2 Commits

Author SHA1 Message Date
BjoernSchilberg
dc88d74e42 Merge 937ccf60c9 into dbeb242fb2 2023-03-21 23:43:36 -04:00
BjoernSchilberg
937ccf60c9 Added a tinygo example. 2023-02-12 22:24:16 +01:00
15 changed files with 106 additions and 173 deletions

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@@ -1,21 +0,0 @@
include "../include/microw8-api.cwa"
const SPRITE = 0x20000;
export fn upd() {
cls(0);
let t = time();
let i: i32;
loop spriteLoop {
let inline x = sin(t * -1.3 + i as f32 / 8_f) * 180_f + 160_f;
let inline y = sin(t * 1.7 + i as f32 / 9_f) * 140_f + 120_f;
blitSprite(SPRITE, 16, x as i32, y as i32, 0x100);
branch_if (i +:= 1) < 200: spriteLoop;
}
}
start fn start() {
printChar('OO');
circle(8_f, 8_f, 6_f, 75);
grabSprite(SPRITE, 16, 0, 0, 0);
}

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@@ -30,13 +30,11 @@ import "env.printInt" fn printInt(i32);
import "env.setTextColor" fn setTextColor(i32); import "env.setTextColor" fn setTextColor(i32);
import "env.setBackgroundColor" fn setBackgroundColor(i32); import "env.setBackgroundColor" fn setBackgroundColor(i32);
import "env.setCursorPosition" fn setCursorPosition(i32, i32); import "env.setCursorPosition" fn setCursorPosition(i32, i32);
import "env.rectangleOutline" fn rectangleOutline(f32, f32, f32, f32, i32); import "env.rectangle_outline" fn rectangle_outline(f32, f32, f32, f32, i32);
import "env.circleOutline" fn circleOutline(f32, f32, f32, i32); import "env.circle_outline" fn circle_outline(f32, f32, f32, i32);
import "env.exp" fn exp(f32) -> f32; import "env.exp" fn exp(f32) -> f32;
import "env.playNote" fn playNote(i32, i32); import "env.playNote" fn playNote(i32, i32);
import "env.sndGes" fn sndGes(i32) -> f32; import "env.sndGes" fn sndGes(i32) -> f32;
import "env.blitSprite" fn blitSprite(i32, i32, i32, i32, i32);
import "env.grabSprite" fn grabSprite(i32, i32, i32, i32, i32);
const TIME_MS = 0x40; const TIME_MS = 0x40;
const GAMEPAD = 0x44; const GAMEPAD = 0x44;

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@@ -30,13 +30,11 @@
(import "env" "setTextColor" (func $setTextColor (param i32))) (import "env" "setTextColor" (func $setTextColor (param i32)))
(import "env" "setBackgroundColor" (func $setBackgroundColor (param i32))) (import "env" "setBackgroundColor" (func $setBackgroundColor (param i32)))
(import "env" "setCursorPosition" (func $setCursorPosition (param i32) (param i32))) (import "env" "setCursorPosition" (func $setCursorPosition (param i32) (param i32)))
(import "env" "rectangleOutline" (func $rectangleOutline (param f32) (param f32) (param f32) (param f32) (param i32))) (import "env" "rectangle_outline" (func $rectangle_outline (param f32) (param f32) (param f32) (param f32) (param i32)))
(import "env" "circleOutline" (func $circleOutline (param f32) (param f32) (param f32) (param i32))) (import "env" "circle_outline" (func $circle_outline (param f32) (param f32) (param f32) (param i32)))
(import "env" "exp" (func $exp (param f32) (result f32))) (import "env" "exp" (func $exp (param f32) (result f32)))
(import "env" "playNote" (func $playNote (param i32) (param i32))) (import "env" "playNote" (func $playNote (param i32) (param i32)))
(import "env" "sndGes" (func $sndGes (param i32) (result f32))) (import "env" "sndGes" (func $sndGes (param i32) (result f32)))
(import "env" "blitSprite" (func $blitSprite (param i32) (param i32) (param i32) (param i32) (param i32)))
(import "env" "grabSprite" (func $grabSprite (param i32) (param i32) (param i32) (param i32) (param i32)))
;; to use defines, include this file with a preprocessor ;; to use defines, include this file with a preprocessor
;; like gpp (https://logological.org/gpp). ;; like gpp (https://logological.org/gpp).

