mirror of
https://github.com/EnderIce2/Fennix.git
synced 2025-05-25 22:14:34 +00:00
417 lines
9.4 KiB
C++
417 lines
9.4 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 "ps2.hpp"
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#include "keyboard.hpp"
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#include <interface/aip.h>
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#include <display.hpp>
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#include <convert.h>
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#include <printf.h>
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#include <kcon.hpp>
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#include <debug.h>
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#include <smp.hpp>
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#include <cpu.hpp>
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#include <io.h>
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#if defined(__amd64__)
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#include "../../../arch/amd64/cpu/gdt.hpp"
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#elif defined(__i386__)
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#elif defined(__aarch64__)
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#endif
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#include "../../../kernel.h"
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using namespace KernelConsole;
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#define ERROR_COLOR "\x1b[31m"
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#define WARN_COLOR "\x1b[33m"
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#define DEFAULT_COLOR "\x1b[0m"
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extern void ExPrint(const char *Format, ...);
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extern void ArrowInput(uint8_t key);
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extern void UserInput(char *Input);
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extern FontRenderer CrashFontRenderer;
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const char sc_ascii_low[] = {'?', '?', '1', '2', '3', '4', '5', '6',
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'7', '8', '9', '0', '-', '=', '?', '?', 'q', 'w', 'e', 'r', 't', 'y',
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'u', 'i', 'o', 'p', '[', ']', '?', '?', 'a', 's', 'd', 'f', 'g',
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'h', 'j', 'k', 'l', ';', '\'', '`', '?', '\\', 'z', 'x', 'c', 'v',
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'b', 'n', 'm', ',', '.', '/', '?', '?', '?', ' '};
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const char sc_ascii_high[] = {'?', '?', '!', '@', '#', '$', '%', '^',
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'&', '*', '(', ')', '_', '+', '?', '?', 'Q', 'W', 'E', 'R', 'T', 'Y',
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'U', 'I', 'O', 'P', '{', '}', '?', '?', 'A', 'S', 'D', 'F', 'G',
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'H', 'J', 'K', 'L', ';', '\"', '~', '?', '|', 'Z', 'X', 'C', 'V',
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'B', 'N', 'M', '<', '>', '?', '?', '?', '?', ' '};
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static int LowerCase = true;
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nsa static inline int GetLetterFromScanCode(uint8_t ScanCode)
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{
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if (ScanCode & 0x80)
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{
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switch (ScanCode)
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{
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case KEY_U_LSHIFT:
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LowerCase = true;
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return KEY_INVALID;
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case KEY_U_RSHIFT:
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LowerCase = true;
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return KEY_INVALID;
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default:
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return KEY_INVALID;
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}
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}
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else
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{
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switch (ScanCode)
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{
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case KEY_D_RETURN:
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return '\n';
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case KEY_D_LSHIFT:
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LowerCase = false;
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return KEY_INVALID;
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case KEY_D_RSHIFT:
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LowerCase = false;
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return KEY_INVALID;
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case KEY_D_BACKSPACE:
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return ScanCode;
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default:
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{
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if (ScanCode > 0x39)
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break;
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if (LowerCase)
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return sc_ascii_low[ScanCode];
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else
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return sc_ascii_high[ScanCode];
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}
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}
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}
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return KEY_INVALID;
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}
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nsa void CrashPS2KeyboardDriver::PS2Wait(bool Output)
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{
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#if defined(__amd64__) || defined(__i386__)
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TimeoutCallNumber++;
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int timeout = 100000;
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PS2_STATUSES status = {.Raw = inb(PS2_STATUS)};
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while (timeout--)
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{
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if (!Output)
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{
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if (status.OutputBufferFull == 0)
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return;
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}
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else
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{
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if (status.InputBufferFull == 0)
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return;
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}
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status.Raw = inb(PS2_STATUS);
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}
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ExPrint(WARN_COLOR "PS/2 controller timeout (%s;%d)\n" DEFAULT_COLOR,
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Output ? "output" : "input", TimeoutCallNumber);
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#endif // a86
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}
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/*
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This simple driver relies on the PS/2 controller to handle the keyboard.
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Maybe is not the most efficient way but most x86 devices out there
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still has PS/2 support (emulated or not).
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We even have to make sure IRQ1 is enabled in the PIC but on x64 we use
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the I/O APIC... "outb(0x21, 0b11111101);" can be used but the EOI is
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automatically sent to I/O APIC if enabled/supported which is bad.
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FIXME: On some real devices, the PS/2 keyboard doesn't send interrupts.
