package linksem
A formalisation of the core ELF and DWARF file formats written in Lem
Install
Dune Dependency
Authors
Maintainers
Sources
0.8.tar.gz
md5=2075c56715539b3b8f54ae65cc808b8c
sha512=f7c16e4036a1440a6a8d13707a43f0f9f9db0c68489215f948cc300b6a164dba5bf852e58f89503e9d9f38180ee658d9478156ca1a1ef64d6861eec5f9cf43d2
doc/linksem_zarith/Abi_aarch64_le/index.html
Module Abi_aarch64_le
Source
abi_aarch64_le
contains top-level definition for the AArch64 ABI (little-endian case).
Source
val abi_aarch64_le_compute_program_entry_point :
'a ->
Nat_big_num.num ->
Nat_big_num.num Error.error
abi_aarch64_le_compute_program_entry_point segs entry
computes the program * entry point using ABI-specific conventions. On AArch64 the entry point in * the ELF header (entry
here) is the real entry point. On other ABIs, e.g. * PowerPC64, the entry point entry
is a pointer into one of the segments * constituting the process image (passed in as segs
here for a uniform * interface).
Source
val instance_Basic_classes_Ord_Abi_aarch64_le_aarch64_le_abi_feature_dict :
aarch64_le_abi_feature Lem_basic_classes.ord_class
Source
val instance_Abi_classes_AbiFeatureTagEquiv_Abi_aarch64_le_aarch64_le_abi_feature_dict :
aarch64_le_abi_feature Abi_classes.abiFeatureTagEquiv_class
sectionYPositions = computeSectionYPositions($el), 10)"
x-init="setTimeout(() => sectionYPositions = computeSectionYPositions($el), 10)"
>