mirror of
https://github.com/vlang/v.git
synced 2023-08-10 21:13:21 +03:00
540 lines
11 KiB
V
540 lines
11 KiB
V
module orm
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import time
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import v.ast
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pub const (
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num64 = [ast.i64_type_idx, ast.u64_type_idx]
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nums = [
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ast.i8_type_idx,
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ast.i16_type_idx,
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ast.int_type_idx,
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ast.u8_type_idx,
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ast.u16_type_idx,
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ast.u32_type_idx,
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ast.bool_type_idx,
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]
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float = [
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ast.f32_type_idx,
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ast.f64_type_idx,
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]
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string = ast.string_type_idx
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time = -2
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serial = -1
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type_idx = {
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'i8': ast.i8_type_idx
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'i16': ast.i16_type_idx
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'int': ast.int_type_idx
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'i64': ast.i64_type_idx
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'u8': ast.u8_type_idx
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'u16': ast.u16_type_idx
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'u32': ast.u32_type_idx
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'u64': ast.u64_type_idx
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'f32': ast.f32_type_idx
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'f64': ast.f64_type_idx
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'bool': ast.bool_type_idx
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'string': ast.string_type_idx
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}
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string_max_len = 2048
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)
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pub type Primitive = InfixType
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| bool
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| f32
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| f64
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| i16
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| i64
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| i8
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| int
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| string
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| time.Time
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| u16
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| u32
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| u64
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| u8
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pub enum OperationKind {
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neq // !=
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eq // ==
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gt // >
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lt // <
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ge // >=
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le // <=
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}
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pub enum MathOperationKind {
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add // +
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sub // -
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mul // *
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div // /
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}
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pub enum StmtKind {
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insert
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update
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delete
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}
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pub enum OrderType {
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asc
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desc
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}
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fn (kind OperationKind) to_str() string {
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str := match kind {
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.neq { '!=' }
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.eq { '=' }
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.gt { '>' }
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.lt { '<' }
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.ge { '>=' }
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.le { '<=' }
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}
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return str
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}
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fn (kind OrderType) to_str() string {
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return match kind {
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.desc {
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'DESC'
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}
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.asc {
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'ASC'
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}
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}
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}
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// Examples for QueryData in SQL: abc == 3 && b == 'test'
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// => fields[abc, b]; data[3, 'test']; types[index of int, index of string]; kinds[.eq, .eq]; is_and[true];
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// Every field, data, type & kind of operation in the expr share the same index in the arrays
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// is_and defines how they're addicted to each other either and or or
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pub struct QueryData {
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pub:
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fields []string
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data []Primitive
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types []int
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kinds []OperationKind
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is_and []bool
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}
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pub struct InfixType {
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pub:
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name string
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operator MathOperationKind
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right Primitive
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}
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pub struct TableField {
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pub:
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name string
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typ int
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is_time bool
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default_val string
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is_arr bool
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attrs []StructAttribute
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}
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// table - Table name
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// is_count - Either the data will be returned or an integer with the count
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// has_where - Select all or use a where expr
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// has_order - Order the results
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// order - Name of the column which will be ordered
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// order_type - Type of order (asc, desc)
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// has_limit - Limits the output data
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// primary - Name of the primary field
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// has_offset - Add an offset to the result
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// fields - Fields to select
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// types - Types to select
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pub struct SelectConfig {
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pub:
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table string
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is_count bool
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has_where bool
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has_order bool
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order string
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order_type OrderType
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has_limit bool
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primary string = 'id' // should be set if primary is different than 'id' and 'has_limit' is false
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has_offset bool
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fields []string
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types []int
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}
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// Interfaces gets called from the backend and can be implemented
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// Since the orm supports arrays aswell, they have to be returned too.
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// A row is represented as []Primitive, where the data is connected to the fields of the struct by their
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// index. The indices are mapped with the SelectConfig.field array. This is the mapping for a struct.
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// To have an array, there has to be an array of structs, basically [][]Primitive
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//
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// Every function without last_id() returns an optional, which returns an error if present
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// last_id returns the last inserted id of the db
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pub interface Connection {
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@select(config SelectConfig, data QueryData, where QueryData) ?[][]Primitive
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insert(table string, data QueryData) ?
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update(table string, data QueryData, where QueryData) ?
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delete(table string, where QueryData) ?
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create(table string, fields []TableField) ?
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drop(table string) ?
