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Commit | Line | Data |
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c896fe29 FB |
1 | /* |
2 | * Tiny Code Generator for QEMU | |
3 | * | |
4 | * Copyright (c) 2008 Fabrice Bellard | |
5 | * | |
6 | * Permission is hereby granted, free of charge, to any person obtaining a copy | |
7 | * of this software and associated documentation files (the "Software"), to deal | |
8 | * in the Software without restriction, including without limitation the rights | |
9 | * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell | |
10 | * copies of the Software, and to permit persons to whom the Software is | |
11 | * furnished to do so, subject to the following conditions: | |
12 | * | |
13 | * The above copyright notice and this permission notice shall be included in | |
14 | * all copies or substantial portions of the Software. | |
15 | * | |
16 | * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR | |
17 | * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, | |
18 | * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL | |
19 | * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER | |
20 | * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, | |
21 | * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN | |
22 | * THE SOFTWARE. | |
23 | */ | |
e58eb534 RH |
24 | |
25 | #ifndef TCG_H | |
26 | #define TCG_H | |
27 | ||
f8393946 | 28 | #include "qemu-common.h" |
33c11879 | 29 | #include "cpu.h" |
00f6da6a | 30 | #include "exec/tb-context.h" |
0ec9eabc | 31 | #include "qemu/bitops.h" |
15fa08f8 | 32 | #include "qemu/queue.h" |
20937143 | 33 | #include "tcg-mo.h" |
78cd7b83 RH |
34 | #include "tcg-target.h" |
35 | ||
00f6da6a PB |
36 | /* XXX: make safe guess about sizes */ |
37 | #define MAX_OP_PER_INSTR 266 | |
38 | ||
39 | #if HOST_LONG_BITS == 32 | |
40 | #define MAX_OPC_PARAM_PER_ARG 2 | |
41 | #else | |
42 | #define MAX_OPC_PARAM_PER_ARG 1 | |
43 | #endif | |
1df3caa9 | 44 | #define MAX_OPC_PARAM_IARGS 6 |
00f6da6a PB |
45 | #define MAX_OPC_PARAM_OARGS 1 |
46 | #define MAX_OPC_PARAM_ARGS (MAX_OPC_PARAM_IARGS + MAX_OPC_PARAM_OARGS) | |
47 | ||
48 | /* A Call op needs up to 4 + 2N parameters on 32-bit archs, | |
49 | * and up to 4 + N parameters on 64-bit archs | |
50 | * (N = number of input arguments + output arguments). */ | |
51 | #define MAX_OPC_PARAM (4 + (MAX_OPC_PARAM_PER_ARG * MAX_OPC_PARAM_ARGS)) | |
00f6da6a | 52 | |
6e0b0730 PC |
53 | #define CPU_TEMP_BUF_NLONGS 128 |
54 | ||
78cd7b83 RH |
55 | /* Default target word size to pointer size. */ |
56 | #ifndef TCG_TARGET_REG_BITS | |
57 | # if UINTPTR_MAX == UINT32_MAX | |
58 | # define TCG_TARGET_REG_BITS 32 | |
59 | # elif UINTPTR_MAX == UINT64_MAX | |
60 | # define TCG_TARGET_REG_BITS 64 | |
61 | # else | |
62 | # error Unknown pointer size for tcg target | |
63 | # endif | |
817b838e SW |
64 | #endif |
65 | ||
c896fe29 FB |
66 | #if TCG_TARGET_REG_BITS == 32 |
67 | typedef int32_t tcg_target_long; | |
68 | typedef uint32_t tcg_target_ulong; | |
69 | #define TCG_PRIlx PRIx32 | |
70 | #define TCG_PRIld PRId32 | |
71 | #elif TCG_TARGET_REG_BITS == 64 | |
72 | typedef int64_t tcg_target_long; | |
73 | typedef uint64_t tcg_target_ulong; | |
74 | #define TCG_PRIlx PRIx64 | |
75 | #define TCG_PRIld PRId64 | |
76 | #else | |
77 | #error unsupported | |
78 | #endif | |
79 | ||
8d4e9146 FK |
80 | /* Oversized TCG guests make things like MTTCG hard |
81 | * as we can't use atomics for cputlb updates. | |
82 | */ | |
83 | #if TARGET_LONG_BITS > TCG_TARGET_REG_BITS | |
84 | #define TCG_OVERSIZED_GUEST 1 | |
85 | #else | |
86 | #define TCG_OVERSIZED_GUEST 0 | |
87 | #endif | |
88 | ||
c896fe29 FB |
89 | #if TCG_TARGET_NB_REGS <= 32 |
90 | typedef uint32_t TCGRegSet; | |
91 | #elif TCG_TARGET_NB_REGS <= 64 | |
92 | typedef uint64_t TCGRegSet; | |
93 | #else | |
94 | #error unsupported | |
95 | #endif | |
96 | ||
25c4d9cc | 97 | #if TCG_TARGET_REG_BITS == 32 |
e6a72734 | 98 | /* Turn some undef macros into false macros. */ |
609ad705 RH |
99 | #define TCG_TARGET_HAS_extrl_i64_i32 0 |
100 | #define TCG_TARGET_HAS_extrh_i64_i32 0 | |
25c4d9cc | 101 | #define TCG_TARGET_HAS_div_i64 0 |
ca675f46 | 102 | #define TCG_TARGET_HAS_rem_i64 0 |
25c4d9cc RH |
103 | #define TCG_TARGET_HAS_div2_i64 0 |
104 | #define TCG_TARGET_HAS_rot_i64 0 | |
105 | #define TCG_TARGET_HAS_ext8s_i64 0 | |
106 | #define TCG_TARGET_HAS_ext16s_i64 0 | |
107 | #define TCG_TARGET_HAS_ext32s_i64 0 | |
108 | #define TCG_TARGET_HAS_ext8u_i64 0 | |
109 | #define TCG_TARGET_HAS_ext16u_i64 0 | |
110 | #define TCG_TARGET_HAS_ext32u_i64 0 | |
111 | #define TCG_TARGET_HAS_bswap16_i64 0 | |
112 | #define TCG_TARGET_HAS_bswap32_i64 0 | |
113 | #define TCG_TARGET_HAS_bswap64_i64 0 | |
114 | #define TCG_TARGET_HAS_neg_i64 0 | |
115 | #define TCG_TARGET_HAS_not_i64 0 | |
116 | #define TCG_TARGET_HAS_andc_i64 0 | |
117 | #define TCG_TARGET_HAS_orc_i64 0 | |
118 | #define TCG_TARGET_HAS_eqv_i64 0 | |
119 | #define TCG_TARGET_HAS_nand_i64 0 | |
120 | #define TCG_TARGET_HAS_nor_i64 0 | |
0e28d006 RH |
121 | #define TCG_TARGET_HAS_clz_i64 0 |
122 | #define TCG_TARGET_HAS_ctz_i64 0 | |
a768e4e9 | 123 | #define TCG_TARGET_HAS_ctpop_i64 0 |
25c4d9cc | 124 | #define TCG_TARGET_HAS_deposit_i64 0 |
7ec8bab3 RH |
125 | #define TCG_TARGET_HAS_extract_i64 0 |
126 | #define TCG_TARGET_HAS_sextract_i64 0 | |
ffc5ea09 | 127 | #define TCG_TARGET_HAS_movcond_i64 0 |
d7156f7c RH |
128 | #define TCG_TARGET_HAS_add2_i64 0 |
129 | #define TCG_TARGET_HAS_sub2_i64 0 | |
130 | #define TCG_TARGET_HAS_mulu2_i64 0 | |
4d3203fd | 131 | #define TCG_TARGET_HAS_muls2_i64 0 |
03271524 RH |
132 | #define TCG_TARGET_HAS_muluh_i64 0 |
133 | #define TCG_TARGET_HAS_mulsh_i64 0 | |
e6a72734 RH |
134 | /* Turn some undef macros into true macros. */ |
135 | #define TCG_TARGET_HAS_add2_i32 1 | |
136 | #define TCG_TARGET_HAS_sub2_i32 1 | |
25c4d9cc RH |
137 | #endif |
138 | ||
a4773324 JK |
139 | #ifndef TCG_TARGET_deposit_i32_valid |
140 | #define TCG_TARGET_deposit_i32_valid(ofs, len) 1 | |
141 | #endif | |
142 | #ifndef TCG_TARGET_deposit_i64_valid | |
143 | #define TCG_TARGET_deposit_i64_valid(ofs, len) 1 | |
144 | #endif | |
7ec8bab3 RH |
145 | #ifndef TCG_TARGET_extract_i32_valid |
146 | #define TCG_TARGET_extract_i32_valid(ofs, len) 1 | |
147 | #endif | |
148 | #ifndef TCG_TARGET_extract_i64_valid | |
149 | #define TCG_TARGET_extract_i64_valid(ofs, len) 1 | |
150 | #endif | |
a4773324 | 151 | |
25c4d9cc RH |
152 | /* Only one of DIV or DIV2 should be defined. */ |
153 | #if defined(TCG_TARGET_HAS_div_i32) | |
154 | #define TCG_TARGET_HAS_div2_i32 0 | |
155 | #elif defined(TCG_TARGET_HAS_div2_i32) | |
156 | #define TCG_TARGET_HAS_div_i32 0 | |
ca675f46 | 157 | #define TCG_TARGET_HAS_rem_i32 0 |
25c4d9cc RH |
158 | #endif |
159 | #if defined(TCG_TARGET_HAS_div_i64) | |
160 | #define TCG_TARGET_HAS_div2_i64 0 | |
161 | #elif defined(TCG_TARGET_HAS_div2_i64) | |
162 | #define TCG_TARGET_HAS_div_i64 0 | |
ca675f46 | 163 | #define TCG_TARGET_HAS_rem_i64 0 |
25c4d9cc RH |
164 | #endif |
165 | ||
df9ebea5 RH |
166 | /* For 32-bit targets, some sort of unsigned widening multiply is required. */ |
167 | #if TCG_TARGET_REG_BITS == 32 \ | |
168 | && !(defined(TCG_TARGET_HAS_mulu2_i32) \ | |
169 | || defined(TCG_TARGET_HAS_muluh_i32)) | |
170 | # error "Missing unsigned widening multiply" | |
171 | #endif | |
172 | ||
d2fd745f RH |
173 | #if !defined(TCG_TARGET_HAS_v64) \ |
174 | && !defined(TCG_TARGET_HAS_v128) \ | |
175 | && !defined(TCG_TARGET_HAS_v256) | |
176 | #define TCG_TARGET_MAYBE_vec 0 | |
177 | #define TCG_TARGET_HAS_neg_vec 0 | |
178 | #define TCG_TARGET_HAS_not_vec 0 | |
179 | #define TCG_TARGET_HAS_andc_vec 0 | |
180 | #define TCG_TARGET_HAS_orc_vec 0 | |
d0ec9796 RH |
181 | #define TCG_TARGET_HAS_shi_vec 0 |
