284 lines
5.8 KiB
Go
284 lines
5.8 KiB
Go
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package gorethink
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import (
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"reflect"
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"strconv"
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"strings"
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"sync/atomic"
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"gopkg.in/gorethink/gorethink.v2/encoding"
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p "gopkg.in/gorethink/gorethink.v2/ql2"
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)
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// Helper functions for constructing terms
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// constructRootTerm is an alias for creating a new term.
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func constructRootTerm(name string, termType p.Term_TermType, args []interface{}, optArgs map[string]interface{}) Term {
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return Term{
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name: name,
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rootTerm: true,
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termType: termType,
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args: convertTermList(args),
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optArgs: convertTermObj(optArgs),
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}
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}
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// constructMethodTerm is an alias for creating a new term. Unlike constructRootTerm
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// this function adds the previous expression in the tree to the argument list to
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// create a method term.
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func constructMethodTerm(prevVal Term, name string, termType p.Term_TermType, args []interface{}, optArgs map[string]interface{}) Term {
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args = append([]interface{}{prevVal}, args...)
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return Term{
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name: name,
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rootTerm: false,
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termType: termType,
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args: convertTermList(args),
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optArgs: convertTermObj(optArgs),
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}
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}
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// Helper functions for creating internal RQL types
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func newQuery(t Term, qopts map[string]interface{}, copts *ConnectOpts) (q Query, err error) {
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queryOpts := map[string]interface{}{}
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for k, v := range qopts {
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queryOpts[k], err = Expr(v).Build()
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if err != nil {
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return
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}
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}
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if copts.Database != "" {
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queryOpts["db"], err = DB(copts.Database).Build()
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if err != nil {
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return
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}
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}
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builtTerm, err := t.Build()
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if err != nil {
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return q, err
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}
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// Construct query
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return Query{
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Type: p.Query_START,
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Term: &t,
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Opts: queryOpts,
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builtTerm: builtTerm,
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}, nil
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}
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// makeArray takes a slice of terms and produces a single MAKE_ARRAY term
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func makeArray(args termsList) Term {
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return Term{
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name: "[...]",
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termType: p.Term_MAKE_ARRAY,
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args: args,
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}
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}
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// makeObject takes a map of terms and produces a single MAKE_OBJECT term
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func makeObject(args termsObj) Term {
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return Term{
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name: "{...}",
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termType: p.Term_MAKE_OBJ,
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optArgs: args,
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}
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}
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var nextVarID int64
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func makeFunc(f interface{}) Term {
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value := reflect.ValueOf(f)
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valueType := value.Type()
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var argNums = make([]interface{}, valueType.NumIn())
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var args = make([]reflect.Value, valueType.NumIn())
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for i := 0; i < valueType.NumIn(); i++ {
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// Get a slice of the VARs to use as the function arguments
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varID := atomic.AddInt64(&nextVarID, 1)
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args[i] = reflect.ValueOf(constructRootTerm("var", p.Term_VAR, []interface{}{varID}, map[string]interface{}{}))
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argNums[i] = varID
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// make sure all input arguments are of type Term
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argValueTypeName := valueType.In(i).String()
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if argValueTypeName != "gorethink.Term" && argValueTypeName != "interface {}" {
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panic("Function argument is not of type Term or interface {}")
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}
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}
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if valueType.NumOut() != 1 {
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panic("Function does not have a single return value")
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}
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body := value.Call(args)[0].Interface()
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argsArr := makeArray(convertTermList(argNums))
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return constructRootTerm("func", p.Term_FUNC, []interface{}{argsArr, body}, map[string]interface{}{})
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}
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func funcWrap(value interface{}) Term {
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val := Expr(value)
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if implVarScan(val) && val.termType != p.Term_ARGS {
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return makeFunc(func(x Term) Term {
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return val
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})
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}
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return val
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}
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func funcWrapArgs(args []interface{}) []interface{} {
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for i, arg := range args {
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args[i] = funcWrap(arg)
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}
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return args
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}
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// implVarScan recursivly checks a value to see if it contains an
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// IMPLICIT_VAR term. If it does it returns true
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func implVarScan(value Term) bool {
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if value.termType == p.Term_IMPLICIT_VAR {
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return true
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}
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for _, v := range value.args {
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if implVarScan(v) {
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return true
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}
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}
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for _, v := range value.optArgs {
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if implVarScan(v) {
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return true
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}
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}
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return false
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}
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// Convert an opt args struct to a map.
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func optArgsToMap(optArgs OptArgs) map[string]interface{} {
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data, err := encode(optArgs)
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if err == nil && data != nil {
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if m, ok := data.(map[string]interface{}); ok {
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return m
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}
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}
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return map[string]interface{}{}
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}
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// Convert a list into a slice of terms
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func convertTermList(l []interface{}) termsList {
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if len(l) == 0 {
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return nil
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}
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terms := make(termsList, len(l))
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for i, v := range l {
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terms[i] = Expr(v)
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}
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return terms
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}
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// Convert a map into a map of terms
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func convertTermObj(o map[string]interface{}) termsObj {
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if len(o) == 0 {
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return nil
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}
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terms := make(termsObj, len(o))
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for k, v := range o {
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terms[k] = Expr(v)
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}
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return terms
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}
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// Helper functions for debugging
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func allArgsToStringSlice(args termsList, optArgs termsObj) []string {
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allArgs := make([]string, len(args)+len(optArgs))
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i := 0
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for _, v := range args {
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allArgs[i] = v.String()
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i++
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}
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for k, v := range optArgs {
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allArgs[i] = k + "=" + v.String()
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i++
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}
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return allArgs
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}
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func argsToStringSlice(args termsList) []string {
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allArgs := make([]string, len(args))
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for i, v := range args {
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allArgs[i] = v.String()
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}
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return allArgs
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}
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func optArgsToStringSlice(optArgs termsObj) []string {
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allArgs := make([]string, len(optArgs))
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i := 0
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for k, v := range optArgs {
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allArgs[i] = k + "=" + v.String()
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i++
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}
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return allArgs
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}
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func splitAddress(address string) (hostname string, port int) {
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hostname = "localhost"
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port = 28015
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addrParts := strings.Split(address, ":")
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if len(addrParts) >= 1 {
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hostname = addrParts[0]
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}
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if len(addrParts) >= 2 {
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port, _ = strconv.Atoi(addrParts[1])
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}
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return
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}
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func encode(data interface{}) (interface{}, error) {
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if _, ok := data.(Term); ok {
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return data, nil
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}
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v, err := encoding.Encode(data)
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if err != nil {
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return nil, err
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}
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return v, nil
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}
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// shouldRetryQuery checks the result of a query and returns true if the query
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// should be retried
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func shouldRetryQuery(q Query, err error) bool {
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if err == nil {
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return false
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}
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if _, ok := err.(RQLConnectionError); ok {
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return true
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}
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return err == ErrConnectionClosed
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}
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