asmx64.c 23 KB

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  1. /*
  2. * This file is part of the MicroPython project, http://micropython.org/
  3. *
  4. * The MIT License (MIT)
  5. *
  6. * Copyright (c) 2013, 2014 Damien P. George
  7. *
  8. * Permission is hereby granted, free of charge, to any person obtaining a copy
  9. * of this software and associated documentation files (the "Software"), to deal
  10. * in the Software without restriction, including without limitation the rights
  11. * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
  12. * copies of the Software, and to permit persons to whom the Software is
  13. * furnished to do so, subject to the following conditions:
  14. *
  15. * The above copyright notice and this permission notice shall be included in
  16. * all copies or substantial portions of the Software.
  17. *
  18. * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
  19. * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
  20. * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
  21. * AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
  22. * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
  23. * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
  24. * THE SOFTWARE.
  25. */
  26. #include <stdint.h>
  27. #include <stdio.h>
  28. #include <assert.h>
  29. #include <string.h>
  30. #include "py/mpconfig.h"
  31. // wrapper around everything in this file
  32. #if MICROPY_EMIT_X64
  33. #include "py/asmx64.h"
  34. /* all offsets are measured in multiples of 8 bytes */
  35. #define WORD_SIZE (8)
  36. #define OPCODE_NOP (0x90)
  37. #define OPCODE_PUSH_R64 (0x50) /* +rq */
  38. #define OPCODE_PUSH_I64 (0x68)
  39. #define OPCODE_PUSH_M64 (0xff) /* /6 */
  40. #define OPCODE_POP_R64 (0x58) /* +rq */
  41. #define OPCODE_RET (0xc3)
  42. #define OPCODE_MOV_I8_TO_R8 (0xb0) /* +rb */
  43. #define OPCODE_MOV_I64_TO_R64 (0xb8) /* +rq */
  44. #define OPCODE_MOV_I32_TO_RM32 (0xc7)
  45. #define OPCODE_MOV_R8_TO_RM8 (0x88) /* /r */
  46. #define OPCODE_MOV_R64_TO_RM64 (0x89) /* /r */
  47. #define OPCODE_MOV_RM64_TO_R64 (0x8b) /* /r */
  48. #define OPCODE_MOVZX_RM8_TO_R64 (0xb6) /* 0x0f 0xb6/r */
  49. #define OPCODE_MOVZX_RM16_TO_R64 (0xb7) /* 0x0f 0xb7/r */
  50. #define OPCODE_LEA_MEM_TO_R64 (0x8d) /* /r */
  51. #define OPCODE_AND_R64_TO_RM64 (0x21) /* /r */
  52. #define OPCODE_OR_R64_TO_RM64 (0x09) /* /r */
  53. #define OPCODE_XOR_R64_TO_RM64 (0x31) /* /r */
  54. #define OPCODE_ADD_R64_TO_RM64 (0x01) /* /r */
  55. #define OPCODE_ADD_I32_TO_RM32 (0x81) /* /0 */
  56. #define OPCODE_ADD_I8_TO_RM32 (0x83) /* /0 */
  57. #define OPCODE_SUB_R64_FROM_RM64 (0x29)
  58. #define OPCODE_SUB_I32_FROM_RM64 (0x81) /* /5 */
  59. #define OPCODE_SUB_I8_FROM_RM64 (0x83) /* /5 */
  60. // #define OPCODE_SHL_RM32_BY_I8 (0xc1) /* /4 */
  61. // #define OPCODE_SHR_RM32_BY_I8 (0xc1) /* /5 */
  62. // #define OPCODE_SAR_RM32_BY_I8 (0xc1) /* /7 */
  63. #define OPCODE_SHL_RM64_CL (0xd3) /* /4 */
  64. #define OPCODE_SHR_RM64_CL (0xd3) /* /5 */
  65. #define OPCODE_SAR_RM64_CL (0xd3) /* /7 */
  66. // #define OPCODE_CMP_I32_WITH_RM32 (0x81) /* /7 */
