Commit Graph

1461 Commits

Author SHA1 Message Date
kadmin
3605675bb1 Add inferred args to typeck 2021-07-25 07:28:51 +00:00
kadmin
417b098cfc Add generic arg infer 2021-07-25 07:28:51 +00:00
bors
d9aa287672 Auto merge of #86580 - BoxyUwU:cgd-subst-ice, r=nikomatsakis
dont provide fwd declared params to cg defaults

Fixes #83938

```rust
#![feature(const_evaluatable_checked, const_generics, const_generics_defaults)]
#![allow(incomplete_features)]

pub struct Bar<const N: usize, const M: usize = { N + 1 }>;
pub fn foo<const N1: usize>() -> Bar<N1> { loop {} }

fn main() {}
```
This PR makes this code no longer ICE, it was ICE'ing previously because when building substs for `Bar<N1>` we would subst the anon ct: `ConstKind::Unevaluated({N + 1}, substs: [N, M])` with substs of `[N1]`. the anon const has forward declared params supplied though so we end up trying to substitute the provided `M` param which causes the ICE.

This PR doesn't handle the predicates of the const so
```rust
trait Foo<const N: usize> { const Assoc: usize; }
pub struct Bar<const N: usize = { <()>::Assoc }> where (): Foo<N>;
```
Resolves to `<() as Foo<N>>::Assoc` which can allow for using fwd declared params indirectly.

```rust
trait Foo<const N: usize> {}
struct Bar<const N: usize = { 2 + 3 }> where (): Foo<N>;
```
This code also ICEs under this PR because instantiating the default's predicates causes an ICE as predicates_of contains predicates with fwd declared params

PR was briefly discussed [in this zulip thread](https://rust-lang.zulipchat.com/#narrow/stream/260443-project-const-generics/topic/evil.20preds.20in.20param.20env.20.2386580)
2021-07-24 20:01:51 +00:00
Manish Goregaokar
e4d8f0e349
Rollup merge of #87348 - SkiFire13:fix-87261, r=oli-obk
Fix span when suggesting to add an associated type bound

Fixes #87261

Note that this fix is not perfect, it ~~will still give incorrect~~ won't give suggestions in some situations:
- If the associated type is defined on a supertrait of those contained in the opaque type, it will fallback to the previous behaviour, e.g. if `AssocTy` is defined on the trait `Foo`, `Bar` has `Foo` as supertrait and the opaque type is a `impl Bar + Baz`.
- If the the associated type is defined on a generic trait and the opaque type includes two versions of that generic trait, e.g. the opaque type is `impl Foo<A> + Foo<B>`
2021-07-24 09:51:56 -07:00
bors
f9b95f92c8 Auto merge of #86461 - crlf0710:rich_vtable, r=nikomatsakis
Refactor vtable format for upcoming trait_upcasting feature.

This modifies vtable format:
1. reordering occurrence order of methods coming from different traits
2. include `VPtr`s for supertraits where this vtable cannot be directly reused during trait upcasting.
Also, during codegen, the vtables corresponding to these newly included `VPtr` will be requested and generated.

For the cases where this vtable can directly used, now the super trait vtable has exactly the same content to some prefix of this one.

r? `@bjorn3`
cc `@RalfJung`
cc `@rust-lang/wg-traits`
2021-07-24 10:21:23 +00:00
Yuki Okushi
cb3b3cf6ab
Improve get_by_key_enumerated more 2021-07-23 18:04:21 +09:00
Giacomo Stevanato
b6badee140 Fix span when suggesting to add an associated type bound 2021-07-23 09:13:05 +02:00
Charles Lew
fbb353ae2b Add comment and more tests. 2021-07-22 23:29:53 +08:00
bors
7c89e389d0 Auto merge of #87265 - Aaron1011:hir-wf-fn, r=estebank
Support HIR wf checking for function signatures

During function type-checking, we normalize any associated types in
the function signature (argument types + return type), and then
create WF obligations for each of the normalized types. The HIR wf code
does not currently support this case, so any errors that we get have
imprecise spans.

