cpubase.pas 25 KB

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  1. {
  2. Copyright (c) 2016-2017 by Karoly Balogh
  3. Contains the base types for the WebAssembly
  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 WebAssembly
  18. }
  19. unit cpubase;
  20. {$i fpcdefs.inc}
  21. interface
  22. uses
  23. globtype,
  24. aasmbase,cpuinfo,cgbase;
  25. {*****************************************************************************
  26. Assembler Opcodes
  27. *****************************************************************************}
  28. type
  29. TAsmOp=(A_None,
  30. // control flow
  31. a_block, a_loop, a_br, a_br_if, a_br_table, a_if, a_else, a_end_block,
  32. a_end_loop, a_end_if, a_end_function, a_return, a_unreachable,
  33. // basic
  34. a_nop, a_drop, a_i32_const, a_i64_const, a_f32_const, a_f64_const,
  35. a_local_get, a_local_set, a_local_tee, a_global_get, a_global_set,
  36. a_select, a_call, a_call_indirect,
  37. // integer
  38. a_i32_add, a_i64_add, a_i32_sub, a_i64_sub, a_i32_mul, a_i64_mul,
  39. a_i32_div_s, a_i64_div_s, a_i32_div_u, a_i64_div_u, a_i32_rem_s, a_i64_rem_s,
  40. a_i32_rem_u, a_i64_rem_u, a_i32_and, a_i64_and, a_i32_or, a_i64_or,
  41. a_i32_xor, a_i64_xor, a_i32_shl, a_i64_shl, a_i32_shr_s, a_i64_shr_s,
  42. a_i32_shr_u, a_i64_shr_u, a_i32_rotl, a_i64_rotl, a_i32_rotr, a_i64_rotr,
  43. a_i32_clz, a_i64_clz, a_i32_ctz, a_i64_ctz, a_i32_popcnt, a_i64_popcnt,
  44. a_i32_eqz, a_i64_eqz,
  45. // floating point
  46. a_f32_add, a_f64_add, a_f32_sub, a_f64_sub, a_f32_mul, a_f64_mul,
  47. a_f32_div, a_f64_div, a_f32_sqrt, a_f64_sqrt, a_f32_min, a_f64_min,
  48. a_f32_max, a_f64_max, a_f32_ceil, a_f64_ceil, a_f32_floor, a_f64_floor,
  49. a_f32_trunc, a_f64_trunc, a_f32_nearest, a_f64_nearest, a_f32_abs, a_f64_abs,
  50. a_f32_neg, a_f64_neg, a_f32_copysign, a_f64_copysign,
  51. // integer compare
  52. a_i32_eq, a_i64_eq, a_i32_ne, a_i64_ne, a_i32_lt_s, a_i64_lt_s,
  53. a_i32_lt_u, a_i64_lt_u, a_i32_le_s, a_i64_le_s, a_i32_le_u, a_i64_le_u,
  54. a_i32_gt_s, a_i64_gt_s, a_i32_gt_u, a_i64_gt_u, a_i32_ge_s, a_i64_ge_s,
  55. a_i32_ge_u, a_i64_ge_u,
  56. // floating point compare
  57. a_f32_eq, a_f64_eq, a_f32_ne, a_f64_ne, a_f32_lt, a_f64_lt,
  58. a_f32_le, a_f64_le, a_f32_gt, a_f64_gt, a_f32_ge, a_f64_ge,
  59. // conversion
  60. a_i32_wrap_i64, a_i64_extend_i32_s, a_i64_extend_i32_u,
  61. a_i32_extend8_s,a_i32_extend16_s,a_i64_extend8_s,a_i64_extend16_s,a_i64_extend32_s,
  62. a_i32_trunc_f32_s, a_i32_trunc_f64_s, a_i64_trunc_f32_s, a_i64_trunc_f64_s,
  63. a_i32_trunc_f32_u, a_i32_trunc_f64_u, a_i64_trunc_f32_u, a_i64_trunc_f64_u,
  64. a_f32_demote_f64, a_f64_promote_f32,
  65. a_f32_convert_i32_s, a_f32_convert_i64_s,a_f64_convert_i32_s,a_f64_convert_i64_s,
  66. a_f32_convert_i32_u, a_f32_convert_i64_u,a_f64_convert_i32_u,a_f64_convert_i64_u,
  67. a_i32_reinterpret_f32, a_i64_reinterpret_f64, a_f32_reinterpret_i32, a_f64_reinterpret_i64,
  68. // load/store
  69. a_i32_load, a_i64_load, a_f32_load, a_f64_load,
  70. a_i32_store, a_i64_store, a_f32_store, a_f64_store,
  71. a_i32_load8_s, a_i32_load16_s, a_i64_load8_s, a_i64_load16_s, a_i64_load32_s,
