hlcgobj.pas 219 KB

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  1. {
  2. Copyright (c) 1998-2010 by Florian Klaempfl and Jonas Maebe
  3. Member of the Free Pascal development team
  4. This unit implements the basic high level code generator object
  5. This program 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 2 of the License, or
  8. (at your option) any later version.
  9. This program is distributed in the hope that it will be useful,
  10. but WITHOUT ANY WARRANTY; without even the implied warranty of
  11. MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  12. GNU General Public License for more details.
  13. You should have received a copy of the GNU General Public License
  14. along with this program; if not, write to the Free Software
  15. Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
  16. ****************************************************************************
  17. }
  18. {# @abstract(Abstract code generator unit)
  19. Abstract high level code generator unit. This contains the base class
  20. that either lowers most code to the regular code generator, or that
  21. has to be implemented/overridden for higher level targets (such as LLVM).
  22. }
  23. unit hlcgobj;
  24. {$i fpcdefs.inc}
  25. { define hlcginline}
  26. interface
  27. uses
  28. cclasses,globtype,constexp,
  29. cpubase,cgbase,cgutils,parabase,
  30. aasmbase,aasmtai,aasmdata,aasmcpu,
  31. symconst,symbase,symtype,symsym,symdef,
  32. node,nutils,
  33. tgobj
  34. ;
  35. type
  36. tsubsetloadopt = (SL_REG,SL_REGNOSRCMASK,SL_SETZERO,SL_SETMAX);
  37. preplaceregrec = ^treplaceregrec;
  38. treplaceregrec = record
  39. old, new: tregister;
  40. oldhi, newhi: tregister;
  41. ressym: tsym;
  42. { moved sym }
  43. sym : tabstractnormalvarsym;
  44. end;
  45. {# @abstract(Abstract high level code generator)
  46. This class implements an abstract instruction generator. All
  47. methods of this class are generic and are mapped to low level code
  48. generator methods by default. They have to be overridden for higher
  49. level targets
  50. }
  51. { thlcgobj }
  52. thlcgobj = class
  53. public
  54. {************************************************}
  55. { basic routines }
  56. constructor create;
  57. {# Initialize the register allocators needed for the codegenerator.}
  58. procedure init_register_allocators;virtual;
  59. {# Clean up the register allocators needed for the codegenerator.}
  60. procedure done_register_allocators;virtual;
  61. {# Set whether live_start or live_end should be updated when allocating registers, needed when e.g. generating initcode after the rest of the code. }
  62. procedure set_regalloc_live_range_direction(dir: TRADirection);virtual;
  63. {# Gets a register suitable to do integer operations on.}
  64. function getintregister(list:TAsmList;size:tdef):Tregister;virtual;
  65. {# Gets a register suitable to do integer operations on.}
  66. function getaddressregister(list:TAsmList;size:tdef):Tregister;virtual;
  67. function getfpuregister(list:TAsmList;size:tdef):Tregister;virtual;
  68. { warning: only works correctly for fpu types currently }
  69. function getmmregister(list:TAsmList;size:tdef):Tregister;virtual;
  70. function getflagregister(list:TAsmList;size:tdef):Tregister;virtual;
  71. function gettempregister(list:TAsmList;size:tdef):Tregister;virtual;
  72. function getregisterfordef(list: TAsmList;size:tdef):Tregister;virtual;
  73. {Does the generic cg need SIMD registers, like getmmxregister? Or should
  74. the cpu specific child cg object have such a method?}
  75. function uses_registers(rt:Tregistertype):boolean; inline;
  76. {# Get a specific register.}
  77. procedure getcpuregister(list:TAsmList;r:Tregister);virtual;
  78. procedure ungetcpuregister(list:TAsmList;r:Tregister);virtual;
  79. {# Get multiple registers specified.}
  80. procedure alloccpuregisters(list:TAsmList;rt:Tregistertype;const r:Tcpuregisterset);virtual;
  81. {# Free multiple registers specified.}
  82. procedure dealloccpuregisters(list:TAsmList;rt:Tregistertype;const r:Tcpuregisterset);virtual;
  83. procedure allocallcpuregisters(list:TAsmList);virtual;
  84. procedure deallocallcpuregisters(list:TAsmList);virtual;
  85. procedure do_register_allocation(list:TAsmList;headertai:tai); inline;
  86. procedure translate_register(var reg : tregister); inline;
  87. {# Returns the kind of register this type should be loaded in (it does not
  88. check whether this is actually possible, but if it's loaded in a register
  89. by the compiler for any purpose other than parameter passing/function
  90. result loading, this is the register type used) }
  91. class function def2regtyp(def: tdef): tregistertype; virtual;
  92. {# Returns a reference with its base address set from a pointer that
  93. has been loaded in a register.
  94. A generic version is provided. This routine should be overridden
  95. on platforms which support pointers with different sizes (for
  96. example i8086 near and far pointers) or require some other sort of
  97. special consideration when converting a pointer in a register to a
  98. reference.
  99. @param(ref where the result is returned)
  100. @param(regsize the type of the pointer, contained in the reg parameter)
  101. @param(reg register containing the value of a pointer)
  102. }
  103. procedure reference_reset_base(var ref: treference; regsize: tdef; reg: tregister; offset, alignment: longint); virtual;
  104. {# Returns a reference corresponding to a temp }
  105. procedure temp_to_ref(p: ptemprecord; out ref: treference); virtual;
  106. {# Emit a label to the instruction stream. }
  107. procedure a_label(list : TAsmList;l : tasmlabel); inline;
  108. {# Allocates register r by inserting a pai_realloc record }
  109. procedure a_reg_alloc(list : TAsmList;r : tregister); inline;
  110. {# Deallocates register r by inserting a pa_regdealloc record}
  111. procedure a_reg_dealloc(list : TAsmList;r : tregister); inline;
  112. { Synchronize register, make sure it is still valid }
  113. procedure a_reg_sync(list : TAsmList;r : tregister); inline;
  114. {# Pass a parameter, which is located in a register, to a routine.
  115. This routine should push/send the parameter to the routine, as
  116. required by the specific processor ABI and routine modifiers.
  117. It must generate register allocation information for the cgpara in
  118. case it consists of cpuregisters.
  119. @param(size size of the operand in the register)
  120. @param(r register source of the operand)
  121. @param(cgpara where the parameter will be stored)
  122. }
  123. procedure a_load_reg_cgpara(list : TAsmList;size : tdef;r : tregister;const cgpara : TCGPara);virtual;
  124. {# Pass a parameter, which is a constant, to a routine.
  125. A generic version is provided. This routine should
  126. be overridden for optimization purposes if the cpu
  127. permits directly sending this type of parameter.
  128. It must generate register allocation information for the cgpara in
  129. case it consists of cpuregisters.
  130. @param(size size of the operand in constant)
  131. @param(a value of constant to send)
  132. @param(cgpara where the parameter will be stored)
  133. }
  134. procedure a_load_const_cgpara(list : TAsmList;tosize : tdef;a : tcgint;const cgpara : TCGPara);virtual;
  135. {# Pass the value of a parameter, which is located in memory, to a routine.
  136. A generic version is provided. This routine should
  137. be overridden for optimization purposes if the cpu
  138. permits directly sending this type of parameter.
  139. It must generate register allocation information for the cgpara in
  140. case it consists of cpuregisters.
  141. @param(size size of the operand in constant)
  142. @param(r Memory reference of value to send)
  143. @param(cgpara where the parameter will be stored)
  144. }
  145. procedure a_load_ref_cgpara(list : TAsmList;size : tdef;const r : treference;const cgpara : TCGPara);virtual;
  146. {# Pass the value of a parameter, which can be located either in a register or memory location,
  147. to a routine.
  148. A generic version is provided.
  149. @param(l location of the operand to send)
  150. @param(nr parameter number (starting from one) of routine (from left to right))
  151. @param(cgpara where the parameter will be stored)
  152. }
  153. procedure a_load_loc_cgpara(list : TAsmList;size : tdef; const l : tlocation;const cgpara : TCGPara);virtual;
  154. {# Pass the address of a reference to a routine. This routine
  155. will calculate the address of the reference, and pass this
  156. calculated address as a parameter.
  157. It must generate register allocation information for the cgpara in
  158. case it consists of cpuregisters.
  159. A generic version is provided. This routine should
  160. be overridden for optimization purposes if the cpu
  161. permits directly sending this type of parameter.
  162. @param(fromsize type of the reference we are taking the address of)
  163. @param(tosize type of the pointer that we get as a result)
  164. @param(r reference to get address from)
  165. }
  166. procedure a_loadaddr_ref_cgpara(list : TAsmList;fromsize : tdef;const r : treference;const cgpara : TCGPara);virtual;
  167. { Remarks:
  168. * If a method specifies a size you have only to take care
  169. of that number of bits, i.e. load_const_reg with OP_8 must
  170. only load the lower 8 bit of the specified register
  171. the rest of the register can be undefined
  172. if necessary the compiler will call a method
  173. to zero or sign extend the register
  174. * The a_load_XX_XX with OP_64 needn't to be
  175. implemented for 32 bit
  176. processors, the code generator takes care of that
  177. * the addr size is for work with the natural pointer
  178. size
  179. * the procedures without fpu/mm are only for integer usage
  180. * normally the first location is the source and the
  181. second the destination
  182. }
  183. {# Emits instruction to call the method specified by symbol name.
  184. Returns the function result location.
  185. This routine must be overridden for each new target cpu.
  186. }
  187. function a_call_name(list : TAsmList;pd : tprocdef;const s : TSymStr; const paras: array of pcgpara; forceresdef: tdef; weak: boolean): tcgpara;virtual;abstract;
  188. function a_call_reg(list : TAsmList;pd : tabstractprocdef;reg : tregister; const paras: array of pcgpara): tcgpara;virtual;abstract;
  189. { same as a_call_name, might be overridden on certain architectures to emit
  190. static calls without usage of a got trampoline }
  191. function a_call_name_static(list : TAsmList;pd : tprocdef;const s : TSymStr; const paras: array of pcgpara; forceresdef: tdef): tcgpara;virtual;
  192. { same as a_call_name, might be overridden on certain architectures to emit
  193. special static calls for inherited methods }
  194. function a_call_name_inherited(list : TAsmList;pd : tprocdef;const s : TSymStr; const paras: array of pcgpara): tcgpara;virtual;
  195. { move instructions }
  196. procedure a_load_const_reg(list : TAsmList;tosize : tdef;a : tcgint;register : tregister);virtual;abstract;
  197. procedure a_load_const_ref(list : TAsmList;tosize : tdef;a : tcgint;const ref : treference);virtual;
  198. procedure a_load_const_loc(list : TAsmList;tosize : tdef;a : tcgint;const loc : tlocation);virtual;
  199. procedure a_load_reg_ref(list : TAsmList;fromsize, tosize : tdef;register : tregister;const ref : treference);virtual;abstract;
  200. procedure a_load_reg_ref_unaligned(list : TAsmList;fromsize, tosize : tdef;register : tregister;const ref : treference);virtual;
  201. procedure a_load_reg_reg(list : TAsmList;fromsize, tosize : tdef;reg1,reg2 : tregister);virtual;abstract;
  202. procedure a_load_reg_loc(list : TAsmList;fromsize, tosize : tdef;reg : tregister;const loc: tlocation);virtual;
  203. procedure a_load_ref_reg(list : TAsmList;fromsize, tosize : tdef;const ref : treference;register : tregister);virtual;abstract;
  204. procedure a_load_ref_reg_unaligned(list : TAsmList;fromsize, tosize : tdef;const ref : treference;register : tregister);virtual;
  205. procedure a_load_ref_ref(list : TAsmList;fromsize, tosize : tdef;const sref : treference;const dref : treference);virtual;
  206. procedure a_load_loc_reg(list : TAsmList;fromsize, tosize : tdef; const loc: tlocation; reg : tregister);virtual;
  207. procedure a_load_loc_ref(list : TAsmList;fromsize, tosize: tdef; const loc: tlocation; const ref : treference);virtual;
  208. procedure a_load_loc_subsetreg(list : TAsmList;fromsize, tosubsetsize: tdef; const loc: tlocation; const sreg : tsubsetregister);virtual;
  209. procedure a_load_loc_subsetref(list : TAsmList;fromsize, tosubsetsize: tdef; const loc: tlocation; const sref : tsubsetreference);virtual;
  210. procedure a_loadaddr_ref_reg(list : TAsmList;fromsize, tosize : tdef;const ref : treference;r : tregister);virtual;abstract;
  211. { For subsetreg/ref, the def is the size of the packed element. The
  212. size of the register that holds the data is a tcgsize, and hence
  213. always must be an orddef of the corresponding size in practice }
  214. procedure a_load_subsetreg_reg(list : TAsmList; subsetsize, tosize: tdef; const sreg: tsubsetregister; destreg: tregister); virtual;
  215. procedure a_load_reg_subsetreg(list : TAsmList; fromsize, tosubsetsize: tdef; fromreg: tregister; const sreg: tsubsetregister); virtual;
  216. procedure a_load_subsetreg_subsetreg(list: TAsmlist; fromsubsetsize, tosubsetsize : tdef; const fromsreg, tosreg: tsubsetregister); virtual;
  217. procedure a_load_subsetreg_ref(list : TAsmList; fromsubsetsize, tosize: tdef; const sreg: tsubsetregister; const destref: treference); virtual;
  218. procedure a_load_ref_subsetreg(list : TAsmList; fromsize, tosubsetsize: tdef; const fromref: treference; const sreg: tsubsetregister); virtual;
  219. procedure a_load_const_subsetreg(list: TAsmlist; tosubsetsize: tdef; a: tcgint; const sreg: tsubsetregister); virtual;
  220. procedure a_load_subsetreg_loc(list: TAsmlist; fromsubsetsize, tosize: tdef; const sreg: tsubsetregister; const loc: tlocation); virtual;
  221. procedure a_load_subsetref_reg(list : TAsmList; fromsubsetsize, tosize: tdef; const sref: tsubsetreference; destreg: tregister); virtual;
  222. procedure a_load_reg_subsetref(list : TAsmList; fromsize, tosubsetsize: tdef; fromreg: tregister; const sref: tsubsetreference); virtual;
  223. procedure a_load_subsetref_subsetref(list: TAsmlist; fromsubsetsize, tosubsetsize : tdef; const fromsref, tosref: tsubsetreference); virtual;
  224. procedure a_load_subsetref_ref(list : TAsmList; fromsubsetsize, tosize: tdef; const sref: tsubsetreference; const destref: treference); virtual;
  225. procedure a_load_ref_subsetref(list : TAsmList; fromsize, tosubsetsize: tdef; const fromref: treference; const sref: tsubsetreference); virtual;
  226. procedure a_load_const_subsetref(list: TAsmlist; tosubsetsize: tdef; a: tcgint; const sref: tsubsetreference); virtual;
  227. procedure a_load_subsetref_loc(list: TAsmlist; fromsubsetsize, tosize: tdef; const sref: tsubsetreference; const loc: tlocation); virtual;
  228. procedure a_load_subsetref_subsetreg(list: TAsmlist; fromsubsetsize, tosubsetsize : tdef; const fromsref: tsubsetreference; const tosreg: tsubsetregister); virtual;
  229. procedure a_load_subsetreg_subsetref(list: TAsmlist; fromsubsetsize, tosubsetsize : tdef; const fromsreg: tsubsetregister; const tosref: tsubsetreference); virtual;
  230. { bit test instructions }
  231. procedure a_bit_test_reg_reg_reg(list : TAsmList; bitnumbersize,valuesize,destsize: tdef;bitnumber,value,destreg: tregister); virtual;
  232. procedure a_bit_test_const_ref_reg(list: TAsmList; fromsize, destsize: tdef; bitnumber: aint; const ref: treference; destreg: tregister); virtual;
  233. procedure a_bit_test_const_reg_reg(list: TAsmList; setregsize, destsize: tdef; bitnumber: aint; setreg, destreg: tregister); virtual;
  234. procedure a_bit_test_const_subsetreg_reg(list: TAsmList; fromsubsetsize, destsize: tdef; bitnumber: aint; const setreg: tsubsetregister; destreg: tregister); virtual;
  235. procedure a_bit_test_reg_ref_reg(list: TAsmList; bitnumbersize, refsize, destsize: tdef; bitnumber: tregister; const ref: treference; destreg: tregister); virtual;
  236. procedure a_bit_test_reg_loc_reg(list: TAsmList; bitnumbersize, locsize, destsize: tdef; bitnumber: tregister; const loc: tlocation; destreg: tregister);virtual;
  237. procedure a_bit_test_const_loc_reg(list: TAsmList; locsize, destsize: tdef; bitnumber: aint; const loc: tlocation; destreg: tregister);virtual;
  238. { bit set/clear instructions }
  239. procedure a_bit_set_reg_reg(list : TAsmList; doset: boolean; bitnumbersize, destsize: tdef; bitnumber,dest: tregister); virtual;
  240. procedure a_bit_set_const_ref(list: TAsmList; doset: boolean;destsize: tdef; bitnumber: tcgint; const ref: treference); virtual;
  241. procedure a_bit_set_const_reg(list: TAsmList; doset: boolean; destsize: tdef; bitnumber: tcgint; destreg: tregister); virtual;
  242. procedure a_bit_set_const_subsetreg(list: TAsmList; doset: boolean; destsize: tdef; bitnumber: tcgint; const destreg: tsubsetregister); virtual;
  243. procedure a_bit_set_reg_ref(list: TAsmList; doset: boolean; fromsize, tosize: tdef; bitnumber: tregister; const ref: treference); virtual;
  244. procedure a_bit_set_reg_loc(list: TAsmList; doset: boolean; regsize, tosize: tdef; bitnumber: tregister; const loc: tlocation);virtual;
  245. procedure a_bit_set_const_loc(list: TAsmList; doset: boolean; tosize: tdef; bitnumber: tcgint; const loc: tlocation);virtual;
  246. function get_call_result_cgpara(pd: tabstractprocdef; forceresdef: tdef): tcgpara; virtual;
  247. protected
  248. procedure get_subsetref_load_info(const sref: tsubsetreference; out loadsize: torddef; out extra_load: boolean);
  249. procedure a_load_subsetref_regs_noindex(list: TAsmList; subsetsize: tdef; loadbitsize: byte; const sref: tsubsetreference; valuereg, extra_value_reg: tregister); virtual;
  250. procedure a_load_subsetref_regs_index(list: TAsmList; subsetsize: tdef; loadbitsize: byte; const sref: tsubsetreference; valuereg: tregister); virtual;
  251. procedure a_load_regconst_subsetref_intern(list : TAsmList; fromsize, subsetsize: tdef; fromreg: tregister; const sref: tsubsetreference; slopt: tsubsetloadopt); virtual;
  252. procedure a_load_regconst_subsetreg_intern(list : TAsmList; fromsize, subsetsize: tdef; fromreg: tregister; const sreg: tsubsetregister; slopt: tsubsetloadopt); virtual;
  253. { return a subsetref that represents bit "bitnumber" in ref, if ref
  254. has the type "refdef". The subsetref must be addressable via
  255. (unsigned) 8 bit access, unless all the *_bit_* methods are
  256. overloaded and use something else. }
  257. function get_bit_const_ref_sref(bitnumber: tcgint; refdef: tdef; const ref: treference): tsubsetreference;
  258. function get_bit_const_reg_sreg(setregsize: tdef; bitnumber: tcgint; setreg: tregister): tsubsetregister;
  259. function get_bit_reg_ref_sref(list: TAsmList; bitnumbersize, refsize: tdef; bitnumber: tregister; const ref: treference): tsubsetreference;
  260. public
  261. { bit scan instructions (still need transformation to thlcgobj) }
  262. procedure a_bit_scan_reg_reg(list: TAsmList; reverse: boolean; size: tdef; src, dst: tregister); virtual; abstract;
  263. { fpu move instructions }
  264. procedure a_loadfpu_reg_reg(list: TAsmList; fromsize, tosize: tdef; reg1, reg2: tregister); virtual; abstract;
  265. procedure a_loadfpu_ref_reg(list: TAsmList; fromsize, tosize: tdef; const ref: treference; reg: tregister); virtual; abstract;
  266. procedure a_loadfpu_reg_ref(list: TAsmList; fromsize, tosize: tdef; reg: tregister; const ref: treference); virtual; abstract;
  267. procedure a_loadfpu_ref_ref(list: TAsmList; fromsize, tosize: tdef; const ref1,ref2: treference);virtual;
  268. procedure a_loadfpu_loc_reg(list: TAsmList; fromsize, tosize: tdef; const loc: tlocation; const reg: tregister);virtual;
  269. procedure a_loadfpu_loc_ref(list: TAsmList; fromsize, tosize: tdef; const loc: tlocation; const ref: treference);virtual;
  270. procedure a_loadfpu_reg_loc(list: TAsmList; fromsize, tosize: tdef; const reg: tregister; const loc: tlocation);virtual;
  271. procedure a_loadfpu_reg_cgpara(list : TAsmList;fromsize: tdef;const r : tregister;const cgpara : TCGPara);virtual;
  272. procedure a_loadfpu_ref_cgpara(list : TAsmList;fromsize : tdef;const ref : treference;const cgpara : TCGPara);virtual;
  273. { vector register move instructions }
  274. procedure a_loadmm_reg_reg(list: TAsmList; fromsize, tosize: tdef;reg1, reg2: tregister;shuffle : pmmshuffle); virtual; abstract;
  275. procedure a_loadmm_ref_reg(list: TAsmList; fromsize, tosize: tdef;const ref: treference; reg: tregister;shuffle : pmmshuffle); virtual; abstract;
  276. procedure a_loadmm_reg_ref(list: TAsmList; fromsize, tosize: tdef;reg: tregister; const ref: treference;shuffle : pmmshuffle); virtual; abstract;
  277. procedure a_loadmm_ref_ref(list: TAsmList; fromsize, tosize: tdef; const fromref, toref: treference; shuffle: pmmshuffle); virtual;
  278. { required for subsetreg/ref; still tcgsize rather than tdef because of reason mentioned above }
  279. procedure a_loadmm_loc_reg(list: TAsmList; fromsize, tosize: tdef; const loc: tlocation; const reg: tregister; shuffle : pmmshuffle);virtual;
  280. procedure a_loadmm_reg_loc(list: TAsmList; fromsize, tosize: tdef; const reg: tregister; const loc: tlocation;shuffle : pmmshuffle);virtual;
  281. procedure a_loadmm_loc_ref(list: TAsmList; fromsize, tosize: tdef; const loc: tlocation; const ref: treference; shuffle : pmmshuffle);virtual;
  282. procedure a_loadmm_reg_cgpara(list: TAsmList; fromsize: tdef; reg: tregister;const cgpara : TCGPara;shuffle : pmmshuffle); virtual;
  283. procedure a_loadmm_ref_cgpara(list: TAsmList; fromsize: tdef; const ref: treference;const cgpara : TCGPara;shuffle : pmmshuffle); virtual;
  284. procedure a_loadmm_loc_cgpara(list: TAsmList; fromsize: tdef; const loc: tlocation; const cgpara : TCGPara;shuffle : pmmshuffle); virtual;
  285. procedure a_opmm_reg_reg(list: TAsmList; Op: TOpCG; size : tdef;src,dst: tregister;shuffle : pmmshuffle); virtual; abstract;
  286. procedure a_opmm_ref_reg(list: TAsmList; Op: TOpCG; size : tdef;const ref: treference; reg: tregister;shuffle : pmmshuffle); virtual;
  287. procedure a_opmm_loc_reg(list: TAsmList; Op: TOpCG; size : tdef;const loc: tlocation; reg: tregister;shuffle : pmmshuffle); virtual;
  288. procedure a_opmm_reg_ref(list: TAsmList; Op: TOpCG; size : tdef;reg: tregister;const ref: treference; shuffle : pmmshuffle); virtual;
  289. { requires a temp that is interpreted in two different ways, and we
  290. don't have a way (yet) to tag a treference with tdef information so
  291. targets like LLVM can insert the necessary bitcast
  292. }
  293. procedure a_loadmm_intreg_reg(list: TAsmList; fromsize, tosize : tdef; intreg, mmreg: tregister; shuffle: pmmshuffle); virtual; abstract;
  294. procedure a_loadmm_reg_intreg(list: TAsmList; fromsize, tosize : tdef; mmreg, intreg: tregister; shuffle : pmmshuffle); virtual; abstract;
  295. { basic arithmetic operations }
  296. { note: for operators which require only one argument (not, neg), use }
  297. { the op_reg_reg, op_reg_ref or op_reg_loc methods and keep in mind }
  298. { that in this case the *second* operand is used as both source and }
  299. { destination (JM) }
  300. procedure a_op_const_reg(list : TAsmList; Op: TOpCG; size: tdef; a: tcgint; reg: TRegister); virtual; abstract;
  301. procedure a_op_const_ref(list : TAsmList; Op: TOpCG; size: tdef; a: tcgint; const ref: TReference); virtual;
  302. procedure a_op_const_subsetreg(list : TAsmList; Op : TOpCG; size, subsetsize : tdef; a : tcgint; const sreg: tsubsetregister); virtual;
  303. procedure a_op_const_subsetref(list : TAsmList; Op : TOpCG; size, subsetsize : tdef; a : tcgint; const sref: tsubsetreference); virtual;
  304. procedure a_op_const_loc(list : TAsmList; Op: TOpCG; size: tdef; a: tcgint; const loc: tlocation);virtual;
  305. procedure a_op_reg_reg(list : TAsmList; Op: TOpCG; size: tdef; reg1, reg2: TRegister); virtual; abstract;
  306. procedure a_op_reg_ref(list : TAsmList; Op: TOpCG; size: tdef; reg: TRegister; const ref: TReference); virtual;
  307. procedure a_op_ref_reg(list : TAsmList; Op: TOpCG; size: tdef; const ref: TReference; reg: TRegister); virtual;
  308. procedure a_op_reg_subsetreg(list: TAsmList; Op: TOpCG; opsize, destsubsetsize: tdef; reg: TRegister; const sreg: tsubsetregister); virtual;
  309. procedure a_op_reg_subsetref(list: TAsmList; Op: TOpCG; opsize, destsubsetsize: tdef; reg: TRegister; const sref: tsubsetreference); virtual;
  310. procedure a_op_reg_loc(list : TAsmList; Op: TOpCG; size: tdef; reg: tregister; const loc: tlocation);virtual;
  311. procedure a_op_ref_loc(list : TAsmList; Op: TOpCG; size: tdef; const ref: TReference; const loc: tlocation);virtual;
  312. { trinary operations for processors that support them, 'emulated' }
  313. { on others. None with "ref" arguments since I don't think there }
  314. { are any processors that support it (JM) }
  315. procedure a_op_const_reg_reg(list: TAsmList; op: TOpCg; size: tdef; a: tcgint; src, dst: tregister); virtual;
  316. procedure a_op_reg_reg_reg(list: TAsmList; op: TOpCg; size: tdef; src1, src2, dst: tregister); virtual;
  317. procedure a_op_const_reg_reg_checkoverflow(list: TAsmList; op: TOpCg; size: tdef; a: tcgint; src, dst: tregister;setflags : boolean;var ovloc : tlocation); virtual;
  318. procedure a_op_reg_reg_reg_checkoverflow(list: TAsmList; op: TOpCg; size: tdef; src1, src2, dst: tregister;setflags : boolean;var ovloc : tlocation); virtual;
  319. { comparison operations }
  320. procedure a_cmp_const_reg_label(list : TAsmList;size : tdef;cmp_op : topcmp;a : tcgint;reg : tregister;
  321. l : tasmlabel);virtual;
  322. procedure a_cmp_const_ref_label(list : TAsmList;size : tdef;cmp_op : topcmp;a : tcgint;const ref : treference;
  323. l : tasmlabel); virtual;
  324. procedure a_cmp_const_loc_label(list: TAsmList; size: tdef;cmp_op: topcmp; a: tcgint; const loc: tlocation;
  325. l : tasmlabel);virtual;
  326. procedure a_cmp_reg_reg_label(list : TAsmList;size : tdef;cmp_op : topcmp;reg1,reg2 : tregister;l : tasmlabel); virtual; abstract;
  327. procedure a_cmp_ref_reg_label(list : TAsmList;size : tdef;cmp_op : topcmp; const ref: treference; reg : tregister; l : tasmlabel); virtual;
  328. procedure a_cmp_reg_ref_label(list : TAsmList;size : tdef;cmp_op : topcmp;reg : tregister; const ref: treference; l : tasmlabel); virtual;
  329. procedure a_cmp_subsetreg_reg_label(list: TAsmList; fromsubsetsize, cmpsize: tdef; cmp_op: topcmp; const sreg: tsubsetregister; reg: tregister; l: tasmlabel); virtual;
  330. procedure a_cmp_subsetref_reg_label(list: TAsmList; fromsubsetsize, cmpsize: tdef; cmp_op: topcmp; const sref: tsubsetreference; reg: tregister; l: tasmlabel); virtual;
  331. procedure a_cmp_loc_reg_label(list : TAsmList;size : tdef;cmp_op : topcmp; const loc: tlocation; reg : tregister; l : tasmlabel);virtual;
  332. procedure a_cmp_reg_loc_label(list : TAsmList;size : tdef;cmp_op : topcmp; reg: tregister; const loc: tlocation; l : tasmlabel);
  333. procedure a_cmp_ref_loc_label(list: TAsmList; size: tdef;cmp_op: topcmp; const ref: treference; const loc: tlocation; l : tasmlabel);virtual;
  334. procedure a_jmp_always(list : TAsmList;l: tasmlabel); virtual;abstract;
  335. {$ifdef cpuflags}
  336. procedure a_jmp_flags(list : TAsmList;const f : TResFlags;l: tasmlabel); virtual; abstract;
  337. {# Depending on the value to check in the flags, either sets the register reg to one (if the flag is set)
  338. or zero (if the flag is cleared). The size parameter indicates the destination size register.
  339. }
  340. procedure g_flags2reg(list: TAsmList; size: tdef; const f: tresflags; reg: TRegister); virtual; abstract;
  341. procedure g_flags2ref(list: TAsmList; size: tdef; const f: tresflags; const ref:TReference); virtual; abstract;
  342. {$endif cpuflags}
  343. {#
  344. This routine is used in exception management nodes. It should
  345. save the exception reason currently in the reg. The
  346. save should be done either to a temp (pointed to by href).
  347. or on the stack (pushing the value on the stack).
  348. }
  349. procedure g_exception_reason_save(list : TAsmList; fromsize, tosize: tdef; reg: tregister; const href : treference);virtual;
  350. {#
  351. This routine is used in exception management nodes. It should
  352. save the exception reason constant. The
  353. save should be done either to a temp (pointed to by href).
  354. or on the stack (pushing the value on the stack).
  355. The size of the value to save is OS_S32. The default version
  356. saves the exception reason to a temp. memory area.
  357. }
  358. procedure g_exception_reason_save_const(list: TAsmList; size: tdef; a: tcgint; const href: treference);virtual;
  359. {#
  360. This routine is used in exception management nodes. It should
  361. load the exception reason to reg. The saved value
  362. should either be in the temp. area (pointed to by href , href should
  363. *NOT* be freed) or on the stack (the value should be popped).
  364. The size of the value to save is OS_S32. The default version
  365. saves the exception reason to a temp. memory area.
  366. }
  367. procedure g_exception_reason_load(list : TAsmList; fromsize, tosize: tdef; const href : treference; reg: tregister);virtual;
  368. {#
  369. This routine is called when the current exception reason can be
  370. discarded. On platforms that use push/pop, it causes the current
  371. value to be popped. On other platforms it doesn't do anything
  372. }
  373. procedure g_exception_reason_discard(list : TAsmList; size: tdef; href: treference); virtual;
  374. procedure g_maybe_testself(list : TAsmList; selftype: tdef; reg:tregister);
  375. // procedure g_maybe_testvmt(list : TAsmList;reg:tregister;objdef:tobjectdef);
  376. {# This should emit the opcode to copy len bytes from the source
  377. to destination.
  378. It must be overridden for each new target processor.
  379. @param(source Source reference of copy)
  380. @param(dest Destination reference of copy)
  381. }
  382. procedure g_concatcopy(list : TAsmList;size: tdef; const source,dest : treference);virtual;
  383. {# This should emit the opcode to copy len bytes from the an unaligned source
  384. to destination.
  385. It must be overridden for each new target processor.
  386. @param(source Source reference of copy)
  387. @param(dest Destination reference of copy)
  388. }
  389. procedure g_concatcopy_unaligned(list : TAsmList;size: tdef; const source,dest : treference);virtual;
  390. {# This should emit the opcode to a shortrstring from the source
  391. to destination.