This commit extends `ObligationCauseCode::WellFormed` to support
recording a function parameter, allowing us to get the corresponding
HIR type if an error occurs. Function typechecking is modified to
pass this information during signature normalization and WF checking.
The resulting code is fairly verbose, due to the fact that we can
no longer normalize the entire signature with a single function call.

As part of the refactoring, we now perform HIR-based WF checking
for several other 'typed items' (statics, consts, and inherent impls).

As a result, WF and projection errors in a function signature now
have a precise span, which points directly at the responsible type.
If a function signature is constructed via a macro, this will allow
the error message to point at the code 'most responsible' for the error
(e.g. a user-supplied macro argument).
2021-07-22 07:21:45 +00:00
bors
8024983ea7 Auto merge of #87246 - rust-lang:placeholder-pretty, r=nikomatsakis
When pretty printing, name placeholders as bound regions

Split from #85499

When we see a placeholder that we are going to print, treat it as a bound var (and add it to a `for<...>`
2021-07-22 02:22:02 +00:00
Ryan Levick
800c5f9202 Rename force-warns to force-warn 2021-07-21 15:41:10 +02:00
Aaron Hill
db0324ebb2
Support HIR wf checking for function signatures
During function type-checking, we normalize any associated types in
the function signature (argument types + return type), and then
create WF obligations for each of the normalized types. The HIR wf code
does not currently support this case, so any errors that we get have
imprecise spans.

This commit extends `ObligationCauseCode::WellFormed` to support
recording a function parameter, allowing us to get the corresponding
HIR type if an error occurs. Function typechecking is modified to
pass this information during signature normalization and WF checking.
The resulting code is fairly verbose, due to the fact that we can
no longer normalize the entire signature with a single function call.

As part of the refactoring, we now perform HIR-based WF checking
for several other 'typed items' (statics, consts, and inherent impls).

As a result, WF and projection errors in a function signature now
have a precise span, which points directly at the responsible type.
If a function signature is constructed via a macro, this will allow
the error message to point at the code 'most responsible' for the error
(e.g. a user-supplied macro argument).
2021-07-20 10:58:14 -05:00
Charles Lew
634638782b Switch to store Instance directly within VtblEntry, fix TraitVPtr representation. 2021-07-20 22:53:02 +08:00
Charles Lew
d2dc4276fd Refactor vtable format. 2021-07-20 22:14:42 +08:00
bors
da7d405357 Auto merge of #87244 - jackh726:issue-71883, r=estebank
Better diagnostics with mismatched types due to implicit static lifetime

Fixes #78113

I think this is my first diagnostics PR...definitely happy to hear thoughts on the direction/implementation here.

I was originally just trying to solve the error above, where the lifetime on a GAT was causing a cryptic "mismatched types" error. But as I was writing this, I realized that this (unintentionally) also applied to a different case: `wf-in-foreign-fn-decls-issue-80468.rs`. I'm not sure if this diagnostic should get a new error code, or even reuse an existing one. And, there might be some ways to make this even more generalized. Also, the error is a bit more lengthy and verbose than probably needed. So thoughts there are welcome too.

This PR essentially ended up adding a new nice region error pass that triggers if a type doesn't match the self type of an impl which is selected because of a predicate because of an implicit static bound on that self type.

r? `@estebank`
2021-07-20 10:56:08 +00:00
bors
718d53b0cb Auto merge of #87224 - RalfJung:miri-ptr-oob, r=oli-obk
miri: better ptr-out-of-bounds errors

For offsets larger than `isize::MAX`, display them as negative offsets.

r? `@oli-obk`
2021-07-20 08:15:15 +00:00
jackh726
3cd5ad5cd7 Better diagnostics when mismatched types due to implict static lifetime 2021-07-19 18:20:21 -04:00
Guillaume Gomez
6cb69ea790
Rollup merge of #87268 - SkiFire13:fix-uninit-ref-list, r=nagisa
Don't create references to uninitialized data in `List::from_arena`

Previously `result` and `arena_slice` were references pointing to uninitialized data, which is technically UB. They may have been fine because the pointed data is `Copy` and and they were only written to, but the semantics of this aren't clearly defined yet, and since we have a sound way to do the same thing I don't think we should keep the possibly-unsound way.
2021-07-19 11:37:49 +02:00
Giacomo Stevanato
98e9d16d25 Don't create references to uninitialized data in List::from_arena 2021-07-19 10:47:45 +02:00
bors
18073052d8 Auto merge of #86698 - cjgillot:modc, r=estebank
Move OnDiskCache to rustc_query_impl.

