570 lines
23 KiB
C++
570 lines
23 KiB
C++
/*
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* nextpnr -- Next Generation Place and Route
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*
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* Copyright (C) 2018 David Shah <david@symbioticeda.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 <algorithm>
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#include <iterator>
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#include <unordered_set>
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#include "cells.h"
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#include "design_utils.h"
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#include "log.h"
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#include "util.h"
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NEXTPNR_NAMESPACE_BEGIN
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static bool is_nextpnr_iob(Context *ctx, CellInfo *cell)
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{
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return cell->type == ctx->id("$nextpnr_ibuf") || cell->type == ctx->id("$nextpnr_obuf") ||
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cell->type == ctx->id("$nextpnr_iobuf");
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}
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class Ecp5Packer
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{
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public:
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Ecp5Packer(Context *ctx) : ctx(ctx){};
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private:
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// Process the contents of packed_cells and new_cells
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void flush_cells()
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{
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for (auto pcell : packed_cells) {
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ctx->cells.erase(pcell);
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}
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for (auto &ncell : new_cells) {
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ctx->cells[ncell->name] = std::move(ncell);
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}
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packed_cells.clear();
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new_cells.clear();
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}
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// Find FFs associated with LUTs, or LUT expansion muxes
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void find_lutff_pairs()
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{
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log_info("Finding LUTFF pairs...\n");
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for (auto cell : sorted(ctx->cells)) {
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CellInfo *ci = cell.second;
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if (is_lut(ctx, ci) || is_pfumx(ctx, ci) || is_l6mux(ctx, ci)) {
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NetInfo *znet = ci->ports.at(ctx->id("Z")).net;
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if (znet != nullptr) {
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CellInfo *ff = net_only_drives(ctx, znet, is_ff, ctx->id("DI"), false);
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if (ff != nullptr) {
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lutffPairs[ci->name] = ff->name;
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fflutPairs[ff->name] = ci->name;
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}
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}
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}
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}
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}
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const NetInfo *net_or_nullptr(CellInfo *cell, IdString port)
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{
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auto fnd = cell->ports.find(port);
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if (fnd == cell->ports.end())
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return nullptr;
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else
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return fnd->second.net;
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}
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// Return whether two FFs can be packed together in the same slice
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bool can_pack_ffs(CellInfo *ff0, CellInfo *ff1)
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{
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if (str_or_default(ff0->params, ctx->id("GSR"), "DISABLED") !=
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str_or_default(ff1->params, ctx->id("GSR"), "DISABLED"))
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return false;
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if (str_or_default(ff0->params, ctx->id("SRMODE"), "LSR_OVER_CE") !=
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str_or_default(ff1->params, ctx->id("SRMODE"), "LSR_OVER_CE"))
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return false;
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if (str_or_default(ff0->params, ctx->id("CEMUX"), "1") != str_or_default(ff1->params, ctx->id("CEMUX"), "1"))
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return false;
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if (str_or_default(ff0->params, ctx->id("LSRMUX"), "LSR") !=
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str_or_default(ff1->params, ctx->id("LSRMUX"), "LSR"))
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return false;
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if (str_or_default(ff0->params, ctx->id("CLKMUX"), "CLK") !=
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str_or_default(ff1->params, ctx->id("CLKMUX"), "CLK"))
