blob: f723deaafede66baea9137728e74221ba1e812c0 [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"
Philippe Mathieu-Daudédcb32f12020-01-01 12:23:00 +010028#include "tcg/tcg-op.h"
Richard Henderson90163902021-03-18 10:21:45 -060029#include "tcg-internal.h"
Kirill Batuzov8f2e8c02011-07-07 16:37:12 +040030
Kirill Batuzov8f2e8c02011-07-07 16:37:12 +040031#define CASE_OP_32_64(x) \
32 glue(glue(case INDEX_op_, x), _i32): \
33 glue(glue(case INDEX_op_, x), _i64)
Kirill Batuzov8f2e8c02011-07-07 16:37:12 +040034
Richard Henderson170ba882017-11-22 09:07:11 +010035#define CASE_OP_32_64_VEC(x) \
36 glue(glue(case INDEX_op_, x), _i32): \
37 glue(glue(case INDEX_op_, x), _i64): \
38 glue(glue(case INDEX_op_, x), _vec)
39
Richard Henderson6fcb98e2020-03-30 17:44:30 -070040typedef struct TempOptInfo {
Aurelien Jarnob41059d2015-07-27 12:41:44 +020041 bool is_const;
Richard Henderson63490392017-06-20 13:43:15 -070042 TCGTemp *prev_copy;
43 TCGTemp *next_copy;
Richard Henderson54795542020-09-06 16:21:32 -070044 uint64_t val;
Richard Hendersonb1fde412021-08-23 13:07:49 -070045 uint64_t z_mask; /* mask bit is 0 if and only if value bit is 0 */
Richard Henderson6fcb98e2020-03-30 17:44:30 -070046} TempOptInfo;
Kirill Batuzov22613af2011-07-07 16:37:13 +040047
Richard Henderson3b3f8472021-08-23 22:06:31 -070048typedef struct OptContext {
Richard Hendersondc849882021-08-24 07:13:45 -070049 TCGContext *tcg;
Richard Hendersond0ed5152021-08-24 07:38:39 -070050 TCGOp *prev_mb;
Richard Henderson3b3f8472021-08-23 22:06:31 -070051 TCGTempSet temps_used;
Richard Henderson137f1f42021-08-24 08:49:25 -070052
53 /* In flight values from optimization. */
Richard Hendersonfae450b2021-08-25 22:42:19 -070054 uint64_t a_mask; /* mask bit is 0 iff value identical to first input */
55 uint64_t z_mask; /* mask bit is 0 iff value bit is 0 */
Richard Henderson67f84c92021-08-25 08:00:20 -070056 TCGType type;
Richard Henderson3b3f8472021-08-23 22:06:31 -070057} OptContext;
58
Richard Henderson6fcb98e2020-03-30 17:44:30 -070059static inline TempOptInfo *ts_info(TCGTemp *ts)
Aurelien Jarnod9c769c2015-07-27 12:41:44 +020060{
Richard Henderson63490392017-06-20 13:43:15 -070061 return ts->state_ptr;
Aurelien Jarnod9c769c2015-07-27 12:41:44 +020062}
63
Richard Henderson6fcb98e2020-03-30 17:44:30 -070064static inline TempOptInfo *arg_info(TCGArg arg)
Aurelien Jarnod9c769c2015-07-27 12:41:44 +020065{
Richard Henderson63490392017-06-20 13:43:15 -070066 return ts_info(arg_temp(arg));
67}
68
69static inline bool ts_is_const(TCGTemp *ts)
70{
71 return ts_info(ts)->is_const;
72}
73
74static inline bool arg_is_const(TCGArg arg)
75{
76 return ts_is_const(arg_temp(arg));
77}
78
79static inline bool ts_is_copy(TCGTemp *ts)
80{
81 return ts_info(ts)->next_copy != ts;
Aurelien Jarnod9c769c2015-07-27 12:41:44 +020082}
83
Aurelien Jarnob41059d2015-07-27 12:41:44 +020084/* Reset TEMP's state, possibly removing the temp for the list of copies. */
Richard Henderson63490392017-06-20 13:43:15 -070085static void reset_ts(TCGTemp *ts)
Kirill Batuzov22613af2011-07-07 16:37:13 +040086{
Richard Henderson6fcb98e2020-03-30 17:44:30 -070087 TempOptInfo *ti = ts_info(ts);
88 TempOptInfo *pi = ts_info(ti->prev_copy);
89 TempOptInfo *ni = ts_info(ti->next_copy);
Richard Henderson63490392017-06-20 13:43:15 -070090
91 ni->prev_copy = ti->prev_copy;
92 pi->next_copy = ti->next_copy;
93 ti->next_copy = ts;
94 ti->prev_copy = ts;
95 ti->is_const = false;
Richard Hendersonb1fde412021-08-23 13:07:49 -070096 ti->z_mask = -1;
Richard Henderson63490392017-06-20 13:43:15 -070097}
98
99static void reset_temp(TCGArg arg)
100{
101 reset_ts(arg_temp(arg));
Kirill Batuzov22613af2011-07-07 16:37:13 +0400102}
103
Aurelien Jarno1208d7d2015-07-27 12:41:44 +0200104/* Initialize and activate a temporary. */
Richard Henderson3b3f8472021-08-23 22:06:31 -0700105static void init_ts_info(OptContext *ctx, TCGTemp *ts)
Aurelien Jarno1208d7d2015-07-27 12:41:44 +0200106{
Richard Henderson63490392017-06-20 13:43:15 -0700107 size_t idx = temp_idx(ts);
Richard Henderson8f17a972020-03-30 19:52:02 -0700108 TempOptInfo *ti;
Richard Henderson63490392017-06-20 13:43:15 -0700109
Richard Henderson3b3f8472021-08-23 22:06:31 -0700110 if (test_bit(idx, ctx->temps_used.l)) {
Richard Henderson8f17a972020-03-30 19:52:02 -0700111 return;
112 }
Richard Henderson3b3f8472021-08-23 22:06:31 -0700113 set_bit(idx, ctx->temps_used.l);
Richard Henderson8f17a972020-03-30 19:52:02 -0700114
115 ti = ts->state_ptr;
116 if (ti == NULL) {
117 ti = tcg_malloc(sizeof(TempOptInfo));
Richard Henderson63490392017-06-20 13:43:15 -0700118 ts->state_ptr = ti;
Richard Henderson8f17a972020-03-30 19:52:02 -0700119 }
120
121 ti->next_copy = ts;
122 ti->prev_copy = ts;
123 if (ts->kind == TEMP_CONST) {
124 ti->is_const = true;
125 ti->val = ts->val;
Richard Hendersonb1fde412021-08-23 13:07:49 -0700126 ti->z_mask = ts->val;
Richard Henderson8f17a972020-03-30 19:52:02 -0700127 if (TCG_TARGET_REG_BITS > 32 && ts->type == TCG_TYPE_I32) {
128 /* High bits of a 32-bit quantity are garbage. */
Richard Hendersonb1fde412021-08-23 13:07:49 -0700129 ti->z_mask |= ~0xffffffffull;
Richard Hendersonc0522132020-03-29 18:55:52 -0700130 }
Richard Henderson8f17a972020-03-30 19:52:02 -0700131 } else {
132 ti->is_const = false;
Richard Hendersonb1fde412021-08-23 13:07:49 -0700133 ti->z_mask = -1;
Aurelien Jarno1208d7d2015-07-27 12:41:44 +0200134 }
135}
136
Richard Henderson63490392017-06-20 13:43:15 -0700137static TCGTemp *find_better_copy(TCGContext *s, TCGTemp *ts)
Aurelien Jarnoe590d4e2012-09-11 12:31:21 +0200138{
Richard Henderson4c868ce2020-04-23 09:02:23 -0700139 TCGTemp *i, *g, *l;
Aurelien Jarnoe590d4e2012-09-11 12:31:21 +0200140
Richard Henderson4c868ce2020-04-23 09:02:23 -0700141 /* If this is already readonly, we can't do better. */
142 if (temp_readonly(ts)) {
Richard Henderson63490392017-06-20 13:43:15 -0700143 return ts;
Aurelien Jarnoe590d4e2012-09-11 12:31:21 +0200144 }
145
Richard Henderson4c868ce2020-04-23 09:02:23 -0700146 g = l = NULL;
Richard Henderson63490392017-06-20 13:43:15 -0700147 for (i = ts_info(ts)->next_copy; i != ts; i = ts_info(i)->next_copy) {
Richard Henderson4c868ce2020-04-23 09:02:23 -0700148 if (temp_readonly(i)) {
Aurelien Jarnoe590d4e2012-09-11 12:31:21 +0200149 return i;
Richard Henderson4c868ce2020-04-23 09:02:23 -0700150 } else if (i->kind > ts->kind) {
151 if (i->kind == TEMP_GLOBAL) {
152 g = i;
153 } else if (i->kind == TEMP_LOCAL) {
154 l = i;
Aurelien Jarnoe590d4e2012-09-11 12:31:21 +0200155 }
156 }
157 }
158
Richard Henderson4c868ce2020-04-23 09:02:23 -0700159 /* If we didn't find a better representation, return the same temp. */
160 return g ? g : l ? l : ts;
Aurelien Jarnoe590d4e2012-09-11 12:31:21 +0200161}
162
Richard Henderson63490392017-06-20 13:43:15 -0700163static bool ts_are_copies(TCGTemp *ts1, TCGTemp *ts2)
Aurelien Jarnoe590d4e2012-09-11 12:31:21 +0200164{
Richard Henderson63490392017-06-20 13:43:15 -0700165 TCGTemp *i;
Aurelien Jarnoe590d4e2012-09-11 12:31:21 +0200166
Richard Henderson63490392017-06-20 13:43:15 -0700167 if (ts1 == ts2) {
Aurelien Jarnoe590d4e2012-09-11 12:31:21 +0200168 return true;
169 }
170
Richard Henderson63490392017-06-20 13:43:15 -0700171 if (!ts_is_copy(ts1) || !ts_is_copy(ts2)) {
Aurelien Jarnoe590d4e2012-09-11 12:31:21 +0200172 return false;
173 }
174
Richard Henderson63490392017-06-20 13:43:15 -0700175 for (i = ts_info(ts1)->next_copy; i != ts1; i = ts_info(i)->next_copy) {
176 if (i == ts2) {
Aurelien Jarnoe590d4e2012-09-11 12:31:21 +0200177 return true;
178 }
179 }
180
181 return false;
182}
183
Richard Henderson63490392017-06-20 13:43:15 -0700184static bool args_are_copies(TCGArg arg1, TCGArg arg2)
185{
186 return ts_are_copies(arg_temp(arg1), arg_temp(arg2));
187}
188
Richard Henderson6b99d5b2021-08-24 10:57:56 -0700189static bool tcg_opt_gen_mov(OptContext *ctx, TCGOp *op, TCGArg dst, TCGArg src)
Kirill Batuzov22613af2011-07-07 16:37:13 +0400190{
Richard Henderson63490392017-06-20 13:43:15 -0700191 TCGTemp *dst_ts = arg_temp(dst);
192 TCGTemp *src_ts = arg_temp(src);
Richard Henderson6fcb98e2020-03-30 17:44:30 -0700193 TempOptInfo *di;
194 TempOptInfo *si;
Richard Hendersonb1fde412021-08-23 13:07:49 -0700195 uint64_t z_mask;
Richard Henderson63490392017-06-20 13:43:15 -0700196 TCGOpcode new_op;
197
198 if (ts_are_copies(dst_ts, src_ts)) {
Richard Hendersondc849882021-08-24 07:13:45 -0700199 tcg_op_remove(ctx->tcg, op);
Richard Henderson6b99d5b2021-08-24 10:57:56 -0700200 return true;
Aurelien Jarno53657182015-06-04 21:53:25 +0200201 }
202
Richard Henderson63490392017-06-20 13:43:15 -0700203 reset_ts(dst_ts);
204 di = ts_info(dst_ts);
205 si = ts_info(src_ts);
Richard Henderson67f84c92021-08-25 08:00:20 -0700206
207 switch (ctx->type) {
208 case TCG_TYPE_I32:
Richard Henderson170ba882017-11-22 09:07:11 +0100209 new_op = INDEX_op_mov_i32;
Richard Henderson67f84c92021-08-25 08:00:20 -0700210 break;
211 case TCG_TYPE_I64:
212 new_op = INDEX_op_mov_i64;
213 break;
214 case TCG_TYPE_V64:
215 case TCG_TYPE_V128:
216 case TCG_TYPE_V256:
217 /* TCGOP_VECL and TCGOP_VECE remain unchanged. */
218 new_op = INDEX_op_mov_vec;
219 break;
220 default:
221 g_assert_not_reached();
Richard Henderson170ba882017-11-22 09:07:11 +0100222 }
Richard Hendersonc45cb8b2014-09-19 13:49:15 -0700223 op->opc = new_op;
Richard Henderson63490392017-06-20 13:43:15 -0700224 op->args[0] = dst;
225 op->args[1] = src;
Richard Hendersona62f6f52014-05-22 10:59:12 -0700226
Richard Hendersonb1fde412021-08-23 13:07:49 -0700227 z_mask = si->z_mask;
Richard Henderson24666ba2014-05-22 11:14:10 -0700228 if (TCG_TARGET_REG_BITS > 32 && new_op == INDEX_op_mov_i32) {
229 /* High bits of the destination are now garbage. */
Richard Hendersonb1fde412021-08-23 13:07:49 -0700230 z_mask |= ~0xffffffffull;
Richard Henderson24666ba2014-05-22 11:14:10 -0700231 }
Richard Hendersonb1fde412021-08-23 13:07:49 -0700232 di->z_mask = z_mask;
Richard Henderson24666ba2014-05-22 11:14:10 -0700233
Richard Henderson63490392017-06-20 13:43:15 -0700234 if (src_ts->type == dst_ts->type) {
