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https://gitlab.com/freepascal.org/fpc/source.git
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872 lines
32 KiB
ObjectPascal
872 lines
32 KiB
ObjectPascal
{
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Copyright (c) 2002 by Florian Klaempfl
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Generic calling convention handling
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This program is free software; you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation; either version 2 of the License, or
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(at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program; if not, write to the Free Software
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Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
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****************************************************************************
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}
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{# Parameter passing manager. Used to manage how
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parameters are passed to routines.
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}
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unit paramgr;
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{$i fpcdefs.inc}
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interface
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uses
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globtype,
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cpubase,cgbase,cgutils,
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parabase,
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aasmdata,
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symconst,symtype,symsym,symdef;
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type
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{# This class defines some methods to take care of routine
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parameters. It should be overridden for each new processor
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}
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{ tparamanager }
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tparamanager = class
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{ true if the location in paraloc can be reused as localloc }
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function param_use_paraloc(const cgpara:tcgpara):boolean;virtual;
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{ Returns true if the return value is actually a parameter pointer }
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function ret_in_param(def:tdef;pd:tabstractprocdef):boolean;virtual;
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{ Returns true if a result variable should be allocated for an assembler routine }
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function asm_result_var(def:tdef;pd:tabstractprocdef):boolean;virtual;
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function push_high_param(varspez:tvarspez;def : tdef;calloption : tproccalloption) : boolean;virtual;
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function keep_para_array_range(varspez:tvarspez;def : tdef;calloption : tproccalloption) : boolean;virtual;
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{ Returns true if a parameter is too large to copy and only
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the address is pushed
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}
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function push_addr_param(varspez:tvarspez;def : tdef;calloption : tproccalloption) : boolean;virtual;abstract;
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{ returns true if a parameter must be handled via copy-out (construct
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a reference, copy the parameter's value there in case of copy-in/out, pass the reference)
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}
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function push_copyout_param(varspez:tvarspez;def : tdef;calloption : tproccalloption) : boolean;virtual;
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{ return the size of a push }
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function push_size(varspez:tvarspez;def : tdef;calloption : tproccalloption) : longint;virtual;
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{# Returns a structure giving the information on
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the storage of the parameter (which must be
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an integer parameter). This is only used when calling
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internal routines directly, where all parameters must
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be 4-byte values.
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In case the location is a register, this register is allocated.
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Call freeintparaloc() after the call to free the locations again.
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Default implementation: don't do anything at all (in case you don't
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use register parameter passing)
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@param(list Current assembler list)
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@param(nr Parameter number of routine, starting from 1)
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}
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function get_para_align(calloption : tproccalloption):byte;virtual;
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function get_volatile_registers_int(calloption : tproccalloption):tcpuregisterset;virtual;
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function get_volatile_registers_address(calloption : tproccalloption):tcpuregisterset;virtual;
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function get_volatile_registers_fpu(calloption : tproccalloption):tcpuregisterset;virtual;
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function get_volatile_registers_flags(calloption : tproccalloption):tcpuregisterset;virtual;
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function get_volatile_registers_mm(calloption : tproccalloption):tcpuregisterset;virtual;
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{# Registers which must be saved when calling a routine declared as
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cppdecl, cdecl, stdcall, safecall, palmossyscall. The registers
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saved should be the ones as defined in the target ABI and / or GCC.
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This value can be deduced from the CALLED_USED_REGISTERS array in the
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GCC source.
