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A toolkit for data mapping and language integrated query for Elixir
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Files
lib/ecto/adapters/mysql/connection.ex
if Code.ensure_loaded?(Mariaex.Connection) do
defmodule Ecto.Adapters.MySQL.Connection do
@moduledoc false
@default_port 3306
@behaviour Ecto.Adapters.Connection
@behaviour Ecto.Adapters.SQL.Query
## Connection
def connect(opts) do
opts = Keyword.update(opts, :port, @default_port, &normalize_port/1)
Mariaex.Connection.start_link(opts)
end
def query(conn, sql, params, opts \\ []) do
params = Enum.map params, fn
%Ecto.Query.Tagged{value: value} -> value
%{__struct__: _} = value -> value
%{} = value -> json_library.encode!(value)
value -> value
end
case Mariaex.Connection.query(conn, sql, params, opts) do
{:ok, res} -> {:ok, Map.from_struct(res)}
{:error, _} = err -> err
end
end
defp normalize_port(port) when is_binary(port), do: String.to_integer(port)
defp normalize_port(port) when is_integer(port), do: port
defp json_library do
Application.get_env(:ecto, :json_library)
end
def to_constraints(%Mariaex.Error{mariadb: %{code: 1062, message: message}}) do
case :binary.split(message, " for key ") do
[_, quoted] -> [unique: strip_quotes(quoted)]
_ -> []
end
end
def to_constraints(%Mariaex.Error{mariadb: %{code: code, message: message}})
when code in [1451, 1452] do
case :binary.split(message, [" CONSTRAINT ", " FOREIGN KEY "], [:global]) do
[_, quoted, _] -> [foreign_key: strip_quotes(quoted)]
_ -> []
end
end
def to_constraints(%Mariaex.Error{}),
do: []
defp strip_quotes(quoted) do
size = byte_size(quoted) - 2
<<_, unquoted::binary-size(size), _>> = quoted
unquoted
end
## Transaction
def begin_transaction do
"BEGIN"
end
def rollback do
"ROLLBACK"
end
def commit do
"COMMIT"
end
def savepoint(savepoint) do
"SAVEPOINT " <> savepoint
end
def rollback_to_savepoint(savepoint) do
"ROLLBACK TO SAVEPOINT " <> savepoint
end
## Query
alias Ecto.Query
alias Ecto.Query.SelectExpr
alias Ecto.Query.QueryExpr
alias Ecto.Query.JoinExpr
def all(query) do
sources = create_names(query)
from = from(sources)
select = select(query, sources)
join = join(query, sources)
where = where(query, sources)
group_by = group_by(query, sources)
having = having(query, sources)
order_by = order_by(query, sources)
limit = limit(query, sources)
offset = offset(query, sources)
lock = lock(query.lock)
assemble([select, from, join, where, group_by, having, order_by, limit, offset, lock])
end
def update_all(query) do
sources = create_names(query)
{table, name, _model} = elem(sources, 0)
update = "UPDATE #{table} AS #{name}"
fields = update_fields(query, sources)
join = join(query, sources)
where = where(query, sources)
assemble([update, join, "SET", fields, where])
end
def delete_all(query) do
sources = create_names(query)
{_table, name, _model} = elem(sources, 0)
delete = "DELETE #{name}.*"
from = from(sources)
join = join(query, sources)
where = where(query, sources)
assemble([delete, from, join, where])
end
def insert(prefix, table, [], _returning),
do: "INSERT INTO #{quote_table(prefix, table)} () VALUES ()"
def insert(prefix, table, fields, _returning) do
values = ~s{(#{Enum.map_join(fields, ", ", "e_name/1)}) } <>
~s{VALUES (#{Enum.map_join(1..length(fields), ", ", fn (_) -> "?" end)})}
"INSERT INTO #{quote_table(prefix, table)} " <> values
end
def update(prefix, table, fields, filters, _returning) do
filters = Enum.map filters, fn field ->
"#{quote_name(field)} = ?"
