mirror of
https://github.com/superseriousbusiness/gotosocial.git
synced 2024-11-22 17:26:03 +03:00
acc333c40b
When GTS is running in a container runtime which has configured CPU or memory limits or under an init system that uses cgroups to impose CPU and memory limits the values the Go runtime sees for GOMAXPROCS and GOMEMLIMIT are still based on the host resources, not the cgroup. At least for the throttling middlewares which use GOMAXPROCS to configure their queue size, this can result in GTS running with values too big compared to the resources that will actuall be available to it. This introduces 2 dependencies which can pick up resource contraints from the current cgroup and tune the Go runtime accordingly. This should result in the different queues being appropriately sized and in general more predictable performance. These dependencies are a no-op on non-Linux systems or if running in a cgroup that doesn't set a limit on CPU or memory. The automatic tuning of GOMEMLIMIT can be disabled by either explicitly setting GOMEMLIMIT yourself or by setting AUTOMEMLIMIT=off. The automatic tuning of GOMAXPROCS can similarly be counteracted by setting GOMAXPROCS yourself.
491 lines
12 KiB
Go
491 lines
12 KiB
Go
package ebpf
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import (
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"errors"
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"fmt"
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"unsafe"
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"github.com/cilium/ebpf/internal"
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"github.com/cilium/ebpf/internal/btf"
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"github.com/cilium/ebpf/internal/unix"
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)
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// Generic errors returned by BPF syscalls.
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var ErrNotExist = errors.New("requested object does not exist")
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// bpfObjName is a null-terminated string made up of
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// 'A-Za-z0-9_' characters.
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type bpfObjName [unix.BPF_OBJ_NAME_LEN]byte
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// newBPFObjName truncates the result if it is too long.
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func newBPFObjName(name string) bpfObjName {
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var result bpfObjName
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copy(result[:unix.BPF_OBJ_NAME_LEN-1], name)
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return result
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}
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// invalidBPFObjNameChar returns true if char may not appear in
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// a BPF object name.
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func invalidBPFObjNameChar(char rune) bool {
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dotAllowed := objNameAllowsDot() == nil
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switch {
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case char >= 'A' && char <= 'Z':
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return false
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case char >= 'a' && char <= 'z':
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return false
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case char >= '0' && char <= '9':
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return false
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case dotAllowed && char == '.':
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return false
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case char == '_':
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return false
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default:
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return true
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}
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}
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type bpfMapCreateAttr struct {
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mapType MapType
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keySize uint32
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valueSize uint32
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maxEntries uint32
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flags uint32
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innerMapFd uint32 // since 4.12 56f668dfe00d
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numaNode uint32 // since 4.14 96eabe7a40aa
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mapName bpfObjName // since 4.15 ad5b177bd73f
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mapIfIndex uint32
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btfFd uint32
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btfKeyTypeID btf.TypeID
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btfValueTypeID btf.TypeID
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}
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type bpfMapOpAttr struct {
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mapFd uint32
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padding uint32
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key internal.Pointer
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value internal.Pointer
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flags uint64
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}
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type bpfBatchMapOpAttr struct {
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inBatch internal.Pointer
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outBatch internal.Pointer
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keys internal.Pointer
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values internal.Pointer
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count uint32
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mapFd uint32
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elemFlags uint64
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flags uint64
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}
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type bpfMapInfo struct {
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map_type uint32 // since 4.12 1e2709769086
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id uint32
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key_size uint32
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value_size uint32
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max_entries uint32
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map_flags uint32
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name bpfObjName // since 4.15 ad5b177bd73f
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ifindex uint32 // since 4.16 52775b33bb50
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btf_vmlinux_value_type_id uint32 // since 5.6 85d33df357b6
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netns_dev uint64 // since 4.16 52775b33bb50
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netns_ino uint64
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btf_id uint32 // since 4.18 78958fca7ead
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btf_key_type_id uint32 // since 4.18 9b2cf328b2ec
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btf_value_type_id uint32
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}
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type bpfProgLoadAttr struct {
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progType ProgramType
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insCount uint32
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instructions internal.Pointer
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license internal.Pointer
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logLevel uint32