  392. @param(source Source reference of copy)
  393. @param(dest Destination reference of copy)
  394. }
  395. procedure g_copyshortstring(list : TAsmList;const source,dest : treference;strdef:tstringdef);virtual;
  396. procedure g_copyvariant(list : TAsmList;const source,dest : treference;vardef:tvariantdef);virtual;
  397. procedure g_incrrefcount(list : TAsmList;t: tdef; const ref: treference);virtual;
  398. procedure g_initialize(list : TAsmList;t : tdef;const ref : treference);virtual;
  399. procedure g_finalize(list : TAsmList;t : tdef;const ref : treference);virtual;
  400. procedure g_array_rtti_helper(list: TAsmList; t: tdef; const ref: treference; const highloc: tlocation;
  401. const name: string);virtual;
  402. {# Generates range checking code. It is to note
  403. that this routine does not need to be overridden,
  404. as it takes care of everything.
  405. @param(p Node which contains the value to check)
  406. @param(todef Type definition of node to range check)
  407. }
  408. procedure g_rangecheck(list: TAsmList; const l:tlocation; fromdef,todef: tdef); virtual;
  409. {# Generates overflow checking code for a node }
  410. procedure g_overflowcheck(list: TAsmList; const Loc:tlocation; def:tdef); virtual; abstract;
  411. procedure g_overflowCheck_loc(List:TAsmList;const Loc:TLocation;def:TDef;var ovloc : tlocation);virtual; abstract;
  412. procedure g_copyvaluepara_openarray(list : TAsmList;const ref:treference;const lenloc:tlocation;arrdef: tarraydef;destreg:tregister);virtual;
  413. procedure g_releasevaluepara_openarray(list : TAsmList;arrdef: tarraydef;const l:tlocation);virtual;
  414. {# Emits instructions when compilation is done in profile
  415. mode (this is set as a command line option). The default
  416. behavior does nothing, should be overridden as required.
  417. }
  418. procedure g_profilecode(list : TAsmList);virtual;
  419. {# Emits instruction for allocating @var(size) bytes at the stackpointer
  420. @param(size Number of bytes to allocate)
  421. }
  422. procedure g_stackpointer_alloc(list : TAsmList;size : longint);virtual; abstract;
  423. {# Emits instruction for allocating the locals in entry
  424. code of a routine. This is one of the first
  425. routine called in @var(genentrycode).
  426. @param(localsize Number of bytes to allocate as locals)
  427. }
  428. procedure g_proc_entry(list : TAsmList;localsize : longint;nostackframe:boolean);virtual; abstract;
  429. {# Emits instructions for returning from a subroutine.
  430. Should also restore the framepointer and stack.
  431. @param(parasize Number of bytes of parameters to deallocate from stack)
  432. }
  433. procedure g_proc_exit(list : TAsmList;parasize:longint;nostackframe:boolean);virtual; abstract;
  434. procedure g_intf_wrapper(list: TAsmList; procdef: tprocdef; const labelname: string; ioffset: longint);virtual; abstract;
  435. procedure g_adjust_self_value(list:TAsmList;procdef: tprocdef;ioffset: aint);virtual; abstract;
  436. { generate a stub which only purpose is to pass control the given external method,
  437. setting up any additional environment before doing so (if required).
  438. The default implementation issues a jump instruction to the external name. }
  439. // procedure g_external_wrapper(list : TAsmList; procdef: tprocdef; const externalname: string); virtual;
  440. protected
  441. procedure g_allocload_reg_reg(list: TAsmList; regsize: tdef; const fromreg: tregister; out toreg: tregister; regtyp: tregistertype);
  442. public
  443. { create "safe copy" of a tlocation that can be used later: all
  444. registers used in the tlocation are copied to new ones, so that
  445. even if the original ones change, things stay the same (except if
  446. the original location was already a register, then the register is
  447. kept). Must only be used on lvalue locations.
  448. It's intended as some kind of replacement for a_loadaddr_ref_reg()
  449. for targets without pointers. }
  450. procedure g_reference_loc(list: TAsmList; def: tdef; const fromloc: tlocation; out toloc: tlocation); virtual;
  451. { routines migrated from ncgutil }
  452. procedure location_force_reg(list:TAsmList;var l:tlocation;src_size,dst_size:tdef;maybeconst:boolean);virtual;
  453. procedure location_force_fpureg(list:TAsmList;var l: tlocation;size: tdef;maybeconst:boolean);virtual;
  454. procedure location_force_mem(list:TAsmList;var l:tlocation;size:tdef);virtual;
  455. procedure location_force_mmregscalar(list:TAsmList;var l: tlocation;size:tdef;maybeconst:boolean);virtual;
  456. // procedure location_force_mmreg(list:TAsmList;var l: tlocation;size:tdef;maybeconst:boolean);virtual;abstract;
  457. { Retrieve the location of the data pointed to in location l, when the location is
  458. a register it is expected to contain the address of the data }
  459. procedure location_get_data_ref(list:TAsmList;def: tdef; const l:tlocation;var ref:treference;loadref:boolean; alignment: longint);virtual;
  460. procedure maketojumpbool(list:TAsmList; p : tnode);virtual;
  461. { if the result of n is a LOC_C(..)REGISTER, try to find the corresponding
  462. loadn and change its location to a new register (= SSA). In case reload
  463. is true, transfer the old to the new register }
  464. procedure maybe_change_load_node_reg(list: TAsmList; var n: tnode; reload: boolean); virtual;
  465. private
  466. function do_replace_node_regs(var n: tnode; para: pointer): foreachnoderesult; virtual;
  467. public
  468. procedure gen_proc_symbol(list:TAsmList);virtual;
  469. procedure gen_proc_symbol_end(list:TAsmList);virtual;
  470. procedure gen_initialize_code(list:TAsmList);virtual;
  471. procedure gen_finalize_code(list:TAsmList);virtual;
  472. procedure gen_entry_code(list:TAsmList);virtual;
  473. procedure gen_exit_code(list:TAsmList);virtual;
  474. protected
  475. { helpers called by gen_initialize_code/gen_finalize_code }
  476. procedure inittempvariables(list:TAsmList);virtual;
  477. procedure initialize_data(p:TObject;arg:pointer);virtual;
  478. procedure finalizetempvariables(list:TAsmList);virtual;
  479. procedure initialize_regvars(p:TObject;arg:pointer);virtual;
  480. procedure finalize_sym(asmlist:TAsmList;sym:tsym);virtual;
  481. { generates the code for finalisation of local variables }
  482. procedure finalize_local_vars(p:TObject;arg:pointer);virtual;
  483. { generates the code for finalization of static symtable and
  484. all local (static) typed consts }
  485. procedure finalize_static_data(p:TObject;arg:pointer);virtual;
  486. { generates the code for decrementing the reference count of parameters }
  487. procedure final_paras(p:TObject;arg:pointer);
  488. public
  489. { helper called by gen_alloc_symtable }
  490. procedure varsym_set_localloc(list: TAsmList; vs:tabstractnormalvarsym); virtual;
  491. { helper called by gen_alloc_symtable }
  492. procedure paravarsym_set_initialloc_to_paraloc(vs: tparavarsym); virtual;
  493. procedure gen_load_para_value(list:TAsmList);virtual;
  494. protected
  495. { helpers called by gen_load_para_value }
  496. procedure g_copyvalueparas(p:TObject;arg:pointer);virtual;
  497. procedure gen_loadfpu_loc_cgpara(list: TAsmList; size: tdef; const l: tlocation;const cgpara: tcgpara;locintsize: longint);virtual;
  498. procedure init_paras(p:TObject;arg:pointer);
  499. protected
  500. { Some targets have to put "something" in the function result
  501. location if it's not initialised by the Pascal code, e.g.
  502. stack-based architectures. By default it does nothing }
  503. procedure gen_load_uninitialized_function_result(list: TAsmList; pd: tprocdef; resdef: tdef; const resloc: tcgpara);virtual;
  504. procedure gen_load_loc_function_result(list: TAsmList; vardef: tdef; const l: tlocation);virtual;
  505. public
  506. { load a tlocation into a cgpara }
  507. procedure gen_load_loc_cgpara(list: TAsmList; vardef: tdef; const l: tlocation; const cgpara: tcgpara);virtual;
  508. { load a cgpara into a tlocation }
  509. procedure gen_load_cgpara_loc(list: TAsmList; vardef: tdef; const para: TCGPara; var destloc: tlocation; reusepara: boolean);virtual;
  510. { load the function return value into the ABI-defined function return location }
  511. procedure gen_load_return_value(list:TAsmList);virtual;
  512. { extras refactored from other units }
  513. { queue the code/data generated for a procedure for writing out to
  514. the assembler/object file }
  515. procedure record_generated_code_for_procdef(pd: tprocdef; code, data: TAsmList); virtual;
  516. { generate a call to a routine in the system unit }
  517. function g_call_system_proc(list: TAsmList; const procname: string; const paras: array of pcgpara; forceresdef: tdef): tcgpara;
  518. function g_call_system_proc(list: TAsmList; pd: tprocdef; const paras: array of pcgpara; forceresdef: tdef): tcgpara;
  519. protected
  520. function g_call_system_proc_intern(list: TAsmList; pd: tprocdef; const paras: array of pcgpara; forceresdef: tdef): tcgpara; virtual;
  521. public
  522. { Generate code to exit an unwind-protected region. The default implementation
  523. produces a simple jump to destination label. }
  524. procedure g_local_unwind(list: TAsmList; l: TAsmLabel);virtual;abstract;
  525. end;
  526. thlcgobjclass = class of thlcgobj;
  527. var
  528. {# Main high level code generator class }
  529. hlcg : thlcgobj;
  530. { class type of high level code generator class (also valid when hlcg is
  531. nil, in order to be able to call its virtual class methods) }
  532. chlcgobj: thlcgobjclass;
  533. procedure destroy_hlcodegen;
  534. implementation
  535. uses
  536. globals,systems,
  537. fmodule,export,
  538. verbose,defutil,paramgr,
  539. symtable,
  540. nbas,ncon,nld,ncgrtti,pass_1,pass_2,
  541. cpuinfo,cgobj,cutils,procinfo,
  542. {$ifdef x86}
  543. cgx86,
  544. {$endif x86}
  545. ncgutil,ngenutil;
  546. procedure destroy_hlcodegen;
  547. begin
  548. hlcg.free;
  549. hlcg:=nil;
  550. destroy_codegen;
  551. end;
  552. { thlcgobj }
  553. constructor thlcgobj.create;
  554. begin
  555. end;
  556. procedure thlcgobj.init_register_allocators;
  557. begin
  558. cg.init_register_allocators;
  559. end;
  560. procedure thlcgobj.done_register_allocators;
  561. begin
  562. cg.done_register_allocators;
  563. end;
  564. procedure thlcgobj.set_regalloc_live_range_direction(dir: TRADirection);
  565. begin
  566. cg.set_regalloc_live_range_direction(dir);
  567. end;
  568. function thlcgobj.getintregister(list: TAsmList; size: tdef): Tregister;
  569. begin
  570. result:=cg.getintregister(list,def_cgsize(size));
  571. end;
  572. function thlcgobj.getaddressregister(list: TAsmList; size: tdef): Tregister;
  573. begin
  574. result:=cg.getaddressregister(list);
  575. end;
  576. function thlcgobj.getfpuregister(list: TAsmList; size: tdef): Tregister;
  577. begin
  578. result:=cg.getfpuregister(list,def_cgsize(size));
  579. end;
  580. function thlcgobj.getmmregister(list: TAsmList; size: tdef): Tregister;
  581. begin
  582. result:=cg.getmmregister(list,def_cgsize(size));
  583. end;
  584. function thlcgobj.getflagregister(list: TAsmList; size: tdef): Tregister;
  585. begin
  586. result:=cg.getflagregister(list,def_cgsize(size));
  587. end;
  588. function thlcgobj.gettempregister(list: TAsmList; size: tdef): Tregister;
  589. begin
  590. { doesn't make sense to try to translate this size to tcgsize, temps
  591. can have any size }
  592. result:=cg.gettempregister(list);
  593. end;
  594. function thlcgobj.getregisterfordef(list: TAsmList; size: tdef): Tregister;
  595. begin
  596. case def2regtyp(size) of
  597. R_INTREGISTER:
  598. result:=getintregister(list,size);
  599. R_ADDRESSREGISTER:
  600. result:=getaddressregister(list,size);
  601. R_FPUREGISTER:
  602. result:=getfpuregister(list,size);
  603. R_MMREGISTER:
  604. result:=getmmregister(list,size);
  605. else
  606. internalerror(2010122901);
  607. end;
  608. end;
  609. function thlcgobj.uses_registers(rt: Tregistertype): boolean;
  610. begin
  611. result:=cg.uses_registers(rt);
  612. end;
  613. procedure thlcgobj.getcpuregister(list: TAsmList; r: Tregister);
  614. begin
  615. cg.getcpuregister(list,r);
  616. end;
  617. procedure thlcgobj.ungetcpuregister(list: TAsmList; r: Tregister);
  618. begin
  619. cg.ungetcpuregister(list,r);
  620. end;
  621. procedure thlcgobj.alloccpuregisters(list: TAsmList; rt: Tregistertype; const r: Tcpuregisterset);
  622. begin
  623. cg.alloccpuregisters(list,rt,r);
  624. end;
  625. procedure thlcgobj.dealloccpuregisters(list: TAsmList; rt: Tregistertype; const r: Tcpuregisterset);
  626. begin
  627. cg.dealloccpuregisters(list,rt,r);
  628. end;
  629. procedure thlcgobj.allocallcpuregisters(list: TAsmList);
  630. begin
  631. cg.allocallcpuregisters(list);
  632. end;
  633. procedure thlcgobj.deallocallcpuregisters(list: TAsmList);
  634. begin
  635. cg.deallocallcpuregisters(list);
  636. end;
  637. procedure thlcgobj.do_register_allocation(list: TAsmList; headertai: tai);
  638. begin
  639. cg.do_register_allocation(list,headertai);
  640. end;
  641. procedure thlcgobj.translate_register(var reg: tregister);
  642. begin
  643. cg.translate_register(reg);
  644. end;
  645. class function thlcgobj.def2regtyp(def: tdef): tregistertype;
  646. begin
  647. case def.typ of
  648. enumdef,
  649. orddef,
  650. recorddef,
  651. setdef:
  652. result:=R_INTREGISTER;
  653. stringdef,
  654. pointerdef,
  655. classrefdef,
  656. objectdef,
  657. procvardef,
  658. procdef,
  659. arraydef,
  660. formaldef:
  661. result:=R_ADDRESSREGISTER;
  662. floatdef:
  663. if use_vectorfpu(def) then
  664. result:=R_MMREGISTER
  665. else if cs_fp_emulation in current_settings.moduleswitches then
  666. result:=R_INTREGISTER
  667. else
  668. result:=R_FPUREGISTER;
  669. filedef,
  670. variantdef:
  671. internalerror(2010120507);
  672. else
  673. internalerror(2010120506);
  674. end;
  675. end;
  676. procedure thlcgobj.reference_reset_base(var ref: treference; regsize: tdef;
  677. reg: tregister; offset, alignment: longint);
  678. begin
  679. reference_reset(ref,alignment);
  680. ref.base:=reg;
  681. ref.offset:=offset;
  682. end;
  683. procedure thlcgobj.temp_to_ref(p: ptemprecord; out ref: treference);
  684. begin
  685. reference_reset_base(ref,voidstackpointertype,current_procinfo.framepointer,p^.pos,voidstackpointertype.size);
  686. end;
  687. procedure thlcgobj.a_label(list: TAsmList; l: tasmlabel); inline;
  688. begin
  689. cg.a_label(list,l);
  690. end;
  691. procedure thlcgobj.a_reg_alloc(list: TAsmList; r: tregister);
  692. begin
  693. cg.a_reg_alloc(list,r);
  694. end;
  695. procedure thlcgobj.a_reg_dealloc(list: TAsmList; r: tregister);
  696. begin
  697. cg.a_reg_dealloc(list,r);
  698. end;
  699. procedure thlcgobj.a_reg_sync(list: TAsmList; r: tregister);
  700. begin
  701. cg.a_reg_sync(list,r);
  702. end;
  703. procedure thlcgobj.a_load_reg_cgpara(list: TAsmList; size: tdef; r: tregister; const cgpara: TCGPara);
  704. var
  705. ref: treference;
  706. tmpreg : tregister;
  707. begin
  708. cgpara.check_simple_location;
  709. paramanager.alloccgpara(list,cgpara);
  710. if cgpara.location^.shiftval<0 then
  711. begin
  712. tmpreg:=getintregister(list,cgpara.location^.def);
  713. a_op_const_reg_reg(list,OP_SHL,cgpara.location^.def,-cgpara.location^.shiftval,r,tmpreg);
  714. r:=tmpreg;
  715. end;
  716. case cgpara.location^.loc of
  717. LOC_REGISTER,LOC_CREGISTER:
  718. a_load_reg_reg(list,size,cgpara.location^.def,r,cgpara.location^.register);
  719. LOC_REFERENCE,LOC_CREFERENCE:
  720. begin
  721. reference_reset_base(ref,voidstackpointertype,cgpara.location^.reference.index,cgpara.location^.reference.offset,cgpara.alignment);
  722. a_load_reg_ref(list,size,cgpara.location^.def,r,ref);
  723. end;
  724. LOC_MMREGISTER,LOC_CMMREGISTER:
  725. a_loadmm_intreg_reg(list,size,cgpara.location^.def,r,cgpara.location^.register,mms_movescalar);
  726. LOC_FPUREGISTER,LOC_CFPUREGISTER:
  727. begin
  728. tg.gethltemp(list,size,size.size,tt_normal,ref);
  729. a_load_reg_ref(list,size,cgpara.location^.def,r,ref);
  730. a_loadfpu_ref_cgpara(list,cgpara.location^.def,ref,cgpara);
  731. tg.ungettemp(list,ref);
  732. end
  733. else
  734. internalerror(2010120415);
  735. end;
  736. end;
  737. procedure thlcgobj.a_load_const_cgpara(list: TAsmList; tosize: tdef; a: tcgint; const cgpara: TCGPara);
  738. var
  739. ref : treference;
  740. begin
  741. cgpara.check_simple_location;
  742. paramanager.alloccgpara(list,cgpara);
  743. if cgpara.location^.shiftval<0 then
  744. a:=a shl -cgpara.location^.shiftval;
  745. case cgpara.location^.loc of
  746. LOC_REGISTER,LOC_CREGISTER:
  747. a_load_const_reg(list,cgpara.location^.def,a,cgpara.location^.register);
  748. LOC_REFERENCE,LOC_CREFERENCE:
  749. begin
  750. reference_reset_base(ref,voidstackpointertype,cgpara.location^.reference.index,cgpara.location^.reference.offset,cgpara.alignment);
  751. a_load_const_ref(list,cgpara.location^.def,a,ref);
  752. end
  753. else
  754. internalerror(2010120416);
  755. end;
  756. end;
  757. procedure thlcgobj.a_load_ref_cgpara(list: TAsmList; size: tdef; const r: treference; const cgpara: TCGPara);
  758. var
  759. tmpref, ref: treference;
  760. tmpreg: tregister;
  761. location: pcgparalocation;
  762. orgsizeleft,
  763. sizeleft: tcgint;
  764. reghasvalue: boolean;
  765. begin
  766. location:=cgpara.location;
  767. tmpref:=r;
  768. sizeleft:=cgpara.intsize;
  769. while assigned(location) do
  770. begin
  771. paramanager.allocparaloc(list,location);
  772. case location^.loc of
  773. LOC_REGISTER,LOC_CREGISTER:
  774. begin
  775. { Parameter locations are often allocated in multiples of
  776. entire registers. If a parameter only occupies a part of
  777. such a register (e.g. a 16 bit int on a 32 bit
  778. architecture), the size of this parameter can only be
  779. determined by looking at the "size" parameter of this
  780. method -> if the size parameter is <= sizeof(aint), then
  781. we check that there is only one parameter location and
  782. then use this "size" to load the value into the parameter
  783. location }
  784. if (def_cgsize(size)<>OS_NO) and
  785. (size.size<=sizeof(aint)) then
  786. begin
  787. cgpara.check_simple_location;
  788. a_load_ref_reg(list,size,location^.def,tmpref,location^.register);
  789. if location^.shiftval<0 then
  790. a_op_const_reg(list,OP_SHL,location^.def,-location^.shiftval,location^.register);
  791. end
  792. { there's a lot more data left, and the current paraloc's
  793. register is entirely filled with part of that data }
  794. else if (sizeleft>sizeof(aint)) then
  795. begin
  796. a_load_ref_reg(list,location^.def,location^.def,tmpref,location^.register);
  797. end
  798. { we're at the end of the data, and it can be loaded into
  799. the current location's register with a single regular
  800. load }
  801. else if sizeleft in [1,2,4,8] then
  802. begin
  803. { don't use cgsize_orddef(int_cgsize(sizeleft)) as fromdef,
  804. because that may be larger than location^.register in
  805. case of padding at the end of a record }
  806. a_load_ref_reg(list,location^.def,location^.def,tmpref,location^.register);
  807. if location^.shiftval<0 then
  808. a_op_const_reg(list,OP_SHL,location^.def,-location^.shiftval,location^.register);
  809. end
  810. { we're at the end of the data, and we need multiple loads
  811. to get it in the register because it's an irregular size }
  812. else
  813. begin
  814. { should be the last part }
  815. if assigned(location^.next) then
  816. internalerror(2010052907);
  817. { load the value piecewise to get it into the register }
  818. orgsizeleft:=sizeleft;
  819. reghasvalue:=false;
  820. {$ifdef cpu64bitalu}
  821. if sizeleft>=4 then
  822. begin
  823. a_load_ref_reg(list,u32inttype,location^.def,tmpref,location^.register);
  824. dec(sizeleft,4);
  825. if target_info.endian=endian_big then
  826. a_op_const_reg(list,OP_SHL,location^.def,sizeleft*8,location^.register);
  827. inc(tmpref.offset,4);
  828. reghasvalue:=true;
  829. end;
  830. {$endif cpu64bitalu}
  831. if sizeleft>=2 then
  832. begin
  833. tmpreg:=getintregister(list,location^.def);
  834. a_load_ref_reg(list,u16inttype,location^.def,tmpref,tmpreg);
  835. dec(sizeleft,2);
  836. if reghasvalue then
  837. begin
  838. if target_info.endian=endian_big then
  839. a_op_const_reg(list,OP_SHL,location^.def,sizeleft*8,tmpreg)
  840. else
  841. a_op_const_reg(list,OP_SHL,location^.def,(orgsizeleft-(sizeleft+2))*8,tmpreg);
  842. a_op_reg_reg(list,OP_OR,location^.def,tmpreg,location^.register);
  843. end
  844. else
  845. begin
  846. if target_info.endian=endian_big then
  847. a_op_const_reg_reg(list,OP_SHL,location^.def,sizeleft*8,tmpreg,location^.register)
  848. else
  849. a_load_reg_reg(list,location^.def,location^.def,tmpreg,location^.register);
  850. end;
  851. inc(tmpref.offset,2);
  852. reghasvalue:=true;
  853. end;
  854. if sizeleft=1 then
  855. begin
  856. tmpreg:=getintregister(list,location^.def);
  857. a_load_ref_reg(list,u8inttype,location^.def,tmpref,tmpreg);
  858. dec(sizeleft,1);
  859. if reghasvalue then
  860. begin
  861. if target_info.endian=endian_little then
  862. a_op_const_reg(list,OP_SHL,location^.def,(orgsizeleft-(sizeleft+1))*8,tmpreg);
  863. a_op_reg_reg(list,OP_OR,location^.def,tmpreg,location^.register)
  864. end
  865. else
  866. a_load_reg_reg(list,location^.def,location^.def,tmpreg,location^.register);
  867. inc(tmpref.offset);
  868. end;
  869. if location^.shiftval<0 then
  870. a_op_const_reg(list,OP_SHL,location^.def,-location^.shiftval,location^.register);
  871. { the loop will already adjust the offset and sizeleft }
  872. dec(tmpref.offset,orgsizeleft);
  873. sizeleft:=orgsizeleft;
  874. end;
  875. end;
  876. LOC_REFERENCE,LOC_CREFERENCE:
  877. begin
  878. if assigned(location^.next) then
  879. internalerror(2010052906);
  880. reference_reset_base(ref,voidstackpointertype,location^.reference.index,location^.reference.offset,newalignment(cgpara.alignment,cgpara.intsize-sizeleft));
  881. if (def_cgsize(size)<>OS_NO) and
  882. (size.size=sizeleft) and
  883. (sizeleft<=sizeof(aint)) then
  884. a_load_ref_ref(list,size,location^.def,tmpref,ref)
  885. else
  886. { use concatcopy, because the parameter can be larger than }
  887. { what the OS_* constants can handle }
  888. g_concatcopy(list,location^.def,tmpref,ref);
  889. end;
  890. LOC_MMREGISTER,LOC_CMMREGISTER:
  891. begin
  892. case location^.size of
  893. OS_F32,
  894. OS_F64,
  895. OS_F128:
  896. a_loadmm_ref_reg(list,location^.def,location^.def,tmpref,location^.register,mms_movescalar);
  897. OS_M8..OS_M128,
  898. OS_MS8..OS_MS128:
  899. a_loadmm_ref_reg(list,location^.def,location^.def,tmpref,location^.register,nil);
  900. else
  901. internalerror(2010053101);
  902. end;
  903. end
  904. else
  905. internalerror(2014032101);
  906. end;
  907. inc(tmpref.offset,tcgsize2size[location^.size]);
  908. dec(sizeleft,tcgsize2size[location^.size]);
  909. location:=location^.next;
  910. end;
  911. end;
  912. procedure thlcgobj.a_load_loc_cgpara(list: TAsmList; size: tdef; const l: tlocation; const cgpara: TCGPara);
  913. begin
  914. case l.loc of
  915. LOC_REGISTER,
  916. LOC_CREGISTER :
  917. a_load_reg_cgpara(list,size,l.register,cgpara);
  918. LOC_CONSTANT :
  919. a_load_const_cgpara(list,size,l.value,cgpara);
  920. LOC_CREFERENCE,
  921. LOC_REFERENCE :
  922. a_load_ref_cgpara(list,size,l.reference,cgpara);
  923. else
  924. internalerror(2010120419);
  925. end;
  926. end;
  927. procedure thlcgobj.a_loadaddr_ref_cgpara(list: TAsmList; fromsize: tdef; const r: treference; const cgpara: TCGPara);
  928. var
  929. hr : tregister;
  930. begin
  931. cgpara.check_simple_location;
  932. if cgpara.location^.loc in [LOC_CREGISTER,LOC_REGISTER] then
  933. begin
  934. paramanager.allocparaloc(list,cgpara.location);
  935. a_loadaddr_ref_reg(list,fromsize,cgpara.location^.def,r,cgpara.location^.register)
  936. end
  937. else
  938. begin
  939. hr:=getaddressregister(list,cgpara.def);
  940. a_loadaddr_ref_reg(list,fromsize,cgpara.location^.def,r,hr);
  941. a_load_reg_cgpara(list,cgpara.def,hr,cgpara);
  942. end;
  943. end;
  944. function thlcgobj.a_call_name_static(list: TAsmList; pd: tprocdef; const s: TSymStr; const paras: array of pcgpara; forceresdef: tdef): tcgpara;
  945. begin
  946. result:=a_call_name(list,pd,s,paras,forceresdef,false);
  947. end;
  948. function thlcgobj.a_call_name_inherited(list: TAsmList; pd: tprocdef; const s: TSymStr; const paras: array of pcgpara): tcgpara;
  949. begin
  950. result:=a_call_name(list,pd,s,paras,nil,false);
  951. end;
  952. procedure thlcgobj.a_load_const_ref(list: TAsmList; tosize: tdef; a: tcgint; const ref: treference);
  953. var
  954. tmpreg: tregister;
  955. begin
  956. tmpreg:=getintregister(list,tosize);
  957. a_load_const_reg(list,tosize,a,tmpreg);
  958. a_load_reg_ref(list,tosize,tosize,tmpreg,ref);
  959. end;
  960. procedure thlcgobj.a_load_const_loc(list: TAsmList; tosize: tdef; a: tcgint; const loc: tlocation);
  961. begin
  962. case loc.loc of
  963. LOC_REFERENCE,LOC_CREFERENCE:
  964. a_load_const_ref(list,tosize,a,loc.reference);
  965. LOC_REGISTER,LOC_CREGISTER:
  966. a_load_const_reg(list,tosize,a,loc.register);
  967. LOC_SUBSETREG,LOC_CSUBSETREG:
  968. a_load_const_subsetreg(list,tosize,a,loc.sreg);
  969. LOC_SUBSETREF,LOC_CSUBSETREF:
  970. a_load_const_subsetref(list,tosize,a,loc.sref);
  971. else
  972. internalerror(2010120401);
  973. end;
  974. end;
  975. procedure thlcgobj.a_load_reg_ref_unaligned(list: TAsmList; fromsize, tosize: tdef; register: tregister; const ref: treference);
  976. begin
  977. a_load_reg_ref(list,fromsize,tosize,register,ref);
  978. end;
  979. procedure thlcgobj.a_load_reg_loc(list: TAsmList; fromsize, tosize: tdef; reg: tregister; const loc: tlocation);
  980. begin
  981. case loc.loc of
  982. LOC_REFERENCE,LOC_CREFERENCE:
  983. a_load_reg_ref(list,fromsize,tosize,reg,loc.reference);
  984. LOC_REGISTER,LOC_CREGISTER:
  985. a_load_reg_reg(list,fromsize,tosize,reg,loc.register);
  986. LOC_SUBSETREG,LOC_CSUBSETREG:
  987. a_load_reg_subsetreg(list,fromsize,tosize,reg,loc.sreg);
  988. LOC_SUBSETREF,LOC_CSUBSETREF:
  989. a_load_reg_subsetref(list,fromsize,tosize,reg,loc.sref);
  990. LOC_MMREGISTER,LOC_CMMREGISTER:
  991. a_loadmm_intreg_reg(list,fromsize,tosize,reg,loc.register,mms_movescalar);
  992. else
  993. internalerror(2010120402);
  994. end;
  995. end;
  996. procedure thlcgobj.a_load_ref_reg_unaligned(list: TAsmList; fromsize, tosize: tdef; const ref: treference; register: tregister);
  997. begin
  998. a_load_ref_reg(list,fromsize,tosize,ref,register);
  999. end;
  1000. procedure thlcgobj.a_load_ref_ref(list: TAsmList; fromsize, tosize: tdef; const sref: treference; const dref: treference);
  1001. var
  1002. tmpreg: tregister;
  1003. begin
  1004. { verify if we have the same reference }
