Files
ResolveSpec/pkg/resolvemcp/tools.go
T

353 lines
8.2 KiB
Go

package resolvemcp
import (
"encoding/json"
"fmt"
"reflect"
"strings"
"github.com/mark3labs/mcp-go/mcp"
"github.com/bitechdev/ResolveSpec/pkg/common"
"github.com/bitechdev/ResolveSpec/pkg/reflection"
)
// modelInfo holds pre-computed metadata for a model used in tool descriptions.
type modelInfo struct {
fullName string // e.g. "public.users"
pkName string // e.g. "id"
columns []columnInfo
relationNames []string
schemaDoc string // formatted multi-line schema listing
}
type columnInfo struct {
jsonName string
sqlName string
goType string
sqlType string
isPrimary bool
isUnique bool
isFK bool
nullable bool
}
// buildModelInfo extracts column metadata and pre-builds the schema documentation string.
func buildModelInfo(schema, entity string, model interface{}) modelInfo {
info := modelInfo{
fullName: buildModelName(schema, entity),
pkName: reflection.GetPrimaryKeyName(model),
}
// Unwrap to base struct type
modelType := reflect.TypeOf(model)
for modelType != nil && (modelType.Kind() == reflect.Pointer || modelType.Kind() == reflect.Slice) {
modelType = modelType.Elem()
}
if modelType == nil || modelType.Kind() != reflect.Struct {
return info
}
details := reflection.GetModelColumnDetail(reflect.New(modelType).Elem())
for _, d := range details {
// Derive the JSON name from the struct field
jsonName := fieldJSONName(modelType, d.Name)
if jsonName == "" || jsonName == "-" {
continue
}
// Skip relation fields (slice or user-defined struct that isn't time.Time).
fieldType, found := modelType.FieldByName(d.Name)
var unwrappedType reflect.Type
isSQLType := false
if found {
ft := fieldType.Type
if sqlType, ok := unwrapSQLType(ft); ok {
unwrappedType = sqlType
ft = sqlType
isSQLType = true
} else if ft.Kind() == reflect.Pointer {
ft = ft.Elem()
}
isUserStruct := ft.Kind() == reflect.Struct && ft.Name() != "Time" && ft.PkgPath() != ""
if !isSQLType && (ft.Kind() == reflect.Slice || isUserStruct) {
info.relationNames = append(info.relationNames, jsonName)
continue
}
}
sqlName := d.SQLName
if sqlName == "" {
sqlName = jsonName
}
// Derive Go type name, unwrapping pointer if needed.
goType := d.DataType
if isSQLType {
goType = unwrappedType.Name()
}
if goType == "" && found {
ft := fieldType.Type
for ft.Kind() == reflect.Pointer {
ft = ft.Elem()
}
goType = ft.Name()
}
// isPrimary: use both the GORM-tag detection and a name comparison against
// the known primary key (handles camelCase "primaryKey" tags correctly).
isPrimary := d.SQLKey == "primary_key" ||
(info.pkName != "" && (sqlName == info.pkName || jsonName == info.pkName))
ci := columnInfo{
jsonName: jsonName,
sqlName: sqlName,
goType: goType,
sqlType: d.SQLDataType,
isPrimary: isPrimary,
isUnique: d.SQLKey == "unique" || d.SQLKey == "uniqueindex",
isFK: d.SQLKey == "foreign_key",
nullable: isSQLType || d.Nullable,
}
info.columns = append(info.columns, ci)
}
info.schemaDoc = buildSchemaDoc(info)
return info
}
// unwrapSQLType returns the value type wrapped by a spectypes SQL value. These
// types are scalar columns even when their Go representation is a struct or a
// slice (for example, SqlNull[string] and SqlJSONB).
func unwrapSQLType(t reflect.Type) (reflect.Type, bool) {
for t.Kind() == reflect.Pointer {
t = t.Elem()
}
if t.PkgPath() != "github.com/bitechdev/ResolveSpec/pkg/spectypes" {
return nil, false
}
if t.Kind() == reflect.Struct {
if value, ok := t.FieldByName("Val"); ok {
return value.Type, true
}
}
return t, true
}
// fieldJSONName returns the JSON tag name for a struct field, falling back to the field name.
func fieldJSONName(modelType reflect.Type, fieldName string) string {
field, ok := modelType.FieldByName(fieldName)
if !ok {
return fieldName
}
tag := field.Tag.Get("json")
if tag == "" {
return fieldName
}
parts := strings.SplitN(tag, ",", 2)
if parts[0] == "" {
return fieldName
}
return parts[0]
}
// buildSchemaDoc builds a human-readable column listing for inclusion in tool descriptions.
