fix(go.sum): update ResolveSpec dependency to v1.0.87
This commit is contained in:
+645
@@ -0,0 +1,645 @@
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package common
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import (
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"context"
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"fmt"
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"reflect"
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"strings"
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"github.com/bitechdev/ResolveSpec/pkg/logger"
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"github.com/bitechdev/ResolveSpec/pkg/reflection"
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)
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// CRUDRequestProvider interface for models that provide CRUD request strings
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type CRUDRequestProvider interface {
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GetRequest() string
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}
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// RelationshipInfoProvider interface for handlers that can provide relationship info
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type RelationshipInfoProvider interface {
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GetRelationshipInfo(modelType reflect.Type, relationName string) *RelationshipInfo
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}
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// NestedCUDProcessor handles recursive processing of nested object graphs
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type NestedCUDProcessor struct {
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db Database
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registry ModelRegistry
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relationshipHelper RelationshipInfoProvider
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}
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// NewNestedCUDProcessor creates a new nested CUD processor
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func NewNestedCUDProcessor(db Database, registry ModelRegistry, relationshipHelper RelationshipInfoProvider) *NestedCUDProcessor {
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return &NestedCUDProcessor{
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db: db,
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registry: registry,
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relationshipHelper: relationshipHelper,
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}
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}
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// ProcessResult contains the result of processing a CUD operation
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type ProcessResult struct {
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ID interface{} // The ID of the processed record
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AffectedRows int64 // Number of rows affected
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Data map[string]interface{} // The processed data
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RelationData map[string]interface{} // Data from processed relations
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}
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// ProcessNestedCUD recursively processes nested object graphs for Create, Update, Delete operations
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// with automatic foreign key resolution
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func (p *NestedCUDProcessor) ProcessNestedCUD(
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ctx context.Context,
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operation string, // "insert", "update", or "delete"
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data map[string]interface{},
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model interface{},
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parentIDs map[string]interface{}, // Parent IDs for foreign key resolution
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tableName string,
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) (*ProcessResult, error) {
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logger.Info("Processing nested CUD: operation=%s, table=%s", operation, tableName)
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result := &ProcessResult{
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Data: make(map[string]interface{}),
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RelationData: make(map[string]interface{}),
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}
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// Check if data has a _request field that overrides the operation
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if requestOp := p.extractCRUDRequest(data); requestOp != "" {
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logger.Debug("Found _request override: %s", requestOp)
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operation = requestOp
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}
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// Get model type for reflection
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modelType := reflect.TypeOf(model)
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for modelType != nil && (modelType.Kind() == reflect.Pointer || modelType.Kind() == reflect.Slice || modelType.Kind() == reflect.Array) {
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modelType = modelType.Elem()
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}
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if modelType == nil || modelType.Kind() != reflect.Struct {
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logger.Error("Invalid model type: operation=%s, table=%s, modelType=%v, expected struct", operation, tableName, modelType)
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return nil, fmt.Errorf("model must be a struct type, got %v", modelType)
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}
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// Separate relation fields from regular fields
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relationFields := make(map[string]*RelationshipInfo)
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regularData := make(map[string]interface{})
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for key, value := range data {
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// Skip _request field in actual data processing
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if key == "_request" {
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continue
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}
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// Check if this field is a relation
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relInfo := p.relationshipHelper.GetRelationshipInfo(modelType, key)
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if relInfo != nil {
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relationFields[key] = relInfo
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result.RelationData[key] = value
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} else {
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regularData[key] = value
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}
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}
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// Filter regularData to only include fields that exist in the model,
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// and translate JSON keys to their actual database column names.