  1005. if references_equal(sref,dref) then
  1006. exit;
  1007. tmpreg:=getintregister(list,tosize);
  1008. a_load_ref_reg(list,fromsize,tosize,sref,tmpreg);
  1009. a_load_reg_ref(list,tosize,tosize,tmpreg,dref);
  1010. end;
  1011. procedure thlcgobj.a_load_loc_reg(list: TAsmList; fromsize, tosize: tdef; const loc: tlocation; reg: tregister);
  1012. begin
  1013. case loc.loc of
  1014. LOC_REFERENCE,LOC_CREFERENCE:
  1015. a_load_ref_reg(list,fromsize,tosize,loc.reference,reg);
  1016. LOC_REGISTER,LOC_CREGISTER:
  1017. a_load_reg_reg(list,fromsize,tosize,loc.register,reg);
  1018. LOC_CONSTANT:
  1019. a_load_const_reg(list,tosize,loc.value,reg);
  1020. LOC_SUBSETREG,LOC_CSUBSETREG:
  1021. a_load_subsetreg_reg(list,fromsize,tosize,loc.sreg,reg);
  1022. LOC_SUBSETREF,LOC_CSUBSETREF:
  1023. a_load_subsetref_reg(list,fromsize,tosize,loc.sref,reg);
  1024. else
  1025. internalerror(2010120201);
  1026. end;
  1027. end;
  1028. procedure thlcgobj.a_load_loc_ref(list: TAsmList; fromsize, tosize: tdef; const loc: tlocation; const ref: treference);
  1029. begin
  1030. case loc.loc of
  1031. LOC_REFERENCE,LOC_CREFERENCE:
  1032. a_load_ref_ref(list,fromsize,tosize,loc.reference,ref);
  1033. LOC_REGISTER,LOC_CREGISTER:
  1034. a_load_reg_ref(list,fromsize,tosize,loc.register,ref);
  1035. LOC_CONSTANT:
  1036. a_load_const_ref(list,tosize,loc.value,ref);
  1037. LOC_SUBSETREG,LOC_CSUBSETREG:
  1038. a_load_subsetreg_ref(list,fromsize,tosize,loc.sreg,ref);
  1039. LOC_SUBSETREF,LOC_CSUBSETREF:
  1040. a_load_subsetref_ref(list,fromsize,tosize,loc.sref,ref);
  1041. else
  1042. internalerror(2010120403);
  1043. end;
  1044. end;
  1045. procedure thlcgobj.a_load_loc_subsetreg(list: TAsmList; fromsize, tosubsetsize: tdef; const loc: tlocation; const sreg: tsubsetregister);
  1046. begin
  1047. case loc.loc of
  1048. LOC_REFERENCE,LOC_CREFERENCE:
  1049. a_load_ref_subsetreg(list,fromsize,tosubsetsize,loc.reference,sreg);
  1050. LOC_REGISTER,LOC_CREGISTER:
  1051. a_load_reg_subsetreg(list,fromsize,tosubsetsize,loc.register,sreg);
  1052. LOC_CONSTANT:
  1053. a_load_const_subsetreg(list,tosubsetsize,loc.value,sreg);
  1054. LOC_SUBSETREG,LOC_CSUBSETREG:
  1055. a_load_subsetreg_subsetreg(list,fromsize,tosubsetsize,loc.sreg,sreg);
  1056. LOC_SUBSETREF,LOC_CSUBSETREF:
  1057. a_load_subsetref_subsetreg(list,fromsize,tosubsetsize,loc.sref,sreg);
  1058. else
  1059. internalerror(2010120404);
  1060. end;
  1061. end;
  1062. procedure thlcgobj.a_load_loc_subsetref(list: TAsmList; fromsize, tosubsetsize: tdef; const loc: tlocation; const sref: tsubsetreference);
  1063. begin
  1064. case loc.loc of
  1065. LOC_REFERENCE,LOC_CREFERENCE:
  1066. a_load_ref_subsetref(list,fromsize,tosubsetsize,loc.reference,sref);
  1067. LOC_REGISTER,LOC_CREGISTER:
  1068. a_load_reg_subsetref(list,fromsize,tosubsetsize,loc.register,sref);
  1069. LOC_CONSTANT:
  1070. a_load_const_subsetref(list,tosubsetsize,loc.value,sref);
  1071. LOC_SUBSETREG,LOC_CSUBSETREG:
  1072. a_load_subsetreg_subsetref(list,fromsize,tosubsetsize,loc.sreg,sref);
  1073. LOC_SUBSETREF,LOC_CSUBSETREF:
  1074. a_load_subsetref_subsetref(list,fromsize,tosubsetsize,loc.sref,sref);
  1075. else
  1076. internalerror(2010120405);
  1077. end;
  1078. end;
  1079. {$push}
  1080. {$r-,q-}
  1081. procedure thlcgobj.a_load_subsetreg_reg(list: TAsmList; subsetsize, tosize: tdef; const sreg: tsubsetregister; destreg: tregister);
  1082. var
  1083. subsetregdef: torddef;
  1084. bitmask: aword;
  1085. tmpreg,
  1086. subsetsizereg: tregister;
  1087. stopbit: byte;
  1088. begin
  1089. subsetregdef:=cgsize_orddef(sreg.subsetregsize);
  1090. tmpreg:=getintregister(list,subsetregdef);
  1091. if is_signed(subsetsize) then
  1092. begin
  1093. { sign extend in case the value has a bitsize mod 8 <> 0 }
  1094. { both instructions will be optimized away if not }
  1095. a_op_const_reg_reg(list,OP_SHL,subsetregdef,(tcgsize2size[sreg.subsetregsize]*8)-sreg.startbit-sreg.bitlen,sreg.subsetreg,tmpreg);
  1096. a_op_const_reg(list,OP_SAR,subsetregdef,(tcgsize2size[sreg.subsetregsize]*8)-sreg.bitlen,tmpreg);
  1097. end
  1098. else
  1099. begin
  1100. a_op_const_reg_reg(list,OP_SHR,subsetregdef,sreg.startbit,sreg.subsetreg,tmpreg);
  1101. stopbit:=sreg.startbit+sreg.bitlen;
  1102. // on x86(64), 1 shl 32(64) = 1 instead of 0
  1103. // use aword to prevent overflow with 1 shl 31
  1104. if (stopbit-sreg.startbit<>AIntBits) then
  1105. bitmask:=(aword(1) shl (stopbit-sreg.startbit))-1
  1106. else
  1107. bitmask:=high(aword);
  1108. a_op_const_reg(list,OP_AND,subsetregdef,tcgint(bitmask),tmpreg);
  1109. end;
  1110. subsetsizereg:=getintregister(list,subsetsize);
  1111. a_load_reg_reg(list,subsetregdef,subsetsize,tmpreg,subsetsizereg);
  1112. a_load_reg_reg(list,subsetsize,tosize,subsetsizereg,destreg);
  1113. end;
  1114. procedure thlcgobj.a_load_reg_subsetreg(list: TAsmList; fromsize, tosubsetsize: tdef; fromreg: tregister; const sreg: tsubsetregister);
  1115. begin
  1116. a_load_regconst_subsetreg_intern(list,fromsize,tosubsetsize,fromreg,sreg,SL_REG);
  1117. end;
  1118. procedure thlcgobj.a_load_subsetreg_subsetreg(list: TAsmlist; fromsubsetsize, tosubsetsize: tdef; const fromsreg, tosreg: tsubsetregister);
  1119. var
  1120. fromsubsetregdef,
  1121. tosubsetregdef: torddef;
  1122. tmpreg, tmpreg2: tregister;
  1123. bitmask: aword;
  1124. stopbit: byte;
  1125. begin
  1126. if (fromsreg.bitlen>=tosreg.bitlen) then
  1127. begin
  1128. fromsubsetregdef:=cgsize_orddef(fromsreg.subsetregsize);
  1129. tosubsetregdef:=cgsize_orddef(tosreg.subsetregsize);
  1130. if (fromsreg.startbit<=tosreg.startbit) then
  1131. begin
  1132. { tosreg may be larger -> use its size to perform the shift }
  1133. tmpreg:=getintregister(list,tosubsetregdef);
  1134. a_load_reg_reg(list,fromsubsetregdef,tosubsetregdef,fromsreg.subsetreg,tmpreg);
  1135. a_op_const_reg(list,OP_SHL,tosubsetregdef,tosreg.startbit-fromsreg.startbit,tmpreg)
  1136. end
  1137. else
  1138. begin
  1139. { fromsreg may be larger -> use its size to perform the shift }
  1140. tmpreg:=getintregister(list,fromsubsetregdef);
  1141. a_op_const_reg_reg(list,OP_SHR,fromsubsetregdef,fromsreg.startbit-tosreg.startbit,fromsreg.subsetreg,tmpreg);
  1142. tmpreg2:=getintregister(list,tosubsetregdef);
  1143. a_load_reg_reg(list,fromsubsetregdef,tosubsetregdef,tmpreg,tmpreg2);
  1144. tmpreg:=tmpreg2;
  1145. end;
  1146. stopbit:=tosreg.startbit + tosreg.bitlen;
  1147. // on x86(64), 1 shl 32(64) = 1 instead of 0
  1148. if (stopbit<>AIntBits) then
  1149. bitmask:=not(((aword(1) shl stopbit)-1) xor ((aword(1) shl tosreg.startbit)-1))
  1150. else
  1151. bitmask:=(aword(1) shl tosreg.startbit) - 1;
  1152. a_op_const_reg(list,OP_AND,tosubsetregdef,tcgint(bitmask),tosreg.subsetreg);
  1153. a_op_const_reg(list,OP_AND,tosubsetregdef,tcgint(not(bitmask)),tmpreg);
  1154. a_op_reg_reg(list,OP_OR,tosubsetregdef,tmpreg,tosreg.subsetreg);
  1155. end
  1156. else
  1157. begin
  1158. tmpreg:=getintregister(list,tosubsetsize);
  1159. a_load_subsetreg_reg(list,fromsubsetsize,tosubsetsize,fromsreg,tmpreg);
  1160. a_load_reg_subsetreg(list,tosubsetsize,tosubsetsize,tmpreg,tosreg);
  1161. end;
  1162. end;
  1163. procedure thlcgobj.a_load_subsetreg_ref(list: TAsmList; fromsubsetsize, tosize: tdef; const sreg: tsubsetregister; const destref: treference);
  1164. var
  1165. tmpreg: tregister;
  1166. begin
  1167. tmpreg:=getintregister(list,tosize);
  1168. a_load_subsetreg_reg(list,fromsubsetsize,tosize,sreg,tmpreg);
  1169. a_load_reg_ref(list,tosize,tosize,tmpreg,destref);
  1170. end;
  1171. procedure thlcgobj.a_load_ref_subsetreg(list: TAsmList; fromsize, tosubsetsize: tdef; const fromref: treference; const sreg: tsubsetregister);
  1172. var
  1173. tmpreg: tregister;
  1174. begin
  1175. tmpreg := getintregister(list,tosubsetsize);
  1176. a_load_ref_reg(list,fromsize,tosubsetsize,fromref,tmpreg);
  1177. a_load_reg_subsetreg(list,tosubsetsize,tosubsetsize,tmpreg,sreg);
  1178. end;
  1179. procedure thlcgobj.a_load_const_subsetreg(list: TAsmlist; tosubsetsize: tdef; a: tcgint; const sreg: tsubsetregister);
  1180. var
  1181. subsetregdef: torddef;
  1182. bitmask: aword;
  1183. stopbit: byte;
  1184. begin
  1185. subsetregdef:=cgsize_orddef(sreg.subsetregsize);
  1186. stopbit:=sreg.startbit+sreg.bitlen;
  1187. // on x86(64), 1 shl 32(64) = 1 instead of 0
  1188. if (stopbit<>AIntBits) then
  1189. bitmask:=not(((aword(1) shl stopbit)-1) xor ((aword(1) shl sreg.startbit)-1))
  1190. else
  1191. bitmask:=(aword(1) shl sreg.startbit)-1;
  1192. if (((aword(a) shl sreg.startbit) and not bitmask)<>not bitmask) then
  1193. a_op_const_reg(list,OP_AND,subsetregdef,tcgint(bitmask),sreg.subsetreg);
  1194. a_op_const_reg(list,OP_OR,subsetregdef,tcgint((aword(a) shl sreg.startbit) and not(bitmask)),sreg.subsetreg);
  1195. end;
  1196. procedure thlcgobj.a_load_subsetreg_loc(list: TAsmlist; fromsubsetsize, tosize: tdef; const sreg: tsubsetregister; const loc: tlocation);
  1197. begin
  1198. case loc.loc of
  1199. LOC_REFERENCE,LOC_CREFERENCE:
  1200. a_load_subsetreg_ref(list,fromsubsetsize,tosize,sreg,loc.reference);
  1201. LOC_REGISTER,LOC_CREGISTER:
  1202. a_load_subsetreg_reg(list,fromsubsetsize,tosize,sreg,loc.register);
  1203. LOC_SUBSETREG,LOC_CSUBSETREG:
  1204. a_load_subsetreg_subsetreg(list,fromsubsetsize,tosize,sreg,loc.sreg);
  1205. LOC_SUBSETREF,LOC_CSUBSETREF:
  1206. a_load_subsetreg_subsetref(list,fromsubsetsize,tosize,sreg,loc.sref);
  1207. else
  1208. internalerror(2010120406);
  1209. end;
  1210. end;
  1211. procedure thlcgobj.a_load_subsetref_reg(list: TAsmList; fromsubsetsize, tosize: tdef; const sref: tsubsetreference; destreg: tregister);
  1212. var
  1213. tmpref: treference;
  1214. valuereg,extra_value_reg: tregister;
  1215. tosreg: tsubsetregister;
  1216. loadsize: torddef;
  1217. loadbitsize: byte;
  1218. extra_load: boolean;
  1219. begin
  1220. get_subsetref_load_info(sref,loadsize,extra_load);
  1221. loadbitsize:=loadsize.size*8;
  1222. { load the (first part) of the bit sequence }
  1223. valuereg:=getintregister(list,osuinttype);
  1224. a_load_ref_reg(list,loadsize,osuinttype,sref.ref,valuereg);
  1225. if not extra_load then
  1226. begin
  1227. { everything is guaranteed to be in a single register of loadsize }
  1228. if (sref.bitindexreg=NR_NO) then
  1229. begin
  1230. { use subsetreg routine, it may have been overridden with an optimized version }
  1231. tosreg.subsetreg:=valuereg;
  1232. tosreg.subsetregsize:=def_cgsize(osuinttype);
  1233. { subsetregs always count bits from right to left }
  1234. if (target_info.endian=endian_big) then
  1235. tosreg.startbit:=loadbitsize-(sref.startbit+sref.bitlen)
  1236. else
  1237. tosreg.startbit:=sref.startbit;
  1238. tosreg.bitlen:=sref.bitlen;
  1239. a_load_subsetreg_reg(list,fromsubsetsize,tosize,tosreg,destreg);
  1240. exit;
  1241. end
  1242. else
  1243. begin
  1244. if (sref.startbit<>0) then
  1245. internalerror(2006081510);
  1246. if (target_info.endian=endian_big) then
  1247. begin
  1248. a_op_reg_reg(list,OP_SHL,osuinttype,sref.bitindexreg,valuereg);
  1249. if is_signed(fromsubsetsize) then
  1250. begin
  1251. { sign extend to entire register }
  1252. a_op_const_reg(list,OP_SHL,osuinttype,AIntBits-loadbitsize,valuereg);
  1253. a_op_const_reg(list,OP_SAR,osuinttype,AIntBits-sref.bitlen,valuereg);
  1254. end
  1255. else
  1256. a_op_const_reg(list,OP_SHR,osuinttype,loadbitsize-sref.bitlen,valuereg);
  1257. end
  1258. else
  1259. begin
  1260. a_op_reg_reg(list,OP_SHR,osuinttype,sref.bitindexreg,valuereg);
  1261. if is_signed(fromsubsetsize) then
  1262. begin
  1263. a_op_const_reg(list,OP_SHL,osuinttype,AIntBits-sref.bitlen,valuereg);
  1264. a_op_const_reg(list,OP_SAR,osuinttype,AIntBits-sref.bitlen,valuereg);
  1265. end
  1266. end;
  1267. { mask other bits/sign extend }
  1268. if not is_signed(fromsubsetsize) then
  1269. a_op_const_reg(list,OP_AND,osuinttype,tcgint((aword(1) shl sref.bitlen)-1),valuereg);
  1270. end
  1271. end
  1272. else
  1273. begin
  1274. { load next value as well }
  1275. extra_value_reg:=getintregister(list,osuinttype);
  1276. if (sref.bitindexreg=NR_NO) then
  1277. begin
  1278. tmpref:=sref.ref;
  1279. inc(tmpref.offset,loadbitsize div 8);
  1280. a_load_ref_reg(list,loadsize,osuinttype,tmpref,extra_value_reg);
  1281. { can be overridden to optimize }
  1282. a_load_subsetref_regs_noindex(list,fromsubsetsize,loadbitsize,sref,valuereg,extra_value_reg)
  1283. end
  1284. else
  1285. begin
  1286. if (sref.startbit<>0) then
  1287. internalerror(2006080610);
  1288. a_load_subsetref_regs_index(list,fromsubsetsize,loadbitsize,sref,valuereg);
  1289. end;
  1290. end;
  1291. { store in destination }
  1292. {$ifndef cpuhighleveltarget}
  1293. { avoid unnecessary sign extension and zeroing }
  1294. valuereg:=cg.makeregsize(list,valuereg,OS_INT);
  1295. destreg:=cg.makeregsize(list,destreg,OS_INT);
  1296. cg.a_load_reg_reg(list,OS_INT,OS_INT,valuereg,destreg);
  1297. destreg:=cg.makeregsize(list,destreg,def_cgsize(tosize));
  1298. {$else}
  1299. { can't juggle with register sizes, they are actually typed entities
  1300. here }
  1301. a_load_reg_reg(list,osuinttype,tosize,valuereg,destreg);
  1302. {$endif}
  1303. end;
  1304. procedure thlcgobj.a_load_reg_subsetref(list: TAsmList; fromsize, tosubsetsize: tdef; fromreg: tregister; const sref: tsubsetreference);
  1305. begin
  1306. a_load_regconst_subsetref_intern(list,fromsize,tosubsetsize,fromreg,sref,SL_REG);
  1307. end;
  1308. procedure thlcgobj.a_load_subsetref_subsetref(list: TAsmlist; fromsubsetsize, tosubsetsize: tdef; const fromsref, tosref: tsubsetreference);
  1309. var
  1310. tmpreg: tregister;
  1311. begin
  1312. tmpreg:=getintregister(list,tosubsetsize);
  1313. a_load_subsetref_reg(list,fromsubsetsize,tosubsetsize,fromsref,tmpreg);
  1314. a_load_reg_subsetref(list,tosubsetsize,tosubsetsize,tmpreg,tosref);
  1315. end;
  1316. procedure thlcgobj.a_load_subsetref_ref(list: TAsmList; fromsubsetsize, tosize: tdef; const sref: tsubsetreference; const destref: treference);
  1317. var
  1318. tmpreg: tregister;
  1319. begin
  1320. tmpreg:=getintregister(list,tosize);
  1321. a_load_subsetref_reg(list,fromsubsetsize,tosize,sref,tmpreg);
  1322. a_load_reg_ref(list,tosize,tosize,tmpreg,destref);
  1323. end;
  1324. procedure thlcgobj.a_load_ref_subsetref(list: TAsmList; fromsize, tosubsetsize: tdef; const fromref: treference; const sref: tsubsetreference);
  1325. var
  1326. tmpreg: tregister;
  1327. begin
  1328. tmpreg := getintregister(list,tosubsetsize);
  1329. a_load_ref_reg(list,fromsize,tosubsetsize,fromref,tmpreg);
  1330. a_load_reg_subsetref(list,tosubsetsize,tosubsetsize,tmpreg,sref);
  1331. end;
  1332. procedure thlcgobj.a_load_const_subsetref(list: TAsmlist; tosubsetsize: tdef; a: tcgint; const sref: tsubsetreference);
  1333. var
  1334. tmpreg: tregister;
  1335. slopt: tsubsetloadopt;
  1336. begin
  1337. { perform masking of the source value in advance }
  1338. slopt:=SL_REGNOSRCMASK;
  1339. if (sref.bitlen<>AIntBits) then
  1340. a:=tcgint(aword(a) and ((aword(1) shl sref.bitlen) -1));
  1341. if (
  1342. { broken x86 "x shl regbitsize = x" }
  1343. ((sref.bitlen<>AIntBits) and
  1344. ((aword(a) and ((aword(1) shl sref.bitlen)-1))=(aword(1) shl sref.bitlen)-1)) or
  1345. ((sref.bitlen=AIntBits) and
  1346. (a=-1))
  1347. ) then
  1348. slopt:=SL_SETMAX
  1349. else if (a=0) then
  1350. slopt:=SL_SETZERO;
  1351. if not(slopt in [SL_SETZERO,SL_SETMAX]) then
  1352. begin
  1353. tmpreg:=getintregister(list,tosubsetsize);
  1354. a_load_const_reg(list,tosubsetsize,a,tmpreg);
  1355. end
  1356. else
  1357. tmpreg:=NR_NO;
  1358. a_load_regconst_subsetref_intern(list,tosubsetsize,tosubsetsize,tmpreg,sref,slopt);
  1359. end;
  1360. procedure thlcgobj.a_load_subsetref_loc(list: TAsmlist; fromsubsetsize, tosize: tdef; const sref: tsubsetreference; const loc: tlocation);
  1361. begin
  1362. case loc.loc of
  1363. LOC_REFERENCE,LOC_CREFERENCE:
  1364. a_load_subsetref_ref(list,fromsubsetsize,tosize,sref,loc.reference);
  1365. LOC_REGISTER,LOC_CREGISTER:
  1366. a_load_subsetref_reg(list,fromsubsetsize,tosize,sref,loc.register);
  1367. LOC_SUBSETREG,LOC_CSUBSETREG:
  1368. a_load_subsetref_subsetreg(list,fromsubsetsize,tosize,sref,loc.sreg);
  1369. LOC_SUBSETREF,LOC_CSUBSETREF:
  1370. a_load_subsetref_subsetref(list,fromsubsetsize,tosize,sref,loc.sref);
  1371. else
  1372. internalerror(2010120407);
  1373. end;
  1374. end;
  1375. procedure thlcgobj.a_load_subsetref_subsetreg(list: TAsmlist; fromsubsetsize, tosubsetsize: tdef; const fromsref: tsubsetreference; const tosreg: tsubsetregister);
  1376. var
  1377. tmpreg: tregister;
  1378. begin
  1379. tmpreg:=getintregister(list,tosubsetsize);
  1380. a_load_subsetref_reg(list,fromsubsetsize,tosubsetsize,fromsref,tmpreg);
  1381. a_load_reg_subsetreg(list,tosubsetsize,tosubsetsize,tmpreg,tosreg);
  1382. end;
  1383. procedure thlcgobj.a_load_subsetreg_subsetref(list: TAsmlist; fromsubsetsize, tosubsetsize: tdef; const fromsreg: tsubsetregister; const tosref: tsubsetreference);
  1384. var
  1385. tmpreg: tregister;
  1386. begin
  1387. tmpreg := getintregister(list,tosubsetsize);
  1388. a_load_subsetreg_reg(list,fromsubsetsize,tosubsetsize,fromsreg,tmpreg);
  1389. a_load_reg_subsetref(list,tosubsetsize,tosubsetsize,tmpreg,tosref);
  1390. end;
  1391. procedure thlcgobj.a_bit_test_reg_reg_reg(list: TAsmList; bitnumbersize, valuesize, destsize: tdef; bitnumber, value, destreg: tregister);
  1392. var
  1393. tmpvalue: tregister;
  1394. begin
  1395. tmpvalue:=getintregister(list,valuesize);
  1396. if (target_info.endian=endian_little) then
  1397. begin
  1398. { rotate value register "bitnumber" bits to the right }
  1399. a_op_reg_reg_reg(list,OP_SHR,valuesize,bitnumber,value,tmpvalue);
  1400. { extract the bit we want }
  1401. a_op_const_reg(list,OP_AND,valuesize,1,tmpvalue);
  1402. end
  1403. else
  1404. begin
  1405. { highest (leftmost) bit = bit 0 -> shl bitnumber results in wanted }
  1406. { bit in uppermost position, then move it to the lowest position }
  1407. { "and" is not necessary since combination of shl/shr will clear }
  1408. { all other bits }
  1409. a_op_reg_reg_reg(list,OP_SHL,valuesize,bitnumber,value,tmpvalue);
  1410. a_op_const_reg(list,OP_SHR,valuesize,valuesize.size*8-1,tmpvalue);
  1411. end;
  1412. a_load_reg_reg(list,valuesize,destsize,tmpvalue,destreg);
  1413. end;
  1414. procedure thlcgobj.a_bit_test_const_ref_reg(list: TAsmList; fromsize, destsize: tdef; bitnumber: aint; const ref: treference; destreg: tregister);
  1415. begin
  1416. a_load_subsetref_reg(list,u8inttype,destsize,get_bit_const_ref_sref(bitnumber,fromsize,ref),destreg);
  1417. end;
  1418. procedure thlcgobj.a_bit_test_const_reg_reg(list: TAsmList; setregsize, destsize: tdef; bitnumber: aint; setreg, destreg: tregister);
  1419. begin
  1420. a_load_subsetreg_reg(list,setregsize,destsize,get_bit_const_reg_sreg(setregsize,bitnumber,setreg),destreg);
  1421. end;
  1422. procedure thlcgobj.a_bit_test_const_subsetreg_reg(list: TAsmList; fromsubsetsize, destsize: tdef; bitnumber: aint; const setreg: tsubsetregister; destreg: tregister);
  1423. var
  1424. tmpsreg: tsubsetregister;
  1425. begin
  1426. { the first parameter is used to calculate the bit offset in }
  1427. { case of big endian, and therefore must be the size of the }
  1428. { set and not of the whole subsetreg }
  1429. tmpsreg:=get_bit_const_reg_sreg(fromsubsetsize,bitnumber,setreg.subsetreg);
  1430. { now fix the size of the subsetreg }
  1431. tmpsreg.subsetregsize:=setreg.subsetregsize;
  1432. { correct offset of the set in the subsetreg }
  1433. inc(tmpsreg.startbit,setreg.startbit);
  1434. a_load_subsetreg_reg(list,fromsubsetsize,destsize,tmpsreg,destreg);
  1435. end;
  1436. procedure thlcgobj.a_bit_test_reg_ref_reg(list: TAsmList; bitnumbersize, refsize, destsize: tdef; bitnumber: tregister; const ref: treference; destreg: tregister);
  1437. begin
  1438. a_load_subsetref_reg(list,u8inttype,destsize,get_bit_reg_ref_sref(list,bitnumbersize,refsize,bitnumber,ref),destreg);
  1439. end;
  1440. procedure thlcgobj.a_bit_test_reg_loc_reg(list: TAsmList; bitnumbersize, locsize, destsize: tdef; bitnumber: tregister; const loc: tlocation; destreg: tregister);
  1441. var
  1442. tmpreg: tregister;
  1443. begin
  1444. case loc.loc of
  1445. LOC_REFERENCE,LOC_CREFERENCE:
  1446. a_bit_test_reg_ref_reg(list,bitnumbersize,locsize,destsize,bitnumber,loc.reference,destreg);
  1447. LOC_REGISTER,LOC_CREGISTER,
  1448. LOC_SUBSETREG,LOC_CSUBSETREG,
  1449. LOC_CONSTANT:
  1450. begin
  1451. case loc.loc of
  1452. LOC_REGISTER,LOC_CREGISTER:
  1453. tmpreg:=loc.register;
  1454. LOC_SUBSETREG,LOC_CSUBSETREG:
  1455. begin
  1456. tmpreg:=getintregister(list,locsize);
  1457. a_load_subsetreg_reg(list,locsize,locsize,loc.sreg,tmpreg);
  1458. end;
  1459. LOC_CONSTANT:
  1460. begin
  1461. tmpreg:=getintregister(list,locsize);
  1462. a_load_const_reg(list,locsize,loc.value,tmpreg);
  1463. end;
  1464. else
  1465. internalerror(2013112909);
  1466. end;
  1467. a_bit_test_reg_reg_reg(list,bitnumbersize,locsize,destsize,bitnumber,tmpreg,destreg);
  1468. end;
  1469. { LOC_SUBSETREF is not possible, because sets are not (yet) bitpacked }
  1470. else
  1471. internalerror(2010120411);
  1472. end;
  1473. end;
  1474. procedure thlcgobj.a_bit_test_const_loc_reg(list: TAsmList; locsize, destsize: tdef; bitnumber: aint; const loc: tlocation; destreg: tregister);
  1475. begin
  1476. case loc.loc of
  1477. LOC_REFERENCE,LOC_CREFERENCE:
  1478. a_bit_test_const_ref_reg(list,locsize,destsize,bitnumber,loc.reference,destreg);
  1479. LOC_REGISTER,LOC_CREGISTER:
  1480. a_bit_test_const_reg_reg(list,locsize,destsize,bitnumber,loc.register,destreg);
  1481. LOC_SUBSETREG,LOC_CSUBSETREG:
  1482. a_bit_test_const_subsetreg_reg(list,locsize,destsize,bitnumber,loc.sreg,destreg);
  1483. { LOC_SUBSETREF is not possible, because sets are not (yet) bitpacked }
  1484. else
  1485. internalerror(2010120410);
  1486. end;
  1487. end;
  1488. procedure thlcgobj.a_bit_set_reg_reg(list: TAsmList; doset: boolean; bitnumbersize, destsize: tdef; bitnumber, dest: tregister);
  1489. var
  1490. tmpvalue: tregister;
  1491. begin
  1492. tmpvalue:=getintregister(list,destsize);
  1493. if (target_info.endian=endian_little) then
  1494. begin
  1495. a_load_const_reg(list,destsize,1,tmpvalue);
  1496. { rotate bit "bitnumber" bits to the left }
  1497. a_op_reg_reg(list,OP_SHL,destsize,bitnumber,tmpvalue);
  1498. end
  1499. else
  1500. begin
  1501. { highest (leftmost) bit = bit 0 -> "$80/$8000/$80000000/ ... }
  1502. { shr bitnumber" results in correct mask }
  1503. a_load_const_reg(list,destsize,1 shl (destsize.size*8-1),tmpvalue);
  1504. a_op_reg_reg(list,OP_SHR,destsize,bitnumber,tmpvalue);
  1505. end;
  1506. { set/clear the bit we want }
  1507. if doset then
  1508. a_op_reg_reg(list,OP_OR,destsize,tmpvalue,dest)
  1509. else
  1510. begin
  1511. a_op_reg_reg(list,OP_NOT,destsize,tmpvalue,tmpvalue);
  1512. a_op_reg_reg(list,OP_AND,destsize,tmpvalue,dest)
  1513. end;
  1514. end;
  1515. procedure thlcgobj.a_bit_set_const_ref(list: TAsmList; doset: boolean; destsize: tdef; bitnumber: tcgint; const ref: treference);
  1516. begin
  1517. a_load_const_subsetref(list,u8inttype,ord(doset),get_bit_const_ref_sref(bitnumber,destsize,ref));
  1518. end;
  1519. procedure thlcgobj.a_bit_set_const_reg(list: TAsmList; doset: boolean; destsize: tdef; bitnumber: tcgint; destreg: tregister);
  1520. begin
  1521. a_load_const_subsetreg(list,u8inttype,ord(doset),get_bit_const_reg_sreg(destsize,bitnumber,destreg));
  1522. end;
  1523. procedure thlcgobj.a_bit_set_const_subsetreg(list: TAsmList; doset: boolean; destsize: tdef; bitnumber: tcgint; const destreg: tsubsetregister);
  1524. var
  1525. tmpsreg: tsubsetregister;
  1526. begin
  1527. { the first parameter is used to calculate the bit offset in }
  1528. { case of big endian, and therefore must be the size of the }
  1529. { set and not of the whole subsetreg }
  1530. tmpsreg:=get_bit_const_reg_sreg(destsize,bitnumber,destreg.subsetreg);
  1531. { now fix the size of the subsetreg }
  1532. tmpsreg.subsetregsize:=destreg.subsetregsize;
  1533. { correct offset of the set in the subsetreg }
  1534. inc(tmpsreg.startbit,destreg.startbit);
  1535. a_load_const_subsetreg(list,u8inttype,ord(doset),tmpsreg);
  1536. end;
  1537. procedure thlcgobj.a_bit_set_reg_ref(list: TAsmList; doset: boolean; fromsize, tosize: tdef; bitnumber: tregister; const ref: treference);
  1538. begin
  1539. a_load_const_subsetref(list,u8inttype,ord(doset),get_bit_reg_ref_sref(list,fromsize,tosize,bitnumber,ref));
  1540. end;
  1541. procedure thlcgobj.a_bit_set_reg_loc(list: TAsmList; doset: boolean; regsize, tosize: tdef; bitnumber: tregister; const loc: tlocation);
  1542. var
  1543. tmpreg: tregister;
  1544. begin
  1545. case loc.loc of
  1546. LOC_REFERENCE:
  1547. a_bit_set_reg_ref(list,doset,regsize,tosize,bitnumber,loc.reference);
  1548. LOC_CREGISTER:
  1549. a_bit_set_reg_reg(list,doset,regsize,tosize,bitnumber,loc.register);
  1550. { e.g. a 2-byte set in a record regvar }
  1551. LOC_CSUBSETREG:
  1552. begin
  1553. { hard to do in-place in a generic way, so operate on a copy }
  1554. tmpreg:=getintregister(list,tosize);
  1555. a_load_subsetreg_reg(list,tosize,tosize,loc.sreg,tmpreg);
  1556. a_bit_set_reg_reg(list,doset,regsize,tosize,bitnumber,tmpreg);
  1557. a_load_reg_subsetreg(list,tosize,tosize,tmpreg,loc.sreg);
  1558. end;
  1559. { LOC_SUBSETREF is not possible, because sets are not (yet) bitpacked }
  1560. else
  1561. internalerror(2010120408)
  1562. end;
  1563. end;
  1564. procedure thlcgobj.a_bit_set_const_loc(list: TAsmList; doset: boolean; tosize: tdef; bitnumber: tcgint; const loc: tlocation);
  1565. begin
  1566. case loc.loc of
  1567. LOC_REFERENCE:
  1568. a_bit_set_const_ref(list,doset,tosize,bitnumber,loc.reference);
  1569. LOC_CREGISTER:
  1570. a_bit_set_const_reg(list,doset,tosize,bitnumber,loc.register);
  1571. LOC_CSUBSETREG:
  1572. a_bit_set_const_subsetreg(list,doset,tosize,bitnumber,loc.sreg);
  1573. { LOC_SUBSETREF is not possible, because sets are not (yet) bitpacked }
  1574. else
  1575. internalerror(2010120409)
  1576. end;
  1577. end;
  1578. function thlcgobj.get_call_result_cgpara(pd: tabstractprocdef; forceresdef: tdef): tcgpara;
  1579. begin
  1580. if not assigned(forceresdef) then
  1581. begin
  1582. pd.init_paraloc_info(callerside);
  1583. result:=pd.funcretloc[callerside];
  1584. end
  1585. else
  1586. result:=paramanager.get_funcretloc(pd,callerside,forceresdef);
  1587. end;
  1588. (*
  1589. Subsetrefs are used for (bit)packed arrays and (bit)packed records stored
  1590. in memory. They are like a regular reference, but contain an extra bit
  1591. offset (either constant -startbit- or variable -bitindexreg-, always OS_INT)
  1592. and a bit length (always constant).
