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Let a program say what part of a sprite collides
`SPRHIT n, kind [,x1, y1, x2, y2]` gives a sprite a collision shape: a box, a
circle inscribed in it, or a capsule. `RSPHIT(n, f)` reads it back in SPRHIT's
own argument order, the way RSPRITE and RSPPOS already do, and needs no device
because it answers from interpreter state.

The rectangle is two corners measured from the sprite's top-left, in device
pixels -- the same `x1, y1, x2, y2` that `BOX` and `SSHAPE` take. A dialect with
two spellings for a rectangle is one nobody can write from memory. Omit it and
the shape fits whatever the picture turned out to be, which is what a sprite
loaded from a file needs: `SPRSAV "ship.png", 1` takes the image's own size and
the program never learns what that was.

**A sprite nobody has shaped collides with its whole frame, expansion bits
included, exactly as before.** That is a promise rather than a convenience, and
it has its own test: the same two sprites in the same two places, once with no
SPRHIT and once with a four-pixel box, reporting a collision and then not.

Named SPRHIT rather than SPRSHAPE because "shape" already means "a region SSHAPE
saved" in this dialect, in this very chapter -- `SPRSAV A$, 1` takes one -- and a
reader who typed `SPRSHAPE A$, 1` would have had every reason to. Both names, and
RSPHIT, were grepped against every label in docs/, examples/ and both corpora
first: a bare word is a label here, so a verb and a label share one namespace and
taking a name a checked-in listing already uses would break it silently.

`SPRHIT n, 0` takes a sprite out of collision while leaving it on the screen --
the ghost, the flashing invulnerable player, the pickup already taken. Hiding it
with `SPRITE n, 0` stops it colliding too, and is what you want when it should
not be seen either.

The circle answers the complaint chapter 8 already ships a figure of. That figure
shows two discs whose *boxes* touch at a corner while the artwork is nowhere
near, and `BUMP(1)` reporting a collision; two `SPRHIT n, 2` and it stops. The
test asserts both halves so the figure's caption stays true.

`tests/verbs_table.c` caught RSPHIT filed after RSPPOS rather than before it,
which is the sorted-table test doing exactly the job it exists for.

Docs: a new section in chapter 8, rows in the verb and function references in
alphabetical order, and chapter 13's "collision is by bounding box" becomes
"collision is by shape" with the addition named. 111 with akgl, 110 without, and
the artwork breakout still runs clean.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01EwxGB6TdoVvZ11KQQME9cL
2026-08-02 10:01:33 -04:00
..

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, in numbered steps you can type in one at a time. Start with 17 — it needs nothing but the earlier chapters, and 18 assumes it.

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, in sixteen steps
18. Tutorial: Breakout with artwork Build it again out of loaded artwork, powerups and a drawn colour HUD, in thirteen

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.