qemu-e2k/hw/qdev.c

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/*
* Dynamic device configuration and creation.
*
* Copyright (c) 2009 CodeSourcery
*
* This library is free software; you can redistribute it and/or
* modify it under the terms of the GNU Lesser General Public
* License as published by the Free Software Foundation; either
* version 2 of the License, or (at your option) any later version.
*
* This library is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
* Lesser General Public License for more details.
*
* You should have received a copy of the GNU Lesser General Public
* License along with this library; if not, see <http://www.gnu.org/licenses/>.
*/
/* The theory here is that it should be possible to create a machine without
knowledge of specific devices. Historically board init routines have
passed a bunch of arguments to each device, requiring the board know
exactly which device it is dealing with. This file provides an abstract
API for device configuration and initialization. Devices will generally
inherit from a particular bus (e.g. PCI or I2C) rather than
this API directly. */
#include "net.h"
#include "qdev.h"
#include "sysemu.h"
#include "monitor.h"
/* This is a nasty hack to allow passing a NULL bus to qdev_create. */
static BusState *main_system_bus;
static DeviceInfo *device_info_list;
static BusState *qbus_find_recursive(BusState *bus, const char *name,
const BusInfo *info);
static BusState *qbus_find(const char *path);
/* Register a new device type. */
void qdev_register(DeviceInfo *info)
{
assert(info->size >= sizeof(DeviceState));
assert(!info->next);
info->next = device_info_list;
device_info_list = info;
}
static DeviceInfo *qdev_find_info(BusInfo *bus_info, const char *name)
{
DeviceInfo *info;
/* first check device names */
for (info = device_info_list; info != NULL; info = info->next) {
if (bus_info && info->bus_info != bus_info)
continue;
if (strcmp(info->name, name) != 0)
continue;
return info;
}
/* failing that check the aliases */
for (info = device_info_list; info != NULL; info = info->next) {
if (bus_info && info->bus_info != bus_info)
continue;
if (!info->alias)
continue;
if (strcmp(info->alias, name) != 0)
continue;
return info;
}
return NULL;
}
/* Create a new device. This only initializes the device state structure
and allows properties to be set. qdev_init should be called to
initialize the actual device emulation. */
DeviceState *qdev_create(BusState *bus, const char *name)
{
DeviceInfo *info;
DeviceState *dev;
if (!bus) {
if (!main_system_bus) {
main_system_bus = qbus_create(&system_bus_info, NULL, "main-system-bus");
}
bus = main_system_bus;
}
info = qdev_find_info(bus->info, name);
if (!info) {
hw_error("Unknown device '%s' for bus '%s'\n", name, bus->info->name);
}
dev = qemu_mallocz(info->size);
dev->info = info;
dev->parent_bus = bus;
qdev_prop_set_defaults(dev, dev->info->props);
qdev_prop_set_defaults(dev, dev->parent_bus->info->props);
qdev_prop_set_compat(dev);
LIST_INSERT_HEAD(&bus->children, dev, sibling);
return dev;
}
static int qdev_print_devinfo(DeviceInfo *info, char *dest, int len)
{
int pos = 0;
int ret;
ret = snprintf(dest+pos, len-pos, "name \"%s\", bus %s",
info->name, info->bus_info->name);
pos += MIN(len-pos,ret);
if (info->alias) {
ret = snprintf(dest+pos, len-pos, ", alias \"%s\"", info->alias);
pos += MIN(len-pos,ret);
}
if (info->desc) {
ret = snprintf(dest+pos, len-pos, ", desc \"%s\"", info->desc);
pos += MIN(len-pos,ret);
}
if (info->no_user) {
