geometries: add /geometries/entity search by entity name

This commit is contained in:
taDuc
2026-05-05 22:29:54 +07:00
parent 0a1c0bdf47
commit 3e202edcc5
7 changed files with 312 additions and 0 deletions

View File

@@ -80,6 +80,37 @@ WHERE g.is_deleted = false
)
ORDER BY g.id DESC;
-- name: SearchGeometriesByEntityName :many
WITH matched_entities AS (
SELECT
e.id,
e.name,
e.description
FROM entities e
WHERE e.is_deleted = false
AND (sqlc.narg('name')::text IS NULL OR e.name ILIKE '%' || sqlc.narg('name')::text || '%')
AND (sqlc.narg('cursor_id')::uuid IS NULL OR e.id < sqlc.narg('cursor_id')::uuid)
ORDER BY e.id DESC
LIMIT sqlc.arg('limit_count')
)
SELECT
me.id AS entity_id,
me.name AS entity_name,
me.description AS entity_description,
g.id AS geometry_id,
g.geo_type,
g.draw_geometry,
g.binding,
g.time_start,
g.time_end
FROM matched_entities me
LEFT JOIN entity_geometries eg
ON eg.entity_id = me.id
LEFT JOIN geometries g
ON g.id = eg.geometry_id
AND g.is_deleted = false
ORDER BY me.id DESC, g.id DESC;
-- name: BulkDeleteEntityGeometriesByEntityId :many
DELETE FROM entity_geometries
WHERE entity_id = $1

View File

@@ -81,3 +81,40 @@ func (h *GeometryController) SearchGeometries(c fiber.Ctx) error {
Data: res,
})
}
// SearchGeometriesByEntityName handles searching entities by name and returning geometries linked to those entities.
// Cursor pagination is based on entity ID (uuid).
// @Summary Search geometries by entity name
// @Description Search entities by name (cursor pagination) and return their linked geometries
// @Tags Geometries
// @Accept json
// @Produce json
// @Param query query request.SearchGeometriesByEntityNameDto false "Search Query"
// @Success 200 {object} response.CommonResponse
// @Failure 500 {object} response.CommonResponse
// @Router /geometries/entity [get]
func (h *GeometryController) SearchGeometriesByEntityName(c fiber.Ctx) error {
ctx, cancel := context.WithTimeout(context.Background(), 10*time.Second)
defer cancel()
dto := &request.SearchGeometriesByEntityNameDto{}
if err := validator.ValidateQueryDto(c, dto); err != nil {
return c.Status(fiber.StatusBadRequest).JSON(response.CommonResponse{
Status: false,
Errors: err,
})
}
res, err := h.service.SearchGeometriesByEntityName(ctx, dto)
if err != nil {
return c.Status(err.Code).JSON(response.CommonResponse{
Status: false,
Message: err.Message,
})
}
return c.Status(fiber.StatusOK).JSON(response.CommonResponse{
Status: true,
Data: res,
})
}

View File

@@ -9,3 +9,11 @@ type SearchGeometryDto struct {
EntityID *string `json:"entity_id" query:"entity_id" validate:"omitempty,uuid"`
ProjectID *string `json:"project_id" query:"project_id" validate:"omitempty,uuid"`
}
type SearchGeometriesByEntityNameDto struct {
// Entity name keyword for searching. FE will render the result list by entity name.
Name string `json:"name" query:"name" validate:"required,max=255"`
// Cursor is entity UUID (id < cursor).
Cursor string `json:"cursor" query:"cursor" validate:"omitempty,uuid"`
Limit int `json:"limit" query:"limit" validate:"omitempty,min=1,max=100"`
}

View File

@@ -0,0 +1,26 @@
package response
import "encoding/json"
// SearchGeometriesByEntityNameResponse groups geometries by matched entities.
// Cursor pagination is based on entity_id (descending).
type SearchGeometriesByEntityNameResponse struct {
Items []*EntityGeometriesSearchItem `json:"items"`
NextCursor string `json:"next_cursor,omitempty"`
}
type EntityGeometriesSearchItem struct {
EntityID string `json:"entity_id"`
Name string `json:"name"`
Description string `json:"description"`
Geometries []*EntityGeometrySearchGeo `json:"geometries"`
}
type EntityGeometrySearchGeo struct {
ID string `json:"id"`
GeoType int16 `json:"geo_type"`
DrawGeometry json.RawMessage `json:"draw_geometry"`
Binding json.RawMessage `json:"binding,omitempty"`
TimeStart *int32 `json:"time_start,omitempty"`
TimeEnd *int32 `json:"time_end,omitempty"`
}

