Merge branch 'feature/rewrite'

This commit is contained in:
c0repwn3r 2022-05-13 21:44:14 -04:00
commit a6f98cddb6
Signed by: core
GPG Key ID: FDBF740DADDCEECF
84 changed files with 860 additions and 114 deletions

4
.gitignore vendored
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i386-elf-toolchain-aur bin/
i386-elf-tools-aur-pkgs obj/

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# $@ = target file ASM := nasm
# $< = first dependency
# $^ = all dependencies
GDB = gdb CC := x86_64-elf-gcc
CCFLAGS :=
C_FILES = $(shell find src/ -type f -name '*.c') LD := x86_64-elf-ld
CO_FILES = $(patsubst src/%.c, obj/%.o, $(C_FILES)) LDFLAGS :=
ASM_FILES = $(shell find src/kernel/ -type f -name '*.asm')
AO_FILES = $(patsubst src/kernel/%.asm, obj/kernel/%.o, $(ASM_FILES))
ABIN_FILES = $(patsubst src/%.asm, bin/%.bin, $(ASM_FILES))
os-image.bin: bin/boot.bin bin/kernel.bin INCLUDE := include/
cat $^ > $@
bin/boot.bin: src/boot/boot.asm bin/kernel.bin .FORCE # Target: kernel, type: C ASM
sed -i.orig "s@CH_REPLACE_BOOTSECTORCOUNT@$(shell ./getinblocks.py $(shell du -b "bin/kernel.bin" | cut -f 1))@g" src/boot/kernel.asm kernel_c_source_files = $(shell find src/kernel/ -type f -name *.c)
nasm -Isrc/boot/ $< -f bin -o $@ kernel_c_object_files = $(patsubst src/%.c,obj/%.o,$(kernel_c_source_files))
mv src/boot/kernel.asm.orig src/boot/kernel.asm kernel_asm_source_files = $(shell find src/kernel/ -type f -name *.asm)
kernel_asm_object_files = $(patsubst src/%.asm,obj/%.o,$(kernel_asm_source_files))
kernel_source_files = $(kernel_c_source_files) $(kernel_asm_object_files)
kernel_object_files = $(kernel_c_object_files) $(kernel_asm_object_files)
.FORCE: # Target: libc, type: C ASM
libc_c_source_files = $(shell find src/libc/ -type f -name *.c)
libc_c_object_files = $(patsubst src/%.c,obj/%.o,$(libc_c_source_files))
libc_asm_source_files = $(shell find src/libc/ -type f -name *.asm)
libc_asm_object_files = $(patsubst src/%.asm,obj/%.o,$(libc_c_object_files))
libc_source_files = $(libc_c_source_files) $(libc_asm_source_files)
libc_object_files = $(libc_c_object_files) $(libc_asm_object_files)
bin/kernel.bin: obj/kernel/entry.o ${CO_FILES} ${AO_FILES} # Target: sboot, type: ASM
i386-elf-ld -o $@ -Ttext 0x1000 $^ --oformat binary # Override: 32-bit
sboot_asm_source_files = $(shell find src/boot/ -type f -name *.asm)
sboot_asm_object_files = $(patsubst src/%.asm,obj/%.o,$(sboot_asm_source_files))
sboot_source_files = $(sboot_asm_source_files)
sboot_object_files = $(sboot_asm_object_files)
kernel.elf: obj/kernel/entry.o ${CO_FILES} ${AO_FILES} shade_bin_ldfile = src/linker.ld
i386-elf-ld -o $@ -Ttext 0x1000 $^
run: clean os-image.bin default: run
qemu-system-x86_64 -hdd os-image.bin
debug: clean os-image.bin kernel.elf bin/shade.iso: bin/shade.bin
qemu-system-x86_64 -s -S -hdd os-image.bin & cp bin/shade.bin src/iso/boot/shade.bin
${GDB} os-image.bin -ex "symbol-file kernel.elf" -ex "target remote localhost:1234" grub-mkrescue src/iso/ -o $@
rm src/iso/boot/shade.bin
bin/shade.bin: $(sboot_object_files) $(kernel_object_files) $(libc_object_files)
mkdir -p "$(@D)"
$(LD) $(LDFLAGS) -n -T $(shade_bin_ldfile) $^ -o $@
grub-file --is-x86-multiboot2 $@
# Generics
# Source file types: C ASM
# C
obj/%.o: src/%.c obj/%.o: src/%.c
mkdir -p "$(@D)" mkdir -p "$(@D)"
i386-elf-gcc -g -ffreestanding -c $< -o $@ $(CC) $(CCFLAGS) -I $(INCLUDE) -ffreestanding -c $< -o $@
# ASM
obj/%.o: src/%.asm obj/%.o: src/%.asm
mkdir -p "$(@D)" mkdir -p "$(@D)"
nasm -f elf $< -o $@ $(ASM) -felf64 $< -o $@
bin/%.bin: src/%.asm # Other
mkdir -p "$(@D)" run: clean bin/shade.iso
nasm -f bin $< -o $@ qemu-system-x86_64 -drive file=bin/shade.iso,index=0,media=disk,format=raw
clean: clean:
find obj -type f -name '*.o' -exec rm {} + rm -rf bin/*
find obj -type f -name '*.bin' -exec rm {} + rm -rf obj/*
find bin -type f -name '*.o' -exec rm {} +
find bin -type f -name '*.bin' -exec rm {} +
find . -type f -name '*.dis' -exec rm {} +
rm -f kernel.elf

