aasmcpu.pas 18 KB

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  1. {
  2. Copyright (c) 1999-2002 by Jonas Maebe and Thomas Schatzl
  3. Contains the assembler object for the Risc-V 32 and Risc-V 64
  4. This program is free software; you can redistribute it and/or modify
  5. it under the terms of the GNU General Public License as published by
  6. the Free Software Foundation; either version 2 of the License, or
  7. (at your option) any later version.
  8. This program is distributed in the hope that it will be useful,
  9. but WITHOUT ANY WARRANTY; without even the implied warranty of
  10. MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  11. GNU General Public License for more details.
  12. You should have received a copy of the GNU General Public License
  13. along with this program; if not, write to the Free Software
  14. Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
  15. ****************************************************************************
  16. }
  17. unit aasmcpu;
  18. {$i fpcdefs.inc}
  19. interface
  20. uses
  21. globtype,verbose,
  22. aasmbase,aasmtai,aasmdata,aasmsym,
  23. cpubase,cgbase,cgutils;
  24. const
  25. { "mov reg,reg" source operand number }
  26. O_MOV_SOURCE = 1;
  27. { "mov reg,reg" source operand number }
  28. O_MOV_DEST = 0;
  29. type
  30. { taicpu }
  31. taicpu = class(tai_cpu_abstract_sym)
  32. memoryordering: TMemoryOrdering;
  33. constructor op_none(op : tasmop);
  34. constructor op_reg(op : tasmop;_op1 : tregister);
  35. constructor op_const(op : tasmop;_op1 : aint);
  36. constructor op_ref(op : tasmop;_op1 : treference);
  37. constructor op_reg_reg(op : tasmop;_op1,_op2 : tregister);
  38. constructor op_reg_ref(op : tasmop;_op1 : tregister;const _op2 : treference);
  39. constructor op_reg_const(op:tasmop; _op1: tregister; _op2: aint);
  40. constructor op_const_reg(op:tasmop; _op1: aint; _op2: tregister);
  41. constructor op_const_const(op : tasmop;_op1,_op2 : aint);
  42. constructor op_reg_reg_const_const(op: tasmop; _op1, _op2: tregister; _op3, _op4: aint);
  43. constructor op_reg_reg_roundingmode(op : tasmop;_op1,_op2 : tregister; _op3: TRoundingMode);
  44. constructor op_reg_reg_reg(op : tasmop;_op1,_op2,_op3 : tregister);
  45. constructor op_reg_reg_const(op : tasmop;_op1,_op2 : tregister; _op3: aint);
  46. constructor op_reg_reg_sym_ofs(op : tasmop;_op1,_op2 : tregister; _op3: tasmsymbol;_op3ofs: aint);
  47. constructor op_reg_reg_ref(op : tasmop;_op1,_op2 : tregister; const _op3: treference);
  48. constructor op_reg_ref_reg(op : tasmop;_op1: tregister; const _op2: treference;_op3 : tregister);
  49. constructor op_const_reg_reg(op : tasmop;_op1 : aint;_op2, _op3 : tregister);
  50. constructor op_const_reg_const(op : tasmop;_op1 : aint;_op2 : tregister;_op3 : aint);
  51. constructor op_const_const_const(op : tasmop;_op1 : aint;_op2 : aint;_op3 : aint);
  52. constructor op_reg_reg_reg_reg(op : tasmop;_op1,_op2,_op3,_op4 : tregister);