  1593. Bit packed values are stored differently in memory depending on whether we
  1594. are on a big or a little endian system (compatible with at least GPC). The
  1595. size of the basic working unit is always the smallest power-of-2 byte size
  1596. which can contain the bit value (so 1..8 bits -> 1 byte, 9..16 bits -> 2
  1597. bytes, 17..32 bits -> 4 bytes etc).
  1598. On a big endian, 5-bit: values are stored like this:
  1599. 11111222 22333334 44445555 56666677 77788888
  1600. The leftmost bit of each 5-bit value corresponds to the most significant
  1601. bit.
  1602. On little endian, it goes like this:
  1603. 22211111 43333322 55554444 77666665 88888777
  1604. In this case, per byte the left-most bit is more significant than those on
  1605. the right, but the bits in the next byte are all more significant than
  1606. those in the previous byte (e.g., the 222 in the first byte are the low
  1607. three bits of that value, while the 22 in the second byte are the upper
  1608. two bits.
  1609. Big endian, 9 bit values:
  1610. 11111111 12222222 22333333 33344444 ...
  1611. Little endian, 9 bit values:
  1612. 11111111 22222221 33333322 44444333 ...
  1613. This is memory representation and the 16 bit values are byteswapped.
  1614. Similarly as in the previous case, the 2222222 string contains the lower
  1615. bits of value 2 and the 22 string contains the upper bits. Once loaded into
  1616. registers (two 16 bit registers in the current implementation, although a
  1617. single 32 bit register would be possible too, in particular if 32 bit
  1618. alignment can be guaranteed), this becomes:
  1619. 22222221 11111111 44444333 33333322 ...
  1620. (l)ow u l l u l u
  1621. The startbit/bitindex in a subsetreference always refers to
  1622. a) on big endian: the most significant bit of the value
  1623. (bits counted from left to right, both memory an registers)
  1624. b) on little endian: the least significant bit when the value
  1625. is loaded in a register (bit counted from right to left)
  1626. Although a) results in more complex code for big endian systems, it's
  1627. needed for compatibility both with GPC and with e.g. bitpacked arrays in
  1628. Apple's universal interfaces which depend on these layout differences).
  1629. Note: when changing the loadsize calculated in get_subsetref_load_info,
  1630. make sure the appropriate alignment is guaranteed, at least in case of
  1631. {$defined cpurequiresproperalignment}.
  1632. *)
  1633. procedure thlcgobj.get_subsetref_load_info(const sref: tsubsetreference; out loadsize: torddef; out extra_load: boolean);
  1634. var
  1635. intloadsize: tcgint;
  1636. begin
  1637. intloadsize:=packedbitsloadsize(sref.bitlen);
  1638. if (intloadsize=0) then
  1639. internalerror(2006081310);
  1640. if (intloadsize>sizeof(aint)) then
  1641. intloadsize:=sizeof(aint);
  1642. loadsize:=cgsize_orddef(int_cgsize(intloadsize));
  1643. if (sref.bitlen>sizeof(aint)*8) then
  1644. internalerror(2006081312);
  1645. extra_load:=
  1646. (sref.bitlen<>1) and
  1647. ((sref.bitindexreg<>NR_NO) or
  1648. (byte(sref.startbit+sref.bitlen)>byte(intloadsize*8)));
  1649. end;
  1650. procedure thlcgobj.a_load_subsetref_regs_noindex(list: TAsmList; subsetsize: tdef; loadbitsize: byte; const sref: tsubsetreference; valuereg, extra_value_reg: tregister);
  1651. var
  1652. restbits: byte;
  1653. begin
  1654. if (target_info.endian=endian_big) then
  1655. begin
  1656. { valuereg contains the upper bits, extra_value_reg the lower }
  1657. restbits:=(sref.bitlen-(loadbitsize-sref.startbit));
  1658. if is_signed(subsetsize) then
  1659. begin
  1660. { sign extend }
  1661. a_op_const_reg(list,OP_SHL,osuinttype,AIntBits-loadbitsize+sref.startbit,valuereg);
  1662. a_op_const_reg(list,OP_SAR,osuinttype,AIntBits-sref.bitlen,valuereg);
  1663. end
  1664. else
  1665. begin
  1666. a_op_const_reg(list,OP_SHL,osuinttype,restbits,valuereg);
  1667. { mask other bits }
  1668. if (sref.bitlen<>AIntBits) then
  1669. a_op_const_reg(list,OP_AND,osuinttype,tcgint((aword(1) shl sref.bitlen)-1),valuereg);
  1670. end;
  1671. a_op_const_reg(list,OP_SHR,osuinttype,loadbitsize-restbits,extra_value_reg)
  1672. end
  1673. else
  1674. begin
  1675. { valuereg contains the lower bits, extra_value_reg the upper }
  1676. a_op_const_reg(list,OP_SHR,osuinttype,sref.startbit,valuereg);
  1677. if is_signed(subsetsize) then
  1678. begin
  1679. a_op_const_reg(list,OP_SHL,osuinttype,AIntBits-sref.bitlen+loadbitsize-sref.startbit,extra_value_reg);
  1680. a_op_const_reg(list,OP_SAR,osuinttype,AIntBits-sref.bitlen,extra_value_reg);
  1681. end
  1682. else
  1683. begin
  1684. a_op_const_reg(list,OP_SHL,osuinttype,loadbitsize-sref.startbit,extra_value_reg);
  1685. { mask other bits }
  1686. if (sref.bitlen <> AIntBits) then
  1687. a_op_const_reg(list,OP_AND,osuinttype,tcgint((aword(1) shl sref.bitlen)-1),extra_value_reg);
  1688. end;
  1689. end;
  1690. { merge }
  1691. a_op_reg_reg(list,OP_OR,osuinttype,extra_value_reg,valuereg);
  1692. end;
  1693. procedure thlcgobj.a_load_subsetref_regs_index(list: TAsmList; subsetsize: tdef; loadbitsize: byte; const sref: tsubsetreference; valuereg: tregister);
  1694. var
  1695. hl: tasmlabel;
  1696. tmpref: treference;
  1697. extra_value_reg,
  1698. tmpreg: tregister;
  1699. begin
  1700. tmpreg:=getintregister(list,osuinttype);
  1701. tmpref:=sref.ref;
  1702. inc(tmpref.offset,loadbitsize div 8);
  1703. extra_value_reg:=getintregister(list,osuinttype);
  1704. if (target_info.endian=endian_big) then
  1705. begin
  1706. { since this is a dynamic index, it's possible that the value }
  1707. { is entirely in valuereg. }
  1708. { get the data in valuereg in the right place }
  1709. a_op_reg_reg(list,OP_SHL,osuinttype,sref.bitindexreg,valuereg);
  1710. if is_signed(subsetsize) then
  1711. begin
  1712. a_op_const_reg(list,OP_SHL,osuinttype,AIntBits-loadbitsize,valuereg);
  1713. a_op_const_reg(list,OP_SAR,osuinttype,AIntBits-sref.bitlen,valuereg)
  1714. end
  1715. else
  1716. begin
  1717. a_op_const_reg(list,OP_SHR,osuinttype,loadbitsize-sref.bitlen,valuereg);
  1718. if (loadbitsize<>AIntBits) then
  1719. { mask left over bits }
  1720. a_op_const_reg(list,OP_AND,osuinttype,tcgint((aword(1) shl sref.bitlen)-1),valuereg);
  1721. end;
  1722. tmpreg := getintregister(list,osuinttype);
  1723. { ensure we don't load anything past the end of the array }
  1724. current_asmdata.getjumplabel(hl);
  1725. a_cmp_const_reg_label(list,osuinttype,OC_BE,loadbitsize-sref.bitlen,sref.bitindexreg,hl);
  1726. { the bits in extra_value_reg (if any) start at the most significant bit => }
  1727. { extra_value_reg must be shr by (loadbitsize-sref.bitlen)+(loadsize-sref.bitindex) }
  1728. { => = -(sref.bitindex+(sref.bitlen-2*loadbitsize)) }
  1729. a_op_const_reg_reg(list,OP_ADD,osuinttype,sref.bitlen-2*loadbitsize,sref.bitindexreg,tmpreg);
  1730. a_op_reg_reg(list,OP_NEG,osuinttype,tmpreg,tmpreg);
  1731. { load next "loadbitsize" bits of the array }
  1732. a_load_ref_reg(list,cgsize_orddef(int_cgsize(loadbitsize div 8)),osuinttype,tmpref,extra_value_reg);
  1733. a_op_reg_reg(list,OP_SHR,osuinttype,tmpreg,extra_value_reg);
  1734. { if there are no bits in extra_value_reg, then sref.bitindex was }
  1735. { < loadsize-sref.bitlen, and therefore tmpreg will now be >= loadsize }
  1736. { => extra_value_reg is now 0 }
  1737. { merge }
  1738. a_op_reg_reg(list,OP_OR,osuinttype,extra_value_reg,valuereg);
  1739. { no need to mask, necessary masking happened earlier on }
  1740. a_label(list,hl);
  1741. end
  1742. else
  1743. begin
  1744. a_op_reg_reg(list,OP_SHR,osuinttype,sref.bitindexreg,valuereg);
  1745. { ensure we don't load anything past the end of the array }
  1746. current_asmdata.getjumplabel(hl);
  1747. a_cmp_const_reg_label(list,osuinttype,OC_BE,loadbitsize-sref.bitlen,sref.bitindexreg,hl);
  1748. { Y-x = -(Y-x) }
  1749. a_op_const_reg_reg(list,OP_SUB,osuinttype,loadbitsize,sref.bitindexreg,tmpreg);
  1750. a_op_reg_reg(list,OP_NEG,osuinttype,tmpreg,tmpreg);
  1751. { load next "loadbitsize" bits of the array }
  1752. a_load_ref_reg(list,cgsize_orddef(int_cgsize(loadbitsize div 8)),osuinttype,tmpref,extra_value_reg);
  1753. { tmpreg is in the range 1..<cpu_bitsize>-1 -> always ok }
  1754. a_op_reg_reg(list,OP_SHL,osuinttype,tmpreg,extra_value_reg);
  1755. { merge }
  1756. a_op_reg_reg(list,OP_OR,osuinttype,extra_value_reg,valuereg);
  1757. a_label(list,hl);
  1758. { sign extend or mask other bits }
  1759. if is_signed(subsetsize) then
  1760. begin
  1761. a_op_const_reg(list,OP_SHL,osuinttype,AIntBits-sref.bitlen,valuereg);
  1762. a_op_const_reg(list,OP_SAR,osuinttype,AIntBits-sref.bitlen,valuereg);
  1763. end
  1764. else
  1765. a_op_const_reg(list,OP_AND,osuinttype,tcgint((aword(1) shl sref.bitlen)-1),valuereg);
  1766. end;
  1767. end;
  1768. procedure thlcgobj.a_load_regconst_subsetref_intern(list: TAsmList; fromsize, subsetsize: tdef; fromreg: tregister; const sref: tsubsetreference; slopt: tsubsetloadopt);
  1769. var
  1770. hl: tasmlabel;
  1771. tmpreg, tmpindexreg, valuereg, extra_value_reg, maskreg: tregister;
  1772. tosreg, fromsreg: tsubsetregister;
  1773. tmpref: treference;
  1774. bitmask: aword;
  1775. loadsize: torddef;
  1776. loadbitsize: byte;
  1777. extra_load: boolean;
  1778. begin
  1779. { the register must be able to contain the requested value }
  1780. if (fromsize.size*8<sref.bitlen) then
  1781. internalerror(2006081613);
  1782. get_subsetref_load_info(sref,loadsize,extra_load);
  1783. loadbitsize:=loadsize.size*8;
  1784. { load the (first part) of the bit sequence }
  1785. valuereg:=getintregister(list,osuinttype);
  1786. a_load_ref_reg(list,loadsize,osuinttype,sref.ref,valuereg);
  1787. { constant offset of bit sequence? }
  1788. if not extra_load then
  1789. begin
  1790. if (sref.bitindexreg=NR_NO) then
  1791. begin
  1792. { use subsetreg routine, it may have been overridden with an optimized version }
  1793. tosreg.subsetreg:=valuereg;
  1794. tosreg.subsetregsize:=def_cgsize(osuinttype);
  1795. { subsetregs always count bits from right to left }
  1796. if (target_info.endian=endian_big) then
  1797. tosreg.startbit:=loadbitsize-(sref.startbit+sref.bitlen)
  1798. else
  1799. tosreg.startbit:=sref.startbit;
  1800. tosreg.bitlen:=sref.bitlen;
  1801. a_load_regconst_subsetreg_intern(list,fromsize,subsetsize,fromreg,tosreg,slopt);
  1802. end
  1803. else
  1804. begin
  1805. if (sref.startbit<>0) then
  1806. internalerror(2006081710);
  1807. { should be handled by normal code and will give wrong result }
  1808. { on x86 for the '1 shl bitlen' below }
  1809. if (sref.bitlen=AIntBits) then
  1810. internalerror(2006081711);
  1811. { zero the bits we have to insert }
  1812. if (slopt<>SL_SETMAX) then
  1813. begin
  1814. maskreg:=getintregister(list,osuinttype);
  1815. if (target_info.endian = endian_big) then
  1816. begin
  1817. a_load_const_reg(list,osuinttype,tcgint((aword(1) shl sref.bitlen)-1) shl (loadbitsize-sref.bitlen),maskreg);
  1818. a_op_reg_reg(list,OP_SHR,osuinttype,sref.bitindexreg,maskreg);
  1819. end
  1820. else
  1821. begin
  1822. a_load_const_reg(list,osuinttype,tcgint((aword(1) shl sref.bitlen)-1),maskreg);
  1823. a_op_reg_reg(list,OP_SHL,osuinttype,sref.bitindexreg,maskreg);
  1824. end;
  1825. a_op_reg_reg(list,OP_NOT,osuinttype,maskreg,maskreg);
  1826. a_op_reg_reg(list,OP_AND,osuinttype,maskreg,valuereg);
  1827. end;
  1828. { insert the value }
  1829. if (slopt<>SL_SETZERO) then
  1830. begin
  1831. tmpreg:=getintregister(list,osuinttype);
  1832. if (slopt<>SL_SETMAX) then
  1833. a_load_reg_reg(list,fromsize,osuinttype,fromreg,tmpreg)
  1834. else if (sref.bitlen<>AIntBits) then
  1835. a_load_const_reg(list,osuinttype,tcgint((aword(1) shl sref.bitlen)-1), tmpreg)
  1836. else
  1837. a_load_const_reg(list,osuinttype,-1,tmpreg);
  1838. if (target_info.endian=endian_big) then
  1839. begin
  1840. a_op_const_reg(list,OP_SHL,osuinttype,loadbitsize-sref.bitlen,tmpreg);
  1841. if not(slopt in [SL_REGNOSRCMASK,SL_SETMAX]) then
  1842. begin
  1843. if (loadbitsize<>AIntBits) then
  1844. bitmask:=(((aword(1) shl loadbitsize)-1) xor ((aword(1) shl (loadbitsize-sref.bitlen))-1))
  1845. else
  1846. bitmask:=(high(aword) xor ((aword(1) shl (loadbitsize-sref.bitlen))-1));
  1847. a_op_const_reg(list,OP_AND,osuinttype,bitmask,tmpreg);
  1848. end;
  1849. a_op_reg_reg(list,OP_SHR,osuinttype,sref.bitindexreg,tmpreg);
  1850. end
  1851. else
  1852. begin
  1853. if not(slopt in [SL_REGNOSRCMASK,SL_SETMAX]) then
  1854. a_op_const_reg(list,OP_AND,osuinttype,tcgint((aword(1) shl sref.bitlen)-1),tmpreg);
  1855. a_op_reg_reg(list,OP_SHL,osuinttype,sref.bitindexreg,tmpreg);
  1856. end;
  1857. a_op_reg_reg(list,OP_OR,osuinttype,tmpreg,valuereg);
  1858. end;
  1859. end;
  1860. { store back to memory }
  1861. tmpreg:=getintregister(list,loadsize);
  1862. a_load_reg_reg(list,osuinttype,loadsize,valuereg,tmpreg);
  1863. a_load_reg_ref(list,loadsize,loadsize,tmpreg,sref.ref);
  1864. exit;
  1865. end
  1866. else
  1867. begin
  1868. { load next value }
  1869. extra_value_reg:=getintregister(list,osuinttype);
  1870. tmpref:=sref.ref;
  1871. inc(tmpref.offset,loadbitsize div 8);
  1872. { should maybe be taken out too, can be done more efficiently }
  1873. { on e.g. i386 with shld/shrd }
  1874. if (sref.bitindexreg = NR_NO) then
  1875. begin
  1876. a_load_ref_reg(list,loadsize,osuinttype,tmpref,extra_value_reg);
  1877. fromsreg.subsetreg:=fromreg;
  1878. fromsreg.subsetregsize:=def_cgsize(fromsize);
  1879. tosreg.subsetreg:=valuereg;
  1880. tosreg.subsetregsize:=def_cgsize(osuinttype);
  1881. { transfer first part }
  1882. fromsreg.bitlen:=loadbitsize-sref.startbit;
  1883. tosreg.bitlen:=fromsreg.bitlen;
  1884. if (target_info.endian=endian_big) then
  1885. begin
  1886. { valuereg must contain the upper bits of the value at bits [0..loadbitsize-startbit] }
  1887. { upper bits of the value ... }
  1888. fromsreg.startbit:=sref.bitlen-(loadbitsize-sref.startbit);
  1889. { ... to bit 0 }
  1890. tosreg.startbit:=0
  1891. end
  1892. else
  1893. begin
  1894. { valuereg must contain the lower bits of the value at bits [startbit..loadbitsize] }
  1895. { lower bits of the value ... }
  1896. fromsreg.startbit:=0;
  1897. { ... to startbit }
  1898. tosreg.startbit:=sref.startbit;
  1899. end;
  1900. case slopt of
  1901. SL_SETZERO,
  1902. SL_SETMAX:
  1903. a_load_regconst_subsetreg_intern(list,fromsize,subsetsize,fromreg,tosreg,slopt);
  1904. else
  1905. a_load_subsetreg_subsetreg(list,subsetsize,subsetsize,fromsreg,tosreg);
  1906. end;
  1907. {$ifndef cpuhighleveltarget}
  1908. valuereg:=cg.makeregsize(list,valuereg,def_cgsize(loadsize));
  1909. a_load_reg_ref(list,loadsize,loadsize,valuereg,sref.ref);
  1910. {$else}
  1911. tmpreg:=getintregister(list,loadsize);
  1912. a_load_reg_reg(list,osuinttype,loadsize,valuereg,tmpreg);
  1913. a_load_reg_ref(list,loadsize,loadsize,tmpreg,sref.ref);
  1914. {$endif}
  1915. { transfer second part }
  1916. if (target_info.endian = endian_big) then
  1917. begin
  1918. { extra_value_reg must contain the lower bits of the value at bits }
  1919. { [(loadbitsize-(bitlen-(loadbitsize-startbit)))..loadbitsize] }
  1920. { (loadbitsize-(bitlen-(loadbitsize-startbit))) = 2*loadbitsize }
  1921. { - bitlen - startbit }
  1922. fromsreg.startbit:=0;
  1923. tosreg.startbit:=2*loadbitsize-sref.bitlen-sref.startbit
  1924. end
  1925. else
  1926. begin
  1927. { extra_value_reg must contain the upper bits of the value at bits [0..bitlen-(loadbitsize-startbit)] }
  1928. fromsreg.startbit:=fromsreg.bitlen;
  1929. tosreg.startbit:=0;
  1930. end;
  1931. tosreg.subsetreg:=extra_value_reg;
  1932. fromsreg.bitlen:=sref.bitlen-fromsreg.bitlen;
  1933. tosreg.bitlen:=fromsreg.bitlen;
  1934. case slopt of
  1935. SL_SETZERO,
  1936. SL_SETMAX:
  1937. a_load_regconst_subsetreg_intern(list,fromsize,subsetsize,fromreg,tosreg,slopt);
  1938. else
  1939. a_load_subsetreg_subsetreg(list,subsetsize,subsetsize,fromsreg,tosreg);
  1940. end;
  1941. tmpreg:=getintregister(list,loadsize);
  1942. a_load_reg_reg(list,osuinttype,loadsize,extra_value_reg,tmpreg);
  1943. a_load_reg_ref(list,loadsize,loadsize,tmpreg,tmpref);
  1944. exit;
  1945. end
  1946. else
  1947. begin
  1948. if (sref.startbit <> 0) then
  1949. internalerror(2006081812);
  1950. { should be handled by normal code and will give wrong result }
  1951. { on x86 for the '1 shl bitlen' below }
  1952. if (sref.bitlen = AIntBits) then
  1953. internalerror(2006081713);
  1954. { generate mask to zero the bits we have to insert }
  1955. if (slopt <> SL_SETMAX) then
  1956. begin
  1957. maskreg := getintregister(list,osuinttype);
  1958. if (target_info.endian = endian_big) then
  1959. begin
  1960. a_load_const_reg(list,osuinttype,tcgint(((aword(1) shl sref.bitlen)-1) shl (loadbitsize-sref.bitlen)),maskreg);
  1961. a_op_reg_reg(list,OP_SHR,osuinttype,sref.bitindexreg,maskreg);
  1962. end
  1963. else
  1964. begin
  1965. a_load_const_reg(list,osuinttype,tcgint((aword(1) shl sref.bitlen)-1),maskreg);
  1966. a_op_reg_reg(list,OP_SHL,osuinttype,sref.bitindexreg,maskreg);
  1967. end;
  1968. a_op_reg_reg(list,OP_NOT,osuinttype,maskreg,maskreg);
  1969. a_op_reg_reg(list,OP_AND,osuinttype,maskreg,valuereg);
  1970. end;
  1971. { insert the value }
  1972. if (slopt <> SL_SETZERO) then
  1973. begin
  1974. tmpreg := getintregister(list,osuinttype);
  1975. if (slopt <> SL_SETMAX) then
  1976. a_load_reg_reg(list,fromsize,osuinttype,fromreg,tmpreg)
  1977. else if (sref.bitlen <> AIntBits) then
  1978. a_load_const_reg(list,osuinttype,tcgint((aword(1) shl sref.bitlen) - 1), tmpreg)
  1979. else
  1980. a_load_const_reg(list,osuinttype,-1,tmpreg);
  1981. if (target_info.endian = endian_big) then
  1982. begin
  1983. a_op_const_reg(list,OP_SHL,osuinttype,loadbitsize-sref.bitlen,tmpreg);
  1984. if not(slopt in [SL_REGNOSRCMASK,SL_SETMAX]) then
  1985. { mask left over bits }
  1986. a_op_const_reg(list,OP_AND,osuinttype,tcgint(((aword(1) shl sref.bitlen)-1) shl (loadbitsize-sref.bitlen)),tmpreg);
  1987. a_op_reg_reg(list,OP_SHR,osuinttype,sref.bitindexreg,tmpreg);
  1988. end
  1989. else
  1990. begin
  1991. if not(slopt in [SL_REGNOSRCMASK,SL_SETMAX]) then
  1992. { mask left over bits }
  1993. a_op_const_reg(list,OP_AND,osuinttype,tcgint((aword(1) shl sref.bitlen)-1),tmpreg);
  1994. a_op_reg_reg(list,OP_SHL,osuinttype,sref.bitindexreg,tmpreg);
  1995. end;
  1996. a_op_reg_reg(list,OP_OR,osuinttype,tmpreg,valuereg);
  1997. end;
  1998. tmpreg:=getintregister(list,loadsize);
  1999. a_load_reg_reg(list,osuinttype,loadsize,valuereg,tmpreg);
  2000. a_load_reg_ref(list,loadsize,loadsize,tmpreg,sref.ref);
  2001. { make sure we do not read/write past the end of the array }
  2002. current_asmdata.getjumplabel(hl);
  2003. a_cmp_const_reg_label(list,osuinttype,OC_BE,loadbitsize-sref.bitlen,sref.bitindexreg,hl);
  2004. a_load_ref_reg(list,loadsize,osuinttype,tmpref,extra_value_reg);
  2005. tmpindexreg:=getintregister(list,osuinttype);
  2006. { load current array value }
  2007. if (slopt<>SL_SETZERO) then
  2008. begin
  2009. tmpreg:=getintregister(list,osuinttype);
  2010. if (slopt<>SL_SETMAX) then
  2011. a_load_reg_reg(list,fromsize,osuinttype,fromreg,tmpreg)
  2012. else if (sref.bitlen<>AIntBits) then
  2013. a_load_const_reg(list,osuinttype,tcgint((aword(1) shl sref.bitlen) - 1), tmpreg)
  2014. else
  2015. a_load_const_reg(list,osuinttype,-1,tmpreg);
  2016. end;
  2017. { generate mask to zero the bits we have to insert }
  2018. if (slopt<>SL_SETMAX) then
  2019. begin
  2020. maskreg:=getintregister(list,osuinttype);
  2021. if (target_info.endian=endian_big) then
  2022. begin
  2023. a_op_const_reg_reg(list,OP_ADD,osuinttype,sref.bitlen-2*loadbitsize,sref.bitindexreg,tmpindexreg);
  2024. a_op_reg_reg(list,OP_NEG,osuinttype,tmpindexreg,tmpindexreg);
  2025. a_load_const_reg(list,osuinttype,tcgint((aword(1) shl sref.bitlen)-1),maskreg);
  2026. a_op_reg_reg(list,OP_SHL,osuinttype,tmpindexreg,maskreg);
  2027. end
  2028. else
  2029. begin
  2030. { Y-x = -(x-Y) }
  2031. a_op_const_reg_reg(list,OP_SUB,osuinttype,loadbitsize,sref.bitindexreg,tmpindexreg);
  2032. a_op_reg_reg(list,OP_NEG,osuinttype,tmpindexreg,tmpindexreg);
  2033. a_load_const_reg(list,osuinttype,tcgint((aword(1) shl sref.bitlen)-1),maskreg);
  2034. a_op_reg_reg(list,OP_SHR,osuinttype,tmpindexreg,maskreg);
  2035. end;
  2036. a_op_reg_reg(list,OP_NOT,osuinttype,maskreg,maskreg);
  2037. a_op_reg_reg(list,OP_AND,osuinttype,maskreg,extra_value_reg);
  2038. end;
  2039. if (slopt<>SL_SETZERO) then
  2040. begin
  2041. if (target_info.endian=endian_big) then
  2042. a_op_reg_reg(list,OP_SHL,osuinttype,tmpindexreg,tmpreg)
  2043. else
  2044. begin
  2045. if not(slopt in [SL_REGNOSRCMASK,SL_SETMAX]) then
  2046. a_op_const_reg(list,OP_AND,osuinttype,tcgint((aword(1) shl sref.bitlen)-1),tmpreg);
  2047. a_op_reg_reg(list,OP_SHR,osuinttype,tmpindexreg,tmpreg);
  2048. end;
  2049. a_op_reg_reg(list,OP_OR,osuinttype,tmpreg,extra_value_reg);
  2050. end;
  2051. {$ifndef cpuhighleveltarget}
  2052. extra_value_reg:=cg.makeregsize(list,extra_value_reg,def_cgsize(loadsize));
  2053. a_load_reg_ref(list,loadsize,loadsize,extra_value_reg,tmpref);
  2054. {$else}
  2055. tmpreg:=getintregister(list,loadsize);
  2056. a_load_reg_reg(list,osuinttype,loadsize,extra_value_reg,tmpreg);
  2057. a_load_reg_ref(list,loadsize,loadsize,tmpreg,tmpref);
  2058. {$endif}
  2059. a_label(list,hl);
  2060. end;
  2061. end;
  2062. end;
  2063. procedure thlcgobj.a_load_regconst_subsetreg_intern(list: TAsmList; fromsize, subsetsize: tdef; fromreg: tregister; const sreg: tsubsetregister; slopt: tsubsetloadopt);
  2064. var
  2065. bitmask: aword;
  2066. tmpreg: tregister;
  2067. subsetregdef: torddef;
  2068. stopbit: byte;
  2069. begin
  2070. tmpreg:=NR_NO;
  2071. subsetregdef:=cgsize_orddef(sreg.subsetregsize);
  2072. stopbit:=sreg.startbit+sreg.bitlen;
  2073. // on x86(64), 1 shl 32(64) = 1 instead of 0
  2074. if (stopbit<>AIntBits) then
  2075. bitmask:=not(((aword(1) shl stopbit)-1) xor ((aword(1) shl sreg.startbit)-1))
  2076. else
  2077. bitmask:=not(high(aword) xor ((aword(1) shl sreg.startbit)-1));
  2078. if not(slopt in [SL_SETZERO,SL_SETMAX]) then
  2079. begin
  2080. tmpreg:=getintregister(list,subsetregdef);
  2081. a_load_reg_reg(list,fromsize,subsetregdef,fromreg,tmpreg);
  2082. a_op_const_reg(list,OP_SHL,subsetregdef,sreg.startbit,tmpreg);
  2083. if (slopt<>SL_REGNOSRCMASK) then
  2084. a_op_const_reg(list,OP_AND,subsetregdef,tcgint(not(bitmask)),tmpreg);
  2085. end;
  2086. if (slopt<>SL_SETMAX) and
  2087. { the "and" is not needed if the whole register is modified (except for SL_SETZERO),
  2088. because later on we do a move in this case instead of an or }
  2089. ((sreg.bitlen<>AIntBits) or (slopt=SL_SETZERO)) then
  2090. a_op_const_reg(list,OP_AND,subsetregdef,tcgint(bitmask),sreg.subsetreg);
  2091. case slopt of
  2092. SL_SETZERO : ;
  2093. SL_SETMAX :
  2094. if (sreg.bitlen<>AIntBits) then
  2095. a_op_const_reg(list,OP_OR,subsetregdef,
  2096. tcgint(((aword(1) shl sreg.bitlen)-1) shl sreg.startbit),
  2097. sreg.subsetreg)
  2098. else
  2099. a_load_const_reg(list,subsetregdef,-1,sreg.subsetreg);
  2100. { if the whole register is modified, no "or" is needed }
  2101. else if sreg.bitlen=AIntBits then
  2102. a_load_reg_reg(list,subsetregdef,subsetregdef,tmpreg,sreg.subsetreg)
  2103. else
  2104. a_op_reg_reg(list,OP_OR,subsetregdef,tmpreg,sreg.subsetreg)
  2105. end;
  2106. end;
  2107. {$pop}
  2108. function thlcgobj.get_bit_const_ref_sref(bitnumber: tcgint; refdef: tdef; const ref: treference): tsubsetreference;
  2109. begin
  2110. result.ref:=ref;
  2111. inc(result.ref.offset,bitnumber div 8);
  2112. result.bitindexreg:=NR_NO;
  2113. result.startbit:=bitnumber mod 8;
  2114. result.bitlen:=1;
  2115. end;
  2116. function thlcgobj.get_bit_const_reg_sreg(setregsize: tdef; bitnumber: tcgint; setreg: tregister): tsubsetregister;
  2117. begin
  2118. result.subsetreg:=setreg;
  2119. result.subsetregsize:=def_cgsize(setregsize);
  2120. { subsetregs always count from the least significant to the most significant bit }
  2121. if (target_info.endian=endian_big) then
  2122. result.startbit:=(setregsize.size*8)-bitnumber-1
  2123. else
  2124. result.startbit:=bitnumber;
  2125. result.bitlen:=1;
  2126. end;
  2127. function thlcgobj.get_bit_reg_ref_sref(list: TAsmList; bitnumbersize, refsize: tdef; bitnumber: tregister; const ref: treference): tsubsetreference;
  2128. var
  2129. tmpreg: tregister;
  2130. begin
  2131. result.ref:=ref;
  2132. result.startbit:=0;
  2133. result.bitlen:=1;
  2134. tmpreg:=getintregister(list,ptruinttype);
  2135. a_load_reg_reg(list,bitnumbersize,ptruinttype,bitnumber,tmpreg);
  2136. a_op_const_reg(list,OP_SHR,ptruinttype,3,tmpreg);
  2137. { don't assign to ref.base, that one is for pointers and this is an index
  2138. (important for platforms like LLVM) }
  2139. if (result.ref.index=NR_NO) then
  2140. result.ref.index:=tmpreg
  2141. else
  2142. begin
  2143. a_op_reg_reg(list,OP_ADD,ptruinttype,result.ref.index,tmpreg);
  2144. result.ref.index:=tmpreg;
  2145. end;
  2146. tmpreg:=getintregister(list,ptruinttype);
  2147. a_load_reg_reg(list,bitnumbersize,ptruinttype,bitnumber,tmpreg);
  2148. a_op_const_reg(list,OP_AND,ptruinttype,7,tmpreg);
  2149. result.bitindexreg:=tmpreg;
  2150. end;
