add stub for proof trees (#1700)
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- [The solver](./solve/the-solver.md)
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- [Canonicalization](./solve/canonicalization.md)
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- [Coinduction](./solve/coinduction.md)
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- [Proof trees](./solve/proof-trees.md)
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- [Type checking](./type-checking.md)
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- [Method Lookup](./method-lookup.md)
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- [Variance](./variance.md)
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# Proof trees
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The trait solver can optionally emit a "proof tree", a tree representation of what
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happened while trying to prove a goal.
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The used datastructures for which are currently stored in
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[`rustc_middle::traits::solve::inspect`].
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## What are they used for
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There are 3 intended uses for proof trees. These uses are not yet implemented as
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the representation of proof trees itself is currently still unstable.
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They should be used by type system diagnostics to get information about
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why a goal failed or remained ambiguous. They should be used by rustdoc to get the
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auto-trait implementations for user-defined types, and they should be usable to
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vastly improve the debugging experience of the trait solver.
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For debugging you can use `-Zdump-solver-proof-tree` which dumps the proof tree
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for all goals proven by the trait solver in the current session.
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## Requirements and design constraints for proof trees
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The trait solver uses [Canonicalization] and uses completely separate `InferCtxt` for
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each nested goal. Both diagnostics and auto-traits in rustdoc need to correctly
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handle "looking into nested goals". Given a goal like `Vec<Vec<?x>>: Debug`, we
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canonicalize to `exists<T0> Vec<Vec<T0>>: Debug`, instantiate that goal as
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`Vec<Vec<?0>>: Debug`, get a nested goal `Vec<?0>: Debug`, canonicalize this to get
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`exists<T0> Vec<T0>: Debug`, instantiate this as `Vec<?0>: Debug` which then results
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in a nested `?0: Debug` goal which is ambiguous.
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We need to be able to figure out that `?x` corresponds to `?0` in the nested queries.
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The debug output should also accurately represent the state at each point in the solver.
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This means that even though a goal like `fn(?0): FnOnce(i32)` infers `?0` to `i32`, the
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proof tree should still store `fn(<some infer var>): FnOnce(i32)` instead of
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`fn(i32): FnOnce(i32)` until we actually infer `?0` to `i32`.
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## The current implementation and how to extract information from proof trees.
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Proof trees will be quite involved as they should accurately represent everything the
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trait solver does, which includes fixpoint iterations and performance optimizations.
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We intend to provide a lossy user interface for all usecases.
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TODO: implement this user interface and explain how it can be used here.
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[`rustc_middle::traits::solve::inspect`]: https://doc.rust-lang.org/nightly/nightly-rustc/rustc_middle/traits/solve/inspect/index.html
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[Canonicalization]: ./canonicalization.md
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