mirror of
https://github.com/Fennix-Project/Kernel.git
synced 2025-05-25 22:14:37 +00:00
432 lines
13 KiB
C++
432 lines
13 KiB
C++
/*
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This file is part of Fennix Kernel.
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Fennix Kernel is free software: you can redistribute it and/or
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modify it under the terms of the GNU General Public License as
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published by the Free Software Foundation, either version 3 of
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the License, or (at your option) any later version.
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Fennix Kernel is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with Fennix Kernel. If not, see <https://www.gnu.org/licenses/>.
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*/
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#include "kernel.h"
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#include <filesystem/ustar.hpp>
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#include <power.hpp>
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#include <lock.hpp>
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#include <printf.h>
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#include <exec.hpp>
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#include <cwalk.h>
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#include <vector>
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#define STB_IMAGE_IMPLEMENTATION
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#define STBI_NO_STDIO
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#define STBI_NO_LINEAR
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#define STBI_NO_THREAD_LOCALS
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#define STBI_NO_HDR
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#define STBI_ONLY_TGA
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#include <stb/image.h>
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#include "DAPI.hpp"
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#include "Fex.hpp"
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using VirtualFileSystem::File;
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using VirtualFileSystem::FileStatus;
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using VirtualFileSystem::Node;
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using VirtualFileSystem::NodeFlags;
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Driver::Driver *DriverManager = nullptr;
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Disk::Manager *DiskManager = nullptr;
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NetworkInterfaceManager::NetworkInterface *NIManager = nullptr;
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Recovery::KernelRecovery *RecoveryScreen = nullptr;
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VirtualFileSystem::Node *DevFS = nullptr;
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VirtualFileSystem::Node *MntFS = nullptr;
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VirtualFileSystem::Node *ProcFS = nullptr;
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NewLock(ShutdownLock);
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#ifdef DEBUG
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void TreeFS(Node *node, int Depth)
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{
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return;
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foreach (auto Chld in node->Children)
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{
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printf("%*c %s\eFFFFFF\n", Depth, ' ', Chld->Name);
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if (!Config.BootAnimation)
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Display->SetBuffer(0);
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TaskManager->Sleep(100);
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TreeFS(Chld, Depth + 1);
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}
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}
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const char *Statuses[] = {
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"FF0000", /* Unknown */
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"AAFF00", /* Ready */
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"00AA00", /* Running */
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"FFAA00", /* Sleeping */
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"FFAA00", /* Waiting */
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"FF0088", /* Stopped */
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"FF0000", /* Terminated */
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};
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const char *StatusesSign[] = {
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"Unknown",
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"Ready",
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"Run",
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"Sleep",
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"Wait",
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"Stop",
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"Terminated",
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};
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const char *SuccessSourceStrings[] = {
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"Unknown",
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"GetNextAvailableThread",
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"GetNextAvailableProcess",
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"SchedulerSearchProcessThread",
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};
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void TaskMgr()
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{
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while (1)
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{
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CPU::Interrupts(CPU::Disable);
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static int sanity = 0;
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Video::ScreenBuffer *sb = Display->GetBuffer(0);
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for (short i = 0; i < 340; i++)
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{
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for (short j = 0; j < 200; j++)
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{
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uint32_t *Pixel = (uint32_t *)((uintptr_t)sb->Buffer + (j * sb->Width + i) * (bInfo.Framebuffer[0].BitsPerPixel / 8));
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*Pixel = 0x222222;
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}
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}
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uint32_t tmpX, tmpY;
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Display->GetBufferCursor(0, &tmpX, &tmpY);
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Display->SetBufferCursor(0, 0, 0);