end
fields = Enum.map fields, fn field ->
"#{quote_name(field)} = ?"
end
"UPDATE #{quote_table(prefix, table)} SET " <> Enum.join(fields, ", ") <>
" WHERE " <> Enum.join(filters, " AND ")
end
def delete(prefix, table, filters, _returning) do
filters = Enum.map filters, fn field ->
"#{quote_name(field)} = ?"
end
"DELETE FROM #{quote_table(prefix, table)} WHERE " <>
Enum.join(filters, " AND ")
end
## Query generation
binary_ops =
[==: "=", !=: "!=", <=: "<=", >=: ">=", <: "<", >: ">",
and: "AND", or: "OR",
ilike: "ILIKE", like: "LIKE"]
@binary_ops Keyword.keys(binary_ops)
Enum.map(binary_ops, fn {op, str} ->
defp handle_call(unquote(op), 2), do: {:binary_op, unquote(str)}
end)
defp handle_call(fun, _arity), do: {:fun, Atom.to_string(fun)}
defp select(%Query{select: %SelectExpr{fields: fields}, distinct: distinct} = query,
sources) do
"SELECT " <>
distinct(distinct, sources, query) <>
Enum.map_join(fields, ", ", &expr(&1, sources, query))
end
defp distinct(nil, _sources, _query), do: ""
defp distinct(%QueryExpr{expr: true}, _sources, _query), do: "DISTINCT "
defp distinct(%QueryExpr{expr: false}, _sources, _quety), do: ""
defp distinct(%QueryExpr{expr: exprs}, _sources, query) when is_list(exprs) do
error!(query, "DISTINCT with multiple columns is not supported by MySQL")
end
defp from(sources) do
{table, name, _model} = elem(sources, 0)
"FROM #{table} AS #{name}"
end
defp update_fields(%Query{updates: updates} = query, sources) do
for(%{expr: expr} <- updates,
{op, kw} <- expr,
{key, value} <- kw,
do: update_op(op, key, value, sources, query)) |> Enum.join(", ")
end
defp update_op(:set, key, value, sources, query) do
quote_name(key) <> " = " <> expr(value, sources, query)
end
defp update_op(:inc, key, value, sources, query) do
quoted = quote_name(key)
quoted <> " = " <> quoted <> " + " <> expr(value, sources, query)
end
defp update_op(command, _key, _value, _sources, query) do
error!(query, "Unknown update operation #{inspect command} for MySQL")
end
defp join(%Query{joins: []}, _sources), do: []
defp join(%Query{joins: joins} = query, sources) do
Enum.map_join(joins, " ", fn
%JoinExpr{on: %QueryExpr{expr: expr}, qual: qual, ix: ix, source: source} ->
{join, name, _model} = elem(sources, ix)
qual = join_qual(qual)
join = join || "(" <> expr(source, sources, query) <> ")"
"#{qual} JOIN " <> join <> " AS #{name} ON " <> expr(expr, sources, query)
end)
end
defp join_qual(:inner), do: "INNER"
defp join_qual(:left), do: "LEFT OUTER"
defp join_qual(:right), do: "RIGHT OUTER"
defp join_qual(:full), do: "FULL OUTER"
defp where(%Query{wheres: wheres} = query, sources) do
boolean("WHERE", wheres, sources, query)
end
defp having(%Query{havings: havings} = query, sources) do
boolean("HAVING", havings, sources, query)
end
defp group_by(%Query{group_bys: group_bys} = query, sources) do
exprs =
Enum.map_join(group_bys, ", ", fn
%QueryExpr{expr: expr} ->
Enum.map_join(expr, ", ", &expr(&1, sources, query))
end)
case exprs do
"" -> []
_ -> "GROUP BY " <> exprs
end
end
defp order_by(%Query{order_bys: order_bys} = query, sources) do
exprs =
Enum.map_join(order_bys, ", ", fn
%QueryExpr{expr: expr} ->
Enum.map_join(expr, ", ", &order_by_expr(&1, sources, query))
end)
case exprs do
"" -> []
_ -> "ORDER BY " <> exprs
end
end
defp order_by_expr({dir, expr}, sources, query) do
str = expr(expr, sources, query)
case dir do
:asc -> str
:desc -> str <> " DESC"
end
end
defp limit(%Query{limit: nil}, _sources), do: []
defp limit(%Query{limit: %QueryExpr{expr: expr}} = query, sources) do
"LIMIT " <> expr(expr, sources, query)
end
defp offset(%Query{offset: nil}, _sources), do: []
defp offset(%Query{offset: %QueryExpr{expr: expr}} = query, sources) do
"OFFSET " <> expr(expr, sources, query)
end
defp lock(nil), do: []
defp lock(lock_clause), do: lock_clause
defp boolean(_name, [], _sources, _query), do: []
defp boolean(name, query_exprs, sources, query) do
name <> " " <>
Enum.map_join(query_exprs, " AND ", fn
%QueryExpr{expr: expr} ->
"(" <> expr(expr, sources, query) <> ")"
end)
end
defp expr({:^, [], [_ix]}, _sources, _query) do
"?"
