A scalar now lives in the variable record (`akbasic_Variable::inlinevalue`) rather than drawing from the value pool, so a `GOSUB` local, a `FOR` counter and a `DEF` parameter cost nothing at all. The pool is a bump allocator with no free, and its comment justified that with "nothing in BASIC destroys a variable". Scope exit does: it marks the variable slot unused, `new_variable()` memsets the slot it hands back -- clearing `values` -- and `variable_init()` therefore took *fresh* slots for a variable whose old ones were still counted. Every scope that created a local leaked, with no diagnostic until the pool ran dry on whichever line happened to be unlucky. Six thousand `GOSUB`s creating one local used to die on the 4091st at `LOC# = 1` with "Array of 1 elements does not fit in the 0 remaining value slots". They now run. A `DEF` called eight thousand times used to die between the four and five thousandth -- the leaking slot was the call scope's parameter, which is a scalar -- and both forms now run. A game creating one name per tick was dead in half a minute; the Breakout in examples/ was, after twenty-five seconds. **A `@` name is the one exclusion, and it is the whole of it.** A structure or a pointer to one keeps pool storage, because a pointer into a record outlives the scope that DIMmed it -- docs/16-structures.md says nothing is reclaimed and `prev_environment()` relies on it. The name suffix is the right test rather than `structtype`, which the DIM path sets *after* calling `variable_init()`. A local array therefore still leaks, deliberately, and is now the narrow rule the tutorial teaches. `SWAP` needed the other half: it copies whole variable records, so the `values` pointer that came over named the other variable's inline slot -- which by then held this variable's own old value -- and SWAP silently did nothing. Caught by tests/language/housekeeping/verbs.bas, which is the golden corpus earning its keep. tests/value_pool.c is the new coverage. It asserts the mechanism as well as the consequence: a later change that moved arrays inline too would pass every behavioural case and quietly break the pointer guarantee. The sharpest case takes the pool's whole 4096 slots in four arrays after two hundred scope entries, so one leaked slot has nowhere to go. Chapter 17 Step 3 taught "declare every name at the top" and no longer needs to. It now teaches what is still true -- a name first seen inside a subroutine dies at RETURN, so a routine cannot answer its caller through one -- and its demonstration is the array case, which still fails. TODO.md section 6 item 30 and section 9 item 1, both struck. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
The akbasic guide
akbasic is a BASIC interpreter in the style of Commodore BASIC 7.0 — the dialect the C128 shipped with — and Dartmouth BASIC. It runs programs from a file or from an interactive prompt, and it is also a C library you can link into a game so that players can script it.
These chapters follow the shape of the C128 Programmer's Reference Guide: the language first, then each hardware area, then the reference sections. If you know BASIC 7.0 you can skip to Chapter 13, which is the list of everything that behaves differently here and why. Chapter 14 is the odd one out: it is about the interpreter rather than the language, for anyone embedding it, debugging it or changing it.
Chapters 17 and 18 are tutorials rather than reference: they build one complete game twice, two different ways, and are where the rules that a real program runs into are collected.
Chapters
| 1. Introduction | What akbasic is, what it is not, and how to build it |
| 2. Getting started | The prompt, your first program, saving and loading |
| 3. The language | Variables, types, arrays, operators, expressions |
| 4. Control flow | IF, FOR, DO, GOSUB, labels, ON, error trapping |
| 5. Strings and formatting | String functions, PRINT USING, PUDEF |
| 6. Graphics | GRAPHIC, DRAW, BOX, CIRCLE, PAINT, shapes |
| 7. Sound | SOUND, PLAY, ENVELOPE, VOL, TEMPO |
| 8. Sprites | SPRITE, SPRSAV, MOVSPR, collision |
| 9. Files and disk | Channels, DOPEN, program storage |
| 10. Embedding | Driving the interpreter from C |
| 11. Verb reference | Every statement, alphabetically |
| 12. Function reference | Every function, alphabetically |
| 13. Differences from BASIC 7.0 | What a C128 programmer needs to know |
| 14. Architecture | How the interpreter is put together, how to debug it, how to change it |
| 15. Error codes | Appendix: every value ER# can hold and every error line the interpreter prints |
| 16. Structures | TYPE, records, strict pointers, and sharing a C struct with an embedding host |
| 17. Tutorial: Breakout | Build a whole game out of the text grid and two DATA sprites, a step at a time |
| 18. Tutorial: Breakout with artwork | Build it again out of loaded artwork, powerups and a drawn HUD |
The shortest possible start
$ cmake -S . -B build && cmake --build build
$ ./build/basic
10 FOR I# = 1 TO 5
20 PRINT "HELLO " + I#
30 NEXT I#
RUN
HELLO 1
HELLO 2
HELLO 3
HELLO 4
HELLO 5
READY
Two things in that program are not Commodore BASIC and will catch you out
immediately: variables carry a type suffix (I# is an integer) and +
concatenates a string with a number. Chapter 3 explains both.
Every example in these chapters is executed by the test suite and its output
compared byte for byte — see MAINTENANCE.md if you are editing them.