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156 lines
4.0 KiB
JavaScript
156 lines
4.0 KiB
JavaScript
require({ after_gcc_pass: "cfg" });
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include("gcc_util.js");
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include("unstable/lazy_types.js");
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function process_type(c)
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{
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if ((c.kind == 'class' || c.kind == 'struct') &&
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!c.isIncomplete)
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isStack(c);
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}
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/**
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* A BlameChain records a chain of one or more location/message pairs. It
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* can be used to issue a complex error message such as:
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* location: error: Allocated class Foo on the heap
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* locationofFoo: class Foo inherits from class Bar
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* locationofBar: in class Bar
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* locationofBarMem: Member Bar::mFoo
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* locationofBaz: class Baz is annotated NS_STACK
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*/
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function BlameChain(loc, message, prev)
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{
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this.loc = loc;
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this.message = message;
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this.prev = prev;
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}
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BlameChain.prototype.toString = function()
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{
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let loc = this.loc;
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if (loc === undefined)
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loc = "<unknown location>";
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let str = '%s: %s'.format(loc.toString(), this.message);
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if (this.prev)
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str += "\n%s".format(this.prev);
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return str;
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};
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function isStack(c)
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{
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function calculate()
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{
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if (hasAttribute(c, 'NS_stack'))
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return new BlameChain(c.loc, '%s %s is annotated NS_STACK_CLASS'.format(c.kind, c.name));
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for each (let base in c.bases) {
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let r = isStack(base.type);
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if (r != null)
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return new BlameChain(c.loc, '%s %s is a base of %s %s'.format(base.type.kind, base.type.name, c.kind, c.name), r);
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}
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for each (let member in c.members) {
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if (member.isFunction)
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continue;
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if (hasAttribute(member, 'NS_okonheap'))
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continue;
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let type = member.type;
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while (true) {
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if (type === undefined)
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break;
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if (type.isArray) {
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type = type.type;
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continue;
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}
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if (type.typedef) {
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if (hasAttribute(type, 'NS_stack'))
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return true;
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type = type.typedef;
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continue;
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}
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break;
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}
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if (type === undefined) {
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warning("incomplete type for member " + member + ".", member.loc);
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continue;
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}
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if (type.isPointer || type.isReference)
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continue;
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if (!type.kind || (type.kind != 'class' && type.kind != 'struct'))
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continue;
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let r = isStack(type);
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if (r != null)
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return new BlameChain(c.loc, 'In class %s'.format(c.name),
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new BlameChain(member.loc, 'Member %s'.format(member.name), r));
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}
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return null;
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}
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if (!c.hasOwnProperty('isStack'))
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c.isStack = calculate();
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return c.isStack;
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}
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function process_tree(fn)
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{
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if (hasAttribute(dehydra_convert(fn), 'NS_suppress_stackcheck'))
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return;
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let cfg = function_decl_cfg(fn);
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for (let bb in cfg_bb_iterator(cfg)) {
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let it = bb_isn_iterator(bb);
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for (let isn in it) {
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if (isn.tree_code() != GIMPLE_CALL)
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continue;
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let name = gimple_call_function_name(isn);
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if (name != "operator new" && name != "operator new []")
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continue;
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// ignore placement new
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// TODO? ensure 2nd arg is local stack variable
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if (gimple_call_num_args(isn) == 2 &&
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TREE_TYPE(gimple_call_arg(isn, 1)).tree_code() == POINTER_TYPE)
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continue;
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let newLhs = gimple_call_lhs(isn);
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if (!newLhs)
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error("Non assigning call to operator new", location_of(isn));
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// if isn is the last of its block there are other problems...
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assign = it.next();
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// Calls to |new| are always followed by an assignment, casting the void ptr to which
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// |new| was assigned, to a ptr variable of the same type as the allocated object.
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// Exception: explicit calls to |::operator new (size_t)|, which can be ignored.
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if (assign.tree_code() != GIMPLE_ASSIGN)
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continue;
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let assignRhs = gimple_op(assign, 1);
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if (newLhs != assignRhs)
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continue;
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let assignLhs = gimple_op(assign, 0);
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let type = TREE_TYPE(TREE_TYPE(assignLhs));
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let dehydraType = dehydra_convert(type);
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let r = isStack(dehydraType);
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if (r)
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warning("constructed object of type '%s' not on the stack: %s".format(dehydraType.name, r), location_of(isn));
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}
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}
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}
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