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 1053018216SPaolo Bonzini #include "config.h" 1153018216SPaolo Bonzini #include "hw/hw.h" 12bd2be150SPeter Maydell #include "hw/arm/arm.h" 13d8b1ae42SPeter Maydell #include "hw/arm/linux-boot-if.h" 1453018216SPaolo Bonzini #include "sysemu/sysemu.h" 1553018216SPaolo Bonzini #include "hw/boards.h" 1653018216SPaolo Bonzini #include "hw/loader.h" 1753018216SPaolo Bonzini #include "elf.h" 1853018216SPaolo Bonzini #include "sysemu/device_tree.h" 1953018216SPaolo Bonzini #include "qemu/config-file.h" 202198a121SEdgar E. Iglesias #include "exec/address-spaces.h" 2153018216SPaolo Bonzini 224d9ebf75SMian M. Hamayun /* Kernel boot protocol is specified in the kernel docs 234d9ebf75SMian M. Hamayun * Documentation/arm/Booting and Documentation/arm64/booting.txt 244d9ebf75SMian M. Hamayun * They have different preferred image load offsets from system RAM base. 254d9ebf75SMian M. Hamayun */ 2653018216SPaolo Bonzini #define KERNEL_ARGS_ADDR 0x100 2753018216SPaolo Bonzini #define KERNEL_LOAD_ADDR 0x00010000 284d9ebf75SMian M. Hamayun #define KERNEL64_LOAD_ADDR 0x00080000 2953018216SPaolo Bonzini 3047b1da81SPeter Maydell typedef enum { 3147b1da81SPeter Maydell FIXUP_NONE = 0, /* do nothing */ 3247b1da81SPeter Maydell FIXUP_TERMINATOR, /* end of insns */ 3347b1da81SPeter Maydell FIXUP_BOARDID, /* overwrite with board ID number */ 34*10b8ec73SPeter Crosthwaite FIXUP_BOARD_SETUP, /* overwrite with board specific setup code address */ 3547b1da81SPeter Maydell FIXUP_ARGPTR, /* overwrite with pointer to kernel args */ 3647b1da81SPeter Maydell FIXUP_ENTRYPOINT, /* overwrite with kernel entry point */ 3747b1da81SPeter Maydell FIXUP_GIC_CPU_IF, /* overwrite with GIC CPU interface address */ 3847b1da81SPeter Maydell FIXUP_BOOTREG, /* overwrite with boot register address */ 3947b1da81SPeter Maydell FIXUP_DSB, /* overwrite with correct DSB insn for cpu */ 4047b1da81SPeter Maydell FIXUP_MAX, 4147b1da81SPeter Maydell } FixupType; 4247b1da81SPeter Maydell 4347b1da81SPeter Maydell typedef struct ARMInsnFixup { 4447b1da81SPeter Maydell uint32_t insn; 4547b1da81SPeter Maydell FixupType fixup; 4647b1da81SPeter Maydell } ARMInsnFixup; 4747b1da81SPeter Maydell 484d9ebf75SMian M. Hamayun static const ARMInsnFixup bootloader_aarch64[] = { 494d9ebf75SMian M. Hamayun { 0x580000c0 }, /* ldr x0, arg ; Load the lower 32-bits of DTB */ 504d9ebf75SMian M. Hamayun { 0xaa1f03e1 }, /* mov x1, xzr */ 514d9ebf75SMian M. Hamayun { 0xaa1f03e2 }, /* mov x2, xzr */ 524d9ebf75SMian M. Hamayun { 0xaa1f03e3 }, /* mov x3, xzr */ 534d9ebf75SMian M. Hamayun { 0x58000084 }, /* ldr x4, entry ; Load the lower 32-bits of kernel entry */ 544d9ebf75SMian M. Hamayun { 0xd61f0080 }, /* br x4 ; Jump to the kernel entry point */ 554d9ebf75SMian M. Hamayun { 0, FIXUP_ARGPTR }, /* arg: .word @DTB Lower 32-bits */ 564d9ebf75SMian M. Hamayun { 0 }, /* .word @DTB Higher 32-bits */ 574d9ebf75SMian M. Hamayun { 0, FIXUP_ENTRYPOINT }, /* entry: .word @Kernel Entry Lower 32-bits */ 584d9ebf75SMian M. Hamayun { 0 }, /* .word @Kernel Entry Higher 32-bits */ 594d9ebf75SMian M. Hamayun { 0, FIXUP_TERMINATOR } 604d9ebf75SMian M. Hamayun }; 614d9ebf75SMian M. Hamayun 62*10b8ec73SPeter Crosthwaite /* A very small bootloader: call the board-setup code (if needed), 63*10b8ec73SPeter Crosthwaite * set r0-r2, then jump to the kernel. 64*10b8ec73SPeter Crosthwaite * If we're not calling boot setup code then we don't copy across 65*10b8ec73SPeter Crosthwaite * the first BOOTLOADER_NO_BOARD_SETUP_OFFSET insns in this array. 66*10b8ec73SPeter Crosthwaite */ 67*10b8ec73SPeter Crosthwaite 6847b1da81SPeter Maydell static const ARMInsnFixup bootloader[] = { 69*10b8ec73SPeter Crosthwaite { 0xe28fe008 }, /* add lr, pc, #8 */ 70*10b8ec73SPeter Crosthwaite { 0xe51ff004 }, /* ldr pc, [pc, #-4] */ 71*10b8ec73SPeter Crosthwaite { 0, FIXUP_BOARD_SETUP }, 72*10b8ec73SPeter Crosthwaite #define BOOTLOADER_NO_BOARD_SETUP_OFFSET 3 7347b1da81SPeter Maydell { 0xe3a00000 }, /* mov r0, #0 */ 7447b1da81SPeter Maydell { 0xe59f1004 }, /* ldr r1, [pc, #4] */ 7547b1da81SPeter Maydell { 0xe59f2004 }, /* ldr r2, [pc, #4] */ 7647b1da81SPeter Maydell { 0xe59ff004 }, /* ldr pc, [pc, #4] */ 7747b1da81SPeter Maydell { 0, FIXUP_BOARDID }, 7847b1da81SPeter Maydell { 0, FIXUP_ARGPTR }, 7947b1da81SPeter Maydell { 0, FIXUP_ENTRYPOINT }, 8047b1da81SPeter Maydell { 0, FIXUP_TERMINATOR } 8153018216SPaolo Bonzini }; 8253018216SPaolo Bonzini 8353018216SPaolo Bonzini /* Handling for secondary CPU boot in a multicore system. 8453018216SPaolo Bonzini * Unlike the uniprocessor/primary CPU boot, this is platform 8553018216SPaolo Bonzini * dependent. The default code here is based on the secondary 8653018216SPaolo Bonzini * CPU boot protocol used on realview/vexpress boards, with 8753018216SPaolo Bonzini * some parameterisation to increase its flexibility. 8853018216SPaolo Bonzini * QEMU platform models for which this code is not appropriate 8953018216SPaolo Bonzini * should override write_secondary_boot and secondary_cpu_reset_hook 9053018216SPaolo Bonzini * instead. 9153018216SPaolo Bonzini * 9253018216SPaolo Bonzini * This code enables the interrupt controllers for the secondary 9353018216SPaolo Bonzini * CPUs and then puts all the secondary CPUs into a loop waiting 9453018216SPaolo Bonzini * for an interprocessor interrupt and polling a configurable 9553018216SPaolo Bonzini * location for the kernel secondary CPU entry point. 