359 lines
9.3 KiB
C
359 lines
9.3 KiB
C
/*
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* vim:tabstop=4
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* vim:noexpandtab
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*
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* Bochs VBE / QEMU vga=std Graphics Driver
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*/
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#include <system.h>
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#include <fs.h>
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#define PREFERRED_X 1024
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#define PREFERRED_Y 768
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#define PREFERRED_VY 4096
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#define PREFERRED_B 32
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uint16_t bochs_resolution_x = 0;
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uint16_t bochs_resolution_y = 0;
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uint16_t bochs_resolution_b = 0;
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uint32_t * BOCHS_VID_MEMORY = (uint32_t *)0xE0000000;
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#define TERM_WIDTH 128
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#define TERM_HEIGHT 64
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static short csr_x = 0;
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static short csr_y = 0;
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static uint8_t * term_buffer;
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static uint8_t current_fg = 7;
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static uint8_t current_bg = 0;
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static uint16_t current_scroll = 0;
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void
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bochs_set_y_offset(uint16_t y) {
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outports(0x1CE, 0x9);
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outports(0x1CF, y);
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current_scroll = y;
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}
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uint16_t
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bochs_current_scroll() {
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return current_scroll;
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}
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void
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graphics_install_bochs() {
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outports(0x1CE, 0x00);
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uint16_t i = inports(0x1CF);
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if (i < 0xB0C0 || i > 0xB0C6) {
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kprintf("[bochs] You are not a Bochs VBE pseudo-card!\n");
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kprintf("[bochs] 0x%x is totally wrong!\n", (unsigned int)i);
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return;
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}
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kprintf("[bochs] Successfully detected a Bochs VBE setup!\n");
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kprintf("[bochs] You are using QEMU or Bochs and I love you.\n");
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outports(0x1CF, 0xB0C4);
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i = inports(0x1CF);
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kprintf("[bochs] Enabling 1024x768x32 graphics mode!\n");
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/* Disable VBE */
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outports(0x1CE, 0x04);
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outports(0x1CF, 0x00);
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/* Set X resolution to 1024 */
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outports(0x1CE, 0x01);
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outports(0x1CF, PREFERRED_X);
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/* Set Y resolution to 768 */
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outports(0x1CE, 0x02);
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outports(0x1CF, PREFERRED_Y);
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/* Set bpp to 32 */
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outports(0x1CE, 0x03);
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outports(0x1CF, PREFERRED_B);
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/* Set Virtual Height to stuff */
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outports(0x1CE, 0x07);
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outports(0x1CF, PREFERRED_VY);
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/* Re-enable VBE */
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outports(0x1CE, 0x04);
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outports(0x1CF, 0x41);
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/* Herp derp */
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uint32_t * herp = (uint32_t *)0xA0000;
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herp[0] = 0xA5ADFACE;
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/* Enable the higher memory */
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for (uintptr_t i = 0xE0000000; i <= 0xE0FF0000; i += 0x1000) {
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dma_frame(get_page(i, 1, kernel_directory), 1, 0, i);
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}
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for (uintptr_t i = 0xF0000000; i <= 0xF0FF0000; i += 0x1000) {
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dma_frame(get_page(i, 1, kernel_directory), 1, 0, i);
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}
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/* Go find it */
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for (uintptr_t x = 0xE0000000; x < 0xE0FF0000; x += 0x1000) {
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if (((uintptr_t *)x)[0] == 0xA5ADFACE) {
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BOCHS_VID_MEMORY = (uint32_t *)x;
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goto mem_found;
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}
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}
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for (uintptr_t x = 0xF0000000; x < 0xF0FF0000; x += 0x1000) {
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if (((uintptr_t *)x)[0] == 0xA5ADFACE) {
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BOCHS_VID_MEMORY = (uint32_t *)x;
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goto mem_found;
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}
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}
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mem_found:
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kprintf("[bochs] Video memory paged and located.\n");
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bochs_resolution_x = PREFERRED_X;
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bochs_resolution_y = PREFERRED_Y;
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bochs_resolution_b = PREFERRED_B;
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/* Buffer contains characters, fg (of 256), bg (same), flags (one byte) */
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term_buffer = (uint8_t *)malloc(sizeof(uint8_t) * 4 * TERM_WIDTH * TERM_HEIGHT);
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}
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static void
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bochs_set_point(
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uint16_t x,
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uint16_t y,
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uint32_t color
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) {
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BOCHS_VID_MEMORY[((y + current_scroll) * bochs_resolution_x + x)] = color;
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}
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void
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bochs_scroll() {
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uint32_t size = sizeof(uint32_t) * bochs_resolution_x * (bochs_resolution_y - 12);
