pci.c 59.7 KB
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/*
 * QEMU PCI bus manager
 *
 * Copyright (c) 2004 Fabrice Bellard
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 *
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 * Permission is hereby granted, free of charge, to any person obtaining a copy
 * of this software and associated documentation files (the "Software"), to deal
 * in the Software without restriction, including without limitation the rights
 * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
 * copies of the Software, and to permit persons to whom the Software is
 * furnished to do so, subject to the following conditions:
 *
 * The above copyright notice and this permission notice shall be included in
 * all copies or substantial portions of the Software.
 *
 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
 * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
 * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
 * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
 * THE SOFTWARE.
 */
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#include "hw.h"
#include "pci.h"
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#include "pci_bridge.h"
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#include "pci_internals.h"
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#include "monitor.h"
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#include "net.h"
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#include "sysemu.h"
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#include "loader.h"
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#include "range.h"
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#include "qmp-commands.h"
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//#define DEBUG_PCI
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#ifdef DEBUG_PCI
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# define PCI_DPRINTF(format, ...)       printf(format, ## __VA_ARGS__)
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#else
# define PCI_DPRINTF(format, ...)       do { } while (0)
#endif
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static void pcibus_dev_print(Monitor *mon, DeviceState *dev, int indent);
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static char *pcibus_get_dev_path(DeviceState *dev);
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static char *pcibus_get_fw_dev_path(DeviceState *dev);
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static int pcibus_reset(BusState *qbus);
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static Property pci_props[] = {
    DEFINE_PROP_PCI_DEVFN("addr", PCIDevice, devfn, -1),
    DEFINE_PROP_STRING("romfile", PCIDevice, romfile),
    DEFINE_PROP_UINT32("rombar",  PCIDevice, rom_bar, 1),
    DEFINE_PROP_BIT("multifunction", PCIDevice, cap_present,
                    QEMU_PCI_CAP_MULTIFUNCTION_BITNR, false),
    DEFINE_PROP_BIT("command_serr_enable", PCIDevice, cap_present,
                    QEMU_PCI_CAP_SERR_BITNR, true),
    DEFINE_PROP_END_OF_LIST()
};

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struct BusInfo pci_bus_info = {
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    .name       = "PCI",
    .size       = sizeof(PCIBus),
    .print_dev  = pcibus_dev_print,
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    .get_dev_path = pcibus_get_dev_path,
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    .get_fw_dev_path = pcibus_get_fw_dev_path,
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    .reset      = pcibus_reset,
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};
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static PCIBus *pci_find_bus_nr(PCIBus *bus, int bus_num);
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static void pci_update_mappings(PCIDevice *d);
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static void pci_set_irq(void *opaque, int irq_num, int level);
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static int pci_add_option_rom(PCIDevice *pdev, bool is_default_rom);
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static void pci_del_option_rom(PCIDevice *pdev);
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static uint16_t pci_default_sub_vendor_id = PCI_SUBVENDOR_ID_REDHAT_QUMRANET;
static uint16_t pci_default_sub_device_id = PCI_SUBDEVICE_ID_QEMU;
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struct PCIHostBus {
    int domain;
    struct PCIBus *bus;
    QLIST_ENTRY(PCIHostBus) next;
};
static QLIST_HEAD(, PCIHostBus) host_buses;
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static const VMStateDescription vmstate_pcibus = {
    .name = "PCIBUS",
    .version_id = 1,
    .minimum_version_id = 1,
    .minimum_version_id_old = 1,
    .fields      = (VMStateField []) {
        VMSTATE_INT32_EQUAL(nirq, PCIBus),
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        VMSTATE_VARRAY_INT32(irq_count, PCIBus, nirq, 0, vmstate_info_int32, int32_t),
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        VMSTATE_END_OF_LIST()
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    }
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};
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static int pci_bar(PCIDevice *d, int reg)
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{
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    uint8_t type;

    if (reg != PCI_ROM_SLOT)
        return PCI_BASE_ADDRESS_0 + reg * 4;

    type = d->config[PCI_HEADER_TYPE] & ~PCI_HEADER_TYPE_MULTI_FUNCTION;
    return type == PCI_HEADER_TYPE_BRIDGE ? PCI_ROM_ADDRESS1 : PCI_ROM_ADDRESS;
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}

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static inline int pci_irq_state(PCIDevice *d, int irq_num)
{
	return (d->irq_state >> irq_num) & 0x1;
}

static inline void pci_set_irq_state(PCIDevice *d, int irq_num, int level)
{
	d->irq_state &= ~(0x1 << irq_num);
	d->irq_state |= level << irq_num;
}

static void pci_change_irq_level(PCIDevice *pci_dev, int irq_num, int change)
{
    PCIBus *bus;
    for (;;) {
        bus = pci_dev->bus;
        irq_num = bus->map_irq(pci_dev, irq_num);
        if (bus->set_irq)
            break;
        pci_dev = bus->parent_dev;
    }
    bus->irq_count[irq_num] += change;
    bus->set_irq(bus->irq_opaque, irq_num, bus->irq_count[irq_num] != 0);
}

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int pci_bus_get_irq_level(PCIBus *bus, int irq_num)
{
    assert(irq_num >= 0);
    assert(irq_num < bus->nirq);
    return !!bus->irq_count[irq_num];
}

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/* Update interrupt status bit in config space on interrupt
 * state change. */
static void pci_update_irq_status(PCIDevice *dev)
{
    if (dev->irq_state) {
        dev->config[PCI_STATUS] |= PCI_STATUS_INTERRUPT;
    } else {
        dev->config[PCI_STATUS] &= ~PCI_STATUS_INTERRUPT;
    }
}

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void pci_device_deassert_intx(PCIDevice *dev)
{
    int i;
    for (i = 0; i < PCI_NUM_PINS; ++i) {
        qemu_set_irq(dev->irq[i], 0);
    }
}

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/*
 * This function is called on #RST and FLR.
 * FLR if PCI_EXP_DEVCTL_BCR_FLR is set
 */
void pci_device_reset(PCIDevice *dev)
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{
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    int r;
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    qdev_reset_all(&dev->qdev);
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    dev->irq_state = 0;
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    pci_update_irq_status(dev);
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    pci_device_deassert_intx(dev);
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    /* Clear all writable bits */
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    pci_word_test_and_clear_mask(dev->config + PCI_COMMAND,
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                                 pci_get_word(dev->wmask + PCI_COMMAND) |
                                 pci_get_word(dev->w1cmask + PCI_COMMAND));
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    pci_word_test_and_clear_mask(dev->config + PCI_STATUS,
                                 pci_get_word(dev->wmask + PCI_STATUS) |
                                 pci_get_word(dev->w1cmask + PCI_STATUS));
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    dev->config[PCI_CACHE_LINE_SIZE] = 0x0;
    dev->config[PCI_INTERRUPT_LINE] = 0x0;
    for (r = 0; r < PCI_NUM_REGIONS; ++r) {
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        PCIIORegion *region = &dev->io_regions[r];
        if (!region->size) {
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            continue;
        }
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        if (!(region->type & PCI_BASE_ADDRESS_SPACE_IO) &&
            region->type & PCI_BASE_ADDRESS_MEM_TYPE_64) {
            pci_set_quad(dev->config + pci_bar(dev, r), region->type);
        } else {
            pci_set_long(dev->config + pci_bar(dev, r), region->type);
        }
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    }
    pci_update_mappings(dev);
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}

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/*
 * Trigger pci bus reset under a given bus.
 * To be called on RST# assert.
 */
void pci_bus_reset(PCIBus *bus)
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{
    int i;

    for (i = 0; i < bus->nirq; i++) {
        bus->irq_count[i] = 0;
    }
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    for (i = 0; i < ARRAY_SIZE(bus->devices); ++i) {
        if (bus->devices[i]) {
            pci_device_reset(bus->devices[i]);
        }
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    }
}

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static int pcibus_reset(BusState *qbus)
{
    pci_bus_reset(DO_UPCAST(PCIBus, qbus, qbus));

    /* topology traverse is done by pci_bus_reset().
       Tell qbus/qdev walker not to traverse the tree */
    return 1;
}

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static void pci_host_bus_register(int domain, PCIBus *bus)
{
    struct PCIHostBus *host;
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    host = g_malloc0(sizeof(*host));
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    host->domain = domain;
    host->bus = bus;
    QLIST_INSERT_HEAD(&host_buses, host, next);
}

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PCIBus *pci_find_root_bus(int domain)
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{
    struct PCIHostBus *host;

    QLIST_FOREACH(host, &host_buses, next) {
        if (host->domain == domain) {
            return host->bus;
        }
    }

    return NULL;
}

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int pci_find_domain(const PCIBus *bus)
{
    PCIDevice *d;
    struct PCIHostBus *host;

    /* obtain root bus */
    while ((d = bus->parent_dev) != NULL) {
        bus = d->bus;
    }

    QLIST_FOREACH(host, &host_buses, next) {
        if (host->bus == bus) {
            return host->domain;
        }
    }

    abort();    /* should not be reached */
    return -1;
}

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void pci_bus_new_inplace(PCIBus *bus, DeviceState *parent,
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                         const char *name,
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                         MemoryRegion *address_space_mem,
                         MemoryRegion *address_space_io,
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                         uint8_t devfn_min)
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{
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    qbus_create_inplace(&bus->qbus, &pci_bus_info, parent, name);
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    assert(PCI_FUNC(devfn_min) == 0);
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    bus->devfn_min = devfn_min;
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    bus->address_space_mem = address_space_mem;
    bus->address_space_io = address_space_io;
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    /* host bridge */
    QLIST_INIT(&bus->child);
    pci_host_bus_register(0, bus); /* for now only pci domain 0 is supported */

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    vmstate_register(NULL, -1, &vmstate_pcibus, bus);
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}

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PCIBus *pci_bus_new(DeviceState *parent, const char *name,
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                    MemoryRegion *address_space_mem,
                    MemoryRegion *address_space_io,
                    uint8_t devfn_min)
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{
    PCIBus *bus;

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    bus = g_malloc0(sizeof(*bus));
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    bus->qbus.qdev_allocated = 1;
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    pci_bus_new_inplace(bus, parent, name, address_space_mem,
                        address_space_io, devfn_min);
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    return bus;
}

void pci_bus_irqs(PCIBus *bus, pci_set_irq_fn set_irq, pci_map_irq_fn map_irq,
                  void *irq_opaque, int nirq)
{
    bus->set_irq = set_irq;
    bus->map_irq = map_irq;
    bus->irq_opaque = irq_opaque;
    bus->nirq = nirq;
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    bus->irq_count = g_malloc0(nirq * sizeof(bus->irq_count[0]));
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}

