Commit graph

38 commits

Author SHA1 Message Date
Sebastian Ullrich
ff1d3138bf
refactor: module-ize Lean (#9330) 2025-07-25 12:02:51 +00:00
jrr6
32795911d2
feat: add initial error explanations (#8934)
This PR adds explanations for a few errors concerning noncomputability,
redundant match alternatives, and invalid inductive declarations.

These adopt a lower-case error naming style, which is also applied to
existing error explanation tests.
2025-06-23 17:24:09 +00:00
Mac Malone
2a8cd373ca
feat: respect lean --setup module name in code generation (#8780)
This PR makes Lean code generation respect the module name provided
through `lean --setup`.

This is accomplished by porting to Lean the portion of `shell.cpp` that
spans running the frontend to exiting the process. This makes it easier
to load the module setup and control how its name is passed to the code
generation functions. This port attempts to minimize the changes made to
Lean. It marks the new Lean functions `private` and tries to preserve as
faithfully as possible the behavior of the original C++ code. Exposing
the new Lean interface publicly and/or further improving the code now
that is written in Lean is left for the future.
2025-06-15 01:11:58 +00:00
jrr6
7bd82b103a
feat: pre-stage0 groundwork for error explanations (#8651)
This PR adds the pre-stage0-update infrastructure for error
explanations. It adds the environment-extension machinery for
registering and accessing explanations, and it provides a cursory parser
that validates that the high-level structure of error explanations
matches the prescribed format.

---------

Co-authored-by: Joachim Breitner <mail@joachim-breitner.de>
2025-06-11 14:51:44 +00:00
Joachim Breitner
24cb133eb2
feat: explicit defeq attribute (#8419)
This PR introduces an explicit `defeq` attribute to mark theorems that
can be used by `dsimp`. The benefit of an explicit attribute over the
prior logic of looking at the proof body is that we can reliably omit
theorem bodies across module boundaries. It also helps with intra-file
parallelism.

If a theorem is syntactically defined by `:= rfl`, then the attribute is
assumed and need not given explicitly. This is a purely syntactic check
and can be fooled, e.g. if in the current namespace, `rfl` is not
actually “the” `rfl` of `Eq`. In that case, some other syntax has be
used, such as `:= (rfl)`. This is also the way to go if a theorem can be
proved by `defeq`, but one does not actually want `dsimp` to use this
fact.

The `defeq` attribute will look at the *type* of the declaration, not
the body, to check if it really holds definitionally. Because of
different reduction settings, this can sometimes go wrong. Then one
should also write `:= (rfl)`, if one does not want this to be a defeq
theorem. (If one does then this is currently not possible, but it’s
probably a bad idea anyways).

The `set_option debug.tactic.simp.checkDefEqAttr true`, `dsimp` will
warn if could not apply a lemma due to a missing `defeq` attribute.

With `set_option backward.dsimp.useDefEqAttr.get false` one can revert
to the old behavior of inferring rfl-ness based on the theorem body.

Both options will go away eventually (too bad we can’t mark them as
deprecated right away, see #7969)

Meta programs that generate theorems (e.g. equational theorems) can use
`inferDefEqAttr` to set the attribute based on the theorem body of the
just created declaration.

This builds on #8501 to update Init to `@[expose]` a fair amount of
definitions that, if not exposed, would prevent some existing `:= rfl`
theorems from being `defeq` theorems. In the interest of starting
backwards compatible, I exposed these function. Hopefully many can be
un-exposed later again.

A mathlib adaption branch exists that includes both the meta programming
fixes and changes to the theorems (e.g. changing `:= by rfl` to `:=
rfl`).