Richard Henderson6fcb98e2020-03-30 17:44:30 -0700235 TempOptInfo *ni = ts_info(si->next_copy);
Richard Henderson63490392017-06-20 13:43:15 -0700236
237 di->next_copy = si->next_copy;
238 di->prev_copy = src_ts;
239 ni->prev_copy = dst_ts;
240 si->next_copy = dst_ts;
241 di->is_const = si->is_const;
242 di->val = si->val;
Paolo Bonzini3a9d8b12013-01-11 15:42:52 -0800243 }
Richard Henderson6b99d5b2021-08-24 10:57:56 -0700244 return true;
Kirill Batuzov22613af2011-07-07 16:37:13 +0400245}
246
Richard Henderson6b99d5b2021-08-24 10:57:56 -0700247static bool tcg_opt_gen_movi(OptContext *ctx, TCGOp *op,
Richard Hendersondc849882021-08-24 07:13:45 -0700248 TCGArg dst, uint64_t val)
Richard Henderson8fe35e02020-03-30 20:42:43 -0700249{
Richard Henderson8fe35e02020-03-30 20:42:43 -0700250 /* Convert movi to mov with constant temp. */
Richard Henderson67f84c92021-08-25 08:00:20 -0700251 TCGTemp *tv = tcg_constant_internal(ctx->type, val);
252
Richard Henderson3b3f8472021-08-23 22:06:31 -0700253 init_ts_info(ctx, tv);
Richard Henderson6b99d5b2021-08-24 10:57:56 -0700254 return tcg_opt_gen_mov(ctx, op, dst, temp_arg(tv));
Richard Henderson8fe35e02020-03-30 20:42:43 -0700255}
256
Richard Henderson54795542020-09-06 16:21:32 -0700257static uint64_t do_constant_folding_2(TCGOpcode op, uint64_t x, uint64_t y)
Kirill Batuzov53108fb2011-07-07 16:37:14 +0400258{
Richard Henderson03271522013-08-14 14:35:56 -0700259 uint64_t l64, h64;
260
Kirill Batuzov53108fb2011-07-07 16:37:14 +0400261 switch (op) {
262 CASE_OP_32_64(add):
263 return x + y;
264
265 CASE_OP_32_64(sub):
266 return x - y;
267
268 CASE_OP_32_64(mul):
269 return x * y;
270
Kirill Batuzov9a810902011-07-07 16:37:15 +0400271 CASE_OP_32_64(and):
272 return x & y;
273
274 CASE_OP_32_64(or):
275 return x | y;
276
277 CASE_OP_32_64(xor):
278 return x ^ y;
279
Kirill Batuzov55c09752011-07-07 16:37:16 +0400280 case INDEX_op_shl_i32:
Richard Henderson50c5c4d2014-03-18 07:45:39 -0700281 return (uint32_t)x << (y & 31);
Kirill Batuzov55c09752011-07-07 16:37:16 +0400282
Kirill Batuzov55c09752011-07-07 16:37:16 +0400283 case INDEX_op_shl_i64:
Richard Henderson50c5c4d2014-03-18 07:45:39 -0700284 return (uint64_t)x << (y & 63);
Kirill Batuzov55c09752011-07-07 16:37:16 +0400285
286 case INDEX_op_shr_i32:
Richard Henderson50c5c4d2014-03-18 07:45:39 -0700287 return (uint32_t)x >> (y & 31);
Kirill Batuzov55c09752011-07-07 16:37:16 +0400288
Kirill Batuzov55c09752011-07-07 16:37:16 +0400289 case INDEX_op_shr_i64:
Richard Henderson50c5c4d2014-03-18 07:45:39 -0700290 return (uint64_t)x >> (y & 63);
Kirill Batuzov55c09752011-07-07 16:37:16 +0400291
292 case INDEX_op_sar_i32:
Richard Henderson50c5c4d2014-03-18 07:45:39 -0700293 return (int32_t)x >> (y & 31);
Kirill Batuzov55c09752011-07-07 16:37:16 +0400294
Kirill Batuzov55c09752011-07-07 16:37:16 +0400295 case INDEX_op_sar_i64:
Richard Henderson50c5c4d2014-03-18 07:45:39 -0700296 return (int64_t)x >> (y & 63);
Kirill Batuzov55c09752011-07-07 16:37:16 +0400297
298 case INDEX_op_rotr_i32:
Richard Henderson50c5c4d2014-03-18 07:45:39 -0700299 return ror32(x, y & 31);
Kirill Batuzov55c09752011-07-07 16:37:16 +0400300
Kirill Batuzov55c09752011-07-07 16:37:16 +0400301 case INDEX_op_rotr_i64:
Richard Henderson50c5c4d2014-03-18 07:45:39 -0700302 return ror64(x, y & 63);
Kirill Batuzov55c09752011-07-07 16:37:16 +0400303
304 case INDEX_op_rotl_i32:
Richard Henderson50c5c4d2014-03-18 07:45:39 -0700305 return rol32(x, y & 31);
Kirill Batuzov55c09752011-07-07 16:37:16 +0400306
Kirill Batuzov55c09752011-07-07 16:37:16 +0400307 case INDEX_op_rotl_i64:
Richard Henderson50c5c4d2014-03-18 07:45:39 -0700308 return rol64(x, y & 63);
Kirill Batuzov55c09752011-07-07 16:37:16 +0400309
Richard Henderson25c4d9c2011-08-17 14:11:46 -0700310 CASE_OP_32_64(not):
Kirill Batuzova640f032011-07-07 16:37:17 +0400311 return ~x;
312
Richard Hendersoncb25c802011-08-17 14:11:47 -0700313 CASE_OP_32_64(neg):
314 return -x;
315
316 CASE_OP_32_64(andc):
317 return x & ~y;
318
319 CASE_OP_32_64(orc):
320 return x | ~y;
321
322 CASE_OP_32_64(eqv):
323 return ~(x ^ y);
324
325 CASE_OP_32_64(nand):
326 return ~(x & y);
327
328 CASE_OP_32_64(nor):
329 return ~(x | y);
330
Richard Henderson0e28d002016-11-16 09:23:28 +0100331 case INDEX_op_clz_i32:
332 return (uint32_t)x ? clz32(x) : y;
333
334 case INDEX_op_clz_i64:
335 return x ? clz64(x) : y;
336
337 case INDEX_op_ctz_i32:
338 return (uint32_t)x ? ctz32(x) : y;
339
340 case INDEX_op_ctz_i64:
341 return x ? ctz64(x) : y;
342
Richard Hendersona768e4e2016-11-21 11:13:39 +0100343 case INDEX_op_ctpop_i32:
344 return ctpop32(x);
345
346 case INDEX_op_ctpop_i64:
347 return ctpop64(x);
348
Richard Henderson25c4d9c2011-08-17 14:11:46 -0700349 CASE_OP_32_64(ext8s):
Kirill Batuzova640f032011-07-07 16:37:17 +0400350 return (int8_t)x;
351
Richard Henderson25c4d9c2011-08-17 14:11:46 -0700352 CASE_OP_32_64(ext16s):
Kirill Batuzova640f032011-07-07 16:37:17 +0400353 return (int16_t)x;
354
Richard Henderson25c4d9c2011-08-17 14:11:46 -0700355 CASE_OP_32_64(ext8u):
Kirill Batuzova640f032011-07-07 16:37:17 +0400356 return (uint8_t)x;
357
Richard Henderson25c4d9c2011-08-17 14:11:46 -0700358 CASE_OP_32_64(ext16u):
Kirill Batuzova640f032011-07-07 16:37:17 +0400359 return (uint16_t)x;
360
Richard Henderson64985942018-11-20 08:53:34 +0100361 CASE_OP_32_64(bswap16):
Richard Henderson0b76ff82021-06-13 13:04:00 -0700362 x = bswap16(x);
363 return y & TCG_BSWAP_OS ? (int16_t)x : x;
Richard Henderson64985942018-11-20 08:53:34 +0100364
365 CASE_OP_32_64(bswap32):
Richard Henderson0b76ff82021-06-13 13:04:00 -0700366 x = bswap32(x);
367 return y & TCG_BSWAP_OS ? (int32_t)x : x;
Richard Henderson64985942018-11-20 08:53:34 +0100368
369 case INDEX_op_bswap64_i64:
370 return bswap64(x);
371
Aurelien Jarno8bcb5c82015-07-27 12:41:45 +0200372 case INDEX_op_ext_i32_i64:
Kirill Batuzova640f032011-07-07 16:37:17 +0400373 case INDEX_op_ext32s_i64:
374 return (int32_t)x;
375
Aurelien Jarno8bcb5c82015-07-27 12:41:45 +0200376 case INDEX_op_extu_i32_i64:
Richard Henderson609ad702015-07-24 07:16:00 -0700377 case INDEX_op_extrl_i64_i32:
Kirill Batuzova640f032011-07-07 16:37:17 +0400378 case INDEX_op_ext32u_i64:
379 return (uint32_t)x;
Kirill Batuzova640f032011-07-07 16:37:17 +0400380
Richard Henderson609ad702015-07-24 07:16:00 -0700381 case INDEX_op_extrh_i64_i32:
382 return (uint64_t)x >> 32;
383
Richard Henderson03271522013-08-14 14:35:56 -0700384 case INDEX_op_muluh_i32:
385 return ((uint64_t)(uint32_t)x * (uint32_t)y) >> 32;
386 case INDEX_op_mulsh_i32:
387 return ((int64_t)(int32_t)x * (int32_t)y) >> 32;
388
389 case INDEX_op_muluh_i64:
390 mulu64(&l64, &h64, x, y);
391 return h64;
392 case INDEX_op_mulsh_i64:
393 muls64(&l64, &h64, x, y);
394 return h64;
395
Richard Henderson01547f72013-08-14 15:22:46 -0700396 case INDEX_op_div_i32:
397 /* Avoid crashing on divide by zero, otherwise undefined. */
398 return (int32_t)x / ((int32_t)y ? : 1);
399 case INDEX_op_divu_i32:
400 return (uint32_t)x / ((uint32_t)y ? : 1);
401 case INDEX_op_div_i64:
402 return (int64_t)x / ((int64_t)y ? : 1);
403 case INDEX_op_divu_i64:
404 return (uint64_t)x / ((uint64_t)y ? : 1);
405
406 case INDEX_op_rem_i32:
407 return (int32_t)x % ((int32_t)y ? : 1);
408 case INDEX_op_remu_i32:
409 return (uint32_t)x % ((uint32_t)y ? : 1);
410 case INDEX_op_rem_i64:
411 return (int64_t)x % ((int64_t)y ? : 1);
412 case INDEX_op_remu_i64:
413 return (uint64_t)x % ((uint64_t)y ? : 1);
414
Kirill Batuzov53108fb2011-07-07 16:37:14 +0400415 default:
416 fprintf(stderr,
417 "Unrecognized operation %d in do_constant_folding.\n", op);
418 tcg_abort();
419 }
420}
421
Richard Henderson67f84c92021-08-25 08:00:20 -0700422static uint64_t do_constant_folding(TCGOpcode op, TCGType type,
423 uint64_t x, uint64_t y)
Kirill Batuzov53108fb2011-07-07 16:37:14 +0400424{
Richard Henderson54795542020-09-06 16:21:32 -0700425 uint64_t res = do_constant_folding_2(op, x, y);
Richard Henderson67f84c92021-08-25 08:00:20 -0700426 if (type == TCG_TYPE_I32) {
Aurelien Jarno29f3ff82015-07-10 18:03:31 +0200427 res = (int32_t)res;
Kirill Batuzov53108fb2011-07-07 16:37:14 +0400428 }
Kirill Batuzov53108fb2011-07-07 16:37:14 +0400429 return res;
430}
431
Richard Henderson9519da72012-10-02 11:32:26 -0700432static bool do_constant_folding_cond_32(uint32_t x, uint32_t y, TCGCond c)
433{
434 switch (c) {
435 case TCG_COND_EQ:
436 return x == y;
437 case TCG_COND_NE:
438 return x != y;
439 case TCG_COND_LT:
440 return (int32_t)x < (int32_t)y;
441 case TCG_COND_GE:
442 return (int32_t)x >= (int32_t)y;
443 case TCG_COND_LE:
444 return (int32_t)x <= (int32_t)y;
445 case TCG_COND_GT:
446 return (int32_t)x > (int32_t)y;
447 case TCG_COND_LTU:
448 return x < y;
449 case TCG_COND_GEU:
450 return x >= y;
451 case TCG_COND_LEU:
452 return x <= y;
453 case TCG_COND_GTU:
454 return x > y;
455 default:
456 tcg_abort();
457 }
458}
459
460static bool do_constant_folding_cond_64(uint64_t x, uint64_t y, TCGCond c)
461{
462 switch (c) {
463 case TCG_COND_EQ:
464 return x == y;
465 case TCG_COND_NE:
466 return x != y;
467 case TCG_COND_LT:
468 return (int64_t)x < (int64_t)y;
469 case TCG_COND_GE:
470 return (int64_t)x >= (int64_t)y;
471 case TCG_COND_LE:
472 return (int64_t)x <= (int64_t)y;
473 case TCG_COND_GT:
474 return (int64_t)x > (int64_t)y;
475 case TCG_COND_LTU:
476 return x < y;
477 case TCG_COND_GEU:
478 return x >= y;
479 case TCG_COND_LEU:
480 return x <= y;
481 case TCG_COND_GTU:
482 return x > y;
483 default:
484 tcg_abort();
485 }
486}
487
488static bool do_constant_folding_cond_eq(TCGCond c)
489{
490 switch (c) {
491 case TCG_COND_GT:
492 case TCG_COND_LTU:
493 case TCG_COND_LT:
494 case TCG_COND_GTU:
495 case TCG_COND_NE:
496 return 0;
497 case TCG_COND_GE:
498 case TCG_COND_GEU:
499 case TCG_COND_LE:
500 case TCG_COND_LEU:
501 case TCG_COND_EQ:
502 return 1;
503 default:
504 tcg_abort();
505 }
506}
507
Richard Henderson8d57bf12021-08-24 08:34:27 -0700508/*
509 * Return -1 if the condition can't be simplified,
510 * and the result of the condition (0 or 1) if it can.