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# configuration file generated by Bochs
plugin_ctrl: unmapped=true, biosdev=true, speaker=true, extfpuirq=true, parallel=true, serial=true, iodebug=true, pcidev=false, usb_uhci=false
config_interface: textconfig
display_library: x
memory: host=32, guest=32
romimage: file="/usr/share/bochs/BIOS-bochs-latest", address=0x00000000, options=none
vgaromimage: file="/usr/share/bochs/VGABIOS-lgpl-latest"
boot: floppy
floppy_bootsig_check: disabled=0
floppya: type=1_44
# no floppyb
ata0: enabled=true, ioaddr1=0x1f0, ioaddr2=0x3f0, irq=14
ata0-master: type=disk, path="bin/shade.iso", mode=flat, cylinders=0, heads=0, spt=0, sect_size=512, model="Generic 1234", biosdetect=auto, translation=auto
ata0-slave: type=none
ata1: enabled=true, ioaddr1=0x170, ioaddr2=0x370, irq=15
ata1-master: type=none
ata1-slave: type=none
ata2: enabled=false
ata3: enabled=false
optromimage1: file=none
optromimage2: file=none
optromimage3: file=none
optromimage4: file=none
optramimage1: file=none
optramimage2: file=none
optramimage3: file=none
optramimage4: file=none
pci: enabled=1, chipset=i440fx, slot1=none, slot2=none, slot3=none, slot4=none, slot5=none
vga: extension=vbe, update_freq=5, realtime=1, ddc=builtin
cpu: count=1:1:1, ips=4000000, quantum=16, model=bx_generic, reset_on_triple_fault=1, cpuid_limit_winnt=0, ignore_bad_msrs=1, mwait_is_nop=0
cpuid: level=6, stepping=3, model=3, family=6, vendor_string="AuthenticAMD", brand_string="AMD Athlon(tm) processor"
cpuid: mmx=true, apic=xapic, simd=sse2, sse4a=false, misaligned_sse=false, sep=true
cpuid: movbe=false, adx=false, aes=false, sha=false, xsave=false, xsaveopt=false, avx_f16c=false
cpuid: avx_fma=false, bmi=0, xop=false, fma4=false, tbm=false, x86_64=true, 1g_pages=false
cpuid: pcid=false, fsgsbase=false, smep=false, smap=false, mwait=true
print_timestamps: enabled=0
debugger_log: -
magic_break: enabled=0
port_e9_hack: enabled=0
private_colormap: enabled=0
clock: sync=none, time0=local, rtc_sync=0
# no cmosimage
log: -
logprefix: %t%e%d
debug: action=ignore
info: action=report
error: action=report
panic: action=ask
keyboard: type=mf, serial_delay=250, paste_delay=100000, user_shortcut=none
mouse: type=ps2, enabled=false, toggle=ctrl+mbutton
speaker: enabled=true, mode=system
parport1: enabled=true, file=none
parport2: enabled=false
com1: enabled=true, mode=null
com2: enabled=false
com3: enabled=false
com4: enabled=false

