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sql.go
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package sql
import (
"bytes"
"context"
"database/sql"
"errors"
"fmt"
"io"
"net/url"
"os"
"path/filepath"
"strings"
"time"
"github.com/fnproject/fn/api/models"
"github.com/go-sql-driver/mysql"
_ "github.com/go-sql-driver/mysql"
"github.com/jmoiron/sqlx"
"github.com/lib/pq"
_ "github.com/lib/pq"
"github.com/mattn/go-sqlite3"
_ "github.com/mattn/go-sqlite3"
"github.com/sirupsen/logrus"
)
// this aims to be an ANSI-SQL compliant package that uses only question
// mark syntax for var placement, leaning on sqlx to make compatible all
// queries to the actual underlying datastore.
//
// currently tested and working are postgres, mysql and sqlite3.
var tables = [...]string{`CREATE TABLE IF NOT EXISTS routes (
app_name varchar(256) NOT NULL,
path varchar(256) NOT NULL,
image varchar(256) NOT NULL,
format varchar(16) NOT NULL,
memory int NOT NULL,
timeout int NOT NULL,
idle_timeout int NOT NULL,
type varchar(16) NOT NULL,
headers text NOT NULL,
config text NOT NULL,
PRIMARY KEY (app_name, path)
);`,
`CREATE TABLE IF NOT EXISTS apps (
name varchar(256) NOT NULL PRIMARY KEY,
config text NOT NULL
);`,
`CREATE TABLE IF NOT EXISTS calls (
created_at varchar(256) NOT NULL,
started_at varchar(256) NOT NULL,
completed_at varchar(256) NOT NULL,
status varchar(256) NOT NULL,
id varchar(256) NOT NULL,
app_name varchar(256) NOT NULL,
path varchar(256) NOT NULL,
PRIMARY KEY (id)
);`,
`CREATE TABLE IF NOT EXISTS logs (
id varchar(256) NOT NULL PRIMARY KEY,
app_name varchar(256) NOT NULL,
log text NOT NULL
);`,
}
const (
routeSelector = `SELECT app_name, path, image, format, memory, type, timeout, idle_timeout, headers, config FROM routes`
callSelector = `SELECT id, created_at, started_at, completed_at, status, app_name, path FROM calls`
)
type sqlStore struct {
db *sqlx.DB
}
// New will open the db specified by url, create any tables necessary
// and return a models.Datastore safe for concurrent usage.
func New(url *url.URL) (models.Datastore, error) {
driver := url.Scheme
// driver must be one of these for sqlx to work, double check:
switch driver {
case "postgres", "pgx", "mysql", "sqlite3", "oci8", "ora", "goracle":
default:
return nil, errors.New("invalid db driver, refer to the code")
}
if driver == "sqlite3" {
// make all the dirs so we can make the file..
dir := filepath.Dir(url.Path)
err := os.MkdirAll(dir, 0755)
if err != nil {
return nil, err
}
}
uri := url.String()
if driver != "postgres" {
// postgres seems to need this as a prefix in lib/pq, everyone else wants it stripped of scheme
uri = strings.TrimPrefix(url.String(), url.Scheme+"://")
}
sqldb, err := sql.Open(driver, uri)
if err != nil {
logrus.WithFields(logrus.Fields{"url": uri}).WithError(err).Error("couldn't open db")
return nil, err
}
db := sqlx.NewDb(sqldb, driver)
// force a connection and test that it worked
err = db.Ping()
if err != nil {
logrus.WithFields(logrus.Fields{"url": uri}).WithError(err).Error("couldn't ping db")
return nil, err
}
maxIdleConns := 256 // TODO we need to strip this out of the URL probably
db.SetMaxIdleConns(maxIdleConns)
logrus.WithFields(logrus.Fields{"max_idle_connections": maxIdleConns, "datastore": driver}).Info("datastore dialed")
switch driver {
case "sqlite3":
db.SetMaxOpenConns(1)
}
for _, v := range tables {
_, err = db.Exec(v)
if err != nil {
return nil, err
}
}
return &sqlStore{db: db}, nil
}
func (ds *sqlStore) InsertApp(ctx context.Context, app *models.App) (*models.App, error) {
query := ds.db.Rebind("INSERT INTO apps (name, config) VALUES (:name, :config);")
_, err := ds.db.NamedExecContext(ctx, query, app)
if err != nil {
switch err := err.(type) {
case *mysql.MySQLError:
if err.Number == 1062 {
return nil, models.ErrAppsAlreadyExists
}
case *pq.Error:
