1 /*
2 * Copyright (C) 2016 The Android Open Source Project
3 *
4 * Licensed under the Apache License, Version 2.0 (the "License");
5 * you may not use this file except in compliance with the License.
6 * You may obtain a copy of the License at
7 *
8 * http://www.apache.org/licenses/LICENSE-2.0
9 *
10 * Unless required by applicable law or agreed to in writing, software
11 * distributed under the License is distributed on an "AS IS" BASIS,
12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13 * See the License for the specific language governing permissions and
14 * limitations under the License.
15 */
16
17 #include <optional>
18 #include <sstream>
19
20 #include <android/hardware/boot/1.2/IBootControl.h>
21 #include <sysexits.h>
22
23 using android::sp;
24
25 using android::hardware::hidl_string;
26 using android::hardware::Return;
27
28 using android::hardware::boot::V1_0::BoolResult;
29 using android::hardware::boot::V1_0::CommandResult;
30 using android::hardware::boot::V1_0::Slot;
31 using android::hardware::boot::V1_1::IBootControl;
32 using android::hardware::boot::V1_1::MergeStatus;
33
34 namespace V1_0 = android::hardware::boot::V1_0;
35 namespace V1_1 = android::hardware::boot::V1_1;
36 namespace V1_2 = android::hardware::boot::V1_2;
37
38 enum BootCtlVersion { BOOTCTL_V1_0, BOOTCTL_V1_1, BOOTCTL_V1_2 };
39
usage(FILE * where,BootCtlVersion bootVersion,int,char * argv[])40 static void usage(FILE* where, BootCtlVersion bootVersion, int /* argc */, char* argv[]) {
41 fprintf(where,
42 "%s - command-line wrapper for the boot HAL.\n"
43 "\n"
44 "Usage:\n"
45 " %s COMMAND\n"
46 "\n"
47 "Commands:\n"
48 " hal-info - Show info about boot_control HAL used.\n"
49 " get-number-slots - Prints number of slots.\n"
50 " get-current-slot - Prints currently running SLOT.\n"
51 " mark-boot-successful - Mark current slot as GOOD.\n"
52 " get-active-boot-slot - Prints the SLOT to load on next boot.\n"
53 " set-active-boot-slot SLOT - On next boot, load and execute SLOT.\n"
54 " set-slot-as-unbootable SLOT - Mark SLOT as invalid.\n"
55 " is-slot-bootable SLOT - Returns 0 only if SLOT is bootable.\n"
56 " is-slot-marked-successful SLOT - Returns 0 only if SLOT is marked GOOD.\n"
57 " get-suffix SLOT - Prints suffix for SLOT.\n",
58 argv[0], argv[0]);
59 if (bootVersion >= BOOTCTL_V1_1) {
60 fprintf(where,
61 " set-snapshot-merge-status STAT - Sets whether a snapshot-merge of any dynamic\n"
62 " partition is in progress. Valid STAT values\n"
63 " are: none, unknown, snapshotted, merging,\n"
64 " or cancelled.\n"
65 " get-snapshot-merge-status - Prints the current snapshot-merge status.\n");
66 }
67 fprintf(where,
68 "\n"
69 "SLOT parameter is the zero-based slot-number.\n");
70 }
71
do_hal_info(const sp<V1_0::IBootControl> module)72 static int do_hal_info(const sp<V1_0::IBootControl> module) {
73 module->interfaceDescriptor([&](const auto& descriptor) {
74 fprintf(stdout, "HAL Version: %s\n", descriptor.c_str());
75 });
76 return EX_OK;
77 }
78
do_get_number_slots(sp<V1_0::IBootControl> module)79 static int do_get_number_slots(sp<V1_0::IBootControl> module) {
80 uint32_t numSlots = module->getNumberSlots();
81 fprintf(stdout, "%u\n", numSlots);
82 return EX_OK;
83 }
84
do_get_current_slot(sp<V1_0::IBootControl> module)85 static int do_get_current_slot(sp<V1_0::IBootControl> module) {
86 Slot curSlot = module->getCurrentSlot();
87 fprintf(stdout, "%u\n", curSlot);
88 return EX_OK;
89 }
90
generate_callback(CommandResult * crp)91 static std::function<void(CommandResult)> generate_callback(CommandResult* crp) {
92 return [=](CommandResult cr) { *crp = cr; };
93 }
94
handle_return(const Return<void> & ret,CommandResult cr,const char * errStr)95 static int handle_return(const Return<void>& ret, CommandResult cr, const char* errStr) {
96 if (!ret.isOk()) {
97 fprintf(stderr, errStr, ret.description().c_str());
98 return EX_SOFTWARE;
99 } else if (!cr.success) {
100 fprintf(stderr, errStr, cr.errMsg.c_str());
101 return EX_SOFTWARE;
102 }
103 return EX_OK;
104 }
105