9653018216SPaolo Bonzini */ 9753018216SPaolo Bonzini #define DSB_INSN 0xf57ff04f 9853018216SPaolo Bonzini #define CP15_DSB_INSN 0xee070f9a /* mcr cp15, 0, r0, c7, c10, 4 */ 9953018216SPaolo Bonzini 10047b1da81SPeter Maydell static const ARMInsnFixup smpboot[] = { 10147b1da81SPeter Maydell { 0xe59f2028 }, /* ldr r2, gic_cpu_if */ 10247b1da81SPeter Maydell { 0xe59f0028 }, /* ldr r0, bootreg_addr */ 10347b1da81SPeter Maydell { 0xe3a01001 }, /* mov r1, #1 */ 10447b1da81SPeter Maydell { 0xe5821000 }, /* str r1, [r2] - set GICC_CTLR.Enable */ 10547b1da81SPeter Maydell { 0xe3a010ff }, /* mov r1, #0xff */ 10647b1da81SPeter Maydell { 0xe5821004 }, /* str r1, [r2, 4] - set GIC_PMR.Priority to 0xff */ 10747b1da81SPeter Maydell { 0, FIXUP_DSB }, /* dsb */ 10847b1da81SPeter Maydell { 0xe320f003 }, /* wfi */ 10947b1da81SPeter Maydell { 0xe5901000 }, /* ldr r1, [r0] */ 11047b1da81SPeter Maydell { 0xe1110001 }, /* tst r1, r1 */ 11147b1da81SPeter Maydell { 0x0afffffb }, /* beq <wfi> */ 11247b1da81SPeter Maydell { 0xe12fff11 }, /* bx r1 */ 11347b1da81SPeter Maydell { 0, FIXUP_GIC_CPU_IF }, /* gic_cpu_if: .word 0x.... */ 11447b1da81SPeter Maydell { 0, FIXUP_BOOTREG }, /* bootreg_addr: .word 0x.... */ 11547b1da81SPeter Maydell { 0, FIXUP_TERMINATOR } 11653018216SPaolo Bonzini }; 11753018216SPaolo Bonzini 11847b1da81SPeter Maydell static void write_bootloader(const char *name, hwaddr addr, 11947b1da81SPeter Maydell const ARMInsnFixup *insns, uint32_t *fixupcontext) 12047b1da81SPeter Maydell { 12147b1da81SPeter Maydell /* Fix up the specified bootloader fragment and write it into 12247b1da81SPeter Maydell * guest memory using rom_add_blob_fixed(). fixupcontext is 12347b1da81SPeter Maydell * an array giving the values to write in for the fixup types 12447b1da81SPeter Maydell * which write a value into the code array. 12547b1da81SPeter Maydell */ 12647b1da81SPeter Maydell int i, len; 12747b1da81SPeter Maydell uint32_t *code; 12847b1da81SPeter Maydell 12947b1da81SPeter Maydell len = 0; 13047b1da81SPeter Maydell while (insns[len].fixup != FIXUP_TERMINATOR) { 13147b1da81SPeter Maydell len++; 13247b1da81SPeter Maydell } 13347b1da81SPeter Maydell 13447b1da81SPeter Maydell code = g_new0(uint32_t, len); 13547b1da81SPeter Maydell 13647b1da81SPeter Maydell for (i = 0; i < len; i++) { 13747b1da81SPeter Maydell uint32_t insn = insns[i].insn; 13847b1da81SPeter Maydell FixupType fixup = insns[i].fixup; 13947b1da81SPeter Maydell 14047b1da81SPeter Maydell switch (fixup) { 14147b1da81SPeter Maydell case FIXUP_NONE: 14247b1da81SPeter Maydell break; 14347b1da81SPeter Maydell case FIXUP_BOARDID: 144*10b8ec73SPeter Crosthwaite case FIXUP_BOARD_SETUP: 14547b1da81SPeter Maydell case FIXUP_ARGPTR: 14647b1da81SPeter Maydell case FIXUP_ENTRYPOINT: 14747b1da81SPeter Maydell case FIXUP_GIC_CPU_IF: 14847b1da81SPeter Maydell case FIXUP_BOOTREG: 14947b1da81SPeter Maydell case FIXUP_DSB: 15047b1da81SPeter Maydell insn = fixupcontext[fixup]; 15147b1da81SPeter Maydell break; 15247b1da81SPeter Maydell default: 15347b1da81SPeter Maydell abort(); 15447b1da81SPeter Maydell } 15547b1da81SPeter Maydell code[i] = tswap32(insn); 15647b1da81SPeter Maydell } 15747b1da81SPeter Maydell 15847b1da81SPeter Maydell rom_add_blob_fixed(name, code, len * sizeof(uint32_t), addr); 15947b1da81SPeter Maydell 16047b1da81SPeter Maydell g_free(code); 16147b1da81SPeter Maydell } 16247b1da81SPeter Maydell 16353018216SPaolo Bonzini static void default_write_secondary(ARMCPU *cpu, 16453018216SPaolo Bonzini const struct arm_boot_info *info) 16553018216SPaolo Bonzini { 16647b1da81SPeter Maydell uint32_t fixupcontext[FIXUP_MAX]; 16747b1da81SPeter Maydell 16847b1da81SPeter Maydell fixupcontext[FIXUP_GIC_CPU_IF] = info->gic_cpu_if_addr; 16947b1da81SPeter Maydell fixupcontext[FIXUP_BOOTREG] = info->smp_bootreg_addr; 17047b1da81SPeter Maydell if (arm_feature(&cpu->env, ARM_FEATURE_V7)) { 17147b1da81SPeter Maydell fixupcontext[FIXUP_DSB] = DSB_INSN; 17247b1da81SPeter Maydell } else { 17347b1da81SPeter Maydell fixupcontext[FIXUP_DSB] = CP15_DSB_INSN; 17453018216SPaolo Bonzini } 17547b1da81SPeter Maydell 17647b1da81SPeter Maydell write_bootloader("smpboot", info->smp_loader_start, 17747b1da81SPeter Maydell smpboot, fixupcontext); 17853018216SPaolo Bonzini } 17953018216SPaolo Bonzini 18053018216SPaolo Bonzini static void default_reset_secondary(ARMCPU *cpu, 18153018216SPaolo Bonzini const struct arm_boot_info *info) 18253018216SPaolo Bonzini { 1834df81c6eSPeter Crosthwaite CPUState *cs = CPU(cpu); 18453018216SPaolo Bonzini 18542874d3aSPeter Maydell address_space_stl_notdirty(&address_space_memory, info->smp_bootreg_addr, 18642874d3aSPeter Maydell 0, MEMTXATTRS_UNSPECIFIED, NULL); 1874df81c6eSPeter Crosthwaite cpu_set_pc(cs, info->smp_loader_start); 18853018216SPaolo Bonzini } 18953018216SPaolo Bonzini 19083bfffecSPeter Maydell static inline bool have_dtb(const struct arm_boot_info *info) 19183bfffecSPeter Maydell { 19283bfffecSPeter Maydell return info->dtb_filename || info->get_dtb; 19383bfffecSPeter Maydell } 19483bfffecSPeter Maydell 19553018216SPaolo Bonzini #define WRITE_WORD(p, value) do { \ 19642874d3aSPeter Maydell address_space_stl_notdirty(&address_space_memory, p, value, \ 19742874d3aSPeter Maydell MEMTXATTRS_UNSPECIFIED, NULL); \ 19853018216SPaolo Bonzini p += 4; \ 19953018216SPaolo Bonzini } while (0) 20053018216SPaolo Bonzini 20153018216SPaolo Bonzini static void set_kernel_args(const struct arm_boot_info *info) 20253018216SPaolo Bonzini { 20353018216SPaolo Bonzini int initrd_size = info->initrd_size; 20453018216SPaolo Bonzini hwaddr base = info->loader_start; 20553018216SPaolo Bonzini hwaddr p; 20653018216SPaolo Bonzini 20753018216SPaolo Bonzini p = base + KERNEL_ARGS_ADDR; 20853018216SPaolo Bonzini /* ATAG_CORE */ 20953018216SPaolo Bonzini