Files
warewulf/internal/pkg/node/methods.go
Christian Goll 28a7b9fe84 removed NodeInfo and using NodeConf instead
This is a significant change in the undelying data model!

nodeDb, err := node.New()

will result in a structure which contains the on disk
values. Only

nodeDb.FindAllNodes() or nodeDb.GetNode(id) will give
the nodes with its merged in profiles.

Signed-off-by: Christian Goll <cgoll@suse.com>
2024-10-17 13:35:42 -04:00

261 lines
7.4 KiB
Go

package node
import (
"net"
"reflect"
"regexp"
"sort"
"strings"
"github.com/warewulf/warewulf/internal/pkg/util"
)
type sortByName []NodeConf
func (a sortByName) Len() int { return len(a) }
func (a sortByName) Swap(i, j int) { a[i], a[j] = a[j], a[i] }
func (a sortByName) Less(i, j int) bool { return a[i].id < a[j].id }
func GetUnsetVerbs() []string {
return []string{"UNSET", "DELETE", "UNDEF", "undef", "--", "nil", "0.0.0.0"}
}
/**********
*
* Filters
*
*********/
/*
Filter a given slice of NodeConf against a given
regular expression
*/
func FilterByName(set []NodeConf, searchList []string) []NodeConf {
var ret []NodeConf
unique := make(map[string]NodeConf)
if len(searchList) > 0 {
for _, search := range searchList {
for _, entry := range set {
if match, _ := regexp.MatchString("^"+search+"$", entry.id); match {
unique[entry.id] = entry
}
}
}
for _, n := range unique {
ret = append(ret, n)
}
} else {
ret = set
}
sort.Sort(sortByName(ret))
return ret
}
/*
Filter a given map of NodeConf against given regular expression.
*/
func FilterNodesByName(inputMap map[string]*NodeConf, searchList []string) (retMap map[string]*NodeConf) {
retMap = map[string]*NodeConf{}
if len(searchList) > 0 {
for _, search := range searchList {
for name, nConf := range inputMap {
if match, _ := regexp.MatchString("^"+search+"$", name); match {
retMap[name] = nConf
}
}
}
}
return retMap
}
/*
Filter a given map of NodeConf against given regular expression.
*/
func FilterProfilesByName(inputMap map[string]*ProfileConf, searchList []string) (retMap map[string]*ProfileConf) {
retMap = map[string]*ProfileConf{}
if len(searchList) > 0 {
for _, search := range searchList {
for name, nConf := range inputMap {
if match, _ := regexp.MatchString("^"+search+"$", name); match {
retMap[name] = nConf
}
}
}
}
return retMap
}
/*
Creates an NodeConf with the given id. Doesn't add it to the database
*/
func NewNode(id string) (nodeconf NodeConf) {
nodeconf = EmptyNode()
nodeconf.id = id
return nodeconf
}
/*
Creates a ProfileConf but doesn't add it to the database.
*/
func EmptyProfile() (profileconf ProfileConf) {
profileconf.Ipmi = new(IpmiConf)
profileconf.Ipmi.Tags = map[string]string{}
profileconf.Kernel = new(KernelConf)
profileconf.NetDevs = make(map[string]*NetDevs)
profileconf.Tags = map[string]string{}
return profileconf
}
/*
Flattens out a NodeConf, which means if there are no explicit values in *IpmiConf
or *KernelConf, these pointer will set to nil. This will remove something like
ipmi: {} from nodes.conf
*/
func (info *NodeConf) Flatten() {
recursiveFlatten(info)
}
/*
Flattens out a ProfileConf, which means if there are no explicit values in *IpmiConf
or *KernelConf, these pointer will set to nil. This will remove something like
ipmi: {} from nodes.conf
*/
func (info *ProfileConf) Flatten() {
recursiveFlatten(info)
}
// abstract flatten
func recursiveFlatten(strct interface{}) {
confType := reflect.TypeOf(strct)
confVal := reflect.ValueOf(strct)
for j := 0; j < confType.Elem().NumField(); j++ {
if confVal.Elem().Field(j).Type().Kind() == reflect.Ptr && !confVal.Elem().Field(j).IsNil() {
// iterate now over the ptr fields
setToNil := true
nestedType := reflect.TypeOf(confVal.Elem().Field(j).Interface())
nestedVal := reflect.ValueOf(confVal.Elem().Field(j).Interface())
for i := 0; i < nestedType.Elem().NumField(); i++ {