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*/
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nsa CrashPS2KeyboardDriver::CrashPS2KeyboardDriver() : Interrupts::Handler(1) /* IRQ1 */
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{
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#define WaitRead PS2Wait(true)
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#define WaitWrite PS2Wait(false)
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#define SetMessageLocation \
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ExPrint("\x1b[%d;%dH", (Display->GetWidth / CrashFontRenderer.CurrentFont->GetInfo().Width) - 1, 0);
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CPU::Interrupts(CPU::Disable);
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/* Dots will be printed at the bottom of the screen as a progress bar. */
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ExPrint("\x1b[%d;%dH", (Display->GetWidth / CrashFontRenderer.CurrentFont->GetInfo().Width) - 2, 0);
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#if defined(__amd64__) || defined(__i386__)
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/* Disable port 1 & 2 */
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{
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/* Disable Port 1 */
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WaitWrite;
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outb(PS2_CMD, PS2_CMD_DISABLE_PORT_1);
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/* Disable Port 2 */
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WaitWrite;
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outb(PS2_CMD, PS2_CMD_DISABLE_PORT_2);
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}
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ExPrint(".");
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/* Flush */
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{
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PS2_STATUSES status;
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int timeout = 0x500;
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while (timeout--)
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{
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status.Raw = inb(PS2_STATUS);
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if (status.OutputBufferFull == 0)
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break;
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inb(PS2_DATA);
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}
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if (timeout <= 0)
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{
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SetMessageLocation;
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ExPrint(ERROR_COLOR
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"PS/2 controller timeout (flush;0)\n" DEFAULT_COLOR);
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CPU::Stop();
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}
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}
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ExPrint(".");
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/* Test controller */
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{
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/* Save config */
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WaitWrite;
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outb(PS2_CMD, PS2_CMD_READ_CONFIG);
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WaitRead;
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PS2_CONFIGURATION cfg = {.Raw = inb(PS2_DATA)};
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cfg.Port1Interrupt = 1;
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cfg.Port2Interrupt = 1;
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cfg.Port1Translation = 1;
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/* Update config */
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WaitWrite;
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outb(PS2_CMD, PS2_DATA);
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WaitWrite;
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outb(PS2_DATA, cfg.Raw);
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/* Test PS/2 controller */
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WaitWrite;
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outb(PS2_CMD, PS2_CMD_TEST_CONTROLLER);
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WaitRead;
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uint8_t test = inb(PS2_DATA);
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if (test != PS2_TEST_PASSED)
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{
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if (test == PS2_ACK)
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{
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trace("PS/2 controller sent ACK to test request.");
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WaitRead;
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test = inb(PS2_DATA);
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}
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if (test != PS2_TEST_PASSED)
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{
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SetMessageLocation;
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ExPrint(ERROR_COLOR
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"PS/2 controller self test failed (%#x)\n" DEFAULT_COLOR,
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test);
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CPU::Stop();
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}
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}
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/* Restore config */
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WaitWrite;
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outb(PS2_CMD, PS2_DATA);
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WaitWrite;
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outb(PS2_DATA, cfg.Raw);
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}
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ExPrint(".");
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/* Disable scanning; Enable port 1; Set default settings */
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{
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/* Disable scanning */
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outb(PS2_DATA, PS2_KBD_CMD_DISABLE_SCANNING);
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/* Enable Port 1 */
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WaitWrite;
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outb(PS2_CMD, PS2_CMD_ENABLE_PORT_1);
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/* Set default settings */
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outb(PS2_DATA, PS2_KBD_CMD_DEFAULTS);
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}
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ExPrint(".");
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/* Test port 1 */
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{
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WaitWrite;
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outb(PS2_CMD, PS2_CMD_TEST_PORT_1);
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WaitRead;
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uint8_t test = inb(PS2_DATA);
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if (test != 0x00)
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{
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if (test == PS2_KBD_RESP_ACK)
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{
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trace("PS/2 keyboard sent ACK to test request.");
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WaitRead;
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test = inb(PS2_DATA);
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}
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if (test != 0x00)
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{
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SetMessageLocation;
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ExPrint(ERROR_COLOR
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"PS/2 keyboard self test failed (%#x)\n" DEFAULT_COLOR,
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test);
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CPU::Stop();
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}
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}
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}
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ExPrint(".");