  67. // #define OPCODE_CMP_I8_WITH_RM32 (0x83) /* /7 */
  68. #define OPCODE_CMP_R64_WITH_RM64 (0x39) /* /r */
  69. // #define OPCODE_CMP_RM32_WITH_R32 (0x3b)
  70. #define OPCODE_TEST_R8_WITH_RM8 (0x84) /* /r */
  71. #define OPCODE_TEST_R64_WITH_RM64 (0x85) /* /r */
  72. #define OPCODE_JMP_REL8 (0xeb)
  73. #define OPCODE_JMP_REL32 (0xe9)
  74. #define OPCODE_JMP_RM64 (0xff) /* /4 */
  75. #define OPCODE_JCC_REL8 (0x70) /* | jcc type */
  76. #define OPCODE_JCC_REL32_A (0x0f)
  77. #define OPCODE_JCC_REL32_B (0x80) /* | jcc type */
  78. #define OPCODE_SETCC_RM8_A (0x0f)
  79. #define OPCODE_SETCC_RM8_B (0x90) /* | jcc type, /0 */
  80. #define OPCODE_CALL_REL32 (0xe8)
  81. #define OPCODE_CALL_RM32 (0xff) /* /2 */
  82. #define OPCODE_LEAVE (0xc9)
  83. #define MODRM_R64(x) (((x) & 0x7) << 3)
  84. #define MODRM_RM_DISP0 (0x00)
  85. #define MODRM_RM_DISP8 (0x40)
  86. #define MODRM_RM_DISP32 (0x80)
  87. #define MODRM_RM_REG (0xc0)
  88. #define MODRM_RM_R64(x) ((x) & 0x7)
  89. #define OP_SIZE_PREFIX (0x66)
  90. #define REX_PREFIX (0x40)
  91. #define REX_W (0x08) // width
  92. #define REX_R (0x04) // register
  93. #define REX_X (0x02) // index
  94. #define REX_B (0x01) // base
  95. #define REX_W_FROM_R64(r64) ((r64) >> 0 & 0x08)
  96. #define REX_R_FROM_R64(r64) ((r64) >> 1 & 0x04)
  97. #define REX_X_FROM_R64(r64) ((r64) >> 2 & 0x02)
  98. #define REX_B_FROM_R64(r64) ((r64) >> 3 & 0x01)
  99. #define IMM32_L0(x) ((x) & 0xff)
  100. #define IMM32_L1(x) (((x) >> 8) & 0xff)
  101. #define IMM32_L2(x) (((x) >> 16) & 0xff)
  102. #define IMM32_L3(x) (((x) >> 24) & 0xff)
  103. #define IMM64_L4(x) (((x) >> 32) & 0xff)
  104. #define IMM64_L5(x) (((x) >> 40) & 0xff)
  105. #define IMM64_L6(x) (((x) >> 48) & 0xff)
  106. #define IMM64_L7(x) (((x) >> 56) & 0xff)
  107. #define UNSIGNED_FIT8(x) (((x) & 0xffffffffffffff00) == 0)
  108. #define UNSIGNED_FIT32(x) (((x) & 0xffffffff00000000) == 0)
  109. #define SIGNED_FIT8(x) (((x) & 0xffffff80) == 0) || (((x) & 0xffffff80) == 0xffffff80)
  110. static inline byte *asm_x64_get_cur_to_write_bytes(asm_x64_t *as, int n) {
  111. return mp_asm_base_get_cur_to_write_bytes(&as->base, n);
  112. }
  113. STATIC void asm_x64_write_byte_1(asm_x64_t *as, byte b1) {
  114. byte *c = asm_x64_get_cur_to_write_bytes(as, 1);
  115. if (c != NULL) {
  116. c[0] = b1;
  117. }
  118. }
  119. STATIC void asm_x64_write_byte_2(asm_x64_t *as, byte b1, byte b2) {
  120. byte *c = asm_x64_get_cur_to_write_bytes(as, 2);
  121. if (c != NULL) {
  122. c[0] = b1;
  123. c[1] = b2;
  124. }
  125. }
  126. STATIC void asm_x64_write_byte_3(asm_x64_t *as, byte b1, byte b2, byte b3) {
  127. byte *c = asm_x64_get_cur_to_write_bytes(as, 3);
  128. if (c != NULL) {
  129. c[0] = b1;
  130. c[1] = b2;
  131. c[2] = b3;
  132. }
  133. }
  134. STATIC void asm_x64_write_word32(asm_x64_t *as, int w32) {
  135. byte *c = asm_x64_get_cur_to_write_bytes(as, 4);
  136. if (c != NULL) {
  137. c[0] = IMM32_L0(w32);
  138. c[1] = IMM32_L1(w32);
  139. c[2] = IMM32_L2(w32);
  140. c[3] = IMM32_L3(w32);
  141. }
  142. }
  143. STATIC void asm_x64_write_word64(asm_x64_t *as, int64_t w64) {
