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https://git.stationery.faith/corn/corn.git
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Did some preliminary work on memory management
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parent
90c70043be
commit
03b5672a01
2 changed files with 141 additions and 7 deletions
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@ -1,5 +1,7 @@
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#include <stdint.h>
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#include <serial.h>
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#include <cpuid.h>
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#include <lib.h>
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#define F_PRESENT 0x001
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#define F_WRITEABLE 0x002
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@ -52,19 +54,150 @@ struct pte {
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uint64_t execute_disable : 1;
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};
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static inline void invlpg(unsigned long addr) {
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__asm volatile("invlpg (%0)" ::"r" (addr) : "memory");
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}
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static int get_maxphysaddr() {
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uint32_t eax, ebx, ecx, edx;
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__cpuid(0x80000008, eax, ebx, ecx, edx);
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return eax & 0xFF;
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}
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int find_phys_addr(struct pml4e *pml4, void *virt_addr, void **phys_addr) {
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uint64_t pml4_offset = ((uint64_t)virt_addr) >> 39;
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uint64_t pdpt_offset = (((uint64_t)virt_addr) >> 30) & 0x1FF;
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uint64_t pd_offset = (((uint64_t)virt_addr) >> 21) & 0x1FF;
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uint64_t pt_offset = (((uint64_t)virt_addr) >> 12) & 0x1FF;
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uint64_t page_offset = (((uint64_t)virt_addr) ) & 0xFFF;
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if (!pml4[pml4_offset].flags & F_PRESENT)
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return -1;
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struct pdpte *pdpt = (struct pdpte *)(pml4[pml4_offset].address << 12);
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if (!pdpt[pdpt_offset].flags & F_PRESENT)
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return -1;
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struct pde *pd = (struct pde *)(pdpt[pdpt_offset].address << 12);
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if (!pd[pd_offset].flags & F_PRESENT)
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return -1;
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struct pte *pt = (struct pte *)(pd[pd_offset].address << 12);
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if (!pt[pt_offset].flags & F_PRESENT)
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return -1;
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*phys_addr = (void *)((pt[pt_offset].address << 12) + page_offset);
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return 0;
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}
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char *curr_alloc = 0x5000;
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void *alloc_phys_page() {
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void *ret = curr_alloc;
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curr_alloc += 4096;
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return ret;
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}
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int map_page(struct pml4e *pml4, void *virt_addr, void *phys_addr, unsigned int flags) {
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uint64_t pml4_offset = ((uint64_t)virt_addr) >> 39;
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uint64_t pdpt_offset = (((uint64_t)virt_addr) >> 30) & 0x1FF;
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uint64_t pd_offset = (((uint64_t)virt_addr) >> 21) & 0x1FF;
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uint64_t pt_offset = (((uint64_t)virt_addr) >> 12) & 0x1FF;
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uint64_t page_offset = (((uint64_t)virt_addr) ) & 0xFFF;
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if (!pml4[pml4_offset].flags & F_PRESENT) {
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void *new_page = alloc_phys_page();
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memset(new_page, 0, 4096);
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pml4[pml4_offset].address = ((uint64_t)new_page) >> 12;
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pml4[pml4_offset].flags = F_PRESENT | flags;
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}
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struct pdpte *pdpt = (struct pdpte *)(pml4[pml4_offset].address << 12);
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if (!pdpt[pdpt_offset].flags & F_PRESENT) {
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void *new_page = alloc_phys_page();
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memset(new_page, 0, 4096);
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pdpt[pdpt_offset].address = ((uint64_t)new_page) >> 12;
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pdpt[pdpt_offset].flags = F_PRESENT | flags;
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}
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struct pde *pd = (struct pde *)(pdpt[pdpt_offset].address << 12);
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if (!pd[pd_offset].flags & F_PRESENT) {
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void *new_page = alloc_phys_page();
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memset(new_page, 0, 4096);
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pd[pd_offset].address = ((uint64_t)new_page) >> 12;
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pd[pd_offset].flags = F_PRESENT | flags;
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}
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struct pte *pt = (struct pte *)(pd[pd_offset].address << 12);
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if (!pt[pt_offset].flags & F_PRESENT) {
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pt[pt_offset].flags |= F_PRESENT | flags;
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}
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pt[pt_offset].address = (((uint64_t)phys_addr) >> 12);
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invlpg(virt_addr);
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return 0;
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}
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int unmap_page(struct pml4e *pml4, void *virt_addr) {
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uint64_t pml4_offset = ((uint64_t)virt_addr) >> 39;
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uint64_t pdpt_offset = (((uint64_t)virt_addr) >> 30) & 0x1FF;
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uint64_t pd_offset = (((uint64_t)virt_addr) >> 21) & 0x1FF;
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uint64_t pt_offset = (((uint64_t)virt_addr) >> 12) & 0x1FF;
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uint64_t page_offset = (((uint64_t)virt_addr) ) & 0xFFF;
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if (!pml4[pml4_offset].flags & F_PRESENT)
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return -1;
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struct pdpte *pdpt = (struct pdpte *)(pml4[pml4_offset].address << 12);
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if (!pdpt[pdpt_offset].flags & F_PRESENT)
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return -1;
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struct pde *pd = (struct pde *)(pdpt[pdpt_offset].address << 12);
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if (!pd[pd_offset].flags & F_PRESENT)
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return -1;
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struct pte *pt = (struct pte *)(pd[pd_offset].address << 12);
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if (!pt[pt_offset].flags & F_PRESENT)
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return -1;
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pt[pt_offset].flags = 0;
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int i = 0;
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for(; i < 512; i++) {
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if (pt[i].flags & F_PRESENT)
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break;
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}
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if (i == 512)
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goto done;
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pd[pd_offset].flags = 0;
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for(i = 0; i < 512; i++) {
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if (pd[i].flags & F_PRESENT)
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break;
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}
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if (i == 512)
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goto done;
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pdpt[pdpt_offset].flags = 0;
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for(i = 0; i < 512; i++) {
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if(pdpt[i].flags & F_PRESENT)
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break;
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}
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if (i == 512)
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goto done;
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pml4[pml4_offset].flags = 0;
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//TODO: Return memory used for page structures
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done:
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invlpg(virt_addr);
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return 0;
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}
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// entry point for amd64
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void* amd64_shim(void *boot_info) {
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struct pml4e *pml4 = (struct pml4e *)0x1000;
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struct pdpte *pdpt = (struct pdpte *)0x2000;
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struct pde *pd = (struct pd *)0x3000;
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struct pte *pt = (struct pt *)0x4000;
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pd[1].flags = F_PRESENT | F_WRITEABLE;
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pd[1].address = ((uint64_t)pt) >> 12;
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__asm("invlpg 0x200000");
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struct pde *pd = (struct pde *)0x3000;
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struct pte *pt = (struct pte *)0x4000;
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//pd[1].flags = F_PRESENT | F_WRITEABLE;
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//pd[1].address = ((uint64_t)pt) >> 12;
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map_page(pml4, 0x80000000, 0xB8002, F_WRITEABLE);
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//__asm("invlpg 0x200000");
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void *ret;
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find_phys_addr(pml4, 0x80000000, &ret);
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return ret;
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}
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@ -1,9 +1,10 @@
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#include <lib.h>
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#include <serial.h>
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void kmain(void *info) {
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char buf[20];
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*(char*)0xB8000 = 'c';
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*(char*)(0xB8002 + 0x20'0000) = 'd';
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itoa((long)info, buf, 10);
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//*(char*)(0xB8002 + 0x20'0000) = 'd';
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itoa((long)info, buf, 16);
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serial_out_str(buf);
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}
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