  2151. procedure thlcgobj.a_loadfpu_ref_ref(list: TAsmList; fromsize, tosize: tdef; const ref1, ref2: treference);
  2152. var
  2153. reg: tregister;
  2154. regsize: tdef;
  2155. begin
  2156. if (fromsize.size>=tosize.size) then
  2157. regsize:=fromsize
  2158. else
  2159. regsize:=tosize;
  2160. reg:=getfpuregister(list,regsize);
  2161. a_loadfpu_ref_reg(list,fromsize,regsize,ref1,reg);
  2162. a_loadfpu_reg_ref(list,regsize,tosize,reg,ref2);
  2163. end;
  2164. procedure thlcgobj.a_loadfpu_loc_reg(list: TAsmList; fromsize, tosize: tdef; const loc: tlocation; const reg: tregister);
  2165. begin
  2166. case loc.loc of
  2167. LOC_REFERENCE, LOC_CREFERENCE:
  2168. a_loadfpu_ref_reg(list,fromsize,tosize,loc.reference,reg);
  2169. LOC_FPUREGISTER, LOC_CFPUREGISTER:
  2170. a_loadfpu_reg_reg(list,fromsize,tosize,loc.register,reg);
  2171. else
  2172. internalerror(2010120412);
  2173. end;
  2174. end;
  2175. procedure thlcgobj.a_loadfpu_loc_ref(list: TAsmList; fromsize, tosize: tdef; const loc: tlocation; const ref: treference);
  2176. var
  2177. reg: tregister;
  2178. begin
  2179. case loc.loc of
  2180. LOC_REFERENCE, LOC_CREFERENCE:
  2181. begin
  2182. reg:=getfpuregister(list,tosize);
  2183. a_loadfpu_ref_reg(list,fromsize,tosize,loc.reference,reg);
  2184. a_loadfpu_reg_ref(list,tosize,tosize,reg,ref);
  2185. end;
  2186. LOC_FPUREGISTER, LOC_CFPUREGISTER:
  2187. begin
  2188. a_loadfpu_reg_ref(list,fromsize,tosize,loc.register,ref);
  2189. end;
  2190. else
  2191. internalerror(2014080802);
  2192. end;
  2193. end;
  2194. procedure thlcgobj.a_loadfpu_reg_loc(list: TAsmList; fromsize, tosize: tdef; const reg: tregister; const loc: tlocation);
  2195. begin
  2196. case loc.loc of
  2197. LOC_REFERENCE, LOC_CREFERENCE:
  2198. a_loadfpu_reg_ref(list,fromsize,tosize,reg,loc.reference);
  2199. LOC_FPUREGISTER, LOC_CFPUREGISTER:
  2200. a_loadfpu_reg_reg(list,fromsize,tosize,reg,loc.register);
  2201. else
  2202. internalerror(2010120413);
  2203. end;
  2204. end;
  2205. procedure thlcgobj.a_loadfpu_reg_cgpara(list: TAsmList; fromsize: tdef; const r: tregister; const cgpara: TCGPara);
  2206. var
  2207. ref : treference;
  2208. begin
  2209. paramanager.alloccgpara(list,cgpara);
  2210. case cgpara.location^.loc of
  2211. LOC_FPUREGISTER,LOC_CFPUREGISTER:
  2212. begin
  2213. cgpara.check_simple_location;
  2214. a_loadfpu_reg_reg(list,fromsize,cgpara.def,r,cgpara.location^.register);
  2215. end;
  2216. LOC_REFERENCE,LOC_CREFERENCE:
  2217. begin
  2218. cgpara.check_simple_location;
  2219. reference_reset_base(ref,voidstackpointertype,cgpara.location^.reference.index,cgpara.location^.reference.offset,cgpara.alignment);
  2220. a_loadfpu_reg_ref(list,fromsize,cgpara.def,r,ref);
  2221. end;
  2222. LOC_REGISTER,LOC_CREGISTER:
  2223. begin
  2224. { paramfpu_ref does the check_simpe_location check here if necessary }
  2225. tg.gethltemp(list,fromsize,fromsize.size,tt_normal,ref);
  2226. a_loadfpu_reg_ref(list,fromsize,fromsize,r,ref);
  2227. a_loadfpu_ref_cgpara(list,fromsize,ref,cgpara);
  2228. tg.Ungettemp(list,ref);
  2229. end;
  2230. else
  2231. internalerror(2010120422);
  2232. end;
  2233. end;
  2234. procedure thlcgobj.a_loadfpu_ref_cgpara(list: TAsmList; fromsize: tdef; const ref: treference; const cgpara: TCGPara);
  2235. var
  2236. hreg : tregister;
  2237. href : treference;
  2238. intptrdef: tdef;
  2239. begin
  2240. case cgpara.location^.loc of
  2241. LOC_FPUREGISTER,LOC_CFPUREGISTER:
  2242. begin
  2243. cgpara.check_simple_location;
  2244. paramanager.alloccgpara(list,cgpara);
  2245. a_loadfpu_ref_reg(list,fromsize,cgpara.def,ref,cgpara.location^.register);
  2246. end;
  2247. LOC_REFERENCE,LOC_CREFERENCE:
  2248. begin
  2249. cgpara.check_simple_location;
  2250. reference_reset_base(href,voidstackpointertype,cgpara.location^.reference.index,cgpara.location^.reference.offset,cgpara.alignment);
  2251. { concatcopy should choose the best way to copy the data }
  2252. g_concatcopy(list,fromsize,ref,href);
  2253. end;
  2254. LOC_REGISTER,LOC_CREGISTER:
  2255. begin
  2256. cgpara.check_simple_location;
  2257. if fromsize.size<>cgpara.location^.def.size then
  2258. internalerror(2014080603);
  2259. { convert the reference from a floating point location to an
  2260. integer location, and load that }
  2261. intptrdef:=getpointerdef(cgpara.location^.def);
  2262. hreg:=getaddressregister(list,intptrdef);
  2263. a_loadaddr_ref_reg(list,fromsize,intptrdef,ref,hreg);
  2264. reference_reset_base(href,intptrdef,hreg,0,ref.alignment);
  2265. a_load_ref_cgpara(list,cgpara.location^.def,ref,cgpara);
  2266. end
  2267. else
  2268. internalerror(2010120423);
  2269. end;
  2270. end;
  2271. procedure thlcgobj.a_loadmm_ref_ref(list: TAsmList; fromsize, tosize: tdef; const fromref, toref: treference; shuffle: pmmshuffle);
  2272. var
  2273. reg: tregister;
  2274. begin
  2275. reg:=getmmregister(list,tosize);
  2276. a_loadmm_ref_reg(list,fromsize,tosize,fromref,reg,shuffle);
  2277. a_loadmm_reg_ref(list,tosize,tosize,reg,toref,shuffle);
  2278. end;
  2279. procedure thlcgobj.a_loadmm_loc_reg(list: TAsmList; fromsize, tosize: tdef; const loc: tlocation; const reg: tregister; shuffle: pmmshuffle);
  2280. var
  2281. tmpreg: tregister;
  2282. begin
  2283. case loc.loc of
  2284. LOC_MMREGISTER,LOC_CMMREGISTER:
  2285. a_loadmm_reg_reg(list,fromsize,tosize,loc.register,reg,shuffle);
  2286. LOC_REFERENCE,LOC_CREFERENCE:
  2287. a_loadmm_ref_reg(list,fromsize,tosize,loc.reference,reg,shuffle);
  2288. LOC_REGISTER,LOC_CREGISTER:
  2289. a_loadmm_intreg_reg(list,fromsize,tosize,loc.register,reg,shuffle);
  2290. LOC_SUBSETREG,LOC_CSUBSETREG,
  2291. LOC_SUBSETREF,LOC_CSUBSETREF:
  2292. begin
  2293. tmpreg:=getintregister(list,fromsize);
  2294. a_load_loc_reg(list,fromsize,fromsize,loc,tmpreg);
  2295. a_loadmm_intreg_reg(list,fromsize,tosize,tmpreg,reg,shuffle);
  2296. end
  2297. else
  2298. internalerror(2010120414);
  2299. end;
  2300. end;
  2301. procedure thlcgobj.a_loadmm_reg_loc(list: TAsmList; fromsize, tosize: tdef; const reg: tregister; const loc: tlocation; shuffle: pmmshuffle);
  2302. begin
  2303. case loc.loc of
  2304. LOC_MMREGISTER,LOC_CMMREGISTER:
  2305. a_loadmm_reg_reg(list,fromsize,tosize,reg,loc.register,shuffle);
  2306. LOC_REFERENCE,LOC_CREFERENCE:
  2307. a_loadmm_reg_ref(list,fromsize,tosize,reg,loc.reference,shuffle);
  2308. else
  2309. internalerror(2010120415);
  2310. end;
  2311. end;
  2312. procedure thlcgobj.a_loadmm_loc_ref(list: TAsmList; fromsize, tosize: tdef; const loc: tlocation; const ref: treference; shuffle: pmmshuffle);
  2313. var
  2314. intreg, reg: tregister;
  2315. begin
  2316. case loc.loc of
  2317. LOC_MMREGISTER,LOC_CMMREGISTER:
  2318. a_loadmm_reg_ref(list,fromsize,tosize,loc.register,ref,shuffle);
  2319. LOC_REFERENCE,LOC_CREFERENCE:
  2320. begin
  2321. reg:=getmmregister(list,tosize);
  2322. a_loadmm_ref_reg(list,fromsize,tosize,loc.reference,reg,shuffle);
  2323. a_loadmm_reg_ref(list,tosize,tosize,reg,ref,shuffle);
  2324. end;
  2325. LOC_REGISTER,LOC_CREGISTER:
  2326. begin
  2327. reg:=getmmregister(list,tosize);
  2328. a_loadmm_intreg_reg(list,fromsize,tosize,loc.register,reg,shuffle);
  2329. a_loadmm_reg_ref(list,tosize,tosize,reg,ref,shuffle);
  2330. end;
  2331. LOC_SUBSETREG,LOC_CSUBSETREG,
  2332. LOC_SUBSETREF,LOC_CSUBSETREF:
  2333. begin
  2334. intreg:=getintregister(list,fromsize);
  2335. reg:=getmmregister(list,tosize);
  2336. a_load_loc_reg(list,fromsize,fromsize,loc,intreg);
  2337. a_loadmm_intreg_reg(list,fromsize,tosize,intreg,reg,shuffle);
  2338. a_loadmm_reg_ref(list,tosize,tosize,reg,ref,shuffle);
  2339. end
  2340. else
  2341. internalerror(2014080803);
  2342. end;
  2343. end;
  2344. procedure thlcgobj.a_loadmm_reg_cgpara(list: TAsmList; fromsize: tdef; reg: tregister; const cgpara: TCGPara; shuffle: pmmshuffle);
  2345. var
  2346. href : treference;
  2347. begin
  2348. cgpara.check_simple_location;
  2349. paramanager.alloccgpara(list,cgpara);
  2350. case cgpara.location^.loc of
  2351. LOC_MMREGISTER,LOC_CMMREGISTER:
  2352. a_loadmm_reg_reg(list,fromsize,cgpara.def,reg,cgpara.location^.register,shuffle);
  2353. LOC_REFERENCE,LOC_CREFERENCE:
  2354. begin
  2355. reference_reset_base(href,voidstackpointertype,cgpara.location^.reference.index,cgpara.location^.reference.offset,cgpara.alignment);
  2356. a_loadmm_reg_ref(list,fromsize,cgpara.def,reg,href,shuffle);
  2357. end;
  2358. LOC_REGISTER,LOC_CREGISTER:
  2359. begin
  2360. if assigned(shuffle) and
  2361. not shufflescalar(shuffle) then
  2362. internalerror(2012071205);
  2363. a_loadmm_reg_intreg(list,fromsize,cgpara.def,reg,cgpara.location^.register,mms_movescalar);
  2364. end
  2365. else
  2366. internalerror(2012071204);
  2367. end;
  2368. end;
  2369. procedure thlcgobj.a_loadmm_ref_cgpara(list: TAsmList; fromsize: tdef; const ref: treference; const cgpara: TCGPara; shuffle: pmmshuffle);
  2370. var
  2371. hr : tregister;
  2372. hs : tmmshuffle;
  2373. begin
  2374. cgpara.check_simple_location;
  2375. hr:=getmmregister(list,cgpara.def);
  2376. a_loadmm_ref_reg(list,fromsize,cgpara.def,ref,hr,shuffle);
  2377. if realshuffle(shuffle) then
  2378. begin
  2379. hs:=shuffle^;
  2380. removeshuffles(hs);
  2381. a_loadmm_reg_cgpara(list,cgpara.def,hr,cgpara,@hs);
  2382. end
  2383. else
  2384. a_loadmm_reg_cgpara(list,cgpara.def,hr,cgpara,shuffle);
  2385. end;
  2386. procedure thlcgobj.a_loadmm_loc_cgpara(list: TAsmList; fromsize: tdef; const loc: tlocation; const cgpara: TCGPara; shuffle: pmmshuffle);
  2387. begin
  2388. {$ifdef extdebug}
  2389. if def_cgsize(fromsize)<>loc.size then
  2390. internalerror(2012071203);
  2391. {$endif}
  2392. case loc.loc of
  2393. LOC_MMREGISTER,LOC_CMMREGISTER:
  2394. a_loadmm_reg_cgpara(list,fromsize,loc.register,cgpara,shuffle);
  2395. LOC_REFERENCE,LOC_CREFERENCE:
  2396. a_loadmm_ref_cgpara(list,fromsize,loc.reference,cgpara,shuffle);
  2397. else
  2398. internalerror(2012071202);
  2399. end;
  2400. end;
  2401. procedure thlcgobj.a_opmm_ref_reg(list: TAsmList; Op: TOpCG; size: tdef; const ref: treference; reg: tregister; shuffle: pmmshuffle);
  2402. var
  2403. hr : tregister;
  2404. hs : tmmshuffle;
  2405. begin
  2406. hr:=getmmregister(list,size);
  2407. a_loadmm_ref_reg(list,size,size,ref,hr,shuffle);
  2408. if realshuffle(shuffle) then
  2409. begin
  2410. hs:=shuffle^;
  2411. removeshuffles(hs);
  2412. a_opmm_reg_reg(list,op,size,hr,reg,@hs);
  2413. end
  2414. else
  2415. a_opmm_reg_reg(list,op,size,hr,reg,shuffle);
  2416. end;
  2417. procedure thlcgobj.a_opmm_loc_reg(list: TAsmList; Op: TOpCG; size: tdef; const loc: tlocation; reg: tregister; shuffle: pmmshuffle);
  2418. begin
  2419. case loc.loc of
  2420. LOC_CMMREGISTER,LOC_MMREGISTER:
  2421. a_opmm_reg_reg(list,op,size,loc.register,reg,shuffle);
  2422. LOC_CREFERENCE,LOC_REFERENCE:
  2423. a_opmm_ref_reg(list,op,size,loc.reference,reg,shuffle);
  2424. else
  2425. internalerror(2012071201);
  2426. end;
  2427. end;
  2428. procedure thlcgobj.a_opmm_reg_ref(list: TAsmList; Op: TOpCG; size: tdef; reg: tregister; const ref: treference; shuffle: pmmshuffle);
  2429. var
  2430. hr : tregister;
  2431. hs : tmmshuffle;
  2432. begin
  2433. hr:=getmmregister(list,size);
  2434. a_loadmm_ref_reg(list,size,size,ref,hr,shuffle);
  2435. if realshuffle(shuffle) then
  2436. begin
  2437. hs:=shuffle^;
  2438. removeshuffles(hs);
  2439. a_opmm_reg_reg(list,op,size,reg,hr,@hs);
  2440. a_loadmm_reg_ref(list,size,size,hr,ref,@hs);
  2441. end
  2442. else
  2443. begin
  2444. a_opmm_reg_reg(list,op,size,reg,hr,shuffle);
  2445. a_loadmm_reg_ref(list,size,size,hr,ref,shuffle);
  2446. end;
  2447. end;
  2448. (*
  2449. procedure thlcgobj.a_loadmm_intreg_reg(list: TAsmList; fromsize, tosize: tdef; intreg, mmreg: tregister; shuffle: pmmshuffle);
  2450. begin
  2451. cg.a_loadmm_intreg_reg(list,def_cgsize(fromsize),def_cgsize(tosize),intreg,mmreg,shuffle);
  2452. end;
  2453. procedure thlcgobj.a_loadmm_reg_intreg(list: TAsmList; fromsize, tosize: tdef; mmreg, intreg: tregister; shuffle: pmmshuffle);
  2454. begin
  2455. cg.a_loadmm_reg_intreg(list,def_cgsize(fromsize),def_cgsize(tosize),mmreg,intreg,shuffle);
  2456. end;
  2457. *)
  2458. procedure thlcgobj.a_op_const_ref(list: TAsmList; Op: TOpCG; size: tdef; a: tcgint; const ref: TReference);
  2459. var
  2460. tmpreg : tregister;
  2461. begin
  2462. tmpreg:=getintregister(list,size);
  2463. a_load_ref_reg(list,size,size,ref,tmpreg);
  2464. a_op_const_reg(list,op,size,a,tmpreg);
  2465. a_load_reg_ref(list,size,size,tmpreg,ref);
  2466. end;
  2467. procedure thlcgobj.a_op_const_subsetreg(list: TAsmList; Op: TOpCG; size, subsetsize: tdef; a: tcgint; const sreg: tsubsetregister);
  2468. var
  2469. tmpreg: tregister;
  2470. begin
  2471. tmpreg:=getintregister(list,size);
  2472. a_load_subsetreg_reg(list,subsetsize,size,sreg,tmpreg);
  2473. a_op_const_reg(list,op,size,a,tmpreg);
  2474. a_load_reg_subsetreg(list,size,subsetsize,tmpreg,sreg);
  2475. end;
  2476. procedure thlcgobj.a_op_const_subsetref(list: TAsmList; Op: TOpCG; size, subsetsize: tdef; a: tcgint; const sref: tsubsetreference);
  2477. var
  2478. tmpreg: tregister;
  2479. begin
  2480. tmpreg:=getintregister(list,size);
  2481. a_load_subsetref_reg(list,subsetsize,size,sref,tmpreg);
  2482. a_op_const_reg(list,op,size,a,tmpreg);
  2483. a_load_reg_subsetref(list,size,subsetsize,tmpreg,sref);
  2484. end;
  2485. procedure thlcgobj.a_op_const_loc(list: TAsmList; Op: TOpCG; size: tdef; a: tcgint; const loc: tlocation);
  2486. begin
  2487. case loc.loc of
  2488. LOC_REGISTER, LOC_CREGISTER:
  2489. a_op_const_reg(list,op,size,a,loc.register);
  2490. LOC_REFERENCE, LOC_CREFERENCE:
  2491. a_op_const_ref(list,op,size,a,loc.reference);
  2492. LOC_SUBSETREG, LOC_CSUBSETREG:
  2493. a_op_const_subsetreg(list,op,size,size,a,loc.sreg);
  2494. LOC_SUBSETREF, LOC_CSUBSETREF:
  2495. a_op_const_subsetref(list,op,size,size,a,loc.sref);
  2496. else
  2497. internalerror(2010120428);
  2498. end;
  2499. end;
  2500. procedure thlcgobj.a_op_reg_ref(list: TAsmList; Op: TOpCG; size: tdef; reg: TRegister; const ref: TReference);
  2501. var
  2502. tmpreg: tregister;
  2503. begin
  2504. tmpreg:=getintregister(list,size);
  2505. a_load_ref_reg(list,size,size,ref,tmpreg);
  2506. case op of
  2507. OP_NOT,OP_NEG:
  2508. begin
  2509. a_op_reg_reg(list,op,size,tmpreg,tmpreg);
  2510. end;
  2511. else
  2512. begin
  2513. a_op_reg_reg(list,op,size,reg,tmpreg);
  2514. end;
  2515. end;
  2516. a_load_reg_ref(list,size,size,tmpreg,ref);
  2517. end;
  2518. procedure thlcgobj.a_op_ref_reg(list: TAsmList; Op: TOpCG; size: tdef; const ref: TReference; reg: TRegister);
  2519. var
  2520. tmpreg: tregister;
  2521. begin
  2522. case op of
  2523. OP_NOT,OP_NEG:
  2524. { handle it as "load ref,reg; op reg" }
  2525. begin
  2526. a_load_ref_reg(list,size,size,ref,reg);
  2527. a_op_reg_reg(list,op,size,reg,reg);
  2528. end;
  2529. else
  2530. begin
  2531. tmpreg:=getintregister(list,size);
  2532. a_load_ref_reg(list,size,size,ref,tmpreg);
  2533. a_op_reg_reg(list,op,size,tmpreg,reg);
  2534. end;
  2535. end;
  2536. end;
  2537. procedure thlcgobj.a_op_reg_subsetreg(list: TAsmList; Op: TOpCG; opsize, destsubsetsize: tdef; reg: TRegister; const sreg: tsubsetregister);
  2538. var
  2539. tmpreg: tregister;
  2540. begin
  2541. tmpreg:=getintregister(list,opsize);
  2542. a_load_subsetreg_reg(list,destsubsetsize,opsize,sreg,tmpreg);
  2543. a_op_reg_reg(list,op,opsize,reg,tmpreg);
  2544. a_load_reg_subsetreg(list,opsize,destsubsetsize,tmpreg,sreg);
  2545. end;
  2546. procedure thlcgobj.a_op_reg_subsetref(list: TAsmList; Op: TOpCG; opsize, destsubsetsize: tdef; reg: TRegister; const sref: tsubsetreference);
  2547. var
  2548. tmpreg: tregister;
  2549. begin
  2550. tmpreg:=getintregister(list,opsize);
  2551. a_load_subsetref_reg(list,destsubsetsize,opsize,sref,tmpreg);
  2552. a_op_reg_reg(list,op,opsize,reg,tmpreg);
  2553. a_load_reg_subsetref(list,opsize,destsubsetsize,tmpreg,sref);
  2554. end;
  2555. procedure thlcgobj.a_op_reg_loc(list: TAsmList; Op: TOpCG; size: tdef; reg: tregister; const loc: tlocation);
  2556. begin
  2557. case loc.loc of
  2558. LOC_REGISTER, LOC_CREGISTER:
  2559. a_op_reg_reg(list,op,size,reg,loc.register);
  2560. LOC_REFERENCE, LOC_CREFERENCE:
  2561. a_op_reg_ref(list,op,size,reg,loc.reference);
  2562. LOC_SUBSETREG, LOC_CSUBSETREG:
  2563. a_op_reg_subsetreg(list,op,size,size,reg,loc.sreg);
  2564. LOC_SUBSETREF, LOC_CSUBSETREF:
  2565. a_op_reg_subsetref(list,op,size,size,reg,loc.sref);
  2566. else
  2567. internalerror(2010120429);
  2568. end;
  2569. end;
  2570. procedure thlcgobj.a_op_ref_loc(list: TAsmList; Op: TOpCG; size: tdef; const ref: TReference; const loc: tlocation);
  2571. var
  2572. tmpreg: tregister;
  2573. begin
  2574. case loc.loc of
  2575. LOC_REGISTER,LOC_CREGISTER:
  2576. a_op_ref_reg(list,op,size,ref,loc.register);
  2577. LOC_REFERENCE,LOC_CREFERENCE:
  2578. begin
  2579. tmpreg:=getintregister(list,size);
  2580. a_load_ref_reg(list,size,size,ref,tmpreg);
  2581. a_op_reg_ref(list,op,size,tmpreg,loc.reference);
  2582. end;
  2583. LOC_SUBSETREG, LOC_CSUBSETREG:
  2584. begin
  2585. tmpreg:=getintregister(list,size);
  2586. a_load_subsetreg_reg(list,size,size,loc.sreg,tmpreg);
  2587. a_op_ref_reg(list,op,size,ref,tmpreg);
  2588. a_load_reg_subsetreg(list,size,size,tmpreg,loc.sreg);
  2589. end;
  2590. LOC_SUBSETREF, LOC_CSUBSETREF:
  2591. begin
  2592. tmpreg:=getintregister(list,size);
  2593. a_load_subsetref_reg(list,size,size,loc.sref,tmpreg);
  2594. a_op_ref_reg(list,op,size,ref,tmpreg);
  2595. a_load_reg_subsetref(list,size,size,tmpreg,loc.sref);
  2596. end;
  2597. else
  2598. internalerror(2010120429);
  2599. end;
  2600. end;
  2601. procedure thlcgobj.a_op_const_reg_reg(list: TAsmList; op: TOpCg; size: tdef; a: tcgint; src, dst: tregister);
  2602. begin
  2603. a_load_reg_reg(list,size,size,src,dst);
  2604. a_op_const_reg(list,op,size,a,dst);
  2605. end;
  2606. procedure thlcgobj.a_op_reg_reg_reg(list: TAsmList; op: TOpCg; size: tdef; src1, src2, dst: tregister);
  2607. var
  2608. tmpreg: tregister;
  2609. begin
  2610. if (dst<>src1) then
  2611. begin
  2612. a_load_reg_reg(list,size,size,src2,dst);
  2613. a_op_reg_reg(list,op,size,src1,dst);
  2614. end
  2615. else
  2616. begin
  2617. { can we do a direct operation on the target register ? }
  2618. if op in [OP_ADD,OP_MUL,OP_AND,OP_MOVE,OP_XOR,OP_IMUL,OP_OR] then
  2619. a_op_reg_reg(list,op,size,src2,dst)
  2620. else
  2621. begin
  2622. tmpreg:=getintregister(list,size);
  2623. a_load_reg_reg(list,size,size,src2,tmpreg);
  2624. a_op_reg_reg(list,op,size,src1,tmpreg);
  2625. a_load_reg_reg(list,size,size,tmpreg,dst);
  2626. end;
  2627. end;
  2628. end;
  2629. procedure thlcgobj.a_op_const_reg_reg_checkoverflow(list: TAsmList; op: TOpCg; size: tdef; a: tcgint; src, dst: tregister; setflags: boolean; var ovloc: tlocation);
  2630. begin
  2631. ovloc.loc:=LOC_VOID;
  2632. if not setflags then
  2633. a_op_const_reg_reg(list,op,size,a,src,dst)
  2634. else
  2635. internalerror(2010122910);
  2636. end;
  2637. procedure thlcgobj.a_op_reg_reg_reg_checkoverflow(list: TAsmList; op: TOpCg; size: tdef; src1, src2, dst: tregister; setflags: boolean; var ovloc: tlocation);
  2638. begin
  2639. ovloc.loc:=LOC_VOID;
  2640. if not setflags then
  2641. a_op_reg_reg_reg(list,op,size,src1,src2,dst)
  2642. else
  2643. internalerror(2010122911);
  2644. end;
  2645. procedure thlcgobj.a_cmp_const_reg_label(list: TAsmList; size: tdef; cmp_op: topcmp; a: tcgint; reg: tregister; l: tasmlabel);
  2646. var
  2647. tmpreg: tregister;
  2648. begin
  2649. tmpreg:=getregisterfordef(list,size);
  2650. a_load_const_reg(list,size,a,tmpreg);
  2651. a_cmp_reg_reg_label(list,size,cmp_op,tmpreg,reg,l);
  2652. end;
  2653. procedure thlcgobj.a_cmp_const_ref_label(list: TAsmList; size: tdef; cmp_op: topcmp; a: tcgint; const ref: treference; l: tasmlabel);
  2654. var
  2655. tmpreg: tregister;
  2656. begin
  2657. tmpreg:=getregisterfordef(list,size);
  2658. a_load_ref_reg(list,size,size,ref,tmpreg);
  2659. a_cmp_const_reg_label(list,size,cmp_op,a,tmpreg,l);
  2660. end;
  2661. procedure thlcgobj.a_cmp_const_loc_label(list: TAsmList; size: tdef; cmp_op: topcmp; a: tcgint; const loc: tlocation; l: tasmlabel);
  2662. var
  2663. tmpreg: tregister;
  2664. begin
  2665. case loc.loc of
  2666. LOC_REGISTER,LOC_CREGISTER:
  2667. a_cmp_const_reg_label(list,size,cmp_op,a,loc.register,l);
  2668. LOC_REFERENCE,LOC_CREFERENCE:
  2669. a_cmp_const_ref_label(list,size,cmp_op,a,loc.reference,l);
  2670. LOC_SUBSETREG, LOC_CSUBSETREG:
  2671. begin
  2672. tmpreg:=getintregister(list,size);
  2673. a_load_subsetreg_reg(list,size,size,loc.sreg,tmpreg);
  2674. a_cmp_const_reg_label(list,size,cmp_op,a,tmpreg,l);
  2675. end;
  2676. LOC_SUBSETREF, LOC_CSUBSETREF:
  2677. begin
  2678. tmpreg:=getintregister(list,size);
  2679. a_load_subsetref_reg(list,size,size,loc.sref,tmpreg);
  2680. a_cmp_const_reg_label(list,size,cmp_op,a,tmpreg,l);
  2681. end;
  2682. else
  2683. internalerror(2010120430);
  2684. end;
  2685. end;
  2686. procedure thlcgobj.a_cmp_ref_reg_label(list: TAsmList; size: tdef; cmp_op: topcmp; const ref: treference; reg: tregister; l: tasmlabel);
  2687. var
  2688. tmpreg: tregister;
  2689. begin
  2690. tmpreg:=getintregister(list,size);
  2691. a_load_ref_reg(list,size,size,ref,tmpreg);
  2692. a_cmp_reg_reg_label(list,size,cmp_op,tmpreg,reg,l);
  2693. end;
  2694. procedure thlcgobj.a_cmp_reg_ref_label(list: TAsmList; size: tdef; cmp_op: topcmp; reg: tregister; const ref: treference; l: tasmlabel);
  2695. var
  2696. tmpreg: tregister;
  2697. begin
  2698. tmpreg:=getintregister(list,size);
  2699. a_load_ref_reg(list,size,size,ref,tmpreg);
  2700. a_cmp_reg_reg_label(list,size,cmp_op,reg,tmpreg,l);
  2701. end;
  2702. procedure thlcgobj.a_cmp_subsetreg_reg_label(list: TAsmList; fromsubsetsize, cmpsize: tdef; cmp_op: topcmp; const sreg: tsubsetregister; reg: tregister; l: tasmlabel);
  2703. var
  2704. tmpreg: tregister;
  2705. begin
  2706. tmpreg:=getintregister(list,cmpsize);
  2707. a_load_subsetreg_reg(list,fromsubsetsize,cmpsize,sreg,tmpreg);
  2708. a_cmp_reg_reg_label(list,cmpsize,cmp_op,tmpreg,reg,l);
  2709. end;
  2710. procedure thlcgobj.a_cmp_subsetref_reg_label(list: TAsmList; fromsubsetsize, cmpsize: tdef; cmp_op: topcmp; const sref: tsubsetreference; reg: tregister; l: tasmlabel);
  2711. var
  2712. tmpreg: tregister;
  2713. begin
  2714. tmpreg:=getintregister(list,cmpsize);
  2715. a_load_subsetref_reg(list,fromsubsetsize,cmpsize,sref,tmpreg);
  2716. a_cmp_reg_reg_label(list,cmpsize,cmp_op,tmpreg,reg,l);
  2717. end;
  2718. procedure thlcgobj.a_cmp_loc_reg_label(list: TAsmList; size: tdef; cmp_op: topcmp; const loc: tlocation; reg: tregister; l: tasmlabel);
  2719. begin
  2720. case loc.loc of
  2721. LOC_REGISTER,
  2722. LOC_CREGISTER:
  2723. a_cmp_reg_reg_label(list,size,cmp_op,loc.register,reg,l);
  2724. LOC_REFERENCE,
  2725. LOC_CREFERENCE :
  2726. a_cmp_ref_reg_label(list,size,cmp_op,loc.reference,reg,l);
  2727. LOC_CONSTANT:
  2728. a_cmp_const_reg_label(list,size,cmp_op,loc.value,reg,l);
  2729. LOC_SUBSETREG,
  2730. LOC_CSUBSETREG:
  2731. a_cmp_subsetreg_reg_label(list,size,size,cmp_op,loc.sreg,reg,l);
  2732. LOC_SUBSETREF,
  2733. LOC_CSUBSETREF:
  2734. a_cmp_subsetref_reg_label(list,size,size,cmp_op,loc.sref,reg,l);
  2735. else
  2736. internalerror(2010120431);
  2737. end;
  2738. end;
  2739. procedure thlcgobj.a_cmp_reg_loc_label(list: TAsmList; size: tdef; cmp_op: topcmp; reg: tregister; const loc: tlocation; l: tasmlabel);
  2740. begin
  2741. a_cmp_loc_reg_label(list,size,swap_opcmp(cmp_op),loc,reg,l);
  2742. end;
  2743. procedure thlcgobj.a_cmp_ref_loc_label(list: TAsmList; size: tdef; cmp_op: topcmp; const ref: treference; const loc: tlocation; l: tasmlabel);
  2744. var
  2745. tmpreg: tregister;
  2746. begin
  2747. case loc.loc of
  2748. LOC_REGISTER,LOC_CREGISTER:
  2749. a_cmp_ref_reg_label(list,size,cmp_op,ref,loc.register,l);
  2750. LOC_REFERENCE,LOC_CREFERENCE:
  2751. begin
  2752. tmpreg:=getintregister(list,size);
  2753. a_load_ref_reg(list,size,size,loc.reference,tmpreg);
  2754. a_cmp_ref_reg_label(list,size,cmp_op,ref,tmpreg,l);
  2755. end;
  2756. LOC_CONSTANT:
  2757. begin
  2758. a_cmp_const_ref_label(list,size,swap_opcmp(cmp_op),loc.value,ref,l);
  2759. end;
  2760. LOC_SUBSETREG, LOC_CSUBSETREG:
  2761. begin
  2762. tmpreg:=getintregister(list,size);
  2763. a_load_ref_reg(list,size,size,loc.reference,tmpreg);
  2764. a_cmp_subsetreg_reg_label(list,size,size,swap_opcmp(cmp_op),loc.sreg,tmpreg,l);
  2765. end;
  2766. LOC_SUBSETREF, LOC_CSUBSETREF:
  2767. begin
  2768. tmpreg:=getintregister(list,size);
  2769. a_load_ref_reg(list,size,size,loc.reference,tmpreg);
  2770. a_cmp_subsetref_reg_label(list,size,size,swap_opcmp(cmp_op),loc.sref,tmpreg,l);
  2771. end;
  2772. else
  2773. internalerror(2010120432);
  2774. end;
  2775. end;
  2776. procedure thlcgobj.g_exception_reason_save(list: TAsmList; fromsize, tosize: tdef; reg: tregister; const href: treference);
  2777. begin
  2778. a_load_reg_ref(list,fromsize,tosize,reg,href);
  2779. end;
  2780. procedure thlcgobj.g_exception_reason_save_const(list: TAsmList; size: tdef; a: tcgint; const href: treference);
  2781. begin
  2782. a_load_const_ref(list,size,a,href);
  2783. end;
