695 lines
27 KiB
Rust
695 lines
27 KiB
Rust
use crate::consts::{constant_context, constant_simple};
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use crate::utils::differing_macro_contexts;
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use rustc_ast::ast::Name;
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use rustc_data_structures::stable_hasher::{HashStable, StableHasher};
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use rustc_hir::{
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BinOpKind, Block, BlockCheckMode, BodyId, BorrowKind, CaptureBy, Expr, ExprKind, Field, FnRetTy, GenericArg,
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GenericArgs, Guard, Lifetime, LifetimeName, ParamName, Pat, PatKind, Path, PathSegment, QPath, Stmt, StmtKind, Ty,
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TyKind, TypeBinding,
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};
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use rustc_lint::LateContext;
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use rustc_middle::ich::StableHashingContextProvider;
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use rustc_middle::ty::TypeckTables;
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use std::hash::Hash;
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/// Type used to check whether two ast are the same. This is different from the
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/// operator
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/// `==` on ast types as this operator would compare true equality with ID and
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/// span.
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///
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/// Note that some expressions kinds are not considered but could be added.
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pub struct SpanlessEq<'a, 'tcx> {
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/// Context used to evaluate constant expressions.
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cx: &'a LateContext<'a, 'tcx>,
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tables: &'a TypeckTables<'tcx>,
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/// If is true, never consider as equal expressions containing function
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/// calls.
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ignore_fn: bool,
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}
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impl<'a, 'tcx> SpanlessEq<'a, 'tcx> {
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pub fn new(cx: &'a LateContext<'a, 'tcx>) -> Self {
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Self {
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cx,
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tables: cx.tables,
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ignore_fn: false,
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}
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}
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pub fn ignore_fn(self) -> Self {
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Self {
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cx: self.cx,
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tables: self.cx.tables,
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ignore_fn: true,
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}
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}
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/// Checks whether two statements are the same.
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pub fn eq_stmt(&mut self, left: &Stmt<'_>, right: &Stmt<'_>) -> bool {
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match (&left.kind, &right.kind) {
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(&StmtKind::Local(ref l), &StmtKind::Local(ref r)) => {
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self.eq_pat(&l.pat, &r.pat)
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&& both(&l.ty, &r.ty, |l, r| self.eq_ty(l, r))
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&& both(&l.init, &r.init, |l, r| self.eq_expr(l, r))
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},
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(&StmtKind::Expr(ref l), &StmtKind::Expr(ref r)) | (&StmtKind::Semi(ref l), &StmtKind::Semi(ref r)) => {
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self.eq_expr(l, r)
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},
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_ => false,
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}
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}
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/// Checks whether two blocks are the same.
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pub fn eq_block(&mut self, left: &Block<'_>, right: &Block<'_>) -> bool {
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over(&left.stmts, &right.stmts, |l, r| self.eq_stmt(l, r))
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&& both(&left.expr, &right.expr, |l, r| self.eq_expr(l, r))
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}
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#[allow(clippy::similar_names)]
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pub fn eq_expr(&mut self, left: &Expr<'_>, right: &Expr<'_>) -> bool {
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if self.ignore_fn && differing_macro_contexts(left.span, right.span) {
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return false;
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}
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if let (Some(l), Some(r)) = (
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constant_simple(self.cx, self.tables, left),
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constant_simple(self.cx, self.tables, right),
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) {
