llvm-project/lldb/source/Expression/ExpressionParser.cpp
Adrian Prantl 84fdfb9ca6
[lldb] Store expression evaluator diagnostics in an llvm::Error (NFC) (#106442)
…NFC]

This patch is the first patch in a series reworking of Pete Lawrence's
(@PortalPete) amazing proposal for better expression evaluator error
messages (https://github.com/llvm/llvm-project/pull/80938)

This patch is preparatory patch for improving the rendering of
expression evaluator diagnostics. Currently diagnostics are rendered
into a string and the command interpreter layer then textually parses
words like "error:" to (sometimes) color the output accordingly. In
order to enable user interfaces to do better with diagnostics, we need
to store them in a machine-readable fromat. This patch does this by
adding a new llvm::Error kind wrapping a DiagnosticDetail struct that
is used when the error type is eErrorTypeExpression. Multiple
diagnostics are modeled using llvm::ErrorList.

Right now the extra information is not used by the CommandInterpreter,
this will be added in a follow-up patch!
2024-09-27 16:09:52 -07:00

74 lines
2.5 KiB
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//===-- ExpressionParser.cpp ----------------------------------------------===//
//
// Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
// See https://llvm.org/LICENSE.txt for license information.
// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
//
//===----------------------------------------------------------------------===//
#include "lldb/Expression/ExpressionParser.h"
#include "lldb/Expression/DiagnosticManager.h"
#include "lldb/Expression/IRExecutionUnit.h"
#include "lldb/Target/ExecutionContext.h"
#include "lldb/Target/ThreadPlanCallFunction.h"
using namespace lldb;
using namespace lldb_private;
Status ExpressionParser::PrepareForExecution(
addr_t &func_addr, addr_t &func_end,
std::shared_ptr<IRExecutionUnit> &execution_unit_sp,
ExecutionContext &exe_ctx, bool &can_interpret,
ExecutionPolicy execution_policy) {
Status status =
DoPrepareForExecution(func_addr, func_end, execution_unit_sp, exe_ctx,
can_interpret, execution_policy);
if (status.Success() && exe_ctx.GetProcessPtr() && exe_ctx.HasThreadScope())
status = RunStaticInitializers(execution_unit_sp, exe_ctx);
return status;
}
Status
ExpressionParser::RunStaticInitializers(IRExecutionUnitSP &execution_unit_sp,
ExecutionContext &exe_ctx) {
Status err;
if (!execution_unit_sp.get()) {
err = Status::FromErrorString(
"can't run static initializers for a NULL execution unit");
return err;
}
if (!exe_ctx.HasThreadScope()) {
err = Status::FromErrorString(
"can't run static initializers without a thread");
return err;
}
std::vector<addr_t> static_initializers;
execution_unit_sp->GetStaticInitializers(static_initializers);
for (addr_t static_initializer : static_initializers) {
EvaluateExpressionOptions options;
ThreadPlanSP call_static_initializer(new ThreadPlanCallFunction(
exe_ctx.GetThreadRef(), Address(static_initializer), CompilerType(),
llvm::ArrayRef<addr_t>(), options));
DiagnosticManager execution_errors;
ExpressionResults results =
exe_ctx.GetThreadRef().GetProcess()->RunThreadPlan(
exe_ctx, call_static_initializer, options, execution_errors);
if (results != eExpressionCompleted) {
err = Status::FromError(execution_errors.GetAsError(
lldb::eExpressionSetupError, "couldn't run static initializer:"));
return err;
}
}
return err;
}