511 */
Richard Henderson67f84c92021-08-25 08:00:20 -0700512static int do_constant_folding_cond(TCGType type, TCGArg x,
Richard Henderson8d57bf12021-08-24 08:34:27 -0700513 TCGArg y, TCGCond c)
Aurelien Jarnof8dd19e2012-09-06 16:47:14 +0200514{
Richard Henderson54795542020-09-06 16:21:32 -0700515 uint64_t xv = arg_info(x)->val;
516 uint64_t yv = arg_info(y)->val;
517
Richard Henderson63490392017-06-20 13:43:15 -0700518 if (arg_is_const(x) && arg_is_const(y)) {
Richard Henderson67f84c92021-08-25 08:00:20 -0700519 switch (type) {
520 case TCG_TYPE_I32:
Richard Henderson170ba882017-11-22 09:07:11 +0100521 return do_constant_folding_cond_32(xv, yv, c);
Richard Henderson67f84c92021-08-25 08:00:20 -0700522 case TCG_TYPE_I64:
523 return do_constant_folding_cond_64(xv, yv, c);
524 default:
525 /* Only scalar comparisons are optimizable */
526 return -1;
Aurelien Jarnof8dd19e2012-09-06 16:47:14 +0200527 }
Richard Henderson63490392017-06-20 13:43:15 -0700528 } else if (args_are_copies(x, y)) {
Richard Henderson9519da72012-10-02 11:32:26 -0700529 return do_constant_folding_cond_eq(c);
Richard Henderson63490392017-06-20 13:43:15 -0700530 } else if (arg_is_const(y) && yv == 0) {
Aurelien Jarnob336ceb2012-09-18 19:37:00 +0200531 switch (c) {
532 case TCG_COND_LTU:
533 return 0;
534 case TCG_COND_GEU:
535 return 1;
536 default:
Richard Henderson8d57bf12021-08-24 08:34:27 -0700537 return -1;
Aurelien Jarnob336ceb2012-09-18 19:37:00 +0200538 }
Aurelien Jarnof8dd19e2012-09-06 16:47:14 +0200539 }
Richard Henderson8d57bf12021-08-24 08:34:27 -0700540 return -1;
Aurelien Jarnof8dd19e2012-09-06 16:47:14 +0200541}
542
Richard Henderson8d57bf12021-08-24 08:34:27 -0700543/*
544 * Return -1 if the condition can't be simplified,
545 * and the result of the condition (0 or 1) if it can.
546 */
547static int do_constant_folding_cond2(TCGArg *p1, TCGArg *p2, TCGCond c)
Richard Henderson6c4382f2012-10-02 11:32:27 -0700548{
549 TCGArg al = p1[0], ah = p1[1];
550 TCGArg bl = p2[0], bh = p2[1];
551
Richard Henderson63490392017-06-20 13:43:15 -0700552 if (arg_is_const(bl) && arg_is_const(bh)) {
553 tcg_target_ulong blv = arg_info(bl)->val;
554 tcg_target_ulong bhv = arg_info(bh)->val;
555 uint64_t b = deposit64(blv, 32, 32, bhv);
Richard Henderson6c4382f2012-10-02 11:32:27 -0700556
Richard Henderson63490392017-06-20 13:43:15 -0700557 if (arg_is_const(al) && arg_is_const(ah)) {
558 tcg_target_ulong alv = arg_info(al)->val;
559 tcg_target_ulong ahv = arg_info(ah)->val;
560 uint64_t a = deposit64(alv, 32, 32, ahv);
Richard Henderson6c4382f2012-10-02 11:32:27 -0700561 return do_constant_folding_cond_64(a, b, c);
562 }
563 if (b == 0) {
564 switch (c) {
565 case TCG_COND_LTU:
566 return 0;
567 case TCG_COND_GEU:
568 return 1;
569 default:
570 break;
571 }
572 }
573 }
Richard Henderson63490392017-06-20 13:43:15 -0700574 if (args_are_copies(al, bl) && args_are_copies(ah, bh)) {
Richard Henderson6c4382f2012-10-02 11:32:27 -0700575 return do_constant_folding_cond_eq(c);
576 }
Richard Henderson8d57bf12021-08-24 08:34:27 -0700577 return -1;
Richard Henderson6c4382f2012-10-02 11:32:27 -0700578}
579
Richard Henderson24c9ae42012-10-02 11:32:21 -0700580static bool swap_commutative(TCGArg dest, TCGArg *p1, TCGArg *p2)
581{
582 TCGArg a1 = *p1, a2 = *p2;
583 int sum = 0;
Richard Henderson63490392017-06-20 13:43:15 -0700584 sum += arg_is_const(a1);
585 sum -= arg_is_const(a2);
Richard Henderson24c9ae42012-10-02 11:32:21 -0700586
587 /* Prefer the constant in second argument, and then the form
588 op a, a, b, which is better handled on non-RISC hosts. */
589 if (sum > 0 || (sum == 0 && dest == a2)) {
590 *p1 = a2;
591 *p2 = a1;
592 return true;
593 }
594 return false;
595}
596
Richard Henderson0bfcb862012-10-02 11:32:23 -0700597static bool swap_commutative2(TCGArg *p1, TCGArg *p2)
598{
599 int sum = 0;
Richard Henderson63490392017-06-20 13:43:15 -0700600 sum += arg_is_const(p1[0]);
601 sum += arg_is_const(p1[1]);
602 sum -= arg_is_const(p2[0]);
603 sum -= arg_is_const(p2[1]);
Richard Henderson0bfcb862012-10-02 11:32:23 -0700604 if (sum > 0) {
605 TCGArg t;
606 t = p1[0], p1[0] = p2[0], p2[0] = t;
607 t = p1[1], p1[1] = p2[1], p2[1] = t;
608 return true;
609 }
610 return false;
611}
612
Richard Hendersone2577ea2021-08-24 08:00:48 -0700613static void init_arguments(OptContext *ctx, TCGOp *op, int nb_args)
614{
615 for (int i = 0; i < nb_args; i++) {
616 TCGTemp *ts = arg_temp(op->args[i]);
617 if (ts) {
618 init_ts_info(ctx, ts);
619 }
620 }
621}
622
Richard Henderson8774dde2021-08-24 08:04:47 -0700623static void copy_propagate(OptContext *ctx, TCGOp *op,
624 int nb_oargs, int nb_iargs)
625{
626 TCGContext *s = ctx->tcg;
627
628 for (int i = nb_oargs; i < nb_oargs + nb_iargs; i++) {
629 TCGTemp *ts = arg_temp(op->args[i]);
630 if (ts && ts_is_copy(ts)) {
631 op->args[i] = temp_arg(find_better_copy(s, ts));
632 }
633 }
634}
635
Richard Henderson137f1f42021-08-24 08:49:25 -0700636static void finish_folding(OptContext *ctx, TCGOp *op)
637{
638 const TCGOpDef *def = &tcg_op_defs[op->opc];
639 int i, nb_oargs;
640
641 /*
642 * For an opcode that ends a BB, reset all temp data.
643 * We do no cross-BB optimization.
644 */
645 if (def->flags & TCG_OPF_BB_END) {
646 memset(&ctx->temps_used, 0, sizeof(ctx->temps_used));
647 ctx->prev_mb = NULL;
648 return;
649 }
650
651 nb_oargs = def->nb_oargs;
652 for (i = 0; i < nb_oargs; i++) {
653 reset_temp(op->args[i]);
654 /*
655 * Save the corresponding known-zero bits mask for the
656 * first output argument (only one supported so far).
657 */
658 if (i == 0) {
659 arg_info(op->args[i])->z_mask = ctx->z_mask;
660 }
661 }
662}
663
Richard Henderson2f9f08b2021-08-25 12:03:48 -0700664/*
665 * The fold_* functions return true when processing is complete,
666 * usually by folding the operation to a constant or to a copy,
667 * and calling tcg_opt_gen_{mov,movi}. They may do other things,
668 * like collect information about the value produced, for use in
669 * optimizing a subsequent operation.
670 *
671 * These first fold_* functions are all helpers, used by other
672 * folders for more specific operations.
673 */
674
675static bool fold_const1(OptContext *ctx, TCGOp *op)
676{
677 if (arg_is_const(op->args[1])) {
678 uint64_t t;
679
680 t = arg_info(op->args[1])->val;
Richard Henderson67f84c92021-08-25 08:00:20 -0700681 t = do_constant_folding(op->opc, ctx->type, t, 0);
Richard Henderson2f9f08b2021-08-25 12:03:48 -0700682 return tcg_opt_gen_movi(ctx, op, op->args[0], t);
683 }
684 return false;
685}
686
687static bool fold_const2(OptContext *ctx, TCGOp *op)
688{
689 if (arg_is_const(op->args[1]) && arg_is_const(op->args[2])) {
690 uint64_t t1 = arg_info(op->args[1])->val;
691 uint64_t t2 = arg_info(op->args[2])->val;
692
Richard Henderson67f84c92021-08-25 08:00:20 -0700693 t1 = do_constant_folding(op->opc, ctx->type, t1, t2);
Richard Henderson2f9f08b2021-08-25 12:03:48 -0700694 return tcg_opt_gen_movi(ctx, op, op->args[0], t1);
695 }
696 return false;
697}
698
Richard Hendersonfae450b2021-08-25 22:42:19 -0700699static bool fold_masks(OptContext *ctx, TCGOp *op)
700{
701 uint64_t a_mask = ctx->a_mask;
702 uint64_t z_mask = ctx->z_mask;
703
704 /*
705 * 32-bit ops generate 32-bit results. For the result is zero test
706 * below, we can ignore high bits, but for further optimizations we
707 * need to record that the high bits contain garbage.
708 */
709 if (ctx->type == TCG_TYPE_I32) {
710 ctx->z_mask |= MAKE_64BIT_MASK(32, 32);
711 a_mask &= MAKE_64BIT_MASK(0, 32);
712 z_mask &= MAKE_64BIT_MASK(0, 32);
713 }
714
715 if (z_mask == 0) {
716 return tcg_opt_gen_movi(ctx, op, op->args[0], 0);
717 }
718 if (a_mask == 0) {
719 return tcg_opt_gen_mov(ctx, op, op->args[0], op->args[1]);
720 }
721 return false;
722}
723
Richard Henderson0e0a32b2021-08-24 13:18:01 -0700724/*
725 * Convert @op to NOT, if NOT is supported by the host.
726 * Return true f the conversion is successful, which will still
727 * indicate that the processing is complete.