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if l == r {
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return true;
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}
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}
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match (&left.kind, &right.kind) {
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(&ExprKind::AddrOf(lb, l_mut, ref le), &ExprKind::AddrOf(rb, r_mut, ref re)) => {
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lb == rb && l_mut == r_mut && self.eq_expr(le, re)
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},
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(&ExprKind::Continue(li), &ExprKind::Continue(ri)) => {
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both(&li.label, &ri.label, |l, r| l.ident.as_str() == r.ident.as_str())
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},
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(&ExprKind::Assign(ref ll, ref lr, _), &ExprKind::Assign(ref rl, ref rr, _)) => {
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self.eq_expr(ll, rl) && self.eq_expr(lr, rr)
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},
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(&ExprKind::AssignOp(ref lo, ref ll, ref lr), &ExprKind::AssignOp(ref ro, ref rl, ref rr)) => {
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lo.node == ro.node && self.eq_expr(ll, rl) && self.eq_expr(lr, rr)
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},
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(&ExprKind::Block(ref l, _), &ExprKind::Block(ref r, _)) => self.eq_block(l, r),
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(&ExprKind::Binary(l_op, ref ll, ref lr), &ExprKind::Binary(r_op, ref rl, ref rr)) => {
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l_op.node == r_op.node && self.eq_expr(ll, rl) && self.eq_expr(lr, rr)
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|| swap_binop(l_op.node, ll, lr).map_or(false, |(l_op, ll, lr)| {
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l_op == r_op.node && self.eq_expr(ll, rl) && self.eq_expr(lr, rr)
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})
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},
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(&ExprKind::Break(li, ref le), &ExprKind::Break(ri, ref re)) => {
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both(&li.label, &ri.label, |l, r| l.ident.as_str() == r.ident.as_str())
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&& both(le, re, |l, r| self.eq_expr(l, r))
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},
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(&ExprKind::Box(ref l), &ExprKind::Box(ref r)) => self.eq_expr(l, r),
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(&ExprKind::Call(l_fun, l_args), &ExprKind::Call(r_fun, r_args)) => {
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!self.ignore_fn && self.eq_expr(l_fun, r_fun) && self.eq_exprs(l_args, r_args)
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},
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(&ExprKind::Cast(ref lx, ref lt), &ExprKind::Cast(ref rx, ref rt))
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| (&ExprKind::Type(ref lx, ref lt), &ExprKind::Type(ref rx, ref rt)) => {
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self.eq_expr(lx, rx) && self.eq_ty(lt, rt)
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},
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(&ExprKind::Field(ref l_f_exp, ref l_f_ident), &ExprKind::Field(ref r_f_exp, ref r_f_ident)) => {
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l_f_ident.name == r_f_ident.name && self.eq_expr(l_f_exp, r_f_exp)
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},
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(&ExprKind::Index(ref la, ref li), &ExprKind::Index(ref ra, ref ri)) => {
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self.eq_expr(la, ra) && self.eq_expr(li, ri)
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},
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(&ExprKind::Lit(ref l), &ExprKind::Lit(ref r)) => l.node == r.node,
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(&ExprKind::Loop(ref lb, ref ll, ref lls), &ExprKind::Loop(ref rb, ref rl, ref rls)) => {
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lls == rls && self.eq_block(lb, rb) && both(ll, rl, |l, r| l.ident.as_str() == r.ident.as_str())
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},
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(&ExprKind::Match(ref le, ref la, ref ls), &ExprKind::Match(ref re, ref ra, ref rs)) => {
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ls == rs
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&& self.eq_expr(le, re)
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&& over(la, ra, |l, r| {
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self.eq_expr(&l.body, &r.body)
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&& both(&l.guard, &r.guard, |l, r| self.eq_guard(l, r))
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&& self.eq_pat(&l.pat, &r.pat)
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})
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},
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(&ExprKind::MethodCall(l_path, _, l_args), &ExprKind::MethodCall(r_path, _, r_args)) => {
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!self.ignore_fn && self.eq_path_segment(l_path, r_path) && self.eq_exprs(l_args, r_args)
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},
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(&ExprKind::Repeat(ref le, ref ll_id), &ExprKind::Repeat(ref re, ref rl_id)) => {
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let mut celcx = constant_context(self.cx, self.cx.tcx.body_tables(ll_id.body));
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let ll = celcx.expr(&self.cx.tcx.hir().body(ll_id.body).value);
