mirror of
https://github.com/rn10950/RetroZilla.git
synced 2024-11-14 03:30:17 +01:00
295 lines
7.8 KiB
ArmAsm
295 lines
7.8 KiB
ArmAsm
# This Source Code Form is subject to the terms of the Mozilla Public
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# License, v. 2.0. If a copy of the MPL was not distributed with this
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# file, You can obtain one at http://mozilla.org/MPL/2.0/.
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#ifdef DARWIN
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#define s_mpv_mul_d _s_mpv_mul_d
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#define s_mpv_mul_d_add _s_mpv_mul_d_add
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#define s_mpv_mul_d_add_prop _s_mpv_mul_d_add_prop
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#define s_mpv_sqr_add_prop _s_mpv_sqr_add_prop
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#define s_mpv_div_2dx1d _s_mpv_div_2dx1d
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#define TYPE_FUNCTION(x)
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#else
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#define TYPE_FUNCTION(x) .type x, @function
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#endif
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.text
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# ebp - 8: caller's esi
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# ebp - 4: caller's edi
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# ebp + 0: caller's ebp
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# ebp + 4: return address
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# ebp + 8: a argument
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# ebp + 12: a_len argument
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# ebp + 16: b argument
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# ebp + 20: c argument
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# registers:
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# ebx:
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# ecx: a_len
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# esi: a ptr
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# edi: c ptr
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.globl s_mpv_mul_d
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.private_extern s_mpv_mul_d
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TYPE_FUNCTION(s_mpv_mul_d)
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s_mpv_mul_d:
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push %ebp
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mov %esp, %ebp
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push %edi
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push %esi
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psubq %mm2, %mm2 # carry = 0
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mov 12(%ebp), %ecx # ecx = a_len
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movd 16(%ebp), %mm1 # mm1 = b
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mov 20(%ebp), %edi
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cmp $0, %ecx
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je 2f # jmp if a_len == 0
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mov 8(%ebp), %esi # esi = a
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cld
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1:
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movd 0(%esi), %mm0 # mm0 = *a++
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add $4, %esi
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pmuludq %mm1, %mm0 # mm0 = b * *a++
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paddq %mm0, %mm2 # add the carry
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movd %mm2, 0(%edi) # store the 32bit result
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add $4, %edi
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psrlq $32, %mm2 # save the carry
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dec %ecx # --a_len
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jnz 1b # jmp if a_len != 0
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2:
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movd %mm2, 0(%edi) # *c = carry
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emms
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pop %esi
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pop %edi
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leave
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ret
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nop
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# ebp - 8: caller's esi
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# ebp - 4: caller's edi
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# ebp + 0: caller's ebp
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# ebp + 4: return address
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# ebp + 8: a argument
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# ebp + 12: a_len argument
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# ebp + 16: b argument
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# ebp + 20: c argument
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# registers:
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# ebx:
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# ecx: a_len
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# esi: a ptr
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# edi: c ptr
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.globl s_mpv_mul_d_add
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.private_extern s_mpv_mul_d_add
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TYPE_FUNCTION(s_mpv_mul_d_add)
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s_mpv_mul_d_add:
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push %ebp
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mov %esp, %ebp
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push %edi
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push %esi
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psubq %mm2, %mm2 # carry = 0
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mov 12(%ebp), %ecx # ecx = a_len
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movd 16(%ebp), %mm1 # mm1 = b
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mov 20(%ebp), %edi
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cmp $0, %ecx
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je 2f # jmp if a_len == 0
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mov 8(%ebp), %esi # esi = a
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cld
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1:
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movd 0(%esi), %mm0 # mm0 = *a++
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add $4, %esi
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pmuludq %mm1, %mm0 # mm0 = b * *a++
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paddq %mm0, %mm2 # add the carry
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movd 0(%edi), %mm0
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paddq %mm0, %mm2 # add the carry
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movd %mm2, 0(%edi) # store the 32bit result
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add $4, %edi
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psrlq $32, %mm2 # save the carry
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dec %ecx # --a_len
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jnz 1b # jmp if a_len != 0
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2:
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movd %mm2, 0(%edi) # *c = carry
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emms
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pop %esi
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pop %edi
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leave
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ret
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nop
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# ebp - 12: caller's ebx
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# ebp - 8: caller's esi
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# ebp - 4: caller's edi
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# ebp + 0: caller's ebp
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# ebp + 4: return address
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# ebp + 8: a argument
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# ebp + 12: a_len argument
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# ebp + 16: b argument
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# ebp + 20: c argument
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# registers:
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# eax:
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# ebx: carry
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# ecx: a_len
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# esi: a ptr
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# edi: c ptr
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.globl s_mpv_mul_d_add_prop
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.private_extern s_mpv_mul_d_add_prop
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TYPE_FUNCTION(s_mpv_mul_d_add_prop)
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s_mpv_mul_d_add_prop:
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push %ebp
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mov %esp, %ebp
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push %edi
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push %esi
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push %ebx
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psubq %mm2, %mm2 # carry = 0
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mov 12(%ebp), %ecx # ecx = a_len
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movd 16(%ebp), %mm1 # mm1 = b
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mov 20(%ebp), %edi
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cmp $0, %ecx
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je 2f # jmp if a_len == 0
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mov 8(%ebp), %esi # esi = a
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cld
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1:
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movd 0(%esi), %mm0 # mm0 = *a++
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movd 0(%edi), %mm3 # fetch the sum
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add $4, %esi
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pmuludq %mm1, %mm0 # mm0 = b * *a++
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paddq %mm0, %mm2 # add the carry
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paddq %mm3, %mm2 # add *c++
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movd %mm2, 0(%edi) # store the 32bit result
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add $4, %edi
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psrlq $32, %mm2 # save the carry
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dec %ecx # --a_len
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jnz 1b # jmp if a_len != 0
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2:
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movd %mm2, %ebx
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cmp $0, %ebx # is carry zero?
