Added most things needed for interrupts
This commit is contained in:
parent
ba6f8a3498
commit
fc95fb5ff6
59
Makefile
59
Makefile
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@ -1,23 +1,33 @@
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ARCHDIR=arch/i686
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CFLAGS?=
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ASFLAGS?=
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INCLUDEDIR=include
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CFLAGS:=-O2 \
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CFLAGS:=\
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-O2 \
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-std=gnu99 \
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-ffreestanding \
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-Wall -Wextra \
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-I$(INCLUDEDIR) \
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$(CFLAGS)
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ASFLAGS:=\
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-I$(INCLUDEDIR) \
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-I$(ARCHDIR) \
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$(ASFLAGS)
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KERNEL_OBJS=\
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kernel/kernel.o \
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kernel/debugging.o \
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KERNEL_OBJS=kernel/kernel.o
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LIB_OBJS=\
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$(ARCHDIR)/bootstrap.o \
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$(ARCHDIR)/tty.o\
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$(ARCHDIR)/strlib.o\
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$(ARCHDIR)/interrupt.o\
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$(ARCHDIR)/tty.o \
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$(ARCHDIR)/strlib.o \
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$(ARCHDIR)/interrupt.o \
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$(ARCHDIR)/gdt.o \
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OBJS=$(KERNEL_OBJS) $(LIB_OBJS)
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@ -27,40 +37,37 @@ LDFLAGS=$(OBJS) \
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-nostdlib \
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-lgcc
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.PHONY: all clean myos.iso
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.SUFFIXES: .c .o .s
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all:
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$(MAKE) run-grub-qemu
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all: myos.iso
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clean:
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rm -f $(OBJS)
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rm myos.bin
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rm myos.iso
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debug:
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mkdir build || true
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cp Makefile build
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cp -r isodir build
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CFLAGS=-g $(MAKE) -C build debug-grub-qemu
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rm -f myos.kernel
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rm -f myos.iso
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rm -f isodir/boot/myos.kernel
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.c.o:
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i686-elf-gcc -c $< -o $@ $(CFLAGS)
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.s.o:
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i686-elf-as $< -o $@
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i686-elf-as $< -o $@ $(ASFLAGS)
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myos.bin: $(OBJS)
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i686-elf-gcc -T $(ARCHDIR)/linker.ld -o myos.bin $(LDFLAGS)
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grub-file --is-x86-multiboot myos.bin
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myos.kernel: $(OBJS)
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i686-elf-gcc -T $(ARCHDIR)/linker.ld -o myos.kernel $(LDFLAGS)
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grub-file --is-x86-multiboot myos.kernel
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run-grub-qemu: myos.bin
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cp myos.bin isodir/boot/myos.bin
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myos.iso: myos.kernel
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cp myos.kernel isodir/boot/myos.kernel
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grub-mkrescue -o myos.iso isodir
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qemu-system-i386 myos.iso
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debug-grub-qemu: myos.bin
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cp myos.bin isodir/boot/myos.bin
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grub-mkrescue -o myos.iso isodir
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qemu-system-i386 -S -gdb tcp::9000 myos.iso
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debug: CFLAGS += -g -O0
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debug: ASFLAGS += -g
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debug: all
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run: myos.iso
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qemu-system-i386 myos.iso -display curses
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run-debug: debug
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qemu-system-i386 -S -gdb tcp::9000 myos.iso -display curses
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@ -65,6 +65,20 @@ _start:
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*/
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mov $stack_top, %esp
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cli
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call gdt_init
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movw %ax, 0x10
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movw %ds, %ax
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movw %es, %ax
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movw %fs, %ax
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movw %gs, %ax
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movw %ss, %ax
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# jmp kernel
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ljmp $0x08, $kernel
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kernel:
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/*
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This is a good place to initialize crucial processor state before the
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high-level kernel is entered. It's best to minimize the early
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stack since (pushed 0 bytes so far), so the alignment has thus been
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preserved and the call is well defined.
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*/
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mov %esp, %edx
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call kernel_main
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.global keyboard_test
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keyboard_test:
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hlt
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/*
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If the system has nothing more to do, put the computer into an
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infinite loop. To do that:
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Set the size of the _start symbol to the current location '.' minus its start.
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This is useful when debugging or when you implement call tracing.
