Files
imhex/plugins/libimhex/source/pattern_language/pattern_language.cpp
WerWolv c051f5d3e7 patterns: Rewrite evaluation engine (#306)
* patterns: Rewrite most of the evaluator to mainly use polymorphism instead of just RTTI

* patterns: Fixed a couple of AST memory leaks

* patterns: Parse string operations correctly

* patterns: Various fixes and cleanup

* patterns: Implement primitive function definitions

Function parameters now need to provide their type in the definition

* patterns: Added function variable definition and assignment

* patterns: Added remaining function statements

* patterns: Added unsized and while-sized arrays

* patterns: Added multi variable declarations to functions

* patterns: Added std::format built-in function

* patterns: Allow passing custom types to functions

* patterns: Added attributes and new "format" attribute

* patterns: Use libfmt for std::print instead of custom version

* patterns: Remove unnecessary string compare function

* pattern: Fix preprocessor directives

* patterns: Fix unit tests

* patterns: Added cast expression

* patterns: Handle endianess in function parameters

* patterns: Added casting to different endian

* patterns: Added 'str' type for functions
2021-09-21 21:29:18 +02:00

124 lines
3.9 KiB
C++

#include <hex/pattern_language/pattern_language.hpp>
#include <hex/helpers/file.hpp>
#include <hex/providers/provider.hpp>
#include <hex/helpers/logger.hpp>
#include <hex/pattern_language/preprocessor.hpp>
#include <hex/pattern_language/lexer.hpp>
#include <hex/pattern_language/parser.hpp>
#include <hex/pattern_language/validator.hpp>
#include <hex/pattern_language/evaluator.hpp>
#include <unistd.h>
namespace hex::pl {
class PatternData;
PatternLanguage::PatternLanguage() {
this->m_preprocessor = new Preprocessor();
this->m_lexer = new Lexer();
this->m_parser = new Parser();
this->m_validator = new Validator();
this->m_evaluator = new Evaluator();
this->m_preprocessor->addPragmaHandler("endian", [this](std::string value) {
if (value == "big") {
this->m_defaultEndian = std::endian::big;
return true;
} else if (value == "little") {
this->m_defaultEndian = std::endian::little;
return true;
} else if (value == "native") {
this->m_defaultEndian = std::endian::native;
return true;
} else
return false;
});
this->m_preprocessor->addPragmaHandler("eval_depth", [this](std::string value) {
auto limit = strtol(value.c_str(), nullptr, 0);
if (limit <= 0)
return false;
this->m_recursionLimit = limit;
return true;
});
this->m_preprocessor->addPragmaHandler("base_address", [](std::string value) {
auto baseAddress = strtoull(value.c_str(), nullptr, 0);
ImHexApi::Provider::get()->setBaseAddress(baseAddress);
return true;
});
this->m_preprocessor->addDefaultPragmaHandlers();
}
PatternLanguage::~PatternLanguage() {
delete this->m_preprocessor;
delete this->m_lexer;
delete this->m_parser;
delete this->m_validator;
}
std::optional<std::vector<PatternData*>> PatternLanguage::executeString(prv::Provider *provider, const std::string &string) {
this->m_currError.reset();
this->m_evaluator->getConsole().clear();
this->m_evaluator->setProvider(provider);
for (auto &node : this->m_currAST)
delete node;
this->m_currAST.clear();
auto preprocessedCode = this->m_preprocessor->preprocess(string);
if (!preprocessedCode.has_value()) {
this->m_currError = this->m_preprocessor->getError();
return { };
}
this->m_evaluator->setDefaultEndian(this->m_defaultEndian);
// this->m_evaluator->setRecursionLimit(this->m_recursionLimit);
auto tokens = this->m_lexer->lex(preprocessedCode.value());
if (!tokens.has_value()) {
this->m_currError = this->m_lexer->getError();
return { };
}
auto ast = this->m_parser->parse(tokens.value());
if (!ast.has_value()) {
this->m_currError = this->m_parser->getError();
return { };
}
this->m_currAST = ast.value();
auto patterns = this->m_evaluator->evaluate(ast.value());
if (!patterns.has_value()) {
this->m_currError = this->m_evaluator->getConsole().getLastHardError();
return { };
}
return patterns;
}
std::optional<std::vector<PatternData*>> PatternLanguage::executeFile(prv::Provider *provider, const std::string &path) {
File file(path, File::Mode::Read);
return this->executeString(provider, file.readString());
}
const std::vector<std::pair<LogConsole::Level, std::string>>& PatternLanguage::getConsoleLog() {
return this->m_evaluator->getConsole().getLog();
}
const std::optional<std::pair<u32, std::string>>& PatternLanguage::getError() {
return this->m_currError;
}
}