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}
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function get_saved_registers_int(calloption : tproccalloption):tcpuregisterarray;virtual;
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function get_saved_registers_address(calloption : tproccalloption):tcpuregisterarray;virtual;
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function get_saved_registers_fpu(calloption : tproccalloption):tcpuregisterarray;virtual;
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function get_saved_registers_mm(calloption : tproccalloption):tcpuregisterarray;virtual;
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{ \brief Get a parameter location for calling a procdef directly instead of via a call node }
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{ \returns parameter location in \c cgpara for parameter \c nr of \c pd }
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procedure getcgtempparaloc(list: TAsmList; pd: tabstractprocdef; nr : longint; var cgpara: tcgpara);virtual;
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{# allocate an individual pcgparalocation that's part of a tcgpara
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@param(list Current assembler list)
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@param(loc Parameter location element)
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}
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procedure allocparaloc(list: TAsmList; const paraloc: pcgparalocation);
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{# allocate a parameter location created with create_paraloc_info
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@param(list Current assembler list)
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@param(loc Parameter location)
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}
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procedure alloccgpara(list: TAsmList; const cgpara: TCGPara); virtual;
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{# free a parameter location allocated with alloccgpara
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@param(list Current assembler list)
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@param(loc Parameter location)
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}
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procedure freecgpara(list: TAsmList; const cgpara: TCGPara); virtual;
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{ This is used to populate the location information on all parameters
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for the routine as seen in either the caller or the callee. It returns
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the size allocated on the stack
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}
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function create_paraloc_info(p : tabstractprocdef; side: tcallercallee):longint;virtual;abstract;
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{ Returns the location of the function result if p had def as
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function result instead of its actual result. Used if the compiler
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forces the function result to something different than the real
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result. }
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function get_funcretloc(p : tabstractprocdef; side: tcallercallee; forcetempdef: tdef): tcgpara;virtual;abstract;
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function get_safecallresult_funcretloc(p : tabstractprocdef; side: tcallercallee): tcgpara; virtual;
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procedure create_funcretloc_info(p : tabstractprocdef; side: tcallercallee);
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{ This is used to populate the location information on all parameters
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for the routine when it is being inlined. It returns
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the size allocated on the stack
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}
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function create_inline_paraloc_info(p : tabstractprocdef):longint;virtual;
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{ This is used to populate the location information on all parameters
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for the routine that are passed as varargs. It returns
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the size allocated on the stack (including the normal parameters)
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}
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function create_varargs_paraloc_info(p : tabstractprocdef; side: tcallercallee; varargspara:tvarargsparalist):longint;virtual;abstract;
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function is_stack_paraloc(paraloc: pcgparalocation): boolean;virtual;
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procedure createtempparaloc(list: TAsmList;calloption : tproccalloption;parasym : tparavarsym;can_use_final_stack_loc : boolean;var cgpara:TCGPara);virtual;
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procedure duplicatecgparaloc(const orgparaloc: pcgparalocation; intonewparaloc: pcgparalocation);
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procedure duplicateparaloc(list: TAsmList;calloption : tproccalloption;parasym : tparavarsym;var cgpara:TCGPara);
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function parseparaloc(parasym : tparavarsym;const s : string) : boolean;virtual;
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function parsefuncretloc(p : tabstractprocdef; const s : string) : boolean;virtual;
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{ Convert a list of CGParaLocation entries to a RTTIParaLoc array that
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can be written by ncgrtti }
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function cgparalocs_to_rttiparalocs(paralocs:pcgparalocation):trttiparalocs;
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{ allocate room for parameters on the stack in the entry code? }
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function use_fixed_stack: boolean;
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{ whether stack pointer can be changed in the middle of procedure }
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function use_stackalloc: boolean;
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{ Returns true for platforms where the parameters are part of the signature
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and checked by the runtime/backend compiler (e.g. JVM, LLVM).
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The default implementation returns false. }
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function has_strict_proc_signature: boolean; virtual;
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{ Returns true if parasym is unused and can be optimized. }
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function can_opt_unused_para(parasym: tparavarsym): boolean;
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strict protected
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{ common part of get_funcretloc; returns true if retloc is completely
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initialized afterwards }
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function set_common_funcretloc_info(p : tabstractprocdef; forcetempdef: tdef; out retcgsize: tcgsize; out retloc: tcgpara): boolean;
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{ common part of ret_in_param; is called by ret_in_param at the
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beginning and every tparamanager descendant can decide to call it
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itself as well; parameter retinparam is only valid if function
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returns true }
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function handle_common_ret_in_param(def:tdef;pd:tabstractprocdef;out retinparam:boolean):boolean;
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{ returns the def to use for a tparalocation part of a cgpara for paradef,
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for which the def is paradef and the integer length is restlen.