728 */
729static bool fold_not(OptContext *ctx, TCGOp *op);
730static bool fold_to_not(OptContext *ctx, TCGOp *op, int idx)
731{
732 TCGOpcode not_op;
733 bool have_not;
734
735 switch (ctx->type) {
736 case TCG_TYPE_I32:
737 not_op = INDEX_op_not_i32;
738 have_not = TCG_TARGET_HAS_not_i32;
739 break;
740 case TCG_TYPE_I64:
741 not_op = INDEX_op_not_i64;
742 have_not = TCG_TARGET_HAS_not_i64;
743 break;
744 case TCG_TYPE_V64:
745 case TCG_TYPE_V128:
746 case TCG_TYPE_V256:
747 not_op = INDEX_op_not_vec;
748 have_not = TCG_TARGET_HAS_not_vec;
749 break;
750 default:
751 g_assert_not_reached();
752 }
753 if (have_not) {
754 op->opc = not_op;
755 op->args[1] = op->args[idx];
756 return fold_not(ctx, op);
757 }
758 return false;
759}
760
Richard Hendersonda48e272021-08-25 20:42:04 -0700761/* If the binary operation has first argument @i, fold to @i. */
762static bool fold_ix_to_i(OptContext *ctx, TCGOp *op, uint64_t i)
763{
764 if (arg_is_const(op->args[1]) && arg_info(op->args[1])->val == i) {
765 return tcg_opt_gen_movi(ctx, op, op->args[0], i);
766 }
767 return false;
768}
769
Richard Henderson0e0a32b2021-08-24 13:18:01 -0700770/* If the binary operation has first argument @i, fold to NOT. */
771static bool fold_ix_to_not(OptContext *ctx, TCGOp *op, uint64_t i)
772{
773 if (arg_is_const(op->args[1]) && arg_info(op->args[1])->val == i) {
774 return fold_to_not(ctx, op, 2);
775 }
776 return false;
777}
778
Richard Hendersone8679952021-08-25 13:19:52 -0700779/* If the binary operation has second argument @i, fold to @i. */
780static bool fold_xi_to_i(OptContext *ctx, TCGOp *op, uint64_t i)
781{
782 if (arg_is_const(op->args[2]) && arg_info(op->args[2])->val == i) {
783 return tcg_opt_gen_movi(ctx, op, op->args[0], i);
784 }
785 return false;
786}
787
Richard Hendersona63ce0e2021-08-25 20:28:53 -0700788/* If the binary operation has second argument @i, fold to identity. */
789static bool fold_xi_to_x(OptContext *ctx, TCGOp *op, uint64_t i)
790{
791 if (arg_is_const(op->args[2]) && arg_info(op->args[2])->val == i) {
792 return tcg_opt_gen_mov(ctx, op, op->args[0], op->args[1]);
793 }
794 return false;
795}
796
Richard Henderson0e0a32b2021-08-24 13:18:01 -0700797/* If the binary operation has second argument @i, fold to NOT. */
798static bool fold_xi_to_not(OptContext *ctx, TCGOp *op, uint64_t i)
799{
800 if (arg_is_const(op->args[2]) && arg_info(op->args[2])->val == i) {
801 return fold_to_not(ctx, op, 1);
802 }
803 return false;
804}
805
Richard Hendersoncbe42fb2021-08-25 13:02:00 -0700806/* If the binary operation has both arguments equal, fold to @i. */
807static bool fold_xx_to_i(OptContext *ctx, TCGOp *op, uint64_t i)
808{
809 if (args_are_copies(op->args[1], op->args[2])) {
810 return tcg_opt_gen_movi(ctx, op, op->args[0], i);
811 }
812 return false;
813}
814
Richard Hendersonca7bb042021-08-25 13:14:21 -0700815/* If the binary operation has both arguments equal, fold to identity. */
816static bool fold_xx_to_x(OptContext *ctx, TCGOp *op)
817{
818 if (args_are_copies(op->args[1], op->args[2])) {
819 return tcg_opt_gen_mov(ctx, op, op->args[0], op->args[1]);
820 }
821 return false;
822}
823
Richard Henderson2f9f08b2021-08-25 12:03:48 -0700824/*
825 * These outermost fold_<op> functions are sorted alphabetically.
Richard Hendersonca7bb042021-08-25 13:14:21 -0700826 *
827 * The ordering of the transformations should be:
828 * 1) those that produce a constant
829 * 2) those that produce a copy
830 * 3) those that produce information about the result value.
Richard Henderson2f9f08b2021-08-25 12:03:48 -0700831 */
832
833static bool fold_add(OptContext *ctx, TCGOp *op)
834{
Richard Hendersona63ce0e2021-08-25 20:28:53 -0700835 if (fold_const2(ctx, op) ||
836 fold_xi_to_x(ctx, op, 0)) {
837 return true;
838 }
839 return false;
Richard Henderson2f9f08b2021-08-25 12:03:48 -0700840}
841
Richard Henderson9531c072021-08-26 06:51:39 -0700842static bool fold_addsub2(OptContext *ctx, TCGOp *op, bool add)
Richard Hendersone3f7dc22021-08-24 10:30:38 -0700843{
844 if (arg_is_const(op->args[2]) && arg_is_const(op->args[3]) &&
845 arg_is_const(op->args[4]) && arg_is_const(op->args[5])) {
Richard Henderson9531c072021-08-26 06:51:39 -0700846 uint64_t al = arg_info(op->args[2])->val;
847 uint64_t ah = arg_info(op->args[3])->val;
848 uint64_t bl = arg_info(op->args[4])->val;
849 uint64_t bh = arg_info(op->args[5])->val;
Richard Hendersone3f7dc22021-08-24 10:30:38 -0700850 TCGArg rl, rh;
Richard Henderson9531c072021-08-26 06:51:39 -0700851 TCGOp *op2;
Richard Hendersone3f7dc22021-08-24 10:30:38 -0700852
Richard Henderson9531c072021-08-26 06:51:39 -0700853 if (ctx->type == TCG_TYPE_I32) {
854 uint64_t a = deposit64(al, 32, 32, ah);
855 uint64_t b = deposit64(bl, 32, 32, bh);
856
857 if (add) {
858 a += b;
859 } else {
860 a -= b;
861 }
862
863 al = sextract64(a, 0, 32);
864 ah = sextract64(a, 32, 32);
Richard Hendersone3f7dc22021-08-24 10:30:38 -0700865 } else {
Richard Henderson9531c072021-08-26 06:51:39 -0700866 Int128 a = int128_make128(al, ah);
867 Int128 b = int128_make128(bl, bh);
868
869 if (add) {
870 a = int128_add(a, b);
871 } else {
872 a = int128_sub(a, b);
873 }
874
875 al = int128_getlo(a);
876 ah = int128_gethi(a);
Richard Hendersone3f7dc22021-08-24 10:30:38 -0700877 }
878
879 rl = op->args[0];
880 rh = op->args[1];
Richard Henderson9531c072021-08-26 06:51:39 -0700881
882 /* The proper opcode is supplied by tcg_opt_gen_mov. */
883 op2 = tcg_op_insert_before(ctx->tcg, op, 0);
884
885 tcg_opt_gen_movi(ctx, op, rl, al);
886 tcg_opt_gen_movi(ctx, op2, rh, ah);
Richard Hendersone3f7dc22021-08-24 10:30:38 -0700887 return true;
888 }
889 return false;
890}
891
Richard Henderson9531c072021-08-26 06:51:39 -0700892static bool fold_add2(OptContext *ctx, TCGOp *op)
Richard Hendersone3f7dc22021-08-24 10:30:38 -0700893{
Richard Henderson9531c072021-08-26 06:51:39 -0700894 return fold_addsub2(ctx, op, true);
Richard Hendersone3f7dc22021-08-24 10:30:38 -0700895}
896
Richard Henderson2f9f08b2021-08-25 12:03:48 -0700897static bool fold_and(OptContext *ctx, TCGOp *op)
898{
Richard Hendersonfae450b2021-08-25 22:42:19 -0700899 uint64_t z1, z2;
900
Richard Hendersonca7bb042021-08-25 13:14:21 -0700901 if (fold_const2(ctx, op) ||
Richard Hendersone8679952021-08-25 13:19:52 -0700902 fold_xi_to_i(ctx, op, 0) ||
Richard Hendersona63ce0e2021-08-25 20:28:53 -0700903 fold_xi_to_x(ctx, op, -1) ||
Richard Hendersonca7bb042021-08-25 13:14:21 -0700904 fold_xx_to_x(ctx, op)) {
905 return true;
906 }
Richard Hendersonfae450b2021-08-25 22:42:19 -0700907
908 z1 = arg_info(op->args[1])->z_mask;
909 z2 = arg_info(op->args[2])->z_mask;
910 ctx->z_mask = z1 & z2;
911
912 /*
913 * Known-zeros does not imply known-ones. Therefore unless
914 * arg2 is constant, we can't infer affected bits from it.
915 */
916 if (arg_is_const(op->args[2])) {
917 ctx->a_mask = z1 & ~z2;
918 }
919
920 return fold_masks(ctx, op);
Richard Henderson2f9f08b2021-08-25 12:03:48 -0700921}
922
923static bool fold_andc(OptContext *ctx, TCGOp *op)
924{
Richard Hendersonfae450b2021-08-25 22:42:19 -0700925 uint64_t z1;
926
Richard Hendersoncbe42fb2021-08-25 13:02:00 -0700927 if (fold_const2(ctx, op) ||
Richard Henderson0e0a32b2021-08-24 13:18:01 -0700928 fold_xx_to_i(ctx, op, 0) ||
Richard Hendersona63ce0e2021-08-25 20:28:53 -0700929 fold_xi_to_x(ctx, op, 0) ||
Richard Henderson0e0a32b2021-08-24 13:18:01 -0700930 fold_ix_to_not(ctx, op, -1)) {
Richard Hendersoncbe42fb2021-08-25 13:02:00 -0700931 return true;
932 }
Richard Hendersonfae450b2021-08-25 22:42:19 -0700933
934 z1 = arg_info(op->args[1])->z_mask;
935
936 /*
937 * Known-zeros does not imply known-ones. Therefore unless
938 * arg2 is constant, we can't infer anything from it.
939 */
940 if (arg_is_const(op->args[2])) {
941 uint64_t z2 = ~arg_info(op->args[2])->z_mask;
942 ctx->a_mask = z1 & ~z2;
943 z1 &= z2;
944 }
945 ctx->z_mask = z1;
946
947 return fold_masks(ctx, op);
Richard Henderson2f9f08b2021-08-25 12:03:48 -0700948}
949
Richard Henderson079b0802021-08-24 09:30:59 -0700950static bool fold_brcond(OptContext *ctx, TCGOp *op)
951{
952 TCGCond cond = op->args[2];
Richard Henderson67f84c92021-08-25 08:00:20 -0700953 int i = do_constant_folding_cond(ctx->type, op->args[0], op->args[1], cond);
Richard Henderson079b0802021-08-24 09:30:59 -0700954
955 if (i == 0) {
956 tcg_op_remove(ctx->tcg, op);
957 return true;
958 }
959 if (i > 0) {
960 op->opc = INDEX_op_br;
961 op->args[0] = op->args[3];
962 }
963 return false;
964}
965
Richard Henderson764d2ab2021-08-24 09:22:11 -0700966static bool fold_brcond2(OptContext *ctx, TCGOp *op)
967{
968 TCGCond cond = op->args[4];
969 int i = do_constant_folding_cond2(&op->args[0], &op->args[2], cond);
970 TCGArg label = op->args[5];
971 int inv = 0;
972
973 if (i >= 0) {
974 goto do_brcond_const;
975 }
976
977 switch (cond) {
978 case TCG_COND_LT:
979 case TCG_COND_GE:
980 /*
981 * Simplify LT/GE comparisons vs zero to a single compare
982 * vs the high word of the input.
983 */
984 if (arg_is_const(op->args[2]) && arg_info(op->args[2])->val == 0 &&
985 arg_is_const(op->args[3]) && arg_info(op->args[3])->val == 0) {
986 goto do_brcond_high;
987 }
988 break;
989
990 case TCG_COND_NE:
991 inv = 1;
992 QEMU_FALLTHROUGH;
993 case TCG_COND_EQ:
994 /*
995 * Simplify EQ/NE comparisons where one of the pairs
996 * can be simplified.
