cc53465cd5
In the future, this can be used for actual data, but for now, it's so that devices can respond to timing accesses properly. This way, an uncached access on a bus further away will take longer to respond. dev/alpha_console.cc: dev/alpha_console.hh: suport the separate IO bus --HG-- extra : convert_revision : ececb70f5febfd00231f6e406f93b2a79be01261
297 lines
8.7 KiB
C++
297 lines
8.7 KiB
C++
/*
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* Copyright (c) 2003 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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/* @file
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* System Console Definition
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*/
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#include <cstddef>
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#include <cstdio>
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#include <string>
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#include "base/inifile.hh"
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#include "base/str.hh" // for to_number()
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#include "base/trace.hh"
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#include "cpu/base_cpu.hh"
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#include "cpu/exec_context.hh"
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#include "dev/alpha_console.hh"
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#include "dev/console.hh"
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#include "dev/simple_disk.hh"
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#include "dev/tlaser_clock.hh"
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#include "mem/bus/bus.hh"
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#include "mem/bus/pio_interface.hh"
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#include "mem/bus/pio_interface_impl.hh"
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#include "mem/functional_mem/memory_control.hh"
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#include "sim/builder.hh"
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#include "sim/system.hh"
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using namespace std;
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AlphaConsole::AlphaConsole(const string &name, SimConsole *cons, SimpleDisk *d,
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System *system, BaseCPU *cpu, TlaserClock *clock,
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int num_cpus, MemoryController *mmu, Addr a,
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HierParams *hier, Bus *bus)
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: PioDevice(name), disk(d), console(cons), addr(a)
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{
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mmu->add_child(this, Range<Addr>(addr, addr + size));
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if (bus) {
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pioInterface = newPioInterface(name, hier, bus, this,
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&AlphaConsole::cacheAccess);
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pioInterface->setAddrRange(addr, addr + size);
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}
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consoleData = new uint8_t[size];
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memset(consoleData, 0, size);
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alphaAccess->last_offset = size - 1;
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alphaAccess->kernStart = system->getKernelStart();
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alphaAccess->kernEnd = system->getKernelEnd();
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alphaAccess->entryPoint = system->getKernelEntry();
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alphaAccess->version = ALPHA_ACCESS_VERSION;
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alphaAccess->numCPUs = num_cpus;
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alphaAccess->mem_size = system->physmem->size();
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alphaAccess->cpuClock = cpu->getFreq() / 1000000;
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alphaAccess->intrClockFrequency = clock->frequency();
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alphaAccess->diskUnit = 1;
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}
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Fault
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AlphaConsole::read(MemReqPtr &req, uint8_t *data)
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{
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memset(data, 0, req->size);
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uint64_t val;
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Addr daddr = req->paddr - addr;
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switch (daddr) {
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case offsetof(AlphaAccess, inputChar):
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val = console->console_in();
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break;
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default:
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val = *(uint64_t *)(consoleData + daddr);
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break;
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}
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DPRINTF(AlphaConsole, "read: offset=%#x val=%#x\n", daddr, val);
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switch (req->size) {
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case sizeof(uint32_t):
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*(uint32_t *)data = (uint32_t)val;
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break;
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case sizeof(uint64_t):
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*(uint64_t *)data = val;
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break;
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default:
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return Machine_Check_Fault;
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}
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return No_Fault;
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}
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Fault
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AlphaConsole::write(MemReqPtr &req, const uint8_t *data)
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{
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uint64_t val;
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switch (req->size) {
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case sizeof(uint32_t):
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val = *(uint32_t *)data;
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break;
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case sizeof(uint64_t):
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val = *(uint64_t *)data;
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break;
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default:
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return Machine_Check_Fault;
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}
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Addr daddr = req->paddr - addr;
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ExecContext *other_xc;
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switch (daddr) {
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case offsetof(AlphaAccess, diskUnit):
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alphaAccess->diskUnit = val;
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break;
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case offsetof(AlphaAccess, diskCount):
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alphaAccess->diskCount = val;
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break;
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case offsetof(AlphaAccess, diskPAddr):
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alphaAccess->diskPAddr = val;
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break;
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case offsetof(AlphaAccess, diskBlock):
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alphaAccess->diskBlock = val;
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break;
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case offsetof(AlphaAccess, diskOperation):
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if (val == 0x13)
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disk->read(alphaAccess->diskPAddr, alphaAccess->diskBlock,
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alphaAccess->diskCount);
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else
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panic("Invalid disk operation!");
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break;
