lm32-opc.c 22 KB

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  1. /* DO NOT EDIT! -*- buffer-read-only: t -*- vi:set ro: */
  2. /* Instruction opcode table for lm32.
  3. THIS FILE IS MACHINE GENERATED WITH CGEN.
  4. Copyright (C) 1996-2022 Free Software Foundation, Inc.
  5. This file is part of the GNU Binutils and/or GDB, the GNU debugger.
  6. This file is free software; you can redistribute it and/or modify
  7. it under the terms of the GNU General Public License as published by
  8. the Free Software Foundation; either version 3, or (at your option)
  9. any later version.
  10. It is distributed in the hope that it will be useful, but WITHOUT
  11. ANY WARRANTY; without even the implied warranty of MERCHANTABILITY
  12. or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public
  13. License for more details.
  14. You should have received a copy of the GNU General Public License along
  15. with this program; if not, write to the Free Software Foundation, Inc.,
  16. 51 Franklin Street - Fifth Floor, Boston, MA 02110-1301, USA.
  17. */
  18. #include "sysdep.h"
  19. #include "ansidecl.h"
  20. #include "bfd.h"
  21. #include "symcat.h"
  22. #include "lm32-desc.h"
  23. #include "lm32-opc.h"
  24. #include "libiberty.h"
  25. /* The hash functions are recorded here to help keep assembler code out of
  26. the disassembler and vice versa. */
  27. static int asm_hash_insn_p (const CGEN_INSN *);
  28. static unsigned int asm_hash_insn (const char *);
  29. static int dis_hash_insn_p (const CGEN_INSN *);
  30. static unsigned int dis_hash_insn (const char *, CGEN_INSN_INT);
  31. /* Instruction formats. */
  32. #define F(f) & lm32_cgen_ifld_table[LM32_##f]
  33. static const CGEN_IFMT ifmt_empty ATTRIBUTE_UNUSED = {
  34. 0, 0, 0x0, { { 0 } }
  35. };
  36. static const CGEN_IFMT ifmt_add ATTRIBUTE_UNUSED = {
  37. 32, 32, 0xfc0007ff, { { F (F_OPCODE) }, { F (F_R0) }, { F (F_R1) }, { F (F_R2) }, { F (F_RESV0) }, { 0 } }
  38. };
  39. static const CGEN_IFMT ifmt_addi ATTRIBUTE_UNUSED = {
  40. 32, 32, 0xfc000000, { { F (F_OPCODE) }, { F (F_R0) }, { F (F_R1) }, { F (F_IMM) }, { 0 } }
  41. };
  42. static const CGEN_IFMT ifmt_andi ATTRIBUTE_UNUSED = {
  43. 32, 32, 0xfc000000, { { F (F_OPCODE) }, { F (F_R0) }, { F (F_R1) }, { F (F_UIMM) }, { 0 } }
  44. };
  45. static const CGEN_IFMT ifmt_andhii ATTRIBUTE_UNUSED = {
  46. 32, 32, 0xfc000000, { { F (F_OPCODE) }, { F (F_R0) }, { F (F_R1) }, { F (F_UIMM) }, { 0 } }
  47. };
  48. static const CGEN_IFMT ifmt_b ATTRIBUTE_UNUSED = {
  49. 32, 32, 0xfc1fffff, { { F (F_OPCODE) }, { F (F_R0) }, { F (F_R1) }, { F (F_R2) }, { F (F_RESV0) }, { 0 } }
  50. };
  51. static const CGEN_IFMT ifmt_bi ATTRIBUTE_UNUSED = {
  52. 32, 32, 0xfc000000, { { F (F_OPCODE) }, { F (F_CALL) }, { 0 } }
  53. };
  54. static const CGEN_IFMT ifmt_be ATTRIBUTE_UNUSED = {
  55. 32, 32, 0xfc000000, { { F (F_OPCODE) }, { F (F_R0) }, { F (F_R1) }, { F (F_BRANCH) }, { 0 } }