997 */
Richard Henderson67f84c92021-08-25 08:00:20 -0700998 i = do_constant_folding_cond(TCG_TYPE_I32, op->args[0],
Richard Henderson764d2ab2021-08-24 09:22:11 -0700999 op->args[2], cond);
1000 switch (i ^ inv) {
1001 case 0:
1002 goto do_brcond_const;
1003 case 1:
1004 goto do_brcond_high;
1005 }
1006
Richard Henderson67f84c92021-08-25 08:00:20 -07001007 i = do_constant_folding_cond(TCG_TYPE_I32, op->args[1],
Richard Henderson764d2ab2021-08-24 09:22:11 -07001008 op->args[3], cond);
1009 switch (i ^ inv) {
1010 case 0:
1011 goto do_brcond_const;
1012 case 1:
1013 op->opc = INDEX_op_brcond_i32;
1014 op->args[1] = op->args[2];
1015 op->args[2] = cond;
1016 op->args[3] = label;
1017 break;
1018 }
1019 break;
1020
1021 default:
1022 break;
1023
1024 do_brcond_high:
1025 op->opc = INDEX_op_brcond_i32;
1026 op->args[0] = op->args[1];
1027 op->args[1] = op->args[3];
1028 op->args[2] = cond;
1029 op->args[3] = label;
1030 break;
1031
1032 do_brcond_const:
1033 if (i == 0) {
1034 tcg_op_remove(ctx->tcg, op);
1035 return true;
1036 }
1037 op->opc = INDEX_op_br;
1038 op->args[0] = label;
1039 break;
1040 }
1041 return false;
1042}
1043
Richard Henderson09bacdc2021-08-24 11:58:12 -07001044static bool fold_bswap(OptContext *ctx, TCGOp *op)
1045{
Richard Hendersonfae450b2021-08-25 22:42:19 -07001046 uint64_t z_mask, sign;
1047
Richard Henderson09bacdc2021-08-24 11:58:12 -07001048 if (arg_is_const(op->args[1])) {
1049 uint64_t t = arg_info(op->args[1])->val;
1050
Richard Henderson67f84c92021-08-25 08:00:20 -07001051 t = do_constant_folding(op->opc, ctx->type, t, op->args[2]);
Richard Henderson09bacdc2021-08-24 11:58:12 -07001052 return tcg_opt_gen_movi(ctx, op, op->args[0], t);
1053 }
Richard Hendersonfae450b2021-08-25 22:42:19 -07001054
1055 z_mask = arg_info(op->args[1])->z_mask;
1056 switch (op->opc) {
1057 case INDEX_op_bswap16_i32:
1058 case INDEX_op_bswap16_i64:
1059 z_mask = bswap16(z_mask);
1060 sign = INT16_MIN;
1061 break;
1062 case INDEX_op_bswap32_i32:
1063 case INDEX_op_bswap32_i64:
1064 z_mask = bswap32(z_mask);
1065 sign = INT32_MIN;
1066 break;
1067 case INDEX_op_bswap64_i64:
1068 z_mask = bswap64(z_mask);
1069 sign = INT64_MIN;
1070 break;
1071 default:
1072 g_assert_not_reached();
1073 }
1074
1075 switch (op->args[2] & (TCG_BSWAP_OZ | TCG_BSWAP_OS)) {
1076 case TCG_BSWAP_OZ:
1077 break;
1078 case TCG_BSWAP_OS:
1079 /* If the sign bit may be 1, force all the bits above to 1. */
1080 if (z_mask & sign) {
1081 z_mask |= sign;
1082 }
1083 break;
1084 default:
1085 /* The high bits are undefined: force all bits above the sign to 1. */
1086 z_mask |= sign << 1;
1087 break;
1088 }
1089 ctx->z_mask = z_mask;
1090
1091 return fold_masks(ctx, op);
Richard Henderson09bacdc2021-08-24 11:58:12 -07001092}
1093
Richard Henderson5cf32be2021-08-24 08:17:08 -07001094static bool fold_call(OptContext *ctx, TCGOp *op)
1095{
1096 TCGContext *s = ctx->tcg;
1097 int nb_oargs = TCGOP_CALLO(op);
1098 int nb_iargs = TCGOP_CALLI(op);
1099 int flags, i;
1100
1101 init_arguments(ctx, op, nb_oargs + nb_iargs);
1102 copy_propagate(ctx, op, nb_oargs, nb_iargs);
1103
1104 /* If the function reads or writes globals, reset temp data. */
1105 flags = tcg_call_flags(op);
1106 if (!(flags & (TCG_CALL_NO_READ_GLOBALS | TCG_CALL_NO_WRITE_GLOBALS))) {
1107 int nb_globals = s->nb_globals;
1108
1109 for (i = 0; i < nb_globals; i++) {
1110 if (test_bit(i, ctx->temps_used.l)) {
1111 reset_ts(&ctx->tcg->temps[i]);
1112 }
1113 }
1114 }
1115
1116 /* Reset temp data for outputs. */
1117 for (i = 0; i < nb_oargs; i++) {
1118 reset_temp(op->args[i]);
1119 }
1120
1121 /* Stop optimizing MB across calls. */
1122 ctx->prev_mb = NULL;
1123 return true;
1124}
1125
Richard Henderson30dd0bf2021-08-24 10:51:34 -07001126static bool fold_count_zeros(OptContext *ctx, TCGOp *op)
1127{
Richard Hendersonfae450b2021-08-25 22:42:19 -07001128 uint64_t z_mask;
1129
Richard Henderson30dd0bf2021-08-24 10:51:34 -07001130 if (arg_is_const(op->args[1])) {
1131 uint64_t t = arg_info(op->args[1])->val;
1132
1133 if (t != 0) {
Richard Henderson67f84c92021-08-25 08:00:20 -07001134 t = do_constant_folding(op->opc, ctx->type, t, 0);
Richard Henderson30dd0bf2021-08-24 10:51:34 -07001135 return tcg_opt_gen_movi(ctx, op, op->args[0], t);
1136 }
1137 return tcg_opt_gen_mov(ctx, op, op->args[0], op->args[2]);
1138 }
Richard Hendersonfae450b2021-08-25 22:42:19 -07001139
1140 switch (ctx->type) {
1141 case TCG_TYPE_I32:
1142 z_mask = 31;
1143 break;
1144 case TCG_TYPE_I64:
1145 z_mask = 63;
1146 break;
1147 default:
1148 g_assert_not_reached();
1149 }
1150 ctx->z_mask = arg_info(op->args[2])->z_mask | z_mask;
1151
Richard Henderson30dd0bf2021-08-24 10:51:34 -07001152 return false;
1153}
1154
Richard Henderson2f9f08b2021-08-25 12:03:48 -07001155static bool fold_ctpop(OptContext *ctx, TCGOp *op)
1156{
Richard Hendersonfae450b2021-08-25 22:42:19 -07001157 if (fold_const1(ctx, op)) {
1158 return true;
1159 }
1160
1161 switch (ctx->type) {
1162 case TCG_TYPE_I32:
1163 ctx->z_mask = 32 | 31;
1164 break;
1165 case TCG_TYPE_I64:
1166 ctx->z_mask = 64 | 63;
1167 break;
1168 default:
1169 g_assert_not_reached();
1170 }
1171 return false;
Richard Henderson2f9f08b2021-08-25 12:03:48 -07001172}
1173
Richard Henderson1b1907b2021-08-24 10:47:04 -07001174static bool fold_deposit(OptContext *ctx, TCGOp *op)
1175{
1176 if (arg_is_const(op->args[1]) && arg_is_const(op->args[2])) {
1177 uint64_t t1 = arg_info(op->args[1])->val;
1178 uint64_t t2 = arg_info(op->args[2])->val;
1179
1180 t1 = deposit64(t1, op->args[3], op->args[4], t2);
1181 return tcg_opt_gen_movi(ctx, op, op->args[0], t1);
1182 }
Richard Hendersonfae450b2021-08-25 22:42:19 -07001183
1184 ctx->z_mask = deposit64(arg_info(op->args[1])->z_mask,
1185 op->args[3], op->args[4],
1186 arg_info(op->args[2])->z_mask);
Richard Henderson1b1907b2021-08-24 10:47:04 -07001187 return false;
1188}
1189
Richard Henderson2f9f08b2021-08-25 12:03:48 -07001190static bool fold_divide(OptContext *ctx, TCGOp *op)
1191{
1192 return fold_const2(ctx, op);
1193}
1194
Richard Henderson8cdb3fc2021-08-24 12:06:33 -07001195static bool fold_dup(OptContext *ctx, TCGOp *op)
1196{
1197 if (arg_is_const(op->args[1])) {
1198 uint64_t t = arg_info(op->args[1])->val;
1199 t = dup_const(TCGOP_VECE(op), t);
1200 return tcg_opt_gen_movi(ctx, op, op->args[0], t);
1201 }
1202 return false;
1203}
1204
1205static bool fold_dup2(OptContext *ctx, TCGOp *op)
1206{
1207 if (arg_is_const(op->args[1]) && arg_is_const(op->args[2])) {
1208 uint64_t t = deposit64(arg_info(op->args[1])->val, 32, 32,
1209 arg_info(op->args[2])->val);
1210 return tcg_opt_gen_movi(ctx, op, op->args[0], t);
1211 }
1212
1213 if (args_are_copies(op->args[1], op->args[2])) {
1214 op->opc = INDEX_op_dup_vec;
1215 TCGOP_VECE(op) = MO_32;
1216 }
1217 return false;
1218}
1219
Richard Henderson2f9f08b2021-08-25 12:03:48 -07001220static bool fold_eqv(OptContext *ctx, TCGOp *op)
1221{
Richard Henderson0e0a32b2021-08-24 13:18:01 -07001222 if (fold_const2(ctx, op) ||
Richard Hendersona63ce0e2021-08-25 20:28:53 -07001223 fold_xi_to_x(ctx, op, -1) ||
Richard Henderson0e0a32b2021-08-24 13:18:01 -07001224 fold_xi_to_not(ctx, op, 0)) {
1225 return true;
1226 }
1227 return false;
Richard Henderson2f9f08b2021-08-25 12:03:48 -07001228}
1229
Richard Hendersonb6617c82021-08-24 10:44:53 -07001230static bool fold_extract(OptContext *ctx, TCGOp *op)
1231{
Richard Hendersonfae450b2021-08-25 22:42:19 -07001232 uint64_t z_mask_old, z_mask;
1233
Richard Hendersonb6617c82021-08-24 10:44:53 -07001234 if (arg_is_const(op->args[1])) {
1235 uint64_t t;
1236
1237 t = arg_info(op->args[1])->val;
1238 t = extract64(t, op->args[2], op->args[3]);
1239 return tcg_opt_gen_movi(ctx, op, op->args[0], t);
1240 }
Richard Hendersonfae450b2021-08-25 22:42:19 -07001241
1242 z_mask_old = arg_info(op->args[1])->z_mask;
1243 z_mask = extract64(z_mask_old, op->args[2], op->args[3]);
1244 if (op->args[2] == 0) {
1245 ctx->a_mask = z_mask_old ^ z_mask;
1246 }
1247 ctx->z_mask = z_mask;
1248
1249 return fold_masks(ctx, op);
Richard Hendersonb6617c82021-08-24 10:44:53 -07001250}
1251
Richard Hendersondcd08992021-08-24 10:41:39 -07001252static bool fold_extract2(OptContext *ctx, TCGOp *op)
1253{
1254 if (arg_is_const(op->args[1]) && arg_is_const(op->args[2])) {
1255 uint64_t v1 = arg_info(op->args[1])->val;
1256 uint64_t v2 = arg_info(op->args[2])->val;
1257 int shr = op->args[3];
1258
1259 if (op->opc == INDEX_op_extract2_i64) {
1260 v1 >>= shr;
1261 v2 <<= 64 - shr;
1262 } else {
1263 v1 = (uint32_t)v1 >> shr;
1264 v2 = (int32_t)v2 << (32 - shr);
1265 }
1266 return tcg_opt_gen_movi(ctx, op, op->args[0], v1 | v2);
1267 }
1268 return false;
1269}
1270
Richard Henderson2f9f08b2021-08-25 12:03:48 -07001271static bool fold_exts(OptContext *ctx, TCGOp *op)
1272{
Richard Hendersonfae450b2021-08-25 22:42:19 -07001273 uint64_t z_mask_old, z_mask, sign;
1274 bool type_change = false;
1275
1276 if (fold_const1(ctx, op)) {
1277 return true;
1278 }
1279
1280 z_mask_old = z_mask = arg_info(op->args[1])->z_mask;
1281
1282 switch (op->opc) {
1283 CASE_OP_32_64(ext8s):
1284 sign = INT8_MIN;
1285 z_mask = (uint8_t)z_mask;
1286 break;
1287 CASE_OP_32_64(ext16s):
1288 sign = INT16_MIN;
1289 z_mask = (uint16_t)z_mask;
1290 break;
1291 case INDEX_op_ext_i32_i64:
1292 type_change = true;
1293 QEMU_FALLTHROUGH;
1294 case INDEX_op_ext32s_i64:
1295 sign = INT32_MIN;
1296 z_mask = (uint32_t)z_mask;
1297 break;
1298 default:
1299 g_assert_not_reached();
1300 }
1301
1302 if (z_mask & sign) {
1303 z_mask |= sign;
1304 } else if (!type_change) {
1305 ctx->a_mask = z_mask_old ^ z_mask;
1306 }
1307 ctx->z_mask = z_mask;
1308
1309 return fold_masks(ctx, op);
Richard Henderson2f9f08b2021-08-25 12:03:48 -07001310}
1311
1312static bool fold_extu(OptContext *ctx, TCGOp *op)
1313{
Richard Hendersonfae450b2021-08-25 22:42:19 -07001314 uint64_t z_mask_old, z_mask;
1315 bool type_change = false;
1316
1317 if (fold_const1(ctx, op)) {
1318 return true;
1319 }
1320
1321 z_mask_old = z_mask = arg_info(op->args[1])->z_mask;
1322
1323 switch (op->opc) {
1324 CASE_OP_32_64(ext8u):
1325 z_mask = (uint8_t)z_mask;
1326 break;
1327 CASE_OP_32_64(ext16u):
1328 z_mask = (uint16_t)z_mask;
1329 break;
1330 case INDEX_op_extrl_i64_i32:
1331 case INDEX_op_extu_i32_i64:
1332 type_change = true;
1333 QEMU_FALLTHROUGH;
1334 case INDEX_op_ext32u_i64:
1335 z_mask = (uint32_t)z_mask;
1336 break;
1337 case INDEX_op_extrh_i64_i32:
1338 type_change = true;
1339 z_mask >>= 32;
1340 break;
1341 default:
1342 g_assert_not_reached();
1343 }
1344
1345 ctx->z_mask = z_mask;
1346 if (!type_change) {
1347 ctx->a_mask = z_mask_old ^ z_mask;
1348 }
1349 return fold_masks(ctx, op);
Richard Henderson2f9f08b2021-08-25 12:03:48 -07001350}
1351
Richard Henderson3eefdf22021-08-25 11:06:43 -07001352static bool fold_mb(OptContext *ctx, TCGOp *op)
1353{
1354 /* Eliminate duplicate and redundant fence instructions. */
1355 if (ctx->prev_mb) {
1356 /*
1357 * Merge two barriers of the same type into one,
1358 * or a weaker barrier into a stronger one,
1359 * or two weaker barriers into a stronger one.