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logSize uint32
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logBuf internal.Pointer
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kernelVersion uint32 // since 4.1 2541517c32be
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progFlags uint32 // since 4.11 e07b98d9bffe
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progName bpfObjName // since 4.15 067cae47771c
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progIfIndex uint32 // since 4.15 1f6f4cb7ba21
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expectedAttachType AttachType // since 4.17 5e43f899b03a
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progBTFFd uint32
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funcInfoRecSize uint32
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funcInfo internal.Pointer
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funcInfoCnt uint32
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lineInfoRecSize uint32
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lineInfo internal.Pointer
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lineInfoCnt uint32
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attachBTFID btf.TypeID
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attachProgFd uint32
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}
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type bpfProgInfo struct {
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prog_type uint32
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id uint32
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tag [unix.BPF_TAG_SIZE]byte
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jited_prog_len uint32
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xlated_prog_len uint32
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jited_prog_insns internal.Pointer
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xlated_prog_insns internal.Pointer
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load_time uint64 // since 4.15 cb4d2b3f03d8
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created_by_uid uint32
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nr_map_ids uint32
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map_ids internal.Pointer
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name bpfObjName // since 4.15 067cae47771c
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ifindex uint32
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gpl_compatible uint32
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netns_dev uint64
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netns_ino uint64
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nr_jited_ksyms uint32
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nr_jited_func_lens uint32
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jited_ksyms internal.Pointer
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jited_func_lens internal.Pointer
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btf_id uint32
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func_info_rec_size uint32
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func_info internal.Pointer
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nr_func_info uint32
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nr_line_info uint32
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line_info internal.Pointer
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jited_line_info internal.Pointer
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nr_jited_line_info uint32
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line_info_rec_size uint32
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jited_line_info_rec_size uint32
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nr_prog_tags uint32
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prog_tags internal.Pointer
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run_time_ns uint64
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run_cnt uint64
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}
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type bpfProgTestRunAttr struct {
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fd uint32
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retval uint32
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dataSizeIn uint32
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dataSizeOut uint32
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dataIn internal.Pointer
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dataOut internal.Pointer
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repeat uint32
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duration uint32
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}
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type bpfGetFDByIDAttr struct {
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id uint32
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next uint32
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}
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type bpfMapFreezeAttr struct {
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mapFd uint32
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}
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type bpfObjGetNextIDAttr struct {
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startID uint32
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nextID uint32
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openFlags uint32
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}
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func bpfProgLoad(attr *bpfProgLoadAttr) (*internal.FD, error) {
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for {
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fd, err := internal.BPF(internal.BPF_PROG_LOAD, unsafe.Pointer(attr), unsafe.Sizeof(*attr))
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// As of ~4.20 the verifier can be interrupted by a signal,
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// and returns EAGAIN in that case.
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if err == unix.EAGAIN {
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continue
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}
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if err != nil {
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return nil, err
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}
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return internal.NewFD(uint32(fd)), nil
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}
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}
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func bpfProgTestRun(attr *bpfProgTestRunAttr) error {
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_, err := internal.BPF(internal.BPF_PROG_TEST_RUN, unsafe.Pointer(attr), unsafe.Sizeof(*attr))
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return err
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}
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func bpfMapCreate(attr *bpfMapCreateAttr) (*internal.FD, error) {
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fd, err := internal.BPF(internal.BPF_MAP_CREATE, unsafe.Pointer(attr), unsafe.Sizeof(*attr))
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if err != nil {
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return nil, err
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}
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return internal.NewFD(uint32(fd)), nil
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}
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var haveNestedMaps = internal.FeatureTest("nested maps", "4.12", func() error {
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_, err := bpfMapCreate(&bpfMapCreateAttr{
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mapType: ArrayOfMaps,
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keySize: 4,
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valueSize: 4,
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maxEntries: 1,
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// Invalid file descriptor.
