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// clang-format off
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#include <vmlinux.h>
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#include <bpf/bpf_helpers.h>
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#include <bpf/bpf_core_read.h>
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// clang-format on
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char _license[] SEC("license") = "GPL";
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struct {
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__uint(type, BPF_MAP_TYPE_ARRAY);
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__type(key, __u32);
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__type(value, __u64);
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__uint(max_entries, 1);
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} output_map SEC(".maps");
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long set_output(__u64 value) {
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__u32 key = 0;
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return bpf_map_update_elem(&output_map, &key, &value, BPF_ANY);
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}
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struct relocated_struct_with_scalars {
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#ifndef TARGET
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__u8 a;
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#endif
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__u8 b;
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__u8 c;
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#ifdef TARGET
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__u8 d;
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#endif
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};
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__noinline int field_global() {
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struct relocated_struct_with_scalars s = {1, 2, 3};
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return set_output(__builtin_preserve_access_index(s.b));
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}
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SEC("uprobe") int field(void *ctx) { return field_global(); }
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struct relocated_struct_with_pointer {
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#ifndef TARGET
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struct relocated_struct_with_pointer *first;
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#endif
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struct relocated_struct_with_pointer *second;
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#ifdef TARGET
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struct relocated_struct_with_pointer *first;
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#endif
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};
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__noinline int pointer_global() {
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struct relocated_struct_with_pointer s = {
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(struct relocated_struct_with_pointer *)42,
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(struct relocated_struct_with_pointer *)21,
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};
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return set_output((__u64)__builtin_preserve_access_index(s.first));
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}
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SEC("uprobe") int pointer(void *ctx) { return pointer_global(); }
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__noinline int struct_flavors_global() {
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struct relocated_struct_with_scalars s = {1, 2, 3};
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#ifndef TARGET
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if (bpf_core_field_exists(s.a)) {
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return set_output(__builtin_preserve_access_index(s.a));
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#else
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if (bpf_core_field_exists(s.d)) {
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return set_output(__builtin_preserve_access_index(s.d));
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#endif
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} else {
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return set_output(__builtin_preserve_access_index(s.c));
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}
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}
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SEC("uprobe") int struct_flavors(void *ctx) { return struct_flavors_global(); }
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enum relocated_enum_unsigned_32 {
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U32_VAL =
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#ifndef TARGET
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0xAAAAAAAA
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#else
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0xBBBBBBBB
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#endif
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};
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__noinline int enum_unsigned_32_global() {
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return set_output(
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bpf_core_enum_value(enum relocated_enum_unsigned_32, U32_VAL));
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}
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SEC("uprobe") int enum_unsigned_32(void *ctx) {
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return enum_unsigned_32_global();
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}
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enum relocated_enum_unsigned_32_checked_variants {
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#ifndef TARGET
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U32_VAL_A = 0xAAAAAAAA,
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#endif
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U32_VAL_B = 0xBBBBBBBB,
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#ifdef TARGET
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U32_VAL_C = 0xCCCCCCCC
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#endif
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};
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__noinline int enum_unsigned_32_checked_variants_global() {
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#ifndef TARGET
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if (bpf_core_enum_value_exists(
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enum relocated_enum_unsigned_32_checked_variants, U32_VAL_A)) {
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return set_output(bpf_core_enum_value(
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enum relocated_enum_unsigned_32_checked_variants, U32_VAL_A));
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#else
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if (bpf_core_enum_value_exists(
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enum relocated_enum_unsigned_32_checked_variants, U32_VAL_C)) {
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return set_output(bpf_core_enum_value(
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enum relocated_enum_unsigned_32_checked_variants, U32_VAL_C));
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#endif
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} else {
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return set_output(bpf_core_enum_value(
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enum relocated_enum_unsigned_32_checked_variants, U32_VAL_B));
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}
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}
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SEC("uprobe") int enum_unsigned_32_checked_variants(void *ctx) {
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return enum_unsigned_32_checked_variants_global();
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}
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enum relocated_enum_signed_32 {
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S32_VAL =
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#ifndef TARGET
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-0x7AAAAAAA
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#else
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-0x7BBBBBBB
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#endif
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};
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__noinline int enum_signed_32_global() {
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return set_output(
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bpf_core_enum_value(enum relocated_enum_signed_32, S32_VAL));
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}
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SEC("uprobe") int enum_signed_32(void *ctx) { return enum_signed_32_global(); }
