396 lines
11 KiB
C
396 lines
11 KiB
C
#include <stdint.h>
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#include <stddef.h>
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#include <lib/gterm.h>
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#include <lib/blib.h>
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#include <lib/libc.h>
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#include <lib/config.h>
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#include <lib/print.h>
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#include <lib/uri.h>
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#include <lib/fb.h>
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#include <mm/mtrr.h>
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#include <mm/pmm.h>
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#define VGA_FONT_WIDTH 8
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#define VGA_FONT_HEIGHT 16
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#define VGA_FONT_GLYPHS 256
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#define VGA_FONT_MAX (VGA_FONT_HEIGHT * VGA_FONT_GLYPHS)
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struct fb_info fbinfo;
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static uint32_t *gterm_framebuffer;
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static uint16_t gterm_pitch;
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static uint16_t gterm_width;
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static uint16_t gterm_height;
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static uint16_t gterm_bpp;
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extern symbol _binary_font_bin_start;
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static uint8_t *vga_font = NULL;
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static uint32_t ansi_colours[10];
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static int frame_height, frame_width;
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static struct image *background;
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static struct gterm_char *grid = NULL;
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static struct gterm_char *front_grid = NULL;
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static uint32_t *bg_canvas = NULL;
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static bool double_buffer_enabled = false;
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static bool cursor_status = true;
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static int cursor_x;
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static int cursor_y;
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static int rows;
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static int cols;
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static int margin_gradient;
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#define A(rgb) (uint8_t)(rgb >> 24)
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#define R(rgb) (uint8_t)(rgb >> 16)
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#define G(rgb) (uint8_t)(rgb >> 8)
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#define B(rgb) (uint8_t)(rgb)
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#define ARGB(a, r, g, b) (a << 24) | ((r & 0xFF) << 16) | ((g & 0xFF) << 8) | (b & 0xFF)
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static inline uint32_t colour_blend(uint32_t fg, uint32_t bg) {
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unsigned alpha = 255 - A(fg);
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unsigned inv_alpha = A(fg) + 1;
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uint8_t r = (uint8_t)((alpha * R(fg) + inv_alpha * R(bg)) / 256);
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uint8_t g = (uint8_t)((alpha * G(fg) + inv_alpha * G(bg)) / 256);
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uint8_t b = (uint8_t)((alpha * B(fg) + inv_alpha * B(bg)) / 256);
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return ARGB(0, r, g, b);
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}
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void gterm_plot_px(int x, int y, uint32_t hex) {
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size_t fb_i = x + (gterm_pitch / sizeof(uint32_t)) * y;
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gterm_framebuffer[fb_i] = hex;
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}
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static uint32_t blend_gradient_from_box(int x, int y, uint32_t hex) {
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if (x >= frame_width && x < frame_width + VGA_FONT_WIDTH * cols
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&& y >= frame_height && y < frame_height + VGA_FONT_HEIGHT * rows) {
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return colour_blend(hex, background->get_pixel(background, x, y));
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}
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uint32_t bg_px = background->get_pixel(background, x, y);
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if (margin_gradient == 0)
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return bg_px;
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int distance, x_distance, y_distance;
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if (x < frame_width)
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x_distance = frame_width - x;
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else
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x_distance = x - (frame_width + VGA_FONT_WIDTH * cols);
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if (y < frame_height)
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y_distance = frame_height - y;
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else
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y_distance = y - (frame_height + VGA_FONT_HEIGHT * rows);
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if (x >= frame_width && x < frame_width + VGA_FONT_WIDTH * cols) {
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distance = y_distance;
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} else if (y >= frame_height && y < frame_height + VGA_FONT_HEIGHT * rows) {
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distance = x_distance;
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} else {
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distance = sqrt((uint64_t)x_distance * (uint64_t)x_distance
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+ (uint64_t)y_distance * (uint64_t)y_distance);
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}
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if (distance > margin_gradient)
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return bg_px;
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uint8_t gradient_step = (0xff - A(hex)) / margin_gradient;
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uint8_t new_alpha = A(hex) + gradient_step * distance;
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return colour_blend((hex & 0xffffff) | (new_alpha << 24), bg_px);
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}
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void gterm_generate_canvas(void) {
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if (background) {
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for (int y = 0; y < gterm_height; y++) {
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for (int x = 0; x < gterm_width; x++) {
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bg_canvas[y * gterm_width + x] = blend_gradient_from_box(x, y, ansi_colours[8]);
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gterm_plot_px(x, y, bg_canvas[y * gterm_width + x]);
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}
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}
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} else {
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for (int y = 0; y < gterm_height; y++) {
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for (int x = 0; x < gterm_width; x++) {
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bg_canvas[y * gterm_width + x] = ansi_colours[8];
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gterm_plot_px(x, y, ansi_colours[8]);
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}
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}
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}