1360 * mb X; mb Y => mb X|Y
1361 * mb; strl => mb; st
1362 * ldaq; mb => ld; mb
1363 * ldaq; strl => ld; mb; st
1364 * Other combinations are also merged into a strong
1365 * barrier. This is stricter than specified but for
1366 * the purposes of TCG is better than not optimizing.
1367 */
1368 ctx->prev_mb->args[0] |= op->args[0];
1369 tcg_op_remove(ctx->tcg, op);
1370 } else {
1371 ctx->prev_mb = op;
1372 }
1373 return true;
1374}
1375
Richard Henderson2cfac7f2021-08-25 13:05:43 -07001376static bool fold_mov(OptContext *ctx, TCGOp *op)
1377{
1378 return tcg_opt_gen_mov(ctx, op, op->args[0], op->args[1]);
1379}
1380
Richard Henderson0c310a32021-08-24 10:37:24 -07001381static bool fold_movcond(OptContext *ctx, TCGOp *op)
1382{
Richard Henderson0c310a32021-08-24 10:37:24 -07001383 TCGCond cond = op->args[5];
Richard Henderson67f84c92021-08-25 08:00:20 -07001384 int i = do_constant_folding_cond(ctx->type, op->args[1], op->args[2], cond);
Richard Henderson0c310a32021-08-24 10:37:24 -07001385
1386 if (i >= 0) {
1387 return tcg_opt_gen_mov(ctx, op, op->args[0], op->args[4 - i]);
1388 }
1389
Richard Hendersonfae450b2021-08-25 22:42:19 -07001390 ctx->z_mask = arg_info(op->args[3])->z_mask
1391 | arg_info(op->args[4])->z_mask;
1392
Richard Henderson0c310a32021-08-24 10:37:24 -07001393 if (arg_is_const(op->args[3]) && arg_is_const(op->args[4])) {
1394 uint64_t tv = arg_info(op->args[3])->val;
1395 uint64_t fv = arg_info(op->args[4])->val;
Richard Henderson67f84c92021-08-25 08:00:20 -07001396 TCGOpcode opc;
Richard Henderson0c310a32021-08-24 10:37:24 -07001397
Richard Henderson67f84c92021-08-25 08:00:20 -07001398 switch (ctx->type) {
1399 case TCG_TYPE_I32:
1400 opc = INDEX_op_setcond_i32;
1401 break;
1402 case TCG_TYPE_I64:
1403 opc = INDEX_op_setcond_i64;
1404 break;
1405 default:
1406 g_assert_not_reached();
1407 }
Richard Henderson0c310a32021-08-24 10:37:24 -07001408
1409 if (tv == 1 && fv == 0) {
1410 op->opc = opc;
1411 op->args[3] = cond;
1412 } else if (fv == 1 && tv == 0) {
1413 op->opc = opc;
1414 op->args[3] = tcg_invert_cond(cond);
1415 }
1416 }
1417 return false;
1418}
1419
Richard Henderson2f9f08b2021-08-25 12:03:48 -07001420static bool fold_mul(OptContext *ctx, TCGOp *op)
1421{
Richard Hendersone8679952021-08-25 13:19:52 -07001422 if (fold_const2(ctx, op) ||
1423 fold_xi_to_i(ctx, op, 0)) {
1424 return true;
1425 }
1426 return false;
Richard Henderson2f9f08b2021-08-25 12:03:48 -07001427}
1428
1429static bool fold_mul_highpart(OptContext *ctx, TCGOp *op)
1430{
Richard Hendersone8679952021-08-25 13:19:52 -07001431 if (fold_const2(ctx, op) ||
1432 fold_xi_to_i(ctx, op, 0)) {
1433 return true;
1434 }
1435 return false;
Richard Henderson2f9f08b2021-08-25 12:03:48 -07001436}
1437
Richard Henderson407112b2021-08-26 06:33:04 -07001438static bool fold_multiply2(OptContext *ctx, TCGOp *op)
Richard Henderson6b8ac0d2021-08-24 10:24:12 -07001439{
1440 if (arg_is_const(op->args[2]) && arg_is_const(op->args[3])) {
Richard Henderson407112b2021-08-26 06:33:04 -07001441 uint64_t a = arg_info(op->args[2])->val;
1442 uint64_t b = arg_info(op->args[3])->val;
1443 uint64_t h, l;
Richard Henderson6b8ac0d2021-08-24 10:24:12 -07001444 TCGArg rl, rh;
Richard Henderson407112b2021-08-26 06:33:04 -07001445 TCGOp *op2;
1446
1447 switch (op->opc) {
1448 case INDEX_op_mulu2_i32:
1449 l = (uint64_t)(uint32_t)a * (uint32_t)b;
1450 h = (int32_t)(l >> 32);
1451 l = (int32_t)l;
1452 break;
1453 case INDEX_op_muls2_i32:
1454 l = (int64_t)(int32_t)a * (int32_t)b;
1455 h = l >> 32;
1456 l = (int32_t)l;
1457 break;
1458 case INDEX_op_mulu2_i64:
1459 mulu64(&l, &h, a, b);
1460 break;
1461 case INDEX_op_muls2_i64:
1462 muls64(&l, &h, a, b);
1463 break;
1464 default:
1465 g_assert_not_reached();
1466 }
Richard Henderson6b8ac0d2021-08-24 10:24:12 -07001467
1468 rl = op->args[0];
1469 rh = op->args[1];
Richard Henderson407112b2021-08-26 06:33:04 -07001470
1471 /* The proper opcode is supplied by tcg_opt_gen_mov. */
1472 op2 = tcg_op_insert_before(ctx->tcg, op, 0);
1473
1474 tcg_opt_gen_movi(ctx, op, rl, l);
1475 tcg_opt_gen_movi(ctx, op2, rh, h);
Richard Henderson6b8ac0d2021-08-24 10:24:12 -07001476 return true;
1477 }
1478 return false;
1479}
1480
Richard Henderson2f9f08b2021-08-25 12:03:48 -07001481static bool fold_nand(OptContext *ctx, TCGOp *op)
1482{
Richard Henderson0e0a32b2021-08-24 13:18:01 -07001483 if (fold_const2(ctx, op) ||
1484 fold_xi_to_not(ctx, op, -1)) {
1485 return true;
1486 }
1487 return false;
Richard Henderson2f9f08b2021-08-25 12:03:48 -07001488}
1489
1490static bool fold_neg(OptContext *ctx, TCGOp *op)
1491{
Richard Hendersonfae450b2021-08-25 22:42:19 -07001492 uint64_t z_mask;
1493
Richard Henderson9caca882021-08-24 13:30:32 -07001494 if (fold_const1(ctx, op)) {
1495 return true;
1496 }
Richard Hendersonfae450b2021-08-25 22:42:19 -07001497
1498 /* Set to 1 all bits to the left of the rightmost. */
1499 z_mask = arg_info(op->args[1])->z_mask;
1500 ctx->z_mask = -(z_mask & -z_mask);
1501
Richard Henderson9caca882021-08-24 13:30:32 -07001502 /*
1503 * Because of fold_sub_to_neg, we want to always return true,
1504 * via finish_folding.
1505 */
1506 finish_folding(ctx, op);
1507 return true;
Richard Henderson2f9f08b2021-08-25 12:03:48 -07001508}
1509
1510static bool fold_nor(OptContext *ctx, TCGOp *op)
1511{
Richard Henderson0e0a32b2021-08-24 13:18:01 -07001512 if (fold_const2(ctx, op) ||
1513 fold_xi_to_not(ctx, op, 0)) {
1514 return true;
1515 }
1516 return false;
Richard Henderson2f9f08b2021-08-25 12:03:48 -07001517}
1518
1519static bool fold_not(OptContext *ctx, TCGOp *op)
1520{
Richard Henderson0e0a32b2021-08-24 13:18:01 -07001521 if (fold_const1(ctx, op)) {
1522 return true;
1523 }
1524
1525 /* Because of fold_to_not, we want to always return true, via finish. */
1526 finish_folding(ctx, op);
1527 return true;
Richard Henderson2f9f08b2021-08-25 12:03:48 -07001528}
1529
1530static bool fold_or(OptContext *ctx, TCGOp *op)
1531{
Richard Hendersonca7bb042021-08-25 13:14:21 -07001532 if (fold_const2(ctx, op) ||
Richard Hendersona63ce0e2021-08-25 20:28:53 -07001533 fold_xi_to_x(ctx, op, 0) ||
Richard Hendersonca7bb042021-08-25 13:14:21 -07001534 fold_xx_to_x(ctx, op)) {
1535 return true;
1536 }
Richard Hendersonfae450b2021-08-25 22:42:19 -07001537
1538 ctx->z_mask = arg_info(op->args[1])->z_mask
1539 | arg_info(op->args[2])->z_mask;
1540 return fold_masks(ctx, op);
Richard Henderson2f9f08b2021-08-25 12:03:48 -07001541}
1542
1543static bool fold_orc(OptContext *ctx, TCGOp *op)
1544{
Richard Henderson0e0a32b2021-08-24 13:18:01 -07001545 if (fold_const2(ctx, op) ||
Richard Hendersona63ce0e2021-08-25 20:28:53 -07001546 fold_xi_to_x(ctx, op, -1) ||
Richard Henderson0e0a32b2021-08-24 13:18:01 -07001547 fold_ix_to_not(ctx, op, 0)) {
1548 return true;
1549 }
1550 return false;
Richard Henderson2f9f08b2021-08-25 12:03:48 -07001551}
1552
Richard Henderson3eefdf22021-08-25 11:06:43 -07001553static bool fold_qemu_ld(OptContext *ctx, TCGOp *op)
1554{
Richard Hendersonfae450b2021-08-25 22:42:19 -07001555 const TCGOpDef *def = &tcg_op_defs[op->opc];
1556 MemOpIdx oi = op->args[def->nb_oargs + def->nb_iargs];
1557 MemOp mop = get_memop(oi);
1558 int width = 8 * memop_size(mop);
1559
1560 if (!(mop & MO_SIGN) && width < 64) {
1561 ctx->z_mask = MAKE_64BIT_MASK(0, width);
1562 }
1563
Richard Henderson3eefdf22021-08-25 11:06:43 -07001564 /* Opcodes that touch guest memory stop the mb optimization. */
1565 ctx->prev_mb = NULL;
1566 return false;
1567}
1568
1569static bool fold_qemu_st(OptContext *ctx, TCGOp *op)
1570{
1571 /* Opcodes that touch guest memory stop the mb optimization. */
1572 ctx->prev_mb = NULL;
1573 return false;
1574}
1575
Richard Henderson2f9f08b2021-08-25 12:03:48 -07001576static bool fold_remainder(OptContext *ctx, TCGOp *op)
1577{
1578 return fold_const2(ctx, op);
1579}
1580
Richard Hendersonc63ff552021-08-24 09:35:30 -07001581static bool fold_setcond(OptContext *ctx, TCGOp *op)
1582{
1583 TCGCond cond = op->args[3];
Richard Henderson67f84c92021-08-25 08:00:20 -07001584 int i = do_constant_folding_cond(ctx->type, op->args[1], op->args[2], cond);
Richard Hendersonc63ff552021-08-24 09:35:30 -07001585
1586 if (i >= 0) {
1587 return tcg_opt_gen_movi(ctx, op, op->args[0], i);
1588 }
Richard Hendersonfae450b2021-08-25 22:42:19 -07001589
1590 ctx->z_mask = 1;
Richard Hendersonc63ff552021-08-24 09:35:30 -07001591 return false;
1592}
1593
Richard Hendersonbc47b1a2021-08-24 09:09:35 -07001594static bool fold_setcond2(OptContext *ctx, TCGOp *op)
1595{
1596 TCGCond cond = op->args[5];
1597 int i = do_constant_folding_cond2(&op->args[1], &op->args[3], cond);
1598 int inv = 0;
1599
1600 if (i >= 0) {
1601 goto do_setcond_const;
1602 }
1603
1604 switch (cond) {
1605 case TCG_COND_LT:
1606 case TCG_COND_GE:
1607 /*
1608 * Simplify LT/GE comparisons vs zero to a single compare
1609 * vs the high word of the input.