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jz 4f
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mov 0(%edi), %eax
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add %ebx, %eax
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stosl
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jnc 4f
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3:
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mov 0(%edi), %eax # add in current word from *c
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adc $0, %eax
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stosl # [es:edi] = ax; edi += 4;
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jc 3b
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4:
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emms
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pop %ebx
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pop %esi
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pop %edi
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leave
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ret
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nop
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# ebp - 12: caller's ebx
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# ebp - 8: caller's esi
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# ebp - 4: caller's edi
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# ebp + 0: caller's ebp
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# ebp + 4: return address
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# ebp + 8: pa argument
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# ebp + 12: a_len argument
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# ebp + 16: ps argument
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# registers:
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# eax:
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# ebx: carry
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# ecx: a_len
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# esi: a ptr
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# edi: c ptr
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.globl s_mpv_sqr_add_prop
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.private_extern s_mpv_sqr_add_prop
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TYPE_FUNCTION(s_mpv_sqr_add_prop)
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s_mpv_sqr_add_prop:
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push %ebp
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mov %esp, %ebp
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push %edi
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push %esi
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push %ebx
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psubq %mm2, %mm2 # carry = 0
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mov 12(%ebp), %ecx # ecx = a_len
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mov 16(%ebp), %edi
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cmp $0, %ecx
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je 2f # jmp if a_len == 0
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mov 8(%ebp), %esi # esi = a
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cld
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1:
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movd 0(%esi), %mm0 # mm0 = *a
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movd 0(%edi), %mm3 # fetch the sum
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add $4, %esi
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pmuludq %mm0, %mm0 # mm0 = sqr(a)
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paddq %mm0, %mm2 # add the carry
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paddq %mm3, %mm2 # add the low word
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movd 4(%edi), %mm3
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movd %mm2, 0(%edi) # store the 32bit result
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psrlq $32, %mm2
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paddq %mm3, %mm2 # add the high word
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movd %mm2, 4(%edi) # store the 32bit result
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psrlq $32, %mm2 # save the carry.
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add $8, %edi
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dec %ecx # --a_len
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jnz 1b # jmp if a_len != 0
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2:
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movd %mm2, %ebx
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cmp $0, %ebx # is carry zero?
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jz 4f
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mov 0(%edi), %eax
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add %ebx, %eax
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stosl
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jnc 4f
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3:
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mov 0(%edi), %eax # add in current word from *c
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adc $0, %eax
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stosl # [es:edi] = ax; edi += 4;
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jc 3b
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4:
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emms
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pop %ebx
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pop %esi
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pop %edi
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leave
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ret
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nop
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#
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# Divide 64-bit (Nhi,Nlo) by 32-bit divisor, which must be normalized
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# so its high bit is 1. This code is from NSPR.
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#
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# mp_err s_mpv_div_2dx1d(mp_digit Nhi, mp_digit Nlo, mp_digit divisor,
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# mp_digit *qp, mp_digit *rp)
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# esp + 0: Caller's ebx
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# esp + 4: return address
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# esp + 8: Nhi argument
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# esp + 12: Nlo argument
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# esp + 16: divisor argument
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# esp + 20: qp argument
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# esp + 24: rp argument
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# registers:
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# eax:
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# ebx: carry
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# ecx: a_len
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# edx:
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# esi: a ptr
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# edi: c ptr
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#
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.globl s_mpv_div_2dx1d
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.private_extern s_mpv_div_2dx1d
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TYPE_FUNCTION(s_mpv_div_2dx1d)
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s_mpv_div_2dx1d:
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push %ebx
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mov 8(%esp), %edx
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mov 12(%esp), %eax
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mov 16(%esp), %ebx
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div %ebx
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mov 20(%esp), %ebx
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mov %eax, 0(%ebx)
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mov 24(%esp), %ebx
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mov %edx, 0(%ebx)
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xor %eax, %eax # return zero
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pop %ebx
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ret
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nop
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#ifndef DARWIN
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# Magic indicating no need for an executable stack
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.section .note.GNU-stack, "", @progbits
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.previous
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#endif
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