2020-03-27 12:56:18 -05:00
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//! Implementation of Chalk debug helper functions using TLS.
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use std::fmt;
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2020-05-22 09:40:42 -05:00
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use chalk_ir::{AliasTy, GenericArg, Goal, Goals, Lifetime, ProgramClauseImplication, TypeName};
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2020-04-13 07:39:44 -05:00
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use itertools::Itertools;
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2020-03-27 12:56:18 -05:00
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use super::{from_chalk, Interner};
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use crate::{db::HirDatabase, CallableDef, TypeCtor};
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2020-04-10 15:05:31 -05:00
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use hir_def::{AdtId, AssocContainerId, DefWithBodyId, Lookup, TypeAliasId};
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2020-03-27 12:56:18 -05:00
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pub use unsafe_tls::{set_current_program, with_current_program};
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pub struct DebugContext<'a>(&'a (dyn HirDatabase + 'a));
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impl DebugContext<'_> {
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pub fn debug_struct_id(
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&self,
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2020-05-22 10:50:58 -05:00
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id: super::AdtId,
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2020-03-27 12:56:18 -05:00
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f: &mut fmt::Formatter<'_>,
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) -> Result<(), fmt::Error> {
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2020-05-22 09:40:42 -05:00
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let type_ctor: TypeCtor = from_chalk(self.0, TypeName::Adt(id));
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2020-03-27 12:56:18 -05:00
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match type_ctor {
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TypeCtor::Bool => write!(f, "bool")?,
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TypeCtor::Char => write!(f, "char")?,
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TypeCtor::Int(t) => write!(f, "{}", t)?,
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TypeCtor::Float(t) => write!(f, "{}", t)?,
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TypeCtor::Str => write!(f, "str")?,
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TypeCtor::Slice => write!(f, "slice")?,
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TypeCtor::Array => write!(f, "array")?,
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TypeCtor::RawPtr(m) => write!(f, "*{}", m.as_keyword_for_ptr())?,
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TypeCtor::Ref(m) => write!(f, "&{}", m.as_keyword_for_ref())?,
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TypeCtor::Never => write!(f, "!")?,
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TypeCtor::Tuple { .. } => {
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write!(f, "()")?;
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}
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TypeCtor::FnPtr { .. } => {
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write!(f, "fn")?;
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}
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TypeCtor::FnDef(def) => {
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let name = match def {
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CallableDef::FunctionId(ff) => self.0.function_data(ff).name.clone(),
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CallableDef::StructId(s) => self.0.struct_data(s).name.clone(),
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CallableDef::EnumVariantId(e) => {
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let enum_data = self.0.enum_data(e.parent);
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enum_data.variants[e.local_id].name.clone()
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}
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};
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match def {
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CallableDef::FunctionId(_) => write!(f, "{{fn {}}}", name)?,
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CallableDef::StructId(_) | CallableDef::EnumVariantId(_) => {
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write!(f, "{{ctor {}}}", name)?
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}
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}
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}
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TypeCtor::Adt(def_id) => {
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let name = match def_id {
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AdtId::StructId(it) => self.0.struct_data(it).name.clone(),
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AdtId::UnionId(it) => self.0.union_data(it).name.clone(),
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AdtId::EnumId(it) => self.0.enum_data(it).name.clone(),
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};
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write!(f, "{}", name)?;
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}
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TypeCtor::AssociatedType(type_alias) => {
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let trait_ = match type_alias.lookup(self.0.upcast()).container {
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AssocContainerId::TraitId(it) => it,
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_ => panic!("not an associated type"),
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};
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let trait_name = self.0.trait_data(trait_).name.clone();
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let name = self.0.type_alias_data(type_alias).name.clone();
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write!(f, "{}::{}", trait_name, name)?;
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}
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TypeCtor::Closure { def, expr } => {
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2020-04-10 15:05:31 -05:00
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write!(f, "{{closure {:?} in ", expr.into_raw())?;
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match def {
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DefWithBodyId::FunctionId(func) => {
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write!(f, "fn {}", self.0.function_data(func).name)?
