cb424d7448
verify-patch-sanity.py validates every active recipe .patch has internally- consistent hunk line counts — catching the 'malformed patch at line N' failure at commit/CI/preflight time instead of hours into a cook. This cycle hit that class three times (qtwaylandscanner, sddm, xwayland), each only discovered when cookbook tried to apply the patch. Running it across the repo found 29 latent malformed patches (validated against GNU patch: e.g. relibc/P3-sysv-ipc reproduces 'malformed patch at line 22'). They were harmless only because they sit in vendored recipes (baked, not re- applied) — but would fail on any version-bump re-derivation. --fix recounts the hunk headers (body untouched) and repaired all 29. Wired into build-preflight.sh (Phase 1.0D) and redbear-ci.yml, with a unit test (test-patch-sanity.sh). Skips archived/legacy trees and unvalidatable formats (empty placeholders, bare-@@ git hunks).
415 lines
14 KiB
C++
415 lines
14 KiB
C++
//===-- JSONUtils.h ---------------------------------------------*- C++ -*-===//
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//
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// Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
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// See https://llvm.org/LICENSE.txt for license information.
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// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
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//
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//===----------------------------------------------------------------------===//
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#ifndef LLDB_TOOLS_LLDB_DAP_JSONUTILS_H
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#define LLDB_TOOLS_LLDB_DAP_JSONUTILS_H
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#include "DAPForward.h"
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#include "Protocol/ProtocolTypes.h"
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#include "lldb/API/SBCompileUnit.h"
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#include "lldb/API/SBFormat.h"
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#include "lldb/API/SBType.h"
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#include "lldb/API/SBValue.h"
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#include "lldb/lldb-types.h"
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#include "llvm/ADT/StringMap.h"
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#include "llvm/ADT/StringRef.h"
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#include "llvm/Support/JSON.h"
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#include <cstdint>
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#include <optional>
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#include <string>
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#include <unordered_map>
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#include <utility>
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#include <vector>
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namespace lldb_dap {
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/// Emplace a StringRef in a json::Object after enusring that the
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/// string is valid UTF8. If not, first call llvm::json::fixUTF8
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/// before emplacing.
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///
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/// \param[in] obj
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/// A JSON object that we will attempt to emplace the value in
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///
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/// \param[in] key
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/// The key to use when emplacing the value
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///
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/// \param[in] str
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/// The string to emplace
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void EmplaceSafeString(llvm::json::Object &obj, llvm::StringRef key,
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llvm::StringRef str);
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/// Extract simple values as a string.
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///
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/// \param[in] value
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/// A JSON value to extract the string from.
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///
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/// \return
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/// A llvm::StringRef that contains the string value, or an empty
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/// string if \a value isn't a string.
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llvm::StringRef GetAsString(const llvm::json::Value &value);
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/// Extract the string value for the specified key from the
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/// specified object.
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///
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/// \param[in] obj
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/// A JSON object that we will attempt to extract the value from
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///
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/// \param[in] key
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/// The key to use when extracting the value
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///
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/// \return
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/// A llvm::StringRef that contains the string value for the
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/// specified \a key, or \a std::nullopt if there is no key that
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/// matches or if the value is not a string.
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std::optional<llvm::StringRef> GetString(const llvm::json::Object &obj,
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llvm::StringRef key);
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std::optional<llvm::StringRef> GetString(const llvm::json::Object *obj,
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llvm::StringRef key);
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/// Extract the integer value for the specified key from the specified object
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/// and return it as the specified integer type T.
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///
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/// \param[in] obj
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/// A JSON object that we will attempt to extract the value from
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///
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/// \param[in] key
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/// The key to use when extracting the value
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///
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/// \return
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/// The integer value for the specified \a key, or std::nullopt if there is
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/// no key that matches or if the value is not an integer.
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/// @{
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template <typename T>
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std::optional<T> GetInteger(const llvm::json::Object &obj,
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llvm::StringRef key) {
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return obj.getInteger(key);
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}
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template <typename T>
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std::optional<T> GetInteger(const llvm::json::Object *obj,
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llvm::StringRef key) {
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if (obj != nullptr)
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return GetInteger<T>(*obj, key);
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return std::nullopt;
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}
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/// @}
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/// Extract the boolean value for the specified key from the
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/// specified object.
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///
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/// \param[in] obj
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/// A JSON object that we will attempt to extract the value from
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///
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/// \param[in] key
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/// The key to use when extracting the value
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///
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/// \return
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/// The boolean value for the specified \a key, or std::nullopt
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/// if there is no key that matches or if the value is not a
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/// boolean value of an integer.
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/// @{
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std::optional<bool> GetBoolean(const llvm::json::Object &obj,
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llvm::StringRef key);
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std::optional<bool> GetBoolean(const llvm::json::Object *obj,
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llvm::StringRef key);
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/// @}
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/// Check if the specified key exists in the specified object.
