Palacios Public Git Repository

To checkout Palacios execute

  git clone http://v3vee.org/palacios/palacios.web/palacios.git
This will give you the master branch. You probably want the devel branch or one of the release branches. To switch to the devel branch, simply execute
  cd palacios
  git checkout --track -b devel origin/devel
The other branches are similar.


fixes to allow stopping a paused guest
[palacios.git] / palacios / src / palacios / vmm_config.c
index 32e3862..de882d0 100644 (file)
@@ -1,4 +1,4 @@
-/* 
+ /* 
  * This file is part of the Palacios Virtual Machine Monitor developed
  * by the V3VEE Project with funding from the United States National 
  * Science Foundation and the Department of Energy.  
 #include <palacios/vmm_debug.h>
 #include <palacios/vmm_msr.h>
 #include <palacios/vmm_decoder.h>
-#include <palacios/vmm_profiler.h>
+#include <palacios/vmm_telemetry.h>
 #include <palacios/vmm_mem.h>
 #include <palacios/vmm_hypercall.h>
+#include <palacios/vmm_dev_mgr.h>
+#include <palacios/vmm_cpuid.h>
+#include <palacios/vmm_xml.h>
+#include <palacios/vmm_io.h>
+#include <palacios/vmm_msr.h>
+#include <palacios/vmm_sprintf.h>
 
 
-#include <devices/serial.h>
-#include <devices/keyboard.h>
-#include <devices/8259a.h>
-#include <devices/8254.h>
-#include <devices/nvram.h>
-#include <devices/generic.h>
-#include <devices/ramdisk.h>
-#include <devices/cdrom.h>
-#include <devices/bochs_debug.h>
-#include <devices/os_debug.h>
-#include <devices/apic.h>
-#include <devices/io_apic.h>
 
 
 
 #include <palacios/vmm_host_events.h>
 
-#define USE_GENERIC 1
+#include "vmm_config_class.h"
 
+// This is used to access the configuration file index table
+struct file_hdr {
+    uint32_t index;
+    uint32_t size;
+    uint64_t offset;
+};
 
+struct file_idx_table {
+    uint64_t num_files;
+    struct file_hdr hdrs[0];
+};
 
 
 
-static int setup_memory_map(struct guest_info * info, struct v3_vm_config * config_ptr);
-static int setup_devices(struct guest_info * info, struct v3_vm_config * config_ptr);
-static struct vm_device *  configure_generic(struct guest_info * info, struct v3_vm_config * config_ptr);
 
+static int setup_memory_map(struct v3_vm_info * vm, v3_cfg_tree_t * cfg);
+static int setup_extensions(struct v3_vm_info * vm, v3_cfg_tree_t * cfg);
+static int setup_devices(struct v3_vm_info * vm, v3_cfg_tree_t * cfg);
 
 
 
-static int passthrough_mem_write(addr_t guest_addr, void * src, uint_t length, void * priv_data) {
+char * v3_cfg_val(v3_cfg_tree_t * tree, char * tag) {
+    char * attrib = (char *)v3_xml_attr(tree, tag);
+    v3_cfg_tree_t * child_entry = v3_xml_child(tree, tag);
+    char * val = NULL;
 
-  return length;
-  //  memcpy((void*)guest_addr, src, length);
-  PrintDebug("Write of %d bytes to %p\n", length, (void *)guest_addr);
-  PrintDebug("Write Value = %p\n", (void *)*(addr_t *)src);
+    if ((child_entry != NULL) && (attrib != NULL)) {
+       PrintError("Duplicate Configuration parameters present for %s\n", tag);
+       return NULL;
+    }
 
-  return length;
+    if (attrib == NULL) {
+       val = v3_xml_txt(child_entry);
+       
+       if ( val[0] == 0 )
+               val = NULL;
+    } else {
+       val = attrib;
+    }
+    
+    return val;
 }
 
+v3_cfg_tree_t * v3_cfg_subtree(v3_cfg_tree_t * tree, char * tag) {
+    return v3_xml_child(tree, tag);
+}
+
+v3_cfg_tree_t * v3_cfg_next_branch(v3_cfg_tree_t * tree) {
+    return v3_xml_next(tree);
+}
 