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return false;
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if (net_or_nullptr(ff0, ctx->id("CLK")) != net_or_nullptr(ff1, ctx->id("CLK")))
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return false;
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if (net_or_nullptr(ff0, ctx->id("CE")) != net_or_nullptr(ff1, ctx->id("CE")))
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return false;
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if (net_or_nullptr(ff0, ctx->id("LSR")) != net_or_nullptr(ff1, ctx->id("LSR")))
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return false;
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return true;
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}
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// Return true if two LUTs can be paired considering FF compatibility
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bool can_pack_lutff(IdString lut0, IdString lut1)
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{
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auto ff0 = lutffPairs.find(lut0), ff1 = lutffPairs.find(lut1);
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if (ff0 != lutffPairs.end() && ff1 != lutffPairs.end()) {
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return can_pack_ffs(ctx->cells.at(ff0->second).get(), ctx->cells.at(ff1->second).get());
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} else {
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return true;
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}
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}
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// Find "closely connected" LUTs and pair them together
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void pair_luts()
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{
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log_info("Finding LUT-LUT pairs...\n");
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std::unordered_set<IdString> procdLuts;
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for (auto cell : sorted(ctx->cells)) {
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CellInfo *ci = cell.second;
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if (is_lut(ctx, ci) && procdLuts.find(cell.first) == procdLuts.end()) {
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NetInfo *znet = ci->ports.at(ctx->id("Z")).net;
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if (znet != nullptr) {
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for (auto user : znet->users) {
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if (is_lut(ctx, user.cell) && user.cell != ci &&
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procdLuts.find(user.cell->name) == procdLuts.end()) {
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if (can_pack_lutff(ci->name, user.cell->name)) {
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procdLuts.insert(ci->name);
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procdLuts.insert(user.cell->name);
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lutPairs[ci->name] = user.cell->name;
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goto paired;
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}
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}
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}
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if (false) {
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paired:
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continue;
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}
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}
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if (lutffPairs.find(ci->name) != lutffPairs.end()) {
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NetInfo *qnet = ctx->cells.at(lutffPairs[ci->name])->ports.at(ctx->id("Q")).net;
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if (qnet != nullptr) {
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for (auto user : qnet->users) {
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if (is_lut(ctx, user.cell) && user.cell != ci &&
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procdLuts.find(user.cell->name) == procdLuts.end()) {
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if (can_pack_lutff(ci->name, user.cell->name)) {
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procdLuts.insert(ci->name);
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procdLuts.insert(user.cell->name);
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lutPairs[ci->name] = user.cell->name;
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goto paired_ff;
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}
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}
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}
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if (false) {
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paired_ff:
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continue;
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}
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}
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}
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for (const char *inp : {"A", "B", "C", "D"}) {
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NetInfo *innet = ci->ports.at(ctx->id(inp)).net;
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if (innet != nullptr && innet->driver.cell != nullptr) {
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CellInfo *drv = innet->driver.cell;
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if (is_lut(ctx, drv) && drv != ci && innet->driver.port == ctx->id("Z")) {
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if (procdLuts.find(drv->name) == procdLuts.end()) {
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if (can_pack_lutff(ci->name, drv->name)) {
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procdLuts.insert(ci->name);
