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1 //
2 // Copyright (C) 2011 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 "update_engine/payload_generator/payload_signer.h"
18 
19 #include <endian.h>
20 
21 #include <memory>
22 #include <utility>
23 
24 #include <base/logging.h>
25 #include <base/strings/string_number_conversions.h>
26 #include <base/strings/string_split.h>
27 #include <base/strings/string_util.h>
28 #include <brillo/data_encoding.h>
29 #include <openssl/err.h>
30 #include <openssl/pem.h>
31 
32 #include "update_engine/common/constants.h"
33 #include "update_engine/common/hash_calculator.h"
34 #include "update_engine/common/subprocess.h"
35 #include "update_engine/common/utils.h"
36 #include "update_engine/payload_consumer/delta_performer.h"
37 #include "update_engine/payload_consumer/payload_constants.h"
38 #include "update_engine/payload_consumer/payload_metadata.h"
39 #include "update_engine/payload_consumer/payload_verifier.h"
40 #include "update_engine/payload_generator/delta_diff_generator.h"
41 #include "update_engine/payload_generator/payload_file.h"
42 #include "update_engine/update_metadata.pb.h"
43 
44 using std::string;
45 using std::vector;
46 
47 namespace chromeos_update_engine {
48 
49 namespace {
50 // Given raw |signatures|, packs them into a protobuf and serializes it into a
51 // string. Returns true on success, false otherwise.
ConvertSignaturesToProtobuf(const vector<brillo::Blob> & signatures,const vector<size_t> & padded_signature_sizes,string * out_serialized_signature)52 bool ConvertSignaturesToProtobuf(const vector<brillo::Blob>& signatures,
53                                  const vector<size_t>& padded_signature_sizes,
54                                  string* out_serialized_signature) {
55   TEST_AND_RETURN_FALSE(signatures.size() == padded_signature_sizes.size());
56   // Pack it into a protobuf
57   Signatures out_message;
58   for (size_t i = 0; i < signatures.size(); i++) {
59     const auto& signature = signatures[i];
60     const auto& padded_signature_size = padded_signature_sizes[i];
61     TEST_AND_RETURN_FALSE(padded_signature_size >= signature.size());
62     Signatures::Signature* sig_message = out_message.add_signatures();
63     // Skip assigning the same version number because we don't need to be
64     // compatible with old major version 1 client anymore.
65 
66     // TODO(Xunchang) don't need to set the unpadded_signature_size field for
67     // RSA key signed signatures.
68     sig_message->set_unpadded_signature_size(signature.size());
69     brillo::Blob padded_signature = signature;
70     padded_signature.insert(
71         padded_signature.end(), padded_signature_size - signature.size(), 0);
72     sig_message->set_data(padded_signature.data(), padded_signature.size());
73   }
74 
75   // Serialize protobuf
76   TEST_AND_RETURN_FALSE(
77       out_message.SerializeToString(out_serialized_signature));
78   LOG(INFO) << "Signature blob size: " << out_serialized_signature->size();
79   return true;
80 }
81 
82 // Given an unsigned payload under |payload_path| and the |payload_signature|
83 // and |metadata_signature| generates an updated payload that includes the
84 // signatures. It populates |out_metadata_size| with the size of the final
85 // manifest after adding the fake signature operation, and
86 // |out_signatures_offset| with the expected offset for the new blob, and
87 // |out_metadata_signature_size| which will be size of |metadata_signature|
88 // if the payload major version supports metadata signature, 0 otherwise.
89 // Returns true on success, false otherwise.
AddSignatureBlobToPayload(const string & payload_path,const string & payload_signature,const string & metadata_signature,brillo::Blob * out_payload,uint64_t * out_metadata_size,uint32_t * out_metadata_signature_size,uint64_t * out_signatures_offset)90 bool AddSignatureBlobToPayload(const string& payload_path,
91                                const string& payload_signature,
92                                const string& metadata_signature,
93                                brillo::Blob* out_payload,
94                                uint64_t* out_metadata_size,
95                                uint32_t* out_metadata_signature_size,
96                                uint64_t* out_signatures_offset) {
97   uint64_t manifest_offset = 20;
98   const int kProtobufSizeOffset = 12;
99 
100   brillo::Blob payload;
101   TEST_AND_RETURN_FALSE(utils::ReadFile(payload_path, &payload));
102   PayloadMetadata payload_metadata;
103   TEST_AND_RETURN_FALSE(payload_metadata.ParsePayloadHeader(payload));
104   uint64_t metadata_size = payload_metadata.GetMetadataSize();
105   uint32_t metadata_signature_size =
106       payload_metadata.GetMetadataSignatureSize();
107   // Write metadata signature size in header.
