#include <palacios/vmm_intr.h>
#include <palacios/vmm_config.h>
#include <palacios/vm_guest.h>
-#include <palacios/vmm_instrument.h>
#include <palacios/vmm_ctrl_regs.h>
#include <palacios/vmm_lowlevel.h>
#include <palacios/vmm_sprintf.h>
+#include <palacios/vmm_extensions.h>
-#ifdef CONFIG_SVM
+#ifdef V3_CONFIG_SVM
#include <palacios/svm.h>
#endif
-#ifdef CONFIG_VMX
+#ifdef V3_CONFIG_VMX
#include <palacios/vmx.h>
#endif
-#ifdef CONFIG_VNET
-#include <palacios/vmm_vnet.h>
+#ifdef V3_CONFIG_VNET
+#include <vnet/vnet.h>
#endif
-v3_cpu_arch_t v3_cpu_types[CONFIG_MAX_CPUS];
+v3_cpu_arch_t v3_cpu_types[V3_CONFIG_MAX_CPUS];
struct v3_os_hooks * os_hooks = NULL;
-
int v3_dbg_enable = 0;
static void init_cpu(void * arg) {
uint32_t cpu_id = (uint32_t)(addr_t)arg;
-#ifdef CONFIG_SVM
+#ifdef V3_CONFIG_SVM
if (v3_is_svm_capable()) {
PrintDebug("Machine is SVM Capable\n");
v3_init_svm_cpu(cpu_id);
} else
#endif
-#ifdef CONFIG_VMX
+#ifdef V3_CONFIG_VMX
if (v3_is_vmx_capable()) {
PrintDebug("Machine is VMX Capable\n");
v3_init_vmx_cpu(cpu_id);
}
}
-#if 0
+
static void deinit_cpu(void * arg) {
-// uint32_t cpu_id = (uint32_t)(addr_t)arg;
+ uint32_t cpu_id = (uint32_t)(addr_t)arg;
- #ifdef CONFIG_SVM
- if (v3_is_svm_capable()) {
- PrintDebug("Machine is SVM Capable\n");
- //v3_deinit_svm_cpu(cpu_id);
- } else
+ switch (v3_cpu_types[cpu_id]) {
+#ifdef V3_CONFIG_SVM
+ case V3_SVM_CPU:
+ case V3_SVM_REV3_CPU:
+ PrintDebug("Deinitializing SVM CPU %d\n", cpu_id);
+ v3_deinit_svm_cpu(cpu_id);
+ break;
#endif
-#ifdef CONFIG_VMX
- if (v3_is_vmx_capable()) {
- PrintDebug("Machine is VMX Capable\n");
- //v3_deinit_vmx_cpu(cpu_id);
-
- } else
+#ifdef V3_CONFIG_VMX
+ case V3_VMX_CPU:
+ case V3_VMX_EPT_CPU:
+ case V3_VMX_EPT_UG_CPU:
+ PrintDebug("Deinitializing VMX CPU %d\n", cpu_id);
+ v3_deinit_vmx_cpu(cpu_id);
+ break;
#endif
- {
- PrintError("CPU has no virtualization Extensions\n");
+ case V3_INVALID_CPU:
+ default:
+ PrintError("CPU has no virtualization Extensions\n");
+ break;
}
}
-#endif
+
void Init_V3(struct v3_os_hooks * hooks, int num_cpus) {
// Set global variables.
