18cffa1b4SOlivier Houchard /*- 2*8a16b7a1SPedro F. Giffuni * SPDX-License-Identifier: BSD-3-Clause 3*8a16b7a1SPedro F. Giffuni * 45fa78ac5SWarner Losh * Copyright (c) 2005 Olivier Houchard 55fa78ac5SWarner Losh * Copyright (c) 1989, 1992, 1993 65fa78ac5SWarner Losh * The Regents of the University of California. All rights reserved. 75fa78ac5SWarner Losh * 85fa78ac5SWarner Losh * This code is derived from software developed by the Computer Systems 95fa78ac5SWarner Losh * Engineering group at Lawrence Berkeley Laboratory under DARPA contract 105fa78ac5SWarner Losh * BG 91-66 and contributed to Berkeley. 118cffa1b4SOlivier Houchard * 128cffa1b4SOlivier Houchard * Redistribution and use in source and binary forms, with or without 138cffa1b4SOlivier Houchard * modification, are permitted provided that the following conditions 148cffa1b4SOlivier Houchard * are met: 158cffa1b4SOlivier Houchard * 1. Redistributions of source code must retain the above copyright 168cffa1b4SOlivier Houchard * notice, this list of conditions and the following disclaimer. 178cffa1b4SOlivier Houchard * 2. Redistributions in binary form must reproduce the above copyright 188cffa1b4SOlivier Houchard * notice, this list of conditions and the following disclaimer in the 198cffa1b4SOlivier Houchard * documentation and/or other materials provided with the distribution. 20fbbd9655SWarner Losh * 3. Neither the name of the University nor the names of its contributors 215fa78ac5SWarner Losh * may be used to endorse or promote products derived from this software 225fa78ac5SWarner Losh * without specific prior written permission. 238cffa1b4SOlivier Houchard * 248cffa1b4SOlivier Houchard * THIS SOFTWARE IS PROVIDED BY TOOLS GMBH ``AS IS'' AND ANY EXPRESS OR 258cffa1b4SOlivier Houchard * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES 268cffa1b4SOlivier Houchard * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. 278cffa1b4SOlivier Houchard * IN NO EVENT SHALL TOOLS GMBH BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, 288cffa1b4SOlivier Houchard * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, 298cffa1b4SOlivier Houchard * PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; 308cffa1b4SOlivier Houchard * OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, 318cffa1b4SOlivier Houchard * WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR 328cffa1b4SOlivier Houchard * OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF 338cffa1b4SOlivier Houchard * ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. 