qemu/include/hw/ipmi/ipmi.h
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   1/*
   2 * IPMI base class
   3 *
   4 * Copyright (c) 2015 Corey Minyard, MontaVista Software, LLC
   5 *
   6 * Permission is hereby granted, free of charge, to any person obtaining a copy
   7 * of this software and associated documentation files (the "Software"), to deal
   8 * in the Software without restriction, including without limitation the rights
   9 * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
  10 * copies of the Software, and to permit persons to whom the Software is
  11 * furnished to do so, subject to the following conditions:
  12 *
  13 * The above copyright notice and this permission notice shall be included in
  14 * all copies or substantial portions of the Software.
  15 *
  16 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
  17 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
  18 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
  19 * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
  20 * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
  21 * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
  22 * THE SOFTWARE.
  23 */
  24
  25#ifndef HW_IPMI_H
  26#define HW_IPMI_H
  27
  28#include "exec/memory.h"
  29#include "qemu-common.h"
  30#include "hw/qdev.h"
  31
  32#define MAX_IPMI_MSG_SIZE 300
  33
  34enum ipmi_op {
  35    IPMI_RESET_CHASSIS,
  36    IPMI_POWEROFF_CHASSIS,
  37    IPMI_POWERON_CHASSIS,
  38    IPMI_POWERCYCLE_CHASSIS,
  39    IPMI_PULSE_DIAG_IRQ,
  40    IPMI_SHUTDOWN_VIA_ACPI_OVERTEMP,
  41    IPMI_SEND_NMI
  42};
  43
  44#define IPMI_CC_INVALID_CMD                              0xc1
  45#define IPMI_CC_COMMAND_INVALID_FOR_LUN                  0xc2
  46#define IPMI_CC_TIMEOUT                                  0xc3
  47#define IPMI_CC_OUT_OF_SPACE                             0xc4
  48#define IPMI_CC_INVALID_RESERVATION                      0xc5
  49#define IPMI_CC_REQUEST_DATA_TRUNCATED                   0xc6
  50#define IPMI_CC_REQUEST_DATA_LENGTH_INVALID              0xc7
  51#define IPMI_CC_PARM_OUT_OF_RANGE                        0xc9
  52#define IPMI_CC_CANNOT_RETURN_REQ_NUM_BYTES              0xca
  53#define IPMI_CC_REQ_ENTRY_NOT_PRESENT                    0xcb
  54#define IPMI_CC_INVALID_DATA_FIELD                       0xcc
  55#define IPMI_CC_BMC_INIT_IN_PROGRESS                     0xd2
  56#define IPMI_CC_COMMAND_NOT_SUPPORTED                    0xd5
  57
  58#define IPMI_NETFN_APP                0x06
  59
  60#define IPMI_DEBUG 1
  61
  62/* Specified in the SMBIOS spec. */
  63#define IPMI_SMBIOS_KCS         0x01
  64#define IPMI_SMBIOS_SMIC        0x02
  65#define IPMI_SMBIOS_BT          0x03
  66#define IPMI_SMBIOS_SSIF        0x04
  67
  68/*
  69 * Used for transferring information to interfaces that add
  70 * entries to firmware tables.
  71 */
  72typedef struct IPMIFwInfo {
  73    const char *interface_name;
  74    int interface_type;
  75    uint8_t ipmi_spec_major_revision;
  76    uint8_t ipmi_spec_minor_revision;
  77    uint8_t i2c_slave_address;
  78    uint32_t uuid;
  79
  80    uint64_t base_address;
  81    uint64_t register_length;
  82    uint8_t register_spacing;
  83    enum {
  84        IPMI_MEMSPACE_IO,
  85        IPMI_MEMSPACE_MEM32,
  86        IPMI_MEMSPACE_MEM64,
  87        IPMI_MEMSPACE_SMBUS
  88    } memspace;
  89
  90    int interrupt_number;
  91    enum {
  92        IPMI_LEVEL_IRQ,
  93        IPMI_EDGE_IRQ
  94    } irq_type;
  95} IPMIFwInfo;
  96
  97/*
  98 * Called by each instantiated IPMI interface device to get it's uuid.
  99 */
 100uint32_t ipmi_next_uuid(void);
 101
 102/* IPMI Interface types (KCS, SMIC, BT) are prefixed with this */
 103#define TYPE_IPMI_INTERFACE_PREFIX "ipmi-interface-"
 104
 105/*
 106 * An IPMI Interface, the interface for talking between the target
 107 * and the BMC.
 108 */
 109#define TYPE_IPMI_INTERFACE "ipmi-interface"
 110#define IPMI_INTERFACE(obj) \
 111     INTERFACE_CHECK(IPMIInterface, (obj), TYPE_IPMI_INTERFACE)
 112#define IPMI_INTERFACE_CLASS(class) \
 113     OBJECT_CLASS_CHECK(IPMIInterfaceClass, (class), TYPE_IPMI_INTERFACE)
 114#define IPMI_INTERFACE_GET_CLASS(class) \
 115     OBJECT_GET_CLASS(IPMIInterfaceClass, (class), TYPE_IPMI_INTERFACE)
 116
 117typedef struct IPMIInterface IPMIInterface;
 118
 119typedef struct IPMIInterfaceClass {
 120    InterfaceClass parent;
 121
 122    void (*init)(struct IPMIInterface *s, Error **errp);
 123
 124    /*
 125     * Perform various operations on the hardware.  If checkonly is
 126     * true, it will return if the operation can be performed, but it
 127     * will not do the operation.
