c64(day09): Actually add day 9
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// vim: filetype=kickass
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* = * "Day 09 Input"
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!input:
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.import text "../inputs/09"
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.byte 0
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* = * "Day 09 Code"
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day09:
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{
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.const buffer = $b000
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.const buffer_end = $bfa0
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.const input_pointer = $40 // $40..42
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.const atoi_result = $42 // $42..46
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.const buffer_pointer = $46 // $46..48
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.const outer_pointer = $48 // $48..4a
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.const middle_pointer = $4a // $4a..4c
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.const inner_pointer = $4c // $4c..4e
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.const part1 = $4e // $4e..52
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.const lower_pointer = $52 // $52..54
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.const upper_pointer = $54 // $54..56
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.const sum = $56 // $56..5a
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.const min_value = $5a // $5a..5e
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.const max_value = $5e // $5e..62
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// XXX I'm using 32 bit integers for this day, even though some
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// inputs are 64 bit. Seems like I get away with it though.
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move_16_imm($03, !str_title+)
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jsr write_string
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move_16_imm(input_pointer, !input-)
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move_16_imm(buffer_pointer, buffer)
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ldy #0
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!line:
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// 32-bit integer to store the result in.
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lda #0
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sta atoi_result + 0
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sta atoi_result + 1
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sta atoi_result + 2
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sta atoi_result + 3
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!digit:
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// Check for the newline character at the end of the line.
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lda (input_pointer), y
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cmp #'\n'
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beq !newline+
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// Multiply the stored number by 10.
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u32_mul10(atoi_result)
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// Subtract '0' from the current digit to convert it to binary.
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lda (input_pointer), y
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sec
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sbc #'0'
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// Add the binary digit to the stored number
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i32_add_a(atoi_result)
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y_buf_inc(input_pointer)
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jmp !digit-
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!newline:
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sty zp_temp
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ldy #0
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lda atoi_result + 0
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sta (buffer_pointer), y
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iny
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lda atoi_result + 1
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sta (buffer_pointer), y
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iny
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lda atoi_result + 2
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sta (buffer_pointer), y
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iny
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lda atoi_result + 3
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sta (buffer_pointer), y
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lda buffer_pointer
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clc
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adc #4
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sta buffer_pointer
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bcc !cc+
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inc buffer_pointer + 1
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!cc:
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ldy zp_temp
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y_buf_inc(input_pointer)
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// Check for the null terminator.
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lda (input_pointer), y
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beq !done+
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jmp !line-
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!done:
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// outer for loop initial value
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// outer_pointer = buffer + 25
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lda #<(buffer + 25 * 4)
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sta outer_pointer + 0
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lda #>(buffer + 25 * 4)
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sta outer_pointer + 1
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!outer:
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// middle for loop initial value
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// middle_pointer = outer_pointer - 25
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sec
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lda outer_pointer + 0
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sbc #(25 * 4)
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sta middle_pointer + 0
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lda outer_pointer + 1
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sbc #0
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sta middle_pointer + 1
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// TODO if *middle_pointer > *outer_pointer: continue
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!middle:
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// inner_pointer = middle_pointer + 1
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clc
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lda middle_pointer + 0
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adc #(1 * 4)
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sta inner_pointer + 0
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lda middle_pointer + 1
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adc #0
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sta inner_pointer + 1
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!inner:
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// if *inner_pointer + *middle_pointer == *outer_pointer:
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// continue 'outer;
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// *atoi_result = *inner_pointer + *middle_pointer
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clc
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ldy #0
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lda (inner_pointer), y
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adc (middle_pointer), y
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sta (atoi_result), y
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iny
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lda (inner_pointer), y
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adc (middle_pointer), y
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sta (atoi_result), y
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iny
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lda (inner_pointer), y
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adc (middle_pointer), y
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sta (atoi_result), y
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iny
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lda (inner_pointer), y
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adc (middle_pointer), y
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sta (atoi_result), y
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// if *atoi_result == *outer_pointer:
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ldy #0
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lda (atoi_result), y
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cmp (outer_pointer), y
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bne !not_equal+
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iny
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lda (atoi_result), y
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cmp (outer_pointer), y
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bne !not_equal+
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iny
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lda (atoi_result), y
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cmp (outer_pointer), y
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bne !not_equal+
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iny
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lda (atoi_result), y
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cmp (outer_pointer), y
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bne !not_equal+
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// continue 'outer;
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jmp !middle_done+
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!not_equal:
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// inner for loop increment
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// *inner_pointer += 1 * 4
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clc
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lda inner_pointer + 0
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adc #4
