This is the second step towards being able to run dynamically linked applications when the guest ISA != than host ISA. Once the guest interpreter is loaded to memory, we are able to redirect shared object loads through the redirectPath interface. How do we load the guest interpreter? The elf file is for example asking for the /lib/ld-linux-aarch64.so interpreter. That would point to a valid dynamic linker/loader if guest ISA == host ISA, but if we are running on X86 we should point to the guest (aarch64 in the example) toolchain wherever it is installed. This patch is adding the --interp-dir option to point to the parent folder of the guest /lib in the host fs. Change-Id: Id27b97c060008d2e847776a49323d45c8809a27f Signed-off-by: Giacomo Travaglini <giacomo.travaglini@arm.com> Reviewed-on: https://gem5-review.googlesource.com/c/public/gem5/+/23066 Reviewed-by: Jason Lowe-Power <jason@lowepower.com> Maintainer: Jason Lowe-Power <jason@lowepower.com> Tested-by: kokoro <noreply+kokoro@google.com>
296 lines
9.4 KiB
C++
296 lines
9.4 KiB
C++
/*
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* Copyright (c) 2017, 2019 ARM Limited
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* All rights reserved
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*
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* The license below extends only to copyright in the software and shall
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* not be construed as granting a license to any other intellectual
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* property including but not limited to intellectual property relating
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* to a hardware implementation of the functionality of the software
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* licensed hereunder. You may use the software subject to the license
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* terms below provided that you ensure that this notice is replicated
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* unmodified and in its entirety in all distributions of the software,
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* modified or unmodified, in source code or in binary form.
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*
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* Copyright (c) 2010 Advanced Micro Devices, Inc.
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* Copyright (c) 2006 The Regents of The University of Michigan
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* All rights reserved.
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*
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* Redistribution and use in source and binary forms, with or without
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* modification, are permitted provided that the following conditions are
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* met: redistributions of source code must retain the above copyright
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* notice, this list of conditions and the following disclaimer;
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* redistributions in binary form must reproduce the above copyright
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* notice, this list of conditions and the following disclaimer in the
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* documentation and/or other materials provided with the distribution;
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* neither the name of the copyright holders nor the names of its
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* contributors may be used to endorse or promote products derived from
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* this software without specific prior written permission.
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*
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* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
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* "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
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* LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
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* A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
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* OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
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* SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
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* LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
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* DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
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* THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
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* (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
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* OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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*
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* Authors: Nathan Binkert
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* Steve Reinhardt
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* Gabe Black
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* Andreas Sandberg
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*/
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#include "pybind11/pybind11.h"
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#include "pybind11/stl.h"
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#include "python/pybind11/core.hh"
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#include <ctime>
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#include "base/addr_range.hh"
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#include "base/inet.hh"
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#include "base/loader/elf_object.hh"
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#include "base/logging.hh"
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#include "base/random.hh"
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#include "base/socket.hh"
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#include "base/types.hh"
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#include "sim/core.hh"
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#include "sim/drain.hh"
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#include "sim/serialize.hh"
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#include "sim/sim_object.hh"
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namespace py = pybind11;
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/** Resolve a SimObject name using the Pybind configuration */
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class PybindSimObjectResolver : public SimObjectResolver
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{
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SimObject *resolveSimObject(const std::string &name);
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};
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PybindSimObjectResolver pybindSimObjectResolver;
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SimObject *
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PybindSimObjectResolver::resolveSimObject(const std::string &name)
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{
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// TODO
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py::module m = py::module::import("m5.SimObject");
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auto f = m.attr("resolveSimObject");
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return f(name).cast<SimObject *>();
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}
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extern const char *compileDate;
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#ifdef DEBUG
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const bool flag_DEBUG = true;
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#else
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const bool flag_DEBUG = false;
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#endif
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#ifdef NDEBUG
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const bool flag_NDEBUG = true;
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#else
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const bool flag_NDEBUG = false;
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#endif
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const bool flag_TRACING_ON = TRACING_ON;
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static void
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init_drain(py::module &m_native)
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{
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py::module m = m_native.def_submodule("drain");
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py::enum_<DrainState>(m, "DrainState")
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.value("Running", DrainState::Running)
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.value("Draining", DrainState::Draining)
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.value("Drained", DrainState::Drained)
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;
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py::class_<Drainable, std::unique_ptr<Drainable, py::nodelete>>(
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m, "Drainable")
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.def("drainState", &Drainable::drainState)
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.def("notifyFork", &Drainable::notifyFork)
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;
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// The drain manager is a singleton with a private
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// destructor. Disable deallocation from the Python binding.