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void pci_bus_hotplug(PCIBus *bus, pci_hotplug_fn hotplug, DeviceState *qdev)
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{
    bus->qbus.allow_hotplug = 1;
    bus->hotplug = hotplug;
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    bus->hotplug_qdev = qdev;
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}

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PCIBus *pci_register_bus(DeviceState *parent, const char *name,
                         pci_set_irq_fn set_irq, pci_map_irq_fn map_irq,
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                         void *irq_opaque,
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                         MemoryRegion *address_space_mem,
                         MemoryRegion *address_space_io,
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                         uint8_t devfn_min, int nirq)
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{
    PCIBus *bus;

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    bus = pci_bus_new(parent, name, address_space_mem,
                      address_space_io, devfn_min);
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    pci_bus_irqs(bus, set_irq, map_irq, irq_opaque, nirq);
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    return bus;
}
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int pci_bus_num(PCIBus *s)
{
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    if (!s->parent_dev)
        return 0;       /* pci host bridge */
    return s->parent_dev->config[PCI_SECONDARY_BUS];
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}

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static int get_pci_config_device(QEMUFile *f, void *pv, size_t size)
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{
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    PCIDevice *s = container_of(pv, PCIDevice, config);
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    uint8_t *config;
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    int i;

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    assert(size == pci_config_size(s));
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    config = g_malloc(size);
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    qemu_get_buffer(f, config, size);
    for (i = 0; i < size; ++i) {
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        if ((config[i] ^ s->config[i]) &
            s->cmask[i] & ~s->wmask[i] & ~s->w1cmask[i]) {
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            g_free(config);
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            return -EINVAL;
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        }
    }
    memcpy(s->config, config, size);
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    pci_update_mappings(s);
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    g_free(config);
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    return 0;
}

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/* just put buffer */
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static void put_pci_config_device(QEMUFile *f, void *pv, size_t size)
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{
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    const uint8_t **v = pv;
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    assert(size == pci_config_size(container_of(pv, PCIDevice, config)));
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    qemu_put_buffer(f, *v, size);
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}

static VMStateInfo vmstate_info_pci_config = {
    .name = "pci config",
    .get  = get_pci_config_device,
    .put  = put_pci_config_device,
};

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static int get_pci_irq_state(QEMUFile *f, void *pv, size_t size)
{
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    PCIDevice *s = container_of(pv, PCIDevice, irq_state);
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    uint32_t irq_state[PCI_NUM_PINS];
    int i;
    for (i = 0; i < PCI_NUM_PINS; ++i) {
        irq_state[i] = qemu_get_be32(f);
        if (irq_state[i] != 0x1 && irq_state[i] != 0) {
            fprintf(stderr, "irq state %d: must be 0 or 1.\n",
                    irq_state[i]);
            return -EINVAL;
        }
    }

    for (i = 0; i < PCI_NUM_PINS; ++i) {
        pci_set_irq_state(s, i, irq_state[i]);
    }

    return 0;
}

static void put_pci_irq_state(QEMUFile *f, void *pv, size_t size)
{
    int i;
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    PCIDevice *s = container_of(pv, PCIDevice, irq_state);
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    for (i = 0; i < PCI_NUM_PINS; ++i) {
        qemu_put_be32(f, pci_irq_state(s, i));
    }
}

static VMStateInfo vmstate_info_pci_irq_state = {
    .name = "pci irq state",
    .get  = get_pci_irq_state,
    .put  = put_pci_irq_state,
};

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const VMStateDescription vmstate_pci_device = {
    .name = "PCIDevice",
    .version_id = 2,
    .minimum_version_id = 1,
    .minimum_version_id_old = 1,
    .fields      = (VMStateField []) {
        VMSTATE_INT32_LE(version_id, PCIDevice),
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        VMSTATE_BUFFER_UNSAFE_INFO(config, PCIDevice, 0,
                                   vmstate_info_pci_config,
                                   PCI_CONFIG_SPACE_SIZE),
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        VMSTATE_BUFFER_UNSAFE_INFO(irq_state, PCIDevice, 2,
				   vmstate_info_pci_irq_state,
				   PCI_NUM_PINS * sizeof(int32_t)),
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        VMSTATE_END_OF_LIST()
    }
};

const VMStateDescription vmstate_pcie_device = {
    .name = "PCIDevice",
    .version_id = 2,
    .minimum_version_id = 1,
    .minimum_version_id_old = 1,
    .fields      = (VMStateField []) {
        VMSTATE_INT32_LE(version_id, PCIDevice),
        VMSTATE_BUFFER_UNSAFE_INFO(config, PCIDevice, 0,
                                   vmstate_info_pci_config,
                                   PCIE_CONFIG_SPACE_SIZE),
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        VMSTATE_BUFFER_UNSAFE_INFO(irq_state, PCIDevice, 2,
				   vmstate_info_pci_irq_state,
				   PCI_NUM_PINS * sizeof(int32_t)),
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        VMSTATE_END_OF_LIST()
    }
};

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static inline const VMStateDescription *pci_get_vmstate(PCIDevice *s)
{
    return pci_is_express(s) ? &vmstate_pcie_device : &vmstate_pci_device;
}

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void pci_device_save(PCIDevice *s, QEMUFile *f)
{
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    /* Clear interrupt status bit: it is implicit
     * in irq_state which we are saving.
     * This makes us compatible with old devices
     * which never set or clear this bit. */
    s->config[PCI_STATUS] &= ~PCI_STATUS_INTERRUPT;
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    vmstate_save_state(f, pci_get_vmstate(s), s);
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    /* Restore the interrupt status bit. */
    pci_update_irq_status(s);
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}

int pci_device_load(PCIDevice *s, QEMUFile *f)
{
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    int ret;
    ret = vmstate_load_state(f, pci_get_vmstate(s), s, s->version_id);
    /* Restore the interrupt status bit. */
    pci_update_irq_status(s);
    return ret;
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}

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static void pci_set_default_subsystem_id(PCIDevice *pci_dev)
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{
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    pci_set_word(pci_dev->config + PCI_SUBSYSTEM_VENDOR_ID,
                 pci_default_sub_vendor_id);
    pci_set_word(pci_dev->config + PCI_SUBSYSTEM_ID,
                 pci_default_sub_device_id);
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}

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/*
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 * Parse [[<domain>:]<bus>:]<slot>, return -1 on error if funcp == NULL
 *       [[<domain>:]<bus>:]<slot>.<func>, return -1 on error
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 */
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static int pci_parse_devaddr(const char *addr, int *domp, int *busp,
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                      unsigned int *slotp, unsigned int *funcp)
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{
    const char *p;
    char *e;
    unsigned long val;
    unsigned long dom = 0, bus = 0;
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    unsigned int slot = 0;
    unsigned int func = 0;
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    p = addr;
    val = strtoul(p, &e, 16);
    if (e == p)
	return -1;
    if (*e == ':') {
	bus = val;
	p = e + 1;
	val = strtoul(p, &e, 16);
	if (e == p)
	    return -1;
	if (*e == ':') {
	    dom = bus;
	    bus = val;
	    p = e + 1;
	    val = strtoul(p, &e, 16);
	    if (e == p)
		return -1;
	}
    }

    slot = val;

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    if (funcp != NULL) {
        if (*e != '.')
            return -1;

        p = e + 1;
        val = strtoul(p, &e, 16);
        if (e == p)
            return -1;

        func = val;
    }

    /* if funcp == NULL func is 0 */
    if (dom > 0xffff || bus > 0xff || slot > 0x1f || func > 7)
	return -1;

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    if (*e)
	return -1;

    *domp = dom;
    *busp = bus;
    *slotp = slot;
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    if (funcp != NULL)
        *funcp = func;
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    return 0;
}

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int pci_read_devaddr(Monitor *mon, const char *addr, int *domp, int *busp,
                     unsigned *slotp)
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{
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    /* strip legacy tag */
    if (!strncmp(addr, "pci_addr=", 9)) {
        addr += 9;
    }
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    if (pci_parse_devaddr(addr, domp, busp, slotp, NULL)) {
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        monitor_printf(mon, "Invalid pci address\n");
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        return -1;
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    }
    return 0;
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}

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PCIBus *pci_get_bus_devfn(int *devfnp, const char *devaddr)
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{
    int dom, bus;
    unsigned slot;

    if (!devaddr) {
        *devfnp = -1;
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        return pci_find_bus_nr(pci_find_root_bus(0), 0);
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    }

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    if (pci_parse_devaddr(devaddr, &dom, &bus, &slot, NULL) < 0) {
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        return NULL;
    }

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    *devfnp = PCI_DEVFN(slot, 0);
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    return pci_find_bus_nr(pci_find_root_bus(dom), bus);
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}

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static void pci_init_cmask(PCIDevice *dev)
{
    pci_set_word(dev->cmask + PCI_VENDOR_ID, 0xffff);
    pci_set_word(dev->cmask + PCI_DEVICE_ID, 0xffff);
    dev->cmask[PCI_STATUS] = PCI_STATUS_CAP_LIST;
    dev->cmask[PCI_REVISION_ID] = 0xff;
    dev->cmask[PCI_CLASS_PROG] = 0xff;
    pci_set_word(dev->cmask + PCI_CLASS_DEVICE, 0xffff);
    dev->cmask[PCI_HEADER_TYPE] = 0xff;
    dev->cmask[PCI_CAPABILITY_LIST] = 0xff;
}

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static void pci_init_wmask(PCIDevice *dev)
{
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Isaku Yamahata 已提交
588 589
    int config_size = pci_config_size(dev);

590 591
    dev->wmask[PCI_CACHE_LINE_SIZE] = 0xff;
    dev->wmask[PCI_INTERRUPT_LINE] = 0xff;
I
Isaku Yamahata 已提交
592
    pci_set_word(dev->wmask + PCI_COMMAND,
593 594
                 PCI_COMMAND_IO | PCI_COMMAND_MEMORY | PCI_COMMAND_MASTER |
                 PCI_COMMAND_INTX_DISABLE);
595 596 597
    if (dev->cap_present & QEMU_PCI_CAP_SERR) {
        pci_word_test_and_set_mask(dev->wmask + PCI_COMMAND, PCI_COMMAND_SERR);
    }
598 599 600

    memset(dev->wmask + PCI_CONFIG_HEADER_SIZE, 0xff,
           config_size - PCI_CONFIG_HEADER_SIZE);
601 602
}