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}
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struct gterm_char {
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uint32_t c;
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int fg;
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int bg;
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};
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void gterm_plot_char(struct gterm_char *c, int x, int y) {
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uint8_t *glyph = &vga_font[(size_t)c->c * VGA_FONT_HEIGHT];
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for (int i = 0; i < VGA_FONT_HEIGHT; i++) {
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for (int j = 0; j < VGA_FONT_WIDTH; j++) {
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if ((glyph[i] & (0x80 >> j))) {
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gterm_plot_px(x + j, y + i, ansi_colours[c->fg]);
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} else {
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if (c->bg == 8)
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gterm_plot_px(x + j, y + i, bg_canvas[(y + i) * gterm_width + (x + j)]);
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else
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gterm_plot_px(x + j, y + i, ansi_colours[c->bg]);
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}
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}
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}
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}
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static void plot_char_grid(struct gterm_char *c, int x, int y) {
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if (!double_buffer_enabled) {
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gterm_plot_char(c, x * VGA_FONT_WIDTH + frame_width,
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y * VGA_FONT_HEIGHT + frame_height);
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}
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grid[x + y * cols] = *c;
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}
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static void clear_cursor(void) {
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struct gterm_char c = grid[cursor_x + cursor_y * cols];
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c.fg = 9;
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c.bg = 8;
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plot_char_grid(&c, cursor_x, cursor_y);
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}
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static void draw_cursor(void) {
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if (cursor_status) {
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struct gterm_char c = grid[cursor_x + cursor_y * cols];
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c.fg = 0;
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c.bg = 7;
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plot_char_grid(&c, cursor_x, cursor_y);
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}
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}
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static void scroll(void) {
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clear_cursor();
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for (int i = cols; i < rows * cols; i++) {
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plot_char_grid(&grid[i], (i - cols) % cols, (i - cols) / cols);
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}
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// Clear the last line of the screen.
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struct gterm_char empty;
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empty.c = ' ';
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empty.fg = 9;
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empty.bg = 8;
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for (int i = rows * cols - cols; i < rows * cols; i++) {
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plot_char_grid(&empty, i % cols, i / cols);
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}
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draw_cursor();
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}
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void gterm_clear(bool move) {
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clear_cursor();
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struct gterm_char empty;
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empty.c = ' ';
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empty.fg = 9;
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empty.bg = 8;
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for (int i = 0; i < rows * cols; i++) {
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plot_char_grid(&empty, i % cols, i / cols);
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}
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if (move) {
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cursor_x = 0;
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cursor_y = 0;
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}
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draw_cursor();
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}
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void gterm_enable_cursor(void) {
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cursor_status = true;
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draw_cursor();
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}
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void gterm_disable_cursor(void) {
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clear_cursor();
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cursor_status = false;
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}
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void gterm_set_cursor_pos(int x, int y) {
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clear_cursor();
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cursor_x = x;
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cursor_y = y;
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draw_cursor();
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}
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void gterm_get_cursor_pos(int *x, int *y) {
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*x = cursor_x;
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*y = cursor_y;
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}
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static int text_fg = 9, text_bg = 8;
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void gterm_set_text_fg(int fg) {
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text_fg = fg;
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}
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void gterm_set_text_bg(int bg) {
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text_bg = bg;
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}
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void gterm_double_buffer_flush(void) {
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for (size_t i = 0; i < (size_t)rows * cols; i++) {
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if (!memcmp(&grid[i], &front_grid[i], sizeof(struct gterm_char)))
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continue;
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front_grid[i] = grid[i];
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int x = i % cols;
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int y = i / cols;
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gterm_plot_char(&grid[i], x * VGA_FONT_WIDTH + frame_width,
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y * VGA_FONT_HEIGHT + frame_height);
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}
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}
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void gterm_double_buffer(bool state) {
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if (state) {
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memcpy(front_grid, grid, rows * cols * sizeof(struct gterm_char));
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double_buffer_enabled = true;
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gterm_clear(true);
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gterm_double_buffer_flush();