6
examples/tinygo/build.sh Executable file
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@@ -0,0 +1,6 @@
#!/bin/bash
tinygo build -o cart.wasm -target target.json ./main.go
uw8 filter-exports cart.wasm cart.wasm && \
#wasm-opt -Oz --fast-math --strip-producers -o cart.wasm cart.wasm && \
uw8 pack -l 9 cart.wasm cart.uw8

38
examples/tinygo/main.go Normal file
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@@ -0,0 +1,38 @@
package main
import (
"math"
"unsafe"
)
//go:wasm-module env
//export atan2
func atan2(x, y float32) float32
//go:wasm-module env
//export time
func time() float32
func sqrt(v float32) float32 {
return float32(math.Sqrt(float64(v)))
}
var FRAMEBUFFER = (*[320 * 240]byte)(unsafe.Pointer(uintptr(120)))
//export upd
func upd() {
var i int
for i < 320*240 {
t := time() * 63.0
x := float32(i%320 - 160)
y := float32(i/320 - 120)
d := float32(40000.0) / sqrt(x*x+y*y)
u := atan2(x, y) * 512.0 / 3.141
c := uint8((int(d+t*2.0) ^ int(u+t)) >> 4)
FRAMEBUFFER[i] = c
i++
}
}
func main() {
}

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@@ -0,0 +1,23 @@
{
"llvm-target": "wasm32--wasi",
"build-tags": [ "tinygo.wasm" ],
"goos": "js",
"goarch": "wasm",
"linker": "wasm-ld",
"libc": "wasi-libc",
"cflags": [
"--target=wasm32--wasi",
"--sysroot={root}/lib/wasi-libc/sysroot",
"-Oz"
],
"ldflags": [
"--no-entry",
"--export-all",
"--import-memory",
"--initial-memory=262144",
"--global-base=81920",
"-zstack-size=4096",
"--strip-all"
],
"wasm-abi": "js"
}

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@@ -5,7 +5,11 @@ pub fn build(b: *std.build.Builder) void {
const lib = b.addSharedLibrary("cart", "main.zig", .unversioned); const lib = b.addSharedLibrary("cart", "main.zig", .unversioned);
lib.setBuildMode(mode); lib.setBuildMode(mode);
lib.setTarget(.{ .cpu_arch = .wasm32, .os_tag = .freestanding, .cpu_features_add = std.Target.wasm.featureSet(&.{.nontrapping_fptoint}) }); lib.setTarget(.{
.cpu_arch = .wasm32,
.os_tag = .freestanding,
.cpu_features_add = std.Target.wasm.featureSet(&.{ .nontrapping_fptoint })
});
lib.import_memory = true; lib.import_memory = true;
lib.initial_memory = 262144; lib.initial_memory = 262144;
lib.max_memory = 262144; lib.max_memory = 262144;
@@ -14,13 +18,19 @@ pub fn build(b: *std.build.Builder) void {
lib.install(); lib.install();
if (lib.install_step) |install_step| { if (lib.install_step) |install_step| {
const run_filter_exports = b.addSystemCommand(&[_][]const u8{ "uw8", "filter-exports", "zig-out/lib/cart.wasm", "zig-out/lib/cart-filtered.wasm" }); const run_filter_exports = b.addSystemCommand(&[_][]const u8{
"uw8", "filter-exports", "zig-out/lib/cart.wasm", "zig-out/lib/cart-filtered.wasm"
});
run_filter_exports.step.dependOn(&install_step.step); run_filter_exports.step.dependOn(&install_step.step);
const run_wasm_opt = b.addSystemCommand(&[_][]const u8{ "wasm-opt", "--enable-nontrapping-float-to-int", "-Oz", "-o", "zig-out/cart.wasm", "zig-out/lib/cart-filtered.wasm" }); const run_wasm_opt = b.addSystemCommand(&[_][]const u8{
"wasm-opt", "-Oz", "-o", "zig-out/cart.wasm", "zig-out/lib/cart-filtered.wasm"
});
run_wasm_opt.step.dependOn(&run_filter_exports.step); run_wasm_opt.step.dependOn(&run_filter_exports.step);
const run_uw8_pack = b.addSystemCommand(&[_][]const u8{ "uw8", "pack", "-l", "9", "zig-out/cart.wasm", "zig-out/cart.uw8" }); const run_uw8_pack = b.addSystemCommand(&[_][]const u8{
"uw8", "pack", "-l", "9", "zig-out/cart.wasm", "zig-out/cart.uw8"
});
run_uw8_pack.step.dependOn(&run_wasm_opt.step); run_uw8_pack.step.dependOn(&run_wasm_opt.step);
const make_opt = b.step("make_opt", "make size optimized cart"); const make_opt = b.step("make_opt", "make size optimized cart");