603 604 605
static void pci_init_w1cmask(PCIDevice *dev)
{
    /*
606
     * Note: It's okay to set w1cmask even for readonly bits as
607 608 609 610 611 612 613 614
     * long as their value is hardwired to 0.
     */
    pci_set_word(dev->w1cmask + PCI_STATUS,
                 PCI_STATUS_PARITY | PCI_STATUS_SIG_TARGET_ABORT |
                 PCI_STATUS_REC_TARGET_ABORT | PCI_STATUS_REC_MASTER_ABORT |
                 PCI_STATUS_SIG_SYSTEM_ERROR | PCI_STATUS_DETECTED_PARITY);
}

615
static void pci_init_mask_bridge(PCIDevice *d)
616 617 618 619 620 621 622 623 624 625 626 627 628 629 630 631 632 633 634 635
{
    /* PCI_PRIMARY_BUS, PCI_SECONDARY_BUS, PCI_SUBORDINATE_BUS and
       PCI_SEC_LETENCY_TIMER */
    memset(d->wmask + PCI_PRIMARY_BUS, 0xff, 4);

    /* base and limit */
    d->wmask[PCI_IO_BASE] = PCI_IO_RANGE_MASK & 0xff;
    d->wmask[PCI_IO_LIMIT] = PCI_IO_RANGE_MASK & 0xff;
    pci_set_word(d->wmask + PCI_MEMORY_BASE,
                 PCI_MEMORY_RANGE_MASK & 0xffff);
    pci_set_word(d->wmask + PCI_MEMORY_LIMIT,
                 PCI_MEMORY_RANGE_MASK & 0xffff);
    pci_set_word(d->wmask + PCI_PREF_MEMORY_BASE,
                 PCI_PREF_RANGE_MASK & 0xffff);
    pci_set_word(d->wmask + PCI_PREF_MEMORY_LIMIT,
                 PCI_PREF_RANGE_MASK & 0xffff);

    /* PCI_PREF_BASE_UPPER32 and PCI_PREF_LIMIT_UPPER32 */
    memset(d->wmask + PCI_PREF_BASE_UPPER32, 0xff, 8);

636
    /* Supported memory and i/o types */
M
Michael S. Tsirkin 已提交
637 638
    d->config[PCI_IO_BASE] |= PCI_IO_RANGE_TYPE_16;
    d->config[PCI_IO_LIMIT] |= PCI_IO_RANGE_TYPE_16;
639 640 641 642 643
    pci_word_test_and_set_mask(d->config + PCI_PREF_MEMORY_BASE,
                               PCI_PREF_RANGE_TYPE_64);
    pci_word_test_and_set_mask(d->config + PCI_PREF_MEMORY_LIMIT,
                               PCI_PREF_RANGE_TYPE_64);

644 645 646 647 648 649 650 651 652 653 654 655 656 657 658 659 660 661 662 663 664 665
/* TODO: add this define to pci_regs.h in linux and then in qemu. */
#define  PCI_BRIDGE_CTL_VGA_16BIT	0x10	/* VGA 16-bit decode */
#define  PCI_BRIDGE_CTL_DISCARD		0x100	/* Primary discard timer */
#define  PCI_BRIDGE_CTL_SEC_DISCARD	0x200	/* Secondary discard timer */
#define  PCI_BRIDGE_CTL_DISCARD_STATUS	0x400	/* Discard timer status */
#define  PCI_BRIDGE_CTL_DISCARD_SERR	0x800	/* Discard timer SERR# enable */
    pci_set_word(d->wmask + PCI_BRIDGE_CONTROL,
                 PCI_BRIDGE_CTL_PARITY |
                 PCI_BRIDGE_CTL_SERR |
                 PCI_BRIDGE_CTL_ISA |
                 PCI_BRIDGE_CTL_VGA |
                 PCI_BRIDGE_CTL_VGA_16BIT |
                 PCI_BRIDGE_CTL_MASTER_ABORT |
                 PCI_BRIDGE_CTL_BUS_RESET |
                 PCI_BRIDGE_CTL_FAST_BACK |
                 PCI_BRIDGE_CTL_DISCARD |
                 PCI_BRIDGE_CTL_SEC_DISCARD |
                 PCI_BRIDGE_CTL_DISCARD_SERR);
    /* Below does not do anything as we never set this bit, put here for
     * completeness. */
    pci_set_word(d->w1cmask + PCI_BRIDGE_CONTROL,
                 PCI_BRIDGE_CTL_DISCARD_STATUS);
666
    d->cmask[PCI_IO_BASE] |= PCI_IO_RANGE_TYPE_MASK;
667
    d->cmask[PCI_IO_LIMIT] |= PCI_IO_RANGE_TYPE_MASK;
668 669
    pci_word_test_and_set_mask(d->cmask + PCI_PREF_MEMORY_BASE,
                               PCI_PREF_RANGE_TYPE_MASK);
670 671
    pci_word_test_and_set_mask(d->cmask + PCI_PREF_MEMORY_LIMIT,
                               PCI_PREF_RANGE_TYPE_MASK);
672 673
}

674 675 676 677 678 679 680 681 682 683
static int pci_init_multifunction(PCIBus *bus, PCIDevice *dev)
{
    uint8_t slot = PCI_SLOT(dev->devfn);
    uint8_t func;

    if (dev->cap_present & QEMU_PCI_CAP_MULTIFUNCTION) {
        dev->config[PCI_HEADER_TYPE] |= PCI_HEADER_TYPE_MULTI_FUNCTION;
    }

    /*
S
Stefan Weil 已提交
684
     * multifunction bit is interpreted in two ways as follows.
685 686 687 688 689 690 691 692 693 694 695 696 697 698 699 700 701 702 703 704 705 706 707 708 709 710 711 712 713 714 715 716 717 718 719 720 721
     *   - all functions must set the bit to 1.
     *     Example: Intel X53
     *   - function 0 must set the bit, but the rest function (> 0)
     *     is allowed to leave the bit to 0.
     *     Example: PIIX3(also in qemu), PIIX4(also in qemu), ICH10,
     *
     * So OS (at least Linux) checks the bit of only function 0,
     * and doesn't see the bit of function > 0.
     *
     * The below check allows both interpretation.
     */
    if (PCI_FUNC(dev->devfn)) {
        PCIDevice *f0 = bus->devices[PCI_DEVFN(slot, 0)];
        if (f0 && !(f0->cap_present & QEMU_PCI_CAP_MULTIFUNCTION)) {
            /* function 0 should set multifunction bit */
            error_report("PCI: single function device can't be populated "
                         "in function %x.%x", slot, PCI_FUNC(dev->devfn));
            return -1;
        }
        return 0;
    }

    if (dev->cap_present & QEMU_PCI_CAP_MULTIFUNCTION) {
        return 0;
    }
    /* function 0 indicates single function, so function > 0 must be NULL */
    for (func = 1; func < PCI_FUNC_MAX; ++func) {
        if (bus->devices[PCI_DEVFN(slot, func)]) {
            error_report("PCI: %x.0 indicates single function, "
                         "but %x.%x is already populated.",
                         slot, slot, func);
            return -1;
        }
    }
    return 0;
}

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722 723 724 725
static void pci_config_alloc(PCIDevice *pci_dev)
{
    int config_size = pci_config_size(pci_dev);

726 727 728 729 730
    pci_dev->config = g_malloc0(config_size);
    pci_dev->cmask = g_malloc0(config_size);
    pci_dev->wmask = g_malloc0(config_size);
    pci_dev->w1cmask = g_malloc0(config_size);
    pci_dev->used = g_malloc0(config_size);
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Isaku Yamahata 已提交
731 732 733 734
}

static void pci_config_free(PCIDevice *pci_dev)
{
735 736 737 738 739
    g_free(pci_dev->config);
    g_free(pci_dev->cmask);
    g_free(pci_dev->wmask);
    g_free(pci_dev->w1cmask);
    g_free(pci_dev->used);
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Isaku Yamahata 已提交
740 741
}

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742
/* -1 for devfn means auto assign */
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743
static PCIDevice *do_pci_register_device(PCIDevice *pci_dev, PCIBus *bus,
744
                                         const char *name, int devfn)
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745
{
746 747 748
    PCIDeviceClass *pc = PCI_DEVICE_GET_CLASS(pci_dev);
    PCIConfigReadFunc *config_read = pc->config_read;
    PCIConfigWriteFunc *config_write = pc->config_write;
749

B
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750
    if (devfn < 0) {
751
        for(devfn = bus->devfn_min ; devfn < ARRAY_SIZE(bus->devices);
752
            devfn += PCI_FUNC_MAX) {
753
            if (!bus->devices[devfn])
B
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754 755
                goto found;
        }
756
        error_report("PCI: no slot/function available for %s, all in use", name);
757
        return NULL;
B
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758
    found: ;
759
    } else if (bus->devices[devfn]) {
760 761
        error_report("PCI: slot %d function %d not available for %s, in use by %s",
                     PCI_SLOT(devfn), PCI_FUNC(devfn), name, bus->devices[devfn]->name);
762
        return NULL;
B
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763
    }
764
    pci_dev->bus = bus;
B
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765 766
    pci_dev->devfn = devfn;
    pstrcpy(pci_dev->name, sizeof(pci_dev->name), name);
767
    pci_dev->irq_state = 0;
I
Isaku Yamahata 已提交
768
    pci_config_alloc(pci_dev);
769

770 771 772 773
    pci_config_set_vendor_id(pci_dev->config, pc->vendor_id);
    pci_config_set_device_id(pci_dev->config, pc->device_id);
    pci_config_set_revision(pci_dev->config, pc->revision);
    pci_config_set_class(pci_dev->config, pc->class_id);
774

775 776
    if (!pc->is_bridge) {
        if (pc->subsystem_vendor_id || pc->subsystem_id) {
777
            pci_set_word(pci_dev->config + PCI_SUBSYSTEM_VENDOR_ID,
778
                         pc->subsystem_vendor_id);
779
            pci_set_word(pci_dev->config + PCI_SUBSYSTEM_ID,
780
                         pc->subsystem_id);
781 782 783 784 785
        } else {
            pci_set_default_subsystem_id(pci_dev);
        }
    } else {
        /* subsystem_vendor_id/subsystem_id are only for header type 0 */
786 787
        assert(!pc->subsystem_vendor_id);
        assert(!pc->subsystem_id);
788
    }
789
    pci_init_cmask(pci_dev);
790
    pci_init_wmask(pci_dev);
791
    pci_init_w1cmask(pci_dev);
792
    if (pc->is_bridge) {
793
        pci_init_mask_bridge(pci_dev);
794
    }
795 796 797 798
    if (pci_init_multifunction(bus, pci_dev)) {
        pci_config_free(pci_dev);
        return NULL;
    }
799 800 801 802 803

    if (!config_read)
        config_read = pci_default_read_config;
    if (!config_write)
        config_write = pci_default_write_config;
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804 805
    pci_dev->config_read = config_read;
    pci_dev->config_write = config_write;
806
    bus->devices[devfn] = pci_dev;
807
    pci_dev->irq = qemu_allocate_irqs(pci_set_irq, pci_dev, PCI_NUM_PINS);
J
Juan Quintela 已提交
808
    pci_dev->version_id = 2; /* Current pci device vmstate version */
B
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809 810 811
    return pci_dev;
}