With the module system there is now no special handling for `defeq`
theorem bodies, because we don’t look at the body anymore. The previous
hack is removed. The `defeq`-ness of the theorem needs to be checked in
the context of the theorem’s *type*; the error message contains a hint
if the defeq check fails because of the exported context.
2025-06-06 18:40:06 +00:00
Sebastian Ullrich
c658648ee8
refactor: split Lean.EnvironmentExtension from Lean.Environment (#7794) 2025-04-02 16:19:12 +00:00
Sebastian Ullrich
24db5b598b
feat: use realizeConst for all equation, unfold, induction, and partial fixpoint theorems (#7261)
This PR ensures all equation, unfold, induction, and partial fixpoint
theorem generators in core are compatible with parallelism.

Stacked on #7247
2025-03-06 15:38:04 +00:00
Kim Morrison
8cefb2cf65
feat: premise selection API (#7061)
This PR provides a basic API for a premise selection tool, which can be
provided in downstream libraries. It does not implement premise
selection itself!
2025-02-14 04:08:18 +00:00
Sebastian Ullrich
7790420cae
chore: trivial changes from async-proofs branch (#7028) 2025-02-10 16:44:05 +00:00
Sebastian Ullrich
68b0471de9
chore: remove SplitIf.ext cache (#5571)
Incompatible as is with parallelism; let's first check if it has any
impact at all
2024-10-17 09:36:00 +00:00
Kim Morrison
225e08965d
chore: import orphaned Lean.Replay (#5693)
As noticed on
[zulip](https://leanprover.zulipchat.com/#narrow/stream/270676-lean4/topic/.E2.9C.94.20Reverse.20FFI.20undefined.20reference.20for.20mathlib/near/475824204).
2024-10-14 01:29:03 +00:00
Kyle Miller
fdd5aec172
feat: better #eval command (#5627)
This refactors and improves the `#eval` command, introducing some new
features.
* Now evaluated results can be represented using `ToExpr` and pretty
printing. This means **hoverable output**. If `ToExpr` fails, it then
tries `Repr` and then `ToString`. The `eval.pp` option controls whether
or not to try `ToExpr`.
* There is now **auto-derivation** of `Repr` instances, enabled with the
`pp.derive.repr` option (default to **true**). For example:
  ```lean
  inductive Baz
    | a | b

  #eval Baz.a
  -- Baz.a
  ```
It simply does `deriving instance Repr for Baz` when there's no way to
represent `Baz`. If core Lean gets `ToExpr` derive handlers, they could
be used here as well.
* The option `eval.type` controls whether or not to include the type in
the output. For now the default is false.
* Now things like `#eval do return 2` work. It tries using
`CommandElabM`, `TermElabM`, or `IO` when the monad is unknown.
* Now there is no longer `Lean.Eval` or `Lean.MetaEval`. These each used
to be responsible for both adapting monads and printing results. The
concerns have been split into two. (1) The `MonadEval` class is
responsible for adapting monads for evaluation (it is similar to
`MonadLift`, but instances are allowed to use default data when
initializing state) and (2) finding a way to represent results is
handled separately.
* Error messages about failed instance synthesis are now more precise.
Once it detects that a `MonadEval` class applies, then the error message
will be specific about missing `ToExpr`/`Repr`/`ToString` instances.
* Fixes a bug where `Repr`/`ToString` instances can't be found by
unfolding types "under the monad". For example, this works now:
  ```lean
  def Foo := List Nat
  def Foo.mk (l : List Nat) : Foo := l
  #eval show Lean.CoreM Foo from do return Foo.mk [1,2,3]
  ```
* Elaboration errors now abort evaluation. This eliminates some
not-so-relevant error messages.
* Now evaluating a value of type `m Unit` never prints a blank message.
* Fixes bugs where evaluating `MetaM` and `CoreM` wouldn't collect log
messages.