WRITE_WORD(p, 5); 21053018216SPaolo Bonzini WRITE_WORD(p, 0x54410001); 21153018216SPaolo Bonzini WRITE_WORD(p, 1); 21253018216SPaolo Bonzini WRITE_WORD(p, 0x1000); 21353018216SPaolo Bonzini WRITE_WORD(p, 0); 21453018216SPaolo Bonzini /* ATAG_MEM */ 21553018216SPaolo Bonzini /* TODO: handle multiple chips on one ATAG list */ 21653018216SPaolo Bonzini WRITE_WORD(p, 4); 21753018216SPaolo Bonzini WRITE_WORD(p, 0x54410002); 21853018216SPaolo Bonzini WRITE_WORD(p, info->ram_size); 21953018216SPaolo Bonzini WRITE_WORD(p, info->loader_start); 22053018216SPaolo Bonzini if (initrd_size) { 22153018216SPaolo Bonzini /* ATAG_INITRD2 */ 22253018216SPaolo Bonzini WRITE_WORD(p, 4); 22353018216SPaolo Bonzini WRITE_WORD(p, 0x54420005); 22453018216SPaolo Bonzini WRITE_WORD(p, info->initrd_start); 22553018216SPaolo Bonzini WRITE_WORD(p, initrd_size); 22653018216SPaolo Bonzini } 22753018216SPaolo Bonzini if (info->kernel_cmdline && *info->kernel_cmdline) { 22853018216SPaolo Bonzini /* ATAG_CMDLINE */ 22953018216SPaolo Bonzini int cmdline_size; 23053018216SPaolo Bonzini 23153018216SPaolo Bonzini cmdline_size = strlen(info->kernel_cmdline); 232e1fe50dcSStefan Weil cpu_physical_memory_write(p + 8, info->kernel_cmdline, 23353018216SPaolo Bonzini cmdline_size + 1); 23453018216SPaolo Bonzini cmdline_size = (cmdline_size >> 2) + 1; 23553018216SPaolo Bonzini WRITE_WORD(p, cmdline_size + 2); 23653018216SPaolo Bonzini WRITE_WORD(p, 0x54410009); 23753018216SPaolo Bonzini p += cmdline_size * 4; 23853018216SPaolo Bonzini } 23953018216SPaolo Bonzini if (info->atag_board) { 24053018216SPaolo Bonzini /* ATAG_BOARD */ 24153018216SPaolo Bonzini int atag_board_len; 24253018216SPaolo Bonzini uint8_t atag_board_buf[0x1000]; 24353018216SPaolo Bonzini 24453018216SPaolo Bonzini atag_board_len = (info->atag_board(info, atag_board_buf) + 3) & ~3; 24553018216SPaolo Bonzini WRITE_WORD(p, (atag_board_len + 8) >> 2); 24653018216SPaolo Bonzini WRITE_WORD(p, 0x414f4d50); 24753018216SPaolo Bonzini cpu_physical_memory_write(p, atag_board_buf, atag_board_len); 24853018216SPaolo Bonzini p += atag_board_len; 24953018216SPaolo Bonzini } 25053018216SPaolo Bonzini /* ATAG_END */ 25153018216SPaolo Bonzini WRITE_WORD(p, 0); 25253018216SPaolo Bonzini WRITE_WORD(p, 0); 25353018216SPaolo Bonzini } 25453018216SPaolo Bonzini 25553018216SPaolo Bonzini static void set_kernel_args_old(const struct arm_boot_info *info) 25653018216SPaolo Bonzini { 25753018216SPaolo Bonzini hwaddr p; 25853018216SPaolo Bonzini const char *s; 25953018216SPaolo Bonzini int initrd_size = info->initrd_size; 26053018216SPaolo Bonzini hwaddr base = info->loader_start; 26153018216SPaolo Bonzini 26253018216SPaolo Bonzini /* see linux/include/asm-arm/setup.h */ 26353018216SPaolo Bonzini p = base + KERNEL_ARGS_ADDR; 26453018216SPaolo Bonzini /* page_size */ 26553018216SPaolo Bonzini WRITE_WORD(p, 4096); 26653018216SPaolo Bonzini /* nr_pages */ 26753018216SPaolo Bonzini WRITE_WORD(p, info->ram_size / 4096); 26853018216SPaolo Bonzini /* ramdisk_size */ 26953018216SPaolo Bonzini WRITE_WORD(p, 0); 27053018216SPaolo Bonzini #define FLAG_READONLY 1 27153018216SPaolo Bonzini #define FLAG_RDLOAD 4 27253018216SPaolo Bonzini #define FLAG_RDPROMPT 8 27353018216SPaolo Bonzini /* flags */ 27453018216SPaolo Bonzini WRITE_WORD(p, FLAG_READONLY | FLAG_RDLOAD | FLAG_RDPROMPT); 27553018216SPaolo Bonzini /* rootdev */ 27653018216SPaolo Bonzini WRITE_WORD(p, (31 << 8) | 0); /* /dev/mtdblock0 */ 27753018216SPaolo Bonzini /* video_num_cols */ 27853018216SPaolo Bonzini WRITE_WORD(p, 0); 27953018216SPaolo Bonzini /* video_num_rows */ 28053018216SPaolo Bonzini WRITE_WORD(p, 0); 28153018216SPaolo Bonzini /* video_x */ 28253018216SPaolo Bonzini WRITE_WORD(p, 0); 28353018216SPaolo Bonzini /* video_y */ 28453018216SPaolo Bonzini WRITE_WORD(p, 0); 28553018216SPaolo Bonzini /* memc_control_reg */ 28653018216SPaolo Bonzini WRITE_WORD(p, 0); 28753018216SPaolo Bonzini /* unsigned char sounddefault */ 28853018216SPaolo Bonzini /* unsigned char adfsdrives */ 28953018216SPaolo Bonzini /* unsigned char bytes_per_char_h */ 29053018216SPaolo Bonzini /* unsigned char bytes_per_char_v */ 29153018216SPaolo Bonzini WRITE_WORD(p, 0); 29253018216SPaolo Bonzini /* pages_in_bank[4] */ 29353018216SPaolo Bonzini WRITE_WORD(p, 0); 29453018216SPaolo Bonzini WRITE_WORD(p, 0); 29553018216SPaolo Bonzini WRITE_WORD(p, 0); 29653018216SPaolo Bonzini WRITE_WORD(p, 0); 29753018216SPaolo Bonzini /* pages_in_vram */ 29853018216SPaolo Bonzini WRITE_WORD(p, 0); 29953018216SPaolo Bonzini /* initrd_start */ 30053018216SPaolo Bonzini if (initrd_size) { 30153018216SPaolo Bonzini WRITE_WORD(p, info->initrd_start); 30253018216SPaolo Bonzini } else { 30353018216SPaolo Bonzini WRITE_WORD(p, 0); 30453018216SPaolo Bonzini } 30553018216SPaolo Bonzini /* initrd_size */ 30653018216SPaolo Bonzini WRITE_WORD(p, initrd_size); 30753018216SPaolo Bonzini /* rd_start */ 30853018216SPaolo Bonzini WRITE_WORD(p, 0); 30953018216SPaolo Bonzini /* system_rev */ 31053018216SPaolo Bonzini WRITE_WORD(p, 0); 31153018216SPaolo Bonzini /* system_serial_low */ 31253018216SPaolo Bonzini WRITE_WORD(p, 0); 31353018216SPaolo Bonzini /* system_serial_high */ 31453018216SPaolo Bonzini WRITE_WORD(p, 0); 31553018216SPaolo Bonzini /* mem_fclk_21285 */ 31653018216SPaolo Bonzini WRITE_WORD(p, 0); 31753018216SPaolo Bonzini /* zero unused fields */ 31853018216SPaolo Bonzini while (p < base + KERNEL_ARGS_ADDR + 256 + 1024) { 31953018216SPaolo Bonzini WRITE_WORD(p, 0); 32053018216SPaolo Bonzini } 32153018216SPaolo Bonzini s = info->kernel_cmdline; 32253018216SPaolo Bonzini if (s) { 323e1fe50dcSStefan Weil cpu_physical_memory_write(p, s, strlen(s) + 1); 32453018216SPaolo Bonzini } else { 32553018216SPaolo Bonzini WRITE_WORD(p, 0); 32653018216SPaolo Bonzini } 32753018216SPaolo Bonzini } 32853018216SPaolo Bonzini 329fee8ea12SArd Biesheuvel /** 330fee8ea12SArd Biesheuvel * load_dtb() - load a device tree binary image into memory 331fee8ea12SArd Biesheuvel * @addr: the address to load the image at 332fee8ea12SArd Biesheuvel * @binfo: struct describing the boot environment 333fee8ea12SArd Biesheuvel * @addr_limit: upper limit of the available memory area at @addr 334fee8ea12SArd Biesheuvel * 335fee8ea12SArd Biesheuvel * Load a device tree supplied by the machine or by the user with the 336fee8ea12SArd Biesheuvel * '-dtb' command line option, and put it at offset @addr in target 337fee8ea12SArd Biesheuvel * memory. 