  144. byte *c = asm_x64_get_cur_to_write_bytes(as, 8);
  145. if (c != NULL) {
  146. c[0] = IMM32_L0(w64);
  147. c[1] = IMM32_L1(w64);
  148. c[2] = IMM32_L2(w64);
  149. c[3] = IMM32_L3(w64);
  150. c[4] = IMM64_L4(w64);
  151. c[5] = IMM64_L5(w64);
  152. c[6] = IMM64_L6(w64);
  153. c[7] = IMM64_L7(w64);
  154. }
  155. }
  156. /* unused
  157. STATIC void asm_x64_write_word32_to(asm_x64_t *as, int offset, int w32) {
  158. byte* c;
  159. assert(offset + 4 <= as->code_size);
  160. c = as->code_base + offset;
  161. c[0] = IMM32_L0(w32);
  162. c[1] = IMM32_L1(w32);
  163. c[2] = IMM32_L2(w32);
  164. c[3] = IMM32_L3(w32);
  165. }
  166. */
  167. STATIC void asm_x64_write_r64_disp(asm_x64_t *as, int r64, int disp_r64, int disp_offset) {
  168. uint8_t rm_disp;
  169. if (disp_offset == 0 && (disp_r64 & 7) != ASM_X64_REG_RBP) {
  170. rm_disp = MODRM_RM_DISP0;
  171. } else if (SIGNED_FIT8(disp_offset)) {
  172. rm_disp = MODRM_RM_DISP8;
  173. } else {
  174. rm_disp = MODRM_RM_DISP32;
  175. }
  176. asm_x64_write_byte_1(as, MODRM_R64(r64) | rm_disp | MODRM_RM_R64(disp_r64));
  177. if ((disp_r64 & 7) == ASM_X64_REG_RSP) {
  178. // Special case for rsp and r12, they need a SIB byte
  179. asm_x64_write_byte_1(as, 0x24);
  180. }
  181. if (rm_disp == MODRM_RM_DISP8) {
  182. asm_x64_write_byte_1(as, IMM32_L0(disp_offset));
  183. } else if (rm_disp == MODRM_RM_DISP32) {
  184. asm_x64_write_word32(as, disp_offset);
  185. }
  186. }
  187. STATIC void asm_x64_generic_r64_r64(asm_x64_t *as, int dest_r64, int src_r64, int op) {
  188. asm_x64_write_byte_3(as, REX_PREFIX | REX_W | REX_R_FROM_R64(src_r64) | REX_B_FROM_R64(dest_r64), op, MODRM_R64(src_r64) | MODRM_RM_REG | MODRM_RM_R64(dest_r64));
  189. }
  190. void asm_x64_nop(asm_x64_t *as) {
  191. asm_x64_write_byte_1(as, OPCODE_NOP);
  192. }
  193. void asm_x64_push_r64(asm_x64_t *as, int src_r64) {
  194. if (src_r64 < 8) {
  195. asm_x64_write_byte_1(as, OPCODE_PUSH_R64 | src_r64);
  196. } else {
  197. asm_x64_write_byte_2(as, REX_PREFIX | REX_B, OPCODE_PUSH_R64 | (src_r64 & 7));
  198. }
  199. }
  200. /*
  201. void asm_x64_push_i32(asm_x64_t *as, int src_i32) {
  202. asm_x64_write_byte_1(as, OPCODE_PUSH_I64);
  203. asm_x64_write_word32(as, src_i32); // will be sign extended to 64 bits
  204. }
  205. */
  206. /*
  207. void asm_x64_push_disp(asm_x64_t *as, int src_r64, int src_offset) {
  208. assert(src_r64 < 8);
  209. asm_x64_write_byte_1(as, OPCODE_PUSH_M64);
  210. asm_x64_write_r64_disp(as, 6, src_r64, src_offset);
  211. }
  212. */
  213. void asm_x64_pop_r64(asm_x64_t *as, int dest_r64) {
  214. if (dest_r64 < 8) {
  215. asm_x64_write_byte_1(as, OPCODE_POP_R64 | dest_r64);
  216. } else {
  217. asm_x64_write_byte_2(as, REX_PREFIX | REX_B, OPCODE_POP_R64 | (dest_r64 & 7));
  218. }
  219. }
  220. STATIC void asm_x64_ret(asm_x64_t *as) {
  221. asm_x64_write_byte_1(as, OPCODE_RET);
  222. }
  223. void asm_x64_mov_r64_r64(asm_x64_t *as, int dest_r64, int src_r64) {
  224. asm_x64_generic_r64_r64(as, dest_r64, src_r64, OPCODE_MOV_R64_TO_RM64);
  225. }