  53. constructor op_reg_bool_reg_reg(op : tasmop;_op1: tregister;_op2:boolean;_op3,_op4:tregister);
  54. constructor op_reg_bool_reg_const(op : tasmop;_op1: tregister;_op2:boolean;_op3:tregister;_op4: aint);
  55. constructor op_reg_reg_reg_const(op : tasmop; _op1, _op2, _op3 : tregister; _op4 : aint);
  56. constructor op_reg_reg_reg_const_const(op : tasmop;_op1,_op2,_op3 : tregister;_op4,_op5 : aint);
  57. constructor op_reg_reg_const_const_const(op : tasmop;_op1,_op2 : tregister;_op3,_op4,_op5 : aint);
  58. { this is for Jmp instructions }
  59. constructor op_cond_sym(op : tasmop;cond:TAsmCond;_op1 : tasmsymbol);
  60. constructor op_const_const_sym(op : tasmop;_op1,_op2 : aint;_op3: tasmsymbol);
  61. constructor op_sym(op : tasmop;_op1 : tasmsymbol);
  62. constructor op_sym_ofs(op : tasmop;_op1 : tasmsymbol;_op1ofs:aint);
  63. constructor op_reg_sym(op : tasmop;_op1 : tregister;_op2:tasmsymbol);
  64. constructor op_reg_sym_ofs(op : tasmop;_op1 : tregister;_op2:tasmsymbol;_op2ofs : aint);
  65. constructor op_sym_ofs_ref(op : tasmop;_op1 : tasmsymbol;_op1ofs:aint;const _op2 : treference);
  66. procedure loadroundingmode(opidx:aint;_roundmode:TRoundingMode);
  67. procedure loadfenceflags(opidx:aint;_flags:TFenceFlags);
  68. procedure loadbool(opidx:aint;_b:boolean);
  69. function is_same_reg_move(regtype: Tregistertype):boolean; override;
  70. { register spilling code }
  71. function spilling_get_operation_type(opnr: longint): topertype;override;
  72. function spilling_get_operation_type_ref(opnr: longint; reg: tregister): topertype;override;
  73. end;
  74. tai_align = class(tai_align_abstract)
  75. { nothing to add }
  76. end;
  77. procedure InitAsm;
  78. procedure DoneAsm;
  79. function spilling_create_load(const ref:treference;r:tregister):Taicpu;
  80. function spilling_create_store(r:tregister; const ref:treference):Taicpu;
  81. implementation
  82. uses cutils, cclasses;
  83. {*****************************************************************************
  84. taicpu Constructors
  85. *****************************************************************************}
  86. procedure taicpu.loadbool(opidx:aint;_b:boolean);
  87. begin
  88. if opidx>=ops then
  89. ops:=opidx+1;
  90. with oper[opidx]^ do
  91. begin
  92. if typ=top_ref then
  93. dispose(ref);
  94. b:=_b;
  95. typ:=top_bool;
  96. end;
  97. end;
  98. constructor taicpu.op_none(op : tasmop);
  99. begin
  100. inherited create(op);
  101. end;
  102. constructor taicpu.op_reg(op : tasmop;_op1 : tregister);
  103. begin
  104. inherited create(op);
  105. ops:=1;
  106. loadreg(0,_op1);
  107. end;
  108. constructor taicpu.op_ref(op : tasmop;_op1 : treference);
  109. begin
  110. inherited create(op);
  111. ops:=1;
  112. loadref(0,_op1);
  113. end;
  114. constructor taicpu.op_const(op : tasmop;_op1 : aint);
  115. begin
  116. inherited create(op);
  117. ops:=1;
  118. loadconst(0,_op1);
  119. end;
  120. constructor taicpu.op_reg_reg(op : tasmop;_op1,_op2 : tregister);