ret = snprintf(dest+pos, len-pos, ", no-user");
pos += MIN(len-pos,ret);
}
return pos;
}
static int set_property(const char *name, const char *value, void *opaque)
{
DeviceState *dev = opaque;
if (strcmp(name, "driver") == 0)
return 0;
if (strcmp(name, "bus") == 0)
return 0;
if (-1 == qdev_prop_parse(dev, name, value)) {
fprintf(stderr, "can't set property \"%s\" to \"%s\" for \"%s\"\n",
name, value, dev->info->name);
return -1;
}
return 0;
}
DeviceState *qdev_device_add(QemuOpts *opts)
{
const char *driver, *path, *id;
DeviceInfo *info;
DeviceState *qdev;
BusState *bus;
driver = qemu_opt_get(opts, "driver");
if (!driver) {
fprintf(stderr, "-device: no driver specified\n");
return NULL;
}
if (strcmp(driver, "?") == 0) {
char msg[256];
for (info = device_info_list; info != NULL; info = info->next) {
qdev_print_devinfo(info, msg, sizeof(msg));
fprintf(stderr, "%s\n", msg);
}
return NULL;
}
/* find driver */
info = qdev_find_info(NULL, driver);
if (!info) {
fprintf(stderr, "Device \"%s\" not found. Try -device '?' for a list.\n",
driver);
return NULL;
}
if (info->no_user) {
fprintf(stderr, "device \"%s\" can't be added via command line\n",
info->name);
return NULL;
}
/* find bus */
path = qemu_opt_get(opts, "bus");
if (path != NULL) {
bus = qbus_find(path);
} else {
bus = qbus_find_recursive(main_system_bus, NULL, info->bus_info);
}
if (!bus)
return NULL;
/* create device, set properties */
qdev = qdev_create(bus, driver);
id = qemu_opts_id(opts);
if (id) {
qdev->id = id;
}
if (qemu_opt_foreach(opts, set_property, qdev, 1) != 0) {
qdev_free(qdev);
return NULL;
}
qdev_init(qdev);
return qdev;
}
/* Initialize a device. Device properties should be set before calling
this function. IRQs and MMIO regions should be connected/mapped after
calling this function. */
void qdev_init(DeviceState *dev)
{
dev->info->init(dev, dev->info);
}
/* Unlink device from bus and free the structure. */
void qdev_free(DeviceState *dev)
{
LIST_REMOVE(dev, sibling);
qemu_free(dev);
}
/* Get a character (serial) device interface. */
CharDriverState *qdev_init_chardev(DeviceState *dev)
{
static int next_serial;
static int next_virtconsole;
/* FIXME: This is a nasty hack that needs to go away. */
if (strncmp(dev->info->name, "virtio", 6) == 0) {
return virtcon_hds[next_virtconsole++];
} else {
return serial_hds[next_serial++];
}
}
BusState *qdev_get_parent_bus(DeviceState *dev)
{
return dev->parent_bus;
}
void qdev_init_gpio_in(DeviceState *dev, qemu_irq_handler handler, int n)
{
assert(dev->num_gpio_in == 0);
dev->num_gpio_in = n;
dev->gpio_in = qemu_allocate_irqs(handler, dev, n);
}
void qdev_init_gpio_out(DeviceState *dev, qemu_irq *pins, int n)
{
assert(dev->num_gpio_out == 0);
dev->num_gpio_out = n;
dev->gpio_out = pins;
}
qemu_irq qdev_get_gpio_in(DeviceState *dev, int n)
{
assert(n >= 0 && n < dev->num_gpio_in);
return dev->gpio_in[n];
}
void qdev_connect_gpio_out(DeviceState * dev, int n, qemu_irq pin)
{
assert(n >= 0 && n < dev->num_gpio_out);
dev->gpio_out[n] = pin;
}
VLANClientState *qdev_get_vlan_client(DeviceState *dev,
NetCanReceive *can_receive,
NetReceive *receive,
NetReceiveIOV *receive_iov,
NetCleanup *cleanup,
void *opaque)
{
NICInfo *nd = dev->nd;
assert(nd);
nd->vc = qemu_new_vlan_client(nd->vlan, nd->model, nd->name, can_receive,
receive, receive_iov, cleanup, opaque);
return nd->vc;
}
void qdev_get_macaddr(DeviceState *dev, uint8_t *macaddr)
{
memcpy(macaddr, dev->nd->macaddr, 6);
}
static int next_block_unit[IF_COUNT];
/* Get a block device. This should only be used for single-drive devices
