}
//===----------------------------------------------------------------------===//
-// Negation
+// Absolute and Negation
//===----------------------------------------------------------------------===//
+let Defs = [CC] in {
+ let CCValues = 0xF, CompareZeroCCMask = 0x8 in {
+ def LPR : UnaryRR <"lp", 0x10, z_iabs32, GR32, GR32>;
+ def LPGR : UnaryRRE<"lpg", 0xB900, z_iabs64, GR64, GR64>;
+ }
+ let CCValues = 0xE, CompareZeroCCMask = 0xE in
+ def LPGFR : UnaryRRE<"lpgf", 0xB910, null_frag, GR64, GR32>;
+}
+defm : SXU<z_iabs64, LPGFR>;
+
let Defs = [CC] in {
let CCValues = 0xF, CompareZeroCCMask = 0x8 in {
def LCR : UnaryRR <"lc", 0x13, ineg, GR32, GR32>;
APInt::getLowBitsSet(BitWidth, 8));
}]>;
+// Integer absolute, matching the canonical form generated by DAGCombiner.
+def z_iabs32 : PatFrag<(ops node:$src),
+ (xor (add node:$src, (sra node:$src, (i32 31))),
+ (sra node:$src, (i32 31)))>;
+def z_iabs64 : PatFrag<(ops node:$src),
+ (xor (add node:$src, (sra node:$src, (i32 63))),
+ (sra node:$src, (i32 63)))>;
+
// Fused multiply-add and multiply-subtract, but with the order of the
// operands matching SystemZ's MA and MS instructions.
def z_fma : PatFrag<(ops node:$src1, node:$src2, node:$src3),
--- /dev/null
+; Test integer absolute.
+;
+; RUN: llc < %s -mtriple=s390x-linux-gnu | FileCheck %s
+
+; Test i32->i32 absolute using slt.
+define i32 @f1(i32 %val) {
+; CHECK-LABEL: f1:
+; CHECK: lpr %r2, %r2
+; CHECK: br %r14
+ %cmp = icmp slt i32 %val, 0
+ %neg = sub i32 0, %val
+ %res = select i1 %cmp, i32 %neg, i32 %val
+ ret i32 %res
+}
+
+; Test i32->i32 absolute using sle.
+define i32 @f2(i32 %val) {
+; CHECK-LABEL: f2:
+; CHECK: lpr %r2, %r2
+; CHECK: br %r14
+ %cmp = icmp sle i32 %val, 0
+ %neg = sub i32 0, %val
+ %res = select i1 %cmp, i32 %neg, i32 %val
+ ret i32 %res
+}
+
+; Test i32->i32 absolute using sgt.
+define i32 @f3(i32 %val) {
+; CHECK-LABEL: f3:
+; CHECK: lpr %r2, %r2
+; CHECK: br %r14
+ %cmp = icmp sgt i32 %val, 0
+ %neg = sub i32 0, %val
+ %res = select i1 %cmp, i32 %val, i32 %neg
+ ret i32 %res
+}
+
+; Test i32->i32 absolute using sge.
+define i32 @f4(i32 %val) {
+; CHECK-LABEL: f4:
+; CHECK: lpr %r2, %r2
+; CHECK: br %r14
+ %cmp = icmp sge i32 %val, 0
+ %neg = sub i32 0, %val
+ %res = select i1 %cmp, i32 %val, i32 %neg
+ ret i32 %res
+}
+
+; Test i32->i64 absolute.
+define i64 @f5(i32 %val) {
+; CHECK-LABEL: f5:
+; CHECK: lpgfr %r2, %r2
+; CHECK: br %r14
+ %ext = sext i32 %val to i64
+ %cmp = icmp slt i64 %ext, 0
+ %neg = sub i64 0, %ext
+ %res = select i1 %cmp, i64 %neg, i64 %ext
+ ret i64 %res
+}
+
+; Test i32->i64 absolute that uses an "in-register" form of sign extension.
