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Merge remote-tracking branch 'upstream/master'
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6c361bb198
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@ -164,6 +164,7 @@ struct FirrtlWorker
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};
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/* Memories defined within this module. */
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struct memory {
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Cell *pCell; // for error reporting
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string name; // memory name
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int abits; // number of address bits
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int size; // size (in units) of the memory
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@ -174,8 +175,37 @@ struct FirrtlWorker
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vector<write_port> write_ports;
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std::string init_file;
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std::string init_file_srcFileSpec;
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memory(string name, int abits, int size, int width) : name(name), abits(abits), size(size), width(width), read_latency(0), write_latency(1), init_file(""), init_file_srcFileSpec("") {}
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memory() : read_latency(0), write_latency(1), init_file(""), init_file_srcFileSpec(""){}
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string srcLine;
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memory(Cell *pCell, string name, int abits, int size, int width) : pCell(pCell), name(name), abits(abits), size(size), width(width), read_latency(0), write_latency(1), init_file(""), init_file_srcFileSpec("") {
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// Provide defaults for abits or size if one (but not the other) is specified.
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if (this->abits == 0 && this->size != 0) {
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this->abits = ceil_log2(this->size);
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} else if (this->abits != 0 && this->size == 0) {
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this->size = 1 << this->abits;
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}
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// Sanity-check this construction.
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if (this->name == "") {
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log_error("Nameless memory%s\n", this->atLine());
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}
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if (this->abits == 0 && this->size == 0) {
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log_error("Memory %s has zero address bits and size%s\n", this->name.c_str(), this->atLine());
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}
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if (this->width == 0) {
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log_error("Memory %s has zero width%s\n", this->name.c_str(), this->atLine());
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}
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}
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// We need a default constructor for the dict insert.
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memory() : pCell(0), read_latency(0), write_latency(1), init_file(""), init_file_srcFileSpec(""){}
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const char *atLine() {
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if (srcLine == "") {
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if (pCell) {
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auto p = pCell->attributes.find("\\src");
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srcLine = " at " + p->second.decode_string();
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}
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}
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return srcLine.c_str();
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}
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void add_memory_read_port(read_port &rp) {
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read_ports.push_back(rp);
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}
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@ -604,7 +634,7 @@ struct FirrtlWorker
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int abits = cell->parameters.at("\\ABITS").as_int();
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int width = cell->parameters.at("\\WIDTH").as_int();
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int size = cell->parameters.at("\\SIZE").as_int();
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memory m(mem_id, abits, size, width);
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memory m(cell, mem_id, abits, size, width);
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int rd_ports = cell->parameters.at("\\RD_PORTS").as_int();
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int wr_ports = cell->parameters.at("\\WR_PORTS").as_int();
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@ -681,6 +711,8 @@ struct FirrtlWorker
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{
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std::string cell_type = fid(cell->type);
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std::string mem_id = make_id(cell->parameters["\\MEMID"].decode_string());
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int abits = cell->parameters.at("\\ABITS").as_int();
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int width = cell->parameters.at("\\WIDTH").as_int();
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memory *mp = nullptr;
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if (cell->type == "$meminit" ) {
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log_error("$meminit (%s.%s.%s) currently unsupported\n", log_id(module), log_id(cell), mem_id.c_str());
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@ -693,6 +725,11 @@ struct FirrtlWorker
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Const clk_enable = cell->parameters.at("\\CLK_ENABLE");
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Const clk_polarity = cell->parameters.at("\\CLK_POLARITY");
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// Do we already have an entry for this memory?
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if (memories.count(mem_id) == 0) {
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memory m(cell, mem_id, abits, 0, width);
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register_memory(m);
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}
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mp = &memories.at(mem_id);
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int portNum = 0;
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bool transparency = false;
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@ -890,7 +927,7 @@ struct FirrtlWorker
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// If we have any memory definitions, output them.
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for (auto kv : memories) {
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memory m = kv.second;
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memory &m = kv.second;
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f << stringf(" mem %s:\n", m.name.c_str());
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f << stringf(" data-type => UInt<%d>\n", m.width);
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f << stringf(" depth => %d\n", m.size);
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@ -291,7 +291,7 @@ struct QwpWorker
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// gaussian elimination
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for (int i = 0; i < N; i++)
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{
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if (config.verbose && ((i+1) % (N/15)) == 0)
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if (config.verbose && N > 15 && ((i+1) % (N/15)) == 0)
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log("> Solved %d%%: %d/%d\n", (100*(i+1))/N, i+1, N);
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// find best row
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@ -180,6 +180,8 @@ struct WreduceWorker
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}
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auto info = mi.query(sig_q[i]);
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if (info == nullptr)
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return;
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if (!info->is_output && GetSize(info->ports) == 1 && !keep_bits.count(mi.sigmap(sig_q[i]))) {
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remove_init_bits.insert(sig_q[i]);
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sig_d.remove(i);
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@ -1169,6 +1169,7 @@ struct SatPass : public Pass {
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if (args[argidx] == "-tempinduct-def") {
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tempinduct = true;
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tempinduct_def = true;
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enable_undef = true;
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continue;
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}
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if (args[argidx] == "-tempinduct-baseonly") {
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@ -0,0 +1,22 @@
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module top
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(
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input [7:0] data_a,
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input [6:1] addr_a,
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input we_a, clk,
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output reg [7:0] q_a
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);
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// Declare the RAM variable
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reg [7:0] ram[63:0];
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// Port A
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always @ (posedge clk)
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begin
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if (we_a)
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begin
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ram[addr_a] <= data_a;
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q_a <= data_a;
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end
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q_a <= ram[addr_a];
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end
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endmodule
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@ -16,6 +16,7 @@ operators.v $pow
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partsel.v drops modules
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process.v drops modules
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realexpr.v drops modules
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retime.v Initial value (11110101) for (retime_test.ff) not supported
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scopes.v original verilog issues ( -x where x isn't declared signed)
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sincos.v $adff
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specify.v no code (empty module generates error
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