  2784. procedure thlcgobj.g_exception_reason_load(list: TAsmList; fromsize, tosize: tdef; const href: treference; reg: tregister);
  2785. begin
  2786. a_load_ref_reg(list,fromsize,tosize,href,reg);
  2787. end;
  2788. procedure thlcgobj.g_exception_reason_discard(list: TAsmList; size: tdef; href: treference);
  2789. begin
  2790. { do nothing by default }
  2791. end;
  2792. procedure thlcgobj.g_maybe_testself(list: TAsmList; selftype: tdef; reg: tregister);
  2793. var
  2794. OKLabel : tasmlabel;
  2795. cgpara1 : TCGPara;
  2796. pd : tprocdef;
  2797. begin
  2798. if (cs_check_object in current_settings.localswitches) or
  2799. (cs_check_range in current_settings.localswitches) then
  2800. begin
  2801. pd:=search_system_proc('fpc_handleerror');
  2802. current_asmdata.getjumplabel(oklabel);
  2803. a_cmp_const_reg_label(list,selftype,OC_NE,0,reg,oklabel);
  2804. cgpara1.init;
  2805. paramanager.getintparaloc(pd,1,cgpara1);
  2806. a_load_const_cgpara(list,s32inttype,aint(210),cgpara1);
  2807. paramanager.freecgpara(list,cgpara1);
  2808. g_call_system_proc(list,pd,[@cgpara1],nil);
  2809. cgpara1.done;
  2810. a_label(list,oklabel);
  2811. end;
  2812. end;
  2813. procedure thlcgobj.g_concatcopy(list: TAsmList; size: tdef; const source, dest: treference);
  2814. begin
  2815. if use_vectorfpu(size) then
  2816. a_loadmm_ref_ref(list,size,size,source,dest,mms_movescalar)
  2817. else if size.typ<>floatdef then
  2818. a_load_ref_ref(list,size,size,source,dest)
  2819. else
  2820. a_loadfpu_ref_ref(list,size,size,source,dest);
  2821. end;
  2822. procedure thlcgobj.g_concatcopy_unaligned(list: TAsmList; size: tdef; const source, dest: treference);
  2823. begin
  2824. g_concatcopy(list,size,source,dest);
  2825. end;
  2826. procedure thlcgobj.g_copyshortstring(list: TAsmList; const source, dest: treference; strdef: tstringdef);
  2827. var
  2828. cgpara1,cgpara2,cgpara3 : TCGPara;
  2829. pd : tprocdef;
  2830. begin
  2831. pd:=search_system_proc('fpc_shortstr_to_shortstr');
  2832. cgpara1.init;
  2833. cgpara2.init;
  2834. cgpara3.init;
  2835. paramanager.getintparaloc(pd,1,cgpara1);
  2836. paramanager.getintparaloc(pd,2,cgpara2);
  2837. paramanager.getintparaloc(pd,3,cgpara3);
  2838. if pd.is_pushleftright then
  2839. begin
  2840. a_loadaddr_ref_cgpara(list,strdef,dest,cgpara1);
  2841. a_load_const_cgpara(list,s32inttype,strdef.len,cgpara2);
  2842. a_loadaddr_ref_cgpara(list,strdef,source,cgpara3);
  2843. end
  2844. else
  2845. begin
  2846. a_loadaddr_ref_cgpara(list,strdef,source,cgpara3);
  2847. a_load_const_cgpara(list,s32inttype,strdef.len,cgpara2);
  2848. a_loadaddr_ref_cgpara(list,strdef,dest,cgpara1);
  2849. end;
  2850. paramanager.freecgpara(list,cgpara3);
  2851. paramanager.freecgpara(list,cgpara2);
  2852. paramanager.freecgpara(list,cgpara1);
  2853. g_call_system_proc(list,pd,[@cgpara1,@cgpara2,@cgpara3],nil);
  2854. cgpara3.done;
  2855. cgpara2.done;
  2856. cgpara1.done;
  2857. end;
  2858. procedure thlcgobj.g_copyvariant(list: TAsmList; const source, dest: treference; vardef: tvariantdef);
  2859. var
  2860. cgpara1,cgpara2 : TCGPara;
  2861. pd : tprocdef;
  2862. begin
  2863. pd:=search_system_proc('fpc_variant_copy_overwrite');
  2864. cgpara1.init;
  2865. cgpara2.init;
  2866. paramanager.getintparaloc(pd,1,cgpara1);
  2867. paramanager.getintparaloc(pd,2,cgpara2);
  2868. if pd.is_pushleftright then
  2869. begin
  2870. a_loadaddr_ref_cgpara(list,vardef,source,cgpara1);
  2871. a_loadaddr_ref_cgpara(list,vardef,dest,cgpara2);
  2872. end
  2873. else
  2874. begin
  2875. a_loadaddr_ref_cgpara(list,vardef,dest,cgpara2);
  2876. a_loadaddr_ref_cgpara(list,vardef,source,cgpara1);
  2877. end;
  2878. paramanager.freecgpara(list,cgpara2);
  2879. paramanager.freecgpara(list,cgpara1);
  2880. g_call_system_proc(list,pd,[@cgpara1,@cgpara2],nil);
  2881. cgpara2.done;
  2882. cgpara1.done;
  2883. end;
  2884. procedure thlcgobj.g_incrrefcount(list: TAsmList; t: tdef; const ref: treference);
  2885. var
  2886. href : treference;
  2887. incrfunc : string;
  2888. cgpara1,cgpara2 : TCGPara;
  2889. pd : tprocdef;
  2890. begin
  2891. cgpara1.init;
  2892. cgpara2.init;
  2893. if is_interfacecom_or_dispinterface(t) then
  2894. incrfunc:='fpc_intf_incr_ref'
  2895. else if is_ansistring(t) then
  2896. incrfunc:='fpc_ansistr_incr_ref'
  2897. else if is_widestring(t) then
  2898. incrfunc:='fpc_widestr_incr_ref'
  2899. else if is_unicodestring(t) then
  2900. incrfunc:='fpc_unicodestr_incr_ref'
  2901. else if is_dynamic_array(t) then
  2902. incrfunc:='fpc_dynarray_incr_ref'
  2903. else
  2904. incrfunc:='';
  2905. { call the special incr function or the generic addref }
  2906. if incrfunc<>'' then
  2907. begin
  2908. pd:=search_system_proc(incrfunc);
  2909. paramanager.getintparaloc(pd,1,cgpara1);
  2910. { widestrings aren't ref. counted on all platforms so we need the address
  2911. to create a real copy }
  2912. if is_widestring(t) then
  2913. a_loadaddr_ref_cgpara(list,t,ref,cgpara1)
  2914. else
  2915. { these functions get the pointer by value }
  2916. a_load_ref_cgpara(list,t,ref,cgpara1);
  2917. paramanager.freecgpara(list,cgpara1);
  2918. g_call_system_proc(list,pd,[@cgpara1],nil);
  2919. end
  2920. else
  2921. begin
  2922. pd:=search_system_proc('fpc_addref');
  2923. paramanager.getintparaloc(pd,1,cgpara1);
  2924. paramanager.getintparaloc(pd,2,cgpara2);
  2925. if is_open_array(t) then
  2926. InternalError(201103054);
  2927. reference_reset_symbol(href,RTTIWriter.get_rtti_label(t,initrtti),0,sizeof(pint));
  2928. if pd.is_pushleftright then
  2929. begin
  2930. a_loadaddr_ref_cgpara(list,t,ref,cgpara1);
  2931. a_loadaddr_ref_cgpara(list,voidpointertype,href,cgpara2);
  2932. end
  2933. else
  2934. begin
  2935. a_loadaddr_ref_cgpara(list,voidpointertype,href,cgpara2);
  2936. a_loadaddr_ref_cgpara(list,t,ref,cgpara1);
  2937. end;
  2938. paramanager.freecgpara(list,cgpara1);
  2939. paramanager.freecgpara(list,cgpara2);
  2940. g_call_system_proc(list,pd,[@cgpara1,@cgpara2],nil);
  2941. end;
  2942. cgpara2.done;
  2943. cgpara1.done;
  2944. end;
  2945. procedure thlcgobj.g_initialize(list: TAsmList; t: tdef; const ref: treference);
  2946. var
  2947. href : treference;
  2948. cgpara1,cgpara2 : TCGPara;
  2949. pd : tprocdef;
  2950. begin
  2951. cgpara1.init;
  2952. cgpara2.init;
  2953. if is_ansistring(t) or
  2954. is_widestring(t) or
  2955. is_unicodestring(t) or
  2956. is_interfacecom_or_dispinterface(t) or
  2957. is_dynamic_array(t) then
  2958. a_load_const_ref(list,t,0,ref)
  2959. else if t.typ=variantdef then
  2960. begin
  2961. pd:=search_system_proc('fpc_variant_init');
  2962. paramanager.getintparaloc(pd,1,cgpara1);
  2963. a_loadaddr_ref_cgpara(list,t,ref,cgpara1);
  2964. paramanager.freecgpara(list,cgpara1);
  2965. g_call_system_proc(list,pd,[@cgpara1],nil);
  2966. end
  2967. else
  2968. begin
  2969. if is_open_array(t) then
  2970. InternalError(201103052);
  2971. pd:=search_system_proc('fpc_initialize');
  2972. paramanager.getintparaloc(pd,1,cgpara1);
  2973. paramanager.getintparaloc(pd,2,cgpara2);
  2974. reference_reset_symbol(href,RTTIWriter.get_rtti_label(t,initrtti),0,sizeof(pint));
  2975. if pd.is_pushleftright then
  2976. begin
  2977. a_loadaddr_ref_cgpara(list,t,ref,cgpara1);
  2978. a_loadaddr_ref_cgpara(list,voidpointertype,href,cgpara2);
  2979. end
  2980. else
  2981. begin
  2982. a_loadaddr_ref_cgpara(list,voidpointertype,href,cgpara2);
  2983. a_loadaddr_ref_cgpara(list,t,ref,cgpara1);
  2984. end;
  2985. paramanager.freecgpara(list,cgpara1);
  2986. paramanager.freecgpara(list,cgpara2);
  2987. g_call_system_proc(list,pd,[@cgpara1,@cgpara2],nil);
  2988. end;
  2989. cgpara1.done;
  2990. cgpara2.done;
  2991. end;
  2992. procedure thlcgobj.g_finalize(list: TAsmList; t: tdef; const ref: treference);
  2993. var
  2994. href : treference;
  2995. cgpara1,cgpara2 : TCGPara;
  2996. pd : tprocdef;
  2997. decrfunc : string;
  2998. begin
  2999. if is_interfacecom_or_dispinterface(t) then
  3000. decrfunc:='fpc_intf_decr_ref'
  3001. else if is_ansistring(t) then
  3002. decrfunc:='fpc_ansistr_decr_ref'
  3003. else if is_widestring(t) then
  3004. decrfunc:='fpc_widestr_decr_ref'
  3005. else if is_unicodestring(t) then
  3006. decrfunc:='fpc_unicodestr_decr_ref'
  3007. else if t.typ=variantdef then
  3008. decrfunc:='fpc_variant_clear'
  3009. else
  3010. begin
  3011. cgpara1.init;
  3012. cgpara2.init;
  3013. if is_open_array(t) then
  3014. InternalError(201103051);
  3015. { fpc_finalize takes a pointer value parameter, fpc_dynarray_clear a
  3016. pointer var parameter }
  3017. if is_dynamic_array(t) then
  3018. pd:=search_system_proc('fpc_dynarray_clear')
  3019. else
  3020. pd:=search_system_proc('fpc_finalize');
  3021. paramanager.getintparaloc(pd,1,cgpara1);
  3022. paramanager.getintparaloc(pd,2,cgpara2);
  3023. reference_reset_symbol(href,RTTIWriter.get_rtti_label(t,initrtti),0,sizeof(pint));
  3024. if pd.is_pushleftright then
  3025. begin
  3026. a_loadaddr_ref_cgpara(list,t,ref,cgpara1);
  3027. a_loadaddr_ref_cgpara(list,voidpointertype,href,cgpara2);
  3028. end
  3029. else
  3030. begin
  3031. a_loadaddr_ref_cgpara(list,voidpointertype,href,cgpara2);
  3032. a_loadaddr_ref_cgpara(list,t,ref,cgpara1);
  3033. end;
  3034. paramanager.freecgpara(list,cgpara1);
  3035. paramanager.freecgpara(list,cgpara2);
  3036. g_call_system_proc(list,pd,[@cgpara1,@cgpara2],nil);
  3037. cgpara1.done;
  3038. cgpara2.done;
  3039. exit;
  3040. end;
  3041. pd:=search_system_proc(decrfunc);
  3042. cgpara1.init;
  3043. paramanager.getintparaloc(pd,1,cgpara1);
  3044. a_loadaddr_ref_cgpara(list,t,ref,cgpara1);
  3045. paramanager.freecgpara(list,cgpara1);
  3046. g_call_system_proc(list,pd,[@cgpara1],nil);
  3047. cgpara1.done;
  3048. end;
  3049. procedure thlcgobj.g_array_rtti_helper(list: TAsmList; t: tdef; const ref: treference; const highloc: tlocation; const name: string);
  3050. var
  3051. cgpara1,cgpara2,cgpara3: TCGPara;
  3052. href: TReference;
  3053. hreg, lenreg: TRegister;
  3054. pd: tprocdef;
  3055. begin
  3056. cgpara1.init;
  3057. cgpara2.init;
  3058. cgpara3.init;
  3059. pd:=search_system_proc(name);
  3060. paramanager.getintparaloc(pd,1,cgpara1);
  3061. paramanager.getintparaloc(pd,2,cgpara2);
  3062. paramanager.getintparaloc(pd,3,cgpara3);
  3063. reference_reset_symbol(href,RTTIWriter.get_rtti_label(t,initrtti),0,sizeof(pint));
  3064. { if calling convention is left to right, push parameters 1 and 2 }
  3065. if pd.is_pushleftright then
  3066. begin
  3067. a_loadaddr_ref_cgpara(list,t,ref,cgpara1);
  3068. a_loadaddr_ref_cgpara(list,voidpointertype,href,cgpara2);
  3069. end;
  3070. { push parameter 3 }
  3071. if highloc.loc=LOC_CONSTANT then
  3072. a_load_const_cgpara(list,ptrsinttype,highloc.value+1,cgpara3)
  3073. else
  3074. begin
  3075. if highloc.loc in [LOC_REGISTER,LOC_CREGISTER] then
  3076. hreg:=highloc.register
  3077. else
  3078. begin
  3079. hreg:=getintregister(list,ptrsinttype);
  3080. a_load_loc_reg(list,ptrsinttype,ptrsinttype,highloc,hreg);
  3081. end;
  3082. { increment, converts high(x) to length(x) }
  3083. lenreg:=getintregister(list,ptrsinttype);
  3084. a_op_const_reg_reg(list,OP_ADD,ptrsinttype,1,hreg,lenreg);
  3085. a_load_reg_cgpara(list,ptrsinttype,lenreg,cgpara3);
  3086. end;
  3087. { if calling convention is right to left, push parameters 2 and 1 }
  3088. if not pd.is_pushleftright then
  3089. begin
  3090. a_loadaddr_ref_cgpara(list,voidpointertype,href,cgpara2);
  3091. a_loadaddr_ref_cgpara(list,t,ref,cgpara1);
  3092. end;
  3093. paramanager.freecgpara(list,cgpara1);
  3094. paramanager.freecgpara(list,cgpara2);
  3095. paramanager.freecgpara(list,cgpara3);
  3096. g_call_system_proc(list,pd,[@cgpara1,@cgpara2,@cgpara3],nil);
  3097. cgpara3.done;
  3098. cgpara2.done;
  3099. cgpara1.done;
  3100. end;
  3101. procedure thlcgobj.g_rangecheck(list: TAsmList; const l: tlocation; fromdef, todef: tdef);
  3102. var
  3103. {$if defined(cpu64bitalu) or defined(cpu32bitalu)}
  3104. aintmax: aint;
  3105. {$else}
  3106. aintmax: longint;
  3107. {$endif}
  3108. neglabel : tasmlabel;
  3109. hreg : tregister;
  3110. lto,hto,
  3111. lfrom,hfrom : TConstExprInt;
  3112. fromsize, tosize: cardinal;
  3113. maxdef: tdef;
  3114. from_signed, to_signed: boolean;
  3115. begin
  3116. { range checking on and range checkable value? }
  3117. if not(cs_check_range in current_settings.localswitches) or
  3118. not(fromdef.typ in [orddef,enumdef]) or
  3119. { C-style booleans can't really fail range checks, }
  3120. { all values are always valid }
  3121. is_cbool(todef) then
  3122. exit;
  3123. {$if not defined(cpuhighleveltarget) and not defined(cpu64bitalu)}
  3124. { handle 64bit rangechecks separate for 32bit processors }
  3125. if is_64bit(fromdef) or is_64bit(todef) then
  3126. begin
  3127. cg64.g_rangecheck64(list,l,fromdef,todef);
  3128. exit;
  3129. end;
  3130. {$endif ndef cpuhighleveltarget and ndef cpu64bitalu}
  3131. { only check when assigning to scalar, subranges are different, }
  3132. { when todef=fromdef then the check is always generated }
  3133. getrange(fromdef,lfrom,hfrom);
  3134. getrange(todef,lto,hto);
  3135. from_signed := is_signed(fromdef);
  3136. to_signed := is_signed(todef);
  3137. { check the rangedef of the array, not the array itself }
  3138. { (only change now, since getrange needs the arraydef) }
  3139. if (todef.typ = arraydef) then
  3140. todef := tarraydef(todef).rangedef;
  3141. { no range check if from and to are equal and are both longint/dword }
  3142. { (if we have a 32bit processor) or int64/qword, since such }
  3143. { operations can at most cause overflows (JM) }
  3144. { Note that these checks are mostly processor independent, they only }
  3145. { have to be changed once we introduce 64bit subrange types }
  3146. {$if defined(cpuhighleveltarget) or defined(cpu64bitalu)}
  3147. if (fromdef=todef) and
  3148. (fromdef.typ=orddef) and
  3149. (((((torddef(fromdef).ordtype=s64bit) and
  3150. (lfrom = low(int64)) and
  3151. (hfrom = high(int64))) or
  3152. ((torddef(fromdef).ordtype=u64bit) and
  3153. (lfrom = low(qword)) and
  3154. (hfrom = high(qword))) or
  3155. ((torddef(fromdef).ordtype=scurrency) and
  3156. (lfrom = low(int64)) and
  3157. (hfrom = high(int64)))))) then
  3158. exit;
  3159. {$endif cpuhighleveltarget or cpu64bitalu}
  3160. { 32 bit operations are automatically widened to 64 bit on 64 bit addr
  3161. targets }
  3162. {$ifdef cpu32bitaddr}
  3163. if (fromdef = todef) and
  3164. (fromdef.typ=orddef) and
  3165. (((((torddef(fromdef).ordtype = s32bit) and
  3166. (lfrom = int64(low(longint))) and
  3167. (hfrom = int64(high(longint)))) or
  3168. ((torddef(fromdef).ordtype = u32bit) and
  3169. (lfrom = low(cardinal)) and
  3170. (hfrom = high(cardinal)))))) then
  3171. exit;
  3172. {$endif cpu32bitaddr}
  3173. { optimize some range checks away in safe cases }
  3174. fromsize := fromdef.size;
  3175. tosize := todef.size;
  3176. if ((from_signed = to_signed) or
  3177. (not from_signed)) and
  3178. (lto<=lfrom) and (hto>=hfrom) and
  3179. (fromsize <= tosize) then
  3180. begin
  3181. { if fromsize < tosize, and both have the same signed-ness or }
  3182. { fromdef is unsigned, then all bit patterns from fromdef are }
  3183. { valid for todef as well }
  3184. if (fromsize < tosize) then
  3185. exit;
  3186. if (fromsize = tosize) and
  3187. (from_signed = to_signed) then
  3188. { only optimize away if all bit patterns which fit in fromsize }
  3189. { are valid for the todef }
  3190. begin
  3191. {$ifopt Q+}
  3192. {$define overflowon}
  3193. {$Q-}
  3194. {$endif}
  3195. {$ifopt R+}
  3196. {$define rangeon}
  3197. {$R-}
  3198. {$endif}
  3199. if to_signed then
  3200. begin
  3201. { calculation of the low/high ranges must not overflow 64 bit
  3202. otherwise we end up comparing with zero for 64 bit data types on
  3203. 64 bit processors }
  3204. if (lto = (int64(-1) << (tosize * 8 - 1))) and
  3205. (hto = (-((int64(-1) << (tosize * 8 - 1))+1))) then
  3206. exit
  3207. end
  3208. else
  3209. begin
  3210. { calculation of the low/high ranges must not overflow 64 bit
  3211. otherwise we end up having all zeros for 64 bit data types on
  3212. 64 bit processors }
  3213. if (lto = 0) and
  3214. (qword(hto) = (qword(-1) >> (64-(tosize * 8))) ) then
  3215. exit
  3216. end;
  3217. {$ifdef overflowon}
  3218. {$Q+}
  3219. {$undef overflowon}
  3220. {$endif}
  3221. {$ifdef rangeon}
  3222. {$R+}
  3223. {$undef rangeon}
  3224. {$endif}
  3225. end
  3226. end;
  3227. { depending on the types involved, we perform the range check for 64 or
  3228. for 32 bit }
  3229. if fromsize=8 then
  3230. maxdef:=fromdef
  3231. else
  3232. maxdef:=todef;
  3233. {$if sizeof(aintmax) = 8}
  3234. if maxdef.size=8 then
  3235. aintmax:=high(int64)
  3236. else
  3237. {$endif}
  3238. begin
  3239. aintmax:=high(longint);
  3240. maxdef:=u32inttype;
  3241. end;
  3242. { generate the rangecheck code for the def where we are going to }
  3243. { store the result }
  3244. { use the trick that }
  3245. { a <= x <= b <=> 0 <= x-a <= b-a <=> unsigned(x-a) <= unsigned(b-a) }
  3246. { To be able to do that, we have to make sure however that either }
  3247. { fromdef and todef are both signed or unsigned, or that we leave }
  3248. { the parts < 0 and > maxlongint out }
  3249. if from_signed xor to_signed then
  3250. begin
  3251. if from_signed then
  3252. { from is signed, to is unsigned }
  3253. begin
  3254. { if high(from) < 0 -> always range error }
  3255. if (hfrom < 0) or
  3256. { if low(to) > maxlongint also range error }
  3257. (lto > aintmax) then
  3258. begin
  3259. g_call_system_proc(list,'fpc_rangeerror',[],nil);
  3260. exit
  3261. end;
  3262. { from is signed and to is unsigned -> when looking at to }
  3263. { as an signed value, it must be < maxaint (otherwise }
  3264. { it will become negative, which is invalid since "to" is unsigned) }
  3265. if hto > aintmax then
  3266. hto := aintmax;
  3267. end
  3268. else
  3269. { from is unsigned, to is signed }
  3270. begin
  3271. if (lfrom > aintmax) or
  3272. (hto < 0) then
  3273. begin
  3274. g_call_system_proc(list,'fpc_rangeerror',[],nil);
  3275. exit
  3276. end;
  3277. { from is unsigned and to is signed -> when looking at to }
  3278. { as an unsigned value, it must be >= 0 (since negative }
  3279. { values are the same as values > maxlongint) }
  3280. if lto < 0 then
  3281. lto := 0;
  3282. end;
  3283. end;
  3284. hreg:=getintregister(list,maxdef);
  3285. a_load_loc_reg(list,fromdef,maxdef,l,hreg);
  3286. a_op_const_reg(list,OP_SUB,maxdef,tcgint(int64(lto)),hreg);
  3287. current_asmdata.getjumplabel(neglabel);
  3288. {
  3289. if from_signed then
  3290. a_cmp_const_reg_label(list,OS_INT,OC_GTE,aint(hto-lto),hreg,neglabel)
  3291. else
  3292. }
  3293. if qword(hto-lto)>qword(aintmax) then
  3294. a_cmp_const_reg_label(list,maxdef,OC_BE,aintmax,hreg,neglabel)
  3295. else
  3296. a_cmp_const_reg_label(list,maxdef,OC_BE,tcgint(int64(hto-lto)),hreg,neglabel);
  3297. g_call_system_proc(list,'fpc_rangeerror',[],nil);
  3298. a_label(list,neglabel);
  3299. end;
  3300. procedure thlcgobj.g_copyvaluepara_openarray(list: TAsmList; const ref: treference; const lenloc: tlocation; arrdef: tarraydef; destreg: tregister);
  3301. var
  3302. sizereg,sourcereg,lenreg : tregister;
  3303. cgpara1,cgpara2,cgpara3 : TCGPara;
  3304. ptrarrdef : tdef;
  3305. pd : tprocdef;
  3306. getmemres : tcgpara;
  3307. destloc : tlocation;
  3308. begin
  3309. { because some abis don't support dynamic stack allocation properly
  3310. open array value parameters are copied onto the heap
  3311. }
  3312. { calculate necessary memory }
  3313. { read/write operations on one register make the life of the register allocator hard }
  3314. if not(lenloc.loc in [LOC_REGISTER,LOC_CREGISTER]) then
  3315. begin
  3316. lenreg:=getintregister(list,sinttype);
  3317. a_load_loc_reg(list,sinttype,sinttype,lenloc,lenreg);
  3318. end
  3319. else
  3320. lenreg:=lenloc.register;
  3321. sizereg:=getintregister(list,sinttype);
  3322. a_op_const_reg_reg(list,OP_ADD,sinttype,1,lenreg,sizereg);
  3323. a_op_const_reg(list,OP_IMUL,sinttype,arrdef.elesize,sizereg);
  3324. { load source }
  3325. ptrarrdef:=getpointerdef(arrdef);
  3326. sourcereg:=getaddressregister(list,ptrarrdef);
  3327. a_loadaddr_ref_reg(list,arrdef,ptrarrdef,ref,sourcereg);
  3328. { do getmem call }
  3329. pd:=search_system_proc('fpc_getmem');
  3330. cgpara1.init;
  3331. paramanager.getintparaloc(pd,1,cgpara1);
  3332. a_load_reg_cgpara(list,sinttype,sizereg,cgpara1);
  3333. paramanager.freecgpara(list,cgpara1);
  3334. getmemres:=g_call_system_proc(list,pd,[@cgpara1],ptrarrdef);
  3335. cgpara1.done;
  3336. { return the new address }
  3337. location_reset(destloc,LOC_REGISTER,OS_ADDR);
  3338. destloc.register:=destreg;
  3339. gen_load_cgpara_loc(list,ptrarrdef,getmemres,destloc,false);
  3340. { do move call }
  3341. pd:=search_system_proc('MOVE');
  3342. cgpara1.init;
  3343. cgpara2.init;
  3344. cgpara3.init;
  3345. paramanager.getintparaloc(pd,1,cgpara1);
  3346. paramanager.getintparaloc(pd,2,cgpara2);
  3347. paramanager.getintparaloc(pd,3,cgpara3);
  3348. if pd.is_pushleftright then
  3349. begin
  3350. { load source }
  3351. a_load_reg_cgpara(list,ptrarrdef,sourcereg,cgpara1);
  3352. { load destination }
  3353. a_load_reg_cgpara(list,ptrarrdef,destreg,cgpara2);
  3354. { load size }
  3355. a_load_reg_cgpara(list,ptrsinttype,sizereg,cgpara3);
  3356. end
  3357. else
  3358. begin
  3359. { load size }
  3360. a_load_reg_cgpara(list,ptrsinttype,sizereg,cgpara3);
  3361. { load destination }
  3362. a_load_reg_cgpara(list,ptrarrdef,destreg,cgpara2);
  3363. { load source }
  3364. a_load_reg_cgpara(list,ptrarrdef,sourcereg,cgpara1);
  3365. end;
  3366. paramanager.freecgpara(list,cgpara3);
  3367. paramanager.freecgpara(list,cgpara2);
  3368. paramanager.freecgpara(list,cgpara1);
  3369. g_call_system_proc(list,pd,[@cgpara1,@cgpara2,@cgpara3],nil);
  3370. cgpara3.done;
  3371. cgpara2.done;
  3372. cgpara1.done;
  3373. getmemres.resetiftemp;
  3374. end;
  3375. procedure thlcgobj.g_releasevaluepara_openarray(list: TAsmList; arrdef: tarraydef; const l: tlocation);
  3376. var
  3377. cgpara1 : TCGPara;
  3378. pd : tprocdef;
  3379. begin
  3380. { do freemem call }
  3381. pd:=search_system_proc('fpc_freemem');
  3382. cgpara1.init;
  3383. paramanager.getintparaloc(pd,1,cgpara1);
  3384. { load source }
  3385. a_load_loc_cgpara(list,getpointerdef(arrdef),l,cgpara1);
  3386. paramanager.freecgpara(list,cgpara1);
  3387. g_call_system_proc(list,pd,[@cgpara1],nil);
  3388. cgpara1.done;
  3389. end;
  3390. procedure thlcgobj.g_profilecode(list: TAsmList);
  3391. begin
  3392. end;
  3393. procedure thlcgobj.g_allocload_reg_reg(list: TAsmList; regsize: tdef; const fromreg: tregister; out toreg: tregister; regtyp: tregistertype);
  3394. begin
  3395. case regtyp of
  3396. R_INTREGISTER:
  3397. toreg:=getintregister(list,regsize);
  3398. R_ADDRESSREGISTER:
  3399. toreg:=getaddressregister(list,regsize);
  3400. R_FPUREGISTER:
  3401. toreg:=getfpuregister(list,regsize);
  3402. else
  3403. internalerror(2013112910);
  3404. end;
  3405. a_load_reg_reg(list,regsize,regsize,fromreg,toreg);
  3406. end;
  3407. procedure thlcgobj.g_reference_loc(list: TAsmList; def: tdef; const fromloc: tlocation; out toloc: tlocation);
  3408. procedure handle_reg_move(regsize: tdef; const fromreg: tregister; out toreg: tregister; regtyp: tregistertype);
  3409. begin
  3410. case regtyp of
  3411. R_INTREGISTER:
  3412. toreg:=getintregister(list,regsize);
  3413. R_ADDRESSREGISTER:
  3414. toreg:=getaddressregister(list,regsize);
  3415. R_FPUREGISTER:
  3416. toreg:=getfpuregister(list,regsize);
  3417. else
  3418. internalerror(2013112915);
  3419. end;
  3420. a_load_reg_reg(list,regsize,regsize,fromreg,toreg);
  3421. end;
  3422. begin
  3423. toloc:=fromloc;
  3424. case fromloc.loc of
  3425. { volatile location, can't get a permanent reference }
  3426. LOC_REGISTER,
  3427. LOC_FPUREGISTER:
  3428. internalerror(2012012702);
  3429. LOC_CONSTANT:
  3430. { finished }
  3431. ;
  3432. LOC_CREGISTER:
  3433. handle_reg_move(def,fromloc.reference.index,toloc.reference.index,R_INTREGISTER);
  3434. LOC_CFPUREGISTER:
  3435. handle_reg_move(def,fromloc.reference.index,toloc.reference.index,R_FPUREGISTER);
  3436. { although LOC_CREFERENCE cannot be an lvalue, we may want to take a
  3437. reference to such a location for multiple reading }
  3438. LOC_CREFERENCE,
  3439. LOC_REFERENCE:
  3440. begin
  3441. if (fromloc.reference.base<>NR_NO) and
  3442. (fromloc.reference.base<>current_procinfo.framepointer) and
  3443. (fromloc.reference.base<>NR_STACK_POINTER_REG) then
  3444. handle_reg_move(voidpointertype,fromloc.reference.base,toloc.reference.base,getregtype(fromloc.reference.base));
  3445. if (fromloc.reference.index<>NR_NO) and
  3446. (fromloc.reference.index<>current_procinfo.framepointer) and
  3447. (fromloc.reference.index<>NR_STACK_POINTER_REG) then
  3448. handle_reg_move(voidpointertype,fromloc.reference.index,toloc.reference.index,getregtype(fromloc.reference.index));
  3449. end;
  3450. else
  3451. internalerror(2012012701);
  3452. end;
  3453. end;
  3454. procedure thlcgobj.location_force_reg(list: TAsmList; var l: tlocation; src_size, dst_size: tdef; maybeconst: boolean);
