987 CASE_OP_32_64_VEC(not):
2988 done = fold_not(&ctx, op);
2989 break;
2990 CASE_OP_32_64_VEC(or):
2991 done = fold_or(&ctx, op);
2992 break;
2993 CASE_OP_32_64_VEC(orc):
2994 done = fold_orc(&ctx, op);
2995 break;
Richard Hendersonfecccfc2023-05-16 20:07:20 -07002996 case INDEX_op_qemu_ld_a32_i32:
2997 case INDEX_op_qemu_ld_a64_i32:
2998 case INDEX_op_qemu_ld_a32_i64:
2999 case INDEX_op_qemu_ld_a64_i64:
3000 case INDEX_op_qemu_ld_a32_i128:
3001 case INDEX_op_qemu_ld_a64_i128:
Richard Henderson3eefdf22021-08-25 11:06:43 -07003002 done = fold_qemu_ld(&ctx, op);
3003 break;
Richard Hendersonfecccfc2023-05-16 20:07:20 -07003004 case INDEX_op_qemu_st8_a32_i32:
3005 case INDEX_op_qemu_st8_a64_i32:
3006 case INDEX_op_qemu_st_a32_i32:
3007 case INDEX_op_qemu_st_a64_i32:
3008 case INDEX_op_qemu_st_a32_i64:
3009 case INDEX_op_qemu_st_a64_i64:
3010 case INDEX_op_qemu_st_a32_i128:
3011 case INDEX_op_qemu_st_a64_i128:
Richard Henderson3eefdf22021-08-25 11:06:43 -07003012 done = fold_qemu_st(&ctx, op);
3013 break;
Richard Henderson2f9f08b2021-08-25 12:03:48 -07003014 CASE_OP_32_64(rem):
3015 CASE_OP_32_64(remu):
3016 done = fold_remainder(&ctx, op);
3017 break;
3018 CASE_OP_32_64(rotl):
3019 CASE_OP_32_64(rotr):
3020 CASE_OP_32_64(sar):
3021 CASE_OP_32_64(shl):
3022 CASE_OP_32_64(shr):
3023 done = fold_shift(&ctx, op);
3024 break;
Richard Hendersonc63ff552021-08-24 09:35:30 -07003025 CASE_OP_32_64(setcond):
3026 done = fold_setcond(&ctx, op);
3027 break;
Richard Henderson36355022023-08-04 23:24:04 +00003028 CASE_OP_32_64(negsetcond):
3029 done = fold_negsetcond(&ctx, op);
3030 break;
Richard Hendersonbc47b1a2021-08-24 09:09:35 -07003031 case INDEX_op_setcond2_i32:
3032 done = fold_setcond2(&ctx, op);
3033 break;
Richard Henderson1f106542024-09-06 12:22:41 -07003034 case INDEX_op_cmp_vec:
3035 done = fold_cmp_vec(&ctx, op);
3036 break;
3037 case INDEX_op_cmpsel_vec:
3038 done = fold_cmpsel_vec(&ctx, op);
3039 break;
Richard Hendersone58b9772024-09-06 22:30:01 -07003040 case INDEX_op_bitsel_vec:
3041 done = fold_bitsel_vec(&ctx, op);
3042 break;
Richard Hendersonb6617c82021-08-24 10:44:53 -07003043 CASE_OP_32_64(sextract):
3044 done = fold_sextract(&ctx, op);
3045 break;
Richard Hendersonc578ff12021-12-16 06:07:25 -08003046 CASE_OP_32_64(sub):
Richard Henderson2f9f08b2021-08-25 12:03:48 -07003047 done = fold_sub(&ctx, op);
3048 break;
Richard Hendersonc578ff12021-12-16 06:07:25 -08003049 case INDEX_op_sub_vec:
3050 done = fold_sub_vec(&ctx, op);
3051 break;
Richard Henderson9531c072021-08-26 06:51:39 -07003052 CASE_OP_32_64(sub2):
3053 done = fold_sub2(&ctx, op);
Richard Hendersone3f7dc22021-08-24 10:30:38 -07003054 break;
Richard Henderson2f9f08b2021-08-25 12:03:48 -07003055 CASE_OP_32_64_VEC(xor):
3056 done = fold_xor(&ctx, op);
Richard Hendersonb10f3832021-08-23 22:30:17 -07003057 break;
Richard Henderson15268552024-12-08 07:45:11 -06003058 case INDEX_op_set_label:
3059 case INDEX_op_br:
3060 case INDEX_op_exit_tb:
3061 case INDEX_op_goto_tb:
3062 case INDEX_op_goto_ptr:
3063 finish_ebb(&ctx);
3064 done = true;
3065 break;
Richard Henderson2cfac7f2021-08-25 13:05:43 -07003066 default:
3067 break;
Richard Hendersonb10f3832021-08-23 22:30:17 -07003068 }
3069
Richard Henderson404a1482021-08-24 11:08:21 -07003070 if (!done) {
3071 finish_folding(&ctx, op);
3072 }
Kirill Batuzov8f2e8c02011-07-07 16:37:12 +04003073 }
Kirill Batuzov8f2e8c02011-07-07 16:37:12 +04003074}