#include "bbl.h" #include "mtrap.h" #include "atomic.h" #include "vm.h" #include "bits.h" #include "config.h" #include static kernel_elf_info info; static volatile int elf_loaded; static void supervisor_vm_init() { uintptr_t highest_va = DRAM_BASE - first_free_paddr; mem_size = MIN(mem_size, highest_va - info.first_user_vaddr) & -MEGAPAGE_SIZE; pte_t* sbi_pt = (pte_t*)(info.first_vaddr_after_user + info.load_offset); memset(sbi_pt, 0, RISCV_PGSIZE); pte_t* middle_pt = (void*)sbi_pt + RISCV_PGSIZE; #ifndef __riscv64 size_t num_middle_pts = 1; pte_t* root_pt = middle_pt; memset(root_pt, 0, RISCV_PGSIZE); #else size_t num_middle_pts = (-info.first_user_vaddr - 1) / GIGAPAGE_SIZE + 1; pte_t* root_pt = (void*)middle_pt + num_middle_pts * RISCV_PGSIZE; memset(middle_pt, 0, (num_middle_pts + 1) * RISCV_PGSIZE); for (size_t i = 0; i < num_middle_pts; i++) root_pt[(1<> RISCV_PGSHIFT) + i); #endif for (uintptr_t vaddr = info.first_user_vaddr, paddr = vaddr + info.load_offset, end = info.first_vaddr_after_user; paddr < DRAM_BASE + mem_size; vaddr += MEGAPAGE_SIZE, paddr += MEGAPAGE_SIZE) { int l2_shift = RISCV_PGLEVEL_BITS + RISCV_PGSHIFT; size_t l2_idx = (info.first_user_vaddr >> l2_shift) & ((1 << RISCV_PGLEVEL_BITS)-1); l2_idx += ((vaddr - info.first_user_vaddr) >> l2_shift); middle_pt[l2_idx] = pte_create(paddr >> RISCV_PGSHIFT, PTE_TYPE_SRWX_GLOBAL); } // map SBI at top of vaddr space extern char _sbi_end; uintptr_t num_sbi_pages = ((uintptr_t)&_sbi_end - DRAM_BASE - 1) / RISCV_PGSIZE + 1; assert(num_sbi_pages <= (1 << RISCV_PGLEVEL_BITS)); for (uintptr_t i = 0; i < num_sbi_pages; i++) { uintptr_t idx = (1 << RISCV_PGLEVEL_BITS) - num_sbi_pages + i; sbi_pt[idx] = pte_create((DRAM_BASE / RISCV_PGSIZE) + i, PTE_TYPE_SRX_GLOBAL); } pte_t* sbi_pte = middle_pt + ((num_middle_pts << RISCV_PGLEVEL_BITS)-1); assert(!*sbi_pte); *sbi_pte = ptd_create((uintptr_t)sbi_pt >> RISCV_PGSHIFT); mb(); root_page_table = root_pt; write_csr(sptbr, (uintptr_t)root_pt >> RISCV_PGSHIFT); } void boot_loader() { extern char _payload_start, _payload_end; load_kernel_elf(&_payload_start, &_payload_end - &_payload_start, &info); supervisor_vm_init(); #ifdef PK_ENABLE_LOGO print_logo(); #endif mb(); elf_loaded = 1; enter_supervisor_mode((void *)info.entry, 0); } void boot_other_hart() { while (!elf_loaded) ; mb(); enter_supervisor_mode((void *)info.entry, 0); }