Use sequenced collection for VarMap #388
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@ -616,6 +616,7 @@ name = "nac3core"
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version = "0.1.0"
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dependencies = [
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"crossbeam",
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"indexmap 2.2.5",
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"indoc",
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"inkwell",
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"insta",
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@ -7,6 +7,7 @@ edition = "2021"
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[dependencies]
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itertools = "0.12"
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crossbeam = "0.8"
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indexmap = "2.2"
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parking_lot = "0.12"
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rayon = "1.8"
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nac3parser = { path = "../nac3parser" }
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@ -9,6 +9,7 @@ use crate::{
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use nac3parser::ast::StrRef;
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use std::collections::HashMap;
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use indexmap::IndexMap;
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pub struct ConcreteTypeStore {
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store: Vec<ConcreteTypeEnum>,
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@ -50,7 +51,7 @@ pub enum ConcreteTypeEnum {
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TObj {
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obj_id: DefinitionId,
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fields: HashMap<StrRef, (ConcreteType, bool)>,
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params: HashMap<u32, ConcreteType>,
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params: IndexMap<u32, ConcreteType>,
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},
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TVirtual {
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ty: ConcreteType,
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@ -59,7 +59,7 @@ pub fn get_subst_key(
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params.clone()
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})
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.unwrap_or_default();
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vars.extend(fun_vars.iter());
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vars.extend(fun_vars);
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let sorted = vars.keys().filter(|id| filter.map_or(true, |v| v.contains(id))).sorted();
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sorted
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.map(|id| {
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@ -1983,7 +1983,6 @@ pub fn gen_expr<'ctx, G: CodeGenerator>(
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}
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TypeEnum::TObj { obj_id, params, .. } if *obj_id == PRIMITIVE_DEF_IDS.ndarray => {
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let (ty, ndims) = params.iter()
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.sorted_by_key(|(var_id, _)| *var_id)
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.map(|(_, ty)| ty)
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.collect_tuple()
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.unwrap();
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@ -10,7 +10,7 @@ use crate::{
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},
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typecheck::{
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type_inferencer::{FunctionData, Inferencer, PrimitiveStore},
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typedef::{FunSignature, FuncArg, Type, TypeEnum, Unifier},
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typedef::{FunSignature, FuncArg, Type, TypeEnum, Unifier, VarMap},
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},
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};
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use indoc::indoc;
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@ -25,7 +25,6 @@ use nac3parser::{
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use parking_lot::RwLock;
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use std::collections::{HashMap, HashSet};
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use std::sync::Arc;
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use crate::typecheck::typedef::VarMap;
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struct Resolver {
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id_to_type: HashMap<StrRef, Type>,
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@ -1926,9 +1926,8 @@ impl TopLevelComposer {
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ret_str,
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name,
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ast.as_ref().unwrap().location
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),
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]))
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}
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),]))
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}
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instance_to_stmt.insert(
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get_subst_key(unifier, self_type, &subst, Some(&vars.keys().copied().collect())),
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@ -28,7 +28,6 @@ pub fn make_ndarray_ty(
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let tvar_ids = params.iter()
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.map(|(obj_id, _)| *obj_id)
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.sorted()
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.collect_vec();
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debug_assert_eq!(tvar_ids.len(), 2);
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@ -7,7 +7,7 @@ expression: res_vec
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"Class {\nname: \"A\",\nancestors: [\"A[T, V]\"],\nfields: [\"a\", \"b\"],\nmethods: [(\"__init__\", \"fn[[v:V], none]\"), (\"fun\", \"fn[[a:T], V]\")],\ntype_vars: [\"T\", \"V\"]\n}\n",
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"Function {\nname: \"A.__init__\",\nsig: \"fn[[v:V], none]\",\nvar_id: [32]\n}\n",
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"Function {\nname: \"A.fun\",\nsig: \"fn[[a:T], V]\",\nvar_id: [37]\n}\n",
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"Function {\nname: \"gfun\",\nsig: \"fn[[a:A[int32, list[float]]], none]\",\nvar_id: []\n}\n",
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"Function {\nname: \"gfun\",\nsig: \"fn[[a:A[list[float], int32]], none]\",\nvar_id: []\n}\n",
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"Class {\nname: \"B\",\nancestors: [\"B\"],\nfields: [],\nmethods: [(\"__init__\", \"fn[[], none]\")],\ntype_vars: []\n}\n",
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"Function {\nname: \"B.__init__\",\nsig: \"fn[[], none]\",\nvar_id: []\n}\n",
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]
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@ -3,11 +3,11 @@ source: nac3core/src/toplevel/test.rs
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expression: res_vec
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---
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[
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"Class {\nname: \"A\",\nancestors: [\"A[typevar18, typevar19]\"],\nfields: [\"a\", \"b\"],\nmethods: [(\"__init__\", \"fn[[a:A[bool, float], b:B], none]\"), (\"fun\", \"fn[[a:A[bool, float]], A[bool, int32]]\")],\ntype_vars: [\"typevar18\", \"typevar19\"]\n}\n",
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"Function {\nname: \"A.__init__\",\nsig: \"fn[[a:A[bool, float], b:B], none]\",\nvar_id: []\n}\n",
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"Function {\nname: \"A.fun\",\nsig: \"fn[[a:A[bool, float]], A[bool, int32]]\",\nvar_id: []\n}\n",
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"Class {\nname: \"B\",\nancestors: [\"B\", \"A[int64, bool]\"],\nfields: [\"a\", \"b\"],\nmethods: [(\"__init__\", \"fn[[], none]\"), (\"fun\", \"fn[[a:A[bool, float]], A[bool, int32]]\"), (\"foo\", \"fn[[b:B], B]\"), (\"bar\", \"fn[[a:A[int32, list[B]]], tuple[A[bool, virtual[A[B, int32]]], B]]\")],\ntype_vars: []\n}\n",
