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358 lines
6.4 KiB
V
358 lines
6.4 KiB
V
// import os
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// import term
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import time
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// import pg
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import sqlite
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struct Module {
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id int [primary; sql: serial]
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name string
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nr_downloads int
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test_id u64
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user User
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created time.Time
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}
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[table: 'userlist']
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struct User {
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id int [primary; sql: serial]
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age int
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name string [sql: 'username']
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is_customer bool
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skipped_string string [skip]
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}
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struct Foo {
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age int
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}
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struct TestTime {
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id int [primary; sql: serial]
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create time.Time
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}
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fn test_orm() {
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db := sqlite.connect(':memory:') or { panic(err) }
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// db.exec('drop table if exists User')
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// db := pg.connect(host: 'localhost', port: 5432, user: 'louis', password: 'abc', dbname: 'orm') or { panic(err) }
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sql db {
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create table Module
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}
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name := 'Peter'
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sam := User{
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age: 29
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name: 'Sam'
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}
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peter := User{
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age: 31
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name: 'Peter'
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}
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k := User{
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age: 30
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name: 'Kate'
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is_customer: true
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}
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sql db {
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insert sam into User
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insert peter into User
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insert k into User
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}
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c := sql db {
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select count from User where id != 1
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}
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assert c == 2
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nr_all_users := sql db {
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select count from User
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}
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assert nr_all_users == 3
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println('nr_all_users=$nr_all_users')
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//
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nr_users1 := sql db {
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select count from User where id == 1
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}
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assert nr_users1 == 1
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println('nr_users1=$nr_users1')
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//
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nr_peters := sql db {
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select count from User where id == 2 && name == 'Peter'
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}
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assert nr_peters == 1
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println('nr_peters=$nr_peters')
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//
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nr_peters2 := sql db {
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select count from User where id == 2 && name == name
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}
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assert nr_peters2 == 1
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nr_peters3 := sql db {
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select count from User where name == name
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}
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assert nr_peters3 == 1
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peters := sql db {
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select from User where name == name
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}
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assert peters.len == 1
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assert peters[0].name == 'Peter'
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one_peter := sql db {
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select from User where name == name limit 1
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}
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assert one_peter.name == 'Peter'
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assert one_peter.id == 2
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//
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user := sql db {
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select from User where id == 1
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}
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println(user)
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assert user.name == 'Sam'
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assert user.id == 1
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assert user.age == 29
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//
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users := sql db {
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select from User where id > 0
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}
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println(users)
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assert users.len == 3
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assert users[0].name == 'Sam'
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assert users[1].name == 'Peter'
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assert users[1].age == 31
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//
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users2 := sql db {
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select from User where id < 0
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}
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println(users2)
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assert users2.len == 0
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//
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users3 := sql db {
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select from User where age == 29 || age == 31
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}
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println(users3)
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assert users3.len == 2
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assert users3[0].age == 29
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assert users3[1].age == 31
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//
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missing_user := sql db {
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select from User where id == 8777
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}
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println('missing_user:')
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println(missing_user) // zero struct
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//
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new_user := User{
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name: 'New user'
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age: 30
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}
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sql db {
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insert new_user into User
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}
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// db.insert<User>(user2)
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x := sql db {
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select from User where id == 4
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}
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println(x)
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assert x.age == 30
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assert x.id == 4
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assert x.name == 'New user'
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//
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kate := sql db {
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select from User where id == 3
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}
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assert kate.is_customer == true
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//
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customer := sql db {
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select from User where is_customer == true limit 1
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}
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assert customer.is_customer == true
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assert customer.name == 'Kate'
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//
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sql db {
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update User set age = 31 where name == 'Kate'
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}
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kate2 := sql db {
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select from User where id == 3
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}
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assert kate2.age == 31
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assert kate2.name == 'Kate'
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//
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sql db {
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update User set age = 32, name = 'Kate N' where name == 'Kate'
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}
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mut kate3 := sql db {
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select from User where id == 3
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}
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assert kate3.age == 32
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assert kate3.name == 'Kate N'
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//
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/*
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sql db {
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update User set age = age + 1, name = 'Kate N' where name == 'Kate'
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}
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kate3 = sql db {
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select from User where id == 3
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}
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println(kate3)
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assert kate3.age == 32
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assert kate3.name == 'Kate N'
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*/
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new_age := 33
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sql db {
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update User set age = new_age, name = 'Kate N' where id == 3
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}
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kate3 = sql db {
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select from User where id == 3
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}
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assert kate3.age == 33
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assert kate3.name == 'Kate N'
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//
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foo := Foo{34}
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sql db {
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update User set age = foo.age, name = 'Kate N' where id == 3
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}
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kate3 = sql db {
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select from User where id == 3
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}
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assert kate3.age == 34
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assert kate3.name == 'Kate N'
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//
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no_user := sql db {
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select from User where id == 30
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}
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assert no_user.name == '' // TODO optional
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assert no_user.age == 0
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//
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two_users := sql db {
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select from User limit 2
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}
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assert two_users.len == 2
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assert two_users[0].id == 1
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//
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y := sql db {
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select from User limit 2 offset 1
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}
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assert y.len == 2
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assert y[0].id == 2
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//
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offset_const := 2
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z := sql db {
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select from User order by id limit 2 offset offset_const
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}
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assert z.len == 2
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assert z[0].id == 3
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oldest := sql db {
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select from User order by age desc limit 1
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}
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assert oldest.age == 34
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offs := 1
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second_oldest := sql db {
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select from User order by age desc limit 1 offset offs
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}
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assert second_oldest.age == 31
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sql db {
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delete from User where age == 34
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}
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updated_oldest := sql db {
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select from User order by age desc limit 1
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}
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assert updated_oldest.age == 31
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// Remove this when pg is used
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db.exec('insert into User (name, age) values (NULL, 31)')
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null_user := sql db {
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select from User where id == 5
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}
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assert null_user.name == ''
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age_test := sql db {
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select from User where id == 1
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}
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assert age_test.age == 29
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sql db {
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update User set age = age + 1 where id == 1
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}
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mut first := sql db {
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select from User where id == 1
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}
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assert first.age == 30
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sql db {
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update User set age = age * 2 where id == 1
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}
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first = sql db {
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select from User where id == 1
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}
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assert first.age == 60
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sql db {
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create table TestTime
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}
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tnow := time.now()
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time_test := TestTime{
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create: tnow
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}
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sql db {
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insert time_test into TestTime
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}
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data := sql db {
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select from TestTime where create == tnow
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}
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assert data.len == 1
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mod := Module{}
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sql db {
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insert mod into Module
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}
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sql db {
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update Module set test_id = 11 where id == 1
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}
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test_id_mod := sql db {
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select from Module where id == 1
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}
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assert test_id_mod.test_id == 11
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t := time.now()
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sql db {
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update Module set created = t where id == 1
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}
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updated_time_mod := sql db {
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select from Module where id == 1
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}
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// Note: usually updated_time_mod.created != t, because t has
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// its microseconds set, while the value retrieved from the DB
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// has them zeroed, because the db field resolution is seconds.
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assert updated_time_mod.created.format_ss() == t.format_ss()
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sql db {
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drop table Module
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drop table TestTime
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}
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}
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