812 813 814 815 816 817 818
static void do_pci_unregister_device(PCIDevice *pci_dev)
{
    qemu_free_irqs(pci_dev->irq);
    pci_dev->bus->devices[pci_dev->devfn] = NULL;
    pci_config_free(pci_dev);
}

819 820 821 822 823 824 825
static void pci_unregister_io_regions(PCIDevice *pci_dev)
{
    PCIIORegion *r;
    int i;

    for(i = 0; i < PCI_NUM_REGIONS; i++) {
        r = &pci_dev->io_regions[i];
826
        if (!r->size || r->addr == PCI_BAR_UNMAPPED)
827
            continue;
828
        memory_region_del_subregion(r->address_space, r->memory);
829 830 831
    }
}

832
static int pci_unregister_device(DeviceState *dev)
833
{
834 835
    PCIDevice *pci_dev = PCI_DEVICE(dev);
    PCIDeviceClass *pc = PCI_DEVICE_GET_CLASS(pci_dev);
836 837
    int ret = 0;

838 839
    if (pc->exit)
        ret = pc->exit(pci_dev);
840 841 842 843
    if (ret)
        return ret;

    pci_unregister_io_regions(pci_dev);
844
    pci_del_option_rom(pci_dev);
845
    do_pci_unregister_device(pci_dev);
846 847 848
    return 0;
}

849 850
void pci_register_bar(PCIDevice *pci_dev, int region_num,
                      uint8_t type, MemoryRegion *memory)
B
bellard 已提交
851 852
{
    PCIIORegion *r;
P
pbrook 已提交
853
    uint32_t addr;
854
    uint64_t wmask;
A
Avi Kivity 已提交
855
    pcibus_t size = memory_region_size(memory);
856

857 858
    assert(region_num >= 0);
    assert(region_num < PCI_NUM_REGIONS);
859 860
    if (size & (size-1)) {
        fprintf(stderr, "ERROR: PCI region size must be pow2 "
861
                    "type=0x%x, size=0x%"FMT_PCIBUS"\n", type, size);
862 863 864
        exit(1);
    }

B
bellard 已提交
865
    r = &pci_dev->io_regions[region_num];
866
    r->addr = PCI_BAR_UNMAPPED;
B
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867 868
    r->size = size;
    r->type = type;
869
    r->memory = NULL;
870 871

    wmask = ~(size - 1);
872
    addr = pci_bar(pci_dev, region_num);
P
pbrook 已提交
873
    if (region_num == PCI_ROM_SLOT) {
S
Stefan Weil 已提交
874
        /* ROM enable bit is writable */
875
        wmask |= PCI_ROM_ADDRESS_ENABLE;
P
pbrook 已提交
876
    }
877
    pci_set_long(pci_dev->config + addr, type);
I
Isaku Yamahata 已提交
878 879 880 881 882 883 884 885
    if (!(r->type & PCI_BASE_ADDRESS_SPACE_IO) &&
        r->type & PCI_BASE_ADDRESS_MEM_TYPE_64) {
        pci_set_quad(pci_dev->wmask + addr, wmask);
        pci_set_quad(pci_dev->cmask + addr, ~0ULL);
    } else {
        pci_set_long(pci_dev->wmask + addr, wmask & 0xffffffff);
        pci_set_long(pci_dev->cmask + addr, 0xffffffff);
    }
886
    pci_dev->io_regions[region_num].memory = memory;
887
    pci_dev->io_regions[region_num].address_space
A
Avi Kivity 已提交
888
        = type & PCI_BASE_ADDRESS_SPACE_IO
889 890
        ? pci_dev->bus->address_space_io
        : pci_dev->bus->address_space_mem;
891 892
}

893 894 895 896 897
pcibus_t pci_get_bar_addr(PCIDevice *pci_dev, int region_num)
{
    return pci_dev->io_regions[region_num].addr;
}

898 899 900 901 902 903 904 905 906 907 908 909 910 911 912 913 914 915 916 917 918 919 920 921 922 923 924 925 926 927 928 929 930 931 932 933 934 935 936 937 938 939 940 941 942 943 944 945 946 947 948 949 950 951 952 953 954 955 956 957 958 959 960 961 962
static pcibus_t pci_bar_address(PCIDevice *d,
				int reg, uint8_t type, pcibus_t size)
{
    pcibus_t new_addr, last_addr;
    int bar = pci_bar(d, reg);
    uint16_t cmd = pci_get_word(d->config + PCI_COMMAND);

    if (type & PCI_BASE_ADDRESS_SPACE_IO) {
        if (!(cmd & PCI_COMMAND_IO)) {
            return PCI_BAR_UNMAPPED;
        }
        new_addr = pci_get_long(d->config + bar) & ~(size - 1);
        last_addr = new_addr + size - 1;
        /* NOTE: we have only 64K ioports on PC */
        if (last_addr <= new_addr || new_addr == 0 || last_addr > UINT16_MAX) {
            return PCI_BAR_UNMAPPED;
        }
        return new_addr;
    }

    if (!(cmd & PCI_COMMAND_MEMORY)) {
        return PCI_BAR_UNMAPPED;
    }
    if (type & PCI_BASE_ADDRESS_MEM_TYPE_64) {
        new_addr = pci_get_quad(d->config + bar);
    } else {
        new_addr = pci_get_long(d->config + bar);
    }
    /* the ROM slot has a specific enable bit */
    if (reg == PCI_ROM_SLOT && !(new_addr & PCI_ROM_ADDRESS_ENABLE)) {
        return PCI_BAR_UNMAPPED;
    }
    new_addr &= ~(size - 1);
    last_addr = new_addr + size - 1;
    /* NOTE: we do not support wrapping */
    /* XXX: as we cannot support really dynamic
       mappings, we handle specific values as invalid
       mappings. */
    if (last_addr <= new_addr || new_addr == 0 ||
        last_addr == PCI_BAR_UNMAPPED) {
        return PCI_BAR_UNMAPPED;
    }

    /* Now pcibus_t is 64bit.
     * Check if 32 bit BAR wraps around explicitly.
     * Without this, PC ide doesn't work well.
     * TODO: remove this work around.
     */
    if  (!(type & PCI_BASE_ADDRESS_MEM_TYPE_64) && last_addr >= UINT32_MAX) {
        return PCI_BAR_UNMAPPED;
    }

    /*
     * OS is allowed to set BAR beyond its addressable
     * bits. For example, 32 bit OS can set 64bit bar
     * to >4G. Check it. TODO: we might need to support
     * it in the future for e.g. PAE.
     */
    if (last_addr >= TARGET_PHYS_ADDR_MAX) {
        return PCI_BAR_UNMAPPED;
    }

    return new_addr;
}

963 964 965
static void pci_update_mappings(PCIDevice *d)
{
    PCIIORegion *r;
966
    int i;
967
    pcibus_t new_addr;
968

969
    for(i = 0; i < PCI_NUM_REGIONS; i++) {
970
        r = &d->io_regions[i];
971 972

        /* this region isn't registered */
973
        if (!r->size)
974 975
            continue;

976
        new_addr = pci_bar_address(d, i, r->type, r->size);
977 978

        /* This bar isn't changed */
979
        if (new_addr == r->addr)
980 981 982 983
            continue;

        /* now do the real mapping */
        if (r->addr != PCI_BAR_UNMAPPED) {
984
            memory_region_del_subregion(r->address_space, r->memory);
985
        }
986 987
        r->addr = new_addr;
        if (r->addr != PCI_BAR_UNMAPPED) {
988 989
            memory_region_add_subregion_overlap(r->address_space,
                                                r->addr, r->memory, 1);
990
        }
991 992 993
    }
}

994 995 996 997 998 999 1000 1001 1002 1003 1004 1005 1006 1007 1008 1009 1010 1011 1012
static inline int pci_irq_disabled(PCIDevice *d)
{
    return pci_get_word(d->config + PCI_COMMAND) & PCI_COMMAND_INTX_DISABLE;
}

/* Called after interrupt disabled field update in config space,
 * assert/deassert interrupts if necessary.
 * Gets original interrupt disable bit value (before update). */
static void pci_update_irq_disabled(PCIDevice *d, int was_irq_disabled)
{
    int i, disabled = pci_irq_disabled(d);
    if (disabled == was_irq_disabled)
        return;
    for (i = 0; i < PCI_NUM_PINS; ++i) {
        int state = pci_irq_state(d, i);
        pci_change_irq_level(d, i, disabled ? -state : state);
    }
}

1013
uint32_t pci_default_read_config(PCIDevice *d,
1014
                                 uint32_t address, int len)
B
bellard 已提交
1015
{
1016
    uint32_t val = 0;
J
Jan Kiszka 已提交
1017

1018 1019
    memcpy(&val, d->config + address, len);
    return le32_to_cpu(val);
1020 1021
}

1022
void pci_default_write_config(PCIDevice *d, uint32_t addr, uint32_t val, int l)
1023
{
1024
    int i, was_irq_disabled = pci_irq_disabled(d);
1025

J
Jan Kiszka 已提交
1026
    for (i = 0; i < l; val >>= 8, ++i) {
1027
        uint8_t wmask = d->wmask[addr + i];
1028 1029
        uint8_t w1cmask = d->w1cmask[addr + i];
        assert(!(wmask & w1cmask));
1030
        d->config[addr + i] = (d->config[addr + i] & ~wmask) | (val & wmask);
1031
        d->config[addr + i] &= ~(val & w1cmask); /* W1C: Write 1 to Clear */
1032
    }
I
Isaku Yamahata 已提交
1033
    if (ranges_overlap(addr, l, PCI_BASE_ADDRESS_0, 24) ||
1034 1035
        ranges_overlap(addr, l, PCI_ROM_ADDRESS, 4) ||
        ranges_overlap(addr, l, PCI_ROM_ADDRESS1, 4) ||
I
Isaku Yamahata 已提交
1036
        range_covers_byte(addr, l, PCI_COMMAND))
1037
        pci_update_mappings(d);
1038 1039 1040

    if (range_covers_byte(addr, l, PCI_COMMAND))
        pci_update_irq_disabled(d, was_irq_disabled);
B
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1041 1042
}

