Reformat MemTraceReader
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@@ -63,8 +63,7 @@ void MemTraceReader::parse() {
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// Try to read a memory request that might have happened at a given cycle, on a
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// given SIMD lane (= "thread"). In case no request happened at that point,
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// return an empty line with .valid = false.
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MemTraceLine MemTraceReader::read_trace_at(const long cycle,
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const int lane_id,
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MemTraceLine MemTraceReader::read_trace_at(const long cycle, const int lane_id,
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unsigned char trace_read_ready) {
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MemTraceLine line;
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line.valid = false;
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@@ -79,43 +78,39 @@ MemTraceLine MemTraceReader::read_trace_at(const long cycle,
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// It should always be guaranteed that we consumed all of the past lines, and
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// the next line is in the future.
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if (line.cycle < cycle) {
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// fprintf(stderr, "line.cycle=%ld, cycle=%ld\n", line.cycle, cycle);
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printf("cycle=%ld, some lines are left in past Fatal", cycle);
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assert(false && "some trace lines are left unread in the past");
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return MemTraceLine{};
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}
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if (line.lane_id != lane_id) {
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line.valid = false;
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}
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if (line.cycle > cycle) {
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// We haven't reached the cycle mark specified in this line yet, so we don't
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// read it right now.
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return MemTraceLine{};
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} else if (line.lane_id != lane_id) {
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return MemTraceLine{};
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} else if (line.cycle == cycle && line.lane_id == lane_id) {
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if (trace_read_ready){
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if (trace_read_ready) {
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printf("Fire! cycle=%ld, valid=%d, %s addr=%lx, size=%d \n", cycle,
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line.valid, (line.is_store ? "STORE" : "LOAD"), line.address,
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line.log_data_size);
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line.valid, (line.is_store ? "STORE" : "LOAD"), line.address,
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line.log_data_size);
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// FIXME! Currently lane_id is assumed to be in round-robin order, e.g.
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// 0->1->2->3->0->..., both in the trace file and the order the caller calls
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// this function. If this is not true, we cannot simply monotonically
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// increment read_pos.
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// Only advance pointer when cycle and threa_id both match
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// now increaseing sequence is fine (0, 1, 3), but unordered is not fine (0, 3, 1)
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// NOTE: Currently lane_id is assumed to be in always-increasing order,
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// e.g. 0->1->2->3->0->..., both in the trace file and the order the
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// caller calls this function. If this is not true, we cannot simply
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// monotonically increment read_pos. lane_id need not be contiguous, e.g.
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// 0->1->3 is fine.
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++read_pos;
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}
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else { // we do not want to advance read_pos
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} else { // we do not want to advance read_pos
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printf("All Lanes Blocked on this cycle! cycle=%ld \n", cycle);
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}
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return line;
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}
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return line;
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}
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assert(!"unreachable");
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}
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extern "C" void memtrace_init(const char *filename) {
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#ifndef NO_VPI
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@@ -155,13 +150,6 @@ extern "C" void memtrace_query(unsigned char trace_read_ready,
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// printf("memtrace_query(cycle=%ld, tid=%d)\n", trace_read_cycle,
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// trace_read_lane_id);
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/* we can't return immediately, even if trace is ready, we still want to find out
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if we are suppose to generate valid req on this clock cycle
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if (!trace_read_ready) {
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return;
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}
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*/
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auto line = reader->read_trace_at(trace_read_cycle, trace_read_lane_id, trace_read_ready);
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*trace_read_valid = line.valid;
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*trace_read_address = line.address;
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@@ -102,7 +102,8 @@ extern "C" void memtracelogger_log(int handle,
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.data = trace_log_data,
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.log_data_size = trace_log_size};
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assert(0 <= handle && handle < loggers.size() && "wrong trace logger handle");
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assert(0 <= handle && static_cast<size_t>(handle) < loggers.size() &&
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"wrong trace logger handle");
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auto logger = loggers[handle].get();
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logger->write_line_to_trace(line);
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}
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