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let mut celcx = constant_context(self.cx, self.cx.tcx.body_tables(rl_id.body));
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let rl = celcx.expr(&self.cx.tcx.hir().body(rl_id.body).value);
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self.eq_expr(le, re) && ll == rl
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},
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(&ExprKind::Ret(ref l), &ExprKind::Ret(ref r)) => both(l, r, |l, r| self.eq_expr(l, r)),
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(&ExprKind::Path(ref l), &ExprKind::Path(ref r)) => self.eq_qpath(l, r),
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(&ExprKind::Struct(ref l_path, ref lf, ref lo), &ExprKind::Struct(ref r_path, ref rf, ref ro)) => {
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self.eq_qpath(l_path, r_path)
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&& both(lo, ro, |l, r| self.eq_expr(l, r))
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&& over(lf, rf, |l, r| self.eq_field(l, r))
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},
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(&ExprKind::Tup(l_tup), &ExprKind::Tup(r_tup)) => self.eq_exprs(l_tup, r_tup),
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(&ExprKind::Unary(l_op, ref le), &ExprKind::Unary(r_op, ref re)) => l_op == r_op && self.eq_expr(le, re),
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(&ExprKind::Array(l), &ExprKind::Array(r)) => self.eq_exprs(l, r),
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(&ExprKind::DropTemps(ref le), &ExprKind::DropTemps(ref re)) => self.eq_expr(le, re),
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_ => false,
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}
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}
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fn eq_exprs(&mut self, left: &[Expr<'_>], right: &[Expr<'_>]) -> bool {
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over(left, right, |l, r| self.eq_expr(l, r))
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}
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fn eq_field(&mut self, left: &Field<'_>, right: &Field<'_>) -> bool {
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left.ident.name == right.ident.name && self.eq_expr(&left.expr, &right.expr)
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}
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fn eq_guard(&mut self, left: &Guard<'_>, right: &Guard<'_>) -> bool {
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match (left, right) {
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(Guard::If(l), Guard::If(r)) => self.eq_expr(l, r),
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}
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}
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fn eq_generic_arg(&mut self, left: &GenericArg<'_>, right: &GenericArg<'_>) -> bool {
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match (left, right) {
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(GenericArg::Lifetime(l_lt), GenericArg::Lifetime(r_lt)) => Self::eq_lifetime(l_lt, r_lt),
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(GenericArg::Type(l_ty), GenericArg::Type(r_ty)) => self.eq_ty(l_ty, r_ty),
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_ => false,
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}
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}
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fn eq_lifetime(left: &Lifetime, right: &Lifetime) -> bool {
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left.name == right.name
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}
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/// Checks whether two patterns are the same.
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pub fn eq_pat(&mut self, left: &Pat<'_>, right: &Pat<'_>) -> bool {
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match (&left.kind, &right.kind) {
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(&PatKind::Box(ref l), &PatKind::Box(ref r)) => self.eq_pat(l, r),
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(&PatKind::TupleStruct(ref lp, ref la, ls), &PatKind::TupleStruct(ref rp, ref ra, rs)) => {
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self.eq_qpath(lp, rp) && over(la, ra, |l, r| self.eq_pat(l, r)) && ls == rs
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},
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(&PatKind::Binding(ref lb, .., ref li, ref lp), &PatKind::Binding(ref rb, .., ref ri, ref rp)) => {
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lb == rb && li.name.as_str() == ri.name.as_str() && both(lp, rp, |l, r| self.eq_pat(l, r))
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},
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(&PatKind::Path(ref l), &PatKind::Path(ref r)) => self.eq_qpath(l, r),
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(&PatKind::Lit(ref l), &PatKind::Lit(ref r)) => self.eq_expr(l, r),
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(&PatKind::Tuple(ref l, ls), &PatKind::Tuple(ref r, rs)) => {
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ls == rs && over(l, r, |l, r| self.eq_pat(l, r))
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},
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(&PatKind::Range(ref ls, ref le, li), &PatKind::Range(ref rs, ref re, ri)) => {
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both(ls, rs, |a, b| self.eq_expr(a, b)) && both(le, re, |a, b| self.eq_expr(a, b)) && (li == ri)
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},
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(&PatKind::Ref(ref le, ref lm), &PatKind::Ref(ref re, ref rm)) => lm == rm && self.eq_pat(le, re),
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(&PatKind::Slice(ref ls, ref li, ref le), &PatKind::Slice(ref rs, ref ri, ref re)) => {