348cffa1b4SOlivier Houchard */ 358cffa1b4SOlivier Houchard 368cffa1b4SOlivier Houchard /* 378cffa1b4SOlivier Houchard * ARM machine dependent routines for kvm. 388cffa1b4SOlivier Houchard */ 398cffa1b4SOlivier Houchard 408cffa1b4SOlivier Houchard #include <sys/cdefs.h> 418cffa1b4SOlivier Houchard __FBSDID("$FreeBSD$"); 428cffa1b4SOlivier Houchard 438cffa1b4SOlivier Houchard #include <sys/param.h> 447f911abeSJohn Baldwin #include <sys/endian.h> 458cffa1b4SOlivier Houchard #include <kvm.h> 467f911abeSJohn Baldwin #include <limits.h> 477f911abeSJohn Baldwin #include <stdint.h> 488cffa1b4SOlivier Houchard #include <stdlib.h> 498e321b79SRafal Jaworowski #include <unistd.h> 508cffa1b4SOlivier Houchard 517f911abeSJohn Baldwin #ifdef __arm__ 527f911abeSJohn Baldwin #include <machine/vmparam.h> 537f911abeSJohn Baldwin #endif 547f911abeSJohn Baldwin 558cffa1b4SOlivier Houchard #include "kvm_private.h" 567f911abeSJohn Baldwin #include "kvm_arm.h" 578cffa1b4SOlivier Houchard 589960ac47SOlivier Houchard struct vmstate { 597f911abeSJohn Baldwin arm_pd_entry_t *l1pt; 607f911abeSJohn Baldwin size_t phnum; 617f911abeSJohn Baldwin GElf_Phdr *phdr; 629960ac47SOlivier Houchard }; 639960ac47SOlivier Houchard 649960ac47SOlivier Houchard /* 659960ac47SOlivier Houchard * Translate a physical memory address to a file-offset in the crash-dump. 669960ac47SOlivier Houchard */ 679960ac47SOlivier Houchard static size_t 689960ac47SOlivier Houchard _kvm_pa2off(kvm_t *kd, uint64_t pa, off_t *ofs, size_t pgsz) 699960ac47SOlivier Houchard { 707f911abeSJohn Baldwin struct vmstate *vm = kd->vmst; 717f911abeSJohn Baldwin GElf_Phdr *p; 727f911abeSJohn Baldwin size_t n; 739960ac47SOlivier Houchard 747f911abeSJohn Baldwin p = vm->phdr; 757f911abeSJohn Baldwin n = vm->phnum; 769960ac47SOlivier Houchard while (n && (pa < p->p_paddr || pa >= p->p_paddr + p->p_memsz)) 779960ac47SOlivier Houchard p++, n--; 789960ac47SOlivier Houchard if (n == 0) 799960ac47SOlivier Houchard return (0); 809960ac47SOlivier Houchard 819960ac47SOlivier Houchard *ofs = (pa - p->p_paddr) + p->p_offset; 829960ac47SOlivier Houchard if (pgsz == 0) 839960ac47SOlivier Houchard return (p->p_memsz - (pa - p->p_paddr)); 849960ac47SOlivier Houchard return (pgsz - ((size_t)pa & (pgsz - 1))); 859960ac47SOlivier Houchard } 869960ac47SOlivier Houchard 877f911abeSJohn Baldwin static void 887f911abeSJohn Baldwin _arm_freevtop(kvm_t *kd) 898cffa1b4SOlivier Houchard { 907f911abeSJohn Baldwin struct vmstate *vm = kd->vmst; 917f911abeSJohn Baldwin 927f911abeSJohn Baldwin free(vm->phdr); 937f911abeSJohn Baldwin free(vm); 949960ac47SOlivier Houchard kd->vmst = NULL; 959960ac47SOlivier Houchard } 967f911abeSJohn Baldwin 977f911abeSJohn Baldwin static int 987f911abeSJohn Baldwin _arm_probe(kvm_t *kd) 997f911abeSJohn Baldwin { 1007f911abeSJohn Baldwin 1017f911abeSJohn Baldwin return (_kvm_probe_elf_kernel(kd, ELFCLASS32, EM_ARM) && 1027f911abeSJohn Baldwin !