Generate native LSL parser tables (#83)
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Imaging and meshing gate / native (push) Successful in 5m29s
JPEG 2000 feature / linux (push) Successful in 2m46s
Native Rust workspace compile / compile (push) Failing after 1m58s
Skia feature / linux (push) Successful in 31m14s
Some checks failed
Native code generation / deterministic (push) Failing after 2m36s
Imaging and meshing gate / native (push) Successful in 5m29s
JPEG 2000 feature / linux (push) Successful in 2m46s
Native Rust workspace compile / compile (push) Failing after 1m58s
Skia feature / linux (push) Successful in 31m14s
This commit is contained in:
@@ -10,6 +10,7 @@ description = "Native LSL lexer and parser tooling for the MetaCrate LibreMetave
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[dependencies]
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libremetaverse-types = { path = "../libremetaverse-types" }
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unicode-general-category = "1.1"
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regex = "1"
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[lints]
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workspace = true
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@@ -6,8 +6,8 @@ issue 81 boundary supplies source reading, comments, Unicode character sets,
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deterministic DFA execution, reserved words, terminal symbols, EOF, source
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locations, diagnostics, and Rust iterators. The issue 82 boundary supplies
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grammar productions, parser tables, precedence, reductions, and recovery.
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Deterministic checked-in generated grammar and token tables are added by issue
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83.
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The issue 83 boundary adds deterministic checked-in grammar/token tables and
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native replacements for the retired parser-generator object model.
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## Source and position contract
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@@ -81,9 +81,35 @@ recovery attempts.
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Compatibility `SymbolSet` clones share deterministic FIRST/FOLLOW membership,
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and cloned `CSymbol` values share registered production metadata. This retains
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the observable reference behavior of the C# grammar model without unsafe code.
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Parser-source serialization and the old `Builder`-driven generated-output
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members return `InvalidOperation` explicitly until issue 83 supplies the
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checked-in generator; they never report a false success.
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Legacy parser-runtime serialization members that cannot faithfully round-trip
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the richer native LALR machine remain explicit `InvalidOperation` results.
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Callers should use the stable `YyParser::emit` and `YyLexer::emit_dfa` formats,
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or regenerate the canonical checked-in table module described below.
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## Checked-in generator contract
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[`codegen/inputs/lsl_tools_grammar.json`](../../codegen/inputs/lsl_tools_grammar.json)
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is the reviewed source of truth reconstructed from the pinned 4.5
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`yycs0syntax.cs` and `yycs0tokens.cs` tables at upstream commit
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`2aa70bb68513b39795da5d13c88f31b86e85a3ba`. It records every token,
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nonterminal, production, and semantic-action class. The portable Python
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generator uses the standard library plus the workspace Rust formatter and emits
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`src/generated_tables.rs`; it does not invoke C#, a C# source generator, or a
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.NET runtime.
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Regenerate with `python3 tools/generate_lsl_tables.py`. Use
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`python3 tools/generate_lsl_tables.py --check` in reviews and CI. The check
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renders the complete output in memory and compares bytes, so repeated runs are
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independent of hash iteration, locale, host operating system, and timestamps.
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The checked-in module supplies the canonical 25-production grammar, a Unicode
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lexer with reserved `base`, `this`, and `new` tokens, the 84 generated syntax
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classes, the 13 generated token classes, and the four `cs0` runtime wrappers.
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The old `GenBase`, `SymbolsGen`, `TokensGen`, `Regex`, NFA, delegate, factory,
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and 4.5 `Serialiser` APIs are live Rust compatibility adapters. New code should
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prefer `Grammar`, typed `DfaState` builders, `generated_parser`, and
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`generated_lexer`; these avoid CLR-style method pointers and class-shaped
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generated inheritance while retaining deterministic mapped behavior.
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## Diagnostics and migration
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@@ -108,6 +134,9 @@ The principal API mapping is:
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| `CSymbol`, `SymbolSet`, `Production`, `Precedence` | Same mapped names plus typed `Grammar` builders |
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| `YyParser`, parser entries | Deterministic native tables and conflict records |
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| `Parser`, `ParseStackEntry`, `Error`, `recoveredError` | Bounded parsing, typed trees, and recovery |
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| `yycs0syntax`, `yycs0tokens` | `generated_parser`, `generated_lexer`, checked-in native types |
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| `GenBase`, `SymbolsGen`, `TokensGen`, `Regex`, `Nfa` | Portable Rust generator adapters; prefer typed grammar/DFA builders |
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| `Serialiser` | Deterministic 4.5-compatible integer stream for supported mapped values |
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No C#, .NET runtime, dynamically loaded class, macOS-only API, platform code
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page, or runtime source generation is used by this boundary.
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@@ -123,8 +152,10 @@ CARGO_BUILD_JOBS=1 cargo clippy -p libremetaverse-lsl-tools --all-targets --lock
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RUSTDOCFLAGS='-D warnings' CARGO_BUILD_JOBS=1 cargo doc -p libremetaverse-lsl-tools --no-deps --locked
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python3 tools/check_milestone_10_issue_81.py
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python3 tools/check_milestone_10_issue_82.py
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python3 tools/check_milestone_10_issue_83.py
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python3 tools/generate_lsl_tables.py --check
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python3 tools/generate_api_shims.py --check
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```
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The package contains 37 focused native and compatibility fixtures. The Gitea
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The package contains 46 focused native and compatibility fixtures. The Gitea
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workflow runs the audit and workspace compile on `ubuntu-latest` only.
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File diff suppressed because it is too large
Load Diff
857
crates/libremetaverse-lsl-tools/src/generated_tables.rs
Normal file
857
crates/libremetaverse-lsl-tools/src/generated_tables.rs
Normal file
@@ -0,0 +1,857 @@
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// @generated by tools/generate_lsl_tables.py; do not edit by hand.
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#![allow(non_camel_case_types)]
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#![allow(non_snake_case)]
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#![allow(clippy::missing_errors_doc)]
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#![allow(clippy::must_use_candidate)]
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use std::ops::{Deref, DerefMut};
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use libremetaverse_types::compat::{Object, UnicodeCategory};
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use crate::{
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CharacterMatcher, Dfa, DfaAccept, DfaState, Error, ErrorHandler, Grammar, Lexer, LexerAction,
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Parser, ResWds, SYMBOL, TOKEN, TokenDefinition, UnicodeClass, YyLexer, YyParser,
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};
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pub const LSL_GENERATOR_SOURCE_COMMIT: &str = "2aa70bb68513b39795da5d13c88f31b86e85a3ba";
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pub const LSL_GENERATOR_SOURCE_PARSER: &str = "LibreMetaverse.LslTools/YYClass/yycs0syntax.cs";
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pub const LSL_GENERATOR_SOURCE_LEXER: &str = "LibreMetaverse.LslTools/YYClass/yycs0tokens.cs";
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pub const LSL_GENERATOR_SOURCE_LICENSE: &str = "BSD-3-Clause";
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pub const LSL_GENERATOR_SERIALIZATION_VERSION: &str = "4.5";
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pub const GENERATED_PARSER_DATA: &[i32] = &[
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1, 19, 2, 22, 2, 1, 3, 3, 1, 4, 4, 1, 4, 5, 1, 3, 6, 1, 2, 7, 1, 3, 8, 1, 5, 9, 1, 9, 10, 1, 6,
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11, 1, 6, 12, 1, 6, 13, 1, 6, 14, 1, 6, 15, 1, 6, 16, 0, 6, 17, 0, 5, 18, 0, 4, 19, 0, 9, 20,
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0, 4, 21, 0, 4, 22, 0, 8, 23, 0, 4, 25, 1, 19, 3, 16, 20, 16, 2, 16, 0, 3, 16, 2, 16, 18, 4,
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16, 2, 16, 21, 5, 17, 0, 6, 17, 2, 17, 18, 7, 20, 5, 23, 12, 17, 13, 22, 8, 21, 4, 23, 12, 17,
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13, 9, 22, 0, 10, 22, 5, 8, 3, 12, 17, 13, 11, 22, 5, 8, 4, 12, 17, 13, 12, 23, 1, 6, 13, 23,
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4, 6, 14, 17, 15, 14, 18, 1, 6, 15, 18, 1, 7, 16, 18, 1, 9, 17, 18, 1, 3, 18, 18, 1, 4, 19, 18,
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4, 4, 14, 17, 15, 20, 18, 1, 8, 21, 18, 2, 5, 23, 22, 18, 2, 5, 6, 23, 18, 3, 12, 17, 13, 24,
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18, 3, 10, 16, 11, 25, 18, 3, 14, 17, 15,
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];
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pub fn generated_symbol_name(number: i32) -> Option<&'static str> {
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match number {
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2 => Some("EOF"),
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3 => Some("BASE"),
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4 => Some("THIS"),
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5 => Some("NEW"),
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6 => Some("ID"),
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7 => Some("ANY"),
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8 => Some("COLON"),
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9 => Some("SEMICOLON"),
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10 => Some("LBRACE"),
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11 => Some("RBRACE"),
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12 => Some("LPAREN"),
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13 => Some("RPAREN"),
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14 => Some("LBRACK"),
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15 => Some("RBRACK"),
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16 => Some("GStuff"),
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17 => Some("Stuff"),
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18 => Some("Item"),
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19 => Some("ClassBody"),
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20 => Some("Cons"),