182 | #define TCG_TARGET_HAS_shs_vec 0 | |
183 | #define TCG_TARGET_HAS_shv_vec 0 | |
3774030a | 184 | #define TCG_TARGET_HAS_mul_vec 0 |
d2fd745f RH |
185 | #else |
186 | #define TCG_TARGET_MAYBE_vec 1 | |
187 | #endif | |
188 | #ifndef TCG_TARGET_HAS_v64 | |
189 | #define TCG_TARGET_HAS_v64 0 | |
190 | #endif | |
191 | #ifndef TCG_TARGET_HAS_v128 | |
192 | #define TCG_TARGET_HAS_v128 0 | |
193 | #endif | |
194 | #ifndef TCG_TARGET_HAS_v256 | |
195 | #define TCG_TARGET_HAS_v256 0 | |
196 | #endif | |
197 | ||
9aef40ed RH |
198 | #ifndef TARGET_INSN_START_EXTRA_WORDS |
199 | # define TARGET_INSN_START_WORDS 1 | |
200 | #else | |
201 | # define TARGET_INSN_START_WORDS (1 + TARGET_INSN_START_EXTRA_WORDS) | |
202 | #endif | |
203 | ||
a9751609 | 204 | typedef enum TCGOpcode { |
c61aaf7a | 205 | #define DEF(name, oargs, iargs, cargs, flags) INDEX_op_ ## name, |
c896fe29 FB |
206 | #include "tcg-opc.h" |
207 | #undef DEF | |
208 | NB_OPS, | |
a9751609 | 209 | } TCGOpcode; |
c896fe29 | 210 | |
80a8b9a9 RH |
211 | #define tcg_regset_set_reg(d, r) ((d) |= (TCGRegSet)1 << (r)) |
212 | #define tcg_regset_reset_reg(d, r) ((d) &= ~((TCGRegSet)1 << (r))) | |
213 | #define tcg_regset_test_reg(d, r) (((d) >> (r)) & 1) | |
c896fe29 | 214 | |
1813e175 | 215 | #ifndef TCG_TARGET_INSN_UNIT_SIZE |
5053361b RH |
216 | # error "Missing TCG_TARGET_INSN_UNIT_SIZE" |
217 | #elif TCG_TARGET_INSN_UNIT_SIZE == 1 | |
1813e175 RH |
218 | typedef uint8_t tcg_insn_unit; |
219 | #elif TCG_TARGET_INSN_UNIT_SIZE == 2 | |
220 | typedef uint16_t tcg_insn_unit; | |
221 | #elif TCG_TARGET_INSN_UNIT_SIZE == 4 | |
222 | typedef uint32_t tcg_insn_unit; | |
223 | #elif TCG_TARGET_INSN_UNIT_SIZE == 8 | |
224 | typedef uint64_t tcg_insn_unit; | |
225 | #else | |
226 | /* The port better have done this. */ | |
227 | #endif | |
228 | ||
229 | ||
8bff06a0 | 230 | #if defined CONFIG_DEBUG_TCG || defined QEMU_STATIC_ANALYSIS |
1f00b27f SS |
231 | # define tcg_debug_assert(X) do { assert(X); } while (0) |
232 | #elif QEMU_GNUC_PREREQ(4, 5) | |
233 | # define tcg_debug_assert(X) \ | |
234 | do { if (!(X)) { __builtin_unreachable(); } } while (0) | |
235 | #else | |
236 | # define tcg_debug_assert(X) do { (void)(X); } while (0) | |
237 | #endif | |
238 | ||
c896fe29 FB |
239 | typedef struct TCGRelocation { |
240 | struct TCGRelocation *next; | |
241 | int type; | |
1813e175 | 242 | tcg_insn_unit *ptr; |
2ba7fae2 | 243 | intptr_t addend; |
c896fe29 FB |
244 | } TCGRelocation; |
245 | ||
246 | typedef struct TCGLabel { | |
51e3972c RH |
247 | unsigned has_value : 1; |
248 | unsigned id : 31; | |
c896fe29 | 249 | union { |
2ba7fae2 | 250 | uintptr_t value; |
1813e175 | 251 | tcg_insn_unit *value_ptr; |
c896fe29 FB |
252 | TCGRelocation *first_reloc; |
253 | } u; | |
254 | } TCGLabel; | |
255 | ||
256 | typedef struct TCGPool { | |
257 | struct TCGPool *next; | |
c44f945a BS |
258 | int size; |
259 | uint8_t data[0] __attribute__ ((aligned)); | |
c896fe29 FB |
260 | } TCGPool; |
261 | ||
262 | #define TCG_POOL_CHUNK_SIZE 32768 | |
263 | ||
c4071c90 | 264 | #define TCG_MAX_TEMPS 512 |
190ce7fb | 265 | #define TCG_MAX_INSNS 512 |
c896fe29 | 266 | |
b03cce8e FB |
267 | /* when the size of the arguments of a called function is smaller than |
268 | this value, they are statically allocated in the TB stack frame */ | |
269 | #define TCG_STATIC_CALL_ARGS_SIZE 128 | |
270 | ||
c02244a5 RH |
271 | typedef enum TCGType { |
272 | TCG_TYPE_I32, | |
273 | TCG_TYPE_I64, | |
d2fd745f RH |
274 | |
275 | TCG_TYPE_V64, | |
276 | TCG_TYPE_V128, | |
277 | TCG_TYPE_V256, | |
278 | ||
c02244a5 | 279 | TCG_TYPE_COUNT, /* number of different types */ |
c896fe29 | 280 | |
3b6dac34 | 281 | /* An alias for the size of the host register. */ |
c896fe29 | 282 | #if TCG_TARGET_REG_BITS == 32 |
3b6dac34 | 283 | TCG_TYPE_REG = TCG_TYPE_I32, |
c02244a5 | 284 | #else |
3b6dac34 | 285 | TCG_TYPE_REG = TCG_TYPE_I64, |
c02244a5 | 286 | #endif |
3b6dac34 | 287 | |
d289837e RH |
288 | /* An alias for the size of the native pointer. */ |
289 | #if UINTPTR_MAX == UINT32_MAX | |
290 | TCG_TYPE_PTR = TCG_TYPE_I32, | |
291 | #else | |
292 | TCG_TYPE_PTR = TCG_TYPE_I64, | |
293 | #endif | |
3b6dac34 RH |
294 | |
295 | /* An alias for the size of the target "long", aka register. */ | |
c02244a5 RH |
296 | #if TARGET_LONG_BITS == 64 |
297 | TCG_TYPE_TL = TCG_TYPE_I64, | |
c896fe29 | 298 | #else |
c02244a5 | 299 | TCG_TYPE_TL = TCG_TYPE_I32, |
c896fe29 | 300 | #endif |
c02244a5 | 301 | } TCGType; |
c896fe29 | 302 | |
6c5f4ead RH |
303 | /* Constants for qemu_ld and qemu_st for the Memory Operation field. */ |
304 | typedef enum TCGMemOp { | |
305 | MO_8 = 0, | |
306 | MO_16 = 1, | |
307 | MO_32 = 2, | |
308 | MO_64 = 3, | |
309 | MO_SIZE = 3, /* Mask for the above. */ | |
310 | ||
311 | MO_SIGN = 4, /* Sign-extended, otherwise zero-extended. */ | |
312 | ||
313 | MO_BSWAP = 8, /* Host reverse endian. */ | |
314 | #ifdef HOST_WORDS_BIGENDIAN | |
315 | MO_LE = MO_BSWAP, | |
316 | MO_BE = 0, | |
317 | #else | |
318 | MO_LE = 0, | |
319 | MO_BE = MO_BSWAP, | |
320 | #endif | |
321 | #ifdef TARGET_WORDS_BIGENDIAN | |
322 | MO_TE = MO_BE, | |
323 | #else | |
324 | MO_TE = MO_LE, | |
325 | #endif | |
326 | ||
dfb36305 | 327 | /* MO_UNALN accesses are never checked for alignment. |
1f00b27f SS |
328 | * MO_ALIGN accesses will result in a call to the CPU's |
329 | * do_unaligned_access hook if the guest address is not aligned. | |
330 | * The default depends on whether the target CPU defines ALIGNED_ONLY. | |
85aa8081 | 331 | * |
1f00b27f SS |
332 | * Some architectures (e.g. ARMv8) need the address which is aligned |
333 | * to a size more than the size of the memory access. | |
85aa8081 RH |
334 | * Some architectures (e.g. SPARCv9) need an address which is aligned, |
335 | * but less strictly than the natural alignment. | |
336 | * | |
337 | * MO_ALIGN supposes the alignment size is the size of a memory access. | |
338 | * | |
1f00b27f | 339 | * There are three options: |
1f00b27f | 340 | * - unaligned access permitted (MO_UNALN). |
85aa8081 RH |
341 | * - an alignment to the size of an access (MO_ALIGN); |
342 | * - an alignment to a specified size, which may be more or less than | |
343 | * the access size (MO_ALIGN_x where 'x' is a size in bytes); | |
1f00b27f SS |
344 | */ |
345 | MO_ASHIFT = 4, | |
346 | MO_AMASK = 7 << MO_ASHIFT, | |
dfb36305 RH |
347 | #ifdef ALIGNED_ONLY |
348 | MO_ALIGN = 0, | |
349 | MO_UNALN = MO_AMASK, | |
350 | #else | |
351 | MO_ALIGN = MO_AMASK, | |
352 | MO_UNALN = 0, | |
353 | #endif | |
1f00b27f SS |
354 | MO_ALIGN_2 = 1 << MO_ASHIFT, |
355 | MO_ALIGN_4 = 2 << MO_ASHIFT, | |
356 | MO_ALIGN_8 = 3 << MO_ASHIFT, | |
357 | MO_ALIGN_16 = 4 << MO_ASHIFT, | |
358 | MO_ALIGN_32 = 5 << MO_ASHIFT, | |
359 | MO_ALIGN_64 = 6 << MO_ASHIFT, | |
dfb36305 | 360 | |
6c5f4ead RH |
361 | /* Combinations of the above, for ease of use. */ |
362 | MO_UB = MO_8, | |
363 | MO_UW = MO_16, | |
364 | MO_UL = MO_32, | |
365 | MO_SB = MO_SIGN | MO_8, | |
366 | MO_SW = MO_SIGN | MO_16, | |
367 | MO_SL = MO_SIGN | MO_32, | |
368 | MO_Q = MO_64, | |
369 | ||
370 | MO_LEUW = MO_LE | MO_UW, | |
371 | MO_LEUL = MO_LE | MO_UL, | |
372 | MO_LESW = MO_LE | MO_SW, | |
373 | MO_LESL = MO_LE | MO_SL, | |
374 | MO_LEQ = MO_LE | MO_Q, | |
375 | ||
376 | MO_BEUW = MO_BE | MO_UW, | |
377 | MO_BEUL = MO_BE | MO_UL, | |
378 | MO_BESW = MO_BE | MO_SW, | |
379 | MO_BESL = MO_BE | MO_SL, | |
380 | MO_BEQ = MO_BE | MO_Q, | |
381 | ||
382 | MO_TEUW = MO_TE | MO_UW, | |
383 | MO_TEUL = MO_TE | MO_UL, | |
384 | MO_TESW = MO_TE | MO_SW, | |
385 | MO_TESL = MO_TE | MO_SL, | |
386 | MO_TEQ = MO_TE | MO_Q, | |
387 | ||
388 | MO_SSIZE = MO_SIZE | MO_SIGN, | |
389 | } TCGMemOp; | |
390 | ||
1f00b27f SS |
391 | /** |
392 | * get_alignment_bits | |
393 | * @memop: TCGMemOp value | |
394 | * | |
