pci.c 29.9 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 "monitor.h"
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#include "net.h"
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#include "sysemu.h"
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//#define DEBUG_PCI
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#ifdef DEBUG_PCI
# define PCI_DPRINTF(format, ...)       printf(format, __VA_ARGS__)
#else
# define PCI_DPRINTF(format, ...)       do { } while (0)
#endif
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struct PCIBus {
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    BusState qbus;
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    int bus_num;
    int devfn_min;
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    pci_set_irq_fn set_irq;
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    pci_map_irq_fn map_irq;
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    uint32_t config_reg; /* XXX: suppress */
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    /* low level pic */
    SetIRQFunc *low_set_irq;
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    qemu_irq *irq_opaque;
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    PCIDevice *devices[256];
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    PCIDevice *parent_dev;
    PCIBus *next;
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    /* The bus IRQ state is the logical OR of the connected devices.
       Keep a count of the number of devices with raised IRQs.  */
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    int nirq;
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    int *irq_count;
};

static void pcibus_dev_print(Monitor *mon, DeviceState *dev, int indent);

static struct BusInfo pci_bus_info = {
    .name       = "PCI",
    .size       = sizeof(PCIBus),
    .print_dev  = pcibus_dev_print,
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    .props      = (Property[]) {
        {
            .name   = "devfn",
            .info   = &qdev_prop_uint32,
            .offset = offsetof(PCIDevice, devfn),
            .defval = (uint32_t[]) { -1 },
        },
        {/* end of list */}
    }
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};
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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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target_phys_addr_t pci_mem_base;
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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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static PCIBus *first_bus;

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static void pcibus_save(QEMUFile *f, void *opaque)
{
    PCIBus *bus = (PCIBus *)opaque;
    int i;

    qemu_put_be32(f, bus->nirq);
    for (i = 0; i < bus->nirq; i++)
        qemu_put_be32(f, bus->irq_count[i]);
}

static int  pcibus_load(QEMUFile *f, void *opaque, int version_id)
{
    PCIBus *bus = (PCIBus *)opaque;
    int i, nirq;

    if (version_id != 1)
        return -EINVAL;

    nirq = qemu_get_be32(f);
    if (bus->nirq != nirq) {
        fprintf(stderr, "pcibus_load: nirq mismatch: src=%d dst=%d\n",
                nirq, bus->nirq);
        return -EINVAL;
    }

    for (i = 0; i < nirq; i++)
        bus->irq_count[i] = qemu_get_be32(f);

    return 0;
}

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static void pci_bus_reset(void *opaque)
{
    PCIBus *bus = (PCIBus *)opaque;
    int i;

    for (i = 0; i < bus->nirq; i++) {
        bus->irq_count[i] = 0;
    }
    for (i = 0; i < 256; i++) {
        if (bus->devices[i])
            memset(bus->devices[i]->irq_state, 0,
                   sizeof(bus->devices[i]->irq_state));
    }
}

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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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                         qemu_irq *pic, int devfn_min, int nirq)
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{
    PCIBus *bus;
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    static int nbus = 0;

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    bus = FROM_QBUS(PCIBus, qbus_create(&pci_bus_info, parent, name));
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    bus->set_irq = set_irq;
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    bus->map_irq = map_irq;
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    bus->irq_opaque = pic;
    bus->devfn_min = devfn_min;
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    bus->nirq = nirq;
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    bus->irq_count = qemu_mallocz(nirq * sizeof(bus->irq_count[0]));
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    bus->next = first_bus;
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    first_bus = bus;
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    register_savevm("PCIBUS", nbus++, 1, pcibus_save, pcibus_load, bus);
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    qemu_register_reset(pci_bus_reset, bus);
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    return bus;
}
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static PCIBus *pci_register_secondary_bus(PCIDevice *dev, pci_map_irq_fn map_irq)
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{
    PCIBus *bus;
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    bus = qemu_mallocz(sizeof(PCIBus));
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    bus->map_irq = map_irq;
    bus->parent_dev = dev;
    bus->next = dev->bus->next;
    dev->bus->next = bus;
    return bus;
}