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printf("\eF02C21Task Manager\n");
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foreach (auto Proc in TaskManager->GetProcessList())
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{
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int Status = Proc->Status;
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printf("\e%s-> \eAABBCC%s \e00AAAA%s\n",
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Statuses[Status], Proc->Name, StatusesSign[Status]);
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foreach (auto Thd in Proc->Threads)
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{
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Status = Thd->Status;
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printf(" \e%s-> \eAABBCC%s \e00AAAA%s\n\eAABBCC",
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Statuses[Status], Thd->Name, StatusesSign[Status]);
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}
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}
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#if defined(a64)
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register uintptr_t CurrentStackAddress asm("rsp");
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#elif defined(a32)
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register uintptr_t CurrentStackAddress asm("esp");
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#elif defined(aa64)
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register uintptr_t CurrentStackAddress asm("sp");
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#endif
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printf("Sanity: %d, Stack: %#lx", sanity++, CurrentStackAddress);
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if (sanity > 1000)
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sanity = 0;
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Display->SetBufferCursor(0, tmpX, tmpY);
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if (!Config.BootAnimation)
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Display->SetBuffer(0);
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CPU::Interrupts(CPU::Enable);
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}
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}
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#endif
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Execute::SpawnData SpawnInit()
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{
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const char *envp[5] = {
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"PATH=/system:/system/bin",
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"TERM=tty",
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"HOME=/",
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"USER=root",
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nullptr};
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const char *argv[4] = {
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Config.InitPath,
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"--init",
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"--critical",
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nullptr};
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return Execute::Spawn(Config.InitPath, argv, envp);
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}
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/* Files: 0.tga 1.tga ... 26.tga */
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void *Frames[27];
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uint32_t FrameSizes[27];
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uint32_t FrameCount = 1;
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void BootLogoAnimationThread()
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{
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char BootAnimPath[16];
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while (FrameCount < 27)
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{
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sprintf(BootAnimPath, "%d.tga", FrameCount);
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File ba = bootanim_vfs->Open(BootAnimPath);
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if (!ba.IsOK())
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{
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bootanim_vfs->Close(ba);
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debug("Failed to load boot animation frame %s", BootAnimPath);
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break;
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}
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FrameSizes[FrameCount] = s_cst(uint32_t, ba.node->Length);
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Frames[FrameCount] = new uint8_t[ba.node->Length];
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memcpy((void *)Frames[FrameCount], (void *)ba.node->Address, ba.node->Length);
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bootanim_vfs->Close(ba);
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FrameCount++;
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}
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uint32_t DispX = Display->GetBuffer(1)->Width;
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uint32_t DispY = Display->GetBuffer(1)->Height;
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for (size_t i = 1; i < FrameCount; i++)
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{
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int x, y, channels;
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if (!stbi_info_from_memory((uint8_t *)Frames[i], FrameSizes[i], &x, &y, &channels))
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continue;
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uint8_t *img = stbi_load_from_memory((uint8_t *)Frames[i], FrameSizes[i], &x, &y, &channels, STBI_rgb_alpha);
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if (img == NULL)
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continue;
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int offsetX = DispX / 2 - x / 2;
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int offsetY = DispY / 2 - y / 2;
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for (int i = 0; i < x * y; i++)
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{
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uint32_t pixel = ((uint32_t *)img)[i];
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int r = (pixel >> 16) & 0xFF;
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int g = (pixel >> 8) & 0xFF;
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int b = (pixel >> 0) & 0xFF;
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int a = (pixel >> 24) & 0xFF;
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if (a != 0xFF)
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{
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r = (r * a) / 0xFF;
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g = (g * a) / 0xFF;
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b = (b * a) / 0xFF;
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}