  226. void asm_x64_mov_r8_to_mem8(asm_x64_t *as, int src_r64, int dest_r64, int dest_disp) {
  227. if (src_r64 < 8 && dest_r64 < 8) {
  228. asm_x64_write_byte_1(as, OPCODE_MOV_R8_TO_RM8);
  229. } else {
  230. asm_x64_write_byte_2(as, REX_PREFIX | REX_R_FROM_R64(src_r64) | REX_B_FROM_R64(dest_r64), OPCODE_MOV_R8_TO_RM8);
  231. }
  232. asm_x64_write_r64_disp(as, src_r64, dest_r64, dest_disp);
  233. }
  234. void asm_x64_mov_r16_to_mem16(asm_x64_t *as, int src_r64, int dest_r64, int dest_disp) {
  235. if (src_r64 < 8 && dest_r64 < 8) {
  236. asm_x64_write_byte_2(as, OP_SIZE_PREFIX, OPCODE_MOV_R64_TO_RM64);
  237. } else {
  238. asm_x64_write_byte_3(as, OP_SIZE_PREFIX, REX_PREFIX | REX_R_FROM_R64(src_r64) | REX_B_FROM_R64(dest_r64), OPCODE_MOV_R64_TO_RM64);
  239. }
  240. asm_x64_write_r64_disp(as, src_r64, dest_r64, dest_disp);
  241. }
  242. void asm_x64_mov_r32_to_mem32(asm_x64_t *as, int src_r64, int dest_r64, int dest_disp) {
  243. if (src_r64 < 8 && dest_r64 < 8) {
  244. asm_x64_write_byte_1(as, OPCODE_MOV_R64_TO_RM64);
  245. } else {
  246. asm_x64_write_byte_2(as, REX_PREFIX | REX_R_FROM_R64(src_r64) | REX_B_FROM_R64(dest_r64), OPCODE_MOV_R64_TO_RM64);
  247. }
  248. asm_x64_write_r64_disp(as, src_r64, dest_r64, dest_disp);
  249. }
  250. void asm_x64_mov_r64_to_mem64(asm_x64_t *as, int src_r64, int dest_r64, int dest_disp) {
  251. // use REX prefix for 64 bit operation
  252. asm_x64_write_byte_2(as, REX_PREFIX | REX_W | REX_R_FROM_R64(src_r64) | REX_B_FROM_R64(dest_r64), OPCODE_MOV_R64_TO_RM64);
  253. asm_x64_write_r64_disp(as, src_r64, dest_r64, dest_disp);
  254. }
  255. void asm_x64_mov_mem8_to_r64zx(asm_x64_t *as, int src_r64, int src_disp, int dest_r64) {
  256. assert(src_r64 < 8);
  257. if (dest_r64 < 8) {
  258. asm_x64_write_byte_2(as, 0x0f, OPCODE_MOVZX_RM8_TO_R64);
  259. } else {
  260. asm_x64_write_byte_3(as, REX_PREFIX | REX_R, 0x0f, OPCODE_MOVZX_RM8_TO_R64);
  261. }
  262. asm_x64_write_r64_disp(as, dest_r64, src_r64, src_disp);
  263. }
  264. void asm_x64_mov_mem16_to_r64zx(asm_x64_t *as, int src_r64, int src_disp, int dest_r64) {
  265. assert(src_r64 < 8);
  266. if (dest_r64 < 8) {
  267. asm_x64_write_byte_2(as, 0x0f, OPCODE_MOVZX_RM16_TO_R64);
  268. } else {
  269. asm_x64_write_byte_3(as, REX_PREFIX | REX_R, 0x0f, OPCODE_MOVZX_RM16_TO_R64);
  270. }
  271. asm_x64_write_r64_disp(as, dest_r64, src_r64, src_disp);
  272. }
  273. void asm_x64_mov_mem32_to_r64zx(asm_x64_t *as, int src_r64, int src_disp, int dest_r64) {
  274. assert(src_r64 < 8);
  275. if (dest_r64 < 8) {
  276. asm_x64_write_byte_1(as, OPCODE_MOV_RM64_TO_R64);
  277. } else {
  278. asm_x64_write_byte_2(as, REX_PREFIX | REX_R, OPCODE_MOV_RM64_TO_R64);
  279. }
  280. asm_x64_write_r64_disp(as, dest_r64, src_r64, src_disp);
  281. }
  282. void asm_x64_mov_mem64_to_r64(asm_x64_t *as, int src_r64, int src_disp, int dest_r64) {
  283. // use REX prefix for 64 bit operation
  284. asm_x64_write_byte_2(as, REX_PREFIX | REX_W | REX_R_FROM_R64(dest_r64) | REX_B_FROM_R64(src_r64), OPCODE_MOV_RM64_TO_R64);
  285. asm_x64_write_r64_disp(as, dest_r64, src_r64, src_disp);
  286. }
