/*
* This file is part of fastboot 3DS
* Copyright (C) 2017 derrek, profi200, d0k3
*
* This program is free software: you can redistribute it and/or modify
* it under the terms of the GNU General Public License as published by
* the Free Software Foundation, either version 3 of the License, or
* (at your option) any later version.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*
* You should have received a copy of the GNU General Public License
* along with this program. If not, see <http://www.gnu.org/licenses/>.
*/
#include <stdlib.h>
#include <string.h>
#include "types.h"
#include "fs.h"
#include "hardware/gfx.h"
#include "arm11/hardware/hid.h"
#include "arm11/hardware/mcu.h"
#include "arm.h"
#include "arm11/menu/menu_color.h"
#include "arm11/menu/menu_util.h"
#include "arm11/menu/splash.h"
#include "arm11/console.h"
#include "arm11/fmt.h"
#define BORDER_WIDTH 2 // in pixel
void truncateString(char* dest, const char* orig, int nsize, int tpos)
{
int osize = strlen(orig);
if (nsize < 0)
{
return;
} else if (nsize <= 3)
{
ee_snprintf(dest, nsize, orig);
} else if (nsize >= osize)
{
ee_snprintf(dest, nsize + 1, orig);
} else
{
if (tpos + 3 > nsize) tpos = nsize - 3;
ee_snprintf(dest, nsize + 1, "%-.*s...%-.*s", tpos, orig, nsize - (3 + tpos), orig + osize - (nsize - (3 + tpos)));
}
}
void formatBytes(char* str, u64 bytes)
{
// str should be 32 byte in size, just to be safe
const char* units[] = {" Byte", " kiB", " MiB", " GiB"};
if (bytes < 1024)
{
ee_snprintf(str, 32, "%llu%s", bytes, units[0]);
}
else
{
u32 scale = 1;
u64 bytes100 = (bytes * 100) >> 10;
for(; (bytes100 >= 1024*100) && (scale < 3); scale++, bytes100 >>= 10);
ee_snprintf(str, 32, "%llu.%llu%s", bytes100 / 100, (bytes100 % 100) / 10, units[scale]);
}
}
static const char * convTable[] = {
"A", "B", "SELECT", "START", "RIGHT", "LEFT",
"UP", "DOWN", "R", "L", "X", "Y"
};
void keysToString(u32 keys, char* string)
{
char* ptr = string;
bool first = true;
for (u32 i = 0; i < 12; i++)
{
if (keys & (1<<i))
{
ptr += ee_sprintf(ptr, "%s[%s]", first ? "" : "+", convTable[i]);
first = false;
}
}
if (first) // backup solution for no buttons
ee_sprintf(ptr, "(no buttons)");
}
u32 stringGetHeight(const char* str)
{
u32 height = 1;
for (char* lf = strchr(str, '\n'); (lf != NULL); lf = strchr(lf + 1, '\n'))
height++;
return height;
}
u32 stringGetWidth(const char* str)
{
u32 width = 0;
char* old_lf = (char*) str;
char* str_end = (char*) str + strlen(str);
for (char* lf = strchr(str, '\n'); lf != NULL; lf = strchr(lf + 1, '\n')) {
if ((u32) (lf - old_lf) > width) width = lf - old_lf;
old_lf = lf;
}
if ((u32) (str_end - old_lf) > width)
width = str_end - old_lf;
return width;
}
void stringWordWrap(char* str, int llen)
{
char* last_brk = str - 1;
char* last_spc = str - 1;
for (char* str_ptr = str;; str_ptr++) {
if (!*str_ptr || (*str_ptr == ' ')) { // on space or string_end
if (str_ptr - last_brk > llen) { // if maximum line lenght is exceeded
if (last_spc > last_brk) { // put a line_brk at the last space
*last_spc = '\n';
last_brk = last_spc;
last_spc = str_ptr;
} else if (*str_ptr) { // if we have no applicable space
*str_ptr = '\n';
last_brk = str_ptr;
}
} else if (*str_ptr) last_spc = str_ptr;
} else if (*str_ptr == '\n') last_brk = str_ptr;
if (!*str_ptr) break;
}
}
u32 ee_printf_line_center(const char *const fmt, ...)
{
char buf[64];
va_list args;
va_start(args, fmt);
ee_vsnprintf(buf, 64, fmt, args);
va_end(args);
PrintConsole* con = consoleGet();
int pad = (con->windowWidth - strlen(buf)) / 2;
if (pad < 0) pad = 0;
con->cursorX = 0;
return ee_printf("%*.*s%s\n", pad, pad, "", buf);
}
u32 ee_printf_screen_center(const char *const fmt, ...)
