b19ba96766
-- a3e58c1870a9626039f4d178d2d599319bd9f8a8 by Matt Kulukundis <kfm@google.com>: Allow MakeCordFromExternal to take a zero arg releaser. PiperOrigin-RevId: 298650274 -- 01897c4a9bb99f3dc329a794019498ad345ddebd by Samuel Benzaquen <sbenza@google.com>: Reduce library bloat for absl::Flag by moving the definition of base virtual functions to a .cc file. This removes the duplicate symbols in user translation units and has the side effect of moving the vtable definition too (re key function) PiperOrigin-RevId: 298617920 -- 190f0d3782c63aed01046886d7fbc1be5bca2de9 by Derek Mauro <dmauro@google.com>: Import GitHub #596: Unbreak stacktrace code for UWP apps PiperOrigin-RevId: 298600834 -- cd5cf6f8c87b35b85a9584e94da2a99057345b73 by Gennadiy Rozental <rogeeff@google.com>: Use union of heap allocated pointer, one word atomic and two word atomic to represent flags value. Any type T, which is trivially copy-able and with with sizeof(T) <= 8, will be stored in atomic int64_t. Any type T, which is trivially copy-able and with with 8 < sizeof(T) <= 16, will be stored in atomic AlignedTwoWords. We also introducing value storage type to distinguish these cases. PiperOrigin-RevId: 298497200 -- f8fe7bd53bfed601f002f521e34ab4bc083fc28b by Matthew Brown <matthewbr@google.com>: Ensure a deep copy and proper equality on absl::Status::ErasePayload PiperOrigin-RevId: 298482742 -- a5c9ccddf4b04f444e3f7e27dbc14faf1fcb5373 by Gennadiy Rozental <rogeeff@google.com>: Change ChunkIterator implementation to use fixed capacity collection of CordRep*. We can now assume that depth never exceeds 91. That makes comparison operator exception safe. I've tested that with this CL we do not observe an overhead of chunk_end. Compiler optimized this iterator completely. PiperOrigin-RevId: 298458472 -- 327ea5e8910bc388b03389c730763f9823abfce5 by Abseil Team <absl-team@google.com>: Minor cleanups in b-tree code: - Rename some variables: fix issues of different param names between definition/declaration, move away from `x` as a default meaningless variable name. - Make init_leaf/init_internal be non-static methods (they already take the node as the first parameter). - In internal_emplace/try_shrink, update root/rightmost the same way as in insert_unique/insert_multi. - Replace a TODO with a comment. PiperOrigin-RevId: 298432836 -- 8020ce9ec8558ee712d9733ae3d660ac1d3ffe1a by Abseil Team <absl-team@google.com>: Guard against unnecessary copy in case the buffer is empty. This is important in cases were the user is explicitly tuning their chunks to match PiecewiseChunkSize(). PiperOrigin-RevId: 298366044 -- 89324441d1c0c697c90ba7d8fc63639805fcaa9d by Abseil Team <absl-team@google.com>: Internal change PiperOrigin-RevId: 298219363 GitOrigin-RevId: a3e58c1870a9626039f4d178d2d599319bd9f8a8 Change-Id: I28dffc684b6fd0292b94807b88ec6664d5d0e183
447 lines
13 KiB
C++
447 lines
13 KiB
C++
// Copyright 2019 The Abseil Authors.
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//
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// Licensed under the Apache License, Version 2.0 (the "License");
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// you may not use this file except in compliance with the License.
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// You may obtain a copy of the License at
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//
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// https://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing, software
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// distributed under the License is distributed on an "AS IS" BASIS,
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// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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// See the License for the specific language governing permissions and
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// limitations under the License.
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#include "absl/status/status.h"
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#include <cassert>
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#include "absl/base/internal/raw_logging.h"
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#include "absl/debugging/stacktrace.h"
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#include "absl/debugging/symbolize.h"
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#include "absl/status/status_payload_printer.h"
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#include "absl/strings/escaping.h"
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#include "absl/strings/str_cat.h"
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#include "absl/strings/str_format.h"
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#include "absl/strings/str_split.h"
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namespace absl {
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ABSL_NAMESPACE_BEGIN
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// The implementation was intentionally kept same as util::error::Code_Name()
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// to ease the migration.