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# $@ = target file
# $< = first dependency
# $^ = all dependencies
GDB = gdb
C_FILES = $(shell find src/ -type f -name '*.c')
CO_FILES = $(patsubst src/%.c, obj/%.o, $(C_FILES))
ASM_FILES = $(shell find src/kernel/ -type f -name '*.asm')
AO_FILES = $(patsubst src/kernel/%.asm, obj/kernel/%.o, $(ASM_FILES))
ABIN_FILES = $(patsubst src/%.asm, bin/%.bin, $(ASM_FILES))
os-image.bin: bin/boot.bin bin/kernel.bin
cat $^ > $@
bin/boot.bin: src/boot/boot.asm bin/kernel.bin .FORCE
sed -i.orig "s@CH_REPLACE_BOOTSECTORCOUNT@$(shell ./getinblocks.py $(shell du -b "bin/kernel.bin" | cut -f 1))@g" src/boot/kernel.asm
nasm -Isrc/boot/ $< -f bin -o $@
mv src/boot/kernel.asm.orig src/boot/kernel.asm
.FORCE:
bin/kernel.bin: obj/kernel/entry.o ${CO_FILES} ${AO_FILES}
i386-elf-ld -o $@ -Ttext 0x1000 $^ --oformat binary
kernel.elf: obj/kernel/entry.o ${CO_FILES} ${AO_FILES}
i386-elf-ld -o $@ -Ttext 0x1000 $^
run: clean os-image.bin
qemu-system-x86_64 -hdd os-image.bin -d int
debug: clean os-image.bin kernel.elf
qemu-system-x86_64 -s -S -hdd os-image.bin &
${GDB} os-image.bin -ex "symbol-file kernel.elf" -ex "target remote localhost:1234"
obj/%.o: src/%.c
mkdir -p "$(@D)"
i386-elf-gcc -g -ffreestanding -c $< -o $@
obj/%.o: src/%.asm
mkdir -p "$(@D)"
nasm -f elf $< -o $@
bin/%.bin: src/%.asm
mkdir -p "$(@D)"
nasm -f bin $< -o $@
clean:
find obj -type f -name '*.o' -exec rm {} +
find obj -type f -name '*.bin' -exec rm {} +
find bin -type f -name '*.o' -exec rm {} +
find bin -type f -name '*.bin' -exec rm {} +
find . -type f -name '*.dis' -exec rm {} +
rm -f kernel.elf

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gdt_start: ; use labels to compute sizes and jumps gdt_start: ; use labels to compute sizes and jumps
; gdt starts with 8 byte null ; gdt starts with 8 byte null
dd 0x0 dd 0x0
@ -14,12 +15,12 @@ gdt_code:
; GDT for data segment ; GDT for data segment
gdt_data: gdt_data:
dw 0xffff dw 0xffff ; segment length
dw 0x0 dw 0x0 ; segment base
db 0x0 db 0x0 ; segment base
db 10010010b db 10010010b ; flags
db 11001111b db 11001111b ; flags + segment length
db 0x0 db 0x0 ; segment base
gdt_end: gdt_end:

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#include "./platform/drivers/ports.h"
#include "print.h"
#include "./platform/types.h"
#include "./platform/interrupts/int.h"
void dummy_test_entrypoint() {}
void kernel_welcome() {
print_str("Welcome to ");
print_set_color(PRINT_COLOR_CYAN, PRINT_COLOR_BLACK);
print_str("Shade");
print_set_color(PRINT_COLOR_WHITE, PRINT_COLOR_BLACK);
print_str("!\n");
print_str("shadeOS kernel version ");
print_set_color(PRINT_COLOR_YELLOW, PRINT_COLOR_BLACK);
print_str("0.2.2");
print_set_color(PRINT_COLOR_WHITE, PRINT_COLOR_BLACK);
print_newline();
print_str("Running on ");
print_set_color(PRINT_COLOR_YELLOW, PRINT_COLOR_BLACK);
print_str("shade-development");
print_set_color(PRINT_COLOR_WHITE, PRINT_COLOR_BLACK);
print_newline();
}
// kMain
void main() {
// Initialize screen buffer
struct Char* buffer = (struct Char*) 0xb8000;
clear_all(); // Clear screen
set_cursor_pos(0, 0); // Set cursor position
print_set_color(PRINT_COLOR_WHITE, PRINT_COLOR_BLACK); // Set print color
// welcome messages
kernel_msg_ok("Initialized display successfully\n");
kernel_welcome();
print_str("Copyright (c) e3team 2022. All rights reserved.\n");
print_str("This program is provided \"as-is\" and no express or implied warranty is provided.\n");
print_str("The full license can be found at /sys/LICENCE on this system or ./LICENCE in the source tree.\n");
idt_init();
kernel_msg_ok("Interrupts initialized");
__asm__ __volatile__("int $2");
}