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fullsize is true if restlen equals the full paradef size }
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function get_paraloc_def(paradef: tdef; restlen: aint; fullsize: boolean): tdef;
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{ convert a single CGParaLocation to a RTTIParaLoc; the method *might*
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be overriden by targets to provide backwards compatibility with
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older versions in case register indices changed }
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function cgparaloc_to_rttiparaloc(paraloc:pcgparalocation):trttiparaloc;virtual;
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end;
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var
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paramanager : tparamanager;
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implementation
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uses
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systems,
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globals,
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cgobj,tgobj,
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defutil,verbose,
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hlcgobj;
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{ true if the location in paraloc can be reused as localloc }
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function tparamanager.param_use_paraloc(const cgpara:tcgpara):boolean;
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begin
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result:=false;
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end;
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{ true if uses a parameter as return value }
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function tparamanager.ret_in_param(def:tdef;pd:tabstractprocdef):boolean;
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begin
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{ This handles all managed types, including COM interfaces and Variants }
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if handle_common_ret_in_param(def,pd,result) then
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exit;
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ret_in_param:=(def.typ=arraydef) or
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(def.typ=recorddef) or
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(def.typ=stringdef) or
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((def.typ=procvardef) and not tprocvardef(def).is_addressonly) or
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((def.typ=objectdef) and (is_object(def))) or
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((def.typ=setdef) and not is_smallset(def));
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end;
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{ true if a result variable should be allocated for an assembler routine }
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function tparamanager.asm_result_var(def:tdef;pd:tabstractprocdef):boolean;
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begin
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if not(po_assembler in pd.procoptions) then
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internalerror(2018021501);
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result:=true;
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end;
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function tparamanager.push_high_param(varspez:tvarspez;def : tdef;calloption : tproccalloption) : boolean;
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begin
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push_high_param:=not(calloption in cdecl_pocalls) and
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(
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is_open_array(def) or
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is_open_string(def) or
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is_array_of_const(def)
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);
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end;
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function tparamanager.keep_para_array_range(varspez: tvarspez; def: tdef; calloption: tproccalloption): boolean;
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begin
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result:=push_high_param(varspez,def,calloption);
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end;
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function tparamanager.push_copyout_param(varspez: tvarspez; def: tdef; calloption: tproccalloption): boolean;
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begin
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push_copyout_param:=false;
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end;
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{ return the size of a push }
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function tparamanager.push_size(varspez:tvarspez;def : tdef;calloption : tproccalloption) : longint;
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begin
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push_size:=-1;
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case varspez of
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vs_constref,
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vs_out,
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vs_var :
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push_size:=voidpointertype.size;
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vs_value,
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vs_const :
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begin
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if push_addr_param(varspez,def,calloption) then
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push_size:=voidpointertype.size
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else
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begin
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{ special array are normally pushed by addr, only for
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cdecl array of const it comes here and the pushsize
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is unknown }
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if is_array_of_const(def) then
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push_size:=0
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else
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push_size:=def.size;
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end;
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end;
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else
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;
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end;
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end;
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function tparamanager.get_para_align(calloption : tproccalloption):byte;
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begin
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result:=std_param_align;
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end;
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function tparamanager.get_volatile_registers_int(calloption : tproccalloption):tcpuregisterset;
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begin