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regularData = p.filterValidFields(regularData, model)
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// Inject parent IDs for foreign key resolution
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p.injectForeignKeys(regularData, modelType, parentIDs)
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// Get the primary key name for this model
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pkName := reflection.GetPrimaryKeyName(model)
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// Check if we have any data to process (besides _request)
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hasData := len(regularData) > 0
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// Process based on operation
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switch strings.ToLower(operation) {
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case "insert", "create", "add":
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// Only perform insert if we have data to insert
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if hasData {
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id, err := p.processInsert(ctx, regularData, tableName)
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if err != nil {
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logger.Error("Insert failed for table=%s, data=%+v, error=%v", tableName, regularData, err)
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return nil, fmt.Errorf("insert failed: %w", err)
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}
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result.ID = id
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result.AffectedRows = 1
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result.Data = regularData
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// Re-select the inserted row so result.Data reflects DB-generated defaults.
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if row, err := p.processSelect(ctx, tableName, id); err != nil {
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logger.Warn("Select after insert failed: table=%s, id=%v, error=%v", tableName, id, err)
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} else if len(row) > 0 {
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result.Data = row
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}
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// Process child relations after parent insert (to get parent ID)
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if err := p.processChildRelations(ctx, "insert", id, relationFields, result.RelationData, modelType, parentIDs); err != nil {
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logger.Error("Failed to process child relations after insert: table=%s, parentID=%v, relations=%+v, error=%v", tableName, id, relationFields, err)
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return nil, fmt.Errorf("failed to process child relations: %w", err)
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}
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} else {
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logger.Debug("Skipping insert for %s - no data columns besides _request", tableName)
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}
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case "update", "change", "modify":
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// Only perform update if we have data to update
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if reflection.IsEmptyValue(data[pkName]) {
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logger.Warn("Skipping update for %s - no primary key", tableName)
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return result, nil
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}
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if hasData {
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rows, err := p.processUpdate(ctx, regularData, tableName, data[pkName])
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if err != nil {
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logger.Error("Update failed for table=%s, id=%v, data=%+v, error=%v", tableName, data[pkName], regularData, err)
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return nil, fmt.Errorf("update failed: %w", err)
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}
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result.ID = data[pkName]
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result.AffectedRows = rows
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result.Data = regularData
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// Re-select the updated row so result.Data reflects current DB state.
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if row, err := p.processSelect(ctx, tableName, result.ID); err != nil {
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logger.Warn("Select after update failed: table=%s, id=%v, error=%v", tableName, result.ID, err)
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} else if len(row) > 0 {
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result.Data = row
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}
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// Process child relations for update
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if err := p.processChildRelations(ctx, "update", data[pkName], relationFields, result.RelationData, modelType, parentIDs); err != nil {
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logger.Error("Failed to process child relations after update: table=%s, parentID=%v, relations=%+v, error=%v", tableName, data[pkName], regularData, err)
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return nil, fmt.Errorf("failed to process child relations: %w", err)
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}
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} else {
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logger.Debug("Skipping update for %s - no data columns besides _request", tableName)
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result.ID = data[pkName]
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}
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case "delete", "remove":
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if reflection.IsEmptyValue(data[pkName]) {
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logger.Warn("Skipping delete for %s - no primary key", tableName)
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return result, nil
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}
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// Process child relations first (for referential integrity)
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if err := p.processChildRelations(ctx, "delete", data[pkName], relationFields, result.RelationData, modelType, parentIDs); err != nil {
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logger.Error("Failed to process child relations before delete: table=%s, id=%v, relations=%+v, error=%v", tableName, data[pkName], relationFields, err)
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return nil, fmt.Errorf("failed to process child relations: %w", err)
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}
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rows, err := p.processDelete(ctx, tableName, data[pkName])
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if err != nil {
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logger.Error("Delete failed for table=%s, id=%v, error=%v", tableName, data[pkName], err)
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return nil, fmt.Errorf("delete failed: %w", err)
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}
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result.ID = data[pkName]
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result.AffectedRows = rows
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result.Data = regularData
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default:
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logger.Error("Unsupported operation: %s for table=%s", operation, tableName)
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return nil, fmt.Errorf("unsupported operation: %s", operation)
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}
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logger.Info("Nested CUD completed: operation=%s, id=%v, rows=%d", operation, result.ID, result.AffectedRows)
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return result, nil
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}
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// extractCRUDRequest extracts the request field from data if present
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func (p *NestedCUDProcessor) extractCRUDRequest(data map[string]interface{}) string {
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if request, ok := data["_request"]; ok {
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if requestStr, ok := request.(string); ok {
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return strings.ToLower(strings.TrimSpace(requestStr))
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}
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}
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return ""
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}
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// filterValidFields filters input data to only include fields that exist in the model,
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// and translates JSON key names to their actual database column names.