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procdLuts.insert(drv->name);
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lutPairs[ci->name] = drv->name;
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goto paired_inlut;
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}
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}
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} else if (is_ff(ctx, drv) && innet->driver.port == ctx->id("Q")) {
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auto fflut = fflutPairs.find(drv->name);
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if (fflut != fflutPairs.end() && fflut->second != ci->name &&
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procdLuts.find(fflut->second) == procdLuts.end()) {
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if (can_pack_lutff(ci->name, fflut->second)) {
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procdLuts.insert(ci->name);
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procdLuts.insert(fflut->second);
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lutPairs[ci->name] = fflut->second;
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goto paired_inlut;
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}
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}
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}
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}
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}
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if (false) {
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paired_inlut:
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continue;
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}
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}
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}
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}
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// Simple "packer" to remove nextpnr IOBUFs, this assumes IOBUFs are manually instantiated
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void pack_io()
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{
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log_info("Packing IOs..\n");
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for (auto cell : sorted(ctx->cells)) {
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CellInfo *ci = cell.second;
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if (is_nextpnr_iob(ctx, ci)) {
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CellInfo *trio = nullptr;
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if (ci->type == ctx->id("$nextpnr_ibuf") || ci->type == ctx->id("$nextpnr_iobuf")) {
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trio = net_only_drives(ctx, ci->ports.at(ctx->id("O")).net, is_trellis_io, ctx->id("B"), true, ci);
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} else if (ci->type == ctx->id("$nextpnr_obuf")) {
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trio = net_only_drives(ctx, ci->ports.at(ctx->id("I")).net, is_trellis_io, ctx->id("B"), true, ci);
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}
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if (trio != nullptr) {
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// Trivial case, TRELLIS_IO used. Just destroy the net and the
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// iobuf
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log_info("%s feeds TRELLIS_IO %s, removing %s %s.\n", ci->name.c_str(ctx), trio->name.c_str(ctx),
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ci->type.c_str(ctx), ci->name.c_str(ctx));
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NetInfo *net = trio->ports.at(ctx->id("B")).net;
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if (net != nullptr) {
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ctx->nets.erase(net->name);
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trio->ports.at(ctx->id("B")).net = nullptr;
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}
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if (ci->type == ctx->id("$nextpnr_iobuf")) {
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NetInfo *net2 = ci->ports.at(ctx->id("I")).net;
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if (net2 != nullptr) {
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ctx->nets.erase(net2->name);
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}
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}
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} else {
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log_error("TRELLIS_IO required on all top level IOs...\n");
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}
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packed_cells.insert(ci->name);
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std::copy(ci->attrs.begin(), ci->attrs.end(), std::inserter(trio->attrs, trio->attrs.begin()));
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auto loc_attr = trio->attrs.find(ctx->id("LOC"));
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if (loc_attr != trio->attrs.end()) {
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std::string pin = loc_attr->second;
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BelId pinBel = ctx->getPackagePinBel(pin);
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if (pinBel == BelId()) {
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log_error("IO pin '%s' constrained to pin '%s', which does not exist for package '%s'.\n",
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trio->name.c_str(ctx), pin.c_str(), ctx->args.package.c_str());
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} else {
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log_info("pin '%s' constrained to Bel '%s'.\n", trio->name.c_str(ctx),
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ctx->getBelName(pinBel).c_str(ctx));
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}
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trio->attrs[ctx->id("BEL")] = ctx->getBelName(pinBel).str(ctx);