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unsigned char port_byte_in(unsigned short port);
void port_byte_out(unsigned short port, unsigned char data);
unsigned short port_word_in(unsigned short port);
void port_word_out(unsigned short port, unsigned short data);

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#ifndef GDT_H
#define GDT_H
#include <stdint.h>
// the GDT descriptor format makes literally no sense, who came up with this
typedef struct {
uint16_t limit_low16; // Low 16 bits of limit
uint16_t base_low16; // Low 16 bits of base
uint8_t base_mid8; // Middle 8 bits of base
uint8_t access; // 7: present, 6-5: priv level, 4: type, 3: executable, 2: dc, 1: rw, 0: accessed (zero)
uint8_t limit_flags; // High 4 bits of limit AND flags (?? why). flags: 3: granularity, 2: size, 1: long, 0: reserved
uint8_t base_high8; // High 8 bits of base
} __attribute__((packed)) gdt_entry_t;
typedef struct {
uint16_t size; // GDT size (bytes) - 1
uint32_t offset; // Address of element 0 of the GDT
} __attribute__((packed)) gdt_ptr_t;
static gdt_entry_t gdt[8192];
static gdt_ptr_t gdtr;
void init_gdt();
void gdt_set_segment(int limit, int base, int access);
void load_gdt();
#endif

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#include "int.h" #include "int.h"
#include "../../print.h" #include "../../print.h"
void exception_handler() { int count = 0;
void exception_handler(registers_t r) {
print_str("I"); print_str("I");
count++;
if (count > 4) {
__asm__ __volatile__("cli; hlt");
}
} }
void idt_set_descriptor(u8 vector, void* isr, u8 flags) { void idt_set_descriptor(u8 vector, void* isr, u8 flags) {

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@ -21,8 +21,15 @@ typedef struct {
static idtr_t idtr; static idtr_t idtr;
typedef struct {
u32 ds; /* Data segment selector */
u32 edi, esi, ebp, esp, ebx, edx, ecx, eax; /* Pushed by pusha. */
u32 int_no, err_code; /* Interrupt number and error code (if applicable) */
u32 eip, cs, eflags, useresp, ss; /* Pushed by the processor automatically */
} registers_t;
__attribute__((noreturn)) __attribute__((noreturn))
void exception_handler(void); void exception_handler(registers_t r);
void idt_set_descriptor(u8 vector, void* isr, u8 flags); void idt_set_descriptor(u8 vector, void* isr, u8 flags);

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%macro isr_err_stub 1
isr_stub_%+%1:
push byte %1 ; Push interrupt no to stack
; 1. Save CPU state
pusha ; Pushes edi,esi,ebp,esp,ebx,edx,ecx,eax
mov ax, ds ; Lower 16-bits of eax = ds.
push eax ; save the data segment descriptor
mov ax, 0x10 ; kernel data segment descriptor
mov ds, ax
mov es, ax
mov fs, ax
mov gs, ax
; 2. Call C handler
call exception_handler
; 3. Restore state
pop eax
mov ds, ax
mov es, ax
mov fs, ax
mov gs, ax
popa
add esp, 8 ; Cleans up the pushed error code and pushed ISR number
sti
iret ; pops 5 things at once: CS, EIP, EFLAGS, SS, and ESP
%endmacro
; if writing for 64-bit, use iretq instead
%macro isr_no_err_stub 1
isr_stub_%+%1:
push byte 0 ; No error occured
push byte %1 ; Push interrupt no to stack
; 1. Save CPU state
pusha ; Pushes edi,esi,ebp,esp,ebx,edx,ecx,eax
mov ax, ds ; Lower 16-bits of eax = ds.
push eax ; save the data segment descriptor
mov ax, 0x10 ; kernel data segment descriptor
mov ds, ax
mov es, ax
mov fs, ax
mov gs, ax
; 2. Call C handler
call exception_handler
; 3. Restore state
pop eax
mov ds, ax
mov es, ax
mov fs, ax
mov gs, ax
popa
add esp, 8 ; Cleans up the pushed error code and pushed ISR number
sti
iret ; pops 5 things at once: CS, EIP, EFLAGS, SS, and ESP
%endmacro
extern exception_handler
isr_no_err_stub 0
isr_no_err_stub 1
isr_no_err_stub 2
isr_no_err_stub 3
isr_no_err_stub 4
isr_no_err_stub 5
isr_no_err_stub 6
isr_no_err_stub 7
isr_err_stub 8
isr_no_err_stub 9
isr_err_stub 10
isr_err_stub 11
isr_err_stub 12
isr_err_stub 13
isr_err_stub 14
isr_no_err_stub 15
isr_no_err_stub 16
isr_err_stub 17
isr_no_err_stub 18
isr_no_err_stub 19
isr_no_err_stub 20
isr_no_err_stub 21
isr_no_err_stub 22
isr_no_err_stub 23
isr_no_err_stub 24
isr_no_err_stub 25
isr_no_err_stub 26
isr_no_err_stub 27
isr_no_err_stub 28
isr_no_err_stub 29
isr_err_stub 30
isr_no_err_stub 31
global isr_stub_table
isr_stub_table:
%assign i 0
%rep 32
dd isr_stub_%+i ; use DQ instead if targeting 64-bit
%assign i i+1
%endrep

