open-nomad/client/driver/env/env.go

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package env
import (
"fmt"
"net"
"os"
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"strconv"
"strings"
hargs "github.com/hashicorp/nomad/helper/args"
"github.com/hashicorp/nomad/nomad/structs"
)
// A set of environment variables that are exported by each driver.
const (
// AllocDir is the environment variable with the path to the alloc directory
// that is shared across tasks within a task group.
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AllocDir = "NOMAD_ALLOC_DIR"
// TaskLocalDir is the environment variable with the path to the tasks local
// directory where it can store data that is persisted to the alloc is
// removed.
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TaskLocalDir = "NOMAD_TASK_DIR"
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// SecretsDir is the environment variable with the path to the tasks secret
// directory where it can store sensitive data.
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SecretsDir = "NOMAD_SECRETS_DIR"
// MemLimit is the environment variable with the tasks memory limit in MBs.
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MemLimit = "NOMAD_MEMORY_LIMIT"
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// CpuLimit is the environment variable with the tasks CPU limit in MHz.
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CpuLimit = "NOMAD_CPU_LIMIT"
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// AllocID is the environment variable for passing the allocation ID.
AllocID = "NOMAD_ALLOC_ID"
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// AllocName is the environment variable for passing the allocation name.
AllocName = "NOMAD_ALLOC_NAME"
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// TaskName is the environment variable for passing the task name.
TaskName = "NOMAD_TASK_NAME"
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// JobName is the environment variable for passing the job name.
JobName = "NOMAD_JOB_NAME"
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// AllocIndex is the environment variable for passing the allocation index.
AllocIndex = "NOMAD_ALLOC_INDEX"
// AddrPrefix is the prefix for passing both dynamic and static port
// allocations to tasks.
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// E.g$NOMAD_ADDR_http=127.0.0.1:80
AddrPrefix = "NOMAD_ADDR_"
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// IpPrefix is the prefix for passing the IP of a port allocation to a task.
IpPrefix = "NOMAD_IP_"
// PortPrefix is the prefix for passing the port allocation to a task.
PortPrefix = "NOMAD_PORT_"
// HostPortPrefix is the prefix for passing the host port when a portmap is
// specified.
HostPortPrefix = "NOMAD_HOST_PORT_"
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// MetaPrefix is the prefix for passing task meta data.
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MetaPrefix = "NOMAD_META_"
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// VaultToken is the environment variable for passing the Vault token
VaultToken = "VAULT_TOKEN"
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)
// The node values that can be interpreted.
const (
nodeIdKey = "node.unique.id"
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nodeDcKey = "node.datacenter"
nodeNameKey = "node.unique.name"
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nodeClassKey = "node.class"
// Prefixes used for lookups.
nodeAttributePrefix = "attr."
nodeMetaPrefix = "meta."
)
// TaskEnvironment is used to expose information to a task via environment
// variables and provide interpolation of Nomad variables.
type TaskEnvironment struct {
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Env map[string]string
TaskMeta map[string]string
AllocDir string
TaskDir string
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SecretsDir string
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CpuLimit int
MemLimit int
TaskName string
AllocIndex int
AllocId string
AllocName string
Node *structs.Node
Networks []*structs.NetworkResource
PortMap map[string]int
VaultToken string
InjectVaultToken bool
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JobName string
Alloc *structs.Allocation
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// taskEnv is the variables that will be set in the tasks environment
TaskEnv map[string]string
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// nodeValues is the values that are allowed for interprolation from the
// node.
NodeValues map[string]string
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}
func NewTaskEnvironment(node *structs.Node) *TaskEnvironment {
return &TaskEnvironment{Node: node, AllocIndex: -1}
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}
// ParseAndReplace takes the user supplied args replaces any instance of an
// environment variable or nomad variable in the args with the actual value.
func (t *TaskEnvironment) ParseAndReplace(args []string) []string {
replaced := make([]string, len(args))
for i, arg := range args {
replaced[i] = hargs.ReplaceEnv(arg, t.TaskEnv, t.NodeValues)
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}
return replaced
}
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// ReplaceEnv takes an arg and replaces all occurrences of environment variables
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// and nomad variables. If the variable is found in the passed map it is
// replaced, otherwise the original string is returned.
func (t *TaskEnvironment) ReplaceEnv(arg string) string {
return hargs.ReplaceEnv(arg, t.TaskEnv, t.NodeValues)
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}
// Build must be called after all the tasks environment values have been set.