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// For example, a field tagged `json:"_changed_date" bun:"changed_date"` will be
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// included in the result as "changed_date", not "_changed_date".
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func (p *NestedCUDProcessor) filterValidFields(data map[string]interface{}, model interface{}) map[string]interface{} {
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if len(data) == 0 {
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return data
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}
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modelType := reflect.TypeOf(model)
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for modelType != nil && (modelType.Kind() == reflect.Pointer || modelType.Kind() == reflect.Slice || modelType.Kind() == reflect.Array) {
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modelType = modelType.Elem()
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}
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if modelType == nil || modelType.Kind() != reflect.Struct {
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return data
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}
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// Build a mapping from JSON key -> DB column name for all writable fields.
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// This both validates which fields belong to the model and translates their names
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// to the correct column names for use in SQL insert/update queries.
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jsonToDBCol := reflection.BuildJSONToDBColumnMap(modelType)
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filteredData := make(map[string]interface{})
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for key, value := range data {
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dbColName, exists := jsonToDBCol[key]
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if exists {
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filteredData[dbColName] = value
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} else {
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logger.Debug("Skipping invalid field '%s' - not found in model %v", key, modelType)
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}
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}
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return filteredData
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}
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// injectForeignKeys injects parent IDs into data for foreign key fields.
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// data is expected to be keyed by DB column names (as returned by filterValidFields).
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func (p *NestedCUDProcessor) injectForeignKeys(data map[string]interface{}, modelType reflect.Type, parentIDs map[string]interface{}) {
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if len(parentIDs) == 0 {
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return
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}
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pkCol := reflection.GetPrimaryKeyName(reflect.New(modelType).Interface())
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for parentKey, parentID := range parentIDs {
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dbColNames := reflection.GetForeignKeyColumn(modelType, parentKey)
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if len(dbColNames) == 0 {
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// No explicit tag found — fall back to naming convention by scanning scalar fields.
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for i := 0; i < modelType.NumField(); i++ {
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field := modelType.Field(i)
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jsonName := strings.Split(field.Tag.Get("json"), ",")[0]
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if strings.EqualFold(jsonName, "rid"+parentKey) ||
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strings.EqualFold(jsonName, "rid_"+parentKey) ||
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strings.EqualFold(jsonName, "id_"+parentKey) ||
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strings.EqualFold(jsonName, parentKey+"_id") ||
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strings.EqualFold(jsonName, parentKey+"id") ||
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strings.EqualFold(field.Name, parentKey+"ID") {
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dbColNames = []string{reflection.GetColumnName(field)}
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break
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}
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}
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}
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for _, dbColName := range dbColNames {
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if pkCol != "" && strings.EqualFold(dbColName, pkCol) {
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continue
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}
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if _, exists := data[dbColName]; !exists {
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logger.Debug("Injecting foreign key: %s = %v", dbColName, parentID)
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data[dbColName] = parentID
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}
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}
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}
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}
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// processInsert handles insert operation
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func (p *NestedCUDProcessor) processInsert(
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ctx context.Context,
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data map[string]interface{},
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tableName string,
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) (interface{}, error) {
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logger.Debug("Inserting into %s with data: %+v", tableName, data)
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query := p.db.NewInsert().Table(tableName)
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for key, value := range data {
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query = query.Value(key, ConvertSliceForBun(value))
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}
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pkName := reflection.GetPrimaryKeyName(tableName)
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query = query.Returning(pkName)
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var id interface{}
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if err := query.Scan(ctx, &id); err != nil {
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logger.Error("Insert execution failed: table=%s, data=%+v, error=%v", tableName, data, err)
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return nil, fmt.Errorf("insert exec failed: %w", err)
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}
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logger.Debug("Insert successful, ID: %v", id)
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return id, nil
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}
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// processSelect fetches the row identified by id from tableName into a flat map.