395 | * Extract the alignment size from the memop. | |
1f00b27f | 396 | */ |
85aa8081 | 397 | static inline unsigned get_alignment_bits(TCGMemOp memop) |
1f00b27f | 398 | { |
85aa8081 | 399 | unsigned a = memop & MO_AMASK; |
1f00b27f SS |
400 | |
401 | if (a == MO_UNALN) { | |
85aa8081 RH |
402 | /* No alignment required. */ |
403 | a = 0; | |
1f00b27f | 404 | } else if (a == MO_ALIGN) { |
85aa8081 RH |
405 | /* A natural alignment requirement. */ |
406 | a = memop & MO_SIZE; | |
1f00b27f | 407 | } else { |
85aa8081 RH |
408 | /* A specific alignment requirement. */ |
409 | a = a >> MO_ASHIFT; | |
1f00b27f SS |
410 | } |
411 | #if defined(CONFIG_SOFTMMU) | |
412 | /* The requested alignment cannot overlap the TLB flags. */ | |
85aa8081 | 413 | tcg_debug_assert((TLB_FLAGS_MASK & ((1 << a) - 1)) == 0); |
1f00b27f | 414 | #endif |
85aa8081 | 415 | return a; |
1f00b27f SS |
416 | } |
417 | ||
c896fe29 FB |
418 | typedef tcg_target_ulong TCGArg; |
419 | ||
a40d4701 PM |
420 | /* Define type and accessor macros for TCG variables. |
421 | ||
422 | TCG variables are the inputs and outputs of TCG ops, as described | |
423 | in tcg/README. Target CPU front-end code uses these types to deal | |
424 | with TCG variables as it emits TCG code via the tcg_gen_* functions. | |
425 | They come in several flavours: | |
426 | * TCGv_i32 : 32 bit integer type | |
427 | * TCGv_i64 : 64 bit integer type | |
428 | * TCGv_ptr : a host pointer type | |
d2fd745f RH |
429 | * TCGv_vec : a host vector type; the exact size is not exposed |
430 | to the CPU front-end code. | |
a40d4701 PM |
431 | * TCGv : an integer type the same size as target_ulong |
432 | (an alias for either TCGv_i32 or TCGv_i64) | |
433 | The compiler's type checking will complain if you mix them | |
434 | up and pass the wrong sized TCGv to a function. | |
435 | ||
436 | Users of tcg_gen_* don't need to know about any of the internal | |
437 | details of these, and should treat them as opaque types. | |
438 | You won't be able to look inside them in a debugger either. | |
439 | ||
440 | Internal implementation details follow: | |
441 | ||
442 | Note that there is no definition of the structs TCGv_i32_d etc anywhere. | |
443 | This is deliberate, because the values we store in variables of type | |
444 | TCGv_i32 are not really pointers-to-structures. They're just small | |
445 | integers, but keeping them in pointer types like this means that the | |
446 | compiler will complain if you accidentally pass a TCGv_i32 to a | |
447 | function which takes a TCGv_i64, and so on. Only the internals of | |
dc41aa7d | 448 | TCG need to care about the actual contents of the types. */ |
ac56dd48 | 449 | |
b6c73a6d RH |
450 | typedef struct TCGv_i32_d *TCGv_i32; |
451 | typedef struct TCGv_i64_d *TCGv_i64; | |
452 | typedef struct TCGv_ptr_d *TCGv_ptr; | |
d2fd745f | 453 | typedef struct TCGv_vec_d *TCGv_vec; |
1bcea73e | 454 | typedef TCGv_ptr TCGv_env; |
5d4e1a10 LV |
455 | #if TARGET_LONG_BITS == 32 |
456 | #define TCGv TCGv_i32 | |
457 | #elif TARGET_LONG_BITS == 64 | |
458 | #define TCGv TCGv_i64 | |
459 | #else | |
460 | #error Unhandled TARGET_LONG_BITS value | |
461 | #endif | |
ac56dd48 | 462 | |
c896fe29 | 463 | /* call flags */ |
78505279 AJ |
464 | /* Helper does not read globals (either directly or through an exception). It |
465 | implies TCG_CALL_NO_WRITE_GLOBALS. */ | |
466 | #define TCG_CALL_NO_READ_GLOBALS 0x0010 | |
467 | /* Helper does not write globals */ | |
468 | #define TCG_CALL_NO_WRITE_GLOBALS 0x0020 | |
469 | /* Helper can be safely suppressed if the return value is not used. */ | |
470 | #define TCG_CALL_NO_SIDE_EFFECTS 0x0040 | |
471 | ||
472 | /* convenience version of most used call flags */ | |
473 | #define TCG_CALL_NO_RWG TCG_CALL_NO_READ_GLOBALS | |
474 | #define TCG_CALL_NO_WG TCG_CALL_NO_WRITE_GLOBALS | |
475 | #define TCG_CALL_NO_SE TCG_CALL_NO_SIDE_EFFECTS | |
476 | #define TCG_CALL_NO_RWG_SE (TCG_CALL_NO_RWG | TCG_CALL_NO_SE) | |
477 | #define TCG_CALL_NO_WG_SE (TCG_CALL_NO_WG | TCG_CALL_NO_SE) | |
478 | ||
e89b28a6 RH |
479 | /* Used to align parameters. See the comment before tcgv_i32_temp. */ |
480 | #define TCG_CALL_DUMMY_ARG ((TCGArg)0) | |
39cf05d3 | 481 | |
a93cf9df SW |
482 | /* Conditions. Note that these are laid out for easy manipulation by |
483 | the functions below: | |
0aed257f RH |
484 | bit 0 is used for inverting; |
485 | bit 1 is signed, | |
486 | bit 2 is unsigned, | |
487 | bit 3 is used with bit 0 for swapping signed/unsigned. */ | |
c896fe29 | 488 | typedef enum { |
0aed257f RH |
489 | /* non-signed */ |
490 | TCG_COND_NEVER = 0 | 0 | 0 | 0, | |
491 | TCG_COND_ALWAYS = 0 | 0 | 0 | 1, | |
492 | TCG_COND_EQ = 8 | 0 | 0 | 0, | |
493 | TCG_COND_NE = 8 | 0 | 0 | 1, | |
494 | /* signed */ | |
495 | TCG_COND_LT = 0 | 0 | 2 | 0, | |
496 | TCG_COND_GE = 0 | 0 | 2 | 1, | |
497 | TCG_COND_LE = 8 | 0 | 2 | 0, | |
498 | TCG_COND_GT = 8 | 0 | 2 | 1, | |
c896fe29 | 499 | /* unsigned */ |
0aed257f RH |
500 | TCG_COND_LTU = 0 | 4 | 0 | 0, |
501 | TCG_COND_GEU = 0 | 4 | 0 | 1, | |
502 | TCG_COND_LEU = 8 | 4 | 0 | 0, | |
503 | TCG_COND_GTU = 8 | 4 | 0 | 1, | |
c896fe29 FB |
504 | } TCGCond; |
505 | ||
1c086220 | 506 | /* Invert the sense of the comparison. */ |
401d466d RH |
507 | static inline TCGCond tcg_invert_cond(TCGCond c) |
508 | { | |
509 | return (TCGCond)(c ^ 1); | |
510 | } | |
511 | ||
1c086220 RH |
512 | /* Swap the operands in a comparison. */ |
513 | static inline TCGCond tcg_swap_cond(TCGCond c) | |
514 | { | |
0aed257f | 515 | return c & 6 ? (TCGCond)(c ^ 9) : c; |
1c086220 RH |
516 | } |
517 | ||
d1e321b8 | 518 | /* Create an "unsigned" version of a "signed" comparison. */ |
ff44c2f3 RH |
519 | static inline TCGCond tcg_unsigned_cond(TCGCond c) |
520 | { | |
0aed257f | 521 | return c & 2 ? (TCGCond)(c ^ 6) : c; |
ff44c2f3 RH |
522 | } |
523 | ||
923ed175 RH |
524 | /* Create a "signed" version of an "unsigned" comparison. */ |
525 | static inline TCGCond tcg_signed_cond(TCGCond c) | |
526 | { | |
527 | return c & 4 ? (TCGCond)(c ^ 6) : c; | |
528 | } | |
529 | ||
d1e321b8 | 530 | /* Must a comparison be considered unsigned? */ |
bcc66562 RH |
531 | static inline bool is_unsigned_cond(TCGCond c) |
532 | { | |
0aed257f | 533 | return (c & 4) != 0; |
bcc66562 RH |
534 | } |
535 | ||
d1e321b8 RH |
536 | /* Create a "high" version of a double-word comparison. |
537 | This removes equality from a LTE or GTE comparison. */ | |
538 | static inline TCGCond tcg_high_cond(TCGCond c) | |
539 | { | |
540 | switch (c) { | |
541 | case TCG_COND_GE: | |
542 | case TCG_COND_LE: | |
543 | case TCG_COND_GEU: | |
544 | case TCG_COND_LEU: | |
545 | return (TCGCond)(c ^ 8); | |
546 | default: | |
547 | return c; | |
548 | } | |
549 | } | |
550 | ||
00c8fa9f EC |
551 | typedef enum TCGTempVal { |
552 | TEMP_VAL_DEAD, | |
553 | TEMP_VAL_REG, | |
554 | TEMP_VAL_MEM, | |
555 | TEMP_VAL_CONST, | |
556 | } TCGTempVal; | |
c896fe29 | 557 | |
c896fe29 | 558 | typedef struct TCGTemp { |
b6638662 | 559 | TCGReg reg:8; |
00c8fa9f EC |
560 | TCGTempVal val_type:8; |
561 | TCGType base_type:8; | |
562 | TCGType type:8; | |
c896fe29 | 563 | unsigned int fixed_reg:1; |
b3915dbb RH |
564 | unsigned int indirect_reg:1; |
565 | unsigned int indirect_base:1; | |
c896fe29 FB |
566 | unsigned int mem_coherent:1; |
567 | unsigned int mem_allocated:1; | |
fa477d25 RH |
568 | /* If true, the temp is saved across both basic blocks and |
569 | translation blocks. */ | |
570 | unsigned int temp_global:1; | |
571 | /* If true, the temp is saved across basic blocks but dead | |
572 | at the end of translation blocks. If false, the temp is | |
573 | dead at the end of basic blocks. */ | |
574 | unsigned int temp_local:1; | |
575 | unsigned int temp_allocated:1; | |
00c8fa9f EC |
576 | |
577 | tcg_target_long val; | |
