cpubase.pas 14 KB

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  1. {
  2. Copyright (c) 1998-2002 by Florian Klaempfl
  3. Contains the base types for the Risc-V32
  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. { This Unit contains the base types for the Risc-V32
  18. }
  19. unit cpubase;
  20. {$i fpcdefs.inc}
  21. interface
  22. uses
  23. strings,globtype,
  24. cutils,cclasses,aasmbase,cpuinfo,cgbase;
  25. {*****************************************************************************
  26. Assembler Opcodes
  27. *****************************************************************************}
  28. type
  29. TAsmOp=(A_None,
  30. { Pseudo instructions }
  31. A_NOP,
  32. { normal opcodes }
  33. A_LUI,A_AUIPC,A_JAL,A_JALR,
  34. A_Bxx,A_LB,A_LH,A_LW,A_LBU,A_LHU,
  35. A_SB,A_SH,A_SW,
  36. A_ADDI,A_SLTI,A_SLTIU,
  37. A_XORI,A_ORI,A_ANDI,
  38. A_SLLI,A_SRLI,A_SRAI,
  39. A_ADD,A_SUB,A_SLL,A_SLT,A_SLTU,
  40. A_XOR,A_SRL,A_SRA,A_OR,A_AND,
  41. A_FENCE,A_FENCE_I,
  42. A_ECALL,A_EBREAK,
  43. A_CSRRW,A_CSRRS,A_CSRRC,A_CSRRWI,A_CSRRSI,A_CSRRCI,
  44. { M-extension }
  45. A_MUL,A_MULH,A_MULHSU,A_MULHU,
  46. A_DIV,A_DIVU,A_REM,A_REMU,
  47. { A-extension }
  48. A_LR_W,A_SC_W,A_AMOSWAP_W,A_AMOADD_W,A_AMOXOR_W,A_AMOAND_W,
  49. A_AMOOR_W,A_AMOMIN_W,A_AMOMAX_W,A_AMOMINU_W,A_AMOMAXU_W,
  50. { F-extension }
  51. A_FLW,A_FSW,
  52. A_FMADD_S,A_FMSUB_S,A_FNMSUB_S,A_FNMADD_S,
  53. A_FADD_S,A_FSUB_S,A_FMUL_S,A_FDIV_S,
  54. A_FSQRT_S,A_FSGNJ_S,A_FSGNJN_S,A_FSGNJX_S,
  55. A_FMIN_S,A_FMAX_S,
  56. A_FMV_X_S,A_FEQ_S,A_FLT_S,A_FLE_S,A_FCLASS_S,
  57. A_FCVT_W_S,A_FCVT_WU_S,A_FCVT_S_W,A_FCVT_S_WU,
  58. A_FMV_S_X,
  59. A_FRCSR,A_FRRM,A_FRFLAGS,A_FSCSR,A_FSRM,
  60. A_FSFLAGS,A_FSRMI,A_FSFLAGSI,
  61. { D-extension }
  62. A_FLD,A_FSD,
  63. A_FMADD_D,A_FMSUB_D,A_FNMSUB_D,A_FNMADD_D,
  64. A_FADD_D,A_FSUB_D,A_FMUL_D,A_FDIV_D,
  65. A_FSQRT_D,A_FSGNJ_D,A_FSGNJN_D,A_FSGNJX_D,
  66. A_FMIN_D,A_FMAX_D,
  67. A_FEQ_D,A_FLT_D,A_FLE_D,A_FCLASS_D,
  68. A_FCVT_D_S,A_FCVT_S_D,
  69. A_FCVT_W_D,A_FCVT_WU_D,A_FCVT_D_W,A_FCVT_D_WU,
  70. { Machine mode }
  71. A_MRET,A_HRET,A_SRET,A_URET,
  72. A_WFI,
  73. { Supervisor }
  74. A_SFENCE_VM
  75. );
  76. {# This should define the array of instructions as string }
  77. op2strtable=array[tasmop] of string[8];
  78. Const
  79. {# First value of opcode enumeration }
  80. firstop = low(tasmop);
  81. {# Last value of opcode enumeration }
  82. lastop = high(tasmop);
  83. {*****************************************************************************
  84. Registers
  85. *****************************************************************************}
  86. type
  87. { Number of registers used for indexing in tables }
  88. tregisterindex=0..{$i rrv32nor.inc}-1;
  89. totherregisterset = set of tregisterindex;
  90. const
  91. maxvarregs = 32-6; { 32 int registers - r0 - stackpointer - r2 - 3 scratch registers }
  92. maxfpuvarregs = 28; { 32 fpuregisters - some scratch registers (minimally 2) }
  93. { Available Superregisters }
  94. {$i rrv32sup.inc}
  95. { No Subregisters }
  96. R_SUBWHOLE=R_SUBNONE;
  97. { Available Registers }