  72. a_i32_load8_u, a_i32_load16_u, a_i64_load8_u, a_i64_load16_u, a_i64_load32_u,
  73. a_i32_store8, a_i32_store16, a_i64_store8, a_i64_store16, a_i64_store32,
  74. // additional memory
  75. a_memory_grow, a_memory_size,
  76. // bulk memory operations
  77. a_memory_copy, a_memory_fill, a_memory_init, a_data_drop,
  78. // reference instructions
  79. a_ref_null_funcref, a_ref_null_externref, a_ref_is_null, a_ref_func,
  80. // table instructions
  81. a_table_get, a_table_set, a_table_size, a_table_grow, a_table_fill, a_table_copy, a_table_init, a_elem_drop,
  82. // saturating truncation instructions
  83. a_i32_trunc_sat_f32_s,
  84. a_i32_trunc_sat_f32_u,
  85. a_i32_trunc_sat_f64_s,
  86. a_i32_trunc_sat_f64_u,
  87. a_i64_trunc_sat_f32_s,
  88. a_i64_trunc_sat_f32_u,
  89. a_i64_trunc_sat_f64_s,
  90. a_i64_trunc_sat_f64_u,
  91. // exceptions
  92. a_try,a_catch,a_catch_all,a_delegate,a_throw,a_rethrow,a_end_try,
  93. // atomic memory accesses - load/store
  94. a_i32_atomic_load8_u, a_i32_atomic_load16_u, a_i32_atomic_load,
  95. a_i64_atomic_load8_u, a_i64_atomic_load16_u, a_i64_atomic_load32_u,
  96. a_i64_atomic_load, a_i32_atomic_store8, a_i32_atomic_store16,
  97. a_i32_atomic_store, a_i64_atomic_store8, a_i64_atomic_store16,
  98. a_i64_atomic_store32, a_i64_atomic_store,
  99. // atomic memory accesses - read-modify-write
  100. a_i32_atomic_rmw8_add_u, a_i32_atomic_rmw16_add_u, a_i32_atomic_rmw_add,
  101. a_i64_atomic_rmw8_add_u, a_i64_atomic_rmw16_add_u, a_i64_atomic_rmw32_add_u,
  102. a_i64_atomic_rmw_add, a_i32_atomic_rmw8_sub_u, a_i32_atomic_rmw16_sub_u,
  103. a_i32_atomic_rmw_sub, a_i64_atomic_rmw8_sub_u, a_i64_atomic_rmw16_sub_u,
  104. a_i64_atomic_rmw32_sub_u, a_i64_atomic_rmw_sub, a_i32_atomic_rmw8_and_u,
  105. a_i32_atomic_rmw16_and_u, a_i32_atomic_rmw_and, a_i64_atomic_rmw8_and_u,
  106. a_i64_atomic_rmw16_and_u, a_i64_atomic_rmw32_and_u, a_i64_atomic_rmw_and,
  107. a_i32_atomic_rmw8_or_u, a_i32_atomic_rmw16_or_u, a_i32_atomic_rmw_or,
  108. a_i64_atomic_rmw8_or_u, a_i64_atomic_rmw16_or_u, a_i64_atomic_rmw32_or_u,
  109. a_i64_atomic_rmw_or, a_i32_atomic_rmw8_xor_u, a_i32_atomic_rmw16_xor_u,
  110. a_i32_atomic_rmw_xor, a_i64_atomic_rmw8_xor_u, a_i64_atomic_rmw16_xor_u,
  111. a_i64_atomic_rmw32_xor_u, a_i64_atomic_rmw_xor, a_i32_atomic_rmw8_xchg_u,
  112. a_i32_atomic_rmw16_xchg_u, a_i32_atomic_rmw_xchg, a_i64_atomic_rmw8_xchg_u,
  113. a_i64_atomic_rmw16_xchg_u, a_i64_atomic_rmw32_xchg_u, a_i64_atomic_rmw_xchg,
  114. // atomic memory accesses - compare exchange
  115. a_i32_atomic_rmw8_cmpxchg_u, a_i32_atomic_rmw16_cmpxchg_u, a_i32_atomic_rmw_cmpxchg,
  116. a_i64_atomic_rmw8_cmpxchg_u, a_i64_atomic_rmw16_cmpxchg_u, a_i64_atomic_rmw32_cmpxchg_u,
  117. a_i64_atomic_rmw_cmpxchg,
  118. // atomic memory accesses - wait and notify operators
  119. a_memory_atomic_wait32, a_memory_atomic_wait64, a_memory_atomic_notify, a_atomic_fence
  120. );
  121. TWasmBasicType = (
  122. wbt_Unknown,
  123. { number types }
  124. wbt_i32, wbt_i64, wbt_f32, wbt_f64,
  125. { reference types }
  126. wbt_funcref, wbt_externref,
  127. { vector types }
  128. wbt_v128
  129. );