  287. STATIC void asm_x64_lea_disp_to_r64(asm_x64_t *as, int src_r64, int src_disp, int dest_r64) {
  288. // use REX prefix for 64 bit operation
  289. assert(src_r64 < 8);
  290. assert(dest_r64 < 8);
  291. asm_x64_write_byte_2(as, REX_PREFIX | REX_W, OPCODE_LEA_MEM_TO_R64);
  292. asm_x64_write_r64_disp(as, dest_r64, src_r64, src_disp);
  293. }
  294. /*
  295. void asm_x64_mov_i8_to_r8(asm_x64_t *as, int src_i8, int dest_r64) {
  296. assert(dest_r64 < 8);
  297. asm_x64_write_byte_2(as, OPCODE_MOV_I8_TO_R8 | dest_r64, src_i8);
  298. }
  299. */
  300. size_t asm_x64_mov_i32_to_r64(asm_x64_t *as, int src_i32, int dest_r64) {
  301. // cpu defaults to i32 to r64, with zero extension
  302. if (dest_r64 < 8) {
  303. asm_x64_write_byte_1(as, OPCODE_MOV_I64_TO_R64 | dest_r64);
  304. } else {
  305. asm_x64_write_byte_2(as, REX_PREFIX | REX_B, OPCODE_MOV_I64_TO_R64 | (dest_r64 & 7));
  306. }
  307. size_t loc = mp_asm_base_get_code_pos(&as->base);
  308. asm_x64_write_word32(as, src_i32);
  309. return loc;
  310. }
  311. void asm_x64_mov_i64_to_r64(asm_x64_t *as, int64_t src_i64, int dest_r64) {
  312. // cpu defaults to i32 to r64
  313. // to mov i64 to r64 need to use REX prefix
  314. asm_x64_write_byte_2(as,
  315. REX_PREFIX | REX_W | (dest_r64 < 8 ? 0 : REX_B),
  316. OPCODE_MOV_I64_TO_R64 | (dest_r64 & 7));
  317. asm_x64_write_word64(as, src_i64);
  318. }
  319. void asm_x64_mov_i64_to_r64_optimised(asm_x64_t *as, int64_t src_i64, int dest_r64) {
  320. // TODO use movzx, movsx if possible
  321. if (UNSIGNED_FIT32(src_i64)) {
  322. // 5 bytes
  323. asm_x64_mov_i32_to_r64(as, src_i64 & 0xffffffff, dest_r64);
  324. } else {
  325. // 10 bytes
  326. asm_x64_mov_i64_to_r64(as, src_i64, dest_r64);
  327. }
  328. }
  329. void asm_x64_and_r64_r64(asm_x64_t *as, int dest_r64, int src_r64) {
  330. asm_x64_generic_r64_r64(as, dest_r64, src_r64, OPCODE_AND_R64_TO_RM64);
  331. }
  332. void asm_x64_or_r64_r64(asm_x64_t *as, int dest_r64, int src_r64) {
  333. asm_x64_generic_r64_r64(as, dest_r64, src_r64, OPCODE_OR_R64_TO_RM64);
  334. }
  335. void asm_x64_xor_r64_r64(asm_x64_t *as, int dest_r64, int src_r64) {
  336. asm_x64_generic_r64_r64(as, dest_r64, src_r64, OPCODE_XOR_R64_TO_RM64);
  337. }
  338. void asm_x64_shl_r64_cl(asm_x64_t *as, int dest_r64) {
  339. asm_x64_generic_r64_r64(as, dest_r64, 4, OPCODE_SHL_RM64_CL);
  340. }
  341. void asm_x64_shr_r64_cl(asm_x64_t *as, int dest_r64) {
  342. asm_x64_generic_r64_r64(as, dest_r64, 5, OPCODE_SHR_RM64_CL);
  343. }
  344. void asm_x64_sar_r64_cl(asm_x64_t *as, int dest_r64) {
  345. asm_x64_generic_r64_r64(as, dest_r64, 7, OPCODE_SAR_RM64_CL);
  346. }
  347. void asm_x64_add_r64_r64(asm_x64_t *as, int dest_r64, int src_r64) {
  348. asm_x64_generic_r64_r64(as, dest_r64, src_r64, OPCODE_ADD_R64_TO_RM64);
  349. }
  350. void asm_x64_sub_r64_r64(asm_x64_t *as, int dest_r64, int src_r64) {
  351. asm_x64_generic_r64_r64(as, dest_r64, src_r64, OPCODE_SUB_R64_FROM_RM64);
  352. }
  353. void asm_x64_mul_r64_r64(asm_x64_t *as, int dest_r64, int src_r64) {
  354. // imul reg64, reg/mem64 -- 0x0f 0xaf /r
