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The main purpose of the profiler test to check different llvm generation patterns to make sure the verifier can load these large programs. Note that profiler.inc.h test doesn't follow strict kernel coding style. The code was formatted in the kernel style, but variable declarations are kept as-is to preserve original llvm IR pattern. profiler1.c should pass with older and newer llvm profiler[23].c may fail on older llvm that don't have: https://reviews.llvm.org/D85570 because llvm may do speculative code motion optimization that will generate code like this: // r9 is a pointer to map_value // r7 is a scalar 17: bf 96 00 00 00 00 00 00 r6 = r9 18: 0f 76 00 00 00 00 00 00 r6 += r7 19: a5 07 01 00 01 01 00 00 if r7 < 257 goto +1 20: bf 96 00 00 00 00 00 00 r6 = r9 // r6 is used here The verifier will reject such code with the error: "math between map_value pointer and register with unbounded min value is not allowed" At insn 18 the r7 is indeed unbounded. The later insn 19 checks the bounds and the insn 20 undoes map_value addition. It is currently impossible for the verifier to understand such speculative pointer arithmetic. Hence llvm D85570 addresses it on the compiler side. Signed-off-by: Alexei Starovoitov <ast@kernel.org> Signed-off-by: Daniel Borkmann <daniel@iogearbox.net> Acked-by: Yonghong Song <yhs@fb.com> Link: https://lore.kernel.org/bpf/20201009011240.48506-4-alexei.starovoitov@gmail.com |
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.. | ||
benchs | ||
gnu | ||
map_tests | ||
prog_tests | ||
progs | ||
verifier | ||
.gitignore | ||
bench.c | ||
bench.h | ||
bpf_legacy.h | ||
bpf_rand.h | ||
bpf_rlimit.h | ||
bpf_tcp_helpers.h | ||
bpf_util.h | ||
cgroup_helpers.c | ||
cgroup_helpers.h | ||
config | ||
flow_dissector_load.c | ||
flow_dissector_load.h | ||
get_cgroup_id_user.c | ||
Makefile | ||
netcnt_common.h | ||
network_helpers.c | ||
network_helpers.h | ||
README.rst | ||
settings | ||
tcp_client.py | ||
tcp_server.py | ||
test_bpftool_build.sh | ||
test_bpftool_metadata.sh | ||
test_bpftool.py | ||
test_bpftool.sh | ||
test_btf.h | ||
test_cgroup_storage.c | ||
test_cpp.cpp | ||
test_current_pid_tgid_new_ns.c | ||
test_dev_cgroup.c | ||
test_flow_dissector.c | ||
test_flow_dissector.sh | ||
test_ftrace.sh | ||
test_iptunnel_common.h | ||
test_kmod.sh | ||
test_lirc_mode2_user.c | ||
test_lirc_mode2.sh | ||
test_lpm_map.c | ||
test_lru_map.c | ||
test_lwt_ip_encap.sh | ||
test_lwt_seg6local.sh | ||
test_maps.c | ||
test_maps.h | ||
test_netcnt.c | ||
test_offload.py | ||
test_progs.c | ||
test_progs.h | ||
test_select_reuseport_common.h | ||
test_skb_cgroup_id_user.c | ||
test_skb_cgroup_id.sh | ||
test_sock_addr.c | ||
test_sock_addr.sh | ||
test_sock.c | ||
test_socket_cookie.c | ||
test_sockmap.c | ||
test_stub.c | ||
test_sysctl.c | ||
test_tag.c | ||
test_tc_edt.sh | ||
test_tc_neigh.sh | ||
test_tc_tunnel.sh | ||
test_tcp_check_syncookie_user.c | ||
test_tcp_check_syncookie.sh | ||
test_tcp_hdr_options.h | ||
test_tcpbpf_user.c | ||
test_tcpbpf.h | ||
test_tcpnotify_user.c | ||
test_tcpnotify.h | ||
test_tunnel.sh | ||
test_verifier_log.c | ||
test_verifier.c | ||
test_xdp_meta.sh | ||
test_xdp_redirect.sh | ||
test_xdp_veth.sh | ||
test_xdp_vlan_mode_generic.sh | ||
test_xdp_vlan_mode_native.sh | ||
test_xdp_vlan.sh | ||
test_xdping.sh | ||
