dead code: fixed memory leaks, simplified code for empty do/while/if removing, removing of 'else' branch

This commit is contained in:
mkoch
2024-01-14 15:36:52 +03:00
parent 5728736bc2
commit 4809857318

View File

@@ -10,6 +10,8 @@ using std::string;
using std::vector;
using std::set;
#define PRINT_USELESS_STATEMENTS 1
static void updateUseDefForInstruction(SAPFOR::BasicBlock* block, SAPFOR::Instruction* instr,
set<SAPFOR::Argument*>& use, set<SAPFOR::Argument*>& def,
vector<SAPFOR::Argument*>& formal_parameters,
@@ -318,12 +320,6 @@ void removeDeadCode(SgStatement* func,
{
SgProgHedrStmt* prog = isSgProgHedrStmt(func);
if (prog)
__spf_print(1, "[analyze %s]\n", prog->name().identifier());
else
__spf_print(1, "[cannot resolve name of function]\n");
auto cfg = buildCFGforCurrentFunc(func, SAPFOR::CFG_Settings(true, false, false, false, false, false, false), commonBlocks, allFuncs);
if(cfg.size() != 1)
@@ -333,14 +329,14 @@ void removeDeadCode(SgStatement* func,
vector<SAPFOR::Argument*> func_parameters(cfg_pair.first->funcParams.countOfPars, NULL);
DeadCodeAnalysis* analysis_object = new DeadCodeAnalysis(func_parameters);
DeadCodeAnalysis analysis_object(func_parameters);
analysis_object->fit(cfg_pair.second);
analysis_object->analyze();
analysis_object.fit(cfg_pair.second);
analysis_object.analyze();
set<SgStatement*> useful;
for (DeadCodeAnalysisNode* byNode : analysis_object->getNodes())
for (DeadCodeAnalysisNode* byNode : analysis_object.getNodes())
{
const auto& instructions = byNode->getBlock()->getInstructions();
const auto& statuses = byNode->getResult();
@@ -357,13 +353,10 @@ void removeDeadCode(SgStatement* func,
SgStatement* stmt = instructions[i]->getInstruction()->getOperator();
while(stmt && useful.insert(stmt).second)
{
__spf_print(1, "[Useful statement '%s' on line %d]\n", stmt->unparse(), stmt->lineNumber());
stmt = stmt->controlParent();
}
}
}
}
SgStatement* end = func->lastNodeOfStmt(), *st = func;
@@ -372,65 +365,50 @@ void removeDeadCode(SgStatement* func,
ASSIGN_STAT
};
SgStatement* enclosing = st->controlParent();
SgStatement* encl_end = enclosing ? enclosing->lastNodeOfStmt() : NULL;
while (st != end)
{
SgStatement* next = st->lexNext();
SgStatement* parent = NULL;
if (removable.find(st->variant()) != removable.end() && useful.find(st) == useful.end())
{
__spf_print(1, "[Useless statement '%s' on line %d]\n", st->unparse(), st->lineNumber());
__spf_print(PRINT_USELESS_STATEMENTS, "[Useless statement '%s' on line %d]\n", st->unparse(), st->lineNumber());
parent = st->controlParent();
st->extractStmt()->deleteStmt();
st = NULL;
st->deleteStmt();
}
else
{
if (st == encl_end)
if (isSgControlEndStmt(st))
{
if (enclosing)
SgStatement* parent = st->controlParent();
SgStatement* parent_end;
if (parent && (parent_end = parent->lastNodeOfStmt()) && parent_end == st)
{
bool empty_parent = false;
switch (enclosing->variant())
switch (parent->variant())
{
case IF_NODE:
empty_parent =
enclosing->lexNext() == encl_end || // IF THEN ENDIF
enclosing->lexNext()->variant() == CONTROL_END &&
enclosing->lexNext()->lexNext() == encl_end; // IF THEN ELSE ENDIF
parent->lexNext() == parent_end || // IF THEN ENDIF
isSgControlEndStmt(parent->lexNext()) &&
parent->lexNext()->lexNext() == parent_end; // IF THEN ELSE ENDIF
break;
default:
empty_parent = enclosing->lexNext() == encl_end;
empty_parent = parent->lexNext() == parent_end; // DO, WHILE
break;
}
if(empty_parent)
{
parent = enclosing->controlParent();
enclosing->extractStmt()->deleteStmt();
st->extractStmt()->deleteStmt();
st = NULL;
if (empty_parent)
parent->deleteStmt();
else if(isSgIfStmt(parent) && isSgControlEndStmt(parent_end->lexPrev())) // IF with empty ELSE branch
parent_end->deleteStmt();
}
}
}
}
if(!parent)
parent = st->controlParent();
if (parent != enclosing)
{
enclosing = parent;
encl_end = enclosing ? enclosing->lastNodeOfStmt() : NULL;
}
st = next;
}
deleteCFG(cfg);
}