tasking: add simple base for running things in ring 3

This commit is contained in:
2025-04-07 16:13:31 +03:00
parent 03e718c2c8
commit 372b308ec8
9 changed files with 163 additions and 10 deletions
+4 -1
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@@ -2,7 +2,7 @@
OBJS = bin/boot.o bin/kernel.o bin/idt.o bin/isr.o bin/screen.o \
bin/utils.o bin/string.o bin/stdio.o bin/disk.o bin/pic.o bin/pit.o \
bin/keyboard.o bin/paging.o bin/heap.o bin/page_alloc.o bin/page_tables.o \
bin/fat.o bin/task.o bin/switch.o
bin/fat.o bin/task.o bin/switch.o bin/sys_exit.o
# Define the compiler and assembler
CC = gcc -D__is_katauos
@@ -114,6 +114,9 @@ bin/switch.o: src/tasking/switch.asm
bin/task.o: src/tasking/task.c
$(CC) $(CFLAGS) -c $< -o $@
bin/sys_exit.o: src/tasking/sys_exit.asm
$(AS) $(ASFLAGS) $< -o $@
clean:
rm -rf bin/
rm -f $(OUTPUT)
+3 -1
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@@ -7,6 +7,7 @@
extern uint32_t kernel_page_directory[1024] __attribute__((aligned(4096)));
extern uint32_t kernel_page_table[1024] __attribute__((aligned(4096)));
extern uint32_t user_page_table[1024] __attribute__((aligned(4096)));
//paging.c
@@ -24,10 +25,11 @@ void free_page(void* physaddr);
void *get_physaddr(void *virtualaddr);
void map_page(void* physaddr, void* virtualaddr, unsigned int flags);
void map_kernel_page(void* virtualaddr, unsigned int flags);
void* setup_user_process(void* user_code_phys, uint32_t* user_stack_top);
//heap.c
void heap_init();
void* heap_alloc(uint32_t size);
void heap_free(void* ptr);
#endif
#endif
+3
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@@ -22,6 +22,8 @@ __attribute__((interrupt)) void isr_timer(struct interrupt_frame *frame);
void isr_custom();
void default_handler();
extern void sys_exit_handler();
void isr_install() {
idt_set_descriptor(0, (uint32)isr0, 0x8E);
idt_set_descriptor(1, (uint32)isr1, 0x8E);
@@ -62,6 +64,7 @@ void isr_install() {
idt_set_descriptor(0x20, (uint32)isr_timer, 0x8E);
idt_set_descriptor(0x21, (uint32)isr_custom, 0x8E);
idt_set_descriptor(0x80, (uint32)sys_exit_handler, 0xEE);
idt_set(); // Load with ASM
printf("isr_install done\n");
+1 -1
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@@ -37,4 +37,4 @@ void free_page(void* physaddr) {
uint32_t byte_idx = page_num / 8;
uint32_t bit_idx = page_num % 8;
page_bitmap[byte_idx] &= ~(1 << bit_idx); // Сбрасываем бит
}
}
+21 -1
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@@ -1,6 +1,26 @@
#include "../include/paging.h"
#include <stdint.h>
static uint32_t next_user_virt = 0x00400000;
void* setup_user_process(void* user_code_phys, uint32_t* user_stack_top) {
void* stack_phys = alloc_page();
if (!stack_phys) return 0;
uint32_t code_virt = next_user_virt;
uint32_t stack_virt = code_virt + 0x3FF000; // 4 МБ - 4 КБ
map_page(user_code_phys, (void*)code_virt, 0x7);
map_page(stack_phys, (void*)stack_virt, 0x7);
*user_stack_top = stack_virt + 0x1000;
next_user_virt += 0x400000; // Следующий 4 МБ блок
return (void*)code_virt;
}
void free_user_process(void* code_phys, void* stack_phys) {
free_page(code_phys);
free_page(stack_phys);
}
void *get_physaddr(void *virtualaddr) {
unsigned long pdindex = (unsigned long)virtualaddr >> 22;
unsigned long ptindex = (unsigned long)virtualaddr >> 12 & 0x03FF;
@@ -85,4 +105,4 @@ void map_kernel_page(void* virtualaddr, unsigned int flags) {
pt[ptindex] = (uint32_t)phys | (flags & 0xFFF) | 0x1; // supervisor, present
asm volatile("invlpg (%0)" : : "r" (virtualaddr) : "memory");
}
}
+11 -2
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@@ -3,6 +3,8 @@
uint32_t kernel_page_directory[1024] __attribute__((aligned(4096)));
uint32_t kernel_page_table[1024] __attribute__((aligned(4096)));
uint32_t user_page_table[1024] __attribute__((aligned(4096)));
void enablePaging() {
asm volatile (
@@ -35,8 +37,9 @@ void paging_init() {
// Проверяем физические адреса
uint32_t pd_phys = (uint32_t)kernel_page_directory;
