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/sim/sh64/defs-compact.h

https://github.com/rofl0r/gdb
C Header | 510 lines | 428 code | 39 blank | 43 comment | 0 complexity | d5039e05de8815520e809a8875166148 MD5 | raw file
  1. /* ISA definitions header for compact.
  2. THIS FILE IS MACHINE GENERATED WITH CGEN.
  3. Copyright 1996-2010 Free Software Foundation, Inc.
  4. This file is part of the GNU simulators.
  5. This file is free software; you can redistribute it and/or modify
  6. it under the terms of the GNU General Public License as published by
  7. the Free Software Foundation; either version 3, or (at your option)
  8. any later version.
  9. It is distributed in the hope that it will be useful, but WITHOUT
  10. ANY WARRANTY; without even the implied warranty of MERCHANTABILITY
  11. or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public
  12. License for more details.
  13. You should have received a copy of the GNU General Public License along
  14. with this program; if not, write to the Free Software Foundation, Inc.,
  15. 51 Franklin Street - Fifth Floor, Boston, MA 02110-1301, USA.
  16. */
  17. #ifndef DEFS_SH64_COMPACT_H
  18. #define DEFS_SH64_COMPACT_H
  19. /* Instruction argument buffer. */
  20. union sem_fields {
  21. struct { /* no operands */
  22. int empty;
  23. } sfmt_empty;
  24. struct { /* */
  25. IADDR i_disp12;
  26. } sfmt_bra_compact;
  27. struct { /* */
  28. IADDR i_disp8;
  29. } sfmt_bf_compact;
  30. struct { /* */
  31. SI f_imm8x2;
  32. UINT f_rn;
  33. } sfmt_movw10_compact;
  34. struct { /* */
  35. SI f_imm4x2;
  36. UINT f_rm;
  37. } sfmt_movw5_compact;
  38. struct { /* */
  39. SI f_imm8x4;
  40. UINT f_rn;
  41. } sfmt_movl10_compact;
  42. struct { /* */
  43. UINT f_imm4;
  44. UINT f_rm;
  45. } sfmt_movb5_compact;
  46. struct { /* */
  47. INT f_imm20;
  48. UINT f_rn;
  49. } sfmt_movi20_compact;
  50. struct { /* */
  51. SI f_vm;
  52. SI f_vn;
  53. } sfmt_fipr_compact;
  54. struct { /* */
  55. UINT f_imm8;
  56. UINT f_rn;
  57. } sfmt_addi_compact;
  58. struct { /* */
  59. SI f_imm12x4;
  60. UINT f_rm;
  61. UINT f_rn;
  62. } sfmt_movl12_compact;
  63. struct { /* */
  64. SI f_imm4x4;
  65. UINT f_rm;
  66. UINT f_rn;
  67. } sfmt_movl5_compact;
  68. struct { /* */
  69. SI f_dm;
  70. SI f_imm12x8;
  71. UINT f_rn;
  72. } sfmt_fmov9_compact;
  73. struct { /* */
  74. SI f_dn;
  75. SI f_imm12x8;
  76. UINT f_rm;
  77. } sfmt_fmov8_compact;
  78. #if WITH_SCACHE_PBB
  79. /* Writeback handler. */
  80. struct {
  81. /* Pointer to argbuf entry for insn whose results need writing back. */
  82. const struct argbuf *abuf;
  83. } write;
  84. /* x-before handler */
  85. struct {
  86. /*const SCACHE *insns[MAX_PARALLEL_INSNS];*/
  87. int first_p;
  88. } before;
  89. /* x-after handler */
  90. struct {
  91. int empty;
  92. } after;
  93. /* This entry is used to terminate each pbb. */
  94. struct {
  95. /* Number of insns in pbb. */
  96. int insn_count;
  97. /* Next pbb to execute. */
  98. SCACHE *next;
  99. SCACHE *branch_target;
  100. } chain;
  101. #endif
  102. };
  103. /* The ARGBUF struct. */
  104. struct argbuf {
  105. /* These are the baseclass definitions. */
  106. IADDR addr;
  107. const IDESC *idesc;
  108. char trace_p;
  109. char profile_p;
  110. /* ??? Temporary hack for skip insns. */
  111. char skip_count;
  112. char unused;
  113. /* cpu specific data follows */
  114. union sem semantic;
  115. int written;
  116. union sem_fields fields;
  117. };
  118. /* A cached insn.