  121. begin
  122. inherited create(op);
  123. ops:=2;
  124. loadreg(0,_op1);
  125. loadreg(1,_op2);
  126. end;
  127. constructor taicpu.op_reg_const(op:tasmop; _op1: tregister; _op2: aint);
  128. begin
  129. inherited create(op);
  130. ops:=2;
  131. loadreg(0,_op1);
  132. loadconst(1,_op2);
  133. end;
  134. constructor taicpu.op_const_reg(op:tasmop; _op1: aint; _op2: tregister);
  135. begin
  136. inherited create(op);
  137. ops:=2;
  138. loadconst(0,_op1);
  139. loadreg(1,_op2);
  140. end;
  141. constructor taicpu.op_reg_ref(op : tasmop;_op1 : tregister;const _op2 : treference);
  142. begin
  143. inherited create(op);
  144. ops:=2;
  145. loadreg(0,_op1);
  146. loadref(1,_op2);
  147. end;
  148. constructor taicpu.op_const_const(op : tasmop;_op1,_op2 : aint);
  149. begin
  150. inherited create(op);
  151. ops:=2;
  152. loadconst(0,_op1);
  153. loadconst(1,_op2);
  154. end;
  155. constructor taicpu.op_reg_reg_const_const(op: tasmop; _op1, _op2: tregister; _op3, _op4: aint);
  156. begin
  157. inherited create(op);
  158. ops := 4;
  159. loadreg(0, _op1);
  160. loadreg(1, _op2);
  161. loadconst(2, _op3);
  162. loadconst(3, _op4);
  163. end;
  164. constructor taicpu.op_reg_reg_roundingmode(op: tasmop; _op1, _op2: tregister; _op3: TRoundingMode);
  165. begin
  166. inherited create(op);
  167. ops:=3;
  168. loadreg(0,_op1);
  169. loadreg(1,_op2);
  170. loadroundingmode(2,_op3);
  171. end;
  172. constructor taicpu.op_reg_reg_reg(op : tasmop;_op1,_op2,_op3 : tregister);
  173. begin
  174. inherited create(op);
  175. ops:=3;
  176. loadreg(0,_op1);
  177. loadreg(1,_op2);
  178. loadreg(2,_op3);
  179. end;
  180. constructor taicpu.op_reg_reg_const(op : tasmop;_op1,_op2 : tregister; _op3: aint);
  181. begin
  182. inherited create(op);
  183. ops:=3;
  184. loadreg(0,_op1);
  185. loadreg(1,_op2);
  186. loadconst(2,_op3);
  187. end;
  188. constructor taicpu.op_reg_reg_sym_ofs(op : tasmop;_op1,_op2 : tregister; _op3: tasmsymbol;_op3ofs: aint);
  189. begin
  190. inherited create(op);
  191. ops:=3;
  192. loadreg(0,_op1);
  193. loadreg(1,_op2);
  194. loadsymbol(2,_op3,_op3ofs);
  195. end;
  196. constructor taicpu.op_reg_reg_ref(op : tasmop;_op1,_op2 : tregister; const _op3: treference);
  197. begin
  198. inherited create(op);
  199. ops:=3;
  200. loadreg(0,_op1);
  201. loadreg(1,_op2);
  202. loadref(2,_op3);
  203. end;
  204. constructor taicpu.op_reg_ref_reg(op : tasmop;_op1: tregister; const _op2: treference;_op3 : tregister);
  205. begin
  206. inherited create(op);
  207. ops:=3;
  208. loadreg(0,_op1);
  209. loadref(1,_op2);
  210. loadreg(2,_op3);
  211. end;
  212. constructor taicpu.op_const_reg_reg(op : tasmop;_op1 : aint;_op2, _op3 : tregister);
  213. begin
  214. inherited create(op);
  215. ops:=3;
  216. loadconst(0,_op1);
  217. loadreg(1,_op2);
  218. loadreg(2,_op3);
  219. end;
  220. constructor taicpu.op_const_reg_const(op : tasmop;_op1 : aint;_op2 : tregister;_op3 : aint);