  130. TWasmResultType = array of TWasmBasicType;
  131. { TWasmFuncType }
  132. PWasmFuncType = ^TWasmFuncType;
  133. TWasmFuncType = class
  134. params: TWasmResultType;
  135. results: TWasmResultType;
  136. constructor Create(aparams, aresults: TWasmResultType);
  137. constructor Create(afunctype: TWasmFuncType);
  138. procedure add_param(param: TWasmBasicType);
  139. procedure add_result(res: TWasmBasicType);
  140. function Equals(Obj: TObject): boolean; override;
  141. function ToString: ansistring; override;
  142. end;
  143. {# This should define the array of instructions as string }
  144. op2strtable=array[tasmop] of string[31];
  145. Const
  146. WasmNumberTypes = [wbt_i32, wbt_i64, wbt_f32, wbt_f64];
  147. WasmReferenceTypes = [wbt_funcref, wbt_externref];
  148. WasmVectorTypes = [wbt_v128];
  149. {# First value of opcode enumeration }
  150. firstop = low(tasmop);
  151. {# Last value of opcode enumeration }
  152. lastop = high(tasmop);
  153. AsmOp_Store = [
  154. a_i32_store, a_i32_store16, a_i32_store8
  155. ,a_i64_store, a_i64_store16, a_i64_store8, a_i64_store32
  156. ,a_f32_store, a_f64_store
  157. ];
  158. AsmOp_Load = [
  159. a_i32_load,
  160. a_i32_load8_s, a_i32_load8_u,
  161. a_i32_load16_s, a_i32_load16_u,
  162. a_i64_load,
  163. a_i64_load8_s, a_i64_load8_u,
  164. a_i64_load16_s, a_i64_load16_u,
  165. a_i64_load32_s, a_i64_load32_u,
  166. a_f32_load, a_f64_load
  167. ];
  168. AsmOp_LoadStore = AsmOp_Load + AsmOp_Store;
  169. {*****************************************************************************
  170. Registers
  171. *****************************************************************************}
  172. type
  173. { Number of registers used for indexing in tables }
  174. tregisterindex=0..{$i rwasmnor.inc}-1; // no registers in wasm
  175. totherregisterset = set of tregisterindex;
  176. const
  177. { Available Superregisters }
  178. // there's no registers in wasm
  179. {$i rwasmsup.inc}
  180. { No Subregisters }
  181. R_SUBWHOLE = R_SUBNONE;
  182. { Available Registers }
  183. // there's no registers in wasm
  184. {$i rwasmcon.inc}
  185. { aliases }
  186. { used as base register in references for parameters passed to
  187. subroutines: these are passed on the evaluation stack, but this way we
  188. can use the offset field to indicate the order, which is used by ncal
  189. to sort the parameters }
  190. NR_EVAL_STACK_BASE = NR_R0;
  191. RS_EVAL_STACK_BASE = RS_R0;
  192. { used as base register in references to indicate that it's a local }
  193. NR_LOCAL_STACK_POINTER_REG = NR_R1;
  194. RS_LOCAL_STACK_POINTER_REG = RS_R1;
  195. { fake register, representing the local frame pointer. Used for accessing
  196. address-taken local variables on the linear stack: (localframeptr+offset). }
  197. NR_LOCAL_FRAME_POINTER_REG = NR_R3;
  198. RS_LOCAL_FRAME_POINTER_REG = RS_R3;
  199. maxvarregs = 1;
  200. maxfpuvarregs = 1;
  201. { Integer Super registers first and last }
  202. first_int_imreg = 4;
  203. { Float Super register first and last }
  204. first_fpu_imreg = 4;
  205. { MM Super register first and last }
  206. first_mm_imreg = 4;