P
pbrook 已提交
1043 1044
/***********************************************************/
/* generic PCI irq support */
1045

P
pbrook 已提交
1046
/* 0 <= irq_num <= 3. level must be 0 or 1 */
P
pbrook 已提交
1047
static void pci_set_irq(void *opaque, int irq_num, int level)
B
bellard 已提交
1048
{
1049
    PCIDevice *pci_dev = opaque;
P
pbrook 已提交
1050
    int change;
1051

1052
    change = level - pci_irq_state(pci_dev, irq_num);
P
pbrook 已提交
1053 1054
    if (!change)
        return;
1055

1056
    pci_set_irq_state(pci_dev, irq_num, level);
1057
    pci_update_irq_status(pci_dev);
1058 1059
    if (pci_irq_disabled(pci_dev))
        return;
1060
    pci_change_irq_level(pci_dev, irq_num, change);
B
bellard 已提交
1061 1062
}

P
pbrook 已提交
1063 1064
/***********************************************************/
/* monitor info on PCI */
1065

1066 1067 1068
typedef struct {
    uint16_t class;
    const char *desc;
1069 1070
    const char *fw_name;
    uint16_t fw_ign_bits;
1071 1072
} pci_class_desc;

1073
static const pci_class_desc pci_class_descriptions[] =
1074
{
1075 1076 1077 1078 1079 1080
    { 0x0001, "VGA controller", "display"},
    { 0x0100, "SCSI controller", "scsi"},
    { 0x0101, "IDE controller", "ide"},
    { 0x0102, "Floppy controller", "fdc"},
    { 0x0103, "IPI controller", "ipi"},
    { 0x0104, "RAID controller", "raid"},
T
ths 已提交
1081 1082 1083
    { 0x0106, "SATA controller"},
    { 0x0107, "SAS controller"},
    { 0x0180, "Storage controller"},
1084 1085 1086 1087
    { 0x0200, "Ethernet controller", "ethernet"},
    { 0x0201, "Token Ring controller", "token-ring"},
    { 0x0202, "FDDI controller", "fddi"},
    { 0x0203, "ATM controller", "atm"},
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    { 0x0280, "Network controller"},
1089
    { 0x0300, "VGA controller", "display", 0x00ff},
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1090 1091 1092
    { 0x0301, "XGA controller"},
    { 0x0302, "3D controller"},
    { 0x0380, "Display controller"},
1093 1094
    { 0x0400, "Video controller", "video"},
    { 0x0401, "Audio controller", "sound"},
T
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1095
    { 0x0402, "Phone"},
1096
    { 0x0403, "Audio controller", "sound"},
T
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1097
    { 0x0480, "Multimedia controller"},
1098 1099
    { 0x0500, "RAM controller", "memory"},
    { 0x0501, "Flash controller", "flash"},
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1100
    { 0x0580, "Memory controller"},
1101 1102 1103 1104 1105 1106 1107 1108
    { 0x0600, "Host bridge", "host"},
    { 0x0601, "ISA bridge", "isa"},
    { 0x0602, "EISA bridge", "eisa"},
    { 0x0603, "MC bridge", "mca"},
    { 0x0604, "PCI bridge", "pci"},
    { 0x0605, "PCMCIA bridge", "pcmcia"},
    { 0x0606, "NUBUS bridge", "nubus"},
    { 0x0607, "CARDBUS bridge", "cardbus"},
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1109 1110
    { 0x0608, "RACEWAY bridge"},
    { 0x0680, "Bridge"},
1111 1112 1113 1114 1115 1116 1117 1118 1119 1120 1121 1122 1123 1124 1125 1126
    { 0x0700, "Serial port", "serial"},
    { 0x0701, "Parallel port", "parallel"},
    { 0x0800, "Interrupt controller", "interrupt-controller"},
    { 0x0801, "DMA controller", "dma-controller"},
    { 0x0802, "Timer", "timer"},
    { 0x0803, "RTC", "rtc"},
    { 0x0900, "Keyboard", "keyboard"},
    { 0x0901, "Pen", "pen"},
    { 0x0902, "Mouse", "mouse"},
    { 0x0A00, "Dock station", "dock", 0x00ff},
    { 0x0B00, "i386 cpu", "cpu", 0x00ff},
    { 0x0c00, "Fireware contorller", "fireware"},
    { 0x0c01, "Access bus controller", "access-bus"},
    { 0x0c02, "SSA controller", "ssa"},
    { 0x0c03, "USB controller", "usb"},
    { 0x0c04, "Fibre channel controller", "fibre-channel"},
1127 1128 1129
    { 0, NULL}
};

1130 1131
static void pci_for_each_device_under_bus(PCIBus *bus,
                                          void (*fn)(PCIBus *b, PCIDevice *d))
1132
{
1133 1134
    PCIDevice *d;
    int devfn;
1135

1136 1137 1138 1139 1140 1141 1142 1143 1144 1145 1146
    for(devfn = 0; devfn < ARRAY_SIZE(bus->devices); devfn++) {
        d = bus->devices[devfn];
        if (d) {
            fn(bus, d);
        }
    }
}

void pci_for_each_device(PCIBus *bus, int bus_num,
                         void (*fn)(PCIBus *b, PCIDevice *d))
{
1147
    bus = pci_find_bus_nr(bus, bus_num);
1148 1149 1150 1151 1152 1153

    if (bus) {
        pci_for_each_device_under_bus(bus, fn);
    }
}

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static const pci_class_desc *get_class_desc(int class)
1155
{
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1156
    const pci_class_desc *desc;
1157

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    desc = pci_class_descriptions;
    while (desc->desc && class != desc->class) {
        desc++;
1161
    }
1162

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    return desc;
}
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static PciDeviceInfoList *qmp_query_pci_devices(PCIBus *bus, int bus_num);
1167

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static PciMemoryRegionList *qmp_query_pci_regions(const PCIDevice *dev)
{
    PciMemoryRegionList *head = NULL, *cur_item = NULL;
    int i;
1172

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1173 1174 1175 1176 1177 1178
    for (i = 0; i < PCI_NUM_REGIONS; i++) {
        const PCIIORegion *r = &dev->io_regions[i];
        PciMemoryRegionList *region;

        if (!r->size) {
            continue;
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        }
1180

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        region = g_malloc0(sizeof(*region));
        region->value = g_malloc0(sizeof(*region->value));
1183

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1184 1185 1186 1187 1188 1189 1190 1191
        if (r->type & PCI_BASE_ADDRESS_SPACE_IO) {
            region->value->type = g_strdup("io");
        } else {
            region->value->type = g_strdup("memory");
            region->value->has_prefetch = true;
            region->value->prefetch = !!(r->type & PCI_BASE_ADDRESS_MEM_PREFETCH);
            region->value->has_mem_type_64 = true;
            region->value->mem_type_64 = !!(r->type & PCI_BASE_ADDRESS_MEM_TYPE_64);
1192
        }
1193

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        region->value->bar = i;
        region->value->address = r->addr;
        region->value->size = r->size;
1197

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        /* XXX: waiting for the qapi to support GSList */
        if (!cur_item) {
            head = cur_item = region;
        } else {
            cur_item->next = region;
            cur_item = region;
1204
        }
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    }
1206

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    return head;
1208 1209
}

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static PciBridgeInfo *qmp_query_pci_bridge(PCIDevice *dev, PCIBus *bus,
                                           int bus_num)
1212
{
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    PciBridgeInfo *info;
1214

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1215
    info = g_malloc0(sizeof(*info));
1216

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1217 1218 1219
    info->bus.number = dev->config[PCI_PRIMARY_BUS];
    info->bus.secondary = dev->config[PCI_SECONDARY_BUS];
    info->bus.subordinate = dev->config[PCI_SUBORDINATE_BUS];
1220

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    info->bus.io_range = g_malloc0(sizeof(*info->bus.io_range));
    info->bus.io_range->base = pci_bridge_get_base(dev, PCI_BASE_ADDRESS_SPACE_IO);
    info->bus.io_range->limit = pci_bridge_get_limit(dev, PCI_BASE_ADDRESS_SPACE_IO);
1224

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1225 1226 1227
    info->bus.memory_range = g_malloc0(sizeof(*info->bus.memory_range));
    info->bus.memory_range->base = pci_bridge_get_base(dev, PCI_BASE_ADDRESS_SPACE_MEMORY);
    info->bus.memory_range->limit = pci_bridge_get_limit(dev, PCI_BASE_ADDRESS_SPACE_MEMORY);
1228

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    info->bus.prefetchable_range = g_malloc0(sizeof(*info->bus.prefetchable_range));
    info->bus.prefetchable_range->base = pci_bridge_get_base(dev, PCI_BASE_ADDRESS_MEM_PREFETCH);
    info->bus.prefetchable_range->limit = pci_bridge_get_limit(dev, PCI_BASE_ADDRESS_MEM_PREFETCH);
1232

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    if (dev->config[PCI_SECONDARY_BUS] != 0) {
1234
        PCIBus *child_bus = pci_find_bus_nr(bus, dev->config[PCI_SECONDARY_BUS]);
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1235 1236 1237 1238
        if (child_bus) {
            info->has_devices = true;
            info->devices = qmp_query_pci_devices(child_bus, dev->config[PCI_SECONDARY_BUS]);
        }
1239 1240
    }

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    return info;
1242 1243
}

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1244 1245
static PciDeviceInfo *qmp_query_pci_device(PCIDevice *dev, PCIBus *bus,
                                           int bus_num)
1246
{
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1247 1248
    const pci_class_desc *desc;
    PciDeviceInfo *info;
1249
    uint8_t type;
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1250
    int class;
1251

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1252 1253 1254 1255 1256 1257 1258 1259 1260 1261 1262 1263 1264 1265 1266 1267 1268
    info = g_malloc0(sizeof(*info));
    info->bus = bus_num;
    info->slot = PCI_SLOT(dev->devfn);
    info->function = PCI_FUNC(dev->devfn);

    class = pci_get_word(dev->config + PCI_CLASS_DEVICE);
    info->class_info.class = class;
    desc = get_class_desc(class);
    if (desc->desc) {
        info->class_info.has_desc = true;
        info->class_info.desc = g_strdup(desc->desc);
    }

    info->id.vendor = pci_get_word(dev->config + PCI_VENDOR_ID);
    info->id.device = pci_get_word(dev->config + PCI_DEVICE_ID);
    info->regions = qmp_query_pci_regions(dev);
    info->qdev_id = g_strdup(dev->qdev.id ? dev->qdev.id : "");
1269 1270

    if (dev->config[PCI_INTERRUPT_PIN] != 0) {
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1271 1272
        info->has_irq = true;
        info->irq = dev->config[PCI_INTERRUPT_LINE];
1273 1274
    }

