Memeory & add to kpanic

This commit is contained in:
notsomeidiot123 2024-11-19 11:59:43 -05:00
parent cb06f5e198
commit f45451eeb7
2 changed files with 36 additions and 19 deletions

View File

@ -54,7 +54,11 @@ cpu_registers_t *_irq_handler(cpu_registers_t *regs){
return regs; return regs;
} }
void _isr_handler(cpu_registers_t *regs){ void _isr_handler(cpu_registers_t *regs){
printf("Error!! %x\n", regs->eip); printf("Kernel Panic!\n");
printf("ISR: %d\n", regs->int_no);
printf("EAX: %x EBX: %x ECX: %x EDX: %x\n", regs->eax, regs->ebx, regs->ecx, regs->edx);
printf("ESI: %x EDI: %x ESP: %x EBP: %x\n", regs->esi, regs->edi, regs->esp, regs->ebp);
printf("EIP: %x CS: %x DS: %x SS: %x\n", regs->eip, regs->cs, regs->ds, regs->ss);
for(;;); for(;;);
} }

View File

@ -1,7 +1,7 @@
#include <stdint.h> #include <stdint.h>
#include "../shared/memory.h" #include "../shared/memory.h"
#include "../shared/kstdlib.h" #include "../shared/kstdlib.h"
#include "../drivers/cpuio.h"
#define mmap_count 0x20000 #define mmap_count 0x20000
uint8_t volatile pm_map[mmap_count]; uint8_t volatile pm_map[mmap_count];
@ -11,6 +11,8 @@ uint32_t total_memory_usable = 0;
uint32_t volatile last_allocated = 0; uint32_t volatile last_allocated = 0;
extern uint32_t _start; extern uint32_t _start;
extern uint32_t _end; extern uint32_t _end;
mmap_entry_t mmap;
uint32_t mmap_entry_c;
uint32_t pm_alloc(){ uint32_t pm_alloc(){
for(uint32_t i = 0; i < mmap_count; i++){ for(uint32_t i = 0; i < mmap_count; i++){
@ -52,9 +54,9 @@ int pm_init(kernel_info_t *kernel_info){
// printf("%d, %x, %d\n", j >> 3, pm_map[(mmap[i].entry_base >> 12 ) + (j >> 3)], mmap[i].type); // printf("%d, %x, %d\n", j >> 3, pm_map[(mmap[i].entry_base >> 12 ) + (j >> 3)], mmap[i].type);
// } // }
} }
// printf("|%x|", mmap[i].entry_base); printf("|%x|", mmap[i].entry_base);
// printf("%x", mmap[i].entry_length); printf("%x", mmap[i].entry_length);
// printf("|%d |\n", mmap[i].type); printf("|%d |\n", mmap[i].type);
} }
for(uint32_t i = 0; i < 512; i++){ for(uint32_t i = 0; i < 512; i++){
pm_reserve(i * 4096); pm_reserve(i * 4096);
@ -76,23 +78,25 @@ void map(void *vaddr, void *paddr, uint32_t flags){
uint32_t *pd = (uint32_t*)0xfffff000; uint32_t *pd = (uint32_t*)0xfffff000;
if(!pd[pd_index]){ if(!pd[pd_index]){
pd[pd_index] = pm_alloc() | 1; pd[pd_index] = pm_alloc() | 1;
// printf("allocating %x\n", pd[pd_index]);
asm volatile("invlpg (%0)" : : "b"(0xffc00000 + (pd_index * 0x400)) : "memory"); asm volatile("invlpg (%0)" : : "b"(0xffc00000 + (pd_index * 0x400)) : "memory");
uint32_t *pt = (uint32_t *)(0xffc00000 + (pd_index * 0x400)); uint32_t *pt = (uint32_t *)(0xffc00000 + (pd_index * 0x1000));
for(uint32_t i = 0; i < 0x400; i++)pt[i] = 0; for(uint32_t i = 0; i < 0x400; i++)pt[i] = 0;
} }
uint32_t *pt = (uint32_t *)(0xffc00000 + (pd_index * 0x400)); uint32_t *pt = (uint32_t *)(0xffc00000 + (pd_index * 0x1000));
// printf("%x %x\n", vaddr, paddr);
pt[pt_index] = (uint32_t)paddr | flags; pt[pt_index] = (uint32_t)paddr | flags;
asm volatile("invlpg (%0) " : : "b"(vaddr) : "memory"); asm volatile("invlpg (%0) " : : "b"(vaddr) : "memory");
} }
void unmap(void *vaddr){ void unmap(void *vaddr){
uint32_t pd_index = (uint32_t)vaddr >> 22; uint32_t pd_index = (uint32_t)vaddr >> 22;
uint32_t pt_index = (uint32_t)vaddr >> 12 & 0x3ff; uint32_t pt_index = (uint32_t)vaddr >> 12 & 0x3ff;