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@@ -1,11 +1,11 @@
extern fn atan2(x: f32, y: f32) f32; extern fn atan2(x: f32, y: f32) f32;
extern fn time() f32; extern fn time() f32;
pub const FRAMEBUFFER: *[320 * 240]u8 = @intToPtr(*[320 * 240]u8, 120); pub const FRAMEBUFFER: *[320*240]u8 = @intToPtr(*[320*240]u8, 120);
export fn upd() void { export fn upd() void {
var i: u32 = 0; var i: u32 = 0;
while (true) { while(true) {
var t = time() * 63.0; var t = time() * 63.0;
var x = @intToFloat(f32, (@intCast(i32, i % 320) - 160)); var x = @intToFloat(f32, (@intCast(i32, i % 320) - 160));
var y = @intToFloat(f32, (@intCast(i32, i / 320) - 120)); var y = @intToFloat(f32, (@intCast(i32, i / 320) - 120));
@@ -13,10 +13,8 @@ export fn upd() void {
var u = atan2(x, y) * 512.0 / 3.141; var u = atan2(x, y) * 512.0 / 3.141;
var c = @intCast(u8, (@floatToInt(i32, d + t * 2.0) ^ @floatToInt(i32, u + t)) & 255) >> 4; var c = @intCast(u8, (@floatToInt(i32, d + t * 2.0) ^ @floatToInt(i32, u + t)) & 255) >> 4;
FRAMEBUFFER[i] = c; FRAMEBUFFER[@as(usize, i)] = c;
i += 1; i += 1;
if (i >= 320 * 240) { if(i >= 320*240) { break; }
break;
}
} }
} }