  207. { funcref Super register first and last }
  208. first_funcref_imreg = 4;
  209. { externref Super register first and last }
  210. first_externref_imreg = 4;
  211. regnumber_table : array[tregisterindex] of tregister = (
  212. {$i rwasmnum.inc}
  213. );
  214. EVALSTACKLOCS = [LOC_REGISTER,LOC_CREGISTER,LOC_FPUREGISTER,LOC_CFPUREGISTER,
  215. LOC_MMREGISTER,LOC_CMMREGISTER,LOC_SUBSETREG,LOC_CSUBSETREG];
  216. {*****************************************************************************
  217. Conditions
  218. *****************************************************************************}
  219. type
  220. // not used by wasm target
  221. TAsmCond=(C_None);
  222. {*****************************************************************************
  223. Constants
  224. *****************************************************************************}
  225. const
  226. max_operands = 2;
  227. {*****************************************************************************
  228. Default generic sizes
  229. *****************************************************************************}
  230. {$ifdef cpu64bitaddr}
  231. {# Defines the default address size for a processor,
  232. -- fake for JVM, only influences default width of
  233. arithmetic calculations }
  234. OS_ADDR = OS_64;
  235. {# the natural int size for a processor,
  236. has to match osuinttype/ossinttype as initialized in psystem }
  237. OS_INT = OS_64;
  238. OS_SINT = OS_S64;
  239. {$else}
  240. {# Defines the default address size for a processor,
  241. -- fake for wasm, only influences default width of
  242. arithmetic calculations }
  243. OS_ADDR = OS_32;
  244. {# the natural int size for a processor,
  245. has to match osuinttype/ossinttype as initialized in psystem }
  246. OS_INT = OS_32;
  247. OS_SINT = OS_S32;
  248. {$endif}
  249. {# the maximum float size for a processor, }
  250. OS_FLOAT = OS_F64;
  251. {# the size of a vector register for a processor }
  252. OS_VECTOR = OS_M128;
  253. {*****************************************************************************
  254. Generic Register names
  255. *****************************************************************************}
  256. { dummies, not used for Wasm }
  257. {# Stack pointer register }
  258. { used as base register in references to indicate that it's a local }
  259. NR_STACK_POINTER_REG = NR_R1;
  260. RS_STACK_POINTER_REG = RS_R1;
  261. {# Frame pointer register }
  262. NR_FRAME_POINTER_REG = NR_LOCAL_FRAME_POINTER_REG;
  263. RS_FRAME_POINTER_REG = RS_LOCAL_FRAME_POINTER_REG;
  264. { WebAssembly results are returned on the evaluation stack, not via a register }
  265. { Results are returned in this register (32-bit values) }
  266. NR_FUNCTION_RETURN_REG = NR_NO;
  267. RS_FUNCTION_RETURN_REG = RS_NO;
  268. { Low part of 64bit return value }
  269. NR_FUNCTION_RETURN64_LOW_REG = NR_NO;
  270. RS_FUNCTION_RETURN64_LOW_REG = RS_NO;
  271. { High part of 64bit return value }
  272. NR_FUNCTION_RETURN64_HIGH_REG = NR_NO;
  273. RS_FUNCTION_RETURN64_HIGH_REG = RS_NO;
  274. { The value returned from a function is available in this register }