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innerMapFd: ^uint32(0),
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})
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if errors.Is(err, unix.EINVAL) {
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return internal.ErrNotSupported
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}
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if errors.Is(err, unix.EBADF) {
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return nil
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}
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return err
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})
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var haveMapMutabilityModifiers = internal.FeatureTest("read- and write-only maps", "5.2", func() error {
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// This checks BPF_F_RDONLY_PROG and BPF_F_WRONLY_PROG. Since
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// BPF_MAP_FREEZE appeared in 5.2 as well we don't do a separate check.
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m, err := bpfMapCreate(&bpfMapCreateAttr{
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mapType: Array,
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keySize: 4,
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valueSize: 4,
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maxEntries: 1,
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flags: unix.BPF_F_RDONLY_PROG,
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})
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if err != nil {
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return internal.ErrNotSupported
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}
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_ = m.Close()
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return nil
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})
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func bpfMapLookupElem(m *internal.FD, key, valueOut internal.Pointer) error {
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fd, err := m.Value()
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if err != nil {
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return err
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}
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attr := bpfMapOpAttr{
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mapFd: fd,
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key: key,
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value: valueOut,
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}
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_, err = internal.BPF(internal.BPF_MAP_LOOKUP_ELEM, unsafe.Pointer(&attr), unsafe.Sizeof(attr))
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return wrapMapError(err)
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}
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func bpfMapLookupAndDelete(m *internal.FD, key, valueOut internal.Pointer) error {
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fd, err := m.Value()
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if err != nil {
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return err
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}
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attr := bpfMapOpAttr{
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mapFd: fd,
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key: key,
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value: valueOut,
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}
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_, err = internal.BPF(internal.BPF_MAP_LOOKUP_AND_DELETE_ELEM, unsafe.Pointer(&attr), unsafe.Sizeof(attr))
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return wrapMapError(err)
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}
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func bpfMapUpdateElem(m *internal.FD, key, valueOut internal.Pointer, flags uint64) error {
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fd, err := m.Value()
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if err != nil {
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return err
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}
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attr := bpfMapOpAttr{
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mapFd: fd,
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key: key,
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value: valueOut,
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flags: flags,
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}
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_, err = internal.BPF(internal.BPF_MAP_UPDATE_ELEM, unsafe.Pointer(&attr), unsafe.Sizeof(attr))
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return wrapMapError(err)
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}
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func bpfMapDeleteElem(m *internal.FD, key internal.Pointer) error {
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fd, err := m.Value()
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if err != nil {
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return err
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}
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attr := bpfMapOpAttr{
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mapFd: fd,
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key: key,
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}
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_, err = internal.BPF(internal.BPF_MAP_DELETE_ELEM, unsafe.Pointer(&attr), unsafe.Sizeof(attr))
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return wrapMapError(err)
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}
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func bpfMapGetNextKey(m *internal.FD, key, nextKeyOut internal.Pointer) error {
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fd, err := m.Value()
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if err != nil {
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return err
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}
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attr := bpfMapOpAttr{
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mapFd: fd,
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key: key,
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value: nextKeyOut,
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}
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_, err = internal.BPF(internal.BPF_MAP_GET_NEXT_KEY, unsafe.Pointer(&attr), unsafe.Sizeof(attr))
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return wrapMapError(err)
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}
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func objGetNextID(cmd internal.BPFCmd, start uint32) (uint32, error) {
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attr := bpfObjGetNextIDAttr{
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startID: start,
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}
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_, err := internal.BPF(cmd, unsafe.Pointer(&attr), unsafe.Sizeof(attr))
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return attr.nextID, wrapObjError(err)
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}
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func bpfMapBatch(cmd internal.BPFCmd, m *internal.FD, inBatch, outBatch, keys, values internal.Pointer, count uint32, opts *BatchOptions) (uint32, error) {
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fd, err := m.Value()
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if err != nil {
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return 0, err
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}
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attr := bpfBatchMapOpAttr{
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inBatch: inBatch,
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outBatch: outBatch,
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keys: keys,
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values: values,
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count: count,
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mapFd: fd,
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}
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if opts != nil {
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attr.elemFlags = opts.ElemFlags
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attr.flags = opts.Flags
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}
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_, err = internal.BPF(cmd, unsafe.Pointer(&attr), unsafe.Sizeof(attr))
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// always return count even on an error, as things like update might partially be fulfilled.
