xref: /openbmc/qemu/hw/arm/boot.c (revision 43118f4351c1c430aa5c32aed80dcfe0b525a1f0)
153018216SPaolo Bonzini /*
253018216SPaolo Bonzini  * ARM kernel loader.
353018216SPaolo Bonzini  *
453018216SPaolo Bonzini  * Copyright (c) 2006-2007 CodeSourcery.
553018216SPaolo Bonzini  * Written by Paul Brook
653018216SPaolo Bonzini  *
753018216SPaolo Bonzini  * This code is licensed under the GPL.
853018216SPaolo Bonzini  */
953018216SPaolo Bonzini 
1012b16722SPeter Maydell #include "qemu/osdep.h"
11c0dbca36SAlistair Francis #include "qemu/error-report.h"
12da34e65cSMarkus Armbruster #include "qapi/error.h"
13b77257d7SGuenter Roeck #include <libfdt.h>
1453018216SPaolo Bonzini #include "hw/hw.h"
15bd2be150SPeter Maydell #include "hw/arm/arm.h"
16d8b1ae42SPeter Maydell #include "hw/arm/linux-boot-if.h"
17baf6b681SPeter Crosthwaite #include "sysemu/kvm.h"
1853018216SPaolo Bonzini #include "sysemu/sysemu.h"
199695200aSShannon Zhao #include "sysemu/numa.h"
2053018216SPaolo Bonzini #include "hw/boards.h"
2153018216SPaolo Bonzini #include "hw/loader.h"
2253018216SPaolo Bonzini #include "elf.h"
2353018216SPaolo Bonzini #include "sysemu/device_tree.h"
2453018216SPaolo Bonzini #include "qemu/config-file.h"
25922a01a0SMarkus Armbruster #include "qemu/option.h"
262198a121SEdgar E. Iglesias #include "exec/address-spaces.h"
2753018216SPaolo Bonzini 
284d9ebf75SMian M. Hamayun /* Kernel boot protocol is specified in the kernel docs
294d9ebf75SMian M. Hamayun  * Documentation/arm/Booting and Documentation/arm64/booting.txt
304d9ebf75SMian M. Hamayun  * They have different preferred image load offsets from system RAM base.
314d9ebf75SMian M. Hamayun  */
3253018216SPaolo Bonzini #define KERNEL_ARGS_ADDR 0x100
3353018216SPaolo Bonzini #define KERNEL_LOAD_ADDR 0x00010000
344d9ebf75SMian M. Hamayun #define KERNEL64_LOAD_ADDR 0x00080000
3553018216SPaolo Bonzini 
3668115ed5SArd Biesheuvel #define ARM64_TEXT_OFFSET_OFFSET    8
3768115ed5SArd Biesheuvel #define ARM64_MAGIC_OFFSET          56
3868115ed5SArd Biesheuvel 
399f43d4c3SPeter Maydell static AddressSpace *arm_boot_address_space(ARMCPU *cpu,
409f43d4c3SPeter Maydell                                             const struct arm_boot_info *info)
419f43d4c3SPeter Maydell {
429f43d4c3SPeter Maydell     /* Return the address space to use for bootloader reads and writes.
439f43d4c3SPeter Maydell      * We prefer the secure address space if the CPU has it and we're
449f43d4c3SPeter Maydell      * going to boot the guest into it.
459f43d4c3SPeter Maydell      */
469f43d4c3SPeter Maydell     int asidx;
479f43d4c3SPeter Maydell     CPUState *cs = CPU(cpu);
489f43d4c3SPeter Maydell 
499f43d4c3SPeter Maydell     if (arm_feature(&cpu->env, ARM_FEATURE_EL3) && info->secure_boot) {
509f43d4c3SPeter Maydell         asidx = ARMASIdx_S;
519f43d4c3SPeter Maydell     } else {
529f43d4c3SPeter Maydell         asidx = ARMASIdx_NS;
539f43d4c3SPeter Maydell     }
549f43d4c3SPeter Maydell 
559f43d4c3SPeter Maydell     return cpu_get_address_space(cs, asidx);
569f43d4c3SPeter Maydell }
579f43d4c3SPeter Maydell 
5847b1da81SPeter Maydell typedef enum {
5947b1da81SPeter Maydell     FIXUP_NONE = 0,     /* do nothing */
6047b1da81SPeter Maydell     FIXUP_TERMINATOR,   /* end of insns */
6147b1da81SPeter Maydell     FIXUP_BOARDID,      /* overwrite with board ID number */
6210b8ec73SPeter Crosthwaite     FIXUP_BOARD_SETUP,  /* overwrite with board specific setup code address */
6347b1da81SPeter Maydell     FIXUP_ARGPTR,       /* overwrite with pointer to kernel args */
6447b1da81SPeter Maydell     FIXUP_ENTRYPOINT,   /* overwrite with kernel entry point */
6547b1da81SPeter Maydell     FIXUP_GIC_CPU_IF,   /* overwrite with GIC CPU interface address */
6647b1da81SPeter Maydell     FIXUP_BOOTREG,      /* overwrite with boot register address */
6747b1da81SPeter Maydell     FIXUP_DSB,          /* overwrite with correct DSB insn for cpu */
6847b1da81SPeter Maydell     FIXUP_MAX,
6947b1da81SPeter Maydell } FixupType;
7047b1da81SPeter Maydell 
7147b1da81SPeter Maydell typedef struct ARMInsnFixup {
7247b1da81SPeter Maydell     uint32_t insn;
7347b1da81SPeter Maydell     FixupType fixup;
7447b1da81SPeter Maydell } ARMInsnFixup;
7547b1da81SPeter Maydell 
764d9ebf75SMian M. Hamayun static const ARMInsnFixup bootloader_aarch64[] = {
774d9ebf75SMian M. Hamayun     { 0x580000c0 }, /* ldr x0, arg ; Load the lower 32-bits of DTB */
784d9ebf75SMian M. Hamayun     { 0xaa1f03e1 }, /* mov x1, xzr */
794d9ebf75SMian M. Hamayun     { 0xaa1f03e2 }, /* mov x2, xzr */
804d9ebf75SMian M. Hamayun     { 0xaa1f03e3 }, /* mov x3, xzr */
814d9ebf75SMian M. Hamayun     { 0x58000084 }, /* ldr x4, entry ; Load the lower 32-bits of kernel entry */
824d9ebf75SMian M. Hamayun     { 0xd61f0080 }, /* br x4      ; Jump to the kernel entry point */
834d9ebf75SMian M. Hamayun     { 0, FIXUP_ARGPTR }, /* arg: .word @DTB Lower 32-bits */
844d9ebf75SMian M. Hamayun     { 0 }, /* .word @DTB Higher 32-bits */
854d9ebf75SMian M. Hamayun     { 0, FIXUP_ENTRYPOINT }, /* entry: .word @Kernel Entry Lower 32-bits */
864d9ebf75SMian M. Hamayun     { 0 }, /* .word @Kernel Entry Higher 32-bits */
874d9ebf75SMian M. Hamayun     { 0, FIXUP_TERMINATOR }
884d9ebf75SMian M. Hamayun };
894d9ebf75SMian M. Hamayun 
9010b8ec73SPeter Crosthwaite /* A very small bootloader: call the board-setup code (if needed),
9110b8ec73SPeter Crosthwaite  * set r0-r2, then jump to the kernel.
9210b8ec73SPeter Crosthwaite  * If we're not calling boot setup code then we don't copy across
9310b8ec73SPeter Crosthwaite  * the first BOOTLOADER_NO_BOARD_SETUP_OFFSET insns in this array.
9410b8ec73SPeter Crosthwaite  */
9510b8ec73SPeter Crosthwaite 
9647b1da81SPeter Maydell static const ARMInsnFixup bootloader[] = {
97b4850e5aSSylvain Garrigues     { 0xe28fe004 }, /* add     lr, pc, #4 */
9810b8ec73SPeter Crosthwaite     { 0xe51ff004 }, /* ldr     pc, [pc, #-4] */
9910b8ec73SPeter Crosthwaite     { 0, FIXUP_BOARD_SETUP },
10010b8ec73SPeter Crosthwaite #define BOOTLOADER_NO_BOARD_SETUP_OFFSET 3
10147b1da81SPeter Maydell     { 0xe3a00000 }, /* mov     r0, #0 */
10247b1da81SPeter Maydell     { 0xe59f1004 }, /* ldr     r1, [pc, #4] */
10347b1da81SPeter Maydell     { 0xe59f2004 }, /* ldr     r2, [pc, #4] */
10447b1da81SPeter Maydell     { 0xe59ff004 }, /* ldr     pc, [pc, #4] */
10547b1da81SPeter Maydell     { 0, FIXUP_BOARDID },
10647b1da81SPeter Maydell     { 0, FIXUP_ARGPTR },
10747b1da81SPeter Maydell     { 0, FIXUP_ENTRYPOINT },
10847b1da81SPeter Maydell     { 0, FIXUP_TERMINATOR }
10953018216SPaolo Bonzini };
11053018216SPaolo Bonzini 
11153018216SPaolo Bonzini /* Handling for secondary CPU boot in a multicore system.
11253018216SPaolo Bonzini  * Unlike the uniprocessor/primary CPU boot, this is platform
11353018216SPaolo Bonzini  * dependent. The default code here is based on the secondary
11453018216SPaolo Bonzini  * CPU boot protocol used on realview/vexpress boards, with
11553018216SPaolo Bonzini  * some parameterisation to increase its flexibility.
11653018216SPaolo Bonzini  * QEMU platform models for which this code is not appropriate
11753018216SPaolo Bonzini  * should override write_secondary_boot and secondary_cpu_reset_hook
11853018216SPaolo Bonzini  * instead.
11953018216SPaolo Bonzini  *
12053018216SPaolo Bonzini  * This code enables the interrupt controllers for the secondary
12153018216SPaolo Bonzini  * CPUs and then puts all the secondary CPUs into a loop waiting
12253018216SPaolo Bonzini  * for an interprocessor interrupt and polling a configurable
12353018216SPaolo Bonzini  * location for the kernel secondary CPU entry point.