  275. NR_FUNCTION_RESULT_REG = NR_FUNCTION_RETURN_REG;
  276. RS_FUNCTION_RESULT_REG = RS_FUNCTION_RETURN_REG;
  277. { The lowh part of 64bit value returned from a function }
  278. NR_FUNCTION_RESULT64_LOW_REG = NR_FUNCTION_RETURN64_LOW_REG;
  279. RS_FUNCTION_RESULT64_LOW_REG = RS_FUNCTION_RETURN64_LOW_REG;
  280. { The high part of 64bit value returned from a function }
  281. NR_FUNCTION_RESULT64_HIGH_REG = NR_FUNCTION_RETURN64_HIGH_REG;
  282. RS_FUNCTION_RESULT64_HIGH_REG = RS_FUNCTION_RETURN64_HIGH_REG;
  283. NR_FPU_RESULT_REG = NR_NO;
  284. NR_MM_RESULT_REG = NR_NO;
  285. { No default flags }
  286. NR_DEFAULTFLAGS = NR_NO;
  287. RS_DEFAULTFLAGS = RS_NO;
  288. {*****************************************************************************
  289. GCC /ABI linking information
  290. *****************************************************************************}
  291. { dummies, not used for Wasm }
  292. {# Required parameter alignment when calling a routine
  293. }
  294. std_param_align = 1;
  295. {*****************************************************************************
  296. CPU Dependent Constants
  297. *****************************************************************************}
  298. maxfpuregs = 0;
  299. { Global variable, that acts as the stack pointer in linear memory
  300. (also called the "linear stack"). This stack is used for address-taken
  301. local variables. This separate stack is needed, because the WASM
  302. implementation's runtime call stack (which includes return addresses and
  303. function parameters) is not visible in linear memory. }
  304. STACK_POINTER_SYM = '__stack_pointer';
  305. { The exception tag symbol, used for FPC exceptions }
  306. FPC_EXCEPTION_TAG_SYM = '__FPC_exception';
  307. { Immutable global variable, created by the linker, when multithreading
  308. support is enabled. Contains the total size (plus padding) of all the
  309. threadvars, used by the program. }
  310. TLS_SIZE_SYM = '__tls_size';
  311. { Immutable global variable, created by the linker, when multithreading
  312. support is enabled. Contains the alignment requirement for the thread
  313. local block. }
  314. TLS_ALIGN_SYM = '__tls_align';
  315. { Mutable global variable, created by the linker, when multithreading
  316. support is enabled. }
  317. TLS_BASE_SYM = '__tls_base';
  318. {*****************************************************************************
  319. Helpers
  320. *****************************************************************************}
  321. function cgsize2subreg(regtype: tregistertype; s:Tcgsize):Tsubregister;
  322. function reg_cgsize(const reg: tregister) : tcgsize;
  323. function std_regnum_search(const s:string):Tregister;
  324. function std_regname(r:Tregister):string;
  325. function findreg_by_number(r:Tregister):tregisterindex;
  326. function dwarf_reg(r:tregister):byte;
  327. function dwarf_reg_no_error(r:tregister):shortint;
  328. function eh_return_data_regno(nr: longint): longint;
  329. { since we don't use tasmconds, don't call this routine
  330. (it will internalerror). We need it anyway to get aoptobj
  331. to compile (but it won't execute it).