{
u32 res = 0;
char buf[512];
va_list args;
va_start(args, fmt);
ee_vsnprintf(buf, 512, fmt, args);
va_end(args);
PrintConsole *con = consoleGet();
int x = (con->windowWidth - stringGetWidth(buf)) >> 1;
int y = (con->windowHeight - stringGetHeight(buf)) >> 1;
consoleClear();
for (char* str = strtok(buf, "\n"); str != NULL; str = strtok(NULL, "\n"))
{
consoleSetCursor(con, x, y++);
res += ee_printf(str);
}
return res;
}
// prints a progress indicator (no args allowed, for byte values)
u32 ee_printf_progress(const char *const fmt, u32 w, u64 curr, u64 max)
{
u32 res = 0;
u32 prog_w = (u32) ((max > 0) && (curr <= max)) ? ((u64) curr * w) / max : 0;
u32 prog_p = (u32) ((max > 0) && (curr <= max)) ? ((u64) curr * 100) / max : 0;
res += ee_printf(ESC_SCHEME_ACCENT1 "%s" ESC_RESET " | ", fmt);
u32 i = 0;
ee_printf(ESC_SCHEME_WEAK);
for (; i < prog_w; i++) res += ee_printf("\xDB");
for (; i < w; i++) res += ee_printf("\xB1");
ee_printf(ESC_RESET);
res += ee_printf(" | %s%lu%%%s | %s%llu / %llu MiB%s\r",
(curr == max) ? ESC_SCHEME_GOOD : "", prog_p, (curr == max) ? ESC_RESET : "",
(curr == max) ? ESC_SCHEME_GOOD : "", curr / 0x100000, max / 0x100000, (curr == max) ? ESC_RESET : "");
return res;
}
void clearScreens(void)
{
GX_memoryFill(RENDERBUF_TOP, 1u<<9, SCREEN_SIZE_TOP, 0, RENDERBUF_BOT, 1u<<9, SCREEN_SIZE_BOT, 0);
GFX_waitForEvent(GFX_EVENT_PSC0, true);
}
void drawTopBorder(void)
{
static u16 color = 0;
u16 *fb = (u16*)RENDERBUF_TOP;
// get "random" color (from RTC seconds)
if (!color)
{
u8 rtc[8];
MCU_getRTCTime(rtc);
color = consoleGetRGB565Color((rtc[0] % 6) + 1);
}
for(u32 x = 0; x < SCREEN_WIDTH_TOP; x++)
{
for(u32 y = 0; y < SCREEN_HEIGHT_TOP; y++)
{
if((x < BORDER_WIDTH) || (x >= (SCREEN_WIDTH_TOP - BORDER_WIDTH)) ||
(y < BORDER_WIDTH) || (y >= (SCREEN_HEIGHT_TOP - BORDER_WIDTH)))
*fb = color;
fb++;
}
}
}
bool drawCustomSplash(const char* folder)
{
// this assumes top and bottom screens cleared
const u32 splash_max_size = sizeof(SplashHeader) + (SCREEN_WIDTH_TOP * SCREEN_HEIGHT_TOP * 2);
char* splash_path = (char*) malloc(FF_MAX_LFN + 1);
u8* splash_buffer = (u8*) malloc(splash_max_size + (30 * 1024));
bool res = false;
s32 fHandle;
if (!splash_path || !splash_buffer) goto fail;
// try top splash
ee_snprintf(splash_path, FF_MAX_LFN + 1, "%s/%s.spla", folder, CSPLASH_NAME_TOP);
fHandle = fOpen(splash_path, FS_OPEN_EXISTING | FS_OPEN_READ);
if (fHandle >= 0)
{
u32 splash_size = fSize(fHandle);
u16 *const splash_data = (u16*)(splash_buffer + splash_max_size + (30 * 1024) - splash_size);
if ((splash_size < sizeof(SplashHeader)) || (splash_size > splash_max_size) ||
(fRead(fHandle, splash_data, splash_size) != FR_OK))
{
fClose(fHandle);
goto fail;
}
fClose(fHandle);
if (drawSplashscreen(splash_data, (u16*)splash_buffer, -1, -1, SCREEN_TOP))
res = true;
}
// try bottom splash
ee_snprintf(splash_path, FF_MAX_LFN + 1, "%s/%s.spla", folder, CSPLASH_NAME_SUB);
fHandle = fOpen(splash_path, FS_OPEN_EXISTING | FS_OPEN_READ);
if (fHandle >= 0)
{
u32 splash_size = fSize(fHandle);