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@@ -171,7 +171,7 @@ export fn rectangle(x: f32, y: f32, w: f32, h: f32, col: i32) {
} }
} }
export fn rectangleOutline(x: f32, y: f32, w: f32, h: f32, col: i32) { export fn rectangle_outline(x: f32, y: f32, w: f32, h: f32, col: i32) {
let xl = nearest(x) as i32; let xl = nearest(x) as i32;
let xr = nearest(x + w) as i32; let xr = nearest(x + w) as i32;
let yt = nearest(y) as i32; let yt = nearest(y) as i32;
@@ -212,7 +212,7 @@ export fn circle(cx: f32, cy: f32, radius: f32, col: i32) {
} }
} }
export fn circleOutline(cx: f32, cy: f32, radius: f32, col: i32) { export fn circle_outline(cx: f32, cy: f32, radius: f32, col: i32) {
let prev_w: f32; let prev_w: f32;
let y = clamp(nearest(cy - radius) as i32, -1, 241); let y = clamp(nearest(cy - radius) as i32, -1, 241);
let maxY = clamp(nearest(cy + radius) as i32, -1, 241); let maxY = clamp(nearest(cy + radius) as i32, -1, 241);
@@ -352,92 +352,6 @@ export fn line(x1: f32, y1: f32, x2: f32, y2: f32, col: i32) {
setPixel(i32.trunc_sat_f32_s(x1 + f * dx), i32.trunc_sat_f32_s(y1 + f * dy), col); setPixel(i32.trunc_sat_f32_s(x1 + f * dx), i32.trunc_sat_f32_s(y1 + f * dy), col);
} }
export fn blitSprite(sprite: i32, size: i32, x: i32, y: i32, control: i32) {
let lazy width = size & 65535;
let lazy height = select(size >> 16, size >> 16, width);
let lazy x0 = select(x < 0, -x, 0);
let lazy x1 = select(x + width > 320, 320 - x, width);
let lazy y0 = select(y < 0, -y, 0);
let lazy y1 = select(y + height > 240, 240 - y, height);
let lazy numRows = y1 - y0;
let lazy numCols = x1 - x0;
if numRows <= 0 | numCols <= 0 {
return;
}
let trans = (control & 511) - 256;
let lazy flip_x = 1 - ((control >> 8) & 2);
let lazy flip_y = 1 - ((control >> 9) & 2);
if flip_x < 0 {
sprite += width - 1;
}
if flip_y < 0 {
sprite += (height - 1) * width;
}
let spriteRow = sprite + x0 * flip_x + y0 * flip_y * width;
let screenRow = x + x0 + (y + y0) * 320;
loop yloop {
let lx = 0;
loop xloop {
let lazy col = (spriteRow + lx * flip_x)?0;
if col != trans {
(screenRow + lx)?120 = col;
}
branch_if (lx +:= 1) < numCols: xloop;
}
spriteRow += width * flip_y;
screenRow += 320;
branch_if numRows -:= 1: yloop;
}
}
export fn grabSprite(sprite: i32, size: i32, x: i32, y: i32, control: i32) {
let lazy width = size & 65535;
let lazy height = select(size >> 16, size >> 16, width);
let lazy x0 = select(x < 0, -x, 0);
let lazy x1 = select(x + width > 320, 320 - x, width);
let lazy y0 = select(y < 0, -y, 0);
let lazy y1 = select(y + height > 240, 240 - y, height);
let lazy numRows = y1 - y0;
let lazy numCols = x1 - x0;
if numRows <= 0 | numCols <= 0 {
return;
}
let trans = (control & 511) - 256;
let lazy flip_x = 1 - ((control >> 8) & 2);
let lazy flip_y = 1 - ((control >> 9) & 2);
if flip_x < 0 {
sprite += width - 1;
}
if flip_y < 0 {
sprite += (height - 1) * width;
}
let spriteRow = sprite + x0 * flip_x + y0 * flip_y * width;
let screenRow = x + x0 + (y + y0) * 320;
loop yloop {
let lx = 0;
loop xloop {
let lazy col = (screenRow + lx)?120;
if col != trans {
(spriteRow + lx * flip_x)?0 = col;
}
branch_if (lx +:= 1) < numCols: xloop;
}
spriteRow += width * flip_y;
screenRow += 320;
branch_if numRows -:= 1: yloop;
}
}
////////// //////////
// TEXT // // TEXT //
////////// //////////

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@@ -146,13 +146,13 @@ Fills the circle at `cx, cy` and with `radius` with the given color index.
(Sets all pixels where the pixel center lies inside the circle.) (Sets all pixels where the pixel center lies inside the circle.)
### fn rectangleOutline(x: f32, y: f32, w: f32, h: f32, color: i32) ### fn rectangle_outline(x: f32, y: f32, w: f32, h: f32, color: i32)
Draws a one pixel outline on the inside of the given rectangle. Draws a one pixel outline on the inside of the given rectangle.
(Draws the outermost pixels that are still inside the rectangle area.) (Draws the outermost pixels that are still inside the rectangle area.)
### fn circleOutline(cx: f32, cy: f32, radius: f32, color: i32) ### fn circle_outline(cx: f32, cy: f32, radius: f32, color: i32)
Draws a one pixel outline on the inside of the given circle. Draws a one pixel outline on the inside of the given circle.
@@ -162,21 +162,6 @@ Draws a one pixel outline on the inside of the given circle.
Draws a line from `x1,y1` to `x2,y2` in the given color index. Draws a line from `x1,y1` to `x2,y2` in the given color index.
### fn blitSprite(spriteData: i32, size: i32, x: i32, y: i32, control: i32)
Copies the pixel data at `spriteData` onto the screen at `x`, `y`. The size of the sprite is passed as `width | (height << 16)`.
If the height is given as 0, the sprite is is treated as square (width x width).
The control parameter controls masking and flipping of the sprite:
* bits 0-7: color mask index
* bit 8: switch on masked blit (pixel with color mask index are treated as transparent)
* bit 9: flip sprite x
* bit 10: flip sprite y
### fn grabSprite(spriteData: i32, size: i32, x: i32, y: i32, control: i32)
Copies the pixel data on the screen at `x`, `y` to `spriteData`. Parameters are exactly the same as `blitSprite`.
## Input ## Input
MicroW8 provides input from a gamepad with one D-Pad and 4 buttons, or a keyboard emulation thereof. MicroW8 provides input from a gamepad with one D-Pad and 4 buttons, or a keyboard emulation thereof.

