# Relational Design AI Usage ## Name of AI service/solution that was used **Claude Code** (Anthropic) - **URL:** https://claude.com/claude-code - **Type of service/subscription:** Claude subscription, model Claude Opus 4.7 (1M context). ## Final result ### Diagram `relational_diagram_v4.png` was exported by the student in DBeaver from the live `project` schema, with the tables in the same positions as the entity sets of `ERModel_v05.png`; see [RelationalDesign](RelationalDesign.md#how-to-regenerate-it) for instructions. ### Results in details / description The AI: - Consolidated two inconsistent draft schemas (`server/db/db.sql` and `server/db/schema.sql`) into a single `schema_creation.sql`. - Corrected foreign-key errors in the original (the `crypto_id` column in `holdings`, `orders`, and `transactions` had been pointed at both `users(id)` and `crypto(id)`; the AI split it into separate `user_id` and `crypto_id` columns per `ep-diagram.md`). - Added two convenience views, `v_latest_prices` and `v_portfolio`, to keep the Go CLI simple. - Produced a sample-data script `data_load.sql` that TRUNCATEs and re-inserts deterministic rows, so the "must work on empty DB and on a DB that already has data" requirement from P2 is met. - Documented normalisation up to 3NF and the intentional denormalisation of `holdings.avg_price`. ## Summary of AI involvement | | Session 1 — 2026-04-21 | Session 2 — 2026-08-06/07 | |---|---|---| | **What I brought** | My own draft SQL (`db.sql`, `schema.sql`) and the model in `ep-diagram.md` | The schema as it stood after session 1 | | **What the AI did** | Reviewed my SQL, found the foreign-key errors, consolidated two inconsistent drafts into one script | Reviewed the schema again; one constraint change, plus documentation of the transformation | | **What I decided** | Which corrections to adopt, to keep both balance columns, to drop the secret-question fields | To make `avg_price` `NOT NULL` rather than handle nulls in application code | The relational model in this phase is a transformation of *my* ER model, and the foreign-key errors the AI found in session 1 were errors in *my* draft SQL — that review is the single most useful thing the AI did on this phase. ## Entire AI usage log See [ERModelAIUsage](../P1-ConceptualModel/ERModelAIUsage.md) — the full transcript of the 2026-04-21 conversation covers both P1 and P2 work. The specific prompts that drove the relational-design output were the same "make it work and make it fill in or to follow all of the needed instructions" instruction and the student's subsequent "do everything that you need to do". > **Student action required:** append any future consultations where you asked the AI to refine the schema, tune constraints, or write additional queries. ### Session 2 — 2026-08-06 / 2026-08-07 Prompts are logged in full in [ERModelAIUsage](../P1-ConceptualModel/ERModelAIUsage.md#session-2--2026-08-06--2026-08-07); the one that drove this phase was *"Also fix some database things or golang things if you think we can do it better"*. Changes to the P2 artefacts: - `holdings.avg_price` changed from nullable to `NOT NULL DEFAULT 0 CHECK (avg_price >= 0)`. Reason: it feeds the P/L arithmetic in `v_portfolio`, and SQL arithmetic involving `NULL` produces `NULL`, so a nullable average would have silently blanked the unrealised-P/L column of a real position. A related crash path in the Go code (scanning a `NULL` average into a non-nullable `float64`, which was reported to the user as "Insufficient holding") was fixed at the same time. - [RelationalDesign](RelationalDesign.md) gained an explicit account of the partial transformation: which ER construct each foreign key comes from, that M:N relationships with attributes become tables whose foreign-key pair is a `UNIQUE` constraint, and that total participation becomes `NOT NULL` — which is why `transactions.related_order` is the one nullable foreign key. - The candidate keys of `holdings` and `watchlist_items` are now documented as the relationship keys `{user_id, crypto_id}` and `{watchlist_id, crypto_id}`. Both scripts were re-run end to end against PostgreSQL 16 after these changes. > **Still outstanding:** `relational_schema.jpg` must be exported from DBeaver > against the faculty database. No AI involvement is possible there — it needs a > live connection to your assigned database. ### Session 3 — 2026-09-16 Driven by the same design review logged in full in [ERModelAIUsage](../P1-ConceptualModel/ERModelAIUsage.md#session-3--2026-09-16): a sell order had nothing to check `holdings.quantity` against except itself, so nothing stopped two sell orders from being granted the same units. Changes to the P2 artefacts: - `holdings` gained `reserved_quantity numeric(20,4) NOT NULL DEFAULT 0 CHECK (reserved_quantity >= 0 AND reserved_quantity <= quantity)` in `schema_creation.sql`. - `v_portfolio` gained `reserved_quantity` and the derived `available_quantity = quantity - reserved_quantity`. - [RelationalDesign](RelationalDesign.md) gained a "Reservation and the order lifecycle" section explaining why the check is enforced at the database level rather than trusted to application code, and why it does not conflict with the existing `SELECT … FOR UPDATE` locking on the sell path. - `data_load.sql` needed no change — `reserved_quantity` defaults to 0, which is correct for every seeded holding. Re-run end to end against the live database on `localhost:5433` (`-init` then `-load-data`), and against a manually seeded 2 BTC holding to reproduce the exact scenario that motivated the change — see [UseCase0005Implementation](../P4-Prototype/UseCase0005Implementation.md) for the transcript. **What I decided:** to add the `CHECK` constraint rather than rely on `trade.go` alone to keep the reservation consistent — the same reasoning already applied to `avg_price NOT NULL` in session 2. ### Session 4 — 2026-09-29 (Claude Opus 5.5): correction after review **Prompt (student, excerpt):** I pasted the reviewer's comments on P2: > the `contains` relationship from the model is implemented differently in the database > the `holds` relationship from the model is implemented differently in the database > there may be other inconsistencies that are difficult to spot; the Phase 2 diagram should > have been created using DBeaver with a layout visually similar to the ERD > I suggest correcting only the Phase 1 model so that it matches Phase 2 [...] For Phase 2, > simply update the image according to the requirements. **Response (AI, summarised):** - Explained the mismatch. In the model, `Holds` and `Contains` were M:N relationships, whose table key would be the pair `{user_id, crypto_id}` / `{watchlist_id, crypto_id}`. But `holdings` and `watchlist_items` have their own `id` primary key, which is how an entity set is implemented. Following the reviewer's advice, P1 was corrected (v05, entity sets `Holdings` and `WatchlistItems`), and the database was not changed. - Found the other inconsistencies between this page and the live schema. The page was missing `users.reserved_balance`, `orders.filled_quantity`, the status `partially_filled`, `market_trades.buy_order_id` / `sell_order_id` and the whole `order_events` table. The "10 tables", "5 indexes" and "the one nullable foreign key" counts were also out of date (really 11 tables, 8 indexes in `schema_creation.sql`, and 3 nullable foreign keys). - Rewrote [RelationalDesign](RelationalDesign.md). Each relation is labelled with its entity set and each foreign key with its relationship, and the transformation is a table of all 15 relationships → 15 foreign keys, with `NOT NULL` following participation. - Wrote export instructions with a table grid that mirrors `ERModel_v05.png`. **What I decided:** to correct P1 instead of the database, as the reviewer suggested. I exported `relational_diagram_v4.png` from DBeaver myself, with the tables arranged like the ER diagram.