/* * Copyright (c) 2002-2004 The Regents of The University of Michigan * All rights reserved. * * Redistribution and use in source and binary forms, with or without * modification, are permitted provided that the following conditions are * met: redistributions of source code must retain the above copyright * notice, this list of conditions and the following disclaimer; * redistributions in binary form must reproduce the above copyright * notice, this list of conditions and the following disclaimer in the * documentation and/or other materials provided with the distribution; * neither the name of the copyright holders nor the names of its * contributors may be used to endorse or promote products derived from * this software without specific prior written permission. * * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR * A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT * OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT * LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. */ #include "base/loader/object_file.hh" #include "base/loader/symtab.hh" #include "base/remote_gdb.hh" #include "cpu/exec_context.hh" #include "kern/kernel_stats.hh" #include "mem/functional_mem/memory_control.hh" #include "mem/functional_mem/physical_memory.hh" #include "targetarch/vtophys.hh" #include "sim/param.hh" #include "sim/system.hh" #include "base/trace.hh" using namespace std; vector System::systemList; int System::numSystemsRunning = 0; extern SymbolTable *debugSymbolTable; System::System(Params *p) : SimObject(p->name), memctrl(p->memctrl), physmem(p->physmem), init_param(p->init_param), params(p) { // add self to global system list systemList.push_back(this); kernelSymtab = new SymbolTable; consoleSymtab = new SymbolTable; debugSymbolTable = new SymbolTable; /** * Load the kernel, pal, and console code into memory */ // Load kernel code kernel = createObjectFile(params->kernel_path); if (kernel == NULL) fatal("Could not load kernel file %s", params->kernel_path); // Load Console Code console = createObjectFile(params->console_path); if (console == NULL) fatal("Could not load console file %s", params->console_path); // Load pal file pal = createObjectFile(params->palcode); if (pal == NULL) fatal("Could not load PALcode file %s", params->palcode); // Load program sections into memory pal->loadSections(physmem, true); console->loadSections(physmem, true); kernel->loadSections(physmem, true); // setup entry points kernelStart = kernel->textBase(); kernelEnd = kernel->bssBase() + kernel->bssSize(); kernelEntry = kernel->entryPoint(); // load symbols if (!kernel->loadGlobalSymbols(kernelSymtab)) panic("could not load kernel symbols\n"); if (!kernel->loadLocalSymbols(kernelSymtab)) panic("could not load kernel local symbols\n"); if (!console->loadGlobalSymbols(consoleSymtab)) panic("could not load console symbols\n"); if (!kernel->loadGlobalSymbols(debugSymbolTable)) panic("could not load kernel symbols\n"); if (!kernel->loadLocalSymbols(debugSymbolTable)) panic("could not load kernel local symbols\n"); if (!console->loadGlobalSymbols(debugSymbolTable)) panic("could not load console symbols\n"); if (!pal->loadGlobalSymbols(debugSymbolTable)) panic("could not load pal symbols\n"); if (!pal->loadLocalSymbols(debugSymbolTable)) panic("could not load pal symbols\n"); DPRINTF(Loader, "Kernel start = %#x\n", kernelStart); DPRINTF(Loader, "Kernel end = %#x\n", kernelEnd); DPRINTF(Loader, "Kernel entry = %#x\n", kernelEntry); DPRINTF(Loader, "Kernel loaded...\n"); Addr addr = 0; #ifdef DEBUG consolePanicEvent = new BreakPCEvent(&pcEventQueue, "console panic"); if (consoleSymtab->findAddress("panic", addr)) consolePanicEvent->schedule(addr); #endif /** * Copy the osflags (kernel arguments) into the consoles * memory. (Presently Linux does not use the console service * routine to get these command line arguments, but Tru64 and * others do.) */ if (consoleSymtab->findAddress("env_booted_osflags", addr)) { Addr paddr = vtophys(physmem, addr); char *osflags = (char *)physmem->dma_addr(paddr, sizeof(uint32_t)); if (osflags) strcpy(osflags, params->boot_osflags.c_str()); } /** * Set the hardware reset parameter block system type and revision * information to Tsunami. */ if (consoleSymtab->findAddress("xxm_rpb", addr)) { Addr paddr = vtophys(physmem, addr); char *hwrpb = (char *)physmem->dma_addr(paddr, sizeof(uint64_t)); if (!hwrpb) panic("could not translate hwrpb addr\n"); *(uint64_t*)(hwrpb+0x50) = params->system_type; *(uint64_t*)(hwrpb+0x58) = params->system_rev; } else panic("could not find hwrpb\n"); // increment the number of running systms numSystemsRunning++; kernelBinning = new Kernel::Binning(this); } System::~System() { delete kernelSymtab; delete consoleSymtab; delete kernel; delete console; delete pal; delete kernelBinning; #ifdef DEBUG delete consolePanicEvent; #endif } bool System::breakpoint() { return remoteGDB[0]->trap(ALPHA_KENTRY_INT); } int System::registerExecContext(ExecContext *xc) { int xcIndex = execContexts.size(); execContexts.push_back(xc); if (xcIndex == 0) { // activate with zero delay so that we start ticking right // away on cycle 0 xc->activate(0); } RemoteGDB *rgdb = new RemoteGDB(this, xc); GDBListener *gdbl = new GDBListener(rgdb, 7000 + xcIndex); gdbl->listen(); /** * Uncommenting this line waits for a remote debugger to connect * to the simulator before continuing. */ //gdbl->accept(); if (remoteGDB.size() <= xcIndex) { remoteGDB.resize(xcIndex+1); } remoteGDB[xcIndex] = rgdb; return xcIndex; } void System::replaceExecContext(ExecContext *xc, int xcIndex) { if (xcIndex >= execContexts.size()) { panic("replaceExecContext: bad xcIndex, %d >= %d\n", xcIndex, execContexts.size()); } execContexts[xcIndex] = xc; remoteGDB[xcIndex]->replaceExecContext(xc); } void System::regStats() { kernelBinning->regStats(name() + ".kern"); } void System::serialize(ostream &os) { kernelBinning->serialize(os); } void System::unserialize(Checkpoint *cp, const string §ion) { kernelBinning->unserialize(cp, section); } void System::printSystems() { vector::iterator i = systemList.begin(); vector::iterator end = systemList.end(); for (; i != end; ++i) { System *sys = *i; cerr << "System " << sys->name() << ": " << hex << sys << endl; } } extern "C" void printSystems() { System::printSystems(); } DEFINE_SIM_OBJECT_CLASS_NAME("System", System)