  56. };
  57. static const CGEN_IFMT ifmt_ori ATTRIBUTE_UNUSED = {
  58. 32, 32, 0xfc000000, { { F (F_OPCODE) }, { F (F_R0) }, { F (F_R1) }, { F (F_UIMM) }, { 0 } }
  59. };
  60. static const CGEN_IFMT ifmt_rcsr ATTRIBUTE_UNUSED = {
  61. 32, 32, 0xfc1f07ff, { { F (F_OPCODE) }, { F (F_CSR) }, { F (F_R1) }, { F (F_R2) }, { F (F_RESV0) }, { 0 } }
  62. };
  63. static const CGEN_IFMT ifmt_sextb ATTRIBUTE_UNUSED = {
  64. 32, 32, 0xfc1f07ff, { { F (F_OPCODE) }, { F (F_R0) }, { F (F_R1) }, { F (F_R2) }, { F (F_RESV0) }, { 0 } }
  65. };
  66. static const CGEN_IFMT ifmt_user ATTRIBUTE_UNUSED = {
  67. 32, 32, 0xfc000000, { { F (F_OPCODE) }, { F (F_R0) }, { F (F_R1) }, { F (F_R2) }, { F (F_USER) }, { 0 } }
  68. };
  69. static const CGEN_IFMT ifmt_wcsr ATTRIBUTE_UNUSED = {
  70. 32, 32, 0xfc00ffff, { { F (F_OPCODE) }, { F (F_CSR) }, { F (F_R1) }, { F (F_R2) }, { F (F_RESV0) }, { 0 } }
  71. };
  72. static const CGEN_IFMT ifmt_break ATTRIBUTE_UNUSED = {
  73. 32, 32, 0xffffffff, { { F (F_OPCODE) }, { F (F_EXCEPTION) }, { 0 } }
  74. };
  75. static const CGEN_IFMT ifmt_bret ATTRIBUTE_UNUSED = {
  76. 32, 32, 0xffffffff, { { F (F_OPCODE) }, { F (F_R0) }, { F (F_R1) }, { F (F_R2) }, { F (F_RESV0) }, { 0 } }
  77. };
  78. static const CGEN_IFMT ifmt_mvi ATTRIBUTE_UNUSED = {
  79. 32, 32, 0xffe00000, { { F (F_OPCODE) }, { F (F_R0) }, { F (F_R1) }, { F (F_IMM) }, { 0 } }
  80. };
  81. static const CGEN_IFMT ifmt_mvui ATTRIBUTE_UNUSED = {
  82. 32, 32, 0xffe00000, { { F (F_OPCODE) }, { F (F_R0) }, { F (F_R1) }, { F (F_UIMM) }, { 0 } }
  83. };
  84. static const CGEN_IFMT ifmt_mvhi ATTRIBUTE_UNUSED = {
  85. 32, 32, 0xffe00000, { { F (F_OPCODE) }, { F (F_R0) }, { F (F_R1) }, { F (F_UIMM) }, { 0 } }
  86. };
  87. static const CGEN_IFMT ifmt_mva ATTRIBUTE_UNUSED = {
  88. 32, 32, 0xffe00000, { { F (F_OPCODE) }, { F (F_R0) }, { F (F_R1) }, { F (F_IMM) }, { 0 } }
  89. };
  90. static const CGEN_IFMT ifmt_nop ATTRIBUTE_UNUSED = {
  91. 32, 32, 0xffffffff, { { F (F_OPCODE) }, { F (F_R0) }, { F (F_R1) }, { F (F_IMM) }, { 0 } }
  92. };
  93. static const CGEN_IFMT ifmt_lwgotrel ATTRIBUTE_UNUSED = {
  94. 32, 32, 0xffe00000, { { F (F_OPCODE) }, { F (F_R0) }, { F (F_R1) }, { F (F_IMM) }, { 0 } }
  95. };
  96. static const CGEN_IFMT ifmt_orhigotoffi ATTRIBUTE_UNUSED = {
  97. 32, 32, 0xfc000000, { { F (F_OPCODE) }, { F (F_R0) }, { F (F_R1) }, { F (F_IMM) }, { 0 } }
  98. };
  99. static const CGEN_IFMT ifmt_addgotoff ATTRIBUTE_UNUSED = {
  100. 32, 32, 0xfc000000, { { F (F_OPCODE) }, { F (F_R0) }, { F (F_R1) }, { F (F_IMM) }, { 0 } }
  101. };
  102. #undef F
  103. #define A(a) (1 << CGEN_INSN_##a)
  104. #define OPERAND(op) LM32_OPERAND_##op
  105. #define MNEM CGEN_SYNTAX_MNEMONIC /* syntax value for mnemonic */
  106. #define OP(field) CGEN_SYNTAX_MAKE_FIELD (OPERAND (field))
  107. /* The instruction table. */
  108. static const CGEN_OPCODE lm32_cgen_insn_opcode_table[MAX_INSNS] =
  109. {
  110. /* Special null first entry.
