* and the University of New Mexico. You can find out more at
* http://www.v3vee.org
*
+ * Copyright (c) 2009, Jack Lange <jarusl@cs.northwestern.edu>
* Copyright (c) 2009, Lei Xia <lxia@northwestern.edu>
* Copyright (c) 2009, Chang Seok Bae <jhuell@gmail.com>
- * Copyright (c) 2009, Jack Lange <jarusl@cs.northwestern.edu>
* Copyright (c) 2009, The V3VEE Project <http://www.v3vee.org>
* All rights reserved.
*
- * Author: Lei Xia <lxia@northwestern.edu>
+ * Author: Jack Lange <jarusl@cs.northwestern.edu>
+ * Lei Xia <lxia@northwestern.edu>
* Chang Seok Bae <jhuell@gmail.com>
- * Jack Lange <jarusl@cs.northwestern.edu>
*
* This is free software. You are permitted to use,
* redistribute, and modify it as specified in the file "V3VEE_LICENSE".
#include <palacios/vmm_io.h>
#include <palacios/vmm_intr.h>
#include <palacios/vmm_rbtree.h>
+#include <palacios/vmm_dev_mgr.h>
#include <devices/pci.h>
#include <devices/pci_types.h>
+#include <palacios/vm_guest.h>
+
+
+
#ifndef CONFIG_DEBUG_PCI
#undef PrintDebug
#define PrintDebug(fmt, args...)
uint8_t dev_map[MAX_BUS_DEVICES / 8];
- int (*raise_pci_irq)(struct vm_device * dev, struct pci_device * pci_dev);
- int (*lower_pci_irq)(struct vm_device * dev, struct pci_device * pci_dev);
- struct vm_device * irq_bridge_dev;
+ int (*raise_pci_irq)(struct pci_device * pci_dev, void * dev_data);
+ int (*lower_pci_irq)(struct pci_device * pci_dev, void * dev_data);
+ void * irq_dev_data;
};
-static int addr_port_read(ushort_t port, void * dst, uint_t length, struct vm_device * dev) {
- struct pci_internal * pci_state = (struct pci_internal *)dev->private_data;
+static int addr_port_read(struct guest_info * core, ushort_t port, void * dst, uint_t length, void * priv_data) {
+ struct pci_internal * pci_state = priv_data;
int reg_offset = port & 0x3;
uint8_t * reg_addr = ((uint8_t *)&(pci_state->addr_reg.val)) + reg_offset;
}
-static int addr_port_write(ushort_t port, void * src, uint_t length, struct vm_device * dev) {
- struct pci_internal * pci_state = (struct pci_internal *)dev->private_data;
+static int addr_port_write(struct guest_info * core, ushort_t port, void * src, uint_t length, void * priv_data) {
+ struct pci_internal * pci_state = priv_data;
int reg_offset = port & 0x3;
uint8_t * reg_addr = ((uint8_t *)&(pci_state->addr_reg.val)) + reg_offset;
}
-static int data_port_read(ushort_t port, void * dst, uint_t length, struct vm_device * vmdev) {
- struct pci_internal * pci_state = (struct pci_internal *)(vmdev->private_data);
+static int data_port_read(struct guest_info * core, ushort_t port, void * dst, uint_t length, void * priv_data) {
+ struct pci_internal * pci_state = priv_data;
struct pci_device * pci_dev = NULL;
uint_t reg_num = (pci_state->addr_reg.reg_num << 2) + (port & 0x3);
int i;
}
}
-
-static int bar_update(struct pci_device * pci, int bar_num, uint32_t new_val) {
+static int bar_update(struct guest_info * info, struct pci_device * pci, int bar_num, uint32_t new_val) {
struct v3_pci_bar * bar = &(pci->bar[bar_num]);
PrintDebug("Updating BAR Register (Dev=%s) (bar=%d) (old_val=0x%x) (new_val=0x%x)\n",
