{ This file is part of the Free Pascal run time library. Copyright (c) 1999-2001 by the Free Pascal development team Implementation of mathematical routines (for extended type) See the file COPYING.FPC, included in this distribution, for details about the copyright. This program is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. **********************************************************************} {**************************************************************************** FPU Control word ****************************************************************************} procedure Set8087CW(cw:word);assembler; asm {$ifndef REGCALL} movw cw,%ax {$endif} movw %ax,default8087cw fnclex fldcw default8087cw end; function Get8087CW:word;assembler; asm pushl $0 fnstcw (%esp) popl %eax end; {**************************************************************************** EXTENDED data type routines ****************************************************************************} {$define FPC_SYSTEM_HAS_PI} function fpc_pi_real : ValReal;compilerproc; begin { Function is handled internal in the compiler } runerror(207); result:=0; end; {$define FPC_SYSTEM_HAS_ABS} function fpc_abs_real(d : ValReal) : ValReal;compilerproc; begin { Function is handled internal in the compiler } runerror(207); result:=0; end; {$define FPC_SYSTEM_HAS_SQR} function fpc_sqr_real(d : ValReal) : ValReal;compilerproc; begin { Function is handled internal in the compiler } runerror(207); result:=0; end; {$define FPC_SYSTEM_HAS_SQRT} function fpc_sqrt_real(d : ValReal) : ValReal;compilerproc; begin { Function is handled internal in the compiler } runerror(207); result:=0; end; {$define FPC_SYSTEM_HAS_ARCTAN} function fpc_arctan_real(d : ValReal) : ValReal;compilerproc; begin { Function is handled internal in the compiler } runerror(207); result:=0; end; {$define FPC_SYSTEM_HAS_LN} function fpc_ln_real(d : ValReal) : ValReal;compilerproc; begin { Function is handled internal in the compiler } runerror(207); result:=0; end; {$define FPC_SYSTEM_HAS_SIN} function fpc_sin_real(d : ValReal) : ValReal;compilerproc; begin { Function is handled internal in the compiler } runerror(207); result:=0; end; {$define FPC_SYSTEM_HAS_COS} function fpc_cos_real(d : ValReal) : ValReal;compilerproc; begin { Function is handled internal in the compiler } runerror(207); result:=0; end; {$define FPC_SYSTEM_HAS_EXP} function fpc_exp_real(d : ValReal) : ValReal;assembler;compilerproc; asm // comes from DJ GPP fldt d fldl2e fmulp %st,%st(1) fstcw .LCW1 fstcw .LCW2 fwait andw $0xf3ff,.LCW2 orw $0x0400,.LCW2 fldcw .LCW2 fld %st(0) frndint fldcw .LCW1 fxch %st(1) fsub %st(1),%st f2xm1 fld1 faddp %st,%st(1) fscale fstp %st(1) fclex jmp .LCW3 // store some help data in the data segment .data .LCW1: .word 0 .LCW2: .word 0 .text .LCW3: end; {$define FPC_SYSTEM_HAS_FRAC} function fpc_frac_real(d : ValReal) : ValReal;assembler;compilerproc; asm subl $16,%esp fnstcw -4(%ebp) fwait movw -4(%ebp),%cx orw $0x0f00,%cx movw %cx,-8(%ebp) fldcw -8(%ebp) fldt d frndint fldt d fsub %st(1),%st fstp %st(1) fldcw -4(%ebp) end; {$define FPC_SYSTEM_HAS_INT} function fpc_int_real(d : ValReal) : ValReal;assembler;compilerproc; asm subl $16,%esp fnstcw -4(%ebp) fwait movw -4(%ebp),%cx orw $0x0f00,%cx movw %cx,-8(%ebp) fldcw -8(%ebp) fwait fldt d frndint fwait fldcw -4(%ebp) end; {$define FPC_SYSTEM_HAS_TRUNC} function fpc_trunc_real(d : ValReal) : int64;assembler;compilerproc; var oldcw, newcw : word; res : int64; asm fnstcw oldcw fwait movw oldcw,%cx orw $0x0f00,%cx movw %cx,newcw fldcw newcw fldt d fistpq res fwait movl res,%eax movl res+4,%edx fldcw oldcw end; {$define FPC_SYSTEM_HAS_ROUND} function fpc_round_real(d : ValReal) : int64;assembler;compilerproc; var res : int64; asm fldt d fistpq res fwait movl res,%eax movl res+4,%edx end; {$define FPC_SYSTEM_HAS_POWER} function power(bas,expo : ValReal) : ValReal; begin if bas=0 then begin if expo<>0 then power:=0.0 else HandleError(207); end else if expo=0 then power:=1 else { bas < 0 is not allowed when doing roots } if (bas<0) and (frac(expo) <> 0) then handleerror(207) else begin power:=exp(ln(abs(bas))*expo); if (bas < 0) and odd(trunc(expo)) then begin power := -power; end; end; end;