  119. ??? SCACHE used to contain more than just argbuf. We could delete the
  120. type entirely and always just use ARGBUF, but for future concerns and as
  121. a level of abstraction it is left in. */
  122. struct scache {
  123. struct argbuf argbuf;
  124. };
  125. /* Macros to simplify extraction, reading and semantic code.
  126. These define and assign the local vars that contain the insn's fields. */
  127. #define EXTRACT_IFMT_EMPTY_VARS \
  128. unsigned int length;
  129. #define EXTRACT_IFMT_EMPTY_CODE \
  130. length = 0; \
  131. #define EXTRACT_IFMT_ADD_COMPACT_VARS \
  132. UINT f_op4; \
  133. UINT f_rn; \
  134. UINT f_rm; \
  135. UINT f_sub4; \
  136. unsigned int length;
  137. #define EXTRACT_IFMT_ADD_COMPACT_CODE \
  138. length = 2; \
  139. f_op4 = EXTRACT_MSB0_UINT (insn, 16, 0, 4); \
  140. f_rn = EXTRACT_MSB0_UINT (insn, 16, 4, 4); \
  141. f_rm = EXTRACT_MSB0_UINT (insn, 16, 8, 4); \
  142. f_sub4 = EXTRACT_MSB0_UINT (insn, 16, 12, 4); \
  143. #define EXTRACT_IFMT_ADDI_COMPACT_VARS \
  144. UINT f_op4; \
  145. UINT f_rn; \
  146. UINT f_imm8; \
  147. unsigned int length;
  148. #define EXTRACT_IFMT_ADDI_COMPACT_CODE \
  149. length = 2; \
  150. f_op4 = EXTRACT_MSB0_UINT (insn, 16, 0, 4); \
  151. f_rn = EXTRACT_MSB0_UINT (insn, 16, 4, 4); \
  152. f_imm8 = EXTRACT_MSB0_UINT (insn, 16, 8, 8); \
  153. #define EXTRACT_IFMT_AND_COMPACT_VARS \
  154. UINT f_op4; \
  155. UINT f_rn; \
  156. UINT f_rm; \
  157. UINT f_sub4; \
  158. unsigned int length;
  159. #define EXTRACT_IFMT_AND_COMPACT_CODE \
  160. length = 2; \
  161. f_op4 = EXTRACT_MSB0_UINT (insn, 16, 0, 4); \
  162. f_rn = EXTRACT_MSB0_UINT (insn, 16, 4, 4); \
  163. f_rm = EXTRACT_MSB0_UINT (insn, 16, 8, 4); \
  164. f_sub4 = EXTRACT_MSB0_UINT (insn, 16, 12, 4); \
  165. #define EXTRACT_IFMT_ANDI_COMPACT_VARS \
  166. UINT f_op8; \
  167. UINT f_imm8; \
  168. unsigned int length;
  169. #define EXTRACT_IFMT_ANDI_COMPACT_CODE \
  170. length = 2; \
  171. f_op8 = EXTRACT_MSB0_UINT (insn, 16, 0, 8); \
  172. f_imm8 = EXTRACT_MSB0_UINT (insn, 16, 8, 8); \
  173. #define EXTRACT_IFMT_ANDB_COMPACT_VARS \
  174. UINT f_op8; \
  175. UINT f_imm8; \
  176. unsigned int length;
  177. #define EXTRACT_IFMT_ANDB_COMPACT_CODE \
  178. length = 2; \
  179. f_op8 = EXTRACT_MSB0_UINT (insn, 16, 0, 8); \
  180. f_imm8 = EXTRACT_MSB0_UINT (insn, 16, 8, 8); \
  181. #define EXTRACT_IFMT_BF_COMPACT_VARS \
  182. UINT f_op8; \
  183. SI f_disp8; \
  184. unsigned int length;
  185. #define EXTRACT_IFMT_BF_COMPACT_CODE \
  186. length = 2; \
  187. f_op8 = EXTRACT_MSB0_UINT (insn, 16, 0, 8); \