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} else {
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bool pcs = cursor_status;
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cursor_status = false;
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gterm_clear(true);
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gterm_double_buffer_flush();
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cursor_status = pcs;
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draw_cursor();
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double_buffer_enabled = false;
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}
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}
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void gterm_putchar(uint8_t c) {
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switch (c) {
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case '\b':
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if (cursor_x || cursor_y) {
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clear_cursor();
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if (cursor_x) {
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cursor_x--;
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} else {
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cursor_y--;
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cursor_x = cols - 1;
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}
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draw_cursor();
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}
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break;
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case '\r':
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gterm_set_cursor_pos(0, cursor_y);
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break;
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case '\n':
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if (cursor_y == (rows - 1)) {
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gterm_set_cursor_pos(0, rows - 1);
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scroll();
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} else {
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gterm_set_cursor_pos(0, cursor_y + 1);
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}
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break;
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default: {
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clear_cursor();
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struct gterm_char ch;
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ch.c = c;
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ch.fg = text_fg;
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ch.bg = text_bg;
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plot_char_grid(&ch, cursor_x++, cursor_y);
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if (cursor_x == cols) {
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cursor_x = 0;
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cursor_y++;
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}
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if (cursor_y == rows) {
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cursor_y--;
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scroll();
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}
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draw_cursor();
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break;
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}
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}
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}
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bool gterm_init(int *_rows, int *_cols, uint32_t *_colours, int _margin, int _margin_gradient, struct image *_background) {
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int req_width = 0, req_height = 0, req_bpp = 0;
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char *menu_resolution = config_get_value(NULL, 0, "MENU_RESOLUTION");
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if (menu_resolution != NULL)
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parse_resolution(&req_width, &req_height, &req_bpp, menu_resolution);
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// We force bpp to 32
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req_bpp = 32;
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fb_init(&fbinfo, req_width, req_height, req_bpp);
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// Ensure this is xRGB8888, we only support that for the menu
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if (fbinfo.red_mask_size != 8
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|| fbinfo.red_mask_shift != 16
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|| fbinfo.green_mask_size != 8
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|| fbinfo.green_mask_shift != 8
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|| fbinfo.blue_mask_size != 8
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|| fbinfo.blue_mask_shift != 0)
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return false;
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gterm_framebuffer = (void *)(uintptr_t)fbinfo.framebuffer_addr;
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gterm_width = fbinfo.framebuffer_width;
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gterm_height = fbinfo.framebuffer_height;
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gterm_bpp = fbinfo.framebuffer_bpp;
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gterm_pitch = fbinfo.framebuffer_pitch;
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mtrr_set_range((uint64_t)(size_t)gterm_framebuffer,
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(uint64_t)gterm_pitch * gterm_height, MTRR_MEMORY_TYPE_WC);
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if (vga_font == NULL)
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vga_font = ext_mem_alloc(VGA_FONT_MAX);
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memcpy(vga_font, (void *)_binary_font_bin_start, VGA_FONT_MAX);
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char *menu_font = config_get_value(NULL, 0, "MENU_FONT");
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if (menu_font != NULL) {
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struct file_handle f;
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if (!uri_open(&f, menu_font)) {
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print("menu: Could not open font file.\n");
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} else {
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fread(&f, vga_font, 0, VGA_FONT_MAX);
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}
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}
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*_cols = cols = (gterm_width - _margin * 2) / VGA_FONT_WIDTH;
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*_rows = rows = (gterm_height - _margin * 2) / VGA_FONT_HEIGHT;
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if (grid == NULL)
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grid = ext_mem_alloc(rows * cols * sizeof(struct gterm_char));
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if (front_grid == NULL)
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front_grid = ext_mem_alloc(rows * cols * sizeof(struct gterm_char));
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background = _background;
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memcpy(ansi_colours, _colours, sizeof(ansi_colours));
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margin_gradient = _margin_gradient;
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frame_height = gterm_height / 2 - (VGA_FONT_HEIGHT * rows) / 2;
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frame_width = gterm_width / 2 - (VGA_FONT_WIDTH * cols) / 2;
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if (bg_canvas == NULL)
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bg_canvas = ext_mem_alloc(gterm_width * gterm_height * sizeof(uint32_t));
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gterm_generate_canvas();
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gterm_clear(true);
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return true;
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}
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