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memmove((void *)BOCHS_VID_MEMORY, (void *)((uintptr_t)BOCHS_VID_MEMORY + bochs_resolution_x * 12 * sizeof(uint32_t)), size);
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}
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void
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bochs_draw_logo(char * filename) {
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/* This is slow and ineffecient, but it's also dead simple. */
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if (!bochs_resolution_x) { return; }
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fs_node_t * file = kopen(filename,0);
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if (!file) { return; }
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char *bufferb = malloc(file->length);
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/* Read the boot logo */
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size_t bytes_read = read_fs(file, 0, file->length, (uint8_t *)bufferb);
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uint16_t x = 0; /* -> 212 */
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uint16_t y = 0; /* -> 68 */
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/* Get the width / height of the image */
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signed int *bufferi = (signed int *)((uintptr_t)bufferb + 2);
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uint32_t width = bufferi[4];
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uint32_t height = bufferi[5];
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uint32_t row_width = (24 * width + 31) / 32 * 4;
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/* Skip right to the important part */
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size_t i = bufferi[2];
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for (y = 0; y < height; ++y) {
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for (x = 0; x < width; ++x) {
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if (i > bytes_read) return;
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/* Extract the color */
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uint32_t color = bufferb[i + 3 * x] +
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bufferb[i+1 + 3 * x] * 0x100 +
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bufferb[i+2 + 3 * x] * 0x10000;
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/* Set our point */
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bochs_set_point((bochs_resolution_x - width) / 2 + x, (bochs_resolution_y - height) / 2 + (height - y), color);
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}
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i += row_width;
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}
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free(bufferb);
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}
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void
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bochs_fill_rect(
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uint16_t x,
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uint16_t y,
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uint16_t w,
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uint16_t h,
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uint32_t color
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) {
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for (uint16_t i = y; i < h + y; ++i) {
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for (uint16_t j = x; j < w + x; ++j) {
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bochs_set_point(j,i,color);
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}
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}
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}
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void
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bochs_write_char(
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uint8_t val,
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uint16_t x,
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uint16_t y,
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uint32_t fg,
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uint32_t bg
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) {
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if (val < 0x20 || val > 131) {
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val = ' ';
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}
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uint8_t * c = number_font[val - 0x20];
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for (uint8_t i = 0; i < 12; ++i) {
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if (c[i] & 0x80) { bochs_set_point(x,y+i,fg); } else { bochs_set_point(x,y+i,bg); }
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if (c[i] & 0x40) { bochs_set_point(x+1,y+i,fg); } else { bochs_set_point(x+1,y+i,bg); }
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if (c[i] & 0x20) { bochs_set_point(x+2,y+i,fg); } else { bochs_set_point(x+2,y+i,bg); }
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if (c[i] & 0x10) { bochs_set_point(x+3,y+i,fg); } else { bochs_set_point(x+3,y+i,bg); }
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if (c[i] & 0x08) { bochs_set_point(x+4,y+i,fg); } else { bochs_set_point(x+4,y+i,bg); }
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if (c[i] & 0x04) { bochs_set_point(x+5,y+i,fg); } else { bochs_set_point(x+5,y+i,bg); }
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if (c[i] & 0x02) { bochs_set_point(x+6,y+i,fg); } else { bochs_set_point(x+6,y+i,bg); }
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if (c[i] & 0x01) { bochs_set_point(x+7,y+i,fg); } else { bochs_set_point(x+7,y+i,bg); }
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}
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}
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/* This is mapped to ANSI */
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uint32_t bochs_colors[16] = {
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/* black */ 0x000000,
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/* red */ 0xcc0000,
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/* green */ 0x3e9a06,
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/* brown */ 0xc4a000,
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/* navy */ 0x3465a4,
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/* purple */ 0x75507b,
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/* d cyan */ 0x06989a,
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/* gray */ 0xeeeeec,
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/* d gray */ 0x555753,
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/* red */ 0xef2929,
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/* green */ 0x8ae234,
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/* yellow */ 0xfce94f,
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/* blue */ 0x729fcf,
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/* magenta*/ 0xad7fa8,
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/* cyan */ 0x34e2e2,
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/* white */ 0xFFFFFF
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};
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static void cell_set(uint16_t x, uint16_t y, uint8_t c, uint8_t fg, uint8_t bg, uint8_t flags) {
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uint8_t * cell = (uint8_t *)((uintptr_t)term_buffer + (y * TERM_WIDTH + x) * 4);
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cell[0] = c;
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cell[1] = fg;
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cell[2] = bg;
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cell[3] = flags;
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}
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static uint16_t cell_ch(uint16_t x, uint16_t y) {
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uint8_t * cell = (uint8_t *)((uintptr_t)term_buffer + (y * TERM_WIDTH + x) * 4);
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return cell[0];
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}
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static uint16_t cell_fg(uint16_t x, uint16_t y) {
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uint8_t * cell = (uint8_t *)((uintptr_t)term_buffer + (y * TERM_WIDTH + x) * 4);
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return cell[1];
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}