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}
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DefWithBodyId::StaticId(s) => {
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if let Some(name) = self.0.static_data(s).name.as_ref() {
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write!(f, "body of static {}", name)?;
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} else {
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write!(f, "body of unnamed static {:?}", s)?;
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}
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}
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DefWithBodyId::ConstId(c) => {
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if let Some(name) = self.0.const_data(c).name.as_ref() {
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write!(f, "body of const {}", name)?;
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} else {
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write!(f, "body of unnamed const {:?}", c)?;
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}
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}
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};
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write!(f, "}}")?;
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2020-03-27 12:56:18 -05:00
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}
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}
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Ok(())
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}
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pub fn debug_trait_id(
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&self,
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id: super::TraitId,
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fmt: &mut fmt::Formatter<'_>,
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) -> Result<(), fmt::Error> {
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let trait_: hir_def::TraitId = from_chalk(self.0, id);
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let trait_data = self.0.trait_data(trait_);
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write!(fmt, "{}", trait_data.name)
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}
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pub fn debug_assoc_type_id(
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&self,
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id: super::AssocTypeId,
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fmt: &mut fmt::Formatter<'_>,
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) -> Result<(), fmt::Error> {
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let type_alias: TypeAliasId = from_chalk(self.0, id);
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let type_alias_data = self.0.type_alias_data(type_alias);
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let trait_ = match type_alias.lookup(self.0.upcast()).container {
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AssocContainerId::TraitId(t) => t,
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_ => panic!("associated type not in trait"),
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};
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let trait_data = self.0.trait_data(trait_);
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write!(fmt, "{}::{}", trait_data.name, type_alias_data.name)
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}
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2020-04-18 06:36:35 -05:00
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pub fn debug_opaque_ty_id(
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&self,
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opaque_ty_id: chalk_ir::OpaqueTyId<Interner>,
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fmt: &mut fmt::Formatter<'_>,
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) -> Result<(), fmt::Error> {
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fmt.debug_struct("OpaqueTyId").field("index", &opaque_ty_id.0).finish()
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}
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2020-03-27 12:56:18 -05:00
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pub fn debug_alias(
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&self,
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2020-04-18 06:36:35 -05:00
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alias_ty: &AliasTy<Interner>,
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fmt: &mut fmt::Formatter<'_>,
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) -> Result<(), fmt::Error> {
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match alias_ty {
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AliasTy::Projection(projection_ty) => self.debug_projection_ty(projection_ty, fmt),
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AliasTy::Opaque(opaque_ty) => self.debug_opaque_ty(opaque_ty, fmt),
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}
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}
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pub fn debug_projection_ty(
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&self,
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projection_ty: &chalk_ir::ProjectionTy<Interner>,
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2020-03-27 12:56:18 -05:00
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fmt: &mut fmt::Formatter<'_>,
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) -> Result<(), fmt::Error> {
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2020-04-18 06:36:35 -05:00
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let type_alias: TypeAliasId = from_chalk(self.0, projection_ty.associated_ty_id);
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2020-03-27 12:56:18 -05:00
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let type_alias_data = self.0.type_alias_data(type_alias);
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let trait_ = match type_alias.lookup(self.0.upcast()).container {
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AssocContainerId::TraitId(t) => t,
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_ => panic!("associated type not in trait"),
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};
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let trait_data = self.0.trait_data(trait_);
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2020-04-18 06:36:35 -05:00
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let params = projection_ty.substitution.parameters(&Interner);
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2020-04-13 07:39:44 -05:00
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write!(fmt, "<{:?} as {}", ¶ms[0], trait_data.name,)?;
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if params.len() > 1 {
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write!(
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fmt,
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"<{}>",
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¶ms[1..].iter().format_with(", ", |x, f| f(&format_args!("{:?}", x))),
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)?;
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}
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write!(fmt, ">::{}", type_alias_data.name)
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2020-03-27 12:56:18 -05:00
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}
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2020-04-18 06:36:35 -05:00
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pub fn debug_opaque_ty(
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&self,
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opaque_ty: &chalk_ir::OpaqueTy<Interner>,
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fmt: &mut fmt::Formatter<'_>,
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) -> Result<(), fmt::Error> {
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write!(fmt, "{:?}", opaque_ty.opaque_ty_id)
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}
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2020-03-27 12:56:18 -05:00
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pub fn debug_ty(
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&self,
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ty: &chalk_ir::Ty<Interner>,
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fmt: &mut fmt::Formatter<'_>,
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) -> Result<(), fmt::Error> {
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write!(fmt, "{:?}", ty.data(&Interner))
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}
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pub fn debug_lifetime(
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&self,
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lifetime: &Lifetime<Interner>,
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fmt: &mut fmt::Formatter<'_>,
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) -> Result<(), fmt::Error> {
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write!(fmt, "{:?}", lifetime.data(&Interner))
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}
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2020-05-22 09:40:42 -05:00
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pub fn debug_generic_arg(
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2020-03-27 12:56:18 -05:00
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&self,
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2020-05-22 09:40:42 -05:00
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parameter: &GenericArg<Interner>,
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2020-03-27 12:56:18 -05:00
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fmt: &mut fmt::Formatter<'_>,
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) -> Result<(), fmt::Error> {
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write!(fmt, "{:?}", parameter.data(&Interner).inner_debug())
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}
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pub fn debug_goal(
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&self,