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#include "print.h"
#include "./platform/drivers/ports.h"
int row = 0;
int col = 0;
char color = PRINT_COLOR_WHITE | PRINT_COLOR_BLACK << 4;
void clear_row(int row) {
struct Char* buffer = (struct Char*) 0xb8000;
struct Char empty = (struct Char) {
character: ' ',
color: color,
};
for (int x = 0; x < NUM_COLS; x++) {
buffer[x + NUM_COLS * row] = empty;
}
set_cursor_pos(col, row);
}
void clear_all() {
for (int i = 0; i < NUM_ROWS; i++) {
clear_row(i);
}
set_cursor_pos(col, row);
}
void print_newline() {
struct Char* buffer = (struct Char*) 0xb8000;
col = 0;
if (row < NUM_ROWS - 1) {
row++;
return;
}
for (int row = 1; row < NUM_ROWS; row++) {
for (int col = 0; col < NUM_COLS; col++) {
struct Char character = buffer[col + NUM_COLS * row];
buffer[col + NUM_COLS * (row - 1)] = character;
}
}
clear_row(NUM_COLS - 1);
set_cursor_pos(col, row);
}
void print_char(char character) {
struct Char* buffer = (struct Char*) 0xb8000;
if (character == '\n') {
print_newline();
return;
}
if (col > NUM_COLS) {
print_newline();
}
struct Char cr = (struct Char) {
character: character,
color: color,
};
buffer[col + NUM_COLS * row] = cr;
col++;
set_cursor_pos(col, row);
}
void print_str(char* str) {
for (int i = 0; 1; i++) {
char character = (char) str[i];
if (character == '\0') {
return;
}
print_char(character);
}
}
void print_set_color(char foreground, char background) {
color = foreground + (background << 4);
}
void set_cursor_pos(int col, int row) {
int offset = col + NUM_COLS * row;
port_byte_out(REG_SCREEN_CTRL, 14);
port_byte_out(REG_SCREEN_DATA, (unsigned char)(offset >> 8));
port_byte_out(REG_SCREEN_CTRL, 15);
port_byte_out(REG_SCREEN_DATA, (unsigned char)(offset & 0xff));
}
void kernel_msg_ok(char* msg) {
char ok_p1[] = "[ ";
char ok_p2[] = "OK ";
char ok_p3[] = "] ";
print_set_color(PRINT_COLOR_WHITE, PRINT_COLOR_BLACK);
print_str(ok_p1);
print_set_color(PRINT_COLOR_GREEN, PRINT_COLOR_BLACK);
print_str(ok_p2);
print_set_color(PRINT_COLOR_WHITE, PRINT_COLOR_BLACK);
print_str(ok_p3);
print_str(msg);
}