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result:=[];
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end;
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function tparamanager.get_volatile_registers_address(calloption : tproccalloption):tcpuregisterset;
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begin
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result:=[];
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end;
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function tparamanager.get_volatile_registers_fpu(calloption : tproccalloption):tcpuregisterset;
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begin
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result:=[];
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end;
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function tparamanager.get_volatile_registers_flags(calloption : tproccalloption):tcpuregisterset;
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begin
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result:=[];
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end;
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function tparamanager.get_volatile_registers_mm(calloption : tproccalloption):tcpuregisterset;
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begin
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result:=[];
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end;
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function tparamanager.get_saved_registers_int(calloption : tproccalloption):tcpuregisterarray;
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const
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inv: tcpuregisterarray = (RS_INVALID);
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begin
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result:=inv;
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end;
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function tparamanager.get_saved_registers_address(calloption : tproccalloption):tcpuregisterarray;
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const
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inv: tcpuregisterarray = (RS_INVALID);
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begin
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result:=inv;
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end;
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function tparamanager.get_saved_registers_fpu(calloption : tproccalloption):tcpuregisterarray;
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const
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inv: tcpuregisterarray = (RS_INVALID);
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begin
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result:=inv;
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end;
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function tparamanager.get_saved_registers_mm(calloption : tproccalloption):tcpuregisterarray;
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const
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inv: tcpuregisterarray = (RS_INVALID);
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begin
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result:=inv;
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end;
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{$if first_mm_imreg = 0}
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{$WARN 4044 OFF} { Comparison might be always false ... }
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{$endif}
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procedure tparamanager.allocparaloc(list: TAsmList; const paraloc: pcgparalocation);
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begin
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case paraloc^.loc of
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LOC_REGISTER,
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LOC_CREGISTER:
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begin
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if getsupreg(paraloc^.register)<first_int_imreg then
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cg.getcpuregister(list,paraloc^.register);
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end;
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{$ifndef x86}
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{ don't allocate ST(x), they're not handled by the register allocator }
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LOC_FPUREGISTER,
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LOC_CFPUREGISTER:
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begin
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if getsupreg(paraloc^.register)<first_fpu_imreg then
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cg.getcpuregister(list,paraloc^.register);
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end;
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{$endif not x86}
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LOC_MMREGISTER,
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LOC_CMMREGISTER :
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begin
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if getsupreg(paraloc^.register)<first_mm_imreg then
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cg.getcpuregister(list,paraloc^.register);
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end;
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else
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;
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end;
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end;
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procedure tparamanager.alloccgpara(list: TAsmList; const cgpara: TCGPara);
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var
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paraloc : pcgparalocation;
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begin
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paraloc:=cgpara.location;
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while assigned(paraloc) do
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begin
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allocparaloc(list,paraloc);
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paraloc:=paraloc^.next;
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end;
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end;
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procedure tparamanager.freecgpara(list: TAsmList; const cgpara: TCGPara);
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var
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paraloc : Pcgparalocation;
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href : treference;
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begin
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paraloc:=cgpara.location;
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while assigned(paraloc) do
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begin
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case paraloc^.loc of
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LOC_VOID:
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;
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LOC_REGISTER,
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LOC_CREGISTER:
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begin
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if getsupreg(paraloc^.register)<first_int_imreg then