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21 => Some("Call"),
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22 => Some("BaseCall"),
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23 => Some("Name"),
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_ => None,
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}
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}
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pub fn generated_parser() -> Result<YyParser, Error> {
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let mut grammar = Grammar::new(19, 2)?;
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grammar.add_symbol("EOF", 2, true)?;
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grammar.add_symbol("BASE", 3, true)?;
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grammar.add_symbol("THIS", 4, true)?;
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grammar.add_symbol("NEW", 5, true)?;
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grammar.add_symbol("ID", 6, true)?;
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grammar.add_symbol("ANY", 7, true)?;
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grammar.add_symbol("COLON", 8, true)?;
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grammar.add_symbol("SEMICOLON", 9, true)?;
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grammar.add_symbol("LBRACE", 10, true)?;
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grammar.add_symbol("RBRACE", 11, true)?;
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grammar.add_symbol("LPAREN", 12, true)?;
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grammar.add_symbol("RPAREN", 13, true)?;
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grammar.add_symbol("LBRACK", 14, true)?;
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grammar.add_symbol("RBRACK", 15, true)?;
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grammar.add_symbol("GStuff", 16, false)?;
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grammar.add_symbol("Stuff", 17, false)?;
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grammar.add_symbol("Item", 18, false)?;
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grammar.add_symbol("ClassBody", 19, false)?;
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grammar.add_symbol("Cons", 20, false)?;
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grammar.add_symbol("Call", 21, false)?;
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grammar.add_symbol("BaseCall", 22, false)?;
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grammar.add_symbol("Name", 23, false)?;
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grammar.add_production(19, vec![16, 20, 16])?;
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grammar.add_production(16, vec![])?;
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grammar.add_production(16, vec![16, 18])?;
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grammar.add_production(16, vec![16, 21])?;
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grammar.add_production(17, vec![])?;
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grammar.add_production(17, vec![17, 18])?;
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grammar.add_production(20, vec![23, 12, 17, 13, 22])?;
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grammar.add_production(21, vec![23, 12, 17, 13])?;
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grammar.add_production(22, vec![])?;
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grammar.add_production(22, vec![8, 3, 12, 17, 13])?;
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grammar.add_production(22, vec![8, 4, 12, 17, 13])?;
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grammar.add_production(23, vec![6])?;
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grammar.add_production(23, vec![6, 14, 17, 15])?;
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grammar.add_production(18, vec![6])?;
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grammar.add_production(18, vec![7])?;
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grammar.add_production(18, vec![9])?;
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grammar.add_production(18, vec![3])?;
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grammar.add_production(18, vec![4])?;
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grammar.add_production(18, vec![4, 14, 17, 15])?;
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grammar.add_production(18, vec![8])?;
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grammar.add_production(18, vec![5, 23])?;
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grammar.add_production(18, vec![5, 6])?;
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grammar.add_production(18, vec![12, 17, 13])?;
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grammar.add_production(18, vec![10, 16, 11])?;
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grammar.add_production(18, vec![14, 17, 15])?;
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let mut parser = grammar.build()?;
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parser.arr = GENERATED_PARSER_DATA.to_vec();
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Ok(parser)
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}
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fn accept(name: &str, number: i32, action: LexerAction, action_number: i32) -> DfaAccept {
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DfaAccept {
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token: TokenDefinition {
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name: name.to_owned(),
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number,
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},
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action,
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action_number,
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reserved_words: (name == "ID").then(|| "ID".to_owned()),
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}
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}
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pub fn generated_lexer_with_handler(error_handler: ErrorHandler) -> Result<YyLexer, Error> {
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let punctuation = [
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(58, "COLON", 8),
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(59, "SEMICOLON", 9),
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(123, "LBRACE", 10),
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(125, "RBRACE", 11),
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(40, "LPAREN", 12),
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(41, "RPAREN", 13),
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(91, "LBRACK", 14),
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(93, "RBRACK", 15),
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];
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let punctuation_start = 3usize;
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let any_state = punctuation_start + punctuation.len();
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let mut states = vec![DfaState::default(); any_state + 1];
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states[0] = states[0]
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.clone()
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.transition(CharacterMatcher::UnicodeClass(UnicodeClass::WhiteSpace), 1)
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.transition(CharacterMatcher::UnicodeClass(UnicodeClass::Letter), 2)
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.transition(CharacterMatcher::Exact(u16::from(b'_')), 2);
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for (offset, (unit, _, _)) in punctuation.iter().enumerate() {
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states[0]
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.transitions
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.push((CharacterMatcher::Exact(*unit), punctuation_start + offset));
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}
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states[0]
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.transitions
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.push((CharacterMatcher::Any, any_state));
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states[1] = states[1]
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.clone()
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.transition(CharacterMatcher::UnicodeClass(UnicodeClass::WhiteSpace), 1)
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.accepting(accept("ANY", 7, LexerAction::Skip, -1));
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states[2] = states[2]
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.clone()
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.transition(CharacterMatcher::UnicodeClass(UnicodeClass::Letter), 2)
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.transition(CharacterMatcher::UnicodeClass(UnicodeClass::Number), 2)
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.transition(CharacterMatcher::Exact(u16::from(b'_')), 2)
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.accepting(accept("ID", 6, LexerAction::Emit, 0));
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for (offset, (_, name, number)) in punctuation.iter().enumerate() {
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states[punctuation_start + offset] =
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DfaState::default().accepting(accept(name, *number, LexerAction::Emit, *number));
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}
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states[any_state] = DfaState::default().accepting(accept("ANY", 7, LexerAction::Emit, 1));
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let mut lexer = YyLexer::new(error_handler)?;
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lexer.set_start_dfa("YYINITIAL", Dfa::from_states(states, 0)?)?;
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lexer.set_reserved_words(
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"ID",
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ResWds::from_pairs(
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[
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("base", TokenDefinition::new("BASE", 3)?),
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("this", TokenDefinition::new("THIS", 4)?),
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("new", TokenDefinition::new("NEW", 5)?),
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],
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false,
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)?,
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)?;
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lexer.using_eof = true;
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for (name, number) in [
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("EOF", 2),
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("BASE", 3),
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("THIS", 4),
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("NEW", 5),
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("ID", 6),
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("ANY", 7),
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("COLON", 8),
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("SEMICOLON", 9),
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("LBRACE", 10),
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("RBRACE", 11),
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("LPAREN", 12),
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("RPAREN", 13),
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("LBRACK", 14),
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("RBRACK", 15),
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] {
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lexer
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.tokens
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.0
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.insert(Object::String(name.to_owned()), Object::Integer(number));
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}
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let _ = lexer.using_cat(UnicodeCategory(0))?;
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Ok(lexer)
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}
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pub fn generated_lexer() -> Result<YyLexer, Error> {
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generated_lexer_with_handler(ErrorHandler::new_with_boolean(false)?)
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}
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#[derive(Clone, Debug)]
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pub struct GeneratedLexerToken<const NUMBER: i32>(TOKEN);
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impl<const NUMBER: i32> GeneratedLexerToken<NUMBER> {
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pub fn new(lexer: Lexer) -> Result<Self, Error> {
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let name = generated_symbol_name(NUMBER).ok_or(Error::Argument)?;
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Ok(Self(TOKEN::generated_with_lexer(lexer, name, NUMBER)?))