  3455. var
  3456. hregister,
  3457. hregister2: tregister;
  3458. hl : tasmlabel;
  3459. oldloc : tlocation;
  3460. begin
  3461. oldloc:=l;
  3462. hregister:=getregisterfordef(list,dst_size);
  3463. { load value in new register }
  3464. case l.loc of
  3465. {$ifdef cpuflags}
  3466. LOC_FLAGS :
  3467. begin
  3468. g_flags2reg(list,dst_size,l.resflags,hregister);
  3469. cg.a_reg_dealloc(list,NR_DEFAULTFLAGS);
  3470. end;
  3471. {$endif cpuflags}
  3472. LOC_JUMP :
  3473. begin
  3474. a_label(list,current_procinfo.CurrTrueLabel);
  3475. a_load_const_reg(list,dst_size,1,hregister);
  3476. current_asmdata.getjumplabel(hl);
  3477. a_jmp_always(list,hl);
  3478. a_label(list,current_procinfo.CurrFalseLabel);
  3479. a_load_const_reg(list,dst_size,0,hregister);
  3480. a_label(list,hl);
  3481. end;
  3482. else
  3483. begin
  3484. { load_loc_reg can only handle size >= l.size, when the
  3485. new size is smaller then we need to adjust the size
  3486. of the orignal and maybe recalculate l.register for i386 }
  3487. if (dst_size.size<src_size.size) then
  3488. begin
  3489. hregister2:=getregisterfordef(list,src_size);
  3490. { prevent problems with memory locations -- at this high
  3491. level we cannot twiddle with the reference offset, since
  3492. that may not mean anything (e.g., it refers to fixed-sized
  3493. stack slots on Java) }
  3494. a_load_loc_reg(list,src_size,src_size,l,hregister2);
  3495. a_load_reg_reg(list,src_size,dst_size,hregister2,hregister);
  3496. end
  3497. else
  3498. a_load_loc_reg(list,src_size,dst_size,l,hregister);
  3499. end;
  3500. end;
  3501. if (l.loc <> LOC_CREGISTER) or
  3502. not maybeconst then
  3503. location_reset(l,LOC_REGISTER,def_cgsize(dst_size))
  3504. else
  3505. location_reset(l,LOC_CREGISTER,def_cgsize(dst_size));
  3506. l.register:=hregister;
  3507. { Release temp if it was a reference }
  3508. if oldloc.loc=LOC_REFERENCE then
  3509. location_freetemp(list,oldloc);
  3510. end;
  3511. procedure thlcgobj.location_force_fpureg(list: TAsmList; var l: tlocation; size: tdef; maybeconst: boolean);
  3512. var
  3513. reg : tregister;
  3514. begin
  3515. if (l.loc<>LOC_FPUREGISTER) and
  3516. ((l.loc<>LOC_CFPUREGISTER) or (not maybeconst)) then
  3517. begin
  3518. { if it's in an mm register, store to memory first }
  3519. if (l.loc in [LOC_MMREGISTER,LOC_CMMREGISTER]) then
  3520. location_force_mem(list,l,size);
  3521. reg:=getfpuregister(list,size);
  3522. a_loadfpu_loc_reg(list,size,size,l,reg);
  3523. location_freetemp(list,l);
  3524. location_reset(l,LOC_FPUREGISTER,l.size);
  3525. l.register:=reg;
  3526. end;
  3527. end;
  3528. procedure thlcgobj.location_force_mem(list: TAsmList; var l: tlocation; size: tdef);
  3529. var
  3530. r : treference;
  3531. forcesize: aint;
  3532. begin
  3533. case l.loc of
  3534. LOC_FPUREGISTER,
  3535. LOC_CFPUREGISTER :
  3536. begin
  3537. tg.gethltemp(list,size,size.size,tt_normal,r);
  3538. a_loadfpu_reg_ref(list,size,size,l.register,r);
  3539. location_reset_ref(l,LOC_REFERENCE,l.size,0);
  3540. l.reference:=r;
  3541. end;
  3542. LOC_MMREGISTER,
  3543. LOC_CMMREGISTER:
  3544. begin
  3545. { vectors can't be represented yet using tdef }
  3546. if size.typ<>floatdef then
  3547. internalerror(2012062301);
  3548. tg.gethltemp(list,size,size.size,tt_normal,r);
  3549. a_loadmm_reg_ref(list,size,size,l.register,r,mms_movescalar);
  3550. location_reset_ref(l,LOC_REFERENCE,l.size,0);
  3551. l.reference:=r;
  3552. end;
  3553. LOC_CONSTANT,
  3554. LOC_REGISTER,
  3555. LOC_CREGISTER,
  3556. LOC_SUBSETREG,
  3557. LOC_CSUBSETREG,
  3558. LOC_SUBSETREF,
  3559. LOC_CSUBSETREF:
  3560. begin
  3561. if not is_dynamic_array(size) and
  3562. not is_open_array(size) then
  3563. forcesize:=size.size
  3564. else
  3565. forcesize:=sizeof(pint);
  3566. tg.gethltemp(list,size,forcesize,tt_normal,r);
  3567. a_load_loc_ref(list,size,size,l,r);
  3568. location_reset_ref(l,LOC_REFERENCE,l.size,0);
  3569. l.reference:=r;
  3570. end;
  3571. LOC_CREFERENCE,
  3572. LOC_REFERENCE : ;
  3573. else
  3574. internalerror(2011010304);
  3575. end;
  3576. end;
  3577. procedure thlcgobj.location_force_mmregscalar(list: TAsmList; var l: tlocation; size: tdef; maybeconst: boolean);
  3578. var
  3579. reg : tregister;
  3580. href : treference;
  3581. newsize : tdef;
  3582. begin
  3583. if (l.loc<>LOC_MMREGISTER) and
  3584. ((l.loc<>LOC_CMMREGISTER) or (not maybeconst)) then
  3585. begin
  3586. { if it's in an fpu register, store to memory first }
  3587. if (l.loc in [LOC_FPUREGISTER,LOC_CFPUREGISTER]) then
  3588. begin
  3589. tg.gethltemp(list,size,-1,tt_normal,href);
  3590. hlcg.a_loadfpu_reg_ref(list,size,size,l.register,href);
  3591. location_reset_ref(l,LOC_REFERENCE,l.size,0);
  3592. l.reference:=href;
  3593. end;
  3594. { on ARM, CFP values may be located in integer registers,
  3595. and its second_int_to_real() also uses this routine to
  3596. force integer (memory) values in an mmregister }
  3597. if (l.size in [OS_32,OS_S32]) then
  3598. begin
  3599. size:=cgsize_orddef(l.size);
  3600. newsize:=s32floattype;
  3601. end
  3602. else if (l.size in [OS_64,OS_S64]) then
  3603. begin
  3604. size:=cgsize_orddef(l.size);
  3605. newsize:=s64floattype;
  3606. end
  3607. else
  3608. newsize:=size;
  3609. case size.size of
  3610. 4:
  3611. newsize:=s32floattype;
  3612. 8:
  3613. newsize:=s64floattype;
  3614. else
  3615. newsize:=size;
  3616. end;
  3617. reg:=hlcg.getmmregister(list,newsize);
  3618. hlcg.a_loadmm_loc_reg(list,size,newsize,l,reg,mms_movescalar);
  3619. l.size:=def_cgsize(newsize);
  3620. location_freetemp(list,l);
  3621. location_reset(l,LOC_MMREGISTER,l.size);
  3622. l.register:=reg;
  3623. end;
  3624. end;
  3625. procedure thlcgobj.location_get_data_ref(list: TAsmList; def: tdef; const l: tlocation; var ref: treference; loadref: boolean; alignment: longint);
  3626. begin
  3627. case l.loc of
  3628. LOC_REGISTER,
  3629. LOC_CREGISTER :
  3630. begin
  3631. if not loadref then
  3632. internalerror(200410231);
  3633. reference_reset_base(ref,voidpointertype,l.register,0,alignment);
  3634. end;
  3635. LOC_REFERENCE,
  3636. LOC_CREFERENCE :
  3637. begin
  3638. if loadref then
  3639. begin
  3640. reference_reset_base(ref,voidpointertype,getaddressregister(list,voidpointertype),0,alignment);
  3641. { it's a pointer to def }
  3642. a_load_ref_reg(list,voidpointertype,voidpointertype,l.reference,ref.base);
  3643. end
  3644. else
  3645. ref:=l.reference;
  3646. end;
  3647. else
  3648. internalerror(200309181);
  3649. end;
  3650. end;
  3651. procedure thlcgobj.maketojumpbool(list: TAsmList; p: tnode);
  3652. {
  3653. produces jumps to true respectively false labels using boolean expressions
  3654. depending on whether the loading of regvars is currently being
  3655. synchronized manually (such as in an if-node) or automatically (most of
  3656. the other cases where this procedure is called), loadregvars can be
  3657. "lr_load_regvars" or "lr_dont_load_regvars"
  3658. }
  3659. var
  3660. storepos : tfileposinfo;
  3661. begin
  3662. if nf_error in p.flags then
  3663. exit;
  3664. storepos:=current_filepos;
  3665. current_filepos:=p.fileinfo;
  3666. if is_boolean(p.resultdef) then
  3667. begin
  3668. if is_constboolnode(p) then
  3669. begin
  3670. if Tordconstnode(p).value.uvalue<>0 then
  3671. a_jmp_always(list,current_procinfo.CurrTrueLabel)
  3672. else
  3673. a_jmp_always(list,current_procinfo.CurrFalseLabel)
  3674. end
  3675. else
  3676. begin
  3677. case p.location.loc of
  3678. LOC_SUBSETREG,LOC_CSUBSETREG,
  3679. LOC_SUBSETREF,LOC_CSUBSETREF,
  3680. LOC_CREGISTER,LOC_REGISTER,LOC_CREFERENCE,LOC_REFERENCE :
  3681. begin
  3682. a_cmp_const_loc_label(list,p.resultdef,OC_NE,0,p.location,current_procinfo.CurrTrueLabel);
  3683. a_jmp_always(list,current_procinfo.CurrFalseLabel);
  3684. end;
  3685. LOC_JUMP:
  3686. ;
  3687. {$ifdef cpuflags}
  3688. LOC_FLAGS :
  3689. begin
  3690. a_jmp_flags(list,p.location.resflags,current_procinfo.CurrTrueLabel);
  3691. a_reg_dealloc(list,NR_DEFAULTFLAGS);
  3692. a_jmp_always(list,current_procinfo.CurrFalseLabel);
  3693. end;
  3694. {$endif cpuflags}
  3695. else
  3696. begin
  3697. printnode(output,p);
  3698. internalerror(2011010418);
  3699. end;
  3700. end;
  3701. end;
  3702. end
  3703. else
  3704. internalerror(2011010419);
  3705. current_filepos:=storepos;
  3706. end;
  3707. procedure thlcgobj.maybe_change_load_node_reg(list: TAsmList; var n: tnode; reload: boolean);
  3708. var
  3709. rr: treplaceregrec;
  3710. varloc : tai_varloc;
  3711. begin
  3712. if not (n.location.loc in [LOC_CREGISTER,LOC_CFPUREGISTER,LOC_CMMXREGISTER,LOC_CMMREGISTER]) or
  3713. ([fc_inflowcontrol,fc_gotolabel,fc_lefthandled] * flowcontrol <> []) then
  3714. exit;
  3715. rr.old := n.location.register;
  3716. rr.ressym := nil;
  3717. rr.sym := nil;
  3718. rr.oldhi := NR_NO;
  3719. case n.location.loc of
  3720. LOC_CREGISTER:
  3721. begin
  3722. {$ifdef cpu64bitalu}
  3723. if (n.location.size in [OS_128,OS_S128]) then
  3724. begin
  3725. rr.oldhi := n.location.register128.reghi;
  3726. rr.new := cg.getintregister(current_asmdata.CurrAsmList,OS_INT);
  3727. rr.newhi := cg.getintregister(current_asmdata.CurrAsmList,OS_INT);
  3728. end
  3729. else
  3730. {$else cpu64bitalu}
  3731. if (n.location.size in [OS_64,OS_S64]) then
  3732. begin
  3733. rr.oldhi := n.location.register64.reghi;
  3734. rr.new := cg.getintregister(current_asmdata.CurrAsmList,OS_32);
  3735. rr.newhi := cg.getintregister(current_asmdata.CurrAsmList,OS_32);
  3736. end
  3737. else
  3738. {$endif cpu64bitalu}
  3739. rr.new := cg.getintregister(current_asmdata.CurrAsmList,n.location.size);
  3740. end;
  3741. LOC_CFPUREGISTER:
  3742. rr.new := cg.getfpuregister(current_asmdata.CurrAsmList,n.location.size);
  3743. {$ifdef SUPPORT_MMX}
  3744. LOC_CMMXREGISTER:
  3745. rr.new := tcgx86(cg).getmmxregister(current_asmdata.CurrAsmList);
  3746. {$endif SUPPORT_MMX}
  3747. LOC_CMMREGISTER:
  3748. rr.new := cg.getmmregister(current_asmdata.CurrAsmList,n.location.size);
  3749. else
  3750. exit;
  3751. end;
  3752. { self is implicitly returned from constructors, even if there are no
  3753. references to it; additionally, funcretsym is not set for constructor
  3754. procdefs }
  3755. if (current_procinfo.procdef.proctypeoption=potype_constructor) then
  3756. rr.ressym:=tsym(current_procinfo.procdef.parast.Find('self'))
  3757. else if not is_void(current_procinfo.procdef.returndef) and
  3758. assigned(current_procinfo.procdef.funcretsym) and
  3759. (tabstractvarsym(current_procinfo.procdef.funcretsym).refs <> 0) then
  3760. rr.ressym:=current_procinfo.procdef.funcretsym;
  3761. if not foreachnode(n,@do_replace_node_regs,@rr) then
  3762. exit;
  3763. if reload then
  3764. case n.location.loc of
  3765. LOC_CREGISTER:
  3766. begin
  3767. {$ifdef cpu64bitalu}
  3768. if (n.location.size in [OS_128,OS_S128]) then
  3769. cg128.a_load128_reg_reg(list,n.location.register128,joinreg128(rr.new,rr.newhi))
  3770. else
  3771. {$else cpu64bitalu}
  3772. if (n.location.size in [OS_64,OS_S64]) then
  3773. cg64.a_load64_reg_reg(list,n.location.register64,joinreg64(rr.new,rr.newhi))
  3774. else
  3775. {$endif cpu64bitalu}
  3776. a_load_reg_reg(list,n.resultdef,n.resultdef,n.location.register,rr.new);
  3777. end;
  3778. LOC_CFPUREGISTER:
  3779. cg.a_loadfpu_reg_reg(list,n.location.size,n.location.size,n.location.register,rr.new);
  3780. {$ifdef SUPPORT_MMX}
  3781. LOC_CMMXREGISTER:
  3782. cg.a_loadmm_reg_reg(list,OS_M64,OS_M64,n.location.register,rr.new,nil);
  3783. {$endif SUPPORT_MMX}
  3784. LOC_CMMREGISTER:
  3785. a_loadmm_reg_reg(list,n.resultdef,n.resultdef,n.location.register,rr.new,nil);
  3786. else
  3787. internalerror(2006090920);
  3788. end;
  3789. { now that we've change the loadn/temp, also change the node result location }
  3790. {$ifdef cpu64bitalu}
  3791. if (n.location.size in [OS_128,OS_S128]) then
  3792. begin
  3793. n.location.register128.reglo := rr.new;
  3794. n.location.register128.reghi := rr.newhi;
  3795. if assigned(rr.sym) and
  3796. ((rr.sym.currentregloc.register<>rr.new) or
  3797. (rr.sym.currentregloc.registerhi<>rr.newhi)) then
  3798. begin
  3799. varloc:=tai_varloc.create128(rr.sym,rr.new,rr.newhi);
  3800. varloc.oldlocation:=rr.sym.currentregloc.register;
  3801. varloc.oldlocationhi:=rr.sym.currentregloc.registerhi;
  3802. rr.sym.currentregloc.register:=rr.new;
  3803. rr.sym.currentregloc.registerHI:=rr.newhi;
  3804. list.concat(varloc);
  3805. end;
  3806. end
  3807. else
  3808. {$else cpu64bitalu}
  3809. if (n.location.size in [OS_64,OS_S64]) then
  3810. begin
  3811. n.location.register64.reglo := rr.new;
  3812. n.location.register64.reghi := rr.newhi;
  3813. if assigned(rr.sym) and
  3814. ((rr.sym.currentregloc.register<>rr.new) or
  3815. (rr.sym.currentregloc.registerhi<>rr.newhi)) then
  3816. begin
  3817. varloc:=tai_varloc.create64(rr.sym,rr.new,rr.newhi);
  3818. varloc.oldlocation:=rr.sym.currentregloc.register;
  3819. varloc.oldlocationhi:=rr.sym.currentregloc.registerhi;
  3820. rr.sym.currentregloc.register:=rr.new;
  3821. rr.sym.currentregloc.registerHI:=rr.newhi;
  3822. list.concat(varloc);
  3823. end;
  3824. end
  3825. else
  3826. {$endif cpu64bitalu}
  3827. begin
  3828. n.location.register := rr.new;
  3829. if assigned(rr.sym) and (rr.sym.currentregloc.register<>rr.new) then
  3830. begin
  3831. varloc:=tai_varloc.create(rr.sym,rr.new);
  3832. varloc.oldlocation:=rr.sym.currentregloc.register;
  3833. rr.sym.currentregloc.register:=rr.new;
  3834. list.concat(varloc);
  3835. end;
  3836. end;
  3837. end;
  3838. function thlcgobj.do_replace_node_regs(var n: tnode; para: pointer): foreachnoderesult;
  3839. var
  3840. rr: preplaceregrec absolute para;
  3841. begin
  3842. result := fen_false;
  3843. if (nf_is_funcret in n.flags) and (fc_exit in flowcontrol) then
  3844. exit;
  3845. case n.nodetype of
  3846. loadn:
  3847. begin
  3848. if (tloadnode(n).symtableentry.typ in [localvarsym,paravarsym,staticvarsym]) and
  3849. (tabstractvarsym(tloadnode(n).symtableentry).varoptions * [vo_is_dll_var, vo_is_thread_var] = []) and
  3850. not assigned(tloadnode(n).left) and
  3851. ((tloadnode(n).symtableentry <> rr^.ressym) or
  3852. not(fc_exit in flowcontrol)
  3853. ) and
  3854. (tabstractnormalvarsym(tloadnode(n).symtableentry).localloc.loc in [LOC_CREGISTER,LOC_CFPUREGISTER,LOC_CMMXREGISTER,LOC_CMMREGISTER]) and
  3855. (tabstractnormalvarsym(tloadnode(n).symtableentry).localloc.register = rr^.old) then
  3856. begin
  3857. {$ifdef cpu64bitalu}
  3858. { it's possible a 128 bit location was shifted and/xor typecasted }
  3859. { in a 64 bit value, so only 1 register was left in the location }
  3860. if (tabstractnormalvarsym(tloadnode(n).symtableentry).localloc.size in [OS_128,OS_S128]) then
  3861. if (tabstractnormalvarsym(tloadnode(n).symtableentry).localloc.register128.reghi = rr^.oldhi) then
  3862. tabstractnormalvarsym(tloadnode(n).symtableentry).localloc.register128.reghi := rr^.newhi
  3863. else
  3864. exit;
  3865. {$else cpu64bitalu}
  3866. { it's possible a 64 bit location was shifted and/xor typecasted }
  3867. { in a 32 bit value, so only 1 register was left in the location }
  3868. if (tabstractnormalvarsym(tloadnode(n).symtableentry).localloc.size in [OS_64,OS_S64]) then
  3869. if (tabstractnormalvarsym(tloadnode(n).symtableentry).localloc.register64.reghi = rr^.oldhi) then
  3870. tabstractnormalvarsym(tloadnode(n).symtableentry).localloc.register64.reghi := rr^.newhi
  3871. else
  3872. exit;
  3873. {$endif cpu64bitalu}
  3874. tabstractnormalvarsym(tloadnode(n).symtableentry).localloc.register := rr^.new;
  3875. rr^.sym := tabstractnormalvarsym(tloadnode(n).symtableentry);
  3876. result := fen_norecurse_true;
  3877. end;
  3878. end;
  3879. temprefn:
  3880. begin
  3881. if (ti_valid in ttemprefnode(n).tempinfo^.flags) and
  3882. (ttemprefnode(n).tempinfo^.location.loc in [LOC_CREGISTER,LOC_CFPUREGISTER,LOC_CMMXREGISTER,LOC_CMMREGISTER]) and
  3883. (ttemprefnode(n).tempinfo^.location.register = rr^.old) then
  3884. begin
  3885. {$ifdef cpu64bitalu}
  3886. { it's possible a 128 bit location was shifted and/xor typecasted }
  3887. { in a 64 bit value, so only 1 register was left in the location }
  3888. if (ttemprefnode(n).tempinfo^.location.size in [OS_128,OS_S128]) then
  3889. if (ttemprefnode(n).tempinfo^.location.register128.reghi = rr^.oldhi) then
  3890. ttemprefnode(n).tempinfo^.location.register128.reghi := rr^.newhi
  3891. else
  3892. exit;
  3893. {$else cpu64bitalu}
  3894. { it's possible a 64 bit location was shifted and/xor typecasted }
  3895. { in a 32 bit value, so only 1 register was left in the location }
  3896. if (ttemprefnode(n).tempinfo^.location.size in [OS_64,OS_S64]) then
  3897. if (ttemprefnode(n).tempinfo^.location.register64.reghi = rr^.oldhi) then
  3898. ttemprefnode(n).tempinfo^.location.register64.reghi := rr^.newhi
  3899. else
  3900. exit;
  3901. {$endif cpu64bitalu}
  3902. ttemprefnode(n).tempinfo^.location.register := rr^.new;
  3903. result := fen_norecurse_true;
  3904. end;
  3905. end;
  3906. { optimize the searching a bit }
  3907. derefn,addrn,
  3908. calln,inlinen,casen,
  3909. addn,subn,muln,
  3910. andn,orn,xorn,
  3911. ltn,lten,gtn,gten,equaln,unequaln,
  3912. slashn,divn,shrn,shln,notn,
  3913. inn,
  3914. asn,isn:
  3915. result := fen_norecurse_false;
  3916. end;
  3917. end;
  3918. procedure thlcgobj.gen_proc_symbol(list: TAsmList);
  3919. var
  3920. item,
  3921. previtem : TCmdStrListItem;
  3922. begin
  3923. previtem:=nil;
  3924. item := TCmdStrListItem(current_procinfo.procdef.aliasnames.first);
  3925. while assigned(item) do
  3926. begin
  3927. {$ifdef arm}
  3928. if GenerateThumbCode or GenerateThumb2Code then
  3929. list.concat(tai_thumb_func.create);
  3930. {$endif arm}
  3931. { "double link" all procedure entry symbols via .reference }
  3932. { directives on darwin, because otherwise the linker }
  3933. { sometimes strips the procedure if only on of the symbols }
  3934. { is referenced }
  3935. if assigned(previtem) and
  3936. (target_info.system in systems_darwin) then
  3937. list.concat(tai_directive.create(asd_reference,item.str));
  3938. if (cs_profile in current_settings.moduleswitches) or
  3939. (po_global in current_procinfo.procdef.procoptions) then
  3940. list.concat(Tai_symbol.createname_global(item.str,AT_FUNCTION,0))
  3941. else
  3942. list.concat(Tai_symbol.createname(item.str,AT_FUNCTION,0));
  3943. if assigned(previtem) and
  3944. (target_info.system in systems_darwin) then
  3945. list.concat(tai_directive.create(asd_reference,previtem.str));
  3946. if not(af_stabs_use_function_absolute_addresses in target_asm.flags) then
  3947. list.concat(Tai_function_name.create(item.str));
  3948. previtem:=item;
  3949. item := TCmdStrListItem(item.next);
  3950. end;
  3951. current_procinfo.procdef.procstarttai:=tai(list.last);
  3952. end;
  3953. procedure thlcgobj.gen_proc_symbol_end(list: TAsmList);
  3954. begin
  3955. list.concat(Tai_symbol_end.Createname(current_procinfo.procdef.mangledname));
  3956. current_procinfo.procdef.procendtai:=tai(list.last);
  3957. if (current_module.islibrary) then
  3958. if (current_procinfo.procdef.proctypeoption = potype_proginit) then
  3959. { setinitname may generate a new section -> don't add to the
  3960. current list, because we assume this remains a text section }
  3961. exportlib.setinitname(current_asmdata.AsmLists[al_exports],current_procinfo.procdef.mangledname);
  3962. if (current_procinfo.procdef.proctypeoption=potype_proginit) then
  3963. begin
  3964. if (target_info.system in (systems_darwin+[system_powerpc_macos]+systems_aix)) and
  3965. not(current_module.islibrary) then
  3966. begin
  3967. new_section(list,sec_code,'',4);
  3968. list.concat(tai_symbol.createname_global(
  3969. target_info.cprefix+mainaliasname,AT_FUNCTION,0));
  3970. { keep argc, argv and envp properly on the stack }
  3971. if not(target_info.system in systems_aix) then
  3972. cg.a_jmp_name(list,target_info.cprefix+'FPC_SYSTEMMAIN')
  3973. else
  3974. cg.a_call_name(list,target_info.cprefix+'FPC_SYSTEMMAIN',false)
  3975. end;
  3976. end;
  3977. end;
  3978. procedure thlcgobj.gen_initialize_code(list: TAsmList);
  3979. begin
  3980. { initialize local data like ansistrings }
  3981. case current_procinfo.procdef.proctypeoption of
  3982. potype_unitinit:
  3983. begin
  3984. { this is also used for initialization of variables in a
  3985. program which does not have a globalsymtable }
  3986. if assigned(current_module.globalsymtable) then
  3987. TSymtable(current_module.globalsymtable).SymList.ForEachCall(@initialize_data,list);
  3988. TSymtable(current_module.localsymtable).SymList.ForEachCall(@initialize_data,list);
  3989. TSymtable(current_module.localsymtable).SymList.ForEachCall(@initialize_regvars,list);
  3990. end;
  3991. { units have seperate code for initilization and finalization }
  3992. potype_unitfinalize: ;
  3993. { program init/final is generated in separate procedure }
  3994. potype_proginit:
  3995. begin
  3996. TSymtable(current_module.localsymtable).SymList.ForEachCall(@initialize_regvars,list);
  3997. end;
  3998. else
  3999. current_procinfo.procdef.localst.SymList.ForEachCall(@initialize_data,list);
  4000. end;
  4001. { initialises temp. ansi/wide string data }
  4002. if (current_procinfo.procdef.proctypeoption<>potype_exceptfilter) then
  4003. inittempvariables(list);
  4004. {$ifdef OLDREGVARS}
  4005. load_regvars(list,nil);
  4006. {$endif OLDREGVARS}
  4007. end;
  4008. procedure thlcgobj.gen_finalize_code(list: TAsmList);
  4009. var
  4010. old_current_procinfo: tprocinfo;
  4011. begin
  4012. old_current_procinfo:=current_procinfo;
  4013. if (current_procinfo.procdef.proctypeoption=potype_exceptfilter) then
  4014. begin
  4015. if (current_procinfo.parent.finalize_procinfo<>current_procinfo) then
  4016. exit;
  4017. current_procinfo:=current_procinfo.parent;
  4018. end;
  4019. {$ifdef OLDREGVARS}
  4020. cleanup_regvars(list);
  4021. {$endif OLDREGVARS}
  4022. { finalize temporary data }
  4023. finalizetempvariables(list);
  4024. { finalize local data like ansistrings}
  4025. case current_procinfo.procdef.proctypeoption of
  4026. potype_unitfinalize:
  4027. begin
  4028. { this is also used for initialization of variables in a
  4029. program which does not have a globalsymtable }
  4030. if assigned(current_module.globalsymtable) then
  4031. TSymtable(current_module.globalsymtable).SymList.ForEachCall(@finalize_static_data,list);
  4032. TSymtable(current_module.localsymtable).SymList.ForEachCall(@finalize_static_data,list);
  4033. end;
  4034. { units/progs have separate code for initialization and finalization }
  4035. potype_unitinit: ;
  4036. { program init/final is generated in separate procedure }
  4037. potype_proginit: ;
  4038. else
  4039. current_procinfo.procdef.localst.SymList.ForEachCall(@finalize_local_vars,list);
  4040. end;
  4041. { finalize paras data }
  4042. if assigned(current_procinfo.procdef.parast) and
  4043. not(po_assembler in current_procinfo.procdef.procoptions) then
  4044. current_procinfo.procdef.parast.SymList.ForEachCall(@final_paras,list);
  4045. current_procinfo:=old_current_procinfo;
  4046. end;
  4047. procedure thlcgobj.varsym_set_localloc(list: TAsmList; vs: tabstractnormalvarsym);
  4048. begin
  4049. if cs_asm_source in current_settings.globalswitches then
  4050. begin
  4051. case vs.initialloc.loc of
  4052. LOC_REFERENCE :
  4053. begin
  4054. if not assigned(vs.initialloc.reference.symbol) then
  4055. list.concat(Tai_comment.Create(strpnew('Var '+vs.realname+' located at '+
  4056. std_regname(vs.initialloc.reference.base)+tostr_with_plus(vs.initialloc.reference.offset)+
  4057. ', size='+tcgsize2str(vs.initialloc.size))));
  4058. end;
  4059. end;
  4060. end;
  4061. vs.localloc:=vs.initialloc;
  4062. FillChar(vs.currentregloc,sizeof(vs.currentregloc),0);
  4063. end;
  4064. procedure thlcgobj.paravarsym_set_initialloc_to_paraloc(vs: tparavarsym);
  4065. begin
  4066. reference_reset_base(vs.initialloc.reference,voidstackpointertype,tparavarsym(vs).paraloc[calleeside].location^.reference.index,
  4067. tparavarsym(vs).paraloc[calleeside].location^.reference.offset,tparavarsym(vs).paraloc[calleeside].alignment);
  4068. end;
  4069. procedure thlcgobj.gen_entry_code(list: TAsmList);
  4070. begin
  4071. { the actual profile code can clobber some registers,
  4072. therefore if the context must be saved, do it before
  4073. the actual call to the profile code
  4074. }
  4075. if (cs_profile in current_settings.moduleswitches) and
  4076. not(po_assembler in current_procinfo.procdef.procoptions) then
  4077. begin
  4078. { non-win32 can call mcout even in main }
  4079. if not (target_info.system in [system_i386_win32,system_i386_wdosx]) or
  4080. not (current_procinfo.procdef.proctypeoption=potype_proginit) then
  4081. begin
  4082. g_profilecode(list);
  4083. end;
  4084. end;
  4085. { call startup helpers from main program }
  4086. if (current_procinfo.procdef.proctypeoption=potype_proginit) then
  4087. begin
  4088. { initialize units }
  4089. if not(current_module.islibrary) then
  4090. g_call_system_proc(list,'fpc_initializeunits',[],nil)
  4091. else
  4092. g_call_system_proc(list,'fpc_libinitializeunits',[],nil);