  98. {$i rrv32con.inc}
  99. { Integer Super registers first and last }
  100. first_int_imreg = $20;
  101. { Float Super register first and last }
  102. first_fpu_imreg = $20;
  103. { MM Super register first and last }
  104. first_mm_imreg = $20;
  105. { TODO: Calculate bsstart}
  106. regnumber_count_bsstart = 64;
  107. regnumber_table : array[tregisterindex] of tregister = (
  108. {$i rrv32num.inc}
  109. );
  110. regstabs_table : array[tregisterindex] of shortint = (
  111. {$i rrv32sta.inc}
  112. );
  113. regdwarf_table : array[tregisterindex] of shortint = (
  114. {$i rrv32dwa.inc}
  115. );
  116. {*****************************************************************************
  117. Conditions
  118. *****************************************************************************}
  119. type
  120. TAsmCond = (C_None { unconditional jumps },
  121. C_LT,C_LTU,C_GE,C_GEU,C_NE,C_EQ);
  122. const
  123. cond2str: Array[TAsmCond] of string[4] = ({cf_none}'',
  124. { conditions when not using ctr decrement etc}
  125. 'lt','ltu','ge','geu','ne','eq');
  126. uppercond2str: Array[TAsmCond] of string[4] = ({cf_none}'',
  127. { conditions when not using ctr decrement etc}
  128. 'LT','LTU','GE','GEU','NE','EQ');
  129. {*****************************************************************************
  130. Flags
  131. *****************************************************************************}
  132. type
  133. TResFlagsEnum = (F_EQ,F_NE,F_LT,F_LTU,F_GE,F_GEU);
  134. {*****************************************************************************
  135. Reference
  136. *****************************************************************************}
  137. {*****************************************************************************
  138. Operands
  139. *****************************************************************************}
  140. type
  141. TMemoryOrderingFlag = (moRl, moAq);
  142. TMemoryOrdering = set of TMemoryOrderingFlag;
  143. TFenceFlag = (ffI, ffO, ffR, ffW);
  144. TFenceFlags = set of TFenceFlag;
  145. TRoundingMode = (RM_Default,
  146. RM_RNE,
  147. RM_RTZ,
  148. RM_RDN,
  149. RM_RUP,
  150. RM_RMM);
  151. const
  152. roundingmode2str : array[TRoundingMode] of string[3] = ('',
  153. 'rne','rtz','rdn','rup','rmm');
  154. {*****************************************************************************
  155. Constants
  156. *****************************************************************************}
  157. const
  158. max_operands = 5;
  159. {*****************************************************************************
  160. Default generic sizes
  161. *****************************************************************************}
  162. {# Defines the default address size for a processor, }
  163. OS_ADDR = OS_32;
  164. {# the natural int size for a processor,
  165. has to match osuinttype/ossinttype as initialized in psystem }
  166. OS_INT = OS_32;
  167. OS_SINT = OS_S32;
  168. {# the maximum float size for a processor, }
  169. OS_FLOAT = OS_F64;
  170. {# the size of a vector register for a processor }
  171. OS_VECTOR = OS_M128;