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sta inner_pointer + 0
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bcc !+
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inc inner_pointer + 1
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!:
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// inner for loop conditional
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// inner_pointer != outer_pointer
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lda inner_pointer + 0
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cmp outer_pointer + 0
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bne !inner-
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lda inner_pointer + 1
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cmp outer_pointer + 1
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bne !inner-
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// for loop increment
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// *middle_pointer += 1 * 4
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clc
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lda middle_pointer + 0
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adc #4
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sta middle_pointer + 0
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bcc !+
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inc middle_pointer + 1
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!:
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// for loop conditional
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// middle_pointer != outer_pointer
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lda middle_pointer + 0
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cmp outer_pointer + 0
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bne !middle_continue+
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lda middle_pointer + 1
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cmp outer_pointer + 1
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bne !middle_continue+
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jmp !outer_done+
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!middle_continue:
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jmp !middle-
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!middle_done:
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// outer for loop increment
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// *outer_pointer += 1 * 4
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clc
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lda outer_pointer + 0
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adc #4
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sta outer_pointer + 0
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bcc !+
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inc outer_pointer + 1
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!:
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// outer for loop conditional
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// *outer_pointer != $cfa0
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lda outer_pointer + 0
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cmp #$a0
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bne !outer_continue+
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lda outer_pointer + 1
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cmp #$bf
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bne !outer_continue+
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jmp *
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!outer_continue:
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jmp !outer-
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!outer_done:
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// print (part1 = *outer_pointer)
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ldy #0
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lda (outer_pointer), y
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sta part1 + 0
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sta udivmod32_dividend + 0
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iny
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lda (outer_pointer), y
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sta part1 + 1
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sta udivmod32_dividend + 1
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iny
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lda (outer_pointer), y
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sta part1 + 2
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sta udivmod32_dividend + 2
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iny
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lda (outer_pointer), y
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sta part1 + 3
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sta udivmod32_dividend + 3
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jsr print_decimal_u32
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lda #0
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sta lower_pointer + 0
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sta upper_pointer + 0
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sta sum + 0
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sta sum + 1
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sta sum + 2
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sta sum + 3
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lda #$b0
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sta lower_pointer + 1
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sta upper_pointer + 1
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!outer:
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!upper:
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// while sum < part1
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lda sum + 3
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cmp part1 + 3
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beq !+ // sum[3] == part1[3]
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bcc !upper_success+ // sum[3] < part1[3] => sum < part
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bcs !lower+ // sum[3] >= part1[3] => sum > part
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!:
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lda sum + 2
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cmp part1 + 2
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beq !+ // sum[2] == part1[2]
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bcc !upper_success+ // sum[2] < part1[2] => sum < part
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bcs !lower+ // sum[2] >= part1[2] => sum > part
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!:
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lda sum + 1
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cmp part1 + 1
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beq !+ // sum[1] == part1[1]
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bcc !upper_success+ // sum[1] < part1[1] => sum < part
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bcs !lower+ // sum[1] >= part1[1] => sum > part
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!:
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lda sum + 0
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cmp part1 + 0
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beq !outer_end+ // sum[0] == part1[0] => sum == part
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bcs !lower+ // sum[0] >= part1[0] => sum > part
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!upper_success:
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// sum += *upper_pointer
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ldy #0
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clc
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lda sum + 0
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adc (upper_pointer), y // (upper_pointer) + 0
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sta sum + 0
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iny
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lda sum + 1
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adc (upper_pointer), y // (upper_pointer) + 1
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sta sum + 1
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iny
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lda sum + 2
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adc (upper_pointer), y // (upper_pointer) + 2
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sta sum + 2
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iny
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lda sum + 3
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adc (upper_pointer), y // (upper_pointer) + 3
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sta sum + 3
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// upper_pointer += 1 * 4;
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clc
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lda upper_pointer + 0
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adc #4
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sta upper_pointer + 0
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bcc !+
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inc upper_pointer + 1
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!:
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jmp !upper-
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!outer_end:
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// Hidden shortcut to outer_end because the jump was too long
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jmp !outer_end+
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!lower:
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// while sum > part1
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lda sum + 3
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cmp part1 + 3
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beq !+ // sum[3] == part1[3]
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bcc !outer- // sum[3] < part[3] => sum < part
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bcs !lower_success+ // sum[3] >= part[3] => sum > part
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!:
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lda sum + 2
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cmp part1 + 2
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beq !+ // sum[2] == part1[2]
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bcc !outer- // sum[2] < part[2] => sum < part
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bcs !lower_success+ // sum[2] >= part[2] => sum > part
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!:
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lda sum + 1
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cmp part1 + 1
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beq !+ // sum[1] == part1[1]
