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RockOS/kernel/kmain.c

151 lines
4.1 KiB
C
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#include "multiboot.h"
#include <lib/print.h>
#include <lib/stream.h>
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#include <idt.h>
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#include <stddef.h>
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#include <stdint.h>
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#include "memory/mm.h"
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#include "elf.h"
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extern void init_idt();
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extern void init_gdt();
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extern void init_pic();
extern void init_pit();
extern int init_ps2();
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extern void enable_interrupts();
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void* page = NULL;
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extern char __kernel_start;
extern char __kernel_end;
void* user_page_directories[10];
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void load_origin_program(multiboot_info* mbi) {
user_page_directories[0] = create_user_pd();
kprintf("Created origin process page directory @ [phys] 0x%x\n", user_page_directories[0]);
extern void load_pd(void* pd);
extern void flush_tlb();
load_pd(user_page_directories[0]);
flush_tlb();
kprintf("switched to user address space\n");
uint32_t mods_virtual_addr = mbi->mods_addr + 0xC0000000;
kprintf("parsing mutliboot modules @ 0x%x\n", mods_virtual_addr);
if (mbi->mods_count == 0) {
return;
}
multiboot_module_entry* modules = (multiboot_module_entry*)mods_virtual_addr;
uint32_t elf_vbase = 0xE0000000;
uint32_t elf_pbase = modules[0].mod_start;
uint32_t elf_limit = modules[0].mod_end - modules[0].mod_start;
uint32_t elf_pages_needed = (elf_limit / 4096) + 1;
for (uint32_t i = 0; i < elf_pages_needed; i++) {
const uint32_t vaddr = elf_vbase + (i * 4096);
const uint32_t paddr = elf_pbase + (i * 4096);
map_page(vaddr, paddr, PAGE_PRESENT | PAGE_WRITABLE);
}
elf_header_t* elf = (elf_header_t*)elf_vbase;
elf_program_header_t* ph = (elf_program_header_t*)(elf_vbase + elf->e_phoff);
kprintf("elf header @ 0x%x\n", elf);
kprintf("program headers @ 0x%x\n", ph);
// load program sections into physical memory and map the pages
for (int i = 0; i < elf->e_phnum; i++) {
if (ph[i].p_type == PT_LOAD) {
uint32_t v_start = ph[i].p_vaddr & 0xFFFFF000;
uint32_t v_end = (ph[i].p_vaddr + ph[i].p_memsz + 4095) & 0xFFFFF000;
for (uint32_t page = v_start; page < v_end; page += 4096) {
uint32_t frame_paddr = (uint32_t)p_alloc_frame();
map_page(page, frame_paddr, PAGE_PRESENT | PAGE_WRITABLE | PAGE_USER);
}
for (uint32_t j = 0; j < ph[i].p_memsz; j++) {
((char*)ph[i].p_vaddr)[j] = 0;
}
for (uint32_t j = 0; j < ph[i].p_filesz; j++) {
((char*)ph[i].p_vaddr)[j] = ((char*)(elf_vbase + ph[i].p_offset))[j];
}
}
}
// allocate the user stack
uint32_t stack_paddr = (uint32_t)p_alloc_frame();
map_page(0xBFFFF000, stack_paddr, PAGE_PRESENT | PAGE_WRITABLE | PAGE_USER);
kprintf("program loaded into memory @ [virt] 0x%x\n", elf->e_entry);
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extern void liftoff(uint32_t entry, uint32_t stack_top);
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kprintf("launching origin process\n");
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uint32_t stack_top = 0xBFFFF000 + 4095;
liftoff(elf->e_entry, stack_top);
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}
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void kmain(uint32_t magic, multiboot_info* mbi) {
extern print_stream_t vga_print_stream;
extern print_stream_t* kout;
kout = &vga_print_stream;
kout->trunc();
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kprintf("kernel start: 0x%x\n", &__kernel_start);
kprintf("kernel end: 0x%x\n", &__kernel_end);
uint32_t size = (&__kernel_end - &__kernel_start) / 1024;
kprintf("kernel size: %dKB\n", size);
if (!(mbi->flags & (1 << 6))) {
return;
}
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kprintf("multiboot virtual address: 0x%x\n", mbi);
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kprintf("parsing multiboot memory map\n");
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uint32_t mmap_virtual_addr = mbi->mmap_addr + 0xC0000000;
kprintf("mmap virtual address: 0x%x\n", mmap_virtual_addr);
init_pmm((void*)mmap_virtual_addr, mbi->mmap_length);
uint32_t mem_size = total_free_memory();
kprintf("Total available memory: %d MB\n", mem_size / 1024 / 1024);
kprintf("RockOS booting...\n");
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init_gdt();
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extern uint64_t gdt[5];
kprintf("GDT set @ 0x%x\n", &gdt);
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init_idt();
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extern idt_entry idt[256];
kprintf("IDT set @ 0x%x\n", &idt);
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init_pic();
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kprintf("PIC initialized\n");
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init_pit();
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kprintf("PIT initialized\n");
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// int result = init_ps2();
// if (result == -1) {
// kprintf("PS2 init failed\n");
// return;
// }
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// kprintf("PS2 initialized\n");
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init_page_tables();
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kprintf("Page tables initialized\n");
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kprintf("scanning for drives\n");
extern void scan_drives();
scan_drives();
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while(1);
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}