View File

@@ -21,6 +21,7 @@ type GeometryRepository interface {
GetByID(ctx context.Context, id pgtype.UUID) (*models.GeometryEntity, error)
GetByIDs(ctx context.Context, ids []string) ([]*models.GeometryEntity, error)
Search(ctx context.Context, params sqlc.SearchGeometriesParams) ([]*models.GeometryEntity, error)
SearchByEntityName(ctx context.Context, name string, cursorID *pgtype.UUID, limit int32) ([]EntityGeometriesSearchRow, error)
Create(ctx context.Context, params sqlc.CreateGeometryParams) (*models.GeometryEntity, error)
Update(ctx context.Context, params sqlc.UpdateGeometryParams) (*models.GeometryEntity, error)
Delete(ctx context.Context, id pgtype.UUID) error
@@ -37,12 +38,14 @@ type GeometryRepository interface {
type geometryRepository struct {
q *sqlc.Queries
c cache.Cache
db sqlc.DBTX
}
func NewGeometryRepository(db sqlc.DBTX, c cache.Cache) GeometryRepository {
return &geometryRepository{
q: sqlc.New(db),
c: c,
db: db,
}
}
@@ -50,9 +53,24 @@ func (r *geometryRepository) WithTx(tx pgx.Tx) GeometryRepository {
return &geometryRepository{
q: r.q.WithTx(tx),
c: r.c,
db: tx,
}
}
// EntityGeometriesSearchRow is a "flattened" row shape for searching geometries by entity name.
// FE will display entity list by entity_name, while still having geometries in the same response.
type EntityGeometriesSearchRow struct {
EntityID string `json:"entity_id"`
EntityName string `json:"name"`
EntityDescription string `json:"description"`
GeometryID string `json:"id"`
GeoType int16 `json:"geo_type"`
DrawGeometry json.RawMessage `json:"draw_geometry"`
Binding json.RawMessage `json:"binding,omitempty"`
TimeStart *int32 `json:"time_start,omitempty"`
TimeEnd *int32 `json:"time_end,omitempty"`
}
func (r *geometryRepository) generateQueryKey(prefix string, params any) string {
b, _ := json.Marshal(params)
hash := fmt.Sprintf("%x", md5.Sum(b))
@@ -377,3 +395,122 @@ func (r *geometryRepository) DeleteEntityGeometry(ctx context.Context, entityID
GeometryID: geometryID,
})
}
func (r *geometryRepository) SearchByEntityName(
ctx context.Context,
name string,
cursorID *pgtype.UUID,
limit int32,
) ([]EntityGeometriesSearchRow, error) {
// Cursor is entity_id (not geometry_id) so FE can render entities as the primary list.
const q = `
WITH matched_entities AS (
SELECT
e.id,
e.name,
e.description
FROM entities e
WHERE e.is_deleted = false
AND ($1::text = '' OR e.name ILIKE '%' || $1::text || '%')
AND ($2::uuid IS NULL OR e.id < $2::uuid)
ORDER BY e.id DESC
LIMIT $3
)
SELECT
me.id AS entity_id,
me.name AS entity_name,
COALESCE(me.description, '') AS entity_description,
g.id AS geometry_id,
g.geo_type,
g.draw_geometry,
g.binding,
g.time_start,
g.time_end
FROM matched_entities me
LEFT JOIN entity_geometries eg
ON eg.entity_id = me.id
LEFT JOIN geometries g
ON g.id = eg.geometry_id
AND g.is_deleted = false
ORDER BY me.id DESC, g.id DESC
`
var cursor pgtype.UUID
if cursorID != nil {
cursor = *cursorID
} else {
cursor = pgtype.UUID{Valid: false}
}
rows, err := r.db.Query(ctx, q, name, cursor, limit)
if err != nil {
return nil, err
}
defer rows.Close()
out := make([]EntityGeometriesSearchRow, 0)
for rows.Next() {
var entityID pgtype.UUID
var entityName pgtype.Text
var entityDesc pgtype.Text
var geoID pgtype.UUID
var geoType pgtype.Int2
var draw json.RawMessage
var binding json.RawMessage
var timeStart pgtype.Int4
var timeEnd pgtype.Int4
if err := rows.Scan(
&entityID,
&entityName,
&entityDesc,
&geoID,
&geoType,
&draw,
&binding,
&timeStart,
&timeEnd,
); err != nil {
return nil, err
}
var ts *int32
if timeStart.Valid {
v := timeStart.Int32
ts = &v
}
var te *int32
if timeEnd.Valid {
v := timeEnd.Int32
te = &v
}
row := EntityGeometriesSearchRow{
EntityID: convert.UUIDToString(entityID),
EntityName: entityName.String,
EntityDescription: entityDesc.String,
GeometryID: convert.UUIDToString(geoID),
GeoType: geoType.Int16,
DrawGeometry: draw,
Binding: binding,
TimeStart: ts,
TimeEnd: te,
}
// Entity with no geometry will have NULL geometry_id.
if !geoID.Valid {
row.GeometryID = ""
row.GeoType = 0
row.DrawGeometry = nil
row.Binding = nil
row.TimeStart = nil
row.TimeEnd = nil
}
out = append(out, row)
}
if err := rows.Err(); err != nil {
return nil, err
}
return out, nil
}