  111. A `num' value of zero is thus invalid.
  112. Also, the special `invalid' insn resides here. */
  113. { { 0, 0, 0, 0 }, {{0}}, 0, {0}},
  114. /* add $r2,$r0,$r1 */
  115. {
  116. { 0, 0, 0, 0 },
  117. { { MNEM, ' ', OP (R2), ',', OP (R0), ',', OP (R1), 0 } },
  118. & ifmt_add, { 0xb4000000 }
  119. },
  120. /* addi $r1,$r0,$imm */
  121. {
  122. { 0, 0, 0, 0 },
  123. { { MNEM, ' ', OP (R1), ',', OP (R0), ',', OP (IMM), 0 } },
  124. & ifmt_addi, { 0x34000000 }
  125. },
  126. /* and $r2,$r0,$r1 */
  127. {
  128. { 0, 0, 0, 0 },
  129. { { MNEM, ' ', OP (R2), ',', OP (R0), ',', OP (R1), 0 } },
  130. & ifmt_add, { 0xa0000000 }
  131. },
  132. /* andi $r1,$r0,$uimm */
  133. {
  134. { 0, 0, 0, 0 },
  135. { { MNEM, ' ', OP (R1), ',', OP (R0), ',', OP (UIMM), 0 } },
  136. & ifmt_andi, { 0x20000000 }
  137. },
  138. /* andhi $r1,$r0,$hi16 */
  139. {
  140. { 0, 0, 0, 0 },
  141. { { MNEM, ' ', OP (R1), ',', OP (R0), ',', OP (HI16), 0 } },
  142. & ifmt_andhii, { 0x60000000 }
  143. },
  144. /* b $r0 */
  145. {
  146. { 0, 0, 0, 0 },
  147. { { MNEM, ' ', OP (R0), 0 } },
  148. & ifmt_b, { 0xc0000000 }
  149. },
  150. /* bi $call */
  151. {
  152. { 0, 0, 0, 0 },
  153. { { MNEM, ' ', OP (CALL), 0 } },
  154. & ifmt_bi, { 0xe0000000 }
  155. },
  156. /* be $r0,$r1,$branch */
  157. {
  158. { 0, 0, 0, 0 },
  159. { { MNEM, ' ', OP (R0), ',', OP (R1), ',', OP (BRANCH), 0 } },
  160. & ifmt_be, { 0x44000000 }
  161. },
  162. /* bg $r0,$r1,$branch */
  163. {
  164. { 0, 0, 0, 0 },
  165. { { MNEM, ' ', OP (R0), ',', OP (R1), ',', OP (BRANCH), 0 } },
  166. & ifmt_be, { 0x48000000 }
  167. },
  168. /* bge $r0,$r1,$branch */
  169. {
  170. { 0, 0, 0, 0 },
  171. { { MNEM, ' ', OP (R0), ',', OP (R1), ',', OP (BRANCH), 0 } },
  172. & ifmt_be, { 0x4c000000 }
  173. },
  174. /* bgeu $r0,$r1,$branch */
  175. {
  176. { 0, 0, 0, 0 },
  177. { { MNEM, ' ', OP (R0), ',', OP (R1), ',', OP (BRANCH), 0 } },
  178. & ifmt_be, { 0x50000000 }
  179. },
  180. /* bgu $r0,$r1,$branch */
  181. {
  182. { 0, 0, 0, 0 },
  183. { { MNEM, ' ', OP (R0), ',', OP (R1), ',', OP (BRANCH), 0 } },
  184. & ifmt_be, { 0x54000000 }
  185. },
  186. /* bne $r0,$r1,$branch */
  187. {
  188. { 0, 0, 0, 0 },
  189. { { MNEM, ' ', OP (R0), ',', OP (R1), ',', OP (BRANCH), 0 } },
  190. & ifmt_be, { 0x5c000000 }
  191. },
  192. /* call $r0 */
  193. {
  194. { 0, 0, 0, 0 },
  195. { { MNEM, ' ', OP (R0), 0 } },
  196. & ifmt_b, { 0xd8000000 }
  197. },
  198. /* calli $call */
  199. {
  200. { 0, 0, 0, 0 },
  201. { { MNEM, ' ', OP (CALL), 0 } },
  202. & ifmt_bi, { 0xf8000000 }
  203. },
  204. /* cmpe $r2,$r0,$r1 */
  205. {
  206. { 0, 0, 0, 0 },
  207. { { MNEM, ' ', OP (R2), ',', OP (R0), ',', OP (R1), 0 } },
  208. & ifmt_add, { 0xe4000000 }
  209. },
  210. /* cmpei $r1,$r0,$imm */
  211. {
  212. { 0, 0, 0, 0 },
  213. { { MNEM, ' ', OP (R1), ',', OP (R0), ',', OP (IMM), 0 } },
  214. & ifmt_addi, { 0x64000000 }
  215. },
  216. /* cmpg $r2,$r0,$r1 */
  217. {
  218. { 0, 0, 0, 0 },
  219. { { MNEM, ' ', OP (R2), ',', OP (R0), ',', OP (R1), 0 } },
  220. & ifmt_add, { 0xe8000000 }
  221. },
  222. /* cmpgi $r1,$r0,$imm */
  223. {
  224. { 0, 0, 0, 0 },
  225. { { MNEM, ' ', OP (R1), ',', OP (R0), ',', OP (IMM), 0 } },
  226. & ifmt_addi, { 0x68000000 }
  227. },
