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572 lines
12 KiB
PHP
572 lines
12 KiB
PHP
{
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This file is part of the Free Pascal run time library.
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Copyright (c) 2006-2007 by David Zhang
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Processor dependent implementation for the system unit for MIPS
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See the file COPYING.FPC, included in this distribution,
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for details about the copyright.
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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.
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**********************************************************************}
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{****************************************************************************
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MIPS specific stuff
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****************************************************************************}
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function get_fsr : dword;assembler;nostackframe;[public, alias: 'FPC_GETFSR'];
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var
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fsr : dword;
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asm
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cfc1 $2,$31
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end;
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procedure set_fsr(fsr : dword);assembler;[public, alias: 'FPC_SETFSR'];
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var
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_fsr : dword;
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asm
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ctc1 $4,$31
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end;
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function get_got_z : pointer;assembler;nostackframe;[public, alias: 'FPC_GETGOT_Z'];
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asm
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move $2,$28
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end;
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procedure fpc_cpuinit;
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var
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tmp32: longint;
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begin
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{ don't let libraries influence the FPU cw set by the host program }
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if not IsLibrary then
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begin
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{ enable div by 0 and invalid operation fpu exceptions }
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{ round towards nearest; ieee compliant arithmetics }
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tmp32 := get_fsr();
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set_fsr(tmp32 and $fffffffc);
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end;
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end;
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{$define FPC_SYSTEM_HAS_GET_FRAME}
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function get_frame:pointer;assembler;nostackframe;
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asm
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{ we need to use the information of the .pdr section to do this properly:
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0 proc. start adress
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4 regmask
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8 reg. offset
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12 fmask
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16 foffset
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20 frame size
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24 stack reg
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28 link reg
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Further, we need to know the pc
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}
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// lw $2,0($sp)
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move $2,$30
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end;
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{ Try to find previous $fp,$ra register pair
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reset both to nil if failure }
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{$define FPC_SYSTEM_HAS_GET_CALLER_STACKINFO}
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procedure get_caller_stackinfo(var framebp,addr : pointer);
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const
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instr_size = 4;
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MAX_INSTRUCTIONS = 64000;
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type
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instr_p = pdword;
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reg_p = ppointer;
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var
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instr,stackpos : dword;
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i,LocalSize : longint;
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ra_offset, s8_offset : longint;
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current_ra : pointer;
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begin
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{ Here we need to use GDB approach,
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starting at addr
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go back to lower $ra values until we find a
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position with ADDIU $sp,$sp,-LocalSize
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}
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if addr=nil then
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begin
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framebp:=nil;
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exit;
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end;
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Try
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current_ra:=addr;
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ra_offset:=-1;
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s8_offset:=-1;
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i:=0;
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LocalSize:=0;
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repeat
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inc(i);
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dec(current_ra,4);
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instr:=instr_p(current_ra)^;
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if (instr shr 16 = $27bd) then
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begin
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{ we found the instruction,
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local size is the lo part }
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LocalSize:=smallint(instr and $ffff);
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break;
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end;
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until i> MAX_INSTRUCTIONS;
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if LocalSize <> 0 then
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begin
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repeat
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inc(current_ra,4);
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instr:=instr_p(current_ra)^;
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if (instr shr 16 = $afbf) then
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ra_offset:=smallint(instr and $ffff)
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else if (instr shr 16 = $afbe) then
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s8_offset:=smallint(instr and $ffff);
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until (current_ra >= addr)
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or ((ra_offset<>-1) and (s8_offset<>-1));
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if ra_offset<>-1 then
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begin