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std::string StatusCodeToString(StatusCode code) {
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switch (code) {
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case StatusCode::kOk:
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return "OK";
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case StatusCode::kCancelled:
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return "CANCELLED";
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case StatusCode::kUnknown:
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return "UNKNOWN";
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case StatusCode::kInvalidArgument:
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return "INVALID_ARGUMENT";
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case StatusCode::kDeadlineExceeded:
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return "DEADLINE_EXCEEDED";
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case StatusCode::kNotFound:
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return "NOT_FOUND";
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case StatusCode::kAlreadyExists:
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return "ALREADY_EXISTS";
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case StatusCode::kPermissionDenied:
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return "PERMISSION_DENIED";
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case StatusCode::kUnauthenticated:
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return "UNAUTHENTICATED";
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case StatusCode::kResourceExhausted:
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return "RESOURCE_EXHAUSTED";
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case StatusCode::kFailedPrecondition:
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return "FAILED_PRECONDITION";
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case StatusCode::kAborted:
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return "ABORTED";
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case StatusCode::kOutOfRange:
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return "OUT_OF_RANGE";
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case StatusCode::kUnimplemented:
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return "UNIMPLEMENTED";
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case StatusCode::kInternal:
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return "INTERNAL";
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case StatusCode::kUnavailable:
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return "UNAVAILABLE";
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case StatusCode::kDataLoss:
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return "DATA_LOSS";
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default:
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return "";
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}
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}
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std::ostream& operator<<(std::ostream& os, StatusCode code) {
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return os << StatusCodeToString(code);
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}
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namespace status_internal {
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static int FindPayloadIndexByUrl(const Payloads* payloads,
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absl::string_view type_url) {
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if (payloads == nullptr) return -1;
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for (int i = 0; i < payloads->size(); ++i) {
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if ((*payloads)[i].type_url == type_url) return i;
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}
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return -1;
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}
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// Convert canonical code to a value known to this binary.
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absl::StatusCode MapToLocalCode(int value) {
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absl::StatusCode code = static_cast<absl::StatusCode>(value);
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switch (code) {
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case absl::StatusCode::kOk:
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case absl::StatusCode::kCancelled:
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case absl::StatusCode::kUnknown:
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case absl::StatusCode::kInvalidArgument:
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case absl::StatusCode::kDeadlineExceeded:
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case absl::StatusCode::kNotFound:
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case absl::StatusCode::kAlreadyExists:
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case absl::StatusCode::kPermissionDenied:
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case absl::StatusCode::kResourceExhausted:
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case absl::StatusCode::kFailedPrecondition:
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case absl::StatusCode::kAborted:
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case absl::StatusCode::kOutOfRange:
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case absl::StatusCode::kUnimplemented:
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case absl::StatusCode::kInternal:
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case absl::StatusCode::kUnavailable:
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case absl::StatusCode::kDataLoss:
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case absl::StatusCode::kUnauthenticated:
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return code;
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default:
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return absl::StatusCode::kUnknown;
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}
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}
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} // namespace status_internal
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absl::optional<absl::Cord> Status::GetPayload(
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absl::string_view type_url) const {
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const auto* payloads = GetPayloads();
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int index = status_internal::FindPayloadIndexByUrl(payloads, type_url);
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if (index != -1) return (*payloads)[index].payload;
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return absl::nullopt;
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}
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void Status::SetPayload(absl::string_view type_url, absl::Cord payload) {
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if (ok()) return;
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PrepareToModify();
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status_internal::StatusRep* rep = RepToPointer(rep_);
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if (!rep->payloads) {
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rep->payloads = absl::make_unique<status_internal::Payloads>();
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}
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int index =
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status_internal::FindPayloadIndexByUrl(rep->payloads.get(), type_url);
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if (index != -1) {
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(*rep->payloads)[index].payload = std::move(payload);
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return;
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}
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rep->payloads->push_back({std::string(type_url), std::move(payload)});
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}
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bool Status::ErasePayload(absl::string_view type_url) {
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int index = status_internal::FindPayloadIndexByUrl(GetPayloads(), type_url);
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if (index != -1) {
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PrepareToModify();
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GetPayloads()->erase(GetPayloads()->begin() + index);
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if (GetPayloads()->empty() && message().empty()) {
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// Special case: If this can be represented inlined, it MUST be
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// inlined (EqualsSlow depends on this behavior).
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StatusCode c = static_cast<StatusCode>(raw_code());
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Unref(rep_);
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rep_ = CodeToInlinedRep(c);
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}
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return true;
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}
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return false;
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}
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void Status::ForEachPayload(
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const std::function<void(absl::string_view, const absl::Cord&)>& visitor)
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const {
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if (auto* payloads = GetPayloads()) {
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bool in_reverse =
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payloads->size() > 1 && reinterpret_cast<uintptr_t>(payloads) % 13 > 6;
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for (int index = 0; index < payloads->size(); ++index) {
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const auto& elem =
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(*payloads)[in_reverse ? payloads->size() - 1 - index : index];
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#ifdef NDEBUG
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visitor(elem.type_url, elem.payload);
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#else
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// In debug mode invaldiate the type url to prevent users from relying on
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// this std::string lifetime.