  332. }
  333. function inverse_cond(const c: TAsmCond): Tasmcond; {$ifdef USEINLINE}inline;{$endif USEINLINE}
  334. function natural_alignment_for_load_store(op: TAsmOp): shortint;
  335. function encode_wasm_basic_type(wbt: TWasmBasicType): Byte;
  336. function decode_wasm_basic_type(b: Byte; out wbt: TWasmBasicType): Boolean;
  337. function is_atomic_op(op: TAsmOp): boolean;
  338. implementation
  339. uses
  340. verbose,
  341. rgbase;
  342. {*****************************************************************************
  343. Helpers
  344. *****************************************************************************}
  345. const
  346. std_regname_table : array[tregisterindex] of string[15] = (
  347. {$i rwasmstd.inc}
  348. );
  349. regnumber_index : array[tregisterindex] of tregisterindex = (
  350. {$i rwasmrni.inc}
  351. );
  352. std_regname_index : array[tregisterindex] of tregisterindex = (
  353. {$i rwasmsri.inc}
  354. );
  355. function reg_cgsize(const reg: tregister): tcgsize;
  356. begin
  357. result:=OS_NO;
  358. end;
  359. function cgsize2subreg(regtype: tregistertype; s:Tcgsize):Tsubregister;
  360. begin
  361. cgsize2subreg:=R_SUBNONE;
  362. end;
  363. function std_regnum_search(const s:string):Tregister;
  364. begin
  365. result:=NR_NO;
  366. end;
  367. function findreg_by_number(r:Tregister):tregisterindex;
  368. begin
  369. result:=findreg_by_number_table(r,regnumber_index);
  370. end;
  371. function std_regname(r:Tregister):string;
  372. var
  373. p : tregisterindex;
  374. begin
  375. p:=findreg_by_number_table(r,regnumber_index);
  376. if p<>0 then
  377. result:=std_regname_table[p]
  378. else
  379. result:=generic_regname(r);
  380. end;
  381. function dwarf_reg(r:tregister):byte;
  382. begin
  383. result:=0;
  384. internalerror(200603251);
  385. end;
  386. function dwarf_reg_no_error(r:tregister):shortint;
  387. begin
  388. result:=-1;
  389. end;
  390. function eh_return_data_regno(nr: longint): longint;
  391. begin
  392. result:=-1;
  393. end;
  394. function inverse_cond(const c: TAsmCond): Tasmcond; {$ifdef USEINLINE}inline;{$endif USEINLINE}
  395. begin
  396. result:=C_None;
  397. internalerror(2015082701);
  398. end;
  399. function natural_alignment_for_load_store(op: TAsmOp): shortint;
  400. begin
  401. case op of
  402. a_i32_load8_s,
  403. a_i32_load8_u,
  404. a_i64_load8_s,
  405. a_i64_load8_u,
  406. a_i32_store8,
  407. a_i64_store8,
  408. a_i32_atomic_load8_u,
  409. a_i64_atomic_load8_u,
  410. a_i32_atomic_store8,
  411. a_i64_atomic_store8,
  412. a_i32_atomic_rmw8_add_u,
  413. a_i64_atomic_rmw8_add_u,
  414. a_i32_atomic_rmw8_sub_u,
  415. a_i64_atomic_rmw8_sub_u,
  416. a_i32_atomic_rmw8_and_u,
  417. a_i64_atomic_rmw8_and_u,
  418. a_i32_atomic_rmw8_or_u,