  221. begin
  222. inherited create(op);
  223. ops:=3;
  224. loadconst(0,_op1);
  225. loadreg(1,_op2);
  226. loadconst(2,_op3);
  227. end;
  228. constructor taicpu.op_const_const_const(op : tasmop;_op1 : aint;_op2 : aint;_op3 : aint);
  229. begin
  230. inherited create(op);
  231. ops:=3;
  232. loadconst(0,_op1);
  233. loadconst(1,_op2);
  234. loadconst(2,_op3);
  235. end;
  236. constructor taicpu.op_reg_reg_reg_reg(op : tasmop;_op1,_op2,_op3,_op4 : tregister);
  237. begin
  238. inherited create(op);
  239. ops:=4;
  240. loadreg(0,_op1);
  241. loadreg(1,_op2);
  242. loadreg(2,_op3);
  243. loadreg(3,_op4);
  244. end;
  245. constructor taicpu.op_reg_bool_reg_reg(op : tasmop;_op1: tregister;_op2:boolean;_op3,_op4:tregister);
  246. begin
  247. inherited create(op);
  248. ops:=4;
  249. loadreg(0,_op1);
  250. loadbool(1,_op2);
  251. loadreg(2,_op3);
  252. loadreg(3,_op4);
  253. end;
  254. constructor taicpu.op_reg_bool_reg_const(op : tasmop;_op1: tregister;_op2:boolean;_op3:tregister;_op4: aint);
  255. begin
  256. inherited create(op);
  257. ops:=4;
  258. loadreg(0,_op1);
  259. loadbool(0,_op2);
  260. loadreg(0,_op3);
  261. loadconst(0,cardinal(_op4));
  262. end;
  263. constructor taicpu.op_reg_reg_reg_const(op : tasmop; _op1, _op2, _op3 : tregister; _op4 : aint);
  264. begin
  265. inherited create(op);
  266. ops := 4;
  267. loadreg(0, _op1);
  268. loadreg(1, _op2);
  269. loadreg(2, _op3);
  270. loadconst(3, cardinal(_op4));
  271. end;
  272. constructor taicpu.op_reg_reg_reg_const_const(op : tasmop;_op1,_op2,_op3 : tregister;_op4,_op5 : aint);
  273. begin
  274. inherited create(op);
  275. ops:=5;
  276. loadreg(0,_op1);
  277. loadreg(1,_op2);
  278. loadreg(2,_op3);
  279. loadconst(3,cardinal(_op4));
  280. loadconst(4,cardinal(_op5));
  281. end;
  282. constructor taicpu.op_reg_reg_const_const_const(op : tasmop;_op1,_op2 : tregister;_op3,_op4,_op5 : aint);
  283. begin
  284. inherited create(op);
  285. ops:=5;
  286. loadreg(0,_op1);
  287. loadreg(1,_op2);
  288. loadconst(2,_op3);
  289. loadconst(3,_op4);
  290. loadconst(4,_op5);
  291. end;
  292. constructor taicpu.op_cond_sym(op : tasmop;cond:TAsmCond;_op1 : tasmsymbol);
  293. begin
  294. inherited create(op);
  295. condition:=cond;
  296. ops:=1;
  297. loadsymbol(0,_op1,0);
  298. end;
  299. constructor taicpu.op_const_const_sym(op : tasmop;_op1,_op2 : aint; _op3: tasmsymbol);
  300. begin
  301. inherited create(op);
  302. ops:=3;
  303. loadconst(0,_op1);
  304. loadconst(1,_op2);
  305. loadsymbol(2,_op3,0);
  306. end;
  307. constructor taicpu.op_sym(op : tasmop;_op1 : tasmsymbol);
  308. begin
  309. inherited create(op);
  310. ops:=1;
  311. loadsymbol(0,_op1,0);
  312. end;
  313. constructor taicpu.op_sym_ofs(op : tasmop;_op1 : tasmsymbol;_op1ofs:aint);
  314. begin
  315. inherited create(op);
  316. ops:=1;
  317. loadsymbol(0,_op1,_op1ofs);
  318. end;
  319. constructor taicpu.op_reg_sym(op: tasmop; _op1: tregister; _op2: tasmsymbol);