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py::class_<DrainManager, std::unique_ptr<DrainManager, py::nodelete>>(
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m, "DrainManager")
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.def("tryDrain", &DrainManager::tryDrain)
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.def("resume", &DrainManager::resume)
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.def("preCheckpointRestore", &DrainManager::preCheckpointRestore)
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.def("isDrained", &DrainManager::isDrained)
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.def("state", &DrainManager::state)
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.def("signalDrainDone", &DrainManager::signalDrainDone)
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.def_static("instance", &DrainManager::instance,
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py::return_value_policy::reference)
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;
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}
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static void
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init_serialize(py::module &m_native)
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{
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py::module m = m_native.def_submodule("serialize");
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py::class_<Serializable, std::unique_ptr<Serializable, py::nodelete>>(
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m, "Serializable")
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;
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py::class_<CheckpointIn>(m, "CheckpointIn")
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;
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}
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static void
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init_range(py::module &m_native)
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{
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py::module m = m_native.def_submodule("range");
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py::class_<AddrRange>(m, "AddrRange")
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.def(py::init<>())
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.def(py::init<Addr &, Addr &>())
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.def(py::init<Addr, Addr, const std::vector<Addr> &, uint8_t>())
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.def(py::init<const std::vector<AddrRange> &>())
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.def(py::init<Addr, Addr, uint8_t, uint8_t, uint8_t, uint8_t>())
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.def("__str__", &AddrRange::to_string)
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.def("interleaved", &AddrRange::interleaved)
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.def("granularity", &AddrRange::granularity)
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.def("stripes", &AddrRange::stripes)
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.def("size", &AddrRange::size)
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.def("valid", &AddrRange::valid)
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.def("start", &AddrRange::start)
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.def("end", &AddrRange::end)
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.def("mergesWith", &AddrRange::mergesWith)
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.def("intersects", &AddrRange::intersects)
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.def("isSubset", &AddrRange::isSubset)
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;
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// We need to make vectors of AddrRange opaque to avoid weird
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// memory allocation issues in PyBind's STL wrappers.
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py::bind_vector<std::vector<AddrRange>>(m, "AddrRangeVector");
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m.def("RangeEx", &RangeEx);
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m.def("RangeIn", &RangeIn);
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m.def("RangeSize", &RangeSize);
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}
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static void
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init_net(py::module &m_native)
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{
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py::module m = m_native.def_submodule("net");
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py::class_<Net::EthAddr>(m, "EthAddr")
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.def(py::init<>())
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.def(py::init<const std::string &>())
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;
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py::class_<Net::IpAddress>(m, "IpAddress")
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.def(py::init<>())
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.def(py::init<uint32_t>())
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;
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py::class_<Net::IpNetmask, Net::IpAddress>(m, "IpNetmask")
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.def(py::init<>())
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.def(py::init<uint32_t, uint8_t>())
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;
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py::class_<Net::IpWithPort, Net::IpAddress>(m, "IpWithPort")
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.def(py::init<>())
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.def(py::init<uint32_t, uint16_t>())
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;
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}
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static void
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init_loader(py::module &m_native)
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{
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py::module m = m_native.def_submodule("loader");
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m.def("setInterpDir", &setInterpDir);
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}
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void
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pybind_init_core(py::module &m_native)
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{
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py::module m_core = m_native.def_submodule("core");
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py::class_<Cycles>(m_core, "Cycles")
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.def(py::init<>())
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.def(py::init<uint64_t>())
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.def("__int__", &Cycles::operator uint64_t)
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.def("__add__", &Cycles::operator+)
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.def("__sub__", &Cycles::operator-)
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;
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py::class_<tm>(m_core, "tm")
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.def_static("gmtime", [](std::time_t t) { return *std::gmtime(&t); })
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.def_readwrite("tm_sec", &tm::tm_sec)
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.def_readwrite("tm_min", &tm::tm_min)
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.def_readwrite("tm_hour", &tm::tm_hour)
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.def_readwrite("tm_mday", &tm::tm_mday)
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.def_readwrite("tm_mon", &tm::tm_mon)
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.def_readwrite("tm_wday", &tm::tm_wday)
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.def_readwrite("tm_yday", &tm::tm_yday)
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.def_readwrite("tm_isdst", &tm::tm_isdst)
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;
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py::enum_<Logger::LogLevel>(m_core, "LogLevel")
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.value("PANIC", Logger::PANIC)
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.value("FATAL", Logger::FATAL)
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.value("WARN", Logger::WARN)
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.value("INFO", Logger::INFO)
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.value("HACK", Logger::HACK)
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;
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m_core
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.def("setLogLevel", &Logger::setLevel)
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.def("setOutputDir", &setOutputDir)
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.def("doExitCleanup", &doExitCleanup)
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.def("disableAllListeners", &ListenSocket::disableAll)
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.def("listenersDisabled", &ListenSocket::allDisabled)
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.def("listenersLoopbackOnly", &ListenSocket::loopbackOnly)
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.def("seedRandom", [](uint64_t seed) { random_mt.init(seed); })
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.def("fixClockFrequency", &fixClockFrequency)
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.def("clockFrequencyFixed", &clockFrequencyFixed)
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.def("setClockFrequency", &setClockFrequency)
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.def("getClockFrequency", &getClockFrequency)
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.def("curTick", curTick)
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;
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/* TODO: These should be read-only */
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m_core.attr("compileDate") = py::cast(compileDate);
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m_core.attr("flag_DEBUG") = py::cast(flag_DEBUG);
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m_core.attr("flag_DEBUG") = py::cast(flag_DEBUG);
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m_core.attr("flag_NDEBUG") = py::cast(flag_NDEBUG);
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m_core.attr("flag_TRACING_ON") = py::cast(flag_TRACING_ON);
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m_core.attr("MaxTick") = py::cast(MaxTick);
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/*
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* Serialization helpers
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*/
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m_core
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.def("serializeAll", &Serializable::serializeAll)
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.def("unserializeGlobals", &Serializable::unserializeGlobals)
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.def("getCheckpoint", [](const std::string &cpt_dir) {
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return new CheckpointIn(cpt_dir, pybindSimObjectResolver);
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})
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;
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init_drain(m_native);
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init_serialize(m_native);
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init_range(m_native);
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init_net(m_native);
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init_loader(m_native);
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}
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