mirror of
https://github.com/irmen/prog8.git
synced 2024-11-11 18:06:12 +00:00
116 lines
3.0 KiB
Lua
116 lines
3.0 KiB
Lua
%import math
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; Draw sine and cosine graphs. The sine and cosine functions are table lookups
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; where the tables are generated by 64tass list functions.
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; Note: this program is compatible with CX16 only.
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; it doesn't work correctly on C64 because the bitmap screen data overlaps
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; the program itself in memory $2000-...
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main {
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const uword width = 320
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const ubyte height = 200
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sub start() {
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sys.gfx_enable(0) ; enable lo res screen
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sincos255()
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sys.wait(120)
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sys.gfx_clear(0)
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sincos180()
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sys.wait(120)
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sys.gfx_clear(0)
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circles()
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sys.wait(120)
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}
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sub sincos255() {
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graphics_line(256)
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ubyte pixelyb
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ubyte pixelxb
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byte pixelys
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for pixelxb in 0 to 255 {
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pixelyb = math.cos8u(pixelxb) / 2
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sys.gfx_plot(pixelxb, pixelyb+20, 255)
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pixelyb = math.sin8u(pixelxb) / 2
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sys.gfx_plot(pixelxb, pixelyb+20, 255)
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}
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for pixelxb in 0 to 255 {
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pixelys = math.cos8(pixelxb) / 2
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sys.gfx_plot(pixelxb, pixelys as uword + 90, 255)
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pixelys = math.sin8(pixelxb) / 2
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sys.gfx_plot(pixelxb, pixelys as uword + 90, 255)
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}
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}
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sub sincos180() {
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graphics_line(180)
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ubyte pixelyb
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ubyte pixelxb
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byte pixelys
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for pixelxb in 0 to 179 {
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pixelyb = math.cosr8u(pixelxb) / 2
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sys.gfx_plot(pixelxb, pixelyb+20, 255)
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pixelyb = math.sinr8u(pixelxb) / 2
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sys.gfx_plot(pixelxb, pixelyb+20, 255)
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}
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for pixelxb in 0 to 179 {
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pixelys = math.cosr8(pixelxb) / 2
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sys.gfx_plot(pixelxb, pixelys as uword + 90, 255)
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pixelys = math.sinr8(pixelxb) / 2
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sys.gfx_plot(pixelxb, pixelys as uword + 90, 255)
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}
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}
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sub circles() {
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ubyte pixelyb
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uword pixelxw
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ubyte r
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; circle with "degrees" from 0 to 255
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for r in 0 to 255 {
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pixelxw = (math.sin8(r)/2 as uword) + 80
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pixelyb = (math.cos8(r)/2 as uword + height/2) as ubyte
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sys.gfx_plot(pixelxw, pixelyb, 255)
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}
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for r in 0 to 255 {
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pixelxw = math.sin8u(r)/2
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pixelyb = math.cos8u(r)/2
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sys.gfx_plot(pixelxw + 16, pixelyb+50, 255)
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}
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; circle with half-degrees from 0 to 179 (=full degrees 0..358 with steps of 2 degrees)
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for r in 0 to 179 {
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pixelxw = (math.sinr8(r) as word /2 + 220) as uword
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pixelyb = (math.cosr8(r)/2 + height/2) as ubyte
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sys.gfx_plot(pixelxw, pixelyb, 255)
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}
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for r in 0 to 179 {
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pixelxw = math.sinr8u(r)/2
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pixelyb = math.cosr8u(r)/2
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sys.gfx_plot(pixelxw + 156, pixelyb+50, 255)
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}
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}
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sub graphics_line(uword x) {
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uword y
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for y in 0 to height-1 {
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sys.gfx_plot(x, y, 100)
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}
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}
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}
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