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stackpos:=dword(framebp+LocalSize+ra_offset);
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addr:=reg_p(stackpos)^;
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end
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else
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addr:=nil;
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if s8_offset<>-1 then
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begin
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stackpos:=dword(framebp+LocalSize+s8_offset);
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framebp:=reg_p(stackpos)^;
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end
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else
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framebp:=nil;
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end;
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Except
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framebp:=nil;
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addr:=nil;
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end;
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end;
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{$define FPC_SYSTEM_HAS_GET_PC_ADDR}
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function get_pc_addr : pointer;assembler;nostackframe;
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asm
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move $2,$31
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end;
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{$define FPC_SYSTEM_HAS_GET_CALLER_ADDR}
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function get_caller_addr(framebp:pointer;addr:pointer=nil):pointer;
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begin
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get_caller_stackinfo(framebp,addr);
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get_caller_addr:=addr;
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end;
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{$define FPC_SYSTEM_HAS_GET_CALLER_FRAME}
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function get_caller_frame(framebp:pointer;addr:pointer=nil):pointer;
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begin
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get_caller_stackinfo(framebp,addr);
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get_caller_frame:=framebp;
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end;
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{$define FPC_SYSTEM_HAS_SPTR}
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function Sptr:Pointer;assembler;nostackframe;
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asm
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move $2,$sp
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end;
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{$ifdef USE_MIPS_STK2_ASM}
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{$ifndef FPC_SYSTEM_HAS_MOVE}
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(* Disabled for now
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{$define FPC_SYSTEM_HAS_MOVE}
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procedure Move(const source;var dest;count:longint);[public, alias: 'FPC_MOVE'];assembler;
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asm
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{
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Registers:
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$7 temp. to do copying
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$8 inc/decrement
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$9/l0/l1/l2 qword move
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}
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sw $4,0($23)
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sw $5,-4($23)
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sw $6,-8($23)
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sw $7,-12($23)
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sw $8,-16($23)
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sw $9,-20($23)
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sw $10,-24($23)
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sw $11,-28($23)
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sw $12,-32($23)
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sw $13,-36($23)
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sw $14,-40($23)
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addiu $23,$23,-44
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// count <= 0 ?
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ble $6,$0,.Lmoveexit
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nop
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// source = dest ?
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beq $4,$5,.Lmoveexit
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nop
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// possible overlap?
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bgt $4,$5,.Lnopossibleoverlap
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nop
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// source < dest ....
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addu $7,$6,$4
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// overlap?
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// source+count < dest ?
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blt $7,$5,.Lnopossibleoverlap
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nop
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.Lcopybackward:
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// check alignment of source and dest
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or $2,$4,$5
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// move src and dest to the end of the blocks
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// assuming 16 byte block size
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addiu $3,$6,-1
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addu $4,$4,$3
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addu $5,$5,$3
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b .Lmovebytewise
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li $3,-1
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.Lnopossibleoverlap:
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// check alignment of source and dest
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or $2,$4,$5
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// everything 16 byte aligned ?
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andi $13,$2,15
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beq $13,$0,.Lmovetwordwise
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// load direction in delay slot
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li $3,16
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andi $13,$2,7
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beq $13,$0,.Lmoveqwordwise
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li $3,8
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andi $13,$2,3
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beq $13,$0,.Lmovedwordwise
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li $3,4
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andi $13,$2,1
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beq $13,$0,.Lmovewordwise
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li $3,2
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b .Lmovebytewise
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li $3,1
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.Lmovetwordwise:
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srl $13,$6,4
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sll $14,$13,4
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beq $14,$0,.Lmoveqwordwise_shift
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nop
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.Lmovetwordwise_loop:
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lw $9,0($4)
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lw $10,4($4)
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addiu $13,$13,-1
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lw $11,8($4)
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lw $12,12($4)
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addu $4,$4,$3
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sw $9,0($5)
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sw $10,4($5)
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sw $11,8($5)
