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	Merge remote-tracking branch 'origin/master' into eddie/muxpack
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						1dd7e23a20
					
				
					 3 changed files with 72 additions and 13 deletions
				
			
		|  | @ -58,12 +58,21 @@ struct MuxcoverWorker | |||
| 	bool use_mux16; | ||||
| 	bool nodecode; | ||||
| 
 | ||||
| 	int cost_mux2; | ||||
| 	int cost_mux4; | ||||
| 	int cost_mux8; | ||||
| 	int cost_mux16; | ||||
| 
 | ||||
| 	MuxcoverWorker(Module *module) : module(module), sigmap(module) | ||||
| 	{ | ||||
| 		use_mux4 = false; | ||||
| 		use_mux8 = false; | ||||
| 		use_mux16 = false; | ||||
| 		nodecode = false; | ||||
| 		cost_mux2 = COST_MUX2; | ||||
| 		cost_mux4 = COST_MUX4; | ||||
| 		cost_mux8 = COST_MUX8; | ||||
| 		cost_mux16 = COST_MUX16; | ||||
| 		decode_mux_counter = 0; | ||||
| 	} | ||||
| 
 | ||||
|  | @ -157,7 +166,7 @@ struct MuxcoverWorker | |||
| 		if (std::get<2>(entry)) | ||||
| 			return 0; | ||||
| 
 | ||||
| 		return COST_MUX2 / GetSize(std::get<1>(entry)); | ||||
| 		return cost_mux2 / GetSize(std::get<1>(entry)); | ||||
| 	} | ||||
| 
 | ||||
| 	void implement_decode_mux(SigBit ctrl_bit) | ||||
|  | @ -209,7 +218,7 @@ struct MuxcoverWorker | |||
| 			mux.inputs.push_back(B); | ||||
| 			mux.selects.push_back(S1); | ||||
| 
 | ||||
| 			mux.cost += COST_MUX2; | ||||
| 			mux.cost += cost_mux2; | ||||
| 			mux.cost += find_best_cover(tree, A); | ||||
| 			mux.cost += find_best_cover(tree, B); | ||||
| 
 | ||||
|  | @ -247,7 +256,7 @@ struct MuxcoverWorker | |||
| 				mux.selects.push_back(S1); | ||||
| 				mux.selects.push_back(T1); | ||||
| 
 | ||||
| 				mux.cost += COST_MUX4; | ||||
| 				mux.cost += cost_mux4; | ||||
| 				mux.cost += find_best_cover(tree, A); | ||||
| 				mux.cost += find_best_cover(tree, B); | ||||
| 				mux.cost += find_best_cover(tree, C); | ||||
|  | @ -310,7 +319,7 @@ struct MuxcoverWorker | |||
| 				mux.selects.push_back(T1); | ||||
| 				mux.selects.push_back(U1); | ||||
| 
 | ||||
| 				mux.cost += COST_MUX8; | ||||
| 				mux.cost += cost_mux8; | ||||
| 				mux.cost += find_best_cover(tree, A); | ||||
| 				mux.cost += find_best_cover(tree, B); | ||||
| 				mux.cost += find_best_cover(tree, C); | ||||
|  | @ -414,7 +423,7 @@ struct MuxcoverWorker | |||
| 				mux.selects.push_back(U1); | ||||
| 				mux.selects.push_back(V1); | ||||
| 
 | ||||
| 				mux.cost += COST_MUX16; | ||||
| 				mux.cost += cost_mux16; | ||||
| 				mux.cost += find_best_cover(tree, A); | ||||
| 				mux.cost += find_best_cover(tree, B); | ||||
| 				mux.cost += find_best_cover(tree, C); | ||||
|  | @ -569,9 +578,11 @@ struct MuxcoverPass : public Pass { | |||
| 		log("\n"); | ||||
| 		log("Cover trees of $_MUX_ cells with $_MUX{4,8,16}_ cells\n"); | ||||
| 		log("\n"); | ||||
| 		log("    -mux4, -mux8, -mux16\n"); | ||||
| 		log("        Use the specified types of MUXes. If none of those options are used,\n"); | ||||
| 		log("        the effect is the same as if all of them where used.\n"); | ||||
| 		log("    -mux4[=cost], -mux8[=cost], -mux16[=cost]\n"); | ||||
| 		log("        Use the specified types of MUXes (with optional integer costs). If none\n"); | ||||
| 		log("        of these options are given, the effect is the same as if all of them are.\n"); | ||||
| 		log("        Default costs: $_MUX_ = %d, $_MUX4_ = %d,\n", COST_MUX2, COST_MUX4); | ||||
| 		log("                       $_MUX8_ = %d, $_MUX16_ = %d\n", COST_MUX8, COST_MUX16); | ||||
| 		log("\n"); | ||||
| 		log("    -nodecode\n"); | ||||
| 		log("        Do not insert decoder logic. This reduces the number of possible\n"); | ||||