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int pci_bus_num(PCIBus *s)
{
    return s->bus_num;
}

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void pci_device_save(PCIDevice *s, QEMUFile *f)
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{
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    int i;

    qemu_put_be32(f, 2); /* PCI device version */
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    qemu_put_buffer(f, s->config, 256);
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    for (i = 0; i < 4; i++)
        qemu_put_be32(f, s->irq_state[i]);
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}

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int pci_device_load(PCIDevice *s, QEMUFile *f)
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{
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    uint8_t config[PCI_CONFIG_SPACE_SIZE];
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    uint32_t version_id;
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    int i;

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    version_id = qemu_get_be32(f);
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    if (version_id > 2)
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        return -EINVAL;
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    qemu_get_buffer(f, config, sizeof config);
    for (i = 0; i < sizeof config; ++i)
        if ((config[i] ^ s->config[i]) & s->cmask[i] & ~s->wmask[i])
            return -EINVAL;
    memcpy(s->config, config, sizeof config);

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    pci_update_mappings(s);
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    if (version_id >= 2)
        for (i = 0; i < 4; i ++)
            s->irq_state[i] = qemu_get_be32(f);
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    return 0;
}

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static int pci_set_default_subsystem_id(PCIDevice *pci_dev)
{
    uint16_t *id;

    id = (void*)(&pci_dev->config[PCI_SUBVENDOR_ID]);
    id[0] = cpu_to_le16(pci_default_sub_vendor_id);
    id[1] = cpu_to_le16(pci_default_sub_device_id);
    return 0;
}

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/*
 * Parse [[<domain>:]<bus>:]<slot>, return -1 on error
 */
static int pci_parse_devaddr(const char *addr, int *domp, int *busp, unsigned *slotp)
{
    const char *p;
    char *e;
    unsigned long val;
    unsigned long dom = 0, bus = 0;
    unsigned slot = 0;

    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;
	}
    }

    if (dom > 0xffff || bus > 0xff || val > 0x1f)
	return -1;

    slot = val;

    if (*e)
	return -1;

    /* Note: QEMU doesn't implement domains other than 0 */
    if (dom != 0 || pci_find_bus(bus) == NULL)
	return -1;

    *domp = dom;
    *busp = bus;
    *slotp = slot;
    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;
    }
    if (pci_parse_devaddr(addr, domp, busp, slotp)) {
        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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static PCIBus *pci_get_bus_devfn(int *devfnp, const char *devaddr)
{
    int dom, bus;
    unsigned slot;

    if (!devaddr) {
        *devfnp = -1;
        return pci_find_bus(0);
    }

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

    *devfnp = slot << 3;
    return pci_find_bus(bus);
}

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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)
{
    int i;
    dev->wmask[PCI_CACHE_LINE_SIZE] = 0xff;
    dev->wmask[PCI_INTERRUPT_LINE] = 0xff;
    dev->wmask[PCI_COMMAND] = PCI_COMMAND_IO | PCI_COMMAND_MEMORY
                              | PCI_COMMAND_MASTER;
    for (i = PCI_CONFIG_HEADER_SIZE; i < PCI_CONFIG_SPACE_SIZE; ++i)
        dev->wmask[i] = 0xff;
}

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/* -1 for devfn means auto assign */
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static PCIDevice *do_pci_register_device(PCIDevice *pci_dev, PCIBus *bus,
                                         const char *name, int devfn,
                                         PCIConfigReadFunc *config_read,
                                         PCIConfigWriteFunc *config_write)
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{
    if (devfn < 0) {
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        for(devfn = bus->devfn_min ; devfn < 256; devfn += 8) {
            if (!bus->devices[devfn])
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                goto found;
        }
        return NULL;
    found: ;
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    } else if (bus->devices[devfn]) {
        return NULL;
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    }
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    pci_dev->bus = bus;
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    pci_dev->devfn = devfn;
    pstrcpy(pci_dev->name, sizeof(pci_dev->name), name);
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    memset(pci_dev->irq_state, 0, sizeof(pci_dev->irq_state));
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    pci_set_default_subsystem_id(pci_dev);
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    pci_init_cmask(pci_dev);
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    pci_init_wmask(pci_dev);
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    if (!config_read)
        config_read = pci_default_read_config;
    if (!config_write)
        config_write = pci_default_write_config;
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    pci_dev->config_read = config_read;
    pci_dev->config_write = config_write;
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    bus->devices[devfn] = pci_dev;
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    pci_dev->irq = qemu_allocate_irqs(pci_set_irq, pci_dev, 4);
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    return pci_dev;
}