testing_helpers.c | ||
testing_helpers.h | ||
trace_helpers.c | ||
trace_helpers.h | ||
urandom_read.c | ||
with_addr.sh | ||
with_tunnels.sh | ||
xdping.c | ||
xdping.h |
================== BPF Selftest Notes ================== General instructions on running selftests can be found in `Documentation/bpf/bpf_devel_QA.rst`_. Additional information about selftest failures are documented here. profiler[23] test failures with clang/llvm <12.0.0 ================================================== With clang/llvm <12.0.0, the profiler[23] test may fail. The symptom looks like .. code-block:: c // r9 is a pointer to map_value // r7 is a scalar 17: bf 96 00 00 00 00 00 00 r6 = r9 18: 0f 76 00 00 00 00 00 00 r6 += r7 math between map_value pointer and register with unbounded min value is not allowed // the instructions below will not be seen in the verifier log 19: a5 07 01 00 01 01 00 00 if r7 < 257 goto +1 20: bf 96 00 00 00 00 00 00 r6 = r9 // r6 is used here The verifier will reject such code with above error. At insn 18 the r7 is indeed unbounded. The later insn 19 checks the bounds and the insn 20 undoes map_value addition. It is currently impossible for the verifier to understand such speculative pointer arithmetic. Hence https://reviews.llvm.org/D85570 addresses it on the compiler side. It was committed on llvm 12. The corresponding C code .. code-block:: c for (int i = 0; i < MAX_CGROUPS_PATH_DEPTH; i++) { filepart_length = bpf_probe_read_str(payload, ...); if (filepart_length <= MAX_PATH) { barrier_var(filepart_length); // workaround payload += filepart_length; } } bpf_iter test failures with clang/llvm 10.0.0 ============================================= With clang/llvm 10.0.0, the following two bpf_iter tests failed: * ``bpf_iter/ipv6_route`` * ``bpf_iter/netlink`` The symptom for ``bpf_iter/ipv6_route`` looks like .. code-block:: c 2: (79) r8 = *(u64 *)(r1 +8) ... 14: (bf) r2 = r8 15: (0f) r2 += r1 ; BPF_SEQ_PRINTF(seq, "%pi6 %02x ", &rt->fib6_dst.addr, rt->fib6_dst.plen); 16: (7b) *(u64 *)(r8 +64) = r2 only read is supported The symptom for ``bpf_iter/netlink`` looks like .. code-block:: c ; struct netlink_sock *nlk = ctx->sk; 2: (79) r7 = *(u64 *)(r1 +8) ... 15: (bf) r2 = r7 16: (0f) r2 += r1 ; BPF_SEQ_PRINTF(seq, "%pK %-3d ", s, s->sk_protocol); 17: (7b) *(u64 *)(r7 +0) = r2 only read is supported This is due to a llvm BPF backend bug. The fix https://reviews.llvm.org/D78466 has been pushed to llvm 10.x release branch and will be available in 10.0.1. The fix is available in llvm 11.0.0 trunk. BPF CO-RE-based tests and Clang version ======================================= A set of selftests use BPF target-specific built-ins, which might require bleeding-edge Clang versions (Clang 12 nightly at this time). Few sub-tests of core_reloc test suit (part of test_progs test runner) require the following built-ins, listed with corresponding Clang diffs introducing them to Clang/LLVM. These sub-tests are going to be skipped if Clang is too old to support them, they shouldn't cause build failures or runtime test failures: - __builtin_btf_type_id() ([0], [1], [2]); - __builtin_preserve_type_info(), __builtin_preserve_enum_value() ([3], [4]). [0] https://reviews.llvm.org/D74572 [1] https://reviews.llvm.org/D74668 [2] https://reviews.llvm.org/D85174 [3] https://reviews.llvm.org/D83878 [4] https://reviews.llvm.org/D83242