 
-int v3_config_guest(struct guest_info * info, struct v3_vm_config * config_ptr) {
-  extern v3_cpu_arch_t v3_cpu_type;
-
-  // Initialize the subsystem data strutures
-  v3_init_time(info);
-  v3_init_io_map(info);
-  v3_init_msr_map(info);
-  v3_init_interrupt_state(info);
-  v3_init_dev_mgr(info);
-  v3_init_host_events(info);
-
-  v3_init_decoder(info);
-  
-  v3_init_shadow_map(info);
-  
-  v3_init_hypercall_map(info);
-
-  
-  if (v3_cpu_type == V3_SVM_REV3_CPU) {
-    info->shdw_pg_mode = NESTED_PAGING;
-  } else {
-    v3_init_shadow_page_state(info);
-    info->shdw_pg_mode = SHADOW_PAGING;
-  }
-  
-  // Initial CPU operating mode
-  info->cpu_mode = REAL;
-  info->mem_mode = PHYSICAL_MEM;
-
-  // Amount of ram the Guest will have, rounded to a 4K page boundary
-  info->mem_size = config_ptr->mem_size & ~(addr_t)0xfff;
-
-  // Configure the memory map for the guest
-  if (setup_memory_map(info, config_ptr) == -1) {
-    PrintError("Setting up guest memory map failed...\n");
-    return -1;
-  }
-
-  // Configure the devices for the guest
-  setup_devices(info, config_ptr);
 
+struct v3_cfg_file * v3_cfg_get_file(struct v3_vm_info * vm, char * tag) {
+    struct v3_cfg_file * file = NULL;
 
-  if (config_ptr->enable_profiling) {
-    info->enable_profiler = 1;
-    v3_init_profiler(info);
-  } else {
-    info->enable_profiler = 0;
-  }
+    file = (struct v3_cfg_file *)v3_htable_search(vm->cfg_data->file_table, (addr_t)tag);
 
-  //v3_hook_io_port(info, 1234, &IO_Read, NULL, info);
+    return file;
+}
 
-  // Setup initial cpu register state
-  info->rip = 0xfff0;
-  info->vm_regs.rsp = 0x0;
-  
 
-  return 0;
+static uint_t file_hash_fn(addr_t key) {
+    char * name = (char *)key;
+    return v3_hash_buffer((uchar_t *)name, strlen(name));
 }
 
+static int file_eq_fn(addr_t key1, addr_t key2) {
+    char * name1 = (char *)key1;
+    char * name2 = (char *)key2;
 
-/* TODO:
- * The amount of guest memory is stored in info->mem_size
- * We need to make sure the memory map extends to cover it
- */
-static int setup_memory_map(struct guest_info * info, struct v3_vm_config * config_ptr) {
-  addr_t mem_pages = info->mem_size >> 12;
+    return (strcmp(name1, name2) == 0);
+}
 
-  PrintDebug("Setting up memory map (memory size=%dMB)\n", (uint_t)(info->mem_size / (1024 * 1024)));
+static struct v3_config * parse_config(void * cfg_blob) {
+    struct v3_config * cfg = NULL;
+    int offset = 0;
+    uint_t xml_len = 0; 
+    struct file_idx_table * files = NULL;
+    v3_cfg_tree_t * file_tree = NULL;
 
-  // Fill up to the 640K hole
-  if (mem_pages >= 160) {
-    if (v3_add_shadow_mem(info, 0x0, 0xa0000, (addr_t)V3_AllocPages(160)) == -1) {
-      PrintError("Could not map full conventional memory\n");
-      return -1;
+    V3_Print("cfg data at %p\n", cfg_blob);
+
+    if (memcmp(cfg_blob, "v3vee\0\0\0", 8) != 0) {
+       PrintError("Invalid Configuration Header\n");
+       return NULL;
     }
-  } else {
-    // Less than 640k of memory
-    if (v3_add_shadow_mem(info, 0x0, (mem_pages * PAGE_SIZE), (addr_t)V3_AllocPages(mem_pages)) == -1) {
-      PrintError("Could not map subset of conventional memory\n");
-      return -1;
-    };
-  }
 
+    offset += 8;
+
+    cfg = (struct v3_config *)V3_Malloc(sizeof(struct v3_config));
+    memset(cfg, 0, sizeof(struct v3_config));
+
+    cfg->blob = cfg_blob;
+    INIT_LIST_HEAD(&(cfg->file_list));
+    cfg->file_table = v3_create_htable(0, file_hash_fn, file_eq_fn);
+    
+    xml_len = *(uint32_t *)(cfg_blob + offset);
+    offset += 4;
+
+    cfg->cfg = (v3_cfg_tree_t *)v3_xml_parse((uint8_t *)(cfg_blob + offset));
+    offset += xml_len;
+   
+    offset += 8;
+
+    files = (struct file_idx_table *)(cfg_blob + offset);
+
+    V3_Print("Number of files in cfg: %d\n", (uint32_t)(files->num_files));
+
+    file_tree = v3_cfg_subtree(v3_cfg_subtree(cfg->cfg, "files"), "file");
+
+    while (file_tree) {
+       char * id = v3_cfg_val(file_tree, "id");
+       char * index = v3_cfg_val(file_tree, "index");
+       int idx = atoi(index);
+       struct file_hdr * hdr = &(files->hdrs[idx]);
+       struct v3_cfg_file * file = NULL;
+
+       file = (struct v3_cfg_file *)V3_Malloc(sizeof(struct v3_cfg_file));
+       
+       if (!file) {
+           PrintError("Could not allocate file structure\n");
+           return NULL;
+       }
 