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#ifndef PRINT_H
#define PRINT_H
#define REG_SCREEN_CTRL 0x3d4
#define REG_SCREEN_DATA 0x3d5
enum {
PRINT_COLOR_BLACK = 0,
PRINT_COLOR_BLUE = 1,
PRINT_COLOR_GREEN = 2,
PRINT_COLOR_CYAN = 3,
PRINT_COLOR_RED = 4,
PRINT_COLOR_MAGENTA = 5,
PRINT_COLOR_BROWN = 6,
PRINT_COLOR_LIGHT_GRAY = 7,
PRINT_COLOR_DARK_GRAY = 8,
PRINT_COLOR_LIGHT_BLUE = 9,
PRINT_COLOR_LIGHT_GREEN = 10,
PRINT_COLOR_LIGHT_CYAN = 11,
PRINT_COLOR_LIGHT_RED = 12,
PRINT_COLOR_PINK = 13,
PRINT_COLOR_YELLOW = 14,
PRINT_COLOR_WHITE = 15,
};
const static int NUM_COLS = 80;
const static int NUM_ROWS = 25;
struct Char {
char character;
char color;
};
void clear_row(int row);
void clear_all();
void print_newline();
void print_char(char character);
void print_set_color(char foreground, char background);
void print_str(char* str);
void set_cursor_pos(int col, int row);
void kernel_msg_ok(char* msg);
#endif

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#ifndef STRINGS_H
#define STRINGS_H
void itoa(int n, char str[]);
void strrev(char s[]);
int strlen(char s[]);
char* strcpy(char* strDest, const char* strSrc);
char* strcnc(char* str1, char* str2);
#endif

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#include "util.h"
void memcpy(char *source, char *dest, int nbytes) {
int i;
for (i = 0; i < nbytes; i++) {
*(dest + i) = *(source + i);
}
}
void memset(char *dest, char val, int len) {
char *temp = (char *)dest;
for(; len !=0; len--) *temp++ = val;
}
void int_to_ascii(int n, char str[]) {
int i, sign;
if ((sign = n) < 0) n = -n;
i = 0;
do {
str[i++] = n % 10 + '0';
} while ((n /= 10) > 0);
if (sign < 0) str[i++] = '-';
str[i] = '\0';
}

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#ifndef UTIL_H
#define UTIL_H
void memcpy(char *source, char *dest, int nbytes);
void memset(char *dest, char val, int len);
void int_to_ascii(int n, char str[]);
#endif

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global entry_x86
extern entry_x64
section .text
bits 32
entry_x86:
mov esp, stack_top
call check_mb2_boot
call check_cpuid
call check_x64_supported
call setup_page_tables
call enable_paging
lgdt [gdt64.pointer]
jmp gdt64.code_segment:entry_x64 ; Jump into 64 bit entry
hlt
check_mb2_boot:
cmp eax, 0x36d76289 ; compare eax to mb2 magic number
jne .mb2_not_booted
ret
.mb2_not_booted:
mov al, "B" ; err code B - boot error
jmp error
check_cpuid:
pushfd ; Put flags on stack so we can mess with them
pop eax ; then put the stack into EAX so we can easily modify it
mov ecx, eax ; Make a copy of eax in ecx for comparison
xor eax, 1 << 21 ; Attempt to flip the CPUID bit which is bit 21
push eax ; Put eax back onto stack
popfd ; Write flags back
pushfd ; Copy flags onto stack so we can check if the bit did flip
pop eax ; Put stack into EAX for comparison
push ecx ; Put original flags into stack so we can make sure they remain unchanged
popfd; Push original flags back onto the flags register
cmp eax, ecx ; Compare the modifided? flags to the original flags
je .cpuid_unsupported ; Flags were not changed, cpuid not supported
ret
.cpuid_unsupported:
mov al, "C" ; err code C - cpuid unsupported
jmp error
check_x64_supported:
mov eax, 0x80000000 ; Magic code that i dont understand
cpuid ; Magic code that i dont understand
cmp eax, 0x80000001 ; Magic code that i dont undetstand
jb .x64_unsupported ; Something went wrong so x64 isnt supported
mov eax, 0x80000001 ; Set magic value 0x80000001 into EAX for cpuid
cpuid ; Get "extended features list" from CPU info
test edx, 1 << 29 ; Check if x64 is supported by checking bit 29
jz .x64_unsupported ; If zero, x64 unsupported so jump to no x64
ret
.x64_unsupported:
mov al, "L" ; err code L, long mode/x64 unsupported
jmp error
; Magic paging code that I don't understand
setup_page_tables:
mov eax, page_table_l3
or eax, 0b11 ; present, writable
mov [page_table_l4], eax
mov eax, page_table_l2
or eax, 0b11 ; present, writable
mov [page_table_l3], eax
mov ecx, 0 ; counter
.loop:
mov eax, 0x200000 ; 2MiB
mul ecx
or eax, 0b10000011 ; present, writable, huge page
mov [page_table_l2 + ecx * 8], eax
inc ecx ; increment counter
cmp ecx, 512 ; checks if the whole table is mapped
jne .loop ; if not, continue
ret
enable_paging:
; pass page table location to cpu
mov eax, page_table_l4
mov cr3, eax
; enable PAE
mov eax, cr4
or eax, 1 << 5
mov cr4, eax
; enable long mode
mov ecx, 0xC0000080
rdmsr
or eax, 1 << 8
wrmsr
; enable paging
mov eax, cr0
or eax, 1 << 31
mov cr0, eax
ret
error:
; print "ERR: X" where X is the error code
mov dword [0xb8000], 0x4f524f45
mov dword [0xb8004], 0x4f3a4f52
mov dword [0xb8008], 0x4f204f20
mov byte [0xb800a], al
hlt
section .bss
align 4096
page_table_l4:
resb 4096
page_table_l3:
resb 4096
page_table_l2:
resb 4096
stack_bottom:
resb 4096 * 4
stack_top:
section .rodata
gdt64:
dd 0 ; zero entry
dd 0
.code_segment: equ $ - gdt64
dq (1 << 43) | (1 << 44) | (1 << 47) | (1 << 53) ; code segment
.pointer:
dw $ - gdt64 - 1 ; length
dq gdt64 ; address

