whatcanGOwrong
This commit is contained in:
@@ -0,0 +1,119 @@
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// Code generated by bpf2go; DO NOT EDIT.
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//go:build arm64be || armbe || mips || mips64 || mips64p32 || ppc64 || s390 || s390x || sparc || sparc64
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package main
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import (
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"bytes"
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_ "embed"
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"fmt"
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"io"
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"github.com/cilium/ebpf"
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)
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// loadBpf returns the embedded CollectionSpec for bpf.
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func loadBpf() (*ebpf.CollectionSpec, error) {
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reader := bytes.NewReader(_BpfBytes)
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spec, err := ebpf.LoadCollectionSpecFromReader(reader)
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if err != nil {
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return nil, fmt.Errorf("can't load bpf: %w", err)
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}
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return spec, err
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}
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// loadBpfObjects loads bpf and converts it into a struct.
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//
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// The following types are suitable as obj argument:
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//
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// *bpfObjects
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// *bpfPrograms
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// *bpfMaps
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//
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// See ebpf.CollectionSpec.LoadAndAssign documentation for details.
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func loadBpfObjects(obj interface{}, opts *ebpf.CollectionOptions) error {
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spec, err := loadBpf()
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if err != nil {
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return err
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}
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return spec.LoadAndAssign(obj, opts)
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}
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// bpfSpecs contains maps and programs before they are loaded into the kernel.
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//
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// It can be passed ebpf.CollectionSpec.Assign.
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type bpfSpecs struct {
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bpfProgramSpecs
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bpfMapSpecs
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}
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// bpfSpecs contains programs before they are loaded into the kernel.
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//
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// It can be passed ebpf.CollectionSpec.Assign.
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type bpfProgramSpecs struct {
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KprobeExecve *ebpf.ProgramSpec `ebpf:"kprobe_execve"`
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}
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// bpfMapSpecs contains maps before they are loaded into the kernel.
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//
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// It can be passed ebpf.CollectionSpec.Assign.
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type bpfMapSpecs struct {
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KprobeMap *ebpf.MapSpec `ebpf:"kprobe_map"`
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}
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// bpfObjects contains all objects after they have been loaded into the kernel.
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//
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// It can be passed to loadBpfObjects or ebpf.CollectionSpec.LoadAndAssign.
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type bpfObjects struct {
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bpfPrograms
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bpfMaps
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}
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func (o *bpfObjects) Close() error {
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return _BpfClose(
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&o.bpfPrograms,
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&o.bpfMaps,
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)
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}
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// bpfMaps contains all maps after they have been loaded into the kernel.
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//
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// It can be passed to loadBpfObjects or ebpf.CollectionSpec.LoadAndAssign.
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type bpfMaps struct {
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KprobeMap *ebpf.Map `ebpf:"kprobe_map"`
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}
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func (m *bpfMaps) Close() error {
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return _BpfClose(
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m.KprobeMap,
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)
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}
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// bpfPrograms contains all programs after they have been loaded into the kernel.
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//
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// It can be passed to loadBpfObjects or ebpf.CollectionSpec.LoadAndAssign.
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type bpfPrograms struct {
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KprobeExecve *ebpf.Program `ebpf:"kprobe_execve"`
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}
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func (p *bpfPrograms) Close() error {
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return _BpfClose(
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p.KprobeExecve,
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)
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}
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func _BpfClose(closers ...io.Closer) error {
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for _, closer := range closers {
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if err := closer.Close(); err != nil {
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return err
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}
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}
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return nil
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}
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// Do not access this directly.
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//
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//go:embed bpf_bpfeb.o
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var _BpfBytes []byte
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Binary file not shown.
@@ -0,0 +1,119 @@
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// Code generated by bpf2go; DO NOT EDIT.
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//go:build 386 || amd64 || amd64p32 || arm || arm64 || loong64 || mips64le || mips64p32le || mipsle || ppc64le || riscv64
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package main
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import (
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"bytes"
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_ "embed"
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"fmt"
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"io"
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"github.com/cilium/ebpf"
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)
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// loadBpf returns the embedded CollectionSpec for bpf.
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func loadBpf() (*ebpf.CollectionSpec, error) {
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reader := bytes.NewReader(_BpfBytes)
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spec, err := ebpf.LoadCollectionSpecFromReader(reader)
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if err != nil {
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return nil, fmt.Errorf("can't load bpf: %w", err)
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}
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return spec, err
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}
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// loadBpfObjects loads bpf and converts it into a struct.
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//
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// The following types are suitable as obj argument:
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//
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// *bpfObjects
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// *bpfPrograms
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// *bpfMaps
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//
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// See ebpf.CollectionSpec.LoadAndAssign documentation for details.
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func loadBpfObjects(obj interface{}, opts *ebpf.CollectionOptions) error {
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spec, err := loadBpf()
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if err != nil {
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return err
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}
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return spec.LoadAndAssign(obj, opts)
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}
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// bpfSpecs contains maps and programs before they are loaded into the kernel.
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//
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// It can be passed ebpf.CollectionSpec.Assign.