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cg.ungetcpuregister(list,paraloc^.register);
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end;
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LOC_FPUREGISTER,
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LOC_CFPUREGISTER:
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begin
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if getsupreg(paraloc^.register)<first_fpu_imreg then
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cg.ungetcpuregister(list,paraloc^.register);
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end;
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LOC_MMREGISTER,
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LOC_CMMREGISTER :
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begin
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if getsupreg(paraloc^.register)<first_mm_imreg then
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cg.ungetcpuregister(list,paraloc^.register);
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end;
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LOC_REFERENCE,
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LOC_CREFERENCE :
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begin
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if use_fixed_stack then
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begin
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{ don't use reference_reset_base, because that will depend on cgobj }
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fillchar(href,sizeof(href),0);
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href.base:=paraloc^.reference.index;
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href.offset:=paraloc^.reference.offset;
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href.temppos:=ctempposinvalid;
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tg.ungetiftemp(list,href);
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end;
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end;
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else
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internalerror(2004110212);
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end;
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paraloc:=paraloc^.next;
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end;
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end;
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function tparamanager.get_safecallresult_funcretloc(p: tabstractprocdef; side: tcallercallee): tcgpara;
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var
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paraloc: pcgparalocation;
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begin
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result.init;
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result.def:=ossinttype;
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result.intsize:=result.def.size;
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result.size:=def_cgsize(result.def);
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result.alignment:=result.def.alignment;
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paraloc:=result.add_location;
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paraloc^.size:=result.size;
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paraloc^.def:=result.def;
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paraloc^.loc:=LOC_REGISTER;
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if side=callerside then
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paraloc^.register:=NR_FUNCTION_RESULT_REG
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else
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paraloc^.register:=NR_FUNCTION_RETURN_REG;
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result.Temporary:=true;
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end;
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function tparamanager.is_stack_paraloc(paraloc: pcgparalocation): boolean;
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begin
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result:=
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assigned(paraloc) and
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(paraloc^.loc=LOC_REFERENCE) and
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(paraloc^.reference.index=NR_STACK_POINTER_REG);
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end;
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procedure tparamanager.createtempparaloc(list: TAsmList;calloption : tproccalloption;parasym : tparavarsym;can_use_final_stack_loc : boolean;var cgpara:TCGPara);
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var
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href : treference;
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len : aint;
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paraloc,
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newparaloc : pcgparalocation;
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begin
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paraloc:=parasym.paraloc[callerside].location;
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cgpara.reset;
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cgpara.size:=parasym.paraloc[callerside].size;
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cgpara.intsize:=parasym.paraloc[callerside].intsize;
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cgpara.alignment:=parasym.paraloc[callerside].alignment;
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cgpara.def:=parasym.paraloc[callerside].def;
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while assigned(paraloc) do
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begin
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if paraloc^.size=OS_NO then
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len:=push_size(parasym.varspez,parasym.vardef,calloption)
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else
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len:=tcgsize2size[paraloc^.size];
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newparaloc:=cgpara.add_location;
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newparaloc^.size:=paraloc^.size;
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newparaloc^.def:=paraloc^.def;
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{ shiftval overlaps with part of the reference, so it may be
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different from 0 and if wr then force the newparaloc to a register
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in the optimization below, shiftval will remain <> 0 }
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if not(paraloc^.loc in [LOC_REFERENCE,LOC_CREFERENCE]) then
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newparaloc^.shiftval:=paraloc^.shiftval;
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{ $warning maybe release this optimization for all targets? }
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{ released for all CPUs:
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i386 isn't affected anyways because it uses the stack to push parameters
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on arm it reduces executable size of the compiler by 2.1 per cent (FK) }
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{ Does it fit a register? }
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if ((not can_use_final_stack_loc and