  228. /* cmpge $r2,$r0,$r1 */
  229. {
  230. { 0, 0, 0, 0 },
  231. { { MNEM, ' ', OP (R2), ',', OP (R0), ',', OP (R1), 0 } },
  232. & ifmt_add, { 0xec000000 }
  233. },
  234. /* cmpgei $r1,$r0,$imm */
  235. {
  236. { 0, 0, 0, 0 },
  237. { { MNEM, ' ', OP (R1), ',', OP (R0), ',', OP (IMM), 0 } },
  238. & ifmt_addi, { 0x6c000000 }
  239. },
  240. /* cmpgeu $r2,$r0,$r1 */
  241. {
  242. { 0, 0, 0, 0 },
  243. { { MNEM, ' ', OP (R2), ',', OP (R0), ',', OP (R1), 0 } },
  244. & ifmt_add, { 0xf0000000 }
  245. },
  246. /* cmpgeui $r1,$r0,$uimm */
  247. {
  248. { 0, 0, 0, 0 },
  249. { { MNEM, ' ', OP (R1), ',', OP (R0), ',', OP (UIMM), 0 } },
  250. & ifmt_andi, { 0x70000000 }
  251. },
  252. /* cmpgu $r2,$r0,$r1 */
  253. {
  254. { 0, 0, 0, 0 },
  255. { { MNEM, ' ', OP (R2), ',', OP (R0), ',', OP (R1), 0 } },
  256. & ifmt_add, { 0xf4000000 }
  257. },
  258. /* cmpgui $r1,$r0,$uimm */
  259. {
  260. { 0, 0, 0, 0 },
  261. { { MNEM, ' ', OP (R1), ',', OP (R0), ',', OP (UIMM), 0 } },
  262. & ifmt_andi, { 0x74000000 }
  263. },
  264. /* cmpne $r2,$r0,$r1 */
  265. {
  266. { 0, 0, 0, 0 },
  267. { { MNEM, ' ', OP (R2), ',', OP (R0), ',', OP (R1), 0 } },
  268. & ifmt_add, { 0xfc000000 }
  269. },
  270. /* cmpnei $r1,$r0,$imm */
  271. {
  272. { 0, 0, 0, 0 },
  273. { { MNEM, ' ', OP (R1), ',', OP (R0), ',', OP (IMM), 0 } },
  274. & ifmt_addi, { 0x7c000000 }
  275. },
  276. /* divu $r2,$r0,$r1 */
  277. {
  278. { 0, 0, 0, 0 },
  279. { { MNEM, ' ', OP (R2), ',', OP (R0), ',', OP (R1), 0 } },
  280. & ifmt_add, { 0x8c000000 }
  281. },
  282. /* lb $r1,($r0+$imm) */
  283. {
  284. { 0, 0, 0, 0 },
  285. { { MNEM, ' ', OP (R1), ',', '(', OP (R0), '+', OP (IMM), ')', 0 } },
  286. & ifmt_addi, { 0x10000000 }
  287. },
  288. /* lbu $r1,($r0+$imm) */
  289. {
  290. { 0, 0, 0, 0 },
  291. { { MNEM, ' ', OP (R1), ',', '(', OP (R0), '+', OP (IMM), ')', 0 } },
  292. & ifmt_addi, { 0x40000000 }
  293. },
  294. /* lh $r1,($r0+$imm) */
  295. {
  296. { 0, 0, 0, 0 },
  297. { { MNEM, ' ', OP (R1), ',', '(', OP (R0), '+', OP (IMM), ')', 0 } },
  298. & ifmt_addi, { 0x1c000000 }
  299. },
  300. /* lhu $r1,($r0+$imm) */
  301. {
  302. { 0, 0, 0, 0 },
  303. { { MNEM, ' ', OP (R1), ',', '(', OP (R0), '+', OP (IMM), ')', 0 } },
  304. & ifmt_addi, { 0x2c000000 }
  305. },
  306. /* lw $r1,($r0+$imm) */
  307. {
  308. { 0, 0, 0, 0 },
  309. { { MNEM, ' ', OP (R1), ',', '(', OP (R0), '+', OP (IMM), ')', 0 } },
  310. & ifmt_addi, { 0x28000000 }
  311. },
  312. /* modu $r2,$r0,$r1 */
  313. {
  314. { 0, 0, 0, 0 },
  315. { { MNEM, ' ', OP (R2), ',', OP (R0), ',', OP (R1), 0 } },
  316. & ifmt_add, { 0xc4000000 }
  317. },
  318. /* mul $r2,$r0,$r1 */
  319. {
  320. { 0, 0, 0, 0 },
  321. { { MNEM, ' ', OP (R2), ',', OP (R0), ',', OP (R1), 0 } },
  322. & ifmt_add, { 0x88000000 }
  323. },
  324. /* muli $r1,$r0,$imm */
  325. {
  326. { 0, 0, 0, 0 },
  327. { { MNEM, ' ', OP (R1), ',', OP (R0), ',', OP (IMM), 0 } },
  328. & ifmt_addi, { 0x8000000 }
  329. },
  330. /* nor $r2,$r0,$r1 */
  331. {
  332. { 0, 0, 0, 0 },
  333. { { MNEM, ' ', OP (R2), ',', OP (R0), ',', OP (R1), 0 } },
  334. & ifmt_add, { 0x84000000 }
  335. },
  336. /* nori $r1,$r0,$uimm */
  337. {
  338. { 0, 0, 0, 0 },
  339. { { MNEM, ' ', OP (R1), ',', OP (R0), ',', OP (UIMM), 0 } },
  340. & ifmt_andi, { 0x4000000 }