338fee8ea12SArd Biesheuvel * 339fee8ea12SArd Biesheuvel * If @addr_limit contains a meaningful value (i.e., it is strictly greater 340fee8ea12SArd Biesheuvel * than @addr), the device tree is only loaded if its size does not exceed 341fee8ea12SArd Biesheuvel * the limit. 342fee8ea12SArd Biesheuvel * 343fee8ea12SArd Biesheuvel * Returns: the size of the device tree image on success, 344fee8ea12SArd Biesheuvel * 0 if the image size exceeds the limit, 345fee8ea12SArd Biesheuvel * -1 on errors. 346a554ecb4Szhanghailiang * 347a554ecb4Szhanghailiang * Note: Must not be called unless have_dtb(binfo) is true. 348fee8ea12SArd Biesheuvel */ 349fee8ea12SArd Biesheuvel static int load_dtb(hwaddr addr, const struct arm_boot_info *binfo, 350fee8ea12SArd Biesheuvel hwaddr addr_limit) 35153018216SPaolo Bonzini { 35253018216SPaolo Bonzini void *fdt = NULL; 35353018216SPaolo Bonzini int size, rc; 35470976c41SPeter Maydell uint32_t acells, scells; 35553018216SPaolo Bonzini 3560fb79851SJohn Rigby if (binfo->dtb_filename) { 3570fb79851SJohn Rigby char *filename; 35853018216SPaolo Bonzini filename = qemu_find_file(QEMU_FILE_TYPE_BIOS, binfo->dtb_filename); 35953018216SPaolo Bonzini if (!filename) { 36053018216SPaolo Bonzini fprintf(stderr, "Couldn't open dtb file %s\n", binfo->dtb_filename); 361c23045deSPeter Maydell goto fail; 36253018216SPaolo Bonzini } 36353018216SPaolo Bonzini 36453018216SPaolo Bonzini fdt = load_device_tree(filename, &size); 36553018216SPaolo Bonzini if (!fdt) { 36653018216SPaolo Bonzini fprintf(stderr, "Couldn't open dtb file %s\n", filename); 36753018216SPaolo Bonzini g_free(filename); 368c23045deSPeter Maydell goto fail; 36953018216SPaolo Bonzini } 37053018216SPaolo Bonzini g_free(filename); 371a554ecb4Szhanghailiang } else { 3720fb79851SJohn Rigby fdt = binfo->get_dtb(binfo, &size); 3730fb79851SJohn Rigby if (!fdt) { 3740fb79851SJohn Rigby fprintf(stderr, "Board was unable to create a dtb blob\n"); 3750fb79851SJohn Rigby goto fail; 3760fb79851SJohn Rigby } 3770fb79851SJohn Rigby } 37853018216SPaolo Bonzini 379fee8ea12SArd Biesheuvel if (addr_limit > addr && size > (addr_limit - addr)) { 380fee8ea12SArd Biesheuvel /* Installing the device tree blob at addr would exceed addr_limit. 381fee8ea12SArd Biesheuvel * Whether this constitutes failure is up to the caller to decide, 382fee8ea12SArd Biesheuvel * so just return 0 as size, i.e., no error. 383fee8ea12SArd Biesheuvel */ 384fee8ea12SArd Biesheuvel g_free(fdt); 385fee8ea12SArd Biesheuvel return 0; 386fee8ea12SArd Biesheuvel } 387fee8ea12SArd Biesheuvel 3885a4348d1SPeter Crosthwaite acells = qemu_fdt_getprop_cell(fdt, "/", "#address-cells"); 3895a4348d1SPeter Crosthwaite scells = qemu_fdt_getprop_cell(fdt, "/", "#size-cells"); 39053018216SPaolo Bonzini if (acells == 0 || scells == 0) { 39153018216SPaolo Bonzini fprintf(stderr, "dtb file invalid (#address-cells or #size-cells 0)\n"); 392c23045deSPeter Maydell goto fail; 39353018216SPaolo Bonzini } 39453018216SPaolo Bonzini 39570976c41SPeter Maydell if (scells < 2 && binfo->ram_size >= (1ULL << 32)) { 39670976c41SPeter Maydell /* This is user error so deserves a friendlier error message 39770976c41SPeter Maydell * than the failure of setprop_sized_cells would provide 39870976c41SPeter Maydell */ 39953018216SPaolo Bonzini fprintf(stderr, "qemu: dtb file not compatible with " 40053018216SPaolo Bonzini "RAM size > 4GB\n"); 401c23045deSPeter Maydell goto fail; 40253018216SPaolo Bonzini } 40353018216SPaolo Bonzini 4045a4348d1SPeter Crosthwaite rc = qemu_fdt_setprop_sized_cells(fdt, "/memory", "reg", 40570976c41SPeter Maydell acells, binfo->loader_start, 40670976c41SPeter Maydell scells, binfo->ram_size); 40753018216SPaolo Bonzini if (rc < 0) { 40853018216SPaolo Bonzini fprintf(stderr, "couldn't set /memory/reg\n"); 409c23045deSPeter Maydell goto fail; 41053018216SPaolo Bonzini } 41153018216SPaolo Bonzini 41253018216SPaolo Bonzini if (binfo->kernel_cmdline && *binfo->kernel_cmdline) { 4135a4348d1SPeter Crosthwaite rc = qemu_fdt_setprop_string(fdt, "/chosen", "bootargs", 41453018216SPaolo Bonzini binfo->kernel_cmdline); 41553018216SPaolo Bonzini if (rc < 0) { 41653018216SPaolo Bonzini fprintf(stderr, "couldn't set /chosen/bootargs\n"); 417c23045deSPeter Maydell goto fail; 41853018216SPaolo Bonzini } 41953018216SPaolo Bonzini } 42053018216SPaolo Bonzini 42153018216SPaolo Bonzini if (binfo->initrd_size) { 4225a4348d1SPeter Crosthwaite rc = qemu_fdt_setprop_cell(fdt, "/chosen", "linux,initrd-start", 42353018216SPaolo Bonzini binfo->initrd_start); 42453018216SPaolo Bonzini if (rc < 0) { 42553018216SPaolo Bonzini fprintf(stderr, "couldn't set /chosen/linux,initrd-start\n"); 426c23045deSPeter Maydell goto fail; 42753018216SPaolo Bonzini } 42853018216SPaolo Bonzini 4295a4348d1SPeter Crosthwaite rc = qemu_fdt_setprop_cell(fdt, "/chosen", "linux,initrd-end", 43053018216SPaolo Bonzini binfo->initrd_start + binfo->initrd_size); 43153018216SPaolo Bonzini if (rc < 0) { 43253018216SPaolo Bonzini fprintf(stderr, "couldn't set /chosen/linux,initrd-end\n"); 433c23045deSPeter Maydell goto fail; 43453018216SPaolo Bonzini } 43553018216SPaolo Bonzini } 4363b1cceb8SPeter Maydell 4373b1cceb8SPeter Maydell if (binfo->modify_dtb) { 4383b1cceb8SPeter Maydell binfo->modify_dtb(binfo, fdt); 4393b1cceb8SPeter Maydell } 4403b1cceb8SPeter Maydell 4415a4348d1SPeter Crosthwaite qemu_fdt_dumpdtb(fdt, size); 44253018216SPaolo Bonzini 4434c4bf654SArd Biesheuvel /* Put the DTB into the memory map as a ROM image: this will ensure 4444c4bf654SArd Biesheuvel * the DTB is copied again upon reset, even if addr points into RAM. 4454c4bf654SArd Biesheuvel */ 4464c4bf654SArd Biesheuvel rom_add_blob_fixed("dtb", fdt, size, addr); 44753018216SPaolo Bonzini 448c23045deSPeter Maydell g_free(fdt); 449c23045deSPeter Maydell 450fee8ea12SArd Biesheuvel return size; 451c23045deSPeter Maydell 452c23045deSPeter Maydell fail: 453c23045deSPeter Maydell g_free(fdt); 454c23045deSPeter Maydell return -1; 45553018216SPaolo Bonzini } 45653018216SPaolo Bonzini 45753018216SPaolo Bonzini static void do_cpu_reset(void *opaque) 45853018216SPaolo Bonzini { 45953018216SPaolo Bonzini ARMCPU *cpu = opaque; 4604df81c6eSPeter Crosthwaite CPUState *cs = CPU(cpu); 46153018216SPaolo Bonzini CPUARMState *env = &cpu->env; 46253018216SPaolo Bonzini const struct arm_boot_info *info = env->boot_info; 46353018216SPaolo Bonzini 4644df81c6eSPeter Crosthwaite cpu_reset(cs); 46553018216SPaolo Bonzini if (info) { 46653018216SPaolo Bonzini if (!info->is_linux) { 46753018216SPaolo Bonzini /* Jump to the entry point. */ 4684df81c6eSPeter Crosthwaite uint64_t entry = info->entry; 4694df81c6eSPeter Crosthwaite 4704df81c6eSPeter Crosthwaite if (!env->aarch64) { 47153018216SPaolo Bonzini env->thumb = info->entry & 1; 4724df81c6eSPeter Crosthwaite entry &= 0xfffffffe; 473a9047ec3SPeter Maydell } 4744df81c6eSPeter Crosthwaite cpu_set_pc(cs, entry); 47553018216SPaolo Bonzini } else { 476c8e829b7SGreg Bellows /* If we are booting Linux then we need to check whether we are 477c8e829b7SGreg Bellows * booting into secure or non-secure state and adjust the state 478c8e829b7SGreg Bellows * accordingly. Out of reset, ARM is defined to be in secure state 479c8e829b7SGreg Bellows * (SCR.NS = 0), we change that here if non-secure boot has been 480c8e829b7SGreg Bellows * requested. 481c8e829b7SGreg Bellows */ 4825097227cSGreg Bellows if (arm_feature(env, ARM_FEATURE_EL3)) { 4835097227cSGreg Bellows /* AArch64 is defined to come out of reset into EL3 if enabled. 4845097227cSGreg Bellows * If we are booting Linux then we need to adjust our EL as 4855097227cSGreg Bellows * Linux expects us to be in EL2 or EL1. AArch32 resets into 4865097227cSGreg Bellows * SVC, which Linux expects, so no privilege/exception level to 4875097227cSGreg Bellows * adjust. 4885097227cSGreg Bellows */ 4895097227cSGreg Bellows if (env->aarch64) { 4905097227cSGreg Bellows if (arm_feature(env, ARM_FEATURE_EL2)) { 4915097227cSGreg Bellows env->pstate = PSTATE_MODE_EL2h; 4925097227cSGreg Bellows } else { 4935097227cSGreg Bellows env->pstate = PSTATE_MODE_EL1h; 4945097227cSGreg Bellows } 4955097227cSGreg Bellows } 4965097227cSGreg Bellows 4975097227cSGreg Bellows /* Set to non-secure if not a secure boot */ 4985097227cSGreg Bellows if (!info->secure_boot) { 4995097227cSGreg Bellows /* Linux expects non-secure state */ 500c8e829b7SGreg Bellows env->cp15.scr_el3 |= SCR_NS; 501c8e829b7SGreg Bellows } 5025097227cSGreg Bellows } 503c8e829b7SGreg Bellows 5044df81c6eSPeter Crosthwaite if (cs == first_cpu) { 5054df81c6eSPeter Crosthwaite cpu_set_pc(cs, info->loader_start); 5064d9ebf75SMian M. Hamayun 50783bfffecSPeter Maydell if (!have_dtb(info)) { 50853018216SPaolo Bonzini if (old_param) { 50953018216SPaolo Bonzini set_kernel_args_old(info); 51053018216SPaolo Bonzini } else { 51153018216SPaolo Bonzini set_kernel_args(info); 51253018216SPaolo Bonzini } 51353018216SPaolo Bonzini } 51453018216SPaolo Bonzini } else { 51553018216SPaolo Bonzini info->secondary_cpu_reset_hook(cpu, info); 51653018216SPaolo Bonzini } 51753018216SPaolo Bonzini } 51853018216SPaolo Bonzini } 51953018216SPaolo Bonzini } 52053018216SPaolo Bonzini 52107abe45cSLaszlo Ersek /** 52207abe45cSLaszlo Ersek * load_image_to_fw_cfg() - Load an image file into an fw_cfg entry identified 52307abe45cSLaszlo Ersek * by key. 52407abe45cSLaszlo Ersek * @fw_cfg: The firmware config instance to store the data in. 52507abe45cSLaszlo Ersek * @size_key: The firmware config key to store the size of the loaded 52607abe45cSLaszlo Ersek * data under, with fw_cfg_add_i32(). 52707abe45cSLaszlo Ersek * @data_key: The firmware config key to store the loaded data under, 52807abe45cSLaszlo Ersek * with fw_cfg_add_bytes(). 52907abe45cSLaszlo Ersek * @image_name: The name of the image file to load. If it is NULL, the 53007abe45cSLaszlo Ersek * function returns without doing anything. 53107abe45cSLaszlo Ersek * @try_decompress: Whether the image should be decompressed (gunzipped) before 53207abe45cSLaszlo Ersek * adding it to fw_cfg. If decompression fails, the image is 53307abe45cSLaszlo Ersek * loaded as-is. 53407abe45cSLaszlo Ersek * 53507abe45cSLaszlo Ersek * In case of failure, the function prints an error message to stderr and the 53607abe45cSLaszlo Ersek * process exits with status 1. 