mirror of
https://github.com/KolibriOS/kolibrios.git
synced 2024-12-14 19:07:09 +03:00
71b99beec5
git-svn-id: svn://kolibrios.org@7855 a494cfbc-eb01-0410-851d-a64ba20cac60
61 lines
1.6 KiB
NASM
61 lines
1.6 KiB
NASM
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format ELF
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include '../proc32.inc'
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section '.text' executable
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public exp_ as "exp"
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public exp2_ as "exp2"
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SaveCW dw ?
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MaskedCW dw ?
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; 2**x = 2**int(x) * 2**frac(x).
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; We can easily compute 2**int(x) with fscale and
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; 2**frac(x) using f2xm1.
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exp2_int:
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fstcw [SaveCW]
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; Modify the control word to truncate when rounding.
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fstcw [MaskedCW]
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or byte ptr MaskedCW + 1, 1100b
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fldcw [MaskedCW]
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fld st0 ;Duplicate tos.
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fld st0
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frndint ;Compute integer portion.
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fxch ;Swap whole and int values.
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fsub st0, st1 ;Compute fractional part.
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f2xm1 ;Compute 2**frac(x)-1.
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fld1
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faddp st1, st0 ;Compute 2**frac(x).
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fxch ;Get integer portion.
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fld1 ;Compute 1*2**int(x).
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fscale
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fstp st1 ;Remove st(1) (which is 1).
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fmulp st1, st0 ;Compute 2**int(x) * 2**frac(x).
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fstp st1 ;Remove st1
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fldcw [SaveCW] ;Restore rounding mode.
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ret
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exp_:
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; exp(x) = 2**(x * lg(e))
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fld qword[esp+4]
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fldl2e ;Put lg(e) onto the stack.
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fmulp st1, st0 ;Compute x*lg(e).
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call exp2_int;Compute 2**(x * lg(e))
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ret
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exp2_:
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fld qword[esp+4]
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call exp2_int;Compute 2 ** x
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ret
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