149 lines
5.4 KiB
C++
149 lines
5.4 KiB
C++
//===-- EvaluateRequestHandler.cpp ----------------------------------------===//
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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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#include "DAP.h"
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#include "DAPError.h"
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#include "EventHelper.h"
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#include "JSONUtils.h"
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#include "LLDBUtils.h"
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#include "Protocol/ProtocolRequests.h"
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#include "Protocol/ProtocolTypes.h"
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#include "RequestHandler.h"
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#include "lldb/lldb-enumerations.h"
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#include "llvm/ADT/StringRef.h"
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#include "llvm/Support/Error.h"
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using namespace llvm;
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using namespace lldb_dap;
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using namespace lldb_dap::protocol;
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namespace lldb_dap {
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static bool RunExpressionAsLLDBCommand(DAP &dap, lldb::SBFrame &frame,
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std::string &expression,
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EvaluateContext context) {
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if (context != eEvaluateContextRepl && context != eEvaluateContextUnknown)
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return false;
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// Since we don't know this context do not try to repeat the last command;
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if (context == eEvaluateContextUnknown && expression.empty())
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return false;
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const bool repeat_last_command =
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expression.empty() && dap.last_valid_variable_expression.empty();
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if (repeat_last_command)
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return true;
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const ReplMode repl_mode = dap.DetectReplMode(frame, expression, false);
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return repl_mode == ReplMode::Command;
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}
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static lldb::SBValue EvaluateVariableExpression(lldb::SBTarget &target,
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lldb::SBFrame &frame,
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const std::string &expression,
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bool run_as_expression) {
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const char *expression_cstr = expression.c_str();
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lldb::SBValue value;
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if (frame) {
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// Check if it is a variable or an expression path for a variable. i.e.
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// 'foo->bar' finds the 'bar' variable. It is more reliable than the
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// expression parser in many cases and it is faster.
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value = frame.GetValueForVariablePath(expression_cstr,
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lldb::eDynamicDontRunTarget);
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if (value || !run_as_expression)
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return value;
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return frame.EvaluateExpression(expression_cstr);
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}
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if (run_as_expression)
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value = target.EvaluateExpression(expression_cstr);
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return value;
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}
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/// Evaluates the given expression in the context of a stack frame.
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///
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/// The expression has access to any variables and arguments that are in scope.
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Expected<EvaluateResponseBody>
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EvaluateRequestHandler::Run(const EvaluateArguments &arguments) const {
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EvaluateResponseBody body;
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lldb::SBFrame frame = dap.GetLLDBFrame(arguments.frameId);
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std::string expression = llvm::StringRef(arguments.expression).trim().str();
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const EvaluateContext evaluate_context = arguments.context;
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const bool is_repl_context = evaluate_context == eEvaluateContextRepl;
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if (RunExpressionAsLLDBCommand(dap, frame, expression, evaluate_context)) {
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// Since the current expression is not for a variable, clear the
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// last_valid_variable_expression field.
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dap.last_valid_variable_expression.clear();
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// If we're evaluating a command relative to the current frame, set the
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// focus_tid to the current frame for any thread related events.
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if (frame.IsValid()) {
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dap.focus_tid = frame.GetThread().GetThreadID();
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}
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bool required_command_failed = false;
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body.result = RunLLDBCommands(
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dap.debugger, llvm::StringRef(), {expression}, required_command_failed,
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/*parse_command_directives=*/false, /*echo_commands=*/false);
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return body;
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}
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if (dap.ProcessIsNotStopped())
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return llvm::make_error<DAPError>(
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"Cannot evaluate expressions while the process is running. Pause "
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"the process and try again.",
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/**error_code=*/llvm::inconvertibleErrorCode(),
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/**show_user=*/false);
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// If the user expression is empty, evaluate the last valid variable
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// expression.
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if (expression.empty() && is_repl_context)
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expression = dap.last_valid_variable_expression;
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const bool run_as_expression = evaluate_context != eEvaluateContextHover;
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lldb::SBValue value = EvaluateVariableExpression(
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dap.target, frame, expression, run_as_expression);
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if (value.GetError().Fail())
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return ToError(value.GetError(), /*show_user=*/false);
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if (is_repl_context) {
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// save the new variable expression
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dap.last_valid_variable_expression = std::move(expression);
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// Freeze dry the value in case users expand it later in the debug console
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value = value.Persist();
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}
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const bool hex = arguments.format ? arguments.format->hex : false;
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VariableDescription desc(value, dap.configuration.enableAutoVariableSummaries,
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hex);
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body.result = desc.GetResult(evaluate_context);
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body.type = desc.display_type_name;
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if (value.MightHaveChildren() || ValuePointsToCode(value))
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body.variablesReference =
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dap.variables.InsertVariable(value, /*is_permanent=*/is_repl_context);
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if (lldb::addr_t addr = value.GetLoadAddress(); addr != LLDB_INVALID_ADDRESS)
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body.memoryReference = EncodeMemoryReference(addr);
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if (ValuePointsToCode(value) &&
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body.variablesReference != LLDB_DAP_INVALID_VAR_REF)
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body.valueLocationReference = PackLocation(body.variablesReference, true);
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return body;
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}
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} // namespace lldb_dap
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