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[mips] Mark redundant instructions with a comment in test/CodeGen/Mips/Fast-ISel/icmpa.ll.
llvm-svn: 219605
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@ -45,6 +45,7 @@ entry:
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; CHECK-DAG: lw $[[REG_C:[0-9]+]], 0($[[REG_C_GOT]])
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; CHECK: xor $[[REG1:[0-9]+]], $[[REG_C]], $[[REG_D]]
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; CHECK: sltu $[[REG2:[0-9]+]], $zero, $[[REG1]]
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; FIXME: This instruction is redundant. The sltu can only produce 0 and 1.
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; CHECK: andi ${{[0-9]+}}, $[[REG2]], 1
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store i32 %conv, i32* @b1, align 4
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@ -64,6 +65,7 @@ entry:
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; CHECK-DAG: lw $[[REG_UD:[0-9]+]], 0($[[REG_UD_GOT]])
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; CHECK-DAG: lw $[[REG_UC:[0-9]+]], 0($[[REG_UC_GOT]])
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; CHECK: sltu $[[REG1:[0-9]+]], $[[REG_UD]], $[[REG_UC]]
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; FIXME: This instruction is redundant. The sltu can only produce 0 and 1.
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; CHECK: andi ${{[0-9]+}}, $[[REG1]], 1
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store i32 %conv, i32* @b1, align 4
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@ -83,6 +85,7 @@ entry:
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; CHECK-DAG: lw $[[REG_UD:[0-9]+]], 0($[[REG_UD_GOT]])
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; CHECK-DAG: lw $[[REG_UC:[0-9]+]], 0($[[REG_UC_GOT]])
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; CHECK: sltu $[[REG1:[0-9]+]], $[[REG_UC]], $[[REG_UD]]
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; FIXME: This instruction is redundant. The sltu can only produce 0 and 1.
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; CHECK: andi ${{[0-9]+}}, $[[REG1]], 1
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store i32 %conv, i32* @b1, align 4
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ret void
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@ -102,6 +105,7 @@ entry:
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; CHECK-DAG: lw $[[REG_UC:[0-9]+]], 0($[[REG_UC_GOT]])
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; CHECK: sltu $[[REG1:[0-9]+]], $[[REG_UC]], $[[REG_UD]]
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; CHECK: xori $[[REG2:[0-9]+]], $[[REG1]], 1
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; FIXME: This instruction is redundant. The sltu can only produce 0 and 1.
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; CHECK: andi ${{[0-9]+}}, $[[REG2]], 1
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store i32 %conv, i32* @b1, align 4
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ret void
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@ -121,6 +125,7 @@ entry:
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; CHECK-DAG: lw $[[REG_UC:[0-9]+]], 0($[[REG_UC_GOT]])
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; CHECK: sltu $[[REG1:[0-9]+]], $[[REG_UD]], $[[REG_UC]]
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; CHECK: xori $[[REG2:[0-9]+]], $[[REG1]], 1
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; FIXME: This instruction is redundant. The sltu can only produce 0 and 1.
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; CHECK: andi ${{[0-9]+}}, $[[REG2]], 1
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store i32 %conv, i32* @b1, align 4
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ret void
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@ -139,6 +144,7 @@ entry:
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; CHECK-DAG: lw $[[REG_D:[0-9]+]], 0($[[REG_D_GOT]])
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; CHECK-DAG: lw $[[REG_C:[0-9]+]], 0($[[REG_C_GOT]])
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; CHECK: slt $[[REG1:[0-9]+]], $[[REG_D]], $[[REG_C]]
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; FIXME: This instruction is redundant. The slt can only produce 0 and 1.
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; CHECK: andi ${{[0-9]+}}, $[[REG1]], 1
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store i32 %conv, i32* @b1, align 4
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ret void
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@ -157,6 +163,7 @@ entry:
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; CHECK-DAG: lw $[[REG_D:[0-9]+]], 0($[[REG_D_GOT]])
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; CHECK-DAG: lw $[[REG_C:[0-9]+]], 0($[[REG_C_GOT]])
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; CHECK: slt $[[REG1:[0-9]+]], $[[REG_C]], $[[REG_D]]
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; FIXME: This instruction is redundant. The slt can only produce 0 and 1.
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; CHECK: andi ${{[0-9]+}}, $[[REG1]], 1
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store i32 %conv, i32* @b1, align 4
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ret void
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@ -177,6 +184,7 @@ entry:
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; CHECK-DAG: lw $[[REG_C:[0-9]+]], 0($[[REG_C_GOT]])
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; CHECK: slt $[[REG1:[0-9]+]], $[[REG_C]], $[[REG_D]]
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; CHECK: xori $[[REG2:[0-9]+]], $[[REG1]], 1
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; FIXME: This instruction is redundant. The slt can only produce 0 and 1.
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; CHECK: andi ${{[0-9]+}}, $[[REG2]], 1
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ret void
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}
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@ -195,9 +203,8 @@ entry:
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; CHECK-DAG: lw $[[REG_C:[0-9]+]], 0($[[REG_C_GOT]])
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; CHECK: slt $[[REG1:[0-9]+]], $[[REG_D]], $[[REG_C]]
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; CHECK: xori $[[REG2:[0-9]+]], $[[REG1]], 1
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; FIXME: This instruction is redundant. The slt can only produce 0 and 1.
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; CHECK: andi ${{[0-9]+}}, $[[REG2]], 1
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store i32 %conv, i32* @b1, align 4
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ret void
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}
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