12453018216SPaolo Bonzini  */
12553018216SPaolo Bonzini #define DSB_INSN 0xf57ff04f
12653018216SPaolo Bonzini #define CP15_DSB_INSN 0xee070f9a /* mcr cp15, 0, r0, c7, c10, 4 */
12753018216SPaolo Bonzini 
12847b1da81SPeter Maydell static const ARMInsnFixup smpboot[] = {
12947b1da81SPeter Maydell     { 0xe59f2028 }, /* ldr r2, gic_cpu_if */
13047b1da81SPeter Maydell     { 0xe59f0028 }, /* ldr r0, bootreg_addr */
13147b1da81SPeter Maydell     { 0xe3a01001 }, /* mov r1, #1 */
13247b1da81SPeter Maydell     { 0xe5821000 }, /* str r1, [r2] - set GICC_CTLR.Enable */
13347b1da81SPeter Maydell     { 0xe3a010ff }, /* mov r1, #0xff */
13447b1da81SPeter Maydell     { 0xe5821004 }, /* str r1, [r2, 4] - set GIC_PMR.Priority to 0xff */
13547b1da81SPeter Maydell     { 0, FIXUP_DSB },   /* dsb */
13647b1da81SPeter Maydell     { 0xe320f003 }, /* wfi */
13747b1da81SPeter Maydell     { 0xe5901000 }, /* ldr     r1, [r0] */
13847b1da81SPeter Maydell     { 0xe1110001 }, /* tst     r1, r1 */
13947b1da81SPeter Maydell     { 0x0afffffb }, /* beq     <wfi> */
14047b1da81SPeter Maydell     { 0xe12fff11 }, /* bx      r1 */
14147b1da81SPeter Maydell     { 0, FIXUP_GIC_CPU_IF }, /* gic_cpu_if: .word 0x.... */
14247b1da81SPeter Maydell     { 0, FIXUP_BOOTREG }, /* bootreg_addr: .word 0x.... */
14347b1da81SPeter Maydell     { 0, FIXUP_TERMINATOR }
14453018216SPaolo Bonzini };
14553018216SPaolo Bonzini 
14647b1da81SPeter Maydell static void write_bootloader(const char *name, hwaddr addr,
1479f43d4c3SPeter Maydell                              const ARMInsnFixup *insns, uint32_t *fixupcontext,
1489f43d4c3SPeter Maydell                              AddressSpace *as)
14947b1da81SPeter Maydell {
15047b1da81SPeter Maydell     /* Fix up the specified bootloader fragment and write it into
15147b1da81SPeter Maydell      * guest memory using rom_add_blob_fixed(). fixupcontext is
15247b1da81SPeter Maydell      * an array giving the values to write in for the fixup types
15347b1da81SPeter Maydell      * which write a value into the code array.
15447b1da81SPeter Maydell      */
15547b1da81SPeter Maydell     int i, len;
15647b1da81SPeter Maydell     uint32_t *code;
15747b1da81SPeter Maydell 
15847b1da81SPeter Maydell     len = 0;
15947b1da81SPeter Maydell     while (insns[len].fixup != FIXUP_TERMINATOR) {
16047b1da81SPeter Maydell         len++;
16147b1da81SPeter Maydell     }
16247b1da81SPeter Maydell 
16347b1da81SPeter Maydell     code = g_new0(uint32_t, len);
16447b1da81SPeter Maydell 
16547b1da81SPeter Maydell     for (i = 0; i < len; i++) {
16647b1da81SPeter Maydell         uint32_t insn = insns[i].insn;
16747b1da81SPeter Maydell         FixupType fixup = insns[i].fixup;
16847b1da81SPeter Maydell 
16947b1da81SPeter Maydell         switch (fixup) {
17047b1da81SPeter Maydell         case FIXUP_NONE:
17147b1da81SPeter Maydell             break;
17247b1da81SPeter Maydell         case FIXUP_BOARDID:
17310b8ec73SPeter Crosthwaite         case FIXUP_BOARD_SETUP:
17447b1da81SPeter Maydell         case FIXUP_ARGPTR:
17547b1da81SPeter Maydell         case FIXUP_ENTRYPOINT:
17647b1da81SPeter Maydell         case FIXUP_GIC_CPU_IF:
17747b1da81SPeter Maydell         case FIXUP_BOOTREG:
17847b1da81SPeter Maydell         case FIXUP_DSB:
17947b1da81SPeter Maydell             insn = fixupcontext[fixup];
18047b1da81SPeter Maydell             break;
18147b1da81SPeter Maydell         default:
18247b1da81SPeter Maydell             abort();
18347b1da81SPeter Maydell         }
18447b1da81SPeter Maydell         code[i] = tswap32(insn);
18547b1da81SPeter Maydell     }
18647b1da81SPeter Maydell 
1879f43d4c3SPeter Maydell     rom_add_blob_fixed_as(name, code, len * sizeof(uint32_t), addr, as);
18847b1da81SPeter Maydell 
18947b1da81SPeter Maydell     g_free(code);
19047b1da81SPeter Maydell }
19147b1da81SPeter Maydell 
19253018216SPaolo Bonzini static void default_write_secondary(ARMCPU *cpu,
19353018216SPaolo Bonzini                                     const struct arm_boot_info *info)
19453018216SPaolo Bonzini {
19547b1da81SPeter Maydell     uint32_t fixupcontext[FIXUP_MAX];
1969f43d4c3SPeter Maydell     AddressSpace *as = arm_boot_address_space(cpu, info);
19747b1da81SPeter Maydell 
19847b1da81SPeter Maydell     fixupcontext[FIXUP_GIC_CPU_IF] = info->gic_cpu_if_addr;
19947b1da81SPeter Maydell     fixupcontext[FIXUP_BOOTREG] = info->smp_bootreg_addr;
20047b1da81SPeter Maydell     if (arm_feature(&cpu->env, ARM_FEATURE_V7)) {
20147b1da81SPeter Maydell         fixupcontext[FIXUP_DSB] = DSB_INSN;
20247b1da81SPeter Maydell     } else {
20347b1da81SPeter Maydell         fixupcontext[FIXUP_DSB] = CP15_DSB_INSN;
20453018216SPaolo Bonzini     }
20547b1da81SPeter Maydell 
20647b1da81SPeter Maydell     write_bootloader("smpboot", info->smp_loader_start,
2079f43d4c3SPeter Maydell                      smpboot, fixupcontext, as);
20853018216SPaolo Bonzini }
20953018216SPaolo Bonzini 
210716536a9SAndrew Baumann void arm_write_secure_board_setup_dummy_smc(ARMCPU *cpu,
211716536a9SAndrew Baumann                                             const struct arm_boot_info *info,
212716536a9SAndrew Baumann                                             hwaddr mvbar_addr)
213716536a9SAndrew Baumann {
2149f43d4c3SPeter Maydell     AddressSpace *as = arm_boot_address_space(cpu, info);
215716536a9SAndrew Baumann     int n;
216716536a9SAndrew Baumann     uint32_t mvbar_blob[] = {
217716536a9SAndrew Baumann         /* mvbar_addr: secure monitor vectors
218716536a9SAndrew Baumann          * Default unimplemented and unused vectors to spin. Makes it
219716536a9SAndrew Baumann          * easier to debug (as opposed to the CPU running away).
220716536a9SAndrew Baumann          */
221716536a9SAndrew Baumann         0xeafffffe, /* (spin) */
222716536a9SAndrew Baumann         0xeafffffe, /* (spin) */
223716536a9SAndrew Baumann         0xe1b0f00e, /* movs pc, lr ;SMC exception return */
224716536a9SAndrew Baumann         0xeafffffe, /* (spin) */
225716536a9SAndrew Baumann         0xeafffffe, /* (spin) */
226716536a9SAndrew Baumann         0xeafffffe, /* (spin) */
227716536a9SAndrew Baumann         0xeafffffe, /* (spin) */
228716536a9SAndrew Baumann         0xeafffffe, /* (spin) */
229716536a9SAndrew Baumann     };
230716536a9SAndrew Baumann     uint32_t board_setup_blob[] = {
231716536a9SAndrew Baumann         /* board setup addr */
232716536a9SAndrew Baumann         0xe3a00e00 + (mvbar_addr >> 4), /* mov r0, #mvbar_addr */
233716536a9SAndrew Baumann         0xee0c0f30, /* mcr     p15, 0, r0, c12, c0, 1 ;set MVBAR */
234716536a9SAndrew Baumann         0xee110f11, /* mrc     p15, 0, r0, c1 , c1, 0 ;read SCR */
235716536a9SAndrew Baumann         0xe3800031, /* orr     r0, #0x31              ;enable AW, FW, NS */
236716536a9SAndrew Baumann         0xee010f11, /* mcr     p15, 0, r0, c1, c1, 0  ;write SCR */
237716536a9SAndrew Baumann         0xe1a0100e, /* mov     r1, lr                 ;save LR across SMC */
238716536a9SAndrew Baumann         0xe1600070, /* smc     #0                     ;call monitor to flush SCR */
239716536a9SAndrew Baumann         0xe1a0f001, /* mov     pc, r1                 ;return */
240716536a9SAndrew Baumann     };
241716536a9SAndrew Baumann 
242716536a9SAndrew Baumann     /* check that mvbar_addr is correctly aligned and relocatable (using MOV) */
243716536a9SAndrew Baumann     assert((mvbar_addr & 0x1f) == 0 && (mvbar_addr >> 4) < 0x100);
244716536a9SAndrew Baumann 
245716536a9SAndrew Baumann     /* check that these blobs don't overlap */
246716536a9SAndrew Baumann     assert((mvbar_addr + sizeof(mvbar_blob) <= info->board_setup_addr)
247716536a9SAndrew Baumann           || (info->board_setup_addr + sizeof(board_setup_blob) <= mvbar_addr));
248716536a9SAndrew Baumann 
249716536a9SAndrew Baumann     for (n = 0; n < ARRAY_SIZE(mvbar_blob); n++) {
250716536a9SAndrew Baumann         mvbar_blob[n] = tswap32(mvbar_blob[n]);
251716536a9SAndrew Baumann     }
2529f43d4c3SPeter Maydell     rom_add_blob_fixed_as("board-setup-mvbar", mvbar_blob, sizeof(mvbar_blob),
2539f43d4c3SPeter Maydell                           mvbar_addr, as);
254716536a9SAndrew Baumann 
255716536a9SAndrew Baumann     for (n = 0; n < ARRAY_SIZE(board_setup_blob); n++) {
256716536a9SAndrew Baumann         board_setup_blob[n] = tswap32(board_setup_blob[n]);
257716536a9SAndrew Baumann     }
2589f43d4c3SPeter Maydell     rom_add_blob_fixed_as("board-setup", board_setup_blob,
2599f43d4c3SPeter Maydell                           sizeof(board_setup_blob), info->board_setup_addr, as);
260716536a9SAndrew Baumann }
261716536a9SAndrew Baumann 
26253018216SPaolo Bonzini static void default_reset_secondary(ARMCPU *cpu,
26353018216SPaolo Bonzini                                     const struct arm_boot_info *info)
26453018216SPaolo Bonzini {
2659f43d4c3SPeter Maydell     AddressSpace *as = arm_boot_address_space(cpu, info);
2664df81c6eSPeter Crosthwaite     CPUState *cs = CPU(cpu);
26753018216SPaolo Bonzini 
2689f43d4c3SPeter Maydell     address_space_stl_notdirty(as, info->smp_bootreg_addr,
26942874d3aSPeter Maydell                                0, MEMTXATTRS_UNSPECIFIED, NULL);
2704df81c6eSPeter Crosthwaite     cpu_set_pc(cs, info->smp_loader_start);
27153018216SPaolo Bonzini }
27253018216SPaolo Bonzini 
27383bfffecSPeter Maydell static inline bool have_dtb(const struct arm_boot_info *info)
27483bfffecSPeter Maydell {
27583bfffecSPeter Maydell     return info->dtb_filename || info->get_dtb;
27683bfffecSPeter Maydell }
27783bfffecSPeter Maydell 
27853018216SPaolo Bonzini #define WRITE_WORD(p, value) do { \
2799f43d4c3SPeter Maydell     address_space_stl_notdirty(as, p, value, \
28042874d3aSPeter Maydell                                MEMTXATTRS_UNSPECIFIED, NULL);  \
28153018216SPaolo Bonzini     p += 4;                       \
28253018216SPaolo Bonzini } while (0)
28353018216SPaolo Bonzini 
2849f43d4c3SPeter Maydell static void set_kernel_args(const struct arm_boot_info *info, AddressSpace *as)
28553018216SPaolo Bonzini {
28653018216SPaolo Bonzini     int initrd_size = info->initrd_size;
28753018216SPaolo Bonzini     hwaddr base = info->loader_start;
