1 | | ------------------------------------------------------------------------------
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2 | | uldiv.s -- unsigned long division, with remainder
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3 | | Version 2 -- 1987-06-08 -- D.N. Lynx Crowe
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4 | | Lifted from the Alcyon C library by disassembly so I could fix a bug -
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5 | | _uldivr must be in the bss segment so the code will work in PROM.
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6 |
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7 | | long
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8 | | uldiv(dividnd, divisor)
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9 | | long dividnd, divisor;
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10 |
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11 | | extern long uldivr;
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12 |
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13 | | Divides 'dividnd' by 'divisor', treating both as unsigned
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14 | | long integers. Returns the quotient and leaves the
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15 | | remainder in 'uldivr'. Produces a divide check on division
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16 | | by zero, with 0x80000000 returned for both quotient and
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17 | | remainder.
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18 | | ------------------------------------------------------------------------------
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19 | .text
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20 |
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21 | .xdef _uldiv,_uldivr
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22 |
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23 | DIVIDEND = 8
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24 | DIVISOR = 12
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25 |
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26 | _uldiv: link a6,#0 | Link stack frames
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27 | movem.l d3-d7,-(a7) | Save registers
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28 | move.l DIVIDEND(a6),d7 | d7 = DIVIDEND
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29 | move.l DIVISOR(a6),d6 | d6 = DIVISOR
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30 | tst.l d6 | Divide by zero ?
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31 | bne notdzero | Jump if not
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32 |
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33 | move.l #0x80000000,_uldivr | Force error result
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34 | move.l #0x80000000,d0 | ... by dividing
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35 | divu #0,d0 | ... by zero
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36 | bra ulexit | ... then exit
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37 |
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38 | notdzero: cmp.l d7,d6 | Divide underflow ?
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39 | bls notunflo | Jump if not
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40 |
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41 | move.l d7,_uldivr | Remainder = dividend
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42 | clr.l d0 | Quotient = 0
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43 | bra ulexit | Exit
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44 |
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45 | notunflo: cmp.l d6,d7 | Is dividend = divisor ?
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46 | bne startdiv | Go start dividing if not
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47 |
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48 | moveq.l #1,d5 | Quotient = 1
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49 | clr.l d7 | Remainder = 0
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50 | bra setreslt | Go set result
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51 |
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52 | .page
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53 |
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54 | startdiv: moveq.l #1,d4 | Set result bit in d4
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55 |
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56 | divloop1: cmp.l d6,d7 | Divisor aligned OK ?
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57 | bcs divloop2 | Jump if so
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58 |
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59 | move.l d6,d0 | Can we align things better ?
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60 | asl.l #1,d0 | ...
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61 | cmp.l d0,d6 | ...
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62 | bhi divloop2 | Jump if not
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63 |
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64 | asl.l #1,d6 | Shift the divisor
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65 | asl.l #1,d4 | Shift the result bit
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66 | bra divloop1 | Loop for next bit
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67 |
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68 | divloop2: clr.l d5 | Clear quotient
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69 |
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70 | divloop3: tst.l d4 | More bits to do ?
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71 | beq setreslt | Go set result if not
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72 |
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73 | cmp.l d6,d7 | Can we subtract ?
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74 | bcs divloop4 | Jump if not
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75 |
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76 | or.l d4,d5 | Set a bit in the quotient
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77 | sub.l d6,d7 | Subtract divisor from dividend
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78 |
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79 | divloop4: lsr.l #1,d4 | Shift the result bit
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80 | lsr.l #1,d6 | Shift the divisor
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81 | bra divloop3 | Loop for next bit
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82 |
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83 | setreslt: move.l d7,_uldivr | Store remainder
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84 | move.l d5,d0 | Put quotient in d0
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85 |
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86 | ulexit: tst.l (a7)+ | Discard top of stack
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87 | movem.l (a7)+,d4-d7 | Restore registers
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88 | unlk a6 | Unlink stack frames
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89 | rts | Return to caller
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90 |
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91 | .bss
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92 | .even
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93 |
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94 | _uldivr: ds.l 1
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95 |
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96 | .end
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