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PCIDevice *pci_register_device(PCIBus *bus, const char *name,
                               int instance_size, int devfn,
                               PCIConfigReadFunc *config_read,
                               PCIConfigWriteFunc *config_write)
{
    PCIDevice *pci_dev;

    pci_dev = qemu_mallocz(instance_size);
    pci_dev = do_pci_register_device(pci_dev, bus, name, devfn,
                                     config_read, config_write);
    return pci_dev;
}
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static target_phys_addr_t pci_to_cpu_addr(target_phys_addr_t addr)
{
    return addr + pci_mem_base;
}

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];
        if (!r->size || r->addr == -1)
            continue;
        if (r->type == PCI_ADDRESS_SPACE_IO) {
            isa_unassign_ioport(r->addr, r->size);
        } else {
            cpu_register_physical_memory(pci_to_cpu_addr(r->addr),
                                                     r->size,
                                                     IO_MEM_UNASSIGNED);
        }
    }
}

int pci_unregister_device(PCIDevice *pci_dev)
{
    int ret = 0;

    if (pci_dev->unregister)
        ret = pci_dev->unregister(pci_dev);
    if (ret)
        return ret;

    pci_unregister_io_regions(pci_dev);

    qemu_free_irqs(pci_dev->irq);
    pci_dev->bus->devices[pci_dev->devfn] = NULL;
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    qdev_free(&pci_dev->qdev);
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    return 0;
}

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void pci_register_bar(PCIDevice *pci_dev, int region_num,
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                            uint32_t size, int type,
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                            PCIMapIORegionFunc *map_func)
{
    PCIIORegion *r;
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    uint32_t addr;
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    uint32_t wmask;
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    if ((unsigned int)region_num >= PCI_NUM_REGIONS)
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        return;
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    if (size & (size-1)) {
        fprintf(stderr, "ERROR: PCI region size must be pow2 "
                    "type=0x%x, size=0x%x\n", type, size);
        exit(1);
    }

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    r = &pci_dev->io_regions[region_num];
    r->addr = -1;
    r->size = size;
    r->type = type;
    r->map_func = map_func;
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    wmask = ~(size - 1);
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    if (region_num == PCI_ROM_SLOT) {
        addr = 0x30;
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        /* ROM enable bit is writeable */
        wmask |= 1;
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    } else {
        addr = 0x10 + region_num * 4;
    }
    *(uint32_t *)(pci_dev->config + addr) = cpu_to_le32(type);
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    *(uint32_t *)(pci_dev->wmask + addr) = cpu_to_le32(wmask);
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    *(uint32_t *)(pci_dev->cmask + addr) = 0xffffffff;
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}