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}
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}
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}
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flush_cells();
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}
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// Pass to pack LUT5s into a newly created slice
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void pack_lut5s()
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{
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log_info("Packing LUT5s...\n");
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for (auto cell : sorted(ctx->cells)) {
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CellInfo *ci = cell.second;
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if (is_pfumx(ctx, ci)) {
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std::unique_ptr<CellInfo> packed =
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create_ecp5_cell(ctx, ctx->id("TRELLIS_SLICE"), ci->name.str(ctx) + "_SLICE");
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NetInfo *f0 = ci->ports.at(ctx->id("BLUT")).net;
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if (f0 == nullptr)
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log_error("PFUMX '%s' has disconnected port 'BLUT'\n", ci->name.c_str(ctx));
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NetInfo *f1 = ci->ports.at(ctx->id("ALUT")).net;
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if (f1 == nullptr)
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log_error("PFUMX '%s' has disconnected port 'ALUT'\n", ci->name.c_str(ctx));
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CellInfo *lut0 = net_driven_by(ctx, f0, is_lut, ctx->id("Z"));
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CellInfo *lut1 = net_driven_by(ctx, f1, is_lut, ctx->id("Z"));
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if (lut0 == nullptr)
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log_error("PFUMX '%s' has BLUT driven by cell other than a LUT\n", ci->name.c_str(ctx));
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if (lut1 == nullptr)
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log_error("PFUMX '%s' has ALUT driven by cell other than a LUT\n", ci->name.c_str(ctx));
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replace_port(lut0, ctx->id("A"), packed.get(), ctx->id("A0"));
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replace_port(lut0, ctx->id("B"), packed.get(), ctx->id("B0"));
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replace_port(lut0, ctx->id("C"), packed.get(), ctx->id("C0"));
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replace_port(lut0, ctx->id("D"), packed.get(), ctx->id("D0"));
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replace_port(lut1, ctx->id("A"), packed.get(), ctx->id("A1"));
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replace_port(lut1, ctx->id("B"), packed.get(), ctx->id("B1"));
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replace_port(lut1, ctx->id("C"), packed.get(), ctx->id("C1"));
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replace_port(lut1, ctx->id("D"), packed.get(), ctx->id("D1"));
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replace_port(ci, ctx->id("C0"), packed.get(), ctx->id("M0"));
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replace_port(ci, ctx->id("Z"), packed.get(), ctx->id("OFX0"));
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packed->params[ctx->id("LUT0_INITVAL")] = str_or_default(lut0->params, ctx->id("INIT"), "0");
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packed->params[ctx->id("LUT1_INITVAL")] = str_or_default(lut1->params, ctx->id("INIT"), "0");
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ctx->nets.erase(f0->name);
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ctx->nets.erase(f1->name);
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sliceUsage[packed->name].lut0_used = true;
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sliceUsage[packed->name].lut1_used = true;
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sliceUsage[packed->name].mux5_used = true;
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if (lutffPairs.find(ci->name) != lutffPairs.end()) {
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CellInfo *ff = ctx->cells.at(lutffPairs[ci->name]).get();
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ff_to_slice(ctx, ff, packed.get(), 0, true);
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packed_cells.insert(ff->name);
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sliceUsage[packed->name].ff0_used = true;
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lutffPairs.erase(ci->name);
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fflutPairs.erase(ff->name);
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}
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new_cells.push_back(std::move(packed));
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packed_cells.insert(lut0->name);
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packed_cells.insert(lut1->name);
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packed_cells.insert(ci->name);
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}
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}
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flush_cells();
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}
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// Pack LUTs that have been paired together
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void pack_lut_pairs()
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{
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log_info("Packing paired LUTs into a SLICE...\n");
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for (auto pair : lutPairs) {
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CellInfo *lut0 = ctx->cells.at(pair.first).get();
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CellInfo *lut1 = ctx->cells.at(pair.second).get();