if nestedType.Elem().Field(i).Type.Kind() == reflect.String &&
nestedVal.Elem().Field(i).Interface().(string) != "" &&
nestedVal.Elem().Field(i).Interface().(string) != undef {
setToNil = false
} else if nestedType.Elem().Field(i).Type == reflect.TypeOf([]string{}) &&
len(nestedVal.Elem().Field(i).Interface().([]string)) != 0 {
setToNil = false
} else if nestedType.Elem().Field(i).Type == reflect.TypeOf(map[string]string{}) &&
len(nestedVal.Elem().Field(i).Interface().(map[string]string)) != 0 {
setToNil = false
} else if nestedType.Elem().Field(i).Type == reflect.TypeOf(net.IP{}) {
val := nestedVal.Elem().Field(i).Interface().(net.IP)
if len(val) != 0 && !val.IsUnspecified() {
setToNil = false
}
}
}
if setToNil {
confVal.Elem().Field(j).Set(reflect.Zero(confVal.Elem().Field(j).Type()))
}
} else if confType.Elem().Field(j).Anonymous {
recursiveFlatten(confVal.Elem().Field(j).Addr().Interface())
} else if confType.Elem().Field(j).IsExported() && confType.Elem().Field(j).Type.Kind() == reflect.String {
if confVal.Elem().Field(j).Interface().(string) == undef {
confVal.Elem().Field(j).SetString("")
}
}
}
}
/*
Create a string slice, where every element represents a yaml entry, used for node/profile edit
in order to get a summary of all available elements
*/
func UnmarshalConf(obj interface{}, excludeList []string) (lines []string) {
objType := reflect.TypeOf(obj)
// now iterate of every field
for i := 0; i < objType.NumField(); i++ {
if objType.Field(i).Tag.Get("comment") != "" {
if ymlStr, ok := getYamlString(objType.Field(i), excludeList); ok {
lines = append(lines, ymlStr...)
}
}
if objType.Field(i).Type.Kind() == reflect.Ptr && objType.Field(i).Tag.Get("yaml") != "" {
typeLine := objType.Field(i).Tag.Get("yaml")
if len(strings.Split(typeLine, ",")) > 1 {
typeLine = strings.Split(typeLine, ",")[0] + ":"
}
lines = append(lines, typeLine)
nestedLine := UnmarshalConf(reflect.New(objType.Field(i).Type.Elem()).Elem().Interface(), excludeList)
for _, ln := range nestedLine {
lines = append(lines, " "+ln)
}
} else if objType.Field(i).Type.Kind() == reflect.Map && objType.Field(i).Type.Elem().Kind() == reflect.Ptr {
typeLine := objType.Field(i).Tag.Get("yaml")
if len(strings.Split(typeLine, ",")) > 1 {
typeLine = strings.Split(typeLine, ",")[0] + ":"
}
lines = append(lines, typeLine, " element:")
nestedLine := UnmarshalConf(reflect.New(objType.Field(i).Type.Elem().Elem()).Elem().Interface(), excludeList)
for _, ln := range nestedLine {
lines = append(lines, " "+ln)
}
}
}
return lines
}
/*
Get the string of the yaml tag
*/
func getYamlString(myType reflect.StructField, excludeList []string) ([]string, bool) {
ymlStr := myType.Tag.Get("yaml")
if len(strings.Split(ymlStr, ",")) > 1 {
ymlStr = strings.Split(ymlStr, ",")[0]
}
if util.InSlice(excludeList, ymlStr) {
return []string{""}, false
} else if myType.Tag.Get("comment") == "" && myType.Type.Kind() == reflect.String {
return []string{""}, false
}
if myType.Type.Kind() == reflect.String {
fieldType := myType.Tag.Get("type")
if fieldType == "" {
fieldType = "string"
}
ymlStr += ": " + fieldType
return []string{ymlStr}, true
} else if myType.Type == reflect.TypeOf([]string{}) {
return []string{ymlStr + ":", " - string"}, true
} else if myType.Type == reflect.TypeOf(map[string]string{}) {
return []string{ymlStr + ":", " key: value"}, true
} else if myType.Type.Kind() == reflect.Ptr {
return []string{ymlStr + ":"}, true
}
return []string{ymlStr}, true
}
/*
Getters for unexported fields
*/
/*
Returns the id of the node/profile
*/
func (node *NodeConf) Id() string {
return node.id
}
/*
Returns if the node is a valid in the database
*/
func (node *NodeConf) Valid() bool {
return node.valid
}
/*
Check if the netdev is the primary one
*/
func (dev *NetDevs) Primary() bool {
return dev.primary
}