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static void pci_update_mappings(PCIDevice *d)
{
    PCIIORegion *r;
    int cmd, i;
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    uint32_t last_addr, new_addr, config_ofs;
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    cmd = le16_to_cpu(*(uint16_t *)(d->config + PCI_COMMAND));
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    for(i = 0; i < PCI_NUM_REGIONS; i++) {
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        r = &d->io_regions[i];
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        if (i == PCI_ROM_SLOT) {
            config_ofs = 0x30;
        } else {
            config_ofs = 0x10 + i * 4;
        }
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        if (r->size != 0) {
            if (r->type & PCI_ADDRESS_SPACE_IO) {
                if (cmd & PCI_COMMAND_IO) {
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                    new_addr = le32_to_cpu(*(uint32_t *)(d->config +
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                                                         config_ofs));
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                    new_addr = new_addr & ~(r->size - 1);
                    last_addr = new_addr + r->size - 1;
                    /* NOTE: we have only 64K ioports on PC */
                    if (last_addr <= new_addr || new_addr == 0 ||
                        last_addr >= 0x10000) {
                        new_addr = -1;
                    }
                } else {
                    new_addr = -1;
                }
            } else {
                if (cmd & PCI_COMMAND_MEMORY) {
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                    new_addr = le32_to_cpu(*(uint32_t *)(d->config +
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                                                         config_ofs));
                    /* the ROM slot has a specific enable bit */
                    if (i == PCI_ROM_SLOT && !(new_addr & 1))
                        goto no_mem_map;
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                    new_addr = new_addr & ~(r->size - 1);
                    last_addr = new_addr + r->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 == -1) {
                        new_addr = -1;
                    }
                } else {
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                no_mem_map:
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                    new_addr = -1;
                }
            }
            /* now do the real mapping */
            if (new_addr != r->addr) {
                if (r->addr != -1) {
                    if (r->type & PCI_ADDRESS_SPACE_IO) {
                        int class;
                        /* NOTE: specific hack for IDE in PC case:
                           only one byte must be mapped. */
                        class = d->config[0x0a] | (d->config[0x0b] << 8);
                        if (class == 0x0101 && r->size == 4) {
                            isa_unassign_ioport(r->addr + 2, 1);
                        } else {
                            isa_unassign_ioport(r->addr, r->size);
                        }
                    } else {
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                        cpu_register_physical_memory(pci_to_cpu_addr(r->addr),
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                                                     r->size,
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                                                     IO_MEM_UNASSIGNED);
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                        qemu_unregister_coalesced_mmio(r->addr, r->size);
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                    }
                }
                r->addr = new_addr;
                if (r->addr != -1) {
                    r->map_func(d, i, r->addr, r->size, r->type);
                }
            }
        }
    }
}

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uint32_t pci_default_read_config(PCIDevice *d,
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                                 uint32_t address, int len)
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{
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    uint32_t val;
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    switch(len) {
    default:
    case 4:
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	if (address <= 0xfc) {
	    val = le32_to_cpu(*(uint32_t *)(d->config + address));
	    break;
	}
	/* fall through */
    case 2:
        if (address <= 0xfe) {
	    val = le16_to_cpu(*(uint16_t *)(d->config + address));
	    break;
	}
	/* fall through */
    case 1:
        val = d->config[address];
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        break;
    }
    return val;
}

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void pci_default_write_config(PCIDevice *d, uint32_t addr, uint32_t val, int l)
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{
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    uint8_t orig[PCI_CONFIG_SPACE_SIZE];
    int i;
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    /* not efficient, but simple */
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    memcpy(orig, d->config, PCI_CONFIG_SPACE_SIZE);
    for(i = 0; i < l && addr < PCI_CONFIG_SPACE_SIZE; val >>= 8, ++i, ++addr) {
        uint8_t wmask = d->wmask[addr];
        d->config[addr] = (d->config[addr] & ~wmask) | (val & wmask);
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    }
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    if (memcmp(orig + PCI_BASE_ADDRESS_0, d->config + PCI_BASE_ADDRESS_0, 24)
        || ((orig[PCI_COMMAND] ^ d->config[PCI_COMMAND])
            & (PCI_COMMAND_MEMORY | PCI_COMMAND_IO)))
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        pci_update_mappings(d);
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}

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void pci_data_write(void *opaque, uint32_t addr, uint32_t val, int len)
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{
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    PCIBus *s = opaque;
    PCIDevice *pci_dev;
    int config_addr, bus_num;
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#if 0
    PCI_DPRINTF("pci_data_write: addr=%08x val=%08x len=%d\n",
                addr, val, len);
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#endif
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    bus_num = (addr >> 16) & 0xff;
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    while (s && s->bus_num != bus_num)
        s = s->next;
    if (!s)
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        return;
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    pci_dev = s->devices[(addr >> 8) & 0xff];
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    if (!pci_dev)
        return;
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    config_addr = addr & 0xff;
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    PCI_DPRINTF("pci_config_write: %s: addr=%02x val=%08x len=%d\n",
                pci_dev->name, config_addr, val, len);
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    pci_dev->config_write(pci_dev, config_addr, val, len);
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}