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}
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pub fn yyname(&self) -> String {
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self.0.yyname()
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}
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pub const fn yynum(&self) -> i32 {
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NUMBER
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}
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pub fn yytext(&self) -> String {
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self.0.yytext()
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}
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||||
}
|
||||
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impl<const NUMBER: i32> Deref for GeneratedLexerToken<NUMBER> {
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type Target = TOKEN;
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||||
fn deref(&self) -> &Self::Target {
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&self.0
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||||
}
|
||||
}
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impl<const NUMBER: i32> DerefMut for GeneratedLexerToken<NUMBER> {
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fn deref_mut(&mut self) -> &mut Self::Target {
|
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&mut self.0
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||||
}
|
||||
}
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||||
pub type BASE = GeneratedLexerToken<3>;
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pub type THIS = GeneratedLexerToken<4>;
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||||
pub type NEW = GeneratedLexerToken<5>;
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||||
pub type ID = GeneratedLexerToken<6>;
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||||
pub type ANY = GeneratedLexerToken<7>;
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pub type COLON = GeneratedLexerToken<8>;
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||||
pub type SEMICOLON = GeneratedLexerToken<9>;
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||||
pub type LBRACE = GeneratedLexerToken<10>;
|
||||
pub type RBRACE = GeneratedLexerToken<11>;
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||||
pub type LPAREN = GeneratedLexerToken<12>;
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||||
pub type RPAREN = GeneratedLexerToken<13>;
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||||
pub type LBRACK = GeneratedLexerToken<14>;
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||||
pub type RBRACK = GeneratedLexerToken<15>;
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||||
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||||
fn generated_parser_identity(generated: i32) -> Option<(&'static str, i32)> {
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||||
match generated {
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||||
27..=35 => Some(("GStuff", 16)),
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||||
36..=41 => Some(("Stuff", 17)),
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||||
63..=98 => Some(("Item", 18)),
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||||
24..=26 => Some(("ClassBody", 19)),
|
||||
42..=44 => Some(("Cons", 20)),
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||||
45..=47 => Some(("Call", 21)),
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||||
48..=56 => Some(("BaseCall", 22)),
|
||||
57..=62 => Some(("Name", 23)),
|
||||
_ => None,
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||||
}
|
||||
}
|
||||
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||||
fn stack_text(parser: &Parser, index: i32) -> Result<String, Error> {
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||||
Ok(parser.stack_at(index)?.m_value.raw_text())
|
||||
}
|
||||
|
||||
fn generated_semantic_text(generated: i32, parser: &Parser) -> Result<String, Error> {
|
||||
Ok(match generated {
|
||||
26 => stack_text(parser, 1)?,
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||||
32 | 35 | 41 => format!("{}{}", stack_text(parser, 1)?, stack_text(parser, 0)?),
|
||||
44 => format!(
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||||
"{}({}){}",
|
||||
stack_text(parser, 4)?.trim(),
|
||||
stack_text(parser, 2)?,
|
||||
stack_text(parser, 0)?
|
||||
),
|
||||
47 => format!(
|
||||
"{}({})",
|
||||
stack_text(parser, 3)?.trim(),
|
||||
stack_text(parser, 1)?
|
||||
),
|
||||
53 => format!("base{}", stack_text(parser, 1)?),
|
||||
56 => format!("this{}", stack_text(parser, 1)?),
|
||||
59 => format!(" {} ", stack_text(parser, 0)?),
|
||||
62 => format!("{}[{}]", stack_text(parser, 3)?, stack_text(parser, 1)?),
|
||||
65 | 68 => stack_text(parser, 0)?,
|
||||
71 => ";\n".to_owned(),
|
||||
74 => " base ".to_owned(),
|
||||
77 => " this ".to_owned(),
|
||||
80 => format!(" this[{}]", stack_text(parser, 1)?),
|
||||
83 => ":".to_owned(),
|
||||
86 | 89 => format!(" new {}", stack_text(parser, 0)?),
|
||||
92 => format!("({})", stack_text(parser, 1)?),
|
||||
95 => format!("{{{}}}\n", stack_text(parser, 1)?),
|
||||
98 => format!("[{}]", stack_text(parser, 1)?),
|
||||
_ => String::new(),
|
||||
})
|
||||
}
|
||||
|
||||
#[derive(Clone, Debug)]
|
||||
pub struct GeneratedParserSymbol<const GENERATED: i32>(TOKEN);
|
||||
|
||||
impl<const GENERATED: i32> GeneratedParserSymbol<GENERATED> {
|
||||
pub fn new(parser: Parser) -> Result<Self, Error> {
|
||||
let (name, number) = generated_parser_identity(GENERATED).ok_or(Error::Argument)?;
|
||||
let text = generated_semantic_text(GENERATED, &parser)?;
|
||||
Ok(Self(TOKEN::generated_with_parser(
|
||||
parser, name, number, text,
|
||||
)?))
|
||||
}
|
||||
pub fn yyname(&self) -> String {
|
||||
self.0.yyname()
|
||||
}
|
||||
pub fn yynum(&self) -> i32 {
|
||||
self.0.yynum()
|
||||
}
|
||||
pub fn yytext(&self) -> String {
|
||||
self.0.yytext()
|
||||
}
|
||||
}
|
||||
|
||||
impl<const GENERATED: i32> Deref for GeneratedParserSymbol<GENERATED> {
|
||||
type Target = TOKEN;
|
||||
fn deref(&self) -> &Self::Target {
|
||||
&self.0
|
||||
}
|
||||
}
|
||||
impl<const GENERATED: i32> DerefMut for GeneratedParserSymbol<GENERATED> {
|
||||
fn deref_mut(&mut self) -> &mut Self::Target {
|
||||
&mut self.0
|
||||
}
|
||||
}
|
||||
pub type ClassBody_1 = GeneratedParserSymbol<24>;
|
||||
pub type ClassBody_2 = GeneratedParserSymbol<25>;
|
||||
pub type ClassBody_2_1 = GeneratedParserSymbol<26>;
|
||||
pub type GStuff_1 = GeneratedParserSymbol<27>;
|
||||
pub type GStuff_2 = GeneratedParserSymbol<28>;
|
||||
pub type GStuff_2_1 = GeneratedParserSymbol<29>;
|
||||
pub type GStuff_3 = GeneratedParserSymbol<30>;
|
||||
pub type GStuff_4 = GeneratedParserSymbol<31>;
|
||||
pub type GStuff_4_1 = GeneratedParserSymbol<32>;
|
||||
pub type GStuff_5 = GeneratedParserSymbol<33>;
|
||||
pub type GStuff_6 = GeneratedParserSymbol<34>;
|
||||
pub type GStuff_6_1 = GeneratedParserSymbol<35>;
|
||||
pub type Stuff_1 = GeneratedParserSymbol<36>;
|
||||
pub type Stuff_2 = GeneratedParserSymbol<37>;
|
||||
pub type Stuff_2_1 = GeneratedParserSymbol<38>;
|
||||
pub type Stuff_3 = GeneratedParserSymbol<39>;
|
||||
pub type Stuff_4 = GeneratedParserSymbol<40>;
|
||||
pub type Stuff_4_1 = GeneratedParserSymbol<41>;
|
||||
pub type Cons_1 = GeneratedParserSymbol<42>;
|
||||
pub type Cons_2 = GeneratedParserSymbol<43>;
|
||||
pub type Cons_2_1 = GeneratedParserSymbol<44>;
|
||||
pub type Call_1 = GeneratedParserSymbol<45>;
|
||||
pub type Call_2 = GeneratedParserSymbol<46>;
|
||||
pub type Call_2_1 = GeneratedParserSymbol<47>;
|
||||
pub type BaseCall_1 = GeneratedParserSymbol<48>;
|
||||
pub type BaseCall_2 = GeneratedParserSymbol<49>;
|
||||
pub type BaseCall_2_1 = GeneratedParserSymbol<50>;
|
||||
pub type BaseCall_3 = GeneratedParserSymbol<51>;
|
||||
pub type BaseCall_4 = GeneratedParserSymbol<52>;
|
||||
pub type BaseCall_4_1 = GeneratedParserSymbol<53>;
|
||||
pub type BaseCall_5 = GeneratedParserSymbol<54>;
|
||||
pub type BaseCall_6 = GeneratedParserSymbol<55>;
|
||||
pub type BaseCall_6_1 = GeneratedParserSymbol<56>;
|
||||
pub type Name_1 = GeneratedParserSymbol<57>;
|
||||
pub type Name_2 = GeneratedParserSymbol<58>;
|
||||
pub type Name_2_1 = GeneratedParserSymbol<59>;
|
||||
pub type Name_3 = GeneratedParserSymbol<60>;
|
||||
pub type Name_4 = GeneratedParserSymbol<61>;
|
||||
pub type Name_4_1 = GeneratedParserSymbol<62>;
|
||||
pub type Item_1 = GeneratedParserSymbol<63>;
|
||||
pub type Item_2 = GeneratedParserSymbol<64>;
|
||||
pub type Item_2_1 = GeneratedParserSymbol<65>;
|
||||
pub type Item_3 = GeneratedParserSymbol<66>;
|
||||
pub type Item_4 = GeneratedParserSymbol<67>;
|
||||
pub type Item_4_1 = GeneratedParserSymbol<68>;
|
||||
pub type Item_5 = GeneratedParserSymbol<69>;
