Running AtomM metaprograms recursively #
Tactics such as ring and abel are implemented using the AtomM monad, which tracks "atoms" --
expressions which cannot be further parsed according to the arithmetic operations they handle --
to allow for consistent normalization relative to these atoms.
This file provides methods to allow for such normalization to run recursively: the atoms themselves
will have the normalization run on any of their subterms for which this makes sense. For example,
given an implementation of ring-normalization, the methods in this file implement the bottom-to-top
recursive ring-normalization in which sin (x + y) + sin (y + x) is normalized first to
sin (x + y) + sin (x + y) and then to 2 * sin (x + y).
Main declarations #
Mathlib.Tactic.AtomM.RecurseM.run: run a metaprogram (inAtomMor its slight extensionAtomM.RecurseM), with atoms normalized according to a provided normalization operation (inAtomM), run recursively.Mathlib.Tactic.AtomM.recurse: run a normalization operation (inAtomM) recursively on an expression.
Configuration for AtomM.Recurse.
the reducibility setting to use when comparing atoms for defeq
- zetaDelta : Bool
if true, local let variables can be unfolded
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The read-only state of the AtomM.Recurse monad.
- ctx : Lean.Meta.Simp.Context
A basically empty simp context, passed to the
simptraversal inAtomM.onSubexpressions. A cleanup routine, which simplifies evaluation results to a more human-friendly format.
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The monad for AtomM.Recurse contains, in addition to the AtomM state,
a simp context for the main traversal and a cleanup function to simplify evaluation results.
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A tactic in the AtomM.RecurseM monad which will simplify expression parent to a normal form, by
running a core operation eval (in the AtomM monad) on the maximal subexpression(s) on which
eval does not fail.
There is also a subsequent clean-up operation, governed by the context from the AtomM.RecurseM
monad.
root: true if this is a direct call to the function.AtomM.RecurseM.runsets this tofalsein recursive mode.
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Runs a tactic in the AtomM.RecurseM monad, given initial data:
s: a reference to the mutableAtomMstate, for persisting across calls. This ensures that atom ordering is used consistently.cfg: the configuration optionseval: a normalization operation which will be run recursively, potentially dependent on a known atom orderingsimp: a cleanup operation which will be used to post-process expressionsx: the tactic to run
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The recursive context.
The atom evaluator calls AtomM.onSubexpressions recursively.
Normalizes an expression, given initial data:
s: a reference to the mutableAtomMstate, for persisting across calls. This ensures that atom ordering is used consistently.cfg: the configuration optionseval: a normalization operation which will be run recursively, potentially dependent on a known atom orderingsimp: a cleanup operation which will be used to post-process expressionstgt: the expression to normalize
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- Mathlib.Tactic.AtomM.recurse s cfg eval simp tgt = Mathlib.Tactic.AtomM.RecurseM.run s cfg eval simp (Mathlib.Tactic.AtomM.onSubexpressions eval tgt)