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	unify cycles counting and cleanup
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					 1 changed files with 34 additions and 35 deletions
				
			
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			@ -921,7 +921,8 @@ struct SimWorker : SimShared
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		{
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			if (debug)
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				log("\n===== %d =====\n", 10*cycle + 5);
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			else
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				log("Simulating cycle %d.\n", (cycle*2)+1);
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			set_inports(clock, State::S0);
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			set_inports(clockn, State::S1);
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			@ -931,7 +932,7 @@ struct SimWorker : SimShared
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			if (debug)
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				log("\n===== %d =====\n", 10*cycle + 10);
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			else
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				log("Simulating cycle %d.\n", cycle+1);
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				log("Simulating cycle %d.\n", (cycle*2)+2);
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			set_inports(clock, State::S1);
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			set_inports(clockn, State::S0);
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			@ -1034,42 +1035,40 @@ struct SimWorker : SimShared
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		if (stopCount<startCount) {
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			log_error("Stop time is before start time\n");
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		}
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		auto edges = fst->getAllEdges(fst_clock, startCount, stopCount);
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		if (cycles_set && ((size_t)(numcycles *2) < edges.size()))
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			edges.erase(edges.begin() + (numcycles*2), edges.end());
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		auto samples = fst->getAllEdges(fst_clock, startCount, stopCount);
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		if ((startCount == stopCount) && writeback) {
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			log("Update initial state with values from [%zu%s]\n", startCount, fst->getTimescaleString());
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			if (edges.empty())
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				edges.push_back(startCount);
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			fst->reconstructAllAtTimes(edges);
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			top->setInitState(startCount);
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		// Limit to number of cycles if provided
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		if (cycles_set && ((size_t)(numcycles *2) < samples.size()))
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			samples.erase(samples.begin() + (numcycles*2), samples.end());
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		// Add setup time (start time)
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		if (samples.empty() || samples.front()!=startCount)
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			samples.insert(samples.begin(), startCount);
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		fst->reconstructAllAtTimes(samples);
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		bool initial = true;
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		int cycle = 0;
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		log("Co-simulation from %zu%s to %zu%s\n", startCount, fst->getTimescaleString(), stopCount, fst->getTimescaleString());
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		for(auto &time : samples) {
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			log("Co-simulating cycle %d [%zu%s].\n", cycle, time, fst->getTimescaleString());
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			for(auto &item : inputs) {
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				std::string v = fst->valueAt(item.second, time);
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				top->set_state(item.first, Const::from_string(v));
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			}
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			if (initial) {
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				top->setInitState(time);
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				initial = false;
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			}
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			update();
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			bool status = top->checkSignals(time);
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			if (status)
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				log_error("Signal difference\n");
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			cycle++;
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		}
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		if (writeback) {
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			pool<Module*> wbmods;
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			top->writeback(wbmods);
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		} else {
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			if (edges.empty())
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				log_error("No clock edges found in given time range\n");
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			fst->reconstructAllAtTimes(edges);
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			bool initial = false;
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			int cycle = 0;
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			log("Co-simulation from %zu%s to %zu%s\n", startCount, fst->getTimescaleString(), stopCount, fst->getTimescaleString());
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			for(auto &time : edges) {
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				log("Co-simulating cycle %d [%zu%s].\n", cycle+1, time, fst->getTimescaleString());
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				for(auto &item : inputs) {
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					std::string v = fst->valueAt(item.second, time);
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					top->set_state(item.first, Const::from_string(v));
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				}
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				if (!initial) {
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					top->setInitState(time);
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					initial = true;
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				}
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				update();
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				bool status = top->checkSignals(time);
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				if (status)
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					log_error("Signal difference\n");
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				cycle++;
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			}
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		}
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	}
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};
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