  188. f_disp8 = ((((EXTRACT_MSB0_SINT (insn, 16, 8, 8)) << (1))) + (((pc) + (4)))); \
  189. #define EXTRACT_IFMT_BRA_COMPACT_VARS \
  190. UINT f_op4; \
  191. SI f_disp12; \
  192. unsigned int length;
  193. #define EXTRACT_IFMT_BRA_COMPACT_CODE \
  194. length = 2; \
  195. f_op4 = EXTRACT_MSB0_UINT (insn, 16, 0, 4); \
  196. f_disp12 = ((((EXTRACT_MSB0_SINT (insn, 16, 4, 12)) << (1))) + (((pc) + (4)))); \
  197. #define EXTRACT_IFMT_BRAF_COMPACT_VARS \
  198. UINT f_op4; \
  199. UINT f_rn; \
  200. UINT f_sub8; \
  201. unsigned int length;
  202. #define EXTRACT_IFMT_BRAF_COMPACT_CODE \
  203. length = 2; \
  204. f_op4 = EXTRACT_MSB0_UINT (insn, 16, 0, 4); \
  205. f_rn = EXTRACT_MSB0_UINT (insn, 16, 4, 4); \
  206. f_sub8 = EXTRACT_MSB0_UINT (insn, 16, 8, 8); \
  207. #define EXTRACT_IFMT_BRK_COMPACT_VARS \
  208. UINT f_op16; \
  209. unsigned int length;
  210. #define EXTRACT_IFMT_BRK_COMPACT_CODE \
  211. length = 2; \
  212. f_op16 = EXTRACT_MSB0_UINT (insn, 16, 0, 16); \
  213. #define EXTRACT_IFMT_FABS_COMPACT_VARS \
  214. UINT f_op4; \
  215. UINT f_rn; \
  216. UINT f_sub8; \
  217. unsigned int length;
  218. #define EXTRACT_IFMT_FABS_COMPACT_CODE \
  219. length = 2; \
  220. f_op4 = EXTRACT_MSB0_UINT (insn, 16, 0, 4); \
  221. f_rn = EXTRACT_MSB0_UINT (insn, 16, 4, 4); \
  222. f_sub8 = EXTRACT_MSB0_UINT (insn, 16, 8, 8); \
  223. #define EXTRACT_IFMT_FADD_COMPACT_VARS \
  224. UINT f_op4; \
  225. UINT f_rn; \
  226. UINT f_rm; \
  227. UINT f_sub4; \
  228. unsigned int length;
  229. #define EXTRACT_IFMT_FADD_COMPACT_CODE \
  230. length = 2; \
  231. f_op4 = EXTRACT_MSB0_UINT (insn, 16, 0, 4); \
  232. f_rn = EXTRACT_MSB0_UINT (insn, 16, 4, 4); \
  233. f_rm = EXTRACT_MSB0_UINT (insn, 16, 8, 4); \
  234. f_sub4 = EXTRACT_MSB0_UINT (insn, 16, 12, 4); \
  235. #define EXTRACT_IFMT_FCNVDS_COMPACT_VARS \
  236. UINT f_op4; \
  237. SI f_dn; \
  238. UINT f_7_1; \
  239. UINT f_sub8; \
  240. unsigned int length;
  241. #define EXTRACT_IFMT_FCNVDS_COMPACT_CODE \
  242. length = 2; \
  243. f_op4 = EXTRACT_MSB0_UINT (insn, 16, 0, 4); \
  244. f_dn = ((EXTRACT_MSB0_UINT (insn, 16, 4, 3)) << (1)); \
  245. f_7_1 = EXTRACT_MSB0_UINT (insn, 16, 7, 1); \
  246. f_sub8 = EXTRACT_MSB0_UINT (insn, 16, 8, 8); \
  247. #define EXTRACT_IFMT_FIPR_COMPACT_VARS \
  248. UINT f_op4; \
  249. SI f_vn; \
  250. SI f_vm; \
  251. UINT f_sub8; \
  252. unsigned int length;
  253. #define EXTRACT_IFMT_FIPR_COMPACT_CODE \
  254. length = 2; \
  255. f_op4 = EXTRACT_MSB0_UINT (insn, 16, 0, 4); \
  256. f_vn = ((EXTRACT_MSB0_UINT (insn, 16, 4, 2)) << (2)); \