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use_fixed_stack) or
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not is_stack_paraloc(paraloc)) and
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(len<=sizeof(pint)) and
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(paraloc^.size in [OS_8,OS_16,OS_32,OS_64,OS_128,OS_S8,OS_S16,OS_S32,OS_S64,OS_S128]) then
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newparaloc^.loc:=LOC_REGISTER
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else
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newparaloc^.loc:=paraloc^.loc;
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case newparaloc^.loc of
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LOC_REGISTER :
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begin
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if (vo_has_explicit_paraloc in parasym.varoptions) and (paraloc^.loc = LOC_REGISTER) then
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if getregtype(paraloc^.register) = R_ADDRESSREGISTER then
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newparaloc^.register:=cg.getaddressregister(list)
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else
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newparaloc^.register:=cg.getintregister(list,paraloc^.size)
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else
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begin
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{$ifdef cpu_uses_separate_address_registers}
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if hlcg.def2regtyp(paraloc^.def) = R_ADDRESSREGISTER then
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newparaloc^.register:=hlcg.getaddressregister(list,paraloc^.def)
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else
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{$endif}
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newparaloc^.register:=cg.getintregister(list,paraloc^.size);
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end;
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end;
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LOC_FPUREGISTER :
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newparaloc^.register:=cg.getfpuregister(list,paraloc^.size);
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LOC_MMREGISTER :
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newparaloc^.register:=cg.getmmregister(list,paraloc^.size);
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LOC_REFERENCE :
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begin
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if (can_use_final_stack_loc or
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not use_fixed_stack) and
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is_stack_paraloc(paraloc) then
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duplicatecgparaloc(paraloc,newparaloc)
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else
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begin
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if assigned(cgpara.def) then
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tg.gethltemp(list,cgpara.def,len,tt_persistent,href)
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else
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tg.gettemp(list,len,cgpara.alignment,tt_persistent,href);
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newparaloc^.reference.index:=href.base;
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newparaloc^.reference.offset:=href.offset;
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end;
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end;
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else
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;
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end;
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paraloc:=paraloc^.next;
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end;
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end;
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procedure tparamanager.duplicatecgparaloc(const orgparaloc: pcgparalocation; intonewparaloc: pcgparalocation);
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begin
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move(orgparaloc^,intonewparaloc^,sizeof(intonewparaloc^));
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intonewparaloc^.next:=nil;
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end;
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procedure tparamanager.duplicateparaloc(list: TAsmList;calloption : tproccalloption;parasym : tparavarsym;var cgpara:TCGPara);
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var
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paraloc,
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newparaloc : pcgparalocation;
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begin
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cgpara.reset;
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cgpara.size:=parasym.paraloc[callerside].size;
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cgpara.intsize:=parasym.paraloc[callerside].intsize;
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cgpara.alignment:=parasym.paraloc[callerside].alignment;
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paraloc:=parasym.paraloc[callerside].location;
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while assigned(paraloc) do
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begin
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newparaloc:=cgpara.add_location;
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duplicatecgparaloc(paraloc,newparaloc);
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paraloc:=paraloc^.next;
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end;
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end;
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procedure tparamanager.create_funcretloc_info(p : tabstractprocdef; side: tcallercallee);
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begin
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if not assigned(p.funcretloc[side].Location) then
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p.funcretloc[side]:=get_funcretloc(p,side,nil);
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end;
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function tparamanager.create_inline_paraloc_info(p : tabstractprocdef):longint;
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begin
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{ We need to return the size allocated }
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p.init_paraloc_info(callbothsides);
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result:=p.calleeargareasize;
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end;
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{ used by syscall conventions which require explicit paralocation support }
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{ this is the standard implementation, CGs might overwrite it }
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function tparamanager.parseparaloc(parasym: tparavarsym; const s: string): boolean;
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var
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paraloc : pcgparalocation;
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begin
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parasym.paraloc[callerside].alignment:=sizeof(pint);