  355. asm_x64_write_byte_1(as, REX_PREFIX | REX_W | REX_R_FROM_R64(dest_r64) | REX_B_FROM_R64(src_r64));
  356. asm_x64_write_byte_3(as, 0x0f, 0xaf, MODRM_R64(dest_r64) | MODRM_RM_REG | MODRM_RM_R64(src_r64));
  357. }
  358. /*
  359. void asm_x64_sub_i32_from_r32(asm_x64_t *as, int src_i32, int dest_r32) {
  360. if (SIGNED_FIT8(src_i32)) {
  361. // defaults to 32 bit operation
  362. asm_x64_write_byte_2(as, OPCODE_SUB_I8_FROM_RM64, MODRM_R64(5) | MODRM_RM_REG | MODRM_RM_R64(dest_r32));
  363. asm_x64_write_byte_1(as, src_i32 & 0xff);
  364. } else {
  365. // defaults to 32 bit operation
  366. asm_x64_write_byte_2(as, OPCODE_SUB_I32_FROM_RM64, MODRM_R64(5) | MODRM_RM_REG | MODRM_RM_R64(dest_r32));
  367. asm_x64_write_word32(as, src_i32);
  368. }
  369. }
  370. */
  371. STATIC void asm_x64_sub_r64_i32(asm_x64_t *as, int dest_r64, int src_i32) {
  372. assert(dest_r64 < 8);
  373. if (SIGNED_FIT8(src_i32)) {
  374. // use REX prefix for 64 bit operation
  375. asm_x64_write_byte_3(as, REX_PREFIX | REX_W, OPCODE_SUB_I8_FROM_RM64, MODRM_R64(5) | MODRM_RM_REG | MODRM_RM_R64(dest_r64));
  376. asm_x64_write_byte_1(as, src_i32 & 0xff);
  377. } else {
  378. // use REX prefix for 64 bit operation
  379. asm_x64_write_byte_3(as, REX_PREFIX | REX_W, OPCODE_SUB_I32_FROM_RM64, MODRM_R64(5) | MODRM_RM_REG | MODRM_RM_R64(dest_r64));
  380. asm_x64_write_word32(as, src_i32);
  381. }
  382. }
  383. /*
  384. void asm_x64_shl_r32_by_imm(asm_x64_t *as, int r32, int imm) {
  385. asm_x64_write_byte_2(as, OPCODE_SHL_RM32_BY_I8, MODRM_R64(4) | MODRM_RM_REG | MODRM_RM_R64(r32));
  386. asm_x64_write_byte_1(as, imm);
  387. }
  388. void asm_x64_shr_r32_by_imm(asm_x64_t *as, int r32, int imm) {
  389. asm_x64_write_byte_2(as, OPCODE_SHR_RM32_BY_I8, MODRM_R64(5) | MODRM_RM_REG | MODRM_RM_R64(r32));
  390. asm_x64_write_byte_1(as, imm);
  391. }
  392. void asm_x64_sar_r32_by_imm(asm_x64_t *as, int r32, int imm) {
  393. asm_x64_write_byte_2(as, OPCODE_SAR_RM32_BY_I8, MODRM_R64(7) | MODRM_RM_REG | MODRM_RM_R64(r32));
  394. asm_x64_write_byte_1(as, imm);
  395. }
  396. */
  397. void asm_x64_cmp_r64_with_r64(asm_x64_t *as, int src_r64_a, int src_r64_b) {
  398. asm_x64_generic_r64_r64(as, src_r64_b, src_r64_a, OPCODE_CMP_R64_WITH_RM64);
  399. }
  400. /*
  401. void asm_x64_cmp_i32_with_r32(asm_x64_t *as, int src_i32, int src_r32) {
  402. if (SIGNED_FIT8(src_i32)) {
  403. asm_x64_write_byte_2(as, OPCODE_CMP_I8_WITH_RM32, MODRM_R64(7) | MODRM_RM_REG | MODRM_RM_R64(src_r32));
  404. asm_x64_write_byte_1(as, src_i32 & 0xff);
  405. } else {
  406. asm_x64_write_byte_2(as, OPCODE_CMP_I32_WITH_RM32, MODRM_R64(7) | MODRM_RM_REG | MODRM_RM_R64(src_r32));
  407. asm_x64_write_word32(as, src_i32);
  408. }
  409. }
  410. */
  411. void asm_x64_test_r8_with_r8(asm_x64_t *as, int src_r64_a, int src_r64_b) {
  412. assert(src_r64_a < 8);
  413. assert(src_r64_b < 8);
  414. asm_x64_write_byte_2(as, OPCODE_TEST_R8_WITH_RM8, MODRM_R64(src_r64_a) | MODRM_RM_REG | MODRM_RM_R64(src_r64_b));
  415. }
  416. void asm_x64_test_r64_with_r64(asm_x64_t *as, int src_r64_a, int src_r64_b) {
  417. asm_x64_generic_r64_r64(as, src_r64_b, src_r64_a, OPCODE_TEST_R64_WITH_RM64);