end
defp expr({{:., _, [{:&, _, [idx]}, field]}, _, []}, sources, _query)
when is_atom(field) do
{_, name, _} = elem(sources, idx)
"#{name}.#{quote_name(field)}"
end
defp expr({:&, _, [idx]}, sources, query) do
{table, name, model} = elem(sources, idx)
unless model do
error!(query, "MySQL requires a model when using selector " <>
"#{inspect name} but only the table #{inspect table} was given. " <>
"Please specify a model or specify exactly which fields from " <>
"#{inspect name} you desire")
end
fields = model.__schema__(:fields)
Enum.map_join(fields, ", ", &"#{name}.#{quote_name(&1)}")
end
defp expr({:in, _, [_left, []]}, _sources, _query) do
"false"
end
defp expr({:in, _, [left, right]}, sources, query) when is_list(right) do
args = Enum.map_join right, ",", &expr(&1, sources, query)
expr(left, sources, query) <> " IN (" <> args <> ")"
end
defp expr({:in, _, [left, {:^, _, [ix, length]}]}, sources, query) do
args = Enum.map_join(ix+1..ix+length, ",", fn (_) -> "?" end)
expr(left, sources, query) <> " IN (" <> args <> ")"
end
defp expr({:in, _, [left, right]}, sources, query) do
expr(left, sources, query) <> " = ANY(" <> expr(right, sources, query) <> ")"
end
defp expr({:is_nil, _, [arg]}, sources, query) do
"#{expr(arg, sources, query)} IS NULL"
end
defp expr({:not, _, [expr]}, sources, query) do
"NOT (" <> expr(expr, sources, query) <> ")"
end
defp expr({:fragment, _, [kw]}, _sources, query) when is_list(kw) or tuple_size(kw) == 3 do
error!(query, "MySQL adapter does not support keyword or interpolated fragments")
end
defp expr({:fragment, _, parts}, sources, query) do
Enum.map_join(parts, "", fn
{:raw, part} -> part
{:expr, expr} -> expr(expr, sources, query)
end)
end
defp expr({:datetime_add, _, [datetime, count, interval]}, sources, query) do
"CAST(date_add(" <> expr(datetime, sources, query) <> ", "
<> interval(count, interval, sources, query) <> ") AS datetime)"
end
defp expr({:date_add, _, [date, count, interval]}, sources, query) do
"CAST(date_add(" <> expr(date, sources, query) <> ", "
<> interval(count, interval, sources, query) <> ") AS date)"
end
defp expr({fun, _, args}, sources, query) when is_atom(fun) and is_list(args) do
{modifier, args} =
case args do
[rest, :distinct] -> {"DISTINCT ", [rest]}
_ -> {"", args}
end
case handle_call(fun, length(args)) do
{:binary_op, op} ->
[left, right] = args
op_to_binary(left, sources, query) <>
" #{op} "
<> op_to_binary(right, sources, query)
{:fun, fun} ->
"#{fun}(" <> modifier <> Enum.map_join(args, ", ", &expr(&1, sources, query)) <> ")"
end
end
defp expr(list, _sources, query) when is_list(list) do
error!(query, "Array type is not supported by MySQL")
end
defp expr(%Decimal{} = decimal, _sources, _query) do
Decimal.to_string(decimal, :normal)
end
defp expr(%Ecto.Query.Tagged{value: binary, type: :binary}, _sources, _query)
when is_binary(binary) do
hex = Base.encode16(binary, case: :lower)
"x'#{hex}'"
end
defp expr(%Ecto.Query.Tagged{value: other, type: type}, sources, query)
when type in [:id, :integer, :float] do
expr(other, sources, query)
end
defp expr(%Ecto.Query.Tagged{value: other, type: type}, sources, query) do