PrintDebug("Rehooking PCI IO port (old port=%u) (new port=%u)\n",
PCI_IO_BASE(bar->val) + i, PCI_IO_BASE(new_val) + i);
- v3_unhook_io_port(pci->vm_dev->vm, PCI_IO_BASE(bar->val) + i);
+ v3_unhook_io_port(info->vm_info, PCI_IO_BASE(bar->val) + i);
- if (v3_hook_io_port(pci->vm_dev->vm, PCI_IO_BASE(new_val) + i,
+ if (v3_hook_io_port(info->vm_info, PCI_IO_BASE(new_val) + i,
bar->io_read, bar->io_write,
bar->private_data) == -1) {
PrintError("Could not hook PCI IO port (old port=%u) (new port=%u)\n",
PCI_IO_BASE(bar->val) + i, PCI_IO_BASE(new_val) + i);
- v3_print_io_map(pci->vm_dev->vm);
+ v3_print_io_map(info->vm_info);
return -1;
}
}
break;
}
case PCI_BAR_MEM32: {
- v3_unhook_mem(pci->vm_dev->vm, (addr_t)(bar->val));
+ v3_unhook_mem(info->vm_info, V3_MEM_CORE_ANY, (addr_t)(bar->val));
if (bar->mem_read) {
- v3_hook_full_mem(pci->vm_dev->vm, PCI_MEM32_BASE(new_val),
+ v3_hook_full_mem(info->vm_info, V3_MEM_CORE_ANY, PCI_MEM32_BASE(new_val),
PCI_MEM32_BASE(new_val) + (bar->num_pages * PAGE_SIZE_4KB),
- bar->mem_read, bar->mem_write, pci->vm_dev);
+ bar->mem_read, bar->mem_write, pci->priv_data);
} else {
PrintError("Write hooks not supported for PCI\n");
return -1;
}
-static int data_port_write(ushort_t port, void * src, uint_t length, struct vm_device * vmdev) {
- struct pci_internal * pci_state = (struct pci_internal *)vmdev->private_data;
+static int data_port_write(struct guest_info * core, ushort_t port, void * src, uint_t length, void * priv_data) {
+ struct pci_internal * pci_state = priv_data;
struct pci_device * pci_dev = NULL;
uint_t reg_num = (pci_state->addr_reg.reg_num << 2) + (port & 0x3);
int i;
} else if ((cur_reg >= 0x30) && (cur_reg < 0x34)) {
// Extension ROM update
- pci_dev->ext_rom_update_flag = 1;
+ pci_dev->exp_rom_update_flag = 1;
} else if (cur_reg == 0x04) {
// COMMAND update
uint8_t command = *((uint8_t *)src + i);
// check special flags....
// bar_update
- if (bar_update(pci_dev, i, *(uint32_t *)(pci_dev->config_space + bar_offset)) == -1) {
+ if (bar_update(core, pci_dev, i, *(uint32_t *)(pci_dev->config_space + bar_offset)) == -1) {
PrintError("PCI Device %s: Bar update Error Bar=%d\n", pci_dev->name, i);
return -1;
}
pci_dev->bar_update_flag = 0;
}
- if ((pci_dev->ext_rom_update_flag) && (pci_dev->ext_rom_update)) {
- pci_dev->ext_rom_update(pci_dev);
- pci_dev->ext_rom_update_flag = 0;
+ if ((pci_dev->exp_rom_update_flag) && (pci_dev->exp_rom_update)) {
+ pci_dev->exp_rom_update(pci_dev, &(pci_dev->config_header.expansion_rom_address), pci_dev->priv_data);
+ pci_dev->exp_rom_update_flag = 0;
}
-static int pci_reset_device(struct vm_device * dev) {
- PrintDebug("pci: reset device\n");
- return 0;
-}
-
-
-static int pci_start_device(struct vm_device * dev) {
- PrintDebug("pci: start device\n");
- return 0;
-}
-
-
-static int pci_stop_device(struct vm_device * dev) {
- PrintDebug("pci: stop device\n");
- return 0;
-}
-
-
-
-static int pci_free(struct vm_device * dev) {
- int i = 0;
-
- for (i = 0; i < 4; i++){
- v3_dev_unhook_io(dev, CONFIG_ADDR_PORT + i);
- v3_dev_unhook_io(dev, CONFIG_DATA_PORT + i);
- }
