mirror of
https://github.com/tursodatabase/limbo.git
synced 2025-08-04 18:18:03 +00:00
527 lines
16 KiB
Rust
527 lines
16 KiB
Rust
pub mod params;
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pub mod value;
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pub use value::Value;
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pub use params::params_from_iter;
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use crate::params::*;
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use std::fmt::Debug;
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use std::num::NonZero;
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use std::sync::{Arc, Mutex};
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#[derive(Debug, thiserror::Error)]
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pub enum Error {
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#[error("SQL conversion failure: `{0}`")]
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ToSqlConversionFailure(BoxError),
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#[error("Mutex lock error: {0}")]
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MutexError(String),
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#[error("SQL execution failure: `{0}`")]
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SqlExecutionFailure(String),
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}
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impl From<limbo_core::LimboError> for Error {
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fn from(err: limbo_core::LimboError) -> Self {
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Error::SqlExecutionFailure(err.to_string())
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}
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}
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pub(crate) type BoxError = Box<dyn std::error::Error + Send + Sync>;
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pub type Result<T> = std::result::Result<T, Error>;
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pub struct Builder {
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path: String,
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}
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impl Builder {
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pub fn new_local(path: &str) -> Self {
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Self {
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path: path.to_string(),
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}
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}
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#[allow(unused_variables, clippy::arc_with_non_send_sync)]
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pub async fn build(self) -> Result<Database> {
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match self.path.as_str() {
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":memory:" => {
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let io: Arc<dyn limbo_core::IO> = Arc::new(limbo_core::MemoryIO::new());
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let db = limbo_core::Database::open_file(io, self.path.as_str(), false)?;
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Ok(Database { inner: db })
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}
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path => {
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let io: Arc<dyn limbo_core::IO> = Arc::new(limbo_core::PlatformIO::new()?);
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let db = limbo_core::Database::open_file(io, path, false)?;
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Ok(Database { inner: db })
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}
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}
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}
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}
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#[derive(Clone)]
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pub struct Database {
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inner: Arc<limbo_core::Database>,
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}
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unsafe impl Send for Database {}
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unsafe impl Sync for Database {}
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impl Debug for Database {
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fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
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f.debug_struct("Database").finish()
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}
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}
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impl Database {
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pub fn connect(&self) -> Result<Connection> {
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let conn = self.inner.connect()?;
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#[allow(clippy::arc_with_non_send_sync)]
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let connection = Connection {
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inner: Arc::new(Mutex::new(conn)),
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};
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Ok(connection)
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}
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}
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pub struct Connection {
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inner: Arc<Mutex<Arc<limbo_core::Connection>>>,
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}
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impl Clone for Connection {
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fn clone(&self) -> Self {
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Self {
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inner: Arc::clone(&self.inner),
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}
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}
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}
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unsafe impl Send for Connection {}
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unsafe impl Sync for Connection {}
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impl Connection {
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pub async fn query(&self, sql: &str, params: impl IntoParams) -> Result<Rows> {
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let mut stmt = self.prepare(sql).await?;
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stmt.query(params).await
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}
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pub async fn execute(&self, sql: &str, params: impl IntoParams) -> Result<u64> {
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let mut stmt = self.prepare(sql).await?;
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stmt.execute(params).await
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}
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pub async fn prepare(&self, sql: &str) -> Result<Statement> {
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let conn = self
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.inner
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.lock()
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.map_err(|e| Error::MutexError(e.to_string()))?;
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let stmt = conn.prepare(sql)?;
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#[allow(clippy::arc_with_non_send_sync)]
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let statement = Statement {
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inner: Arc::new(Mutex::new(stmt)),
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};
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Ok(statement)
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}
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pub fn pragma_query<F>(&self, pragma_name: &str, mut f: F) -> Result<()>
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where
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F: FnMut(&Row) -> limbo_core::Result<()>,
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{
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let conn = self
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.inner
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.lock()
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.map_err(|e| Error::MutexError(e.to_string()))?;
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let rows: Vec<Row> = conn
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.pragma_query(pragma_name)
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.map_err(|e| Error::SqlExecutionFailure(e.to_string()))?