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type bpfSpecs struct {
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bpfProgramSpecs
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bpfMapSpecs
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}
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// bpfSpecs contains programs before they are loaded into the kernel.
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//
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// It can be passed ebpf.CollectionSpec.Assign.
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type bpfProgramSpecs struct {
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KprobeExecve *ebpf.ProgramSpec `ebpf:"kprobe_execve"`
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}
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// bpfMapSpecs contains maps before they are loaded into the kernel.
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//
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// It can be passed ebpf.CollectionSpec.Assign.
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type bpfMapSpecs struct {
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KprobeMap *ebpf.MapSpec `ebpf:"kprobe_map"`
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}
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// bpfObjects contains all objects after they have been loaded into the kernel.
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//
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// It can be passed to loadBpfObjects or ebpf.CollectionSpec.LoadAndAssign.
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type bpfObjects struct {
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bpfPrograms
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bpfMaps
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}
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func (o *bpfObjects) Close() error {
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return _BpfClose(
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&o.bpfPrograms,
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&o.bpfMaps,
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)
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}
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// bpfMaps contains all maps after they have been loaded into the kernel.
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//
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// It can be passed to loadBpfObjects or ebpf.CollectionSpec.LoadAndAssign.
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type bpfMaps struct {
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KprobeMap *ebpf.Map `ebpf:"kprobe_map"`
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}
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func (m *bpfMaps) Close() error {
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return _BpfClose(
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m.KprobeMap,
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)
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}
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// bpfPrograms contains all programs after they have been loaded into the kernel.
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//
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// It can be passed to loadBpfObjects or ebpf.CollectionSpec.LoadAndAssign.
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type bpfPrograms struct {
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KprobeExecve *ebpf.Program `ebpf:"kprobe_execve"`
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}
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func (p *bpfPrograms) Close() error {
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return _BpfClose(
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p.KprobeExecve,
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)
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}
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func _BpfClose(closers ...io.Closer) error {
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for _, closer := range closers {
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if err := closer.Close(); err != nil {
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return err
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}
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}
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return nil
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}
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// Do not access this directly.
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//
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//go:embed bpf_bpfel.o
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var _BpfBytes []byte
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Binary file not shown.
@@ -0,0 +1,27 @@
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//go:build ignore
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#include "common.h"
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char __license[] SEC("license") = "Dual MIT/GPL";
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struct bpf_map_def SEC("maps") kprobe_map = {
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.type = BPF_MAP_TYPE_ARRAY,
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.key_size = sizeof(u32),
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.value_size = sizeof(u64),
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.max_entries = 1,
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};
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SEC("kprobe/sys_execve")
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int kprobe_execve() {
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u32 key = 0;
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u64 initval = 1, *valp;
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valp = bpf_map_lookup_elem(&kprobe_map, &key);
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if (!valp) {
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bpf_map_update_elem(&kprobe_map, &key, &initval, BPF_ANY);
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return 0;
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}
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__sync_fetch_and_add(valp, 1);
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return 0;
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}
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@@ -0,0 +1,61 @@
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// This program demonstrates attaching an eBPF program to a kernel symbol.
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// The eBPF program will be attached to the start of the sys_execve
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// kernel function and prints out the number of times it has been called
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// every second.
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package main
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import (
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"log"
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"time"
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"github.com/cilium/ebpf/link"
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"github.com/cilium/ebpf/rlimit"
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)
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// $BPF_CLANG and $BPF_CFLAGS are set by the Makefile.
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//go:generate go run github.com/cilium/ebpf/cmd/bpf2go -cc $BPF_CLANG -cflags $BPF_CFLAGS bpf kprobe.c -- -I../headers
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const mapKey uint32 = 0
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func main() {
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// Name of the kernel function to trace.
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fn := "sys_execve"
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// Allow the current process to lock memory for eBPF resources.
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if err := rlimit.RemoveMemlock(); err != nil {
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log.Fatal(err)
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}
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// Load pre-compiled programs and maps into the kernel.
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objs := bpfObjects{}
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if err := loadBpfObjects(&objs, nil); err != nil {
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log.Fatalf("loading objects: %v", err)
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}
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defer objs.Close()
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// Open a Kprobe at the entry point of the kernel function and attach the
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// pre-compiled program. Each time the kernel function enters, the program
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// will increment the execution counter by 1. The read loop below polls this
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// map value once per second.
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kp, err := link.Kprobe(fn, objs.KprobeExecve, nil)
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if err != nil {
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log.Fatalf("opening kprobe: %s", err)
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}
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defer kp.Close()
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// Read loop reporting the total amount of times the kernel
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// function was entered, once per second.
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ticker := time.NewTicker(1 * time.Second)
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defer ticker.Stop()
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log.Println("Waiting for events..")
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for range ticker.C {
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var value uint64
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if err := objs.KprobeMap.Lookup(mapKey, &value); err != nil {
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log.Fatalf("reading map: %v", err)
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}
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log.Printf("%s called %d times\n", fn, value)
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}
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}
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