196 lines
6.5 KiB
Rust
196 lines
6.5 KiB
Rust
use rustc::hir::intravisit;
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use rustc::hir;
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use rustc::ty;
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use rustc::lint::*;
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use std::collections::HashSet;
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use syntax::ast;
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use syntax::abi::Abi;
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use syntax::codemap::Span;
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use utils::{span_lint, type_is_unsafe_function};
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/// **What it does:** Checks for functions with too many parameters.
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///
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/// **Why is this bad?** Functions with lots of parameters are considered bad
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/// style and reduce readability (“what does the 5th parameter mean?”). Consider
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/// grouping some parameters into a new type.
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///
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/// **Known problems:** None.
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///
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/// **Example:**
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/// ```rust
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/// fn foo(x: u32, y: u32, name: &str, c: Color, w: f32, h: f32, a: f32, b: f32) { .. }
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/// ```
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declare_lint! {
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pub TOO_MANY_ARGUMENTS,
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Warn,
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"functions with too many arguments"
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}
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/// **What it does:** Checks for public functions that dereferences raw pointer
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/// arguments but are not marked unsafe.
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///
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/// **Why is this bad?** The function should probably be marked `unsafe`, since
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/// for an arbitrary raw pointer, there is no way of telling for sure if it is
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/// valid.
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///
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/// **Known problems:**
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///
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/// * It does not check functions recursively so if the pointer is passed to a
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/// private non-`unsafe` function which does the dereferencing, the lint won't trigger.
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/// * It only checks for arguments whose type are raw pointers, not raw pointers
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/// got from an argument in some other way (`fn foo(bar: &[*const u8])` or
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/// `some_argument.get_raw_ptr()`).
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///
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/// **Example:**
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/// ```rust
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/// pub fn foo(x: *const u8) { println!("{}", unsafe { *x }); }
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/// ```
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declare_lint! {
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pub NOT_UNSAFE_PTR_ARG_DEREF,
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Warn,
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"public functions dereferencing raw pointer arguments but not marked `unsafe`"
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}
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#[derive(Copy,Clone)]
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pub struct Functions {
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threshold: u64,
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}
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impl Functions {
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pub fn new(threshold: u64) -> Functions {
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Functions { threshold: threshold }
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}
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}
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impl LintPass for Functions {
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fn get_lints(&self) -> LintArray {
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lint_array!(TOO_MANY_ARGUMENTS, NOT_UNSAFE_PTR_ARG_DEREF)
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}
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}
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impl LateLintPass for Functions {
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fn check_fn(&mut self, cx: &LateContext, kind: intravisit::FnKind, decl: &hir::FnDecl, block: &hir::Block, span: Span, nodeid: ast::NodeId) {
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use rustc::hir::map::Node::*;
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let is_impl = if let Some(NodeItem(item)) = cx.tcx.map.find(cx.tcx.map.get_parent_node(nodeid)) {
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matches!(item.node, hir::ItemImpl(_, _, _, Some(_), _, _) | hir::ItemDefaultImpl(..))
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} else {
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false
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};
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let unsafety = match kind {
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hir::intravisit::FnKind::ItemFn(_, _, unsafety, _, _, _, _) => unsafety,
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hir::intravisit::FnKind::Method(_, sig, _, _) => sig.unsafety,
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hir::intravisit::FnKind::Closure(_) => return,
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};
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// don't warn for implementations, it's not their fault
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if !is_impl {
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// don't lint extern functions decls, it's not their fault either
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match kind {
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hir::intravisit::FnKind::Method(_, &hir::MethodSig { abi: Abi::Rust, .. }, _, _) |
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hir::intravisit::FnKind::ItemFn(_, _, _, _, Abi::Rust, _, _) => self.check_arg_number(cx, decl, span),
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_ => {},
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}
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}
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self.check_raw_ptr(cx, unsafety, decl, block, nodeid);
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}
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fn check_trait_item(&mut self, cx: &LateContext, item: &hir::TraitItem) {
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if let hir::MethodTraitItem(ref sig, ref block) = item.node {
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// don't lint extern functions decls, it's not their fault
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if sig.abi == Abi::Rust {
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self.check_arg_number(cx, &sig.decl, item.span);
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}
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if let Some(ref block) = *block {
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self.check_raw_ptr(cx, sig.unsafety, &sig.decl, block, item.id);
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}
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}
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}
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}
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impl Functions {
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fn check_arg_number(&self, cx: &LateContext, decl: &hir::FnDecl, span: Span) {
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let args = decl.inputs.len() as u64;
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if args > self.threshold {
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span_lint(cx,
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TOO_MANY_ARGUMENTS,
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span,
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&format!("this function has too many arguments ({}/{})", args, self.threshold));
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}
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}
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fn check_raw_ptr(&self, cx: &LateContext, unsafety: hir::Unsafety, decl: &hir::FnDecl, block: &hir::Block, nodeid: ast::NodeId) {
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if unsafety == hir::Unsafety::Normal && cx.access_levels.is_exported(nodeid) {
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let raw_ptrs = decl.inputs.iter().filter_map(|arg| raw_ptr_arg(cx, arg)).collect::<HashSet<_>>();
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if !raw_ptrs.is_empty() {
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let mut v = DerefVisitor {
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cx: cx,
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ptrs: raw_ptrs,
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};
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hir::intravisit::walk_block(&mut v, block);
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}
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}
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}
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}
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fn raw_ptr_arg(cx: &LateContext, arg: &hir::Arg) -> Option<hir::def_id::DefId> {
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if let (&hir::PatKind::Binding(_, _, _), &hir::TyPtr(_)) = (&arg.pat.node, &arg.ty.node) {
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cx.tcx.def_map.borrow().get(&arg.pat.id).map(|pr| pr.full_def().def_id())
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} else {
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None
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}
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}
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struct DerefVisitor<'a, 'tcx: 'a> {
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cx: &'a LateContext<'a, 'tcx>,
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ptrs: HashSet<hir::def_id::DefId>,
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}
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impl<'a, 'tcx, 'v> hir::intravisit::Visitor<'v> for DerefVisitor<'a, 'tcx> {
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fn visit_expr(&mut self, expr: &'v hir::Expr) {
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match expr.node {
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hir::ExprCall(ref f, ref args) => {
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let ty = self.cx.tcx.expr_ty(f);
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if type_is_unsafe_function(ty) {
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for arg in args {
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self.check_arg(arg);
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}
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}
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}
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hir::ExprMethodCall(_, _, ref args) => {
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let method_call = ty::MethodCall::expr(expr.id);
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let base_type = self.cx.tcx.tables.borrow().method_map[&method_call].ty;
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if type_is_unsafe_function(base_type) {
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for arg in args {
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self.check_arg(arg);
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}
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}
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}
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hir::ExprUnary(hir::UnDeref, ref ptr) => self.check_arg(ptr),
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_ => (),
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}
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hir::intravisit::walk_expr(self, expr);
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}
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}
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impl<'a, 'tcx: 'a> DerefVisitor<'a, 'tcx> {
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fn check_arg(&self, ptr: &hir::Expr) {
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if let Some(def) = self.cx.tcx.def_map.borrow().get(&ptr.id) {
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if self.ptrs.contains(&def.full_def().def_id()) {
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span_lint(self.cx,
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NOT_UNSAFE_PTR_ARG_DEREF,
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ptr.span,
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"this public function dereferences a raw pointer but is not marked `unsafe`");
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}
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}
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}
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}
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