mirror of
https://github.com/yuzu-emu/unicorn.git
synced 2025-02-02 11:21:09 +00:00
e1f3c46a16
Right now, our ad hoc parser ensures that we cannot have a flat union that introduces any members that would clash with non-variant members inherited from the union's base type (see flat-union-clash-member.json). We want QAPISchemaObjectType.check() to make the same check, so we can later reduce some of the ad hoc checks. We already have a map 'seen' of all non-variant members. We still need to check for collisions between each variant type's members and the non-variant ones. To know the variant type's members, we need to call variant.type.check(). This also detects when a type contains itself in a variant, exactly like the existing base.check() detects when a type contains itself as a base. (Except that we currently forbid anything but a struct as the type of a variant, so we can't actually trigger this type of loop yet.) Slight complication: an alternate's variant can have arbitrary type, but only an object type's check() may be called outside QAPISchema.check(). We could either skip the call for variants of alternates, or skip it for non-object types. For now, do the latter, because it's easier. Then we call each variant member's check_clash() with the appropriate 'seen' map. Since members of different variants can't clash, we have to clone a fresh seen for each variant. Wrap this in a new helper method QAPISchemaObjectTypeVariants.check_clash(). Note that cloning 'seen' inside .check_clash() resembles the one we just removed from .check() in 'qapi: Drop obsolete tag value collision assertions'; the difference here is that we are now checking for clashes among the qapi members of the variant type, rather than for a single clash with the variant tag name itself. Note that, by construction, collisions can't actually happen for simple unions: each variant's type is a wrapper with a single member 'data', which will never collide with the only non-variant member 'type'. For alternates, there's nothing for a variant object type's members to clash with, and therefore no need to call the new variants.check_clash(). No change to generated code. Backports commit b807a1e1e3796adaf3ece2f7b69ea5ee28468ff4 from qemu |
||
---|---|---|
bindings | ||
docs | ||
include | ||
msvc | ||
qemu | ||
samples | ||
tests | ||
.appveyor.yml | ||
.gitignore | ||
.travis.yml | ||
AUTHORS.TXT | ||
Brewfile | ||
ChangeLog | ||
config.mk | ||
COPYING | ||
COPYING.LGPL2 | ||
COPYING_GLIB | ||
CREDITS.TXT | ||
install-cmocka-linux.sh | ||
list.c | ||
make.sh | ||
Makefile | ||
msvc.bat | ||
pkgconfig.mk | ||
README.md | ||
uc.c | ||
windows_export.bat |
Unicorn Engine
Unicorn is a lightweight, multi-platform, multi-architecture CPU emulator framework based on QEMU.
Unicorn offers some unparalleled features:
- Multi-architecture: ARM, ARM64 (ARMv8), M68K, MIPS, SPARC, and X86 (16, 32, 64-bit)
- Clean/simple/lightweight/intuitive architecture-neutral API
- Implemented in pure C language, with bindings for Crystal, Clojure, Visual Basic, Perl, Rust, Ruby, Python, Java, .NET, Go, Delphi/Free Pascal and Haskell.
- Native support for Windows & *nix (with Mac OSX, Linux, *BSD & Solaris confirmed)
- High performance via Just-In-Time compilation
- Support for fine-grained instrumentation at various levels
- Thread-safety by design
- Distributed under free software license GPLv2
Further information is available at http://www.unicorn-engine.org
License
This project is released under the GPL license.
Compilation & Docs
See docs/COMPILE.md file for how to compile and install Unicorn.
More documentation is available in docs/README.md.
Contact
Contact us via mailing list, email or twitter for any questions.
Contribute
If you want to contribute, please pick up something from our Github issues.
We also maintain a list of more challenged problems in a TODO list.
CREDITS.TXT records important contributors of our project.