"CAST(#{expr(other, sources, query)} AS " <> ecto_to_db(type, query) <> ")"
end
defp expr(nil, _sources, _query), do: "NULL"
defp expr(true, _sources, _query), do: "TRUE"
defp expr(false, _sources, _query), do: "FALSE"
defp expr(literal, _sources, _query) when is_binary(literal) do
"'#{escape_string(literal)}'"
end
defp expr(literal, _sources, _query) when is_integer(literal) do
String.Chars.Integer.to_string(literal)
end
defp expr(literal, _sources, _query) when is_float(literal) do
# MySQL doesn't support float cast
expr = String.Chars.Float.to_string(literal)
"(0 + #{expr})"
end
defp interval(count, "millisecond", sources, query) do
"INTERVAL (" <> expr(count, sources, query) <> " * 1000) microsecond"
end
defp interval(count, interval, sources, query) do
"INTERVAL " <> expr(count, sources, query) <> " " <> interval
end
defp op_to_binary({op, _, [_, _]} = expr, sources, query) when op in @binary_ops do
"(" <> expr(expr, sources, query) <> ")"
end
defp op_to_binary(expr, sources, query) do
expr(expr, sources, query)
end
defp create_names(%{prefix: prefix, sources: sources}) do
create_names(prefix, sources, 0, tuple_size(sources)) |> List.to_tuple()
end
defp create_names(prefix, sources, pos, limit) when pos < limit do
current =
case elem(sources, pos) do
{table, model} ->
name = String.first(table) <> Integer.to_string(pos)
{quote_table(prefix, table), name, model}
{:fragment, _, _} ->
{nil, "f" <> Integer.to_string(pos), nil}
end
[current|create_names(prefix, sources, pos + 1, limit)]
end
defp create_names(_prefix, _sources, pos, pos) do
[]
end
## DDL
alias Ecto.Migration.Table
alias Ecto.Migration.Index
alias Ecto.Migration.Reference
def execute_ddl({command, %Table{} = table, columns}) when command in [:create, :create_if_not_exists] do
engine = engine_expr(table.engine)
options = options_expr(table.options)
if_not_exists = if command == :create_if_not_exists, do: " IF NOT EXISTS", else: ""
"CREATE TABLE" <> if_not_exists <>
" #{quote_table(table.prefix, table.name)} (#{column_definitions(table, columns)})" <> engine <> options
end
def execute_ddl({command, %Table{} = table}) when command in [:drop, :drop_if_exists] do
if_exists = if command == :drop_if_exists, do: " IF EXISTS", else: ""
"DROP TABLE" <> if_exists <> " #{quote_table(table.prefix, table.name)}"
end
def execute_ddl({:alter, %Table{}=table, changes}) do
"ALTER TABLE #{quote_table(table.prefix, table.name)} #{column_changes(table, changes)}"
end
def execute_ddl({:create, %Index{}=index}) do
create = "CREATE#{if index.unique, do: " UNIQUE"} INDEX"
using = if index.using, do: "USING #{index.using}", else: []
assemble([create,
quote_name(index.name),
"ON",
quote_table(index.prefix, index.table),
"(#{Enum.map_join(index.columns, ", ", &index_expr/1)})",
using,
if_do(index.concurrently, "LOCK=NONE")])
end
def execute_ddl({:create_if_not_exists, %Index{}}),
do: error!(nil, "MySQL adapter does not support create if not exists for index")
def execute_ddl({:drop, %Index{}=index}) do
assemble(["DROP INDEX",
quote_name(index.name),
"ON #{quote_table(index.prefix, index.table)}",
if_do(index.concurrently, "LOCK=NONE")])
end
def execute_ddl({:drop_if_exists, %Index{}}),