  4093. end;
  4094. list.concat(Tai_force_line.Create);
  4095. {$ifdef OLDREGVARS}
  4096. load_regvars(list,nil);
  4097. {$endif OLDREGVARS}
  4098. end;
  4099. procedure thlcgobj.gen_exit_code(list: TAsmList);
  4100. begin
  4101. { TODO: create high level version (create compilerproc in system unit,
  4102. look up procdef, use hlcgobj.a_call_name()) }
  4103. { call __EXIT for main program }
  4104. if (not DLLsource) and
  4105. (current_procinfo.procdef.proctypeoption=potype_proginit) then
  4106. g_call_system_proc(list,'fpc_do_exit',[],nil);
  4107. end;
  4108. procedure thlcgobj.inittempvariables(list: TAsmList);
  4109. var
  4110. hp : ptemprecord;
  4111. href : treference;
  4112. begin
  4113. hp:=tg.templist;
  4114. while assigned(hp) do
  4115. begin
  4116. if hp^.fini and
  4117. assigned(hp^.def) and
  4118. is_managed_type(hp^.def) then
  4119. begin
  4120. temp_to_ref(hp,href);
  4121. g_initialize(list,hp^.def,href);
  4122. end;
  4123. hp:=hp^.next;
  4124. end;
  4125. end;
  4126. procedure thlcgobj.initialize_data(p: TObject; arg: pointer);
  4127. var
  4128. OldAsmList : TAsmList;
  4129. hp : tnode;
  4130. begin
  4131. if (tsym(p).typ = localvarsym) and
  4132. { local (procedure or unit) variables only need initialization if
  4133. they are used }
  4134. ((tabstractvarsym(p).refs>0) or
  4135. { managed return symbols must be inited }
  4136. ((tsym(p).typ=localvarsym) and (vo_is_funcret in tlocalvarsym(p).varoptions))
  4137. ) and
  4138. not(vo_is_typed_const in tabstractvarsym(p).varoptions) and
  4139. not(vo_is_external in tabstractvarsym(p).varoptions) and
  4140. not(vo_is_default_var in tabstractvarsym(p).varoptions) and
  4141. (is_managed_type(tabstractvarsym(p).vardef) or
  4142. ((m_iso in current_settings.modeswitches) and (tabstractvarsym(p).vardef.typ=filedef))
  4143. ) then
  4144. begin
  4145. OldAsmList:=current_asmdata.CurrAsmList;
  4146. current_asmdata.CurrAsmList:=TAsmList(arg);
  4147. hp:=cnodeutils.initialize_data_node(cloadnode.create(tsym(p),tsym(p).owner),false);
  4148. firstpass(hp);
  4149. secondpass(hp);
  4150. hp.free;
  4151. current_asmdata.CurrAsmList:=OldAsmList;
  4152. end;
  4153. end;
  4154. procedure thlcgobj.finalizetempvariables(list: TAsmList);
  4155. var
  4156. hp : ptemprecord;
  4157. href : treference;
  4158. begin
  4159. hp:=tg.templist;
  4160. while assigned(hp) do
  4161. begin
  4162. if hp^.fini and
  4163. assigned(hp^.def) and
  4164. is_managed_type(hp^.def) then
  4165. begin
  4166. include(current_procinfo.flags,pi_needs_implicit_finally);
  4167. temp_to_ref(hp,href);
  4168. g_finalize(list,hp^.def,href);
  4169. end;
  4170. hp:=hp^.next;
  4171. end;
  4172. end;
  4173. procedure thlcgobj.initialize_regvars(p: TObject; arg: pointer);
  4174. var
  4175. href : treference;
  4176. begin
  4177. if (tsym(p).typ=staticvarsym) then
  4178. begin
  4179. { Static variables can have the initialloc only set to LOC_CxREGISTER
  4180. or LOC_INVALID, for explaination see gen_alloc_symtable (PFV) }
  4181. case tstaticvarsym(p).initialloc.loc of
  4182. LOC_CREGISTER :
  4183. begin
  4184. {$ifdef cpu64bitalu}
  4185. if (tstaticvarsym(p).initialloc.size in [OS_128,OS_S128]) then
  4186. cg128.a_load128_const_reg(TAsmList(arg),0,0,tstaticvarsym(p).initialloc.register128)
  4187. else
  4188. {$else cpu64bitalu}
  4189. if (tstaticvarsym(p).initialloc.size in [OS_64,OS_S64]) then
  4190. cg64.a_load64_const_reg(TAsmList(arg),0,tstaticvarsym(p).initialloc.register64)
  4191. else
  4192. {$endif cpu64bitalu}
  4193. a_load_const_reg(TAsmList(arg),tstaticvarsym(p).vardef,0,
  4194. tstaticvarsym(p).initialloc.register);
  4195. end;
  4196. LOC_CMMREGISTER :
  4197. { clear the whole register }
  4198. a_opmm_reg_reg(TAsmList(arg),OP_XOR,tstaticvarsym(p).vardef,
  4199. tstaticvarsym(p).initialloc.register,
  4200. tstaticvarsym(p).initialloc.register,
  4201. nil);
  4202. LOC_CFPUREGISTER :
  4203. begin
  4204. { initialize fpu regvar by loading from memory }
  4205. reference_reset_symbol(href,
  4206. current_asmdata.RefAsmSymbol(tstaticvarsym(p).mangledname), 0,
  4207. var_align(tstaticvarsym(p).vardef.alignment));
  4208. a_loadfpu_ref_reg(TAsmList(arg), tstaticvarsym(p).vardef,
  4209. tstaticvarsym(p).vardef, href, tstaticvarsym(p).initialloc.register);
  4210. end;
  4211. LOC_INVALID :
  4212. ;
  4213. else
  4214. internalerror(200410124);
  4215. end;
  4216. end;
  4217. end;
  4218. procedure thlcgobj.finalize_sym(asmlist: TAsmList; sym: tsym);
  4219. var
  4220. hp : tnode;
  4221. OldAsmList : TAsmList;
  4222. begin
  4223. include(current_procinfo.flags,pi_needs_implicit_finally);
  4224. OldAsmList:=current_asmdata.CurrAsmList;
  4225. current_asmdata.CurrAsmList:=asmlist;
  4226. hp:=cloadnode.create(sym,sym.owner);
  4227. if (sym.typ=staticvarsym) and (vo_force_finalize in tstaticvarsym(sym).varoptions) then
  4228. include(tloadnode(hp).loadnodeflags,loadnf_isinternal_ignoreconst);
  4229. hp:=cnodeutils.finalize_data_node(hp);
  4230. firstpass(hp);
  4231. secondpass(hp);
  4232. hp.free;
  4233. current_asmdata.CurrAsmList:=OldAsmList;
  4234. end;
  4235. procedure thlcgobj.finalize_local_vars(p: TObject; arg: pointer);
  4236. begin
  4237. if (tsym(p).typ=localvarsym) and
  4238. (tlocalvarsym(p).refs>0) and
  4239. not(vo_is_external in tlocalvarsym(p).varoptions) and
  4240. not(vo_is_funcret in tlocalvarsym(p).varoptions) and
  4241. not(vo_is_default_var in tabstractvarsym(p).varoptions) and
  4242. is_managed_type(tlocalvarsym(p).vardef) then
  4243. finalize_sym(TAsmList(arg),tsym(p));
  4244. end;
  4245. procedure thlcgobj.finalize_static_data(p: TObject; arg: pointer);
  4246. var
  4247. i : longint;
  4248. pd : tprocdef;
  4249. begin
  4250. case tsym(p).typ of
  4251. staticvarsym :
  4252. begin
  4253. { local (procedure or unit) variables only need finalization
  4254. if they are used
  4255. }
  4256. if ((tstaticvarsym(p).refs>0) or
  4257. { global (unit) variables always need finalization, since
  4258. they may also be used in another unit
  4259. }
  4260. (tstaticvarsym(p).owner.symtabletype=globalsymtable)) and
  4261. (
  4262. (tstaticvarsym(p).varspez<>vs_const) or
  4263. (vo_force_finalize in tstaticvarsym(p).varoptions)
  4264. ) and
  4265. not(vo_is_funcret in tstaticvarsym(p).varoptions) and
  4266. not(vo_is_external in tstaticvarsym(p).varoptions) and
  4267. is_managed_type(tstaticvarsym(p).vardef) and
  4268. not (
  4269. assigned(tstaticvarsym(p).fieldvarsym) and
  4270. assigned(tstaticvarsym(p).fieldvarsym.owner.defowner) and
  4271. (df_generic in tdef(tstaticvarsym(p).fieldvarsym.owner.defowner).defoptions)
  4272. )
  4273. then
  4274. finalize_sym(TAsmList(arg),tsym(p));
  4275. end;
  4276. procsym :
  4277. begin
  4278. for i:=0 to tprocsym(p).ProcdefList.Count-1 do
  4279. begin
  4280. pd:=tprocdef(tprocsym(p).ProcdefList[i]);
  4281. if assigned(pd.localst) and
  4282. (pd.procsym=tprocsym(p)) and
  4283. (pd.localst.symtabletype<>staticsymtable) then
  4284. pd.localst.SymList.ForEachCall(@finalize_static_data,arg);
  4285. end;
  4286. end;
  4287. end;
  4288. end;
  4289. procedure thlcgobj.final_paras(p: TObject; arg: pointer);
  4290. var
  4291. list : TAsmList;
  4292. href : treference;
  4293. hsym : tparavarsym;
  4294. eldef : tdef;
  4295. highloc : tlocation;
  4296. begin
  4297. if not(tsym(p).typ=paravarsym) then
  4298. exit;
  4299. list:=TAsmList(arg);
  4300. if is_managed_type(tparavarsym(p).vardef) then
  4301. begin
  4302. if (tparavarsym(p).varspez=vs_value) then
  4303. begin
  4304. include(current_procinfo.flags,pi_needs_implicit_finally);
  4305. location_get_data_ref(list,tparavarsym(p).vardef,tparavarsym(p).localloc,href,is_open_array(tparavarsym(p).vardef),sizeof(pint));
  4306. if is_open_array(tparavarsym(p).vardef) then
  4307. begin
  4308. if paramanager.push_high_param(tparavarsym(p).varspez,tparavarsym(p).vardef,current_procinfo.procdef.proccalloption) then
  4309. begin
  4310. hsym:=tparavarsym(get_high_value_sym(tparavarsym(p)));
  4311. if not assigned(hsym) then
  4312. internalerror(201003032);
  4313. highloc:=hsym.initialloc
  4314. end
  4315. else
  4316. highloc.loc:=LOC_INVALID;
  4317. eldef:=tarraydef(tparavarsym(p).vardef).elementdef;
  4318. g_array_rtti_helper(list,eldef,href,highloc,'fpc_finalize_array');
  4319. end
  4320. else
  4321. g_finalize(list,tparavarsym(p).vardef,href);
  4322. end;
  4323. end;
  4324. { open arrays can contain elements requiring init/final code, so the else has been removed here }
  4325. if (tparavarsym(p).varspez=vs_value) and
  4326. (is_open_array(tparavarsym(p).vardef) or
  4327. is_array_of_const(tparavarsym(p).vardef)) then
  4328. begin
  4329. { cdecl functions don't have a high pointer so it is not possible to generate
  4330. a local copy }
  4331. if not(current_procinfo.procdef.proccalloption in cdecl_pocalls) then
  4332. g_releasevaluepara_openarray(list,tarraydef(tparavarsym(p).vardef),tparavarsym(p).localloc);
  4333. end;
  4334. end;
  4335. { generates the code for incrementing the reference count of parameters and
  4336. initialize out parameters }
  4337. { generates the code for incrementing the reference count of parameters and
  4338. initialize out parameters }
  4339. procedure thlcgobj.init_paras(p:TObject;arg:pointer);
  4340. var
  4341. href : treference;
  4342. hsym : tparavarsym;
  4343. eldef : tdef;
  4344. list : TAsmList;
  4345. highloc : tlocation;
  4346. needs_inittable : boolean;
  4347. begin
  4348. list:=TAsmList(arg);
  4349. if (tsym(p).typ=paravarsym) then
  4350. begin
  4351. needs_inittable:=is_managed_type(tparavarsym(p).vardef);
  4352. case tparavarsym(p).varspez of
  4353. vs_value :
  4354. if needs_inittable then
  4355. begin
  4356. { variants are already handled by the call to fpc_variant_copy_overwrite if
  4357. they are passed by reference }
  4358. if not((tparavarsym(p).vardef.typ=variantdef) and
  4359. paramanager.push_addr_param(tparavarsym(p).varspez,tparavarsym(p).vardef,current_procinfo.procdef.proccalloption)) then
  4360. begin
  4361. location_get_data_ref(list,tparavarsym(p).vardef,tparavarsym(p).initialloc,href,is_open_array(tparavarsym(p).vardef),sizeof(pint));
  4362. if is_open_array(tparavarsym(p).vardef) then
  4363. begin
  4364. if paramanager.push_high_param(tparavarsym(p).varspez,tparavarsym(p).vardef,current_procinfo.procdef.proccalloption) then
  4365. begin
  4366. hsym:=tparavarsym(get_high_value_sym(tparavarsym(p)));
  4367. if not assigned(hsym) then
  4368. internalerror(201003032);
  4369. highloc:=hsym.initialloc
  4370. end
  4371. else
  4372. highloc.loc:=LOC_INVALID;
  4373. { open arrays do not contain correct element count in their rtti,
  4374. the actual count must be passed separately. }
  4375. eldef:=tarraydef(tparavarsym(p).vardef).elementdef;
  4376. g_array_rtti_helper(list,eldef,href,highloc,'fpc_addref_array');
  4377. end
  4378. else
  4379. g_incrrefcount(list,tparavarsym(p).vardef,href);
  4380. end;
  4381. end;
  4382. vs_out :
  4383. begin
  4384. if needs_inittable then
  4385. begin
  4386. { we have no idea about the alignment at the callee side,
  4387. and the user also cannot specify "unaligned" here, so
  4388. assume worst case }
  4389. location_get_data_ref(list,tparavarsym(p).vardef,tparavarsym(p).initialloc,href,true,1);
  4390. if needs_inittable then
  4391. begin
  4392. if is_open_array(tparavarsym(p).vardef) then
  4393. begin
  4394. if paramanager.push_high_param(tparavarsym(p).varspez,tparavarsym(p).vardef,current_procinfo.procdef.proccalloption) then
  4395. begin
  4396. hsym:=tparavarsym(get_high_value_sym(tparavarsym(p)));
  4397. if not assigned(hsym) then
  4398. internalerror(201003032);
  4399. highloc:=hsym.initialloc
  4400. end
  4401. else
  4402. highloc.loc:=LOC_INVALID;
  4403. eldef:=tarraydef(tparavarsym(p).vardef).elementdef;
  4404. g_array_rtti_helper(list,eldef,href,highloc,'fpc_initialize_array');
  4405. end
  4406. else
  4407. g_initialize(list,tparavarsym(p).vardef,href);
  4408. end;
  4409. end;
  4410. end;
  4411. end;
  4412. end;
  4413. end;
  4414. procedure thlcgobj.gen_load_para_value(list: TAsmList);
  4415. var
  4416. i: longint;
  4417. currpara: tparavarsym;
  4418. begin
  4419. if (po_assembler in current_procinfo.procdef.procoptions) or
  4420. { exceptfilters have a single hidden 'parentfp' parameter, which
  4421. is handled by tcg.g_proc_entry. }
  4422. (current_procinfo.procdef.proctypeoption=potype_exceptfilter) then
  4423. exit;
  4424. { Copy parameters to local references/registers }
  4425. for i:=0 to current_procinfo.procdef.paras.count-1 do
  4426. begin
  4427. currpara:=tparavarsym(current_procinfo.procdef.paras[i]);
  4428. gen_load_cgpara_loc(list,currpara.vardef,currpara.paraloc[calleeside],currpara.initialloc,paramanager.param_use_paraloc(currpara.paraloc[calleeside]));
  4429. end;
  4430. { generate copies of call by value parameters, must be done before
  4431. the initialization and body is parsed because the refcounts are
  4432. incremented using the local copies }
  4433. current_procinfo.procdef.parast.SymList.ForEachCall(@g_copyvalueparas,list);
  4434. if not(po_assembler in current_procinfo.procdef.procoptions) then
  4435. begin
  4436. { initialize refcounted paras, and trash others. Needed here
  4437. instead of in gen_initialize_code, because when a reference is
  4438. intialised or trashed while the pointer to that reference is kept
  4439. in a regvar, we add a register move and that one again has to
  4440. come after the parameter loading code as far as the register
  4441. allocator is concerned }
  4442. current_procinfo.procdef.parast.SymList.ForEachCall(@init_paras,list);
  4443. end;
  4444. end;
  4445. procedure thlcgobj.g_copyvalueparas(p: TObject; arg: pointer);
  4446. var
  4447. href : treference;
  4448. hreg : tregister;
  4449. list : TAsmList;
  4450. hsym : tparavarsym;
  4451. l : longint;
  4452. highloc,
  4453. localcopyloc : tlocation;
  4454. begin
  4455. list:=TAsmList(arg);
  4456. if (tsym(p).typ=paravarsym) and
  4457. (tparavarsym(p).varspez=vs_value) and
  4458. (paramanager.push_addr_param(tparavarsym(p).varspez,tparavarsym(p).vardef,current_procinfo.procdef.proccalloption)) then
  4459. begin
  4460. { we have no idea about the alignment at the caller side }
  4461. location_get_data_ref(list,tparavarsym(p).vardef,tparavarsym(p).initialloc,href,true,1);
  4462. if is_open_array(tparavarsym(p).vardef) or
  4463. is_array_of_const(tparavarsym(p).vardef) then
  4464. begin
  4465. { cdecl functions don't have a high pointer so it is not possible to generate
  4466. a local copy }
  4467. if not(current_procinfo.procdef.proccalloption in cdecl_pocalls) then
  4468. begin
  4469. if paramanager.push_high_param(tparavarsym(p).varspez,tparavarsym(p).vardef,current_procinfo.procdef.proccalloption) then
  4470. begin
  4471. hsym:=tparavarsym(get_high_value_sym(tparavarsym(p)));
  4472. if not assigned(hsym) then
  4473. internalerror(2011020506);
  4474. highloc:=hsym.initialloc
  4475. end
  4476. else
  4477. highloc.loc:=LOC_INVALID;
  4478. hreg:=getaddressregister(list,voidpointertype);
  4479. if not is_packed_array(tparavarsym(p).vardef) then
  4480. g_copyvaluepara_openarray(list,href,highloc,tarraydef(tparavarsym(p).vardef),hreg)
  4481. else
  4482. internalerror(2011020507);
  4483. // cg.g_copyvaluepara_packedopenarray(list,href,hsym.intialloc,tarraydef(tparavarsym(p).vardef).elepackedbitsize,hreg);
  4484. a_load_reg_loc(list,tparavarsym(p).vardef,tparavarsym(p).vardef,hreg,tparavarsym(p).initialloc);
  4485. end;
  4486. end
  4487. else
  4488. begin
  4489. { Allocate space for the local copy }
  4490. l:=tparavarsym(p).getsize;
  4491. localcopyloc.loc:=LOC_REFERENCE;
  4492. localcopyloc.size:=int_cgsize(l);
  4493. tg.GetLocal(list,l,tparavarsym(p).vardef,localcopyloc.reference);
  4494. { Copy data }
  4495. if is_shortstring(tparavarsym(p).vardef) then
  4496. begin
  4497. { this code is only executed before the code for the body and the entry/exit code is generated
  4498. so we're allowed to include pi_do_call here; after pass1 is run, this isn't allowed anymore
  4499. }
  4500. include(current_procinfo.flags,pi_do_call);
  4501. g_copyshortstring(list,href,localcopyloc.reference,tstringdef(tparavarsym(p).vardef))
  4502. end
  4503. else if tparavarsym(p).vardef.typ=variantdef then
  4504. begin
  4505. { this code is only executed before the code for the body and the entry/exit code is generated
  4506. so we're allowed to include pi_do_call here; after pass1 is run, this isn't allowed anymore
  4507. }
  4508. include(current_procinfo.flags,pi_do_call);
  4509. g_copyvariant(list,href,localcopyloc.reference,tvariantdef(tparavarsym(p).vardef))
  4510. end
  4511. else
  4512. begin
  4513. { pass proper alignment info }
  4514. localcopyloc.reference.alignment:=tparavarsym(p).vardef.alignment;
  4515. g_concatcopy(list,tparavarsym(p).vardef,href,localcopyloc.reference);
  4516. end;
  4517. { update localloc of varsym }
  4518. tg.Ungetlocal(list,tparavarsym(p).localloc.reference);
  4519. tparavarsym(p).localloc:=localcopyloc;
  4520. tparavarsym(p).initialloc:=localcopyloc;
  4521. end;
  4522. end;
  4523. end;
  4524. procedure thlcgobj.gen_loadfpu_loc_cgpara(list: TAsmList; size: tdef; const l: tlocation; const cgpara: tcgpara; locintsize: longint);
  4525. var
  4526. tmploc: tlocation;
  4527. begin
  4528. case l.loc of
  4529. LOC_MMREGISTER,
  4530. LOC_CMMREGISTER:
  4531. case cgpara.location^.loc of
  4532. LOC_REFERENCE,
  4533. LOC_CREFERENCE,
  4534. LOC_MMREGISTER,
  4535. LOC_CMMREGISTER,
  4536. LOC_REGISTER,
  4537. LOC_CREGISTER :
  4538. a_loadmm_reg_cgpara(list,size,l.register,cgpara,mms_movescalar);
  4539. LOC_FPUREGISTER,
  4540. LOC_CFPUREGISTER:
  4541. begin
  4542. tmploc:=l;
  4543. location_force_fpureg(list,tmploc,size,false);
  4544. a_loadfpu_reg_cgpara(list,size,tmploc.register,cgpara);
  4545. end;
  4546. else
  4547. internalerror(200204249);
  4548. end;
  4549. LOC_FPUREGISTER,
  4550. LOC_CFPUREGISTER:
  4551. case cgpara.location^.loc of
  4552. LOC_MMREGISTER,
  4553. LOC_CMMREGISTER:
  4554. begin
  4555. tmploc:=l;
  4556. location_force_mmregscalar(list,tmploc,size,false);
  4557. a_loadmm_reg_cgpara(list,size,tmploc.register,cgpara,mms_movescalar);
  4558. end;
  4559. { Some targets pass floats in normal registers }
  4560. LOC_REGISTER,
  4561. LOC_CREGISTER,
  4562. LOC_REFERENCE,
  4563. LOC_CREFERENCE,
  4564. LOC_FPUREGISTER,
  4565. LOC_CFPUREGISTER:
  4566. a_loadfpu_reg_cgpara(list,size,l.register,cgpara);
  4567. else
  4568. internalerror(2011010210);
  4569. end;
  4570. LOC_REFERENCE,
  4571. LOC_CREFERENCE:
  4572. case cgpara.location^.loc of
  4573. LOC_MMREGISTER,
  4574. LOC_CMMREGISTER:
  4575. a_loadmm_ref_cgpara(list,size,l.reference,cgpara,mms_movescalar);
  4576. { Some targets pass floats in normal registers }
  4577. LOC_REGISTER,
  4578. LOC_CREGISTER,
  4579. LOC_REFERENCE,
  4580. LOC_CREFERENCE,
  4581. LOC_FPUREGISTER,
  4582. LOC_CFPUREGISTER:
  4583. a_loadfpu_ref_cgpara(list,size,l.reference,cgpara);
  4584. else
  4585. internalerror(2011010211);
  4586. end;
  4587. LOC_REGISTER,
  4588. LOC_CREGISTER :
  4589. a_load_loc_cgpara(list,size,l,cgpara);
  4590. else
  4591. internalerror(2011010212);
  4592. end;
  4593. end;
  4594. procedure thlcgobj.gen_load_uninitialized_function_result(list: TAsmList; pd: tprocdef; resdef: tdef; const resloc: tcgpara);
  4595. begin
  4596. { do nothing by default }
  4597. end;
  4598. procedure thlcgobj.gen_load_loc_function_result(list: TAsmList; vardef: tdef; const l: tlocation);
  4599. begin
  4600. gen_load_loc_cgpara(list,vardef,l,current_procinfo.procdef.funcretloc[calleeside]);
  4601. end;
  4602. procedure thlcgobj.gen_load_loc_cgpara(list: TAsmList; vardef: tdef; const l: tlocation; const cgpara: tcgpara);
  4603. begin
  4604. { Handle Floating point types differently
  4605. This doesn't depend on emulator settings, emulator settings should
  4606. be handled by cpupara }
  4607. if (vardef.typ=floatdef) or
  4608. { some ABIs return certain records in an fpu register }
  4609. (l.loc in [LOC_FPUREGISTER,LOC_CFPUREGISTER]) or
  4610. (assigned(cgpara.location) and
  4611. (cgpara.Location^.loc in [LOC_FPUREGISTER,LOC_CFPUREGISTER])) then
  4612. begin
  4613. gen_loadfpu_loc_cgpara(list,vardef,l,cgpara,vardef.size);
  4614. exit;
  4615. end;
  4616. case l.loc of
  4617. LOC_CONSTANT,
  4618. LOC_REGISTER,
  4619. LOC_CREGISTER,
  4620. LOC_REFERENCE,
  4621. LOC_CREFERENCE :
  4622. begin
  4623. a_load_loc_cgpara(list,vardef,l,cgpara);
  4624. end;
  4625. LOC_MMREGISTER,
  4626. LOC_CMMREGISTER:
  4627. begin
  4628. if use_vectorfpu(vardef) then
  4629. a_loadmm_loc_cgpara(list,vardef,l,cgpara,mms_movescalar)
  4630. else
  4631. { no vector support yet }
  4632. internalerror(2012071212);
  4633. {
  4634. cg.a_loadmm_loc_cgpara(list,l,cgpara,nil);
  4635. }
  4636. end;
  4637. else
  4638. internalerror(2011010213);
  4639. end;
  4640. end;
  4641. procedure thlcgobj.gen_load_cgpara_loc(list: TAsmList; vardef: tdef; const para: TCGPara; var destloc: tlocation; reusepara: boolean);
  4642. var
  4643. href : treference;
  4644. begin
  4645. para.check_simple_location;
  4646. { skip e.g. empty records }
  4647. if (para.location^.loc = LOC_VOID) then
  4648. exit;
  4649. case destloc.loc of
  4650. LOC_REFERENCE :
  4651. begin
  4652. { If the parameter location is reused we don't need to copy
  4653. anything }
  4654. if not reusepara then
  4655. begin
  4656. case para.location^.loc of
  4657. LOC_REFERENCE,LOC_CREFERENCE:
  4658. begin
  4659. reference_reset_base(href,voidstackpointertype,para.location^.reference.index,para.location^.reference.offset,para.alignment);
  4660. a_load_ref_ref(list,para.def,para.def,href,destloc.reference);
  4661. end;
  4662. else
  4663. internalerror(2013102301);
  4664. end;
  4665. end;
  4666. end;
  4667. { TODO other possible locations }
  4668. else
  4669. internalerror(2011010308);
  4670. end;
  4671. end;
  4672. procedure thlcgobj.gen_load_return_value(list: TAsmList);
  4673. var
  4674. ressym : tabstractnormalvarsym;
  4675. retdef : tdef;
  4676. begin
  4677. { Is the loading needed? }
  4678. if is_void(current_procinfo.procdef.returndef) or
  4679. (
  4680. (po_assembler in current_procinfo.procdef.procoptions) and
  4681. (not(assigned(current_procinfo.procdef.funcretsym)) or
  4682. (tabstractvarsym(current_procinfo.procdef.funcretsym).refs=0) or
  4683. (po_nostackframe in current_procinfo.procdef.procoptions))
  4684. ) then
  4685. exit;
  4686. { constructors return self }
  4687. if (current_procinfo.procdef.proctypeoption=potype_constructor) then
  4688. begin
  4689. ressym:=tabstractnormalvarsym(current_procinfo.procdef.parast.Find('self'));
  4690. retdef:=ressym.vardef;
  4691. { and TP-style constructors return a pointer to self }
  4692. if is_object(ressym.vardef) then
  4693. retdef:=getpointerdef(retdef);
  4694. end
  4695. else
  4696. begin
  4697. ressym:=tabstractnormalvarsym(current_procinfo.procdef.funcretsym);
  4698. retdef:=ressym.vardef;
  4699. end;
  4700. if (ressym.refs>0) or
  4701. is_managed_type(retdef) then
  4702. begin
  4703. { was: don't do anything if funcretloc.loc in [LOC_INVALID,LOC_REFERENCE] }
  4704. if not paramanager.ret_in_param(current_procinfo.procdef.returndef,current_procinfo.procdef) then
  4705. gen_load_loc_function_result(list,retdef,ressym.localloc);
  4706. end
  4707. else
  4708. gen_load_uninitialized_function_result(list,current_procinfo.procdef,retdef,current_procinfo.procdef.funcretloc[calleeside])
  4709. end;
  4710. procedure thlcgobj.record_generated_code_for_procdef(pd: tprocdef; code, data: TAsmList);
  4711. begin
  4712. { add the procedure to the al_procedures }
  4713. maybe_new_object_file(current_asmdata.asmlists[al_procedures]);
  4714. new_section(current_asmdata.asmlists[al_procedures],sec_code,lower(pd.mangledname),getprocalign);
  4715. current_asmdata.asmlists[al_procedures].concatlist(code);
  4716. { save local data (casetable) also in the same file }
  4717. if assigned(data) and
  4718. (not data.empty) then
  4719. current_asmdata.asmlists[al_procedures].concatlist(data);
  4720. end;
  4721. function thlcgobj.g_call_system_proc(list: TAsmList; const procname: string; const paras: array of pcgpara; forceresdef: tdef): tcgpara;
  4722. var
  4723. pd: tprocdef;
  4724. begin
  4725. pd:=search_system_proc(procname);
  4726. pd.init_paraloc_info(callerside);
  4727. result:=g_call_system_proc_intern(list,pd,paras,forceresdef);
  4728. end;
  4729. function thlcgobj.g_call_system_proc(list: TAsmList; pd: tprocdef; const paras: array of pcgpara; forceresdef: tdef): tcgpara;
  4730. begin
  4731. { separate non-virtual routine to make it clear that the routine to
  4732. override, if any, is g_call_system_proc_intern (and that none of
  4733. the g_call_system_proc variants should be made virtual) }
  4734. pd.init_paraloc_info(callerside);
  4735. result:=g_call_system_proc_intern(list,pd,paras,forceresdef);
  4736. end;
  4737. function thlcgobj.g_call_system_proc_intern(list: TAsmList; pd: tprocdef; const paras: array of pcgpara; forceresdef: tdef): tcgpara;
  4738. begin
  4739. allocallcpuregisters(list);
  4740. result:=a_call_name(list,pd,pd.mangledname,paras,forceresdef,false);
  4741. deallocallcpuregisters(list);
  4742. end;
  4743. end.