if err.Code == "23505" {
return nil, models.ErrAppsAlreadyExists
}
case sqlite3.Error:
if err.ExtendedCode == sqlite3.ErrConstraintUnique || err.ExtendedCode == sqlite3.ErrConstraintPrimaryKey {
return nil, models.ErrAppsAlreadyExists
}
}
return nil, err
}
return app, nil
}
func (ds *sqlStore) UpdateApp(ctx context.Context, newapp *models.App) (*models.App, error) {
app := &models.App{Name: newapp.Name}
err := ds.Tx(func(tx *sqlx.Tx) error {
query := tx.Rebind(`SELECT config FROM apps WHERE name=?`)
row := tx.QueryRowxContext(ctx, query, app.Name)
err := row.StructScan(app)
if err == sql.ErrNoRows {
return models.ErrAppsNotFound
} else if err != nil {
return err
}
app.UpdateConfig(newapp.Config)
query = tx.Rebind(`UPDATE apps SET config=:config WHERE name=:name`)
res, err := tx.NamedExecContext(ctx, query, app)
if err != nil {
return err
}
if n, err := res.RowsAffected(); err != nil {
return err
} else if n == 0 {
// inside of the transaction, we are querying for the app, so we know that it exists
return nil
}
return nil
})
if err != nil {
return nil, err
}
return app, nil
}
func (ds *sqlStore) RemoveApp(ctx context.Context, appName string) error {
return ds.Tx(func(tx *sqlx.Tx) error {
res, err := tx.ExecContext(ctx, tx.Rebind(`DELETE FROM apps WHERE name=?`), appName)
if err != nil {
return err
}
n, err := res.RowsAffected()
if err != nil {
return err
}
if n == 0 {
return models.ErrAppsNotFound
}
deletes := []string{
`DELETE FROM logs WHERE app_name=?`,
`DELETE FROM calls WHERE app_name=?`,
`DELETE FROM routes WHERE app_name=?`,
}
for _, stmt := range deletes {
_, err := tx.ExecContext(ctx, tx.Rebind(stmt), appName)
if err != nil {
return err
}
}
return nil
})
}
func (ds *sqlStore) GetApp(ctx context.Context, name string) (*models.App, error) {
query := ds.db.Rebind(`SELECT name, config FROM apps WHERE name=?`)
row := ds.db.QueryRowxContext(ctx, query, name)
var res models.App
err := row.StructScan(&res)
if err == sql.ErrNoRows {
return nil, models.ErrAppsNotFound
} else if err != nil {
return nil, err
}
return &res, nil
}
// GetApps retrieves an array of apps according to a specific filter.
func (ds *sqlStore) GetApps(ctx context.Context, filter *models.AppFilter) ([]*models.App, error) {
res := []*models.App{}
query, args := buildFilterAppQuery(filter)
query = ds.db.Rebind(fmt.Sprintf("SELECT DISTINCT name, config FROM apps %s", query))
rows, err := ds.db.QueryxContext(ctx, query, args...)
if err != nil {
return nil, err
}
defer rows.Close()
for rows.Next() {
var app models.App
err := rows.StructScan(&app)
if err != nil {
if err == sql.ErrNoRows {
return res, nil
}
return res, err
}
res = append(res, &app)
}
if err := rows.Err(); err != nil {
return res, err
}
return res, nil
}
func (ds *sqlStore) InsertRoute(ctx context.Context, route *models.Route) (*models.Route, error) {
err := ds.Tx(func(tx *sqlx.Tx) error {
query := tx.Rebind(`SELECT 1 FROM apps WHERE name=?`)
r := tx.QueryRowContext(ctx, query, route.AppName)
if err := r.Scan(new(int)); err != nil {
if err == sql.ErrNoRows {
return models.ErrAppsNotFound
}
}
query = tx.Rebind(`SELECT 1 FROM routes WHERE app_name=? AND path=?`)
same, err := tx.QueryContext(ctx, query, route.AppName, route.Path)
if err != nil {
return err
}
defer same.Close()
if same.Next() {
return models.ErrRoutesAlreadyExists
}
query = tx.Rebind(`INSERT INTO routes (
app_name,
path,
image,
format,
memory,
type,
timeout,
idle_timeout,
headers,
config
)
VALUES (
:app_name,
:path,
:image,
:format,
:memory,
:type,
:timeout,
:idle_timeout,
:headers,
:config
);`)
_, err = tx.NamedExecContext(ctx, query, route)
return err
})
return route, err
}
func (ds *sqlStore) UpdateRoute(ctx context.Context, newroute *models.Route) (*models.Route, error) {
var route models.Route
err := ds.Tx(func(tx *sqlx.Tx) error {