do: error!(nil, "MySQL adapter does not support drop if exists for index")
def execute_ddl({:rename, %Table{}=current_table, %Table{}=new_table}) do
"RENAME TABLE #{quote_table(current_table.prefix, current_table.name)} TO #{quote_table(new_table.prefix, new_table.name)}"
end
def execute_ddl({:rename, %Table{}=table, current_column, new_column}) do
[
"SELECT @column_type := COLUMN_TYPE FROM INFORMATION_SCHEMA.COLUMNS WHERE TABLE_NAME = '#{table.name}' AND COLUMN_NAME = '#{current_column}' LIMIT 1",
"SET @rename_stmt = concat('ALTER TABLE #{quote_table(table.prefix, table.name)} CHANGE COLUMN `#{current_column}` `#{new_column}` ', @column_type)",
"PREPARE rename_stmt FROM @rename_stmt",
"EXECUTE rename_stmt"
]
end
def execute_ddl(string) when is_binary(string), do: string
def execute_ddl(keyword) when is_list(keyword),
do: error!(nil, "MySQL adapter does not support keyword lists in execute")
defp column_definitions(table, columns) do
Enum.map_join(columns, ", ", &column_definition(table, &1))
end
defp column_definition(table, {:add, name, %Reference{} = ref, opts}) do
assemble([quote_name(name), reference_column_type(ref.type, opts),
column_options(name, opts), reference_expr(ref, table, name)])
end
defp column_definition(_table, {:add, name, type, opts}) do
assemble([quote_name(name), column_type(type, opts), column_options(name, opts)])
end
defp column_changes(table, columns) do
Enum.map_join(columns, ", ", &column_change(table, &1))
end
defp column_change(table, {:add, name, %Reference{} = ref, opts}) do
assemble(["ADD", quote_name(name), reference_column_type(ref.type, opts),
column_options(name, opts), constraint_expr(ref, table, name)])
end
defp column_change(_table, {:add, name, type, opts}) do
assemble(["ADD", quote_name(name), column_type(type, opts), column_options(name, opts)])
end
defp column_change(table, {:modify, name, %Reference{} = ref, opts}) do
assemble([
"MODIFY", quote_name(name), reference_column_type(ref.type, opts),
column_options(name, opts), constraint_expr(ref, table, name)
])
end
defp column_change(_table, {:modify, name, type, opts}) do
assemble(["MODIFY", quote_name(name), column_type(type, opts), column_options(name, opts)])
end
defp column_change(_table, {:remove, name}), do: "DROP #{quote_name(name)}"
defp column_options(name, opts) do
default = Keyword.fetch(opts, :default)
null = Keyword.get(opts, :null)
pk = Keyword.get(opts, :primary_key)
[default_expr(default), null_expr(null), pk_expr(pk, name)]
end
defp pk_expr(true, name), do: ", PRIMARY KEY(#{quote_name(name)})"
defp pk_expr(_, _), do: []
defp null_expr(false), do: "NOT NULL"
defp null_expr(true), do: "NULL"
defp null_expr(_), do: []
defp default_expr({:ok, nil}),
do: "DEFAULT NULL"
defp default_expr({:ok, literal}) when is_binary(literal),
do: "DEFAULT '#{escape_string(literal)}'"
defp default_expr({:ok, literal}) when is_number(literal) or is_boolean(literal),
do: "DEFAULT #{literal}"
defp default_expr({:ok, {:fragment, expr}}),
do: "DEFAULT #{expr}"
defp default_expr(:error),
do: []
defp index_expr(literal), do: quote_name(literal)
defp engine_expr(nil),
do: " ENGINE = INNODB"
defp engine_expr(storage_engine),
do: String.upcase(" ENGINE = #{storage_engine}")