-
- return 0;
-}
-
static void init_pci_busses(struct pci_internal * pci_state) {
}
+static int pci_free(struct pci_internal * pci_state) {
+ int i;
+
+
+ // cleanup devices
+ for (i = 0; i < PCI_BUS_COUNT; i++) {
+ struct pci_bus * bus = &(pci_state->bus_list[i]);
+ struct rb_node * node = v3_rb_first(&(bus->devices));
+ struct pci_device * dev = NULL;
+
+ while (node) {
+ dev = rb_entry(node, struct pci_device, dev_tree_node);
+ node = v3_rb_next(node);
+
+ v3_rb_erase(&(dev->dev_tree_node), &(bus->devices));
+ V3_Free(dev);
+ }
+
+ }
+
+ V3_Free(pci_state);
+ return 0;
+}
static struct v3_device_ops dev_ops = {
- .free = pci_free,
- .reset = pci_reset_device,
- .start = pci_start_device,
- .stop = pci_stop_device,
+ .free = (int (*)(void *))pci_free,
+
};
-static int pci_init(struct guest_info * vm, void * cfg_data) {
+static int pci_init(struct v3_vm_info * vm, v3_cfg_tree_t * cfg) {
struct pci_internal * pci_state = V3_Malloc(sizeof(struct pci_internal));
int i = 0;
+ char * dev_id = v3_cfg_val(cfg, "ID");
+ int ret = 0;
PrintDebug("PCI internal at %p\n",(void *)pci_state);
- struct vm_device * dev = v3_allocate_device("PCI", &dev_ops, pci_state);
+ struct vm_device * dev = v3_add_device(vm, dev_id, &dev_ops, pci_state);
- if (v3_attach_device(vm, dev) == -1) {
- PrintError("Could not attach device %s\n", "PCI");
+ if (dev == NULL) {
+ PrintError("Could not attach device %s\n", dev_id);
+ V3_Free(pci_state);
return -1;
}
PrintDebug("Sizeof config header=%d\n", (int)sizeof(struct pci_config_header));
for (i = 0; i < 4; i++) {
- v3_dev_hook_io(dev, CONFIG_ADDR_PORT + i, &addr_port_read, &addr_port_write);
- v3_dev_hook_io(dev, CONFIG_DATA_PORT + i, &data_port_read, &data_port_write);
+ ret |= v3_dev_hook_io(dev, CONFIG_ADDR_PORT + i, &addr_port_read, &addr_port_write);
+ ret |= v3_dev_hook_io(dev, CONFIG_DATA_PORT + i, &data_port_read, &data_port_write);
+ }
+
+ if (ret != 0) {
+ PrintError("Error hooking PCI IO ports\n");
+ v3_remove_device(dev);
+ return -1;
}
return 0;
device_register("PCI", pci_init)
-static inline int init_bars(struct pci_device * pci_dev) {
+static inline int init_bars(struct v3_vm_info * vm, struct pci_device * pci_dev) {
int i = 0;
for (i = 0; i < 6; i++) {
for (j = 0; j < pci_dev->bar[i].num_ports; j++) {
// hook IO
if (pci_dev->bar[i].default_base_port != 0xffff) {
- if (v3_hook_io_port(pci_dev->vm_dev->vm, pci_dev->bar[i].default_base_port + j,
+ if (v3_hook_io_port(vm, pci_dev->bar[i].default_base_port + j,
pci_dev->bar[i].io_read, pci_dev->bar[i].io_write,
pci_dev->bar[i].private_data) == -1) {
PrintError("Could not hook default io port %x\n", pci_dev->bar[i].default_base_port + j);
// hook memory
if (pci_dev->bar[i].mem_read) {
// full hook
- v3_hook_full_mem(pci_dev->vm_dev->vm, pci_dev->bar[i].default_base_addr,
+ v3_hook_full_mem(vm, V3_MEM_CORE_ANY, pci_dev->bar[i].default_base_addr,
pci_dev->bar[i].default_base_addr + (pci_dev->bar[i].num_pages * PAGE_SIZE_4KB),
- pci_dev->bar[i].mem_read, pci_dev->bar[i].mem_write, pci_dev->vm_dev);
+ pci_dev->bar[i].mem_read, pci_dev->bar[i].mem_write, pci_dev->priv_data);
