/** * @file elf.c * Handle elf executables, set up requested memory mappings etc. */ #include #include #include #include #include static uint8_t __elf_to_uvflags(uint8_t elf_flags) { uint8_t uvflags = VM_V | VM_U; if (elf_flags & PF_X) uvflags |= VM_X; if (elf_flags & PF_W) uvflags |= VM_W; if (elf_flags & PF_R) uvflags |= VM_R; return uvflags; } /* useful bit of info: all segments are sorted in ascending order of p_vaddr */ static void __map_exec(struct tcb *t, vm_t bin, uint8_t ei_c, vm_t phstart, size_t phnum, size_t phsize) { hard_assert(t && is_proc(t), RETURN_VOID); /* TODO: take alignment into consideration? */ /* TODO: take overlapping memory regions into account, probably mostly * by keeping track of previously allocated area and seeing if the * segment fits into it */ /* TODO: check if p_memsz is larger than p_filesz, the segment should be * filled with zeroes. */ /* TODO: in general, make this a low more clean. */ vm_t runner = phstart; vmflags_t default_flags = VM_V | VM_R | VM_W | VM_X | VM_U; for (size_t i = 0; i < phnum; ++i, runner += phsize) { if (program_header_prop(ei_c, runner, p_type) != PT_LOAD) continue; vm_t va = program_header_prop(ei_c, runner, p_vaddr); size_t vsz = program_header_prop(ei_c, runner, p_memsz); vm_t start = alloc_fixed_region(&t->sp_r, va, vsz, &vsz, default_flags); if (!start) return; /* out of memory or something */ uint8_t elf_flags = program_header_prop(ei_c, runner, p_flags); uint8_t uvflags = __elf_to_uvflags(elf_flags); map_allocd_region(t->proc.vmem, start, vsz, default_flags, 0); vm_t vo = bin + program_header_prop(ei_c, runner, p_offset); vm_t vfz = program_header_prop(ei_c, runner, p_filesz); memcpy((void *)va, (void *)vo, vfz); /* skip while testing * TODO: also fix, this modifies only the first region. Create new * function? * pm_t paddr = 0; stat_vpage(t->b_r, va, &paddr, 0, 0); mod_vpage(t->b_r, va, paddr, uvflags); */ } } static vm_t __map_dyn(struct tcb *t, vm_t bin, uint8_t ei_c, vm_t phstart, size_t phnum, size_t phsize) { /* TODO: this path should only be taken when no PT_INTERP is defined, as * making sure ld is loaded should be done in userspace. Maybe a bit * hacky, I know.*/ } static vm_t __prepare_proc(struct tcb *t, uint8_t ei_c, vm_t elf, vm_t interp) { short e_type = elf_header_prop(ei_c, elf, e_type); if (e_type != ET_DYN && e_type != ET_EXEC) return 0; vm_t phstart = ptradd(elf, elf_header_prop(ei_c, elf, e_phoff)); size_t phnum = elf_header_prop(ei_c, elf, e_phnum); size_t phsize = elf_header_prop(ei_c, elf, e_phentsize); vm_t entry = elf_header_prop(ei_c, elf, e_entry); if (e_type == ET_EXEC) { __map_exec(t, elf, ei_c, phstart, phnum, phsize); return entry; } else { vm_t o = __map_dyn(t, elf, ei_c, phstart, phnum, phsize); return o + entry; } } /* sets up all memory regions etc, returns the entry address */ vm_t load_elf(struct tcb *t, vm_t elf, vm_t interp) { struct elf_ident *i = (struct elf_ident *)elf; if (i->ei_magic != cpu_to_be32(EI_MAGIC)) return 0; if (i->ei_class != ELFCLASS32 && i->ei_class != ELFCLASS64) return 0; /* more sanity checks? */ return __prepare_proc(t, i->ei_class, elf, interp); }