This should be the last remnant of the query implementation that was still in rustc_middle.
2021-07-18 10:42:23 +00:00
Camille GILLOT
5b921505ef Remove deadlock virtual call. 2021-07-18 11:14:08 +02:00
Camille GILLOT
81241cbf3a Move OnDiskCache to rustc_query_impl. 2021-07-18 11:14:07 +02:00
Ralf Jung
bed3b965ae miri: better ptr-out-of-bounds errors 2021-07-18 10:38:00 +02:00
jackh726
b9ee2fb6d8 When pretty printing, name placeholders as bound regions 2021-07-18 03:35:54 -04:00
Yuki Okushi
810e47897a
Rollup merge of #87205 - matthiaskrgr:clippy_cln, r=oli-obk
rustc_middle: remove redundant clone

found while looking through some clippy lint warnings
2021-07-18 14:21:59 +09:00
Yuki Okushi
81d0b70402
Rollup merge of #87092 - ricobbe:fix-raw-dylib-multiple-definitions, r=petrochenkov
Remove nondeterminism in multiple-definitions test

Compare all fields in `DllImport` when sorting to avoid nondeterminism in the error for multiple inconsistent definitions of an extern function.  Restore the multiple-definitions test.

Resolves #87084.
2021-07-18 14:21:56 +09:00
bors
68511b574f Auto merge of #86676 - cjgillot:localexpn, r=petrochenkov
Make expansions stable for incr. comp.

This PR aims to make expansions stable for incr. comp. by using the same architecture as definitions:
- the interned identifier `ExpnId` contains a `CrateNum` and a crate-local id;
- bidirectional maps `ExpnHash <-> ExpnId` are setup;
- incr. comp. on-disk cache saves and reconstructs expansions using their `ExpnHash`.

I tried to use as many `LocalExpnId` as I could in the resolver code, but I may have missed a few opportunities.

All this will allow to use an `ExpnId` as a query key, and to force this query without recomputing caller queries. For instance, this will be used to implement #85999.

r? `@petrochenkov`
2021-07-17 17:56:46 +00:00
Camille GILLOT
0f8573e57b Pass ExpnData by reference. 2021-07-17 19:41:12 +02:00
Camille GILLOT
a51b131fd1 Always hash spans in expn. 2021-07-17 19:41:11 +02:00
Camille GILLOT
37a13def48 Encode ExpnId using ExpnHash for incr. comp. 2021-07-17 19:41:08 +02:00
Camille GILLOT
2fe37c5bd1 Choose encoding format in caller code. 2021-07-17 19:41:07 +02:00
Camille GILLOT
6e78d6c9d6 Make the CrateNum part of the ExpnId. 2021-07-17 19:35:33 +02:00
bors
c78ebb7bdc Auto merge of #87123 - RalfJung:miri-provenance-overhaul, r=oli-obk
CTFE/Miri engine Pointer type overhaul

This fixes the long-standing problem that we are using `Scalar` as a type to represent pointers that might be integer values (since they point to a ZST). The main problem is that with int-to-ptr casts, there are multiple ways to represent the same pointer as a `Scalar` and it is unclear if "normalization" (i.e., the cast) already happened or not. This leads to ugly methods like `force_mplace_ptr` and `force_op_ptr`.
Another problem this solves is that in Miri, it would make a lot more sense to have the `Pointer::offset` field represent the full absolute address (instead of being relative to the `AllocId`). This means we can do ptr-to-int casts without access to any machine state, and it means that the overflow checks on pointer arithmetic are (finally!) accurate.

To solve this, the `Pointer` type is made entirely parametric over the provenance, so that we can use `Pointer<AllocId>` inside `Scalar` but use `Pointer<Option<AllocId>>` when accessing memory (where `None` represents the case that we could not figure out an `AllocId`; in that case the `offset` is an absolute address). Moreover, the `Provenance` trait determines if a pointer with a given provenance can be cast to an integer by simply dropping the provenance.