|
||||
pub type Item_6 = GeneratedParserSymbol<70>;
|
||||
pub type Item_6_1 = GeneratedParserSymbol<71>;
|
||||
pub type Item_7 = GeneratedParserSymbol<72>;
|
||||
pub type Item_8 = GeneratedParserSymbol<73>;
|
||||
pub type Item_8_1 = GeneratedParserSymbol<74>;
|
||||
pub type Item_9 = GeneratedParserSymbol<75>;
|
||||
pub type Item_10 = GeneratedParserSymbol<76>;
|
||||
pub type Item_10_1 = GeneratedParserSymbol<77>;
|
||||
pub type Item_11 = GeneratedParserSymbol<78>;
|
||||
pub type Item_12 = GeneratedParserSymbol<79>;
|
||||
pub type Item_12_1 = GeneratedParserSymbol<80>;
|
||||
pub type Item_13 = GeneratedParserSymbol<81>;
|
||||
pub type Item_14 = GeneratedParserSymbol<82>;
|
||||
pub type Item_14_1 = GeneratedParserSymbol<83>;
|
||||
pub type Item_15 = GeneratedParserSymbol<84>;
|
||||
pub type Item_16 = GeneratedParserSymbol<85>;
|
||||
pub type Item_16_1 = GeneratedParserSymbol<86>;
|
||||
pub type Item_17 = GeneratedParserSymbol<87>;
|
||||
pub type Item_18 = GeneratedParserSymbol<88>;
|
||||
pub type Item_18_1 = GeneratedParserSymbol<89>;
|
||||
pub type Item_19 = GeneratedParserSymbol<90>;
|
||||
pub type Item_20 = GeneratedParserSymbol<91>;
|
||||
pub type Item_20_1 = GeneratedParserSymbol<92>;
|
||||
pub type Item_21 = GeneratedParserSymbol<93>;
|
||||
pub type Item_22 = GeneratedParserSymbol<94>;
|
||||
pub type Item_22_1 = GeneratedParserSymbol<95>;
|
||||
pub type Item_23 = GeneratedParserSymbol<96>;
|
||||
pub type Item_24 = GeneratedParserSymbol<97>;
|
||||
pub type Item_24_1 = GeneratedParserSymbol<98>;
|
||||
pub type GStuff = GeneratedParserSymbol<27>;
|
||||
pub type Stuff = GeneratedParserSymbol<36>;
|
||||
pub type Item = GeneratedParserSymbol<63>;
|
||||
pub type ClassBody = GeneratedParserSymbol<24>;
|
||||
pub type Cons = GeneratedParserSymbol<42>;
|
||||
pub type Call = GeneratedParserSymbol<45>;
|
||||
pub type BaseCall = GeneratedParserSymbol<48>;
|
||||
pub type Name = GeneratedParserSymbol<57>;
|
||||
|
||||
#[derive(Clone, Debug)]
|
||||
pub struct yycs0syntax(pub YyParser);
|
||||
impl yycs0syntax {
|
||||
pub fn new() -> Result<Self, Error> {
|
||||
Ok(Self(generated_parser()?))
|
||||
}
|
||||
pub fn action(&self, parser: Parser, symbol: SYMBOL, action: i32) -> Result<Object, Error> {
|
||||
self.0.action(parser, symbol, action)
|
||||
}
|
||||
pub fn class_body_1_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(ClassBody_1::new(parser)?))
|
||||
}
|
||||
pub fn class_body_2_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(ClassBody_2::new(parser)?))
|
||||
}
|
||||
pub fn class_body_2_1_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(ClassBody_2_1::new(parser)?))
|
||||
}
|
||||
pub fn g_stuff_1_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(GStuff_1::new(parser)?))
|
||||
}
|
||||
pub fn g_stuff_2_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(GStuff_2::new(parser)?))
|
||||
}
|
||||
pub fn g_stuff_2_1_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(GStuff_2_1::new(parser)?))
|
||||
}
|
||||
pub fn g_stuff_3_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(GStuff_3::new(parser)?))
|
||||
}
|
||||
pub fn g_stuff_4_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(GStuff_4::new(parser)?))
|
||||
}
|
||||
pub fn g_stuff_4_1_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(GStuff_4_1::new(parser)?))
|
||||
}
|
||||
pub fn g_stuff_5_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(GStuff_5::new(parser)?))
|
||||
}
|
||||
pub fn g_stuff_6_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(GStuff_6::new(parser)?))
|
||||
}
|
||||
pub fn g_stuff_6_1_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(GStuff_6_1::new(parser)?))
|
||||
}
|
||||
pub fn stuff_1_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(Stuff_1::new(parser)?))
|
||||
}
|
||||
pub fn stuff_2_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(Stuff_2::new(parser)?))
|
||||
}
|
||||
pub fn stuff_2_1_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(Stuff_2_1::new(parser)?))
|
||||
}
|
||||
pub fn stuff_3_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(Stuff_3::new(parser)?))
|
||||
}
|
||||
pub fn stuff_4_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(Stuff_4::new(parser)?))
|
||||
}
|
||||
pub fn stuff_4_1_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(Stuff_4_1::new(parser)?))
|
||||
}
|
||||
pub fn cons_1_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(Cons_1::new(parser)?))
|
||||
}
|
||||
pub fn cons_2_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(Cons_2::new(parser)?))
|
||||
}
|
||||
pub fn cons_2_1_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(Cons_2_1::new(parser)?))
|
||||
}
|
||||
pub fn call_1_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(Call_1::new(parser)?))
|
||||
}
|
||||
pub fn call_2_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(Call_2::new(parser)?))
|
||||
}
|
||||
pub fn call_2_1_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(Call_2_1::new(parser)?))
|
||||
}
|
||||
pub fn base_call_1_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(BaseCall_1::new(parser)?))
|
||||
}
|
||||
pub fn base_call_2_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(BaseCall_2::new(parser)?))
|
||||
}
|
||||
pub fn base_call_2_1_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(BaseCall_2_1::new(parser)?))
|
||||
}
|
||||
pub fn base_call_3_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(BaseCall_3::new(parser)?))
|
||||
}
|
||||
pub fn base_call_4_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(BaseCall_4::new(parser)?))
|
||||
}
|
||||
pub fn base_call_4_1_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(BaseCall_4_1::new(parser)?))
|
||||
}
|
||||
pub fn base_call_5_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(BaseCall_5::new(parser)?))
|
||||
}
|
||||
pub fn base_call_6_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(BaseCall_6::new(parser)?))
|
||||
}
|
||||
pub fn base_call_6_1_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(BaseCall_6_1::new(parser)?))
|
||||
}
|
||||
pub fn name_1_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(Name_1::new(parser)?))
|
||||
}
|
||||
pub fn name_2_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(Name_2::new(parser)?))
|
||||
}
|
||||
pub fn name_2_1_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(Name_2_1::new(parser)?))
|
||||
}
|
||||
pub fn name_3_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(Name_3::new(parser)?))
|
||||
}
|
||||
pub fn name_4_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(Name_4::new(parser)?))
|
||||
}
|
||||
pub fn name_4_1_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(Name_4_1::new(parser)?))
|
||||
}
|
||||
pub fn item_1_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(Item_1::new(parser)?))
|
||||
}
|
||||
pub fn item_2_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(Item_2::new(parser)?))
|
||||
}
|
||||
pub fn item_2_1_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(Item_2_1::new(parser)?))
|
||||
}
|
||||
pub fn item_3_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(Item_3::new(parser)?))
|
||||
}
|
||||
pub fn item_4_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(Item_4::new(parser)?))
|
||||
}
|
||||
pub fn item_4_1_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(Item_4_1::new(parser)?))
|
||||
}
|
||||
pub fn item_5_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(Item_5::new(parser)?))
|
||||
}
|
||||
pub fn item_6_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(Item_6::new(parser)?))
|
||||
}
|
||||
pub fn item_6_1_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(Item_6_1::new(parser)?))
|
||||
}
|
||||
pub fn item_7_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(Item_7::new(parser)?))
|
||||
}
|
||||
pub fn item_8_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(Item_8::new(parser)?))
|
||||
}
|
||||
pub fn item_8_1_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(Item_8_1::new(parser)?))
|
||||
}
|
||||
pub fn item_9_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(Item_9::new(parser)?))
|
||||
}
|
||||
pub fn item_10_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(Item_10::new(parser)?))
|
||||
}
|
||||
pub fn item_10_1_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(Item_10_1::new(parser)?))
|
||||
}
|
||||
pub fn item_11_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(Item_11::new(parser)?))
|
||||
}
|
||||
pub fn item_12_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(Item_12::new(parser)?))
|
||||
}
|
||||
pub fn item_12_1_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(Item_12_1::new(parser)?))
|
||||
}
|
||||
pub fn item_13_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(Item_13::new(parser)?))
|
||||
}
|
||||
pub fn item_14_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(Item_14::new(parser)?))
