cpython/Tools/cases_generator
2024-03-13 20:57:48 +08:00
..
_typing_backports.py
analyzer.py GH-116596: Better determination of escaping uops. (GH-116597) 2024-03-11 13:37:48 +00:00
cwriter.py GH-111485: Generate instruction and uop metadata (GH-113287) 2023-12-20 14:27:25 +00:00
generators_common.py GH-115457: Support splitting and replication of micro ops. (GH-115558) 2024-02-20 10:50:59 +00:00
interpreter_definition.md gh-115778: Add tierN annotation for instruction definitions (#115815) 2024-02-23 17:31:57 +00:00
lexer.py gh-115778: Add tierN annotation for instruction definitions (#115815) 2024-02-23 17:31:57 +00:00
mypy.ini GH-111485: Separate out parsing, analysis and code-gen phases of tier 1 code generator (GH-112299) 2023-12-07 12:49:40 +00:00
opcode_id_generator.py `Tools/cases_generator`: Fix typos and incorrect comments. (#114892) 2024-02-02 17:52:58 -08:00
opcode_metadata_generator.py gh-115778: Add tierN annotation for instruction definitions (#115815) 2024-02-23 17:31:57 +00:00
optimizer_generator.py gh-115419: Change default sym to not_null (GH-116562) 2024-03-13 20:57:48 +08:00
parser.py GH-111485: Delete the old generator code. (GH-113321) 2023-12-21 12:46:28 +00:00
parsing.py GH-115457: Support splitting and replication of micro ops. (GH-115558) 2024-02-20 10:50:59 +00:00
plexer.py
py_metadata_generator.py `Tools/cases_generator`: Fix typos and incorrect comments. (#114892) 2024-02-02 17:52:58 -08:00
README.md Rename tier 2 redundancy eliminator to optimizer (#115888) 2024-02-26 08:42:53 -08:00
stack.py GH-115457: Support splitting and replication of micro ops. (GH-115558) 2024-02-20 10:50:59 +00:00
target_generator.py GH-111485: Generate TARGET table for computed goto dispatch. (GH-113319) 2023-12-20 15:09:12 +00:00
tier1_generator.py gh-115999: Disable the specializing adaptive interpreter in free-threaded builds (#116013) 2024-02-29 21:53:32 -05:00
tier2_generator.py gh-115778: Add tierN annotation for instruction definitions (#115815) 2024-02-23 17:31:57 +00:00
uop_id_generator.py gh-115778: Add tierN annotation for instruction definitions (#115815) 2024-02-23 17:31:57 +00:00
uop_metadata_generator.py gh-115778: Add tierN annotation for instruction definitions (#115815) 2024-02-23 17:31:57 +00:00

Tooling to generate interpreters

Documentation for the instruction definitions in Python/bytecodes.c ("the DSL") is here.

What's currently here:

  • analyzer.py: code for converting AST generated by Parser to more high-level structure for easier interaction
  • lexer.py: lexer for C, originally written by Mark Shannon
  • plexer.py: OO interface on top of lexer.py; main class: PLexer
  • parsing.py: Parser for instruction definition DSL; main class: Parser
  • parser.py helper for interactions with parsing.py
  • tierN_generator.py: a couple of driver scripts to read Python/bytecodes.c and write Python/generated_cases.c.h (and several other files)
  • optimizer_generator.py: reads Python/bytecodes.c and Python/optimizer_bytecodes.c and writes Python/optimizer_cases.c.h
  • stack.py: code to handle generalized stack effects
  • cwriter.py: code which understands tokens and how to format C code; main class: CWriter
  • generators_common.py: helpers for generators
  • opcode_id_generator.py: generate a list of opcodes and write them to Include/opcode_ids.h
  • opcode_metadata_generator.py: reads the instruction definitions and write the metadata to Include/internal/pycore_opcode_metadata.h
  • py_metadata_generator.py: reads the instruction definitions and write the metadata to Lib/_opcode_metadata.py
  • target_generator.py: generate targets for computed goto dispatch and write them to Python/opcode_targets.h
  • uop_id_generator.py: generate a list of uop IDs and write them to Include/internal/pycore_uop_ids.h
  • uop_metadata_generator.py: reads the instruction definitions and write the metadata to Include/internal/pycore_uop_metadata.h

Note that there is some dummy C code at the top and bottom of Python/bytecodes.c to fool text editors like VS Code into believing this is valid C code.

A bit about the parser

The parser class uses a pretty standard recursive descent scheme, but with unlimited backtracking. The PLexer class tokenizes the entire input before parsing starts. We do not run the C preprocessor. Each parsing method returns either an AST node (a Node instance) or None, or raises SyntaxError (showing the error in the C source).

Most parsing methods are decorated with @contextual, which automatically resets the tokenizer input position when None is returned. Parsing methods may also raise SyntaxError, which is irrecoverable. When a parsing method returns None, it is possible that after backtracking a different parsing method returns a valid AST.

Neither the lexer nor the parsers are complete or fully correct. Most known issues are tersely indicated by # TODO: comments. We plan to fix issues as they become relevant.