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			370 lines
		
	
	
	
		
			11 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
			
		
		
	
	
			370 lines
		
	
	
	
		
			11 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
/*
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 *  yosys -- Yosys Open SYnthesis Suite
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 *
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 *  Copyright (C) 2024 Hannah Ravensloft <lofty@yosyshq.com> 
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 *  Copyright (C) 2024 Miodrag Milanovic <micko@yosyshq.com> 
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 *
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 *  Permission to use, copy, modify, and/or distribute this software for any
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 *  purpose with or without fee is hereby granted, provided that the above
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 *  copyright notice and this permission notice appear in all copies.
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 *
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 *  THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
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 *  WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
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 *  MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR
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 *  ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
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 *  WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN
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 *  ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF
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 *  OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
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 *
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 */
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#include "kernel/register.h"
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#include "kernel/celltypes.h"
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#include "kernel/rtlil.h"
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#include "kernel/log.h"
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USING_YOSYS_NAMESPACE
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PRIVATE_NAMESPACE_BEGIN
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struct SynthNanoXplorePass : public ScriptPass
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{
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	SynthNanoXplorePass() : ScriptPass("synth_nanoxplore", "synthesis for NanoXplore FPGAs") { }
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	void on_register() override
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	{
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		RTLIL::constpad["synth_nanoxplore.abc9.W"] = "300";
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	}
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	void help() override
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	{
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		//   |---v---|---v---|---v---|---v---|---v---|---v---|---v---|---v---|---v---|---v---|
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		log("\n");
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		log("    synth_nanoxplore [options]\n");
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		log("\n");
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		log("This command runs synthesis for NanoXplore FPGAs.\n");
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		log("\n");
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		log("    -top <module>\n");
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		log("        use the specified module as top module\n");
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		log("\n");
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		log("    -family <family>\n");
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		log("        run synthesis for the specified NanoXplore architecture\n");
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		log("        generate the synthesis netlist for the specified family.\n");
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		log("        supported values:\n");
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		log("        - medium: NG-Medium\n");
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		log("        - large: NG-Large\n");
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		log("        - ultra: NG-Ultra\n");
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		log("\n");
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		log("    -json <file>\n");
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		log("        write the design to the specified JSON file. writing of an output file\n");
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		log("        is omitted if this parameter is not specified.\n");
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		log("\n");
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		log("    -run <from_label>:<to_label>\n");
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		log("        only run the commands between the labels (see below). an empty\n");
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		log("        from label is synonymous to 'begin', and empty to label is\n");
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		log("        synonymous to the end of the command list.\n");
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		log("\n");
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		log("    -noflatten\n");
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		log("        do not flatten design before synthesis\n");
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		log("\n");
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		log("    -abc9\n");
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		log("        use new ABC9 flow (EXPERIMENTAL)\n");
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		log("\n");
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		log("    -nocy\n");
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		log("        do not map adders to CY cells\n");
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		log("\n");
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		log("    -nodffe\n");
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		log("        do not use flipflops with L in output netlist\n");
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		log("\n");
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		log("    -min_ce_use <min_ce_use>\n");
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		log("        do not use flip-flops with load signal if the resulting count is less\n");
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		log("        than min_ce_use in output netlist\n");
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		log("\n");
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		log("    -min_srst_use <min_srst_use>\n");
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		log("        do not use flip-flops with async reset signal if the resulting count is less\n");
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		log("        than min_srst_use in output netlist\n");
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		log("\n");
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		log("    -norfram\n");
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		log("        do not use Register File RAM cells in output netlist\n");
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		log("\n");
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		log("    -nobram\n");
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		log("        do not use block NX_RAM cells in output netlist\n");
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		log("\n");
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		log("    -noiopad\n");
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		log("        do not insert IO buffers\n");
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		log("\n");
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		log("    -no-rw-check\n");
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		log("        marks all recognized read ports as \"return don't-care value on\n");
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		log("        read/write collision\" (same result as setting the no_rw_check\n");
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		log("        attribute on all memories).\n");
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		log("\n");
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		log("\n");
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		log("The following commands are executed by this synthesis command:\n");
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		help_script();
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		log("\n");
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	}
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	string top_opt, json_file, family;
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	bool flatten, abc9, nocy, nodffe, norfram, nobram, noiopad, no_rw_check;
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	std::string postfix;
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	int min_ce_use, min_srst_use;
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	void clear_flags() override
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	{