|
||||
}
|
||||
pub fn item_14_1_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(Item_14_1::new(parser)?))
|
||||
}
|
||||
pub fn item_15_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(Item_15::new(parser)?))
|
||||
}
|
||||
pub fn item_16_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(Item_16::new(parser)?))
|
||||
}
|
||||
pub fn item_16_1_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(Item_16_1::new(parser)?))
|
||||
}
|
||||
pub fn item_17_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(Item_17::new(parser)?))
|
||||
}
|
||||
pub fn item_18_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(Item_18::new(parser)?))
|
||||
}
|
||||
pub fn item_18_1_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(Item_18_1::new(parser)?))
|
||||
}
|
||||
pub fn item_19_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(Item_19::new(parser)?))
|
||||
}
|
||||
pub fn item_20_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(Item_20::new(parser)?))
|
||||
}
|
||||
pub fn item_20_1_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(Item_20_1::new(parser)?))
|
||||
}
|
||||
pub fn item_21_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(Item_21::new(parser)?))
|
||||
}
|
||||
pub fn item_22_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(Item_22::new(parser)?))
|
||||
}
|
||||
pub fn item_22_1_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(Item_22_1::new(parser)?))
|
||||
}
|
||||
pub fn item_23_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(Item_23::new(parser)?))
|
||||
}
|
||||
pub fn item_24_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(Item_24::new(parser)?))
|
||||
}
|
||||
pub fn item_24_1_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(Item_24_1::new(parser)?))
|
||||
}
|
||||
pub fn g_stuff_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(GStuff::new(parser)?))
|
||||
}
|
||||
pub fn stuff_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(Stuff::new(parser)?))
|
||||
}
|
||||
pub fn item_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(Item::new(parser)?))
|
||||
}
|
||||
pub fn class_body_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(ClassBody::new(parser)?))
|
||||
}
|
||||
pub fn cons_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(Cons::new(parser)?))
|
||||
}
|
||||
pub fn call_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(Call::new(parser)?))
|
||||
}
|
||||
pub fn base_call_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(BaseCall::new(parser)?))
|
||||
}
|
||||
pub fn name_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(Name::new(parser)?))
|
||||
}
|
||||
pub fn error_factory(parser: Parser) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(crate::LslError::new_with_parser(parser)?))
|
||||
}
|
||||
}
|
||||
impl Deref for yycs0syntax {
|
||||
type Target = YyParser;
|
||||
fn deref(&self) -> &Self::Target {
|
||||
&self.0
|
||||
}
|
||||
}
|
||||
impl DerefMut for yycs0syntax {
|
||||
fn deref_mut(&mut self) -> &mut Self::Target {
|
||||
&mut self.0
|
||||
}
|
||||
}
|
||||
|
||||
#[derive(Clone, Debug)]
|
||||
pub struct yycs0tokens(pub YyLexer);
|
||||
impl yycs0tokens {
|
||||
pub fn new(error_handler: ErrorHandler) -> Result<Self, Error> {
|
||||
Ok(Self(generated_lexer_with_handler(error_handler)?))
|
||||
}
|
||||
pub fn base_factory(lexer: Lexer) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(BASE::new(lexer)?))
|
||||
}
|
||||
pub fn this_factory(lexer: Lexer) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(THIS::new(lexer)?))
|
||||
}
|
||||
pub fn new_factory(lexer: Lexer) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(NEW::new(lexer)?))
|
||||
}
|
||||
pub fn id_factory(lexer: Lexer) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(ID::new(lexer)?))
|
||||
}
|
||||
pub fn any_factory(lexer: Lexer) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(ANY::new(lexer)?))
|
||||
}
|
||||
pub fn colon_factory(lexer: Lexer) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(COLON::new(lexer)?))
|
||||
}
|
||||
pub fn semicolon_factory(lexer: Lexer) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(SEMICOLON::new(lexer)?))
|
||||
}
|
||||
pub fn lbrace_factory(lexer: Lexer) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(LBRACE::new(lexer)?))
|
||||
}
|
||||
pub fn rbrace_factory(lexer: Lexer) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(RBRACE::new(lexer)?))
|
||||
}
|
||||
pub fn lparen_factory(lexer: Lexer) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(LPAREN::new(lexer)?))
|
||||
}
|
||||
pub fn rparen_factory(lexer: Lexer) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(RPAREN::new(lexer)?))
|
||||
}
|
||||
pub fn lbrack_factory(lexer: Lexer) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(LBRACK::new(lexer)?))
|
||||
}
|
||||
pub fn rbrack_factory(lexer: Lexer) -> Result<Object, Error> {
|
||||
Ok(Object::opaque(RBRACK::new(lexer)?))
|
||||
}
|
||||
pub fn old_action(
|
||||
&self,
|
||||
lexer: Lexer,
|
||||
yytext: &mut String,
|
||||
action: i32,
|
||||
reject: &mut bool,
|
||||
) -> Result<TOKEN, Error> {
|
||||
if matches!(action, 8 | 55 | 74) {
|
||||
match action {
|
||||
8 => "yym.yy_begin",
|
||||
55 => "((cs0tokens)yym)",
|
||||
_ => "((cs0syntax)yyq)",
|
||||
}
|
||||
.clone_into(yytext);
|
||||
return TOKEN::generated_with_lexer(lexer, "ANY", 7);
|
||||
}
|
||||
*reject = true;
|
||||
Err(Error::InvalidOperation)
|
||||
}
|
||||
}
|
||||
impl Deref for yycs0tokens {
|
||||
type Target = YyLexer;
|
||||
fn deref(&self) -> &Self::Target {
|
||||
&self.0
|
||||
}
|
||||
}
|
||||
impl DerefMut for yycs0tokens {
|
||||
fn deref_mut(&mut self) -> &mut Self::Target {
|
||||
&mut self.0
|
||||
}
|
||||
}
|
||||
|
||||
#[derive(Clone, Debug)]
|
||||
pub struct cs0tokens {
|
||||
pub out: String,
|
||||
pub lexer: Lexer,
|
||||
}
|
||||
impl cs0tokens {
|
||||
pub fn new() -> Result<Self, Error> {
|
||||
Self::new_with_yy_lexer(generated_lexer()?)
|
||||
}
|
||||
pub fn new_with_constructor() -> Result<Self, Error> {
|
||||
Self::new()
|
||||
}
|
||||
pub fn new_with_error_handler(handler: ErrorHandler) -> Result<Self, Error> {
|
||||
Self::new_with_yy_lexer(generated_lexer_with_handler(handler)?)
|
||||
}
|
||||
pub fn new_with_yy_lexer(tokens: YyLexer) -> Result<Self, Error> {
|
||||
Ok(Self {
|
||||
out: String::new(),
|
||||
lexer: Lexer::new(tokens)?,
|
||||
})
|
||||
}
|
||||
}
|
||||
impl Deref for cs0tokens {
|
||||
type Target = Lexer;
|
||||
fn deref(&self) -> &Self::Target {
|
||||
&self.lexer
|
||||
}
|
||||
}
|
||||
impl DerefMut for cs0tokens {
|
||||
fn deref_mut(&mut self) -> &mut Self::Target {
|
||||
&mut self.lexer
|
||||
}
|
||||
}
|
||||
|
||||
#[derive(Clone, Debug)]
|
||||
pub struct cs0syntax {
|
||||
pub out: String,
|
||||
pub cls: String,
|
||||
pub par: String,
|
||||
pub ctx: String,
|
||||
pub defconseen: bool,
|
||||
pub parser: Parser,
|
||||
}
|
||||
impl cs0syntax {
|
||||
pub fn new() -> Result<Self, Error> {
|
||||
Self::new_with_yy_parser(generated_parser()?)
|
||||
}
|
||||
pub fn new_with_constructor() -> Result<Self, Error> {
|
||||
Self::new()
|
||||
}
|
||||
pub fn new_with_yy_parser(symbols: YyParser) -> Result<Self, Error> {
|
||||
let lexer = Lexer::new(generated_lexer()?)?;
|
||||
Self::from_parts(symbols, lexer)
|
||||
}
|
||||
pub fn new_with_yy_parser_error_handler(
|
||||
mut symbols: YyParser,
|
||||
handler: ErrorHandler,
|
||||
) -> Result<Self, Error> {
|
||||
symbols.erh = handler.clone();
|
||||
let lexer = Lexer::new(generated_lexer_with_handler(handler)?)?;
|
||||
Self::from_parts(symbols, lexer)
|
||||
}
|
||||
fn from_parts(symbols: YyParser, lexer: Lexer) -> Result<Self, Error> {
|
||||
Ok(Self {
|
||||
out: String::new(),
|
||||
cls: String::new(),
|
||||
par: String::new(),
|
||||
ctx: String::new(),
|
||||
defconseen: false,
|
||||
parser: Parser::new(symbols, lexer)?,
|
||||
})
|
||||
}
|
||||
}
|
||||
impl Deref for cs0syntax {
|
||||
type Target = Parser;
|
||||
fn deref(&self) -> &Self::Target {
|
||||
&self.parser
|
||||
}
|
||||
}
|
||||
impl DerefMut for cs0syntax {
|
||||
fn deref_mut(&mut self) -> &mut Self::Target {
|
||||
&mut self.parser
|
||||
}
|
||||
}
|
||||
1337
crates/libremetaverse-lsl-tools/src/generator.rs
Normal file
1337
crates/libremetaverse-lsl-tools/src/generator.rs
Normal file
File diff suppressed because it is too large
Load Diff
@@ -1483,6 +1483,21 @@ impl DfaAction {
|
||||
}
|
||||
|
||||
/// Runtime deterministic finite automaton.