View File

@@ -9,5 +9,6 @@ import (
func GeometryRoutes(router fiber.Router, geometryController *controllers.GeometryController) {
geometry := router.Group("/geometries")
geometry.Get("/", geometryController.SearchGeometries)
geometry.Get("/entity", geometryController.SearchGeometriesByEntityName)
geometry.Get("/:id", geometryController.GetGeometryById)
}

View File

@@ -16,6 +16,7 @@ import (
type GeometryService interface {
GetGeometryByID(ctx context.Context, id string) (*response.GeometryResponse, *fiber.Error)
SearchGeometries(ctx context.Context, req *request.SearchGeometryDto) ([]*response.GeometryResponse, *fiber.Error)
SearchGeometriesByEntityName(ctx context.Context, req *request.SearchGeometriesByEntityNameDto) (*response.SearchGeometriesByEntityNameResponse, *fiber.Error)
}
type geometryService struct {
@@ -75,3 +76,74 @@ func (s *geometryService) SearchGeometries(ctx context.Context, req *request.Sea
return models.GeometriesEntityToResponse(geometries), nil
}
func (s *geometryService) SearchGeometriesByEntityName(
ctx context.Context,
req *request.SearchGeometriesByEntityNameDto,
) (*response.SearchGeometriesByEntityNameResponse, *fiber.Error) {
limit := int32(req.Limit)
if limit <= 0 {
limit = 20
}
var cursorID *pgtype.UUID
if req.Cursor != "" {
id, err := convert.StringToUUID(req.Cursor)
if err != nil {
return nil, fiber.NewError(fiber.StatusBadRequest, "Invalid cursor format")
}
cursorID = &id
}
rows, err := s.geometryRepo.SearchByEntityName(ctx, req.Name, cursorID, limit)
if err != nil {
return nil, fiber.NewError(fiber.StatusInternalServerError, "Failed to search geometries by entity name")
}
byEntity := make(map[string]*response.EntityGeometriesSearchItem)
order := make([]string, 0)
for _, row := range rows {
item := byEntity[row.EntityID]
if item == nil {
item = &response.EntityGeometriesSearchItem{
EntityID: row.EntityID,
Name: row.EntityName,
Description: row.EntityDescription,
Geometries: make([]*response.EntityGeometrySearchGeo, 0),
}
byEntity[row.EntityID] = item
order = append(order, row.EntityID)
}
// LEFT JOIN: entity might have no geometry.
if row.GeometryID == "" || len(row.DrawGeometry) == 0 {
continue
}
item.Geometries = append(item.Geometries, &response.EntityGeometrySearchGeo{
ID: row.GeometryID,
GeoType: row.GeoType,
DrawGeometry: row.DrawGeometry,
Binding: row.Binding,
TimeStart: row.TimeStart,
TimeEnd: row.TimeEnd,
})
}
items := make([]*response.EntityGeometriesSearchItem, 0, len(order))
for _, entityID := range order {
items = append(items, byEntity[entityID])
}
nextCursor := ""
if len(order) > 0 {
// Use last entity id in the current page as the cursor for the next page (id < cursor).
nextCursor = order[len(order)-1]
}
return &response.SearchGeometriesByEntityNameResponse{
Items: items,
NextCursor: nextCursor,
}, nil
}