b3a62939 | 578 | struct TCGTemp *mem_base; |
00c8fa9f | 579 | intptr_t mem_offset; |
c896fe29 | 580 | const char *name; |
b83eabea RH |
581 | |
582 | /* Pass-specific information that can be stored for a temporary. | |
583 | One word worth of integer data, and one pointer to data | |
584 | allocated separately. */ | |
585 | uintptr_t state; | |
586 | void *state_ptr; | |
c896fe29 FB |
587 | } TCGTemp; |
588 | ||
c896fe29 FB |
589 | typedef struct TCGContext TCGContext; |
590 | ||
0ec9eabc RH |
591 | typedef struct TCGTempSet { |
592 | unsigned long l[BITS_TO_LONGS(TCG_MAX_TEMPS)]; | |
593 | } TCGTempSet; | |
594 | ||
a1b3c48d RH |
595 | /* While we limit helpers to 6 arguments, for 32-bit hosts, with padding, |
596 | this imples a max of 6*2 (64-bit in) + 2 (64-bit out) = 14 operands. | |
597 | There are never more than 2 outputs, which means that we can store all | |
598 | dead + sync data within 16 bits. */ | |
599 | #define DEAD_ARG 4 | |
600 | #define SYNC_ARG 1 | |
601 | typedef uint16_t TCGLifeData; | |
602 | ||
75e8b9b7 RH |
603 | /* The layout here is designed to avoid a bitfield crossing of |
604 | a 32-bit boundary, which would cause GCC to add extra padding. */ | |
c45cb8bb | 605 | typedef struct TCGOp { |
bee158cb RH |
606 | TCGOpcode opc : 8; /* 8 */ |
607 | ||
cd9090aa RH |
608 | /* Parameters for this opcode. See below. */ |
609 | unsigned param1 : 4; /* 12 */ | |
610 | unsigned param2 : 4; /* 16 */ | |
c45cb8bb | 611 | |
bee158cb | 612 | /* Lifetime data of the operands. */ |
15fa08f8 RH |
613 | unsigned life : 16; /* 32 */ |
614 | ||
615 | /* Next and previous opcodes. */ | |
616 | QTAILQ_ENTRY(TCGOp) link; | |
75e8b9b7 RH |
617 | |
618 | /* Arguments for the opcode. */ | |
619 | TCGArg args[MAX_OPC_PARAM]; | |
c45cb8bb RH |
620 | } TCGOp; |
621 | ||
cd9090aa RH |
622 | #define TCGOP_CALLI(X) (X)->param1 |
623 | #define TCGOP_CALLO(X) (X)->param2 | |
624 | ||
d2fd745f RH |
625 | #define TCGOP_VECL(X) (X)->param1 |
626 | #define TCGOP_VECE(X) (X)->param2 | |
627 | ||
dcb8e758 RH |
628 | /* Make sure operands fit in the bitfields above. */ |
629 | QEMU_BUILD_BUG_ON(NB_OPS > (1 << 8)); | |
c45cb8bb | 630 | |
c3fac113 EC |
631 | typedef struct TCGProfile { |
632 | int64_t tb_count1; | |
633 | int64_t tb_count; | |
634 | int64_t op_count; /* total insn count */ | |
635 | int op_count_max; /* max insn per TB */ | |
636 | int64_t temp_count; | |
637 | int temp_count_max; | |
638 | int64_t del_op_count; | |
639 | int64_t code_in_len; | |
640 | int64_t code_out_len; | |
641 | int64_t search_out_len; | |
642 | int64_t interm_time; | |
643 | int64_t code_time; | |
644 | int64_t la_time; | |
645 | int64_t opt_time; | |
646 | int64_t restore_count; | |
647 | int64_t restore_time; | |
648 | int64_t table_op_count[NB_OPS]; | |
649 | } TCGProfile; | |
650 | ||
c896fe29 FB |
651 | struct TCGContext { |
652 | uint8_t *pool_cur, *pool_end; | |
4055299e | 653 | TCGPool *pool_first, *pool_current, *pool_first_large; |
c896fe29 | 654 | int nb_labels; |
c896fe29 FB |
655 | int nb_globals; |
656 | int nb_temps; | |
5a18407f | 657 | int nb_indirects; |
abebf925 | 658 | int nb_ops; |
c896fe29 FB |
659 | |
660 | /* goto_tb support */ | |
1813e175 | 661 | tcg_insn_unit *code_buf; |
f309101c | 662 | uint16_t *tb_jmp_reset_offset; /* tb->jmp_reset_offset */ |
a8583393 RH |
663 | uintptr_t *tb_jmp_insn_offset; /* tb->jmp_target_arg if direct_jump */ |
664 | uintptr_t *tb_jmp_target_addr; /* tb->jmp_target_arg if !direct_jump */ | |
c896fe29 | 665 | |
c896fe29 | 666 | TCGRegSet reserved_regs; |
e82d5a24 | 667 | uint32_t tb_cflags; /* cflags of the current TB */ |
e2c6d1b4 RH |
668 | intptr_t current_frame_offset; |
669 | intptr_t frame_start; | |
670 | intptr_t frame_end; | |
b3a62939 | 671 | TCGTemp *frame_temp; |
c896fe29 | 672 | |
1813e175 | 673 | tcg_insn_unit *code_ptr; |
c896fe29 | 674 | |
a23a9ec6 | 675 | #ifdef CONFIG_PROFILER |
c3fac113 | 676 | TCGProfile prof; |
a23a9ec6 | 677 | #endif |
27bfd83c PM |
678 | |
679 | #ifdef CONFIG_DEBUG_TCG | |
680 | int temps_in_use; | |
0a209d4b | 681 | int goto_tb_issue_mask; |
27bfd83c | 682 | #endif |
b76f0d8c | 683 | |
1813e175 RH |
684 | /* Code generation. Note that we specifically do not use tcg_insn_unit |
685 | here, because there's too much arithmetic throughout that relies | |
686 | on addition and subtraction working on bytes. Rely on the GCC | |
687 | extension that allows arithmetic on void*. */ | |
1813e175 | 688 | void *code_gen_prologue; |
cedbcb01 | 689 | void *code_gen_epilogue; |
1813e175 | 690 | void *code_gen_buffer; |
0b0d3320 | 691 | size_t code_gen_buffer_size; |
1813e175 | 692 | void *code_gen_ptr; |
57a26946 | 693 | void *data_gen_ptr; |
0b0d3320 | 694 | |
b125f9dc RH |
695 | /* Threshold to flush the translated code buffer. */ |
696 | void *code_gen_highwater; | |
697 | ||
7c255043 LV |
698 | /* Track which vCPU triggers events */ |
699 | CPUState *cpu; /* *_trans */ | |
7c255043 | 700 | |
659ef5cb RH |
701 | /* These structures are private to tcg-target.inc.c. */ |
702 | #ifdef TCG_TARGET_NEED_LDST_LABELS | |
6001f772 | 703 | QSIMPLEQ_HEAD(ldst_labels, TCGLabelQemuLdst) ldst_labels; |
659ef5cb | 704 | #endif |
57a26946 RH |
705 | #ifdef TCG_TARGET_NEED_POOL_LABELS |
706 | struct TCGLabelPoolData *pool_labels; | |
707 | #endif | |
c45cb8bb | 708 | |
26689780 EC |
709 | TCGLabel *exitreq_label; |
710 | ||
c45cb8bb RH |
711 | TCGTempSet free_temps[TCG_TYPE_COUNT * 2]; |
712 | TCGTemp temps[TCG_MAX_TEMPS]; /* globals first, temps after */ | |
713 | ||
15fa08f8 RH |
714 | QTAILQ_HEAD(TCGOpHead, TCGOp) ops, free_ops; |
715 | ||
f8b2f202 RH |
716 | /* Tells which temporary holds a given register. |
717 | It does not take into account fixed registers */ | |
718 | TCGTemp *reg_to_temp[TCG_TARGET_NB_REGS]; | |
c45cb8bb | 719 | |
fca8a500 RH |
720 | uint16_t gen_insn_end_off[TCG_MAX_INSNS]; |
721 | target_ulong gen_insn_data[TCG_MAX_INSNS][TARGET_INSN_START_WORDS]; | |
c896fe29 FB |
722 | }; |
723 | ||
b1311c4a | 724 | extern TCGContext tcg_init_ctx; |
3468b59e | 725 | extern __thread TCGContext *tcg_ctx; |
1c2adb95 | 726 | extern TCGv_env cpu_env; |
c896fe29 | 727 | |
1807f4c4 RH |
728 | static inline size_t temp_idx(TCGTemp *ts) |
729 | { | |
b1311c4a EC |
730 | ptrdiff_t n = ts - tcg_ctx->temps; |
731 | tcg_debug_assert(n >= 0 && n < tcg_ctx->nb_temps); | |
1807f4c4 RH |
732 | return n; |
733 | } | |
734 | ||
735 | static inline TCGArg temp_arg(TCGTemp *ts) | |
736 | { | |
e89b28a6 | 737 | return (uintptr_t)ts; |
1807f4c4 RH |
738 | } |
739 | ||
43439139 RH |
740 | static inline TCGTemp *arg_temp(TCGArg a) |
741 | { | |
e89b28a6 | 742 | return (TCGTemp *)(uintptr_t)a; |
43439139 RH |
743 | } |
744 | ||
e89b28a6 RH |
745 | /* Using the offset of a temporary, relative to TCGContext, rather than |
746 | its index means that we don't use 0. That leaves offset 0 free for | |
747 | a NULL representation without having to leave index 0 unused. */ | |
748 | static inline TCGTemp *tcgv_i32_temp(TCGv_i32 v) | |
6349039d | 749 | { |
e89b28a6 | 750 | uintptr_t o = (uintptr_t)v; |
b1311c4a | 751 | TCGTemp *t = (void *)tcg_ctx + o; |
e89b28a6 RH |
752 | tcg_debug_assert(offsetof(TCGContext, temps[temp_idx(t)]) == o); |
753 | return t; | |
ae8b75dc RH |
754 | } |
755 | ||
e89b28a6 | 756 | static inline TCGTemp *tcgv_i64_temp(TCGv_i64 v) |
ae8b75dc | 757 | { |
e89b28a6 | 758 | return tcgv_i32_temp((TCGv_i32)v); |
ae8b75dc RH |
759 | } |
760 | ||
e89b28a6 | 761 | static inline TCGTemp *tcgv_ptr_temp(TCGv_ptr v) |
ae8b75dc | 762 | { |
e89b28a6 | 763 | return tcgv_i32_temp((TCGv_i32)v); |
ae8b75dc RH |
764 | } |
765 | ||
d2fd745f RH |
766 | static inline TCGTemp *tcgv_vec_temp(TCGv_vec v) |
767 | { | |
768 | return tcgv_i32_temp((TCGv_i32)v); | |
769 | } | |
770 | ||
e89b28a6 | 771 | static inline TCGArg tcgv_i32_arg(TCGv_i32 v) |
ae8b75dc | 772 | { |