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		top_opt = "-auto-top";
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		json_file = "";
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		family = "";
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		flatten = true;
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		abc9 = false;
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		nocy = false;
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		nodffe = false;
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		norfram = false;
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		nobram = false;
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		noiopad = false;
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		no_rw_check = false;
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		postfix = "";
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		min_ce_use = 8;
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		min_srst_use = 8;
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	}
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	void execute(std::vector<std::string> args, RTLIL::Design *design) override
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	{
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		string run_from, run_to;
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		clear_flags();
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		size_t argidx;
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		for (argidx = 1; argidx < args.size(); argidx++)
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		{
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			if (args[argidx] == "-top" && argidx+1 < args.size()) {
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				top_opt = "-top " + args[++argidx];
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				continue;
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			}
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			if ((args[argidx] == "-family" || args[argidx] == "-arch") && argidx+1 < args.size()) {
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				family = args[++argidx];
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				continue;
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			}
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			if (args[argidx] == "-json" && argidx+1 < args.size()) {
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				json_file = args[++argidx];
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				continue;
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			}
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			if (args[argidx] == "-run" && argidx+1 < args.size()) {
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				size_t pos = args[argidx+1].find(':');
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				if (pos == std::string::npos)
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					break;
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				run_from = args[++argidx].substr(0, pos);
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				run_to = args[argidx].substr(pos+1);
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				continue;
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			}
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			if (args[argidx] == "-flatten") {
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				flatten = true;
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				continue;
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			}
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			if (args[argidx] == "-noflatten") {
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				flatten = false;
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				continue;
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			}
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			if (args[argidx] == "-abc9") {
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				abc9 = true;
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				continue;
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			}
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			if (args[argidx] == "-nocy") {
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				nocy = true;
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				continue;
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			}
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			if (args[argidx] == "-nodffe") {
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				nodffe = true;
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				continue;
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			}
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			if (args[argidx] == "-min_ce_use" && argidx+1 < args.size()) {
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				min_ce_use = atoi(args[++argidx].c_str());
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				continue;
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			}
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			if (args[argidx] == "-min_srst_use" && argidx+1 < args.size()) {
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				min_srst_use = atoi(args[++argidx].c_str());
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				continue;
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			}
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			if (args[argidx] == "-norfram") {
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				norfram = true;
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				continue;
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			}
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			if (args[argidx] == "-nobram") {
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				nobram = true;
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				continue;
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			}
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			if (args[argidx] == "-iopad") {
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				noiopad = false;
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				continue;
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			}
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			if (args[argidx] == "-noiopad") {
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				noiopad = true;
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				continue;
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			}
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			if (args[argidx] == "-no-rw-check") {
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				no_rw_check = true;
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				continue;
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			}
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			break;
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		}
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		extra_args(args, argidx, design);
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		if (family.empty()) {
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			//log_warning("NanoXplore family not set, setting it to NG-ULTRA.\n");
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			family = "ultra";
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		}
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		if (family == "ultra") {
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			postfix = "_u";
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		} else if (family == "medium") {
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			postfix = "_m";
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		} else if (family == "large") {
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			postfix = "_l";
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		} else 
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			log_cmd_error("Invalid NanoXplore -family setting: '%s'.\n", family.c_str());
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		if (!design->full_selection())
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			log_cmd_error("This command only operates on fully selected designs!\n");
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		log_header(design, "Executing SYNTH_NANOXPLORE pass.\n");
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		log_push();
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		run_script(design, run_from, run_to);
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		log_pop();
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	}
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	void script() override
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	{
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		std::string no_rw_check_opt = "";
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		if (no_rw_check)
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			no_rw_check_opt = " -no-rw-check";
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		if (help_mode)
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			no_rw_check_opt = " [-no-rw-check]";
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		if (check_label("begin"))
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		{
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			run("read_verilog -lib -specify +/nanoxplore/cells_sim.v +/nanoxplore/cells_sim" + postfix + ".v +/nanoxplore/cells_bb.v +/nanoxplore/cells_bb" + postfix + ".v");
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			run("techmap -map +/nanoxplore/cells_wrap.v");
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			run("techmap -map +/nanoxplore/cells_wrap" + postfix + ".v");
