});
}
+//===----------------------------------------------------------------------===//
+// LogOp folder
+//===----------------------------------------------------------------------===//
+
+OpFoldResult math::LogOp::fold(ArrayRef<Attribute> operands) {
+ return constFoldUnaryOpConditional<FloatAttr>(
+ operands, [](const APFloat &a) -> Optional<APFloat> {
+ if (a.isNegative())
+ return {};
+
+ if (a.getSizeInBits(a.getSemantics()) == 64)
+ return APFloat(log(a.convertToDouble()));
+
+ if (a.getSizeInBits(a.getSemantics()) == 32)
+ return APFloat(logf(a.convertToFloat()));
+
+ return {};
+ });
+}
+
//===----------------------------------------------------------------------===//
// Log2Op folder
//===----------------------------------------------------------------------===//
%0 = math.log1p %v1 : vector<4xf32>
return %0 : vector<4xf32>
}
+
+// CHECK-LABEL: @log_fold
+// CHECK: %[[cst:.+]] = arith.constant 0.693147182 : f32
+ // CHECK: return %[[cst]]
+func.func @log_fold() -> f32 {
+ %c = arith.constant 2.0 : f32
+ %r = math.log %c : f32
+ return %r : f32
+}
+
+// CHECK-LABEL: @log_fold_vec
+// CHECK: %[[cst:.+]] = arith.constant dense<[0.000000e+00, 0.693147182, 1.09861231, 1.38629436]> : vector<4xf32
+// CHECK: return %[[cst]]
+func.func @log_fold_vec() -> (vector<4xf32>) {
+ %v1 = arith.constant dense<[1.0, 2.0, 3.0, 4.0]> : vector<4xf32>
+ %0 = math.log %v1 : vector<4xf32>
+ return %0 : vector<4xf32>
+}