399 lines
9.8 KiB
Go
399 lines
9.8 KiB
Go
package queries
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import (
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"database/sql"
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"fmt"
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"reflect"
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"strings"
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"sync"
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"github.com/lbryio/sqlboiler/strmangle"
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"github.com/pkg/errors"
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)
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var (
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bindAccepts = []reflect.Kind{reflect.Ptr, reflect.Slice, reflect.Ptr, reflect.Struct}
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mut sync.RWMutex
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bindingMaps = make(map[string][]uint64)
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structMaps = make(map[string]map[string]uint64)
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)
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// Identifies what kind of object we're binding to
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type bindKind int
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const (
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kindStruct bindKind = iota
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kindSliceStruct
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kindPtrSliceStruct
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)
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const (
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loadMethodPrefix = "Load"
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relationshipStructName = "R"
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loaderStructName = "L"
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sentinel = uint64(255)
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)
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// BindP executes the query and inserts the
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// result into the passed in object pointer.
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// It panics on error. See boil.Bind() documentation.
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func (q *Query) BindP(obj interface{}) {
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if err := q.Bind(obj); err != nil {
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panic(errors.WithStack(err))
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}
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}
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// Bind executes the query and inserts the
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// result into the passed in object pointer
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//
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// Bind rules:
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// - Struct tags control bind, in the form of: `boil:"name,bind"`
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// - If "name" is omitted the sql column names that come back are TitleCased
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// and matched against the field name.
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// - If the "name" part of the struct tag is specified, the given name will
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// be used instead of the struct field name for binding.
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// - If the "name" of the struct tag is "-", this field will not be bound to.
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// - If the ",bind" option is specified on a struct field and that field
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// is a struct itself, it will be recursed into to look for fields for binding.
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//
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// Example Query:
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//
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// type JoinStruct struct {
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// // User1 can have it's struct fields bound to since it specifies
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// // ,bind in the struct tag, it will look specifically for
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// // fields that are prefixed with "user." returning from the query.
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// // For example "user.id" column name will bind to User1.ID
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// User1 *models.User `boil:"user,bind"`
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// // User2 will follow the same rules as noted above except it will use
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// // "friend." as the prefix it's looking for.
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// User2 *models.User `boil:"friend,bind"`
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// // RandomData will not be recursed into to look for fields to
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// // bind and will not be bound to because of the - for the name.
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// RandomData myStruct `boil:"-"`
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// // Date will not be recursed into to look for fields to bind because
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// // it does not specify ,bind in the struct tag. But it can be bound to
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// // as it does not specify a - for the name.
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// Date time.Time
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// }
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//
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// models.Users(qm.InnerJoin("users as friend on users.friend_id = friend.id")).Bind(&joinStruct)
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//
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// For custom objects that want to use eager loading, please see the
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// loadRelationships function.
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func Bind(rows *sql.Rows, obj interface{}) error {
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structType, sliceType, singular, err := bindChecks(obj)
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if err != nil {
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return err
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}
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return bind(rows, obj, structType, sliceType, singular)
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}
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// Bind executes the query and inserts the
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// result into the passed in object pointer
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//
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// See documentation for boil.Bind()
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func (q *Query) Bind(obj interface{}) error {
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structType, sliceType, bkind, err := bindChecks(obj)
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if err != nil {
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return err
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}
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rows, err := q.Query()
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if err != nil {
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return errors.Wrap(err, "bind failed to execute query")
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}
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defer rows.Close()
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if res := bind(rows, obj, structType, sliceType, bkind); res != nil {
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return res
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}
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if len(q.load) != 0 {
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return eagerLoad(q.executor, q.load, obj, bkind)
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}
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return nil
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}
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// bindChecks resolves information about the bind target, and errors if it's not an object
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// we can bind to.
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func bindChecks(obj interface{}) (structType reflect.Type, sliceType reflect.Type, bkind bindKind, err error) {
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typ := reflect.TypeOf(obj)
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kind := typ.Kind()
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setErr := func() {
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err = errors.Errorf("obj type should be *Type, *[]Type, or *[]*Type but was %q", reflect.TypeOf(obj).String())
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}
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for i := 0; ; i++ {
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switch i {
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case 0:
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if kind != reflect.Ptr {
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setErr()
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return
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}
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case 1:
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switch kind {
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case reflect.Struct:
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structType = typ
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bkind = kindStruct
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return
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case reflect.Slice:
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sliceType = typ
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default:
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setErr()
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return
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}
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case 2:
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switch kind {
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case reflect.Struct:
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structType = typ
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bkind = kindSliceStruct
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return
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case reflect.Ptr:
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default:
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setErr()
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return
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}
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case 3:
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if kind != reflect.Struct {
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setErr()
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return
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}
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structType = typ
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bkind = kindPtrSliceStruct
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return
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}
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typ = typ.Elem()
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kind = typ.Kind()
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}
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}
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func bind(rows *sql.Rows, obj interface{}, structType, sliceType reflect.Type, bkind bindKind) error {
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cols, err := rows.Columns()
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if err != nil {
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return errors.Wrap(err, "bind failed to get column names")
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}
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var ptrSlice reflect.Value
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switch bkind {
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case kindSliceStruct, kindPtrSliceStruct:
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ptrSlice = reflect.Indirect(reflect.ValueOf(obj))
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}
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var strMapping map[string]uint64
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var sok bool
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var mapping []uint64
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var ok bool
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typStr := structType.String()
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mapKey := makeCacheKey(typStr, cols)
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mut.RLock()
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mapping, ok = bindingMaps[mapKey]
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if !ok {
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if strMapping, sok = structMaps[typStr]; !sok {
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strMapping = MakeStructMapping(structType)
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}
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}
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mut.RUnlock()
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if !ok {
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mapping, err = BindMapping(structType, strMapping, cols)
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if err != nil {
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return err
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}
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mut.Lock()
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if !sok {
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structMaps[typStr] = strMapping
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}
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bindingMaps[mapKey] = mapping
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mut.Unlock()
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}
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var oneStruct reflect.Value
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if bkind == kindSliceStruct {
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oneStruct = reflect.Indirect(reflect.New(structType))
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}
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foundOne := false
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for rows.Next() {
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foundOne = true
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var newStruct reflect.Value
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var pointers []interface{}
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switch bkind {
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case kindStruct:
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pointers = PtrsFromMapping(reflect.Indirect(reflect.ValueOf(obj)), mapping)
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case kindSliceStruct:
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pointers = PtrsFromMapping(oneStruct, mapping)
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case kindPtrSliceStruct:
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newStruct = reflect.New(structType)
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pointers = PtrsFromMapping(reflect.Indirect(newStruct), mapping)
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}
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if err != nil {
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return err
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}
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if err := rows.Scan(pointers...); err != nil {
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return errors.Wrap(err, "failed to bind pointers to obj")
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}
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switch bkind {
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case kindSliceStruct:
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ptrSlice.Set(reflect.Append(ptrSlice, oneStruct))
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case kindPtrSliceStruct:
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ptrSlice.Set(reflect.Append(ptrSlice, newStruct))
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}
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}
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if bkind == kindStruct && !foundOne {
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return sql.ErrNoRows
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}
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return nil
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}
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// BindMapping creates a mapping that helps look up the pointer for the
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// column given.
