.globl main .text main: li $v0, 4 #output the string la $a0, first_int syscall li $v0, 5 #read in the number syscall move $t0, $v0 #store first integer in t0 li $v0, 4 #output the string la $a0, second_int syscall li $v0, 5 #read in the number syscall move $t1, $v0 #store second integer in t1 bge $t0, $t1, bigger_m bge $t1, $t0, bigger_n beq $t0, $t1, equivalence bigger_m: li $v0, 4 #output the string la $a0, m_big syscall j calc bigger_n: li $v0, 4 #output the string la $a0, n_big syscall j calc equivalence: li $v0, 4 #output the string la $a0, equality syscall j calc calc: add $s0, $t0, $t0 #add m+m sub $s1, $t0, $t1 #subtract m-n sub $s2, $t0, 3 #subtract m-3 add $s3, $t1, 4 #add n+4 #print out the line, then store the integer from the 's' registers to a0, #then print integer, then repeat li $v0, 4 #iteration 1 la $a0, newline syscall move $a0, $s0 li $v0, 1 syscall li $v0, 4 #iteration 2 la $a0, newline syscall move $a0, $s1 li $v0, 1 syscall li $v0, 4 #iteration 3 la $a0, newline syscall move $a0, $s2 li $v0, 1 syscall li $v0, 4 #iteration 4 la $a0, newline syscall move $a0, $s3 li $v0, 1 syscall li $v0, 10 #end the program syscall .data first_int: .asciiz "Please enter your first integer, M: " second_int: .asciiz "Please enter your second integer, N: " result: .asciiz "The sum of your integers is: " newline: .asciiz "\n" m_big: .asciiz "M is bigger than N" n_big: .asciiz "N is bigger than M" equality: .asciiz "M and N are equal"