-#define VGABIOS_START 0x000c0000
-#define ROMBIOS_START 0x000f0000
+       V3_Print("File index=%d id=%s\n", idx, id);
 
-  // VGA frame buffer
-  if (1) {
-    if (v3_add_shadow_mem(info, 0xa0000, 0xc0000, 0xa0000) == -1) {
-      PrintError("Could not map VGA framebuffer\n");
-      return -1;
+       strncpy(file->tag, id, 256);
+       file->size = hdr->size;
+       file->data = cfg_blob + hdr->offset;
+
+       V3_Print("Storing file data offset = %d, size=%d\n", (uint32_t)hdr->offset, hdr->size);
+       V3_Print("file data at %p\n", file->data);
+       list_add( &(file->file_node), &(cfg->file_list));
+
+       V3_Print("Keying file to name\n");
+       v3_htable_insert(cfg->file_table, (addr_t)(file->tag), (addr_t)(file));
+
+       V3_Print("Iterating to next file\n");
+
+       file_tree = v3_cfg_next_branch(file_tree);
     }
-  } else {
-    v3_hook_write_mem(info, 0xa0000, 0xc0000, 0xa0000,  passthrough_mem_write, NULL);
-  }  
 
+    V3_Print("Configuration parsed successfully\n");
+
+    return cfg;
+}
 
-  /* layout vgabios */
-  {
-    uint_t num_pages = (config_ptr->vgabios_size + PAGE_SIZE - 1) / PAGE_SIZE;
-    void * guest_mem =  V3_AllocPages(num_pages);
-    addr_t vgabios_end = VGABIOS_START + (num_pages * PAGE_SIZE);
 
-    PrintDebug("Layout Region %d bytes\n", config_ptr->vgabios_size);
-    memcpy(V3_VAddr(guest_mem), config_ptr->vgabios, config_ptr->vgabios_size);
+static inline uint32_t get_alignment(char * align_str) {
+    // default is 4KB alignment
+    uint32_t alignment = PAGE_SIZE_4KB;
 
-    if (v3_add_shadow_mem(info, VGABIOS_START, vgabios_end, (addr_t)guest_mem) == -1) {
-      PrintError("Could not map VGABIOS\n");
-      return -1;
+    if (align_str != NULL) {
+       if (strcasecmp(align_str, "2MB") == 0) {
+           alignment = PAGE_SIZE_2MB;
+       } else if (strcasecmp(align_str, "4MB") == 0) {
+           alignment = PAGE_SIZE_4MB;
+       }
+    }
+    
+#ifndef V3_CONFIG_ALIGNED_PG_ALLOC
+    if (alignment != PAGE_SIZE_4KB) {
+       PrintError("Aligned page allocations are not supported in this host (requested alignment=%d)\n", alignment);
+       PrintError("Ignoring alignment request\n");
     }
+#endif 
+
+    return alignment;
+}
 
-    PrintDebug("Adding Shadow Region (0x%p-0x%p) -> 0x%p\n", 
-              (void *)VGABIOS_START, 
-              (void *)vgabios_end, 
-              (void *)guest_mem);
 
+static int pre_config_vm(struct v3_vm_info * vm, v3_cfg_tree_t * vm_cfg) {
+    char * memory_str = v3_cfg_val(vm_cfg, "memory");
+    char * schedule_hz_str = v3_cfg_val(vm_cfg, "schedule_hz");
+    char * vm_class = v3_cfg_val(vm_cfg, "class");
+    char * align_str = v3_cfg_val(v3_cfg_subtree(vm_cfg, "memory"), "alignment");
+    uint32_t sched_hz = 100;   // set the schedule frequency to 100 HZ
 
-    // Fill in the space between the VGABIOS and the ROMBIOS
-    // We'll just back this to shadow memory for now....
-    if (v3_add_shadow_mem(info, vgabios_end, ROMBIOS_START, 
-                         (addr_t)V3_AllocPages((ROMBIOS_START - vgabios_end) / PAGE_SIZE)) == -1) {
-      PrintError("Could not map VGABIOS->ROMBIOS gap\n");
-      return -1;
+
+    if (!memory_str) {
+       PrintError("Memory is a required configuration parameter\n");
+       return -1;
     }
-  }
+    
+    PrintDebug("Memory=%s\n", memory_str);
+    if (align_str) {
+        PrintDebug("Alignment=%s\n", align_str);
+    } else {
+        PrintDebug("Alignment defaulted to 4KB.\n");
+    }
+
+    // Amount of ram the Guest will have, always in MB
+    vm->mem_size = (addr_t)atoi(memory_str) * 1024 * 1024;
+    vm->mem_align = get_alignment(align_str);
 