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std::unique_ptr<CellInfo> slice =
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create_ecp5_cell(ctx, ctx->id("TRELLIS_SLICE"), lut0->name.str(ctx) + "_SLICE");
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lut_to_slice(ctx, lut0, slice.get(), 0);
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lut_to_slice(ctx, lut1, slice.get(), 1);
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auto ff0 = lutffPairs.find(lut0->name);
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if (ff0 != lutffPairs.end()) {
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ff_to_slice(ctx, ctx->cells.at(ff0->second).get(), slice.get(), 0, true);
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packed_cells.insert(ff0->second);
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fflutPairs.erase(ff0->second);
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lutffPairs.erase(lut0->name);
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}
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auto ff1 = lutffPairs.find(lut1->name);
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if (ff1 != lutffPairs.end()) {
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ff_to_slice(ctx, ctx->cells.at(ff1->second).get(), slice.get(), 1, true);
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packed_cells.insert(ff1->second);
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fflutPairs.erase(ff1->second);
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lutffPairs.erase(lut1->name);
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}
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new_cells.push_back(std::move(slice));
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packed_cells.insert(lut0->name);
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packed_cells.insert(lut1->name);
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}
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flush_cells();
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}
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// Pack single LUTs that weren't paired into their own slice,
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// with an optional FF also
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void pack_remaining_luts()
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{
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log_info("Packing unpaired LUTs into a SLICE...\n");
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for (auto cell : sorted(ctx->cells)) {
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CellInfo *ci = cell.second;
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if (is_lut(ctx, ci)) {
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std::unique_ptr<CellInfo> slice =
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create_ecp5_cell(ctx, ctx->id("TRELLIS_SLICE"), ci->name.str(ctx) + "_SLICE");
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lut_to_slice(ctx, ci, slice.get(), 0);
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auto ff = lutffPairs.find(ci->name);
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if (ff != lutffPairs.end()) {
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ff_to_slice(ctx, ctx->cells.at(ff->second).get(), slice.get(), 0, true);
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packed_cells.insert(ff->second);
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fflutPairs.erase(ff->second);
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lutffPairs.erase(ci->name);
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}
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new_cells.push_back(std::move(slice));
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packed_cells.insert(ci->name);
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}
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}
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flush_cells();
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}
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// Pack flipflops that weren't paired with a LUT
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void pack_remaining_ffs()
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{
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log_info("Packing unpaired FFs into a SLICE...\n");
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for (auto cell : sorted(ctx->cells)) {
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CellInfo *ci = cell.second;
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if (is_ff(ctx, ci)) {
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std::unique_ptr<CellInfo> slice =
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create_ecp5_cell(ctx, ctx->id("TRELLIS_SLICE"), ci->name.str(ctx) + "_SLICE");
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ff_to_slice(ctx, ci, slice.get(), 0, false);
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new_cells.push_back(std::move(slice));
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packed_cells.insert(ci->name);
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}
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}
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flush_cells();
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}
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void set_lut_input_constant(CellInfo *cell, IdString input, bool value)
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{
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int index = std::string("ABCD").find(input.str(ctx));
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int init = int_or_default(cell->params, ctx->id("INIT"));
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int new_init = 0;
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for (int i = 0; i < 16; i++) {
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if (((i >> index) & 0x1) != value) {
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int other_i = (i & (~(1 << index))) | (value << index);
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if ((init >> other_i) & 0x1)