  320. begin
  321. inherited create(op);
  322. ops:=2;
  323. loadreg(0,_op1);
  324. loadsymbol(1,_op2,0);
  325. end;
  326. constructor taicpu.op_reg_sym_ofs(op : tasmop;_op1 : tregister;_op2:tasmsymbol;_op2ofs : aint);
  327. begin
  328. inherited create(op);
  329. ops:=2;
  330. loadreg(0,_op1);
  331. loadsymbol(1,_op2,_op2ofs);
  332. end;
  333. constructor taicpu.op_sym_ofs_ref(op : tasmop;_op1 : tasmsymbol;_op1ofs:aint;const _op2 : treference);
  334. begin
  335. inherited create(op);
  336. ops:=2;
  337. loadsymbol(0,_op1,_op1ofs);
  338. loadref(1,_op2);
  339. end;
  340. procedure taicpu.loadroundingmode(opidx: aint; _roundmode: TRoundingMode);
  341. begin
  342. allocate_oper(opidx+1);
  343. with oper[opidx]^ do
  344. begin
  345. if typ<>top_roundingmode then
  346. clearop(opidx);
  347. roundingmode:=_roundmode;
  348. typ:=top_roundingmode;
  349. end;
  350. end;
  351. procedure taicpu.loadfenceflags(opidx: aint; _flags: TFenceFlags);
  352. begin
  353. allocate_oper(opidx+1);
  354. with oper[opidx]^ do
  355. begin
  356. if typ<>top_fenceflags then
  357. clearop(opidx);
  358. fenceflags:=_flags;
  359. typ:=top_fenceflags;
  360. end;
  361. end;
  362. { ****************************** newra stuff *************************** }
  363. function taicpu.is_same_reg_move(regtype: Tregistertype):boolean;
  364. begin
  365. case regtype of
  366. R_INTREGISTER:
  367. result:=
  368. (opcode=A_ADDI) and
  369. (oper[0]^.reg=oper[1]^.reg) and
  370. (oper[2]^.val=0);
  371. R_FPUREGISTER:
  372. result:=
  373. (opcode in [A_FSGNJ_S,A_FSGNJ_D]) and
  374. (oper[0]^.reg=oper[1]^.reg) and
  375. (oper[0]^.reg=oper[2]^.reg);
  376. else
  377. result:=false;
  378. end;
  379. end;
  380. function taicpu.spilling_get_operation_type(opnr: longint): topertype;
  381. begin
  382. result := operand_read;
  383. case opcode of
  384. // U type
  385. A_LUI,
  386. A_AUIPC:
  387. if opnr=0 then
  388. result:=operand_write
  389. else
  390. result:=operand_read;
  391. // UJ type
  392. A_JAL:
  393. if opnr=0 then
  394. result:=operand_write
  395. else
  396. result:=operand_read;
  397. // I type
  398. A_JALR,
  399. A_LA,A_LB,A_LH,A_LW,A_LBU,A_LHU,A_LI,
  400. A_ADDI,A_SLTI,A_SLTIU,
  401. A_XORI,A_ORI,A_ANDI,
  402. A_SLLI,A_SRLI,A_SRAI,
  403. A_FENCE,A_FENCE_I,
  404. A_ECALL,A_EBREAK,
  405. A_CSRRW,A_CSRRS,A_CSRRC,A_CSRRWI,A_CSRRSI,A_CSRRCI,
  406. A_FRCSR,A_FRRM,A_FRFLAGS,A_FSCSR,A_FSRM,
  407. A_FSFLAGS,A_FSRMI,A_FSFLAGSI:
  408. if opnr=0 then
  409. result:=operand_write
  410. else
  411. result:=operand_read;
  412. // SB type
  413. A_Bxx:
  414. result:=operand_read;
  415. // S type
  416. A_SB,A_SH,A_SW,
  417. A_FSW,
  418. A_FSD:
  419. result:=operand_read;
  420. // R type
  421. A_ADD,A_SUB,A_SLL,A_SLT,A_SLTU,
  422. A_XOR,A_OR,A_AND,A_SRL,A_SRA,
  423. A_MUL,A_MULH,A_MULHSU,A_MULHU,
  424. A_DIV,A_DIVU,A_REM,A_REMU,
  425. A_LR_W,A_SC_W,A_AMOSWAP_W,A_AMOADD_W,A_AMOXOR_W,A_AMOAND_W,