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@@ -181,12 +181,10 @@ impl super::Runtime for MicroW8 {
if let Some(mut instance) = self.instance.take() { if let Some(mut instance) = self.instance.take() {
let time = (now - instance.start_time).as_millis() as i32; let time = (now - instance.start_time).as_millis() as i32;
let next_frame = { let next_frame = {
let frame = (time as u32 as u64 * 6 / 100) as u32; let offset = ((time as u32 as i64 * 6) % 100 - 50) / 6;
let cur_offset = (time as u32).wrapping_sub((frame as u64 * 100 / 6) as u32); let max = now + Duration::from_millis(17);
let next_time = let next_center = now + Duration::from_millis((16 - offset) as u64);
((frame as u64 + 1) * 100 / 6 + cur_offset.max(1).min(4) as u64) as u32; next_center.min(max)
let offset = next_time.wrapping_sub(time as u32);
now + Duration::from_millis(offset as u64)
}; };
{ {

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@@ -152,14 +152,14 @@ impl BaseModule {
add_function( add_function(
&mut functions, &mut functions,
&type_map, &type_map,
"rectangleOutline", "rectangle_outline",
&[F32, F32, F32, F32, I32], &[F32, F32, F32, F32, I32],
None, None,
); );
add_function( add_function(
&mut functions, &mut functions,
&type_map, &type_map,
"circleOutline", "circle_outline",
&[F32, F32, F32, I32], &[F32, F32, F32, I32],
None, None,
); );
@@ -169,21 +169,6 @@ impl BaseModule {
add_function(&mut functions, &type_map, "playNote", &[I32, I32], None); add_function(&mut functions, &type_map, "playNote", &[I32, I32], None);
add_function(&mut functions, &type_map, "sndGes", &[I32], Some(F32)); add_function(&mut functions, &type_map, "sndGes", &[I32], Some(F32));
add_function(
&mut functions,
&type_map,
"blitSprite",
&[I32, I32, I32, I32, I32],
None,
);
add_function(
&mut functions,
&type_map,
"grabSprite",
&[I32, I32, I32, I32, I32],
None,
);
for i in functions.len()..64 { for i in functions.len()..64 {
add_function( add_function(
&mut functions, &mut functions,

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@@ -274,7 +274,7 @@ export default function MicroW8(screen, config = {}) {
try { try {
let restart = false; let restart = false;
let nextFrame = 0; let thisFrame;
if (!isPaused) { if (!isPaused) {
let gamepads = navigator.getGamepads(); let gamepads = navigator.getGamepads();
let gamepad = 0; let gamepad = 0;
@@ -321,12 +321,13 @@ export default function MicroW8(screen, config = {}) {
} }
canvasCtx.putImageData(imageData, 0, 0); canvasCtx.putImageData(imageData, 0, 0);
let thisFrame = Math.floor(time * 6 / 100); let timeOffset = ((time * 6) % 100 - 50) / 6;
let timeOffset = time - thisFrame * 100 / 6; thisFrame = startTime + time - timeOffset / 8;
nextFrame = Math.ceil(startTime + (thisFrame + 1) * 100 / 6 + Math.min(4, timeOffset)); } else {
thisFrame = Date.now();
} }
let now = Date.now(); let now = Date.now();
nextFrame = Math.max(nextFrame, now); let nextFrame = Math.max(thisFrame + timePerFrame, now);
if (restart) { if (restart) {
runModule(currentData); runModule(currentData);