#!/bin/bash # SPDX-License-Identifier: GPL-2.0 # # A Clang switch jump table travels with the function it belongs to. # # For a dense enough switch Clang emits the targets as a table in # .rodata..Lswitch.table., named after the function but not part of # it. klp diff has to associate the two: the patched function indexes into # that table, so a clone which does not bring it along jumps through whatever # the kernel's copy holds -- which, when the patch changed the switch, is the # wrong set of targets. # # That is an indirect jump to a stale address, not a missing symbol, so nothing # reports it at build or load time. # # objtool has no switch-specific code: the table is carried by the general # mechanism for data a cloned function references. So this is a regression # test on that mechanism reaching a shape it is easy to get wrong, not a guard # on a particular line -- making the table uncorrelated, the nearest sabotage, # does not change the outcome. # # Covers the same ground as corpus/x86_64-llvm-switch-rodata/ # clang-switch-rodata-assoc in Joe Lawrence's klp-build unit test corpus. . "$(dirname "$0")/../lib.sh" clang_only "only Clang emits switch jump tables in their own section" setup build_pair switch_rodata.c # The premise: this Clang really did build a table rather than a chain of # comparisons, and the added case really did change it. tbl=.rodata..Lswitch.table.status_to_string has_input_section orig.o "$tbl" || probe_skip "this clang built no jump table for the switch" # readelf prefixes each line with "[nn]", which splits into one or two fields # depending on the index, so strip it before counting columns. tbl_size() { in_sections "$1" | sed 's/^ *\[[ 0-9]*\] *//' | awk -v s="$tbl" '$1 == s { print $5 }' } [ "$(tbl_size orig.o)" != "$(tbl_size patched.o)" ] || fail "fixture's added case did not change the jump table" run_diff assert_patched status_to_string assert_section "$tbl" assert_reloc_sym .text.status_to_string "$tbl" pass "Clang switch jump table carried with the function it belongs to"