125 lines
3.9 KiB
Zig
125 lines
3.9 KiB
Zig
const std = @import("std");
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const expect = std.testing.expect;
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const print = std.debug.print;
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const getenv = std.posix.getenv;
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const stdout = std.io.getStdOut();
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const out = stdout.writer();
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const stdin = std.io.getStdIn().reader();
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const sleep = std.time.sleep;
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const primitive = @import("primitives.zig");
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const Point = primitive.Point;
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const pixel = primitive.pixel;
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const triangle = primitive.triangle;
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const term = @import("term.zig");
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const Winsize = term.Winsize;
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const getTermDimension = term.getTermDimension;
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const movement = @import("movement.zig");
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const mv_axis_border_bounce = movement.mv_axis_border_bounce;
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const definitions = @import("definitions.zig");
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pub fn main() !void {
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var win = Winsize{};
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win = try getTermDimension();
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print("winsize.ws_row: {}\nws_col: {}\nws_xpixel: {} \nws_ypixel: {}\n", .{ win.ws_row, win.ws_col, win.ws_xpixel, win.ws_ypixel });
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try draw();
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}
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fn draw() !void {
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const allocator = std.heap.page_allocator;
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var w = Winsize{};
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var i: u64 = 0;
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var ii: u64 = 0;
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var slice: []u8 = undefined;
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var bytes_written: u3 = 0;
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var buffer_size: u32 = 0;
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w = try getTermDimension();
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buffer_size = w.ws_row;
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buffer_size = buffer_size * w.ws_col * 4;
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var buffer = try allocator.alloc(u8, buffer_size); //utf-8 can be 4 bytes long
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defer allocator.free(buffer);
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definitions.obj[0].a.x = 10;
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wait_for_enter();
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// defer std.heap.page_allocator.free(tmp);
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//video loop
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while (true) {
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i = 0;
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//clear buffer
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while (i < buffer.len) : (i += 4) {
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slice = buffer[i .. i + 4];
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bytes_written = try std.unicode.utf8Encode(' ', slice);
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ii = 0;
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while ((bytes_written + ii) < 4) : (ii += 1) {
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slice[bytes_written + ii] = 0;
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}
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}
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try triangle(buffer, w, definitions.vec);
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//_ = try bresenham(buffer, w, Point{ .x = 10, .y = 10, .z = 0 }, Point{ .x = 30, .y = 12, .z = 0 });
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try out.print("\x1B[2J", .{});
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//sleep(100000);
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// try triangle(buffer, w, primitive.vec);
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// mv_axis_border_bounce(w, &primitive.vec.a, 'x');
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// mv_axis_border_bounce(w, &primitive.vec.a, 'y');
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// mv_axis_border_bounce(w, &primitive.vec.b, 'x');
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// mv_axis_border_bounce(w, &primitive.vec.b, 'y');
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// mv_axis_border_bounce(w, &primitive.vec.c, 'x');
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// mv_axis_border_bounce(w, &primitive.vec.c, 'y');
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try fill_draw(w, buffer);
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try out.print("{s}", .{buffer});
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sleep(30000000);
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}
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}
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fn fill_draw(w: Winsize, buffer: []u8) !void {
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var i: u64 = 0;
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var ii: u16 = 0;
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var iii: u16 = 0;
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var fill: u8 = 0;
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var start: u16 = 0;
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var end: u16 = 0;
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var code: [4]u8 = std.mem.zeroes([4]u8);
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_ = try std.unicode.utf8Encode('█', &code);
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while (i < buffer.len - w.ws_col * 4) : (i += w.ws_col * 4) {
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var line: []u8 = buffer[i .. i + w.ws_col * 4];
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fill = 0;
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start = 0;
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end = 0;
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ii = 0;
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iii = 0;
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while (ii < line.len - 4) : (ii += 4) {
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const utf_slice: []u8 = line[ii .. ii + 4];
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if (std.mem.eql(u8, utf_slice, &code) == true and fill == 0) {
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fill = 1;
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start = ii;
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iii = ii;
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while (iii < line.len - 4) : (iii += 4) {
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const lookahead: []u8 = line[iii .. iii + 4];
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if (std.mem.eql(u8, lookahead, &code) == true) {
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end = iii;
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}
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}
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}
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if (ii > start and ii < end and fill == 1 and std.mem.eql(u8, utf_slice, &code) == false) {
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_ = try std.unicode.utf8Encode('●', utf_slice);
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}
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}
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}
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}
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fn wait_for_enter() void {
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_ = stdin.readUntilDelimiterAlloc(std.heap.page_allocator, '\n', 3) catch |err| {
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print("string to long{}", .{err});
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}; //Memory leak?
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}
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