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	s/((Claire|Xen|Xenia|Clifford)\s+)+(Wolf|Xen)\s+<(claire|clifford)@(symbioticeda.com|clifford.at|yosyshq.com)>/Claire Xenia Wolf <claire@yosyshq.com>/gi; s/((Nina|Nak|N\.)\s+)+Engelhardt\s+<nak@(symbioticeda.com|yosyshq.com)>/N. Engelhardt <nak@yosyshq.com>/gi; s/((David)\s+)+Shah\s+<(dave|david)@(symbioticeda.com|yosyshq.com|ds0.me)>/David Shah <dave@ds0.me>/gi; s/((Miodrag)\s+)+Milanovic\s+<(miodrag|micko)@(symbioticeda.com|yosyshq.com)>/Miodrag Milanovic <micko@yosyshq.com>/gi; s,https?://www.clifford.at/yosys/,http://yosyshq.net/yosys/,g;
		
			
				
	
	
		
			196 lines
		
	
	
	
		
			7.2 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
			
		
		
	
	
			196 lines
		
	
	
	
		
			7.2 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
/*
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 *  yosys -- Yosys Open SYnthesis Suite
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 *
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 *  Copyright (C) 2012  Claire Xenia Wolf <claire@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/log.h"
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#include "kernel/register.h"
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#include "kernel/sigtools.h"
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#include "kernel/consteval.h"
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#include "kernel/celltypes.h"
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#include "fsmdata.h"
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#include <math.h>
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#include <string.h>
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#include <errno.h>
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USING_YOSYS_NAMESPACE
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PRIVATE_NAMESPACE_BEGIN
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static void fm_set_fsm_print(RTLIL::Cell *cell, RTLIL::Module *module, FsmData &fsm_data, const char *prefix, FILE *f)
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{
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	std::string name = cell->parameters[ID::NAME].decode_string();
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	fprintf(f, "set_fsm_state_vector {");
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	for (int i = fsm_data.state_bits-1; i >= 0; i--)
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		fprintf(f, " %s_reg[%d]", name[0] == '\\' ?  name.substr(1).c_str() : name.c_str(), i);
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	fprintf(f, " } -name {%s_%s} {%s:/WORK/%s}\n", prefix, RTLIL::unescape_id(name).c_str(),
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			prefix, RTLIL::unescape_id(module->name).c_str());
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	fprintf(f, "set_fsm_encoding {");
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	for (int i = 0; i < GetSize(fsm_data.state_table); i++) {
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		fprintf(f, " s%d=2#", i);
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		for (int j = GetSize(fsm_data.state_table[i].bits)-1; j >= 0; j--)
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			fprintf(f, "%c", fsm_data.state_table[i].bits[j] == RTLIL::State::S1 ? '1' : '0');
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	}
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	fprintf(f, " } -name {%s_%s} {%s:/WORK/%s}\n",
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			prefix, RTLIL::unescape_id(name).c_str(),
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			prefix, RTLIL::unescape_id(module->name).c_str());
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}
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static void fsm_recode(RTLIL::Cell *cell, RTLIL::Module *module, FILE *fm_set_fsm_file, FILE *encfile, std::string default_encoding)
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{
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	std::string encoding = cell->attributes.count(ID::fsm_encoding) ? cell->attributes.at(ID::fsm_encoding).decode_string() : "auto";
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	log("Recoding FSM `%s' from module `%s' using `%s' encoding:\n", cell->name.c_str(), module->name.c_str(), encoding.c_str());
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	if (encoding != "none" && encoding != "user" && encoding != "one-hot" && encoding != "binary" && encoding != "auto") {
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		log("  unknown encoding `%s': using auto instead.\n", encoding.c_str());
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		encoding = "auto";
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	}
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	if (encoding == "none" || encoding == "user") {
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		log("  nothing to do for encoding `%s'.\n", encoding.c_str());
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		return;
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	}
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	FsmData fsm_data;
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	fsm_data.copy_from_cell(cell);
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	if (fm_set_fsm_file != NULL)
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		fm_set_fsm_print(cell, module, fsm_data, "r", fm_set_fsm_file);
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	if (encoding == "auto") {
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		if (!default_encoding.empty())
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			encoding = default_encoding;
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		else
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			encoding = GetSize(fsm_data.state_table) < 32 ? "one-hot" : "binary";
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		log("  mapping auto encoding to `%s` for this FSM.\n", encoding.c_str());
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	}
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	if (encoding == "one-hot") {
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		fsm_data.state_bits = fsm_data.state_table.size();
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	} else
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	if (encoding == "binary") {
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		int new_num_state_bits = ceil_log2(fsm_data.state_table.size());
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		if (fsm_data.state_bits == new_num_state_bits) {
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			log("  existing encoding is already a packed binary encoding.\n");
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			return;
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		}
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		fsm_data.state_bits = new_num_state_bits;
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	} else
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		log_error("FSM encoding `%s' is not supported!\n", encoding.c_str());
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	if (encfile)
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		fprintf(encfile, ".fsm %s %s\n", log_id(module), RTLIL::unescape_id(cell->parameters[ID::NAME].decode_string()).c_str());