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// NOLINTNEXTLINE intentional extra conversion to force temporary.
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visitor(std::string(elem.type_url), elem.payload);
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#endif // NDEBUG
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}
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}
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}
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const std::string* Status::EmptyString() {
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static std::string* empty_string = new std::string();
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return empty_string;
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}
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constexpr const char Status::kMovedFromString[];
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const std::string* Status::MovedFromString() {
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static std::string* moved_from_string = new std::string(kMovedFromString);
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return moved_from_string;
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}
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void Status::UnrefNonInlined(uintptr_t rep) {
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status_internal::StatusRep* r = RepToPointer(rep);
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// Fast path: if ref==1, there is no need for a RefCountDec (since
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// this is the only reference and therefore no other thread is
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// allowed to be mucking with r).
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if (r->ref.load(std::memory_order_acquire) == 1 ||
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r->ref.fetch_sub(1, std::memory_order_acq_rel) - 1 == 0) {
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delete r;
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}
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}
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uintptr_t Status::NewRep(absl::StatusCode code, absl::string_view msg,
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std::unique_ptr<status_internal::Payloads> payloads) {
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status_internal::StatusRep* rep = new status_internal::StatusRep;
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rep->ref.store(1, std::memory_order_relaxed);
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rep->code = code;
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rep->message.assign(msg.data(), msg.size());
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rep->payloads = std::move(payloads);
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return PointerToRep(rep);
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}
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Status::Status(absl::StatusCode code, absl::string_view msg)
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: rep_(CodeToInlinedRep(code)) {
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if (code != absl::StatusCode::kOk && !msg.empty()) {
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rep_ = NewRep(code, msg, nullptr);
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}
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}
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int Status::raw_code() const {
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if (IsInlined(rep_)) {
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return static_cast<int>(InlinedRepToCode(rep_));
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}
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status_internal::StatusRep* rep = RepToPointer(rep_);
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return static_cast<int>(rep->code);
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}
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absl::StatusCode Status::code() const {
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return status_internal::MapToLocalCode(raw_code());
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}
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void Status::PrepareToModify() {
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ABSL_RAW_CHECK(!ok(), "PrepareToModify shouldn't be called on OK status.");
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if (IsInlined(rep_)) {
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rep_ = NewRep(static_cast<absl::StatusCode>(raw_code()),
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absl::string_view(), nullptr);
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return;
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}
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uintptr_t rep_i = rep_;
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status_internal::StatusRep* rep = RepToPointer(rep_);
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if (rep->ref.load(std::memory_order_acquire) != 1) {
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std::unique_ptr<status_internal::Payloads> payloads;
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if (rep->payloads) {
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payloads = absl::make_unique<status_internal::Payloads>(*rep->payloads);
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}
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rep_ = NewRep(rep->code, message(), std::move(payloads));
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UnrefNonInlined(rep_i);
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}
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}
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bool Status::EqualsSlow(const absl::Status& a, const absl::Status& b) {
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if (IsInlined(a.rep_) != IsInlined(b.rep_)) return false;
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if (a.message() != b.message()) return false;
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if (a.raw_code() != b.raw_code()) return false;
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if (a.GetPayloads() == b.GetPayloads()) return true;
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const status_internal::Payloads no_payloads;
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const status_internal::Payloads* larger_payloads =
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a.GetPayloads() ? a.GetPayloads() : &no_payloads;
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const status_internal::Payloads* smaller_payloads =
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b.GetPayloads() ? b.GetPayloads() : &no_payloads;
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if (larger_payloads->size() < smaller_payloads->size()) {
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std::swap(larger_payloads, smaller_payloads);
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}
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if ((larger_payloads->size() - smaller_payloads->size()) > 1) return false;
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// Payloads can be ordered differently, so we can't just compare payload
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// vectors.