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paraloc:=parasym.paraloc[callerside].add_location;
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paraloc^.loc:=LOC_REGISTER;
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paraloc^.size:=def_cgsize(parasym.vardef);
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paraloc^.def:=parasym.vardef;
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paraloc^.register:=std_regnum_search(lowercase(s));
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{ copy to callee side }
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parasym.paraloc[calleeside].add_location^:=paraloc^;
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result:=(paraloc^.register <> NR_NO) and
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(paraloc^.register <> NR_STACK_POINTER_REG);
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end;
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function tparamanager.parsefuncretloc(p: tabstractprocdef; const s: string): boolean;
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begin
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Result:=False;
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internalerror(200807236);
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end;
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function tparamanager.use_fixed_stack: boolean;
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begin
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{$ifdef i386}
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result := target_info.stackalign > 4;
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{$else i386}
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{$ifdef cputargethasfixedstack}
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result := true;
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{$else cputargethasfixedstack}
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result := false;
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{$endif cputargethasfixedstack}
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{$endif i386}
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end;
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{ This is a separate function because at least win64 allows stack allocations
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despite of fixed stack semantics (actually supporting it requires generating
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a compliant stack frame, not yet possible) }
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function tparamanager.use_stackalloc: boolean;
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begin
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result:=not use_fixed_stack;
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end;
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function tparamanager.has_strict_proc_signature: boolean;
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begin
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result:=false;
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end;
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function tparamanager.set_common_funcretloc_info(p : tabstractprocdef; forcetempdef: tdef; out retcgsize: tcgsize; out retloc: tcgpara): boolean;
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var
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paraloc : pcgparalocation;
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begin
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result:=true;
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retloc.init;
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if not assigned(forcetempdef) then
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retloc.def:=p.returndef
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else
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begin
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retloc.def:=forcetempdef;
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retloc.temporary:=true;
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end;
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retloc.alignment:=get_para_align(p.proccalloption);
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{ void has no location }
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if is_void(retloc.def) then
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begin
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paraloc:=retloc.add_location;
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retloc.size:=OS_NO;
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retcgsize:=OS_NO;
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retloc.intsize:=0;
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paraloc^.def:=retloc.def;
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paraloc^.size:=OS_NO;
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paraloc^.loc:=LOC_VOID;
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exit;
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end;
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{ Constructors return self instead of a boolean }
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if p.proctypeoption=potype_constructor then
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begin
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retloc.def:=tdef(p.owner.defowner);
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if not (is_implicit_pointer_object_type(retloc.def) or
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(retloc.def.typ<>objectdef)) then
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retloc.def:=cpointerdef.getreusable_no_free(retloc.def);
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end;
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retcgsize:=def_cgsize(retloc.def);
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retloc.intsize:=retloc.def.size;
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retloc.size:=retcgsize;
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{ Return is passed as var parameter }
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if ret_in_param(retloc.def,p) then
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begin
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retloc.def:=cpointerdef.getreusable_no_free(retloc.def);
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paraloc:=retloc.add_location;
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paraloc^.loc:=LOC_REFERENCE;
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paraloc^.size:=retcgsize;
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paraloc^.def:=retloc.def;
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exit;
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end;
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result:=false;
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end;
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function tparamanager.handle_common_ret_in_param(def: tdef;
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pd: tabstractprocdef; out retinparam: boolean): boolean;
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begin
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{ This must be system independent: safecall and record constructor result
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is always returned in param.
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Furthermore, any managed type is returned in param, in order to avoid
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its finalization on exception at callee side. }