  418. }
  419. void asm_x64_setcc_r8(asm_x64_t *as, int jcc_type, int dest_r8) {
  420. assert(dest_r8 < 8);
  421. asm_x64_write_byte_3(as, OPCODE_SETCC_RM8_A, OPCODE_SETCC_RM8_B | jcc_type, MODRM_R64(0) | MODRM_RM_REG | MODRM_RM_R64(dest_r8));
  422. }
  423. void asm_x64_jmp_reg(asm_x64_t *as, int src_r64) {
  424. assert(src_r64 < 8);
  425. asm_x64_write_byte_2(as, OPCODE_JMP_RM64, MODRM_R64(4) | MODRM_RM_REG | MODRM_RM_R64(src_r64));
  426. }
  427. STATIC mp_uint_t get_label_dest(asm_x64_t *as, mp_uint_t label) {
  428. assert(label < as->base.max_num_labels);
  429. return as->base.label_offsets[label];
  430. }
  431. void asm_x64_jmp_label(asm_x64_t *as, mp_uint_t label) {
  432. mp_uint_t dest = get_label_dest(as, label);
  433. mp_int_t rel = dest - as->base.code_offset;
  434. if (dest != (mp_uint_t)-1 && rel < 0) {
  435. // is a backwards jump, so we know the size of the jump on the first pass
  436. // calculate rel assuming 8 bit relative jump
  437. rel -= 2;
  438. if (SIGNED_FIT8(rel)) {
  439. asm_x64_write_byte_2(as, OPCODE_JMP_REL8, rel & 0xff);
  440. } else {
  441. rel += 2;
  442. goto large_jump;
  443. }
  444. } else {
  445. // is a forwards jump, so need to assume it's large
  446. large_jump:
  447. rel -= 5;
  448. asm_x64_write_byte_1(as, OPCODE_JMP_REL32);
  449. asm_x64_write_word32(as, rel);
  450. }
  451. }
  452. void asm_x64_jcc_label(asm_x64_t *as, int jcc_type, mp_uint_t label) {
  453. mp_uint_t dest = get_label_dest(as, label);
  454. mp_int_t rel = dest - as->base.code_offset;
  455. if (dest != (mp_uint_t)-1 && rel < 0) {
  456. // is a backwards jump, so we know the size of the jump on the first pass
  457. // calculate rel assuming 8 bit relative jump
  458. rel -= 2;
  459. if (SIGNED_FIT8(rel)) {
  460. asm_x64_write_byte_2(as, OPCODE_JCC_REL8 | jcc_type, rel & 0xff);
  461. } else {
  462. rel += 2;
  463. goto large_jump;
  464. }
  465. } else {
  466. // is a forwards jump, so need to assume it's large
  467. large_jump:
  468. rel -= 6;
  469. asm_x64_write_byte_2(as, OPCODE_JCC_REL32_A, OPCODE_JCC_REL32_B | jcc_type);
  470. asm_x64_write_word32(as, rel);
  471. }
  472. }
  473. void asm_x64_entry(asm_x64_t *as, int num_locals) {
  474. assert(num_locals >= 0);
  475. asm_x64_push_r64(as, ASM_X64_REG_RBP);
  476. asm_x64_push_r64(as, ASM_X64_REG_RBX);
  477. asm_x64_push_r64(as, ASM_X64_REG_R12);
  478. asm_x64_push_r64(as, ASM_X64_REG_R13);
  479. num_locals |= 1; // make it odd so stack is aligned on 16 byte boundary
  480. asm_x64_sub_r64_i32(as, ASM_X64_REG_RSP, num_locals * WORD_SIZE);
  481. as->num_locals = num_locals;
  482. }
  483. void asm_x64_exit(asm_x64_t *as) {
  484. asm_x64_sub_r64_i32(as, ASM_X64_REG_RSP, -as->num_locals * WORD_SIZE);
  485. asm_x64_pop_r64(as, ASM_X64_REG_R13);
  486. asm_x64_pop_r64(as, ASM_X64_REG_R12);
  487. asm_x64_pop_r64(as, ASM_X64_REG_RBX);
  488. asm_x64_pop_r64(as, ASM_X64_REG_RBP);
  489. asm_x64_ret(as);
  490. }
  491. // locals:
  492. // - stored on the stack in ascending order
  493. // - numbered 0 through as->num_locals-1
  494. // - RSP points to the first local