_kvm_is_minidump(kd)); 1038cffa1b4SOlivier Houchard } 1048cffa1b4SOlivier Houchard 1057f911abeSJohn Baldwin static int 1067f911abeSJohn Baldwin _arm_initvtop(kvm_t *kd) 1078cffa1b4SOlivier Houchard { 1088e321b79SRafal Jaworowski struct vmstate *vm; 1097f911abeSJohn Baldwin struct kvm_nlist nl[2]; 1107f911abeSJohn Baldwin kvaddr_t kernbase; 1117f911abeSJohn Baldwin arm_physaddr_t physaddr, pa; 1127f911abeSJohn Baldwin arm_pd_entry_t *l1pt; 1137f911abeSJohn Baldwin size_t i; 1147f911abeSJohn Baldwin int found; 1159960ac47SOlivier Houchard 1167f911abeSJohn Baldwin if (kd->rawdump) { 1177f911abeSJohn Baldwin _kvm_err(kd, kd->program, "raw dumps not supported on arm"); 1188e321b79SRafal Jaworowski return (-1); 1198e321b79SRafal Jaworowski } 1208e321b79SRafal Jaworowski 1218e321b79SRafal Jaworowski vm = _kvm_malloc(kd, sizeof(*vm)); 122fb0e1892SEnji Cooper if (vm == NULL) { 1239960ac47SOlivier Houchard _kvm_err(kd, kd->program, "cannot allocate vm"); 1249960ac47SOlivier Houchard return (-1); 1259960ac47SOlivier Houchard } 1269960ac47SOlivier Houchard kd->vmst = vm; 1279960ac47SOlivier Houchard vm->l1pt = NULL; 1287f911abeSJohn Baldwin 1297f911abeSJohn Baldwin if (_kvm_read_core_phdrs(kd, &vm->phnum, &vm->phdr) == -1) 1309960ac47SOlivier Houchard return (-1); 13158c47a70SAndrew Turner 13258c47a70SAndrew Turner found = 0; 1337f911abeSJohn Baldwin for (i = 0; i < vm->phnum; i++) { 1347f911abeSJohn Baldwin if (vm->phdr[i].p_type == PT_DUMP_DELTA) { 1357f911abeSJohn Baldwin kernbase = vm->phdr[i].p_vaddr; 1367f911abeSJohn Baldwin physaddr = vm->phdr[i].p_paddr; 13758c47a70SAndrew Turner found = 1; 13858c47a70SAndrew Turner break; 13958c47a70SAndrew Turner } 14058c47a70SAndrew Turner } 14158c47a70SAndrew Turner 142c10970ddSUlrich Spörlein nl[1].n_name = NULL; 14358c47a70SAndrew Turner if (!found) { 14458c47a70SAndrew Turner nl[0].n_name = "kernbase"; 1457f911abeSJohn Baldwin if (kvm_nlist2(kd, nl) != 0) { 1467f911abeSJohn Baldwin #ifdef __arm__ 1479960ac47SOlivier Houchard kernbase = KERNBASE; 1487f911abeSJohn Baldwin #else 1497f911abeSJohn Baldwin _kvm_err(kd, kd->program, "cannot resolve kernbase"); 1507f911abeSJohn Baldwin return (-1); 1517f911abeSJohn Baldwin #endif 1527f911abeSJohn Baldwin } else 153c10970ddSUlrich Spörlein kernbase = nl[0].n_value; 1549960ac47SOlivier Houchard 155c10970ddSUlrich Spörlein nl[0].n_name = "physaddr"; 1567f911abeSJohn Baldwin if (kvm_nlist2(kd, nl) != 0) { 1579960ac47SOlivier Houchard _kvm_err(kd, kd->program, "couldn't get phys addr"); 1589960ac47SOlivier Houchard return (-1); 1599960ac47SOlivier Houchard } 160c10970ddSUlrich Spörlein physaddr = nl[0].n_value; 16158c47a70SAndrew Turner } 162c10970ddSUlrich Spörlein nl[0].n_name = "kernel_l1pa"; 1637f911abeSJohn Baldwin if (kvm_nlist2(kd, nl) != 0) { 1649960ac47SOlivier Houchard _kvm_err(kd, kd->program, "bad namelist"); 1659960ac47SOlivier Houchard return (-1); 1669960ac47SOlivier Houchard } 1677f911abeSJohn Baldwin if (kvm_read2(kd, (nl[0].n_value - kernbase + physaddr), &pa, 1689960ac47SOlivier Houchard