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if ((tf_safecall_exceptions in target_info.flags) and
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(pd.proccalloption=pocall_safecall)) or
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(
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(pd.proctypeoption=potype_constructor) and
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(
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is_record(def) or
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(
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(def.typ<>objectdef) and
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|
(pd.owner.symtabletype=objectsymtable) and
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is_objectpascal_helper(tdef(pd.owner.defowner))
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)
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)
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) or is_managed_type(def) then
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begin
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retinparam:=true;
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exit(true);
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end;
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if pd.proctypeoption=potype_constructor then
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begin
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retinparam:=false;
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exit(true);
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end;
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result:=false;
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end;
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|
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function tparamanager.get_paraloc_def(paradef: tdef; restlen: aint; fullsize: boolean): tdef;
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begin
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|
if fullsize then
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result:=paradef
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|
{ no support for 128 bit ints -> tcgsize2orddef can't handle
|
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OS_(S)128 }
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else if restlen in [1,2,4,8] then
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result:=cgsize_orddef(int_cgsize(restlen))
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else
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|
result:=carraydef.getreusable_no_free(u8inttype,restlen);
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end;
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|
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procedure tparamanager.getcgtempparaloc(list: TAsmList; pd: tabstractprocdef; nr : longint; var cgpara: tcgpara);
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begin
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|
if (nr<1) or (nr>pd.paras.count) then
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|
InternalError(2013060101);
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|
pd.init_paraloc_info(callerside);
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|
cgpara:=tparavarsym(pd.paras[nr-1]).paraloc[callerside].getcopy;
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end;
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|
|
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function tparamanager.cgparalocs_to_rttiparalocs(paralocs:pcgparalocation):trttiparalocs;
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var
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|
c : longint;
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tmploc : pcgparalocation;
|
|
begin
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|
c:=0;
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|
tmploc:=paralocs;
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|
result:=nil;
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|
while assigned(tmploc) do
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|
begin
|
|
inc(c);
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|
tmploc:=tmploc^.next;
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|
end;
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|
setlength(result,c);
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|
c:=0;
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|
tmploc:=paralocs;
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|
while assigned(tmploc) do
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|
begin
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|
result[c]:=cgparaloc_to_rttiparaloc(tmploc);
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|
inc(c);
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tmploc:=tmploc^.next;
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end;
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end;
|
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|
|
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function tparamanager.cgparaloc_to_rttiparaloc(paraloc:pcgparalocation):trttiparaloc;
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|
var
|
|
reg : tregisterrec;
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|
begin
|
|
{ Explicitly zero the whole record, to avoid
|
|
trouble as this record is used as is in a
|
|
hash calculation, which might give unreliable
|
|
results if the record as gaps between fields
|
|
due to field alignment. PM 2021-05-06 }
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|
fillchar(result,sizeof(trttiparaloc),#0);
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|
if paraloc^.Loc=LOC_REFERENCE then
|
|
begin
|
|
reg:=tregisterrec(paraloc^.reference.index);
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|
result.offset:=paraloc^.reference.offset;
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|
result.loctype:=$80;
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|
end
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|
else
|
|
begin
|
|
reg:=tregisterrec(paraloc^.register);
|
|
{ use sign extension }
|
|
result.offset:=paraloc^.shiftval;
|
|
result.loctype:=$00;
|
|
end;
|
|
case reg.regtype of
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|
R_INTREGISTER,
|
|
R_FPUREGISTER,
|
|
R_MMXREGISTER,
|
|
R_MMREGISTER,
|
|
R_SPECIALREGISTER,
|
|
R_ADDRESSREGISTER:
|
|
begin
|
|
result.loctype:=result.loctype or ord(reg.regtype);
|
|
result.regsub:=ord(reg.subreg);
|
|
result.regindex:=reg.supreg;
|
|
end;
|
|
else
|
|
begin
|
|
{ no need to adjust loctype }
|
|
result.regsub:=0;
|
|
result.regindex:=0;
|
|
end;
|
|
end;
|
|
end;
|
|
|
|
|
|
function tparamanager.can_opt_unused_para(parasym: tparavarsym): boolean;
|
|
var
|
|
pd: tprocdef;
|
|
begin
|
|
{ The parameter can be optimized as unused when:
|
|
this optimization is enabled
|
|
this is a direct call to a routine, not a procvar
|
|
and the routine is not an exception filter
|
|
and the parameter is not used by the routine
|
|
and implementation of the routine is already processed.
|
|
}
|
|
result:=(cs_opt_unused_para in current_settings.optimizerswitches) and
|
|
assigned(parasym.Owner) and
|
|
(parasym.Owner.defowner.typ=procdef);
|
|
if not result then
|
|
exit;
|
|
pd:=tprocdef(parasym.Owner.defowner);
|
|
result:=(pd.proctypeoption<>potype_exceptfilter) and
|
|
not parasym.is_used and
|
|
pd.is_implemented;
|
|
end;
|
|
|
|
initialization
|
|
;
|
|
finalization
|
|
paramanager.free;
|
|
end.
|