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over(ls, rs, |l, r| self.eq_pat(l, r))
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&& over(le, re, |l, r| self.eq_pat(l, r))
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&& both(li, ri, |l, r| self.eq_pat(l, r))
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},
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(&PatKind::Wild, &PatKind::Wild) => true,
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_ => false,
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}
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}
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#[allow(clippy::similar_names)]
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fn eq_qpath(&mut self, left: &QPath<'_>, right: &QPath<'_>) -> bool {
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match (left, right) {
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(&QPath::Resolved(ref lty, ref lpath), &QPath::Resolved(ref rty, ref rpath)) => {
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both(lty, rty, |l, r| self.eq_ty(l, r)) && self.eq_path(lpath, rpath)
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},
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(&QPath::TypeRelative(ref lty, ref lseg), &QPath::TypeRelative(ref rty, ref rseg)) => {
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self.eq_ty(lty, rty) && self.eq_path_segment(lseg, rseg)
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},
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_ => false,
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}
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}
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fn eq_path(&mut self, left: &Path<'_>, right: &Path<'_>) -> bool {
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left.is_global() == right.is_global()
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&& over(&left.segments, &right.segments, |l, r| self.eq_path_segment(l, r))
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}
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fn eq_path_parameters(&mut self, left: &GenericArgs<'_>, right: &GenericArgs<'_>) -> bool {
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if !(left.parenthesized || right.parenthesized) {
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over(&left.args, &right.args, |l, r| self.eq_generic_arg(l, r)) // FIXME(flip1995): may not work
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&& over(&left.bindings, &right.bindings, |l, r| self.eq_type_binding(l, r))
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} else if left.parenthesized && right.parenthesized {
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over(left.inputs(), right.inputs(), |l, r| self.eq_ty(l, r))
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&& both(&Some(&left.bindings[0].ty()), &Some(&right.bindings[0].ty()), |l, r| {
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self.eq_ty(l, r)
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})
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} else {
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false
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}
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}
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pub fn eq_path_segments(&mut self, left: &[PathSegment<'_>], right: &[PathSegment<'_>]) -> bool {
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left.len() == right.len() && left.iter().zip(right).all(|(l, r)| self.eq_path_segment(l, r))
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}
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pub fn eq_path_segment(&mut self, left: &PathSegment<'_>, right: &PathSegment<'_>) -> bool {
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// The == of idents doesn't work with different contexts,
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// we have to be explicit about hygiene
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if left.ident.as_str() != right.ident.as_str() {
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return false;
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}
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match (&left.args, &right.args) {
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(&None, &None) => true,
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(&Some(ref l), &Some(ref r)) => self.eq_path_parameters(l, r),
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_ => false,
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}
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}
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pub fn eq_ty(&mut self, left: &Ty<'_>, right: &Ty<'_>) -> bool {
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self.eq_ty_kind(&left.kind, &right.kind)
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}
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#[allow(clippy::similar_names)]
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pub fn eq_ty_kind(&mut self, left: &TyKind<'_>, right: &TyKind<'_>) -> bool {
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match (left, right) {
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(&TyKind::Slice(ref l_vec), &TyKind::Slice(ref r_vec)) => self.eq_ty(l_vec, r_vec),
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(&TyKind::Array(ref lt, ref ll_id), &TyKind::Array(ref rt, ref rl_id)) => {
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let full_table = self.tables;
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let mut celcx = constant_context(self.cx, self.cx.tcx.body_tables(ll_id.body));
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self.tables = self.cx.tcx.body_tables(ll_id.body);
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let ll = celcx.expr(&self.cx.tcx.hir().body(ll_id.body).value);
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let mut celcx = constant_context(self.cx, self.cx.tcx.body_tables(rl_id.body));