|  | @ -587,23 +598,39 @@ struct MuxcoverPass : public Pass { | |||
| 		bool use_mux8 = false; | ||||
| 		bool use_mux16 = false; | ||||
| 		bool nodecode = false; | ||||
| 		int cost_mux4 = COST_MUX4; | ||||
| 		int cost_mux8 = COST_MUX8; | ||||
| 		int cost_mux16 = COST_MUX16; | ||||
| 
 | ||||
| 		size_t argidx; | ||||
| 		for (argidx = 1; argidx < args.size(); argidx++) | ||||
| 		{ | ||||
| 			if (args[argidx] == "-mux4") { | ||||
| 			const auto &arg = args[argidx]; | ||||
| 			if (arg.size() >= 5 && arg.substr(0,5) == "-mux4") { | ||||
| 				use_mux4 = true; | ||||
| 				if (arg.size() > 5) { | ||||
| 					if (arg[5] != '=') break; | ||||
| 					cost_mux4 = atoi(arg.substr(5).c_str()); | ||||
| 				} | ||||
| 				continue; | ||||
| 			} | ||||
| 			if (args[argidx] == "-mux8") { | ||||
| 			if (arg.size() >= 5 && arg.substr(0,5) == "-mux8") { | ||||
| 				use_mux8 = true; | ||||
| 				if (arg.size() > 5) { | ||||
| 					if (arg[5] != '=') break; | ||||
| 					cost_mux8 = atoi(arg.substr(5).c_str()); | ||||
| 				} | ||||
| 				continue; | ||||
| 			} | ||||
| 			if (args[argidx] == "-mux16") { | ||||
| 			if (arg.size() >= 6 && arg.substr(0,6) == "-mux16") { | ||||
| 				use_mux16 = true; | ||||
| 				if (arg.size() > 6) { | ||||
| 					if (arg[6] != '=') break; | ||||
| 					cost_mux16 = atoi(arg.substr(6).c_str()); | ||||
| 				} | ||||
| 				continue; | ||||
| 			} | ||||
| 			if (args[argidx] == "-nodecode") { | ||||
| 			if (arg == "-nodecode") { | ||||
| 				nodecode = true; | ||||
| 				continue; | ||||
| 			} | ||||
|  | @ -623,6 +650,9 @@ struct MuxcoverPass : public Pass { | |||
| 			worker.use_mux4 = use_mux4; | ||||
| 			worker.use_mux8 = use_mux8; | ||||
| 			worker.use_mux16 = use_mux16; | ||||
| 			worker.cost_mux4 = cost_mux4; | ||||
| 			worker.cost_mux8 = cost_mux8; | ||||
| 			worker.cost_mux16 = cost_mux16; | ||||
| 			worker.nodecode = nodecode; | ||||
| 			worker.run(); | ||||
| 		} | ||||
|  |  | |||
|  | @ -973,6 +973,30 @@ parameter RGB1_CURRENT = "0b000000"; | |||
| parameter RGB2_CURRENT = "0b000000"; | ||||
| endmodule | ||||
| 
 | ||||
| (* blackbox *) | ||||
| module SB_LED_DRV_CUR( | ||||
| 	input EN, | ||||
| 	output LEDPU | ||||
| ); | ||||
| endmodule | ||||
| 
 | ||||
| (* blackbox *) | ||||
| module SB_RGB_DRV( | ||||
| 	input RGBLEDEN, | ||||
| 	input RGB0PWM, | ||||
| 	input RGB1PWM, | ||||
| 	input RGB2PWM, | ||||
| 	input RGBPU, | ||||
| 	output RGB0, | ||||
| 	output RGB1, | ||||
| 	output RGB2 | ||||
| ); | ||||
| parameter CURRENT_MODE = "0b0"; | ||||
| parameter RGB0_CURRENT = "0b000000"; | ||||
| parameter RGB1_CURRENT = "0b000000"; | ||||
| parameter RGB2_CURRENT = "0b000000"; | ||||
| endmodule | ||||
| 
 | ||||
| (* blackbox *) | ||||
| module SB_I2C( | ||||
| 	input  SBCLKI, | ||||
|  |  | |||
|  | @ -2,9 +2,14 @@ | |||
| 
 | ||||
| set -e | ||||
| 
 | ||||
| # NB: *.aag and *.aig must contain a symbol table naming the primary | ||||
| #     inputs and outputs, otherwise ABC and Yosys will name them | ||||
| #     arbitrarily (and inconsistently with each other). | ||||
| 
 | ||||
| for aag in *.aag; do | ||||
|     # Since ABC cannot read *.aag, read the *.aig instead | ||||
|     # (which would have been created by the reference aig2aig utility) | ||||
|     # (which would have been created by the reference aig2aig utility, | ||||
|     #  available from http://fmv.jku.at/aiger/) | ||||
|     ../../yosys-abc -c "read -c ${aag%.*}.aig; write ${aag%.*}_ref.v" | ||||
|     ../../yosys -p " | ||||
| read_verilog ${aag%.*}_ref.v | ||||
|  |  | |||
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