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93 lines
3.6 KiB
PL/PgSQL
93 lines
3.6 KiB
PL/PgSQL
ALTER TABLE "user_table_definitions" ADD COLUMN "import_status" text;--> statement-breakpoint
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ALTER TABLE "user_table_definitions" ADD COLUMN "import_id" text;--> statement-breakpoint
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ALTER TABLE "user_table_definitions" ADD COLUMN "import_error" text;--> statement-breakpoint
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ALTER TABLE "user_table_definitions" ADD COLUMN "import_rows_processed" integer DEFAULT 0 NOT NULL;--> statement-breakpoint
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ALTER TABLE "user_table_definitions" ADD COLUMN "import_started_at" timestamp;--> statement-breakpoint
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-- ============================================================
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-- Statement-level row-count maintenance for user_table_rows.
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--
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-- Replaces the per-row BEFORE INSERT / AFTER DELETE triggers from migration 0158
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-- (whose increment function body was rewritten race-free in 0198, but which still
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-- fired FOR EACH ROW). Per-row firing serialized a row-level lock on the single
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-- user_table_definitions row once per inserted/deleted row -- the dominant cost and
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-- contention point for bulk operations (e.g. a 1M-row import = 1M lock cycles).
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--
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-- The statement-level versions use transition tables to bump row_count by the
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-- per-table count of affected rows in ONE UPDATE per statement, preserving the
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-- atomic cap check. Transition tables require AFTER triggers, so the insert trigger
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-- moves BEFORE -> AFTER: rows are inserted, then the count is bumped with the cap
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-- check; an over-cap batch RAISEs and rolls back the whole statement.
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-- ============================================================
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CREATE OR REPLACE FUNCTION increment_user_table_row_count_stmt()
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RETURNS TRIGGER AS $$
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DECLARE
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over_cap text;
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BEGIN
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-- Per-table counts within this statement; one capped UPDATE per affected table.
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-- A table_id present in the inserted rows always exists (FK), so any table the
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-- UPDATE did not touch was rejected by the `row_count + n <= max_rows` guard.
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WITH counts AS (
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SELECT table_id, count(*)::int AS n
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FROM new_rows
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GROUP BY table_id
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),
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updated AS (
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UPDATE user_table_definitions d
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SET row_count = d.row_count + c.n,
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updated_at = now()
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FROM counts c
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WHERE d.id = c.table_id
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AND d.row_count + c.n <= d.max_rows
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RETURNING d.id
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)
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SELECT string_agg(c.table_id, ', ')
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INTO over_cap
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FROM counts c
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WHERE c.table_id NOT IN (SELECT id FROM updated);
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IF over_cap IS NOT NULL THEN
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RAISE EXCEPTION 'Maximum row limit reached for table(s) %', over_cap
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USING ERRCODE = 'check_violation';
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END IF;
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RETURN NULL;
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END;
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$$ LANGUAGE plpgsql;
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--> statement-breakpoint
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CREATE OR REPLACE FUNCTION decrement_user_table_row_count_stmt()
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RETURNS TRIGGER AS $$
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BEGIN
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UPDATE user_table_definitions d
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SET row_count = GREATEST(d.row_count - c.n, 0),
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updated_at = now()
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FROM (
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SELECT table_id, count(*)::int AS n
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FROM old_rows
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GROUP BY table_id
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) c
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WHERE d.id = c.table_id;
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RETURN NULL;
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END;
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$$ LANGUAGE plpgsql;
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--> statement-breakpoint
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DROP TRIGGER IF EXISTS user_table_rows_insert_trigger ON user_table_rows;--> statement-breakpoint
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DROP TRIGGER IF EXISTS user_table_rows_delete_trigger ON user_table_rows;--> statement-breakpoint
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CREATE TRIGGER user_table_rows_insert_stmt_trigger
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AFTER INSERT ON user_table_rows
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REFERENCING NEW TABLE AS new_rows
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FOR EACH STATEMENT
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EXECUTE FUNCTION increment_user_table_row_count_stmt();
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--> statement-breakpoint
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CREATE TRIGGER user_table_rows_delete_stmt_trigger
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AFTER DELETE ON user_table_rows
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REFERENCING OLD TABLE AS old_rows
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FOR EACH STATEMENT
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EXECUTE FUNCTION decrement_user_table_row_count_stmt();
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