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self.tables = self.cx.tcx.body_tables(rl_id.body);
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let rl = celcx.expr(&self.cx.tcx.hir().body(rl_id.body).value);
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let eq_ty = self.eq_ty(lt, rt);
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self.tables = full_table;
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eq_ty && ll == rl
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},
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(&TyKind::Ptr(ref l_mut), &TyKind::Ptr(ref r_mut)) => {
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l_mut.mutbl == r_mut.mutbl && self.eq_ty(&*l_mut.ty, &*r_mut.ty)
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},
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(&TyKind::Rptr(_, ref l_rmut), &TyKind::Rptr(_, ref r_rmut)) => {
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l_rmut.mutbl == r_rmut.mutbl && self.eq_ty(&*l_rmut.ty, &*r_rmut.ty)
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},
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(&TyKind::Path(ref l), &TyKind::Path(ref r)) => self.eq_qpath(l, r),
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(&TyKind::Tup(ref l), &TyKind::Tup(ref r)) => over(l, r, |l, r| self.eq_ty(l, r)),
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(&TyKind::Infer, &TyKind::Infer) => true,
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_ => false,
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}
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}
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fn eq_type_binding(&mut self, left: &TypeBinding<'_>, right: &TypeBinding<'_>) -> bool {
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left.ident.name == right.ident.name && self.eq_ty(&left.ty(), &right.ty())
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}
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}
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fn swap_binop<'a>(
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binop: BinOpKind,
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lhs: &'a Expr<'a>,
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rhs: &'a Expr<'a>,
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) -> Option<(BinOpKind, &'a Expr<'a>, &'a Expr<'a>)> {
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match binop {
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BinOpKind::Add
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| BinOpKind::Mul
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| BinOpKind::Eq
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| BinOpKind::Ne
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| BinOpKind::BitAnd
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| BinOpKind::BitXor
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| BinOpKind::BitOr => Some((binop, rhs, lhs)),
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BinOpKind::Lt => Some((BinOpKind::Gt, rhs, lhs)),
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BinOpKind::Le => Some((BinOpKind::Ge, rhs, lhs)),
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BinOpKind::Ge => Some((BinOpKind::Le, rhs, lhs)),
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BinOpKind::Gt => Some((BinOpKind::Lt, rhs, lhs)),
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BinOpKind::Shl
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| BinOpKind::Shr
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| BinOpKind::Rem
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| BinOpKind::Sub
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| BinOpKind::Div
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| BinOpKind::And
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| BinOpKind::Or => None,
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}
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}
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/// Checks if the two `Option`s are both `None` or some equal values as per
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/// `eq_fn`.
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fn both<X, F>(l: &Option<X>, r: &Option<X>, mut eq_fn: F) -> bool
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where
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F: FnMut(&X, &X) -> bool,
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{
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l.as_ref()
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.map_or_else(|| r.is_none(), |x| r.as_ref().map_or(false, |y| eq_fn(x, y)))
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}
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/// Checks if two slices are equal as per `eq_fn`.
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fn over<X, F>(left: &[X], right: &[X], mut eq_fn: F) -> bool
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where
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F: FnMut(&X, &X) -> bool,
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{
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left.len() == right.len() && left.iter().zip(right).all(|(x, y)| eq_fn(x, y))
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}
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/// Type used to hash an ast element. This is different from the `Hash` trait
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/// on ast types as this
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/// trait would consider IDs and spans.
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///
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/// All expressions kind are hashed, but some might have a weaker hash.
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pub struct SpanlessHash<'a, 'tcx> {
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/// Context used to evaluate constant expressions.