1275 1276
    type = dev->config[PCI_HEADER_TYPE] & ~PCI_HEADER_TYPE_MULTI_FUNCTION;
    if (type == PCI_HEADER_TYPE_BRIDGE) {
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        info->has_pci_bridge = true;
        info->pci_bridge = qmp_query_pci_bridge(dev, bus, bus_num);
1279 1280
    }

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    return info;
1282 1283
}

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1284
static PciDeviceInfoList *qmp_query_pci_devices(PCIBus *bus, int bus_num)
1285
{
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1286
    PciDeviceInfoList *info, *head = NULL, *cur_item = NULL;
1287
    PCIDevice *dev;
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    int devfn;
1289 1290 1291 1292

    for (devfn = 0; devfn < ARRAY_SIZE(bus->devices); devfn++) {
        dev = bus->devices[devfn];
        if (dev) {
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1293 1294 1295 1296 1297 1298 1299 1300 1301 1302
            info = g_malloc0(sizeof(*info));
            info->value = qmp_query_pci_device(dev, bus, bus_num);

            /* XXX: waiting for the qapi to support GSList */
            if (!cur_item) {
                head = cur_item = info;
            } else {
                cur_item->next = info;
                cur_item = info;
            }
1303
        }
1304
    }
1305

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    return head;
1307 1308
}

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1309
static PciInfo *qmp_query_pci_bus(PCIBus *bus, int bus_num)
1310
{
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1311 1312
    PciInfo *info = NULL;

1313
    bus = pci_find_bus_nr(bus, bus_num);
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    if (bus) {
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1315 1316 1317
        info = g_malloc0(sizeof(*info));
        info->bus = bus_num;
        info->devices = qmp_query_pci_devices(bus, bus_num);
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    }
1319

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1320
    return info;
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1321 1322
}

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1323
PciInfoList *qmp_query_pci(Error **errp)
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1324
{
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1325
    PciInfoList *info, *head = NULL, *cur_item = NULL;
1326
    struct PCIHostBus *host;
1327

1328
    QLIST_FOREACH(host, &host_buses, next) {
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1329 1330 1331 1332 1333 1334 1335 1336 1337
        info = g_malloc0(sizeof(*info));
        info->value = qmp_query_pci_bus(host->bus, 0);

        /* XXX: waiting for the qapi to support GSList */
        if (!cur_item) {
            head = cur_item = info;
        } else {
            cur_item->next = info;
            cur_item = info;
1338
        }
1339
    }
1340

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1341
    return head;
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1342
}
1343

1344 1345 1346 1347 1348 1349 1350 1351 1352 1353 1354 1355
static const char * const pci_nic_models[] = {
    "ne2k_pci",
    "i82551",
    "i82557b",
    "i82559er",
    "rtl8139",
    "e1000",
    "pcnet",
    "virtio",
    NULL
};

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static const char * const pci_nic_names[] = {
    "ne2k_pci",
    "i82551",
    "i82557b",
    "i82559er",
    "rtl8139",
    "e1000",
    "pcnet",
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1364
    "virtio-net-pci",
1365 1366 1367
    NULL
};

1368
/* Initialize a PCI NIC.  */
1369
/* FIXME callers should check for failure, but don't */
1370 1371
PCIDevice *pci_nic_init(NICInfo *nd, const char *default_model,
                        const char *default_devaddr)
1372
{
1373
    const char *devaddr = nd->devaddr ? nd->devaddr : default_devaddr;
1374 1375
    PCIBus *bus;
    int devfn;
1376
    PCIDevice *pci_dev;
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    DeviceState *dev;
1378 1379
    int i;

1380 1381 1382 1383 1384 1385
    i = qemu_find_nic_model(nd, pci_nic_models, default_model);
    if (i < 0)
        return NULL;

    bus = pci_get_bus_devfn(&devfn, devaddr);
    if (!bus) {
1386 1387
        error_report("Invalid PCI device address %s for device %s",
                     devaddr, pci_nic_names[i]);
1388 1389 1390
        return NULL;
    }

1391
    pci_dev = pci_create(bus, devfn, pci_nic_names[i]);
1392
    dev = &pci_dev->qdev;
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1393
    qdev_set_nic_properties(dev, nd);
1394 1395
    if (qdev_init(dev) < 0)
        return NULL;
1396
    return pci_dev;
1397 1398
}

1399 1400 1401 1402 1403 1404 1405 1406 1407 1408 1409 1410 1411 1412
PCIDevice *pci_nic_init_nofail(NICInfo *nd, const char *default_model,
                               const char *default_devaddr)
{
    PCIDevice *res;

    if (qemu_show_nic_models(nd->model, pci_nic_models))
        exit(0);

    res = pci_nic_init(nd, default_model, default_devaddr);
    if (!res)
        exit(1);
    return res;
}

1413 1414 1415 1416 1417 1418 1419 1420 1421 1422
/* Whether a given bus number is in range of the secondary
 * bus of the given bridge device. */
static bool pci_secondary_bus_in_range(PCIDevice *dev, int bus_num)
{
    return !(pci_get_word(dev->config + PCI_BRIDGE_CONTROL) &
             PCI_BRIDGE_CTL_BUS_RESET) /* Don't walk the bus if it's reset. */ &&
        dev->config[PCI_SECONDARY_BUS] < bus_num &&
        bus_num <= dev->config[PCI_SUBORDINATE_BUS];
}

1423
static PCIBus *pci_find_bus_nr(PCIBus *bus, int bus_num)
1424
{
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1425
    PCIBus *sec;
1426

I
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1427
    if (!bus) {
1428
        return NULL;
I
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1429
    }
1430

1431 1432 1433 1434
    if (pci_bus_num(bus) == bus_num) {
        return bus;
    }

1435 1436 1437 1438 1439 1440
    /* Consider all bus numbers in range for the host pci bridge. */
    if (bus->parent_dev &&
        !pci_secondary_bus_in_range(bus->parent_dev, bus_num)) {
        return NULL;
    }

1441
    /* try child bus */
1442 1443 1444 1445 1446 1447 1448 1449
    for (; bus; bus = sec) {
        QLIST_FOREACH(sec, &bus->child, sibling) {
            assert(sec->parent_dev);
            if (sec->parent_dev->config[PCI_SECONDARY_BUS] == bus_num) {
                return sec;
            }
            if (pci_secondary_bus_in_range(sec->parent_dev, bus_num)) {
                break;
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            }
1451 1452 1453 1454
        }
    }

    return NULL;
1455 1456
}

1457
PCIDevice *pci_find_device(PCIBus *bus, int bus_num, uint8_t devfn)
1458
{
1459
    bus = pci_find_bus_nr(bus, bus_num);
1460 1461 1462 1463

    if (!bus)
        return NULL;

1464
    return bus->devices[devfn];
1465 1466
}

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static int pci_qdev_init(DeviceState *qdev)
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1468 1469
{
    PCIDevice *pci_dev = (PCIDevice *)qdev;
1470
    PCIDeviceClass *pc = PCI_DEVICE_GET_CLASS(pci_dev);
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1471
    PCIBus *bus;
1472
    int rc;
1473
    bool is_default_rom;
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1474

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1475
    /* initialize cap_present for pci_is_express() and pci_config_size() */
1476
    if (pc->is_express) {
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1477 1478 1479
        pci_dev->cap_present |= QEMU_PCI_CAP_EXPRESS;
    }

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1480
    bus = FROM_QBUS(PCIBus, qdev_get_parent_bus(qdev));
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1481 1482 1483
    pci_dev = do_pci_register_device(pci_dev, bus,
                                     object_get_typename(OBJECT(qdev)),
                                     pci_dev->devfn);
1484 1485
    if (pci_dev == NULL)
        return -1;
1486
    if (qdev->hotplugged && pc->no_hotplug) {
1487
        qerror_report(QERR_DEVICE_NO_HOTPLUG, object_get_typename(OBJECT(pci_dev)));
1488 1489 1490
        do_pci_unregister_device(pci_dev);
        return -1;
    }
1491 1492
    if (pc->init) {
        rc = pc->init(pci_dev);
1493 1494 1495 1496
        if (rc != 0) {
            do_pci_unregister_device(pci_dev);
            return rc;
        }
1497
    }
1498 1499

    /* rom loading */
1500
    is_default_rom = false;
1501 1502
    if (pci_dev->romfile == NULL && pc->romfile != NULL) {
        pci_dev->romfile = g_strdup(pc->romfile);
1503 1504 1505
        is_default_rom = true;
    }
    pci_add_option_rom(pci_dev, is_default_rom);
1506

1507
    if (bus->hotplug) {
1508 1509 1510 1511 1512
        /* Let buses differentiate between hotplug and when device is
         * enabled during qemu machine creation. */
        rc = bus->hotplug(bus->hotplug_qdev, pci_dev,
                          qdev->hotplugged ? PCI_HOTPLUG_ENABLED:
                          PCI_COLDPLUG_ENABLED);
1513 1514 1515 1516 1517 1518
        if (rc != 0) {
            int r = pci_unregister_device(&pci_dev->qdev);
            assert(!r);
            return rc;
        }
    }
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1519 1520 1521 1522 1523
    return 0;
}

static int pci_unplug_device(DeviceState *qdev)
{
1524 1525
    PCIDevice *dev = PCI_DEVICE(qdev);
    PCIDeviceClass *pc = PCI_DEVICE_GET_CLASS(dev);
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1526

1527
    if (pc->no_hotplug) {
1528
        qerror_report(QERR_DEVICE_NO_HOTPLUG, object_get_typename(OBJECT(dev)));
1529 1530
        return -1;
    }
1531 1532
    return dev->bus->hotplug(dev->bus->hotplug_qdev, dev,
                             PCI_HOTPLUG_DISABLED);
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1533 1534
}

1535 1536
PCIDevice *pci_create_multifunction(PCIBus *bus, int devfn, bool multifunction,
                                    const char *name)
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1537 1538 1539
{
    DeviceState *dev;