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// Used to populate result.Data with the actual DB state after insert/update.
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func (p *NestedCUDProcessor) processSelect(ctx context.Context, tableName string, id interface{}) (map[string]interface{}, error) {
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pkName := reflection.GetPrimaryKeyName(tableName)
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var row map[string]interface{}
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if err := p.db.NewSelect().
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Table(tableName).
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Where(fmt.Sprintf("%s = ?", QuoteIdent(pkName)), id).
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Scan(ctx, &row); err != nil {
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return nil, fmt.Errorf("select after write failed: %w", err)
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}
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return row, nil
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}
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// processUpdate handles update operation
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func (p *NestedCUDProcessor) processUpdate(
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ctx context.Context,
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data map[string]interface{},
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tableName string,
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id interface{},
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) (int64, error) {
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if id == nil {
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logger.Error("Update requires an ID: table=%s, data=%+v", tableName, data)
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return 0, fmt.Errorf("update requires an ID")
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}
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logger.Debug("Updating %s with ID %v, data: %+v", tableName, id, data)
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query := p.db.NewUpdate().Table(tableName).SetMap(data).Where(fmt.Sprintf("%s = ?", QuoteIdent(reflection.GetPrimaryKeyName(tableName))), id)
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result, err := query.Exec(ctx)
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if err != nil {
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logger.Error("Update execution failed: table=%s, id=%v, data=%+v, error=%v", tableName, id, data, err)
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return 0, fmt.Errorf("update exec failed: %w", err)
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}
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rows := result.RowsAffected()
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logger.Debug("Update successful, rows affected: %d", rows)
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return rows, nil
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}
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// processDelete handles delete operation
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func (p *NestedCUDProcessor) processDelete(ctx context.Context, tableName string, id interface{}) (int64, error) {
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if id == nil {
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logger.Error("Delete requires an ID: table=%s", tableName)
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return 0, fmt.Errorf("delete requires an ID")
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}
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logger.Debug("Deleting from %s with ID %v", tableName, id)
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query := p.db.NewDelete().Table(tableName).Where(fmt.Sprintf("%s = ?", QuoteIdent(reflection.GetPrimaryKeyName(tableName))), id)
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result, err := query.Exec(ctx)
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if err != nil {
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logger.Error("Delete execution failed: table=%s, id=%v, error=%v", tableName, id, err)
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return 0, fmt.Errorf("delete exec failed: %w", err)
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}
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rows := result.RowsAffected()
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logger.Debug("Delete successful, rows affected: %d", rows)
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return rows, nil
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}
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// processChildRelations recursively processes child relations
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func (p *NestedCUDProcessor) processChildRelations(
