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https://github.com/speed47/spectre-meltdown-checker.git
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feat(ibpb): now also check for IBPB on variant 2
In addition to IBRS (and microcode support), IBPB must be used to mitigate variant 2, if retpoline support is not available. The vulnerability status of a system will be defined as "non vulnerable" if IBRS and IBPB are both enabled, or if IBPB is enabled with a value of 2 for RedHat kernels, see https://access.redhat.com/articles/3311301
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@ -862,8 +862,9 @@ check_variant2()
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sys_interface_available=1
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else
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_info "* Mitigation 1"
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_info "* Hardware (CPU microcode) support for mitigation"
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_info_nol "* The SPEC_CTRL MSR is available: "
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_info " * Hardware support (CPU microcode)"
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_info " * Indirect Branch Restricted Speculation (IBRS)"
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_info_nol " * SPEC_CTRL MSR is available: "
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if [ ! -e /dev/cpu/0/msr ]; then
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# try to load the module ourselves (and remember it so we can rmmod it afterwards)
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load_msr
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@ -873,7 +874,8 @@ check_variant2()
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else
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# the new MSR 'SPEC_CTRL' is at offset 0x48
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# here we use dd, it's the same as using 'rdmsr 0x48' but without needing the rdmsr tool
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# if we get a read error, the MSR is not there
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# if we get a read error, the MSR is not there. bs has to be 8 for msr
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# skip=9 because 8*9=72=0x48
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dd if=/dev/cpu/0/msr of=/dev/null bs=8 count=1 skip=9 2>/dev/null
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if [ $? -eq 0 ]; then
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pstatus green YES
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@ -882,23 +884,20 @@ check_variant2()
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fi
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fi
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unload_msr
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# CPUID test
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_info_nol "* The SPEC_CTRL CPUID feature bit is set: "
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_info_nol " * CPU indicates IBRS capability: "
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if [ ! -e /dev/cpu/0/cpuid ]; then
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# try to load the module ourselves (and remember it so we can rmmod it afterwards)
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load_cpuid
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fi
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if [ ! -e /dev/cpu/0/cpuid ]; then
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pstatus yellow UNKNOWN "couldn't read /dev/cpu/0/cpuidr, is cpuid support enabled in your kernel?"
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pstatus yellow UNKNOWN "couldn't read /dev/cpu/0/cpuid, is cpuid support enabled in your kernel?"
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else
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# from kernel src: { X86_FEATURE_SPEC_CTRL, CPUID_EDX,26, 0x00000007, 0 },
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if [ "$opt_verbose" -ge 3 ]; then
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dd if=/dev/cpu/0/cpuid bs=16 skip=7 iflag=skip_bytes count=1 >/dev/null 2>/dev/null
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_debug "cpuid: reading leaf7 of cpuid on cpu0, ret=$?"
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_debug "cpuid: leaf7 eax-ebx-ecd-edx: "$(dd if=/dev/cpu/0/cpuid bs=16 skip=7 iflag=skip_bytes count=1 2>/dev/null | od -x -A n)
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_debug "cpuid: leaf7 edx higher-half is: "$(dd if=/dev/cpu/0/cpuid bs=16 skip=7 iflag=skip_bytes count=1 2>/dev/null | dd bs=1 skip=15 count=1 2>/dev/null | od -x -A n)
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_debug "cpuid: leaf7 eax-ebx-ecx-edx: "$(dd if=/dev/cpu/0/cpuid bs=16 skip=7 iflag=skip_bytes count=1 2>/dev/null | od -x -A n)
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_debug "cpuid: leaf7 edx higher byte is: "$(dd if=/dev/cpu/0/cpuid bs=16 skip=7 iflag=skip_bytes count=1 2>/dev/null | dd bs=1 skip=15 count=1 2>/dev/null | od -x -A n)
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fi
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# getting high byte of edx on leaf7 of cpuinfo in decimal
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edx_hb=$(dd if=/dev/cpu/0/cpuid bs=16 skip=7 iflag=skip_bytes count=1 2>/dev/null | dd bs=1 skip=15 count=1 2>/dev/null | od -t u -A n | awk '{print $1}')
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@ -906,48 +905,102 @@ check_variant2()
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edx_bit26=$(( edx_hb & 8 ))
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_debug "cpuid: edx_bit26=$edx_bit26"
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if [ "$edx_bit26" -eq 8 ]; then
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pstatus green YES
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pstatus green YES "SPEC_CTRL feature bit"
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cpuid_spec_ctrl=1
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else
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pstatus red NO
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fi
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fi
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unload_cpuid
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# hardware support according to kernel
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if [ "$opt_verbose" -ge 2 ]; then
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_verbose_nol "* The kernel has set the spec_ctrl flag in cpuinfo: "
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# the spec_ctrl flag in cpuinfo is set if and only if the kernel sees
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# that the spec_ctrl cpuinfo bit set. we already check that ourselves above
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# but let's check it anyway (in verbose mode only)
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_verbose_nol " * Kernel has set the spec_ctrl flag in cpuinfo: "
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if [ "$opt_live" = 1 ]; then
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if grep ^flags /proc/cpuinfo | grep -qw spec_ctrl; then
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pstatus green YES
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else
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pstatus red NO
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pstatus blue NO
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fi
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else
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pstatus blue N/A "not testable in offline mode"
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fi
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fi
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_info_nol "* Kernel support for IBRS: "
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# IBPB
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_info " * Indirect Branch Prediction Barrier (IBPB)"
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_info_nol " * PRED_CMD MSR is available: "
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if [ ! -e /dev/cpu/0/msr ]; then
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pstatus yellow UNKNOWN "couldn't read /dev/cpu/0/msr, is msr support enabled in your kernel?"
