analog/v2-analog-rev1/vga/render_lores.c

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#include <pico/stdlib.h>
#include "vgabuf.h"
#include "render.h"
#include "vgaout.h"
uint16_t lores_dot_pattern[16] = {
0x0000,
0x2222,
0x1111,
0x3333,
0x0888,
0x2AAA,
0x1999,
0x3BBB,
0x0444,
0x2666,
0x1555,
0x3777,
0x0CCC,
0x2EEE,
0x1DDD,
0x3FFF,
};
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uint16_t lores_palette[16] = {
_RGB333(0x00,0x00,0x00), // black
_RGB333(0x6c,0x00,0x6c), // magenta
_RGB333(0x00,0x00,0xb4), // d.blue
_RGB333(0xb4,0x24,0xfc), // h.violet
_RGB333(0x00,0x48,0x00), // d.green
_RGB333(0x48,0x48,0x48), // d.gray
_RGB333(0x00,0x90,0xfc), // h.blue
_RGB333(0x6c,0x6c,0xfc), // l.blue
_RGB333(0x24,0x24,0x00), // brown
_RGB333(0xfc,0x48,0x00), // h.orange
_RGB333(0x90,0x90,0x90), // l.gray
_RGB333(0xfc,0x6c,0xfc), // pink
_RGB333(0x00,0xd8,0x24), // h.green
_RGB333(0xd8,0xd8,0x00), // yellow
_RGB333(0x90,0xfc,0xb4), // aqua
_RGB333(0xff,0xff,0xff), // white
};
static void render_lores_line(bool p2, uint line);
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//#define PAGE2SEL (!(soft_switches & SOFTSW_80STORE) && (soft_switches & SOFTSW_PAGE_2))
#define PAGE2SEL ((soft_switches & (SOFTSW_80STORE | SOFTSW_PAGE_2)) == SOFTSW_PAGE_2)
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void __time_critical_func(render_lores)() {
for(uint line=0; line < 24; line++) {
render_lores_line(PAGE2SEL, line);
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}
}
void __time_critical_func(render_mixed_lores)() {
for(uint line=0; line < 20; line++) {
render_lores_line(PAGE2SEL, line);
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}
for(uint line=20; line < 24; line++) {
if(soft_switches & SOFTSW_80COL) {
render_text80_line(PAGE2SEL, line);
} else {
render_text40_line(PAGE2SEL, line);
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}
}
}
static void __time_critical_func(render_lores_line)(bool p2, uint line) {
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// Construct two scanlines for the two different colored cells at the same time
struct vga_scanline *sl1 = vga_prepare_scanline();
struct vga_scanline *sl2 = vga_prepare_scanline();
uint sl_pos = 0;
uint i, j;
uint32_t color1, color2;
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const uint8_t *line_buf = (const uint8_t *)((p2 ? text_p2 : text_p1) + ((line & 0x7) << 7) + (((line >> 3) & 0x3) * 40));
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// Pad 40 pixels on the left to center horizontally
for(i = 0; i < 40/8; i++) {
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sl1->data[sl_pos] = (text_border|THEN_EXTEND_3) | ((text_border|THEN_EXTEND_3) << 16); // 8 pixels per word
sl2->data[sl_pos] = (text_border|THEN_EXTEND_3) | ((text_border|THEN_EXTEND_3) << 16); // 8 pixels per word
sl_pos++;
}
if(soft_switches & SOFTSW_MONOCHROME) {
for(i = 0; i < 40; i+=2) {
color1 = lores_dot_pattern[line_buf[i] & 0xf] << 14;
color2 = lores_dot_pattern[(line_buf[i] >> 4) & 0xf] << 14;
color1 |= lores_dot_pattern[line_buf[i+1] & 0xf];
color2 |= lores_dot_pattern[(line_buf[i+1] >> 4) & 0xf];
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for(j = 0; j < 14; j++) {
uint32_t pixeldata;
pixeldata = (color1 & 0x8000000) ? (text_fore) : (text_back);
pixeldata |= (color1 & 0x4000000) ? ((text_fore) << 16) : ((text_back) << 16);
color1 <<= 2;
sl1->data[sl_pos] = pixeldata;
pixeldata = (color2 & 0x8000000) ? (text_fore) : (text_back);
pixeldata |= (color2 & 0x4000000) ? ((text_fore) << 16) : ((text_back) << 16);
sl2->data[sl_pos] = pixeldata;
color2 <<= 2;
sl_pos++;
}
}
} else {
for(i = 0; i < 40; i++) {
color1 = lores_palette[line_buf[i] & 0xf];
color2 = lores_palette[(line_buf[i] >> 4) & 0xf];
// Each lores pixel is 7 hires pixels, or 14 VGA pixels wide
sl1->data[sl_pos] = (color1|THEN_EXTEND_6) | ((color1|THEN_EXTEND_6) << 16);
sl2->data[sl_pos] = (color2|THEN_EXTEND_6) | ((color2|THEN_EXTEND_6) << 16);
sl_pos++;
}
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}
for(i = 0; i < 40/8; i++) {
sl1->data[sl_pos] = (text_border|THEN_EXTEND_3) | ((text_border|THEN_EXTEND_3) << 16); // 8 pixels per word
sl2->data[sl_pos] = (text_border|THEN_EXTEND_3) | ((text_border|THEN_EXTEND_3) << 16); // 8 pixels per word
sl_pos++;
}
sl1->length = sl_pos;
sl1->repeat_count = 7;
vga_submit_scanline(sl1);
sl2->length = sl_pos;
sl2->repeat_count = 7;
vga_submit_scanline(sl2);
}