 128     */
 129    int (*do_hw_op)(struct IPMIInterface *s, enum ipmi_op op, int checkonly);
 130
 131    /*
 132     * Enable/disable irqs on the interface when the BMC requests this.
 133     */
 134    void (*set_irq_enable)(struct IPMIInterface *s, int val);
 135
 136    /*
 137     * Handle an event that occurred on the interface, generally the.
 138     * target writing to a register.
 139     */
 140    void (*handle_if_event)(struct IPMIInterface *s);
 141
 142    /*
 143     * The interfaces use this to perform certain ops
 144     */
 145    void (*set_atn)(struct IPMIInterface *s, int val, int irq);
 146
 147    /*
 148     * Got an IPMI warm/cold reset.
 149     */
 150    void (*reset)(struct IPMIInterface *s, bool is_cold);
 151
 152    /*
 153     * Handle a response from the bmc.
 154     */
 155    void (*handle_rsp)(struct IPMIInterface *s, uint8_t msg_id,
 156                       unsigned char *rsp, unsigned int rsp_len);
 157
 158    /*
 159     * Set by the owner to hold the backend data for the interface.
 160     */
 161    void *(*get_backend_data)(struct IPMIInterface *s);
 162
 163    /*
 164     * Return the firmware info for a device.
 165     */
 166    void (*get_fwinfo)(struct IPMIInterface *s, IPMIFwInfo *info);
 167} IPMIInterfaceClass;
 168
 169/*
 170 * Define a BMC simulator (or perhaps a connection to a real BMC)
 171 */
 172#define TYPE_IPMI_BMC "ipmi-bmc"
 173#define IPMI_BMC(obj) \
 174     OBJECT_CHECK(IPMIBmc, (obj), TYPE_IPMI_BMC)
 175#define IPMI_BMC_CLASS(obj_class) \
 176     OBJECT_CLASS_CHECK(IPMIBmcClass, (obj_class), TYPE_IPMI_BMC)
 177#define IPMI_BMC_GET_CLASS(obj) \
 178     OBJECT_GET_CLASS(IPMIBmcClass, (obj), TYPE_IPMI_BMC)
 179
 180typedef struct IPMIBmc {
 181    DeviceState parent;
 182
 183    uint8_t slave_addr;
 184
 185    IPMIInterface *intf;
 186} IPMIBmc;
 187
 188typedef struct IPMIBmcClass {
 189    DeviceClass parent;
 190
 191    /* Called when the system resets to report to the bmc. */
 192    void (*handle_reset)(struct IPMIBmc *s);
 193
 194    /*
 195     * Handle a command to the bmc.
 196     */
 197    void (*handle_command)(struct IPMIBmc *s,
 198                           uint8_t *cmd, unsigned int cmd_len,
 199                           unsigned int max_cmd_len,
 200                           uint8_t msg_id);
 201} IPMIBmcClass;
 202
 203/*
 204 * Add a link property to obj that points to a BMC.
 205 */
 206void ipmi_bmc_find_and_link(Object *obj, Object **bmc);
 207
 208#ifdef IPMI_DEBUG
 209#define ipmi_debug(fs, ...) \
 210    fprintf(stderr, "IPMI (%s): " fs, __func__, ##__VA_ARGS__)
 211#else
 212#define ipmi_debug(fs, ...)
 213#endif
 214
 215struct ipmi_sdr_header {
 216    uint8_t  rec_id[2];
 217    uint8_t  sdr_version;               /* 0x51 */
 218    uint8_t  rec_type;
 219    uint8_t  rec_length;
 220};
 221#define IPMI_SDR_HEADER_SIZE     sizeof(struct ipmi_sdr_header)
 222
 223#define ipmi_sdr_recid(sdr) ((sdr)->rec_id[0] | ((sdr)->rec_id[1] << 8))
 224#define ipmi_sdr_length(sdr) ((sdr)->rec_length + IPMI_SDR_HEADER_SIZE)
 225
 226/*
 227 * 43.2 SDR Type 02h. Compact Sensor Record
 228 */
 229#define IPMI_SDR_COMPACT_TYPE    2
 230
 231struct ipmi_sdr_compact {
 232    struct ipmi_sdr_header header;
 233
 234    uint8_t  sensor_owner_id;
 235    uint8_t  sensor_owner_lun;
 236    uint8_t  sensor_owner_number;       /* byte 8 */
 237    uint8_t  entity_id;
 238    uint8_t  entity_instance;
 239    uint8_t  sensor_init;
 240    uint8_t  sensor_caps;
 241    uint8_t  sensor_type;
 242    uint8_t  reading_type;
 243    uint8_t  assert_mask[2];            /* byte 16 */
 244    uint8_t  deassert_mask[2];
 245    uint8_t  discrete_mask[2];
 246    uint8_t  sensor_unit1;
 247    uint8_t  sensor_unit2;
 248    uint8_t  sensor_unit3;
 249    uint8_t  sensor_direction[2];       /* byte 24 */
 250    uint8_t  positive_threshold;
 251    uint8_t  negative_threshold;
 252    uint8_t  reserved[3];
 253    uint8_t  oem;
 254    uint8_t  id_str_len;                /* byte 32 */
 255    uint8_t  id_string[16];
 256};
 257
 258typedef uint8_t ipmi_sdr_compact_buffer[sizeof(struct ipmi_sdr_compact)];
 259
 260int ipmi_bmc_sdr_find(IPMIBmc *b, uint16_t recid,
 261                      const struct ipmi_sdr_compact **sdr, uint16_t *nextrec);
 262void ipmi_bmc_gen_event(IPMIBmc *b, uint8_t *evt, bool log);
 263
 264#endif
 265