28853018216SPaolo Bonzini     hwaddr p;
28953018216SPaolo Bonzini 
29053018216SPaolo Bonzini     p = base + KERNEL_ARGS_ADDR;
29153018216SPaolo Bonzini     /* ATAG_CORE */
29253018216SPaolo Bonzini     WRITE_WORD(p, 5);
29353018216SPaolo Bonzini     WRITE_WORD(p, 0x54410001);
29453018216SPaolo Bonzini     WRITE_WORD(p, 1);
29553018216SPaolo Bonzini     WRITE_WORD(p, 0x1000);
29653018216SPaolo Bonzini     WRITE_WORD(p, 0);
29753018216SPaolo Bonzini     /* ATAG_MEM */
29853018216SPaolo Bonzini     /* TODO: handle multiple chips on one ATAG list */
29953018216SPaolo Bonzini     WRITE_WORD(p, 4);
30053018216SPaolo Bonzini     WRITE_WORD(p, 0x54410002);
30153018216SPaolo Bonzini     WRITE_WORD(p, info->ram_size);
30253018216SPaolo Bonzini     WRITE_WORD(p, info->loader_start);
30353018216SPaolo Bonzini     if (initrd_size) {
30453018216SPaolo Bonzini         /* ATAG_INITRD2 */
30553018216SPaolo Bonzini         WRITE_WORD(p, 4);
30653018216SPaolo Bonzini         WRITE_WORD(p, 0x54420005);
30753018216SPaolo Bonzini         WRITE_WORD(p, info->initrd_start);
30853018216SPaolo Bonzini         WRITE_WORD(p, initrd_size);
30953018216SPaolo Bonzini     }
31053018216SPaolo Bonzini     if (info->kernel_cmdline && *info->kernel_cmdline) {
31153018216SPaolo Bonzini         /* ATAG_CMDLINE */
31253018216SPaolo Bonzini         int cmdline_size;
31353018216SPaolo Bonzini 
31453018216SPaolo Bonzini         cmdline_size = strlen(info->kernel_cmdline);
3159f43d4c3SPeter Maydell         address_space_write(as, p + 8, MEMTXATTRS_UNSPECIFIED,
3169f43d4c3SPeter Maydell                             (const uint8_t *)info->kernel_cmdline,
31753018216SPaolo Bonzini                             cmdline_size + 1);
31853018216SPaolo Bonzini         cmdline_size = (cmdline_size >> 2) + 1;
31953018216SPaolo Bonzini         WRITE_WORD(p, cmdline_size + 2);
32053018216SPaolo Bonzini         WRITE_WORD(p, 0x54410009);
32153018216SPaolo Bonzini         p += cmdline_size * 4;
32253018216SPaolo Bonzini     }
32353018216SPaolo Bonzini     if (info->atag_board) {
32453018216SPaolo Bonzini         /* ATAG_BOARD */
32553018216SPaolo Bonzini         int atag_board_len;
32653018216SPaolo Bonzini         uint8_t atag_board_buf[0x1000];
32753018216SPaolo Bonzini 
32853018216SPaolo Bonzini         atag_board_len = (info->atag_board(info, atag_board_buf) + 3) & ~3;
32953018216SPaolo Bonzini         WRITE_WORD(p, (atag_board_len + 8) >> 2);
33053018216SPaolo Bonzini         WRITE_WORD(p, 0x414f4d50);
3319f43d4c3SPeter Maydell         address_space_write(as, p, MEMTXATTRS_UNSPECIFIED,
3329f43d4c3SPeter Maydell                             atag_board_buf, atag_board_len);
33353018216SPaolo Bonzini         p += atag_board_len;
33453018216SPaolo Bonzini     }
33553018216SPaolo Bonzini     /* ATAG_END */
33653018216SPaolo Bonzini     WRITE_WORD(p, 0);
33753018216SPaolo Bonzini     WRITE_WORD(p, 0);
33853018216SPaolo Bonzini }
33953018216SPaolo Bonzini 
3409f43d4c3SPeter Maydell static void set_kernel_args_old(const struct arm_boot_info *info,
3419f43d4c3SPeter Maydell                                 AddressSpace *as)
34253018216SPaolo Bonzini {
34353018216SPaolo Bonzini     hwaddr p;
34453018216SPaolo Bonzini     const char *s;
34553018216SPaolo Bonzini     int initrd_size = info->initrd_size;
34653018216SPaolo Bonzini     hwaddr base = info->loader_start;
34753018216SPaolo Bonzini 
34853018216SPaolo Bonzini     /* see linux/include/asm-arm/setup.h */
34953018216SPaolo Bonzini     p = base + KERNEL_ARGS_ADDR;
35053018216SPaolo Bonzini     /* page_size */
35153018216SPaolo Bonzini     WRITE_WORD(p, 4096);
35253018216SPaolo Bonzini     /* nr_pages */
35353018216SPaolo Bonzini     WRITE_WORD(p, info->ram_size / 4096);
35453018216SPaolo Bonzini     /* ramdisk_size */
35553018216SPaolo Bonzini     WRITE_WORD(p, 0);
35653018216SPaolo Bonzini #define FLAG_READONLY	1
35753018216SPaolo Bonzini #define FLAG_RDLOAD	4
35853018216SPaolo Bonzini #define FLAG_RDPROMPT	8
35953018216SPaolo Bonzini     /* flags */
36053018216SPaolo Bonzini     WRITE_WORD(p, FLAG_READONLY | FLAG_RDLOAD | FLAG_RDPROMPT);
36153018216SPaolo Bonzini     /* rootdev */
36253018216SPaolo Bonzini     WRITE_WORD(p, (31 << 8) | 0);	/* /dev/mtdblock0 */
36353018216SPaolo Bonzini     /* video_num_cols */
36453018216SPaolo Bonzini     WRITE_WORD(p, 0);
36553018216SPaolo Bonzini     /* video_num_rows */
36653018216SPaolo Bonzini     WRITE_WORD(p, 0);
36753018216SPaolo Bonzini     /* video_x */
36853018216SPaolo Bonzini     WRITE_WORD(p, 0);
36953018216SPaolo Bonzini     /* video_y */
37053018216SPaolo Bonzini     WRITE_WORD(p, 0);
37153018216SPaolo Bonzini     /* memc_control_reg */
37253018216SPaolo Bonzini     WRITE_WORD(p, 0);
37353018216SPaolo Bonzini     /* unsigned char sounddefault */
37453018216SPaolo Bonzini     /* unsigned char adfsdrives */
37553018216SPaolo Bonzini     /* unsigned char bytes_per_char_h */
37653018216SPaolo Bonzini     /* unsigned char bytes_per_char_v */
37753018216SPaolo Bonzini     WRITE_WORD(p, 0);
37853018216SPaolo Bonzini     /* pages_in_bank[4] */
37953018216SPaolo Bonzini     WRITE_WORD(p, 0);
38053018216SPaolo Bonzini     WRITE_WORD(p, 0);
38153018216SPaolo Bonzini     WRITE_WORD(p, 0);
38253018216SPaolo Bonzini     WRITE_WORD(p, 0);
38353018216SPaolo Bonzini     /* pages_in_vram */
38453018216SPaolo Bonzini     WRITE_WORD(p, 0);
38553018216SPaolo Bonzini     /* initrd_start */
38653018216SPaolo Bonzini     if (initrd_size) {
38753018216SPaolo Bonzini         WRITE_WORD(p, info->initrd_start);
38853018216SPaolo Bonzini     } else {
38953018216SPaolo Bonzini         WRITE_WORD(p, 0);
39053018216SPaolo Bonzini     }
39153018216SPaolo Bonzini     /* initrd_size */
39253018216SPaolo Bonzini     WRITE_WORD(p, initrd_size);
39353018216SPaolo Bonzini     /* rd_start */
39453018216SPaolo Bonzini     WRITE_WORD(p, 0);
39553018216SPaolo Bonzini     /* system_rev */
39653018216SPaolo Bonzini     WRITE_WORD(p, 0);
39753018216SPaolo Bonzini     /* system_serial_low */
39853018216SPaolo Bonzini     WRITE_WORD(p, 0);
39953018216SPaolo Bonzini     /* system_serial_high */
40053018216SPaolo Bonzini     WRITE_WORD(p, 0);
40153018216SPaolo Bonzini     /* mem_fclk_21285 */
40253018216SPaolo Bonzini     WRITE_WORD(p, 0);
40353018216SPaolo Bonzini     /* zero unused fields */
40453018216SPaolo Bonzini     while (p < base + KERNEL_ARGS_ADDR + 256 + 1024) {
40553018216SPaolo Bonzini         WRITE_WORD(p, 0);
40653018216SPaolo Bonzini     }
40753018216SPaolo Bonzini     s = info->kernel_cmdline;
40853018216SPaolo Bonzini     if (s) {
4099f43d4c3SPeter Maydell         address_space_write(as, p, MEMTXATTRS_UNSPECIFIED,
4109f43d4c3SPeter Maydell                             (const uint8_t *)s, strlen(s) + 1);
41153018216SPaolo Bonzini     } else {
41253018216SPaolo Bonzini         WRITE_WORD(p, 0);
41353018216SPaolo Bonzini     }
41453018216SPaolo Bonzini }
41553018216SPaolo Bonzini 
4164cbca7d9SAndrey Smirnov static void fdt_add_psci_node(void *fdt)
4174cbca7d9SAndrey Smirnov {
4184cbca7d9SAndrey Smirnov     uint32_t cpu_suspend_fn;
4194cbca7d9SAndrey Smirnov     uint32_t cpu_off_fn;
4204cbca7d9SAndrey Smirnov     uint32_t cpu_on_fn;
4214cbca7d9SAndrey Smirnov     uint32_t migrate_fn;
4224cbca7d9SAndrey Smirnov     ARMCPU *armcpu = ARM_CPU(qemu_get_cpu(0));
4234cbca7d9SAndrey Smirnov     const char *psci_method;
4244cbca7d9SAndrey Smirnov     int64_t psci_conduit;
4254cbca7d9SAndrey Smirnov 
4264cbca7d9SAndrey Smirnov     psci_conduit = object_property_get_int(OBJECT(armcpu),
4274cbca7d9SAndrey Smirnov                                            "psci-conduit",
4284cbca7d9SAndrey Smirnov                                            &error_abort);
4294cbca7d9SAndrey Smirnov     switch (psci_conduit) {
4304cbca7d9SAndrey Smirnov     case QEMU_PSCI_CONDUIT_DISABLED:
4314cbca7d9SAndrey Smirnov         return;
4324cbca7d9SAndrey Smirnov     case QEMU_PSCI_CONDUIT_HVC:
4334cbca7d9SAndrey Smirnov         psci_method = "hvc";
4344cbca7d9SAndrey Smirnov         break;
4354cbca7d9SAndrey Smirnov     case QEMU_PSCI_CONDUIT_SMC:
4364cbca7d9SAndrey Smirnov         psci_method = "smc";
4374cbca7d9SAndrey Smirnov         break;
4384cbca7d9SAndrey Smirnov     default:
4394cbca7d9SAndrey Smirnov         g_assert_not_reached();
4404cbca7d9SAndrey Smirnov     }
4414cbca7d9SAndrey Smirnov 
4424cbca7d9SAndrey Smirnov     qemu_fdt_add_subnode(fdt, "/psci");
4434cbca7d9SAndrey Smirnov     if (armcpu->psci_version == 2) {
4444cbca7d9SAndrey Smirnov         const char comp[] = "arm,psci-0.2\0arm,psci";
4454cbca7d9SAndrey Smirnov         qemu_fdt_setprop(fdt, "/psci", "compatible", comp, sizeof(comp));
4464cbca7d9SAndrey Smirnov 
4474cbca7d9SAndrey Smirnov         cpu_off_fn = QEMU_PSCI_0_2_FN_CPU_OFF;
4484cbca7d9SAndrey Smirnov         if (arm_feature(&armcpu->env, ARM_FEATURE_AARCH64)) {
4494cbca7d9SAndrey Smirnov             cpu_suspend_fn = QEMU_PSCI_0_2_FN64_CPU_SUSPEND;
4504cbca7d9SAndrey Smirnov             cpu_on_fn = QEMU_PSCI_0_2_FN64_CPU_ON;
4514cbca7d9SAndrey Smirnov             migrate_fn = QEMU_PSCI_0_2_FN64_MIGRATE;
4524cbca7d9SAndrey Smirnov         } else {
4534cbca7d9SAndrey Smirnov             cpu_suspend_fn = QEMU_PSCI_0_2_FN_CPU_SUSPEND;
4544cbca7d9SAndrey Smirnov             cpu_on_fn = QEMU_PSCI_0_2_FN_CPU_ON;
4554cbca7d9SAndrey Smirnov             migrate_fn = QEMU_PSCI_0_2_FN_MIGRATE;
4564cbca7d9SAndrey Smirnov         }
4574cbca7d9SAndrey Smirnov     } else {
4584cbca7d9SAndrey Smirnov         qemu_fdt_setprop_string(fdt, "/psci", "compatible", "arm,psci");
4594cbca7d9SAndrey Smirnov 
4604cbca7d9SAndrey Smirnov         cpu_suspend_fn = QEMU_PSCI_0_1_FN_CPU_SUSPEND;
4614cbca7d9SAndrey Smirnov         cpu_off_fn = QEMU_PSCI_0_1_FN_CPU_OFF;
4624cbca7d9SAndrey Smirnov         cpu_on_fn = QEMU_PSCI_0_1_FN_CPU_ON;
4634cbca7d9SAndrey Smirnov         migrate_fn = QEMU_PSCI_0_1_FN_MIGRATE;
4644cbca7d9SAndrey Smirnov     }
4654cbca7d9SAndrey Smirnov 
4664cbca7d9SAndrey Smirnov     /* We adopt the PSCI spec's nomenclature, and use 'conduit' to refer
4674cbca7d9SAndrey Smirnov      * to the instruction that should be used to invoke PSCI functions.
