uc_core
Shared C23 frontend and AST-level optimizer for the uc80 (Z80/CP/M) and
uc386 (x86-32/MS-DOS) retro C compilers.
What's in here
- Lexer / parser — C23 source to AST
- Preprocessor — C23 preprocessor with target-configurable predefined macros
- AST — node definitions shared across backends
- AST optimizer — target-independent expression simplification, constant folding, strength reduction, dead-code elimination at the AST level
- Backend protocol — the contract a target backend must implement
Targets using uc_core
Install
pip install uc_core
Or from source:
pip install -e .
Usage from a backend
from uc_core.frontend import parse
from uc_core.preprocessor import Preprocessor
from uc_core.ast_optimizer import ASTOptimizer
from uc_core.backend import CodeGenerator # Protocol
# Target-specific predefined macros
predefines = {
"__UC80__": "1",
"__Z80__": "1",
"__CPM__": "1",
}
pp = Preprocessor(include_paths=["lib/include"], target_predefines=predefines)
source = pp.preprocess(open("hello.c").read(), "hello.c")
ast = parse(source, "hello.c") # strict C23
# ast = parse(source, "hello.c", kr_prepass=True) # pre-ANSI sources
ast = ASTOptimizer(opt_level=3).optimize(ast)
# Backend is provided by the target package (uc80, uc386, ...)
# It must implement uc_core.backend.CodeGenerator
The front-end is plox-driven: uc_core/frontend.py runs the lexer
- LR(1) parser produced from
plox/examples/c23.ploxand lowers the parse tree intouc_core/ast.pydataclasses. The pre-built tables ship asuc_core/data/c23.json.
K&R / implicit-int compatibility (kr_prepass)
The grammar is strict C23, which has no implicit-int and no K&R
old-style parameter lists. parse(..., kr_prepass=True) enables a
source-level recovery: the strict parse is attempted first, and
only if it fails are the two pre-ANSI shapes rewritten to
equivalent ANSI and the parse retried —
main() { … } -> int main() { … }
f(a, b) int a; char *b; { … } -> int f(int a, char *b) { … }
The same opt-in also lowers the GNU computed-goto / labels-as-values
extension (&&label, goto *expr) into a switch dispatch over an
integer id-encoding of each function's address-taken labels — affine
label arithmetic (&&a - &&b, threaded code) stays consistent, and
the result uses only switch/goto/casts:
void *t[] = {&&a, &&b}; goto *t[i];
-> void *t[]={(void*)0,(void*)1};
switch((long)(t[i])){case 0: goto a; case 1: goto b; default:;}
Off by default, so modern code is parsed exactly once and never
reaches the rewriter (zero cost). Backends expose it as they see fit
(e.g. uc386 --kr); it is intended for legacy/pre-ANSI and GNU-C
codebases such as the gcc-c-torture corpus.
Related Projects
- 80un - Unpacker for the CP/M archive and compression formats LBR, ARC, squeeze, crunch, and CrLZH.
- cpmdroid - Z80/CP/M emulator for Android phones and tablets. It emulates the RomWBW HBIOS interface and a VT100 terminal.
- cpmemu - Z80/CP/M emulator for Linux and Windows, with Z80 and 8080 CPU cores. It translates the BDOS and BIOS calls of CP/M 2.2 programs to the host file system.
- ioscpm - Z80/CP/M emulator for iOS and macOS. It emulates the RomWBW HBIOS interface and runs CP/M 2.2 and CP/M 3.
- learn-ada-z80 - Collection of more than 90 Ada example programs for uada80, the Ada compiler for the Z80 processor and CP/M.
- mbasic - Python interpreter for MBASIC 5.21, the Microsoft BASIC-80 for CP/M. Two compiler backends compile the programs to CP/M .COM files or to JavaScript.
- mbasic2025 - Reconstruction of the lost source code of MBASIC 5.21, the Microsoft BASIC-80 for CP/M. The MACRO-80 source code assembles to a binary that matches mbasic.com byte for byte.
- mbasicc - C++17 interpreter for MBASIC 5.21, the Microsoft BASIC-80 for CP/M. It runs on Linux and macOS.
- mbasicc_web - Web browser interpreter for MBASIC 5.21, the Microsoft BASIC-80 for CP/M. Emscripten compiles the mbasicc interpreter to WebAssembly.
- mpm2 - Z80 emulator for MP/M II, the multi-user CP/M operating system. Users connect over SSH, and SFTP clients transfer files.
- romwbw_emu - Hardware-level Z80/CP/M emulator for Linux and macOS. It emulates the RomWBW HBIOS interface and switches banks in 512 KB of ROM and 512 KB of RAM.
- scelbal - Floating-point BASIC interpreter for the 8080 processor and CP/M. A translator converts the original 8008 source code to 8080 source code.
- uada80 - Ada compiler for the Z80 processor and CP/M 2.2. It compiles a subset of Ada 2012 to CP/M .COM files.
- uc386 - C23 compiler for the i386 processor and MS-DOS. It uses uc_core as its frontend.
- uc80 - C compiler for the Z80 processor and CP/M. It uses uc_core as its frontend.
- ucow - Cowgol compiler for the Z80 processor and CP/M. It runs on Linux in Python.
- um80_and_friends - Linux toolchain that is compatible with Microsoft MACRO-80. It has an assembler, a linker, a librarian, and a disassembler.
- upeepz80 - Peephole optimizer for Z80 compilers. It shortens jumps to jr, builds djnz loops, and removes dead stores.
- uplm80 - PL/M-80 compiler for the Z80 processor and CP/M. It writes Intel 8080 and Zilog Z80 assembly language.
- uplox - LR(1) and GLR parser generator. It writes the lexer and parser tables for the C23 frontend of uc_core from
examples/c23.uplox. - z80cpmw - Z80/CP/M emulator for Windows. It emulates the RomWBW HBIOS interface and boots CP/M from disk images.
License
GPL-3.0-or-later. See LICENSE.
Release files for uc-core 0.4.1
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