u16 *const splash_data = (u16*)(splash_buffer + splash_max_size + (30 * 1024) - splash_size);
if ((splash_size < sizeof(SplashHeader)) || (splash_size > splash_max_size) ||
(fRead(fHandle, splash_data, splash_size) != FR_OK))
{
fClose(fHandle);
goto fail;
}
fClose(fHandle);
if (drawSplashscreen(splash_data, (u16*)splash_buffer, -1, -1, SCREEN_BOT))
res = true;
}
fail:
if (splash_path) free(splash_path);
if (splash_buffer) free(splash_buffer);
return res;
}
// only intended to be ran when the shell is closed
void sleepmode(void)
{
//GFX_enterLowPowerState();
MCU_setPowerLedState(PWLED_SLEEP);
do
{
__wfi();
hidScanInput();
} while(hidGetExtraKeys(0) & KEY_SHELL);
MCU_setPowerLedState(PWLED_AUTO);
//GFX_returnFromLowPowerState();
}
void updateScreens(void)
{
GX_textureCopy(RENDERBUF_TOP, 0, GFX_getFramebuffer(SCREEN_TOP),
0, SCREEN_SIZE_TOP + SCREEN_SIZE_BOT);
GFX_waitForEvent(GFX_EVENT_PPF, true); // Texture copy
GFX_swapFramebufs();
GFX_waitForEvent(GFX_EVENT_PDC0, true); // VBlank
}
bool askConfirmation(const char *const fmt, ...)
{
char buf[512];
char* instr = buf;
u32 kHeld = 0, kDown = 0, extraKeys = 0;
va_list args;
va_start(args, fmt);
instr += ee_vsnprintf(buf, 512, fmt, args);
va_end(args);
ee_snprintf(instr, 512 - (instr-buf), "\n \nPress [A] + [LEFT] to confirm\nPress [B] or [HOME] to cancel");
ee_printf_screen_center(buf);
updateScreens();
do
{
GFX_waitForEvent(GFX_EVENT_PDC0, true);
if(hidGetExtraKeys(0) & (KEY_POWER | KEY_POWER_HELD)) // handle power button
break;
hidScanInput();
kHeld = hidKeysHeld();
kDown = hidKeysDown();
extraKeys = hidGetExtraKeys(0);
if ((kHeld & KEY_A) && (kHeld & KEY_DLEFT)) return true;
if (extraKeys & KEY_SHELL) sleepmode();
}
while (!(kDown & KEY_B || extraKeys & KEY_HOME));
return false;
}
void outputEndWait(void)
{
u32 kDown = 0;
u32 extraKeys = 0;
do
{
GFX_waitForEvent(GFX_EVENT_PDC0, true);
if(hidGetExtraKeys(0) & (KEY_POWER | KEY_POWER_HELD)) // handle power button
break;
hidScanInput();
kDown = hidKeysDown();
extraKeys = hidGetExtraKeys(0);
if (extraKeys & KEY_SHELL) sleepmode();
}
while (!(kDown & KEY_B || extraKeys & KEY_HOME));
}
bool userCancelHandler(bool cancelAllowed)
{
hidScanInput();
u32 kDown = hidKeysDown();
u32 extraKeys = hidGetExtraKeys(0);
// detect force poweroff
if (extraKeys & KEY_POWER_HELD)
return true;
if (extraKeys & KEY_SHELL)
{
sleepmode();
}
else if (kDown & KEY_B || extraKeys & (KEY_HOME | KEY_POWER_HELD | KEY_POWER))
{
if (cancelAllowed)
{
ee_printf("\r%60.60s\r", ""); // delete current line
ee_printf("Cancel current operation?\n(A to confirm, B to continue)\n\n");
updateScreens();
do
{
GFX_waitForEvent(GFX_EVENT_PDC0, true);
hidScanInput();
kDown = hidKeysDown();
extraKeys = hidGetExtraKeys(0);
if (extraKeys & KEY_SHELL) sleepmode();
if (kDown & KEY_A) return true;
if (extraKeys & KEY_POWER_HELD) return true;
}
while (!(kDown & KEY_B));
}
else
{
ee_printf("\r%60.60s\r", ""); // delete current line
ee_printf("Cancel is not allowed here.\n\n");
}
hidGetExtraKeys(KEY_POWER); // poweroff stopped
}
return false;
}