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cx: &'a LateContext<'a, 'tcx>,
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tables: &'a TypeckTables<'tcx>,
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s: StableHasher,
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}
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impl<'a, 'tcx> SpanlessHash<'a, 'tcx> {
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pub fn new(cx: &'a LateContext<'a, 'tcx>, tables: &'a TypeckTables<'tcx>) -> Self {
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Self {
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cx,
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tables,
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s: StableHasher::new(),
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}
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}
|
|
|
|
pub fn finish(self) -> u64 {
|
|
self.s.finish()
|
|
}
|
|
|
|
pub fn hash_block(&mut self, b: &Block<'_>) {
|
|
for s in b.stmts {
|
|
self.hash_stmt(s);
|
|
}
|
|
|
|
if let Some(ref e) = b.expr {
|
|
self.hash_expr(e);
|
|
}
|
|
|
|
match b.rules {
|
|
BlockCheckMode::DefaultBlock => 0,
|
|
BlockCheckMode::UnsafeBlock(_) => 1,
|
|
BlockCheckMode::PushUnsafeBlock(_) => 2,
|
|
BlockCheckMode::PopUnsafeBlock(_) => 3,
|
|
}
|
|
.hash(&mut self.s);
|
|
}
|
|
|
|
#[allow(clippy::many_single_char_names, clippy::too_many_lines)]
|
|
pub fn hash_expr(&mut self, e: &Expr<'_>) {
|
|
let simple_const = constant_simple(self.cx, self.tables, e);
|
|
|
|
// const hashing may result in the same hash as some unrelated node, so add a sort of
|
|
// discriminant depending on which path we're choosing next
|
|
simple_const.is_some().hash(&mut self.s);
|
|
|
|
if let Some(e) = simple_const {
|
|
return e.hash(&mut self.s);
|
|
}
|
|
|
|
std::mem::discriminant(&e.kind).hash(&mut self.s);
|
|
|
|
match e.kind {
|
|
ExprKind::AddrOf(kind, m, ref e) => {
|
|
match kind {
|
|
BorrowKind::Ref => 0,
|
|
BorrowKind::Raw => 1,
|
|
}
|
|
.hash(&mut self.s);
|
|
m.hash(&mut self.s);
|
|
self.hash_expr(e);
|
|
},
|
|
ExprKind::Continue(i) => {
|
|
if let Some(i) = i.label {
|
|
self.hash_name(i.ident.name);
|
|
}
|
|
},
|
|
ExprKind::Assign(ref l, ref r, _) => {
|
|
self.hash_expr(l);
|
|
self.hash_expr(r);
|
|
},
|
|
ExprKind::AssignOp(ref o, ref l, ref r) => {
|
|
o.node
|
|
.hash_stable(&mut self.cx.tcx.get_stable_hashing_context(), &mut self.s);
|
|
self.hash_expr(l);
|
|
self.hash_expr(r);
|
|
},
|
|
ExprKind::Block(ref b, _) => {
|
|
self.hash_block(b);
|
|
},
|
|
ExprKind::Binary(op, ref l, ref r) => {
|
|
op.node
|
|
.hash_stable(&mut self.cx.tcx.get_stable_hashing_context(), &mut self.s);
|
|
self.hash_expr(l);
|
|
self.hash_expr(r);
|
|
},
|
|
ExprKind::Break(i, ref j) => {
|
|
if let Some(i) = i.label {
|
|
self.hash_name(i.ident.name);
|
|
}
|
|
if let Some(ref j) = *j {
|
|
self.hash_expr(&*j);
|
|
}
|
|
},
|
|
ExprKind::Box(ref e) | ExprKind::DropTemps(ref e) | ExprKind::Yield(ref e, _) => {
|
|
self.hash_expr(e);
|
|
},
|
|
ExprKind::Call(ref fun, args) => {
|
|
self.hash_expr(fun);
|
|
self.hash_exprs(args);
|
|
},
|
|
ExprKind::Cast(ref e, ref ty) | ExprKind::Type(ref e, ref ty) => {
|
|
self.hash_expr(e);
|
|
self.hash_ty(ty);
|
|
},
|
|
ExprKind::Closure(cap, _, eid, _, _) => {
|
|
match cap {
|
|
CaptureBy::Value => 0,
|
|
CaptureBy::Ref => 1,
|
|
}
|
|
.hash(&mut self.s);
|
|
// closures inherit TypeckTables
|
|
self.hash_expr(&self.cx.tcx.hir().body(eid).value);
|
|
},
|
|
ExprKind::Field(ref e, ref f) => {
|
|
self.hash_expr(e);
|
|
self.hash_name(f.name);
|
|
},
|
|
ExprKind::Index(ref a, ref i) => {
|
|
self.hash_expr(a);
|
|
self.hash_expr(i);
|
|
},
|
|
ExprKind::LlvmInlineAsm(..) | ExprKind::Err => {},
|
|
ExprKind::Lit(ref l) => {
|
|
l.node.hash(&mut self.s);
|
|
},
|
|
ExprKind::Loop(ref b, ref i, _) => {
|
|
self.hash_block(b);
|
|
if let Some(i) = *i {
|
|
self.hash_name(i.ident.name);
|
|
}
|
|
},
|
|
ExprKind::Match(ref e, arms, ref s) => {
|
|
self.hash_expr(e);
|
|
|
|
for arm in arms {
|
|
// TODO: arm.pat?
