qemu/include/hw/boards.h
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   1/* Declarations for use by board files for creating devices.  */
   2
   3#ifndef HW_BOARDS_H
   4#define HW_BOARDS_H
   5
   6#include "sysemu/blockdev.h"
   7#include "sysemu/accel.h"
   8#include "hw/qdev.h"
   9#include "qom/object.h"
  10#include "qom/cpu.h"
  11
  12/**
  13 * memory_region_allocate_system_memory - Allocate a board's main memory
  14 * @mr: the #MemoryRegion to be initialized
  15 * @owner: the object that tracks the region's reference count
  16 * @name: name of the memory region
  17 * @ram_size: size of the region in bytes
  18 *
  19 * This function allocates the main memory for a board model, and
  20 * initializes @mr appropriately. It also arranges for the memory
  21 * to be migrated (by calling vmstate_register_ram_global()).
  22 *
  23 * Memory allocated via this function will be backed with the memory
  24 * backend the user provided using "-mem-path" or "-numa node,memdev=..."
  25 * if appropriate; this is typically used to cause host huge pages to be
  26 * used. This function should therefore be called by a board exactly once,
  27 * for the primary or largest RAM area it implements.
  28 *
  29 * For boards where the major RAM is split into two parts in the memory
  30 * map, you can deal with this by calling memory_region_allocate_system_memory()
  31 * once to get a MemoryRegion with enough RAM for both parts, and then
  32 * creating alias MemoryRegions via memory_region_init_alias() which
  33 * alias into different parts of the RAM MemoryRegion and can be mapped
  34 * into the memory map in the appropriate places.
  35 *
  36 * Smaller pieces of memory (display RAM, static RAMs, etc) don't need
  37 * to be backed via the -mem-path memory backend and can simply
  38 * be created via memory_region_allocate_aux_memory() or
  39 * memory_region_init_ram().
  40 */
  41void memory_region_allocate_system_memory(MemoryRegion *mr, Object *owner,
  42                                          const char *name,
  43                                          uint64_t ram_size);
  44
  45#define TYPE_MACHINE_SUFFIX "-machine"
  46
  47/* Machine class name that needs to be used for class-name-based machine
  48 * type lookup to work.
  49 */
  50#define MACHINE_TYPE_NAME(machinename) (machinename TYPE_MACHINE_SUFFIX)
  51
  52#define TYPE_MACHINE "machine"
  53#undef MACHINE  /* BSD defines it and QEMU does not use it */
  54#define MACHINE(obj) \
  55    OBJECT_CHECK(MachineState, (obj), TYPE_MACHINE)
  56#define MACHINE_GET_CLASS(obj) \
  57    OBJECT_GET_CLASS(MachineClass, (obj), TYPE_MACHINE)
  58#define MACHINE_CLASS(klass) \
  59    OBJECT_CLASS_CHECK(MachineClass, (klass), TYPE_MACHINE)
  60
  61MachineClass *find_default_machine(void);
  62extern MachineState *current_machine;
  63
  64void machine_run_board_init(MachineState *machine);
  65bool machine_usb(MachineState *machine);
  66bool machine_kernel_irqchip_allowed(MachineState *machine);
  67bool machine_kernel_irqchip_required(MachineState *machine);
  68bool machine_kernel_irqchip_split(MachineState *machine);
  69int machine_kvm_shadow_mem(MachineState *machine);
  70int machine_phandle_start(MachineState *machine);
  71bool machine_dump_guest_core(MachineState *machine);
  72bool machine_mem_merge(MachineState *machine);
  73void machine_register_compat_props(MachineState *machine);
  74HotpluggableCPUList *machine_query_hotpluggable_cpus(MachineState *machine);
  75void machine_set_cpu_numa_node(MachineState *machine,
  76                               const CpuInstanceProperties *props,
  77                               Error **errp);
  78
  79/**
  80 * CPUArchId:
  81 * @arch_id - architecture-dependent CPU ID of present or possible CPU
  82 * @cpu - pointer to corresponding CPU object if it's present on NULL otherwise
  83 * @props - CPU object properties, initialized by board
  84 * #vcpus_count - number of threads provided by @cpu object
  85 */
  86typedef struct {
  87    uint64_t arch_id;
  88    int64_t vcpus_count;
  89    CpuInstanceProperties props;
  90    Object *cpu;
  91} CPUArchId;
  92
  93/**
  94 * CPUArchIdList:
  95 * @len - number of @CPUArchId items in @cpus array
  96 * @cpus - array of present or possible CPUs for current machine configuration
  97 */
  98typedef struct {
  99    int len;
 100    CPUArchId cpus[0];
 101} CPUArchIdList;
 102
 103/**
 104 * MachineClass:
 105 * @get_hotplug_handler: this function is called during bus-less
 106 *    device hotplug. If defined it returns pointer to an instance
 107 *    of HotplugHandler object, which handles hotplug operation
 108 *    for a given @dev. It may return NULL if @dev doesn't require
 109 *    any actions to be performed by hotplug handler.
 110 * @cpu_index_to_instance_props:
 111 *    used to provide @cpu_index to socket/core/thread number mapping, allowing
 112 *    legacy code to perform maping from cpu_index to topology properties
 113 *    Returns: tuple of socket/core/thread ids given cpu_index belongs to.
 114 *    used to provide @cpu_index to socket number mapping, allowing
 115 *    a machine to group CPU threads belonging to the same socket/package
 116 *    Returns: socket number given cpu_index belongs to.
 117 * @hw_version:
 118 *    Value of QEMU_VERSION when the machine was added to QEMU.
