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Linux/arch/powerpc/lib/div64.S

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Diff markup

Differences between /arch/powerpc/lib/div64.S (Version linux-6.12-rc7) and /arch/m68k/lib/div64.S (Version linux-5.15.171)


  1 /* SPDX-License-Identifier: GPL-2.0-or-later *    
  2 /*                                                
  3  * Divide a 64-bit unsigned number by a 32-bit    
  4  * This routine assumes that the top 32 bits o    
  5  * non-zero to start with.                        
  6  * On entry, r3 points to the dividend, which     
  7  * the 64-bit quotient, and r4 contains the di    
  8  * On exit, r3 contains the remainder.            
  9  *                                                
 10  * Copyright (C) 2002 Paul Mackerras, IBM Corp    
 11  */                                               
 12 #include <asm/ppc_asm.h>                          
 13 #include <asm/processor.h>                        
 14                                                   
 15 _GLOBAL(__div64_32)                               
 16         lwz     r5,0(r3)        # get the divi    
 17         lwz     r6,4(r3)                          
 18         cmplw   r5,r4                             
 19         li      r7,0                              
 20         li      r8,0                              
 21         blt     1f                                
 22         divwu   r7,r5,r4        # if dividend.    
 23         mullw   r0,r7,r4        # quotient.hi     
 24         subf.   r5,r0,r5        # dividend.hi     
 25         beq     3f                                
 26 1:      mr      r11,r5          # here dividen    
 27         andis.  r0,r5,0xc000                      
 28         bne     2f                                
 29         cntlzw  r0,r5           # we are shift    
 30         li      r10,-1          # to make it <    
 31         srw     r10,r10,r0      # the divisor     
 32         addc    r9,r4,r10       # rounding up     
 33         andc    r11,r6,r10      # ever be too     
 34         andc    r9,r9,r10                         
 35         addze   r9,r9                             
 36         or      r11,r5,r11                        
 37         rotlw   r9,r9,r0                          
 38         rotlw   r11,r11,r0                        
 39         divwu   r11,r11,r9      # then we divi    
 40 2:      mullw   r10,r11,r4      # to get an es    
 41         mulhwu  r9,r11,r4       # multiply the    
 42         subfc   r6,r10,r6       # take the pro    
 43         add     r8,r8,r11       # and add the     
 44         subfe.  r5,r9,r5        # quotient        
 45         bne     1b                                
 46 3:      cmplw   r6,r4                             
 47         blt     4f                                
 48         divwu   r0,r6,r4        # perform the     
 49         mullw   r10,r0,r4       # and get the     
 50         add     r8,r8,r0                          
 51         subf    r6,r10,r6                         
 52 4:      stw     r7,0(r3)        # return the q    
 53         stw     r8,4(r3)                          
 54         mr      r3,r6           # return the r    
 55         blr                                       
                                                      

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