Preparing CiAO experiments

git-svn-id: https://www4.informatik.uni-erlangen.de/i4svn/danceos/trunk/devel/fail@1984 8c4709b5-6ec9-48aa-a5cd-a96041d1645a
This commit is contained in:
hoffmann
2012-12-20 22:37:29 +00:00
parent 5a3a66da25
commit e5323abcf9

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@ -24,15 +24,16 @@ using namespace fail;
// Check if configuration dependencies are satisfied: // Check if configuration dependencies are satisfied:
#if !defined(CONFIG_EVENT_BREAKPOINTS) || !defined(CONFIG_SR_RESTORE) || \ #if !defined(CONFIG_EVENT_BREAKPOINTS) || !defined(CONFIG_SR_RESTORE) || \
!defined(CONFIG_SR_SAVE) || !defined(CONFIG_EVENT_TRAP) !defined(CONFIG_SR_SAVE)
#error This experiment needs: breakpoints, traps, save, and restore. Enable these in the configuration. #error This experiment needs: breakpoints, traps, save, and restore. Enable these in the configuration.
#endif #endif
bool VEZSExperiment::run() bool VEZSExperiment::run()
{ {
Logger log("VEZS-Example", false); Logger log("VEZS-Example", false);
ElfReader elf("./system"); ElfReader elf("./x86_bare_test");
log << elf.getAddressByName("main") << endl; log << "STARTING EXPERIMENT" << endl;
log << "main() address: " << elf.getAddressByName("main") << endl;
BPSingleListener bp; BPSingleListener bp;
#if 0 #if 0
@ -41,34 +42,47 @@ bool VEZSExperiment::run()
if(simulator.addListenerAndResume(&bp) == &bp){ if(simulator.addListenerAndResume(&bp) == &bp){
log << "test function entry reached, saving state" << endl; log << "test function entry reached, saving state" << endl;
} }
log << "EIP = " << hex << bp.getTriggerInstructionPointer() << " or " << simulator.getRegisterManager().getInstructionPointer() << endl; log << "EIP = " << hex << bp.getTriggerInstructionPointer() << endl;
//simulator.terminate(); //simulator.terminate();
simulator.save("vezs.state"); simulator.save("vezs.state");
simulator.terminate(); simulator.terminate();
#endif #endif
#if 1 #if 1
int bit_offset = 2; //int bit_offset = 2;
for (int instr_offset = 0; instr_offset < OOSTUBS_NUMINSTR; ++instr_offset) { //for (int instr_offset = 0; instr_offset < OOSTUBS_NUMINSTR; ++instr_offset) {
// STEP 3: The actual experiment. // STEP 3: The actual experiment.
log << "restoring state" << endl; log << "restoring state" << endl;
simulator.restore("vezs.state"); simulator.restore("vezs.state");
log << "EIP = " << hex << simulator.getRegisterManager().getInstructionPointer() << endl; log << " current EIP = " << simulator.getCPU(0).getInstructionPointer() << endl;
log << " Task0 start: " << elf.getAddressByName("_ZN5Alpha17functionTaskTask0Ev") << endl;
BPSingleListener bpt0;
BPSingleListener bpt1;
bpt0.setWatchInstructionPointer(elf.getAddressByName("_ZN5Alpha17functionTaskTask0Ev"));
bpt1.setWatchInstructionPointer(elf.getAddressByName("_ZN4Beta17functionTaskTask1Ev"));
bp.setWatchInstructionPointer(ANY_ADDR); simulator.addListener(&bpt1);
for (int count = 0; count < instr_offset; ++count) { simulator.addListenerAndResume(&bpt0);
simulator.addListenerAndResume(&bp); log << "EIP = " << simulator.getCPU(0).getInstructionPointer() <<" "<<elf.getNameByAddress(simulator.getCPU(0).getInstructionPointer()) << endl;
simulator.resume();
log << "EIP = " << simulator.getCPU(0).getInstructionPointer() <<" "<<elf.getNameByAddress(simulator.getCPU(0).getInstructionPointer()) << endl;
simulator.clearListeners();
bpt1.setWatchInstructionPointer(elf.getAddressByName("_ZN2os3krn9SchedImpl18superDispatch_implEPS1_hh"));
for(int i = 0; i < 10; i++){
simulator.addListenerAndResume(&bpt1);
log << "EIP = " << simulator.getCPU(0).getInstructionPointer() <<" "<<elf.getNameByAddress(simulator.getCPU(0).getInstructionPointer()) << endl;
} }
#endif
#if 0
int32_t data = simulator.getRegisterManager().getRegister(RID_CAX)->getData(); int32_t data = simulator.getCPU(0).getRegister(RID_CAX)->getData();
// The INJECTION: // The INJECTION:
int32_t newdata = data ^ (1<<bit_offset); int32_t newdata = data ^ (1<<bit_offset);
simulator.getRegisterManager().getRegister(RID_CAX)->setData(newdata); simulator.getCPU(0).getRegister(RID_CAX)->setData(newdata);
int32_t injection_ip = simulator.getRegisterManager().getInstructionPointer(); int32_t injection_ip = simulator.getCPU(0).getInstructionPointer();
log << "inject @ ip " << injection_ip log << "inject @ ip " << injection_ip
<< " (offset " << dec << instr_offset << ")" << " (offset " << dec << instr_offset << ")"
<< " bit " << bit_offset << ": 0x" << " bit " << bit_offset << ": 0x"
@ -105,7 +119,7 @@ bool VEZSExperiment::run()
BaseListener* ev = simulator.resume(); BaseListener* ev = simulator.resume();
// record latest IP regardless of result // record latest IP regardless of result
injection_ip = simulator.getRegisterManager().getInstructionPointer(); injection_ip = simulator.getCPU(0).getInstructionPointer();
if (ev == &ev_end) { if (ev == &ev_end) {
@ -126,6 +140,6 @@ bool VEZSExperiment::run()
} }
#endif #endif
// Explicitly terminate, or the simulator will continue to run. // Explicitly terminate, or the simulator will continue to run.
simulator.terminate(); simulator.terminate();
} }