108   uint32_t metadata_signature_size_be = htobe32(metadata_signature.size());
109   memcpy(payload.data() + manifest_offset,
110          &metadata_signature_size_be,
111          sizeof(metadata_signature_size_be));
112   manifest_offset += sizeof(metadata_signature_size_be);
113   // Replace metadata signature.
114   payload.erase(payload.begin() + metadata_size,
115                 payload.begin() + metadata_size + metadata_signature_size);
116   payload.insert(payload.begin() + metadata_size,
117                  metadata_signature.begin(),
118                  metadata_signature.end());
119   metadata_signature_size = metadata_signature.size();
120   LOG(INFO) << "Metadata signature size: " << metadata_signature_size;
121 
122   DeltaArchiveManifest manifest;
123   TEST_AND_RETURN_FALSE(payload_metadata.GetManifest(payload, &manifest));
124 
125   // Is there already a signature op in place?
126   if (manifest.has_signatures_size()) {
127     // The signature op is tied to the size of the signature blob, but not it's
128     // contents. We don't allow the manifest to change if there is already an op
129     // present, because that might invalidate previously generated
130     // hashes/signatures.
131     if (manifest.signatures_size() != payload_signature.size()) {
132       LOG(ERROR) << "Attempt to insert different signature sized blob. "
133                  << "(current:" << manifest.signatures_size()
134                  << "new:" << payload_signature.size() << ")";
135       return false;
136     }
137 
138     LOG(INFO) << "Matching signature sizes already present.";
139   } else {
140     // Updates the manifest to include the signature operation.
141     PayloadSigner::AddSignatureToManifest(
142         payload.size() - metadata_size - metadata_signature_size,
143         payload_signature.size(),
144         &manifest);
145 
146     // Updates the payload to include the new manifest.
147     string serialized_manifest;
148     TEST_AND_RETURN_FALSE(manifest.AppendToString(&serialized_manifest));
149     LOG(INFO) << "Updated protobuf size: " << serialized_manifest.size();
150     payload.erase(payload.begin() + manifest_offset,
151                   payload.begin() + metadata_size);
152     payload.insert(payload.begin() + manifest_offset,
153                    serialized_manifest.begin(),
154                    serialized_manifest.end());
155 
156     // Updates the protobuf size.
157     uint64_t size_be = htobe64(serialized_manifest.size());
158     memcpy(&payload[kProtobufSizeOffset], &size_be, sizeof(size_be));
159     metadata_size = serialized_manifest.size() + manifest_offset;
160 
161     LOG(INFO) << "Updated payload size: " << payload.size();
162     LOG(INFO) << "Updated metadata size: " << metadata_size;
163   }
164   uint64_t signatures_offset =
165       metadata_size + metadata_signature_size + manifest.signatures_offset();
166   LOG(INFO) << "Signature Blob Offset: " << signatures_offset;
167   payload.resize(signatures_offset);
168   payload.insert(payload.begin() + signatures_offset,
169                  payload_signature.begin(),
170                  payload_signature.end());
171 
172   *out_payload = std::move(payload);
173   *out_metadata_size = metadata_size;
174   *out_metadata_signature_size = metadata_signature_size;
175   *out_signatures_offset = signatures_offset;
176   return true;
177 }
178 
179 // Given a |payload| with correct signature op and metadata signature size in
180 // header and |metadata_size|, |metadata_signature_size|, |signatures_offset|,
181 // calculate hash for payload and metadata, save it to |out_hash_data| and
182 // |out_metadata_hash|.