The `run_cmd`, `run_elab`, and `run_meta` commands are now frontends for
`#eval`.
2024-10-08 20:51:46 +00:00
Leonardo de Moura
6a040ab068
feat: propagate maxHeartbeats to kernel (#4113)
Co-authored-by: Sebastian Ullrich <sebasti@nullri.ch>
2024-05-09 17:44:19 +00:00
Leonardo de Moura
173b956961
feat: reserved names (#3675)
- Add support for reserved declaration names. We use them for theorems
generated on demand.
- Equation theorems are not private declarations anymore.
- Generate equation theorems on demand when resolving symbols.
- Prevent users from creating declarations using reserved names. Users
can bypass it using meta-programming.

See next test for examples.
2024-03-15 00:33:22 +00:00
Joe Hendrix
29244f32f6
chore: upstream solve_by_elim (#3408)
This upstreams the solve_by_elim tactic from Std.

It is a key tactic needed by library_search.
2024-02-21 01:16:04 +00:00
Mario Carneiro
c4cbefce11 feat: add linter.deprecated option to silence deprecation warnings 2022-10-23 21:11:57 +02:00
Leonardo de Moura
b6e9d58537 feat: add [deprecated] attribute 2022-07-24 18:06:03 -07:00
E.W.Ayers
1785ab142e refactor: move Lean.PrettyPrinter.Delaborator.SubExpr to Lean.SubExpr
This is because SubExpr has uses outside the Delaborator.

Closes #1183
2022-06-03 12:38:14 -07:00
larsk21
37d5f8e74a feat: add unused variables linter 2022-06-03 13:03:52 +02:00
Leonardo de Moura
caa79ca04f refactor: move MonadLog 2022-05-31 16:50:48 -07:00
tydeu
a3250dc44b feat: expose --load-dynlib functionality to Lean code 2021-12-15 08:26:48 +00:00
Wojciech Nawrocki
6eaa536595 feat: pretty-printer with tags 2021-08-24 08:57:41 -07:00
Leonardo de Moura
34b092700e feat: add LazyInitExtension 2021-08-16 12:54:50 -07:00
Leonardo de Moura
be33ca69cd feat: environment extension for storing declaration ranges 2021-01-10 18:25:56 -08:00
Leonardo de Moura
2c8001a7f3 feat: add DocString.lean 2021-01-10 07:13:33 -08:00
Leonardo de Moura
5f5a8010a2 feat: add ScopedEnvExtension 2020-12-03 17:04:16 -08:00
Sebastian Ullrich
f6816a0ffa refactor: move & split Lean.Delaborator 2020-11-30 13:52:46 +01:00
Sebastian Ullrich
feedb539cd chore: import orphaned files in Lean 2020-11-24 19:16:27 +01:00
Sebastian Ullrich
c1d75e21ea fix: fix pretty printers for imported ParserDescrs
... by interpreting them (imported or not) on the fly instead of storing them in the environment

/cc @leodemoura
2020-11-07 17:05:07 +01:00
Leonardo de Moura
3de97ddc27 feat: run linters in the new frontend 2020-10-23 14:04:28 -07:00
Leonardo de Moura
eacf3ed6c7 refactor: move ResolveName to Lean directory 2020-10-10 11:07:14 -07:00
Leonardo de Moura
4faaa392b3 feat: add InternalExceptionId.lean 2020-08-21 13:06:31 -07:00
Sebastian Ullrich
68b9a8e1d1 refactor: move parenthesizer compiler into separate file, generalize 2020-08-20 13:22:57 +02:00
Leonardo de Moura
b142c608fe feat: add CoreM 2020-08-18 09:45:16 -07:00
Leonardo de Moura
e818368c96 refactor: move EqnCompiler to Meta folder 2020-08-06 09:10:01 -07:00
Leonardo de Moura
4ccc3fef52 chore: move Init.Lean files to Lean package 2020-05-26 15:04:35 -07:00
Leonardo de Moura
f7818757ef chore: add Lean package to CMakeLists.txt 2020-05-26 13:50:04 -07:00
Leonardo de Moura
8d30f67823 feat: add Lean package 2020-05-26 13:39:03 -07:00