os_hooks = hooks;
- for (i = 0; i < CONFIG_MAX_CPUS; i++) {
+ for (i = 0; i < V3_CONFIG_MAX_CPUS; i++) {
v3_cpu_types[i] = V3_INVALID_CPU;
}
// Register all shadow paging handlers
V3_init_shdw_paging();
+ // Register all extensions
+ V3_init_extensions();
-#ifdef CONFIG_SYMMOD
- V3_init_symmod();
-#endif
-#ifdef CONFIG_INSTRUMENT_VMM
- v3_init_instrumentation();
+#ifdef V3_CONFIG_SYMMOD
+ V3_init_symmod();
#endif
-#ifdef CONFIG_VNET
+#ifdef V3_CONFIG_VNET
v3_init_vnet();
#endif
-#ifdef CONFIG_MULTITHREAD_OS
+#ifdef V3_CONFIG_MULTITHREAD_OS
if ((hooks) && (hooks->call_on_cpu)) {
for (i = 0; i < num_cpus; i++) {
void Shutdown_V3() {
- // int i;
+ int i;
V3_deinit_devices();
V3_deinit_shdw_paging();
-#if 0
+ V3_deinit_extensions();
-#ifdef CONFIG_SYMMOD
+#ifdef V3_CONFIG_SYMMOD
V3_deinit_symmod();
#endif
-#ifdef CONFIG_INSTRUMENT_VMM
- v3_deinit_instrumentation();
-#endif
-#ifdef CONFIG_VNET
+#ifdef V3_CONFIG_VNET
v3_deinit_vnet();
#endif
-#ifdef CONFIG_MULTITHREAD_OS
- if ((hooks) && (hooks->call_on_cpu)) {
- for (i = 0; i < CONFIG_MAX_CPUS; i++) {
+#ifdef V3_CONFIG_MULTITHREAD_OS
+ if ((os_hooks) && (os_hooks->call_on_cpu)) {
+ for (i = 0; i < V3_CONFIG_MAX_CPUS; i++) {
if (v3_cpu_types[i] != V3_INVALID_CPU) {
- deinit_cpu(i);
+ deinit_cpu((void *)(addr_t)i);
}
}
}
deinit_cpu(0);
#endif
-#endif
-
}
struct v3_vm_info * v3_create_vm(void * cfg, void * priv_data, char * name) {
struct v3_vm_info * vm = v3_config_guest(cfg, priv_data);
- V3_Print("CORE 0 RIP=%p\n", (void *)(addr_t)(vm->cores[0].rip));
-
-
if (vm == NULL) {
PrintError("Could not configure guest\n");
return NULL;
}
+ V3_Print("CORE 0 RIP=%p\n", (void *)(addr_t)(vm->cores[0].rip));
+
if (name == NULL) {
name = "[V3_VM]";
} else if (strlen(name) >= 128) {
struct guest_info * core = (struct guest_info *)p;
- PrintDebug("core %u: in start_core (RIP=%p)\n",
- core->cpu_id, (void *)(addr_t)core->rip);
+ PrintDebug("virtual core %u (on logical core %u): in start_core (RIP=%p)\n",
+ core->vcpu_id, core->pcpu_id, (void *)(addr_t)core->rip);
-
- // JRL: Whoa WTF? cpu_types are tied to the vcoreID????
- switch (v3_cpu_types[core->cpu_id]) {
-#ifdef CONFIG_SVM
+ switch (v3_cpu_types[0]) {
+#ifdef V3_CONFIG_SVM
case V3_SVM_CPU:
case V3_SVM_REV3_CPU:
return v3_start_svm_guest(core);
break;
#endif
-#if CONFIG_VMX
+#if V3_CONFIG_VMX
case V3_VMX_CPU:
case V3_VMX_EPT_CPU:
+ case V3_VMX_EPT_UG_CPU:
return v3_start_vmx_guest(core);
break;
#endif
// For the moment very ugly. Eventually we will shift the cpu_mask to an arbitrary sized type...
-#ifdef CONFIG_MULTITHREAD_OS
+#ifdef V3_CONFIG_MULTITHREAD_OS
#define MAX_CORES 32
#else
#define MAX_CORES 1
int v3_start_vm(struct v3_vm_info * vm, unsigned int cpu_mask) {
uint32_t i;
-#ifdef CONFIG_MULTITHREAD_OS
- int vcore_id = 0;
-#endif
uint8_t * core_mask = (uint8_t *)&cpu_mask; // This is to make future expansion easier
uint32_t avail_cores = 0;
-
-
+ int vcore_id = 0;
/// CHECK IF WE ARE MULTICORE ENABLED....