53707abe45cSLaszlo Ersek */ 53807abe45cSLaszlo Ersek static void load_image_to_fw_cfg(FWCfgState *fw_cfg, uint16_t size_key, 53907abe45cSLaszlo Ersek uint16_t data_key, const char *image_name, 54007abe45cSLaszlo Ersek bool try_decompress) 54107abe45cSLaszlo Ersek { 54207abe45cSLaszlo Ersek size_t size = -1; 54307abe45cSLaszlo Ersek uint8_t *data; 54407abe45cSLaszlo Ersek 54507abe45cSLaszlo Ersek if (image_name == NULL) { 54607abe45cSLaszlo Ersek return; 54707abe45cSLaszlo Ersek } 54807abe45cSLaszlo Ersek 54907abe45cSLaszlo Ersek if (try_decompress) { 55007abe45cSLaszlo Ersek size = load_image_gzipped_buffer(image_name, 55107abe45cSLaszlo Ersek LOAD_IMAGE_MAX_GUNZIP_BYTES, &data); 55207abe45cSLaszlo Ersek } 55307abe45cSLaszlo Ersek 55407abe45cSLaszlo Ersek if (size == (size_t)-1) { 55507abe45cSLaszlo Ersek gchar *contents; 55607abe45cSLaszlo Ersek gsize length; 55707abe45cSLaszlo Ersek 55807abe45cSLaszlo Ersek if (!g_file_get_contents(image_name, &contents, &length, NULL)) { 55907abe45cSLaszlo Ersek fprintf(stderr, "failed to load \"%s\"\n", image_name); 56007abe45cSLaszlo Ersek exit(1); 56107abe45cSLaszlo Ersek } 56207abe45cSLaszlo Ersek size = length; 56307abe45cSLaszlo Ersek data = (uint8_t *)contents; 56407abe45cSLaszlo Ersek } 56507abe45cSLaszlo Ersek 56607abe45cSLaszlo Ersek fw_cfg_add_i32(fw_cfg, size_key, size); 56707abe45cSLaszlo Ersek fw_cfg_add_bytes(fw_cfg, data_key, data, size); 56807abe45cSLaszlo Ersek } 56907abe45cSLaszlo Ersek 570d8b1ae42SPeter Maydell static int do_arm_linux_init(Object *obj, void *opaque) 571d8b1ae42SPeter Maydell { 572d8b1ae42SPeter Maydell if (object_dynamic_cast(obj, TYPE_ARM_LINUX_BOOT_IF)) { 573d8b1ae42SPeter Maydell ARMLinuxBootIf *albif = ARM_LINUX_BOOT_IF(obj); 574d8b1ae42SPeter Maydell ARMLinuxBootIfClass *albifc = ARM_LINUX_BOOT_IF_GET_CLASS(obj); 575d8b1ae42SPeter Maydell struct arm_boot_info *info = opaque; 576d8b1ae42SPeter Maydell 577d8b1ae42SPeter Maydell if (albifc->arm_linux_init) { 578d8b1ae42SPeter Maydell albifc->arm_linux_init(albif, info->secure_boot); 579d8b1ae42SPeter Maydell } 580d8b1ae42SPeter Maydell } 581d8b1ae42SPeter Maydell return 0; 582d8b1ae42SPeter Maydell } 583d8b1ae42SPeter Maydell 584ac9d32e3SEric Auger static void arm_load_kernel_notify(Notifier *notifier, void *data) 58553018216SPaolo Bonzini { 586c6faa758SArd Biesheuvel CPUState *cs; 58753018216SPaolo Bonzini int kernel_size; 58853018216SPaolo Bonzini int initrd_size; 58953018216SPaolo Bonzini int is_linux = 0; 59092df8450SArd Biesheuvel uint64_t elf_entry, elf_low_addr, elf_high_addr; 591da0af40dSPeter Maydell int elf_machine; 5924d9ebf75SMian M. Hamayun hwaddr entry, kernel_load_offset; 59353018216SPaolo Bonzini int big_endian; 5944d9ebf75SMian M. Hamayun static const ARMInsnFixup *primary_loader; 595ac9d32e3SEric Auger ArmLoadKernelNotifier *n = DO_UPCAST(ArmLoadKernelNotifier, 596ac9d32e3SEric Auger notifier, notifier); 597ac9d32e3SEric Auger ARMCPU *cpu = n->cpu; 598ac9d32e3SEric Auger struct arm_boot_info *info = 599ac9d32e3SEric Auger container_of(n, struct arm_boot_info, load_kernel_notifier); 60053018216SPaolo Bonzini 60153018216SPaolo Bonzini /* Load the kernel. */ 60207abe45cSLaszlo Ersek if (!info->kernel_filename || info->firmware_loaded) { 60369e7f76fSArd Biesheuvel 60469e7f76fSArd Biesheuvel if (have_dtb(info)) { 60507abe45cSLaszlo Ersek /* If we have a device tree blob, but no kernel to supply it to (or 60607abe45cSLaszlo Ersek * the kernel is supposed to be loaded by the bootloader), copy the 60707abe45cSLaszlo Ersek * DTB to the base of RAM for the bootloader to pick up. 60869e7f76fSArd Biesheuvel */ 60969e7f76fSArd Biesheuvel if (load_dtb(info->loader_start, info, 0) < 0) { 61069e7f76fSArd Biesheuvel exit(1); 61169e7f76fSArd Biesheuvel } 61269e7f76fSArd Biesheuvel } 61369e7f76fSArd Biesheuvel 61407abe45cSLaszlo Ersek if (info->kernel_filename) { 61507abe45cSLaszlo Ersek FWCfgState *fw_cfg; 61607abe45cSLaszlo Ersek bool try_decompressing_kernel; 61707abe45cSLaszlo Ersek 61807abe45cSLaszlo Ersek fw_cfg = fw_cfg_find(); 61907abe45cSLaszlo Ersek try_decompressing_kernel = arm_feature(&cpu->env, 62007abe45cSLaszlo Ersek ARM_FEATURE_AARCH64); 62107abe45cSLaszlo Ersek 62207abe45cSLaszlo Ersek /* Expose the kernel, the command line, and the initrd in fw_cfg. 62307abe45cSLaszlo Ersek * We don't process them here at all, it's all left to the 62407abe45cSLaszlo Ersek * firmware. 62507abe45cSLaszlo Ersek */ 62607abe45cSLaszlo Ersek load_image_to_fw_cfg(fw_cfg, 62707abe45cSLaszlo Ersek FW_CFG_KERNEL_SIZE, FW_CFG_KERNEL_DATA, 62807abe45cSLaszlo Ersek info->kernel_filename, 62907abe45cSLaszlo Ersek try_decompressing_kernel); 63007abe45cSLaszlo Ersek load_image_to_fw_cfg(fw_cfg, 63107abe45cSLaszlo Ersek FW_CFG_INITRD_SIZE, FW_CFG_INITRD_DATA, 63207abe45cSLaszlo Ersek info->initrd_filename, false); 63307abe45cSLaszlo Ersek 63407abe45cSLaszlo Ersek if (info->kernel_cmdline) { 63507abe45cSLaszlo Ersek fw_cfg_add_i32(fw_cfg, FW_CFG_CMDLINE_SIZE, 63607abe45cSLaszlo Ersek strlen(info->kernel_cmdline) + 1); 63707abe45cSLaszlo Ersek fw_cfg_add_string(fw_cfg, FW_CFG_CMDLINE_DATA, 63807abe45cSLaszlo Ersek info->kernel_cmdline); 63907abe45cSLaszlo Ersek } 64007abe45cSLaszlo Ersek } 64107abe45cSLaszlo Ersek 64207abe45cSLaszlo Ersek /* We will start from address 0 (typically a boot ROM image) in the 64307abe45cSLaszlo Ersek * same way as hardware. 