-  /* layout rombios */
-  {
-    uint_t num_pages = (config_ptr->rombios_size + PAGE_SIZE - 1) / PAGE_SIZE;
-    void * guest_mem =  V3_AllocPages(num_pages);
-    addr_t rombios_end = ROMBIOS_START + (num_pages * PAGE_SIZE);
 
-    PrintDebug("Layout Region %d bytes\n", config_ptr->rombios_size);
-    memcpy(V3_VAddr(guest_mem), config_ptr->rombios, config_ptr->rombios_size);
+    PrintDebug("Alignment for %lu bytes of memory computed as 0x%x\n", vm->mem_size, vm->mem_align);
 
-    if (v3_add_shadow_mem(info, ROMBIOS_START, rombios_end, (addr_t)guest_mem) == -1) {
-      PrintError("Could not map ROMBIOS\n");
-      return -1;
+    if (strcasecmp(vm_class, "PC") == 0) {
+       vm->vm_class = V3_PC_VM;
+    } else {
+       PrintError("Invalid VM class\n");
+       return -1;
     }
+
+#ifdef V3_CONFIG_TELEMETRY
+    {
+       char * telemetry = v3_cfg_val(vm_cfg, "telemetry");
+
+       // This should go first, because other subsystems will depend on the guest_info flag    
+       if ((telemetry) && (strcasecmp(telemetry, "enable") == 0)) {
+           vm->enable_telemetry = 1;
+       } else {
+           vm->enable_telemetry = 0;
+       }
+    }
+#endif
+
+    if (v3_init_vm(vm) == -1) {
+       PrintError("Failed to initialize VM\n");
+       return -1;
+    }
+
+
+
+   if (schedule_hz_str) {
+       sched_hz = atoi(schedule_hz_str);
+    }
+
+    PrintDebug("CPU_KHZ = %d, schedule_freq=%p\n", V3_CPU_KHZ(), 
+              (void *)(addr_t)sched_hz);
+
+    vm->yield_cycle_period = (V3_CPU_KHZ() * 1000) / sched_hz;
     
-    PrintDebug("Adding Shadow Region (0x%p-0x%p) -> 0x%p\n", 
-              (void *)ROMBIOS_START, 
-              (void *)rombios_end, 
-              (void *)guest_mem);
+    return 0;
+}
 
-    if (rombios_end != 0x100000) {
-      PrintError("ROMBIOS must reach the 1MB barrier....\n");
-      return -1;
+
+static int determine_paging_mode(struct guest_info * info, v3_cfg_tree_t * core_cfg) {
+    extern v3_cpu_arch_t v3_mach_type;
+
+    v3_cfg_tree_t * vm_tree = info->vm_info->cfg_data->cfg;
+    v3_cfg_tree_t * pg_tree = v3_cfg_subtree(vm_tree, "paging");
+    char * pg_mode          = v3_cfg_val(pg_tree, "mode");
+    
+    PrintDebug("Paging mode specified as %s\n", pg_mode);
+
+    if (pg_mode) {
+       if ((strcasecmp(pg_mode, "nested") == 0)) {
+           // we assume symmetric cores, so if core 0 has nested paging they all do
+           if ((v3_mach_type == V3_SVM_REV3_CPU) || 
+               (v3_mach_type == V3_VMX_EPT_CPU) ||
+               (v3_mach_type  == V3_VMX_EPT_UG_CPU)) {
+               info->shdw_pg_mode = NESTED_PAGING;
+           } else {
+               PrintError("Nested paging not supported on this hardware. Defaulting to shadow paging\n");
+               info->shdw_pg_mode = SHADOW_PAGING;
+           }
+       } else if ((strcasecmp(pg_mode, "shadow") == 0)) {
+           info->shdw_pg_mode = SHADOW_PAGING;
+       } else {
+           PrintError("Invalid paging mode (%s) specified in configuration. Defaulting to shadow paging\n", pg_mode);
+           info->shdw_pg_mode = SHADOW_PAGING;
+       }
+    } else {
+       PrintDebug("No paging type specified in configuration. Defaulting to shadow paging\n");
+       info->shdw_pg_mode = SHADOW_PAGING;
     }
-  }
 