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Display->SetPixel((i % x) + offsetX, (i / x) + offsetY, (r << 16) | (g << 8) | (b << 0), 1);
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}
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free(img);
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Display->SetBuffer(1);
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TaskManager->Sleep(50);
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}
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int brightness = 100;
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while (brightness >= 0)
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{
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brightness -= 10;
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Display->SetBrightness(brightness, 1);
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Display->SetBuffer(1);
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TaskManager->Sleep(5);
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}
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}
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void ExitLogoAnimationThread()
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{
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Display->SetBrightness(100, 1);
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Display->SetBuffer(1);
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/* Files: 26.tga 25.tga ... 1.tga */
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uint32_t DispX = Display->GetBuffer(1)->Width;
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uint32_t DispY = Display->GetBuffer(1)->Height;
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for (size_t i = 40; i > 25; i--)
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{
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int x, y, channels;
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if (!stbi_info_from_memory((uint8_t *)Frames[i], FrameSizes[i], &x, &y, &channels))
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continue;
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uint8_t *img = stbi_load_from_memory((uint8_t *)Frames[i], FrameSizes[i], &x, &y, &channels, STBI_rgb_alpha);
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if (img == NULL)
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continue;
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int offsetX = DispX / 2 - x / 2;
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int offsetY = DispY / 2 - y / 2;
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for (int i = 0; i < x * y; i++)
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{
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uint32_t pixel = ((uint32_t *)img)[i];
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int r = (pixel >> 16) & 0xFF;
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int g = (pixel >> 8) & 0xFF;
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int b = (pixel >> 0) & 0xFF;
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int a = (pixel >> 24) & 0xFF;
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if (a != 0xFF)
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{
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r = (r * a) / 0xFF;
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g = (g * a) / 0xFF;
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b = (b * a) / 0xFF;
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}
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Display->SetPixel((i % x) + offsetX, (i / x) + offsetY, (r << 16) | (g << 8) | (b << 0), 1);
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}
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free(img);
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Display->SetBuffer(1);
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TaskManager->Sleep(50);
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}
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int brightness = 100;
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while (brightness >= 0)
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{
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brightness -= 10;
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Display->SetBrightness(brightness, 1);
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Display->SetBuffer(1);
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TaskManager->Sleep(5);
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}
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}
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void CleanupProcessesThreadWrapper() { TaskManager->CleanupProcessesThread(); }
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void KernelMainThread()
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{
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Tasking::TCB *clnThd = TaskManager->CreateThread(TaskManager->GetCurrentProcess(), (Tasking::IP)CleanupProcessesThreadWrapper);
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clnThd->SetPriority(Tasking::Idle);
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TaskManager->SetCleanupThread(clnThd);
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TaskManager->GetCurrentThread()->SetPriority(Tasking::Critical);
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Tasking::TCB *blaThread = nullptr;
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if (Config.BootAnimation)
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{
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blaThread = TaskManager->CreateThread(TaskManager->GetCurrentProcess(), (Tasking::IP)BootLogoAnimationThread);
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blaThread->Rename("Logo Animation");
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}
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#ifdef DEBUG
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/* TODO: This should not be enabled because it may cause a deadlock. Not sure where or how. */
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// Tasking::PCB *tskMgr = TaskManager->CreateProcess(TaskManager->GetCurrentProcess(), "Debug Task Manager", Tasking::TaskTrustLevel::Kernel);
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// TaskManager->CreateThread(tskMgr, (Tasking::IP)TaskMgr)->SetPriority(Tasking::High);
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TreeFS(vfs->GetRootNode(), 0);
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#endif
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KPrint("Kernel Compiled at: %s %s with C++ Standard: %d", __DATE__, __TIME__, CPP_LANGUAGE_STANDARD);
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KPrint("C++ Language Version (__cplusplus): %ld", __cplusplus);
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KPrint("Initializing Disk Manager...");
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DiskManager = new Disk::Manager;
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KPrint("Loading Drivers...");
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DriverManager = new Driver::Driver;
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KPrint("Fetching Disks...");
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if (DriverManager->GetDrivers().size() > 0)
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{
