lean-llm-starter / lean4 /src /SovereignCorpus /Bridge /Granite4Parser.lean
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import Lean.Data.Json
import SovereignCorpus.Bridge.Granite4Schema
namespace SovereignCorpus.Bridge.Granite4Parser
open Lean
open SovereignCorpus.Bridge
inductive ParseError where
| jsonDecode (msg : String) (line : Nat)
| schemaViolation (field : String) (reason : String)
| lean3SyntaxDetected (pattern : String) (line : Nat)
| tacticForbidden (tactic : String) (line : Nat)
deriving Repr, Inhabited
def forbiddenPatterns : List String :=
[
"meta def",
"tactic.block",
"refine_struct",
"classical.by_contradiction",
"by_contra!",
"have! := by",
"sorryAx",
"prop_decidable",
"Classical.propDecidable"
]
def defaultAllowedTactics : List String :=
["rw", "simp_all", "norm_num", "linarith", "nlinarith", "aesop", "apply", "exact", "intro", "obtain", "cases", "induction", "constructor", "split_ifs", "field_simp", "ring_nf", "norm_cast", "omega"]
def containsText (haystack needle : String) : Bool :=
if needle.isEmpty then
true
else
(haystack.splitOn needle).length > 1
def containsForbiddenPattern (text : String) : Option String :=
forbiddenPatterns.find? (fun pattern => containsText text pattern)
def guardLean4Syntax (p : GraniteProblem) (line : Nat) : Except ParseError Unit := do
let haystack := p.statement ++ "\n" ++ String.intercalate "\n" p.context ++ "\n" ++ p.tacticHint.getD ""
match containsForbiddenPattern haystack with
| some pattern => throw <| ParseError.lean3SyntaxDetected pattern line
| none => pure ()
def guardTactics (p : GraniteProblem) (line : Nat) : Except ParseError Unit := do
match p.tacticHint with
| some hint =>
if p.meta.allowedTactics.contains hint || defaultAllowedTactics.contains hint then
pure ()
else
throw <| ParseError.tacticForbidden hint line
| none => pure ()
def guardStatement (p : GraniteProblem) : Except ParseError Unit := do
if containsText p.statement "sorry" then
throw <| ParseError.schemaViolation "statement" "target theorem statement must not contain sorry"
else
pure ()
def parseLine (line : String) (lineNum : Nat) : Except ParseError GraniteProblem := do
if line.trim.isEmpty then
throw <| ParseError.jsonDecode "empty line" lineNum
let json <- Json.parse line |>.mapError (fun err => ParseError.jsonDecode err lineNum)
let problem <- fromJson? json |>.mapError (fun err => ParseError.jsonDecode err lineNum)
guardLean4Syntax problem lineNum
guardTactics problem lineNum
guardStatement problem
pure problem
def loadProblems (path : String) : IO (Except String (List GraniteProblem)) := do
let content ← IO.FS.readFile path
let lines := content.splitOn "\n"
let parsed := lines.enum.filterMap (fun ⟨idx, line⟩ =>
if line.trim.isEmpty then
none
else
some <| parseLine line (idx + 1)
)
let errors := parsed.filterMap (fun r => match r with | .error e => some e | .ok _ => none)
if !errors.isEmpty then
pure <| Except.error s!"parse failures: {repr errors}"
else
pure <| Except.ok <| parsed.filterMap (fun r => match r with | .ok p => some p | .error _ => none)
end SovereignCorpus.Bridge.Granite4Parser