 
+    if (v3_cfg_val(pg_tree, "large_pages") != NULL) {
+       if (strcasecmp(v3_cfg_val(pg_tree, "large_pages"), "true") == 0) {
+           info->use_large_pages = 1;
+           PrintDebug("Use of large pages in memory virtualization enabled.\n");
+       }
+    }
+    return 0;
+}
+
+static int pre_config_core(struct guest_info * info, v3_cfg_tree_t * core_cfg) {
+    if (determine_paging_mode(info, core_cfg) != 0) {
+       return -1;
+    }
 
-  // Fill in the extended memory map....
-  {
-    int num_ext_pages = mem_pages - (0x100000 / PAGE_SIZE);
+    v3_init_core(info);
 
-    if (num_ext_pages > 0) {
-      if (v3_add_shadow_mem(info, 0x100000, info->mem_size, (addr_t)V3_AllocPages(num_ext_pages)) == -1) {
-       PrintError("Could not allocate extended shadow memory\n");
+    if (info->vm_info->vm_class == V3_PC_VM) {
+       if (pre_config_pc_core(info, core_cfg) == -1) {
+           PrintError("PC Post configuration failure\n");
+           return -1;
+       }
+    } else {
+       PrintError("Invalid VM Class\n");
        return -1;
-      }
     }
-  }
-  
-  print_shadow_map(info);
 
-  return 0;
+    return 0;
 }
 
 
 
-static int setup_devices(struct guest_info * info, struct v3_vm_config * config_ptr) {
-    struct vm_device * ramdisk = NULL;
-    struct vm_device * cdrom = NULL;
-    struct vm_device * nvram = v3_create_nvram();
-    //struct vm_device * timer = v3_create_timer();
-    struct vm_device * pic = v3_create_pic();
-    struct vm_device * keyboard = v3_create_keyboard();
-    struct vm_device * pit = v3_create_pit(); 
-    struct vm_device * bochs_debug = v3_create_bochs_debug();
-    struct vm_device * os_debug = v3_create_os_debug();
-    struct vm_device * apic = v3_create_apic();
-    struct vm_device * ioapic = v3_create_io_apic(apic);
+static int post_config_vm(struct v3_vm_info * vm, v3_cfg_tree_t * cfg) {
+    
+    vm->run_state = VM_STOPPED;
+
+    // Configure the memory map for the guest
+    if (setup_memory_map(vm, cfg) == -1) {
+       PrintError("Setting up guest memory map failed...\n");
+       return -1;
+    }
 
-    //struct vm_device * serial = v3_create_serial();
-    struct vm_device * generic = NULL;
 
-    int use_ramdisk = config_ptr->use_ramdisk;
-    int use_generic = USE_GENERIC;
+    if (vm->vm_class == V3_PC_VM) {
+       if (post_config_pc(vm, cfg) == -1) {
+           PrintError("PC Post configuration failure\n");
+           return -1;
+       }
+    } else {
+       PrintError("Invalid VM Class\n");
+       return -1;
+    }
 
 
-    if (use_ramdisk) {
-      PrintDebug("Creating Ramdisk\n");
-      ramdisk = v3_create_ramdisk();
-      cdrom = v3_create_cdrom(ramdisk, config_ptr->ramdisk, config_ptr->ramdisk_size); 
+    /* 
+     * Initialize configured devices
+     */
+    if (setup_devices(vm, cfg) == -1) {
+       PrintError("Failed to setup devices\n");
+       return -1;
     }
-    
-    
-    if (use_generic) {
-      generic = configure_generic(info, config_ptr);
+
+
+    //    v3_print_io_map(info);
+    v3_print_msr_map(vm);
+
+
+
+
+    /* 
+     * Initialize configured extensions 
+     */
+    if (setup_extensions(vm, cfg) == -1) {
+       PrintError("Failed to setup extensions\n");
+       return -1;
     }
 
 
-    v3_attach_device(info, nvram);
-    //v3_attach_device(info, timer);
-    v3_attach_device(info, pic);
-    v3_attach_device(info, pit);
-    v3_attach_device(info, keyboard);
-    // v3_attach_device(info, serial);
-    v3_attach_device(info, bochs_debug);
-    v3_attach_device(info, os_debug);
+    return 0;
+}
+
+
 
-    v3_attach_device(info, apic);
-    v3_attach_device(info, ioapic);
+static int post_config_core(struct guest_info * info, v3_cfg_tree_t * cfg) {
 
-    if (use_ramdisk) {
-      v3_attach_device(info, ramdisk);
-      v3_attach_device(info, cdrom);
+    info->core_run_state = CORE_STOPPED;
+    if (v3_init_core_extensions(info) == -1) {
+        PrintError("Error intializing extension core states\n");
+        return -1;
     }
 