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///
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/// \param[in] obj
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/// A JSON object that we will attempt to extract the value from
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///
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/// \param[in] key
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/// The key to check for
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///
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/// \return
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/// \b True if the key exists in the \a obj, \b False otherwise.
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bool ObjectContainsKey(const llvm::json::Object &obj, llvm::StringRef key);
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/// Encodes a memory reference
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std::string EncodeMemoryReference(lldb::addr_t addr);
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/// Decodes a memory reference
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std::optional<lldb::addr_t>
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DecodeMemoryReference(llvm::StringRef memoryReference);
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/// Decodes a memory reference from the given json value.
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///
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/// \param[in] v
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/// A JSON value that we expected to contain the memory reference.
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///
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/// \param[in] key
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/// The key of the memory reference.
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///
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/// \param[out] out
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/// The memory address, if successfully decoded.
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///
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/// \param[in] path
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/// The path for reporting errors.
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///
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/// \param[in] required
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/// Indicates if the key is required to be present, otherwise report an error
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/// if the key is missing.
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///
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/// \return
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/// Returns \b true if the address was decoded successfully.
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bool DecodeMemoryReference(const llvm::json::Value &v, llvm::StringLiteral key,
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lldb::addr_t &out, llvm::json::Path path,
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bool required);
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/// Extract an array of strings for the specified key from an object.
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///
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/// String values in the array will be extracted without any quotes
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/// around them. Numbers and Booleans will be converted into
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/// strings. Any NULL, array or objects values in the array will be
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/// ignored.
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///
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/// \param[in] obj
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/// A JSON object that we will attempt to extract the array from
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///
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/// \param[in] key
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/// The key to use when extracting the value
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///
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/// \return
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/// An array of string values for the specified \a key, or
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/// \a fail_value if there is no key that matches or if the
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/// value is not an array or all items in the array are not
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/// strings, numbers or booleans.
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std::vector<std::string> GetStrings(const llvm::json::Object *obj,
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llvm::StringRef key);
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/// Extract an object of key value strings for the specified key from an object.
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///
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/// String values in the object will be extracted without any quotes
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/// around them. Numbers and Booleans will be converted into
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/// strings. Any NULL, array or objects values in the array will be
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/// ignored.
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///
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/// \param[in] obj
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/// A JSON object that we will attempt to extract the array from
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///
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/// \param[in] key
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/// The key to use when extracting the value
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///
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/// \return
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/// An object of key value strings for the specified \a key, or
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/// \a fail_value if there is no key that matches or if the
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/// value is not an object or key and values in the object are not
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/// strings, numbers or booleans.
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std::unordered_map<std::string, std::string>
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GetStringMap(const llvm::json::Object &obj, llvm::StringRef key);
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/// Fill a response object given the request object.
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///
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/// The \a response object will get its "type" set to "response",
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/// the "seq" set to zero, "response_seq" set to the "seq" value from
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/// \a request, "command" set to the "command" from \a request,
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/// and "success" set to true.
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///
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/// \param[in] request
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/// The request object received from a call to DAP::ReadJSON().
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///
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/// \param[in,out] response
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/// An empty llvm::json::Object object that will be filled
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/// in as noted in description.
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void FillResponse(const llvm::json::Object &request,
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llvm::json::Object &response);
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/// Create a "Event" JSON object using \a event_name as the event name
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///
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/// \param[in] event_name
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/// The string value to use for the "event" key in the JSON object.
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///
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/// \return
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/// A "Event" JSON object with that follows the formal JSON
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/// definition outlined by Microsoft.
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llvm::json::Object CreateEventObject(const llvm::StringRef event_name);
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/// Create a "StackFrame" object for a LLDB frame object.
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///
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/// This function will fill in the following keys in the returned
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/// object:
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/// "id" - the stack frame ID as an integer
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/// "name" - the function name as a string
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/// "source" - source file information as a "Source" DAP object
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/// "line" - the source file line number as an integer
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/// "column" - the source file column number as an integer
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///
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/// \param[in] dap
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/// The DAP session associated with the stopped thread.
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///
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/// \param[in] frame
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/// The LLDB stack frame to use when populating out the "StackFrame"
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/// object.
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///
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/// \param[in] format
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/// The LLDB format to use when populating out the "StackFrame"
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/// object.
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///
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/// \return
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/// A "StackFrame" JSON object with that follows the formal JSON
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/// definition outlined by Microsoft.
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llvm::json::Value CreateStackFrame(DAP &dap, lldb::SBFrame &frame,
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lldb::SBFormat &format);
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/// Create a "StackFrame" label object for a LLDB thread.
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///
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/// This function will fill in the following keys in the returned
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/// object:
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/// "id" - the thread ID as an integer
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/// "name" - the thread name as a string which combines the LLDB
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/// thread index ID along with the string name of the thread
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/// from the OS if it has a name.
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/// "presentationHint" - "label"
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///
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/// \param[in] thread
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/// The LLDB thread to use when populating out the "Thread"
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/// object.
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///
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/// \param[in] format
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/// The configured formatter for the DAP session.