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goal: &Goal<Interner>,
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fmt: &mut fmt::Formatter<'_>,
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) -> Result<(), fmt::Error> {
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let goal_data = goal.data(&Interner);
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write!(fmt, "{:?}", goal_data)
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}
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pub fn debug_goals(
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&self,
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goals: &Goals<Interner>,
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fmt: &mut fmt::Formatter<'_>,
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) -> Result<(), fmt::Error> {
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write!(fmt, "{:?}", goals.debug(&Interner))
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}
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pub fn debug_program_clause_implication(
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&self,
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pci: &ProgramClauseImplication<Interner>,
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fmt: &mut fmt::Formatter<'_>,
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) -> Result<(), fmt::Error> {
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write!(fmt, "{:?}", pci.debug(&Interner))
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}
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pub fn debug_application_ty(
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&self,
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application_ty: &chalk_ir::ApplicationTy<Interner>,
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fmt: &mut fmt::Formatter<'_>,
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) -> Result<(), fmt::Error> {
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write!(fmt, "{:?}", application_ty.debug(&Interner))
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}
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pub fn debug_substitution(
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&self,
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substitution: &chalk_ir::Substitution<Interner>,
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fmt: &mut fmt::Formatter<'_>,
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) -> Result<(), fmt::Error> {
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write!(fmt, "{:?}", substitution.debug(&Interner))
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}
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pub fn debug_separator_trait_ref(
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&self,
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separator_trait_ref: &chalk_ir::SeparatorTraitRef<Interner>,
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fmt: &mut fmt::Formatter<'_>,
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) -> Result<(), fmt::Error> {
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write!(fmt, "{:?}", separator_trait_ref.debug(&Interner))
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}
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2020-05-22 11:05:48 -05:00
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pub fn debug_fn_def_id(
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&self,
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_fn_def_id: chalk_ir::FnDefId<Interner>,
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fmt: &mut fmt::Formatter<'_>,
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) -> Result<(), fmt::Error> {
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write!(fmt, "fn")
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}
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pub fn debug_const(
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&self,
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_constant: &chalk_ir::Const<Interner>,
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fmt: &mut fmt::Formatter<'_>,
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) -> fmt::Result {
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write!(fmt, "const")
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}
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pub fn debug_variable_kinds(
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&self,
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variable_kinds: &chalk_ir::VariableKinds<Interner>,
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fmt: &mut fmt::Formatter<'_>,
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) -> fmt::Result {
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write!(fmt, "{:?}", variable_kinds.as_slice(&Interner))
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}
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pub fn debug_variable_kinds_with_angles(
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&self,
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variable_kinds: &chalk_ir::VariableKinds<Interner>,
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fmt: &mut fmt::Formatter<'_>,
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) -> fmt::Result {
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write!(fmt, "{:?}", variable_kinds.inner_debug(&Interner))
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}
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pub fn debug_canonical_var_kinds(
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&self,
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canonical_var_kinds: &chalk_ir::CanonicalVarKinds<Interner>,
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fmt: &mut fmt::Formatter<'_>,
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) -> fmt::Result {
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write!(fmt, "{:?}", canonical_var_kinds.as_slice(&Interner))
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}
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pub fn debug_program_clause(
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&self,
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clause: &chalk_ir::ProgramClause<Interner>,
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fmt: &mut fmt::Formatter<'_>,
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) -> fmt::Result {
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write!(fmt, "{:?}", clause.data(&Interner))
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}
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pub fn debug_program_clauses(
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&self,
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clauses: &chalk_ir::ProgramClauses<Interner>,
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fmt: &mut fmt::Formatter<'_>,
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) -> fmt::Result {
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write!(fmt, "{:?}", clauses.as_slice(&Interner))
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}
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pub fn debug_quantified_where_clauses(
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&self,
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clauses: &chalk_ir::QuantifiedWhereClauses<Interner>,
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fmt: &mut fmt::Formatter<'_>,
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) -> fmt::Result {
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write!(fmt, "{:?}", clauses.as_slice(&Interner))
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}
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2020-03-27 12:56:18 -05:00
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}
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mod unsafe_tls {
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use super::DebugContext;
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use crate::db::HirDatabase;
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use scoped_tls::scoped_thread_local;
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scoped_thread_local!(static PROGRAM: DebugContext);
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pub fn with_current_program<R>(
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op: impl for<'a> FnOnce(Option<&'a DebugContext<'a>>) -> R,
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) -> R {
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if PROGRAM.is_set() {
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PROGRAM.with(|prog| op(Some(prog)))
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} else {
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op(None)
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}
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}
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pub fn set_current_program<OP, R>(p: &dyn HirDatabase, op: OP) -> R
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where
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OP: FnOnce() -> R,
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{
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let ctx = DebugContext(p);
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// we're transmuting the lifetime in the DebugContext to static. This is
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// fine because we only keep the reference for the lifetime of this
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// function, *and* the only way to access the context is through
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// `with_current_program`, which hides the lifetime through the `for`
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// type.
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let static_p: &DebugContext<'static> =
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unsafe { std::mem::transmute::<&DebugContext, &DebugContext<'static>>(&ctx) };
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PROGRAM.set(static_p, || op())
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}
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}
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