} else if (pci_dev->bar[i].mem_write) {
// write hook
PrintError("Write hooks not supported for PCI devices\n");
int v3_pci_set_irq_bridge(struct vm_device * pci_bus, int bus_num,
- int (*raise_pci_irq)(struct vm_device * dev, struct pci_device * pci_dev),
- int (*lower_pci_irq)(struct vm_device * dev, struct pci_device * pci_dev),
- struct vm_device * bridge_dev) {
+ int (*raise_pci_irq)(struct pci_device * pci_dev, void * dev_data),
+ int (*lower_pci_irq)(struct pci_device * pci_dev, void * dev_data),
+ void * priv_data) {
struct pci_internal * pci_state = (struct pci_internal *)pci_bus->private_data;
pci_state->bus_list[bus_num].raise_pci_irq = raise_pci_irq;
pci_state->bus_list[bus_num].lower_pci_irq = lower_pci_irq;
- pci_state->bus_list[bus_num].irq_bridge_dev = bridge_dev;
+ pci_state->bus_list[bus_num].irq_dev_data = priv_data;
return 0;
}
struct pci_internal * pci_state = (struct pci_internal *)pci_bus->private_data;
struct pci_bus * bus = &(pci_state->bus_list[bus_num]);
- return bus->raise_pci_irq(bus->irq_bridge_dev, dev);
+ return bus->raise_pci_irq(dev, bus->irq_dev_data);
}
int v3_pci_lower_irq(struct vm_device * pci_bus, int bus_num, struct pci_device * dev) {
struct pci_internal * pci_state = (struct pci_internal *)pci_bus->private_data;
struct pci_bus * bus = &(pci_state->bus_list[bus_num]);
- return bus->lower_pci_irq(bus->irq_bridge_dev, dev);
+ return bus->lower_pci_irq(dev, bus->irq_dev_data);
}
// if dev_num == -1, auto assign
const char * name,
struct v3_pci_bar * bars,
int (*config_update)(uint_t reg_num, void * src, uint_t length, void * priv_data),
- int (*cmd_update)(struct pci_device *pci_dev, uchar_t io_enabled, uchar_t mem_enabled),
- int (*ext_rom_update)(struct pci_device * pci_dev),
- struct vm_device * dev, void * priv_data) {
+ int (*cmd_update)(struct pci_device * pci_dev, uchar_t io_enabled, uchar_t mem_enabled),
+ int (*exp_rom_update)(struct pci_device * pci_dev, uint32_t * src, void * priv_data),
+ void * priv_data) {
struct pci_internal * pci_state = (struct pci_internal *)pci->private_data;
struct pci_bus * bus = &(pci_state->bus_list[bus_num]);
pci_dev->fn_num = fn_num;
strncpy(pci_dev->name, name, sizeof(pci_dev->name));
- pci_dev->vm_dev = dev;
pci_dev->priv_data = priv_data;
// register update callbacks
pci_dev->config_update = config_update;
pci_dev->cmd_update = cmd_update;
- pci_dev->ext_rom_update = ext_rom_update;
+ pci_dev->exp_rom_update = exp_rom_update;
//copy bars
}
}
- if (init_bars(pci_dev) == -1) {
+ if (init_bars(pci->vm, pci_dev) == -1) {
PrintError("could not initialize bar registers\n");
return NULL;
}
const char * name,
int (*config_write)(uint_t reg_num, void * src, uint_t length, void * private_data),
int (*config_read)(uint_t reg_num, void * dst, uint_t length, void * private_data),
- struct vm_device * dev,
void * private_data) {
struct pci_internal * pci_state = (struct pci_internal *)pci->private_data;
pci_dev->fn_num = fn_num;
strncpy(pci_dev->name, name, sizeof(pci_dev->name));
- pci_dev->vm_dev = dev;
pci_dev->priv_data = private_data;
// register update callbacks