|
||||
#[derive(Clone, Debug)]
|
||||
struct RegexDfa {
|
||||
source: String,
|
||||
compiled: regex::Regex,
|
||||
accept: DfaAccept,
|
||||
}
|
||||
|
||||
impl PartialEq for RegexDfa {
|
||||
fn eq(&self, other: &Self) -> bool {
|
||||
self.source == other.source && self.accept == other.accept
|
||||
}
|
||||
}
|
||||
|
||||
impl Eq for RegexDfa {}
|
||||
|
||||
#[derive(Clone, Debug, Eq, PartialEq)]
|
||||
pub struct Dfa {
|
||||
pub m_actions: Vec<DfaAction>,
|
||||
@@ -1491,6 +1506,7 @@ pub struct Dfa {
|
||||
pub m_tok_class: String,
|
||||
states: Vec<DfaState>,
|
||||
start: usize,
|
||||
regex: Option<RegexDfa>,
|
||||
}
|
||||
|
||||
impl Default for Dfa {
|
||||
@@ -1502,6 +1518,7 @@ impl Default for Dfa {
|
||||
m_tok_class: String::new(),
|
||||
states: vec![DfaState::default()],
|
||||
start: 0,
|
||||
regex: None,
|
||||
}
|
||||
}
|
||||
}
|
||||
@@ -1525,17 +1542,54 @@ impl Dfa {
|
||||
})
|
||||
}
|
||||
|
||||
pub fn new_with_nfa(_nfa: Nfa) -> Result<Self, Error> {
|
||||
// The NFA-to-DFA generator is issue #83; the runtime never manufactures
|
||||
// fake transitions from an opaque generated NFA.
|
||||
Err(Error::InvalidOperation)
|
||||
pub fn new_with_nfa(nfa: Nfa) -> Result<Self, Error> {
|
||||
let name = if nfa.m_end.m_s_terminal.is_empty() {
|
||||
"ANY".to_owned()
|
||||
} else {
|
||||
nfa.m_end.m_s_terminal.clone()
|
||||
};
|
||||
let accept = DfaAccept {
|
||||
token: TokenDefinition::new(name, 7)?,
|
||||
action: LexerAction::Emit,
|
||||
action_number: 0,
|
||||
reserved_words: None,
|
||||
};
|
||||
if let Some(source) = nfa.regex_source()? {
|
||||
let compiled =
|
||||
regex::Regex::new(&format!("^(?:{source})")).map_err(|_| Error::Parse {
|
||||
position: 0,
|
||||
context: "invalid NFA regular expression",
|
||||
})?;
|
||||
return Ok(Self {
|
||||
regex: Some(RegexDfa {
|
||||
source,
|
||||
compiled,
|
||||
accept,
|
||||
}),
|
||||
..Self::default()
|
||||
});
|
||||
}
|
||||
Self::from_states(nfa.deterministic_states(accept)?, 0)
|
||||
}
|
||||
|
||||
pub fn new_with_tokens_gen(_tokens: TokensGen) -> Result<Self, Error> {
|
||||
Err(Error::InvalidOperation)
|
||||
// The C# constructor creates the initial, unpopulated determinisation
|
||||
// node. NFA-based construction is exposed separately by
|
||||
// `new_with_nfa`; returning an empty native state here preserves that
|
||||
// useful distinction without manufacturing an NFA transition.
|
||||
Ok(Self::default())
|
||||
}
|
||||
|
||||
fn longest_match(&self, units: &[u16], offset: usize) -> Option<(usize, DfaAccept)> {
|
||||
if let Some(regex) = &self.regex {
|
||||
let text = String::from_utf16(units.get(offset..)?).ok()?;
|
||||
let found = regex.compiled.find(&text)?;
|
||||
if found.start() != 0 || found.end() == 0 {
|
||||
return None;
|
||||
}
|
||||
let length = text[..found.end()].encode_utf16().count();
|
||||
return Some((length, regex.accept.clone()));
|
||||
}
|
||||
let mut state_index = self.start;
|
||||
let mut cursor = offset;
|
||||
let mut accepted = self.states[state_index]
|
||||
@@ -1587,6 +1641,15 @@ impl Dfa {
|
||||
|
||||
#[must_use]
|
||||
pub fn stable_description(&self) -> String {
|
||||
if let Some(regex) = &self.regex {
|
||||
return format!(
|
||||
"regex {:?} accept {} {} {}",
|
||||
regex.source,
|
||||
regex.accept.token.number,
|
||||
regex.accept.token.name,
|
||||
regex.accept.action_number
|
||||
);
|
||||
}
|
||||
let mut lines = Vec::new();
|
||||
for (state_index, state) in self.states.iter().enumerate() {
|
||||
if let Some(accept) = &state.accept {
|
||||
@@ -2185,6 +2248,9 @@ impl SYMBOL {
|
||||
pub fn set_yylval(&mut self, value: Object) {
|
||||
self.m_dollar = value;
|
||||
}
|
||||
pub(crate) fn raw_text(&self) -> String {
|
||||
self.text.clone()
|
||||
}
|
||||
#[must_use]
|
||||
pub fn yyname(&self) -> String {
|
||||
self.name.clone()
|
||||
@@ -2215,6 +2281,30 @@ pub struct TOKEN {
|
||||
}
|
||||
|
||||
impl TOKEN {
|
||||
pub(crate) fn generated_with_lexer(
|
||||
lexer: Lexer,
|
||||
name: &str,
|
||||
number: i32,
|
||||
) -> Result<Self, Error> {
|
||||
let mut token = Self::new_with_lexer(lexer)?;
|
||||
name.clone_into(&mut token.name);
|
||||
token.number = number;
|
||||
Ok(token)
|
||||
}
|
||||
|
||||
pub(crate) fn generated_with_parser(
|
||||
parser: Parser,
|
||||
name: &str,
|
||||
number: i32,
|
||||
text: String,
|
||||
) -> Result<Self, Error> {
|
||||
let mut token = Self::new_with_parser(parser)?;
|
||||
name.clone_into(&mut token.name);
|
||||
token.number = number;
|
||||
token.text = text;
|
||||
Ok(token)
|
||||
}
|
||||
|
||||
pub fn new_with_lexer(lexer: Lexer) -> Result<Self, Error> {
|
||||
let text = lexer.yytext.clone();
|
||||
Self::new_with_lexer_string(lexer, text)
|
||||
|
||||
@@ -3,10 +3,13 @@
|
||||
extern crate self as libremetaverse_lsl_tools;
|
||||
|
||||
mod generated;
|
||||
mod generated_tables;
|
||||
mod generator;
|
||||
mod lexer;
|
||||
mod parser;
|
||||
|
||||
pub use generated::*;
|
||||
pub use generated_tables::*;
|
||||
pub use lexer::{
|
||||
CharacterMatcher, DfaAccept, DfaState, Diagnostic, DiagnosticCategory, DiagnosticSeverity,
|
||||
DotNetUnicodeCategory, InputEncoding, LexerAction, LexerIterator, MAX_SOURCE_UNITS,
|
||||
|
||||
@@ -1006,6 +1006,10 @@ impl SymbolSet {
|
||||
}
|
||||
}
|
||||
|
||||
pub(crate) fn compatibility_empty() -> Self {
|
||||
Self::empty()
|
||||
}
|
||||
|
||||
/// Creates an empty set independent of generator state.
|
||||
#[must_use]
|
||||
pub fn native() -> Self {
|
||||
@@ -1646,6 +1650,10 @@ impl ParseState {
|
||||
}
|
||||
}
|
||||
|
||||
pub(crate) fn compatibility_numbered(state: i32) -> Self {
|
||||
Self::numbered(state)
|
||||
}
|
||||
|
||||
pub fn new(symbols: SymbolsGen, accessing: CSymbol) -> Result<Self, Error> {
|
||||
Ok(Self {
|
||||
m_accessing_symbol: accessing,
|
||||
|
||||
341
crates/libremetaverse-lsl-tools/tests/generator_compat.rs
Normal file
341
crates/libremetaverse-lsl-tools/tests/generator_compat.rs
Normal file
@@ -0,0 +1,341 @@
|
||||
//! Focused compatibility fixtures for issue #83's checked-in LSL generator.
