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Support for non-contiguous hartids

pull/156/head
Gleb Gagarin 9 years ago
parent
commit
85efaaaba8
  1. 17
      riscv/sim.cc
  2. 2
      riscv/sim.h
  3. 16
      spike_main/spike.cc

17
riscv/sim.cc

@ -25,7 +25,7 @@ static void handle_signal(int sig)
sim_t::sim_t(const char* isa, size_t nprocs, bool halted, reg_t start_pc, sim_t::sim_t(const char* isa, size_t nprocs, bool halted, reg_t start_pc,
std::vector<std::pair<reg_t, mem_t*>> mems, std::vector<std::pair<reg_t, mem_t*>> mems,
const std::vector<std::string>& args) const std::vector<std::string>& args, std::vector<int> const hartids)
: htif_t(args), debug_module(this), mems(mems), procs(std::max(nprocs, size_t(1))), : htif_t(args), debug_module(this), mems(mems), procs(std::max(nprocs, size_t(1))),
start_pc(start_pc), start_pc(start_pc),
current_step(0), current_proc(0), debug(false), remote_bitbang(NULL) current_step(0), current_proc(0), debug(false), remote_bitbang(NULL)
@ -39,8 +39,19 @@ sim_t::sim_t(const char* isa, size_t nprocs, bool halted, reg_t start_pc,
debug_mmu = new mmu_t(this, NULL); debug_mmu = new mmu_t(this, NULL);
for (size_t i = 0; i < procs.size(); i++) { if (hartids.size() == 0) {
procs[i] = new processor_t(isa, this, i, halted); for (size_t i = 0; i < procs.size(); i++) {
procs[i] = new processor_t(isa, this, i, halted);
}
}
else {
if (hartids.size() != procs.size()) {
std::cerr << "Number of specified hartids doesn't match number of processors" << strerror(errno) << std::endl;
exit(1);
}
for (size_t i = 0; i < procs.size(); i++) {
procs[i] = new processor_t(isa, this, hartids[i], halted);
}
} }
clint.reset(new clint_t(procs)); clint.reset(new clint_t(procs));

2
riscv/sim.h

@ -21,7 +21,7 @@ class sim_t : public htif_t
public: public:
sim_t(const char* isa, size_t _nprocs, bool halted, reg_t start_pc, sim_t(const char* isa, size_t _nprocs, bool halted, reg_t start_pc,
std::vector<std::pair<reg_t, mem_t*>> mems, std::vector<std::pair<reg_t, mem_t*>> mems,
const std::vector<std::string>& args); const std::vector<std::string>& args, const std::vector<int> hartids);
~sim_t(); ~sim_t();
// run the simulation to completion // run the simulation to completion

16
spike_main/spike.cc

@ -84,6 +84,19 @@ int main(int argc, char** argv)
const char* isa = DEFAULT_ISA; const char* isa = DEFAULT_ISA;
uint16_t rbb_port = 0; uint16_t rbb_port = 0;
bool use_rbb = false; bool use_rbb = false;
std::vector<int> hartids;
auto const hartids_parser = [&](const char *s) {
std::string const str(s);
std::stringstream stream(str);
int n;
while (stream >> n)
{
hartids.push_back(n);
if (stream.peek() == ',') stream.ignore();
}
};
option_parser_t parser; option_parser_t parser;
parser.help(&help); parser.help(&help);
@ -97,6 +110,7 @@ int main(int argc, char** argv)
parser.option('H', 0, 0, [&](const char* s){halted = true;}); parser.option('H', 0, 0, [&](const char* s){halted = true;});
parser.option(0, "rbb-port", 1, [&](const char* s){use_rbb = true; rbb_port = atoi(s);}); parser.option(0, "rbb-port", 1, [&](const char* s){use_rbb = true; rbb_port = atoi(s);});
parser.option(0, "pc", 1, [&](const char* s){start_pc = strtoull(s, 0, 0);}); parser.option(0, "pc", 1, [&](const char* s){start_pc = strtoull(s, 0, 0);});
parser.option(0, "hartids", 1, hartids_parser);
parser.option(0, "ic", 1, [&](const char* s){ic.reset(new icache_sim_t(s));}); parser.option(0, "ic", 1, [&](const char* s){ic.reset(new icache_sim_t(s));});
parser.option(0, "dc", 1, [&](const char* s){dc.reset(new dcache_sim_t(s));}); parser.option(0, "dc", 1, [&](const char* s){dc.reset(new dcache_sim_t(s));});
parser.option(0, "l2", 1, [&](const char* s){l2.reset(cache_sim_t::construct(s, "L2$"));}); parser.option(0, "l2", 1, [&](const char* s){l2.reset(cache_sim_t::construct(s, "L2$"));});
@ -116,7 +130,7 @@ int main(int argc, char** argv)
if (mems.empty()) if (mems.empty())
mems = make_mems("2048"); mems = make_mems("2048");
sim_t s(isa, nprocs, halted, start_pc, mems, htif_args); sim_t s(isa, nprocs, halted, start_pc, mems, htif_args, std::move(hartids));
std::unique_ptr<remote_bitbang_t> remote_bitbang((remote_bitbang_t *) NULL); std::unique_ptr<remote_bitbang_t> remote_bitbang((remote_bitbang_t *) NULL);
std::unique_ptr<jtag_dtm_t> jtag_dtm(new jtag_dtm_t(&s.debug_module)); std::unique_ptr<jtag_dtm_t> jtag_dtm(new jtag_dtm_t(&s.debug_module));
if (use_rbb) { if (use_rbb) {

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