func (t *TaskEnvironment) Build() *TaskEnvironment {
t.NodeValues = make(map[string]string)
t.TaskEnv = make(map[string]string)
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// Build the meta
for k, v := range t.TaskMeta {
t.TaskEnv[fmt.Sprintf("%s%s", MetaPrefix, strings.ToUpper(k))] = v
t.TaskEnv[fmt.Sprintf("%s%s", MetaPrefix, k)] = v
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}
// Build the ports
for _, network := range t.Networks {
for label, value := range network.MapLabelToValues(nil) {
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t.TaskEnv[fmt.Sprintf("%s%s", IpPrefix, label)] = network.IP
t.TaskEnv[fmt.Sprintf("%s%s", HostPortPrefix, label)] = strconv.Itoa(value)
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if forwardedPort, ok := t.PortMap[label]; ok {
value = forwardedPort
}
t.TaskEnv[fmt.Sprintf("%s%s", PortPrefix, label)] = strconv.Itoa(value)
IPPort := net.JoinHostPort(network.IP, strconv.Itoa(value))
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t.TaskEnv[fmt.Sprintf("%s%s", AddrPrefix, label)] = IPPort
}
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}
// Build the directories
if t.AllocDir != "" {
t.TaskEnv[AllocDir] = t.AllocDir
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}
if t.TaskDir != "" {
t.TaskEnv[TaskLocalDir] = t.TaskDir
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}
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if t.SecretsDir != "" {
t.TaskEnv[SecretsDir] = t.SecretsDir
}
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// Build the resource limits
if t.MemLimit != 0 {
t.TaskEnv[MemLimit] = strconv.Itoa(t.MemLimit)
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}
if t.CpuLimit != 0 {
t.TaskEnv[CpuLimit] = strconv.Itoa(t.CpuLimit)
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}
// Build the tasks ids
if t.AllocId != "" {
t.TaskEnv[AllocID] = t.AllocId
}
if t.AllocName != "" {
t.TaskEnv[AllocName] = t.AllocName
}
if t.AllocIndex != -1 {
t.TaskEnv[AllocIndex] = strconv.Itoa(t.AllocIndex)
}
if t.TaskName != "" {
t.TaskEnv[TaskName] = t.TaskName
}
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if t.JobName != "" {
t.TaskEnv[JobName] = t.JobName
}
// Build the addr of the other tasks
if t.Alloc != nil {
for taskName, resources := range t.Alloc.TaskResources {
if taskName == t.TaskName {
continue
}
for _, nw := range resources.Networks {
ports := make([]*structs.Port, 0, len(nw.ReservedPorts)+len(nw.DynamicPorts))
for _, port := range nw.ReservedPorts {
ports = append(ports, &port)
}
for _, port := range nw.DynamicPorts {
ports = append(ports, &port)
}
for _, p := range ports {
key := fmt.Sprintf("%s%s_%s", AddrPrefix, taskName, p.Label)
t.TaskEnv[key] = fmt.Sprintf("%s:%d", nw.IP, p.Value)
}
}
}
}
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// Build the node
if t.Node != nil {
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// Set up the node values.
t.NodeValues[nodeIdKey] = t.Node.ID
t.NodeValues[nodeDcKey] = t.Node.Datacenter
t.NodeValues[nodeNameKey] = t.Node.Name
t.NodeValues[nodeClassKey] = t.Node.NodeClass
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// Set up the attributes.
for k, v := range t.Node.Attributes {
t.NodeValues[fmt.Sprintf("%s%s", nodeAttributePrefix, k)] = v
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}
// Set up the meta.
for k, v := range t.Node.Meta {
t.NodeValues[fmt.Sprintf("%s%s", nodeMetaPrefix, k)] = v
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}
}
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// Build the Vault Token
if t.InjectVaultToken && t.VaultToken != "" {
t.TaskEnv[VaultToken] = t.VaultToken
}
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// Interpret the environment variables
interpreted := make(map[string]string, len(t.Env))
for k, v := range t.Env {
interpreted[k] = hargs.ReplaceEnv(v, t.NodeValues, t.TaskEnv)
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}
for k, v := range interpreted {
t.TaskEnv[k] = v
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}
// Clean keys (see #2405)
cleanedEnv := make(map[string]string, len(t.TaskEnv))
for k, v := range t.TaskEnv {
cleanedK := strings.Replace(k, "-", "_", -1)
cleanedEnv[cleanedK] = v
}
t.TaskEnv = cleanedEnv
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return t
}
// EnvList returns a list of strings with NAME=value pairs.
func (t *TaskEnvironment) EnvList() []string {
env := []string{}
for k, v := range t.TaskEnv {
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env = append(env, fmt.Sprintf("%s=%s", k, v))
}
return env
}
// EnvMap returns a copy of the tasks environment variables.