I hope this can be read commit-by-commit, but the first commit does the bulk of the work. It introduces some FIXMEs that are resolved later.
Fixes https://github.com/rust-lang/miri/issues/841
Miri PR: https://github.com/rust-lang/miri/pull/1851
r? `@oli-obk`
2021-07-17 15:26:27 +00:00
bors
f502bd3abd Auto merge of #86761 - Alexhuszagh:master, r=estebank
Update Rust Float-Parsing Algorithms to use the Eisel-Lemire algorithm.

# Summary

Rust, although it implements a correct float parser, has major performance issues in float parsing. Even for common floats, the performance can be 3-10x [slower](https://arxiv.org/pdf/2101.11408.pdf) than external libraries such as [lexical](https://github.com/Alexhuszagh/rust-lexical) and [fast-float-rust](https://github.com/aldanor/fast-float-rust).

Recently, major advances in float-parsing algorithms have been developed by Daniel Lemire, along with others, and implement a fast, performant, and correct float parser, with speeds up to 1200 MiB/s on Apple's M1 architecture for the [canada](0e2b5d163d/data/canada.txt) dataset, 10x faster than Rust's 130 MiB/s.

In addition, [edge-cases](https://github.com/rust-lang/rust/issues/85234) in Rust's [dec2flt](868c702d0c/library/core/src/num/dec2flt) algorithm can lead to over a 1600x slowdown relative to efficient algorithms. This is due to the use of Clinger's correct, but slow [AlgorithmM and Bellepheron](http://citeseerx.ist.psu.edu/viewdoc/download?doi=10.1.1.45.4152&rep=rep1&type=pdf), which have been improved by faster big-integer algorithms and the Eisel-Lemire algorithm, respectively.

Finally, this algorithm provides substantial improvements in the number of floats the Rust core library can parse. Denormal floats with a large number of digits cannot be parsed, due to use of the `Big32x40`, which simply does not have enough digits to round a float correctly. Using a custom decimal class, with much simpler logic, we can parse all valid decimal strings of any digit count.

```rust
// Issue in Rust's dec2fly.
"2.47032822920623272088284396434110686182e-324".parse::<f64>();   // Err(ParseFloatError { kind: Invalid })
```

# Solution

This pull request implements the Eisel-Lemire algorithm, modified from [fast-float-rust](https://github.com/aldanor/fast-float-rust) (which is licensed under Apache 2.0/MIT), along with numerous modifications to make it more amenable to inclusion in the Rust core library. The following describes both features in fast-float-rust and improvements in fast-float-rust for inclusion in core.

**Documentation**

Extensive documentation has been added to ensure the code base may be maintained by others, which explains the algorithms as well as various associated constants and routines. For example, two seemingly magical constants include documentation to describe how they were derived as follows:

```rust
    // Round-to-even only happens for negative values of q
    // when q ≥ −4 in the 64-bit case and when q ≥ −17 in
    // the 32-bitcase.
    //
    // When q ≥ 0,we have that 5^q ≤ 2m+1. In the 64-bit case,we
    // have 5^q ≤ 2m+1 ≤ 2^54 or q ≤ 23. In the 32-bit case,we have
    // 5^q ≤ 2m+1 ≤ 2^25 or q ≤ 10.
    //
    // When q < 0, we have w ≥ (2m+1)×5^−q. We must have that w < 2^64
    // so (2m+1)×5^−q < 2^64. We have that 2m+1 > 2^53 (64-bit case)
    // or 2m+1 > 2^24 (32-bit case). Hence,we must have 2^53×5^−q < 2^64
    // (64-bit) and 2^24×5^−q < 2^64 (32-bit). Hence we have 5^−q < 2^11
    // or q ≥ −4 (64-bit case) and 5^−q < 2^40 or q ≥ −17 (32-bitcase).
    //
    // Thus we have that we only need to round ties to even when
    // we have that q ∈ [−4,23](in the 64-bit case) or q∈[−17,10]
    // (in the 32-bit case). In both cases,the power of five(5^|q|)
    // fits in a 64-bit word.
    const MIN_EXPONENT_ROUND_TO_EVEN: i32;
    const MAX_EXPONENT_ROUND_TO_EVEN: i32;
```

This ensures maintainability of the code base.