defp options_expr(nil),
do: ""
defp options_expr(keyword) when is_list(keyword),
do: error!(nil, "MySQL adapter does not support keyword lists in :options")
defp options_expr(options),
do: " #{options}"
defp column_type(type, opts) do
size = Keyword.get(opts, :size)
precision = Keyword.get(opts, :precision)
scale = Keyword.get(opts, :scale)
type_name = ecto_to_db(type)
cond do
size -> "#{type_name}(#{size})"
precision -> "#{type_name}(#{precision},#{scale || 0})"
type == :string -> "#{type_name}(255)"
true -> "#{type_name}"
end
end
defp constraint_expr(%Reference{} = ref, table, name),
do: ", ADD CONSTRAINT #{reference_name(ref, table, name)} " <>
"FOREIGN KEY (#{quote_name(name)}) " <>
"REFERENCES #{quote_table(table.prefix, ref.table)}(#{quote_name(ref.column)})" <>
reference_on_delete(ref.on_delete)
defp reference_expr(%Reference{} = ref, table, name),
do: ", CONSTRAINT #{reference_name(ref, table, name)} FOREIGN KEY " <>
"(#{quote_name(name)}) REFERENCES " <>
"#{quote_table(table.prefix, ref.table)}(#{quote_name(ref.column)})" <>
reference_on_delete(ref.on_delete)
defp reference_name(%Reference{name: nil}, table, column),
do: quote_name("#{table.name}_#{column}_fkey")
defp reference_name(%Reference{name: name}, _table, _column),
do: quote_name(name)
defp reference_column_type(:serial, _opts), do: "BIGINT UNSIGNED"
defp reference_column_type(type, opts), do: column_type(type, opts)
defp reference_on_delete(:nilify_all), do: " ON DELETE SET NULL"
defp reference_on_delete(:delete_all), do: " ON DELETE CASCADE"
defp reference_on_delete(_), do: ""
## Helpers
defp quote_name(name)
defp quote_name(name) when is_atom(name),
do: quote_name(Atom.to_string(name))
defp quote_name(name) do
if String.contains?(name, "`") do
error!(nil, "bad field name #{inspect name}")
end
<<?`, name::binary, ?`>>
end
defp quote_table(nil, name), do: quote_table(name)
defp quote_table(prefix, name), do: quote_table(prefix) <> "." <> quote_table(name)
defp quote_table(name) when is_atom(name),
do: quote_table(Atom.to_string(name))
defp quote_table(name) do
if String.contains?(name, "`") do
error!(nil, "bad table name #{inspect name}")
end
<<?`, name::binary, ?`>>
end
defp assemble(list) do
list
|> List.flatten
|> Enum.join(" ")
end
defp if_do(condition, value) do
if condition, do: value, else: []
end
defp escape_string(value) when is_binary(value) do
value
|> :binary.replace("'", "''", [:global])
|> :binary.replace("\\", "\\\\", [:global])
end
defp ecto_to_db(type, query \\ nil)
defp ecto_to_db({:array, _}, query),
do: error!(query, "Array type is not supported by MySQL")
defp ecto_to_db(:id, _query), do: "integer"
defp ecto_to_db(:binary_id, _query), do: "binary(16)"
defp ecto_to_db(:string, _query), do: "varchar"
defp ecto_to_db(:float, _query), do: "double"
defp ecto_to_db(:binary, _query), do: "blob"
defp ecto_to_db(:uuid, _query), do: "binary(16)" # MySQL does not support uuid
defp ecto_to_db(:map, _query), do: "text"
defp ecto_to_db(other, _query), do: Atom.to_string(other)
defp error!(nil, message) do
raise ArgumentError, message
end
defp error!(query, message) do
raise Ecto.QueryError, query: query, message: message
end
end
end