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libbpf: Simplify BPF_CORE_READ_BITFIELD_PROBED usage
Streamline BPF_CORE_READ_BITFIELD_PROBED interface to follow BPF_CORE_READ_BITFIELD (direct) and BPF_CORE_READ, in general, i.e., just return read result or 0, if underlying bpf_probe_read() failed. In practice, real applications rarely check bpf_probe_read() result, because it has to always work or otherwise it's a bug. So propagating internal bpf_probe_read() error from this macro hurts usability without providing real benefits in practice. This patch fixes the issue and simplifies usage, noticeable even in selftest itself. Signed-off-by: Andrii Nakryiko <andriin@fb.com> Signed-off-by: Alexei Starovoitov <ast@kernel.org> Acked-by: Yonghong Song <yhs@fb.com> Link: https://lore.kernel.org/bpf/20191106201500.2582438-1-andriin@fb.com
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@ -39,32 +39,27 @@ enum bpf_field_info_kind {
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#endif
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/*
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* Extract bitfield, identified by src->field, and put its value into u64
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* *res. All this is done in relocatable manner, so bitfield changes such as
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* Extract bitfield, identified by s->field, and return its value as u64.
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* All this is done in relocatable manner, so bitfield changes such as
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* signedness, bit size, offset changes, this will be handled automatically.
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* This version of macro is using bpf_probe_read() to read underlying integer
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* storage. Macro functions as an expression and its return type is
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* bpf_probe_read()'s return value: 0, on success, <0 on error.
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*/
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#define BPF_CORE_READ_BITFIELD_PROBED(src, field, res) ({ \
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unsigned long long val; \
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#define BPF_CORE_READ_BITFIELD_PROBED(s, field) ({ \
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unsigned long long val = 0; \
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\
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*res = 0; \
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val = __CORE_BITFIELD_PROBE_READ(res, src, field); \
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if (!val) { \
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*res <<= __CORE_RELO(src, field, LSHIFT_U64); \
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val = __CORE_RELO(src, field, RSHIFT_U64); \
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if (__CORE_RELO(src, field, SIGNED)) \
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*res = ((long long)*res) >> val; \
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else \
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*res = ((unsigned long long)*res) >> val; \
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val = 0; \
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} \
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__CORE_BITFIELD_PROBE_READ(&val, s, field); \
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val <<= __CORE_RELO(s, field, LSHIFT_U64); \
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if (__CORE_RELO(s, field, SIGNED)) \
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val = ((long long)val) >> __CORE_RELO(s, field, RSHIFT_U64); \
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else \
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val = val >> __CORE_RELO(s, field, RSHIFT_U64); \
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val; \
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})
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/*
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* Extract bitfield, identified by src->field, and return its value as u64.
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* Extract bitfield, identified by s->field, and return its value as u64.
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* This version of macro is using direct memory reads and should be used from
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* BPF program types that support such functionality (e.g., typed raw
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* tracepoints).
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@ -37,11 +37,6 @@ struct core_reloc_bitfields_output {
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int64_t s32;
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};
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#define TRANSFER_BITFIELD(in, out, field) \
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if (BPF_CORE_READ_BITFIELD_PROBED(in, field, &res)) \
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return 1; \
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out->field = res
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SEC("raw_tracepoint/sys_enter")
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int test_core_bitfields(void *ctx)
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{
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@ -49,13 +44,13 @@ int test_core_bitfields(void *ctx)
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struct core_reloc_bitfields_output *out = (void *)&data.out;
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uint64_t res;
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TRANSFER_BITFIELD(in, out, ub1);
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TRANSFER_BITFIELD(in, out, ub2);
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TRANSFER_BITFIELD(in, out, ub7);
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TRANSFER_BITFIELD(in, out, sb4);
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TRANSFER_BITFIELD(in, out, sb20);
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TRANSFER_BITFIELD(in, out, u32);
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TRANSFER_BITFIELD(in, out, s32);
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out->ub1 = BPF_CORE_READ_BITFIELD_PROBED(in, ub1);
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out->ub2 = BPF_CORE_READ_BITFIELD_PROBED(in, ub2);
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out->ub7 = BPF_CORE_READ_BITFIELD_PROBED(in, ub7);
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out->sb4 = BPF_CORE_READ_BITFIELD_PROBED(in, sb4);
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out->sb20 = BPF_CORE_READ_BITFIELD_PROBED(in, sb20);
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out->u32 = BPF_CORE_READ_BITFIELD_PROBED(in, u32);
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out->s32 = BPF_CORE_READ_BITFIELD_PROBED(in, s32);
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return 0;
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}
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