**Improvements for Disguised Fast-Path Cases**

The fast path in float parsing algorithms attempts to use native, machine floats to represent both the significant digits and the exponent, which is only possible if both can be exactly represented without rounding. In practice, this means that the significant digits must be 53-bits or less and the then exponent must be in the range `[-22, 22]` (for an f64). This is similar to the existing dec2flt implementation.

However, disguised fast-path cases exist, where there are few significant digits and an exponent above the valid range, such as `1.23e25`. In this case, powers-of-10 may be shifted from the exponent to the significant digits, discussed at length in https://github.com/rust-lang/rust/issues/85198.

**Digit Parsing Improvements**

Typically, integers are parsed from string 1-at-a-time, requiring unnecessary multiplications which can slow down parsing. An approach to parse 8 digits at a time using only 3 multiplications is described in length [here](https://johnnylee-sde.github.io/Fast-numeric-string-to-int/). This leads to significant performance improvements, and is implemented for both big and little-endian systems.

**Unsafe Changes**

Relative to fast-float-rust, this library makes less use of unsafe functionality and clearly documents it. This includes the refactoring and documentation of numerous unsafe methods undesirably marked as safe. The original code would look something like this, which is deceptively marked as safe for unsafe functionality.

```rust
impl AsciiStr {
    #[inline]
    pub fn step_by(&mut self, n: usize) -> &mut Self {
        unsafe { self.ptr = self.ptr.add(n) };
        self
    }
}

...

#[inline]
fn parse_scientific(s: &mut AsciiStr<'_>) -> i64 {
    // the first character is 'e'/'E' and scientific mode is enabled
    let start = *s;
    s.step();
    ...
}
```

The new code clearly documents safety concerns, and does not mark unsafe functionality as safe, leading to better safety guarantees.

```rust
impl AsciiStr {
    /// Advance the view by n, advancing it in-place to (n..).
    pub unsafe fn step_by(&mut self, n: usize) -> &mut Self {
        // SAFETY: same as step_by, safe as long n is less than the buffer length
        self.ptr = unsafe { self.ptr.add(n) };
        self
    }
}

...

/// Parse the scientific notation component of a float.
fn parse_scientific(s: &mut AsciiStr<'_>) -> i64 {
    let start = *s;
    // SAFETY: the first character is 'e'/'E' and scientific mode is enabled
    unsafe {
        s.step();
    }
    ...
}
```

This allows us to trivially demonstrate the new implementation of dec2flt is safe.

**Inline Annotations Have Been Removed**

In the previous implementation of dec2flt, inline annotations exist practically nowhere in the entire module. Therefore, these annotations have been removed, which mostly does not impact [performance](https://github.com/aldanor/fast-float-rust/issues/15#issuecomment-864485157).

**Fixed Correctness Tests**

Numerous compile errors in `src/etc/test-float-parse` were present, due to deprecation of `time.clock()`, as well as the crate dependencies with `rand`. The tests have therefore been reworked as a [crate](https://github.com/Alexhuszagh/rust/tree/master/src/etc/test-float-parse), and any errors in `runtests.py` have been patched.

**Undefined Behavior**

An implementation of `check_len` which relied on undefined behavior (in fast-float-rust) has been refactored, to ensure that the behavior is well-defined. The original code is as follows:

```rust
    #[inline]
    pub fn check_len(&self, n: usize) -> bool {
        unsafe { self.ptr.add(n) <= self.end }
    }
```

And the new implementation is as follows:

```rust
    /// Check if the slice at least `n` length.
    fn check_len(&self, n: usize) -> bool {
        n <= self.as_ref().len()
    }
```

Note that this has since been fixed in [fast-float-rust](https://github.com/aldanor/fast-float-rust/pull/29).

**Inferring Binary Exponents**

Rather than explicitly store binary exponents, this new implementation infers them from the decimal exponent, reducing the amount of static storage required. This removes the requirement to store [611 i16s](868c702d0c/library/core/src/num/dec2flt/table.rs (L8)).