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1540
    dev = qdev_create(&bus->qbus, name);
1541
    qdev_prop_set_int32(dev, "addr", devfn);
1542
    qdev_prop_set_bit(dev, "multifunction", multifunction);
1543
    return PCI_DEVICE(dev);
1544
}
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1546 1547 1548
PCIDevice *pci_create_simple_multifunction(PCIBus *bus, int devfn,
                                           bool multifunction,
                                           const char *name)
1549
{
1550
    PCIDevice *dev = pci_create_multifunction(bus, devfn, multifunction, name);
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1551
    qdev_init_nofail(&dev->qdev);
1552
    return dev;
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1553
}
1554

1555 1556 1557 1558 1559 1560 1561 1562 1563 1564
PCIDevice *pci_create(PCIBus *bus, int devfn, const char *name)
{
    return pci_create_multifunction(bus, devfn, false, name);
}

PCIDevice *pci_create_simple(PCIBus *bus, int devfn, const char *name)
{
    return pci_create_simple_multifunction(bus, devfn, false, name);
}

1565 1566
static int pci_find_space(PCIDevice *pdev, uint8_t size)
{
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1567
    int config_size = pci_config_size(pdev);
1568 1569
    int offset = PCI_CONFIG_HEADER_SIZE;
    int i;
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    for (i = PCI_CONFIG_HEADER_SIZE; i < config_size; ++i)
1571 1572 1573 1574 1575 1576 1577 1578 1579 1580 1581 1582 1583 1584 1585 1586 1587 1588 1589 1590 1591 1592 1593 1594 1595
        if (pdev->used[i])
            offset = i + 1;
        else if (i - offset + 1 == size)
            return offset;
    return 0;
}

static uint8_t pci_find_capability_list(PCIDevice *pdev, uint8_t cap_id,
                                        uint8_t *prev_p)
{
    uint8_t next, prev;

    if (!(pdev->config[PCI_STATUS] & PCI_STATUS_CAP_LIST))
        return 0;

    for (prev = PCI_CAPABILITY_LIST; (next = pdev->config[prev]);
         prev = next + PCI_CAP_LIST_NEXT)
        if (pdev->config[next + PCI_CAP_LIST_ID] == cap_id)
            break;

    if (prev_p)
        *prev_p = prev;
    return next;
}

1596 1597 1598 1599 1600 1601 1602 1603 1604 1605 1606 1607 1608 1609 1610 1611 1612 1613 1614
static uint8_t pci_find_capability_at_offset(PCIDevice *pdev, uint8_t offset)
{
    uint8_t next, prev, found = 0;

    if (!(pdev->used[offset])) {
        return 0;
    }

    assert(pdev->config[PCI_STATUS] & PCI_STATUS_CAP_LIST);

    for (prev = PCI_CAPABILITY_LIST; (next = pdev->config[prev]);
         prev = next + PCI_CAP_LIST_NEXT) {
        if (next <= offset && next > found) {
            found = next;
        }
    }
    return found;
}

1615 1616 1617 1618 1619 1620 1621 1622 1623 1624 1625 1626 1627 1628 1629 1630 1631 1632 1633 1634 1635 1636 1637 1638 1639 1640 1641 1642 1643 1644 1645 1646 1647 1648 1649 1650 1651 1652 1653 1654 1655 1656 1657 1658 1659 1660 1661 1662 1663 1664 1665 1666 1667 1668 1669 1670
/* Patch the PCI vendor and device ids in a PCI rom image if necessary.
   This is needed for an option rom which is used for more than one device. */
static void pci_patch_ids(PCIDevice *pdev, uint8_t *ptr, int size)
{
    uint16_t vendor_id;
    uint16_t device_id;
    uint16_t rom_vendor_id;
    uint16_t rom_device_id;
    uint16_t rom_magic;
    uint16_t pcir_offset;
    uint8_t checksum;

    /* Words in rom data are little endian (like in PCI configuration),
       so they can be read / written with pci_get_word / pci_set_word. */

    /* Only a valid rom will be patched. */
    rom_magic = pci_get_word(ptr);
    if (rom_magic != 0xaa55) {
        PCI_DPRINTF("Bad ROM magic %04x\n", rom_magic);
        return;
    }
    pcir_offset = pci_get_word(ptr + 0x18);
    if (pcir_offset + 8 >= size || memcmp(ptr + pcir_offset, "PCIR", 4)) {
        PCI_DPRINTF("Bad PCIR offset 0x%x or signature\n", pcir_offset);
        return;
    }

    vendor_id = pci_get_word(pdev->config + PCI_VENDOR_ID);
    device_id = pci_get_word(pdev->config + PCI_DEVICE_ID);
    rom_vendor_id = pci_get_word(ptr + pcir_offset + 4);
    rom_device_id = pci_get_word(ptr + pcir_offset + 6);

    PCI_DPRINTF("%s: ROM id %04x%04x / PCI id %04x%04x\n", pdev->romfile,
                vendor_id, device_id, rom_vendor_id, rom_device_id);

    checksum = ptr[6];

    if (vendor_id != rom_vendor_id) {
        /* Patch vendor id and checksum (at offset 6 for etherboot roms). */
        checksum += (uint8_t)rom_vendor_id + (uint8_t)(rom_vendor_id >> 8);
        checksum -= (uint8_t)vendor_id + (uint8_t)(vendor_id >> 8);
        PCI_DPRINTF("ROM checksum %02x / %02x\n", ptr[6], checksum);
        ptr[6] = checksum;
        pci_set_word(ptr + pcir_offset + 4, vendor_id);
    }

    if (device_id != rom_device_id) {
        /* Patch device id and checksum (at offset 6 for etherboot roms). */
        checksum += (uint8_t)rom_device_id + (uint8_t)(rom_device_id >> 8);
        checksum -= (uint8_t)device_id + (uint8_t)(device_id >> 8);
        PCI_DPRINTF("ROM checksum %02x / %02x\n", ptr[6], checksum);
        ptr[6] = checksum;
        pci_set_word(ptr + pcir_offset + 6, device_id);
    }
}

1671
/* Add an option rom for the device */
1672
static int pci_add_option_rom(PCIDevice *pdev, bool is_default_rom)
1673 1674 1675 1676
{
    int size;
    char *path;
    void *ptr;
1677
    char name[32];
A
Anthony Liguori 已提交
1678
    const VMStateDescription *vmsd;
1679

1680 1681 1682 1683 1684
    if (!pdev->romfile)
        return 0;
    if (strlen(pdev->romfile) == 0)
        return 0;

1685 1686 1687 1688 1689 1690 1691 1692 1693
    if (!pdev->rom_bar) {
        /*
         * Load rom via fw_cfg instead of creating a rom bar,
         * for 0.11 compatibility.
         */
        int class = pci_get_word(pdev->config + PCI_CLASS_DEVICE);
        if (class == 0x0300) {
            rom_add_vga(pdev->romfile);
        } else {
G
Gleb Natapov 已提交
1694
            rom_add_option(pdev->romfile, -1);
1695 1696 1697 1698
        }
        return 0;
    }

1699
    path = qemu_find_file(QEMU_FILE_TYPE_BIOS, pdev->romfile);
1700
    if (path == NULL) {
1701
        path = g_strdup(pdev->romfile);
1702 1703 1704
    }

    size = get_image_size(path);
1705
    if (size < 0) {
1706 1707
        error_report("%s: failed to find romfile \"%s\"",
                     __FUNCTION__, pdev->romfile);
1708
        g_free(path);
1709 1710
        return -1;
    }
1711 1712 1713 1714
    if (size & (size - 1)) {
        size = 1 << qemu_fls(size);
    }

A
Anthony Liguori 已提交
1715 1716 1717 1718 1719
    vmsd = qdev_get_vmsd(DEVICE(pdev));

    if (vmsd) {
        snprintf(name, sizeof(name), "%s.rom", vmsd->name);
    } else {
1720
        snprintf(name, sizeof(name), "%s.rom", object_get_typename(OBJECT(pdev)));
A
Anthony Liguori 已提交
1721
    }
A
Avi Kivity 已提交
1722
    pdev->has_rom = true;
1723 1724
    memory_region_init_ram(&pdev->rom, name, size);
    vmstate_register_ram(&pdev->rom, &pdev->qdev);
A
Avi Kivity 已提交
1725
    ptr = memory_region_get_ram_ptr(&pdev->rom);
1726
    load_image(path, ptr);
1727
    g_free(path);
1728

1729 1730 1731 1732 1733
    if (is_default_rom) {
        /* Only the default rom images will be patched (if needed). */
        pci_patch_ids(pdev, ptr, size);
    }

1734 1735
    qemu_put_ram_ptr(ptr);

1736
    pci_register_bar(pdev, PCI_ROM_SLOT, 0, &pdev->rom);
1737 1738 1739 1740

    return 0;
}

1741 1742
static void pci_del_option_rom(PCIDevice *pdev)
{
A
Avi Kivity 已提交
1743
    if (!pdev->has_rom)
1744 1745
        return;

1746
    vmstate_unregister_ram(&pdev->rom, &pdev->qdev);
A
Avi Kivity 已提交
1747 1748
    memory_region_destroy(&pdev->rom);
    pdev->has_rom = false;
1749 1750
}

1751 1752 1753 1754 1755 1756 1757 1758 1759
/*
 * if !offset
 * Reserve space and add capability to the linked list in pci config space
 *
 * if offset = 0,
 * Find and reserve space and add capability to the linked list
 * in pci config space */
int pci_add_capability(PCIDevice *pdev, uint8_t cap_id,
                       uint8_t offset, uint8_t size)
1760
{
1761
    uint8_t *config;
1762 1763
    int i, overlapping_cap;

1764 1765 1766 1767 1768
    if (!offset) {
        offset = pci_find_space(pdev, size);
        if (!offset) {
            return -ENOSPC;
        }
1769 1770 1771 1772 1773 1774 1775 1776 1777 1778 1779 1780 1781 1782 1783 1784 1785
    } else {
        /* Verify that capabilities don't overlap.  Note: device assignment
         * depends on this check to verify that the device is not broken.
         * Should never trigger for emulated devices, but it's helpful
         * for debugging these. */
        for (i = offset; i < offset + size; i++) {
            overlapping_cap = pci_find_capability_at_offset(pdev, i);
            if (overlapping_cap) {
                fprintf(stderr, "ERROR: %04x:%02x:%02x.%x "
                        "Attempt to add PCI capability %x at offset "
                        "%x overlaps existing capability %x at offset %x\n",
                        pci_find_domain(pdev->bus), pci_bus_num(pdev->bus),
                        PCI_SLOT(pdev->devfn), PCI_FUNC(pdev->devfn),
                        cap_id, offset, overlapping_cap, i);
                return -EINVAL;
            }
        }
1786 1787 1788
    }

    config = pdev->config + offset;
1789 1790 1791 1792 1793 1794 1795
    config[PCI_CAP_LIST_ID] = cap_id;
    config[PCI_CAP_LIST_NEXT] = pdev->config[PCI_CAPABILITY_LIST];
    pdev->config[PCI_CAPABILITY_LIST] = offset;
    pdev->config[PCI_STATUS] |= PCI_STATUS_CAP_LIST;
    memset(pdev->used + offset, 0xFF, size);
    /* Make capability read-only by default */
    memset(pdev->wmask + offset, 0, size);
1796 1797
    /* Check capability by default */
    memset(pdev->cmask + offset, 0xFF, size);
1798 1799 1800 1801 1802 1803 1804 1805 1806 1807
    return offset;
}