4684cbca7d9SAndrey Smirnov      * However, the device tree binding uses 'method' instead, so that is
4694cbca7d9SAndrey Smirnov      * what we should use here.
4704cbca7d9SAndrey Smirnov      */
4714cbca7d9SAndrey Smirnov     qemu_fdt_setprop_string(fdt, "/psci", "method", psci_method);
4724cbca7d9SAndrey Smirnov 
4734cbca7d9SAndrey Smirnov     qemu_fdt_setprop_cell(fdt, "/psci", "cpu_suspend", cpu_suspend_fn);
4744cbca7d9SAndrey Smirnov     qemu_fdt_setprop_cell(fdt, "/psci", "cpu_off", cpu_off_fn);
4754cbca7d9SAndrey Smirnov     qemu_fdt_setprop_cell(fdt, "/psci", "cpu_on", cpu_on_fn);
4764cbca7d9SAndrey Smirnov     qemu_fdt_setprop_cell(fdt, "/psci", "migrate", migrate_fn);
4774cbca7d9SAndrey Smirnov }
4784cbca7d9SAndrey Smirnov 
479fee8ea12SArd Biesheuvel /**
480fee8ea12SArd Biesheuvel  * load_dtb() - load a device tree binary image into memory
481fee8ea12SArd Biesheuvel  * @addr:       the address to load the image at
482fee8ea12SArd Biesheuvel  * @binfo:      struct describing the boot environment
483fee8ea12SArd Biesheuvel  * @addr_limit: upper limit of the available memory area at @addr
4849f43d4c3SPeter Maydell  * @as:         address space to load image to
485fee8ea12SArd Biesheuvel  *
486fee8ea12SArd Biesheuvel  * Load a device tree supplied by the machine or by the user  with the
487fee8ea12SArd Biesheuvel  * '-dtb' command line option, and put it at offset @addr in target
488fee8ea12SArd Biesheuvel  * memory.
489fee8ea12SArd Biesheuvel  *
490fee8ea12SArd Biesheuvel  * If @addr_limit contains a meaningful value (i.e., it is strictly greater
491fee8ea12SArd Biesheuvel  * than @addr), the device tree is only loaded if its size does not exceed
492fee8ea12SArd Biesheuvel  * the limit.
493fee8ea12SArd Biesheuvel  *
494fee8ea12SArd Biesheuvel  * Returns: the size of the device tree image on success,
495fee8ea12SArd Biesheuvel  *          0 if the image size exceeds the limit,
496fee8ea12SArd Biesheuvel  *          -1 on errors.
497a554ecb4Szhanghailiang  *
498a554ecb4Szhanghailiang  * Note: Must not be called unless have_dtb(binfo) is true.
499fee8ea12SArd Biesheuvel  */
500fee8ea12SArd Biesheuvel static int load_dtb(hwaddr addr, const struct arm_boot_info *binfo,
5019f43d4c3SPeter Maydell                     hwaddr addr_limit, AddressSpace *as)
50253018216SPaolo Bonzini {
50353018216SPaolo Bonzini     void *fdt = NULL;
50453018216SPaolo Bonzini     int size, rc;
50570976c41SPeter Maydell     uint32_t acells, scells;
5069695200aSShannon Zhao     char *nodename;
5079695200aSShannon Zhao     unsigned int i;
5089695200aSShannon Zhao     hwaddr mem_base, mem_len;
50953018216SPaolo Bonzini 
5100fb79851SJohn Rigby     if (binfo->dtb_filename) {
5110fb79851SJohn Rigby         char *filename;
51253018216SPaolo Bonzini         filename = qemu_find_file(QEMU_FILE_TYPE_BIOS, binfo->dtb_filename);
51353018216SPaolo Bonzini         if (!filename) {
51453018216SPaolo Bonzini             fprintf(stderr, "Couldn't open dtb file %s\n", binfo->dtb_filename);
515c23045deSPeter Maydell             goto fail;
51653018216SPaolo Bonzini         }
51753018216SPaolo Bonzini 
51853018216SPaolo Bonzini         fdt = load_device_tree(filename, &size);
51953018216SPaolo Bonzini         if (!fdt) {
52053018216SPaolo Bonzini             fprintf(stderr, "Couldn't open dtb file %s\n", filename);
52153018216SPaolo Bonzini             g_free(filename);
522c23045deSPeter Maydell             goto fail;
52353018216SPaolo Bonzini         }
52453018216SPaolo Bonzini         g_free(filename);
525a554ecb4Szhanghailiang     } else {
5260fb79851SJohn Rigby         fdt = binfo->get_dtb(binfo, &size);
5270fb79851SJohn Rigby         if (!fdt) {
5280fb79851SJohn Rigby             fprintf(stderr, "Board was unable to create a dtb blob\n");
5290fb79851SJohn Rigby             goto fail;
5300fb79851SJohn Rigby         }
5310fb79851SJohn Rigby     }
53253018216SPaolo Bonzini 
533fee8ea12SArd Biesheuvel     if (addr_limit > addr && size > (addr_limit - addr)) {
534fee8ea12SArd Biesheuvel         /* Installing the device tree blob at addr would exceed addr_limit.
535fee8ea12SArd Biesheuvel          * Whether this constitutes failure is up to the caller to decide,
536fee8ea12SArd Biesheuvel          * so just return 0 as size, i.e., no error.
537fee8ea12SArd Biesheuvel          */
538fee8ea12SArd Biesheuvel         g_free(fdt);
539fee8ea12SArd Biesheuvel         return 0;
540fee8ea12SArd Biesheuvel     }
541fee8ea12SArd Biesheuvel 
54258e71097SEric Auger     acells = qemu_fdt_getprop_cell(fdt, "/", "#address-cells",
54358e71097SEric Auger                                    NULL, &error_fatal);
54458e71097SEric Auger     scells = qemu_fdt_getprop_cell(fdt, "/", "#size-cells",
54558e71097SEric Auger                                    NULL, &error_fatal);
54653018216SPaolo Bonzini     if (acells == 0 || scells == 0) {
54753018216SPaolo Bonzini         fprintf(stderr, "dtb file invalid (#address-cells or #size-cells 0)\n");
548c23045deSPeter Maydell         goto fail;
54953018216SPaolo Bonzini     }
55053018216SPaolo Bonzini 
55170976c41SPeter Maydell     if (scells < 2 && binfo->ram_size >= (1ULL << 32)) {
55270976c41SPeter Maydell         /* This is user error so deserves a friendlier error message
55370976c41SPeter Maydell          * than the failure of setprop_sized_cells would provide
55470976c41SPeter Maydell          */
55553018216SPaolo Bonzini         fprintf(stderr, "qemu: dtb file not compatible with "
55653018216SPaolo Bonzini                 "RAM size > 4GB\n");
557c23045deSPeter Maydell         goto fail;
55853018216SPaolo Bonzini     }
55953018216SPaolo Bonzini 
5609695200aSShannon Zhao     if (nb_numa_nodes > 0) {
5619695200aSShannon Zhao         /*
5629695200aSShannon Zhao          * Turn the /memory node created before into a NOP node, then create
5639695200aSShannon Zhao          * /memory@addr nodes for all numa nodes respectively.