-    if (use_generic) {
-      // Important that this be attached last!
-      v3_attach_device(info, generic);
+    if (info->vm_info->vm_class == V3_PC_VM) {
+       if (post_config_pc_core(info, cfg) == -1) {
+           PrintError("PC Post configuration failure\n");
+           return -1;
+       }
+    } else {
+       PrintError("Invalid VM Class\n");
+       return -1;
     }
-    
-    PrintDebugDevMgr(info);
 
 
-    // give keyboard interrupts to vm
-    // no longer needed since we have a keyboard device
-    //hook_irq(&vm_info, 1);
-    
-#if 0
-    // give floppy controller to vm
-    v3_hook_passthrough_irq(info, 6);
-#endif
-    
-    
-    if (!use_ramdisk) {
-      PrintDebug("Hooking IDE IRQs\n");
-      
-      //primary ide
-      v3_hook_passthrough_irq(info, 14);
-      
-      // secondary ide
-      v3_hook_passthrough_irq(info, 15);    
-    }  
-    
+    return 0;
+}
+
+
+
+static struct v3_vm_info * allocate_guest(int num_cores) {
+    int guest_state_size = sizeof(struct v3_vm_info) + (sizeof(struct guest_info) * num_cores);
+    struct v3_vm_info * vm = V3_Malloc(guest_state_size);
+
+    memset(vm, 0, guest_state_size);
 
-  return 0;
+    vm->num_cores = num_cores;
+
+    return vm;
 }
 
 
 
-static struct vm_device *  configure_generic(struct guest_info * info, struct v3_vm_config * config_ptr) {
-      PrintDebug("Creating Generic Device\n");
-      struct vm_device * generic = v3_create_generic();
-      
-      // Make the DMA controller invisible
-      v3_generic_add_port_range(generic, 0x00, 0x07, GENERIC_PRINT_AND_IGNORE);   // DMA 1 channels 0,1,2,3 (address, counter)
-      v3_generic_add_port_range(generic, 0xc0, 0xc7, GENERIC_PRINT_AND_IGNORE);   // DMA 2 channels 4,5,6,7 (address, counter)
-      v3_generic_add_port_range(generic, 0x87, 0x87, GENERIC_PRINT_AND_IGNORE);   // DMA 1 channel 0 page register
-      v3_generic_add_port_range(generic, 0x83, 0x83, GENERIC_PRINT_AND_IGNORE);   // DMA 1 channel 1 page register
-      v3_generic_add_port_range(generic, 0x81, 0x81, GENERIC_PRINT_AND_IGNORE);   // DMA 1 channel 2 page register
-      v3_generic_add_port_range(generic, 0x82, 0x82, GENERIC_PRINT_AND_IGNORE);   // DMA 1 channel 3 page register
-      v3_generic_add_port_range(generic, 0x8f, 0x8f, GENERIC_PRINT_AND_IGNORE);   // DMA 2 channel 4 page register
-      v3_generic_add_port_range(generic, 0x8b, 0x8b, GENERIC_PRINT_AND_IGNORE);   // DMA 2 channel 5 page register
-      v3_generic_add_port_range(generic, 0x89, 0x89, GENERIC_PRINT_AND_IGNORE);   // DMA 2 channel 6 page register
-      v3_generic_add_port_range(generic, 0x8a, 0x8a, GENERIC_PRINT_AND_IGNORE);   // DMA 2 channel 7 page register
-      v3_generic_add_port_range(generic, 0x08, 0x0f, GENERIC_PRINT_AND_IGNORE);   // DMA 1 misc registers (csr, req, smask,mode,clearff,reset,enable,mmask)
-      v3_generic_add_port_range(generic, 0xd0, 0xde, GENERIC_PRINT_AND_IGNORE);   // DMA 2 misc registers
-      
-      
-      
-      
-      // Make the Serial ports invisible 
-      
-      v3_generic_add_port_range(generic, 0x3f8, 0x3f8+7, GENERIC_PRINT_AND_IGNORE);      // COM 1
-      v3_generic_add_port_range(generic, 0x2f8, 0x2f8+7, GENERIC_PRINT_AND_IGNORE);      // COM 2
-      
-
-      
-
-      v3_generic_add_port_range(generic, 0x3e8, 0x3e8+7, GENERIC_PRINT_AND_IGNORE);      // COM 3
-      v3_generic_add_port_range(generic, 0x2e8, 0x2e8+7, GENERIC_PRINT_AND_IGNORE);      // COM 4
-
-      
-      
-
-      // Make the PCI bus invisible (at least it's configuration)
-      
-      v3_generic_add_port_range(generic, 0xcf8, 0xcf8, GENERIC_PRINT_AND_IGNORE); // PCI Config Address
-      v3_generic_add_port_range(generic, 0xcfc, 0xcfc, GENERIC_PRINT_AND_IGNORE); // PCI Config Data
-
-      
-      
-#if 0
-      if (!use_ramdisk) {
-       // Monitor the IDE controllers (very slow)
-       v3_generic_add_port_range(generic, 0x170, 0x178, GENERIC_PRINT_AND_PASSTHROUGH); // IDE 1
-       v3_generic_add_port_range(generic, 0x376, 0x377, GENERIC_PRINT_AND_PASSTHROUGH); // IDE 1
-      }
-      
-
-      v3_generic_add_port_range(generic, 0x1f0, 0x1f8, GENERIC_PRINT_AND_PASSTHROUGH); // IDE 0
-      v3_generic_add_port_range(generic, 0x3f6, 0x3f7, GENERIC_PRINT_AND_PASSTHROUGH); // IDE 0
-#endif
-      
-      
-#if 0
-      
-      // Make the floppy controllers invisible
-      
-      v3_generic_add_port_range(generic, 0x3f0, 0x3f2, GENERIC_PRINT_AND_IGNORE); // Primary floppy controller (base,statusa/statusb,DOR)
-      v3_generic_add_port_range(generic, 0x3f4, 0x3f5, GENERIC_PRINT_AND_IGNORE); // Primary floppy controller (mainstat/datarate,data)
-      v3_generic_add_port_range(generic, 0x3f7, 0x3f7, GENERIC_PRINT_AND_IGNORE); // Primary floppy controller (DIR)
-      v3_generic_add_port_range(generic, 0x370, 0x372, GENERIC_PRINT_AND_IGNORE); // Secondary floppy controller (base,statusa/statusb,DOR)
-      v3_generic_add_port_range(generic, 0x374, 0x375, GENERIC_PRINT_AND_IGNORE); // Secondary floppy controller (mainstat/datarate,data)
-      v3_generic_add_port_range(generic, 0x377, 0x377, GENERIC_PRINT_AND_IGNORE); // Secondary floppy controller (DIR)
-      
-#endif
+struct v3_vm_info * v3_config_guest(void * cfg_blob, void * priv_data) {
+    extern v3_cpu_arch_t v3_mach_type;
+    struct v3_config * cfg_data = NULL;
+    struct v3_vm_info * vm = NULL;
+    int num_cores = 0;
+    int i = 0;
+    v3_cfg_tree_t * cores_cfg = NULL;
+    v3_cfg_tree_t * per_core_cfg = NULL;
 