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///
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/// \return
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/// A "StackFrame" JSON object with that follows the formal JSON
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/// definition outlined by Microsoft.
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llvm::json::Value CreateExtendedStackFrameLabel(lldb::SBThread &thread,
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lldb::SBFormat &format);
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/// Create a "StoppedEvent" object for a LLDB thread object.
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///
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/// This function will fill in the following keys in the returned
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/// object's "body" object:
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/// "reason" - With a valid stop reason enumeration string value
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/// that Microsoft specifies
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/// "threadId" - The thread ID as an integer
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/// "description" - a stop description (like "breakpoint 12.3") as a
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/// string
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/// "preserveFocusHint" - a boolean value that states if this thread
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/// should keep the focus in the GUI.
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/// "allThreadsStopped" - set to True to indicate that all threads
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/// stop when any thread stops.
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///
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/// \param[in] dap
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/// The DAP session associated with the stopped thread.
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///
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/// \param[in] thread
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/// The LLDB thread to use when populating out the "StoppedEvent"
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/// object.
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///
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/// \param[in] stop_id
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/// The stop id for this event.
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///
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/// \return
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/// A "StoppedEvent" JSON object with that follows the formal JSON
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/// definition outlined by Microsoft.
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llvm::json::Value CreateThreadStopped(DAP &dap, lldb::SBThread &thread,
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uint32_t stop_id);
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/// \return
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/// The variable name of \a value or a default placeholder.
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const char *GetNonNullVariableName(lldb::SBValue &value);
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/// VSCode can't display two variables with the same name, so we need to
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/// distinguish them by using a suffix.
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///
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/// If the source and line information is present, we use it as the suffix.
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/// Otherwise, we fallback to the variable address or register location.
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std::string CreateUniqueVariableNameForDisplay(lldb::SBValue &v,
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bool is_name_duplicated);
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/// Helper struct that parses the metadata of an \a lldb::SBValue and produces
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/// a canonical set of properties that can be sent to DAP clients.
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struct VariableDescription {
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// The error message if SBValue.GetValue() fails.
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std::optional<std::string> error;
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// The display description to show on the IDE.
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std::string display_value;
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// The display name to show on the IDE.
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std::string name;
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// The variable path for this variable.
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std::string evaluate_name;
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// The output of SBValue.GetValue() if it doesn't fail. It might be empty.
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std::string value;
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// The summary string of this variable. It might be empty.
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std::string summary;
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// The auto summary if using `enableAutoVariableSummaries`.
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std::optional<std::string> auto_summary;
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// The type of this variable.
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lldb::SBType type_obj;
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// The display type name of this variable.
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std::string display_type_name;
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/// The SBValue for this variable.
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lldb::SBValue v;
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VariableDescription(lldb::SBValue v, bool auto_variable_summaries,
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bool format_hex = false, bool is_name_duplicated = false,
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std::optional<std::string> custom_name = {});
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/// Returns a description of the value appropriate for the specified context.
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std::string GetResult(llvm::StringRef context);
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};
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/// Does the given variable have an associated value location?
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bool ValuePointsToCode(lldb::SBValue v);
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/// Pack a location into a single integer which we can send via
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/// the debug adapter protocol.
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int64_t PackLocation(int64_t var_ref, bool is_value_location);
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/// Reverse of `PackLocation`
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std::pair<int64_t, bool> UnpackLocation(int64_t location_id);
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llvm::json::Value CreateCompileUnit(lldb::SBCompileUnit &unit);
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/// Create a runInTerminal reverse request object
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///
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/// \param[in] program
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/// Path to the program to run in the terminal.
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///
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/// \param[in] args
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/// The arguments for the program.
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///
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/// \param[in] env
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/// The environment variables to set in the terminal.
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///
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/// \param[in] cwd
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/// The working directory for the run in terminal request.
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///
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/// \param[in] comm_file
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/// The fifo file used to communicate the with the target launcher.
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///
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/// \param[in] debugger_pid
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/// The PID of the lldb-dap instance that will attach to the target. The
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/// launcher uses it on Linux tell the kernel that it should allow the
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/// debugger process to attach.
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///
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/// \param[in] external
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/// If set to true, the program will run in an external terminal window
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/// instead of IDE's integrated terminal.
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///
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/// \return
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/// A "runInTerminal" JSON object that follows the specification outlined by
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/// Microsoft.
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llvm::json::Object CreateRunInTerminalReverseRequest(
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llvm::StringRef program, const std::vector<std::string> &args,
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const llvm::StringMap<std::string> &env, llvm::StringRef cwd,
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llvm::StringRef comm_file, lldb::pid_t debugger_pid, bool external);
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/// Create a "Terminated" JSON object that contains statistics
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///
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/// \return
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/// A body JSON object with debug info and breakpoint info
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llvm::json::Object CreateTerminatedEventObject(lldb::SBTarget &target);
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/// Convert a given JSON object to a string.
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std::string JSONToString(const llvm::json::Value &json);
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} // namespace lldb_dap
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#endif
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