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else
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# the new MSR 'PRED_CTRL' is at offset 0x49, write-only
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# here we use dd, it's the same as using 'wrmsr 0x49 0' but without needing the wrmsr tool
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# if we get a write error, the MSR is not there
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$echo_cmd -ne "\0\0\0\0\0\0\0\0" | dd of=/dev/cpu/0/msr bs=8 count=1 seek=73 oflag=seek_bytes 2>/dev/null
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if [ $? -eq 0 ]; then
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pstatus green YES
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else
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pstatus red NO
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fi
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fi
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_info_nol " * CPU indicates IBPB capability: "
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if [ ! -e /dev/cpu/0/cpuid ]; then
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pstatus yellow UNKNOWN "couldn't read /dev/cpu/0/cpuidr, is cpuid support enabled in your kernel?"
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else
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# CPUID EAX=0x80000008, ECX=0x00 return EBX[12] indicates support for just IBPB.
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if [ "$opt_verbose" -ge 3 ]; then
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dd if=/dev/cpu/0/cpuid bs=16 skip=2147483656 iflag=skip_bytes count=1 >/dev/null 2>/dev/null
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_debug "cpuid: reading leaf80000008 of cpuid on cpu0, ret=$?"
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_debug "cpuid: leaf80000008 eax-ebx-ecx-edx: "$(dd if=/dev/cpu/0/cpuid bs=16 skip=2147483656 iflag=skip_bytes count=1 2>/dev/null | od -x -A n)
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_debug "cpuid: leaf80000008 ebx 3rd byte is: "$(dd if=/dev/cpu/0/cpuid bs=16 skip=2147483656 iflag=skip_bytes count=1 2>/dev/null | dd bs=1 skip=5 count=1 2>/dev/null | od -x -A n)
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fi
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# getting high byte of edx on leaf7 of cpuinfo in decimal
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ebx_b3=$(dd if=/dev/cpu/0/cpuid bs=16 skip=2147483656 iflag=skip_bytes count=1 2>/dev/null | dd bs=1 skip=5 count=1 2>/dev/null | od -t u -A n | awk '{print $1}')
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_debug "cpuid: leaf80000008 ebx 3rd byte: $ebx_b3 (decimal)"
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ebx_bit12=$(( ebx_b3 & 16 ))
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_debug "cpuid: ebx_bit12=$ebx_bit12"
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if [ "$ebx_bit12" -eq 16 ]; then
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pstatus green YES "IBPB_SUPPORT feature bit"
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cpuid_ibpb=1
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elif [ "$cpuid_spec_ctrl" = 1 ]; then
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pstatus green YES "SPEC_CTRL feature bit"
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else
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pstatus red NO
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fi
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fi
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_info_nol " * Kernel is compiled with IBRS/IBPB support: "
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ibrs_can_tell=0
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if [ "$opt_live" = 1 ]; then
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ibrs_can_tell=1
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mount_debugfs
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for ibrs_file in \
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/sys/kernel/debug/ibrs_enabled \
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/sys/kernel/debug/x86/ibrs_enabled \
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/proc/sys/kernel/ibrs_enabled; do
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if [ -e "$ibrs_file" ]; then
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for dir in \
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/sys/kernel/debug \
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/sys/kernel/debug/x86 \
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/proc/sys/kernel; do
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if [ -e "$dir/ibrs_enabled" ]; then
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# if the file is there, we have IBRS compiled-in
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# /sys/kernel/debug/ibrs_enabled: vanilla
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# /sys/kernel/debug/x86/ibrs_enabled: RedHat (see https://access.redhat.com/articles/3311301)
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# /proc/sys/kernel/ibrs_enabled: OpenSUSE tumbleweed
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pstatus green YES
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ibrs_knob_dir=$dir
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ibrs_supported=1
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ibrs_enabled=$(cat "$ibrs_file" 2>/dev/null)
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_debug "ibrs: found $ibrs_file=$ibrs_enabled"
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ibrs_enabled=$(cat "$dir/ibrs_enabled" 2>/dev/null)
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_debug "ibrs: found $dir/ibrs_enabled=$ibrs_enabled"
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if [ -e "$dir/ibpb_enabled" ]; then
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ibpb_enabled=$(cat "$dir/ibpb_enabled" 2>/dev/null)
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_debug "ibpb: found $dir/ibpb_enabled=$ibpb_enabled"
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else
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_debug "ibpb: no ibpb_enabled file in $dir"
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fi
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break
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else
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_debug "ibrs: file $ibrs_file doesn't exist"
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_debug "ibrs: $dir/ibrs_enabled file doesn't exist"
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fi
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done
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# on some newer kernels, the spec_ctrl_ibrs flag in /proc/cpuinfo
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@ -960,6 +1013,7 @@ check_variant2()
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ibrs_supported=1
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# enabled=2 -> kernel & user
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ibrs_enabled=2
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# XXX and what about ibpb ?