e89b28a6 | 773 | return temp_arg(tcgv_i32_temp(v)); |
ae8b75dc RH |
774 | } |
775 | ||
e89b28a6 | 776 | static inline TCGArg tcgv_i64_arg(TCGv_i64 v) |
ae8b75dc | 777 | { |
e89b28a6 | 778 | return temp_arg(tcgv_i64_temp(v)); |
ae8b75dc RH |
779 | } |
780 | ||
e89b28a6 | 781 | static inline TCGArg tcgv_ptr_arg(TCGv_ptr v) |
ae8b75dc | 782 | { |
e89b28a6 | 783 | return temp_arg(tcgv_ptr_temp(v)); |
ae8b75dc RH |
784 | } |
785 | ||
d2fd745f RH |
786 | static inline TCGArg tcgv_vec_arg(TCGv_vec v) |
787 | { | |
788 | return temp_arg(tcgv_vec_temp(v)); | |
789 | } | |
790 | ||
085272b3 RH |
791 | static inline TCGv_i32 temp_tcgv_i32(TCGTemp *t) |
792 | { | |
e89b28a6 | 793 | (void)temp_idx(t); /* trigger embedded assert */ |
b1311c4a | 794 | return (TCGv_i32)((void *)t - (void *)tcg_ctx); |
085272b3 RH |
795 | } |
796 | ||
797 | static inline TCGv_i64 temp_tcgv_i64(TCGTemp *t) | |
798 | { | |
e89b28a6 | 799 | return (TCGv_i64)temp_tcgv_i32(t); |
085272b3 RH |
800 | } |
801 | ||
802 | static inline TCGv_ptr temp_tcgv_ptr(TCGTemp *t) | |
803 | { | |
e89b28a6 | 804 | return (TCGv_ptr)temp_tcgv_i32(t); |
085272b3 RH |
805 | } |
806 | ||
d2fd745f RH |
807 | static inline TCGv_vec temp_tcgv_vec(TCGTemp *t) |
808 | { | |
809 | return (TCGv_vec)temp_tcgv_i32(t); | |
810 | } | |
811 | ||
dc41aa7d RH |
812 | #if TCG_TARGET_REG_BITS == 32 |
813 | static inline TCGv_i32 TCGV_LOW(TCGv_i64 t) | |
814 | { | |
815 | return temp_tcgv_i32(tcgv_i64_temp(t)); | |
816 | } | |
817 | ||
818 | static inline TCGv_i32 TCGV_HIGH(TCGv_i64 t) | |
819 | { | |
820 | return temp_tcgv_i32(tcgv_i64_temp(t) + 1); | |
821 | } | |
822 | #endif | |
823 | ||
15fa08f8 | 824 | static inline void tcg_set_insn_param(TCGOp *op, int arg, TCGArg v) |
1d41478f | 825 | { |
15fa08f8 | 826 | op->args[arg] = v; |
1d41478f EI |
827 | } |
828 | ||
9743cd57 RH |
829 | static inline void tcg_set_insn_start_param(TCGOp *op, int arg, target_ulong v) |
830 | { | |
831 | #if TARGET_LONG_BITS <= TCG_TARGET_REG_BITS | |
832 | tcg_set_insn_param(op, arg, v); | |
833 | #else | |
834 | tcg_set_insn_param(op, arg * 2, v); | |
835 | tcg_set_insn_param(op, arg * 2 + 1, v >> 32); | |
836 | #endif | |
837 | } | |
838 | ||
15fa08f8 RH |
839 | /* The last op that was emitted. */ |
840 | static inline TCGOp *tcg_last_op(void) | |
fe700adb | 841 | { |
15fa08f8 | 842 | return QTAILQ_LAST(&tcg_ctx->ops, TCGOpHead); |
fe700adb RH |
843 | } |
844 | ||
845 | /* Test for whether to terminate the TB for using too many opcodes. */ | |
846 | static inline bool tcg_op_buf_full(void) | |
847 | { | |
abebf925 RH |
848 | /* This is not a hard limit, it merely stops translation when |
849 | * we have produced "enough" opcodes. We want to limit TB size | |
850 | * such that a RISC host can reasonably use a 16-bit signed | |
851 | * branch within the TB. | |
852 | */ | |
853 | return tcg_ctx->nb_ops >= 8000; | |
fe700adb RH |
854 | } |
855 | ||
c896fe29 FB |
856 | /* pool based memory allocation */ |
857 | ||
3468b59e | 858 | /* user-mode: tb_lock must be held for tcg_malloc_internal. */ |
c896fe29 FB |
859 | void *tcg_malloc_internal(TCGContext *s, int size); |
860 | void tcg_pool_reset(TCGContext *s); | |
6e3b2bfd | 861 | TranslationBlock *tcg_tb_alloc(TCGContext *s); |
c896fe29 | 862 | |
e8feb96f EC |
863 | void tcg_region_init(void); |
864 | void tcg_region_reset_all(void); | |
865 | ||
866 | size_t tcg_code_size(void); | |
867 | size_t tcg_code_capacity(void); | |
868 | ||
3468b59e | 869 | /* user-mode: Called with tb_lock held. */ |
c896fe29 FB |
870 | static inline void *tcg_malloc(int size) |
871 | { | |
b1311c4a | 872 | TCGContext *s = tcg_ctx; |
c896fe29 | 873 | uint8_t *ptr, *ptr_end; |
13aaef67 RH |
874 | |
875 | /* ??? This is a weak placeholder for minimum malloc alignment. */ | |
876 | size = QEMU_ALIGN_UP(size, 8); | |
877 | ||
c896fe29 FB |
878 | ptr = s->pool_cur; |
879 | ptr_end = ptr + size; | |
880 | if (unlikely(ptr_end > s->pool_end)) { | |
b1311c4a | 881 | return tcg_malloc_internal(tcg_ctx, size); |
c896fe29 FB |
882 | } else { |
883 | s->pool_cur = ptr_end; | |
884 | return ptr; | |
885 | } | |
886 | } | |
887 | ||
888 | void tcg_context_init(TCGContext *s); | |
3468b59e | 889 | void tcg_register_thread(void); |
9002ec79 | 890 | void tcg_prologue_init(TCGContext *s); |
c896fe29 FB |
891 | void tcg_func_start(TCGContext *s); |
892 | ||
5bd2ec3d | 893 | int tcg_gen_code(TCGContext *s, TranslationBlock *tb); |
c896fe29 | 894 | |
b6638662 | 895 | void tcg_set_frame(TCGContext *s, TCGReg reg, intptr_t start, intptr_t size); |
a7812ae4 | 896 | |
085272b3 RH |
897 | TCGTemp *tcg_global_mem_new_internal(TCGType, TCGv_ptr, |
898 | intptr_t, const char *); | |
5bfa8034 RH |
899 | TCGTemp *tcg_temp_new_internal(TCGType, bool); |
900 | void tcg_temp_free_internal(TCGTemp *); | |
d2fd745f RH |
901 | TCGv_vec tcg_temp_new_vec(TCGType type); |
902 | TCGv_vec tcg_temp_new_vec_matching(TCGv_vec match); | |
e1ccc054 | 903 | |
5bfa8034 RH |
904 | static inline void tcg_temp_free_i32(TCGv_i32 arg) |
905 | { | |
906 | tcg_temp_free_internal(tcgv_i32_temp(arg)); | |
907 | } | |
908 | ||
909 | static inline void tcg_temp_free_i64(TCGv_i64 arg) | |
910 | { | |
911 | tcg_temp_free_internal(tcgv_i64_temp(arg)); | |
912 | } | |
913 | ||
914 | static inline void tcg_temp_free_ptr(TCGv_ptr arg) | |
915 | { | |
916 | tcg_temp_free_internal(tcgv_ptr_temp(arg)); | |
917 | } | |
918 | ||
919 | static inline void tcg_temp_free_vec(TCGv_vec arg) | |
920 | { | |
921 | tcg_temp_free_internal(tcgv_vec_temp(arg)); | |
922 | } | |
e1ccc054 | 923 | |
e1ccc054 RH |
924 | static inline TCGv_i32 tcg_global_mem_new_i32(TCGv_ptr reg, intptr_t offset, |
925 | const char *name) | |
926 | { | |
085272b3 RH |
927 | TCGTemp *t = tcg_global_mem_new_internal(TCG_TYPE_I32, reg, offset, name); |
928 | return temp_tcgv_i32(t); | |
e1ccc054 RH |
929 | } |
930 | ||
a7812ae4 PB |
931 | static inline TCGv_i32 tcg_temp_new_i32(void) |
932 | { | |
5bfa8034 RH |
933 | TCGTemp *t = tcg_temp_new_internal(TCG_TYPE_I32, false); |
934 | return temp_tcgv_i32(t); | |
a7812ae4 | 935 | } |
e1ccc054 | 936 | |
a7812ae4 PB |
937 | static inline TCGv_i32 tcg_temp_local_new_i32(void) |
938 | { | |
5bfa8034 RH |
939 | TCGTemp *t = tcg_temp_new_internal(TCG_TYPE_I32, true); |
940 | return temp_tcgv_i32(t); | |
a7812ae4 | 941 | } |
a7812ae4 | 942 | |
e1ccc054 RH |
943 | static inline TCGv_i64 tcg_global_mem_new_i64(TCGv_ptr reg, intptr_t offset, |
944 | const char *name) | |
945 | { | |
085272b3 RH |
946 | TCGTemp *t = tcg_global_mem_new_internal(TCG_TYPE_I64, reg, offset, name); |
947 | return temp_tcgv_i64(t); | |
e1ccc054 RH |
948 | } |
949 | ||
a7812ae4 | 950 | static inline TCGv_i64 tcg_temp_new_i64(void) |
641d5fbe | 951 | { |
5bfa8034 RH |
952 | TCGTemp *t = tcg_temp_new_internal(TCG_TYPE_I64, false); |
953 | return temp_tcgv_i64(t); | |
641d5fbe | 954 | } |
e1ccc054 | 955 | |
a7812ae4 | 956 | static inline TCGv_i64 tcg_temp_local_new_i64(void) |
641d5fbe | 957 | { |
5bfa8034 RH |
958 | TCGTemp *t = tcg_temp_new_internal(TCG_TYPE_I64, true); |
959 | return temp_tcgv_i64(t); | |
960 | } | |
961 | ||
962 | static inline TCGv_ptr tcg_global_mem_new_ptr(TCGv_ptr reg, intptr_t offset, | |
963 | const char *name) | |
964 | { | |
965 | TCGTemp *t = tcg_global_mem_new_internal(TCG_TYPE_PTR, reg, offset, name); | |
966 | return temp_tcgv_ptr(t); | |
967 | } | |
968 | ||
969 | static inline TCGv_ptr tcg_temp_new_ptr(void) | |
970 | { | |
971 | TCGTemp *t = tcg_temp_new_internal(TCG_TYPE_PTR, false); | |
972 | return temp_tcgv_ptr(t); | |
973 | } | |
974 | ||
975 | static inline TCGv_ptr tcg_temp_local_new_ptr(void) | |
976 | { | |
977 | TCGTemp *t = tcg_temp_new_internal(TCG_TYPE_PTR, true); | |
978 | return temp_tcgv_ptr(t); | |
641d5fbe | 979 | } |
a7812ae4 | 980 | |
27bfd83c PM |