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"Class {\nname: \"A\",\nancestors: [\"A[typevar18, typevar19]\"],\nfields: [\"a\", \"b\"],\nmethods: [(\"__init__\", \"fn[[a:A[float, bool], b:B], none]\"), (\"fun\", \"fn[[a:A[float, bool]], A[bool, int32]]\")],\ntype_vars: [\"typevar18\", \"typevar19\"]\n}\n",
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"Function {\nname: \"A.__init__\",\nsig: \"fn[[a:A[float, bool], b:B], none]\",\nvar_id: []\n}\n",
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"Function {\nname: \"A.fun\",\nsig: \"fn[[a:A[float, bool]], A[bool, int32]]\",\nvar_id: []\n}\n",
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"Class {\nname: \"B\",\nancestors: [\"B\", \"A[int64, bool]\"],\nfields: [\"a\", \"b\"],\nmethods: [(\"__init__\", \"fn[[], none]\"), (\"fun\", \"fn[[a:A[float, bool]], A[bool, int32]]\"), (\"foo\", \"fn[[b:B], B]\"), (\"bar\", \"fn[[a:A[list[B], int32]], tuple[A[virtual[A[B, int32]], bool], B]]\")],\ntype_vars: []\n}\n",
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"Function {\nname: \"B.__init__\",\nsig: \"fn[[], none]\",\nvar_id: []\n}\n",
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"Function {\nname: \"B.foo\",\nsig: \"fn[[b:B], B]\",\nvar_id: []\n}\n",
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"Function {\nname: \"B.bar\",\nsig: \"fn[[a:A[int32, list[B]]], tuple[A[bool, virtual[A[B, int32]]], B]]\",\nvar_id: []\n}\n",
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"Function {\nname: \"B.bar\",\nsig: \"fn[[a:A[list[B], int32]], tuple[A[virtual[A[B, int32]], bool], B]]\",\nvar_id: []\n}\n",
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]
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@ -1,5 +1,6 @@
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use crate::symbol_resolver::SymbolValue;
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use crate::toplevel::helper::PRIMITIVE_DEF_IDS;
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use crate::typecheck::typedef::VarMap;
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use super::*;
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use nac3parser::ast::Constant;
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@ -1,10 +1,11 @@
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use std::cell::RefCell;
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use std::collections::{BTreeMap, HashMap};
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use std::collections::HashMap;
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use std::fmt::Display;
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use std::rc::Rc;
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use std::sync::{Arc, Mutex};
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use std::{borrow::Cow, collections::HashSet};
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use std::iter::zip;
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use indexmap::IndexMap;
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use itertools::Itertools;
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use nac3parser::ast::{Location, StrRef};
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@ -25,14 +26,10 @@ pub type Type = UnificationKey;
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pub struct CallId(pub(super) usize);
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pub type Mapping<K, V = Type> = HashMap<K, V>;
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pub type IndexMapping<K, V = Type> = IndexMap<K, V>;
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/// A [`Mapping`] sorted by its key.
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///
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/// This type is recommended for mappings that should be stored and/or iterated by its sorted key.
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pub type SortedMapping<K, V = Type> = BTreeMap<K, V>;
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/// A [`BTreeMap`] storing the mapping between type variable ID and [unifier type][`Type`].
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pub type VarMap = SortedMapping<u32>;
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/// The mapping between type variable ID and [unifier type][`Type`].
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pub type VarMap = IndexMapping<u32>;
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#[derive(Clone)]
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pub struct Call {
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@ -920,8 +917,8 @@ impl Unifier {
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// Sort the type arguments by its UnificationKey first, since `HashMap::iter` visits
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// all K-V pairs "in arbitrary order"
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let (tv1, tv2) = (
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params1.iter().sorted_by_key(|(k, _)| *k).map(|(_, v)| v).collect_vec(),
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params2.iter().sorted_by_key(|(k, _)| *k).map(|(_, v)| v).collect_vec(),
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params1.iter().map(|(_, v)| v).collect_vec(),
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params2.iter().map(|(_, v)| v).collect_vec(),
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);
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for (x, y) in zip(tv1, tv2) {
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if self.unify_impl(*x, *y, false).is_err() {
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@ -1097,11 +1094,9 @@ impl Unifier {
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if params.is_empty() {
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name
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} else {
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let params = params
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let mut params = params
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.iter()
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.map(|(_, v)| self.internal_stringify(*v, obj_to_name, var_to_name, notes));
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// sort to preserve order
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let mut params = params.sorted();
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format!("{}[{}]", name, params.join(", "))
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}
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}
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@ -1283,12 +1278,12 @@ impl Unifier {
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fn subst_map<K>(
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&mut self,
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map: &SortedMapping<K>,
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map: &IndexMapping<K>,
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mapping: &VarMap,
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cache: &mut HashMap<Type, Option<Type>>,
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) -> Option<SortedMapping<K>>
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where
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K: Ord + Eq + Clone,
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) -> Option<IndexMapping<K>>
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where
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K: std::hash::Hash + Eq + Clone,
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{
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let mut map2 = None;
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for (k, v) in map {
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|
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@ -45,9 +45,9 @@ impl Unifier {
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}
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}
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fn map_eq<K>(&mut self, map1: &SortedMapping<K>, map2: &SortedMapping<K>) -> bool
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where
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K: Ord + Eq + Clone,
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fn map_eq<K>(&mut self, map1: &IndexMapping<K>, map2: &IndexMapping<K>) -> bool
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where
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K: std::hash::Hash + Eq + Clone
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{
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if map1.len() != map2.len() {
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return false;
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