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*/
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.size _start, . - _start
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120
arch/i686/gdt.c
Normal file
120
arch/i686/gdt.c
Normal file
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@ -0,0 +1,120 @@
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#include <kernel/tty.h>
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#include <debugging.h>
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#include <stdint.h>
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#include <stddef.h>
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#define NUM_ENTRIES 3
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struct SegmentDescriptor {
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uint32_t limit;
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uint32_t base;
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uint8_t access_byte;
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uint8_t flags;
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};
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struct GDT {
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uint16_t size;
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uint64_t* base;
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} __attribute__((packed));
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static uint64_t entries[NUM_ENTRIES];
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static size_t current_entry = 0;
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struct GDT gdt;
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static void encodeGdtEntry(uint8_t *target, struct SegmentDescriptor source)
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{
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// Check the limit to make sure that it can be encoded
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if (source.limit > 0xFFFFF) {
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terminal_writestring("WARNING: GDT entry has a limit (");
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print_hex_bytes(&source.limit, 4);
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terminal_writestring(") that is larger than accepted.");
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return;
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}
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// Encode the limit
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target[0] = source.limit & 0xFF;
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target[1] = (source.limit >> 8) & 0xFF;
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target[6] = (source.limit >> 16) & 0x0F;
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// Encode the base
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target[2] = source.base & 0xFF;
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target[3] = (source.base >> 8) & 0xFF;
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target[4] = (source.base >> 16) & 0xFF;
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target[7] = (source.base >> 24) & 0xFF;
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// Encode the access byte
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target[5] = source.access_byte;
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// Encode the flags
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target[6] |= (source.flags << 4);
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print_hex_bytes(target, 8);
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}
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static void add_entry(struct SegmentDescriptor entry)
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{
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if (current_entry == NUM_ENTRIES) {
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terminal_writestring("WARNING: More GDT entries than NUM_ENTRIES.\n");
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return;
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}
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uint64_t descriptor = 0;
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encodeGdtEntry((uint8_t*) &descriptor, entry);
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entries[current_entry] = descriptor;
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current_entry++;
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}
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static void load_gdt()
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{
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gdt.size = NUM_ENTRIES * 8 - 1;
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gdt.base = entries;
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for (int i = 0; i < NUM_ENTRIES; i++) {
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print_hex_bytes(gdt.base + i, 8);
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terminal_putchar('\n');
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}
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asm ( "lgdt %0" : : "m"(gdt) );
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}
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void gdt_init()
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{
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terminal_initialize();
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struct SegmentDescriptor null;
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null.limit = 0;
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null.base = 0;
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null.access_byte = 0;
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null.flags = 0;
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terminal_writestring("Kernel Null: ");
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add_entry(null);
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terminal_putchar('\n');
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struct SegmentDescriptor kernel_code;
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kernel_code.limit = 0x000003FF;
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kernel_code.base = 0x00000000;
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kernel_code.access_byte = 0b10011010;
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kernel_code.flags = 0b1100;
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terminal_writestring("Kernel Code: ");
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add_entry(kernel_code);
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terminal_putchar('\n');
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struct SegmentDescriptor kernel_data;
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kernel_code.limit = 0x000003FF;
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kernel_data.base = 0x00400000;
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kernel_data.access_byte = 0b10010010;
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kernel_data.flags = 0b1100;
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terminal_writestring("Kernel Data: ");
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add_entry(kernel_data);
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terminal_putchar('\n');
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load_gdt();
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}
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@ -1,16 +1,88 @@
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#include <kernel/tty.h>
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#include <kernel/interrupt.h>
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#include <debugging.h>
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#include <stdint.h>
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#include <stddef.h>
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const uint16_t NUM_ID = 0;
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#define NUM_ENTRIES 0
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void load_idt(struct InterruptDescriptorTable *idt)
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struct InterruptDescriptor {
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uint32_t offset;
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uint32_t selector;
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uint8_t gate_type;
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uint8_t ring;
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bool present;
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};
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struct IDT {
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uint16_t size;
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uint64_t* base;
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} __attribute__((packed));
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static uint64_t entries[NUM_ENTRIES];
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static size_t current_entry = 0;
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struct IDT idt;
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static void encodeIdtEntry(uint8_t *target, struct InterruptDescriptor source)
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{
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asm("lidt %0" : : "m"(idt));
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// Encode the present bit
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if (source.present) {
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target[5] |= 0xF0;
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} else {
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// Not present, return
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return;
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}
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// Encode the offset
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target[0] = (source.offset >> 0x00) & 0xFF;
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target[1] = (source.offset >> 0x08) & 0xFF;
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target[6] = (source.offset >> 0x10) & 0xFF;
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target[7] = (source.offset >> 0x18) & 0xFF;
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// Encode the base
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target[2] = (source.selector >> 0x00) & 0xFF;
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target[3] = (source.selector >> 0x08) & 0xFF;
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// Encode the gate type
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target[5] |= source.gate_type;
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// Encode the DPL
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target[5] |= (source.ring >> 5);
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print_hex_bytes(target, 8);
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}
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void interrupt_initialize(struct InterruptDescriptorTable IDT)
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static void add_entry(struct InterruptDescriptor entry)
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{
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terminal_writestring("Loading IDT\n");
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load_idt(&IDT);
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if (current_entry == NUM_ENTRIES) {
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terminal_writestring("WARNING: More IDT entries than NUM_ENTRIES.\n");
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return;
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}
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uint64_t descriptor = 0;
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encodeIdtEntry((uint8_t*) &descriptor, entry);
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entries[current_entry] = descriptor;
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current_entry++;
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}
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static void load_idt()
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{
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idt.size = NUM_ENTRIES * 8 - 1;
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idt.base = entries;
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for (int i = 0; i < NUM_ENTRIES; i++) {
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print_hex_bytes(idt.base + i, 8);
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terminal_putchar('\n');
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}
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asm ( "lidt %0" : : "m"(idt) );
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}
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void idt_init()
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{
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terminal_writestring("TODO: Add interrupts");
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terminal_putchar('\n');
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// load_idt();
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}
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@ -22,14 +22,14 @@ SECTIONS
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/* First put the multiboot header, as it is required to be put very early
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in the image or the bootloader won't recognize the file format.
