; This is not strictly LLVM, as it uses the C library function "printf". ; LLVM does not provide a way to print values, so the alternative would be ; to just load the string into memory, and that would be boring. ; Additional comments have been inserted, as well as changes made from the output produced by clang such as putting more meaningful labels for the jumps ;--- The declarations for the external C functions declare i32 @printf(i8*, ...) $"EVEN_STR" = comdat any $"ODD_STR" = comdat any @"EVEN_STR" = linkonce_odr unnamed_addr constant [12 x i8] c"%d is even\0A\00", comdat, align 1 @"ODD_STR" = linkonce_odr unnamed_addr constant [11 x i8] c"%d is odd\0A\00", comdat, align 1 ; Function Attrs: noinline nounwind optnone uwtable define i32 @main() #0 { %1 = alloca i32, align 4 ;-- allocate i store i32 0, i32* %1, align 4 ;-- store 0 in i br label %loop loop: %2 = load i32, i32* %1, align 4 ;-- load i %3 = icmp ult i32 %2, 4 ;-- i < 4 br i1 %3, label %loop_body, label %exit loop_body: %4 = load i32, i32* %1, align 4 ;-- load i %5 = and i32 %4, 1 ;-- i & 1 %6 = icmp eq i32 %5, 0 ;-- (i & 1) == 0 br i1 %6, label %even_branch, label %odd_branch even_branch: %7 = load i32, i32* %1, align 4 ;-- load i %8 = call i32 (i8*, ...) @printf(i8* getelementptr inbounds ([12 x i8], [12 x i8]* @"EVEN_STR", i32 0, i32 0), i32 %7) br label %loop_increment odd_branch: %9 = load i32, i32* %1, align 4 ;-- load i %10 = call i32 (i8*, ...) @printf(i8* getelementptr inbounds ([11 x i8], [11 x i8]* @"ODD_STR", i32 0, i32 0), i32 %9) br label %loop_increment loop_increment: %11 = load i32, i32* %1, align 4 ;-- load i %12 = add i32 %11, 1 ;-- increment i store i32 %12, i32* %1, align 4 ;-- store i br label %loop exit: ret i32 0 } attributes #0 = { noinline nounwind optnone uwtable "correctly-rounded-divide-sqrt-fp-math"="false" "disable-tail-calls"="false" "less-precise-fpmad"="false" "no-frame-pointer-elim"="false" "no-infs-fp-math"="false" "no-jump-tables"="false" "no-nans-fp-math"="false" "no-signed-zeros-fp-math"="false" "no-trapping-math"="false" "stack-protector-buffer-size"="8" "target-cpu"="x86-64" "target-features"="+fxsr,+mmx,+sse,+sse2,+x87" "unsafe-fp-math"="false" "use-soft-float"="false" }