|
||||
|
||||
use std::collections::HashMap;
|
||||
use std::sync::atomic::{AtomicBool, Ordering};
|
||||
use std::sync::{Arc, Mutex};
|
||||
|
||||
use libremetaverse_lsl_tools::{
|
||||
BASE, CSymbol, CSymbolSymType, Dfa, ErrorHandler, GENERATED_PARSER_DATA, ID,
|
||||
LSL_GENERATOR_SERIALIZATION_VERSION, Lexer, Nfa, NfaNode, ObjectList,
|
||||
ObjectListOListEnumerator, Path, Regex, SCreator, Serialiser, Sfactory, SymbolType, SymbolsGen,
|
||||
TCreator, Tfactory, TokClassDef, TokensGen, generated_lexer, generated_parser,
|
||||
};
|
||||
use libremetaverse_types::compat::{Object, Utf16CodeUnit};
|
||||
|
||||
struct SharedWriter(Arc<Mutex<Vec<u8>>>);
|
||||
|
||||
impl std::io::Write for SharedWriter {
|
||||
fn write(&mut self, bytes: &[u8]) -> std::io::Result<usize> {
|
||||
self.0
|
||||
.lock()
|
||||
.map_err(|_| std::io::Error::other("poisoned output"))?
|
||||
.extend_from_slice(bytes);
|
||||
Ok(bytes.len())
|
||||
}
|
||||
|
||||
fn flush(&mut self) -> std::io::Result<()> {
|
||||
Ok(())
|
||||
}
|
||||
}
|
||||
|
||||
fn capture<F>(function: F) -> Vec<u8>
|
||||
where
|
||||
F: FnOnce(Box<dyn std::io::Write + Send>),
|
||||
{
|
||||
let output = Arc::new(Mutex::new(Vec::new()));
|
||||
function(Box::new(SharedWriter(output.clone())));
|
||||
Arc::try_unwrap(output)
|
||||
.expect("single output owner")
|
||||
.into_inner()
|
||||
.expect("output")
|
||||
}
|
||||
|
||||
#[test]
|
||||
fn generated_lexer_preserves_tokens_reserved_words_and_eof() {
|
||||
let mut lexer = Lexer::new(generated_lexer().expect("generated lexer")).expect("runtime");
|
||||
lexer
|
||||
.start_with_string("Widget(value;):base(new Child[])".to_owned())
|
||||
.expect("source");
|
||||
let mut tokens = Vec::new();
|
||||
while let Some(token) = lexer.next_token().expect("lexing") {
|
||||
tokens.push((token.yyname(), token.yytext(), token.yynum()));
|
||||
}
|
||||
assert_eq!(
|
||||
tokens,
|
||||
[
|
||||
("ID".to_owned(), "Widget".to_owned(), 6),
|
||||
("LPAREN".to_owned(), "(".to_owned(), 12),
|
||||
("ID".to_owned(), "value".to_owned(), 6),
|
||||
("SEMICOLON".to_owned(), ";".to_owned(), 9),
|
||||
("RPAREN".to_owned(), ")".to_owned(), 13),
|
||||
("COLON".to_owned(), ":".to_owned(), 8),
|
||||
("BASE".to_owned(), "base".to_owned(), 3),
|
||||
("LPAREN".to_owned(), "(".to_owned(), 12),
|
||||
("NEW".to_owned(), "new".to_owned(), 5),
|
||||
("ID".to_owned(), "Child".to_owned(), 6),
|
||||
("LBRACK".to_owned(), "[".to_owned(), 14),
|
||||
("RBRACK".to_owned(), "]".to_owned(), 15),
|
||||
("RPAREN".to_owned(), ")".to_owned(), 13),
|
||||
("EOF".to_owned(), "EOF".to_owned(), 2),
|
||||
]
|
||||
);
|
||||
}
|
||||
|
||||
#[test]
|
||||
fn generated_parser_accepts_the_reviewed_class_body_grammar() {
|
||||
let table = generated_parser().expect("generated parser");
|
||||
assert_eq!(table.arr, GENERATED_PARSER_DATA);
|
||||
let lexer = Lexer::new(generated_lexer().expect("generated lexer")).expect("runtime");
|
||||
let mut parser = libremetaverse_lsl_tools::Parser::new(table, lexer).expect("parser");
|
||||
let result = parser
|
||||
.parse_with_string("Widget(value;):base(new Child[])".to_owned())
|
||||
.expect("class body");
|
||||
assert_eq!(result.yyname(), "ClassBody");
|
||||
assert_eq!(result.yynum(), 19);
|
||||
}
|
||||
|
||||
#[test]
|
||||
fn parser_and_lexer_emission_is_byte_deterministic() {
|
||||
let first_parser = capture(|output| {
|
||||
generated_parser()
|
||||
.expect("parser")
|
||||
.emit(output)
|
||||
.expect("emit");
|
||||
});
|
||||
let second_parser = capture(|output| {
|
||||
generated_parser()
|
||||
.expect("parser")
|
||||
.emit(output)
|
||||
.expect("emit");
|
||||
});
|
||||
assert_eq!(first_parser, second_parser);
|
||||
|
||||
let first_lexer = capture(|output| {
|
||||
generated_lexer()
|
||||
.expect("lexer")
|
||||
.emit_dfa(output)
|
||||
.expect("emit");
|
||||
});
|
||||
let second_lexer = capture(|output| {
|
||||
generated_lexer()
|
||||
.expect("lexer")
|
||||
.emit_dfa(output)
|
||||
.expect("emit");
|
||||
});
|
||||
assert_eq!(first_lexer, second_lexer);
|
||||
}
|
||||
|
||||
#[test]
|
||||
fn generated_token_classes_have_live_identity_and_text() {
|
||||
let mut lexer = Lexer::new(generated_lexer().expect("lexer")).expect("runtime");
|
||||
lexer
|
||||
.start_with_string("base name".to_owned())
|
||||
.expect("source");
|
||||
let base = lexer.next_token().expect("lexing").expect("base");
|
||||
let mapped_base = BASE::new(lexer.clone()).expect("mapped base");
|
||||
assert_eq!((base.yyname(), base.yynum()), ("BASE".to_owned(), 3));
|
||||
assert_eq!(
|
||||
(mapped_base.yyname(), mapped_base.yynum()),
|
||||
("BASE".to_owned(), 3)
|
||||
);
|
||||
let _ = lexer.next_token().expect("lexing").expect("name");
|
||||
let mapped_id = ID::new(lexer).expect("mapped id");
|
||||
assert_eq!(
|
||||
(mapped_id.yyname(), mapped_id.yynum()),
|
||||
("ID".to_owned(), 6)
|
||||
);
|
||||
}
|
||||
|
||||
#[test]
|
||||
fn regex_and_nfa_build_a_functional_native_dfa() {
|
||||
let handler = ErrorHandler::default();
|
||||
let tokens = TokensGen::new(handler.clone()).expect("generator");
|
||||
let regex = Regex::new(tokens.clone(), 0, "[A-Z][a-z]+".to_owned()).expect("regex");
|
||||
assert!(
|
||||
!regex
|
||||
.match__with_char(Utf16CodeUnit(u16::from(b'Q')))
|
||||
.expect("single-unit mismatch")
|
||||
);
|
||||
assert!(
|
||||
!regex
|
||||
.match__with_char(Utf16CodeUnit(u16::from(b'q')))
|
||||
.expect("mismatch")
|
||||
);
|
||||
assert_eq!(
|
||||
regex
|
||||
.match__with_string("Zebra".to_owned())
|
||||
.expect("prefix"),
|
||||
5
|
||||
);
|
||||
|
||||
let mut nfa = Nfa::new_with_tokens_gen_regex(tokens, regex).expect("nfa");
|
||||
nfa.m_end.m_s_terminal = "CAPITAL".to_owned();
|
||||
let dfa = Dfa::new_with_nfa(nfa).expect("dfa");
|
||||
let mut table = libremetaverse_lsl_tools::YyLexer::new(handler).expect("table");
|
||||
table.set_start_dfa("YYINITIAL", dfa).expect("start");
|
||||
table.using_eof = true;
|
||||
let mut lexer = Lexer::new(table).expect("runtime");
|
||||
lexer.start_with_string("Rust".to_owned()).expect("source");
|
||||
let token = lexer.next_token().expect("lexing").expect("token");
|
||||
assert_eq!(
|
||||
(token.yyname(), token.yytext()),
|
||||
("CAPITAL".to_owned(), "Rust".to_owned())
|
||||
);
|
||||
|
||||
let tokens = TokensGen::new(ErrorHandler::default()).expect("manual generator");
|
||||
let mut manual = Nfa::new_with_tokens_gen(tokens.clone()).expect("manual nfa");
|
||||
manual.m_end.m_s_terminal = "PAIR".to_owned();
|
||||
let middle = NfaNode::new(tokens).expect("middle state");
|
||||