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uint32_t pci_data_read(void *opaque, uint32_t addr, int len)
B
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{
585 586 587
    PCIBus *s = opaque;
    PCIDevice *pci_dev;
    int config_addr, bus_num;
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    uint32_t val;

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    bus_num = (addr >> 16) & 0xff;
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591 592 593
    while (s && s->bus_num != bus_num)
        s= s->next;
    if (!s)
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594
        goto fail;
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595
    pci_dev = s->devices[(addr >> 8) & 0xff];
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    if (!pci_dev) {
    fail:
598 599 600 601 602 603 604 605 606 607 608 609
        switch(len) {
        case 1:
            val = 0xff;
            break;
        case 2:
            val = 0xffff;
            break;
        default:
        case 4:
            val = 0xffffffff;
            break;
        }
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        goto the_end;
    }
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    config_addr = addr & 0xff;
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    val = pci_dev->config_read(pci_dev, config_addr, len);
614 615
    PCI_DPRINTF("pci_config_read: %s: addr=%02x val=%08x len=%d\n",
                pci_dev->name, config_addr, val, len);
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 the_end:
617 618 619
#if 0
    PCI_DPRINTF("pci_data_read: addr=%08x val=%08x len=%d\n",
                addr, val, len);
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#endif
    return val;
}

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/***********************************************************/
/* generic PCI irq support */
626

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/* 0 <= irq_num <= 3. level must be 0 or 1 */
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static void pci_set_irq(void *opaque, int irq_num, int level)
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{
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    PCIDevice *pci_dev = (PCIDevice *)opaque;
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631 632
    PCIBus *bus;
    int change;
633

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    change = level - pci_dev->irq_state[irq_num];
    if (!change)
        return;
637 638

    pci_dev->irq_state[irq_num] = level;
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    for (;;) {
        bus = pci_dev->bus;
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641
        irq_num = bus->map_irq(pci_dev, irq_num);
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        if (bus->set_irq)
            break;
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        pci_dev = bus->parent_dev;
    }
    bus->irq_count[irq_num] += change;
647
    bus->set_irq(bus->irq_opaque, irq_num, bus->irq_count[irq_num] != 0);
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}

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/***********************************************************/
/* monitor info on PCI */
652

653 654 655 656 657
typedef struct {
    uint16_t class;
    const char *desc;
} pci_class_desc;

658
static const pci_class_desc pci_class_descriptions[] =
659
{
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    { 0x0100, "SCSI controller"},
661
    { 0x0101, "IDE controller"},
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    { 0x0102, "Floppy controller"},
    { 0x0103, "IPI controller"},
    { 0x0104, "RAID controller"},
    { 0x0106, "SATA controller"},
    { 0x0107, "SAS controller"},
    { 0x0180, "Storage controller"},
668
    { 0x0200, "Ethernet controller"},
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    { 0x0201, "Token Ring controller"},
    { 0x0202, "FDDI controller"},
    { 0x0203, "ATM controller"},
    { 0x0280, "Network controller"},
673
    { 0x0300, "VGA controller"},
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    { 0x0301, "XGA controller"},
    { 0x0302, "3D controller"},
    { 0x0380, "Display controller"},
    { 0x0400, "Video controller"},
    { 0x0401, "Audio controller"},
    { 0x0402, "Phone"},
    { 0x0480, "Multimedia controller"},
    { 0x0500, "RAM controller"},
    { 0x0501, "Flash controller"},
    { 0x0580, "Memory controller"},
684 685
    { 0x0600, "Host bridge"},
    { 0x0601, "ISA bridge"},
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    { 0x0602, "EISA bridge"},
    { 0x0603, "MC bridge"},
688
    { 0x0604, "PCI bridge"},
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689 690 691 692 693
    { 0x0605, "PCMCIA bridge"},
    { 0x0606, "NUBUS bridge"},
    { 0x0607, "CARDBUS bridge"},
    { 0x0608, "RACEWAY bridge"},
    { 0x0680, "Bridge"},
694 695 696 697
    { 0x0c03, "USB controller"},
    { 0, NULL}
};