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/* Configure the controller */
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{
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// /* Read Controller Configuration */
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// WaitWrite;
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// outb(PS2_CMD, PS2_CMD_READ_CONFIG);
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// WaitRead;
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// uint8_t cfg = inb(PS2_DATA);
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// /* Enable Port 1 & Port 1 translation */
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// cfg |= 0b01000001;
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// /* Write Controller Configuration */
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// WaitWrite;
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// outb(PS2_CMD, PS2_CMD_WRITE_CONFIG);
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// WaitWrite;
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// outb(PS2_DATA, cfg);
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}
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ExPrint(".");
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/* Enable port 1; Set scan code; Enable scanning */
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{
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/* Enable Port 1 */
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outb(PS2_CMD, PS2_CMD_ENABLE_PORT_1);
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/* Set scan code set 1 */
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WaitWrite;
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outb(PS2_DATA, PS2_KBD_CMD_SCAN_CODE_SET);
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WaitWrite;
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outb(PS2_DATA, PS2_KBD_SCAN_CODE_SET_2);
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/* Check if we have scan code set 1 */
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WaitWrite;
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outb(PS2_DATA, PS2_KBD_CMD_SCAN_CODE_SET);
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WaitWrite;
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outb(PS2_DATA, PS2_KBD_SCAN_CODE_GET_CURRENT);
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/* Read scan code set */
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WaitRead;
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uint8_t scs = inb(PS2_DATA);
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if (scs == PS2_KBD_RESP_ACK || scs == PS2_KBD_RESP_RESEND)
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{
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if (scs == PS2_KBD_RESP_ACK)
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trace("PS/2 keyboard sent ACK to scan code set request.");
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if (scs == PS2_KBD_RESP_RESEND)
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trace("PS/2 keyboard sent RESEND to scan code set request.");
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WaitRead;
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scs = inb(PS2_DATA);
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}
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if (scs != PS2_KBD_SC_SET_2)
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{
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SetMessageLocation;
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ExPrint(WARN_COLOR
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"PS/2 keyboard scan code set 1 not supported (%#x)\n" DEFAULT_COLOR,
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scs);
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}
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/* Enable scanning */
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outb(PS2_DATA, PS2_KBD_CMD_ENABLE_SCANNING);
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}
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#ifdef DEBUG
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WaitWrite;
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outb(PS2_CMD, PS2_CMD_READ_CONFIG);
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WaitRead;
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PS2_CONFIGURATION cfg = {.Raw = inb(PS2_DATA)};
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debug("PS2 CONFIG:\nPort1int: %d\nPort2int: %d\nSysFlg: %d\nZ: %d\nP1clk: %d\nP2clk: %d\nP1trans: %d\nz: %d",
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cfg.Port1Interrupt, cfg.Port2Interrupt, cfg.SystemFlag, cfg.Zero0, cfg.Port1Clock, cfg.Port2Clock, cfg.Port1Translation, cfg.Zero1);
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#endif
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ExPrint(".");
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#endif // defined(__amd64__) || defined(__i386__)
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CPU::Interrupts(CPU::Enable);
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}
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nsa void CrashPS2KeyboardDriver::OnInterruptReceived(CPU::TrapFrame *)
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{
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#if defined(__amd64__) || defined(__i386__)
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uint8_t scanCode = inb(PS2_DATA);
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if (scanCode == KEY_D_TAB ||
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scanCode == KEY_D_LCTRL ||
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scanCode == KEY_D_LALT ||
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scanCode == KEY_U_LCTRL ||
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scanCode == KEY_U_LALT)
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return;
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switch (scanCode)
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{
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case KEY_D_UP:
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case KEY_D_LEFT:
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case KEY_D_RIGHT:
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case KEY_D_DOWN:
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ArrowInput(scanCode);
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break;
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default:
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break;
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}
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int key = GetLetterFromScanCode(scanCode);
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if (key != KEY_INVALID)
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{
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if (key == KEY_D_BACKSPACE)
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{
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if (BackSpaceLimit > 0)
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{
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char keyBuf[5] = {'\b', '\x1b', '[', 'K', '\0'};
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ExPrint(keyBuf);
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backspace(UserInputBuffer);
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BackSpaceLimit--;
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}
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}
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else if (key == '\n')
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{
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UserInput(UserInputBuffer);
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BackSpaceLimit = 0;
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UserInputBuffer[0] = '\0';
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}
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else
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{
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append(UserInputBuffer, s_cst(char, key));
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char keyBuf[2] = {(char)key, '\0'};
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ExPrint(keyBuf);
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BackSpaceLimit++;
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}
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Display->UpdateBuffer(); /* Update as we type. */
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}
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#endif // __amd64__ || __i386__
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}
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