+define i64 @f6(i64 %val) {
+; CHECK-LABEL: f6:
+; CHECK: lpgfr %r2, %r2
+; CHECK: br %r14
+ %trunc = trunc i64 %val to i32
+ %ext = sext i32 %trunc to i64
+ %cmp = icmp slt i64 %ext, 0
+ %neg = sub i64 0, %ext
+ %res = select i1 %cmp, i64 %neg, i64 %ext
+ ret i64 %res
+}
+
+; Test i64 absolute.
+define i64 @f7(i64 %val) {
+; CHECK-LABEL: f7:
+; CHECK: lpgr %r2, %r2
+; CHECK: br %r14
+ %cmp = icmp slt i64 %val, 0
+ %neg = sub i64 0, %val
+ %res = select i1 %cmp, i64 %neg, i64 %val
+ ret i64 %res
+}
# CHECK: lpebr %f15, %f9
0xb3 0x00 0x00 0xf9
+# CHECK: lpgfr %r0, %r0
+0xb9 0x10 0x00 0x00
+
+# CHECK: lpgfr %r0, %r15
+0xb9 0x10 0x00 0x0f
+
+# CHECK: lpgfr %r15, %r0
+0xb9 0x10 0x00 0xf0
+
+# CHECK: lpgfr %r7, %r8
+0xb9 0x10 0x00 0x78
+
+# CHECK: lpgr %r0, %r0
+0xb9 0x00 0x00 0x00
+
+# CHECK: lpgr %r0, %r15
+0xb9 0x00 0x00 0x0f
+
+# CHECK: lpgr %r15, %r0
+0xb9 0x00 0x00 0xf0
+
+# CHECK: lpgr %r7, %r8
+0xb9 0x00 0x00 0x78
+
+# CHECK: lpr %r0, %r0
+0x10 0x00
+
+# CHECK: lpr %r0, %r15
+0x10 0x0f
+
+# CHECK: lpr %r15, %r0
+0x10 0xf0
+
+# CHECK: lpr %r7, %r8
+0x10 0x78
+
# CHECK: lpxbr %f0, %f8
0xb3 0x40 0x00 0x08
lpebr %f15,%f0
lpebr %f15,%f9
+#CHECK: lpgfr %r0, %r0 # encoding: [0xb9,0x10,0x00,0x00]
+#CHECK: lpgfr %r0, %r15 # encoding: [0xb9,0x10,0x00,0x0f]
+#CHECK: lpgfr %r15, %r0 # encoding: [0xb9,0x10,0x00,0xf0]
+#CHECK: lpgfr %r7, %r8 # encoding: [0xb9,0x10,0x00,0x78]
+
+ lpgfr %r0,%r0
+ lpgfr %r0,%r15
+ lpgfr %r15,%r0
+ lpgfr %r7,%r8
+
+#CHECK: lpgr %r0, %r0 # encoding: [0xb9,0x00,0x00,0x00]
+#CHECK: lpgr %r0, %r15 # encoding: [0xb9,0x00,0x00,0x0f]
+#CHECK: lpgr %r15, %r0 # encoding: [0xb9,0x00,0x00,0xf0]
+#CHECK: lpgr %r7, %r8 # encoding: [0xb9,0x00,0x00,0x78]
+
+ lpgr %r0,%r0
+ lpgr %r0,%r15
+ lpgr %r15,%r0
+ lpgr %r7,%r8
+
+#CHECK: lpr %r0, %r0 # encoding: [0x10,0x00]
+#CHECK: lpr %r0, %r15 # encoding: [0x10,0x0f]
+#CHECK: lpr %r15, %r0 # encoding: [0x10,0xf0]
+#CHECK: lpr %r7, %r8 # encoding: [0x10,0x78]
+
+ lpr %r0,%r0
+ lpr %r0,%r15
+ lpr %r15,%r0
+ lpr %r7,%r8
+
#CHECK: lpxbr %f0, %f8 # encoding: [0xb3,0x40,0x00,0x08]
#CHECK: lpxbr %f0, %f13 # encoding: [0xb3,0x40,0x00,0x0d]
#CHECK: lpxbr %f13, %f0 # encoding: [0xb3,0x40,0x00,0xd0]