blob: b72af93acf5b045eb37011eba7f38956a5dcf678 [file] [log] [blame]
// Copyright 2018 The Chromium OS Authors. All rights reserved.
// Use of this source code is governed by a BSD-style license that can be
// found in the LICENSE file.
#include "runtime_probe/probe_function.h"
#include <memory>
#include <utility>
#include <base/check.h>
#include <base/json/json_reader.h>
#include <base/json/json_writer.h>
#include <base/logging.h>
#include "runtime_probe/system/context_instance.h"
namespace runtime_probe {
using DataType = typename ProbeFunction::DataType;
ProbeFunction::ProbeFunction(base::Value&& raw_value) {}
std::unique_ptr<ProbeFunction> ProbeFunction::FromValue(const base::Value& dv) {
if (!dv.is_dict()) {
LOG(ERROR) << "ProbeFunction::FromValue takes a dictionary as parameter";
return nullptr;
}
if (dv.DictSize() == 0) {
LOG(ERROR) << "No function name found in the ProbeFunction dictionary";
return nullptr;
}
if (dv.DictSize() > 1) {
LOG(ERROR) << "More than 1 function names specified in the ProbeFunction"
" dictionary";
return nullptr;
}
const auto& it = dv.DictItems().begin();
// function_name is the only key exists in the dictionary */
const auto& function_name = it->first;
const auto& kwargs = it->second;
if (registered_functions_.find(function_name) ==
registered_functions_.end()) {
// TODO(stimim): Should report an error.
LOG(ERROR) << "Function \"" << function_name << "\" not found";
return nullptr;
}
if (!kwargs.is_dict()) {
// TODO(stimim): implement syntax sugar.
LOG(ERROR) << "Function argument should be a dictionary";
return nullptr;
}
return static_cast<std::unique_ptr<ProbeFunction>>(
registered_functions_[function_name](kwargs));
}
PrivilegedProbeFunction::PrivilegedProbeFunction(base::Value&& raw_value)
: raw_value_(std::move(raw_value)) {}
bool PrivilegedProbeFunction::InvokeHelper(std::string* result) const {
std::string probe_statement_str;
base::JSONWriter::Write(raw_value_, &probe_statement_str);
return ContextInstance::Get()->helper_invoker()->Invoke(
/*probe_function=*/this, probe_statement_str, result);
}
base::Optional<base::Value> PrivilegedProbeFunction::InvokeHelperToJSON()
const {
std::string raw_output;
if (!InvokeHelper(&raw_output)) {
return base::nullopt;
}
VLOG(3) << "InvokeHelper raw output:\n" << raw_output;
return base::JSONReader::Read(raw_output);
}
int ProbeFunction::EvalInHelper(std::string* output) const {
base::Value result = static_cast<base::Value>(EvalImpl());
if (base::JSONWriter::Write(result, output))
return 0;
LOG(ERROR) << "Failed to serialize probed result to json string";
return -1;
}
PrivilegedProbeFunction::DataType PrivilegedProbeFunction::Eval() const {
auto json_output = InvokeHelperToJSON();
if (!json_output) {
LOG(ERROR) << "Failed to invoke helper.";
return {};
}
if (!json_output->is_list()) {
LOG(ERROR) << "Failed to parse json output as list.";
return {};
}
auto result = json_output->TakeList();
PostHelperEvalImpl(&result);
return result;
}
} // namespace runtime_probe