This website requires JavaScript.
Explore
Help
Sign In
admin
/
lifting-bits-remill
Watch
1
Star
0
Fork
0
You've already forked lifting-bits-remill
mirror of
https://github.com/lifting-bits/remill
synced
2026-06-21 13:56:07 +00:00
Code
Issues
Packages
Projects
Releases
Wiki
Activity
Files
d755a870cf33d45b416d5e8cebda8a7f418a013d
lifting-bits-remill
/
scripts
T
History
Peter Goodman
d755a870cf
Added potential support for openSUSE builds
2016-09-03 16:06:41 -04:00
..
__init__.py
Added Interrupt structure to State structure for x86. It's not an ideal way of configuring interrupts, but it currently seems like the only way to handle conditional interrupts, e.g. via BOUND or INTO. I might need something similar for SYSCALL vs. SYSENTER. Split the build script out into a build script and a build system. Made it so that the IDA script splits interrupts off into their own blocks. This is so that we can restart interrupts by jumping back to the blocks associated with the address of the instruction. Moving the tools stuff out into its own repo as it complicates things to have it in the source.
2016-01-27 14:25:52 -05:00
binja_get_cfg.py
Added potential support for openSUSE builds
2016-09-03 16:06:41 -04:00
bootstrap.sh
Added potential support for openSUSE builds
2016-09-03 16:06:41 -04:00
build.py
Rename all references from mcsema2 to remill
2016-06-23 11:39:36 -04:00
buildsystem.py
Added semantics and tests for CVTDQ2PD and CVTTPD2DQ
2016-09-01 20:57:39 -04:00
compile_semantics.sh
Added NOPs.
2016-08-31 20:46:02 -04:00
finalize_bitcode.sh
Rename all references from mcsema2 to remill
2016-06-23 11:39:36 -04:00
install.sh
Rename all references from mcsema2 to remill
2016-06-23 11:39:36 -04:00
optimize_bitcode.sh
Got all BITBYTE instructions and tests working.
2016-08-08 17:05:43 -04:00
print_x86_save_state_asm.sh
A few days of changes. First, some fixes in the dead flag/register analysis. It was slightly buggy. The trick was to split the live/dead tracking into two related bitsets that are updated in the same way. The first bitset, the register kill mask is used to mask the union of incoming live registers. This bitset is initially all set, then we update with revives/kills. As a mask, this ensures that certain things are killed. Then there's the revive set, which is initially unset then updated with revives/kills. This is ORed in, in order to ensure that specific flags are revived. This is more like the gen and kill sets in a typical data flow analysis.
2016-02-10 14:16:36 -05:00
run_tests_x86.sh
Rename all references from mcsema2 to remill
2016-06-23 11:39:36 -04:00