1610 */
1611 if (arg_is_const(op->args[3]) && arg_info(op->args[3])->val == 0 &&
1612 arg_is_const(op->args[4]) && arg_info(op->args[4])->val == 0) {
1613 goto do_setcond_high;
1614 }
1615 break;
1616
1617 case TCG_COND_NE:
1618 inv = 1;
1619 QEMU_FALLTHROUGH;
1620 case TCG_COND_EQ:
1621 /*
1622 * Simplify EQ/NE comparisons where one of the pairs
1623 * can be simplified.
1624 */
Richard Henderson67f84c92021-08-25 08:00:20 -07001625 i = do_constant_folding_cond(TCG_TYPE_I32, op->args[1],
Richard Hendersonbc47b1a2021-08-24 09:09:35 -07001626 op->args[3], cond);
1627 switch (i ^ inv) {
1628 case 0:
1629 goto do_setcond_const;
1630 case 1:
1631 goto do_setcond_high;
1632 }
1633
Richard Henderson67f84c92021-08-25 08:00:20 -07001634 i = do_constant_folding_cond(TCG_TYPE_I32, op->args[2],
Richard Hendersonbc47b1a2021-08-24 09:09:35 -07001635 op->args[4], cond);
1636 switch (i ^ inv) {
1637 case 0:
1638 goto do_setcond_const;
1639 case 1:
1640 op->args[2] = op->args[3];
1641 op->args[3] = cond;
1642 op->opc = INDEX_op_setcond_i32;
1643 break;
1644 }
1645 break;
1646
1647 default:
1648 break;
1649
1650 do_setcond_high:
1651 op->args[1] = op->args[2];
1652 op->args[2] = op->args[4];
1653 op->args[3] = cond;
1654 op->opc = INDEX_op_setcond_i32;
1655 break;
1656 }
Richard Hendersonfae450b2021-08-25 22:42:19 -07001657
1658 ctx->z_mask = 1;
Richard Hendersonbc47b1a2021-08-24 09:09:35 -07001659 return false;
1660
1661 do_setcond_const:
1662 return tcg_opt_gen_movi(ctx, op, op->args[0], i);
1663}
1664
Richard Hendersonb6617c82021-08-24 10:44:53 -07001665static bool fold_sextract(OptContext *ctx, TCGOp *op)
1666{
Richard Hendersonfae450b2021-08-25 22:42:19 -07001667 int64_t z_mask_old, z_mask;
1668
Richard Hendersonb6617c82021-08-24 10:44:53 -07001669 if (arg_is_const(op->args[1])) {
1670 uint64_t t;
1671
1672 t = arg_info(op->args[1])->val;
1673 t = sextract64(t, op->args[2], op->args[3]);
1674 return tcg_opt_gen_movi(ctx, op, op->args[0], t);
1675 }
Richard Hendersonfae450b2021-08-25 22:42:19 -07001676
1677 z_mask_old = arg_info(op->args[1])->z_mask;
1678 z_mask = sextract64(z_mask_old, op->args[2], op->args[3]);
1679 if (op->args[2] == 0 && z_mask >= 0) {
1680 ctx->a_mask = z_mask_old ^ z_mask;
1681 }
1682 ctx->z_mask = z_mask;
1683
1684 return fold_masks(ctx, op);
Richard Hendersonb6617c82021-08-24 10:44:53 -07001685}
1686
Richard Henderson2f9f08b2021-08-25 12:03:48 -07001687static bool fold_shift(OptContext *ctx, TCGOp *op)
1688{
Richard Hendersona63ce0e2021-08-25 20:28:53 -07001689 if (fold_const2(ctx, op) ||
Richard Hendersonda48e272021-08-25 20:42:04 -07001690 fold_ix_to_i(ctx, op, 0) ||
Richard Hendersona63ce0e2021-08-25 20:28:53 -07001691 fold_xi_to_x(ctx, op, 0)) {
1692 return true;
1693 }
Richard Hendersonfae450b2021-08-25 22:42:19 -07001694
1695 if (arg_is_const(op->args[2])) {
1696 ctx->z_mask = do_constant_folding(op->opc, ctx->type,
1697 arg_info(op->args[1])->z_mask,
1698 arg_info(op->args[2])->val);
1699 return fold_masks(ctx, op);
1700 }
Richard Hendersona63ce0e2021-08-25 20:28:53 -07001701 return false;
Richard Henderson2f9f08b2021-08-25 12:03:48 -07001702}
1703
Richard Henderson9caca882021-08-24 13:30:32 -07001704static bool fold_sub_to_neg(OptContext *ctx, TCGOp *op)
1705{
1706 TCGOpcode neg_op;
1707 bool have_neg;
1708
1709 if (!arg_is_const(op->args[1]) || arg_info(op->args[1])->val != 0) {
1710 return false;
1711 }
1712
1713 switch (ctx->type) {
1714 case TCG_TYPE_I32:
1715 neg_op = INDEX_op_neg_i32;
1716 have_neg = TCG_TARGET_HAS_neg_i32;
1717 break;
1718 case TCG_TYPE_I64:
1719 neg_op = INDEX_op_neg_i64;
1720 have_neg = TCG_TARGET_HAS_neg_i64;
1721 break;
1722 case TCG_TYPE_V64:
1723 case TCG_TYPE_V128:
1724 case TCG_TYPE_V256:
1725 neg_op = INDEX_op_neg_vec;
1726 have_neg = (TCG_TARGET_HAS_neg_vec &&
1727 tcg_can_emit_vec_op(neg_op, ctx->type, TCGOP_VECE(op)) > 0);
1728 break;
1729 default:
1730 g_assert_not_reached();
1731 }
1732 if (have_neg) {
1733 op->opc = neg_op;
1734 op->args[1] = op->args[2];
1735 return fold_neg(ctx, op);
1736 }
1737 return false;
1738}
1739
Richard Henderson2f9f08b2021-08-25 12:03:48 -07001740static bool fold_sub(OptContext *ctx, TCGOp *op)
1741{
Richard Hendersoncbe42fb2021-08-25 13:02:00 -07001742 if (fold_const2(ctx, op) ||
Richard Henderson9caca882021-08-24 13:30:32 -07001743 fold_xx_to_i(ctx, op, 0) ||
Richard Hendersona63ce0e2021-08-25 20:28:53 -07001744 fold_xi_to_x(ctx, op, 0) ||
Richard Henderson9caca882021-08-24 13:30:32 -07001745 fold_sub_to_neg(ctx, op)) {
Richard Hendersoncbe42fb2021-08-25 13:02:00 -07001746 return true;
1747 }
1748 return false;
Richard Henderson2f9f08b2021-08-25 12:03:48 -07001749}
1750
Richard Henderson9531c072021-08-26 06:51:39 -07001751static bool fold_sub2(OptContext *ctx, TCGOp *op)
Richard Hendersone3f7dc22021-08-24 10:30:38 -07001752{
Richard Henderson9531c072021-08-26 06:51:39 -07001753 return fold_addsub2(ctx, op, false);
Richard Hendersone3f7dc22021-08-24 10:30:38 -07001754}
1755
Richard Hendersonfae450b2021-08-25 22:42:19 -07001756static bool fold_tcg_ld(OptContext *ctx, TCGOp *op)
1757{
1758 /* We can't do any folding with a load, but we can record bits. */
1759 switch (op->opc) {
1760 CASE_OP_32_64(ld8u):
1761 ctx->z_mask = MAKE_64BIT_MASK(0, 8);
1762 break;
1763 CASE_OP_32_64(ld16u):
1764 ctx->z_mask = MAKE_64BIT_MASK(0, 16);
1765 break;
1766 case INDEX_op_ld32u_i64:
1767 ctx->z_mask = MAKE_64BIT_MASK(0, 32);
1768 break;
1769 default:
1770 g_assert_not_reached();
1771 }
1772 return false;
1773}
1774
Richard Henderson2f9f08b2021-08-25 12:03:48 -07001775static bool fold_xor(OptContext *ctx, TCGOp *op)
1776{
Richard Hendersoncbe42fb2021-08-25 13:02:00 -07001777 if (fold_const2(ctx, op) ||
Richard Henderson0e0a32b2021-08-24 13:18:01 -07001778 fold_xx_to_i(ctx, op, 0) ||
Richard Hendersona63ce0e2021-08-25 20:28:53 -07001779 fold_xi_to_x(ctx, op, 0) ||
Richard Henderson0e0a32b2021-08-24 13:18:01 -07001780 fold_xi_to_not(ctx, op, -1)) {
Richard Hendersoncbe42fb2021-08-25 13:02:00 -07001781 return true;
1782 }
Richard Hendersonfae450b2021-08-25 22:42:19 -07001783
1784 ctx->z_mask = arg_info(op->args[1])->z_mask
1785 | arg_info(op->args[2])->z_mask;
1786 return fold_masks(ctx, op);
Richard Henderson2f9f08b2021-08-25 12:03:48 -07001787}
1788
Kirill Batuzov22613af2011-07-07 16:37:13 +04001789/* Propagate constants and copies, fold constant expressions. */
Aurelien Jarno36e60ef2015-06-04 21:53:27 +02001790void tcg_optimize(TCGContext *s)
Kirill Batuzov8f2e8c02011-07-07 16:37:12 +04001791{
Richard Henderson5cf32be2021-08-24 08:17:08 -07001792 int nb_temps, i;
Richard Hendersond0ed5152021-08-24 07:38:39 -07001793 TCGOp *op, *op_next;
Richard Hendersondc849882021-08-24 07:13:45 -07001794 OptContext ctx = { .tcg = s };
Richard Henderson5d8f5362012-09-21 10:13:38 -07001795
Kirill Batuzov22613af2011-07-07 16:37:13 +04001796 /* Array VALS has an element for each temp.