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			run(stringf("hierarchy -check %s", help_mode ? "-top <top>" : top_opt.c_str()));
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		}
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		if (check_label("coarse"))
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		{
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			run("proc");
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			if (flatten || help_mode)
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				run("flatten", "(skip if -noflatten)");
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			run("tribuf -logic");
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			run("deminout");
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			run("opt_expr");
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			run("opt_clean");
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			run("check");
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			run("opt -nodffe -nosdff");
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			run("fsm");
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			run("opt");
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			run("wreduce");
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			run("peepopt");
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			run("opt_clean");
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			run("share");
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			run("techmap -map +/cmp2lut.v -D LUT_WIDTH=4");
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			run("opt_expr");
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			run("opt_clean");
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			run("alumacc");
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			run("opt");
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			run("memory -nomap" + no_rw_check_opt);
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			run("opt_clean");
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		}
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		if (check_label("map_ram"))
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		{
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			std::string args = "";
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			if (family == "medium")
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				args += " -D IS_NG_MEDIUM";
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			if (nobram)
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				args += " -no-auto-block";
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			if (norfram)
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				args += " -no-auto-distributed";
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			if (help_mode)
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				args += " [-no-auto-block] [-no-auto-distributed]";
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			run("memory_libmap -lib +/nanoxplore/rf_rams"+ postfix + ".txt -lib +/nanoxplore/brams.txt" + args, "(-no-auto-block if -nobram, -no-auto-distributed if -norfram)");
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			run("techmap -map +/nanoxplore/rf_rams_map"+ postfix + ".v -map +/nanoxplore/brams_map.v");
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			run("techmap -map +/nanoxplore/cells_wrap.v t:NX_RAM*");
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			run("techmap -map +/nanoxplore/cells_wrap" + postfix + ".v t:NX_XRFB* t:NX_RFB*");
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		}
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		if (check_label("map_ffram"))
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		{
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			run("opt -fast -mux_undef -undriven -fine");
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			run("memory_map");
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			run("opt -undriven -fine -mux_undef");
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		}
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		if (check_label("map_gates"))
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		{
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			if (nocy)
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				run("techmap");
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			else {
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				run("techmap -map +/techmap.v -map +/nanoxplore/arith_map.v");
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				run("nx_carry");
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			}
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			if (help_mode || !noiopad) {
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				run("iopadmap -bits -outpad $__BEYOND_OBUF I:PAD -toutpad $__BEYOND_TOBUF C:I:PAD -inpad $__BEYOND_IBUF O:PAD -tinoutpad $__BEYOND_IOBUF C:O:I:PAD A:top", "(skip if '-noiopad')");
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				run("techmap -map +/nanoxplore/io_map.v");
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			}
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			run("opt -fast");
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		}
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		if (check_label("map_ffs"))
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		{
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			std::string dfflegalize_args = " -cell $_DFF_?_ 01 -cell $_DFF_?P?_ r -cell $_SDFF_?P?_ r";
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			if (help_mode) {
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				dfflegalize_args += " [-cell $_DFFE_?P_ 01 -cell $_DFFE_?P?P_ r -cell $_SDFFE_?P?P_ r]";
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			} else if (!nodffe) {
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				dfflegalize_args += " -cell $_DFFE_?P_ 01 -cell $_DFFE_?P?P_ r -cell $_SDFFE_?P?P_ r";
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			}
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			dfflegalize_args += stringf(" -cell $_DLATCH_?_ x -mince %d -minsrst %d", min_ce_use, min_srst_use);
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			run("dfflegalize" + dfflegalize_args,"($_*DFFE_* only if not -nodffe)");
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			run("opt_merge");
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			run("techmap -map +/nanoxplore/latches_map.v");
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			run("techmap -map +/nanoxplore/cells_map.v");
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			run("opt_expr -undriven -mux_undef");
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			run("clean -purge");
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		}
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		if (check_label("map_luts"))
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		{
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			if (abc9) {
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				std::string abc9_opts = " -maxlut 4";
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				std::string k = "synth_nanoxplore.abc9.W";
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				if (active_design && active_design->scratchpad.count(k))
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					abc9_opts += stringf(" -W %s", active_design->scratchpad_get_string(k).c_str());
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				else
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					abc9_opts += stringf(" -W %s", RTLIL::constpad.at(k).c_str());
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				run("abc9" + abc9_opts);
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			} else {
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				std::string abc_args = " -dress";
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				abc_args += " -lut 4";
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				run("abc" + abc_args);
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			}
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			run("techmap -map +/nanoxplore/cells_map.v t:$lut");
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			run("opt -fast");
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			run("clean");
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		}
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		if (check_label("check"))
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		{
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			run("autoname");
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			run("hierarchy -check");
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			run("stat");
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			run("check -noinit");
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			run("blackbox =A:whitebox");
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			run("setundef -zero -undriven");
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		}
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		if (check_label("json"))
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		{
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			if (!json_file.empty() || help_mode)
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				run(stringf("write_json %s", help_mode ? "<file-name>" : json_file.c_str()));
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		}
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	}
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} SynthNanoXplorePass;
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PRIVATE_NAMESPACE_END
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