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static void pci_info_device(PCIDevice *d)
699
{
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    Monitor *mon = cur_mon;
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701 702
    int i, class;
    PCIIORegion *r;
703
    const pci_class_desc *desc;
704

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    monitor_printf(mon, "  Bus %2d, device %3d, function %d:\n",
                   d->bus->bus_num, d->devfn >> 3, d->devfn & 7);
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    class = le16_to_cpu(*((uint16_t *)(d->config + PCI_CLASS_DEVICE)));
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    monitor_printf(mon, "    ");
709 710 711 712
    desc = pci_class_descriptions;
    while (desc->desc && class != desc->class)
        desc++;
    if (desc->desc) {
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        monitor_printf(mon, "%s", desc->desc);
714
    } else {
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        monitor_printf(mon, "Class %04x", class);
716
    }
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    monitor_printf(mon, ": PCI device %04x:%04x\n",
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           le16_to_cpu(*((uint16_t *)(d->config + PCI_VENDOR_ID))),
           le16_to_cpu(*((uint16_t *)(d->config + PCI_DEVICE_ID))));
720

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    if (d->config[PCI_INTERRUPT_PIN] != 0) {
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        monitor_printf(mon, "      IRQ %d.\n",
                       d->config[PCI_INTERRUPT_LINE]);
724
    }
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    if (class == 0x0604) {
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        monitor_printf(mon, "      BUS %d.\n", d->config[0x19]);
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    }
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    for(i = 0;i < PCI_NUM_REGIONS; i++) {
        r = &d->io_regions[i];
        if (r->size != 0) {
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            monitor_printf(mon, "      BAR%d: ", i);
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            if (r->type & PCI_ADDRESS_SPACE_IO) {
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                monitor_printf(mon, "I/O at 0x%04x [0x%04x].\n",
                               r->addr, r->addr + r->size - 1);
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            } else {
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                monitor_printf(mon, "32 bit memory at 0x%08x [0x%08x].\n",
                               r->addr, r->addr + r->size - 1);
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            }
        }
B
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    }
741
    monitor_printf(mon, "      id \"%s\"\n", d->qdev.id ? d->qdev.id : "");
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    if (class == 0x0604 && d->config[0x19] != 0) {
        pci_for_each_device(d->config[0x19], pci_info_device);
    }
745 746
}

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void pci_for_each_device(int bus_num, void (*fn)(PCIDevice *d))
748
{
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    PCIBus *bus = first_bus;
750
    PCIDevice *d;
P
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    int devfn;
752

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753 754
    while (bus && bus->bus_num != bus_num)
        bus = bus->next;
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755 756 757 758 759 760
    if (bus) {
        for(devfn = 0; devfn < 256; devfn++) {
            d = bus->devices[devfn];
            if (d)
                fn(d);
        }
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    }
}

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void pci_info(Monitor *mon)
B
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{
P
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    pci_for_each_device(0, pci_info_device);
B
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}
768

769
PCIDevice *pci_create(const char *name, const char *devaddr)
770 771 772 773 774 775 776 777 778 779 780 781 782
{
    PCIBus *bus;
    int devfn;
    DeviceState *dev;

    bus = pci_get_bus_devfn(&devfn, devaddr);
    if (!bus) {
        fprintf(stderr, "Invalid PCI device address %s for device %s\n",
                devaddr, name);
        exit(1);
    }

    dev = qdev_create(&bus->qbus, name);
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    qdev_prop_set_uint32(dev, "devfn", devfn);
784 785 786
    return (PCIDevice *)dev;
}

787 788 789 790 791 792 793 794 795 796 797 798
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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    "virtio-net-pci",
808 809 810
    NULL
};

811
/* Initialize a PCI NIC.  */
812 813
PCIDevice *pci_nic_init(NICInfo *nd, const char *default_model,
                        const char *default_devaddr)
814
{
815 816
    const char *devaddr = nd->devaddr ? nd->devaddr : default_devaddr;
    PCIDevice *pci_dev;
P
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817
    DeviceState *dev;
818 819 820 821
    int i;

    qemu_check_nic_model_list(nd, pci_nic_models, default_model);