17
src/boot/entry64.asm Normal file
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@ -0,0 +1,17 @@
global entry_x64
extern kmain
section .text
bits 64
entry_x64:
; Nullify all data registers
mov ax, 0
mov ss, ax
mov ds, ax
mov es, ax
mov fs, ax
mov gs, ax
call kmain ; Jump into C kernel entry
hlt

16
src/boot/mb2_header.asm Normal file
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@ -0,0 +1,16 @@
section .mb2_header
header_start:
; https://www.gnu.org/software/grub/manual/multiboot2/multiboot.html for more information, section 3.1.1
dd 0xe85250d6 ; multiboot2 magic number
dd 0 ; i386 protected 32 bit mode
dd header_end - header_start ; Header length
dd 0x100000000 - (0xe85250d6 + 0 + (header_end - header_start)) ; Checksum, total is 0
; Ending tag
dw 0
dw 0
dd 8
header_end:

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@ -0,0 +1,7 @@
set timeout=5
set default=0
menuentry "shadeOS Development Build" {
multiboot2 /boot/shade.bin
boot
}

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@ -1,9 +1,5 @@
#include "./platform/drivers/ports.h" #include <shade/platform/ports.h>
#include "print.h" #include <shade/print.h>
#include "./platform/types.h"
#include "./platform/interrupts/int.h"
void dummy_test_entrypoint() {}
void kernel_welcome() { void kernel_welcome() {
print_str("Welcome to "); print_str("Welcome to ");
@ -31,7 +27,7 @@ void kernel_welcome() {
} }
// kMain // kMain
void main() { void kmain() {
// Initialize screen buffer // Initialize screen buffer
struct Char* buffer = (struct Char*) 0xb8000; struct Char* buffer = (struct Char*) 0xb8000;
@ -47,8 +43,4 @@ void main() {
print_str("This program is provided \"as-is\" and no express or implied warranty is provided.\n"); print_str("This program is provided \"as-is\" and no express or implied warranty is provided.\n");
print_str("The full license can be found at /sys/LICENCE on this system or ./LICENCE in the source tree.\n"); print_str("The full license can be found at /sys/LICENCE on this system or ./LICENCE in the source tree.\n");
idt_init();
kernel_msg_ok("Interrupts initialized");
__asm__ __volatile__("int $2");
} }