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ctx context.Context,
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operation string,
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parentID interface{},
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relationFields map[string]*RelationshipInfo,
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relationData map[string]interface{},
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parentModelType reflect.Type,
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incomingParentIDs map[string]interface{}, // IDs from all ancestors
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) error {
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for relationName, relInfo := range relationFields {
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relationValue, exists := relationData[relationName]
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if !exists || relationValue == nil {
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continue
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}
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logger.Debug("Processing relation: %s, type: %s", relationName, relInfo.RelationType)
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// Get the related model
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field, found := parentModelType.FieldByName(relInfo.FieldName)
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if !found {
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logger.Error("Field %s not found in model type %v for relation %s", relInfo.FieldName, parentModelType, relationName)
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continue
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}
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// Get the model type for the relation
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relatedModelType := field.Type
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if relatedModelType.Kind() == reflect.Slice {
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relatedModelType = relatedModelType.Elem()
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}
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if relatedModelType.Kind() == reflect.Pointer {
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relatedModelType = relatedModelType.Elem()
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}
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// Create an instance of the related model
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relatedModel := reflect.New(relatedModelType).Elem().Interface()
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// Get table name for related model
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relatedTableName := p.getTableNameForModel(relatedModel, relInfo.JSONName)
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// Prepare parent IDs for foreign key injection
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// Start by copying all incoming parent IDs (from ancestors)
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parentIDs := make(map[string]interface{})
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for k, v := range incomingParentIDs {
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parentIDs[k] = v
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}
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logger.Debug("Inherited %d parent IDs from ancestors: %+v", len(incomingParentIDs), incomingParentIDs)
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// Add the current parent's primary key to the parentIDs map
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// This ensures nested children have access to all ancestor IDs
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if parentID != nil && parentModelType != nil {
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// Get the parent model's primary key field name
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parentPKFieldName := reflection.GetPrimaryKeyName(parentModelType)
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if parentPKFieldName != "" {
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// Get the JSON name for the primary key field
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parentPKJSONName := reflection.GetJSONNameForField(parentModelType, parentPKFieldName)
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baseName := ""
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if len(parentPKJSONName) > 1 {
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baseName = parentPKJSONName
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} else {
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// Add parent's PK to the map using the base model name
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baseName = strings.TrimSuffix(parentPKFieldName, "ID")
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baseName = strings.TrimSuffix(strings.ToLower(baseName), "_id")