# Code Size

The code size, for all optimizations, does not considerably change relative to before for stripped builds, however it is **significantly** smaller prior to stripping the resulting binaries. These binary sizes were calculated on x86_64-unknown-linux-gnu.

**new**

Using rustc version 1.55.0-dev.

opt-level|size|size(stripped)
|:-:|:-:|:-:|
0|400k|300K
1|396k|292K
2|392k|292K
3|392k|296K
s|396k|292K
z|396k|292K

**old**

Using rustc version 1.53.0-nightly.

opt-level|size|size(stripped)
|:-:|:-:|:-:|
0|3.2M|304K
1|3.2M|292K
2|3.1M|284K
3|3.1M|284K
s|3.1M|284K
z|3.1M|284K

# Correctness

The dec2flt implementation passes all of Rust's unittests and comprehensive float parsing tests, along with numerous other tests such as Nigel Toa's comprehensive float [tests](https://github.com/nigeltao/parse-number-fxx-test-data) and Hrvoje Abraham  [strtod_tests](https://github.com/ahrvoje/numerics/blob/master/strtod/strtod_tests.toml). Therefore, it is unlikely that this algorithm will incorrectly round parsed floats.

# Issues Addressed

This will fix and close the following issues:

- resolves #85198
- resolves #85214
- resolves #85234
- fixes #31407
- fixes #31109
- fixes #53015
- resolves #68396
- closes https://github.com/aldanor/fast-float-rust/issues/15
2021-07-17 12:56:22 +00:00
Alex Huszagh
8752b40369 Changed dec2flt to use the Eisel-Lemire algorithm.
Implementation is based off fast-float-rust, with a few notable changes.

- Some unsafe methods have been removed.
- Safe methods with inherently unsafe functionality have been removed.
- All unsafe functionality is documented and provably safe.
- Extensive documentation has been added for simpler maintenance.
- Inline annotations on internal routines has been removed.
- Fixed Python errors in src/etc/test-float-parse/runtests.py.
- Updated test-float-parse to be a library, to avoid missing rand dependency.
- Added regression tests for #31109 and #31407 in core tests.
- Added regression tests for #31109 and #31407 in ui tests.
- Use the existing slice primitive to simplify shared dec2flt methods
- Remove Miri ignores from dec2flt, due to faster parsing times.

- resolves #85198
- resolves #85214
- resolves #85234
- fixes #31407
- fixes #31109
- fixes #53015
- resolves #68396
- closes https://github.com/aldanor/fast-float-rust/issues/15
2021-07-17 00:30:34 -05:00
bors
0cd12d649e Auto merge of #87195 - yaahc:move-assert_matches-again, r=oli-obk
rename assert_matches module

Fixes nightly breakage introduced in https://github.com/rust-lang/rust/pull/86947
2021-07-17 00:35:36 +00:00
Matthias Krüger
6ffb6c46c7 rustc_middle: remove redundant clone
found while looking through some clippy lint warnings
2021-07-17 00:42:53 +02:00
bors
32c447e179 Auto merge of #83898 - Aaron1011:feature/hir-wf, r=estebank
Add initial implementation of HIR-based WF checking for diagnostics

During well-formed checking, we walk through all types 'nested' in
generic arguments. For example, WF-checking `Option<MyStruct<u8>>`
will cause us to check `MyStruct<u8>` and `u8`. However, this is done
on a `rustc_middle::ty::Ty`, which has no span information. As a result,
any errors that occur will have a very general span (e.g. the
definintion of an associated item).

This becomes a problem when macros are involved. In general, an
associated type like `type MyType = Option<MyStruct<u8>>;` may
have completely different spans for each nested type in the HIR. Using
the span of the entire associated item might end up pointing to a macro
invocation, even though a user-provided span is available in one of the
nested types.

This PR adds a framework for HIR-based well formed checking. This check
is only run during error reporting, and is used to obtain a more precise
span for an existing error. This is accomplished by individually
checking each 'nested' type in the HIR for the type, allowing us to
find the most-specific type (and span) that produces a given error.