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@ -1,54 +0,0 @@
%macro isr_err_stub 1
isr_stub_%+%1:
call exception_handler
iret
%endmacro
; if writing for 64-bit, use iretq instead
%macro isr_no_err_stub 1
isr_stub_%+%1:
call exception_handler
iret
%endmacro
extern exception_handler
isr_no_err_stub 0
isr_no_err_stub 1
isr_no_err_stub 2
isr_no_err_stub 3
isr_no_err_stub 4
isr_no_err_stub 5
isr_no_err_stub 6
isr_no_err_stub 7
isr_err_stub 8
isr_no_err_stub 9
isr_err_stub 10
isr_err_stub 11
isr_err_stub 12
isr_err_stub 13
isr_err_stub 14
isr_no_err_stub 15
isr_no_err_stub 16
isr_err_stub 17
isr_no_err_stub 18
isr_no_err_stub 19
isr_no_err_stub 20
isr_no_err_stub 21
isr_no_err_stub 22
isr_no_err_stub 23
isr_no_err_stub 24
isr_no_err_stub 25
isr_no_err_stub 26
isr_no_err_stub 27
isr_no_err_stub 28
isr_no_err_stub 29
isr_err_stub 30
isr_no_err_stub 31
global isr_stub_table
isr_stub_table:
%assign i 0
%rep 32
dd isr_stub_%+i ; use DQ instead if targeting 64-bit
%assign i i+1
%endrep

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@ -0,0 +1,26 @@
/*
* Read 1 byte from specified port
*/
unsigned char port_byte_in(unsigned short port) {
unsigned char result;
// source and dest are backwards.
// "=a (result)" set the C variable to the value of register e'a'x
// '"d" (port) map the C variable port into e'd'x register
__asm__("in %%dx, %%al" : "=a" (result) : "d" (port));
}
void port_byte_out(unsigned short port, unsigned char data) {
// both regs are C vars, nothing is returned, so no '=' in asm syntax
// comma because two vars in input area and none in return area
__asm__("out %%al, %%dx" : : "a" (data), "d" (port));
}
unsigned short port_word_in(unsigned short port) {
unsigned short result;
__asm__("in %%dx, %%ax" : "=a" (result) : "d" (port));
return result;
}
void port_word_out(unsigned short port, unsigned short data) {
__asm__("out %%ax, %%dx" : : "a" (data), "d" (port));
}

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@ -1,5 +1,5 @@
#include "print.h" #include <shade/print.h>
#include "./platform/drivers/ports.h" #include <shade/platform/ports.h>
int row = 0; int row = 0;
int col = 0; int col = 0;

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@ -1,4 +1,4 @@
#include "util.h" #include <shade/util.h>
void memcpy(char *source, char *dest, int nbytes) { void memcpy(char *source, char *dest, int nbytes) {
int i; int i;

48
src/libc/strings.c Normal file
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@ -0,0 +1,48 @@
#include <strings.h>
#include <stddef.h>
void itoa(int n, char str[]) {
int i, sign;
if ((sign = n) < 0) n = -n;
i = 0;
do {
str[i++] = n % 10 + '0';
} while ((n /= 10) > 0);
if (sign < 0) str[i++] = '-';
str[i] = '\0';
strrev(str);
}
/* K&R */
void strrev(char s[]) {
int c, i, j;
for (i = 0, j = strlen(s)-1; i < j; i++, j--) {
c = s[i];
s[i] = s[j];
s[j] = c;
}
}
/* K&R */
int strlen(char s[]) {
int i = 0;
while (s[i] != '\0') ++i;
return i;
}
char* strcpy(char* strDest, const char* strSrc) {
if ( (strDest == NULL) || (strSrc == NULL) ) {
return NULL;
}
char* strDestCopy = strDest;
while ((*strDest++=*strSrc++)!='\0');
return strDestCopy;
}
char* strcnc(char* str1, char* str2) {
char* str_dest;
strcpy(str_dest, str1);
strcpy(str_dest, str2);
}

30
src/linker.ld Normal file
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@ -0,0 +1,30 @@
ENTRY(entry_x86)
SECTIONS {
. = 1M;
.text BLOCK(4K) : ALIGN(4K)
{
*(.mb2_header)
*(.text)
}
/* Read-only data. */
.rodata BLOCK(4K) : ALIGN(4K)
{
*(.rodata)
}
/* Read-write data (initialized) */
.data BLOCK(4K) : ALIGN(4K)
{
*(.data)
}
/* Read-write data (uninitialized) and stack */
.bss BLOCK(4K) : ALIGN(4K)
{
*(COMMON)
*(.bss)
}
}