5649695200aSShannon Zhao          */
5659695200aSShannon Zhao         qemu_fdt_nop_node(fdt, "/memory");
5669695200aSShannon Zhao         mem_base = binfo->loader_start;
5679695200aSShannon Zhao         for (i = 0; i < nb_numa_nodes; i++) {
5689695200aSShannon Zhao             mem_len = numa_info[i].node_mem;
5699695200aSShannon Zhao             nodename = g_strdup_printf("/memory@%" PRIx64, mem_base);
5709695200aSShannon Zhao             qemu_fdt_add_subnode(fdt, nodename);
5719695200aSShannon Zhao             qemu_fdt_setprop_string(fdt, nodename, "device_type", "memory");
5729695200aSShannon Zhao             rc = qemu_fdt_setprop_sized_cells(fdt, nodename, "reg",
5739695200aSShannon Zhao                                               acells, mem_base,
5749695200aSShannon Zhao                                               scells, mem_len);
5759695200aSShannon Zhao             if (rc < 0) {
5769695200aSShannon Zhao                 fprintf(stderr, "couldn't set %s/reg for node %d\n", nodename,
5779695200aSShannon Zhao                         i);
5789695200aSShannon Zhao                 goto fail;
5799695200aSShannon Zhao             }
5809695200aSShannon Zhao 
5819695200aSShannon Zhao             qemu_fdt_setprop_cell(fdt, nodename, "numa-node-id", i);
5829695200aSShannon Zhao             mem_base += mem_len;
5839695200aSShannon Zhao             g_free(nodename);
5849695200aSShannon Zhao         }
5859695200aSShannon Zhao     } else {
586b77257d7SGuenter Roeck         Error *err = NULL;
587b77257d7SGuenter Roeck 
588b77257d7SGuenter Roeck         rc = fdt_path_offset(fdt, "/memory");
589b77257d7SGuenter Roeck         if (rc < 0) {
590b77257d7SGuenter Roeck             qemu_fdt_add_subnode(fdt, "/memory");
591b77257d7SGuenter Roeck         }
592b77257d7SGuenter Roeck 
593b77257d7SGuenter Roeck         if (!qemu_fdt_getprop(fdt, "/memory", "device_type", NULL, &err)) {
594b77257d7SGuenter Roeck             qemu_fdt_setprop_string(fdt, "/memory", "device_type", "memory");
595b77257d7SGuenter Roeck         }
596b77257d7SGuenter Roeck 
5975a4348d1SPeter Crosthwaite         rc = qemu_fdt_setprop_sized_cells(fdt, "/memory", "reg",
59870976c41SPeter Maydell                                           acells, binfo->loader_start,
59970976c41SPeter Maydell                                           scells, binfo->ram_size);
60053018216SPaolo Bonzini         if (rc < 0) {
60153018216SPaolo Bonzini             fprintf(stderr, "couldn't set /memory/reg\n");
602c23045deSPeter Maydell             goto fail;
60353018216SPaolo Bonzini         }
6049695200aSShannon Zhao     }
60553018216SPaolo Bonzini 
606b77257d7SGuenter Roeck     rc = fdt_path_offset(fdt, "/chosen");
607b77257d7SGuenter Roeck     if (rc < 0) {
608b77257d7SGuenter Roeck         qemu_fdt_add_subnode(fdt, "/chosen");
609b77257d7SGuenter Roeck     }
610b77257d7SGuenter Roeck 
61153018216SPaolo Bonzini     if (binfo->kernel_cmdline && *binfo->kernel_cmdline) {
6125a4348d1SPeter Crosthwaite         rc = qemu_fdt_setprop_string(fdt, "/chosen", "bootargs",
61353018216SPaolo Bonzini                                      binfo->kernel_cmdline);
61453018216SPaolo Bonzini         if (rc < 0) {
61553018216SPaolo Bonzini             fprintf(stderr, "couldn't set /chosen/bootargs\n");
616c23045deSPeter Maydell             goto fail;
61753018216SPaolo Bonzini         }
61853018216SPaolo Bonzini     }
61953018216SPaolo Bonzini 
62053018216SPaolo Bonzini     if (binfo->initrd_size) {
6215a4348d1SPeter Crosthwaite         rc = qemu_fdt_setprop_cell(fdt, "/chosen", "linux,initrd-start",
62253018216SPaolo Bonzini                                    binfo->initrd_start);
62353018216SPaolo Bonzini         if (rc < 0) {
62453018216SPaolo Bonzini             fprintf(stderr, "couldn't set /chosen/linux,initrd-start\n");
625c23045deSPeter Maydell             goto fail;
62653018216SPaolo Bonzini         }
62753018216SPaolo Bonzini 
6285a4348d1SPeter Crosthwaite         rc = qemu_fdt_setprop_cell(fdt, "/chosen", "linux,initrd-end",
62953018216SPaolo Bonzini                                    binfo->initrd_start + binfo->initrd_size);
63053018216SPaolo Bonzini         if (rc < 0) {
63153018216SPaolo Bonzini             fprintf(stderr, "couldn't set /chosen/linux,initrd-end\n");
632c23045deSPeter Maydell             goto fail;
63353018216SPaolo Bonzini         }
63453018216SPaolo Bonzini     }
6353b1cceb8SPeter Maydell 
6364cbca7d9SAndrey Smirnov     fdt_add_psci_node(fdt);
6374cbca7d9SAndrey Smirnov 
6383b1cceb8SPeter Maydell     if (binfo->modify_dtb) {
6393b1cceb8SPeter Maydell         binfo->modify_dtb(binfo, fdt);
6403b1cceb8SPeter Maydell     }
6413b1cceb8SPeter Maydell 
6425a4348d1SPeter Crosthwaite     qemu_fdt_dumpdtb(fdt, size);
64353018216SPaolo Bonzini 
6444c4bf654SArd Biesheuvel     /* Put the DTB into the memory map as a ROM image: this will ensure
6454c4bf654SArd Biesheuvel      * the DTB is copied again upon reset, even if addr points into RAM.
6464c4bf654SArd Biesheuvel      */
6479f43d4c3SPeter Maydell     rom_add_blob_fixed_as("dtb", fdt, size, addr, as);
64853018216SPaolo Bonzini 
649c23045deSPeter Maydell     g_free(fdt);
650c23045deSPeter Maydell 
651fee8ea12SArd Biesheuvel     return size;
652c23045deSPeter Maydell 
653c23045deSPeter Maydell fail:
654c23045deSPeter Maydell     g_free(fdt);
655c23045deSPeter Maydell     return -1;
65653018216SPaolo Bonzini }
65753018216SPaolo Bonzini 
65853018216SPaolo Bonzini static void do_cpu_reset(void *opaque)
65953018216SPaolo Bonzini {
66053018216SPaolo Bonzini     ARMCPU *cpu = opaque;
6614df81c6eSPeter Crosthwaite     CPUState *cs = CPU(cpu);
66253018216SPaolo Bonzini     CPUARMState *env = &cpu->env;
66353018216SPaolo Bonzini     const struct arm_boot_info *info = env->boot_info;
66453018216SPaolo Bonzini 
6654df81c6eSPeter Crosthwaite     cpu_reset(cs);
66653018216SPaolo Bonzini     if (info) {
66753018216SPaolo Bonzini         if (!info->is_linux) {
6689776f636SPeter Crosthwaite             int i;
66953018216SPaolo Bonzini             /* Jump to the entry point.  */
6704df81c6eSPeter Crosthwaite             uint64_t entry = info->entry;
6714df81c6eSPeter Crosthwaite 
6729776f636SPeter Crosthwaite             switch (info->endianness) {
6739776f636SPeter Crosthwaite             case ARM_ENDIANNESS_LE:
6749776f636SPeter Crosthwaite                 env->cp15.sctlr_el[1] &= ~SCTLR_E0E;
6759776f636SPeter Crosthwaite                 for (i = 1; i < 4; ++i) {
6769776f636SPeter Crosthwaite                     env->cp15.sctlr_el[i] &= ~SCTLR_EE;
6779776f636SPeter Crosthwaite                 }
6789776f636SPeter Crosthwaite                 env->uncached_cpsr &= ~CPSR_E;
6799776f636SPeter Crosthwaite                 break;
6809776f636SPeter Crosthwaite             case ARM_ENDIANNESS_BE8:
6819776f636SPeter Crosthwaite                 env->cp15.sctlr_el[1] |= SCTLR_E0E;
6829776f636SPeter Crosthwaite                 for (i = 1; i < 4; ++i) {
6839776f636SPeter Crosthwaite                     env->cp15.sctlr_el[i] |= SCTLR_EE;
6849776f636SPeter Crosthwaite                 }
6859776f636SPeter Crosthwaite                 env->uncached_cpsr |= CPSR_E;
6869776f636SPeter Crosthwaite                 break;
6879776f636SPeter Crosthwaite             case ARM_ENDIANNESS_BE32:
6889776f636SPeter Crosthwaite                 env->cp15.sctlr_el[1] |= SCTLR_B;
6899776f636SPeter Crosthwaite                 break;
6909776f636SPeter Crosthwaite             case ARM_ENDIANNESS_UNKNOWN:
6919776f636SPeter Crosthwaite                 break; /* Board's decision */
6929776f636SPeter Crosthwaite             default:
6939776f636SPeter Crosthwaite                 g_assert_not_reached();
6949776f636SPeter Crosthwaite             }
6959776f636SPeter Crosthwaite 
6964df81c6eSPeter Crosthwaite             if (!env->aarch64) {
69753018216SPaolo Bonzini                 env->thumb = info->entry & 1;
6984df81c6eSPeter Crosthwaite                 entry &= 0xfffffffe;
699a9047ec3SPeter Maydell             }
7004df81c6eSPeter Crosthwaite             cpu_set_pc(cs, entry);
70153018216SPaolo Bonzini         } else {
702c8e829b7SGreg Bellows             /* If we are booting Linux then we need to check whether we are
703c8e829b7SGreg Bellows              * booting into secure or non-secure state and adjust the state
704c8e829b7SGreg Bellows              * accordingly.  Out of reset, ARM is defined to be in secure state
705c8e829b7SGreg Bellows              * (SCR.NS = 0), we change that here if non-secure boot has been
706c8e829b7SGreg Bellows              * requested.
707c8e829b7SGreg Bellows              */
7085097227cSGreg Bellows             if (arm_feature(env, ARM_FEATURE_EL3)) {
7095097227cSGreg Bellows                 /* AArch64 is defined to come out of reset into EL3 if enabled.
7105097227cSGreg Bellows                  * If we are booting Linux then we need to adjust our EL as
7115097227cSGreg Bellows                  * Linux expects us to be in EL2 or EL1.  AArch32 resets into
7125097227cSGreg Bellows                  * SVC, which Linux expects, so no privilege/exception level to
7135097227cSGreg Bellows                  * adjust.
7145097227cSGreg Bellows                  */
7155097227cSGreg Bellows                 if (env->aarch64) {
71648d21a57SEdgar E. Iglesias                     env->cp15.scr_el3 |= SCR_RW;
7175097227cSGreg Bellows                     if (arm_feature(env, ARM_FEATURE_EL2)) {
71848d21a57SEdgar E. Iglesias                         env->cp15.hcr_el2 |= HCR_RW;
7195097227cSGreg Bellows                         env->pstate = PSTATE_MODE_EL2h;
7205097227cSGreg Bellows                     } else {
7215097227cSGreg Bellows                         env->pstate = PSTATE_MODE_EL1h;
7225097227cSGreg Bellows                     }
723*43118f43SPeter Maydell                     /* AArch64 kernels never boot in secure mode */
724*43118f43SPeter Maydell                     assert(!info->secure_boot);
725*43118f43SPeter Maydell                     /* This hook is only supported for AArch32 currently:
726*43118f43SPeter Maydell                      * bootloader_aarch64[] will not call the hook, and
727*43118f43SPeter Maydell                      * the code above has already dropped us into EL2 or EL1.
