Loading...
1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38 39 40 41 42 43 44 45 46 47 48 49 50 51 52 53 54 55 56 57 58 59 60 61 62 63 64 65 66 67 68 69 70 71 72 73 74 75 76 77 78 79 80 81 82 83 84 85 86 87 88 89 90 91 92 93 94 95 96 97 98 99 100 101 102 103 104 105 106 107 108 109 110 111 112 113 114 115 116 117 118 119 120 121 122 123 124 125 126 127 128 129 130 131 132 133 134 135 136 137 138 139 140 | #include <darwintest.h> #include <darwintest_utils.h> #include <mach/mach.h> #include <mach/task_info.h> #include <mach/vm_region.h> #include <mach/mach_vm.h> #include <sys/kern_sysctl.h> #include <errno.h> static const char* g_sysctl_name = "vm.get_owned_vmobjects"; static void main_test(void) { int ret; mach_port_name_t task_name; vmobject_list_output_t out_buffer; size_t out_size; size_t output_size; const vm_size_t tmp_size = 16 * 1024 * 1024; /* arbitrary size */ vm_address_t tmp_buf; vm_address_t tmp_buf2; mach_vm_size_t addr_size; mach_vm_address_t addr; kern_return_t kr; mach_port_t __self = mach_task_self(); vm_region_submap_info_data_64_t regionInfo; uint32_t nestingDepth; mach_msg_type_number_t count; /* allocate a temporary buffer */ kr = vm_allocate(__self, &tmp_buf, tmp_size, VM_FLAGS_ANYWHERE | VM_FLAGS_PURGABLE); T_QUIET; T_EXPECT_EQ(kr, KERN_SUCCESS, "vm_allocate(%zu) error 0x%x (%s)", (size_t) tmp_size, kr, mach_error_string(kr)); T_QUIET; T_EXPECT_NE(tmp_buf, (vm_address_t) 0, "failed to allocate temporary purgable buffer\n"); kr = vm_allocate(__self, &tmp_buf2, tmp_size, VM_FLAGS_ANYWHERE | VM_FLAGS_PURGABLE); T_QUIET; T_EXPECT_EQ(kr, KERN_SUCCESS, "vm_allocate(%zu) error 0x%x (%s)", (size_t) tmp_size, kr, mach_error_string(kr)); T_QUIET; T_EXPECT_NE(tmp_buf2, (vm_address_t) 0, "failed to allocate temporary purgable buffer\n"); /* expected failures */ out_size = tmp_size; ret = sysctlbyname(g_sysctl_name, NULL, 0, NULL, 0); T_EXPECT_EQ(ret, -1, "expected failure with 0 parameters\n"); T_EXPECT_EQ(errno, EINVAL, "expected EINVAL with 0 parameters\n"); ret = sysctlbyname(g_sysctl_name, (void*) tmp_buf, &out_size, NULL, 0); T_EXPECT_EQ(ret, -1, "expected failure with no new parameters\n"); T_EXPECT_EQ(errno, EINVAL, "expected EINVAL with 0 new parameters\n"); out_size = tmp_size; ret = sysctlbyname(g_sysctl_name, NULL, 0, (void*) tmp_buf, out_size); T_EXPECT_EQ(ret, -1, "expected failure with no old parameters\n"); T_EXPECT_EQ(errno, EINVAL, "expected EINVAL with 0 old parameters\n"); task_name = MACH_PORT_NULL; ret = sysctlbyname(g_sysctl_name, (void*) tmp_buf, &out_size, &task_name, sizeof(task_name)); T_EXPECT_EQ(ret, -1, "expected failure with task_name == MACH_PORT_NULL in new parameters\n"); T_EXPECT_EQ(errno, ESRCH, "expected ESRCH with invalid task port name\n"); /* we should get the number of entries we should allocate for */ out_size = 0; output_size = 0; task_name = mach_task_self(); ret = sysctlbyname(g_sysctl_name, NULL, &out_size, &task_name, sizeof(task_name)); T_QUIET; T_EXPECT_EQ(ret, 0, "failed getting the number of entries\n"); T_EXPECT_EQ(out_size, 2 * sizeof(vm_object_query_data_t) + sizeof(int64_t), "expeccted one entry\n"); /* calculcate and allocate the proper sized output buffer */ output_size = out_size; out_buffer = (vmobject_list_output_t)calloc(output_size, 1); T_QUIET; T_EXPECT_NE(out_buffer, NULL, "failed to allocate the output buffer for sysctlbyname\n"); /* get the truncated list for the current process */ memset(out_buffer, 0, output_size); out_size = 1 * sizeof(vm_object_query_data_t) + sizeof(int64_t); ret = sysctlbyname(g_sysctl_name, out_buffer, &out_size, &task_name, sizeof(task_name)); T_QUIET; T_EXPECT_EQ(ret, 0, "sysctlbyname failed\n"); T_EXPECT_EQ(out_size, 1 * sizeof(vm_object_query_data_t) + sizeof(int64_t), "sysctl return size is incorrect\n"); T_EXPECT_EQ(out_buffer->entries, 1ULL, "should have 1 vm object\n"); T_EXPECT_NE(out_buffer->data[0].object_id, 0ULL, "vm_object_id should not be 0\n"); /* get the list for the current process */ out_size = output_size; memset(out_buffer, 0, output_size); ret = sysctlbyname(g_sysctl_name, out_buffer, &out_size, &task_name, sizeof(task_name)); T_QUIET; T_EXPECT_EQ(ret, 0, "sysctlbyname failed\n"); T_EXPECT_EQ(out_size, 2 * sizeof(vm_object_query_data_t) + sizeof(int64_t), "sysctl return size is incorrect\n"); T_EXPECT_EQ(out_buffer->entries, 2ULL, "should have 2 vm objects\n"); T_EXPECT_NE(out_buffer->data[0].object_id, 0ULL, "vm_object_id should not be 0\n"); addr = tmp_buf; addr_size = tmp_size; nestingDepth = UINT_MAX; count = VM_REGION_SUBMAP_INFO_V2_COUNT_64; kr = mach_vm_region_recurse(__self, &addr, &addr_size, &nestingDepth, (vm_region_info_t)®ionInfo, &count); T_QUIET; T_EXPECT_EQ(kr, KERN_SUCCESS, "mach_vm_region_recurse(%zu) error 0x%x (%s)\n", tmp_size, kr, mach_error_string(kr)); T_EXPECT_EQ(regionInfo.object_id_full, out_buffer->data[0].object_id, "object_id_full does not match out_buffer->object[0]\n"); addr = tmp_buf2; addr_size = tmp_size; nestingDepth = UINT_MAX; count = VM_REGION_SUBMAP_INFO_V2_COUNT_64; kr = mach_vm_region_recurse(__self, &addr, &addr_size, &nestingDepth, (vm_region_info_t)®ionInfo, &count); T_QUIET; T_EXPECT_EQ(kr, KERN_SUCCESS, "mach_vm_region_recurse(%zu) error 0x%x (%s)\n", tmp_size, kr, mach_error_string(kr)); T_EXPECT_EQ(regionInfo.object_id_full, out_buffer->data[1].object_id, "object_id_full does not match out_buffer->object[1]\n"); kr = vm_deallocate(__self, tmp_buf, tmp_size); T_QUIET; T_EXPECT_EQ(kr, KERN_SUCCESS, "vm_deallocate(%zu) error 0x%x (%s)\n", tmp_size, kr, mach_error_string(kr)); kr = vm_deallocate(__self, tmp_buf2, tmp_size); T_QUIET; T_EXPECT_EQ(kr, KERN_SUCCESS, "vm_deallocate(%zu) error 0x%x (%s)\n", tmp_size, kr, mach_error_string(kr)); free(out_buffer); out_buffer = NULL; } T_DECL(test_get_vmobject_list, "Get owned vm_objects for process") { main_test(); } |