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enum relocated_enum_signed_32_checked_variants {
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#ifndef TARGET
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S32_VAL_A = -0x7AAAAAAA,
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#endif
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S32_VAL_B = -0x7BBBBBBB,
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#ifdef TARGET
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S32_VAL_C = -0x7CCCCCCC
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#endif
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};
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__noinline int enum_signed_32_checked_variants_global() {
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#ifndef TARGET
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if (bpf_core_enum_value_exists(enum relocated_enum_signed_32_checked_variants,
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S32_VAL_A)) {
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return set_output(bpf_core_enum_value(
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enum relocated_enum_signed_32_checked_variants, S32_VAL_A));
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#else
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if (bpf_core_enum_value_exists(enum relocated_enum_signed_32_checked_variants,
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S32_VAL_C)) {
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return set_output(bpf_core_enum_value(
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enum relocated_enum_signed_32_checked_variants, S32_VAL_C));
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#endif
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} else {
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return set_output(bpf_core_enum_value(
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enum relocated_enum_signed_32_checked_variants, S32_VAL_B));
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}
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}
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SEC("uprobe") int enum_signed_32_checked_variants(void *ctx) {
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return enum_signed_32_checked_variants_global();
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}
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enum relocated_enum_unsigned_64 {
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U64_VAL =
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#ifndef TARGET
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0xAAAAAAAABBBBBBBB
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#else
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0xCCCCCCCCDDDDDDDD
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#endif
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};
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__noinline int enum_unsigned_64_global() {
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return set_output(
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bpf_core_enum_value(enum relocated_enum_unsigned_64, U64_VAL));
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}
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SEC("uprobe") int enum_unsigned_64(void *ctx) {
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return enum_unsigned_64_global();
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}
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enum relocated_enum_unsigned_64_checked_variants {
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#ifndef TARGET
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U64_VAL_A = 0xAAAAAAAABBBBBBBB,
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#endif
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U64_VAL_B = 0xCCCCCCCCDDDDDDDD,
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#ifdef TARGET
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U64_VAL_C = 0xEEEEEEEEFFFFFFFF
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#endif
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};
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__noinline int enum_unsigned_64_checked_variants_global() {
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#ifndef TARGET
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if (bpf_core_enum_value_exists(
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enum relocated_enum_unsigned_64_checked_variants, U64_VAL_A)) {
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return set_output(bpf_core_enum_value(
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enum relocated_enum_unsigned_64_checked_variants, U64_VAL_A));
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#else
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if (bpf_core_enum_value_exists(
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enum relocated_enum_unsigned_64_checked_variants, U64_VAL_C)) {
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return set_output(bpf_core_enum_value(
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enum relocated_enum_unsigned_64_checked_variants, U64_VAL_C));
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#endif
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} else {
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return set_output(bpf_core_enum_value(
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enum relocated_enum_unsigned_64_checked_variants, U64_VAL_B));
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}
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}
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SEC("uprobe") int enum_unsigned_64_checked_variants(void *ctx) {
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return enum_unsigned_64_checked_variants_global();
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}
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enum relocated_enum_signed_64 {
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S64_VAL =
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#ifndef TARGET
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-0xAAAAAAABBBBBBBB
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#else
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-0xCCCCCCCDDDDDDDD
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#endif
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};
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__noinline int enum_signed_64_global() {
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return set_output(
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bpf_core_enum_value(enum relocated_enum_signed_64, S64_VAL));
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}
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SEC("uprobe") int enum_signed_64(void *ctx) { return enum_signed_64_global(); }
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enum relocated_enum_signed_64_checked_variants {
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#ifndef TARGET
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S64_VAL_A = -0xAAAAAAABBBBBBB,
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#endif
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S64_VAL_B = -0xCCCCCCCDDDDDDD,
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#ifdef TARGET
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S64_VAL_C = -0xEEEEEEEFFFFFFF
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#endif
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};
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__noinline int enum_signed_64_checked_variants_global() {
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#ifndef TARGET
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if (bpf_core_enum_value_exists(enum relocated_enum_signed_64_checked_variants,
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S64_VAL_A)) {
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return set_output(bpf_core_enum_value(
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enum relocated_enum_signed_64_checked_variants, S64_VAL_A));
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#else
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if (bpf_core_enum_value_exists(enum relocated_enum_signed_64_checked_variants,
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S64_VAL_C)) {
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return set_output(bpf_core_enum_value(
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enum relocated_enum_signed_64_checked_variants, S64_VAL_C));
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#endif
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} else {
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return set_output(bpf_core_enum_value(
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enum relocated_enum_signed_64_checked_variants, S64_VAL_B));
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}
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}
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SEC("uprobe") int enum_signed_64_checked_variants(void *ctx) {
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return enum_signed_64_checked_variants_global();
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}
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