do_mark_boot_successful(sp<V1_0::IBootControl> module)106 static int do_mark_boot_successful(sp<V1_0::IBootControl> module) {
107 CommandResult cr;
108 Return<void> ret = module->markBootSuccessful(generate_callback(&cr));
109 return handle_return(ret, cr, "Error marking as having booted successfully: %s\n");
110 }
111
do_get_active_boot_slot(sp<V1_2::IBootControl> module)112 static int do_get_active_boot_slot(sp<V1_2::IBootControl> module) {
113 uint32_t slot = module->getActiveBootSlot();
114 fprintf(stdout, "%u\n", slot);
115 return EX_OK;
116 }
117
do_set_active_boot_slot(sp<V1_0::IBootControl> module,Slot slot_number)118 static int do_set_active_boot_slot(sp<V1_0::IBootControl> module, Slot slot_number) {
119 CommandResult cr;
120 Return<void> ret = module->setActiveBootSlot(slot_number, generate_callback(&cr));
121 return handle_return(ret, cr, "Error setting active boot slot: %s\n");
122 }
123
do_set_slot_as_unbootable(sp<V1_0::IBootControl> module,Slot slot_number)124 static int do_set_slot_as_unbootable(sp<V1_0::IBootControl> module, Slot slot_number) {
125 CommandResult cr;
126 Return<void> ret = module->setSlotAsUnbootable(slot_number, generate_callback(&cr));
127 return handle_return(ret, cr, "Error setting slot as unbootable: %s\n");
128 }
129
handle_return(const Return<BoolResult> & ret,const char * errStr)130 static int handle_return(const Return<BoolResult>& ret, const char* errStr) {
131 if (!ret.isOk()) {
132 fprintf(stderr, errStr, ret.description().c_str());
133 return EX_SOFTWARE;
134 } else if (ret == BoolResult::INVALID_SLOT) {
135 fprintf(stderr, errStr, "Invalid slot");
136 return EX_SOFTWARE;
137 } else if (ret == BoolResult::TRUE) {
138 return EX_OK;
139 }
140 return EX_SOFTWARE;
141 }
142
do_is_slot_bootable(sp<V1_0::IBootControl> module,Slot slot_number)143 static int do_is_slot_bootable(sp<V1_0::IBootControl> module, Slot slot_number) {
144 Return<BoolResult> ret = module->isSlotBootable(slot_number);
145 return handle_return(ret, "Error calling isSlotBootable(): %s\n");
146 }
147
do_is_slot_marked_successful(sp<V1_0::IBootControl> module,Slot slot_number)148 static int do_is_slot_marked_successful(sp<V1_0::IBootControl> module, Slot slot_number) {
149 Return<BoolResult> ret = module->isSlotMarkedSuccessful(slot_number);
150 return handle_return(ret, "Error calling isSlotMarkedSuccessful(): %s\n");
151 }
152
stringToMergeStatus(const std::string & status)153 std::optional<MergeStatus> stringToMergeStatus(const std::string& status) {
154 if (status == "cancelled") return MergeStatus::CANCELLED;
155 if (status == "merging") return MergeStatus::MERGING;
156 if (status == "none") return MergeStatus::NONE;
157 if (status == "snapshotted") return MergeStatus::SNAPSHOTTED;
158 if (status == "unknown") return MergeStatus::UNKNOWN;
159 return {};
160 }
161
do_set_snapshot_merge_status(sp<V1_1::IBootControl> module,BootCtlVersion bootVersion,int argc,char * argv[])162 static int do_set_snapshot_merge_status(sp<V1_1::IBootControl> module, BootCtlVersion bootVersion,
163 int argc, char* argv[]) {
164 if (argc != 3) {
165 usage(stderr, bootVersion, argc, argv);
166 exit(EX_USAGE);
167 return -1;
168 }
169
170 auto status = stringToMergeStatus(argv[2]);
171 if (!status.has_value()) {
172 usage(stderr, bootVersion, argc, argv);
173 exit(EX_USAGE);
174 return -1;
175 }
176
177 if (!module->setSnapshotMergeStatus(status.value())) {
178 return EX_SOFTWARE;
179 }
180 return EX_OK;
181 }
182
operator <<(std::ostream & os,MergeStatus state)183 std::ostream& operator<<(std::ostream& os, MergeStatus state) {
184 switch (state) {
185 case MergeStatus::CANCELLED:
186 return os << "cancelled";
187 case MergeStatus::MERGING:
188 return os << "merging";
189 case MergeStatus::NONE:
190 return os << "none";
191 case MergeStatus::SNAPSHOTTED:
192 return os << "snapshotted";
193 case MergeStatus::UNKNOWN:
194 return os << "unknown";
195 default:
196 return os;
197 }
198 }
199
do_get_snapshot_merge_status(sp<V1_1::IBootControl> module)200 static int do_get_snapshot_merge_status(sp<V1_1::IBootControl> module) {
