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241 lines
6.3 KiB
ArmAsm
241 lines
6.3 KiB
ArmAsm
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.file "ilogb.s"
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// Copyright (c) 2000, 2001, Intel Corporation
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// All rights reserved.
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//
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// Contributed 2/2/2000 by John Harrison, Ted Kubaska, Bob Norin, Shane Story,
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// and Ping Tak Peter Tang of the Computational Software Lab, Intel Corporation.
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//
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// WARRANTY DISCLAIMER
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//
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// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
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// "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
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// LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
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// A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL INTEL OR ITS
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// CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
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// EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
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// PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR
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// PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY
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// OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY OR TORT (INCLUDING
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// NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
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// SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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//
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// Intel Corporation is the author of this code, and requests that all
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// problem reports or change requests be submitted to it directly at
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// http://developer.intel.com/opensource.
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//
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// History
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//==============================================================
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// 2/03/00 Initial version
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// 5/26/00 Fix bug when x a double-extended denormal;
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// if x=0 call error routine, per C9X
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// 8/15/00 Bundle added after call to __libm_error_support to properly
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// set [the previously overwritten] GR_Parameter_RESULT.
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// 1/20/01 Fixed result for x=0, corrected error tag value.
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.align 32
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.global ilogb#
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.section .text
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.proc ilogb#
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.align 32
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// API
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//==============================================================
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// int = ilogb(double)
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// Overview of operation
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//==============================================================
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// ilogb computes log2(x) as an int
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// and returns it in r8
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// ilogb is similar to logb but differs in the following ways:
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// +-inf
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// ilogb: returns INT_MAX
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// logb: returns +inf
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// Nan returns FP_ILOGBNAN (which is either INT_MAX or INT_MIN)
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// ilogb: returns INT_MAX (7fffffff)
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// logb: returns QNAN (quieted SNAN)
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// 0 returns FP_ILOGB0 (which is either INT_MIN or -INT_MAX)
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// ilogb: returns INT_MIN (80000000)
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// logb: returns -inf
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// Registers used
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//==============================================================
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// general local registers:
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// ar.pfs r32
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// r33 -> r37
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// r38 -> r41 used as parameters to error path
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// predicate registers used:
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// p6 - x nan, inf
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// p7 - x 0
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// p8 - x norm, unorm
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// p9 - x unorm
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// floating-point registers used:
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// f8 - f10
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#include "libm_support.h"
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GR_SAVE_PFS = r32
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GR_SAVE_B0 = r34
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GR_SAVE_GP = r35
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GR_Parameter_X = r38
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GR_Parameter_Y = r39
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GR_Parameter_RESULT = r40
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GR_Parameter_TAG = r41
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FR_X = f8
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FR_Y = f0
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FR_RESULT = f0
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ilogb:
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// Form signexp of 2^64 in case need to scale denormal
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{ .mmf
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alloc r32=ar.pfs,1,5,4,0
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(p0) mov r37 = 0x1003f
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(p0) fnorm f9 = f8 ;;
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}
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// Form 2^64 in case need to scale denormal
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{ .mfi
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(p0) setf.exp f10 = r37
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(p0) fclass.m.unc p7, p8 = f8, 0xe3
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(p0) mov r34 = 0xffff ;;
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}
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// qnan snan inf norm unorm 0 -+
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// 1 1 1 0 0 0 11
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// e 3
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// X ZERO, returns INT_MIN
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// X INF or NAN, returns INT_MAX
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{ .mfi
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(p0) mov r35 = 0x1ffff
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(p8) fclass.m.unc p6, p8 = f8, 0x07
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nop.i 999 ;;
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}
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{ .mlx
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nop.m 999
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(p7) movl r8 = 0x000000007fffffff ;;
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}
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{ .mib
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nop.m 999
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nop.i 999
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(p6) br.cond.spnt L(ILOGB_ZERO) ;;
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}
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// Test for denormal
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{ .mfi
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nop.m 999
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(p8) fclass.m.unc p9, p0 = f9, 0x0b
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nop.i 999 ;;
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}
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L(ILOGB_COMMON):
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// X NORMAL returns true exponent
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{ .mmi
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nop.m 999
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(p8) getf.exp r33 = f9
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nop.i 999 ;;
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}
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// If denormal add 64 to exponent bias for scaling
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{ .mfb
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(p9) add r34 = 64, r34
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nop.f 999
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(p9) br.cond.spnt L(ILOGB_DENORM) ;;
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}
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{ .mmi
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(p8) and r36 = r35, r33
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nop.m 999
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nop.i 999 ;;
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}
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{ .mib
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(p8) sub r8 = r36, r34
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nop.i 999
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(p0) br.ret.sptk b0 ;;
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}
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L(ILOGB_DENORM):
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// Here if x denormal
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// Form x * 2^64 which is normal
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// Return to common code
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{ .mfb
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cmp.eq p8,p9 = r0,r0
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fmpy f9 = f9, f10
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br.cond.sptk L(ILOGB_COMMON) ;;
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}
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// X ZERO
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// return INT_MIN, call error support
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L(ILOGB_ZERO):
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{.mlx
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mov GR_Parameter_TAG = 157
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(p6) movl r33 = 0x0000000080000000 ;;
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};;
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.endp ilogb
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ASM_SIZE_DIRECTIVE(ilogb)
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.proc __libm_error_region
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__libm_error_region:
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.prologue
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{ .mfi
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add GR_Parameter_Y=-32,sp // Parameter 2 value
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nop.f 0
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.save ar.pfs,GR_SAVE_PFS
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mov GR_SAVE_PFS=ar.pfs // Save ar.pfs
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}
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{ .mfi
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.fframe 64
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add sp=-64,sp // Create new stack
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nop.f 0
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mov GR_SAVE_GP=gp // Save gp
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};;
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{ .mmi
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stfd [GR_Parameter_Y] = FR_Y,16 // Save Parameter 2 on stack
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add GR_Parameter_X = 16,sp // Parameter 1 address
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.save b0, GR_SAVE_B0
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mov GR_SAVE_B0=b0 // Save b0
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};;
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.body
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{ .mib
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stfd [GR_Parameter_X] = FR_X // Store Parameter 1 on stack
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add GR_Parameter_RESULT = 0,GR_Parameter_Y
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nop.b 0 // Parameter 3 address
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}
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{ .mib
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stfd [GR_Parameter_Y] = FR_RESULT // Store Parameter 3 on stack
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add GR_Parameter_Y = -16,GR_Parameter_Y
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br.call.sptk b0=__libm_error_support# // Call error handling function
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};;
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{ .mmi
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nop.m 0
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nop.m 0
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add GR_Parameter_RESULT = 48,sp
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};;
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{ .mmi
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mov r8 = r33 // Store result
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.restore sp
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add sp = 64,sp // Restore stack pointer
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mov b0 = GR_SAVE_B0 // Restore return address
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};;
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{ .mib
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mov gp = GR_SAVE_GP // Restore gp
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mov ar.pfs = GR_SAVE_PFS // Restore ar.pfs
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br.ret.sptk b0 // Return
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};;
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.endp __libm_error_region
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ASM_SIZE_DIRECTIVE(__libm_error_region)
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.type __libm_error_support#,@function
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.global __libm_error_support#
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