  341. },
  342. /* or $r2,$r0,$r1 */
  343. {
  344. { 0, 0, 0, 0 },
  345. { { MNEM, ' ', OP (R2), ',', OP (R0), ',', OP (R1), 0 } },
  346. & ifmt_add, { 0xb8000000 }
  347. },
  348. /* ori $r1,$r0,$lo16 */
  349. {
  350. { 0, 0, 0, 0 },
  351. { { MNEM, ' ', OP (R1), ',', OP (R0), ',', OP (LO16), 0 } },
  352. & ifmt_ori, { 0x38000000 }
  353. },
  354. /* orhi $r1,$r0,$hi16 */
  355. {
  356. { 0, 0, 0, 0 },
  357. { { MNEM, ' ', OP (R1), ',', OP (R0), ',', OP (HI16), 0 } },
  358. & ifmt_andhii, { 0x78000000 }
  359. },
  360. /* rcsr $r2,$csr */
  361. {
  362. { 0, 0, 0, 0 },
  363. { { MNEM, ' ', OP (R2), ',', OP (CSR), 0 } },
  364. & ifmt_rcsr, { 0x90000000 }
  365. },
  366. /* sb ($r0+$imm),$r1 */
  367. {
  368. { 0, 0, 0, 0 },
  369. { { MNEM, ' ', '(', OP (R0), '+', OP (IMM), ')', ',', OP (R1), 0 } },
  370. & ifmt_addi, { 0x30000000 }
  371. },
  372. /* sextb $r2,$r0 */
  373. {
  374. { 0, 0, 0, 0 },
  375. { { MNEM, ' ', OP (R2), ',', OP (R0), 0 } },
  376. & ifmt_sextb, { 0xb0000000 }
  377. },
  378. /* sexth $r2,$r0 */
  379. {
  380. { 0, 0, 0, 0 },
  381. { { MNEM, ' ', OP (R2), ',', OP (R0), 0 } },
  382. & ifmt_sextb, { 0xdc000000 }
  383. },
  384. /* sh ($r0+$imm),$r1 */
  385. {
  386. { 0, 0, 0, 0 },
  387. { { MNEM, ' ', '(', OP (R0), '+', OP (IMM), ')', ',', OP (R1), 0 } },
  388. & ifmt_addi, { 0xc000000 }
  389. },
  390. /* sl $r2,$r0,$r1 */
  391. {
  392. { 0, 0, 0, 0 },
  393. { { MNEM, ' ', OP (R2), ',', OP (R0), ',', OP (R1), 0 } },
  394. & ifmt_add, { 0xbc000000 }
  395. },
  396. /* sli $r1,$r0,$imm */
  397. {
  398. { 0, 0, 0, 0 },
  399. { { MNEM, ' ', OP (R1), ',', OP (R0), ',', OP (IMM), 0 } },
  400. & ifmt_addi, { 0x3c000000 }
  401. },
  402. /* sr $r2,$r0,$r1 */
  403. {
  404. { 0, 0, 0, 0 },
  405. { { MNEM, ' ', OP (R2), ',', OP (R0), ',', OP (R1), 0 } },
  406. & ifmt_add, { 0x94000000 }
  407. },
  408. /* sri $r1,$r0,$imm */
  409. {
  410. { 0, 0, 0, 0 },
  411. { { MNEM, ' ', OP (R1), ',', OP (R0), ',', OP (IMM), 0 } },
  412. & ifmt_addi, { 0x14000000 }
  413. },
  414. /* sru $r2,$r0,$r1 */
  415. {
  416. { 0, 0, 0, 0 },
  417. { { MNEM, ' ', OP (R2), ',', OP (R0), ',', OP (R1), 0 } },
  418. & ifmt_add, { 0x80000000 }
  419. },
  420. /* srui $r1,$r0,$imm */
  421. {
  422. { 0, 0, 0, 0 },
  423. { { MNEM, ' ', OP (R1), ',', OP (R0), ',', OP (IMM), 0 } },
  424. & ifmt_addi, { 0x0 }
  425. },
  426. /* sub $r2,$r0,$r1 */
  427. {
  428. { 0, 0, 0, 0 },
  429. { { MNEM, ' ', OP (R2), ',', OP (R0), ',', OP (R1), 0 } },
  430. & ifmt_add, { 0xc8000000 }
  431. },
  432. /* sw ($r0+$imm),$r1 */
  433. {
  434. { 0, 0, 0, 0 },
  435. { { MNEM, ' ', '(', OP (R0), '+', OP (IMM), ')', ',', OP (R1), 0 } },
  436. & ifmt_addi, { 0x58000000 }
  437. },
  438. /* user $r2,$r0,$r1,$user */
  439. {
  440. { 0, 0, 0, 0 },
  441. { { MNEM, ' ', OP (R2), ',', OP (R0), ',', OP (R1), ',', OP (USER), 0 } },
  442. & ifmt_user, { 0xcc000000 }
  443. },
  444. /* wcsr $csr,$r1 */
  445. {
  446. { 0, 0, 0, 0 },
  447. { { MNEM, ' ', OP (CSR), ',', OP (R1), 0 } },
  448. & ifmt_wcsr, { 0xd0000000 }
  449. },
  450. /* xor $r2,$r0,$r1 */
  451. {
  452. { 0, 0, 0, 0 },
  453. { { MNEM, ' ', OP (R2), ',', OP (R0), ',', OP (R1), 0 } },
  454. & ifmt_add, { 0x98000000 }
  455. },
  456. /* xori $r1,$r0,$uimm */
  457. {