981 | #if defined(CONFIG_DEBUG_TCG) |
982 | /* If you call tcg_clear_temp_count() at the start of a section of | |
983 | * code which is not supposed to leak any TCG temporaries, then | |
984 | * calling tcg_check_temp_count() at the end of the section will | |
985 | * return 1 if the section did in fact leak a temporary. | |
986 | */ | |
987 | void tcg_clear_temp_count(void); | |
988 | int tcg_check_temp_count(void); | |
989 | #else | |
990 | #define tcg_clear_temp_count() do { } while (0) | |
991 | #define tcg_check_temp_count() 0 | |
992 | #endif | |
993 | ||
405cf9ff | 994 | void tcg_dump_info(FILE *f, fprintf_function cpu_fprintf); |
246ae24d | 995 | void tcg_dump_op_count(FILE *f, fprintf_function cpu_fprintf); |
c896fe29 FB |
996 | |
997 | #define TCG_CT_ALIAS 0x80 | |
998 | #define TCG_CT_IALIAS 0x40 | |
82790a87 | 999 | #define TCG_CT_NEWREG 0x20 /* output requires a new register */ |
c896fe29 FB |
1000 | #define TCG_CT_REG 0x01 |
1001 | #define TCG_CT_CONST 0x02 /* any constant of register size */ | |
1002 | ||
1003 | typedef struct TCGArgConstraint { | |
5ff9d6a4 FB |
1004 | uint16_t ct; |
1005 | uint8_t alias_index; | |
c896fe29 FB |
1006 | union { |
1007 | TCGRegSet regs; | |
1008 | } u; | |
1009 | } TCGArgConstraint; | |
1010 | ||
1011 | #define TCG_MAX_OP_ARGS 16 | |
1012 | ||
8399ad59 RH |
1013 | /* Bits for TCGOpDef->flags, 8 bits available. */ |
1014 | enum { | |
1015 | /* Instruction defines the end of a basic block. */ | |
1016 | TCG_OPF_BB_END = 0x01, | |
1017 | /* Instruction clobbers call registers and potentially update globals. */ | |
1018 | TCG_OPF_CALL_CLOBBER = 0x02, | |
3d5c5f87 AJ |
1019 | /* Instruction has side effects: it cannot be removed if its outputs |
1020 | are not used, and might trigger exceptions. */ | |
8399ad59 RH |
1021 | TCG_OPF_SIDE_EFFECTS = 0x04, |
1022 | /* Instruction operands are 64-bits (otherwise 32-bits). */ | |
1023 | TCG_OPF_64BIT = 0x08, | |
c1a61f6c RH |
1024 | /* Instruction is optional and not implemented by the host, or insn |
1025 | is generic and should not be implemened by the host. */ | |
25c4d9cc | 1026 | TCG_OPF_NOT_PRESENT = 0x10, |
d2fd745f RH |
1027 | /* Instruction operands are vectors. */ |
1028 | TCG_OPF_VECTOR = 0x20, | |
8399ad59 | 1029 | }; |
c896fe29 FB |
1030 | |
1031 | typedef struct TCGOpDef { | |
1032 | const char *name; | |
1033 | uint8_t nb_oargs, nb_iargs, nb_cargs, nb_args; | |
1034 | uint8_t flags; | |
c896fe29 FB |
1035 | TCGArgConstraint *args_ct; |
1036 | int *sorted_args; | |
c68aaa18 SW |
1037 | #if defined(CONFIG_DEBUG_TCG) |
1038 | int used; | |
1039 | #endif | |
c896fe29 | 1040 | } TCGOpDef; |
8399ad59 RH |
1041 | |
1042 | extern TCGOpDef tcg_op_defs[]; | |
2a24374a SW |
1043 | extern const size_t tcg_op_defs_max; |
1044 | ||
c896fe29 | 1045 | typedef struct TCGTargetOpDef { |
a9751609 | 1046 | TCGOpcode op; |
c896fe29 FB |
1047 | const char *args_ct_str[TCG_MAX_OP_ARGS]; |
1048 | } TCGTargetOpDef; | |
1049 | ||
c896fe29 FB |
1050 | #define tcg_abort() \ |
1051 | do {\ | |
1052 | fprintf(stderr, "%s:%d: tcg fatal error\n", __FILE__, __LINE__);\ | |
1053 | abort();\ | |
1054 | } while (0) | |
1055 | ||
be0f34b5 RH |
1056 | bool tcg_op_supported(TCGOpcode op); |
1057 | ||
ae8b75dc | 1058 | void tcg_gen_callN(void *func, TCGTemp *ret, int nargs, TCGTemp **args); |
a7812ae4 | 1059 | |
15fa08f8 | 1060 | TCGOp *tcg_emit_op(TCGOpcode opc); |
0c627cdc | 1061 | void tcg_op_remove(TCGContext *s, TCGOp *op); |
5a18407f RH |
1062 | TCGOp *tcg_op_insert_before(TCGContext *s, TCGOp *op, TCGOpcode opc, int narg); |
1063 | TCGOp *tcg_op_insert_after(TCGContext *s, TCGOp *op, TCGOpcode opc, int narg); | |
1064 | ||
c45cb8bb | 1065 | void tcg_optimize(TCGContext *s); |
8f2e8c07 | 1066 | |
a7812ae4 | 1067 | /* only used for debugging purposes */ |
eeacee4d | 1068 | void tcg_dump_ops(TCGContext *s); |
a7812ae4 | 1069 | |
a7812ae4 PB |
1070 | TCGv_i32 tcg_const_i32(int32_t val); |
1071 | TCGv_i64 tcg_const_i64(int64_t val); | |
1072 | TCGv_i32 tcg_const_local_i32(int32_t val); | |
1073 | TCGv_i64 tcg_const_local_i64(int64_t val); | |
d2fd745f RH |
1074 | TCGv_vec tcg_const_zeros_vec(TCGType); |
1075 | TCGv_vec tcg_const_ones_vec(TCGType); | |
1076 | TCGv_vec tcg_const_zeros_vec_matching(TCGv_vec); | |
1077 | TCGv_vec tcg_const_ones_vec_matching(TCGv_vec); | |
a7812ae4 | 1078 | |
5bfa8034 RH |
1079 | #if UINTPTR_MAX == UINT32_MAX |
1080 | # define tcg_const_ptr(x) ((TCGv_ptr)tcg_const_i32((intptr_t)(x))) | |
1081 | # define tcg_const_local_ptr(x) ((TCGv_ptr)tcg_const_local_i32((intptr_t)(x))) | |
1082 | #else | |
1083 | # define tcg_const_ptr(x) ((TCGv_ptr)tcg_const_i64((intptr_t)(x))) | |
1084 | # define tcg_const_local_ptr(x) ((TCGv_ptr)tcg_const_local_i64((intptr_t)(x))) | |
1085 | #endif | |
1086 | ||
42a268c2 RH |
1087 | TCGLabel *gen_new_label(void); |
1088 | ||
1089 | /** | |
1090 | * label_arg | |
1091 | * @l: label | |
1092 | * | |
1093 | * Encode a label for storage in the TCG opcode stream. | |
1094 | */ | |
1095 | ||
1096 | static inline TCGArg label_arg(TCGLabel *l) | |
1097 | { | |
51e3972c | 1098 | return (uintptr_t)l; |
42a268c2 RH |
1099 | } |
1100 | ||
1101 | /** | |
1102 | * arg_label | |
1103 | * @i: value | |
1104 | * | |
1105 | * The opposite of label_arg. Retrieve a label from the | |
1106 | * encoding of the TCG opcode stream. | |
1107 | */ | |
1108 | ||
51e3972c | 1109 | static inline TCGLabel *arg_label(TCGArg i) |
42a268c2 | 1110 | { |
51e3972c | 1111 | return (TCGLabel *)(uintptr_t)i; |
42a268c2 RH |
1112 | } |
1113 | ||
52a1f64e RH |
1114 | /** |
1115 | * tcg_ptr_byte_diff | |
1116 | * @a, @b: addresses to be differenced | |
1117 | * | |
1118 | * There are many places within the TCG backends where we need a byte | |
1119 | * difference between two pointers. While this can be accomplished | |
1120 | * with local casting, it's easy to get wrong -- especially if one is | |
1121 | * concerned with the signedness of the result. | |
1122 | * | |
1123 | * This version relies on GCC's void pointer arithmetic to get the | |
1124 | * correct result. | |
1125 | */ | |
1126 | ||
1127 | static inline ptrdiff_t tcg_ptr_byte_diff(void *a, void *b) | |
1128 | { | |
1129 | return a - b; | |
1130 | } | |
1131 | ||
1132 | /** | |
1133 | * tcg_pcrel_diff | |
1134 | * @s: the tcg context | |
1135 | * @target: address of the target | |
1136 | * | |
1137 | * Produce a pc-relative difference, from the current code_ptr | |
1138 | * to the destination address. | |
1139 | */ | |
1140 | ||
1141 | static inline ptrdiff_t tcg_pcrel_diff(TCGContext *s, void *target) | |
1142 | { | |
1143 | return tcg_ptr_byte_diff(target, s->code_ptr); | |
1144 | } | |
1145 | ||
1146 | /** | |
1147 | * tcg_current_code_size | |
1148 | * @s: the tcg context | |
1149 | * | |
1150 | * Compute the current code size within the translation block. | |
1151 | * This is used to fill in qemu's data structures for goto_tb. | |
1152 | */ | |
1153 | ||
1154 | static inline size_t tcg_current_code_size(TCGContext *s) | |
1155 | { | |
1156 | return tcg_ptr_byte_diff(s->code_ptr, s->code_buf); | |
1157 | } | |
1158 | ||
59227d5d RH |
1159 | /* Combine the TCGMemOp and mmu_idx parameters into a single value. */ |
1160 | typedef uint32_t TCGMemOpIdx; | |
1161 | ||
1162 | /** | |
1163 | * make_memop_idx | |
1164 | * @op: memory operation | |
1165 | * @idx: mmu index | |
1166 | * | |
1167 | * Encode these values into a single parameter. | |
1168 | */ | |
1169 | static inline TCGMemOpIdx make_memop_idx(TCGMemOp op, unsigned idx) | |
1170 | { | |
1171 | tcg_debug_assert(idx <= 15); | |
1172 | return (op << 4) | idx; | |
1173 | } | |
1174 | ||
1175 | /** | |
1176 | * get_memop | |
1177 | * @oi: combined op/idx parameter | |
1178 | * | |
1179 | * Extract the memory operation from the combined value. | |
1180 | */ | |