CalculateHashFromPayload(const brillo::Blob & payload,const uint64_t metadata_size,const uint32_t metadata_signature_size,const uint64_t signatures_offset,brillo::Blob * out_hash_data,brillo::Blob * out_metadata_hash)183 bool CalculateHashFromPayload(const brillo::Blob& payload,
184                               const uint64_t metadata_size,
185                               const uint32_t metadata_signature_size,
186                               const uint64_t signatures_offset,
187                               brillo::Blob* out_hash_data,
188                               brillo::Blob* out_metadata_hash) {
189   if (out_metadata_hash) {
190     // Calculates the hash on the manifest.
191     TEST_AND_RETURN_FALSE(HashCalculator::RawHashOfBytes(
192         payload.data(), metadata_size, out_metadata_hash));
193   }
194   if (out_hash_data) {
195     // Calculates the hash on the updated payload. Note that we skip metadata
196     // signature and payload signature.
197     HashCalculator calc;
198     TEST_AND_RETURN_FALSE(calc.Update(payload.data(), metadata_size));
199     TEST_AND_RETURN_FALSE(signatures_offset >=
200                           metadata_size + metadata_signature_size);
201     TEST_AND_RETURN_FALSE(calc.Update(
202         payload.data() + metadata_size + metadata_signature_size,
203         signatures_offset - metadata_size - metadata_signature_size));
204     TEST_AND_RETURN_FALSE(calc.Finalize());
205     *out_hash_data = calc.raw_hash();
206   }
207   return true;
208 }
209 
CreatePrivateKeyFromPath(const string & private_key_path)210 std::unique_ptr<EVP_PKEY, decltype(&EVP_PKEY_free)> CreatePrivateKeyFromPath(
211     const string& private_key_path) {
212   FILE* fprikey = fopen(private_key_path.c_str(), "rb");
213   if (!fprikey) {
214     PLOG(ERROR) << "Failed to read " << private_key_path;
215     return {nullptr, nullptr};
216   }
217 
218   auto private_key = std::unique_ptr<EVP_PKEY, decltype(&EVP_PKEY_free)>(
219       PEM_read_PrivateKey(fprikey, nullptr, nullptr, nullptr), EVP_PKEY_free);
220   fclose(fprikey);
221   return private_key;
222 }
223 
224 }  // namespace
225 
GetMaximumSignatureSize(const string & private_key_path,size_t * signature_size)226 bool PayloadSigner::GetMaximumSignatureSize(const string& private_key_path,
227                                             size_t* signature_size) {
228   *signature_size = 0;
229   auto private_key = CreatePrivateKeyFromPath(private_key_path);
230   if (!private_key) {
231     LOG(ERROR) << "Failed to create private key from " << private_key_path;
232     return false;
233   }
234 
235   *signature_size = EVP_PKEY_size(private_key.get());
236   return true;
237 }
238 
AddSignatureToManifest(uint64_t signature_blob_offset,uint64_t signature_blob_length,DeltaArchiveManifest * manifest)239 void PayloadSigner::AddSignatureToManifest(uint64_t signature_blob_offset,
240                                            uint64_t signature_blob_length,
241                                            DeltaArchiveManifest* manifest) {
242   LOG(INFO) << "Making room for signature in file";
243   manifest->set_signatures_offset(signature_blob_offset);
244   manifest->set_signatures_size(signature_blob_length);
245 }
246 
VerifySignedPayload(const string & payload_path,const string & public_key_path)247 bool PayloadSigner::VerifySignedPayload(const string& payload_path,
248                                         const string& public_key_path) {
249   brillo::Blob payload;
250   TEST_AND_RETURN_FALSE(utils::ReadFile(payload_path, &payload));
251   PayloadMetadata payload_metadata;
252   TEST_AND_RETURN_FALSE(payload_metadata.ParsePayloadHeader(payload));
253   DeltaArchiveManifest manifest;
254   TEST_AND_RETURN_FALSE(payload_metadata.GetManifest(payload, &manifest));
255   TEST_AND_RETURN_FALSE(manifest.has_signatures_offset() &&
256                         manifest.has_signatures_size());
257   uint64_t metadata_size = payload_metadata.GetMetadataSize();
258   uint32_t metadata_signature_size =
259       payload_metadata.GetMetadataSignatureSize();
260   uint64_t signatures_offset =
261       metadata_size + metadata_signature_size + manifest.signatures_offset();