func buildSchemaDoc(info modelInfo) string {
if len(info.columns) == 0 {
return ""
}
var sb strings.Builder
sb.WriteString("Columns:\n")
for _, c := range info.columns {
line := fmt.Sprintf(" • %s", c.jsonName)
typeDesc := c.goType
if c.sqlType != "" {
typeDesc = c.sqlType
}
if typeDesc != "" {
line += fmt.Sprintf(" (%s)", typeDesc)
}
var flags []string
if c.isPrimary {
flags = append(flags, "primary key")
}
if c.isUnique {
flags = append(flags, "unique")
}
if c.isFK {
flags = append(flags, "foreign key")
}
if !c.nullable && !c.isPrimary {
flags = append(flags, "not null")
} else if c.nullable {
flags = append(flags, "nullable")
}
if len(flags) > 0 {
line += " — " + strings.Join(flags, ", ")
}
sb.WriteString(line + "\n")
}
if len(info.relationNames) > 0 {
sb.WriteString("Relations (preloadable): " + strings.Join(info.relationNames, ", ") + "\n")
}
return sb.String()
}
// parseRequestOptions reads the paging, filter, sort, column and preload arguments shared
// by the read tools.
func parseRequestOptions(args map[string]interface{}) common.RequestOptions {
options := common.RequestOptions{}
if v, ok := args["limit"]; ok {
switch n := v.(type) {
case float64:
limit := int(n)
options.Limit = &limit
case int:
options.Limit = &n
}
}
if v, ok := args["offset"]; ok {
switch n := v.(type) {
case float64:
offset := int(n)
options.Offset = &offset
case int:
options.Offset = &n
}
}
if v, ok := args["cursor_forward"].(string); ok {
options.CursorForward = v
}
if v, ok := args["cursor_backward"].(string); ok {
options.CursorBackward = v
}
options.Columns = parseStringArray(args["columns"])
options.OmitColumns = parseStringArray(args["omit_columns"])
options.Filters = parseFilters(args["filters"])
options.Sort = parseSortOptions(args["sort"])
options.Preload = parsePreloadOptions(args["preloads"])
return options
}
func parseStringArray(raw interface{}) []string {
if raw == nil {
return nil
}
items, ok := raw.([]interface{})
if !ok {
return nil
}
result := make([]string, 0, len(items))
for _, item := range items {
if s, ok := item.(string); ok {
result = append(result, s)
}
}
return result
}
func parseFilters(raw interface{}) []common.FilterOption {
if raw == nil {
return nil
}
items, ok := raw.([]interface{})
if !ok {
return nil
}
result := make([]common.FilterOption, 0, len(items))
for _, item := range items {
b, err := json.Marshal(item)
if err != nil {
continue
}
var f common.FilterOption
if err := json.Unmarshal(b, &f); err != nil {
continue
}
if f.Column == "" || f.Operator == "" {
continue
}
if strings.EqualFold(f.LogicOperator, "or") {
f.LogicOperator = "OR"
} else {
f.LogicOperator = "AND"
}
result = append(result, f)
}
return result
}
func parseSortOptions(raw interface{}) []common.SortOption {
if raw == nil {
return nil
}
items, ok := raw.([]interface{})
if !ok {
return nil
}
result := make([]common.SortOption, 0, len(items))
for _, item := range items {
b, err := json.Marshal(item)
if err != nil {
continue
}
var s common.SortOption
if err := json.Unmarshal(b, &s); err != nil {
continue
}
if s.Column == "" {
continue
}
result = append(result, s)
}
return result
}
func parsePreloadOptions(raw interface{}) []common.PreloadOption {
if raw == nil {
return nil
}
items, ok := raw.([]interface{})
if !ok {
return nil
}
result := make([]common.PreloadOption, 0, len(items))
for _, item := range items {
b, err := json.Marshal(item)
if err != nil {
continue
}
var p common.PreloadOption
if err := json.Unmarshal(b, &p); err != nil {
continue
}
if p.Relation == "" {
continue
}
result = append(result, p)
}
return result
}
// marshalResult marshals a value to JSON and returns it as an MCP text result.
func marshalResult(v interface{}) (*mcp.CallToolResult, error) {
b, err := json.Marshal(v)
if err != nil {
return mcp.NewToolResultError(fmt.Sprintf("error marshaling result: %v", err)), nil
}
return mcp.NewToolResultText(string(b)), nil
}