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Next we'll put the .text section. */
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.text BLOCK(4K) : ALIGN(4K)
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.text BLOCK (4K) : ALIGN(4K)
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{
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*(.multiboot)
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*(.text)
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}
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/* Read-only data. */
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.rodata BLOCK(4K) : ALIGN(4K)
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.rodata BLOCK(4K) : ALIGN(4M)
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{
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*(.rodata)
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}
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@ -3,12 +3,6 @@
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#include <stdint.h>
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#include <strlib.h>
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/* Check if the compiler thinks you are targeting the wrong operating system. */
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#if defined(__linux__)
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#error "You are not using a cross-compiler, you will most certainly run into trouble"
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#endif
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/* This tutorial will only work for the 32-bit ix86 targets. */
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#if !defined(__i386__)
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#error "This tutorial needs to be compiled with a ix86-elf compiler"
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#endif
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8
include/debugging.h
Normal file
8
include/debugging.h
Normal file
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@ -0,0 +1,8 @@
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#include <stdint.h>
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#include <stdbool.h>
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#include <stddef.h>
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char get_last_key_pressed();
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void print_hex_digit(uint8_t digit);
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void print_hex_byte(uint8_t byte);
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void print_hex_bytes(void* bytes, size_t len);
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@ -1,14 +1,4 @@
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#include <stdint.h>
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#include <stdbool.h>
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struct InterruptDescriptor
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{
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};
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struct InterruptDescriptorTable
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{
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uint16_t limit; /* Size of IDT array - 1 */
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struct InterruptDescriptor* base; /* Pointer to IDT array */
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} __attribute__((packed));
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void interrupt_initialize(struct InterruptDescriptorTable IDT);
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void idt_init();
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@ -1,3 +1,3 @@
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menuentry "myos" {
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multiboot /boot/myos.bin
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multiboot /boot/myos.kernel
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}
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Binary file not shown.
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@ -13,9 +13,10 @@ static inline uint8_t inb(uint16_t port)
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return ret;
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}
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bool is_in_shift;
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static bool is_in_shift;
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static unsigned char keyboard_char(unsigned char scancode) {
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static unsigned char keyboard_char(unsigned char scancode)
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{
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if (0x01 < scancode && scancode < 0x0B) {
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return scancode - 2 + '1';
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}
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@ -118,7 +119,8 @@ static unsigned char keyboard_char(unsigned char scancode) {
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return -1;
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}
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char get_last_key_pressed() {
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char get_last_key_pressed()
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{
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char scancode = inb(0x60);
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if (is_in_shift) {
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@ -128,7 +130,8 @@ char get_last_key_pressed() {
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return to_lower_char(keyboard_char(scancode));
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}
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void print_hex_digit(uint8_t digit) {
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void print_hex_digit(uint8_t digit)
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{
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digit = digit & 0xf;
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if (digit < 0xA) {
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terminal_putchar(digit + 0x30);
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@ -137,10 +140,19 @@ void print_hex_digit(uint8_t digit) {
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}
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}
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void print_hex_byte(uint8_t byte) {
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void print_hex_byte(uint8_t byte)
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{
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int upper = byte >> 4;
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int lower = byte & 0x0F;
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print_hex_digit(upper);
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print_hex_digit(lower);
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}
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void print_hex_bytes(void* bytes, size_t len)
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{
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uint8_t* value = bytes;
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for (size_t i = len; i > 0; i--) {
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print_hex_byte(value[i - 1]);
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}
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}
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@ -1,12 +1,20 @@
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#include <kernel/tty.h>
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#include <kernel/interrupt.h>
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#include <debugging.c>
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#include <debugging.h>
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/* Check if the compiler thinks you are targeting the wrong operating system. */
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#if defined(__linux__)
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#error "You are not using a cross-compiler, you will most certainly run into trouble"
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#endif
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void kernel_main(void)
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{
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/* Initialize terminal interface */
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terminal_initialize();
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// TODO: Add interrupts
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// idt_init();
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terminal_putchar(get_last_key_pressed());
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char current_character = get_last_key_pressed();
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|
@ -17,11 +25,4 @@ void kernel_main(void)
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}
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current_character = tmp;
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}
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struct InterruptDescriptorTable IDTR = {
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};
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interrupt_initialize(IDTR);
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terminal_writestring("Hello World!");
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||||
}
|
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|
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Loading…
Reference in a new issue