1797 If this temp holds a constant then its value is kept in VALS' element.
Aurelien Jarnoe590d4e2012-09-11 12:31:21 +02001798 If this temp is a copy of other ones then the other copies are
1799 available through the doubly linked circular list. */
Kirill Batuzov8f2e8c02011-07-07 16:37:12 +04001800
1801 nb_temps = s->nb_temps;
Richard Henderson8f17a972020-03-30 19:52:02 -07001802 for (i = 0; i < nb_temps; ++i) {
1803 s->temps[i].state_ptr = NULL;
1804 }
Kirill Batuzov8f2e8c02011-07-07 16:37:12 +04001805
Richard Henderson15fa08f2017-11-02 15:19:14 +01001806 QTAILQ_FOREACH_SAFE(op, &s->ops, link, op_next) {
Richard Hendersonc45cb8b2014-09-19 13:49:15 -07001807 TCGOpcode opc = op->opc;
Richard Henderson5cf32be2021-08-24 08:17:08 -07001808 const TCGOpDef *def;
Richard Henderson404a1482021-08-24 11:08:21 -07001809 bool done = false;
Richard Hendersonc45cb8b2014-09-19 13:49:15 -07001810
Richard Henderson5cf32be2021-08-24 08:17:08 -07001811 /* Calls are special. */
Richard Hendersonc45cb8b2014-09-19 13:49:15 -07001812 if (opc == INDEX_op_call) {
Richard Henderson5cf32be2021-08-24 08:17:08 -07001813 fold_call(&ctx, op);
1814 continue;
Richard Hendersoncf066672014-03-22 20:06:52 -07001815 }
Richard Henderson5cf32be2021-08-24 08:17:08 -07001816
1817 def = &tcg_op_defs[opc];
Richard Hendersonec5d4cb2021-08-24 08:20:27 -07001818 init_arguments(&ctx, op, def->nb_oargs + def->nb_iargs);
1819 copy_propagate(&ctx, op, def->nb_oargs, def->nb_iargs);
Kirill Batuzov22613af2011-07-07 16:37:13 +04001820
Richard Henderson67f84c92021-08-25 08:00:20 -07001821 /* Pre-compute the type of the operation. */
1822 if (def->flags & TCG_OPF_VECTOR) {
1823 ctx.type = TCG_TYPE_V64 + TCGOP_VECL(op);
1824 } else if (def->flags & TCG_OPF_64BIT) {
1825 ctx.type = TCG_TYPE_I64;
1826 } else {
1827 ctx.type = TCG_TYPE_I32;
1828 }
1829
Kirill Batuzov53108fb2011-07-07 16:37:14 +04001830 /* For commutative operations make constant second argument */
Richard Hendersonc45cb8b2014-09-19 13:49:15 -07001831 switch (opc) {
Richard Henderson170ba882017-11-22 09:07:11 +01001832 CASE_OP_32_64_VEC(add):
1833 CASE_OP_32_64_VEC(mul):
1834 CASE_OP_32_64_VEC(and):
1835 CASE_OP_32_64_VEC(or):
1836 CASE_OP_32_64_VEC(xor):
Richard Hendersoncb25c802011-08-17 14:11:47 -07001837 CASE_OP_32_64(eqv):
1838 CASE_OP_32_64(nand):
1839 CASE_OP_32_64(nor):
Richard Henderson03271522013-08-14 14:35:56 -07001840 CASE_OP_32_64(muluh):
1841 CASE_OP_32_64(mulsh):
Richard Hendersonacd93702016-12-08 12:28:42 -08001842 swap_commutative(op->args[0], &op->args[1], &op->args[2]);
Kirill Batuzov53108fb2011-07-07 16:37:14 +04001843 break;
Aurelien Jarno65a7cce2012-09-06 16:47:14 +02001844 CASE_OP_32_64(brcond):
Richard Hendersonacd93702016-12-08 12:28:42 -08001845 if (swap_commutative(-1, &op->args[0], &op->args[1])) {
1846 op->args[2] = tcg_swap_cond(op->args[2]);
Aurelien Jarno65a7cce2012-09-06 16:47:14 +02001847 }
1848 break;
1849 CASE_OP_32_64(setcond):
Richard Hendersonacd93702016-12-08 12:28:42 -08001850 if (swap_commutative(op->args[0], &op->args[1], &op->args[2])) {
1851 op->args[3] = tcg_swap_cond(op->args[3]);
Aurelien Jarno65a7cce2012-09-06 16:47:14 +02001852 }
1853 break;
Richard Hendersonfa01a202012-09-21 10:13:37 -07001854 CASE_OP_32_64(movcond):
Richard Hendersonacd93702016-12-08 12:28:42 -08001855 if (swap_commutative(-1, &op->args[1], &op->args[2])) {
1856 op->args[5] = tcg_swap_cond(op->args[5]);
Richard Hendersonfa01a202012-09-21 10:13:37 -07001857 }
Richard Henderson5d8f5362012-09-21 10:13:38 -07001858 /* For movcond, we canonicalize the "false" input reg to match
1859 the destination reg so that the tcg backend can implement
1860 a "move if true" operation. */
Richard Hendersonacd93702016-12-08 12:28:42 -08001861 if (swap_commutative(op->args[0], &op->args[4], &op->args[3])) {
1862 op->args[5] = tcg_invert_cond(op->args[5]);
Richard Henderson5d8f5362012-09-21 10:13:38 -07001863 }
Richard Henderson1e484e62012-10-02 11:32:22 -07001864 break;
Richard Hendersond7156f72013-02-19 23:51:52 -08001865 CASE_OP_32_64(add2):
Richard Hendersonacd93702016-12-08 12:28:42 -08001866 swap_commutative(op->args[0], &op->args[2], &op->args[4]);
1867 swap_commutative(op->args[1], &op->args[3], &op->args[5]);
Richard Henderson1e484e62012-10-02 11:32:22 -07001868 break;
Richard Hendersond7156f72013-02-19 23:51:52 -08001869 CASE_OP_32_64(mulu2):
Richard Henderson4d3203f2013-02-19 23:51:53 -08001870 CASE_OP_32_64(muls2):
Richard Hendersonacd93702016-12-08 12:28:42 -08001871 swap_commutative(op->args[0], &op->args[2], &op->args[3]);
Richard Henderson14149682012-10-02 11:32:30 -07001872 break;
Richard Henderson0bfcb862012-10-02 11:32:23 -07001873 case INDEX_op_brcond2_i32:
Richard Hendersonacd93702016-12-08 12:28:42 -08001874 if (swap_commutative2(&op->args[0], &op->args[2])) {
1875 op->args[4] = tcg_swap_cond(op->args[4]);
Richard Henderson0bfcb862012-10-02 11:32:23 -07001876 }
1877 break;
1878 case INDEX_op_setcond2_i32:
Richard Hendersonacd93702016-12-08 12:28:42 -08001879 if (swap_commutative2(&op->args[1], &op->args[3])) {
1880 op->args[5] = tcg_swap_cond(op->args[5]);
Richard Henderson0bfcb862012-10-02 11:32:23 -07001881 }
1882 break;
Kirill Batuzov53108fb2011-07-07 16:37:14 +04001883 default:
1884 break;
1885 }
1886
Richard Hendersonfae450b2021-08-25 22:42:19 -07001887 /* Assume all bits affected, and no bits known zero. */
1888 ctx.a_mask = -1;
1889 ctx.z_mask = -1;
Paolo Bonzini633f6502013-01-11 15:42:53 -08001890
Richard Henderson2cfac7f2021-08-25 13:05:43 -07001891 /*
1892 * Process each opcode.
1893 * Sorted alphabetically by opcode as much as possible.
1894 */
Richard Hendersonc45cb8b2014-09-19 13:49:15 -07001895 switch (opc) {
Richard Henderson2f9f08b2021-08-25 12:03:48 -07001896 CASE_OP_32_64_VEC(add):
1897 done = fold_add(&ctx, op);
1898 break;
Richard Henderson9531c072021-08-26 06:51:39 -07001899 CASE_OP_32_64(add2):
1900 done = fold_add2(&ctx, op);
Richard Hendersone3f7dc22021-08-24 10:30:38 -07001901 break;
Richard Henderson2f9f08b2021-08-25 12:03:48 -07001902 CASE_OP_32_64_VEC(and):
1903 done = fold_and(&ctx, op);
1904 break;
1905 CASE_OP_32_64_VEC(andc):
1906 done = fold_andc(&ctx, op);
1907 break;
Richard Henderson079b0802021-08-24 09:30:59 -07001908 CASE_OP_32_64(brcond):
1909 done = fold_brcond(&ctx, op);
1910 break;
Richard Henderson764d2ab2021-08-24 09:22:11 -07001911 case INDEX_op_brcond2_i32:
1912 done = fold_brcond2(&ctx, op);
1913 break;
Richard Henderson09bacdc2021-08-24 11:58:12 -07001914 CASE_OP_32_64(bswap16):
1915 CASE_OP_32_64(bswap32):
1916 case INDEX_op_bswap64_i64:
1917 done = fold_bswap(&ctx, op);
1918 break;
Richard Henderson30dd0bf2021-08-24 10:51:34 -07001919 CASE_OP_32_64(clz):
1920 CASE_OP_32_64(ctz):
1921 done = fold_count_zeros(&ctx, op);
1922 break;
Richard Henderson2f9f08b2021-08-25 12:03:48 -07001923 CASE_OP_32_64(ctpop):
1924 done = fold_ctpop(&ctx, op);
1925 break;
Richard Henderson1b1907b2021-08-24 10:47:04 -07001926 CASE_OP_32_64(deposit):
1927 done = fold_deposit(&ctx, op);
1928 break;
Richard Henderson2f9f08b2021-08-25 12:03:48 -07001929 CASE_OP_32_64(div):
1930 CASE_OP_32_64(divu):
1931 done = fold_divide(&ctx, op);
1932 break;
Richard Henderson8cdb3fc2021-08-24 12:06:33 -07001933 case INDEX_op_dup_vec:
1934 done = fold_dup(&ctx, op);
1935 break;
1936 case INDEX_op_dup2_vec:
1937 done = fold_dup2(&ctx, op);
1938 break;
Richard Henderson2f9f08b2021-08-25 12:03:48 -07001939 CASE_OP_32_64(eqv):
1940 done = fold_eqv(&ctx, op);
1941 break;
Richard Hendersonb6617c82021-08-24 10:44:53 -07001942 CASE_OP_32_64(extract):
1943 done = fold_extract(&ctx, op);
1944 break;
Richard Hendersondcd08992021-08-24 10:41:39 -07001945 CASE_OP_32_64(extract2):
1946 done = fold_extract2(&ctx, op);
1947 break;
Richard Henderson2f9f08b2021-08-25 12:03:48 -07001948 CASE_OP_32_64(ext8s):
1949 CASE_OP_32_64(ext16s):
1950 case INDEX_op_ext32s_i64:
1951 case INDEX_op_ext_i32_i64:
1952 done = fold_exts(&ctx, op);
1953 break;
1954 CASE_OP_32_64(ext8u):
1955 CASE_OP_32_64(ext16u):
1956 case INDEX_op_ext32u_i64:
1957 case INDEX_op_extu_i32_i64:
1958 case INDEX_op_extrl_i64_i32:
1959 case INDEX_op_extrh_i64_i32:
1960 done = fold_extu(&ctx, op);
1961 break;
Richard Hendersonfae450b2021-08-25 22:42:19 -07001962 CASE_OP_32_64(ld8u):
1963 CASE_OP_32_64(ld16u):
1964 case INDEX_op_ld32u_i64:
1965 done = fold_tcg_ld(&ctx, op);
1966 break;
Richard Henderson3eefdf22021-08-25 11:06:43 -07001967 case INDEX_op_mb:
1968 done = fold_mb(&ctx, op);
1969 break;
Richard Henderson2cfac7f2021-08-25 13:05:43 -07001970 CASE_OP_32_64_VEC(mov):
1971 done = fold_mov(&ctx, op);
1972 break;
Richard Henderson0c310a32021-08-24 10:37:24 -07001973 CASE_OP_32_64(movcond):
1974 done = fold_movcond(&ctx, op);
1975 break;
Richard Henderson2f9f08b2021-08-25 12:03:48 -07001976 CASE_OP_32_64(mul):
1977 done = fold_mul(&ctx, op);
1978 break;
1979 CASE_OP_32_64(mulsh):
1980 CASE_OP_32_64(muluh):
1981 done = fold_mul_highpart(&ctx, op);
1982 break;
Richard Henderson407112b2021-08-26 06:33:04 -07001983 CASE_OP_32_64(muls2):
1984 CASE_OP_32_64(mulu2):
1985 done = fold_multiply2(&ctx, op);
Richard Henderson6b8ac0d2021-08-24 10:24:12 -07001986 break;
Richard Henderson2f9f08b2021-08-25 12:03:48 -07001987 CASE_OP_32_64(nand):
1988 done = fold_nand(&ctx, op);
1989 break;
1990 CASE_OP_32_64(neg):
1991 done = fold_neg(&ctx, op);
1992 break;
1993 CASE_OP_32_64(nor):
1994 done = fold_nor(&ctx, op);
1995 break;
1996 CASE_OP_32_64_VEC(not):
1997 done = fold_not(&ctx, op);
1998 break;
1999 CASE_OP_32_64_VEC(or):
2000 done = fold_or(&ctx, op);
2001 break;
2002 CASE_OP_32_64_VEC(orc):
2003 done = fold_orc(&ctx, op);
2004 break;
Richard Henderson3eefdf22021-08-25 11:06:43 -07002005 case INDEX_op_qemu_ld_i32:
2006 case INDEX_op_qemu_ld_i64:
2007 done = fold_qemu_ld(&ctx, op);
2008 break;
2009 case INDEX_op_qemu_st_i32:
2010 case INDEX_op_qemu_st8_i32:
2011 case INDEX_op_qemu_st_i64:
2012 done = fold_qemu_st(&ctx, op);
2013 break;
Richard Henderson2f9f08b2021-08-25 12:03:48 -07002014 CASE_OP_32_64(rem):
2015 CASE_OP_32_64(remu):
2016 done = fold_remainder(&ctx, op);
2017 break;
2018 CASE_OP_32_64(rotl):
2019 CASE_OP_32_64(rotr):
2020 CASE_OP_32_64(sar):
2021 CASE_OP_32_64(shl):
2022 CASE_OP_32_64(shr):
2023 done = fold_shift(&ctx, op);
2024 break;
Richard Hendersonc63ff552021-08-24 09:35:30 -07002025 CASE_OP_32_64(setcond):
2026 done = fold_setcond(&ctx, op);
2027 break;
Richard Hendersonbc47b1a2021-08-24 09:09:35 -07002028 case INDEX_op_setcond2_i32:
2029 done = fold_setcond2(&ctx, op);
2030 break;
Richard Hendersonb6617c82021-08-24 10:44:53 -07002031 CASE_OP_32_64(sextract):
2032 done = fold_sextract(&ctx, op);
2033 break;
Richard Henderson2f9f08b2021-08-25 12:03:48 -07002034 CASE_OP_32_64_VEC(sub):
2035 done = fold_sub(&ctx, op);
2036 break;
Richard Henderson9531c072021-08-26 06:51:39 -07002037 CASE_OP_32_64(sub2):
2038 done = fold_sub2(&ctx, op);
Richard Hendersone3f7dc22021-08-24 10:30:38 -07002039 break;
Richard Henderson2f9f08b2021-08-25 12:03:48 -07002040 CASE_OP_32_64_VEC(xor):
2041 done = fold_xor(&ctx, op);
Richard Hendersonb10f3832021-08-23 22:30:17 -07002042 break;
Richard Henderson2cfac7f2021-08-25 13:05:43 -07002043 default:
2044 break;
Richard Hendersonb10f3832021-08-23 22:30:17 -07002045 }
2046
Richard Henderson404a1482021-08-24 11:08:21 -07002047 if (!done) {
2048 finish_folding(&ctx, op);
2049 }
Kirill Batuzov8f2e8c02011-07-07 16:37:12 +04002050 }
Kirill Batuzov8f2e8c02011-07-07 16:37:12 +04002051}