(e.g. SD/Floppy/MTD). Multi-disk devices (scsi/ide) should use the
appropriate bus. */
BlockDriverState *qdev_init_bdrv(DeviceState *dev, BlockInterfaceType type)
{
int unit = next_block_unit[type]++;
DriveInfo *dinfo;
dinfo = drive_get(type, 0, unit);
return dinfo ? dinfo->bdrv : NULL;
}
BusState *qdev_get_child_bus(DeviceState *dev, const char *name)
{
BusState *bus;
LIST_FOREACH(bus, &dev->child_bus, sibling) {
if (strcmp(name, bus->name) == 0) {
return bus;
}
}
return NULL;
}
static int next_scsi_bus;
/* Create a scsi bus, and attach devices to it. */
/* TODO: Actually create a scsi bus for hotplug to use. */
void scsi_bus_new(DeviceState *host, SCSIAttachFn attach)
{
int bus = next_scsi_bus++;
int unit;
DriveInfo *dinfo;
for (unit = 0; unit < MAX_SCSI_DEVS; unit++) {
dinfo = drive_get(IF_SCSI, bus, unit);
if (!dinfo) {
continue;
}
attach(host, dinfo->bdrv, unit);
}
}
static BusState *qbus_find_recursive(BusState *bus, const char *name,
const BusInfo *info)
{
DeviceState *dev;
BusState *child, *ret;
int match = 1;
if (name && (strcmp(bus->name, name) != 0)) {
match = 0;
}
if (info && (bus->info != info)) {
match = 0;
}
if (match) {
return bus;
}
LIST_FOREACH(dev, &bus->children, sibling) {
LIST_FOREACH(child, &dev->child_bus, sibling) {
ret = qbus_find_recursive(child, name, info);
if (ret) {
return ret;
}
}
}
return NULL;
}
static void qbus_list_bus(DeviceState *dev, char *dest, int len)
{
BusState *child;
const char *sep = " ";
int pos = 0;
pos += snprintf(dest+pos, len-pos,"child busses at \"%s\":",
dev->id ? dev->id : dev->info->name);
LIST_FOREACH(child, &dev->child_bus, sibling) {
pos += snprintf(dest+pos, len-pos, "%s\"%s\"", sep, child->name);
sep = ", ";
}
}
static void qbus_list_dev(BusState *bus, char *dest, int len)
{
DeviceState *dev;
const char *sep = " ";
int pos = 0;
pos += snprintf(dest+pos, len-pos, "devices at \"%s\":",
bus->name);
LIST_FOREACH(dev, &bus->children, sibling) {
pos += snprintf(dest+pos, len-pos, "%s\"%s\"",
sep, dev->info->name);
if (dev->id)
pos += snprintf(dest+pos, len-pos, "/\"%s\"", dev->id);
sep = ", ";
}
}
static BusState *qbus_find_bus(DeviceState *dev, char *elem)
{
BusState *child;
LIST_FOREACH(child, &dev->child_bus, sibling) {
if (strcmp(child->name, elem) == 0) {
return child;
}
}
return NULL;
}
static DeviceState *qbus_find_dev(BusState *bus, char *elem)
{
DeviceState *dev;
/*
* try to match in order:
* (1) instance id, if present
* (2) driver name
* (3) driver alias, if present
*/
LIST_FOREACH(dev, &bus->children, sibling) {
if (dev->id && strcmp(dev->id, elem) == 0) {
return dev;
}
}
LIST_FOREACH(dev, &bus->children, sibling) {
if (strcmp(dev->info->name, elem) == 0) {
return dev;
}
}
LIST_FOREACH(dev, &bus->children, sibling) {
if (dev->info->alias && strcmp(dev->info->alias, elem) == 0) {
return dev;
}
}
return NULL;
}
static BusState *qbus_find(const char *path)
{
DeviceState *dev;
BusState *bus;
char elem[128], msg[256];
int pos, len;
/* find start element */
if (path[0] == '/') {
bus = main_system_bus;
pos = 0;
} else {
if (sscanf(path, "%127[^/]%n", elem, &len) != 1) {
fprintf(stderr, "path parse error (\"%s\")\n", path);
return NULL;
}
bus = qbus_find_recursive(main_system_bus, elem, NULL);
if (!bus) {
fprintf(stderr, "bus \"%s\" not found\n", elem);
return NULL;
}
pos = len;
}
for (;;) {
if (path[pos] == '\0') {
/* we are done */
return bus;
}
/* find device */
if (sscanf(path+pos, "/%127[^/]%n", elem, &len) != 1) {
fprintf(stderr, "path parse error (\"%s\" pos %d)\n", path, pos);