  257. f_vm = ((EXTRACT_MSB0_UINT (insn, 16, 6, 2)) << (2)); \
  258. f_sub8 = EXTRACT_MSB0_UINT (insn, 16, 8, 8); \
  259. #define EXTRACT_IFMT_FLDS_COMPACT_VARS \
  260. UINT f_op4; \
  261. UINT f_rn; \
  262. UINT f_sub8; \
  263. unsigned int length;
  264. #define EXTRACT_IFMT_FLDS_COMPACT_CODE \
  265. length = 2; \
  266. f_op4 = EXTRACT_MSB0_UINT (insn, 16, 0, 4); \
  267. f_rn = EXTRACT_MSB0_UINT (insn, 16, 4, 4); \
  268. f_sub8 = EXTRACT_MSB0_UINT (insn, 16, 8, 8); \
  269. #define EXTRACT_IFMT_FMAC_COMPACT_VARS \
  270. UINT f_op4; \
  271. UINT f_rn; \
  272. UINT f_rm; \
  273. UINT f_sub4; \
  274. unsigned int length;
  275. #define EXTRACT_IFMT_FMAC_COMPACT_CODE \
  276. length = 2; \
  277. f_op4 = EXTRACT_MSB0_UINT (insn, 16, 0, 4); \
  278. f_rn = EXTRACT_MSB0_UINT (insn, 16, 4, 4); \
  279. f_rm = EXTRACT_MSB0_UINT (insn, 16, 8, 4); \
  280. f_sub4 = EXTRACT_MSB0_UINT (insn, 16, 12, 4); \
  281. #define EXTRACT_IFMT_FMOV1_COMPACT_VARS \
  282. UINT f_op4; \
  283. UINT f_rn; \
  284. UINT f_rm; \
  285. UINT f_sub4; \
  286. unsigned int length;
  287. #define EXTRACT_IFMT_FMOV1_COMPACT_CODE \
  288. length = 2; \
  289. f_op4 = EXTRACT_MSB0_UINT (insn, 16, 0, 4); \
  290. f_rn = EXTRACT_MSB0_UINT (insn, 16, 4, 4); \
  291. f_rm = EXTRACT_MSB0_UINT (insn, 16, 8, 4); \
  292. f_sub4 = EXTRACT_MSB0_UINT (insn, 16, 12, 4); \
  293. #define EXTRACT_IFMT_FMOV2_COMPACT_VARS \
  294. UINT f_op4; \
  295. UINT f_rn; \
  296. UINT f_rm; \
  297. UINT f_sub4; \
  298. unsigned int length;
  299. #define EXTRACT_IFMT_FMOV2_COMPACT_CODE \
  300. length = 2; \
  301. f_op4 = EXTRACT_MSB0_UINT (insn, 16, 0, 4); \
  302. f_rn = EXTRACT_MSB0_UINT (insn, 16, 4, 4); \
  303. f_rm = EXTRACT_MSB0_UINT (insn, 16, 8, 4); \
  304. f_sub4 = EXTRACT_MSB0_UINT (insn, 16, 12, 4); \
  305. #define EXTRACT_IFMT_FMOV5_COMPACT_VARS \
  306. UINT f_op4; \
  307. UINT f_rn; \
  308. UINT f_rm; \
  309. UINT f_sub4; \
  310. unsigned int length;
  311. #define EXTRACT_IFMT_FMOV5_COMPACT_CODE \
  312. length = 2; \
  313. f_op4 = EXTRACT_MSB0_UINT (insn, 16, 0, 4); \
  314. f_rn = EXTRACT_MSB0_UINT (insn, 16, 4, 4); \
  315. f_rm = EXTRACT_MSB0_UINT (insn, 16, 8, 4); \
  316. f_sub4 = EXTRACT_MSB0_UINT (insn, 16, 12, 4); \
  317. #define EXTRACT_IFMT_FMOV8_COMPACT_VARS \
  318. UINT f_op4; \
  319. SI f_dn; \
  320. UINT f_7_1; \
  321. UINT f_rm; \
  322. UINT f_sub4; \
  323. UINT f_16_4; \
  324. SI f_imm12x8; \
  325. unsigned int length;
  326. #define EXTRACT_IFMT_FMOV8_COMPACT_CODE \
  327. length = 4; \
  328. f_op4 = EXTRACT_MSB0_UINT (insn, 32, 0, 4); \
  329. f_dn = ((EXTRACT_MSB0_UINT (insn, 32, 4, 3)) << (1)); \