 119 *    Set only by old machines because they need to keep
 120 *    compatibility on code that exposed QEMU_VERSION to guests in
 121 *    the past (and now use qemu_hw_version()).
 122 * @possible_cpu_arch_ids:
 123 *    Returns an array of @CPUArchId architecture-dependent CPU IDs
 124 *    which includes CPU IDs for present and possible to hotplug CPUs.
 125 *    Caller is responsible for freeing returned list.
 126 * @has_hotpluggable_cpus:
 127 *    If true, board supports CPUs creation with -device/device_add.
 128 * @minimum_page_bits:
 129 *    If non-zero, the board promises never to create a CPU with a page size
 130 *    smaller than this, so QEMU can use a more efficient larger page
 131 *    size than the target architecture's minimum. (Attempting to create
 132 *    such a CPU will fail.) Note that changing this is a migration
 133 *    compatibility break for the machine.
 134 */
 135struct MachineClass {
 136    /*< private >*/
 137    ObjectClass parent_class;
 138    /*< public >*/
 139
 140    const char *family; /* NULL iff @name identifies a standalone machtype */
 141    char *name;
 142    const char *alias;
 143    const char *desc;
 144
 145    void (*init)(MachineState *state);
 146    void (*reset)(void);
 147    void (*hot_add_cpu)(const int64_t id, Error **errp);
 148    int (*kvm_type)(const char *arg);
 149
 150    BlockInterfaceType block_default_type;
 151    int units_per_default_bus;
 152    int max_cpus;
 153    unsigned int no_serial:1,
 154        no_parallel:1,
 155        use_virtcon:1,
 156        use_sclp:1,
 157        no_floppy:1,
 158        no_cdrom:1,
 159        no_sdcard:1,
 160        has_dynamic_sysbus:1,
 161        pci_allow_0_address:1,
 162        legacy_fw_cfg_order:1;
 163    int is_default;
 164    const char *default_machine_opts;
 165    const char *default_boot_order;
 166    const char *default_display;
 167    GArray *compat_props;
 168    const char *hw_version;
 169    ram_addr_t default_ram_size;
 170    bool option_rom_has_mr;
 171    bool rom_file_has_mr;
 172    int minimum_page_bits;
 173    bool has_hotpluggable_cpus;
 174    int numa_mem_align_shift;
 175    void (*numa_auto_assign_ram)(MachineClass *mc, NodeInfo *nodes,
 176                                 int nb_nodes, ram_addr_t size);
 177
 178    HotplugHandler *(*get_hotplug_handler)(MachineState *machine,
 179                                           DeviceState *dev);
 180    CpuInstanceProperties (*cpu_index_to_instance_props)(MachineState *machine,
 181                                                         unsigned cpu_index);
 182    const CPUArchIdList *(*possible_cpu_arch_ids)(MachineState *machine);
 183};
 184
 185/**
 186 * MachineState:
 187 */
 188struct MachineState {
 189    /*< private >*/
 190    Object parent_obj;
 191    Notifier sysbus_notifier;
 192
 193    /*< public >*/
 194
 195    char *accel;
 196    bool kernel_irqchip_allowed;
 197    bool kernel_irqchip_required;
 198    bool kernel_irqchip_split;
 199    int kvm_shadow_mem;
 200    char *dtb;
 201    char *dumpdtb;
 202    int phandle_start;
 203    char *dt_compatible;
 204    bool dump_guest_core;
 205    bool mem_merge;
 206    bool usb;
 207    bool usb_disabled;
 208    bool igd_gfx_passthru;
 209    char *firmware;
 210    bool iommu;
 211    bool suppress_vmdesc;
 212    bool enforce_config_section;
 213    bool enable_graphics;
 214
 215    ram_addr_t ram_size;
 216    ram_addr_t maxram_size;
 217    uint64_t   ram_slots;
 218    const char *boot_order;
 219    char *kernel_filename;
 220    char *kernel_cmdline;
 221    char *initrd_filename;
 222    const char *cpu_model;
 223    AccelState *accelerator;
 224    CPUArchIdList *possible_cpus;
 225};
 226
 227#define DEFINE_MACHINE(namestr, machine_initfn) \
 228    static void machine_initfn##_class_init(ObjectClass *oc, void *data) \
 229    { \
 230        MachineClass *mc = MACHINE_CLASS(oc); \
 231        machine_initfn(mc); \
 232    } \
 233    static const TypeInfo machine_initfn##_typeinfo = { \
 234        .name       = MACHINE_TYPE_NAME(namestr), \
 235        .parent     = TYPE_MACHINE, \
 236        .class_init = machine_initfn##_class_init, \
 237    }; \
 238    static void machine_initfn##_register_types(void) \
 239    { \
 240        type_register_static(&machine_initfn##_typeinfo); \
 241    } \
 242    type_init(machine_initfn##_register_types)
 243
 244#define SET_MACHINE_COMPAT(m, COMPAT) \
 245    do {                              \
 246        int i;                        \
 247        static GlobalProperty props[] = {       \
 248            COMPAT                              \
 249            { /* end of list */ }               \
 250        };                                      \
 251        if (!m->compat_props) { \
 252            m->compat_props = g_array_new(false, false, sizeof(void *)); \
 253        } \
 254        for (i = 0; props[i].driver != NULL; i++) {    \
 255            GlobalProperty *prop = &props[i];          \
 256            g_array_append_val(m->compat_props, prop); \
 257        }                                              \
 258    } while (0)
 259
 260#endif
 261