-#if 1
+    if (v3_mach_type == V3_INVALID_CPU) {
+       PrintError("Configuring guest on invalid CPU\n");
+       return NULL;
+    }
 
-      // Make the parallel port invisible
-      
-      v3_generic_add_port_range(generic, 0x378, 0x37f, GENERIC_PRINT_AND_IGNORE);
+    cfg_data = parse_config(cfg_blob);
 
-#endif
+    if (!cfg_data) {
+       PrintError("Could not parse configuration\n");
+       return NULL;
+    }
 
-#if 1
+    cores_cfg = v3_cfg_subtree(cfg_data->cfg, "cores");
 
-      // Monitor graphics card operations
+    if (!cores_cfg) {
+       PrintError("Could not find core configuration (new config format required)\n");
+       return NULL;
+    }
 
-      v3_generic_add_port_range(generic, 0x3b0, 0x3bb, GENERIC_PRINT_AND_PASSTHROUGH);
-      v3_generic_add_port_range(generic, 0x3c0, 0x3df, GENERIC_PRINT_AND_PASSTHROUGH);
-      
-#endif
+    num_cores = atoi(v3_cfg_val(cores_cfg, "count"));
+    if (num_cores == 0) {
+       PrintError("No cores specified in configuration\n");
+       return NULL;
+    }
 
+    V3_Print("Configuring %d cores\n", num_cores);
 
-#if 1
-      // Make the ISA PNP features invisible
+    vm = allocate_guest(num_cores);    
 
-      v3_generic_add_port_range(generic, 0x274, 0x277, GENERIC_PRINT_AND_IGNORE);
-      v3_generic_add_port_range(generic, 0x279, 0x279, GENERIC_PRINT_AND_IGNORE);
-      v3_generic_add_port_range(generic, 0xa79, 0xa79, GENERIC_PRINT_AND_IGNORE);
-#endif
+    if (!vm) {
+       PrintError("Could not allocate %d core guest\n", vm->num_cores);
+       return NULL;
+    }
 
+    vm->host_priv_data = priv_data;
 
-#if 1
-      // Monitor any network card (realtek ne2000) operations 
-      v3_generic_add_port_range(generic, 0xc100, 0xc1ff, GENERIC_PRINT_AND_PASSTHROUGH);
-#endif
+    vm->cfg_data = cfg_data;
 
