Further refine the interpreter
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parent
972f849703
commit
cb7b50109e
1 changed files with 39 additions and 3 deletions
42
src/main.rs
42
src/main.rs
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@ -9,7 +9,6 @@ enum Operation {
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Insert(TableName, InsertionValues),
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Delete(TableName, Option<Condition>),
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// Update(...),
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//
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CreateTable(TableName, TableSchema),
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CreateIndex(TableName, ColumnName), // TODO: Is this sufficient?
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// DropTable(TableName),
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@ -51,6 +50,7 @@ enum DbValue {
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Int(u64),
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Number(f64),
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UUID(UUID),
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// TODO: what bout null?
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}
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// TODO: Can this be autogenerated from the values?
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@ -82,7 +82,8 @@ type TablePosition = u32;
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struct Table {
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schema: TableSchema,
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rows: Rows,
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rows: Rows, // TODO: Consider wrapping this in a lock. Also consider if we need to have the
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// same lock for both rows and indexes
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indexes:
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HashMap<ColumnPosition, ColumnIndex> // TODO: Consider generalizing `ColumnPosition` to something that would also apply to a pair of `ColumnNames` etc
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}
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@ -115,8 +116,13 @@ type ColumnPosition = u32;
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type Row = Vec<DbValue>;
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type Rows =
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// TODO: This should be some sort of an interface to a dictionary
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// s.t. in the background it may modify stuff in memory or talk to the disk
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BTreeMap<UUID, Row>;
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// interface
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// insert(id, value)
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// ==============Interpreter================
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struct State {
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table_positions: HashMap<TableName, TablePosition>,
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@ -200,14 +206,44 @@ impl Table {
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}
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fn select_where(&self, column_selection: ColumnSelection, maybe_condition: Option<Condition>, consumer: impl SqlConsumer) {
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todo!()
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match maybe_condition {
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None => {
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// .iter() will give us an iterator over all the rows
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// two choices
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// 1. optimized version
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// self.iter_with_columns(column_selection).for_each(|row| {
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// consumer.send(row)
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// });
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// 2.
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// self.iter()
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// .map(|row| row.select_columns(column_selection))
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// .for_each(|reduced_row| {
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// consumer.send(row)
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// });
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todo!()
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},
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Some(Condition::Eq(column_name, value)) => {
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// is column_name primary key? then it is easy
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// self.get(id)
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// is column_name indexed? Then get the index, and then it is not easy, because you
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// may get a set of ids.
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// what if it is not primary nor indexed? then you need to brute force your way
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// through the whole table?
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todo!()
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}
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}
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}
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fn insert(&mut self, values: InsertionValues, consumer: impl SqlConsumer) {
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// 1. You need to update indices
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// 2. you simply insert the data
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todo!()
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}
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fn delete_where(&mut self, maybe_condition: Option<Condition>, consumer: impl SqlConsumer) {
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// kinda similar to select with respect to the conditions
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// update index
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todo!()
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}
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}
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