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new_init |= (1 << i);
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} else {
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if ((init >> i) & 0x1)
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new_init |= (1 << i);
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}
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}
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cell->params[ctx->id("INIT")] = std::to_string(new_init);
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cell->ports.at(input).net = nullptr;
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}
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// Merge a net into a constant net
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void set_net_constant(const Context *ctx, NetInfo *orig, NetInfo *constnet, bool constval)
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{
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orig->driver.cell = nullptr;
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for (auto user : orig->users) {
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if (user.cell != nullptr) {
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CellInfo *uc = user.cell;
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if (ctx->verbose)
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log_info("%s user %s\n", orig->name.c_str(ctx), uc->name.c_str(ctx));
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if (is_lut(ctx, uc)) {
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set_lut_input_constant(uc, user.port, constval);
|
|
} else if (is_ff(ctx, uc) && user.port == ctx->id("CE")) {
|
|
uc->params[ctx->id("CEMUX")] = constval ? "1" : "0";
|
|
uc->ports[user.port].net = nullptr;
|
|
} else if (is_ff(ctx, uc) && user.port == ctx->id("LSR") &&
|
|
((!constval && str_or_default(uc->params, ctx->id("LSRMUX"), "LSR") == "LSR") ||
|
|
(constval && str_or_default(uc->params, ctx->id("LSRMUX"), "LSR") == "INV"))) {
|
|
uc->ports[user.port].net = nullptr;
|
|
} else {
|
|
uc->ports[user.port].net = constnet;
|
|
constnet->users.push_back(user);
|
|
}
|
|
}
|
|
}
|
|
orig->users.clear();
|
|
}
|
|
|
|
// Pack constants (simple implementation)
|
|
void pack_constants()
|
|
{
|
|
log_info("Packing constants..\n");
|
|
|
|
std::unique_ptr<CellInfo> gnd_cell = create_ecp5_cell(ctx, ctx->id("LUT4"), "$PACKER_GND");
|
|
gnd_cell->params[ctx->id("INIT")] = "0";
|
|
std::unique_ptr<NetInfo> gnd_net = std::unique_ptr<NetInfo>(new NetInfo);
|
|
gnd_net->name = ctx->id("$PACKER_GND_NET");
|
|
gnd_net->driver.cell = gnd_cell.get();
|
|
gnd_net->driver.port = ctx->id("Z");
|
|
gnd_cell->ports.at(ctx->id("Z")).net = gnd_net.get();
|
|
|
|
std::unique_ptr<CellInfo> vcc_cell = create_ecp5_cell(ctx, ctx->id("LUT4"), "$PACKER_VCC");
|
|
vcc_cell->params[ctx->id("INIT")] = "65535";
|
|
std::unique_ptr<NetInfo> vcc_net = std::unique_ptr<NetInfo>(new NetInfo);
|
|
vcc_net->name = ctx->id("$PACKER_VCC_NET");
|
|
vcc_net->driver.cell = vcc_cell.get();
|
|
vcc_net->driver.port = ctx->id("Z");
|
|
vcc_cell->ports.at(ctx->id("Z")).net = vcc_net.get();
|
|
|
|
std::vector<IdString> dead_nets;
|
|
|
|
bool gnd_used = false, vcc_used = false;
|
|
|
|
for (auto net : sorted(ctx->nets)) {
|
|
NetInfo *ni = net.second;
|
|
if (ni->driver.cell != nullptr && ni->driver.cell->type == ctx->id("GND")) {
|
|
IdString drv_cell = ni->driver.cell->name;
|
|
set_net_constant(ctx, ni, gnd_net.get(), false);
|
|
gnd_used = true;
|
|
dead_nets.push_back(net.first);
|
|
ctx->cells.erase(drv_cell);
|
|
} else if (ni->driver.cell != nullptr && ni->driver.cell->type == ctx->id("VCC")) {
|
|
IdString drv_cell = ni->driver.cell->name;
|
|
set_net_constant(ctx, ni, vcc_net.get(), true);
|
|
vcc_used = true;
|
|
dead_nets.push_back(net.first);
|
|
ctx->cells.erase(drv_cell);
|
|
}
|
|
}
|
|
|
|
if (gnd_used) {
|
|
ctx->cells[gnd_cell->name] = std::move(gnd_cell);
|
|
ctx->nets[gnd_net->name] = std::move(gnd_net);
|
|
}
|
|
if (vcc_used) {
|
|
ctx->cells[vcc_cell->name] = std::move(vcc_cell);
|
|
ctx->nets[vcc_net->name] = std::move(vcc_net);
|
|
}
|
|
|
|
for (auto dn : dead_nets) {
|
|
ctx->nets.erase(dn);
|
|
}
|
|
}
|
|
|
|
public:
|
|
void pack()
|
|
{
|
|
pack_io();
|
|
pack_constants();
|
|
find_lutff_pairs();
|
|
pack_lut5s();
|
|
pair_luts();
|
|
pack_lut_pairs();
|
|
pack_remaining_luts();
|
|
pack_remaining_ffs();
|
|
}
|
|
|
|
private:
|
|
Context *ctx;
|
|
|
|
std::unordered_set<IdString> packed_cells;
|
|
std::vector<std::unique_ptr<CellInfo>> new_cells;
|
|
|
|
struct SliceUsage
|
|
{
|
|
bool lut0_used = false, lut1_used = false;
|
|
bool ccu2_used = false, dpram_used = false, ramw_used = false;
|
|
bool ff0_used = false, ff1_used = false;
|
|
bool mux5_used = false, muxx_used = false;
|
|
};
|
|
|
|
std::unordered_map<IdString, SliceUsage> sliceUsage;
|
|
std::unordered_map<IdString, IdString> lutffPairs;
|
|
std::unordered_map<IdString, IdString> fflutPairs;
|
|
std::unordered_map<IdString, IdString> lutPairs;
|
|
};
|
|
// Main pack function
|
|
bool Arch::pack()
|
|
{
|
|
Context *ctx = getCtx();
|
|
try {
|
|
log_break();
|
|
Ecp5Packer(ctx).pack();
|
|
log_info("Checksum: 0x%08x\n", ctx->checksum());
|
|
assignArchInfo();
|
|
return true;
|
|
} catch (log_execution_error_exception) {
|
|
assignArchInfo();
|
|
return false;
|
|
}
|
|
}
|
|
|
|
void Arch::assignArchInfo()
|
|
{
|
|
for (auto cell : sorted(cells)) {
|
|
CellInfo *ci = cell.second;
|
|
if (ci->type == id_TRELLIS_SLICE) {
|
|
if (ci->ports.count(id_CLK) && ci->ports[id_CLK].net != nullptr)
|
|
ci->sliceInfo.clk_sig = ci->ports[id_CLK].net->name;
|
|
else
|
|
ci->sliceInfo.clk_sig = IdString();
|
|
|
|
if (ci->ports.count(id_LSR) && ci->ports[id_LSR].net != nullptr)
|
|
ci->sliceInfo.lsr_sig = ci->ports[id_LSR].net->name;
|
|
else
|
|
ci->sliceInfo.lsr_sig = IdString();
|
|
|
|
ci->sliceInfo.clkmux = id(str_or_default(ci->params, id_CLKMUX, "CLK"));
|
|
ci->sliceInfo.lsrmux = id(str_or_default(ci->params, id_LSRMUX, "LSR"));
|
|
ci->sliceInfo.srmode = id(str_or_default(ci->params, id_SRMODE, "LSR_OVER_CE"));
|
|
}
|
|
}
|
|
}
|
|
|
|
NEXTPNR_NAMESPACE_END
|