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foreach (auto Driver in DriverManager->GetDrivers())
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if (((FexExtended *)((uintptr_t)Driver.Address + EXTENDED_SECTION_ADDRESS))->Driver.Type == FexDriverType::FexDriverType_Storage)
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DiskManager->FetchDisks(Driver.DriverUID);
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}
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else
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KPrint("\eE85230No disk drivers found! Cannot fetch disks!");
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KPrint("Initializing Network Interface Manager...");
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NIManager = new NetworkInterfaceManager::NetworkInterface;
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KPrint("Starting Network Interface Manager...");
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NIManager->StartService();
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printf("\eCCCCCC[\e00AEFFKernel Thread\eCCCCCC] Setting up userspace");
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if (!Config.BootAnimation)
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Display->SetBuffer(0);
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Execute::SpawnData ret = {Execute::ExStatus::Unknown, nullptr, nullptr};
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Tasking::TCB *ExecuteThread = nullptr;
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int ExitCode = -1;
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ExecuteThread = TaskManager->CreateThread(TaskManager->GetCurrentProcess(), (Tasking::IP)Execute::StartExecuteService);
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ExecuteThread->Rename("Library Manager");
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ExecuteThread->SetCritical(true);
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ExecuteThread->SetPriority(Tasking::Idle);
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Display->Print('.', 0);
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if (!Config.BootAnimation)
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Display->SetBuffer(0);
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ret = SpawnInit();
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Display->Print('.', 0);
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if (!Config.BootAnimation)
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Display->SetBuffer(0);
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if (ret.Status != Execute::ExStatus::OK)
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{
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KPrint("\eE85230Failed to start %s! Code: %d", Config.InitPath, ret.Status);
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goto Exit;
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}
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ret.Thread->SetCritical(true);
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TaskManager->GetSecurityManager()->TrustToken(ret.Process->Security.UniqueToken, Tasking::TTL::FullTrust);
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TaskManager->GetSecurityManager()->TrustToken(ret.Thread->Security.UniqueToken, Tasking::TTL::FullTrust);
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Display->Print('.', 0);
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Display->Print('\n', 0);
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if (!Config.BootAnimation)
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Display->SetBuffer(0);
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KPrint("Waiting for \e22AAFF%s\eCCCCCC to start...", Config.InitPath);
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TaskManager->GetCurrentThread()->SetPriority(Tasking::Idle);
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TaskManager->WaitForThread(ret.Thread);
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ExitCode = ret.Thread->GetExitCode();
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Exit:
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if (ExitCode != 0)
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{
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KPrint("\eE85230Userspace process exited with code %d", ExitCode);
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KPrint("Dropping to recovery screen...");
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TaskManager->Sleep(2500);
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TaskManager->WaitForThread(blaThread);
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RecoveryScreen = new Recovery::KernelRecovery;
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}
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else
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{
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KPrint("\eFF7900%s process exited with code %d and it didn't invoked the shutdown function.",
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Config.InitPath, ExitCode);
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KPrint("System Halted");
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}
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CPU::Halt(true);
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}
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void __no_stack_protector KernelShutdownThread(bool Reboot)
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{
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SmartLock(ShutdownLock);
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debug("KernelShutdownThread(%s)", Reboot ? "true" : "false");
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if (Config.BootAnimation && TaskManager)
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{
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if (RecoveryScreen)
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delete RecoveryScreen, RecoveryScreen = nullptr;
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Tasking::TCB *elaThread = TaskManager->CreateThread(TaskManager->GetCurrentProcess(), (Tasking::IP)ExitLogoAnimationThread);
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elaThread->Rename("Logo Animation");
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TaskManager->WaitForThread(elaThread);
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}
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BeforeShutdown(Reboot);
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trace("%s...", Reboot ? "Rebooting" : "Shutting down");
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if (Reboot)
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PowerManager->Reboot();
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else
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PowerManager->Shutdown();
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CPU::Stop();
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}
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void KST_Reboot() { KernelShutdownThread(true); }
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void KST_Shutdown() { KernelShutdownThread(false); }
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