query := tx.Rebind(fmt.Sprintf("%s WHERE app_name=? AND path=?", routeSelector))
row := tx.QueryRowxContext(ctx, query, newroute.AppName, newroute.Path)
err := row.StructScan(&route)
if err == sql.ErrNoRows {
return models.ErrRoutesNotFound
} else if err != nil {
return err
}
route.Update(newroute)
err = route.Validate()
if err != nil {
return err
}
query = tx.Rebind(`UPDATE routes SET
image = :image,
format = :format,
memory = :memory,
type = :type,
timeout = :timeout,
idle_timeout = :idle_timeout,
headers = :headers,
config = :config
WHERE app_name=:app_name AND path=:path;`)
res, err := tx.NamedExecContext(ctx, query, &route)
if err != nil {
return err
}
if n, err := res.RowsAffected(); err != nil {
return err
} else if n == 0 {
// inside of the transaction, we are querying for the row, so we know that it exists
return nil
}
return nil
})
if err != nil {
return nil, err
}
return &route, nil
}
func (ds *sqlStore) RemoveRoute(ctx context.Context, appName, routePath string) error {
query := ds.db.Rebind(`DELETE FROM routes WHERE path = ? AND app_name = ?`)
res, err := ds.db.ExecContext(ctx, query, routePath, appName)
if err != nil {
return err
}
n, err := res.RowsAffected()
if err != nil {
return err
}
if n == 0 {
return models.ErrRoutesNotFound
}
return nil
}
func (ds *sqlStore) GetRoute(ctx context.Context, appName, routePath string) (*models.Route, error) {
rSelectCondition := "%s WHERE app_name=? AND path=?"
query := ds.db.Rebind(fmt.Sprintf(rSelectCondition, routeSelector))
row := ds.db.QueryRowxContext(ctx, query, appName, routePath)
var route models.Route
err := row.StructScan(&route)
if err == sql.ErrNoRows {
return nil, models.ErrRoutesNotFound
} else if err != nil {
return nil, err
}
return &route, nil
}
// GetRoutesByApp retrieves a route with a specific app name.
func (ds *sqlStore) GetRoutesByApp(ctx context.Context, appName string, filter *models.RouteFilter) ([]*models.Route, error) {
res := []*models.Route{}
if filter == nil {
filter = new(models.RouteFilter)
}
filter.AppName = appName
filterQuery, args := buildFilterRouteQuery(filter)
query := fmt.Sprintf("%s %s", routeSelector, filterQuery)
query = ds.db.Rebind(query)
rows, err := ds.db.QueryxContext(ctx, query, args...)
if err != nil {
if err == sql.ErrNoRows {
return res, nil // no error for empty list
}
return nil, err
}
defer rows.Close()
for rows.Next() {
var route models.Route
err := rows.StructScan(&route)
if err != nil {
continue
}
res = append(res, &route)
}
if err := rows.Err(); err != nil {
if err == sql.ErrNoRows {
return res, nil // no error for empty list
}
}
return res, nil
}
func (ds *sqlStore) Tx(f func(*sqlx.Tx) error) error {
tx, err := ds.db.Beginx()
if err != nil {
return err
}
err = f(tx)
if err != nil {
tx.Rollback()
return err
}
return tx.Commit()
}
func (ds *sqlStore) InsertCall(ctx context.Context, call *models.Call) error {
query := ds.db.Rebind(`INSERT INTO calls (
id,
created_at,
started_at,
completed_at,
status,
app_name,
path
)
VALUES (
:id,
:created_at,
:started_at,
:completed_at,
:status,
:app_name,
:path
);`)
_, err := ds.db.NamedExecContext(ctx, query, call)
return err
}
func (ds *sqlStore) GetCall(ctx context.Context, appName, callID string) (*models.Call, error) {
query := fmt.Sprintf(`%s WHERE id=? AND app_name=?`, callSelector)
query = ds.db.Rebind(query)
row := ds.db.QueryRowxContext(ctx, query, callID, appName)
var call models.Call
err := row.StructScan(&call)
if err != nil {
if err == sql.ErrNoRows {
return nil, models.ErrCallNotFound
}
return nil, err
}
return &call, nil
}
func (ds *sqlStore) GetCalls(ctx context.Context, filter *models.CallFilter) ([]*models.Call, error) {
res := []*models.Call{}
query, args := buildFilterCallQuery(filter)
query = fmt.Sprintf("%s %s", callSelector, query)
query = ds.db.Rebind(query)
rows, err := ds.db.QueryxContext(ctx, query, args...)