1181 | static inline TCGMemOp get_memop(TCGMemOpIdx oi) | |
1182 | { | |
1183 | return oi >> 4; | |
1184 | } | |
1185 | ||
1186 | /** | |
1187 | * get_mmuidx | |
1188 | * @oi: combined op/idx parameter | |
1189 | * | |
1190 | * Extract the mmu index from the combined value. | |
1191 | */ | |
1192 | static inline unsigned get_mmuidx(TCGMemOpIdx oi) | |
1193 | { | |
1194 | return oi & 15; | |
1195 | } | |
1196 | ||
0980011b PM |
1197 | /** |
1198 | * tcg_qemu_tb_exec: | |
819af24b | 1199 | * @env: pointer to CPUArchState for the CPU |
0980011b PM |
1200 | * @tb_ptr: address of generated code for the TB to execute |
1201 | * | |
1202 | * Start executing code from a given translation block. | |
1203 | * Where translation blocks have been linked, execution | |
1204 | * may proceed from the given TB into successive ones. | |
1205 | * Control eventually returns only when some action is needed | |
1206 | * from the top-level loop: either control must pass to a TB | |
1207 | * which has not yet been directly linked, or an asynchronous | |
1208 | * event such as an interrupt needs handling. | |
1209 | * | |
819af24b SF |
1210 | * Return: The return value is the value passed to the corresponding |
1211 | * tcg_gen_exit_tb() at translation time of the last TB attempted to execute. | |
1212 | * The value is either zero or a 4-byte aligned pointer to that TB combined | |
1213 | * with additional information in its two least significant bits. The | |
1214 | * additional information is encoded as follows: | |
0980011b PM |
1215 | * 0, 1: the link between this TB and the next is via the specified |
1216 | * TB index (0 or 1). That is, we left the TB via (the equivalent | |
1217 | * of) "goto_tb <index>". The main loop uses this to determine | |
1218 | * how to link the TB just executed to the next. | |
1219 | * 2: we are using instruction counting code generation, and we | |
1220 | * did not start executing this TB because the instruction counter | |
819af24b | 1221 | * would hit zero midway through it. In this case the pointer |
0980011b PM |
1222 | * returned is the TB we were about to execute, and the caller must |
1223 | * arrange to execute the remaining count of instructions. | |
378df4b2 PM |
1224 | * 3: we stopped because the CPU's exit_request flag was set |
1225 | * (usually meaning that there is an interrupt that needs to be | |
819af24b SF |
1226 | * handled). The pointer returned is the TB we were about to execute |
1227 | * when we noticed the pending exit request. | |
0980011b PM |
1228 | * |
1229 | * If the bottom two bits indicate an exit-via-index then the CPU | |
1230 | * state is correctly synchronised and ready for execution of the next | |
1231 | * TB (and in particular the guest PC is the address to execute next). | |
1232 | * Otherwise, we gave up on execution of this TB before it started, and | |
fee068e4 | 1233 | * the caller must fix up the CPU state by calling the CPU's |
819af24b | 1234 | * synchronize_from_tb() method with the TB pointer we return (falling |
fee068e4 PC |
1235 | * back to calling the CPU's set_pc method with tb->pb if no |
1236 | * synchronize_from_tb() method exists). | |
0980011b PM |
1237 | * |
1238 | * Note that TCG targets may use a different definition of tcg_qemu_tb_exec | |
1239 | * to this default (which just calls the prologue.code emitted by | |
1240 | * tcg_target_qemu_prologue()). | |
1241 | */ | |
07ea28b4 RH |
1242 | #define TB_EXIT_MASK 3 |
1243 | #define TB_EXIT_IDX0 0 | |
1244 | #define TB_EXIT_IDX1 1 | |
1245 | #define TB_EXIT_IDXMAX 1 | |
378df4b2 | 1246 | #define TB_EXIT_REQUESTED 3 |
0980011b | 1247 | |
5a58e884 PB |
1248 | #ifdef HAVE_TCG_QEMU_TB_EXEC |
1249 | uintptr_t tcg_qemu_tb_exec(CPUArchState *env, uint8_t *tb_ptr); | |
1250 | #else | |
ce285b17 | 1251 | # define tcg_qemu_tb_exec(env, tb_ptr) \ |
b1311c4a | 1252 | ((uintptr_t (*)(void *, void *))tcg_ctx->code_gen_prologue)(env, tb_ptr) |
932a6909 | 1253 | #endif |
813da627 RH |
1254 | |
1255 | void tcg_register_jit(void *buf, size_t buf_size); | |
b76f0d8c | 1256 | |
db432672 RH |
1257 | #if TCG_TARGET_MAYBE_vec |
1258 | /* Return zero if the tuple (opc, type, vece) is unsupportable; | |
1259 | return > 0 if it is directly supportable; | |
1260 | return < 0 if we must call tcg_expand_vec_op. */ | |
1261 | int tcg_can_emit_vec_op(TCGOpcode, TCGType, unsigned); | |
1262 | #else | |
1263 | static inline int tcg_can_emit_vec_op(TCGOpcode o, TCGType t, unsigned ve) | |
1264 | { | |
1265 | return 0; | |
1266 | } | |
1267 | #endif | |
1268 | ||
1269 | /* Expand the tuple (opc, type, vece) on the given arguments. */ | |
1270 | void tcg_expand_vec_op(TCGOpcode, TCGType, unsigned, TCGArg, ...); | |
1271 | ||
1272 | /* Replicate a constant C accoring to the log2 of the element size. */ | |
1273 | uint64_t dup_const(unsigned vece, uint64_t c); | |
1274 | ||
1275 | #define dup_const(VECE, C) \ | |
1276 | (__builtin_constant_p(VECE) \ | |
1277 | ? ( (VECE) == MO_8 ? 0x0101010101010101ull * (uint8_t)(C) \ | |
1278 | : (VECE) == MO_16 ? 0x0001000100010001ull * (uint16_t)(C) \ | |
1279 | : (VECE) == MO_32 ? 0x0000000100000001ull * (uint32_t)(C) \ | |
1280 | : dup_const(VECE, C)) \ | |
1281 | : dup_const(VECE, C)) | |
1282 | ||
1283 | ||
e58eb534 RH |
1284 | /* |
1285 | * Memory helpers that will be used by TCG generated code. | |
1286 | */ | |
1287 | #ifdef CONFIG_SOFTMMU | |
c8f94df5 RH |
1288 | /* Value zero-extended to tcg register size. */ |
1289 | tcg_target_ulong helper_ret_ldub_mmu(CPUArchState *env, target_ulong addr, | |
3972ef6f | 1290 | TCGMemOpIdx oi, uintptr_t retaddr); |
867b3201 | 1291 | tcg_target_ulong helper_le_lduw_mmu(CPUArchState *env, target_ulong addr, |
3972ef6f | 1292 | TCGMemOpIdx oi, uintptr_t retaddr); |
867b3201 | 1293 | tcg_target_ulong helper_le_ldul_mmu(CPUArchState *env, target_ulong addr, |
3972ef6f | 1294 | TCGMemOpIdx oi, uintptr_t retaddr); |
867b3201 | 1295 | uint64_t helper_le_ldq_mmu(CPUArchState *env, target_ulong addr, |
3972ef6f | 1296 | TCGMemOpIdx oi, uintptr_t retaddr); |
867b3201 | 1297 | tcg_target_ulong helper_be_lduw_mmu(CPUArchState *env, target_ulong addr, |
3972ef6f | 1298 | TCGMemOpIdx oi, uintptr_t retaddr); |
867b3201 | 1299 | tcg_target_ulong helper_be_ldul_mmu(CPUArchState *env, target_ulong addr, |
3972ef6f | 1300 | TCGMemOpIdx oi, uintptr_t retaddr); |
867b3201 | 1301 | uint64_t helper_be_ldq_mmu(CPUArchState *env, target_ulong addr, |
3972ef6f | 1302 | TCGMemOpIdx oi, uintptr_t retaddr); |
e58eb534 | 1303 | |
c8f94df5 RH |
1304 | /* Value sign-extended to tcg register size. */ |
1305 | tcg_target_ulong helper_ret_ldsb_mmu(CPUArchState *env, target_ulong addr, | |
3972ef6f | 1306 | TCGMemOpIdx oi, uintptr_t retaddr); |
867b3201 | 1307 | tcg_target_ulong helper_le_ldsw_mmu(CPUArchState *env, target_ulong addr, |
3972ef6f | 1308 | TCGMemOpIdx oi, uintptr_t retaddr); |
867b3201 | 1309 | tcg_target_ulong helper_le_ldsl_mmu(CPUArchState *env, target_ulong addr, |
3972ef6f | 1310 | TCGMemOpIdx oi, uintptr_t retaddr); |
867b3201 | 1311 | tcg_target_ulong helper_be_ldsw_mmu(CPUArchState *env, target_ulong addr, |
3972ef6f | 1312 | TCGMemOpIdx oi, uintptr_t retaddr); |
867b3201 | 1313 | tcg_target_ulong helper_be_ldsl_mmu(CPUArchState *env, target_ulong addr, |
3972ef6f | 1314 | TCGMemOpIdx oi, uintptr_t retaddr); |
c8f94df5 | 1315 | |
e58eb534 | 1316 | void helper_ret_stb_mmu(CPUArchState *env, target_ulong addr, uint8_t val, |
3972ef6f | 1317 | TCGMemOpIdx oi, uintptr_t retaddr); |
867b3201 | 1318 | void helper_le_stw_mmu(CPUArchState *env, target_ulong addr, uint16_t val, |
3972ef6f | 1319 | TCGMemOpIdx oi, uintptr_t retaddr); |
867b3201 | 1320 | void helper_le_stl_mmu(CPUArchState *env, target_ulong addr, uint32_t val, |
3972ef6f | 1321 | TCGMemOpIdx oi, uintptr_t retaddr); |
867b3201 | 1322 | void helper_le_stq_mmu(CPUArchState *env, target_ulong addr, uint64_t val, |