  458. { 0, 0, 0, 0 },
  459. { { MNEM, ' ', OP (R1), ',', OP (R0), ',', OP (UIMM), 0 } },
  460. & ifmt_andi, { 0x18000000 }
  461. },
  462. /* xnor $r2,$r0,$r1 */
  463. {
  464. { 0, 0, 0, 0 },
  465. { { MNEM, ' ', OP (R2), ',', OP (R0), ',', OP (R1), 0 } },
  466. & ifmt_add, { 0xa4000000 }
  467. },
  468. /* xnori $r1,$r0,$uimm */
  469. {
  470. { 0, 0, 0, 0 },
  471. { { MNEM, ' ', OP (R1), ',', OP (R0), ',', OP (UIMM), 0 } },
  472. & ifmt_andi, { 0x24000000 }
  473. },
  474. /* break */
  475. {
  476. { 0, 0, 0, 0 },
  477. { { MNEM, 0 } },
  478. & ifmt_break, { 0xac000002 }
  479. },
  480. /* scall */
  481. {
  482. { 0, 0, 0, 0 },
  483. { { MNEM, 0 } },
  484. & ifmt_break, { 0xac000007 }
  485. },
  486. /* bret */
  487. {
  488. { 0, 0, 0, 0 },
  489. { { MNEM, 0 } },
  490. & ifmt_bret, { 0xc3e00000 }
  491. },
  492. /* eret */
  493. {
  494. { 0, 0, 0, 0 },
  495. { { MNEM, 0 } },
  496. & ifmt_bret, { 0xc3c00000 }
  497. },
  498. /* ret */
  499. {
  500. { 0, 0, 0, 0 },
  501. { { MNEM, 0 } },
  502. & ifmt_bret, { 0xc3a00000 }
  503. },
  504. /* mv $r2,$r0 */
  505. {
  506. { 0, 0, 0, 0 },
  507. { { MNEM, ' ', OP (R2), ',', OP (R0), 0 } },
  508. & ifmt_sextb, { 0xb8000000 }
  509. },
  510. /* mvi $r1,$imm */
  511. {
  512. { 0, 0, 0, 0 },
  513. { { MNEM, ' ', OP (R1), ',', OP (IMM), 0 } },
  514. & ifmt_mvi, { 0x34000000 }
  515. },
  516. /* mvu $r1,$lo16 */
  517. {
  518. { 0, 0, 0, 0 },
  519. { { MNEM, ' ', OP (R1), ',', OP (LO16), 0 } },
  520. & ifmt_mvui, { 0x38000000 }
  521. },
  522. /* mvhi $r1,$hi16 */
  523. {
  524. { 0, 0, 0, 0 },
  525. { { MNEM, ' ', OP (R1), ',', OP (HI16), 0 } },
  526. & ifmt_mvhi, { 0x78000000 }
  527. },
  528. /* mva $r1,$gp16 */
  529. {
  530. { 0, 0, 0, 0 },
  531. { { MNEM, ' ', OP (R1), ',', OP (GP16), 0 } },
  532. & ifmt_mva, { 0x37400000 }
  533. },
  534. /* not $r2,$r0 */
  535. {
  536. { 0, 0, 0, 0 },
  537. { { MNEM, ' ', OP (R2), ',', OP (R0), 0 } },
  538. & ifmt_sextb, { 0xa4000000 }
  539. },
  540. /* nop */
  541. {
  542. { 0, 0, 0, 0 },
  543. { { MNEM, 0 } },
  544. & ifmt_nop, { 0x34000000 }
  545. },
  546. /* lb $r1,$gp16 */
  547. {
  548. { 0, 0, 0, 0 },
  549. { { MNEM, ' ', OP (R1), ',', OP (GP16), 0 } },
  550. & ifmt_mva, { 0x13400000 }
  551. },
  552. /* lbu $r1,$gp16 */
  553. {
  554. { 0, 0, 0, 0 },
  555. { { MNEM, ' ', OP (R1), ',', OP (GP16), 0 } },
  556. & ifmt_mva, { 0x43400000 }
  557. },
  558. /* lh $r1,$gp16 */
  559. {
  560. { 0, 0, 0, 0 },
  561. { { MNEM, ' ', OP (R1), ',', OP (GP16), 0 } },
  562. & ifmt_mva, { 0x1f400000 }
  563. },
  564. /* lhu $r1,$gp16 */
  565. {
  566. { 0, 0, 0, 0 },
  567. { { MNEM, ' ', OP (R1), ',', OP (GP16), 0 } },
  568. & ifmt_mva, { 0x2f400000 }
  569. },
  570. /* lw $r1,$gp16 */
  571. {
  572. { 0, 0, 0, 0 },
  573. { { MNEM, ' ', OP (R1), ',', OP (GP16), 0 } },
  574. & ifmt_mva, { 0x2b400000 }
  575. },
  576. /* sb $gp16,$r1 */
  577. {
  578. { 0, 0, 0, 0 },
  579. { { MNEM, ' ', OP (GP16), ',', OP (R1), 0 } },
  580. & ifmt_mva, { 0x33400000 }
  581. },
  582. /* sh $gp16,$r1 */
  583. {
  584. { 0, 0, 0, 0 },
  585. { { MNEM, ' ', OP (GP16), ',', OP (R1), 0 } },
  586. & ifmt_mva, { 0xf400000 }
  587. },
  588. /* sw $gp16,$r1 */
  589. {
  590. { 0, 0, 0, 0 },
  591. { { MNEM, ' ', OP (GP16), ',', OP (R1), 0 } },