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return attr.count, wrapMapError(err)
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}
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func wrapObjError(err error) error {
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if err == nil {
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return nil
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}
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if errors.Is(err, unix.ENOENT) {
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return fmt.Errorf("%w", ErrNotExist)
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}
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return errors.New(err.Error())
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}
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func wrapMapError(err error) error {
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if err == nil {
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return nil
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}
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if errors.Is(err, unix.ENOENT) {
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return ErrKeyNotExist
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}
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if errors.Is(err, unix.EEXIST) {
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return ErrKeyExist
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}
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if errors.Is(err, unix.ENOTSUPP) {
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return ErrNotSupported
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}
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return errors.New(err.Error())
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}
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func bpfMapFreeze(m *internal.FD) error {
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fd, err := m.Value()
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if err != nil {
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return err
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}
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attr := bpfMapFreezeAttr{
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mapFd: fd,
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}
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_, err = internal.BPF(internal.BPF_MAP_FREEZE, unsafe.Pointer(&attr), unsafe.Sizeof(attr))
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return err
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}
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func bpfGetProgInfoByFD(fd *internal.FD) (*bpfProgInfo, error) {
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var info bpfProgInfo
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if err := internal.BPFObjGetInfoByFD(fd, unsafe.Pointer(&info), unsafe.Sizeof(info)); err != nil {
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return nil, fmt.Errorf("can't get program info: %w", err)
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}
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return &info, nil
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}
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func bpfGetMapInfoByFD(fd *internal.FD) (*bpfMapInfo, error) {
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var info bpfMapInfo
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err := internal.BPFObjGetInfoByFD(fd, unsafe.Pointer(&info), unsafe.Sizeof(info))
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if err != nil {
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return nil, fmt.Errorf("can't get map info: %w", err)
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}
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return &info, nil
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}
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var haveObjName = internal.FeatureTest("object names", "4.15", func() error {
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attr := bpfMapCreateAttr{
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mapType: Array,
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keySize: 4,
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valueSize: 4,
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maxEntries: 1,
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mapName: newBPFObjName("feature_test"),
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}
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fd, err := bpfMapCreate(&attr)
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if err != nil {
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return internal.ErrNotSupported
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}
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_ = fd.Close()
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return nil
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})
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var objNameAllowsDot = internal.FeatureTest("dot in object names", "5.2", func() error {
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if err := haveObjName(); err != nil {
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return err
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}
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attr := bpfMapCreateAttr{
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mapType: Array,
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keySize: 4,
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valueSize: 4,
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maxEntries: 1,
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mapName: newBPFObjName(".test"),
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}
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fd, err := bpfMapCreate(&attr)
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if err != nil {
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return internal.ErrNotSupported
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}
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_ = fd.Close()
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return nil
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})
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var haveBatchAPI = internal.FeatureTest("map batch api", "5.6", func() error {
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var maxEntries uint32 = 2
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attr := bpfMapCreateAttr{
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mapType: Hash,
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keySize: 4,
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valueSize: 4,
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maxEntries: maxEntries,
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}
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fd, err := bpfMapCreate(&attr)
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if err != nil {
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return internal.ErrNotSupported
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}
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defer fd.Close()
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keys := []uint32{1, 2}
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values := []uint32{3, 4}
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kp, _ := marshalPtr(keys, 8)
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vp, _ := marshalPtr(values, 8)
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nilPtr := internal.NewPointer(nil)
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_, err = bpfMapBatch(internal.BPF_MAP_UPDATE_BATCH, fd, nilPtr, nilPtr, kp, vp, maxEntries, nil)
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if err != nil {
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return internal.ErrNotSupported
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}
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return nil
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})
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func bpfObjGetFDByID(cmd internal.BPFCmd, id uint32) (*internal.FD, error) {
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attr := bpfGetFDByIDAttr{
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id: id,
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}
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ptr, err := internal.BPF(cmd, unsafe.Pointer(&attr), unsafe.Sizeof(attr))
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return internal.NewFD(uint32(ptr)), wrapObjError(err)
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}
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