+    V3_Print("Preconfiguration\n");
 
-#if 1
-      // Make any Bus master ide controller invisible
-      
-      v3_generic_add_port_range(generic, 0xc000, 0xc00f, GENERIC_PRINT_AND_IGNORE);
-#endif
-      //  v3_generic_add_port_range(generic, 0x378, 0x400, GENERIC_PRINT_AND_IGNORE);
-      
+    if (pre_config_vm(vm, vm->cfg_data->cfg) == -1) {
+       PrintError("Error in preconfiguration\n");
+       return NULL;
+    }
+
+    V3_Print("Per core configuration\n");
+    per_core_cfg = v3_cfg_subtree(cores_cfg, "core");
+
+    // per core configuration
+    for (i = 0; i < vm->num_cores; i++) {
+       struct guest_info * info = &(vm->cores[i]);
+
+       info->vcpu_id = i;
+       info->vm_info = vm;
+       info->core_cfg_data = per_core_cfg;
+
+       if (pre_config_core(info, per_core_cfg) == -1) {
+           PrintError("Error in core %d preconfiguration\n", i);
+           return NULL;
+       }
+
+
+       per_core_cfg = v3_cfg_next_branch(per_core_cfg);
+    }
+
+
+    V3_Print("Post Configuration\n");
+
+    if (post_config_vm(vm, vm->cfg_data->cfg) == -1) {
+       PrintError("Error in postconfiguration\n");
+       return NULL;
+    }
+
+
+    per_core_cfg = v3_cfg_subtree(cores_cfg, "core");
+
+    // per core configuration
+    for (i = 0; i < vm->num_cores; i++) {
+       struct guest_info * info = &(vm->cores[i]);
+
+       post_config_core(info, per_core_cfg);
+
+       per_core_cfg = v3_cfg_next_branch(per_core_cfg);
+    }
+
+    V3_Print("Configuration successfull\n");
+
+    return vm;
+}
+
+
+
+int v3_free_config(struct v3_vm_info * vm) {
+   
+    v3_free_htable(vm->cfg_data->file_table, 1, 0);
+
+    v3_xml_free(vm->cfg_data->cfg);
+
+    V3_Free(vm->cfg_data);
+    return 0;
+}
+
+
+
+
+static int setup_memory_map(struct v3_vm_info * vm, v3_cfg_tree_t * cfg) {
+    v3_cfg_tree_t * mem_region = v3_cfg_subtree(v3_cfg_subtree(cfg, "memmap"), "region");
+
+    while (mem_region) {
+       addr_t start_addr = atox(v3_cfg_val(mem_region, "start"));
+       addr_t end_addr = atox(v3_cfg_val(mem_region, "end"));
+       addr_t host_addr = atox(v3_cfg_val(mem_region, "host_addr"));
+
+    
+       if (v3_add_shadow_mem(vm, V3_MEM_CORE_ANY, start_addr, end_addr, host_addr) == -1) {
+           PrintError("Could not map memory region: %p-%p => %p\n", 
+                      (void *)start_addr, (void *)end_addr, (void *)host_addr);
+           return -1;
+       }
+
+       mem_region = v3_cfg_next_branch(mem_region);
+    }
+
+    return 0;
+}
+
+
+static int setup_extensions(struct v3_vm_info * vm, v3_cfg_tree_t * cfg) {
+    v3_cfg_tree_t * extension = v3_cfg_subtree(v3_cfg_subtree(cfg, "extensions"), "extension");
+
+    while (extension) {
+       char * ext_name = v3_cfg_val(extension, "name");
+
+       V3_Print("Configuring extension %s\n", ext_name);
+
+       if (v3_add_extension(vm, ext_name, extension) == -1) {
+           PrintError("Error adding extension %s\n", ext_name);
+           return -1;
+       }
+
+       extension = v3_cfg_next_branch(extension);
+    }
+
+    return 0;
+}
 
-      return generic;
 
+static int setup_devices(struct v3_vm_info * vm, v3_cfg_tree_t * cfg) {
+    v3_cfg_tree_t * device = v3_cfg_subtree(v3_cfg_subtree(cfg, "devices"), "device");
+
+    
+    while (device) {
+       char * dev_class = v3_cfg_val(device, "class");
+
+       V3_Print("configuring device %s\n", dev_class);
+
+       if (v3_create_device(vm, dev_class, device) == -1) {
+           PrintError("Error creating device %s\n", dev_class);
+           return -1;
+       }
+       
+       device = v3_cfg_next_branch(device);
+    }
+
+    v3_print_dev_mgr(vm);
+
+    return 0;
 }
+
+
+