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#include <ot/timer/pin.hpp>
#include <ot/timer/arc.hpp>
#include <ot/timer/scc.hpp>
namespace ot {
// Constructor
SCC::SCC(std::vector<Pin*>&& pins) : _pins {std::move(pins)} {
for(auto pin : _pins) {
pin->_scc = this;
}
}
// Function: _is_entry
bool SCC::_is_entry(const Pin& to) const {
assert(to._scc == this);
for(auto arc : to._fanin) {
if(auto& from = arc->_from; from._scc != this) {
return true;
}
}
return false;
}
// Function: _is_exit
bool SCC::_is_exit(const Pin& from) const {
assert(from._scc == this);
for(auto arc : from._fanout) {
if(auto& to = arc->_to; to._scc != this) {
return true;
}
}
return false;
}
// Function: _dump
std::string SCC::_dump() const {
std::ostringstream os;
os << "digraph SCC {\n";
for(auto from : _pins) {
os << " \"" << from->_name << "\";\n";
for(auto& arc : from->_fanout) {
if(from->_scc == arc->_to._scc) {
os << " \""
<< from->_name << "\" -> \"" << arc->_to._name
<< "\";\n";
}
}
}
os << "}\n";
return os.str();
}
// Procedure: _clear
void SCC::_clear() {
// unmark the scc pins and arcs
for(auto pin : _pins) {
for(auto arc : pin->_fanin) {
if(arc->_from._scc == this) {
arc->_remove_state(Arc::LOOP_BREAKER);
}
}
for(auto arc : pin->_fanout) {
if(arc->_to._scc == this) {
arc->_remove_state(Arc::LOOP_BREAKER);
}
}
pin->_scc = nullptr;
}
_pins.clear();
}
// Procedure: _unloop
void SCC::_unloop(Pin& from) {
assert(!from._has_state(Pin::UNLOOP_CAND) && !from._has_state(Pin::IN_UNLOOP_STACK));
from._insert_state(Pin::UNLOOP_CAND | Pin::IN_UNLOOP_STACK);
for(auto arc : from._fanout) {
if(auto& to = arc->_to; to._scc != this) {
continue;
}
else if(!to._has_state(Pin::UNLOOP_CAND)) {
_unloop(to);
}
else if(to._has_state(Pin::IN_UNLOOP_STACK)) {
//OT_LOGD("mark arc ", arc->name(), " as loop breaker");
arc->_insert_state(Arc::LOOP_BREAKER);
}
}
from._remove_state(Pin::IN_UNLOOP_STACK);
}
// Procedure: _unloop
// Find the starting pin to break the loop.
void SCC::_unloop() {
assert(!_pins.empty());
Pin* entry {nullptr};
for(auto pin : _pins) {
if(!_is_entry(*pin)) continue;
if(!entry || pin->is_input()) {
entry = pin;
}
}
if(entry == nullptr) {
entry = _pins[0];
}
_unloop(*entry);
}
}; // end of namespace ot. -----------------------------------------------------------------------