  330. f_7_1 = EXTRACT_MSB0_UINT (insn, 32, 7, 1); \
  331. f_rm = EXTRACT_MSB0_UINT (insn, 32, 8, 4); \
  332. f_sub4 = EXTRACT_MSB0_UINT (insn, 32, 12, 4); \
  333. f_16_4 = EXTRACT_MSB0_UINT (insn, 32, 16, 4); \
  334. f_imm12x8 = ((EXTRACT_MSB0_SINT (insn, 32, 20, 12)) << (3)); \
  335. #define EXTRACT_IFMT_FMOV9_COMPACT_VARS \
  336. UINT f_op4; \
  337. UINT f_rn; \
  338. SI f_dm; \
  339. UINT f_11_1; \
  340. UINT f_sub4; \
  341. UINT f_16_4; \
  342. SI f_imm12x8; \
  343. unsigned int length;
  344. #define EXTRACT_IFMT_FMOV9_COMPACT_CODE \
  345. length = 4; \
  346. f_op4 = EXTRACT_MSB0_UINT (insn, 32, 0, 4); \
  347. f_rn = EXTRACT_MSB0_UINT (insn, 32, 4, 4); \
  348. f_dm = ((EXTRACT_MSB0_UINT (insn, 32, 8, 3)) << (1)); \
  349. f_11_1 = EXTRACT_MSB0_UINT (insn, 32, 11, 1); \
  350. f_sub4 = EXTRACT_MSB0_UINT (insn, 32, 12, 4); \
  351. f_16_4 = EXTRACT_MSB0_UINT (insn, 32, 16, 4); \
  352. f_imm12x8 = ((EXTRACT_MSB0_SINT (insn, 32, 20, 12)) << (3)); \
  353. #define EXTRACT_IFMT_FTRV_COMPACT_VARS \
  354. UINT f_op4; \
  355. SI f_vn; \
  356. UINT f_sub10; \
  357. unsigned int length;
  358. #define EXTRACT_IFMT_FTRV_COMPACT_CODE \
  359. length = 2; \
  360. f_op4 = EXTRACT_MSB0_UINT (insn, 16, 0, 4); \
  361. f_vn = ((EXTRACT_MSB0_UINT (insn, 16, 4, 2)) << (2)); \
  362. f_sub10 = EXTRACT_MSB0_UINT (insn, 16, 6, 10); \
  363. #define EXTRACT_IFMT_MOVI20_COMPACT_VARS \
  364. UINT f_op4; \
  365. UINT f_rn; \
  366. INT f_imm20_hi; \
  367. UINT f_imm20_lo; \
  368. INT f_imm20; \
  369. UINT f_sub4; \
  370. unsigned int length;
  371. #define EXTRACT_IFMT_MOVI20_COMPACT_CODE \
  372. length = 4; \
  373. f_op4 = EXTRACT_MSB0_UINT (insn, 32, 0, 4); \
  374. f_rn = EXTRACT_MSB0_UINT (insn, 32, 4, 4); \
  375. f_imm20_hi = EXTRACT_MSB0_SINT (insn, 32, 8, 4); \
  376. f_imm20_lo = EXTRACT_MSB0_UINT (insn, 32, 16, 16); \
  377. f_imm20 = ((((f_imm20_hi) << (16))) | (f_imm20_lo));\
  378. f_sub4 = EXTRACT_MSB0_UINT (insn, 32, 12, 4); \
  379. #define EXTRACT_IFMT_MOVB5_COMPACT_VARS \
  380. UINT f_op8; \
  381. UINT f_rm; \
  382. UINT f_imm4; \
  383. unsigned int length;
  384. #define EXTRACT_IFMT_MOVB5_COMPACT_CODE \
  385. length = 2; \
  386. f_op8 = EXTRACT_MSB0_UINT (insn, 16, 0, 8); \
  387. f_rm = EXTRACT_MSB0_UINT (insn, 16, 8, 4); \
  388. f_imm4 = EXTRACT_MSB0_UINT (insn, 16, 12, 4); \
  389. #define EXTRACT_IFMT_MOVL4_COMPACT_VARS \
  390. UINT f_op8; \
  391. SI f_imm8x4; \
  392. unsigned int length;
  393. #define EXTRACT_IFMT_MOVL4_COMPACT_CODE \
  394. length = 2; \
  395. f_op8 = EXTRACT_MSB0_UINT (insn, 16, 0, 8); \