728*43118f43SPeter Maydell                      */
729*43118f43SPeter Maydell                     assert(!info->secure_board_setup);
7305097227cSGreg Bellows                 }
7315097227cSGreg Bellows 
7325097227cSGreg Bellows                 /* Set to non-secure if not a secure boot */
733baf6b681SPeter Crosthwaite                 if (!info->secure_boot &&
734baf6b681SPeter Crosthwaite                     (cs != first_cpu || !info->secure_board_setup)) {
7355097227cSGreg Bellows                     /* Linux expects non-secure state */
736c8e829b7SGreg Bellows                     env->cp15.scr_el3 |= SCR_NS;
737c8e829b7SGreg Bellows                 }
7385097227cSGreg Bellows             }
739c8e829b7SGreg Bellows 
7404df81c6eSPeter Crosthwaite             if (cs == first_cpu) {
7419f43d4c3SPeter Maydell                 AddressSpace *as = arm_boot_address_space(cpu, info);
7429f43d4c3SPeter Maydell 
7434df81c6eSPeter Crosthwaite                 cpu_set_pc(cs, info->loader_start);
7444d9ebf75SMian M. Hamayun 
74583bfffecSPeter Maydell                 if (!have_dtb(info)) {
74653018216SPaolo Bonzini                     if (old_param) {
7479f43d4c3SPeter Maydell                         set_kernel_args_old(info, as);
74853018216SPaolo Bonzini                     } else {
7499f43d4c3SPeter Maydell                         set_kernel_args(info, as);
75053018216SPaolo Bonzini                     }
75153018216SPaolo Bonzini                 }
75253018216SPaolo Bonzini             } else {
75353018216SPaolo Bonzini                 info->secondary_cpu_reset_hook(cpu, info);
75453018216SPaolo Bonzini             }
75553018216SPaolo Bonzini         }
75653018216SPaolo Bonzini     }
75753018216SPaolo Bonzini }
75853018216SPaolo Bonzini 
75907abe45cSLaszlo Ersek /**
76007abe45cSLaszlo Ersek  * load_image_to_fw_cfg() - Load an image file into an fw_cfg entry identified
76107abe45cSLaszlo Ersek  *                          by key.
76207abe45cSLaszlo Ersek  * @fw_cfg:         The firmware config instance to store the data in.
76307abe45cSLaszlo Ersek  * @size_key:       The firmware config key to store the size of the loaded
76407abe45cSLaszlo Ersek  *                  data under, with fw_cfg_add_i32().
76507abe45cSLaszlo Ersek  * @data_key:       The firmware config key to store the loaded data under,
76607abe45cSLaszlo Ersek  *                  with fw_cfg_add_bytes().
76707abe45cSLaszlo Ersek  * @image_name:     The name of the image file to load. If it is NULL, the
76807abe45cSLaszlo Ersek  *                  function returns without doing anything.
76907abe45cSLaszlo Ersek  * @try_decompress: Whether the image should be decompressed (gunzipped) before
77007abe45cSLaszlo Ersek  *                  adding it to fw_cfg. If decompression fails, the image is
77107abe45cSLaszlo Ersek  *                  loaded as-is.
77207abe45cSLaszlo Ersek  *
77307abe45cSLaszlo Ersek  * In case of failure, the function prints an error message to stderr and the
77407abe45cSLaszlo Ersek  * process exits with status 1.
77507abe45cSLaszlo Ersek  */
77607abe45cSLaszlo Ersek static void load_image_to_fw_cfg(FWCfgState *fw_cfg, uint16_t size_key,
77707abe45cSLaszlo Ersek                                  uint16_t data_key, const char *image_name,
77807abe45cSLaszlo Ersek                                  bool try_decompress)
77907abe45cSLaszlo Ersek {
78007abe45cSLaszlo Ersek     size_t size = -1;
78107abe45cSLaszlo Ersek     uint8_t *data;
78207abe45cSLaszlo Ersek 
78307abe45cSLaszlo Ersek     if (image_name == NULL) {
78407abe45cSLaszlo Ersek         return;
78507abe45cSLaszlo Ersek     }
78607abe45cSLaszlo Ersek 
78707abe45cSLaszlo Ersek     if (try_decompress) {
78807abe45cSLaszlo Ersek         size = load_image_gzipped_buffer(image_name,
78907abe45cSLaszlo Ersek                                          LOAD_IMAGE_MAX_GUNZIP_BYTES, &data);
79007abe45cSLaszlo Ersek     }
79107abe45cSLaszlo Ersek 
79207abe45cSLaszlo Ersek     if (size == (size_t)-1) {
79307abe45cSLaszlo Ersek         gchar *contents;
79407abe45cSLaszlo Ersek         gsize length;
79507abe45cSLaszlo Ersek 
79607abe45cSLaszlo Ersek         if (!g_file_get_contents(image_name, &contents, &length, NULL)) {
797c0dbca36SAlistair Francis             error_report("failed to load \"%s\"", image_name);
79807abe45cSLaszlo Ersek             exit(1);
79907abe45cSLaszlo Ersek         }
80007abe45cSLaszlo Ersek         size = length;
80107abe45cSLaszlo Ersek         data = (uint8_t *)contents;
80207abe45cSLaszlo Ersek     }
80307abe45cSLaszlo Ersek 
80407abe45cSLaszlo Ersek     fw_cfg_add_i32(fw_cfg, size_key, size);
80507abe45cSLaszlo Ersek     fw_cfg_add_bytes(fw_cfg, data_key, data, size);
80607abe45cSLaszlo Ersek }
80707abe45cSLaszlo Ersek 
808d8b1ae42SPeter Maydell static int do_arm_linux_init(Object *obj, void *opaque)
809d8b1ae42SPeter Maydell {
810d8b1ae42SPeter Maydell     if (object_dynamic_cast(obj, TYPE_ARM_LINUX_BOOT_IF)) {
811d8b1ae42SPeter Maydell         ARMLinuxBootIf *albif = ARM_LINUX_BOOT_IF(obj);
812d8b1ae42SPeter Maydell         ARMLinuxBootIfClass *albifc = ARM_LINUX_BOOT_IF_GET_CLASS(obj);
813d8b1ae42SPeter Maydell         struct arm_boot_info *info = opaque;
814d8b1ae42SPeter Maydell 
815d8b1ae42SPeter Maydell         if (albifc->arm_linux_init) {
816d8b1ae42SPeter Maydell             albifc->arm_linux_init(albif, info->secure_boot);
817d8b1ae42SPeter Maydell         }
818d8b1ae42SPeter Maydell     }
819d8b1ae42SPeter Maydell     return 0;
820d8b1ae42SPeter Maydell }
821d8b1ae42SPeter Maydell 
8229776f636SPeter Crosthwaite static uint64_t arm_load_elf(struct arm_boot_info *info, uint64_t *pentry,
8239776f636SPeter Crosthwaite                              uint64_t *lowaddr, uint64_t *highaddr,
8249f43d4c3SPeter Maydell                              int elf_machine, AddressSpace *as)
8259776f636SPeter Crosthwaite {
8269776f636SPeter Crosthwaite     bool elf_is64;
8279776f636SPeter Crosthwaite     union {
8289776f636SPeter Crosthwaite         Elf32_Ehdr h32;
8299776f636SPeter Crosthwaite         Elf64_Ehdr h64;
8309776f636SPeter Crosthwaite     } elf_header;
8319776f636SPeter Crosthwaite     int data_swab = 0;
8329776f636SPeter Crosthwaite     bool big_endian;
8339776f636SPeter Crosthwaite     uint64_t ret = -1;
8349776f636SPeter Crosthwaite     Error *err = NULL;
8359776f636SPeter Crosthwaite 
8369776f636SPeter Crosthwaite 
8379776f636SPeter Crosthwaite     load_elf_hdr(info->kernel_filename, &elf_header, &elf_is64, &err);
8389776f636SPeter Crosthwaite     if (err) {
83936f876ceSMarc-André Lureau         error_free(err);
8409776f636SPeter Crosthwaite         return ret;
8419776f636SPeter Crosthwaite     }
8429776f636SPeter Crosthwaite 
8439776f636SPeter Crosthwaite     if (elf_is64) {
8449776f636SPeter Crosthwaite         big_endian = elf_header.h64.e_ident[EI_DATA] == ELFDATA2MSB;
8459776f636SPeter Crosthwaite         info->endianness = big_endian ? ARM_ENDIANNESS_BE8
8469776f636SPeter Crosthwaite                                       : ARM_ENDIANNESS_LE;
8479776f636SPeter Crosthwaite     } else {
8489776f636SPeter Crosthwaite         big_endian = elf_header.h32.e_ident[EI_DATA] == ELFDATA2MSB;
8499776f636SPeter Crosthwaite         if (big_endian) {
8509776f636SPeter Crosthwaite             if (bswap32(elf_header.h32.e_flags) & EF_ARM_BE8) {
8519776f636SPeter Crosthwaite                 info->endianness = ARM_ENDIANNESS_BE8;
8529776f636SPeter Crosthwaite             } else {
8539776f636SPeter Crosthwaite                 info->endianness = ARM_ENDIANNESS_BE32;
8549776f636SPeter Crosthwaite                 /* In BE32, the CPU has a different view of the per-byte
8559776f636SPeter Crosthwaite                  * address map than the rest of the system. BE32 ELF files
8569776f636SPeter Crosthwaite                  * are organised such that they can be programmed through
8579776f636SPeter Crosthwaite                  * the CPU's per-word byte-reversed view of the world. QEMU
8589776f636SPeter Crosthwaite                  * however loads ELF files independently of the CPU. So
8599776f636SPeter Crosthwaite                  * tell the ELF loader to byte reverse the data for us.
8609776f636SPeter Crosthwaite                  */
8619776f636SPeter Crosthwaite                 data_swab = 2;
8629776f636SPeter Crosthwaite             }
8639776f636SPeter Crosthwaite         } else {
8649776f636SPeter Crosthwaite             info->endianness = ARM_ENDIANNESS_LE;
8659776f636SPeter Crosthwaite         }
8669776f636SPeter Crosthwaite     }
8679776f636SPeter Crosthwaite 
8689f43d4c3SPeter Maydell     ret = load_elf_as(info->kernel_filename, NULL, NULL,
8699776f636SPeter Crosthwaite                       pentry, lowaddr, highaddr, big_endian, elf_machine,
8709f43d4c3SPeter Maydell                       1, data_swab, as);
8719776f636SPeter Crosthwaite     if (ret <= 0) {
8729776f636SPeter Crosthwaite         /* The header loaded but the image didn't */
8739776f636SPeter Crosthwaite         exit(1);
8749776f636SPeter Crosthwaite     }
8759776f636SPeter Crosthwaite 
8769776f636SPeter Crosthwaite     return ret;
8779776f636SPeter Crosthwaite }
8789776f636SPeter Crosthwaite 
87968115ed5SArd Biesheuvel static uint64_t load_aarch64_image(const char *filename, hwaddr mem_base,
8809f43d4c3SPeter Maydell                                    hwaddr *entry, AddressSpace *as)
88168115ed5SArd Biesheuvel {
88268115ed5SArd Biesheuvel     hwaddr kernel_load_offset = KERNEL64_LOAD_ADDR;
88368115ed5SArd Biesheuvel     uint8_t *buffer;
88468115ed5SArd Biesheuvel     int size;
88568115ed5SArd Biesheuvel 
88668115ed5SArd Biesheuvel     /* On aarch64, it's the bootloader's job to uncompress the kernel. */
88768115ed5SArd Biesheuvel     size = load_image_gzipped_buffer(filename, LOAD_IMAGE_MAX_GUNZIP_BYTES,
88868115ed5SArd Biesheuvel                                      &buffer);
88968115ed5SArd Biesheuvel 
89068115ed5SArd Biesheuvel     if (size < 0) {
89168115ed5SArd Biesheuvel         gsize len;
89268115ed5SArd Biesheuvel 
89368115ed5SArd Biesheuvel         /* Load as raw file otherwise */
89468115ed5SArd Biesheuvel         if (!g_file_get_contents(filename, (char **)&buffer, &len, NULL)) {
89568115ed5SArd Biesheuvel             return -1;
89668115ed5SArd Biesheuvel         }
89768115ed5SArd Biesheuvel         size = len;
89868115ed5SArd Biesheuvel     }
89968115ed5SArd Biesheuvel 
90068115ed5SArd Biesheuvel     /* check the arm64 magic header value -- very old kernels may not have it */
90127640407SMarc-André Lureau     if (size > ARM64_MAGIC_OFFSET + 4 &&
90227640407SMarc-André Lureau         memcmp(buffer + ARM64_MAGIC_OFFSET, "ARM\x64", 4) == 0) {
90368115ed5SArd Biesheuvel         uint64_t hdrvals[2];
90468115ed5SArd Biesheuvel 
90568115ed5SArd Biesheuvel         /* The arm64 Image header has text_offset and image_size fields at 8 and
90668115ed5SArd Biesheuvel          * 16 bytes into the Image header, respectively. The text_offset field
90768115ed5SArd Biesheuvel          * is only valid if the image_size is non-zero.
