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tensorflow/compiler/mlir/lite/experimental/tac/execution_metadata_exporter.cc
} }); } // Build the flatbuffer. std::vector<flatbuffers::Offset<flatbuffers::String>> hardwares; for (const auto& kv : *hardware_names) { hardwares.push_back(builder->CreateString(kv.first)); } return CreateHardwareMetadata(*builder, builder->CreateVector(hardwares)); } } // namespace std::optional<std::string> ExportRuntimeMetadata(mlir::ModuleOp module) {
Registered: Sun Jun 16 05:45:23 UTC 2024 - Last Modified: Tue Jun 11 06:11:34 UTC 2024 - 7.5K bytes - Viewed (0) -
.github/bot_config.yml
* Refer [linux setup guide](https://www.tensorflow.org/install/gpu#linux_setup). * If error still persists then, apparently your CPU model does not support AVX instruction sets. * Refer [hardware requirements](https://www.tensorflow.org/install/pip#hardware-requirements). ----------------------------------------------------------------------------------------------- **2. Installing **TensorFlow** (TF) CPU prebuilt binaries**
Registered: Sun Jun 16 05:45:23 UTC 2024 - Last Modified: Mon Jun 03 04:55:57 UTC 2024 - 4K bytes - Viewed (0) -
tensorflow/compiler/mlir/lite/experimental/tac/execution_metadata_exporter_test.cc
expected_subgraph_metadata->op_metadata()->GetAs<OpMetadata>(j); EXPECT_EQ(result_op_metadata->index(), expected_op_metadata->index()); EXPECT_EQ(result_op_metadata->hardware(), expected_op_metadata->hardware()); EXPECT_EQ(result_op_metadata->op_costs()->size(), expected_op_metadata->op_costs()->size()); for (int i = 0; i < result_op_metadata->op_costs()->size(); ++i) {
Registered: Sun Jun 16 05:45:23 UTC 2024 - Last Modified: Tue Jun 11 06:11:34 UTC 2024 - 6K bytes - Viewed (0) -
src/crypto/tls/handshake_server_test.go
name: "client prefers AES-GCM, server doesn't have hardware AES (pick ChaCha)", clientCiphers: []uint16{ TLS_ECDHE_RSA_WITH_AES_128_GCM_SHA256, TLS_ECDHE_RSA_WITH_CHACHA20_POLY1305, TLS_RSA_WITH_AES_128_CBC_SHA, }, serverHasAESGCM: false, expectedCipher: TLS_ECDHE_RSA_WITH_CHACHA20_POLY1305, }, { name: "client prefers AES-GCM, server has hardware AES (pick AES-GCM)", clientCiphers: []uint16{
Registered: Wed Jun 12 16:32:35 UTC 2024 - Last Modified: Mon Jun 03 14:56:25 UTC 2024 - 64.7K bytes - Viewed (0) -
doc/next/7-ports.md
The `GOARM64` environment variable defaults to `v8.0`. ### RISC-V {#riscv} <!-- go.dev/issue/61476, CL 541135 -->
Registered: Wed Jun 12 16:32:35 UTC 2024 - Last Modified: Tue Jun 11 17:18:52 UTC 2024 - 1.7K bytes - Viewed (0) -
src/hash/crc32/crc32_generic.go
// Use of this source code is governed by a BSD-style // license that can be found in the LICENSE file. // This file contains CRC32 algorithms that are not specific to any architecture // and don't use hardware acceleration. // // The simple (and slow) CRC32 implementation only uses a 256*4 bytes table. // // The slicing-by-8 algorithm is a faster implementation that uses a bigger // table (8*256*4 bytes). package crc32
Registered: Wed Jun 12 16:32:35 UTC 2024 - Last Modified: Sat May 18 22:36:41 UTC 2024 - 2.5K bytes - Viewed (0) -
src/crypto/tls/cipher_suites.go
// // When AES hardware is available, AES-128-GCM and AES-256-GCM are faster // than ChaCha20Poly1305. // // When AES hardware is not available, AES-128-GCM is one or more of: much // slower, way more complex, and less safe (because not constant time) // than ChaCha20Poly1305. // // We use this list if we think both peers have AES hardware, and
Registered: Wed Jun 12 16:32:35 UTC 2024 - Last Modified: Wed May 29 17:58:53 UTC 2024 - 25.5K bytes - Viewed (0) -
android/guava/src/com/google/common/hash/LittleEndianByteArray.java
// The hardware is big-endian, so we need to reverse the order of the bytes. return Long.reverseBytes(bigEndian); } @Override public void putLongLittleEndian(byte[] array, int offset, long value) { // Reverse the order of the bytes before storing, since we're on big-endian hardware. long littleEndianValue = Long.reverseBytes(value);
Registered: Wed Jun 12 16:38:11 UTC 2024 - Last Modified: Fri Jun 07 22:25:23 UTC 2024 - 9.7K bytes - Viewed (0) -
guava/src/com/google/common/hash/LittleEndianByteArray.java
// The hardware is big-endian, so we need to reverse the order of the bytes. return Long.reverseBytes(bigEndian); } @Override public void putLongLittleEndian(byte[] array, int offset, long value) { // Reverse the order of the bytes before storing, since we're on big-endian hardware. long littleEndianValue = Long.reverseBytes(value);
Registered: Wed Jun 12 16:38:11 UTC 2024 - Last Modified: Fri Jun 07 22:25:23 UTC 2024 - 9.8K bytes - Viewed (0) -
src/cmd/internal/obj/loong64/a.out.go
AMOVW AMOVWD AMOVWF AMOVWL AMOVWR AMUL AMULD AMULF AMULU AMULH AMULHU AMULW ANEGD ANEGF ANEGW ANEGV ANOOP // hardware nop ANOR AOR AREM AREMU ARFE ASC ASCV ASGT ASGTU ASLL ASQRTD ASQRTF ASRA ASRL AROTR ASUB ASUBD ASUBF
Registered: Wed Jun 12 16:32:35 UTC 2024 - Last Modified: Wed May 22 02:04:54 UTC 2024 - 5.7K bytes - Viewed (0)