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.iter()
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.map(|row| row.iter().collect::<Row>())
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.collect();
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rows.iter().try_for_each(|row| {
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f(row).map_err(|e| {
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Error::SqlExecutionFailure(format!("Error executing user defined function: {}", e))
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})
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})?;
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Ok(())
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}
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}
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pub struct Statement {
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inner: Arc<Mutex<limbo_core::Statement>>,
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}
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impl Clone for Statement {
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fn clone(&self) -> Self {
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Self {
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inner: Arc::clone(&self.inner),
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}
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}
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}
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unsafe impl Send for Statement {}
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unsafe impl Sync for Statement {}
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impl Statement {
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pub async fn query(&mut self, params: impl IntoParams) -> Result<Rows> {
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let params = params.into_params()?;
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match params {
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params::Params::None => (),
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params::Params::Positional(values) => {
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for (i, value) in values.into_iter().enumerate() {
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let mut stmt = self.inner.lock().unwrap();
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stmt.bind_at(NonZero::new(i + 1).unwrap(), value.into());
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}
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}
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params::Params::Named(_items) => todo!(),
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}
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#[allow(clippy::arc_with_non_send_sync)]
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let rows = Rows {
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inner: Arc::clone(&self.inner),
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};
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Ok(rows)
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}
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pub async fn execute(&mut self, params: impl IntoParams) -> Result<u64> {
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{
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// Reset the statement before executing
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self.inner.lock().unwrap().reset();
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}
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let params = params.into_params()?;
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match params {
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params::Params::None => (),
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params::Params::Positional(values) => {
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for (i, value) in values.into_iter().enumerate() {
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let mut stmt = self.inner.lock().unwrap();
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stmt.bind_at(NonZero::new(i + 1).unwrap(), value.into());
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}
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}
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params::Params::Named(_items) => todo!(),
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}
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loop {
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let mut stmt = self.inner.lock().unwrap();
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match stmt.step() {
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Ok(limbo_core::StepResult::Row) => {
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// unexpected row during execution, error out.
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return Ok(2);
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}
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Ok(limbo_core::StepResult::Done) => {
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return Ok(0);
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}
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Ok(limbo_core::StepResult::IO) => {
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let _ = stmt.run_once();
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//return Ok(1);
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}
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Ok(limbo_core::StepResult::Busy) => {
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return Ok(4);
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}
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Ok(limbo_core::StepResult::Interrupt) => {
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return Ok(3);
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}
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Err(err) => {
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return Err(err.into());
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}
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}
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}
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}
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pub fn columns(&self) -> Vec<Column> {
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let stmt = self.inner.lock().unwrap();
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let n = stmt.num_columns();
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let mut cols = Vec::with_capacity(n);
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for i in 0..n {
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let name = stmt.get_column_name(i).into_owned();
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cols.push(Column {
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name,
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decl_type: None, // TODO
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});
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}
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cols
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}
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}
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pub struct Column {
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name: String,
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decl_type: Option<String>,
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}
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impl Column {
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pub fn name(&self) -> &str {
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&self.name
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}
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pub fn decl_type(&self) -> Option<&str> {
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self.decl_type.as_deref()
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}
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}
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pub trait IntoValue {
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fn into_value(self) -> Result<Value>;
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}
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#[derive(Debug, Clone)]
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pub enum Params {
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None,
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Positional(Vec<Value>),
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Named(Vec<(String, Value)>),
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}
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pub struct Transaction {}
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pub struct Rows {
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inner: Arc<Mutex<limbo_core::Statement>>,