  396. f_imm8x4 = ((EXTRACT_MSB0_UINT (insn, 16, 8, 8)) << (2)); \
  397. #define EXTRACT_IFMT_MOVL5_COMPACT_VARS \
  398. UINT f_op4; \
  399. UINT f_rn; \
  400. UINT f_rm; \
  401. SI f_imm4x4; \
  402. unsigned int length;
  403. #define EXTRACT_IFMT_MOVL5_COMPACT_CODE \
  404. length = 2; \
  405. f_op4 = EXTRACT_MSB0_UINT (insn, 16, 0, 4); \
  406. f_rn = EXTRACT_MSB0_UINT (insn, 16, 4, 4); \
  407. f_rm = EXTRACT_MSB0_UINT (insn, 16, 8, 4); \
  408. f_imm4x4 = ((EXTRACT_MSB0_UINT (insn, 16, 12, 4)) << (2)); \
  409. #define EXTRACT_IFMT_MOVL10_COMPACT_VARS \
  410. UINT f_op4; \
  411. UINT f_rn; \
  412. SI f_imm8x4; \
  413. unsigned int length;
  414. #define EXTRACT_IFMT_MOVL10_COMPACT_CODE \
  415. length = 2; \
  416. f_op4 = EXTRACT_MSB0_UINT (insn, 16, 0, 4); \
  417. f_rn = EXTRACT_MSB0_UINT (insn, 16, 4, 4); \
  418. f_imm8x4 = ((EXTRACT_MSB0_UINT (insn, 16, 8, 8)) << (2)); \
  419. #define EXTRACT_IFMT_MOVL12_COMPACT_VARS \
  420. UINT f_op4; \
  421. UINT f_rn; \
  422. UINT f_rm; \
  423. UINT f_sub4; \
  424. UINT f_16_4; \
  425. SI f_imm12x4; \
  426. unsigned int length;
  427. #define EXTRACT_IFMT_MOVL12_COMPACT_CODE \
  428. length = 4; \
  429. f_op4 = EXTRACT_MSB0_UINT (insn, 32, 0, 4); \
  430. f_rn = EXTRACT_MSB0_UINT (insn, 32, 4, 4); \
  431. f_rm = EXTRACT_MSB0_UINT (insn, 32, 8, 4); \
  432. f_sub4 = EXTRACT_MSB0_UINT (insn, 32, 12, 4); \
  433. f_16_4 = EXTRACT_MSB0_UINT (insn, 32, 16, 4); \
  434. f_imm12x4 = ((EXTRACT_MSB0_SINT (insn, 32, 20, 12)) << (2)); \
  435. #define EXTRACT_IFMT_MOVW4_COMPACT_VARS \
  436. UINT f_op8; \
  437. SI f_imm8x2; \
  438. unsigned int length;
  439. #define EXTRACT_IFMT_MOVW4_COMPACT_CODE \
  440. length = 2; \
  441. f_op8 = EXTRACT_MSB0_UINT (insn, 16, 0, 8); \
  442. f_imm8x2 = ((EXTRACT_MSB0_UINT (insn, 16, 8, 8)) << (1)); \
  443. #define EXTRACT_IFMT_MOVW5_COMPACT_VARS \
  444. UINT f_op8; \
  445. UINT f_rm; \
  446. SI f_imm4x2; \
  447. unsigned int length;
  448. #define EXTRACT_IFMT_MOVW5_COMPACT_CODE \
  449. length = 2; \
  450. f_op8 = EXTRACT_MSB0_UINT (insn, 16, 0, 8); \
  451. f_rm = EXTRACT_MSB0_UINT (insn, 16, 8, 4); \
  452. f_imm4x2 = ((EXTRACT_MSB0_UINT (insn, 16, 12, 4)) << (1)); \
  453. #define EXTRACT_IFMT_MOVW10_COMPACT_VARS \
  454. UINT f_op4; \
  455. UINT f_rn; \
  456. SI f_imm8x2; \
  457. unsigned int length;
  458. #define EXTRACT_IFMT_MOVW10_COMPACT_CODE \
  459. length = 2; \
  460. f_op4 = EXTRACT_MSB0_UINT (insn, 16, 0, 4); \
  461. f_rn = EXTRACT_MSB0_UINT (insn, 16, 4, 4); \
  462. f_imm8x2 = ((EXTRACT_MSB0_UINT (insn, 16, 8, 8)) << (1)); \
  463. #endif /* DEFS_SH64_COMPACT_H */