The majority of the changes are to the error-reporting code. However,
some of the general trait code is modified to pass through more
information.

Since this has no soundness implications, I've implemented a minimal
version to begin with, which can be extended over time. In particular,
this only works for HIR items with a corresponding `DefId` (e.g. it will
not work for WF-checking performed within function bodies).
2021-07-16 21:54:42 +00:00
Aaron Hill
a765333738
Add initial implementation of HIR-based WF checking for diagnostics
During well-formed checking, we walk through all types 'nested' in
generic arguments. For example, WF-checking `Option<MyStruct<u8>>`
will cause us to check `MyStruct<u8>` and `u8`. However, this is done
on a `rustc_middle::ty::Ty`, which has no span information. As a result,
any errors that occur will have a very general span (e.g. the
definintion of an associated item).

This becomes a problem when macros are involved. In general, an
associated type like `type MyType = Option<MyStruct<u8>>;` may
have completely different spans for each nested type in the HIR. Using
the span of the entire associated item might end up pointing to a macro
invocation, even though a user-provided span is available in one of the
nested types.

This PR adds a framework for HIR-based well formed checking. This check
is only run during error reporting, and is used to obtain a more precise
span for an existing error. This is accomplished by individually
checking each 'nested' type in the HIR for the type, allowing us to
find the most-specific type (and span) that produces a given error.

The majority of the changes are to the error-reporting code. However,
some of the general trait code is modified to pass through more
information.

Since this has no soundness implications, I've implemented a minimal
version to begin with, which can be extended over time. In particular,
this only works for HIR items with a corresponding `DefId` (e.g. it will
not work for WF-checking performed within function bodies).
2021-07-16 16:29:02 -05:00
Richard Cobbe
ce59f1aac5 Consider all fields when comparing DllImports, to remove nondetermininsm in multiple-definitions test 2021-07-16 11:10:31 -07:00
Ralf Jung
efbee50600 avoid manual Debug impls by adding extra Provenance bounds to types
I wish the derive macro would support adding extra where clauses...
2021-07-16 20:02:14 +02:00
Guillaume Gomez
7d36d69b4a
Rollup merge of #87200 - oli-obk:fixup_fixup_opaque_types, r=nikomatsakis
TAIT: Infer all inference variables in opaque type substitutions via InferCx

The previous algorithm was correct for the example given in its
documentation, but when the TAIT was declared as a free item
instead of an associated item, the generic parameters were the
wrong ones.

cc `@spastorino`

r? `@nikomatsakis`
2021-07-16 19:54:12 +02:00
Oli Scherer
ebe21ac23a Infer all inference variables via InferCx
The previous algorithm was correct for the example given in its
documentation, but when the TAIT was declared as a free item
instead of an associated item, the generic parameters were the
wrong ones.
2021-07-16 17:37:28 +00:00
Jane Lusby
93b7aee2da rename assert_matches module 2021-07-16 09:18:14 -07:00
Ralf Jung
a5299fb688 add some comments regarding the two major quirks of our memory model 2021-07-16 13:16:09 +02:00
Ralf Jung
7c720ce612 get rid of incorrect erase_for_fmt 2021-07-16 10:09:56 +02:00
bors
27e4205881 Auto merge of #86993 - jackh726:project-gat-binders, r=nikomatsakis
Replace associated item bound vars with placeholders when projecting

Fixes #76407
Fixes #76826

Similar, but more limited, to #85499. This allows us to handle things like `for<'a> <T as Trait>::Assoc<'a>` but not `for<'a> <T as Trait<'a>>::Assoc`, unblocking GATs.

r? `@nikomatsakis`
2021-07-16 01:11:37 +00:00
Ralf Jung
4e28065618 tweak pointer out-of-bounds error message 2021-07-15 22:47:11 +02:00
bors
b1f8e27b74 Auto merge of #83319 - tmiasko:packed-aligned, r=jackh726
Layout error instead of an ICE for packed and aligned types

Fixes #83107.
2021-07-15 19:51:17 +00:00
Camille GILLOT
47ea2ae933 Separate encoding paths.
The two paths will be modified independently in the next few commits.
2021-07-15 19:31:46 +02:00