mirror of
https://github.com/opencontainers/runc.git
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3cc90bd2d8
This commit adds support to libcontainer to allow caps, no new privs, apparmor, and selinux process label to the process struct so that it can be used together of override the base settings on the container config per individual process. Signed-off-by: Michael Crosby <crosbymichael@gmail.com>
259 lines
8.5 KiB
Go
259 lines
8.5 KiB
Go
package configs
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import (
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"bytes"
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"encoding/json"
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"os/exec"
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)
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type Rlimit struct {
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Type int `json:"type"`
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Hard uint64 `json:"hard"`
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Soft uint64 `json:"soft"`
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}
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// IDMap represents UID/GID Mappings for User Namespaces.
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type IDMap struct {
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ContainerID int `json:"container_id"`
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HostID int `json:"host_id"`
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Size int `json:"size"`
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}
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// Seccomp represents syscall restrictions
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// By default, only the native architecture of the kernel is allowed to be used
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// for syscalls. Additional architectures can be added by specifying them in
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// Architectures.
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type Seccomp struct {
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DefaultAction Action `json:"default_action"`
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Architectures []string `json:"architectures"`
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Syscalls []*Syscall `json:"syscalls"`
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}
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// An action to be taken upon rule match in Seccomp
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type Action int
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const (
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Kill Action = iota + 1
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Errno
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Trap
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Allow
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Trace
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)
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// A comparison operator to be used when matching syscall arguments in Seccomp
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type Operator int
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const (
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EqualTo Operator = iota + 1
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NotEqualTo
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GreaterThan
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GreaterThanOrEqualTo
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LessThan
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LessThanOrEqualTo
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MaskEqualTo
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)
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// A rule to match a specific syscall argument in Seccomp
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type Arg struct {
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Index uint `json:"index"`
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Value uint64 `json:"value"`
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ValueTwo uint64 `json:"value_two"`
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Op Operator `json:"op"`
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}
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// An rule to match a syscall in Seccomp
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type Syscall struct {
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Name string `json:"name"`
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Action Action `json:"action"`
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Args []*Arg `json:"args"`
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}
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// TODO Windows. Many of these fields should be factored out into those parts
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// which are common across platforms, and those which are platform specific.
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// Config defines configuration options for executing a process inside a contained environment.
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type Config struct {
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// NoPivotRoot will use MS_MOVE and a chroot to jail the process into the container's rootfs
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// This is a common option when the container is running in ramdisk
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NoPivotRoot bool `json:"no_pivot_root"`
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// ParentDeathSignal specifies the signal that is sent to the container's process in the case
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// that the parent process dies.
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ParentDeathSignal int `json:"parent_death_signal"`
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// PivotDir allows a custom directory inside the container's root filesystem to be used as pivot, when NoPivotRoot is not set.
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// When a custom PivotDir not set, a temporary dir inside the root filesystem will be used. The pivot dir needs to be writeable.
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// This is required when using read only root filesystems. In these cases, a read/writeable path can be (bind) mounted somewhere inside the root filesystem to act as pivot.
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PivotDir string `json:"pivot_dir"`
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// Path to a directory containing the container's root filesystem.
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Rootfs string `json:"rootfs"`
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// Readonlyfs will remount the container's rootfs as readonly where only externally mounted
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// bind mounts are writtable.
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Readonlyfs bool `json:"readonlyfs"`
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// Specifies the mount propagation flags to be applied to /.
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RootPropagation int `json:"rootPropagation"`
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// Mounts specify additional source and destination paths that will be mounted inside the container's
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// rootfs and mount namespace if specified
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Mounts []*Mount `json:"mounts"`
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// The device nodes that should be automatically created within the container upon container start. Note, make sure that the node is marked as allowed in the cgroup as well!