6449546dbabSPeter Maydell */ 6459546dbabSPeter Maydell return; 64653018216SPaolo Bonzini } 64753018216SPaolo Bonzini 6484d9ebf75SMian M. Hamayun if (arm_feature(&cpu->env, ARM_FEATURE_AARCH64)) { 6494d9ebf75SMian M. Hamayun primary_loader = bootloader_aarch64; 6504d9ebf75SMian M. Hamayun kernel_load_offset = KERNEL64_LOAD_ADDR; 651da0af40dSPeter Maydell elf_machine = EM_AARCH64; 6524d9ebf75SMian M. Hamayun } else { 6534d9ebf75SMian M. Hamayun primary_loader = bootloader; 654*10b8ec73SPeter Crosthwaite if (!info->write_board_setup) { 655*10b8ec73SPeter Crosthwaite primary_loader += BOOTLOADER_NO_BOARD_SETUP_OFFSET; 656*10b8ec73SPeter Crosthwaite } 6574d9ebf75SMian M. Hamayun kernel_load_offset = KERNEL_LOAD_ADDR; 658da0af40dSPeter Maydell elf_machine = EM_ARM; 6594d9ebf75SMian M. Hamayun } 6604d9ebf75SMian M. Hamayun 6612ff3de68SMarkus Armbruster info->dtb_filename = qemu_opt_get(qemu_get_machine_opts(), "dtb"); 66253018216SPaolo Bonzini 66353018216SPaolo Bonzini if (!info->secondary_cpu_reset_hook) { 66453018216SPaolo Bonzini info->secondary_cpu_reset_hook = default_reset_secondary; 66553018216SPaolo Bonzini } 66653018216SPaolo Bonzini if (!info->write_secondary_boot) { 66753018216SPaolo Bonzini info->write_secondary_boot = default_write_secondary; 66853018216SPaolo Bonzini } 66953018216SPaolo Bonzini 67053018216SPaolo Bonzini if (info->nb_cpus == 0) 67153018216SPaolo Bonzini info->nb_cpus = 1; 67253018216SPaolo Bonzini 67353018216SPaolo Bonzini #ifdef TARGET_WORDS_BIGENDIAN 67453018216SPaolo Bonzini big_endian = 1; 67553018216SPaolo Bonzini #else 67653018216SPaolo Bonzini big_endian = 0; 67753018216SPaolo Bonzini #endif 67853018216SPaolo Bonzini 67953018216SPaolo Bonzini /* We want to put the initrd far enough into RAM that when the 68053018216SPaolo Bonzini * kernel is uncompressed it will not clobber the initrd. However 68153018216SPaolo Bonzini * on boards without much RAM we must ensure that we still leave 68253018216SPaolo Bonzini * enough room for a decent sized initrd, and on boards with large 68353018216SPaolo Bonzini * amounts of RAM we must avoid the initrd being so far up in RAM 68453018216SPaolo Bonzini * that it is outside lowmem and inaccessible to the kernel. 68553018216SPaolo Bonzini * So for boards with less than 256MB of RAM we put the initrd 68653018216SPaolo Bonzini * halfway into RAM, and for boards with 256MB of RAM or more we put 68753018216SPaolo Bonzini * the initrd at 128MB. 68853018216SPaolo Bonzini */ 68953018216SPaolo Bonzini info->initrd_start = info->loader_start + 69053018216SPaolo Bonzini MIN(info->ram_size / 2, 128 * 1024 * 1024); 69153018216SPaolo Bonzini 69253018216SPaolo Bonzini /* Assume that raw images are linux kernels, and ELF images are not. */ 69353018216SPaolo Bonzini kernel_size = load_elf(info->kernel_filename, NULL, NULL, &elf_entry, 69492df8450SArd Biesheuvel &elf_low_addr, &elf_high_addr, big_endian, 69592df8450SArd Biesheuvel elf_machine, 1); 69692df8450SArd Biesheuvel if (kernel_size > 0 && have_dtb(info)) { 69792df8450SArd Biesheuvel /* If there is still some room left at the base of RAM, try and put 69892df8450SArd Biesheuvel * the DTB there like we do for images loaded with -bios or -pflash. 69992df8450SArd Biesheuvel */ 70092df8450SArd Biesheuvel if (elf_low_addr > info->loader_start 70192df8450SArd Biesheuvel || elf_high_addr < info->loader_start) { 70292df8450SArd Biesheuvel /* Pass elf_low_addr as address limit to load_dtb if it may be 70392df8450SArd Biesheuvel * pointing into RAM, otherwise pass '0' (no limit) 70492df8450SArd Biesheuvel */ 70592df8450SArd Biesheuvel if (elf_low_addr < info->loader_start) { 70692df8450SArd Biesheuvel elf_low_addr = 0; 70792df8450SArd Biesheuvel } 70892df8450SArd Biesheuvel if (load_dtb(info->loader_start, info, elf_low_addr) < 0) { 70992df8450SArd Biesheuvel exit(1); 71092df8450SArd Biesheuvel } 71192df8450SArd Biesheuvel } 71292df8450SArd Biesheuvel } 71353018216SPaolo Bonzini entry = elf_entry; 71453018216SPaolo Bonzini if (kernel_size < 0) { 71553018216SPaolo Bonzini kernel_size = load_uimage(info->kernel_filename, &entry, NULL, 71625bda50aSMax Filippov &is_linux, NULL, NULL); 71753018216SPaolo Bonzini } 7186f5d3cbeSRichard W.M. Jones /* On aarch64, it's the bootloader's job to uncompress the kernel. */ 7196f5d3cbeSRichard W.M. Jones if (arm_feature(&cpu->env, ARM_FEATURE_AARCH64) && kernel_size < 0) { 7206f5d3cbeSRichard W.M. Jones entry = info->loader_start + kernel_load_offset; 7216f5d3cbeSRichard W.M. Jones kernel_size = load_image_gzipped(info->kernel_filename, entry, 7226f5d3cbeSRichard W.M. Jones info->ram_size - kernel_load_offset); 7236f5d3cbeSRichard W.M. Jones is_linux = 1; 7246f5d3cbeSRichard W.M. Jones } 72553018216SPaolo Bonzini if (kernel_size < 0) { 7264d9ebf75SMian M. Hamayun entry = info->loader_start + kernel_load_offset; 72753018216SPaolo Bonzini kernel_size = load_image_targphys(info->kernel_filename, entry, 7284d9ebf75SMian M. Hamayun info->ram_size - kernel_load_offset); 72953018216SPaolo Bonzini is_linux = 1; 73053018216SPaolo Bonzini } 73153018216SPaolo Bonzini if (kernel_size < 0) { 73253018216SPaolo Bonzini fprintf(stderr, "qemu: could not load kernel '%s'\n", 73353018216SPaolo Bonzini info->kernel_filename); 73453018216SPaolo Bonzini exit(1); 73553018216SPaolo Bonzini } 73653018216SPaolo Bonzini info->entry = entry; 73753018216SPaolo Bonzini if (is_linux) { 73847b1da81SPeter Maydell uint32_t fixupcontext[FIXUP_MAX]; 73947b1da81SPeter Maydell 74053018216SPaolo Bonzini if (info->initrd_filename) { 741fd76663eSSoren Brinkmann initrd_size = load_ramdisk(info->initrd_filename, 742fd76663eSSoren Brinkmann info->initrd_start, 743fd76663eSSoren Brinkmann info->ram_size - 744fd76663eSSoren Brinkmann info->initrd_start); 745fd76663eSSoren Brinkmann if (initrd_size < 0) { 74653018216SPaolo Bonzini initrd_size = load_image_targphys(info->initrd_filename, 74753018216SPaolo Bonzini info->initrd_start, 74853018216SPaolo Bonzini info->ram_size - 74953018216SPaolo