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case offsetof(AlphaAccess, outputChar):
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console->out((char)(val & 0xff), false);
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break;
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case offsetof(AlphaAccess, bootStrapImpure):
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alphaAccess->bootStrapImpure = val;
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break;
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case offsetof(AlphaAccess, bootStrapCPU):
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warn("%d: Trying to launch another CPU!", curTick);
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assert(val > 0 && "Must not access primary cpu");
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other_xc = req->xc->system->execContexts[val];
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other_xc->regs.intRegFile[16] = val;
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other_xc->regs.ipr[TheISA::IPR_PALtemp16] = val;
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other_xc->regs.intRegFile[0] = val;
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other_xc->regs.intRegFile[30] = alphaAccess->bootStrapImpure;
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other_xc->activate(); //Start the cpu
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break;
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default:
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return Machine_Check_Fault;
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}
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return No_Fault;
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}
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Tick
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AlphaConsole::cacheAccess(MemReqPtr &req)
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{
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return curTick + 1000;
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}
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void
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AlphaAccess::serialize(ostream &os)
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{
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SERIALIZE_SCALAR(last_offset);
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SERIALIZE_SCALAR(version);
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SERIALIZE_SCALAR(numCPUs);
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SERIALIZE_SCALAR(mem_size);
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SERIALIZE_SCALAR(cpuClock);
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SERIALIZE_SCALAR(intrClockFrequency);
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SERIALIZE_SCALAR(kernStart);
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SERIALIZE_SCALAR(kernEnd);
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SERIALIZE_SCALAR(entryPoint);
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SERIALIZE_SCALAR(diskUnit);
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SERIALIZE_SCALAR(diskCount);
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SERIALIZE_SCALAR(diskPAddr);
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SERIALIZE_SCALAR(diskBlock);
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SERIALIZE_SCALAR(diskOperation);
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SERIALIZE_SCALAR(outputChar);
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SERIALIZE_SCALAR(inputChar);
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SERIALIZE_SCALAR(bootStrapImpure);
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SERIALIZE_SCALAR(bootStrapCPU);
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}
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void
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AlphaAccess::unserialize(Checkpoint *cp, const std::string §ion)
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{
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UNSERIALIZE_SCALAR(last_offset);
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UNSERIALIZE_SCALAR(version);
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UNSERIALIZE_SCALAR(numCPUs);
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UNSERIALIZE_SCALAR(mem_size);
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UNSERIALIZE_SCALAR(cpuClock);
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UNSERIALIZE_SCALAR(intrClockFrequency);
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UNSERIALIZE_SCALAR(kernStart);
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UNSERIALIZE_SCALAR(kernEnd);
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UNSERIALIZE_SCALAR(entryPoint);
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UNSERIALIZE_SCALAR(diskUnit);
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UNSERIALIZE_SCALAR(diskCount);
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UNSERIALIZE_SCALAR(diskPAddr);
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UNSERIALIZE_SCALAR(diskBlock);
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UNSERIALIZE_SCALAR(diskOperation);
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UNSERIALIZE_SCALAR(outputChar);
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UNSERIALIZE_SCALAR(inputChar);
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UNSERIALIZE_SCALAR(bootStrapImpure);
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UNSERIALIZE_SCALAR(bootStrapCPU);
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}
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void
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AlphaConsole::serialize(ostream &os)
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{
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alphaAccess->serialize(os);
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}
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void
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AlphaConsole::unserialize(Checkpoint *cp, const std::string §ion)
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{
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alphaAccess->unserialize(cp, section);
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}
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BEGIN_DECLARE_SIM_OBJECT_PARAMS(AlphaConsole)
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SimObjectParam<SimConsole *> sim_console;
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SimObjectParam<SimpleDisk *> disk;
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Param<int> num_cpus;
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SimObjectParam<MemoryController *> mmu;
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Param<Addr> addr;
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SimObjectParam<System *> system;
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SimObjectParam<BaseCPU *> cpu;
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SimObjectParam<TlaserClock *> clock;
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SimObjectParam<Bus*> io_bus;
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SimObjectParam<HierParams *> hier;
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END_DECLARE_SIM_OBJECT_PARAMS(AlphaConsole)
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BEGIN_INIT_SIM_OBJECT_PARAMS(AlphaConsole)
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INIT_PARAM(sim_console, "The Simulator Console"),
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INIT_PARAM(disk, "Simple Disk"),
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INIT_PARAM_DFLT(num_cpus, "Number of CPU's", 1),
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INIT_PARAM(mmu, "Memory Controller"),
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INIT_PARAM(addr, "Device Address"),
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INIT_PARAM(system, "system object"),
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INIT_PARAM(cpu, "Processor"),
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INIT_PARAM(clock, "Turbolaser Clock"),
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INIT_PARAM_DFLT(io_bus, "The IO Bus to attach to", NULL),
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INIT_PARAM_DFLT(hier, "Hierarchy global variables", &defaultHierParams)
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END_INIT_SIM_OBJECT_PARAMS(AlphaConsole)
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CREATE_SIM_OBJECT(AlphaConsole)
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{
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return new AlphaConsole(getInstanceName(), sim_console, disk,
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system, cpu, clock, num_cpus, mmu,
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addr, hier, io_bus);
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}
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REGISTER_SIM_OBJECT("AlphaConsole", AlphaConsole)
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