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sw $12,12($5)
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addu $5,$5,$3
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bne $13,$0,.Lmovetwordwise_loop
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nop
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subu $6,$6,$14
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beq $6,$0,.Lmoveexit
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nop
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.Lmoveqwordwise_shift:
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sra $3,$3,1
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.Lmoveqwordwise:
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srl $13,$6,3
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sll $14,$13,3
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beq $14,$0,.Lmovedwordwise_shift
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nop
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.Lmoveqwordwise_loop:
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lw $9,0($4)
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lw $10,4($4)
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addiu $13,$13,-1
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addu $4,$3,$4
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sw $9,0($5)
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sw $10,4($5)
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addu $5,$3,$5
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bne $13,$0,.Lmoveqwordwise_loop
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nop
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subu $6,$6,$14
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beq $6,$0,.Lmoveexit
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nop
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.Lmovedwordwise_shift:
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sra $3,$3,1
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.Lmovedwordwise:
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srl $13,$6,2
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sll $14,$13,2
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beq $14,$0,.Lmovewordwise_shift
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nop
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.Lmovedwordwise_loop:
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lw $9,0($4)
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addiu $13,$13,-1
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addu $4,$4,$3
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sw $9,0($5)
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addu $5,$5,$3
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bne $13,$0,.Lmovedwordwise_loop
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nop
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subu $6,$6,$14
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beq $6,$0,.Lmoveexit
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nop
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.Lmovewordwise_shift:
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sra $3,$3,1
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.Lmovewordwise:
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srl $13,$6,1
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sll $14,$13,1
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beq $14,$0, .Lmovebytewise_shift
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nop
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.Lmovewordwise_loop:
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lhu $9,0($4)
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addiu $13,$13,-1
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addu $4,$4,$3
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sh $9,0($5)
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addu $5,$5,$3
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bne $13,$0,.Lmovewordwise_loop
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nop
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subu $6,$6,$14
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beq $6,$0, .Lmoveexit
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nop
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.Lmovebytewise_shift:
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sra $3,$3,1
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.Lmovebytewise:
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beq $6,$0, .Lmoveexit
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nop
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lbu $9,0($4)
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addiu $6,$6,-1
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addu $4,$4,$3
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sb $9,0($5)
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addu $5,$5,$3
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bne $6,$0,.Lmovebytewise
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nop
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.Lmoveexit:
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addiu $23,$23,44
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lw $4,0($23)
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lw $5,-4($23)
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lw $6,-8($23)
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lw $7,-12($23)
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lw $8,-16($23)
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lw $9,-20($23)
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lw $10,-24($23)
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lw $11,-28($23)
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lw $12,-32($23)
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lw $13,-36($23)
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lw $14,-40($23)
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end;
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*)
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{$endif FPC_SYSTEM_HAS_MOVE}
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{****************************************************************************
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Integer math
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****************************************************************************}
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{$define FPC_SYSTEM_HAS_ABS_LONGINT}
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function abs(l:longint):longint; assembler;{$ifdef SYSTEMINLINE}inline;{$endif}nostackframe;
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asm
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sra $1,$4,31 // $at,$4,31
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xor $2,$4,$1 // $2,$4,$at
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sub $2,$2,$1 // $2,$2,$at
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end;
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var
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fpc_system_lock : longint; export name 'fpc_system_lock';
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{$define FPC_SYSTEM_HAS_DECLOCKED_LONGINT}
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function declocked(var l : longint) : boolean;assembler;nostackframe;
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{ input: address of l in $4 }
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{ output: boolean indicating whether l is zero after decrementing }
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asm
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sw $4,0($23)
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sw $5,-4($23)
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sw $6,-8($23)
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sw $7,-12($23)
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sw $8,-16($23)
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sw $9,-20($23)
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sw $10,-24($23)
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sw $11,-28($23)
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sw $12,-32($23)
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sw $13,-36($23)
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sw $14,-40($23)
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addiu $23,$23,-44
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.Ldeclocked1:
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lui $5,%hi(fpc_system_lock)
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addiu $5,$5,%lo(fpc_system_lock)