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static uint16_t cell_bg(uint16_t x, uint16_t y) {
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uint8_t * cell = (uint8_t *)((uintptr_t)term_buffer + (y * TERM_WIDTH + x) * 4);
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return cell[2];
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}
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static void cell_redraw(uint16_t x, uint16_t y) {
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uint8_t * cell = (uint8_t *)((uintptr_t)term_buffer + (y * TERM_WIDTH + x) * 4);
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bochs_write_char(cell[0], x * 8, y * 12, bochs_colors[cell[1]], bochs_colors[cell[2]]);
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}
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void bochs_redraw() {
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for (uint16_t y = 0; y < TERM_HEIGHT; ++y) {
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for (uint16_t x = 0; x < TERM_WIDTH; ++x) {
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cell_redraw(x,y);
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}
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}
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}
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void bochs_term_scroll() {
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/* Oh dear */
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if (current_scroll + 12 >= 3072) {//3328) {
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/* And here's where it gets hacky */
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// __asm__ __volatile__ ("cli");
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uint32_t size = sizeof(uint32_t) * bochs_resolution_x * (bochs_resolution_y - 12);
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memmove((void *)BOCHS_VID_MEMORY, (void *)((uintptr_t)BOCHS_VID_MEMORY + bochs_resolution_x * (current_scroll + 12) * sizeof(uint32_t)), size);
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// __asm__ __volatile__ ("sti");
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bochs_set_y_offset(0);
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} else {
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bochs_set_y_offset(current_scroll + 12);
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}
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for (uint16_t y = 0; y < TERM_HEIGHT - 1; ++y) {
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for (uint16_t x = 0; x < TERM_WIDTH; ++x) {
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cell_set(x,y,cell_ch(x,y+1),cell_fg(x,y+1),cell_bg(x,y+1), 0);
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}
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}
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for (uint16_t x = 0; x < TERM_WIDTH; ++x) {
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cell_set(x, TERM_HEIGHT-1,' ',current_fg, current_bg,0);
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cell_redraw(x, TERM_HEIGHT-1);
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}
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}
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void bochs_term_clear() {
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/* Oh dear */
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csr_x = 0;
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csr_y = 0;
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memset((void *)term_buffer, 0x00,TERM_WIDTH * TERM_HEIGHT * sizeof(uint8_t) * 4);
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memset((void *)BOCHS_VID_MEMORY, 0x00, sizeof(uint32_t) * bochs_resolution_x * bochs_resolution_y);
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bochs_set_y_offset(0);
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}
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void bochs_set_colors(uint8_t fg, uint8_t bg) {
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current_fg = fg;
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current_bg = bg;
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}
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void bochs_reset_colors() {
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current_fg = 7;
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current_bg = 0;
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}
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void draw_cursor() {
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for (uint32_t x = 0; x < 8; ++x) {
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bochs_set_point(csr_x * 8 + x, csr_y * 12 + 11, bochs_colors[current_fg]);
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}
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}
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void bochs_write(char c) {
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__asm__ __volatile__ ("cli");
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cell_redraw(csr_x, csr_y);
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if (c == '\n') {
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for (uint16_t i = csr_x; i < TERM_WIDTH; ++i) {
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/* I like this behaviour */
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cell_set(i, csr_y, ' ',current_fg, current_bg, 0);
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cell_redraw(i, csr_y);
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}
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csr_x = 0;
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++csr_y;
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} else if (c == '\b') {
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--csr_x;
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cell_set(csr_x, csr_y, ' ',current_fg, current_bg, 0);
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cell_redraw(csr_x, csr_y);
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} else {
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cell_set(csr_x,csr_y, c, current_fg, current_bg, 0);
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cell_redraw(csr_x,csr_y);
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csr_x++;
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}
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if (csr_x == TERM_WIDTH) {
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csr_x = 0;
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++csr_y;
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}
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if (csr_y == TERM_HEIGHT) {
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bochs_term_scroll();
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csr_y = TERM_HEIGHT - 1;
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}
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draw_cursor();
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__asm__ __volatile__ ("sti");
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}
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void bochs_draw_line(uint16_t x0, uint16_t x1, uint16_t y0, uint16_t y1, uint32_t color) {
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int deltax = abs(x1 - x0);
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int deltay = abs(y1 - y0);
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int sx = (x0 < x1) ? 1 : -1;
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int sy = (y0 < y1) ? 1 : -1;
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int error = deltax - deltay;
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while (1) {
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bochs_set_point(x0, y0, color);
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if (x0 == x1 && y0 == y1) break;
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int e2 = 2 * error;
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if (e2 > -deltay) {
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error -= deltay;
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x0 += sx;
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}
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if (e2 < deltax) {
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error += deltax;
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y0 += sy;
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}
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}
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}
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