sizeof(pa)) != sizeof(pa)) { 1699960ac47SOlivier Houchard _kvm_err(kd, kd->program, "cannot read kernel_l1pa"); 1709960ac47SOlivier Houchard return (-1); 1719960ac47SOlivier Houchard } 1727f911abeSJohn Baldwin l1pt = _kvm_malloc(kd, ARM_L1_TABLE_SIZE); 173fb0e1892SEnji Cooper if (l1pt == NULL) { 174fb0e1892SEnji Cooper _kvm_err(kd, kd->program, "cannot allocate l1pt"); 175fb0e1892SEnji Cooper return (-1); 176fb0e1892SEnji Cooper } 1777f911abeSJohn Baldwin if (kvm_read2(kd, pa, l1pt, ARM_L1_TABLE_SIZE) != ARM_L1_TABLE_SIZE) { 1789960ac47SOlivier Houchard _kvm_err(kd, kd->program, "cannot read l1pt"); 1799960ac47SOlivier Houchard free(l1pt); 1809960ac47SOlivier Houchard return (-1); 1819960ac47SOlivier Houchard } 1829960ac47SOlivier Houchard vm->l1pt = l1pt; 1838cffa1b4SOlivier Houchard return 0; 1848cffa1b4SOlivier Houchard } 1858cffa1b4SOlivier Houchard 1869960ac47SOlivier Houchard /* from arm/pmap.c */ 1877f911abeSJohn Baldwin #define ARM_L1_IDX(va) ((va) >> ARM_L1_S_SHIFT) 1889960ac47SOlivier Houchard 1897f911abeSJohn Baldwin #define l1pte_section_p(pde) (((pde) & ARM_L1_TYPE_MASK) == ARM_L1_TYPE_S) 1909960ac47SOlivier Houchard #define l1pte_valid(pde) ((pde) != 0) 1919960ac47SOlivier Houchard #define l2pte_valid(pte) ((pte) != 0) 192d97d068fSSvatopluk Kraus #define l2pte_index(v) (((v) & ARM_L1_S_OFFSET) >> ARM_L2_S_SHIFT) 1939960ac47SOlivier Houchard 1949960ac47SOlivier Houchard 1957f911abeSJohn Baldwin static int 1967f911abeSJohn Baldwin _arm_kvatop(kvm_t *kd, kvaddr_t va, off_t *pa) 1978cffa1b4SOlivier Houchard { 1989960ac47SOlivier Houchard struct vmstate *vm = kd->vmst; 1997f911abeSJohn Baldwin arm_pd_entry_t pd; 2007f911abeSJohn Baldwin arm_pt_entry_t pte; 2017f911abeSJohn Baldwin arm_physaddr_t pte_pa; 2027f911abeSJohn Baldwin off_t pte_off; 2038e321b79SRafal Jaworowski 2049960ac47SOlivier Houchard if (vm->l1pt == NULL) 2057f911abeSJohn Baldwin return (_kvm_pa2off(kd, va, pa, ARM_PAGE_SIZE)); 2067f911abeSJohn Baldwin pd = _kvm32toh(kd, vm->l1pt[ARM_L1_IDX(va)]); 2079960ac47SOlivier Houchard if (!l1pte_valid(pd)) 2089960ac47SOlivier Houchard goto invalid; 2099960ac47SOlivier Houchard if (l1pte_section_p(pd)) { 2109960ac47SOlivier Houchard /* 1MB section mapping. */ 2117f911abeSJohn Baldwin *pa = (pd & ARM_L1_S_ADDR_MASK) + (va & ARM_L1_S_OFFSET); 2127f911abeSJohn Baldwin return (_kvm_pa2off(kd, *pa, pa, ARM_L1_S_SIZE)); 2139960ac47SOlivier Houchard } 2147f911abeSJohn Baldwin pte_pa = (pd & ARM_L1_C_ADDR_MASK) + l2pte_index(va) * sizeof(pte); 2157f911abeSJohn Baldwin _kvm_pa2off(kd, pte_pa, &pte_off, ARM_L1_S_SIZE); 2167f911abeSJohn Baldwin if (pread(kd->pmfd, &pte, sizeof(pte), pte_off) != sizeof(pte)) { 2177f911abeSJohn Baldwin _kvm_syserr(kd, kd->program, "_arm_kvatop: pread"); 2189960ac47SOlivier Houchard goto invalid; 2199960ac47SOlivier Houchard } 2207f911abeSJohn