  419. a_i64_atomic_rmw8_or_u,
  420. a_i32_atomic_rmw8_xor_u,
  421. a_i64_atomic_rmw8_xor_u,
  422. a_i32_atomic_rmw8_xchg_u,
  423. a_i64_atomic_rmw8_xchg_u,
  424. a_i32_atomic_rmw8_cmpxchg_u,
  425. a_i64_atomic_rmw8_cmpxchg_u:
  426. result:=0;
  427. a_i32_load16_s,
  428. a_i32_load16_u,
  429. a_i64_load16_s,
  430. a_i64_load16_u,
  431. a_i32_store16,
  432. a_i64_store16,
  433. a_i32_atomic_load16_u,
  434. a_i64_atomic_load16_u,
  435. a_i32_atomic_store16,
  436. a_i64_atomic_store16,
  437. a_i32_atomic_rmw16_add_u,
  438. a_i64_atomic_rmw16_add_u,
  439. a_i32_atomic_rmw16_sub_u,
  440. a_i64_atomic_rmw16_sub_u,
  441. a_i32_atomic_rmw16_and_u,
  442. a_i64_atomic_rmw16_and_u,
  443. a_i32_atomic_rmw16_or_u,
  444. a_i64_atomic_rmw16_or_u,
  445. a_i32_atomic_rmw16_xor_u,
  446. a_i64_atomic_rmw16_xor_u,
  447. a_i32_atomic_rmw16_xchg_u,
  448. a_i64_atomic_rmw16_xchg_u,
  449. a_i32_atomic_rmw16_cmpxchg_u,
  450. a_i64_atomic_rmw16_cmpxchg_u:
  451. result:=1;
  452. a_i32_load,
  453. a_f32_load,
  454. a_i64_load32_s,
  455. a_i64_load32_u,
  456. a_i32_store,
  457. a_f32_store,
  458. a_i64_store32,
  459. a_memory_atomic_notify,
  460. a_memory_atomic_wait32,
  461. a_i32_atomic_load,
  462. a_i64_atomic_load32_u,
  463. a_i32_atomic_store,
  464. a_i64_atomic_store32,
  465. a_i32_atomic_rmw_add,
  466. a_i64_atomic_rmw32_add_u,
  467. a_i32_atomic_rmw_sub,
  468. a_i64_atomic_rmw32_sub_u,
  469. a_i32_atomic_rmw_and,
  470. a_i64_atomic_rmw32_and_u,
  471. a_i32_atomic_rmw_or,
  472. a_i64_atomic_rmw32_or_u,
  473. a_i32_atomic_rmw_xor,
  474. a_i64_atomic_rmw32_xor_u,
  475. a_i32_atomic_rmw_xchg,
  476. a_i64_atomic_rmw32_xchg_u,
  477. a_i32_atomic_rmw_cmpxchg,
  478. a_i64_atomic_rmw32_cmpxchg_u:
  479. result:=2;
  480. a_i64_load,
  481. a_f64_load,
  482. a_i64_store,
  483. a_f64_store,
  484. a_memory_atomic_wait64,
  485. a_i64_atomic_load,
  486. a_i64_atomic_store,
  487. a_i64_atomic_rmw_add,
  488. a_i64_atomic_rmw_sub,
  489. a_i64_atomic_rmw_and,
  490. a_i64_atomic_rmw_or,
  491. a_i64_atomic_rmw_xor,
  492. a_i64_atomic_rmw_xchg,
  493. a_i64_atomic_rmw_cmpxchg:
  494. result:=3;
  495. else
  496. internalerror(2021092614);
  497. end;
  498. end;
  499. function encode_wasm_basic_type(wbt: TWasmBasicType): Byte;
  500. begin
  501. case wbt of
  502. wbt_unknown:
  503. internalerror(2024011702);
  504. wbt_i32:
  505. result:=$7F;
  506. wbt_i64:
  507. result:=$7E;
  508. wbt_f32:
  509. result:=$7D;
  510. wbt_f64:
  511. result:=$7C;
  512. wbt_funcref:
  513. result:=$70;
  514. wbt_externref:
  515. result:=$6F;
  516. wbt_v128:
  517. result:=$7B;
  518. end;
  519. end;
  520. function decode_wasm_basic_type(b: Byte; out wbt: TWasmBasicType): Boolean;
  521. begin
  522. result:=true;