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fi
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fi
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fi
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@ -980,33 +1034,60 @@ check_variant2()
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fi
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fi
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_info " * Currently enabled features"
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_info_nol " * IBRS enabled for Kernel space: "
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if [ "$opt_live" = 1 ]; then
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if [ "$ibpb_enabled" = 2 ]; then
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# if ibpb=2, ibrs is forcefully=0
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pstatus blue NO "IBPB used instead of IBRS in all kernel entrypoints"
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else
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# 0 means disabled
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# 1 is enabled only for kernel space
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# 2 is enabled for kernel and user space
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case "$ibrs_enabled" in
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"") [ "$ibrs_supported" = 1 ] && pstatus yellow UNKNOWN || pstatus red NO;;
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0) pstatus red NO;;
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0) pstatus red NO "echo 1 > $ibrs_knob_dir/ibrs_enabled";;
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1 | 2) pstatus green YES;;
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*) pstatus yellow UNKNOWN;;
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esac
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fi
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else
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pstatus blue N/A "not testable in offline mode"
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fi
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_info_nol " * IBRS enabled for User space: "
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if [ "$opt_live" = 1 ]; then
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if [ "$ibpb_enabled" = 2 ]; then
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# if ibpb=2, ibrs is forcefully=0
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pstatus blue NO "IBPB used instead of IBRS in all kernel entrypoints"
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else
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case "$ibrs_enabled" in
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"") [ "$ibrs_supported" = 1 ] && pstatus yellow UNKNOWN || pstatus red NO;;
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0 | 1) pstatus red NO;;
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0 | 1) pstatus red NO "echo 2 > $ibrs_knob_dir/ibrs_enabled";;
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2) pstatus green YES;;
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*) pstatus yellow UNKNOWN;;
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esac
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fi
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else
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pstatus blue N/A "not testable in offline mode"
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fi
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_info_nol " * IBPB enabled: "
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if [ "$opt_live" = 1 ]; then
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case "$ibpb_enabled" in
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"") [ "$ibrs_supported" = 1 ] && pstatus yellow UNKNOWN || pstatus red NO;;
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0) pstatus red NO "echo 1 > $ibrs_knob_dir/ibpb_enabled";;
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1) pstatus green YES;;
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2) pstatus green YES "IBPB used instead of IBRS in all kernel entrypoints";;
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*) pstatus yellow UNKNOWN;;
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esac
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else
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pstatus blue N/A "not testable in offline mode"
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fi
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unload_msr
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unload_cpuid
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_info "* Mitigation 2"
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_info_nol "* Kernel compiled with retpoline option: "
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# We check the RETPOLINE kernel options
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@ -1068,14 +1149,16 @@ check_variant2()
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if [ "$retpoline" = 1 -a "$retpoline_compiler" = 1 ]; then
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pvulnstatus CVE-2017-5715 OK "retpoline mitigate the vulnerability"
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elif [ "$opt_live" = 1 ]; then
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if [ "$ibrs_enabled" = 1 -o "$ibrs_enabled" = 2 ]; then
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pvulnstatus CVE-2017-5715 OK "IBRS mitigates the vulnerability"
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if [ "$ibrs_enabled" = 1 -o "$ibrs_enabled" = 2 ] && [ "$ibpb_enabled" = 1 ]; then
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pvulnstatus CVE-2017-5715 OK "IBRS/IBPB are mitigating the vulnerability"
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elif [ "$ibpb_enabled" = 2 ]; then
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pvulnstatus CVE-2017-5715 OK "Full IBPB is mitigating the vulnerability"
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else
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pvulnstatus CVE-2017-5715 VULN "IBRS hardware + kernel support OR kernel with retpoline are needed to mitigate the vulnerability"
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fi
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else
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if [ "$ibrs_supported" = 1 ]; then
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pvulnstatus CVE-2017-5715 OK "offline mode: IBRS will mitigate the vulnerability if enabled at runtime"
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pvulnstatus CVE-2017-5715 OK "offline mode: IBRS/IBPB will mitigate the vulnerability if enabled at runtime"
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elif [ "$ibrs_can_tell" = 1 ]; then
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pvulnstatus CVE-2017-5715 VULN "IBRS hardware + kernel support OR kernel with retpoline are needed to mitigate the vulnerability"
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else
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