90868115ed5SArd Biesheuvel          */
90968115ed5SArd Biesheuvel         memcpy(&hdrvals, buffer + ARM64_TEXT_OFFSET_OFFSET, sizeof(hdrvals));
91068115ed5SArd Biesheuvel         if (hdrvals[1] != 0) {
91168115ed5SArd Biesheuvel             kernel_load_offset = le64_to_cpu(hdrvals[0]);
91268115ed5SArd Biesheuvel         }
91368115ed5SArd Biesheuvel     }
91468115ed5SArd Biesheuvel 
91568115ed5SArd Biesheuvel     *entry = mem_base + kernel_load_offset;
9169f43d4c3SPeter Maydell     rom_add_blob_fixed_as(filename, buffer, size, *entry, as);
91768115ed5SArd Biesheuvel 
91868115ed5SArd Biesheuvel     g_free(buffer);
91968115ed5SArd Biesheuvel 
92068115ed5SArd Biesheuvel     return size;
92168115ed5SArd Biesheuvel }
92268115ed5SArd Biesheuvel 
923ac9d32e3SEric Auger static void arm_load_kernel_notify(Notifier *notifier, void *data)
92453018216SPaolo Bonzini {
925c6faa758SArd Biesheuvel     CPUState *cs;
92653018216SPaolo Bonzini     int kernel_size;
92753018216SPaolo Bonzini     int initrd_size;
92853018216SPaolo Bonzini     int is_linux = 0;
92992df8450SArd Biesheuvel     uint64_t elf_entry, elf_low_addr, elf_high_addr;
930da0af40dSPeter Maydell     int elf_machine;
93168115ed5SArd Biesheuvel     hwaddr entry;
9324d9ebf75SMian M. Hamayun     static const ARMInsnFixup *primary_loader;
933ac9d32e3SEric Auger     ArmLoadKernelNotifier *n = DO_UPCAST(ArmLoadKernelNotifier,
934ac9d32e3SEric Auger                                          notifier, notifier);
935ac9d32e3SEric Auger     ARMCPU *cpu = n->cpu;
936ac9d32e3SEric Auger     struct arm_boot_info *info =
937ac9d32e3SEric Auger         container_of(n, struct arm_boot_info, load_kernel_notifier);
9389f43d4c3SPeter Maydell     AddressSpace *as = arm_boot_address_space(cpu, info);
93953018216SPaolo Bonzini 
940baf6b681SPeter Crosthwaite     /* The board code is not supposed to set secure_board_setup unless
941baf6b681SPeter Crosthwaite      * running its code in secure mode is actually possible, and KVM
942baf6b681SPeter Crosthwaite      * doesn't support secure.
943baf6b681SPeter Crosthwaite      */
944baf6b681SPeter Crosthwaite     assert(!(info->secure_board_setup && kvm_enabled()));
945baf6b681SPeter Crosthwaite 
9464c8afda7SMichael Olbrich     info->dtb_filename = qemu_opt_get(qemu_get_machine_opts(), "dtb");
9474c8afda7SMichael Olbrich 
94853018216SPaolo Bonzini     /* Load the kernel.  */
94907abe45cSLaszlo Ersek     if (!info->kernel_filename || info->firmware_loaded) {
95069e7f76fSArd Biesheuvel 
95169e7f76fSArd Biesheuvel         if (have_dtb(info)) {
95207abe45cSLaszlo Ersek             /* If we have a device tree blob, but no kernel to supply it to (or
95307abe45cSLaszlo Ersek              * the kernel is supposed to be loaded by the bootloader), copy the
95407abe45cSLaszlo Ersek              * DTB to the base of RAM for the bootloader to pick up.
95569e7f76fSArd Biesheuvel              */
9569f43d4c3SPeter Maydell             if (load_dtb(info->loader_start, info, 0, as) < 0) {
95769e7f76fSArd Biesheuvel                 exit(1);
95869e7f76fSArd Biesheuvel             }
95969e7f76fSArd Biesheuvel         }
96069e7f76fSArd Biesheuvel 
96107abe45cSLaszlo Ersek         if (info->kernel_filename) {
96207abe45cSLaszlo Ersek             FWCfgState *fw_cfg;
96307abe45cSLaszlo Ersek             bool try_decompressing_kernel;
96407abe45cSLaszlo Ersek 
96507abe45cSLaszlo Ersek             fw_cfg = fw_cfg_find();
96607abe45cSLaszlo Ersek             try_decompressing_kernel = arm_feature(&cpu->env,
96707abe45cSLaszlo Ersek                                                    ARM_FEATURE_AARCH64);
96807abe45cSLaszlo Ersek 
96907abe45cSLaszlo Ersek             /* Expose the kernel, the command line, and the initrd in fw_cfg.
97007abe45cSLaszlo Ersek              * We don't process them here at all, it's all left to the
97107abe45cSLaszlo Ersek              * firmware.
97207abe45cSLaszlo Ersek              */
97307abe45cSLaszlo Ersek             load_image_to_fw_cfg(fw_cfg,
97407abe45cSLaszlo Ersek                                  FW_CFG_KERNEL_SIZE, FW_CFG_KERNEL_DATA,
97507abe45cSLaszlo Ersek                                  info->kernel_filename,
97607abe45cSLaszlo Ersek                                  try_decompressing_kernel);
97707abe45cSLaszlo Ersek             load_image_to_fw_cfg(fw_cfg,
97807abe45cSLaszlo Ersek                                  FW_CFG_INITRD_SIZE, FW_CFG_INITRD_DATA,
97907abe45cSLaszlo Ersek                                  info->initrd_filename, false);
98007abe45cSLaszlo Ersek 
98107abe45cSLaszlo Ersek             if (info->kernel_cmdline) {
98207abe45cSLaszlo Ersek                 fw_cfg_add_i32(fw_cfg, FW_CFG_CMDLINE_SIZE,
98307abe45cSLaszlo Ersek                                strlen(info->kernel_cmdline) + 1);
98407abe45cSLaszlo Ersek                 fw_cfg_add_string(fw_cfg, FW_CFG_CMDLINE_DATA,
98507abe45cSLaszlo Ersek                                   info->kernel_cmdline);
98607abe45cSLaszlo Ersek             }
98707abe45cSLaszlo Ersek         }
98807abe45cSLaszlo Ersek 
98907abe45cSLaszlo Ersek         /* We will start from address 0 (typically a boot ROM image) in the
99007abe45cSLaszlo Ersek          * same way as hardware.
9919546dbabSPeter Maydell          */
9929546dbabSPeter Maydell         return;
99353018216SPaolo Bonzini     }
99453018216SPaolo Bonzini 
9954d9ebf75SMian M. Hamayun     if (arm_feature(&cpu->env, ARM_FEATURE_AARCH64)) {
9964d9ebf75SMian M. Hamayun         primary_loader = bootloader_aarch64;
997da0af40dSPeter Maydell         elf_machine = EM_AARCH64;
9984d9ebf75SMian M. Hamayun     } else {
9994d9ebf75SMian M. Hamayun         primary_loader = bootloader;
100010b8ec73SPeter Crosthwaite         if (!info->write_board_setup) {
100110b8ec73SPeter Crosthwaite             primary_loader += BOOTLOADER_NO_BOARD_SETUP_OFFSET;
100210b8ec73SPeter Crosthwaite         }
1003da0af40dSPeter Maydell         elf_machine = EM_ARM;
10044d9ebf75SMian M. Hamayun     }
10054d9ebf75SMian M. Hamayun 
100653018216SPaolo Bonzini     if (!info->secondary_cpu_reset_hook) {
100753018216SPaolo Bonzini         info->secondary_cpu_reset_hook = default_reset_secondary;
100853018216SPaolo Bonzini     }
100953018216SPaolo Bonzini     if (!info->write_secondary_boot) {
101053018216SPaolo Bonzini         info->write_secondary_boot = default_write_secondary;
101153018216SPaolo Bonzini     }
101253018216SPaolo Bonzini 
101353018216SPaolo Bonzini     if (info->nb_cpus == 0)
101453018216SPaolo Bonzini         info->nb_cpus = 1;
101553018216SPaolo Bonzini 
101653018216SPaolo Bonzini     /* We want to put the initrd far enough into RAM that when the
101753018216SPaolo Bonzini      * kernel is uncompressed it will not clobber the initrd. However
101853018216SPaolo Bonzini      * on boards without much RAM we must ensure that we still leave
101953018216SPaolo Bonzini      * enough room for a decent sized initrd, and on boards with large
102053018216SPaolo Bonzini      * amounts of RAM we must avoid the initrd being so far up in RAM
102153018216SPaolo Bonzini      * that it is outside lowmem and inaccessible to the kernel.
102253018216SPaolo Bonzini      * So for boards with less  than 256MB of RAM we put the initrd
102353018216SPaolo Bonzini      * halfway into RAM, and for boards with 256MB of RAM or more we put
102453018216SPaolo Bonzini      * the initrd at 128MB.
102553018216SPaolo Bonzini      */
102653018216SPaolo Bonzini     info->initrd_start = info->loader_start +
102753018216SPaolo Bonzini         MIN(info->ram_size / 2, 128 * 1024 * 1024);
102853018216SPaolo Bonzini 
102953018216SPaolo Bonzini     /* Assume that raw images are linux kernels, and ELF images are not.  */
10309776f636SPeter Crosthwaite     kernel_size = arm_load_elf(info, &elf_entry, &elf_low_addr,
10319f43d4c3SPeter Maydell                                &elf_high_addr, elf_machine, as);
103292df8450SArd Biesheuvel     if (kernel_size > 0 && have_dtb(info)) {
103392df8450SArd Biesheuvel         /* If there is still some room left at the base of RAM, try and put
103492df8450SArd Biesheuvel          * the DTB there like we do for images loaded with -bios or -pflash.