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if baseName == "" {
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baseName = "parent"
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}
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}
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parentIDs[baseName] = parentID
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logger.Debug("Added current parent PK to parentIDs map: %s=%v (from field %s)", baseName, parentID, parentPKFieldName)
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}
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}
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|
||||
// Also add the foreign key reference if specified
|
||||
if relInfo.ForeignKey != "" && parentID != nil {
|
||||
// Extract the base name from foreign key (e.g., "DepartmentID" -> "Department")
|
||||
baseName := strings.TrimSuffix(relInfo.ForeignKey, "ID")
|
||||
baseName = strings.TrimSuffix(strings.ToLower(baseName), "_id")
|
||||
// Only add if different from what we already added
|
||||
if _, exists := parentIDs[baseName]; !exists {
|
||||
parentIDs[baseName] = parentID
|
||||
logger.Debug("Added foreign key to parentIDs map: %s=%v (from FK %s)", baseName, parentID, relInfo.ForeignKey)
|
||||
}
|
||||
}
|
||||
|
||||
logger.Debug("Final parentIDs map for relation %s: %+v", relationName, parentIDs)
|
||||
|
||||
// Determine which field name to use for setting parent ID in child data
|
||||
// Priority: Use foreign key field name if specified
|
||||
var foreignKeyFieldName string
|
||||
if relInfo.ForeignKey != "" {
|
||||
// For has-many/has-one: join:parentCol=childCol
|
||||
// ForeignKey = parent side, References = child side (where we actually set the value)
|
||||
childField := relInfo.ForeignKey
|
||||
if (relInfo.RelationType == "hasMany" || relInfo.RelationType == "hasOne") && relInfo.References != "" {
|
||||
childField = relInfo.References
|
||||
}
|
||||
foreignKeyFieldName = reflection.GetJSONNameForField(relatedModelType, childField)
|
||||
if foreignKeyFieldName == "" {
|
||||
foreignKeyFieldName = strings.ToLower(childField)
|
||||
}
|
||||
logger.Debug("Using foreign key field for direct assignment: %s (from FK %s -> child %s)", foreignKeyFieldName, relInfo.ForeignKey, childField)
|
||||
}
|
||||
|
||||
// Get the primary key name for the child model to avoid overwriting it in recursive relationships
|
||||
childPKName := reflection.GetPrimaryKeyName(relatedModel)
|
||||
childPKFieldName := reflection.GetJSONNameForField(relatedModelType, childPKName)
|
||||
if childPKFieldName == "" {
|
||||
childPKFieldName = strings.ToLower(childPKName)
|
||||
}
|
||||
|
||||
logger.Debug("Processing relation with foreignKeyField=%s, childPK=%s", foreignKeyFieldName, childPKFieldName)
|
||||
|
||||
// Process based on relation type and data structure
|
||||
switch v := relationValue.(type) {
|
||||
case map[string]interface{}:
|
||||
// Single related object - directly set foreign key if specified
|
||||
// IMPORTANT: In recursive relationships, don't overwrite the primary key
|
||||
if parentID != nil && foreignKeyFieldName != "" && foreignKeyFieldName != childPKFieldName {
|
||||
v[foreignKeyFieldName] = parentID
|
||||
logger.Debug("Set foreign key in single relation: %s=%v", foreignKeyFieldName, parentID)
|
||||
} else if foreignKeyFieldName == childPKFieldName {
|
||||
logger.Debug("Skipping foreign key assignment - same as primary key (recursive relationship): %s", foreignKeyFieldName)
|
||||
}
|
||||
_, err := p.ProcessNestedCUD(ctx, operation, v, relatedModel, parentIDs, relatedTableName)
|
||||
if err != nil {
|
||||
logger.Error("Failed to process single relation: name=%s, table=%s, operation=%s, parentID=%v, data=%+v, error=%v",
|
||||
relationName, relatedTableName, operation, parentID, v, err)
|
||||
return fmt.Errorf("failed to process relation %s: %w", relationName, err)
|
||||
}
|
||||
|
||||
case []interface{}:
|
||||
// Multiple related objects
|
||||
for i, item := range v {
|
||||
if itemMap, ok := item.(map[string]interface{}); ok {
|
||||
// Directly set foreign key if specified
|
||||
// IMPORTANT: In recursive relationships, don't overwrite the primary key
|
||||
if parentID != nil && foreignKeyFieldName != "" && foreignKeyFieldName != childPKFieldName {
|
||||
itemMap[foreignKeyFieldName] = parentID
|
||||
logger.Debug("Set foreign key in relation array[%d]: %s=%v", i, foreignKeyFieldName, parentID)
|
||||
} else if foreignKeyFieldName == childPKFieldName {
|
||||
logger.Debug("Skipping foreign key assignment in array[%d] - same as primary key (recursive relationship): %s", i, foreignKeyFieldName)
|
||||
}
|
||||
_, err := p.ProcessNestedCUD(ctx, operation, itemMap, relatedModel, parentIDs, relatedTableName)
|
||||
if err != nil {
|
||||
logger.Error("Failed to process relation array item: name=%s[%d], table=%s, operation=%s, parentID=%v, data=%+v, error=%v",
|
||||
relationName, i, relatedTableName, operation, parentID, itemMap, err)