printf("unmap called");
uint32_t *pd = (uint32_t *)0xfffff000; uint32_t *pd = (uint32_t *)0xfffff000;
if(!pd[pd_index]){ if(!pd[pd_index]){
return; return;
} }
uint32_t *pt = (uint32_t *)(0xffc00000 + (pd_index * 0x400)); uint32_t *pt = (uint32_t *)(0xffc00000 + (pd_index * 0x1000));
pt[pt_index] = 0; pt[pt_index] = 0;
// uint32_t paddr = pt[pt_index]; // uint32_t paddr = pt[pt_index];
// paddr ^= (paddr & 0xfff); // paddr ^= (paddr & 0xfff);
@ -103,17 +107,18 @@ void map_4mb(void *vaddr, void *paddr, uint32_t flags){
//just wanted to get the prototype out //just wanted to get the prototype out
//!TODO: Finish mapping and unmapping 4mb pages //!TODO: Finish mapping and unmapping 4mb pages
} }
uint32_t get_paddr(void *addr){ uint32_t get_paddr(void *vaddr){
//!TODO: Support 4mb pages //!TODO: Support 4mb pages
uint32_t vaddr = (uint32_t)addr;
uint32_t pd_index = vaddr >> 22; uint32_t pd_index = (uint32_t)vaddr >> 22;
uint32_t pt_index = vaddr >> 12 & 0x3ff; uint32_t pt_index = (uint32_t)vaddr >> 12 & 0x3ff;
// printf("unmap called");
uint32_t *pd = (uint32_t *)0xfffff000; uint32_t *pd = (uint32_t *)0xfffff000;
if(!pd[pd_index]){ if(!pd[pd_index]){
return 0; return 0;
} }
uint32_t *pt = (uint32_t *)(0xffc00000 + (0x400 * pd_index)); uint32_t *pt = (uint32_t *)(0xffc00000 + (pd_index * 0x1000));
return pt[pt_index] & ~(pt[pt_index] & 0xfff); return pt[pt_index];
} }
uint32_t get_pflags(void *vaddr){ uint32_t get_pflags(void *vaddr){
uint32_t pd_index = (uint32_t)vaddr >> 22; uint32_t pd_index = (uint32_t)vaddr >> 22;
@ -122,7 +127,7 @@ uint32_t get_pflags(void *vaddr){
if(!pd[pd_index]){ if(!pd[pd_index]){
return 0; return 0;
} }
uint32_t *pt = (uint32_t *)(0xffc00000 + (0x400 * pd_index)); uint32_t *pt = (uint32_t *)(0xffc00000 + (0x1000 * pd_index));
return (pt[pt_index] & 0xfff); return (pt[pt_index] & 0xfff);
} }
void *get_new_page(uint32_t flags){ void *get_new_page(uint32_t flags){
@ -134,11 +139,13 @@ void *get_new_page(uint32_t flags){
map((void *)paddr+(i*4096), (void *)paddr, flags); map((void *)paddr+(i*4096), (void *)paddr, flags);
} }
void *kmalloc(uint32_t size_pgs){ void *kmalloc(uint32_t size_pgs){
// static uint8_t fake = 0;
uint32_t i = 1 << 10; //4mb/4096 (start search at 1mb line) uint32_t i = 1 << 10; //4mb/4096 (start search at 1mb line)
while(i < (1 << 20)){ while(i < (1 << 22)){
uint8_t found = 1; uint8_t found = 1;
for(uint32_t j = 0; j < size_pgs; j++){ for(uint32_t j = 0; j < size_pgs; j++){
if(get_paddr((void *)((i + j) << 12))){ // printf("found at %x, %x\n", (i + j) << 12, get_paddr((void*)((i + j) << 12)));
if(get_pflags((void *)((i + j) << 12))){
found = 0; found = 0;
break; break;
} }
@ -149,8 +156,14 @@ void *kmalloc(uint32_t size_pgs){
} }
for(uint32_t j = 0; j < size_pgs; j++){ for(uint32_t j = 0; j < size_pgs; j++){
uint32_t flags = PT_PRESENT | PT_SYS | (PT_LINK_L * (j != 0)) | (PT_LINK_N * (j < (size_pgs - 1))); uint32_t flags = PT_PRESENT | PT_SYS | (PT_LINK_L * (j != 0)) | (PT_LINK_N * (j < (size_pgs - 1)));
map((void *)((i + j)<<12), (void*)pm_alloc(), flags); uint32_t physaddr = pm_alloc();
// if(j == 0) printf("%x", physaddr);
// printf("Mapping %x to %x\n", (i + j) << 12, physaddr);
// if(fake) return 0;
map((void *)((i + j) << 12), (void*)physaddr, flags);
} }
// fake = !fake;
// for(;;);
return (void*)(i << 12); return (void*)(i << 12);
} }
} }