V3_Print("V3 -- Starting VM (%u cores)\n", vm->num_cores);
V3_Print("CORE 0 RIP=%p\n", (void *)(addr_t)(vm->cores[0].rip));
+
// Check that enough cores are present in the mask to handle vcores
for (i = 0; i < MAX_CORES; i++) {
int major = i / 8;
int minor = i % 8;
-
+
if (core_mask[major] & (0x1 << minor)) {
avail_cores++;
}
-
}
-
+
+
if (vm->num_cores > avail_cores) {
- PrintError("Attempted to start a VM with too many cores (vm->num_cores = %d, avail_cores = %d, MAX=%d)\n", vm->num_cores, avail_cores, MAX_CORES);
+ PrintError("Attempted to start a VM with too many cores (vm->num_cores = %d, avail_cores = %d, MAX=%d)\n",
+ vm->num_cores, avail_cores, MAX_CORES);
return -1;
}
-
-#ifdef CONFIG_MULTITHREAD_OS
+#ifdef V3_CONFIG_MULTITHREAD_OS
// spawn off new threads, for other cores
for (i = 0, vcore_id = 1; (i < MAX_CORES) && (vcore_id < vm->num_cores); i++) {
- int major = i / 8;
- int minor = i % 8;
+ int major = 0;
+ int minor = 0;
void * core_thread = NULL;
struct guest_info * core = &(vm->cores[vcore_id]);
+ char * specified_cpu = v3_cfg_val(core->core_cfg_data, "target_cpu");
+ uint32_t core_idx = 0;
+
+ if (specified_cpu != NULL) {
+ core_idx = atoi(specified_cpu);
+
+ if ((core_idx < 0) || (core_idx >= MAX_CORES)) {
+ PrintError("Target CPU out of bounds (%d) (MAX_CORES=%d)\n", core_idx, MAX_CORES);
+ }
- if (i == V3_Get_CPU()) {
- // We skip the local CPU, because it is reserved for vcore 0
- continue;
+ i--; // We reset the logical core idx. Not strictly necessary I guess...
+ } else {
+
+ if (i == V3_Get_CPU()) {
+ // We skip the local CPU because it is reserved for vcore 0
+ continue;
+ }
+
+ core_idx = i;
}
+ major = core_idx / 8;
+ minor = core_idx % 8;
+
if ((core_mask[major] & (0x1 << minor)) == 0) {
- // cpuid not set in cpu_mask
+ PrintError("Logical CPU %d not available for virtual core %d; not started\n",
+ core_idx, vcore_id);
+
+ if (specified_cpu != NULL) {
+ PrintError("CPU was specified explicitly (%d). HARD ERROR\n", core_idx);
+ v3_stop_vm(vm);
+ return -1;
+ }
+
continue;
- }
+ }
PrintDebug("Starting virtual core %u on logical core %u\n",
- vcore_id, i);
+ vcore_id, core_idx);
sprintf(core->exec_name, "%s-%u", vm->name, vcore_id);
PrintDebug("run: core=%u, func=0x%p, arg=0x%p, name=%s\n",
- i, start_core, core, core->exec_name);
+ core_idx, start_core, core, core->exec_name);
// TODO: actually manage these threads instead of just launching them
- core_thread = V3_CREATE_THREAD_ON_CPU(i, start_core, core, core->exec_name);
+ core->pcpu_id = core_idx;
+ core_thread = V3_CREATE_THREAD_ON_CPU(core_idx, start_core, core, core->exec_name);
if (core_thread == NULL) {
PrintError("Thread launch failed\n");
+ v3_stop_vm(vm);
return -1;
}
sprintf(vm->cores[0].exec_name, "%s", vm->name);
+ vm->cores[0].pcpu_id = V3_Get_CPU();
+
if (start_core(&(vm->cores[0])) != 0) {
PrintError("Error starting VM core 0\n");
+ v3_stop_vm(vm);
return -1;
}
break;
}
- V3_Print("Yielding\n");
-
v3_yield(NULL);
}
}
-#ifdef CONFIG_MULTITHREAD_OS
+#ifdef V3_CONFIG_MULTITHREAD_OS
void v3_interrupt_cpu(struct v3_vm_info * vm, int logical_cpu, int vector) {
extern struct v3_os_hooks * os_hooks;
int v3_vm_enter(struct guest_info * info) {
- switch (v3_cpu_types[info->cpu_id]) {
-#ifdef CONFIG_SVM
+ switch (v3_cpu_types[0]) {
+#ifdef V3_CONFIG_SVM
case V3_SVM_CPU:
case V3_SVM_REV3_CPU:
return v3_svm_enter(info);
break;
#endif
-#if CONFIG_VMX
+#if V3_CONFIG_VMX
case V3_VMX_CPU:
case V3_VMX_EPT_CPU:
+ case V3_VMX_EPT_UG_CPU:
return v3_vmx_enter(info);
break;
#endif