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func BindMapping(typ reflect.Type, mapping map[string]uint64, cols []string) ([]uint64, error) {
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ptrs := make([]uint64, len(cols))
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ColLoop:
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for i, c := range cols {
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name := strmangle.TitleCaseIdentifier(c)
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ptrMap, ok := mapping[name]
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if ok {
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ptrs[i] = ptrMap
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continue
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}
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suffix := "." + name
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for maybeMatch, mapping := range mapping {
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if strings.HasSuffix(maybeMatch, suffix) {
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ptrs[i] = mapping
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continue ColLoop
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}
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}
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return nil, errors.Errorf("could not find struct field name in mapping: %s", name)
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}
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return ptrs, nil
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}
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// PtrsFromMapping expects to be passed an addressable struct and a mapping
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// of where to find things. It pulls the pointers out referred to by the mapping.
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func PtrsFromMapping(val reflect.Value, mapping []uint64) []interface{} {
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ptrs := make([]interface{}, len(mapping))
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for i, m := range mapping {
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ptrs[i] = ptrFromMapping(val, m, true).Interface()
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}
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return ptrs
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}
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// ValuesFromMapping expects to be passed an addressable struct and a mapping
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// of where to find things. It pulls the pointers out referred to by the mapping.
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func ValuesFromMapping(val reflect.Value, mapping []uint64) []interface{} {
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ptrs := make([]interface{}, len(mapping))
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for i, m := range mapping {
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ptrs[i] = ptrFromMapping(val, m, false).Interface()
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}
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return ptrs
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}
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// ptrFromMapping expects to be passed an addressable struct that it's looking
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// for things on.
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func ptrFromMapping(val reflect.Value, mapping uint64, addressOf bool) reflect.Value {
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for i := 0; i < 8; i++ {
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v := (mapping >> uint(i*8)) & sentinel
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if v == sentinel {
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if addressOf && val.Kind() != reflect.Ptr {
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return val.Addr()
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} else if !addressOf && val.Kind() == reflect.Ptr {
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return reflect.Indirect(val)
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}
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return val
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}
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val = val.Field(int(v))
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if val.Kind() == reflect.Ptr {
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val = reflect.Indirect(val)
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}
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}
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panic("could not find pointer from mapping")
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}
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// MakeStructMapping creates a map of the struct to be able to quickly look
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// up its pointers and values by name.
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func MakeStructMapping(typ reflect.Type) map[string]uint64 {
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fieldMaps := make(map[string]uint64)
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makeStructMappingHelper(typ, "", 0, 0, fieldMaps)
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return fieldMaps
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}
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func makeStructMappingHelper(typ reflect.Type, prefix string, current uint64, depth uint, fieldMaps map[string]uint64) {
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if typ.Kind() == reflect.Ptr {
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typ = typ.Elem()
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}
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n := typ.NumField()
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for i := 0; i < n; i++ {
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f := typ.Field(i)
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tag, recurse := getBoilTag(f)
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if len(tag) == 0 {
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tag = f.Name
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} else if tag[0] == '-' {
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continue
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}
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if len(prefix) != 0 {
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tag = fmt.Sprintf("%s.%s", prefix, tag)
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}
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if recurse {
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makeStructMappingHelper(f.Type, tag, current|uint64(i)<<depth, depth+8, fieldMaps)
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continue
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}
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fieldMaps[tag] = current | (sentinel << (depth + 8)) | (uint64(i) << depth)
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}
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}
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func getBoilTag(field reflect.StructField) (name string, recurse bool) {
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tag := field.Tag.Get("boil")
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name = field.Name
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if len(tag) == 0 {
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return name, false
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}
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ind := strings.IndexByte(tag, ',')
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if ind == -1 {
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return strmangle.TitleCase(tag), false
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} else if ind == 0 {
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return name, true
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}
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nameFragment := tag[:ind]
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return strmangle.TitleCase(nameFragment), true
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}
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func makeCacheKey(typ string, cols []string) string {
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buf := strmangle.GetBuffer()
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buf.WriteString(typ)
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for _, s := range cols {
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buf.WriteString(s)
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}
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mapKey := buf.String()
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strmangle.PutBuffer(buf)
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return mapKey
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}
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