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}
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impl Clone for Rows {
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fn clone(&self) -> Self {
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Self {
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inner: Arc::clone(&self.inner),
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}
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}
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}
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unsafe impl Send for Rows {}
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unsafe impl Sync for Rows {}
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impl Rows {
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pub async fn next(&mut self) -> Result<Option<Row>> {
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loop {
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let mut stmt = self
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.inner
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.lock()
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.map_err(|e| Error::MutexError(e.to_string()))?;
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match stmt.step() {
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Ok(limbo_core::StepResult::Row) => {
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let row = stmt.row().unwrap();
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return Ok(Some(Row {
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values: row.get_values().map(|v| v.to_owned()).collect(),
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}));
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}
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Ok(limbo_core::StepResult::Done) => return Ok(None),
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Ok(limbo_core::StepResult::IO) => {
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if let Err(e) = stmt.run_once() {
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return Err(e.into());
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}
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continue;
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}
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Ok(limbo_core::StepResult::Busy) => return Ok(None),
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Ok(limbo_core::StepResult::Interrupt) => return Ok(None),
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_ => return Ok(None),
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}
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}
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}
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}
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#[derive(Debug)]
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pub struct Row {
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values: Vec<limbo_core::Value>,
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}
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unsafe impl Send for Row {}
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unsafe impl Sync for Row {}
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impl Row {
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pub fn get_value(&self, index: usize) -> Result<Value> {
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let value = &self.values[index];
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match value {
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limbo_core::Value::Integer(i) => Ok(Value::Integer(*i)),
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limbo_core::Value::Null => Ok(Value::Null),
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limbo_core::Value::Float(f) => Ok(Value::Real(*f)),
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limbo_core::Value::Text(text) => Ok(Value::Text(text.to_string())),
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limbo_core::Value::Blob(items) => Ok(Value::Blob(items.to_vec())),
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}
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}
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pub fn column_count(&self) -> usize {
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self.values.len()
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}
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}
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impl<'a> FromIterator<&'a limbo_core::Value> for Row {
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fn from_iter<T: IntoIterator<Item = &'a limbo_core::Value>>(iter: T) -> Self {
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let values = iter
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.into_iter()
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.map(|v| match v {
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limbo_core::Value::Integer(i) => limbo_core::Value::Integer(*i),
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limbo_core::Value::Null => limbo_core::Value::Null,
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limbo_core::Value::Float(f) => limbo_core::Value::Float(*f),
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limbo_core::Value::Text(s) => limbo_core::Value::Text(s.clone()),
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limbo_core::Value::Blob(b) => limbo_core::Value::Blob(b.clone()),
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})
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.collect();
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Row { values }
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}
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}
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#[cfg(test)]
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mod tests {
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use super::*;
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use tempfile::NamedTempFile;
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#[tokio::test]
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async fn test_database_persistence() -> Result<()> {
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let temp_file = NamedTempFile::new().unwrap();
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let db_path = temp_file.path().to_str().unwrap();
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// First, create the database, a table, and insert some data
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{
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let db = Builder::new_local(db_path).build().await?;
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let conn = db.connect()?;
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conn.execute(
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"CREATE TABLE test_persistence (id INTEGER PRIMARY KEY, name TEXT NOT NULL);",
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(),
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)
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.await?;
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conn.execute("INSERT INTO test_persistence (name) VALUES ('Alice');", ())
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.await?;
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conn.execute("INSERT INTO test_persistence (name) VALUES ('Bob');", ())
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.await?;
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} // db and conn are dropped here, simulating closing
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// Now, re-open the database and check if the data is still there
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let db = Builder::new_local(db_path).build().await?;
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let conn = db.connect()?;
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let mut rows = conn
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.query("SELECT name FROM test_persistence ORDER BY id;", ())
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.await?;
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let row1 = rows.next().await?.expect("Expected first row");
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assert_eq!(row1.get_value(0)?, Value::Text("Alice".to_string()));
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let row2 = rows.next().await?.expect("Expected second row");
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assert_eq!(row2.get_value(0)?, Value::Text("Bob".to_string()));
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assert!(rows.next().await?.is_none(), "Expected no more rows");
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Ok(())
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}
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#[tokio::test]