P
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822
    for (i = 0; pci_nic_models[i]; i++) {
823
        if (strcmp(nd->model, pci_nic_models[i]) == 0) {
824 825
            pci_dev = pci_create(pci_nic_names[i], devaddr);
            dev = &pci_dev->qdev;
826 827
            if (nd->id)
                dev->id = qemu_strdup(nd->id);
G
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828
            dev->nd = nd;
P
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829 830
            qdev_init(dev);
            nd->private = dev;
831
            return pci_dev;
832
        }
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833
    }
834 835

    return NULL;
836 837
}

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typedef struct {
    PCIDevice dev;
    PCIBus *bus;
} PCIBridge;

843
static void pci_bridge_write_config(PCIDevice *d,
P
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844 845 846 847 848
                             uint32_t address, uint32_t val, int len)
{
    PCIBridge *s = (PCIBridge *)d;

    pci_default_write_config(d, address, val, len);
849
    s->bus->bus_num = d->config[PCI_SECONDARY_BUS];
P
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850 851
}

852 853 854 855 856 857 858 859 860 861 862 863 864 865 866 867 868 869 870 871
PCIBus *pci_find_bus(int bus_num)
{
    PCIBus *bus = first_bus;

    while (bus && bus->bus_num != bus_num)
        bus = bus->next;

    return bus;
}

PCIDevice *pci_find_device(int bus_num, int slot, int function)
{
    PCIBus *bus = pci_find_bus(bus_num);

    if (!bus)
        return NULL;

    return bus->devices[PCI_DEVFN(slot, function)];
}

B
blueswir1 已提交
872
PCIBus *pci_bridge_init(PCIBus *bus, int devfn, uint16_t vid, uint16_t did,
P
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873 874 875
                        pci_map_irq_fn map_irq, const char *name)
{
    PCIBridge *s;
876
    s = (PCIBridge *)pci_register_device(bus, name, sizeof(PCIBridge),
P
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877
                                         devfn, NULL, pci_bridge_write_config);
B
blueswir1 已提交
878 879 880 881

    pci_config_set_vendor_id(s->dev.config, vid);
    pci_config_set_device_id(s->dev.config, did);

P
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882 883 884 885 886 887
    s->dev.config[0x04] = 0x06; // command = bus master, pci mem
    s->dev.config[0x05] = 0x00;
    s->dev.config[0x06] = 0xa0; // status = fast back-to-back, 66MHz, no error
    s->dev.config[0x07] = 0x00; // status = fast devsel
    s->dev.config[0x08] = 0x00; // revision
    s->dev.config[0x09] = 0x00; // programming i/f
888
    pci_config_set_class(s->dev.config, PCI_CLASS_BRIDGE_PCI);
P
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889
    s->dev.config[0x0D] = 0x10; // latency_timer
I
Isaku Yamahata 已提交
890 891
    s->dev.config[PCI_HEADER_TYPE] =
        PCI_HEADER_TYPE_MULTI_FUNCTION | PCI_HEADER_TYPE_BRIDGE; // header_type
P
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892 893 894 895 896
    s->dev.config[0x1E] = 0xa0; // secondary status

    s->bus = pci_register_secondary_bus(&s->dev, map_irq);
    return s->bus;
}
P
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897

P
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898
static void pci_qdev_init(DeviceState *qdev, DeviceInfo *base)
P
Paul Brook 已提交
899 900
{
    PCIDevice *pci_dev = (PCIDevice *)qdev;
P
Paul Brook 已提交
901
    PCIDeviceInfo *info = container_of(base, PCIDeviceInfo, qdev);
P
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902 903 904
    PCIBus *bus;
    int devfn;

P
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905
    bus = FROM_QBUS(PCIBus, qdev_get_parent_bus(qdev));
G
Gerd Hoffmann 已提交
906
    devfn = pci_dev->devfn;
G
Gerd Hoffmann 已提交
907
    pci_dev = do_pci_register_device(pci_dev, bus, base->name, devfn,
908
                                     info->config_read, info->config_write);
P
Paul Brook 已提交
909
    assert(pci_dev);
P
Paul Brook 已提交
910
    info->init(pci_dev);
P
Paul Brook 已提交
911 912
}