|
|
if let Some(ref e) = arm.guard {
|
|
self.hash_guard(e);
|
|
}
|
|
self.hash_expr(&arm.body);
|
|
}
|
|
|
|
s.hash(&mut self.s);
|
|
},
|
|
ExprKind::MethodCall(ref path, ref _tys, args) => {
|
|
self.hash_name(path.ident.name);
|
|
self.hash_exprs(args);
|
|
},
|
|
ExprKind::Repeat(ref e, ref l_id) => {
|
|
self.hash_expr(e);
|
|
self.hash_body(l_id.body);
|
|
},
|
|
ExprKind::Ret(ref e) => {
|
|
if let Some(ref e) = *e {
|
|
self.hash_expr(e);
|
|
}
|
|
},
|
|
ExprKind::Path(ref qpath) => {
|
|
self.hash_qpath(qpath);
|
|
},
|
|
ExprKind::Struct(ref path, fields, ref expr) => {
|
|
self.hash_qpath(path);
|
|
|
|
for f in fields {
|
|
self.hash_name(f.ident.name);
|
|
self.hash_expr(&f.expr);
|
|
}
|
|
|
|
if let Some(ref e) = *expr {
|
|
self.hash_expr(e);
|
|
}
|
|
},
|
|
ExprKind::Tup(tup) => {
|
|
self.hash_exprs(tup);
|
|
},
|
|
ExprKind::Array(v) => {
|
|
self.hash_exprs(v);
|
|
},
|
|
ExprKind::Unary(lop, ref le) => {
|
|
lop.hash_stable(&mut self.cx.tcx.get_stable_hashing_context(), &mut self.s);
|
|
self.hash_expr(le);
|
|
},
|
|
}
|
|
}
|
|
|
|
pub fn hash_exprs(&mut self, e: &[Expr<'_>]) {
|
|
for e in e {
|
|
self.hash_expr(e);
|
|
}
|
|
}
|
|
|
|
pub fn hash_name(&mut self, n: Name) {
|
|
n.as_str().hash(&mut self.s);
|
|
}
|
|
|
|
pub fn hash_qpath(&mut self, p: &QPath<'_>) {
|
|
match *p {
|
|
QPath::Resolved(_, ref path) => {
|
|
self.hash_path(path);
|
|
},
|
|
QPath::TypeRelative(_, ref path) => {
|
|
self.hash_name(path.ident.name);
|
|
},
|
|
}
|
|
// self.cx.tables.qpath_res(p, id).hash(&mut self.s);
|
|
}
|
|
|
|
pub fn hash_path(&mut self, p: &Path<'_>) {
|
|
p.is_global().hash(&mut self.s);
|
|
for p in p.segments {
|
|
self.hash_name(p.ident.name);
|
|
}
|
|
}
|
|
|
|
pub fn hash_stmt(&mut self, b: &Stmt<'_>) {
|
|
std::mem::discriminant(&b.kind).hash(&mut self.s);
|
|
|
|
match &b.kind {
|
|
StmtKind::Local(local) => {
|
|
if let Some(ref init) = local.init {
|
|
self.hash_expr(init);
|
|
}
|
|
},
|
|
StmtKind::Item(..) => {},
|
|
StmtKind::Expr(expr) | StmtKind::Semi(expr) => {
|
|
self.hash_expr(expr);
|
|
},
|
|
}
|
|
}
|
|
|
|
pub fn hash_guard(&mut self, g: &Guard<'_>) {
|
|
match g {
|
|
Guard::If(ref expr) => {
|
|
self.hash_expr(expr);
|
|
},
|
|
}
|
|
}
|
|
|
|
pub fn hash_lifetime(&mut self, lifetime: &Lifetime) {
|
|
std::mem::discriminant(&lifetime.name).hash(&mut self.s);
|
|
if let LifetimeName::Param(ref name) = lifetime.name {
|
|
std::mem::discriminant(name).hash(&mut self.s);