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bcc !outer- // sum[1] < part[1] => sum < part
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bcs !lower_success+ // sum[1] >= part[1] => sum > part
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!:
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lda sum + 0
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cmp part1 + 0
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beq !outer_end+ // sum[0] == part1[0]
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bcs !outer- // sum[0] < part[0] => sum < part
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!lower_success:
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// sum -= *lower_pointer
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ldy #0
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sec
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lda sum + 0
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sbc (lower_pointer), y // (lower_pointer) + 0
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sta sum + 0
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iny
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lda sum + 1
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sbc (lower_pointer), y // (lower_pointer) + 1
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sta sum + 1
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iny
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lda sum + 2
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sbc (lower_pointer), y // (lower_pointer) + 2
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sta sum + 2
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iny
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lda sum + 3
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sbc (lower_pointer), y // (lower_pointer) + 3
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sta sum + 3
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// lower_pointer += 1 * 4;
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clc
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lda lower_pointer + 0
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adc #4
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sta lower_pointer + 0
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bcc !+
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inc lower_pointer + 1
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!:
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jmp !lower-
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!lower_end:
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!outer_end:
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// Find the minimum and maximum values
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lda #$ff
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sta min_value + 0
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sta min_value + 1
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sta min_value + 2
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sta min_value + 3
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lda #$00
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sta max_value + 0
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sta max_value + 1
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sta max_value + 2
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sta max_value + 3
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!loop:
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ldy #3
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lda (lower_pointer), y // lower[i] >> 24
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cmp min_value + 3
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beq !+
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bcs !not_less+
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bcc !less+
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!:
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dey
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lda (lower_pointer), y // lower[i] >> 16
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cmp min_value + 2
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beq !+
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bcs !not_less+
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bcc !less+
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!:
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dey
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lda (lower_pointer), y // lower[i] >> 8
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cmp min_value + 1
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beq !+
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bcs !not_less+
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bcc !less+
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!:
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dey
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lda (lower_pointer), y // lower[i] >> 0
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cmp min_value + 0
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bcs !not_less+
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!less:
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ldy #0
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lda (lower_pointer), y
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sta min_value + 0
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iny
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lda (lower_pointer), y
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sta min_value + 1
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iny
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lda (lower_pointer), y
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sta min_value + 2
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iny
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lda (lower_pointer), y
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sta min_value + 3
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!not_less:
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ldy #3
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lda (lower_pointer), y // lower[i] >> 24
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cmp max_value + 3
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beq !+
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bcc !not_more+
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bcs !more+
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!:
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dey
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lda (lower_pointer), y // lower[i] >> 16
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cmp max_value + 2
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beq !+
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bcc !not_more+
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bcs !more+
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!:
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dey
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lda (lower_pointer), y // lower[i] >> 8
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cmp max_value + 1
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beq !+
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bcc !not_more+
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bcs !more+
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!:
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dey
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lda (lower_pointer), y // lower[i] >> 0
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cmp max_value + 0
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bcc !not_more+
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!more:
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ldy #0
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lda (lower_pointer), y
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sta max_value + 0
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iny
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lda (lower_pointer), y
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sta max_value + 1
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iny
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lda (lower_pointer), y
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sta max_value + 2
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iny
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lda (lower_pointer), y
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sta max_value + 3
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!not_more:
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clc
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lda lower_pointer + 0
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adc #4
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sta lower_pointer + 0
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bcc !+
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inc lower_pointer + 1
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!:
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// for loop condition
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// lower_pointer != upper_pointer
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cmp upper_pointer + 0
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bne !+
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lda lower_pointer + 1
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cmp upper_pointer + 1
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beq !end+
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!:
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jmp !loop-
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!end:
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clc
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lda min_value + 0
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adc max_value + 0
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sta udivmod32_dividend + 0
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lda min_value + 1
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adc max_value + 1
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sta udivmod32_dividend + 1
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lda min_value + 2
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adc max_value + 2
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sta udivmod32_dividend + 2
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lda min_value + 3
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adc max_value + 3
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||||
sta udivmod32_dividend + 3
|
||||
|
||||
move_16_imm($03, str_part2)
|
||||
jsr write_string
|
||||
|
||||
jsr print_decimal_u32
|
||||
|
||||
move_16_imm($03, str_done)
|
||||
jsr write_string
|
||||
|
||||
jmp *
|
||||
rts
|
||||
}
|
||||
|
||||
|
||||
!str_title:
|
||||
.text "# Day 09"
|
||||
.byte '\n', '\n'
|
||||
.text "Part 1: "
|
||||
.byte 0
|
Loading…
Reference in New Issue