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	int state_idx_counter = fsm_data.reset_state >= 0 ? 1 : 0;
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	for (int i = 0; i < int(fsm_data.state_table.size()); i++)
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	{
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		int state_idx = fsm_data.reset_state == i ? 0 : state_idx_counter++;
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		RTLIL::Const new_code;
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		if (encoding == "one-hot") {
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			new_code = RTLIL::Const(RTLIL::State::Sa, fsm_data.state_bits);
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			new_code.bits[state_idx] = RTLIL::State::S1;
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		} else
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		if (encoding == "binary") {
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			new_code = RTLIL::Const(state_idx, fsm_data.state_bits);
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		} else
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			log_abort();
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		log("  %s -> %s\n", fsm_data.state_table[i].as_string().c_str(), new_code.as_string().c_str());
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		if (encfile)
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			fprintf(encfile, ".map %s %s\n", fsm_data.state_table[i].as_string().c_str(), new_code.as_string().c_str());
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		fsm_data.state_table[i] = new_code;
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	}
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	if (fm_set_fsm_file != NULL)
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		fm_set_fsm_print(cell, module, fsm_data, "i", fm_set_fsm_file);
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	fsm_data.copy_to_cell(cell);
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}
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struct FsmRecodePass : public Pass {
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	FsmRecodePass() : Pass("fsm_recode", "recoding finite state machines") { }
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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("    fsm_recode [options] [selection]\n");
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		log("\n");
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		log("This pass reassign the state encodings for FSM cells. At the moment only\n");
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		log("one-hot encoding and binary encoding is supported.\n");
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		log("    -encoding <type>\n");
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		log("        specify the encoding scheme used for FSMs without the\n");
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		log("        'fsm_encoding' attribute or with the attribute set to `auto'.\n");
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		log("\n");
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		log("    -fm_set_fsm_file <file>\n");
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		log("        generate a file containing the mapping from old to new FSM encoding\n");
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		log("        in form of Synopsys Formality set_fsm_* commands.\n");
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		log("\n");
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		log("    -encfile <file>\n");
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		log("        write the mappings from old to new FSM encoding to a file in the\n");
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		log("        following format:\n");
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		log("\n");
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		log("            .fsm <module_name> <state_signal>\n");
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		log("            .map <old_bitpattern> <new_bitpattern>\n");
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		log("\n");
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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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		FILE *fm_set_fsm_file = NULL;
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		FILE *encfile = NULL;
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		std::string default_encoding;
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		log_header(design, "Executing FSM_RECODE pass (re-assigning FSM state encoding).\n");
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		size_t argidx;
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		for (argidx = 1; argidx < args.size(); argidx++) {
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			std::string arg = args[argidx];
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			if (arg == "-fm_set_fsm_file" && argidx+1 < args.size() && fm_set_fsm_file == NULL) {
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				fm_set_fsm_file = fopen(args[++argidx].c_str(), "w");
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				if (fm_set_fsm_file == NULL)
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					log_error("Can't open fm_set_fsm_file `%s' for writing: %s\n", args[argidx].c_str(), strerror(errno));
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				continue;
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			}
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			if (arg == "-encfile" && argidx+1 < args.size() && encfile == NULL) {
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				encfile = fopen(args[++argidx].c_str(), "w");
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				if (encfile == NULL)
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					log_error("Can't open encfile `%s' for writing: %s\n", args[argidx].c_str(), strerror(errno));
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				continue;
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			}
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			if (arg == "-encoding" && argidx+1 < args.size() && default_encoding.empty()) {
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				default_encoding = args[++argidx];
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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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		for (auto mod : design->selected_modules())
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			for (auto cell : mod->selected_cells())
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				if (cell->type == ID($fsm))
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					fsm_recode(cell, mod, fm_set_fsm_file, encfile, default_encoding);
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		if (fm_set_fsm_file != NULL)
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			fclose(fm_set_fsm_file);
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		if (encfile != NULL)
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			fclose(encfile);
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	}
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} FsmRecodePass;
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PRIVATE_NAMESPACE_END
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