  592. & ifmt_mva, { 0x5b400000 }
  593. },
  594. /* lw $r1,(gp+$got16) */
  595. {
  596. { 0, 0, 0, 0 },
  597. { { MNEM, ' ', OP (R1), ',', '(', 'g', 'p', '+', OP (GOT16), ')', 0 } },
  598. & ifmt_lwgotrel, { 0x2b400000 }
  599. },
  600. /* orhi $r1,$r0,$gotoffhi16 */
  601. {
  602. { 0, 0, 0, 0 },
  603. { { MNEM, ' ', OP (R1), ',', OP (R0), ',', OP (GOTOFFHI16), 0 } },
  604. & ifmt_orhigotoffi, { 0x78000000 }
  605. },
  606. /* addi $r1,$r0,$gotofflo16 */
  607. {
  608. { 0, 0, 0, 0 },
  609. { { MNEM, ' ', OP (R1), ',', OP (R0), ',', OP (GOTOFFLO16), 0 } },
  610. & ifmt_addgotoff, { 0x34000000 }
  611. },
  612. /* sw ($r0+$gotofflo16),$r1 */
  613. {
  614. { 0, 0, 0, 0 },
  615. { { MNEM, ' ', '(', OP (R0), '+', OP (GOTOFFLO16), ')', ',', OP (R1), 0 } },
  616. & ifmt_addgotoff, { 0x58000000 }
  617. },
  618. /* lw $r1,($r0+$gotofflo16) */
  619. {
  620. { 0, 0, 0, 0 },
  621. { { MNEM, ' ', OP (R1), ',', '(', OP (R0), '+', OP (GOTOFFLO16), ')', 0 } },
  622. & ifmt_addgotoff, { 0x28000000 }
  623. },
  624. /* sh ($r0+$gotofflo16),$r1 */
  625. {
  626. { 0, 0, 0, 0 },
  627. { { MNEM, ' ', '(', OP (R0), '+', OP (GOTOFFLO16), ')', ',', OP (R1), 0 } },
  628. & ifmt_addgotoff, { 0xc000000 }
  629. },
  630. /* lh $r1,($r0+$gotofflo16) */
  631. {
  632. { 0, 0, 0, 0 },
  633. { { MNEM, ' ', OP (R1), ',', '(', OP (R0), '+', OP (GOTOFFLO16), ')', 0 } },
  634. & ifmt_addgotoff, { 0x1c000000 }
  635. },
  636. /* lhu $r1,($r0+$gotofflo16) */
  637. {
  638. { 0, 0, 0, 0 },
  639. { { MNEM, ' ', OP (R1), ',', '(', OP (R0), '+', OP (GOTOFFLO16), ')', 0 } },
  640. & ifmt_addgotoff, { 0x2c000000 }
  641. },
  642. /* sb ($r0+$gotofflo16),$r1 */
  643. {
  644. { 0, 0, 0, 0 },
  645. { { MNEM, ' ', '(', OP (R0), '+', OP (GOTOFFLO16), ')', ',', OP (R1), 0 } },
  646. & ifmt_addgotoff, { 0x30000000 }
  647. },
  648. /* lb $r1,($r0+$gotofflo16) */
  649. {
  650. { 0, 0, 0, 0 },
  651. { { MNEM, ' ', OP (R1), ',', '(', OP (R0), '+', OP (GOTOFFLO16), ')', 0 } },
  652. & ifmt_addgotoff, { 0x10000000 }
  653. },
  654. /* lbu $r1,($r0+$gotofflo16) */
  655. {
  656. { 0, 0, 0, 0 },
  657. { { MNEM, ' ', OP (R1), ',', '(', OP (R0), '+', OP (GOTOFFLO16), ')', 0 } },
  658. & ifmt_addgotoff, { 0x40000000 }
  659. },
  660. };
  661. #undef A
  662. #undef OPERAND
  663. #undef MNEM
  664. #undef OP
  665. /* Formats for ALIAS macro-insns. */
  666. #define F(f) & lm32_cgen_ifld_table[LM32_##f]
  667. #undef F
  668. /* Each non-simple macro entry points to an array of expansion possibilities. */
  669. #define A(a) (1 << CGEN_INSN_##a)
  670. #define OPERAND(op) LM32_OPERAND_##op
  671. #define MNEM CGEN_SYNTAX_MNEMONIC /* syntax value for mnemonic */
  672. #define OP(field) CGEN_SYNTAX_MAKE_FIELD (OPERAND (field))
  673. /* The macro instruction table. */
  674. static const CGEN_IBASE lm32_cgen_macro_insn_table[] =
  675. {
  676. };
  677. /* The macro instruction opcode table. */
  678. static const CGEN_OPCODE lm32_cgen_macro_insn_opcode_table[] =
  679. {
  680. };
  681. #undef A
  682. #undef OPERAND
  683. #undef MNEM
  684. #undef OP
  685. #ifndef CGEN_ASM_HASH_P
  686. #define CGEN_ASM_HASH_P(insn) 1
  687. #endif
  688. #ifndef CGEN_DIS_HASH_P
  689. #define CGEN_DIS_HASH_P(insn) 1
  690. #endif
  691. /* Return non-zero if INSN is to be added to the hash table.
