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			122 lines
		
	
	
		
			3.5 KiB
		
	
	
	
		
			LLVM
		
	
	
	
	
	
			
		
		
	
	
			122 lines
		
	
	
		
			3.5 KiB
		
	
	
	
		
			LLVM
		
	
	
	
	
	
| ; Test multiplication of two f32s, producing an f32 result.
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| ;
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| ; RUN: llc < %s -mtriple=s390x-linux-gnu -mcpu=z10 \
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| ; RUN:   | FileCheck -check-prefix=CHECK -check-prefix=CHECK-SCALAR %s
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| ; RUN: llc < %s -mtriple=s390x-linux-gnu -mcpu=z14 | FileCheck %s
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| 
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| declare float @foo()
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| 
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| ; Check register multiplication.
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| define float @f1(float %f1, float %f2) {
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| ; CHECK-LABEL: f1:
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| ; CHECK: meebr %f0, %f2
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| ; CHECK: br %r14
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|   %res = fmul float %f1, %f2
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|   ret float %res
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| }
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| 
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| ; Check the low end of the MEEB range.
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| define float @f2(float %f1, float *%ptr) {
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| ; CHECK-LABEL: f2:
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| ; CHECK: meeb %f0, 0(%r2)
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| ; CHECK: br %r14
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|   %f2 = load float , float *%ptr
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|   %res = fmul float %f1, %f2
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|   ret float %res
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| }
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| 
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| ; Check the high end of the aligned MEEB range.
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| define float @f3(float %f1, float *%base) {
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| ; CHECK-LABEL: f3:
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| ; CHECK: meeb %f0, 4092(%r2)
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| ; CHECK: br %r14
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|   %ptr = getelementptr float, float *%base, i64 1023
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|   %f2 = load float , float *%ptr
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|   %res = fmul float %f1, %f2
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|   ret float %res
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| }
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| 
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| ; Check the next word up, which needs separate address logic.
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| ; Other sequences besides this one would be OK.
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| define float @f4(float %f1, float *%base) {
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| ; CHECK-LABEL: f4:
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| ; CHECK: aghi %r2, 4096
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| ; CHECK: meeb %f0, 0(%r2)
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| ; CHECK: br %r14
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|   %ptr = getelementptr float, float *%base, i64 1024
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|   %f2 = load float , float *%ptr
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|   %res = fmul float %f1, %f2
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|   ret float %res
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| }
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| 
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| ; Check negative displacements, which also need separate address logic.
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| define float @f5(float %f1, float *%base) {
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| ; CHECK-LABEL: f5:
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| ; CHECK: aghi %r2, -4
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| ; CHECK: meeb %f0, 0(%r2)
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| ; CHECK: br %r14
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|   %ptr = getelementptr float, float *%base, i64 -1
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|   %f2 = load float , float *%ptr
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|   %res = fmul float %f1, %f2
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|   ret float %res
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| }
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| 
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| ; Check that MEEB allows indices.
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| define float @f6(float %f1, float *%base, i64 %index) {
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| ; CHECK-LABEL: f6:
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| ; CHECK: sllg %r1, %r3, 2
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| ; CHECK: meeb %f0, 400(%r1,%r2)
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| ; CHECK: br %r14
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|   %ptr1 = getelementptr float, float *%base, i64 %index
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|   %ptr2 = getelementptr float, float *%ptr1, i64 100
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|   %f2 = load float , float *%ptr2
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|   %res = fmul float %f1, %f2
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|   ret float %res
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| }
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| 
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| ; Check that multiplications of spilled values can use MEEB rather than MEEBR.
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| define float @f7(float *%ptr0) {
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| ; CHECK-LABEL: f7:
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| ; CHECK: brasl %r14, foo@PLT
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| ; CHECK-SCALAR: meeb %f0, 16{{[04]}}(%r15)
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| ; CHECK: br %r14
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|   %ptr1 = getelementptr float, float *%ptr0, i64 2
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|   %ptr2 = getelementptr float, float *%ptr0, i64 4
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|   %ptr3 = getelementptr float, float *%ptr0, i64 6
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|   %ptr4 = getelementptr float, float *%ptr0, i64 8
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|   %ptr5 = getelementptr float, float *%ptr0, i64 10
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|   %ptr6 = getelementptr float, float *%ptr0, i64 12
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|   %ptr7 = getelementptr float, float *%ptr0, i64 14
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|   %ptr8 = getelementptr float, float *%ptr0, i64 16
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|   %ptr9 = getelementptr float, float *%ptr0, i64 18
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|   %ptr10 = getelementptr float, float *%ptr0, i64 20
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| 
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|   %val0 = load float , float *%ptr0
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|   %val1 = load float , float *%ptr1
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|   %val2 = load float , float *%ptr2
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|   %val3 = load float , float *%ptr3
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|   %val4 = load float , float *%ptr4
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|   %val5 = load float , float *%ptr5
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|   %val6 = load float , float *%ptr6
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|   %val7 = load float , float *%ptr7
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|   %val8 = load float , float *%ptr8
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|   %val9 = load float , float *%ptr9
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|   %val10 = load float , float *%ptr10
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| 
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|   %ret = call float @foo()
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| 
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|   %mul0 = fmul float %ret, %val0
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|   %mul1 = fmul float %mul0, %val1
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|   %mul2 = fmul float %mul1, %val2
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|   %mul3 = fmul float %mul2, %val3
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|   %mul4 = fmul float %mul3, %val4
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|   %mul5 = fmul float %mul4, %val5
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|   %mul6 = fmul float %mul5, %val6
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|   %mul7 = fmul float %mul6, %val7
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|   %mul8 = fmul float %mul7, %val8
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|   %mul9 = fmul float %mul8, %val9
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|   %mul10 = fmul float %mul9, %val10
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| 
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|   ret float %mul10
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| }
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