/* Unlink capability from the pci config space. */
void pci_del_capability(PCIDevice *pdev, uint8_t cap_id, uint8_t size)
{
    uint8_t prev, offset = pci_find_capability_list(pdev, cap_id, &prev);
    if (!offset)
        return;
    pdev->config[prev] = pdev->config[offset + PCI_CAP_LIST_NEXT];
S
Stefan Weil 已提交
1808
    /* Make capability writable again */
1809
    memset(pdev->wmask + offset, 0xff, size);
1810
    memset(pdev->w1cmask + offset, 0, size);
1811 1812
    /* Clear cmask as device-specific registers can't be checked */
    memset(pdev->cmask + offset, 0, size);
1813 1814 1815 1816 1817 1818 1819 1820 1821 1822
    memset(pdev->used + offset, 0, size);

    if (!pdev->config[PCI_CAPABILITY_LIST])
        pdev->config[PCI_STATUS] &= ~PCI_STATUS_CAP_LIST;
}

uint8_t pci_find_capability(PCIDevice *pdev, uint8_t cap_id)
{
    return pci_find_capability_list(pdev, cap_id, NULL);
}
1823 1824 1825 1826 1827 1828 1829 1830 1831

static void pcibus_dev_print(Monitor *mon, DeviceState *dev, int indent)
{
    PCIDevice *d = (PCIDevice *)dev;
    const pci_class_desc *desc;
    char ctxt[64];
    PCIIORegion *r;
    int i, class;

1832
    class = pci_get_word(d->config + PCI_CLASS_DEVICE);
1833 1834 1835 1836 1837 1838 1839 1840 1841 1842 1843
    desc = pci_class_descriptions;
    while (desc->desc && class != desc->class)
        desc++;
    if (desc->desc) {
        snprintf(ctxt, sizeof(ctxt), "%s", desc->desc);
    } else {
        snprintf(ctxt, sizeof(ctxt), "Class %04x", class);
    }

    monitor_printf(mon, "%*sclass %s, addr %02x:%02x.%x, "
                   "pci id %04x:%04x (sub %04x:%04x)\n",
1844
                   indent, "", ctxt, pci_bus_num(d->bus),
1845
                   PCI_SLOT(d->devfn), PCI_FUNC(d->devfn),
1846 1847 1848 1849
                   pci_get_word(d->config + PCI_VENDOR_ID),
                   pci_get_word(d->config + PCI_DEVICE_ID),
                   pci_get_word(d->config + PCI_SUBSYSTEM_VENDOR_ID),
                   pci_get_word(d->config + PCI_SUBSYSTEM_ID));
1850 1851 1852 1853
    for (i = 0; i < PCI_NUM_REGIONS; i++) {
        r = &d->io_regions[i];
        if (!r->size)
            continue;
1854 1855 1856
        monitor_printf(mon, "%*sbar %d: %s at 0x%"FMT_PCIBUS
                       " [0x%"FMT_PCIBUS"]\n",
                       indent, "",
1857
                       i, r->type & PCI_BASE_ADDRESS_SPACE_IO ? "i/o" : "mem",
1858 1859 1860
                       r->addr, r->addr + r->size - 1);
    }
}
G
Gerd Hoffmann 已提交
1861

1862 1863 1864 1865 1866 1867 1868 1869 1870 1871 1872 1873 1874 1875 1876 1877 1878 1879 1880 1881 1882 1883 1884 1885 1886 1887 1888 1889 1890 1891 1892 1893 1894 1895 1896 1897 1898 1899 1900 1901 1902 1903
static char *pci_dev_fw_name(DeviceState *dev, char *buf, int len)
{
    PCIDevice *d = (PCIDevice *)dev;
    const char *name = NULL;
    const pci_class_desc *desc =  pci_class_descriptions;
    int class = pci_get_word(d->config + PCI_CLASS_DEVICE);

    while (desc->desc &&
          (class & ~desc->fw_ign_bits) !=
          (desc->class & ~desc->fw_ign_bits)) {
        desc++;
    }

    if (desc->desc) {
        name = desc->fw_name;
    }

    if (name) {
        pstrcpy(buf, len, name);
    } else {
        snprintf(buf, len, "pci%04x,%04x",
                 pci_get_word(d->config + PCI_VENDOR_ID),
                 pci_get_word(d->config + PCI_DEVICE_ID));
    }

    return buf;
}

static char *pcibus_get_fw_dev_path(DeviceState *dev)
{
    PCIDevice *d = (PCIDevice *)dev;
    char path[50], name[33];
    int off;

    off = snprintf(path, sizeof(path), "%s@%x",
                   pci_dev_fw_name(dev, name, sizeof name),
                   PCI_SLOT(d->devfn));
    if (PCI_FUNC(d->devfn))
        snprintf(path + off, sizeof(path) + off, ",%x", PCI_FUNC(d->devfn));
    return strdup(path);
}

1904 1905
static char *pcibus_get_dev_path(DeviceState *dev)
{
1906 1907 1908 1909 1910 1911 1912 1913
    PCIDevice *d = container_of(dev, PCIDevice, qdev);
    PCIDevice *t;
    int slot_depth;
    /* Path format: Domain:00:Slot.Function:Slot.Function....:Slot.Function.
     * 00 is added here to make this format compatible with
     * domain:Bus:Slot.Func for systems without nested PCI bridges.
     * Slot.Function list specifies the slot and function numbers for all
     * devices on the path from root to the specific device. */
M
Michael S. Tsirkin 已提交
1914 1915 1916 1917
    char domain[] = "DDDD:00";
    char slot[] = ":SS.F";
    int domain_len = sizeof domain - 1 /* For '\0' */;
    int slot_len = sizeof slot - 1 /* For '\0' */;
1918 1919
    int path_len;
    char *path, *p;
M
Michael S. Tsirkin 已提交
1920
    int s;
1921 1922 1923 1924 1925 1926 1927 1928 1929 1930

    /* Calculate # of slots on path between device and root. */;
    slot_depth = 0;
    for (t = d; t; t = t->bus->parent_dev) {
        ++slot_depth;
    }

    path_len = domain_len + slot_len * slot_depth;

    /* Allocate memory, fill in the terminating null byte. */
1931
    path = g_malloc(path_len + 1 /* For '\0' */);
1932 1933 1934
    path[path_len] = '\0';

    /* First field is the domain. */
M
Michael S. Tsirkin 已提交
1935 1936 1937
    s = snprintf(domain, sizeof domain, "%04x:00", pci_find_domain(d->bus));
    assert(s == domain_len);
    memcpy(path, domain, domain_len);
1938 1939 1940 1941 1942 1943

    /* Fill in slot numbers. We walk up from device to root, so need to print
     * them in the reverse order, last to first. */
    p = path + path_len;
    for (t = d; t; t = t->bus->parent_dev) {
        p -= slot_len;
M
Michael S. Tsirkin 已提交
1944
        s = snprintf(slot, sizeof slot, ":%02x.%x",
1945
                     PCI_SLOT(t->devfn), PCI_FUNC(t->devfn));
M
Michael S. Tsirkin 已提交
1946 1947
        assert(s == slot_len);
        memcpy(p, slot, slot_len);
1948 1949 1950
    }

    return path;
1951 1952
}

1953 1954 1955 1956 1957 1958 1959 1960 1961
static int pci_qdev_find_recursive(PCIBus *bus,
                                   const char *id, PCIDevice **pdev)
{
    DeviceState *qdev = qdev_find_recursive(&bus->qbus, id);
    if (!qdev) {
        return -ENODEV;
    }

    /* roughly check if given qdev is pci device */
A
Anthony Liguori 已提交
1962
    if (object_dynamic_cast(OBJECT(qdev), TYPE_PCI_DEVICE)) {
1963
        *pdev = PCI_DEVICE(qdev);
1964 1965 1966 1967 1968 1969 1970 1971 1972 1973 1974 1975 1976 1977 1978 1979 1980 1981 1982 1983 1984 1985 1986
        return 0;
    }
    return -EINVAL;
}

int pci_qdev_find_device(const char *id, PCIDevice **pdev)
{
    struct PCIHostBus *host;
    int rc = -ENODEV;

    QLIST_FOREACH(host, &host_buses, next) {
        int tmp = pci_qdev_find_recursive(host->bus, id, pdev);
        if (!tmp) {
            rc = 0;
            break;
        }
        if (tmp != -ENODEV) {
            rc = tmp;
        }
    }

    return rc;
}
A
Avi Kivity 已提交
1987 1988 1989 1990 1991

MemoryRegion *pci_address_space(PCIDevice *dev)
{
    return dev->bus->address_space_mem;
}
1992 1993 1994 1995 1996

MemoryRegion *pci_address_space_io(PCIDevice *dev)
{
    return dev->bus->address_space_io;
}
1997

1998 1999 2000 2001 2002 2003 2004
static void pci_device_class_init(ObjectClass *klass, void *data)
{
    DeviceClass *k = DEVICE_CLASS(klass);
    k->init = pci_qdev_init;
    k->unplug = pci_unplug_device;
    k->exit = pci_unregister_device;
    k->bus_info = &pci_bus_info;
2005
    k->props = pci_props;
2006 2007
}

2008 2009 2010 2011 2012 2013
static TypeInfo pci_device_type_info = {
    .name = TYPE_PCI_DEVICE,
    .parent = TYPE_DEVICE,
    .instance_size = sizeof(PCIDevice),
    .abstract = true,
    .class_size = sizeof(PCIDeviceClass),
2014
    .class_init = pci_device_class_init,
2015 2016
};

A
Andreas Färber 已提交
2017
static void pci_register_types(void)
2018 2019 2020 2021
{
    type_register_static(&pci_device_type_info);
}

A
Andreas Färber 已提交
2022
type_init(pci_register_types)