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async fn test_database_persistence_many_frames() -> Result<()> {
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let temp_file = NamedTempFile::new().unwrap();
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let db_path = temp_file.path().to_str().unwrap();
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const NUM_INSERTS: usize = 100;
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const TARGET_STRING_LEN: usize = 1024; // 1KB
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let mut original_data = Vec::with_capacity(NUM_INSERTS);
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for i in 0..NUM_INSERTS {
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let prefix = format!("test_string_{:04}_", i);
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let padding_len = TARGET_STRING_LEN.saturating_sub(prefix.len());
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let padding: String = "A".repeat(padding_len);
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original_data.push(format!("{}{}", prefix, padding));
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}
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// First, create the database, a table, and insert many large strings
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{
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let db = Builder::new_local(db_path).build().await?;
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let conn = db.connect()?;
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conn.execute(
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"CREATE TABLE test_large_persistence (id INTEGER PRIMARY KEY AUTOINCREMENT, data TEXT NOT NULL);",
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(),
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)
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.await?;
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for data_val in &original_data {
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conn.execute(
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"INSERT INTO test_large_persistence (data) VALUES (?);",
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params::Params::Positional(vec![Value::Text(data_val.clone())]),
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)
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.await?;
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}
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} // db and conn are dropped here, simulating closing
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// Now, re-open the database and check if the data is still there
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let db = Builder::new_local(db_path).build().await?;
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let conn = db.connect()?;
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let mut rows = conn
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.query("SELECT data FROM test_large_persistence ORDER BY id;", ())
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.await?;
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for (i, value) in original_data.iter().enumerate().take(NUM_INSERTS) {
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let row = rows
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.next()
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.await?
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.unwrap_or_else(|| panic!("Expected row {} but found None", i));
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assert_eq!(
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row.get_value(0)?,
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Value::Text(value.clone()),
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"Mismatch in retrieved data for row {}",
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i
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);
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}
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assert!(
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rows.next().await?.is_none(),
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"Expected no more rows after retrieving all inserted data"
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);
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// Delete the WAL file only and try to re-open and query
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let wal_path = format!("{}-wal", db_path);
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std::fs::remove_file(&wal_path)
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.map_err(|e| eprintln!("Warning: Failed to delete WAL file for test: {}", e))
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.unwrap();
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// Attempt to re-open the database after deleting WAL and assert that table is missing.
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let db_after_wal_delete = Builder::new_local(db_path).build().await?;
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let conn_after_wal_delete = db_after_wal_delete.connect()?;
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let query_result_after_wal_delete = conn_after_wal_delete
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.query("SELECT data FROM test_large_persistence ORDER BY id;", ())
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.await;
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match query_result_after_wal_delete {
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Ok(_) => panic!("Query succeeded after WAL deletion and DB reopen, but was expected to fail because the table definition should have been in the WAL."),
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Err(Error::SqlExecutionFailure(msg)) => {
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assert!(
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msg.contains("test_large_persistence not found"),
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"Expected 'test_large_persistence not found' error, but got: {}",
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msg
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);
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}
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Err(e) => panic!(
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"Expected SqlExecutionFailure for 'no such table', but got a different error: {:?}",
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e
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),
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}
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Ok(())
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}
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#[tokio::test]
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async fn test_database_persistence_write_one_frame_many_times() -> Result<()> {
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let temp_file = NamedTempFile::new().unwrap();
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let db_path = temp_file.path().to_str().unwrap();
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for i in 0..100 {
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{
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let db = Builder::new_local(db_path).build().await?;
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let conn = db.connect()?;
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conn.execute("CREATE TABLE IF NOT EXISTS test_persistence (id INTEGER PRIMARY KEY, name TEXT NOT NULL);", ()).await?;
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conn.execute("INSERT INTO test_persistence (name) VALUES ('Alice');", ())
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.await?;
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}
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{
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let db = Builder::new_local(db_path).build().await?;
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let conn = db.connect()?;
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let mut rows_iter = conn
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.query("SELECT count(*) FROM test_persistence;", ())
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.await?;
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let rows = rows_iter.next().await?.unwrap();
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assert_eq!(rows.get_value(0)?, Value::Integer(i as i64 + 1));
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assert!(rows_iter.next().await?.is_none());
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}
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}
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Ok(())
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}
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}
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