func (t *TaskEnvironment) EnvMap() map[string]string {
m := make(map[string]string, len(t.TaskEnv))
for k, v := range t.TaskEnv {
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m[k] = v
}
return m
}
// Builder methods to build the TaskEnvironment
func (t *TaskEnvironment) SetAllocDir(dir string) *TaskEnvironment {
t.AllocDir = dir
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return t
}
func (t *TaskEnvironment) ClearAllocDir() *TaskEnvironment {
t.AllocDir = ""
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return t
}
func (t *TaskEnvironment) SetTaskLocalDir(dir string) *TaskEnvironment {
t.TaskDir = dir
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return t
}
func (t *TaskEnvironment) ClearTaskLocalDir() *TaskEnvironment {
t.TaskDir = ""
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return t
}
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func (t *TaskEnvironment) SetSecretsDir(dir string) *TaskEnvironment {
t.SecretsDir = dir
return t
}
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func (t *TaskEnvironment) ClearSecretsDir() *TaskEnvironment {
t.SecretsDir = ""
return t
}
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func (t *TaskEnvironment) SetMemLimit(limit int) *TaskEnvironment {
t.MemLimit = limit
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return t
}
func (t *TaskEnvironment) ClearMemLimit() *TaskEnvironment {
t.MemLimit = 0
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return t
}
func (t *TaskEnvironment) SetCpuLimit(limit int) *TaskEnvironment {
t.CpuLimit = limit
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return t
}
func (t *TaskEnvironment) ClearCpuLimit() *TaskEnvironment {
t.CpuLimit = 0
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return t
}
func (t *TaskEnvironment) SetNetworks(networks []*structs.NetworkResource) *TaskEnvironment {
t.Networks = networks
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return t
}
func (t *TaskEnvironment) clearNetworks() *TaskEnvironment {
t.Networks = nil
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return t
}
func (t *TaskEnvironment) SetPortMap(portMap map[string]int) *TaskEnvironment {
t.PortMap = portMap
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return t
}
func (t *TaskEnvironment) clearPortMap() *TaskEnvironment {
t.PortMap = nil
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return t
}
// Takes a map of meta values to be passed to the task. The keys are capatilized
// when the environent variable is set.
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func (t *TaskEnvironment) SetTaskMeta(m map[string]string) *TaskEnvironment {
t.TaskMeta = m
return t
}
func (t *TaskEnvironment) ClearTaskMeta() *TaskEnvironment {
t.TaskMeta = nil
return t
}
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func (t *TaskEnvironment) SetEnvvars(m map[string]string) *TaskEnvironment {
t.Env = m
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return t
}
// Appends the given environment variables.
func (t *TaskEnvironment) AppendEnvvars(m map[string]string) *TaskEnvironment {
if t.Env == nil {
t.Env = make(map[string]string, len(m))
}
for k, v := range m {
t.Env[k] = v
}
return t
}
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// AppendHostEnvvars adds the host environment variables to the tasks. The
// filter parameter can be use to filter host environment from entering the
// tasks.
func (t *TaskEnvironment) AppendHostEnvvars(filter []string) *TaskEnvironment {
hostEnv := os.Environ()
if t.Env == nil {
t.Env = make(map[string]string, len(hostEnv))
}
// Index the filtered environment variables.
index := make(map[string]struct{}, len(filter))
for _, f := range filter {
index[f] = struct{}{}
}
for _, e := range hostEnv {
parts := strings.SplitN(e, "=", 2)
key, value := parts[0], parts[1]
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// Skip filtered environment variables
if _, filtered := index[key]; filtered {
continue
}
// Don't override the tasks environment variables.
if _, existing := t.Env[key]; !existing {
t.Env[key] = value
}
}
return t
}
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func (t *TaskEnvironment) ClearEnvvars() *TaskEnvironment {
t.Env = nil
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return t
}
// Helper method for setting all fields from an allocation.
func (t *TaskEnvironment) SetAlloc(alloc *structs.Allocation) *TaskEnvironment {
t.AllocId = alloc.ID
t.AllocName = alloc.Name
t.AllocIndex = alloc.Index()
t.Alloc = alloc
return t
}
// Helper method for clearing all fields from an allocation.
func (t *TaskEnvironment) ClearAlloc(alloc *structs.Allocation) *TaskEnvironment {
return t.ClearAllocId().ClearAllocName().ClearAllocIndex()
}
func (t *TaskEnvironment) SetAllocIndex(index int) *TaskEnvironment {
t.AllocIndex = index
return t
}
func (t *TaskEnvironment) ClearAllocIndex() *TaskEnvironment {
t.AllocIndex = -1
return t
}
func (t *TaskEnvironment) SetAllocId(id string) *TaskEnvironment {
t.AllocId = id
return t
}
func (t *TaskEnvironment) ClearAllocId() *TaskEnvironment {
t.AllocId = ""
return t
}
func (t *TaskEnvironment) SetAllocName(name string) *TaskEnvironment {
t.AllocName = name
return t
}
func (t *TaskEnvironment) ClearAllocName() *TaskEnvironment {
t.AllocName = ""
return t
}
func (t *TaskEnvironment) SetTaskName(name string) *TaskEnvironment {
t.TaskName = name
return t
}
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func (t *TaskEnvironment) SetJobName(name string) *TaskEnvironment {
t.JobName = name
return t
}
func (t *TaskEnvironment) ClearTaskName() *TaskEnvironment {
t.TaskName = ""
return t
}
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func (t *TaskEnvironment) ClearJobName() *TaskEnvironment {
t.JobName = ""
return t
}
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func (t *TaskEnvironment) SetVaultToken(token string, inject bool) *TaskEnvironment {
t.VaultToken = token
t.InjectVaultToken = inject
return t
}
func (t *TaskEnvironment) ClearVaultToken() *TaskEnvironment {
t.VaultToken = ""
t.InjectVaultToken = false
return t
}