  172. {*****************************************************************************
  173. GDB Information
  174. *****************************************************************************}
  175. stab_regindex : array[tregisterindex] of shortint = (
  176. {$i rrv32sta.inc}
  177. );
  178. {*****************************************************************************
  179. Generic Register names
  180. *****************************************************************************}
  181. {# Stack pointer register }
  182. NR_STACK_POINTER_REG = NR_X2;
  183. RS_STACK_POINTER_REG = RS_X2;
  184. {# Frame pointer register }
  185. NR_FRAME_POINTER_REG = NR_X8;
  186. RS_FRAME_POINTER_REG = RS_X8;
  187. NR_PIC_OFFSET_REG = NR_X3;
  188. { Return address of a function }
  189. NR_RETURN_ADDRESS_REG = NR_X1;
  190. RS_RETURN_ADDRESS_REG = RS_X1;
  191. { Results are returned in this register (32-bit values) }
  192. NR_FUNCTION_RETURN_REG = NR_X10;
  193. RS_FUNCTION_RETURN_REG = RS_X10;
  194. { Low part of 64bit return value }
  195. NR_FUNCTION_RETURN64_LOW_REG = NR_X10;
  196. RS_FUNCTION_RETURN64_LOW_REG = RS_X10;
  197. { High part of 64bit return value }
  198. NR_FUNCTION_RETURN64_HIGH_REG = NR_X11;
  199. RS_FUNCTION_RETURN64_HIGH_REG = RS_X11;
  200. { The value returned from a function is available in this register }
  201. NR_FUNCTION_RESULT_REG = NR_FUNCTION_RETURN_REG;
  202. RS_FUNCTION_RESULT_REG = RS_FUNCTION_RETURN_REG;
  203. { The lowh part of 64bit value returned from a function }
  204. NR_FUNCTION_RESULT64_LOW_REG = NR_FUNCTION_RETURN64_LOW_REG;
  205. RS_FUNCTION_RESULT64_LOW_REG = RS_FUNCTION_RETURN64_LOW_REG;
  206. { The high part of 64bit value returned from a function }
  207. NR_FUNCTION_RESULT64_HIGH_REG = NR_FUNCTION_RETURN64_HIGH_REG;
  208. RS_FUNCTION_RESULT64_HIGH_REG = RS_FUNCTION_RETURN64_HIGH_REG;
  209. NR_FPU_RESULT_REG = NR_F10;
  210. NR_MM_RESULT_REG = NR_NO;
  211. NR_DEFAULTFLAGS = NR_NO;
  212. RS_DEFAULTFLAGS = RS_NO;
  213. {*****************************************************************************
  214. GCC /ABI linking information
  215. *****************************************************************************}
  216. {# Registers which must be saved when calling a routine declared as
  217. cppdecl, cdecl, stdcall, safecall, palmossyscall. The registers
  218. saved should be the ones as defined in the target ABI and / or GCC.
  219. This value can be deduced from CALLED_USED_REGISTERS array in the
  220. GCC source.
  221. }
  222. saved_standard_registers : array[0..12] of tsuperregister = (
  223. RS_X2,
  224. RS_X8,RS_X9,
  225. RS_X18,RS_X19,
  226. RS_X20,RS_X21,RS_X22,RS_X23,RS_X24,RS_X25,RS_X26,RS_X27
  227. );
  228. { this is only for the generic code which is not used for this architecture }
  229. saved_address_registers : array[0..0] of tsuperregister = (RS_INVALID);
  230. saved_mm_registers : array[0..0] of tsuperregister = (RS_INVALID);
  231. {# Required parameter alignment when calling a routine declared as
  232. stdcall and cdecl. The alignment value should be the one defined
  233. by GCC or the target ABI.
