mirror of
https://github.com/luau-lang/luau.git
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32fb6d10a7
- Fix some cases where type checking would overflow the native stack - Improve autocomplete behavior when assigning a partially written function call (not currently exposed through command line tools) - Improve autocomplete type inference feedback for some expressions where previously the type would not be known - Improve quantification performance during type checking for large types - Improve type checking for table literals when the expected type of the table is known because of a type annotation - Fix type checking errors in cases where required module has errors in the resulting type - Fix debug line information for multi-line chained call sequences (Add function name information for "attempt to call a nil value" #255) - lua_newuserdata now takes 2 arguments to match Lua/LuaJIT APIs better; lua_newuserdatatagged should be used if the third argument was non-0. - lua_ref can no longer be used with LUA_REGISTRYINDEX to prevent mistakes when migrating Lua FFI (Inconsistency with lua_ref #247) - Fix assertions and possible crashes when executing script code indirectly via metatable dispatch from lua_equal/lua_lessthan/lua_getfield/etc. (Hitting a crash in an assert after lua_equal is called. #259) - Fix flamegraph scripts to run under Python 2
166 lines
5 KiB
C++
166 lines
5 KiB
C++
// This file is part of the Luau programming language and is licensed under MIT License; see LICENSE.txt for details
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#include "Luau/RequireTracer.h"
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#include "Luau/Ast.h"
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#include "Luau/Module.h"
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namespace Luau
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{
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struct RequireTracer : AstVisitor
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{
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RequireTracer(RequireTraceResult& result, FileResolver* fileResolver, const ModuleName& currentModuleName)
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: result(result)
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, fileResolver(fileResolver)
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, currentModuleName(currentModuleName)
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, locals(nullptr)
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{
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}
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bool visit(AstExprTypeAssertion* expr) override
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{
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// suppress `require() :: any`
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return false;
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}
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bool visit(AstExprCall* expr) override
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{
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AstExprGlobal* global = expr->func->as<AstExprGlobal>();
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if (global && global->name == "require" && expr->args.size >= 1)
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requires.push_back(expr);
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return true;
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}
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bool visit(AstStatLocal* stat) override
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{
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for (size_t i = 0; i < stat->vars.size && i < stat->values.size; ++i)
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{
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AstLocal* local = stat->vars.data[i];
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AstExpr* expr = stat->values.data[i];
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// track initializing expression to be able to trace modules through locals
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locals[local] = expr;
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}
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return true;
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}
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bool visit(AstStatAssign* stat) override
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{
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for (size_t i = 0; i < stat->vars.size; ++i)
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{
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// locals that are assigned don't have a known expression
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if (AstExprLocal* expr = stat->vars.data[i]->as<AstExprLocal>())
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locals[expr->local] = nullptr;
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}
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return true;
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}
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bool visit(AstType* node) override
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{
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// allow resolving require inside `typeof` annotations
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return true;
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}
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AstExpr* getDependent(AstExpr* node)
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{
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if (AstExprLocal* expr = node->as<AstExprLocal>())
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return locals[expr->local];
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else if (AstExprIndexName* expr = node->as<AstExprIndexName>())
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return expr->expr;
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else if (AstExprIndexExpr* expr = node->as<AstExprIndexExpr>())
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return expr->expr;
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else if (AstExprCall* expr = node->as<AstExprCall>(); expr && expr->self)
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return expr->func->as<AstExprIndexName>()->expr;
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else
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return nullptr;
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}
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void process()
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{
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ModuleInfo moduleContext{currentModuleName};
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// seed worklist with require arguments
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work.reserve(requires.size());
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for (AstExprCall* require : requires)
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work.push_back(require->args.data[0]);
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// push all dependent expressions to the work stack; note that the vector is modified during traversal
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for (size_t i = 0; i < work.size(); ++i)
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if (AstExpr* dep = getDependent(work[i]))
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work.push_back(dep);
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// resolve all expressions to a module info
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for (size_t i = work.size(); i > 0; --i)
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{
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AstExpr* expr = work[i - 1];
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// when multiple expressions depend on the same one we push it to work queue multiple times
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if (result.exprs.contains(expr))
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continue;
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std::optional<ModuleInfo> info;
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if (AstExpr* dep = getDependent(expr))
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{
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const ModuleInfo* context = result.exprs.find(dep);
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// locals just inherit their dependent context, no resolution required
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if (expr->is<AstExprLocal>())
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info = context ? std::optional<ModuleInfo>(*context) : std::nullopt;
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else
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info = fileResolver->resolveModule(context, expr);
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}
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else
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{
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info = fileResolver->resolveModule(&moduleContext, expr);
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}
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if (info)
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result.exprs[expr] = std::move(*info);
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}
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// resolve all requires according to their argument
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result.requires.reserve(requires.size());
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for (AstExprCall* require : requires)
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{
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AstExpr* arg = require->args.data[0];
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if (const ModuleInfo* info = result.exprs.find(arg))
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{
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result.requires.push_back({info->name, require->location});
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ModuleInfo infoCopy = *info; // copy *info out since next line invalidates info!
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result.exprs[require] = std::move(infoCopy);
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}
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else
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{
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result.exprs[require] = {}; // mark require as unresolved
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}
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}
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}
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RequireTraceResult& result;
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FileResolver* fileResolver;
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ModuleName currentModuleName;
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DenseHashMap<AstLocal*, AstExpr*> locals;
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std::vector<AstExpr*> work;
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std::vector<AstExprCall*> requires;
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};
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RequireTraceResult traceRequires(FileResolver* fileResolver, AstStatBlock* root, const ModuleName& currentModuleName)
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{
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RequireTraceResult result;
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RequireTracer tracer{result, fileResolver, currentModuleName};
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root->visit(&tracer);
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tracer.process();
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return result;
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}
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} // namespace Luau
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