return NULL;
}
pos += len;
dev = qbus_find_dev(bus, elem);
if (!dev) {
qbus_list_dev(bus, msg, sizeof(msg));
fprintf(stderr, "device \"%s\" not found\n%s\n", elem, msg);
return NULL;
}
if (path[pos] == '\0') {
/* last specified element is a device. If it has exactly
* one child bus accept it nevertheless */
switch (dev->num_child_bus) {
case 0:
fprintf(stderr, "device has no child bus (%s)\n", path);
return NULL;
case 1:
return LIST_FIRST(&dev->child_bus);
default:
qbus_list_bus(dev, msg, sizeof(msg));
fprintf(stderr, "device has multiple child busses (%s)\n%s\n",
path, msg);
return NULL;
}
}
/* find bus */
if (sscanf(path+pos, "/%127[^/]%n", elem, &len) != 1) {
fprintf(stderr, "path parse error (\"%s\" pos %d)\n", path, pos);
return NULL;
}
pos += len;
bus = qbus_find_bus(dev, elem);
if (!bus) {
qbus_list_bus(dev, msg, sizeof(msg));
fprintf(stderr, "child bus \"%s\" not found\n%s\n", elem, msg);
return NULL;
}
}
}
BusState *qbus_create(BusInfo *info, DeviceState *parent, const char *name)
{
BusState *bus;
char *buf;
int i,len;
bus = qemu_mallocz(info->size);
bus->info = info;
bus->parent = parent;
if (name) {
/* use supplied name */
bus->name = qemu_strdup(name);
} else if (parent && parent->id) {
/* parent device has id -> use it for bus name */
len = strlen(parent->id) + 16;
buf = qemu_malloc(len);
snprintf(buf, len, "%s.%d", parent->id, parent->num_child_bus);
bus->name = buf;
} else {
/* no id -> use lowercase bus type for bus name */
len = strlen(info->name) + 16;
buf = qemu_malloc(len);
len = snprintf(buf, len, "%s.%d", info->name,
parent ? parent->num_child_bus : 0);
for (i = 0; i < len; i++)
buf[i] = qemu_tolower(buf[i]);
bus->name = buf;
}
LIST_INIT(&bus->children);
if (parent) {
LIST_INSERT_HEAD(&parent->child_bus, bus, sibling);
parent->num_child_bus++;
}
return bus;
}
#define qdev_printf(fmt, ...) monitor_printf(mon, "%*s" fmt, indent, "", ## __VA_ARGS__)
static void qbus_print(Monitor *mon, BusState *bus, int indent);
static void qdev_print_props(Monitor *mon, DeviceState *dev, Property *props,
const char *prefix, int indent)
{
char buf[64];
if (!props)
return;
while (props->name) {
if (props->info->print) {
props->info->print(dev, props, buf, sizeof(buf));
qdev_printf("%s-prop: %s = %s\n", prefix, props->name, buf);
}
props++;
}
}
static void qdev_print(Monitor *mon, DeviceState *dev, int indent)
{
BusState *child;
qdev_printf("dev: %s, id \"%s\"\n", dev->info->name,
dev->id ? dev->id : "");
indent += 2;
if (dev->num_gpio_in) {
qdev_printf("gpio-in %d\n", dev->num_gpio_in);
}
if (dev->num_gpio_out) {
qdev_printf("gpio-out %d\n", dev->num_gpio_out);
}
qdev_print_props(mon, dev, dev->info->props, "dev", indent);
qdev_print_props(mon, dev, dev->parent_bus->info->props, "bus", indent);
if (dev->parent_bus->info->print_dev)
dev->parent_bus->info->print_dev(mon, dev, indent);
LIST_FOREACH(child, &dev->child_bus, sibling) {
qbus_print(mon, child, indent);
}
}
static void qbus_print(Monitor *mon, BusState *bus, int indent)
{
struct DeviceState *dev;
qdev_printf("bus: %s\n", bus->name);
indent += 2;
qdev_printf("type %s\n", bus->info->name);
LIST_FOREACH(dev, &bus->children, sibling) {
qdev_print(mon, dev, indent);
}
}
#undef qdev_printf
void do_info_qtree(Monitor *mon)
{
if (main_system_bus)
qbus_print(mon, main_system_bus, 0);
}
void do_info_qdm(Monitor *mon)
{
DeviceInfo *info;
char msg[256];
for (info = device_info_list; info != NULL; info = info->next) {
qdev_print_devinfo(info, msg, sizeof(msg));
monitor_printf(mon, "%s\n", msg);
}
}