|
|
match name {
|
|
ParamName::Plain(ref ident) => {
|
|
ident.name.hash(&mut self.s);
|
|
},
|
|
ParamName::Fresh(ref size) => {
|
|
size.hash(&mut self.s);
|
|
},
|
|
ParamName::Error => {},
|
|
}
|
|
}
|
|
}
|
|
|
|
pub fn hash_ty(&mut self, ty: &Ty<'_>) {
|
|
self.hash_tykind(&ty.kind);
|
|
}
|
|
|
|
pub fn hash_tykind(&mut self, ty: &TyKind<'_>) {
|
|
std::mem::discriminant(ty).hash(&mut self.s);
|
|
match ty {
|
|
TyKind::Slice(ty) => {
|
|
self.hash_ty(ty);
|
|
},
|
|
TyKind::Array(ty, anon_const) => {
|
|
self.hash_ty(ty);
|
|
self.hash_body(anon_const.body);
|
|
},
|
|
TyKind::Ptr(mut_ty) => {
|
|
self.hash_ty(&mut_ty.ty);
|
|
mut_ty.mutbl.hash(&mut self.s);
|
|
},
|
|
TyKind::Rptr(lifetime, mut_ty) => {
|
|
self.hash_lifetime(lifetime);
|
|
self.hash_ty(&mut_ty.ty);
|
|
mut_ty.mutbl.hash(&mut self.s);
|
|
},
|
|
TyKind::BareFn(bfn) => {
|
|
bfn.unsafety.hash(&mut self.s);
|
|
bfn.abi.hash(&mut self.s);
|
|
for arg in bfn.decl.inputs {
|
|
self.hash_ty(&arg);
|
|
}
|
|
match bfn.decl.output {
|
|
FnRetTy::DefaultReturn(_) => {
|
|
().hash(&mut self.s);
|
|
},
|
|
FnRetTy::Return(ref ty) => {
|
|
self.hash_ty(ty);
|
|
},
|
|
}
|
|
bfn.decl.c_variadic.hash(&mut self.s);
|
|
},
|
|
TyKind::Tup(ty_list) => {
|
|
for ty in *ty_list {
|
|
self.hash_ty(ty);
|
|
}
|
|
},
|
|
TyKind::Path(qpath) => match qpath {
|
|
QPath::Resolved(ref maybe_ty, ref path) => {
|
|
if let Some(ref ty) = maybe_ty {
|
|
self.hash_ty(ty);
|
|
}
|
|
for segment in path.segments {
|
|
segment.ident.name.hash(&mut self.s);
|
|
}
|
|
},
|
|
QPath::TypeRelative(ref ty, ref segment) => {
|
|
self.hash_ty(ty);
|
|
segment.ident.name.hash(&mut self.s);
|
|
},
|
|
},
|
|
TyKind::Def(_, arg_list) => {
|
|
for arg in *arg_list {
|
|
match arg {
|
|
GenericArg::Lifetime(ref l) => self.hash_lifetime(l),
|
|
GenericArg::Type(ref ty) => self.hash_ty(&ty),
|
|
GenericArg::Const(ref ca) => self.hash_body(ca.value.body),
|
|
}
|
|
}
|
|
},
|
|
TyKind::TraitObject(_, lifetime) => {
|
|
self.hash_lifetime(lifetime);
|
|
},
|
|
TyKind::Typeof(anon_const) => {
|
|
self.hash_body(anon_const.body);
|
|
},
|
|
TyKind::Err | TyKind::Infer | TyKind::Never => {},
|
|
}
|
|
}
|
|
|
|
pub fn hash_body(&mut self, body_id: BodyId) {
|
|
// swap out TypeckTables when hashing a body
|
|
let old_tables = self.tables;
|
|
self.tables = self.cx.tcx.body_tables(body_id);
|
|
self.hash_expr(&self.cx.tcx.hir().body(body_id).value);
|
|
self.tables = old_tables;
|
|
}
|
|
}
|