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| 1 | +use etl::destination::memory::MemoryDestination; |
| 2 | +use etl::state::table::TableReplicationPhaseType; |
| 3 | +use etl::test_utils::database::{spawn_source_database, test_table_name}; |
| 4 | +use etl::test_utils::notify::NotifyingStore; |
| 5 | +use etl::test_utils::pipeline::create_pipeline; |
| 6 | +use etl::test_utils::test_destination_wrapper::TestDestinationWrapper; |
| 7 | +use etl::types::PipelineId; |
| 8 | +use etl_postgres::tokio::test_utils::PgDatabase; |
| 9 | +use tokio_postgres::GenericClient; |
| 10 | +use etl_postgres::types::{TableId, TableName}; |
| 11 | +use etl_telemetry::tracing::init_test_tracing; |
| 12 | +use rand::random; |
| 13 | + |
| 14 | +/// Creates a partitioned table with the given name and partitions. |
| 15 | +/// |
| 16 | +/// This function creates: |
| 17 | +/// 1. A parent partitioned table with a primary key |
| 18 | +/// 2. Several child partitions based on the provided partition specifications |
| 19 | +/// |
| 20 | +/// Returns the table ID of the parent table and a list of partition table IDs. |
| 21 | +pub async fn create_partitioned_table<G: GenericClient>( |
| 22 | + database: &PgDatabase<G>, |
| 23 | + table_name: TableName, |
| 24 | + partition_specs: &[(&str, &str)], // (partition_name, partition_constraint) |
| 25 | +) -> Result<(TableId, Vec<TableId>), tokio_postgres::Error> { |
| 26 | + // Create the parent partitioned table with a primary key |
| 27 | + let create_parent_query = format!( |
| 28 | + "CREATE TABLE {} ( |
| 29 | + id bigserial, |
| 30 | + data text NOT NULL, |
| 31 | + partition_key integer NOT NULL, |
| 32 | + PRIMARY KEY (id, partition_key) |
| 33 | + ) PARTITION BY RANGE (partition_key)", |
| 34 | + table_name.as_quoted_identifier() |
| 35 | + ); |
| 36 | + |
| 37 | + database.run_sql(&create_parent_query).await?; |
| 38 | + |
| 39 | + // Get the OID of the parent table |
| 40 | + let parent_row = database |
| 41 | + .client |
| 42 | + .as_ref() |
| 43 | + .unwrap() |
| 44 | + .query_one( |
| 45 | + "SELECT c.oid FROM pg_class c JOIN pg_namespace n ON n.oid = c.relnamespace |
| 46 | + WHERE n.nspname = $1 AND c.relname = $2", |
| 47 | + &[&table_name.schema, &table_name.name], |
| 48 | + ) |
| 49 | + .await?; |
| 50 | + |
| 51 | + let parent_table_id: TableId = parent_row.get(0); |
| 52 | + let mut partition_table_ids = Vec::new(); |
| 53 | + |
| 54 | + // Create child partitions |
| 55 | + for (partition_name, partition_constraint) in partition_specs { |
| 56 | + let partition_table_name = TableName::new( |
| 57 | + table_name.schema.clone(), |
| 58 | + format!("{}_{}", table_name.name, partition_name), |
| 59 | + ); |
| 60 | + |
| 61 | + let create_partition_query = format!( |
| 62 | + "CREATE TABLE {} PARTITION OF {} FOR VALUES {}", |
| 63 | + partition_table_name.as_quoted_identifier(), |
| 64 | + table_name.as_quoted_identifier(), |
| 65 | + partition_constraint |
| 66 | + ); |
| 67 | + |
| 68 | + database.run_sql(&create_partition_query).await?; |
| 69 | + |
| 70 | + // Get the OID of the partition table |
| 71 | + let partition_row = database |
| 72 | + .client |
| 73 | + .as_ref() |
| 74 | + .unwrap() |
| 75 | + .query_one( |
| 76 | + "SELECT c.oid FROM pg_class c JOIN pg_namespace n ON n.oid = c.relnamespace |
| 77 | + WHERE n.nspname = $1 AND c.relname = $2", |
| 78 | + &[&partition_table_name.schema, &partition_table_name.name], |
| 79 | + ) |
| 80 | + .await?; |
| 81 | + |
| 82 | + let partition_table_id: TableId = partition_row.get(0); |
| 83 | + partition_table_ids.push(partition_table_id); |
| 84 | + } |
| 85 | + |
| 86 | + Ok((parent_table_id, partition_table_ids)) |
| 87 | +} |
| 88 | + |
| 89 | +/// Test that verifies partitioned tables with inherited primary keys work correctly. |
| 90 | +/// |
| 91 | +/// This test validates the fix for GitHub issue #296 where partitioned tables |
| 92 | +/// failed during sync because the ETL system didn't recognize that leaf partitions |
| 93 | +/// inherit primary key constraints from their parent table. |
| 94 | +#[tokio::test(flavor = "multi_thread")] |
| 95 | +async fn partitioned_table_sync_succeeds_with_inherited_primary_keys() { |
| 96 | + init_test_tracing(); |
| 97 | + let database = spawn_source_database().await; |
| 98 | + |
| 99 | + let table_name = test_table_name("partitioned_events"); |
| 100 | + |
| 101 | + // Create a partitioned table with three partitions based on partition_key ranges |
| 102 | + let partition_specs = [ |
| 103 | + ("p1", "FROM (1) TO (100)"), |
| 104 | + ("p2", "FROM (100) TO (200)"), |
