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// Copyright (c) Microsoft. All rights reserved.
// Licensed under the MIT license. See LICENSE file in the project root for full license information.
// This example shows how to quickly load up a kernel trace that prints out
// a notice whenever a binary image (executable or DLL) is loaded.
#include <iostream>
#include "..\..\krabs\krabs.hpp"
#include "examples.h"
void kernel_trace_001::start()
{
// Kernel traces use the kernel_trace class, which looks and acts a lot like the
// user_trace class.
krabs::kernel_trace trace(L"My magic trace");
// Krabs provides a bunch of convenience providers for kernel traces. The set of
// providers that are allowed by kernel traces is hardcoded by Windows ETW, and
// Krabs provides simple objects to represent these. If other providers were
// enabled without krabs being updated, the same thing could be done like so:
// krabs::kernel_provider provider(SOME_ULONG_FLAG_VALUE, SOME_GUID);
krabs::kernel::image_load_provider provider;
// Kernel providers accept all the typical callback mechanisms.
provider.add_on_event_callback([](const EVENT_RECORD &record, const krabs::trace_context &trace_context) {
krabs::schema schema(record, trace_context.schema_locator);
// To filter our events, we want to compare against the
// event opcode. For kernel traces, you can consult this page
// https://msdn.microsoft.com/en-us/library/windows/desktop/aa364083(v=vs.85).aspx
//
// The documentation specific to the image load provider is here:
// https://msdn.microsoft.com/en-us/library/windows/desktop/aa364068(v=vs.85).aspx
if (schema.event_opcode() == 10) {
krabs::parser parser(schema);
std::wstring filename = parser.parse<std::wstring>(L"FileName");
std::wcout << L"Loaded image from file " << filename << std::endl;
}
});
// From here on out, a kernel_trace is indistinguishable from a user_trace in how
// it is used.
trace.enable(provider);
trace.start();
}