  234. The value of this constant is equal to the constant
  235. PARM_BOUNDARY / BITS_PER_UNIT in the GCC source.
  236. }
  237. std_param_align = 4; { for 32-bit version only }
  238. {*****************************************************************************
  239. CPU Dependent Constants
  240. *****************************************************************************}
  241. maxfpuregs = 8;
  242. {*****************************************************************************
  243. Helpers
  244. *****************************************************************************}
  245. function is_imm12(value: aint): boolean;
  246. function is_lui_imm(value: aint): boolean;
  247. function is_calljmp(o:tasmop):boolean;
  248. function cgsize2subreg(regtype: tregistertype; s:Tcgsize):Tsubregister;
  249. { Returns the tcgsize corresponding with the size of reg.}
  250. function reg_cgsize(const reg: tregister) : tcgsize;
  251. function findreg_by_number(r:Tregister):tregisterindex;
  252. function std_regnum_search(const s:string):Tregister;
  253. function std_regname(r:Tregister):string;
  254. function inverse_cond(const c: TAsmCond): Tasmcond; {$ifdef USEINLINE}inline;{$endif USEINLINE}
  255. function dwarf_reg(r:tregister):shortint;
  256. function dwarf_reg_no_error(r:tregister):shortint;
  257. function eh_return_data_regno(nr: longint): longint;
  258. function conditions_equal(const c1,c2: TAsmCond): boolean;
  259. implementation
  260. uses
  261. rgbase,verbose;
  262. const
  263. std_regname_table : TRegNameTable = (
  264. {$i rrv32std.inc}
  265. );
  266. regnumber_index : array[tregisterindex] of tregisterindex = (
  267. {$i rrv32rni.inc}
  268. );
  269. std_regname_index : array[tregisterindex] of tregisterindex = (
  270. {$i rrv32sri.inc}
  271. );
  272. {*****************************************************************************
  273. Helpers
  274. *****************************************************************************}
  275. function is_imm12(value: aint): boolean;
  276. begin
  277. result:=(value >= -2048) and (value <= 2047);
  278. end;
  279. function is_lui_imm(value: aint): boolean;
  280. begin
  281. result:=SarInt64((value and $FFFFF000) shl 32, 32) = value;
  282. end;
  283. function is_calljmp(o:tasmop):boolean;
  284. begin
  285. is_calljmp:=false;
  286. case o of
  287. A_JAL,A_JALR,A_Bxx:
  288. is_calljmp:=true;
  289. else
  290. ;
  291. end;
  292. end;
  293. function inverse_cond(const c: TAsmCond): Tasmcond; {$ifdef USEINLINE}inline;{$endif USEINLINE}
  294. const
  295. inv_condflags:array[TAsmCond] of TAsmCond=(C_None,
  296. C_GE,C_GEU,C_LT,C_LTU,C_EQ,C_NE);
  297. begin
  298. result := inv_condflags[c];
  299. end;
  300. function reg_cgsize(const reg: tregister): tcgsize;
  301. begin
  302. case getregtype(reg) of
  303. R_INTREGISTER :
  304. result:=OS_32;
  305. R_MMREGISTER:
  306. result:=OS_M128;
  307. R_FPUREGISTER:
  308. result:=OS_F64;
  309. else
  310. internalerror(200303181);
  311. end;
  312. end;
  313. function cgsize2subreg(regtype: tregistertype; s:Tcgsize):Tsubregister;
  314. begin
  315. cgsize2subreg:=R_SUBWHOLE;
  316. end;
  317. function findreg_by_number(r:Tregister):tregisterindex;
  318. begin
  319. result:=rgBase.findreg_by_number_table(r,regnumber_index);
  320. end;
  321. function std_regnum_search(const s:string):Tregister;
  322. begin
  323. result:=regnumber_table[findreg_by_name_table(s,std_regname_table,std_regname_index)];
  324. end;
  325. function std_regname(r:Tregister):string;
  326. var
  327. p : tregisterindex;
  328. begin
  329. p:=findreg_by_number_table(r,regnumber_index);
  330. if p<>0 then
  331. result:=std_regname_table[p]
  332. else
  333. result:=generic_regname(r);
  334. end;
  335. function dwarf_reg(r:tregister):shortint;
  336. begin
  337. result:=regdwarf_table[findreg_by_number(r)];
  338. if result=-1 then
  339. internalerror(200603251);
  340. end;
  341. function dwarf_reg_no_error(r:tregister):shortint;
  342. begin
  343. result:=regdwarf_table[findreg_by_number(r)];
  344. end;
  345. function eh_return_data_regno(nr: longint): longint;
  346. begin
  347. if (nr>=0) and (nr<4) then
  348. result:=nr+10
  349. else
  350. result:=-1;
  351. end;
  352. function conditions_equal(const c1, c2: TAsmCond): boolean;
  353. begin
  354. result:=c1=c2;
  355. end;
  356. end.