3972ef6f | 1323 | TCGMemOpIdx oi, uintptr_t retaddr); |
867b3201 | 1324 | void helper_be_stw_mmu(CPUArchState *env, target_ulong addr, uint16_t val, |
3972ef6f | 1325 | TCGMemOpIdx oi, uintptr_t retaddr); |
867b3201 | 1326 | void helper_be_stl_mmu(CPUArchState *env, target_ulong addr, uint32_t val, |
3972ef6f | 1327 | TCGMemOpIdx oi, uintptr_t retaddr); |
867b3201 | 1328 | void helper_be_stq_mmu(CPUArchState *env, target_ulong addr, uint64_t val, |
3972ef6f | 1329 | TCGMemOpIdx oi, uintptr_t retaddr); |
867b3201 | 1330 | |
282dffc8 PD |
1331 | uint8_t helper_ret_ldb_cmmu(CPUArchState *env, target_ulong addr, |
1332 | TCGMemOpIdx oi, uintptr_t retaddr); | |
1333 | uint16_t helper_le_ldw_cmmu(CPUArchState *env, target_ulong addr, | |
1334 | TCGMemOpIdx oi, uintptr_t retaddr); | |
1335 | uint32_t helper_le_ldl_cmmu(CPUArchState *env, target_ulong addr, | |
1336 | TCGMemOpIdx oi, uintptr_t retaddr); | |
1337 | uint64_t helper_le_ldq_cmmu(CPUArchState *env, target_ulong addr, | |
1338 | TCGMemOpIdx oi, uintptr_t retaddr); | |
1339 | uint16_t helper_be_ldw_cmmu(CPUArchState *env, target_ulong addr, | |
1340 | TCGMemOpIdx oi, uintptr_t retaddr); | |
1341 | uint32_t helper_be_ldl_cmmu(CPUArchState *env, target_ulong addr, | |
1342 | TCGMemOpIdx oi, uintptr_t retaddr); | |
1343 | uint64_t helper_be_ldq_cmmu(CPUArchState *env, target_ulong addr, | |
1344 | TCGMemOpIdx oi, uintptr_t retaddr); | |
1345 | ||
867b3201 RH |
1346 | /* Temporary aliases until backends are converted. */ |
1347 | #ifdef TARGET_WORDS_BIGENDIAN | |
1348 | # define helper_ret_ldsw_mmu helper_be_ldsw_mmu | |
1349 | # define helper_ret_lduw_mmu helper_be_lduw_mmu | |
1350 | # define helper_ret_ldsl_mmu helper_be_ldsl_mmu | |
1351 | # define helper_ret_ldul_mmu helper_be_ldul_mmu | |
282dffc8 | 1352 | # define helper_ret_ldl_mmu helper_be_ldul_mmu |
867b3201 RH |
1353 | # define helper_ret_ldq_mmu helper_be_ldq_mmu |
1354 | # define helper_ret_stw_mmu helper_be_stw_mmu | |
1355 | # define helper_ret_stl_mmu helper_be_stl_mmu | |
1356 | # define helper_ret_stq_mmu helper_be_stq_mmu | |
282dffc8 PD |
1357 | # define helper_ret_ldw_cmmu helper_be_ldw_cmmu |
1358 | # define helper_ret_ldl_cmmu helper_be_ldl_cmmu | |
1359 | # define helper_ret_ldq_cmmu helper_be_ldq_cmmu | |
867b3201 RH |
1360 | #else |
1361 | # define helper_ret_ldsw_mmu helper_le_ldsw_mmu | |
1362 | # define helper_ret_lduw_mmu helper_le_lduw_mmu | |
1363 | # define helper_ret_ldsl_mmu helper_le_ldsl_mmu | |
1364 | # define helper_ret_ldul_mmu helper_le_ldul_mmu | |
282dffc8 | 1365 | # define helper_ret_ldl_mmu helper_le_ldul_mmu |
867b3201 RH |
1366 | # define helper_ret_ldq_mmu helper_le_ldq_mmu |
1367 | # define helper_ret_stw_mmu helper_le_stw_mmu | |
1368 | # define helper_ret_stl_mmu helper_le_stl_mmu | |
1369 | # define helper_ret_stq_mmu helper_le_stq_mmu | |
282dffc8 PD |
1370 | # define helper_ret_ldw_cmmu helper_le_ldw_cmmu |
1371 | # define helper_ret_ldl_cmmu helper_le_ldl_cmmu | |
1372 | # define helper_ret_ldq_cmmu helper_le_ldq_cmmu | |
867b3201 | 1373 | #endif |
e58eb534 | 1374 | |
c482cb11 RH |
1375 | uint32_t helper_atomic_cmpxchgb_mmu(CPUArchState *env, target_ulong addr, |
1376 | uint32_t cmpv, uint32_t newv, | |
1377 | TCGMemOpIdx oi, uintptr_t retaddr); | |
1378 | uint32_t helper_atomic_cmpxchgw_le_mmu(CPUArchState *env, target_ulong addr, | |
1379 | uint32_t cmpv, uint32_t newv, | |
1380 | TCGMemOpIdx oi, uintptr_t retaddr); | |
1381 | uint32_t helper_atomic_cmpxchgl_le_mmu(CPUArchState *env, target_ulong addr, | |
1382 | uint32_t cmpv, uint32_t newv, | |
1383 | TCGMemOpIdx oi, uintptr_t retaddr); | |
1384 | uint64_t helper_atomic_cmpxchgq_le_mmu(CPUArchState *env, target_ulong addr, | |
1385 | uint64_t cmpv, uint64_t newv, | |
1386 | TCGMemOpIdx oi, uintptr_t retaddr); | |
1387 | uint32_t helper_atomic_cmpxchgw_be_mmu(CPUArchState *env, target_ulong addr, | |
1388 | uint32_t cmpv, uint32_t newv, | |
1389 | TCGMemOpIdx oi, uintptr_t retaddr); | |
1390 | uint32_t helper_atomic_cmpxchgl_be_mmu(CPUArchState *env, target_ulong addr, | |
1391 | uint32_t cmpv, uint32_t newv, | |
1392 | TCGMemOpIdx oi, uintptr_t retaddr); | |
1393 | uint64_t helper_atomic_cmpxchgq_be_mmu(CPUArchState *env, target_ulong addr, | |
1394 | uint64_t cmpv, uint64_t newv, | |
1395 | TCGMemOpIdx oi, uintptr_t retaddr); | |
1396 | ||
1397 | #define GEN_ATOMIC_HELPER(NAME, TYPE, SUFFIX) \ | |
1398 | TYPE helper_atomic_ ## NAME ## SUFFIX ## _mmu \ | |
1399 | (CPUArchState *env, target_ulong addr, TYPE val, \ | |
1400 | TCGMemOpIdx oi, uintptr_t retaddr); | |
1401 | ||
df79b996 | 1402 | #ifdef CONFIG_ATOMIC64 |
c482cb11 | 1403 | #define GEN_ATOMIC_HELPER_ALL(NAME) \ |
df79b996 | 1404 | GEN_ATOMIC_HELPER(NAME, uint32_t, b) \ |
c482cb11 | 1405 | GEN_ATOMIC_HELPER(NAME, uint32_t, w_le) \ |
c482cb11 | 1406 | GEN_ATOMIC_HELPER(NAME, uint32_t, w_be) \ |
df79b996 | 1407 | GEN_ATOMIC_HELPER(NAME, uint32_t, l_le) \ |
c482cb11 | 1408 | GEN_ATOMIC_HELPER(NAME, uint32_t, l_be) \ |
df79b996 | 1409 | GEN_ATOMIC_HELPER(NAME, uint64_t, q_le) \ |
c482cb11 | 1410 | GEN_ATOMIC_HELPER(NAME, uint64_t, q_be) |
df79b996 RH |
1411 | #else |
1412 | #define GEN_ATOMIC_HELPER_ALL(NAME) \ | |
1413 | GEN_ATOMIC_HELPER(NAME, uint32_t, b) \ | |
1414 | GEN_ATOMIC_HELPER(NAME, uint32_t, w_le) \ | |
1415 | GEN_ATOMIC_HELPER(NAME, uint32_t, w_be) \ | |
1416 | GEN_ATOMIC_HELPER(NAME, uint32_t, l_le) \ | |
1417 | GEN_ATOMIC_HELPER(NAME, uint32_t, l_be) | |
1418 | #endif | |
c482cb11 RH |
1419 | |
1420 | GEN_ATOMIC_HELPER_ALL(fetch_add) | |
1421 | GEN_ATOMIC_HELPER_ALL(fetch_sub) | |
1422 | GEN_ATOMIC_HELPER_ALL(fetch_and) | |
1423 | GEN_ATOMIC_HELPER_ALL(fetch_or) | |
1424 | GEN_ATOMIC_HELPER_ALL(fetch_xor) | |
5507c2bf RH |
1425 | GEN_ATOMIC_HELPER_ALL(fetch_smin) |
1426 | GEN_ATOMIC_HELPER_ALL(fetch_umin) | |
1427 | GEN_ATOMIC_HELPER_ALL(fetch_smax) | |
1428 | GEN_ATOMIC_HELPER_ALL(fetch_umax) | |
c482cb11 RH |
1429 | |
1430 | GEN_ATOMIC_HELPER_ALL(add_fetch) | |
1431 | GEN_ATOMIC_HELPER_ALL(sub_fetch) | |
1432 | GEN_ATOMIC_HELPER_ALL(and_fetch) | |
1433 | GEN_ATOMIC_HELPER_ALL(or_fetch) | |
1434 | GEN_ATOMIC_HELPER_ALL(xor_fetch) | |
5507c2bf RH |
1435 | GEN_ATOMIC_HELPER_ALL(smin_fetch) |
1436 | GEN_ATOMIC_HELPER_ALL(umin_fetch) | |
1437 | GEN_ATOMIC_HELPER_ALL(smax_fetch) | |
1438 | GEN_ATOMIC_HELPER_ALL(umax_fetch) | |
c482cb11 RH |
1439 | |
1440 | GEN_ATOMIC_HELPER_ALL(xchg) | |
1441 | ||
1442 | #undef GEN_ATOMIC_HELPER_ALL | |
1443 | #undef GEN_ATOMIC_HELPER | |
e58eb534 RH |
1444 | #endif /* CONFIG_SOFTMMU */ |
1445 | ||
7ebee43e RH |
1446 | #ifdef CONFIG_ATOMIC128 |
1447 | #include "qemu/int128.h" | |
1448 | ||
1449 | /* These aren't really a "proper" helpers because TCG cannot manage Int128. | |
1450 | However, use the same format as the others, for use by the backends. */ | |
1451 | Int128 helper_atomic_cmpxchgo_le_mmu(CPUArchState *env, target_ulong addr, | |
1452 | Int128 cmpv, Int128 newv, | |
1453 | TCGMemOpIdx oi, uintptr_t retaddr); | |
1454 | Int128 helper_atomic_cmpxchgo_be_mmu(CPUArchState *env, target_ulong addr, | |
1455 | Int128 cmpv, Int128 newv, | |
1456 | TCGMemOpIdx oi, uintptr_t retaddr); | |
1457 | ||
1458 | Int128 helper_atomic_ldo_le_mmu(CPUArchState *env, target_ulong addr, | |
1459 | TCGMemOpIdx oi, uintptr_t retaddr); | |
1460 | Int128 helper_atomic_ldo_be_mmu(CPUArchState *env, target_ulong addr, | |
1461 | TCGMemOpIdx oi, uintptr_t retaddr); | |
1462 | void helper_atomic_sto_le_mmu(CPUArchState *env, target_ulong addr, Int128 val, | |
1463 | TCGMemOpIdx oi, uintptr_t retaddr); | |
1464 | void helper_atomic_sto_be_mmu(CPUArchState *env, target_ulong addr, Int128 val, | |
1465 | TCGMemOpIdx oi, uintptr_t retaddr); | |
1466 | ||
1467 | #endif /* CONFIG_ATOMIC128 */ | |
1468 | ||
e58eb534 | 1469 | #endif /* TCG_H */ |