  523. case b of
  524. $7F:
  525. wbt:=wbt_i32;
  526. $7E:
  527. wbt:=wbt_i64;
  528. $7D:
  529. wbt:=wbt_f32;
  530. $7C:
  531. wbt:=wbt_f64;
  532. $7B:
  533. wbt:=wbt_v128;
  534. $70:
  535. wbt:=wbt_funcref;
  536. $6F:
  537. wbt:=wbt_externref;
  538. else
  539. begin
  540. result:=false;
  541. wbt:=default(TWasmBasicType);
  542. end;
  543. end;
  544. end;
  545. function is_atomic_op(op: TAsmOp): boolean;
  546. begin
  547. result:=(op>=a_i32_atomic_load8_u) and (op<=a_atomic_fence);
  548. end;
  549. {*****************************************************************************
  550. TWasmFuncType
  551. *****************************************************************************}
  552. constructor TWasmFuncType.Create(aparams, aresults: TWasmResultType);
  553. begin
  554. inherited Create;
  555. params:=aparams;
  556. results:=aresults;
  557. end;
  558. constructor TWasmFuncType.Create(afunctype: TWasmFuncType);
  559. begin
  560. inherited Create;
  561. params:=afunctype.params;
  562. results:=afunctype.results;
  563. end;
  564. procedure TWasmFuncType.add_param(param: TWasmBasicType);
  565. begin
  566. SetLength(params,Length(params)+1);
  567. params[High(params)]:=param;
  568. end;
  569. procedure TWasmFuncType.add_result(res: TWasmBasicType);
  570. begin
  571. SetLength(results,Length(results)+1);
  572. results[High(results)]:=res;
  573. end;
  574. function TWasmFuncType.Equals(Obj: TObject): boolean;
  575. var
  576. O: TWasmFuncType;
  577. begin
  578. if Obj=Self then
  579. exit(true)
  580. else if (Obj<>nil) and (Obj is TWasmFuncType) then
  581. begin
  582. O:=TWasmFuncType(Obj);
  583. if (Length(params)<>Length(O.params)) or (Length(results)<>Length(O.results)) then
  584. exit(false);
  585. if (Length(params)>0) and (CompareByte(params[0],O.params[0],Length(params)*SizeOf(params[0]))<>0) then
  586. exit(false);
  587. if (Length(results)>0) and (CompareByte(results[0],O.results[0],Length(results)*SizeOf(results[0]))<>0) then
  588. exit(false);
  589. Result:=true;
  590. end
  591. else
  592. Result:=inherited Equals(Obj);
  593. end;
  594. function TWasmFuncType.ToString: ansistring;
  595. const
  596. wasm_basic_type_str : array [TWasmBasicType] of string = ('unknown','i32','i64','f32','f64','funcref','externref','v128');
  597. var
  598. i: Integer;
  599. begin
  600. Result:='(';
  601. for i:=0 to high(params) do
  602. begin
  603. if i<>0 then
  604. Result:=Result+', ';
  605. Result:=Result+wasm_basic_type_str[params[i]];
  606. end;
  607. Result:=Result+') -> (';
  608. for i:=0 to high(results) do
  609. begin
  610. if i<>0 then
  611. Result:=Result+', ';
  612. Result:=Result+wasm_basic_type_str[results[i]];
  613. end;
  614. Result:=Result+')';
  615. end;
  616. end.