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Devices []*Device `json:"devices"`
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MountLabel string `json:"mount_label"`
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// Hostname optionally sets the container's hostname if provided
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Hostname string `json:"hostname"`
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// Namespaces specifies the container's namespaces that it should setup when cloning the init process
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// If a namespace is not provided that namespace is shared from the container's parent process
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Namespaces Namespaces `json:"namespaces"`
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// Capabilities specify the capabilities to keep when executing the process inside the container
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// All capbilities not specified will be dropped from the processes capability mask
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Capabilities []string `json:"capabilities"`
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// Networks specifies the container's network setup to be created
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Networks []*Network `json:"networks"`
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// Routes can be specified to create entries in the route table as the container is started
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Routes []*Route `json:"routes"`
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// Cgroups specifies specific cgroup settings for the various subsystems that the container is
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// placed into to limit the resources the container has available
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Cgroups *Cgroup `json:"cgroups"`
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// AppArmorProfile specifies the profile to apply to the process running in the container and is
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// change at the time the process is execed
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AppArmorProfile string `json:"apparmor_profile,omitempty"`
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// ProcessLabel specifies the label to apply to the process running in the container. It is
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// commonly used by selinux
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ProcessLabel string `json:"process_label,omitempty"`
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// Rlimits specifies the resource limits, such as max open files, to set in the container
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// If Rlimits are not set, the container will inherit rlimits from the parent process
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Rlimits []Rlimit `json:"rlimits"`
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// OomScoreAdj specifies the adjustment to be made by the kernel when calculating oom scores
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// for a process. Valid values are between the range [-1000, '1000'], where processes with
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// higher scores are preferred for being killed.
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// More information about kernel oom score calculation here: https://lwn.net/Articles/317814/
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OomScoreAdj int `json:"oom_score_adj"`
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// AdditionalGroups specifies the gids that should be added to supplementary groups
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// in addition to those that the user belongs to.
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AdditionalGroups []string `json:"additional_groups"`
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// UidMappings is an array of User ID mappings for User Namespaces
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UidMappings []IDMap `json:"uid_mappings"`
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// GidMappings is an array of Group ID mappings for User Namespaces
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GidMappings []IDMap `json:"gid_mappings"`
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// MaskPaths specifies paths within the container's rootfs to mask over with a bind
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// mount pointing to /dev/null as to prevent reads of the file.
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MaskPaths []string `json:"mask_paths"`
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// ReadonlyPaths specifies paths within the container's rootfs to remount as read-only
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// so that these files prevent any writes.
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ReadonlyPaths []string `json:"readonly_paths"`
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// Sysctl is a map of properties and their values. It is the equivalent of using
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// sysctl -w my.property.name value in Linux.
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Sysctl map[string]string `json:"sysctl"`
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// Seccomp allows actions to be taken whenever a syscall is made within the container.
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// A number of rules are given, each having an action to be taken if a syscall matches it.
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// A default action to be taken if no rules match is also given.
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Seccomp *Seccomp `json:"seccomp"`
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// NoNewPrivileges controls whether processes in the container can gain additional privileges.
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NoNewPrivileges bool `json:"no_new_privileges,omitempty"`
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// Hooks are a collection of actions to perform at various container lifecycle events.
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// Hooks are not able to be marshaled to json but they are also not needed to.
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Hooks *Hooks `json:"-"`
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// Version is the version of opencontainer specification that is supported.
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Version string `json:"version"`
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// Labels are user defined metadata that is stored in the config and populated on the state
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Labels []string `json:"labels"`
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}
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type Hooks struct {
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// Prestart commands are executed after the container namespaces are created,
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// but before the user supplied command is executed from init.
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Prestart []Hook
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// Poststart commands are executed after the container init process starts.
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Poststart []Hook
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// Poststop commands are executed after the container init process exits.
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Poststop []Hook
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}
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// HookState is the payload provided to a hook on execution.
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type HookState struct {
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Version string `json:"version"`
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ID string `json:"id"`
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Pid int `json:"pid"`
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Root string `json:"root"`
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}
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type Hook interface {
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// Run executes the hook with the provided state.
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Run(HookState) error
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}
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// NewFunctionHooks will call the provided function when the hook is run.
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func NewFunctionHook(f func(HookState) error) FuncHook {
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return FuncHook{
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run: f,
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}
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}
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type FuncHook struct {
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run func(HookState) error
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}
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func (f FuncHook) Run(s HookState) error {
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return f.run(s)
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}
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type Command struct {
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Path string `json:"path"`
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Args []string `json:"args"`
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Env []string `json:"env"`
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Dir string `json:"dir"`
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}
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// NewCommandHooks will execute the provided command when the hook is run.
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func NewCommandHook(cmd Command) CommandHook {
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return CommandHook{
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Command: cmd,
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}
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}
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type CommandHook struct {
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Command
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}
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func (c Command) Run(s HookState) error {
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b, err := json.Marshal(s)
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if err != nil {
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return err
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}
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cmd := exec.Cmd{
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Path: c.Path,
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Args: c.Args,
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Env: c.Env,
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Stdin: bytes.NewReader(b),
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}
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return cmd.Run()
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}
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