if err != nil {
return nil, err
}
defer rows.Close()
for rows.Next() {
var call models.Call
err := rows.StructScan(&call)
if err != nil {
continue
}
res = append(res, &call)
}
if err := rows.Err(); err != nil {
return nil, err
}
return res, nil
}
func (ds *sqlStore) InsertLog(ctx context.Context, appName, callID string, logR io.Reader) error {
// coerce this into a string for sql
var log string
if stringer, ok := logR.(fmt.Stringer); ok {
log = stringer.String()
} else {
// TODO we could optimize for Size / buffer pool, but atm we aren't hitting
// this code path anyway (a fallback)
var b bytes.Buffer
io.Copy(&b, logR)
log = b.String()
}
query := ds.db.Rebind(`INSERT INTO logs (id, app_name, log) VALUES (?, ?, ?);`)
_, err := ds.db.ExecContext(ctx, query, callID, appName, log)
return err
}
func (ds *sqlStore) GetLog(ctx context.Context, appName, callID string) (*models.CallLog, error) {
query := ds.db.Rebind(`SELECT log FROM logs WHERE id=? AND app_name=?`)
row := ds.db.QueryRowContext(ctx, query, callID, appName)
var log string
err := row.Scan(&log)
if err != nil {
if err == sql.ErrNoRows {
return nil, models.ErrCallLogNotFound
}
return nil, err
}
return &models.CallLog{
CallID: callID,
Log: log,
AppName: appName,
}, nil
}
func (ds *sqlStore) DeleteLog(ctx context.Context, appName, callID string) error {
query := ds.db.Rebind(`DELETE FROM logs WHERE id=? AND app_name=?`)
_, err := ds.db.ExecContext(ctx, query, callID, appName)
return err
}
func buildFilterRouteQuery(filter *models.RouteFilter) (string, []interface{}) {
if filter == nil {
return "", nil
}
var b bytes.Buffer
var args []interface{}
where := func(colOp, val string) {
if val != "" {
args = append(args, val)
if len(args) == 1 {
fmt.Fprintf(&b, `WHERE %s`, colOp)
} else {
fmt.Fprintf(&b, ` AND %s`, colOp)
}
}
}
where("app_name=? ", filter.AppName)
where("image=?", filter.Image)
where("path>?", filter.Cursor)
// where("path LIKE ?%", filter.PathPrefix) TODO needs escaping
fmt.Fprintf(&b, ` ORDER BY path ASC`) // TODO assert this is indexed
fmt.Fprintf(&b, ` LIMIT ?`)
args = append(args, filter.PerPage)
return b.String(), args
}
func buildFilterAppQuery(filter *models.AppFilter) (string, []interface{}) {
if filter == nil {
return "", nil
}
var b bytes.Buffer
var args []interface{}
where := func(colOp, val string) {
if val != "" {
args = append(args, val)
if len(args) == 1 {
fmt.Fprintf(&b, `WHERE %s`, colOp)
} else {
fmt.Fprintf(&b, ` AND %s`, colOp)
}
}
}
// where("name LIKE ?%", filter.Name) // TODO needs escaping?
where("name>?", filter.Cursor)
fmt.Fprintf(&b, ` ORDER BY name ASC`) // TODO assert this is indexed
fmt.Fprintf(&b, ` LIMIT ?`)
args = append(args, filter.PerPage)
return b.String(), args
}
func buildFilterCallQuery(filter *models.CallFilter) (string, []interface{}) {
if filter == nil {
return "", nil
}
var b bytes.Buffer
var args []interface{}
where := func(colOp, val string) {
if val != "" {
args = append(args, val)
if len(args) == 1 {
fmt.Fprintf(&b, `WHERE %s?`, colOp)
} else {
fmt.Fprintf(&b, ` AND %s?`, colOp)
}
}
}
where("id<", filter.Cursor)
if !time.Time(filter.ToTime).IsZero() {
where("created_at<", filter.ToTime.String())
}
if !time.Time(filter.FromTime).IsZero() {
where("created_at>", filter.FromTime.String())
}
where("app_name=", filter.AppName)
where("path=", filter.Path)
fmt.Fprintf(&b, ` ORDER BY id DESC`) // TODO assert this is indexed
fmt.Fprintf(&b, ` LIMIT ?`)
args = append(args, filter.PerPage)
return b.String(), args
}
// GetDatabase returns the underlying sqlx database implementation
func (ds *sqlStore) GetDatabase() *sqlx.DB {
return ds.db
}