913
void pci_qdev_register(PCIDeviceInfo *info)
P
Paul Brook 已提交
914
{
P
Paul Brook 已提交
915
    info->qdev.init = pci_qdev_init;
916
    info->qdev.bus_info = &pci_bus_info;
917
    qdev_register(&info->qdev);
P
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918 919
}

920 921 922 923 924 925 926 927
void pci_qdev_register_many(PCIDeviceInfo *info)
{
    while (info->qdev.name) {
        pci_qdev_register(info);
        info++;
    }
}

P
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928 929 930 931
PCIDevice *pci_create_simple(PCIBus *bus, int devfn, const char *name)
{
    DeviceState *dev;

P
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932
    dev = qdev_create(&bus->qbus, name);
G
Gerd Hoffmann 已提交
933
    qdev_prop_set_uint32(dev, "devfn", devfn);
P
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934 935 936 937
    qdev_init(dev);

    return (PCIDevice *)dev;
}
938 939 940 941 942 943 944 945 946 947 948 949 950 951 952 953 954 955 956 957 958 959 960 961 962 963 964 965 966 967 968 969 970 971 972 973 974 975 976 977 978 979 980 981 982

static int pci_find_space(PCIDevice *pdev, uint8_t size)
{
    int offset = PCI_CONFIG_HEADER_SIZE;
    int i;
    for (i = PCI_CONFIG_HEADER_SIZE; i < PCI_CONFIG_SPACE_SIZE; ++i)
        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;
}

/* 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 size)
{
    uint8_t offset = pci_find_space(pdev, size);
    uint8_t *config = pdev->config + offset;
    if (!offset)
        return -ENOSPC;
    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);
983 984
    /* Check capability by default */
    memset(pdev->cmask + offset, 0xFF, size);
985 986 987 988 989 990 991 992 993 994 995 996
    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];
    /* Make capability writeable again */
    memset(pdev->wmask + offset, 0xff, size);
997 998
    /* Clear cmask as device-specific registers can't be checked */
    memset(pdev->cmask + offset, 0, size);
999 1000 1001 1002 1003 1004 1005 1006 1007 1008 1009 1010 1011 1012 1013 1014
    memset(pdev->used + offset, 0, size);

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

/* Reserve space for capability at a known offset (to call after load). */
void pci_reserve_capability(PCIDevice *pdev, uint8_t offset, uint8_t size)
{
    memset(pdev->used + offset, 0xff, size);
}

uint8_t pci_find_capability(PCIDevice *pdev, uint8_t cap_id)
{
    return pci_find_capability_list(pdev, cap_id, NULL);
}
1015 1016 1017 1018 1019 1020 1021 1022 1023 1024 1025 1026 1027 1028 1029 1030 1031 1032 1033 1034 1035 1036 1037 1038 1039 1040 1041 1042 1043 1044 1045 1046 1047 1048 1049 1050

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;

    class = le16_to_cpu(*((uint16_t *)(d->config + PCI_CLASS_DEVICE)));
    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",
                   indent, "", ctxt,
                   d->bus->bus_num, d->devfn >> 3, d->devfn & 7,
                   le16_to_cpu(*((uint16_t *)(d->config + PCI_VENDOR_ID))),
                   le16_to_cpu(*((uint16_t *)(d->config + PCI_DEVICE_ID))),
                   le16_to_cpu(*((uint16_t *)(d->config + PCI_SUBSYSTEM_VENDOR_ID))),
                   le16_to_cpu(*((uint16_t *)(d->config + PCI_SUBSYSTEM_ID))));
    for (i = 0; i < PCI_NUM_REGIONS; i++) {
        r = &d->io_regions[i];
        if (!r->size)
            continue;
        monitor_printf(mon, "%*sbar %d: %s at 0x%x [0x%x]\n", indent, "",
                       i, r->type & PCI_ADDRESS_SPACE_IO ? "i/o" : "mem",
                       r->addr, r->addr + r->size - 1);
    }
}