  426. A_AMOOR_W,A_AMOMIN_W,A_AMOMAX_W,A_AMOMINU_W,A_AMOMAXU_W,
  427. A_FADD_S,A_FSUB_S,A_FMUL_S,A_FDIV_S,
  428. A_FSQRT_S,A_FSGNJ_S,A_FSGNJN_S,A_FSGNJX_S,
  429. A_FMIN_S,A_FMAX_S,
  430. A_FMV_X_S,A_FEQ_S,A_FLT_S,A_FLE_S,A_FCLASS_S,
  431. A_FCVT_W_S,A_FCVT_WU_S,A_FCVT_S_W,A_FCVT_S_WU,
  432. A_FMV_S_X,A_FMV_W_X,
  433. A_FADD_D,A_FSUB_D,A_FMUL_D,A_FDIV_D,
  434. A_FSQRT_D,A_FSGNJ_D,A_FSGNJN_D,A_FSGNJX_D,
  435. A_FMIN_D,A_FMAX_D,
  436. A_FEQ_D,A_FLT_D,A_FLE_D,A_FCLASS_D,
  437. A_FCVT_D_S,A_FCVT_S_D,
  438. A_FCVT_W_D,A_FCVT_WU_D,A_FCVT_D_W,A_FCVT_D_WU,
  439. A_FLW,
  440. A_FLD,
  441. A_FNEG_S,A_FNEG_D,A_FNEG_Q:
  442. if opnr=0 then
  443. result:=operand_write
  444. else
  445. result:=operand_read;
  446. // R4 type
  447. A_FMADD_S,A_FMSUB_S,A_FNMSUB_S,A_FNMADD_S,
  448. A_FMADD_D,A_FMSUB_D,A_FNMSUB_D,A_FNMADD_D:
  449. if opnr=0 then
  450. result:=operand_write
  451. else
  452. result:=operand_read;
  453. {$ifdef RISCV64}
  454. A_LR_D,A_SC_D,A_AMOSWAP_D,A_AMOADD_D,A_AMOXOR_D,A_AMOAND_D,
  455. A_AMOOR_D,A_AMOMIN_D,A_AMOMAX_D,A_AMOMINU_D,A_AMOMAXU_D,
  456. A_MULW,
  457. A_DIVW,A_DIVUW,A_REMW,A_REMUW,
  458. A_FCVT_L_S,A_FCVT_LU_S,
  459. A_FCVT_S_L,A_FCVT_S_LU,
  460. A_FCVT_L_D,A_FCVT_LU_D,A_FMV_X_D,
  461. A_FCVT_D_L,A_FCVT_D_LU,A_FMV_D_X,
  462. A_ADDIW,A_SLLIW,A_SRLIW,A_SRAIW,
  463. A_ADDW,A_SLLW,A_SRLW,A_SUBW,A_SRAW,
  464. A_LD,A_LWU,
  465. A_ZEXT_B,A_ZEXT_H,A_ZEXT_W,A_SEXT_B,A_SEXT_H,A_SEXT_W:
  466. if opnr=0 then
  467. result:=operand_write
  468. else
  469. result:=operand_read;
  470. A_SD:
  471. result:=operand_read;
  472. {$endif RISCV64}
  473. else
  474. { got bitten already by this, so play safe and do not do nothing by default }
  475. Internalerror(2025021601);
  476. end;
  477. end;
  478. function taicpu.spilling_get_operation_type_ref(opnr: longint; reg: tregister): topertype;
  479. begin
  480. result := operand_read;
  481. end;
  482. function spilling_create_load(const ref:treference;r:tregister):Taicpu;
  483. begin
  484. case getregtype(r) of
  485. R_INTREGISTER:
  486. {$ifdef cpu64bitalu}
  487. result:=taicpu.op_reg_ref(A_LD,r,ref);
  488. {$else cpu64bitalu}
  489. result:=taicpu.op_reg_ref(A_LW,r,ref);
  490. {$endif cpu64bitalu}
  491. R_FPUREGISTER:
  492. result:=taicpu.op_reg_ref(A_FLD,r,ref);
  493. else
  494. internalerror(2005123101);
  495. end;
  496. end;
  497. function spilling_create_store(r:tregister; const ref:treference):Taicpu;
  498. begin
  499. case getregtype(r) of
  500. R_INTREGISTER:
  501. {$ifdef cpu64bitalu}
  502. result:=taicpu.op_reg_ref(A_SD,r,ref);
  503. {$else cpu64bitalu}
  504. result:=taicpu.op_reg_ref(A_SW,r,ref);
  505. {$endif cpu64bitalu}
  506. R_FPUREGISTER:
  507. result:=taicpu.op_reg_ref(A_FSD,r,ref);
  508. else
  509. internalerror(2005123102);
  510. end;
  511. end;
  512. procedure InitAsm;
  513. begin
  514. end;
  515. procedure DoneAsm;
  516. begin
  517. end;
  518. begin
  519. cai_align:=tai_align;
  520. cai_cpu:=taicpu;
  521. end.