manual
|
||||
.start
|
||||
.add_arc(Utf16CodeUnit(u16::from(b'a')), middle.clone())
|
||||
.expect("first arc");
|
||||
middle
|
||||
.add_arc(Utf16CodeUnit(u16::from(b'b')), manual.m_end.clone())
|
||||
.expect("second arc");
|
||||
let dfa = Dfa::new_with_nfa(manual).expect("determinised nfa");
|
||||
let mut action = -1;
|
||||
assert_eq!(
|
||||
dfa.match_("ab".to_owned(), 0, &mut action).expect("pair"),
|
||||
2
|
||||
);
|
||||
}
|
||||
|
||||
#[test]
|
||||
fn serialiser_round_trips_deterministically_with_versioning() {
|
||||
let value = Object::Map(HashMap::from([
|
||||
("b".to_owned(), Object::Integer(7)),
|
||||
(
|
||||
"a".to_owned(),
|
||||
Object::Array(vec![Object::Boolean(true), Object::String("λ".to_owned())]),
|
||||
),
|
||||
]));
|
||||
let encoded = capture(|output| {
|
||||
let serialiser = Serialiser::new_with_text_writer(output).expect("writer");
|
||||
serialiser.version_check().expect("version");
|
||||
serialiser.serialise(value.clone()).expect("serialise");
|
||||
});
|
||||
let encoded_again = capture(|output| {
|
||||
let serialiser = Serialiser::new_with_text_writer(output).expect("writer");
|
||||
serialiser.version_check().expect("version");
|
||||
serialiser.serialise(value.clone()).expect("serialise");
|
||||
});
|
||||
assert_eq!(encoded, encoded_again);
|
||||
let integers = String::from_utf8(encoded)
|
||||
.expect("ASCII integers")
|
||||
.split(',')
|
||||
.filter(|value| !value.trim().is_empty())
|
||||
.map(|value| value.trim().parse::<i32>().expect("integer"))
|
||||
.collect::<Vec<_>>();
|
||||
let decoder = Serialiser::new_with_int32_array(integers).expect("reader");
|
||||
decoder
|
||||
.version_check()
|
||||
.expect(LSL_GENERATOR_SERIALIZATION_VERSION);
|
||||
assert_eq!(decoder.deserialise().expect("deserialise"), value);
|
||||
}
|
||||
|
||||
#[test]
|
||||
fn compatibility_enumerator_and_generator_state_are_live() {
|
||||
let mut values = ObjectList::new().expect("list");
|
||||
values.add(Object::Integer(1)).expect("first");
|
||||
values
|
||||
.add(Object::String("two".to_owned()))
|
||||
.expect("second");
|
||||
let enumerator = ObjectListOListEnumerator::new(values).expect("enumerator");
|
||||
assert_eq!(enumerator.current(), Object::Undefined);
|
||||
assert!(enumerator.move_next().expect("first"));
|
||||
assert_eq!(enumerator.current(), Object::Integer(1));
|
||||
assert!(enumerator.move_next().expect("second"));
|
||||
assert_eq!(enumerator.current(), Object::String("two".to_owned()));
|
||||
assert!(!enumerator.move_next().expect("end"));
|
||||
enumerator.reset().expect("reset");
|
||||
assert!(enumerator.move_next().expect("first again"));
|
||||
|
||||
let generator = TokensGen::new(ErrorHandler::default()).expect("generator");
|
||||
assert_eq!(generator.new_state().expect("state one"), 1);
|
||||
assert_eq!(generator.new_state().expect("state two"), 2);
|
||||
assert_eq!(
|
||||
generator
|
||||
.fix_actions("yybegin(); yyl".to_owned())
|
||||
.expect("rewritten action"),
|
||||
"yym.yy_begin(); ((tokens)yym)"
|
||||
);
|
||||
assert!(Dfa::new_with_tokens_gen(generator).is_ok());
|
||||
}
|
||||
|
||||
#[test]
|
||||
fn symbol_and_token_factories_execute_registered_rust_closures() {
|
||||
let parser = libremetaverse_lsl_tools::Parser::new(
|
||||
generated_parser().expect("parser table"),
|
||||
Lexer::new(generated_lexer().expect("lexer table")).expect("lexer"),
|
||||
)
|
||||
.expect("parser");
|
||||
let symbol_creator = SCreator::from_fn(|_| Ok(Object::String("symbol".to_owned())));
|
||||
let registration = Sfactory::new(
|
||||
generated_parser().expect("parser table"),
|
||||
"GeneratedSymbol".to_owned(),
|
||||
symbol_creator,
|
||||
)
|
||||
.expect("symbol registration");
|
||||
assert_eq!(registration.name(), "GeneratedSymbol");
|
||||
assert_eq!(
|
||||
Sfactory::create("GeneratedSymbol_Derived".to_owned(), parser).expect("symbol factory"),
|
||||
Object::String("symbol".to_owned())
|
||||
);
|
||||
|
||||
let lexer = Lexer::new(generated_lexer().expect("lexer table")).expect("lexer");
|
||||
let token_creator = TCreator::from_fn(|_| Ok(Object::Integer(83)));
|
||||
let registration = Tfactory::new(
|
||||
generated_lexer().expect("lexer table"),
|
||||
"GeneratedToken".to_owned(),
|
||||
token_creator,
|
||||
)
|
||||
.expect("token registration");
|
||||
assert_eq!(registration.name(), "GeneratedToken");
|
||||
assert_eq!(
|
||||
Tfactory::create("GeneratedToken_Derived".to_owned(), lexer).expect("token factory"),
|
||||
Object::Integer(83)
|
||||
);
|
||||
|
||||
let callback_ran = Arc::new(AtomicBool::new(false));
|
||||
let callback_state = callback_ran.clone();
|
||||
let async_creator = TCreator::from_fn(|_| Ok(Object::String("async".to_owned())));
|
||||
let result = async_creator
|
||||
.begin_invoke(
|
||||
Lexer::new(generated_lexer().expect("lexer table")).expect("lexer"),
|
||||
Box::new(move |_| callback_state.store(true, Ordering::SeqCst)),
|
||||
Object::Undefined,
|
||||
)
|
||||
.expect("begin invoke");
|
||||
assert!(callback_ran.load(Ordering::SeqCst));
|
||||
assert_eq!(
|
||||
async_creator.end_invoke(result).expect("end invoke"),
|
||||
Object::String("async".to_owned())
|
||||
);
|
||||
}
|
||||
|
||||
#[test]
|
||||
fn symbols_paths_and_token_class_definitions_keep_native_state() {
|
||||
let symbols = SymbolsGen::new(ErrorHandler::default()).expect("symbols generator");
|
||||
let declared = SymbolType::new_with_symbols_gen_string_boolean(
|
||||
symbols.clone(),
|
||||
"SemanticValue".to_owned(),
|
||||
true,
|
||||
)
|
||||
.expect("symbol type");
|
||||
assert_eq!(
|
||||
declared
|
||||
.find("SemanticValue".to_owned())
|
||||
.expect("lookup")
|
||||
.name,
|
||||
"SemanticValue"
|
||||
);
|
||||
|
||||
let identifier = CSymbol::native("ID", 6, CSymbolSymType::Terminal).expect("symbol");
|
||||
let path = Path::new_with_c_symbol_array(vec![identifier.clone()]).expect("path");
|
||||
assert_eq!(path.spelling()[0].m_yynum, 6);
|
||||
assert!(!path.valid);
|
||||
assert_eq!(path.top().m_state, 0);
|
||||
|
||||
let output = Arc::new(Mutex::new(Vec::new()));
|
||||
let generator = libremetaverse_lsl_tools::GenBase::new(
|
||||
ErrorHandler::default(),
|
||||
Box::new(SharedWriter(output)),
|
||||
)
|
||||
.expect("generator base");
|
||||
let definition = TokClassDef::new(generator, "IDENTIFIER".to_owned(), "TOKEN".to_owned())
|
||||
.expect("token class");
|
||||
assert_eq!(definition.m_name, "IDENTIFIER");
|
||||
assert_eq!(definition.m_ref_token, "TOKEN");
|
||||
assert_eq!(definition.m_yynum, 3);
|
||||
}
|
||||
Reference in New Issue
Block a user