uint32_t pt_phys = (uint32_t)kernel_page_table;
uint32_t user_pt_phys = (uint32_t)user_page_table;
if (pd_phys & 0xFFF || pt_phys & 0xFFF) {
if (pd_phys & 0xFFF || pt_phys & 0xFFF || user_pt_phys & 0xFFF) {
while (1); // Ошибка выравнивания
}
@@ -51,6 +54,12 @@ void paging_init() {
}
kernel_page_directory[0] = pt_phys | 0x3;
// Ring 3: 0x004000000x007FFFFF, User-accessible
for (i = 0; i < 1024; i++) {
user_page_table[i] = 0; // Изначально не отображено
}
kernel_page_directory[1] = user_pt_phys | 0x7; // Present, R/W, User
// Рекурсивное отображение
kernel_page_directory[1023] = pd_phys | 0x3;
@@ -76,4 +85,4 @@ void test_paging() {
printf("(uint32_t)first_page_table | 0x3 = %X", (uint32_t)kernel_page_table | 0x3);
while (1); // Рекурсия сломана
}
}
}
+21
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@@ -94,3 +94,24 @@ switchProcess:
; |------------------------|
ret
global jump_usermode
extern test_user_function
jump_usermode:
mov ax, (4 * 8) | 3 ; ring 3 data with bottom 2 bits set for ring 3
mov ds, ax
mov es, ax
mov fs, ax
mov gs, ax ; SS is handled by iret
; and eax, ~0x80000000
; mov cr0, eax
; set up the stack frame iret expects
mov eax, esp
push (4 * 8) | 3 ; data selector
push eax ; current esp
pushf ; eflags
push (3 * 8) | 3 ; code selector (ring 3 code with bottom 2 bits set for ring 3)
push test_user_function ; instruction address to return to
iret
+41
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@@ -0,0 +1,41 @@
; TODO: maybe put it near idt.c?
global sys_exit_handler
extern printf
sys_exit_handler:
; Сохраняем регистры Ring 3
pusha
push ds
push es
push fs
push gs
; Переключаемся на сегменты Ring 0
mov ax, 0x10 ; Селектор данных Ring 0 (gdt_data)
mov ds, ax
mov es, ax
mov fs, ax
mov gs, ax
; Выполняем действие
push sys_exit_msg
call printf
add esp, 4
; Восстанавливаем сегменты Ring 3
pop gs
pop fs
pop es
pop ds
popa
; Возвращаемся в Ring 3
iret
global test_user_function
test_user_function:
mov eax, 0xDEADBEEF
int 0x80
jmp $
section .data
sys_exit_msg: db "Returned from Ring 3", 0
+58 -4
View File
@@ -107,14 +107,68 @@ void task2(int arg1, int arg2)
while(1){printf("task2 %X %X\n", arg1, arg2);}
}
void jump_usermode2(void);
void scheduler_init()
{
jump_usermode2();
//we create this task two times because in other case it just won't start
task_create((EntryPoint)&idle, NULL, 0);
task_create((EntryPoint)&idle, NULL, 0);
//task_create((EntryPoint)&idle, NULL, 0);
//task_create((EntryPoint)&idle, NULL, 0);
void* args1[] = {(void*)42, (void*)"ebalo"};
task_create((EntryPoint)&task1, args1, 2);
//task_create((EntryPoint)&task1, args1, 2);
void* args2[] = {(void*)69, (void*)420};
task_create((EntryPoint)&task2, args2, 2);
//task_create((EntryPoint)&task2, args2, 2);
}
extern void test_user_function(void);
void jump_usermode2(void) {
void* code_phys = alloc_page();
if (!code_phys) {
printf("No memory for user code\n");
while (1);
}
// Временно отображаем code_phys в ядре
uint32_t kernel_temp_virt = 0xC0100000;
map_page(code_phys, (void*)kernel_temp_virt, 0x3); // Present, R/W, Supervisor
// Копируем код
uint32_t* src = (uint32_t*)test_user_function;
uint32_t* dst = (uint32_t*)kernel_temp_virt;
for (int i = 0; i < 1024; i++) {
dst[i] = src[i];
}
printf("Copied code to 0x%x (virt 0x%x): 0x%x 0x%x 0x%x\n",
(uint32_t)code_phys, kernel_temp_virt, dst[0], dst[1], dst[2]);
// Настраиваем Ring 3
uint32_t user_stack_top;
void* user_code_virt = setup_user_process(code_phys, &user_stack_top);
if (!user_code_virt) {
printf("Failed to setup user process\n");
while (1);
}
printf("user_code_virt: 0x%x, user_stack_top: 0x%x\n",
(uint32_t)user_code_virt, user_stack_top);
asm volatile (
"mov $0x23, %%dx\n"
"mov %%dx, %%ds\n"
"mov %%dx, %%es\n"
"mov %%dx, %%fs\n"
"mov %%dx, %%gs\n"
"push $0x23\n"
"push %0\n"
"pushf\n"
"push $0x1B\n"
"push %1\n"
"iret\n"
:
: "r" (user_stack_top), "r" (user_code_virt)
: "dx", "memory"
);
__builtin_unreachable();
}