|
||||
return fmt.Errorf("failed to process relation %s[%d]: %w", relationName, i, err)
|
||||
}
|
||||
} else {
|
||||
logger.Warn("Relation array item is not a map: name=%s[%d], type=%T", relationName, i, item)
|
||||
}
|
||||
}
|
||||
|
||||
case []map[string]interface{}:
|
||||
// Multiple related objects (typed slice)
|
||||
for i, itemMap := range v {
|
||||
// Directly set foreign key if specified
|
||||
// IMPORTANT: In recursive relationships, don't overwrite the primary key
|
||||
if parentID != nil && foreignKeyFieldName != "" && foreignKeyFieldName != childPKFieldName {
|
||||
itemMap[foreignKeyFieldName] = parentID
|
||||
logger.Debug("Set foreign key in relation typed array[%d]: %s=%v", i, foreignKeyFieldName, parentID)
|
||||
} else if foreignKeyFieldName == childPKFieldName {
|
||||
logger.Debug("Skipping foreign key assignment in typed array[%d] - same as primary key (recursive relationship): %s", i, foreignKeyFieldName)
|
||||
}
|
||||
_, err := p.ProcessNestedCUD(ctx, operation, itemMap, relatedModel, parentIDs, relatedTableName)
|
||||
if err != nil {
|
||||
logger.Error("Failed to process relation typed array item: name=%s[%d], table=%s, operation=%s, parentID=%v, data=%+v, error=%v",
|
||||
relationName, i, relatedTableName, operation, parentID, itemMap, err)
|
||||
return fmt.Errorf("failed to process relation %s[%d]: %w", relationName, i, err)
|
||||
}
|
||||
}
|
||||
|
||||
default:
|
||||
logger.Error("Unsupported relation data type: name=%s, type=%T, value=%+v", relationName, relationValue, relationValue)
|
||||
}
|
||||
}
|
||||
|
||||
return nil
|
||||
}
|
||||
|
||||
// getTableNameForModel gets the table name for a model
|
||||
func (p *NestedCUDProcessor) getTableNameForModel(model interface{}, defaultName string) string {
|
||||
if provider, ok := model.(TableNameProvider); ok {
|
||||
tableName := provider.TableName()
|
||||
if tableName != "" {
|
||||
return tableName
|
||||
}
|
||||
}
|
||||
return defaultName
|
||||
}
|
||||
|
||||
// ShouldUseNestedProcessor determines if we should use nested CUD processing
|
||||
// It recursively checks if the data contains:
|
||||
// 1. A _request field at any level, OR
|
||||
// 2. Nested relations that themselves contain further nested relations or _request fields
|
||||
// This ensures nested processing is only used when there are deeply nested operations
|
||||
func ShouldUseNestedProcessor(data map[string]interface{}, model interface{}, relationshipHelper RelationshipInfoProvider) bool {
|
||||
return shouldUseNestedProcessorDepth(data, model, relationshipHelper, 0)
|
||||
}
|
||||
|
||||
// shouldUseNestedProcessorDepth is the internal recursive implementation with depth tracking
|
||||
func shouldUseNestedProcessorDepth(data map[string]interface{}, model interface{}, relationshipHelper RelationshipInfoProvider, depth int) bool {
|
||||
// Check for _request field
|
||||
if _, hasCRUDRequest := data["_request"]; hasCRUDRequest {
|
||||
return true
|
||||
}
|
||||
|
||||
// Get model type
|
||||
modelType := reflect.TypeOf(model)
|
||||
for modelType != nil && (modelType.Kind() == reflect.Pointer || modelType.Kind() == reflect.Slice || modelType.Kind() == reflect.Array) {
|
||||
modelType = modelType.Elem()
|
||||
}
|
||||
|
||||
if modelType == nil || modelType.Kind() != reflect.Struct {
|
||||
return false
|
||||
}
|
||||
|
||||
// Check if data contains any fields that are relations (nested objects or arrays)
|
||||
for key, value := range data {
|
||||
// Skip _request and regular scalar fields
|
||||
if key == "_request" {
|
||||
continue
|
||||
}
|
||||
|
||||
// Check if this field is a relation in the model
|
||||
relInfo := relationshipHelper.GetRelationshipInfo(modelType, key)
|
||||
if relInfo != nil {
|
||||
// Check if the value is actually nested data (object or array)
|
||||
switch v := value.(type) {
|
||||
case map[string]interface{}, []interface{}, []map[string]interface{}:
|
||||
// If we're already at a nested level (depth > 0) and found a relation,
|
||||
// that means we have multi-level nesting, so return true
|
||||
if depth > 0 {
|
||||
return true
|
||||
}
|
||||
// At depth 0, recurse to check if the nested data has further nesting
|
||||
switch typedValue := v.(type) {
|
||||
case map[string]interface{}:
|
||||
if shouldUseNestedProcessorDepth(typedValue, relInfo.RelatedModel, relationshipHelper, depth+1) {
|
||||
return true
|
||||
}
|
||||
case []interface{}:
|
||||
for _, item := range typedValue {
|
||||
if itemMap, ok := item.(map[string]interface{}); ok {
|
||||
if shouldUseNestedProcessorDepth(itemMap, relInfo.RelatedModel, relationshipHelper, depth+1) {
|
||||
return true
|
||||
}
|
||||
}
|
||||
}
|
||||
case []map[string]interface{}:
|
||||
for _, itemMap := range typedValue {
|
||||
if shouldUseNestedProcessorDepth(itemMap, relInfo.RelatedModel, relationshipHelper, depth+1) {
|
||||
return true
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
return false
|
||||
}
|
||||
Reference in New Issue
Block a user