Bonzini info->initrd_start); 750fd76663eSSoren Brinkmann } 75153018216SPaolo Bonzini if (initrd_size < 0) { 75253018216SPaolo Bonzini fprintf(stderr, "qemu: could not load initrd '%s'\n", 75353018216SPaolo Bonzini info->initrd_filename); 75453018216SPaolo Bonzini exit(1); 75553018216SPaolo Bonzini } 75653018216SPaolo Bonzini } else { 75753018216SPaolo Bonzini initrd_size = 0; 75853018216SPaolo Bonzini } 75953018216SPaolo Bonzini info->initrd_size = initrd_size; 76053018216SPaolo Bonzini 76147b1da81SPeter Maydell fixupcontext[FIXUP_BOARDID] = info->board_id; 762*10b8ec73SPeter Crosthwaite fixupcontext[FIXUP_BOARD_SETUP] = info->board_setup_addr; 76353018216SPaolo Bonzini 76453018216SPaolo Bonzini /* for device tree boot, we pass the DTB directly in r2. Otherwise 76553018216SPaolo Bonzini * we point to the kernel args. 76653018216SPaolo Bonzini */ 76783bfffecSPeter Maydell if (have_dtb(info)) { 76876e2aef3SAlexander Graf hwaddr align; 76976e2aef3SAlexander Graf hwaddr dtb_start; 77076e2aef3SAlexander Graf 77176e2aef3SAlexander Graf if (elf_machine == EM_AARCH64) { 77276e2aef3SAlexander Graf /* 77376e2aef3SAlexander Graf * Some AArch64 kernels on early bootup map the fdt region as 77476e2aef3SAlexander Graf * 77576e2aef3SAlexander Graf * [ ALIGN_DOWN(fdt, 2MB) ... ALIGN_DOWN(fdt, 2MB) + 2MB ] 77676e2aef3SAlexander Graf * 77776e2aef3SAlexander Graf * Let's play safe and prealign it to 2MB to give us some space. 77853018216SPaolo Bonzini */ 77976e2aef3SAlexander Graf align = 2 * 1024 * 1024; 78076e2aef3SAlexander Graf } else { 78176e2aef3SAlexander Graf /* 78276e2aef3SAlexander Graf * Some 32bit kernels will trash anything in the 4K page the 78376e2aef3SAlexander Graf * initrd ends in, so make sure the DTB isn't caught up in that. 78476e2aef3SAlexander Graf */ 78576e2aef3SAlexander Graf align = 4096; 78676e2aef3SAlexander Graf } 78776e2aef3SAlexander Graf 78876e2aef3SAlexander Graf /* Place the DTB after the initrd in memory with alignment. */ 78976e2aef3SAlexander Graf dtb_start = QEMU_ALIGN_UP(info->initrd_start + initrd_size, align); 790fee8ea12SArd Biesheuvel if (load_dtb(dtb_start, info, 0) < 0) { 79153018216SPaolo Bonzini exit(1); 79253018216SPaolo Bonzini } 79347b1da81SPeter Maydell fixupcontext[FIXUP_ARGPTR] = dtb_start; 79453018216SPaolo Bonzini } else { 79547b1da81SPeter Maydell fixupcontext[FIXUP_ARGPTR] = info->loader_start + KERNEL_ARGS_ADDR; 79653018216SPaolo Bonzini if (info->ram_size >= (1ULL << 32)) { 79753018216SPaolo Bonzini fprintf(stderr, "qemu: RAM size must be less than 4GB to boot" 79853018216SPaolo Bonzini " Linux kernel using ATAGS (try passing a device tree" 79953018216SPaolo Bonzini " using -dtb)\n"); 80053018216SPaolo Bonzini exit(1); 80153018216SPaolo Bonzini } 80253018216SPaolo Bonzini } 80347b1da81SPeter Maydell fixupcontext[FIXUP_ENTRYPOINT] = entry; 80447b1da81SPeter Maydell 80547b1da81SPeter Maydell write_bootloader("bootloader", info->loader_start, 8064d9ebf75SMian M. Hamayun primary_loader, fixupcontext); 80747b1da81SPeter Maydell 80853018216SPaolo Bonzini if (info->nb_cpus > 1) { 80953018216SPaolo Bonzini info->write_secondary_boot(cpu, info); 81053018216SPaolo Bonzini } 811*10b8ec73SPeter Crosthwaite if (info->write_board_setup) { 812*10b8ec73SPeter Crosthwaite info->write_board_setup(cpu, info); 813*10b8ec73SPeter Crosthwaite } 814d8b1ae42SPeter Maydell 815d8b1ae42SPeter Maydell /* Notify devices which need to fake up firmware initialization 816d8b1ae42SPeter Maydell * that we're doing a direct kernel boot. 817d8b1ae42SPeter Maydell */ 818d8b1ae42SPeter Maydell object_child_foreach_recursive(object_get_root(), 819d8b1ae42SPeter Maydell do_arm_linux_init, info); 82053018216SPaolo Bonzini } 82153018216SPaolo Bonzini info->is_linux = is_linux; 82253018216SPaolo Bonzini 823c6faa758SArd Biesheuvel for (cs = CPU(cpu); cs; cs = CPU_NEXT(cs)) { 824c6faa758SArd Biesheuvel ARM_CPU(cs)->env.boot_info = info; 82553018216SPaolo Bonzini } 82653018216SPaolo Bonzini } 827ac9d32e3SEric Auger 828ac9d32e3SEric Auger void arm_load_kernel(ARMCPU *cpu, struct arm_boot_info *info) 829ac9d32e3SEric Auger { 83063a183edSEric Auger CPUState *cs; 83163a183edSEric Auger 832ac9d32e3SEric Auger info->load_kernel_notifier.cpu = cpu; 833ac9d32e3SEric Auger info->load_kernel_notifier.notifier.notify = arm_load_kernel_notify; 834ac9d32e3SEric Auger qemu_add_machine_init_done_notifier(&info->load_kernel_notifier.notifier); 83563a183edSEric Auger 83663a183edSEric Auger /* CPU objects (unlike devices) are not automatically reset on system 83763a183edSEric Auger * reset, so we must always register a handler to do so. If we're 83863a183edSEric Auger * actually loading a kernel, the handler is also responsible for 83963a183edSEric Auger * arranging that we start it correctly. 84063a183edSEric Auger */ 84163a183edSEric Auger for (cs = CPU(cpu); cs; cs = CPU_NEXT(cs)) { 84263a183edSEric Auger qemu_register_reset(do_cpu_reset, ARM_CPU(cs)); 84363a183edSEric Auger } 844ac9d32e3SEric Auger } 845d8b1ae42SPeter Maydell 846d8b1ae42SPeter Maydell static const TypeInfo arm_linux_boot_if_info = { 847d8b1ae42SPeter Maydell .name = TYPE_ARM_LINUX_BOOT_IF, 848d8b1ae42SPeter Maydell .parent = TYPE_INTERFACE, 849d8b1ae42SPeter Maydell .class_size = sizeof(ARMLinuxBootIfClass), 850d8b1ae42SPeter Maydell }; 851d8b1ae42SPeter Maydell 852d8b1ae42SPeter Maydell static void arm_linux_boot_register_types(void) 853d8b1ae42SPeter Maydell { 854d8b1ae42SPeter Maydell type_register_static(&arm_linux_boot_if_info); 855d8b1ae42SPeter Maydell } 856d8b1ae42SPeter Maydell 857d8b1ae42SPeter Maydell type_init(arm_linux_boot_register_types) 858