Baldwin pte = _kvm32toh(kd, pte); 2219960ac47SOlivier Houchard if (!l2pte_valid(pte)) { 2229960ac47SOlivier Houchard goto invalid; 2239960ac47SOlivier Houchard } 2247f911abeSJohn Baldwin if ((pte & ARM_L2_TYPE_MASK) == ARM_L2_TYPE_L) { 2257f911abeSJohn Baldwin *pa = (pte & ARM_L2_L_FRAME) | (va & ARM_L2_L_OFFSET); 2267f911abeSJohn Baldwin return (_kvm_pa2off(kd, *pa, pa, ARM_L2_L_SIZE)); 2279960ac47SOlivier Houchard } 2287f911abeSJohn Baldwin *pa = (pte & ARM_L2_S_FRAME) | (va & ARM_L2_S_OFFSET); 2297f911abeSJohn Baldwin return (_kvm_pa2off(kd, *pa, pa, ARM_PAGE_SIZE)); 2309960ac47SOlivier Houchard invalid: 2317f911abeSJohn Baldwin _kvm_err(kd, 0, "Invalid address (%jx)", (uintmax_t)va); 2328cffa1b4SOlivier Houchard return 0; 2338cffa1b4SOlivier Houchard } 2348cffa1b4SOlivier Houchard 2358cffa1b4SOlivier Houchard /* 2368cffa1b4SOlivier Houchard * Machine-dependent initialization for ALL open kvm descriptors, 2378cffa1b4SOlivier Houchard * not just those for a kernel crash dump. Some architectures 2388cffa1b4SOlivier Houchard * have to deal with these NOT being constants! (i.e. m68k) 2398cffa1b4SOlivier Houchard */ 240c10970ddSUlrich Spörlein #ifdef FBSD_NOT_YET 2418cffa1b4SOlivier Houchard int 242c10970ddSUlrich Spörlein _kvm_mdopen(kvm_t *kd) 2438cffa1b4SOlivier Houchard { 2448cffa1b4SOlivier Houchard 2458cffa1b4SOlivier Houchard kd->usrstack = USRSTACK; 2468cffa1b4SOlivier Houchard kd->min_uva = VM_MIN_ADDRESS; 2478cffa1b4SOlivier Houchard kd->max_uva = VM_MAXUSER_ADDRESS; 2488cffa1b4SOlivier Houchard 2498cffa1b4SOlivier Houchard return (0); 2508cffa1b4SOlivier Houchard } 251c10970ddSUlrich Spörlein #endif 2527f911abeSJohn Baldwin 2537f911abeSJohn Baldwin int 254881b0edbSEnji Cooper #ifdef __arm__ 2557f911abeSJohn Baldwin _arm_native(kvm_t *kd) 256881b0edbSEnji Cooper #else 257881b0edbSEnji Cooper _arm_native(kvm_t *kd __unused) 258881b0edbSEnji Cooper #endif 2597f911abeSJohn Baldwin { 2607f911abeSJohn Baldwin 2617f911abeSJohn Baldwin #ifdef __arm__ 2627f911abeSJohn Baldwin #if _BYTE_ORDER == _LITTLE_ENDIAN 2637f911abeSJohn Baldwin return (kd->nlehdr.e_ident[EI_DATA] == ELFDATA2LSB); 2647f911abeSJohn Baldwin #else 2657f911abeSJohn Baldwin return (kd->nlehdr.e_ident[EI_DATA] == ELFDATA2MSB); 2667f911abeSJohn Baldwin #endif 2677f911abeSJohn Baldwin #else 2687f911abeSJohn Baldwin return (0); 2697f911abeSJohn Baldwin #endif 2707f911abeSJohn Baldwin } 2717f911abeSJohn Baldwin 272881b0edbSEnji Cooper static struct kvm_arch kvm_arm = { 2737f911abeSJohn Baldwin .ka_probe = _arm_probe, 2747f911abeSJohn Baldwin .ka_initvtop = _arm_initvtop, 2757f911abeSJohn Baldwin .ka_freevtop = _arm_freevtop, 2767f911abeSJohn Baldwin .ka_kvatop = _arm_kvatop, 2777f911abeSJohn Baldwin .ka_native = _arm_native, 2787f911abeSJohn Baldwin }; 2797f911abeSJohn Baldwin 2807f911abeSJohn Baldwin KVM_ARCH(kvm_arm); 281