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ll $6,0($5)
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ori $7,$6,1
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beq $7,$6,.Ldeclocked1
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nop
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sc $7,0($5)
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beq $7,$0,.Ldeclocked1
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nop
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lw $5,0($4)
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addiu $5,$5,-1
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sw $5,0($4)
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seq $2,$5,$0
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{ unlock }
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lui $5,%hi(fpc_system_lock)
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addiu $5,$5,%lo(fpc_system_lock)
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sw $0,0($5)
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addiu $23,$23,44
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lw $4,0($23)
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lw $5,-4($23)
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lw $6,-8($23)
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lw $7,-12($23)
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lw $8,-16($23)
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lw $9,-20($23)
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lw $10,-24($23)
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lw $11,-28($23)
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lw $12,-32($23)
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lw $13,-36($23)
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lw $14,-40($23)
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end;
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{$define FPC_SYSTEM_HAS_INCLOCKED_LONGINT}
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procedure inclocked(var l : longint);assembler;nostackframe;
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asm
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{ usually, we shouldn't lock here so saving the stack frame for these extra intructions is
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worse the effort, especially while waiting :)
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}
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{ unlock }
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sw $4,0($23)
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sw $5,-4($23)
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sw $6,-8($23)
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sw $7,-12($23)
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sw $8,-16($23)
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sw $9,-20($23)
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sw $10,-24($23)
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sw $11,-28($23)
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sw $12,-32($23)
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sw $13,-36($23)
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sw $14,-40($23)
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addiu $23,$23,-44
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.Ldeclocked1:
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lui $5,%hi(fpc_system_lock)
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addiu $5,$5,%lo(fpc_system_lock)
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ll $6,0($5)
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ori $7,$6,1
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beq $7,$6,.Ldeclocked1
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nop
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sc $7,0($5)
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beq $7,$0,.Ldeclocked1
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nop
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lw $5,0($4)
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addiu $5,$5,1
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sw $5,0($4)
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{ unlock }
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lui $5,%hi(fpc_system_lock)
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addiu $5,$5,%lo(fpc_system_lock)
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sw $0,0($5)
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addiu $23,$23,44
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lw $4,0($23)
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lw $5,-4($23)
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lw $6,-8($23)
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lw $7,-12($23)
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lw $8,-16($23)
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lw $9,-20($23)
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lw $10,-24($23)
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lw $11,-28($23)
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lw $12,-32($23)
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lw $13,-36($23)
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lw $14,-40($23)
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end;
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{$endif def USE_MIPS_STK2_ASM}
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function InterLockedDecrement (var Target: longint) : longint; assembler; nostackframe;
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asm
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{$warning FIXME: This implementation of InterLockedDecrement in not yet ThreadSafe }
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lw $v0,($a0)
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addi $v1,$v0,-1
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sw $v1,($a0)
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end;
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function InterLockedIncrement (var Target: longint) : longint; assembler; nostackframe;
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asm
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{$warning FIXME: This implementation of InterLockedIncrement in not yet ThreadSafe }
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lw $v0,($a0)
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addi $v1,$v0,1
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sw $v1,($a0)
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end;
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function InterLockedExchange (var Target: longint;Source : longint) : longint; assembler; nostackframe;
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asm
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{$warning FIXME: This implementation of InterLockedExchange in not yet ThreadSafe }
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lw $v0,($a0)
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sw $a1,($a0)
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end;
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function InterLockedExchangeAdd (var Target: longint;Source : longint) : longint; assembler; nostackframe;
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asm
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{$warning FIXME: This implementation of InterLockedExchangeAdd in not yet ThreadSafe }
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lw $v0,($a0)
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add $a1,$v0,$a1
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sw $a1,($a0)
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end;
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function InterlockedCompareExchange(var Target: longint; NewValue: longint; Comperand: longint): longint; assembler; nostackframe;
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asm
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{$warning FIXME: This implementation of InterLockedCompareAdd in not yet ThreadSafe }
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{ put old value of Target into $v0, result register }
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lw $v0,($a0)
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{ copy to t0 register }
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move $t0,$v0
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move $v1,$a2
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xor $t0,$t0,$v1
|
|
beq $t0,$zero,.L1
|
|
b .L2
|
|
.L1:
|
|
{store NewValue (in $a1) into Target in ($(a0)) }
|
|
sw $a1,($a0)
|
|
.L2:
|
|
end;
|
|
|