| 105 | + ("p3", "FROM (200) TO (300)"), |
| 106 | + ]; |
| 107 | + |
| 108 | + let (parent_table_id, partition_table_ids) = create_partitioned_table( |
| 109 | + &database, |
| 110 | + table_name.clone(), |
| 111 | + &partition_specs |
| 112 | + ).await.expect("Failed to create partitioned table"); |
| 113 | + |
| 114 | + // Insert some test data into the partitioned table |
| 115 | + database |
| 116 | + .run_sql(&format!( |
| 117 | + "INSERT INTO {} (data, partition_key) VALUES |
| 118 | + ('event1', 50), ('event2', 150), ('event3', 250)", |
| 119 | + table_name.as_quoted_identifier() |
| 120 | + )) |
| 121 | + .await |
| 122 | + .unwrap(); |
| 123 | + |
| 124 | + let publication_name = "test_partitioned_pub".to_string(); |
| 125 | + database |
| 126 | + .create_publication(&publication_name, std::slice::from_ref(&table_name)) |
| 127 | + .await |
| 128 | + .expect("Failed to create publication"); |
| 129 | + |
| 130 | + let state_store = NotifyingStore::new(); |
| 131 | + let destination = TestDestinationWrapper::wrap(MemoryDestination::new()); |
| 132 | + |
| 133 | + let pipeline_id: PipelineId = random(); |
| 134 | + let mut pipeline = create_pipeline( |
| 135 | + &database.config, |
| 136 | + pipeline_id, |
| 137 | + publication_name, |
| 138 | + state_store.clone(), |
| 139 | + destination.clone(), |
| 140 | + ); |
| 141 | + |
| 142 | + pipeline.start().await.unwrap(); |
| 143 | + |
| 144 | + // Wait for all partitions to complete their sync (should succeed now) |
| 145 | + tokio::time::sleep(tokio::time::Duration::from_secs(10)).await; |
| 146 | + |
| 147 | + // Check that all partitions successfully synced without primary key errors |
| 148 | + let table_states = state_store.get_table_replication_states().await; |
| 149 | + |
| 150 | + let mut sync_done_count = 0; |
| 151 | + let mut error_count = 0; |
| 152 | + |
| 153 | + for (table_id, state) in &table_states { |
| 154 | + match state.as_type() { |
| 155 | + TableReplicationPhaseType::SyncDone | TableReplicationPhaseType::Ready => { |
| 156 | + sync_done_count += 1; |
| 157 | + println!("✓ Partition {} successfully synced", table_id); |
| 158 | + } |
| 159 | + TableReplicationPhaseType::Errored => { |
| 160 | + error_count += 1; |
| 161 | + let reason = match state { |
| 162 | + etl::state::table::TableReplicationPhase::Errored { reason, .. } => reason, |
| 163 | + _ => unreachable!(), |
| 164 | + }; |
| 165 | + println!("✗ Partition {} failed with error: {}", table_id, reason); |
| 166 | + } |
| 167 | + other_state => { |
| 168 | + println!("? Partition {} in state: {:?}", table_id, other_state); |
| 169 | + } |
| 170 | + } |
| 171 | + } |
| 172 | + |
| 173 | + // Shutdown the pipeline (should succeed now) |
| 174 | + let shutdown_result = pipeline.shutdown_and_wait().await; |
| 175 | + |
| 176 | + // Verify all 3 partitions successfully synced without errors |
| 177 | + assert_eq!( |
| 178 | + error_count, 0, |
| 179 | + "Expected no partitions to fail, but got {} errors", |
| 180 | + error_count |
| 181 | + ); |
| 182 | + |
| 183 | + assert!( |
| 184 | + sync_done_count >= 3, |
| 185 | + "Expected all 3 partitions to sync successfully, but only {} completed", |
| 186 | + sync_done_count |
| 187 | + ); |
| 188 | + |
| 189 | + // The pipeline should succeed (or fail for reasons other than primary key issues) |
| 190 | + if let Err(e) = shutdown_result { |
| 191 | + // If there's an error, it shouldn't be about missing primary keys |
| 192 | + let error_str = format!("{:?}", e); |
| 193 | + assert!( |
| 194 | + !error_str.contains("Missing primary key"), |
| 195 | + "Pipeline failed with primary key error despite fix: {}", |
| 196 | + error_str |
| 197 | + ); |
| 198 | + } |
| 199 | + |
| 200 | + // Verify that data was synced successfully |
| 201 | + let table_rows = destination.get_table_rows().await; |
| 202 | + |
| 203 | + // We expect data to be synced from all 3 partitions |
| 204 | + let total_rows: usize = table_rows.values().map(|rows| rows.len()).sum(); |
| 205 | + assert!( |
| 206 | + total_rows >= 3, |
| 207 | + "Expected at least 3 rows synced (one per partition), but got {}", |
| 208 | + total_rows |
| 209 | + ); |
| 210 | + |
| 211 | + println!( |
| 212 | + "✓ Successfully verified GitHub issue #296 fix: Partitioned table sync works with inherited primary keys" |
| 213 | + ); |
| 214 | + println!("✓ Parent table ID: {}", parent_table_id); |
| 215 | + println!("✓ Successfully synced partition IDs: {:?}", partition_table_ids); |
| 216 | + println!("✓ Total rows synced: {}", total_rows); |
| 217 | +} |
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