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last_id() Primitive
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}
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// Generates an sql stmt, from universal parameter
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// q - The quotes character, which can be different in every type, so it's variable
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// num - Stmt uses nums at prepared statements (? or ?1)
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// qm - Character for prepared statment, qm because of quotation mark like in sqlite
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// start_pos - When num is true, it's the start position of the counter
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pub fn orm_stmt_gen(table string, q string, kind StmtKind, num bool, qm string, start_pos int, data QueryData, where QueryData) string {
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mut str := ''
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mut c := start_pos
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match kind {
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.insert {
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mut values := []string{}
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for _ in 0 .. data.fields.len {
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// loop over the length of data.field and generate ?0, ?1 or just ? based on the $num qmeter for value placeholders
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if num {
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values << '$qm$c'
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c++
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} else {
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values << '$qm'
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}
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}
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str += 'INSERT INTO $q$table$q ('
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str += data.fields.map('$q$it$q').join(', ')
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str += ') VALUES ('
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str += values.join(', ')
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str += ')'
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}
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.update {
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str += 'UPDATE $q$table$q SET '
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for i, field in data.fields {
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str += '$q$field$q = '
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if data.data.len > i {
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d := data.data[i]
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if d is InfixType {
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op := match d.operator {
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.add {
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'+'
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}
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.sub {
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'-'
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}
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.mul {
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'*'
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}
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.div {
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'/'
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}
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}
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str += '$d.name $op $qm'
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} else {
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str += '$qm'
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}
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} else {
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str += '$qm'
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}
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if num {
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str += '$c'
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c++
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}
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if i < data.fields.len - 1 {
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str += ', '
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}
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}
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str += ' WHERE '
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}
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.delete {
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str += 'DELETE FROM $q$table$q WHERE '
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}
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}
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if kind == .update || kind == .delete {
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for i, field in where.fields {
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str += '$q$field$q ${where.kinds[i].to_str()} $qm'
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if num {
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str += '$c'
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c++
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}
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if i < where.fields.len - 1 {
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str += ' AND '
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}
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}
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}
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str += ';'
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return str
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}
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// Generates an sql select stmt, from universal parameter
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// orm - See SelectConfig
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// q, num, qm, start_pos - see orm_stmt_gen
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// where - See QueryData
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pub fn orm_select_gen(orm SelectConfig, q string, num bool, qm string, start_pos int, where QueryData) string {
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mut str := 'SELECT '
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if orm.is_count {
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str += 'COUNT(*)'
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} else {
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for i, field in orm.fields {
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str += '$q$field$q'
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if i < orm.fields.len - 1 {
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str += ', '
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}
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}
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}
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str += ' FROM $q$orm.table$q'
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mut c := start_pos
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if orm.has_where {
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str += ' WHERE '
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for i, field in where.fields {
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str += '$q$field$q ${where.kinds[i].to_str()} $qm'
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if num {
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str += '$c'
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c++
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}
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if i < where.fields.len - 1 {
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if where.is_and[i] {
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str += ' AND '
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} else {
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str += ' OR '
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}
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}
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}
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}
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// Note: do not order, if the user did not want it explicitly,
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// ordering is *slow*, especially if there are no indexes!