  495. //
  496. // | RSP
  497. // v
  498. // l0 l1 l2 ... l(n-1)
  499. // ^ ^
  500. // | low address | high address in RAM
  501. //
  502. STATIC int asm_x64_local_offset_from_rsp(asm_x64_t *as, int local_num) {
  503. (void)as;
  504. // Stack is full descending, RSP points to local0
  505. return local_num * WORD_SIZE;
  506. }
  507. void asm_x64_mov_local_to_r64(asm_x64_t *as, int src_local_num, int dest_r64) {
  508. asm_x64_mov_mem64_to_r64(as, ASM_X64_REG_RSP, asm_x64_local_offset_from_rsp(as, src_local_num), dest_r64);
  509. }
  510. void asm_x64_mov_r64_to_local(asm_x64_t *as, int src_r64, int dest_local_num) {
  511. asm_x64_mov_r64_to_mem64(as, src_r64, ASM_X64_REG_RSP, asm_x64_local_offset_from_rsp(as, dest_local_num));
  512. }
  513. void asm_x64_mov_local_addr_to_r64(asm_x64_t *as, int local_num, int dest_r64) {
  514. int offset = asm_x64_local_offset_from_rsp(as, local_num);
  515. if (offset == 0) {
  516. asm_x64_mov_r64_r64(as, dest_r64, ASM_X64_REG_RSP);
  517. } else {
  518. asm_x64_lea_disp_to_r64(as, ASM_X64_REG_RSP, offset, dest_r64);
  519. }
  520. }
  521. void asm_x64_mov_reg_pcrel(asm_x64_t *as, int dest_r64, mp_uint_t label) {
  522. mp_uint_t dest = get_label_dest(as, label);
  523. mp_int_t rel = dest - (as->base.code_offset + 7);
  524. asm_x64_write_byte_3(as, REX_PREFIX | REX_W | REX_R_FROM_R64(dest_r64), OPCODE_LEA_MEM_TO_R64, MODRM_R64(dest_r64) | MODRM_RM_R64(5));
  525. asm_x64_write_word32(as, rel);
  526. }
  527. /*
  528. void asm_x64_push_local(asm_x64_t *as, int local_num) {
  529. asm_x64_push_disp(as, ASM_X64_REG_RSP, asm_x64_local_offset_from_rsp(as, local_num));
  530. }
  531. void asm_x64_push_local_addr(asm_x64_t *as, int local_num, int temp_r64) {
  532. asm_x64_mov_r64_r64(as, temp_r64, ASM_X64_REG_RSP);
  533. asm_x64_add_i32_to_r32(as, asm_x64_local_offset_from_rsp(as, local_num), temp_r64);
  534. asm_x64_push_r64(as, temp_r64);
  535. }
  536. */
  537. /*
  538. can't use these because code might be relocated when resized
  539. void asm_x64_call(asm_x64_t *as, void* func) {
  540. asm_x64_sub_i32_from_r32(as, 8, ASM_X64_REG_RSP);
  541. asm_x64_write_byte_1(as, OPCODE_CALL_REL32);
  542. asm_x64_write_word32(as, func - (void*)(as->code_cur + 4));
  543. asm_x64_mov_r64_r64(as, ASM_X64_REG_RSP, ASM_X64_REG_RBP);
  544. }
  545. void asm_x64_call_i1(asm_x64_t *as, void* func, int i1) {
  546. asm_x64_sub_i32_from_r32(as, 8, ASM_X64_REG_RSP);
  547. asm_x64_sub_i32_from_r32(as, 12, ASM_X64_REG_RSP);
  548. asm_x64_push_i32(as, i1);
  549. asm_x64_write_byte_1(as, OPCODE_CALL_REL32);
  550. asm_x64_write_word32(as, func - (void*)(as->code_cur + 4));
  551. asm_x64_add_i32_to_r32(as, 16, ASM_X64_REG_RSP);
  552. asm_x64_mov_r64_r64(as, ASM_X64_REG_RSP, ASM_X64_REG_RBP);
  553. }
  554. */
  555. void asm_x64_call_ind(asm_x64_t *as, size_t fun_id, int temp_r64) {
  556. assert(temp_r64 < 8);
  557. asm_x64_mov_mem64_to_r64(as, ASM_X64_REG_FUN_TABLE, fun_id * WORD_SIZE, temp_r64);
  558. asm_x64_write_byte_2(as, OPCODE_CALL_RM32, MODRM_R64(2) | MODRM_RM_REG | MODRM_RM_R64(temp_r64));
  559. }
  560. #endif // MICROPY_EMIT_X64