201 MergeStatus ret = module->getSnapshotMergeStatus();
202 std::stringstream ss;
203 ss << ret;
204 fprintf(stdout, "%s\n", ss.str().c_str());
205 return EX_OK;
206 }
207
do_get_suffix(sp<V1_0::IBootControl> module,Slot slot_number)208 static int do_get_suffix(sp<V1_0::IBootControl> module, Slot slot_number) {
209 std::function<void(hidl_string)> cb = [](hidl_string suffix) {
210 fprintf(stdout, "%s\n", suffix.c_str());
211 };
212 Return<void> ret = module->getSuffix(slot_number, cb);
213 if (!ret.isOk()) {
214 fprintf(stderr, "Error calling getSuffix(): %s\n", ret.description().c_str());
215 return EX_SOFTWARE;
216 }
217 return EX_OK;
218 }
219
parse_slot(BootCtlVersion bootVersion,int pos,int argc,char * argv[])220 static uint32_t parse_slot(BootCtlVersion bootVersion, int pos, int argc, char* argv[]) {
221 if (pos > argc - 1) {
222 usage(stderr, bootVersion, argc, argv);
223 exit(EX_USAGE);
224 return -1;
225 }
226 errno = 0;
227 uint64_t ret = strtoul(argv[pos], NULL, 10);
228 if (errno != 0 || ret > UINT_MAX) {
229 usage(stderr, bootVersion, argc, argv);
230 exit(EX_USAGE);
231 return -1;
232 }
233 return (uint32_t)ret;
234 }
235
main(int argc,char * argv[])236 int main(int argc, char* argv[]) {
237 sp<V1_0::IBootControl> v1_0_module;
238 sp<V1_1::IBootControl> v1_1_module;
239 sp<V1_2::IBootControl> v1_2_module;
240 BootCtlVersion bootVersion = BOOTCTL_V1_0;
241
242 v1_0_module = V1_0::IBootControl::getService();
243 if (v1_0_module == nullptr) {
244 fprintf(stderr, "Error getting bootctrl v1.0 module.\n");
245 return EX_SOFTWARE;
246 }
247 v1_1_module = V1_1::IBootControl::castFrom(v1_0_module);
248 if (v1_1_module != nullptr) {
249 bootVersion = BOOTCTL_V1_1;
250 }
251
252 v1_2_module = V1_2::IBootControl::castFrom(v1_0_module);
253 if (v1_2_module != nullptr) {
254 bootVersion = BOOTCTL_V1_2;
255 }
256
257 if (argc < 2) {
258 usage(stderr, bootVersion, argc, argv);
259 return EX_USAGE;
260 }
261
262 // Functions present from version 1.0
263 if (strcmp(argv[1], "hal-info") == 0) {
264 return do_hal_info(v1_0_module);
265 } else if (strcmp(argv[1], "get-number-slots") == 0) {
266 return do_get_number_slots(v1_0_module);
267 } else if (strcmp(argv[1], "get-current-slot") == 0) {
268 return do_get_current_slot(v1_0_module);
269 } else if (strcmp(argv[1], "mark-boot-successful") == 0) {
270 return do_mark_boot_successful(v1_0_module);
271 } else if (strcmp(argv[1], "set-active-boot-slot") == 0) {
272 return do_set_active_boot_slot(v1_0_module, parse_slot(bootVersion, 2, argc, argv));
273 } else if (strcmp(argv[1], "set-slot-as-unbootable") == 0) {
274 return do_set_slot_as_unbootable(v1_0_module, parse_slot(bootVersion, 2, argc, argv));
275 } else if (strcmp(argv[1], "is-slot-bootable") == 0) {
276 return do_is_slot_bootable(v1_0_module, parse_slot(bootVersion, 2, argc, argv));
277 } else if (strcmp(argv[1], "is-slot-marked-successful") == 0) {
278 return do_is_slot_marked_successful(v1_0_module, parse_slot(bootVersion, 2, argc, argv));
279 } else if (strcmp(argv[1], "get-suffix") == 0) {
280 return do_get_suffix(v1_0_module, parse_slot(bootVersion, 2, argc, argv));
281 }
282
283 // Functions present from version 1.1
284 if (strcmp(argv[1], "set-snapshot-merge-status") == 0 ||
285 strcmp(argv[1], "get-snapshot-merge-status") == 0) {
286 if (v1_1_module == nullptr) {
287 fprintf(stderr, "Error getting bootctrl v1.1 module.\n");
288 return EX_SOFTWARE;
289 }
290 if (strcmp(argv[1], "set-snapshot-merge-status") == 0) {
291 return do_set_snapshot_merge_status(v1_1_module, bootVersion, argc, argv);
292 } else if (strcmp(argv[1], "get-snapshot-merge-status") == 0) {
293 return do_get_snapshot_merge_status(v1_1_module);
294 }
295 }
296
297 if (strcmp(argv[1], "get-active-boot-slot") == 0) {
298 if (v1_2_module == nullptr) {
299 fprintf(stderr, "Error getting bootctrl v1.2 module.\n");
300 return EX_SOFTWARE;
301 }
302
303 return do_get_active_boot_slot(v1_2_module);
304 }
305
306 // Parameter not matched, print usage
307 usage(stderr, bootVersion, argc, argv);
308 return EX_USAGE;
309 }
310