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tensorflow/cc/gradients/math_grad.cc
REGISTER_NO_GRADIENT_OP("ApproximateEqual"); REGISTER_NO_GRADIENT_OP("NotEqual"); REGISTER_NO_GRADIENT_OP("LogicalAnd"); REGISTER_NO_GRADIENT_OP("LogicalOr"); REGISTER_NO_GRADIENT_OP("LogicalNot"); REGISTER_NO_GRADIENT_OP("Floor"); // Conjugate helper function returns the conjugate of an Output if it // is complex valued. Output ConjugateHelper(const Scope& scope, const Output& out) { DataType dtype = out.type();
Registered: Sun Jun 16 05:45:23 UTC 2024 - Last Modified: Fri Aug 25 18:20:20 UTC 2023 - 50.7K bytes - Viewed (0) -
src/crypto/tls/conn.go
} if c.vers == VersionTLS13 { return c.in.setErrorLocked(&net.OpError{Op: "remote error", Err: alert(data[1])}) } switch data[0] { case alertLevelWarning: // Drop the record on the floor and retry. return c.retryReadRecord(expectChangeCipherSpec) case alertLevelError: return c.in.setErrorLocked(&net.OpError{Op: "remote error", Err: alert(data[1])}) default:
Registered: Wed Jun 12 16:32:35 UTC 2024 - Last Modified: Thu May 23 03:10:12 UTC 2024 - 51.8K bytes - Viewed (0) -
src/go/types/expr.go
Registered: Wed Jun 12 16:32:35 UTC 2024 - Last Modified: Wed May 29 02:09:54 UTC 2024 - 49.7K bytes - Viewed (0) -
tensorflow/compiler/mlir/tensorflow/transforms/lower_tf.cc
// // We don't have a frac(x) primitive in XLA and computing it is tricky, but // because abs(sin(pi * x)) = abs(sin(pi * abs(x))), it's good enough for // our purposes to use abs(frac(x)) = abs(x) - floor(abs(x)). // // Furthermore, pi * abs(frac(x)) loses precision when abs(frac(x)) is close // to 1. To remedy this, we can use the fact that sin(pi * x) in the domain
Registered: Sun Jun 16 05:45:23 UTC 2024 - Last Modified: Thu Apr 25 16:01:03 UTC 2024 - 74.9K bytes - Viewed (0) -
src/cmd/compile/internal/types2/expr.go
Registered: Wed Jun 12 16:32:35 UTC 2024 - Last Modified: Wed May 29 02:09:54 UTC 2024 - 51.7K bytes - Viewed (0) -
tensorflow/compiler/jit/mark_for_compilation_pass.cc
// Unary {"PW", {"ComplexAbs", "Angle", "Conj", "Abs", "Acos", "Acosh", "Asin", "Atan", "Atanh", "Ceil", "Cos", "Cosh", "Sin", "Exp", "Expm1", "Floor", "IsFinite", "IsInf", "IsNan", "Inv", "Reciprocal", "Log", "Log1p", "Invert", "LogicalNot", "Ndtri", "Neg", "Rint", "Round", "Rsqrt", "Sigmoid", "Sign", "Sinh", "Softplus", "Softsign", "Sqrt",
Registered: Sun Jun 16 05:45:23 UTC 2024 - Last Modified: Wed Feb 21 12:19:41 UTC 2024 - 85.3K bytes - Viewed (0) -
src/cmd/compile/internal/ssa/_gen/S390X.rules
=> (NEG (Select0 <typ.UInt64> (SUBE (MOVDconst [0]) (MOVDconst [0]) (Select1 <types.TypeFlags> (SUBE x y (Select1 <types.TypeFlags> (SUBC (MOVDconst [0]) c))))))) // math package intrinsics (Sqrt ...) => (FSQRT ...) (Floor x) => (FIDBR [7] x) (Ceil x) => (FIDBR [6] x) (Trunc x) => (FIDBR [5] x) (RoundToEven x) => (FIDBR [4] x) (Round x) => (FIDBR [1] x) (FMA x y z) => (FMADD z x y)
Registered: Wed Jun 12 16:32:35 UTC 2024 - Last Modified: Thu Oct 12 18:09:26 UTC 2023 - 74.3K bytes - Viewed (0) -
src/cmd/compile/internal/ssa/_gen/AMD64.rules
(PopCount16 x) => (POPCNTL (MOVWQZX <typ.UInt32> x)) (PopCount8 x) => (POPCNTL (MOVBQZX <typ.UInt32> x)) (Sqrt ...) => (SQRTSD ...) (Sqrt32 ...) => (SQRTSS ...) (RoundToEven x) => (ROUNDSD [0] x) (Floor x) => (ROUNDSD [1] x) (Ceil x) => (ROUNDSD [2] x) (Trunc x) => (ROUNDSD [3] x) (FMA x y z) => (VFMADD231SD z x y) // Lowering extension
Registered: Wed Jun 12 16:32:35 UTC 2024 - Last Modified: Tue Mar 12 19:38:41 UTC 2024 - 93.9K bytes - Viewed (0)