103592df8450SArd Biesheuvel          */
103692df8450SArd Biesheuvel         if (elf_low_addr > info->loader_start
103792df8450SArd Biesheuvel             || elf_high_addr < info->loader_start) {
103892df8450SArd Biesheuvel             /* Pass elf_low_addr as address limit to load_dtb if it may be
103992df8450SArd Biesheuvel              * pointing into RAM, otherwise pass '0' (no limit)
104092df8450SArd Biesheuvel              */
104192df8450SArd Biesheuvel             if (elf_low_addr < info->loader_start) {
104292df8450SArd Biesheuvel                 elf_low_addr = 0;
104392df8450SArd Biesheuvel             }
10449f43d4c3SPeter Maydell             if (load_dtb(info->loader_start, info, elf_low_addr, as) < 0) {
104592df8450SArd Biesheuvel                 exit(1);
104692df8450SArd Biesheuvel             }
104792df8450SArd Biesheuvel         }
104892df8450SArd Biesheuvel     }
104953018216SPaolo Bonzini     entry = elf_entry;
105053018216SPaolo Bonzini     if (kernel_size < 0) {
10519f43d4c3SPeter Maydell         kernel_size = load_uimage_as(info->kernel_filename, &entry, NULL,
10529f43d4c3SPeter Maydell                                      &is_linux, NULL, NULL, as);
105353018216SPaolo Bonzini     }
10546f5d3cbeSRichard W.M. Jones     if (arm_feature(&cpu->env, ARM_FEATURE_AARCH64) && kernel_size < 0) {
105568115ed5SArd Biesheuvel         kernel_size = load_aarch64_image(info->kernel_filename,
10569f43d4c3SPeter Maydell                                          info->loader_start, &entry, as);
10576f5d3cbeSRichard W.M. Jones         is_linux = 1;
105868115ed5SArd Biesheuvel     } else if (kernel_size < 0) {
105968115ed5SArd Biesheuvel         /* 32-bit ARM */
106068115ed5SArd Biesheuvel         entry = info->loader_start + KERNEL_LOAD_ADDR;
10619f43d4c3SPeter Maydell         kernel_size = load_image_targphys_as(info->kernel_filename, entry,
10629f43d4c3SPeter Maydell                                              info->ram_size - KERNEL_LOAD_ADDR,
10639f43d4c3SPeter Maydell                                              as);
106453018216SPaolo Bonzini         is_linux = 1;
106553018216SPaolo Bonzini     }
106653018216SPaolo Bonzini     if (kernel_size < 0) {
1067c0dbca36SAlistair Francis         error_report("could not load kernel '%s'", info->kernel_filename);
106853018216SPaolo Bonzini         exit(1);
106953018216SPaolo Bonzini     }
107053018216SPaolo Bonzini     info->entry = entry;
107153018216SPaolo Bonzini     if (is_linux) {
107247b1da81SPeter Maydell         uint32_t fixupcontext[FIXUP_MAX];
107347b1da81SPeter Maydell 
107453018216SPaolo Bonzini         if (info->initrd_filename) {
10759f43d4c3SPeter Maydell             initrd_size = load_ramdisk_as(info->initrd_filename,
1076fd76663eSSoren Brinkmann                                           info->initrd_start,
10779f43d4c3SPeter Maydell                                           info->ram_size - info->initrd_start,
10789f43d4c3SPeter Maydell                                           as);
1079fd76663eSSoren Brinkmann             if (initrd_size < 0) {
10809f43d4c3SPeter Maydell                 initrd_size = load_image_targphys_as(info->initrd_filename,
108153018216SPaolo Bonzini                                                      info->initrd_start,
108253018216SPaolo Bonzini                                                      info->ram_size -
10839f43d4c3SPeter Maydell                                                      info->initrd_start,
10849f43d4c3SPeter Maydell                                                      as);
1085fd76663eSSoren Brinkmann             }
108653018216SPaolo Bonzini             if (initrd_size < 0) {
1087c0dbca36SAlistair Francis                 error_report("could not load initrd '%s'",
108853018216SPaolo Bonzini                              info->initrd_filename);
108953018216SPaolo Bonzini                 exit(1);
109053018216SPaolo Bonzini             }
109153018216SPaolo Bonzini         } else {
109253018216SPaolo Bonzini             initrd_size = 0;
109353018216SPaolo Bonzini         }
109453018216SPaolo Bonzini         info->initrd_size = initrd_size;
109553018216SPaolo Bonzini 
109647b1da81SPeter Maydell         fixupcontext[FIXUP_BOARDID] = info->board_id;
109710b8ec73SPeter Crosthwaite         fixupcontext[FIXUP_BOARD_SETUP] = info->board_setup_addr;
109853018216SPaolo Bonzini 
109953018216SPaolo Bonzini         /* for device tree boot, we pass the DTB directly in r2. Otherwise
110053018216SPaolo Bonzini          * we point to the kernel args.
110153018216SPaolo Bonzini          */
110283bfffecSPeter Maydell         if (have_dtb(info)) {
110376e2aef3SAlexander Graf             hwaddr align;
110476e2aef3SAlexander Graf             hwaddr dtb_start;
110576e2aef3SAlexander Graf 
110676e2aef3SAlexander Graf             if (elf_machine == EM_AARCH64) {
110776e2aef3SAlexander Graf                 /*
110876e2aef3SAlexander Graf                  * Some AArch64 kernels on early bootup map the fdt region as
110976e2aef3SAlexander Graf                  *
111076e2aef3SAlexander Graf                  *   [ ALIGN_DOWN(fdt, 2MB) ... ALIGN_DOWN(fdt, 2MB) + 2MB ]
111176e2aef3SAlexander Graf                  *
111276e2aef3SAlexander Graf                  * Let's play safe and prealign it to 2MB to give us some space.
111353018216SPaolo Bonzini                  */
111476e2aef3SAlexander Graf                 align = 2 * 1024 * 1024;
111576e2aef3SAlexander Graf             } else {
111676e2aef3SAlexander Graf                 /*
111776e2aef3SAlexander Graf                  * Some 32bit kernels will trash anything in the 4K page the
111876e2aef3SAlexander Graf                  * initrd ends in, so make sure the DTB isn't caught up in that.
111976e2aef3SAlexander Graf                  */
112076e2aef3SAlexander Graf                 align = 4096;
112176e2aef3SAlexander Graf             }
112276e2aef3SAlexander Graf 
112376e2aef3SAlexander Graf             /* Place the DTB after the initrd in memory with alignment. */
112476e2aef3SAlexander Graf             dtb_start = QEMU_ALIGN_UP(info->initrd_start + initrd_size, align);
11259f43d4c3SPeter Maydell             if (load_dtb(dtb_start, info, 0, as) < 0) {
112653018216SPaolo Bonzini                 exit(1);
112753018216SPaolo Bonzini             }
112847b1da81SPeter Maydell             fixupcontext[FIXUP_ARGPTR] = dtb_start;
112953018216SPaolo Bonzini         } else {
113047b1da81SPeter Maydell             fixupcontext[FIXUP_ARGPTR] = info->loader_start + KERNEL_ARGS_ADDR;
113153018216SPaolo Bonzini             if (info->ram_size >= (1ULL << 32)) {
1132c0dbca36SAlistair Francis                 error_report("RAM size must be less than 4GB to boot"
113353018216SPaolo Bonzini                              " Linux kernel using ATAGS (try passing a device tree"
1134c0dbca36SAlistair Francis                              " using -dtb)");
113553018216SPaolo Bonzini                 exit(1);
113653018216SPaolo Bonzini             }
113753018216SPaolo Bonzini         }
113847b1da81SPeter Maydell         fixupcontext[FIXUP_ENTRYPOINT] = entry;
113947b1da81SPeter Maydell 
114047b1da81SPeter Maydell         write_bootloader("bootloader", info->loader_start,
11419f43d4c3SPeter Maydell                          primary_loader, fixupcontext, as);
114247b1da81SPeter Maydell 
114353018216SPaolo Bonzini         if (info->nb_cpus > 1) {
114453018216SPaolo Bonzini             info->write_secondary_boot(cpu, info);
114553018216SPaolo Bonzini         }
114610b8ec73SPeter Crosthwaite         if (info->write_board_setup) {
114710b8ec73SPeter Crosthwaite             info->write_board_setup(cpu, info);
114810b8ec73SPeter Crosthwaite         }
1149d8b1ae42SPeter Maydell 
1150d8b1ae42SPeter Maydell         /* Notify devices which need to fake up firmware initialization
1151d8b1ae42SPeter Maydell          * that we're doing a direct kernel boot.
1152d8b1ae42SPeter Maydell          */
1153d8b1ae42SPeter Maydell         object_child_foreach_recursive(object_get_root(),
1154d8b1ae42SPeter Maydell                                        do_arm_linux_init, info);
115553018216SPaolo Bonzini     }
115653018216SPaolo Bonzini     info->is_linux = is_linux;
115753018216SPaolo Bonzini 
1158c6faa758SArd Biesheuvel     for (cs = CPU(cpu); cs; cs = CPU_NEXT(cs)) {
1159c6faa758SArd Biesheuvel         ARM_CPU(cs)->env.boot_info = info;
116053018216SPaolo Bonzini     }
116153018216SPaolo Bonzini }
1162ac9d32e3SEric Auger 
1163ac9d32e3SEric Auger void arm_load_kernel(ARMCPU *cpu, struct arm_boot_info *info)
1164ac9d32e3SEric Auger {
116563a183edSEric Auger     CPUState *cs;
116663a183edSEric Auger 
1167ac9d32e3SEric Auger     info->load_kernel_notifier.cpu = cpu;
1168ac9d32e3SEric Auger     info->load_kernel_notifier.notifier.notify = arm_load_kernel_notify;
1169ac9d32e3SEric Auger     qemu_add_machine_init_done_notifier(&info->load_kernel_notifier.notifier);
117063a183edSEric Auger 
117163a183edSEric Auger     /* CPU objects (unlike devices) are not automatically reset on system
117263a183edSEric Auger      * reset, so we must always register a handler to do so. If we're
117363a183edSEric Auger      * actually loading a kernel, the handler is also responsible for
117463a183edSEric Auger      * arranging that we start it correctly.
117563a183edSEric Auger      */
117663a183edSEric Auger     for (cs = CPU(cpu); cs; cs = CPU_NEXT(cs)) {
117763a183edSEric Auger         qemu_register_reset(do_cpu_reset, ARM_CPU(cs));
117863a183edSEric Auger     }
1179ac9d32e3SEric Auger }
1180d8b1ae42SPeter Maydell 
1181d8b1ae42SPeter Maydell static const TypeInfo arm_linux_boot_if_info = {
1182d8b1ae42SPeter Maydell     .name = TYPE_ARM_LINUX_BOOT_IF,
1183d8b1ae42SPeter Maydell     .parent = TYPE_INTERFACE,
1184d8b1ae42SPeter Maydell     .class_size = sizeof(ARMLinuxBootIfClass),
1185d8b1ae42SPeter Maydell };
1186d8b1ae42SPeter Maydell 
1187d8b1ae42SPeter Maydell static void arm_linux_boot_register_types(void)
1188d8b1ae42SPeter Maydell {
1189d8b1ae42SPeter Maydell     type_register_static(&arm_linux_boot_if_info);
1190d8b1ae42SPeter Maydell }
1191d8b1ae42SPeter Maydell 
1192d8b1ae42SPeter Maydell type_init(arm_linux_boot_register_types)
1193