  692. Targets are free to override CGEN_{ASM,DIS}_HASH_P in the .opc file. */
  693. static int
  694. asm_hash_insn_p (const CGEN_INSN *insn ATTRIBUTE_UNUSED)
  695. {
  696. return CGEN_ASM_HASH_P (insn);
  697. }
  698. static int
  699. dis_hash_insn_p (const CGEN_INSN *insn)
  700. {
  701. /* If building the hash table and the NO-DIS attribute is present,
  702. ignore. */
  703. if (CGEN_INSN_ATTR_VALUE (insn, CGEN_INSN_NO_DIS))
  704. return 0;
  705. return CGEN_DIS_HASH_P (insn);
  706. }
  707. #ifndef CGEN_ASM_HASH
  708. #define CGEN_ASM_HASH_SIZE 127
  709. #ifdef CGEN_MNEMONIC_OPERANDS
  710. #define CGEN_ASM_HASH(mnem) (*(unsigned char *) (mnem) % CGEN_ASM_HASH_SIZE)
  711. #else
  712. #define CGEN_ASM_HASH(mnem) (*(unsigned char *) (mnem) % CGEN_ASM_HASH_SIZE) /*FIXME*/
  713. #endif
  714. #endif
  715. /* It doesn't make much sense to provide a default here,
  716. but while this is under development we do.
  717. BUFFER is a pointer to the bytes of the insn, target order.
  718. VALUE is the first base_insn_bitsize bits as an int in host order. */
  719. #ifndef CGEN_DIS_HASH
  720. #define CGEN_DIS_HASH_SIZE 256
  721. #define CGEN_DIS_HASH(buf, value) (*(unsigned char *) (buf))
  722. #endif
  723. /* The result is the hash value of the insn.
  724. Targets are free to override CGEN_{ASM,DIS}_HASH in the .opc file. */
  725. static unsigned int
  726. asm_hash_insn (const char *mnem)
  727. {
  728. return CGEN_ASM_HASH (mnem);
  729. }
  730. /* BUF is a pointer to the bytes of the insn, target order.
  731. VALUE is the first base_insn_bitsize bits as an int in host order. */
  732. static unsigned int
  733. dis_hash_insn (const char *buf ATTRIBUTE_UNUSED,
  734. CGEN_INSN_INT value ATTRIBUTE_UNUSED)
  735. {
  736. return CGEN_DIS_HASH (buf, value);
  737. }
  738. /* Set the recorded length of the insn in the CGEN_FIELDS struct. */
  739. static void
  740. set_fields_bitsize (CGEN_FIELDS *fields, int size)
  741. {
  742. CGEN_FIELDS_BITSIZE (fields) = size;
  743. }
  744. /* Function to call before using the operand instance table.
  745. This plugs the opcode entries and macro instructions into the cpu table. */
  746. void
  747. lm32_cgen_init_opcode_table (CGEN_CPU_DESC cd)
  748. {
  749. int i;
  750. int num_macros = (sizeof (lm32_cgen_macro_insn_table) /
  751. sizeof (lm32_cgen_macro_insn_table[0]));
  752. const CGEN_IBASE *ib = & lm32_cgen_macro_insn_table[0];
  753. const CGEN_OPCODE *oc = & lm32_cgen_macro_insn_opcode_table[0];
  754. CGEN_INSN *insns = xmalloc (num_macros * sizeof (CGEN_INSN));
  755. /* This test has been added to avoid a warning generated
  756. if memset is called with a third argument of value zero. */
  757. if (num_macros >= 1)
  758. memset (insns, 0, num_macros * sizeof (CGEN_INSN));
  759. for (i = 0; i < num_macros; ++i)
  760. {
  761. insns[i].base = &ib[i];
  762. insns[i].opcode = &oc[i];
  763. lm32_cgen_build_insn_regex (& insns[i]);
  764. }
  765. cd->macro_insn_table.init_entries = insns;
  766. cd->macro_insn_table.entry_size = sizeof (CGEN_IBASE);
  767. cd->macro_insn_table.num_init_entries = num_macros;
  768. oc = & lm32_cgen_insn_opcode_table[0];
  769. insns = (CGEN_INSN *) cd->insn_table.init_entries;
  770. for (i = 0; i < MAX_INSNS; ++i)
  771. {
  772. insns[i].opcode = &oc[i];
  773. lm32_cgen_build_insn_regex (& insns[i]);
  774. }
  775. cd->sizeof_fields = sizeof (CGEN_FIELDS);
  776. cd->set_fields_bitsize = set_fields_bitsize;
  777. cd->asm_hash_p = asm_hash_insn_p;
  778. cd->asm_hash = asm_hash_insn;
  779. cd->asm_hash_size = CGEN_ASM_HASH_SIZE;
  780. cd->dis_hash_p = dis_hash_insn_p;
  781. cd->dis_hash = dis_hash_insn;
  782. cd->dis_hash_size = CGEN_DIS_HASH_SIZE;
  783. }