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for (const auto& payload : *larger_payloads) {
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bool found = false;
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for (const auto& other_payload : *smaller_payloads) {
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if (payload.type_url == other_payload.type_url) {
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if (payload.payload != other_payload.payload) {
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return false;
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}
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found = true;
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break;
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}
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}
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if (!found) return false;
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}
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return true;
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}
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std::string Status::ToStringSlow() const {
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std::string text;
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absl::StrAppend(&text, absl::StatusCodeToString(code()), ": ", message());
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status_internal::StatusPayloadPrinter printer =
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status_internal::GetStatusPayloadPrinter();
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this->ForEachPayload([&](absl::string_view type_url,
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const absl::Cord& payload) {
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absl::optional<std::string> result;
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if (printer) result = printer(type_url, payload);
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absl::StrAppend(
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&text, " [", type_url, "='",
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result.has_value() ? *result : absl::CHexEscape(std::string(payload)),
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"']");
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});
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return text;
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}
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std::ostream& operator<<(std::ostream& os, const Status& x) {
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os << x.ToString();
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return os;
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}
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Status AbortedError(absl::string_view message) {
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return Status(absl::StatusCode::kAborted, message);
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}
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Status AlreadyExistsError(absl::string_view message) {
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return Status(absl::StatusCode::kAlreadyExists, message);
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}
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Status CancelledError(absl::string_view message) {
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return Status(absl::StatusCode::kCancelled, message);
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}
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Status DataLossError(absl::string_view message) {
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return Status(absl::StatusCode::kDataLoss, message);
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}
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Status DeadlineExceededError(absl::string_view message) {
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return Status(absl::StatusCode::kDeadlineExceeded, message);
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}
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Status FailedPreconditionError(absl::string_view message) {
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return Status(absl::StatusCode::kFailedPrecondition, message);
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}
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Status InternalError(absl::string_view message) {
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return Status(absl::StatusCode::kInternal, message);
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}
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Status InvalidArgumentError(absl::string_view message) {
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return Status(absl::StatusCode::kInvalidArgument, message);
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}
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Status NotFoundError(absl::string_view message) {
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return Status(absl::StatusCode::kNotFound, message);
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}
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Status OutOfRangeError(absl::string_view message) {
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return Status(absl::StatusCode::kOutOfRange, message);
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}
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Status PermissionDeniedError(absl::string_view message) {
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return Status(absl::StatusCode::kPermissionDenied, message);
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}
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Status ResourceExhaustedError(absl::string_view message) {
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return Status(absl::StatusCode::kResourceExhausted, message);
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}
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Status UnauthenticatedError(absl::string_view message) {
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return Status(absl::StatusCode::kUnauthenticated, message);
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}
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Status UnavailableError(absl::string_view message) {
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return Status(absl::StatusCode::kUnavailable, message);
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}
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Status UnimplementedError(absl::string_view message) {
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return Status(absl::StatusCode::kUnimplemented, message);
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}
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Status UnknownError(absl::string_view message) {
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return Status(absl::StatusCode::kUnknown, message);
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}
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bool IsAborted(const Status& status) {
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return status.code() == absl::StatusCode::kAborted;
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}
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bool IsAlreadyExists(const Status& status) {
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return status.code() == absl::StatusCode::kAlreadyExists;
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}
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bool IsCancelled(const Status& status) {
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return status.code() == absl::StatusCode::kCancelled;
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}
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bool IsDataLoss(const Status& status) {
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return status.code() == absl::StatusCode::kDataLoss;
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}
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bool IsDeadlineExceeded(const Status& status) {
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return status.code() == absl::StatusCode::kDeadlineExceeded;
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}
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bool IsFailedPrecondition(const Status& status) {
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return status.code() == absl::StatusCode::kFailedPrecondition;
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}
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bool IsInternal(const Status& status) {
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return status.code() == absl::StatusCode::kInternal;
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}
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bool IsInvalidArgument(const Status& status) {
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return status.code() == absl::StatusCode::kInvalidArgument;
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}
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bool IsNotFound(const Status& status) {
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return status.code() == absl::StatusCode::kNotFound;
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}
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bool IsOutOfRange(const Status& status) {
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return status.code() == absl::StatusCode::kOutOfRange;
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}
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bool IsPermissionDenied(const Status& status) {
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return status.code() == absl::StatusCode::kPermissionDenied;
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}
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bool IsResourceExhausted(const Status& status) {
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return status.code() == absl::StatusCode::kResourceExhausted;
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}
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bool IsUnauthenticated(const Status& status) {
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return status.code() == absl::StatusCode::kUnauthenticated;
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}
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bool IsUnavailable(const Status& status) {
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return status.code() == absl::StatusCode::kUnavailable;
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}
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bool IsUnimplemented(const Status& status) {
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return status.code() == absl::StatusCode::kUnimplemented;
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}
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bool IsUnknown(const Status& status) {
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return status.code() == absl::StatusCode::kUnknown;
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}
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ABSL_NAMESPACE_END
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} // namespace absl
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