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if orm.has_order {
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str += ' ORDER BY '
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str += '$q$orm.order$q '
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str += orm.order_type.to_str()
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}
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if orm.has_limit {
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str += ' LIMIT $qm'
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if num {
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str += '$c'
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c++
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}
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}
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if orm.has_offset {
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str += ' OFFSET $qm'
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if num {
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str += '$c'
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c++
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}
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}
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str += ';'
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return str
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}
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// Generates an sql table stmt, from universal parameter
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// table - Table name
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// q - see orm_stmt_gen
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// defaults - enables default values in stmt
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// def_unique_len - sets default unique length for texts
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// fields - See TableField
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// sql_from_v - Function which maps type indices to sql type names
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// alternative - Needed for msdb
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pub fn orm_table_gen(table string, q string, defaults bool, def_unique_len int, fields []TableField, sql_from_v fn (int) ?string, alternative bool) ?string {
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mut str := 'CREATE TABLE IF NOT EXISTS $q$table$q ('
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if alternative {
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str = 'IF NOT EXISTS (SELECT * FROM sysobjects WHERE name=$q$table$q and xtype=${q}U$q) CREATE TABLE $q$table$q ('
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}
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mut fs := []string{}
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mut unique_fields := []string{}
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mut unique := map[string][]string{}
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mut primary := ''
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for field in fields {
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if field.is_arr {
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continue
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}
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mut no_null := false
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mut is_unique := false
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mut is_skip := false
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mut unique_len := 0
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// mut fkey := ''
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mut field_name := sql_field_name(field)
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for attr in field.attrs {
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match attr.name {
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'primary' {
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primary = field.name
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}
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'unique' {
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if attr.arg != '' {
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if attr.kind == .string {
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unique[attr.arg] << field_name
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continue
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} else if attr.kind == .number {
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unique_len = attr.arg.int()
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is_unique = true
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continue
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}
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}
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is_unique = true
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}
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'nonull' {
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no_null = true
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}
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'skip' {
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is_skip = true
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}
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/*'fkey' {
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if attr.arg != '' {
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if attr.kind == .string {
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fkey = attr.arg
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continue
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}
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}
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}*/
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else {}
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}
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}
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if is_skip {
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continue
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}
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mut stmt := ''
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mut ctyp := sql_from_v(sql_field_type(field)) or {
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field_name = '${field_name}_id'
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sql_from_v(7)?
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}
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if ctyp == '' {
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return error('Unknown type ($field.typ) for field $field.name in struct $table')
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}
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stmt = '$q$field_name$q $ctyp'
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if defaults && field.default_val != '' {
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stmt += ' DEFAULT $field.default_val'
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}
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if no_null {
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stmt += ' NOT NULL'
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}
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if is_unique {
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mut f := 'UNIQUE($q$field_name$q'
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if ctyp == 'TEXT' && def_unique_len > 0 {
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if unique_len > 0 {
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f += '($unique_len)'
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} else {
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f += '($def_unique_len)'
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}
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}
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f += ')'
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unique_fields << f
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}
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fs << stmt
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}
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if primary == '' {
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return error('A primary key is required for $table')
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}
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if unique.len > 0 {
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for k, v in unique {
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mut tmp := []string{}
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for f in v {
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tmp << '$q$f$q'
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}
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fs << '/* $k */UNIQUE(${tmp.join(', ')})'
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}
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}
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fs << 'PRIMARY KEY($q$primary$q)'
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fs << unique_fields
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str += fs.join(', ')
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str += ');'
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return str
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}
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// Get's the sql field type
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fn sql_field_type(field TableField) int {
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mut typ := field.typ
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if field.is_time {
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return -2
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}
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for attr in field.attrs {
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if attr.kind == .plain && attr.name == 'sql' && attr.arg != '' {
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if attr.arg.to_lower() == 'serial' {
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typ = -1
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break
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}
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typ = orm.type_idx[attr.arg]
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break
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}
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}
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return typ
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}
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// Get's the sql field name
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fn sql_field_name(field TableField) string {
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mut name := field.name
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for attr in field.attrs {
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if attr.name == 'sql' && attr.has_arg && attr.kind == .string {
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name = attr.arg
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break
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}
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}
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return name
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}
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// needed for backend functions
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pub fn bool_to_primitive(b bool) Primitive {
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return Primitive(b)
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}
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pub fn f32_to_primitive(b f32) Primitive {
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return Primitive(b)
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}
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pub fn f64_to_primitive(b f64) Primitive {
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return Primitive(b)
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}
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pub fn i8_to_primitive(b i8) Primitive {
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return Primitive(b)
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}
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pub fn i16_to_primitive(b i16) Primitive {
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return Primitive(b)
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}
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pub fn int_to_primitive(b int) Primitive {
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return Primitive(b)
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}
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pub fn i64_to_primitive(b i64) Primitive {
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return Primitive(b)
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}
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pub fn u8_to_primitive(b u8) Primitive {
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return Primitive(b)
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}
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pub fn u16_to_primitive(b u16) Primitive {
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return Primitive(b)
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}
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pub fn u32_to_primitive(b u32) Primitive {
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return Primitive(b)
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}
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pub fn u64_to_primitive(b u64) Primitive {
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return Primitive(b)
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}
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pub fn string_to_primitive(b string) Primitive {
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return Primitive(b)
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}
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pub fn time_to_primitive(b time.Time) Primitive {
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return Primitive(b)
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}
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pub fn infix_to_primitive(b InfixType) Primitive {
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return Primitive(b)
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}
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