262   CHECK_EQ(payload.size(), signatures_offset + manifest.signatures_size());
263   brillo::Blob payload_hash, metadata_hash;
264   TEST_AND_RETURN_FALSE(CalculateHashFromPayload(payload,
265                                                  metadata_size,
266                                                  metadata_signature_size,
267                                                  signatures_offset,
268                                                  &payload_hash,
269                                                  &metadata_hash));
270   string signature(payload.begin() + signatures_offset, payload.end());
271   string public_key;
272   TEST_AND_RETURN_FALSE(utils::ReadFile(public_key_path, &public_key));
273   TEST_AND_RETURN_FALSE(payload_hash.size() == kSHA256Size);
274 
275   auto payload_verifier = PayloadVerifier::CreateInstance(public_key);
276   TEST_AND_RETURN_FALSE(payload_verifier != nullptr);
277 
278   TEST_AND_RETURN_FALSE(
279       payload_verifier->VerifySignature(signature, payload_hash));
280   if (metadata_signature_size) {
281     signature.assign(payload.begin() + metadata_size,
282                      payload.begin() + metadata_size + metadata_signature_size);
283     TEST_AND_RETURN_FALSE(metadata_hash.size() == kSHA256Size);
284     TEST_AND_RETURN_FALSE(
285         payload_verifier->VerifySignature(signature, metadata_hash));
286   }
287   return true;
288 }
289 
SignHash(const brillo::Blob & hash,const string & private_key_path,brillo::Blob * out_signature)290 bool PayloadSigner::SignHash(const brillo::Blob& hash,
291                              const string& private_key_path,
292                              brillo::Blob* out_signature) {
293   LOG(INFO) << "Signing hash with private key: " << private_key_path;
294   // We expect unpadded SHA256 hash coming in
295   TEST_AND_RETURN_FALSE(hash.size() == kSHA256Size);
296   // The code below executes the equivalent of:
297   //
298   // openssl rsautl -raw -sign -inkey |private_key_path|
299   //   -in |padded_hash| -out |out_signature|
300 
301   auto private_key = CreatePrivateKeyFromPath(private_key_path);
302   if (!private_key) {
303     LOG(ERROR) << "Failed to create private key from " << private_key_path;
304     return false;
305   }
306 
307   int key_type = EVP_PKEY_id(private_key.get());
308   brillo::Blob signature;
309   if (key_type == EVP_PKEY_RSA) {
310     RSA* rsa = EVP_PKEY_get0_RSA(private_key.get());
311     TEST_AND_RETURN_FALSE(rsa != nullptr);
312 
313     brillo::Blob padded_hash = hash;
314     PayloadVerifier::PadRSASHA256Hash(&padded_hash, RSA_size(rsa));
315 
316     signature.resize(RSA_size(rsa));
317     ssize_t signature_size = RSA_private_encrypt(padded_hash.size(),
318                                                  padded_hash.data(),
319                                                  signature.data(),
320                                                  rsa,
321                                                  RSA_NO_PADDING);
322     if (signature_size < 0) {
323       LOG(ERROR) << "Signing hash failed: "
324                  << ERR_error_string(ERR_get_error(), nullptr);
325       return false;
326     }
327     TEST_AND_RETURN_FALSE(static_cast<size_t>(signature_size) ==
328                           signature.size());
329   } else if (key_type == EVP_PKEY_EC) {
330     EC_KEY* ec_key = EVP_PKEY_get0_EC_KEY(private_key.get());
331     TEST_AND_RETURN_FALSE(ec_key != nullptr);
332 
333     signature.resize(ECDSA_size(ec_key));
334     unsigned int signature_size;
335     if (ECDSA_sign(0,
336                    hash.data(),
337                    hash.size(),
338                    signature.data(),
339                    &signature_size,
340                    ec_key) != 1) {
341       LOG(ERROR) << "Signing hash failed: "
342                  << ERR_error_string(ERR_get_error(), nullptr);
343       return false;
344     }
345 
346     // NIST P-256
347     LOG(ERROR) << "signature max size " << signature.size() << " size "
348                << signature_size;
349     TEST_AND_RETURN_FALSE(signature.size() >= signature_size);
350     signature.resize(signature_size);
351   } else {
352     LOG(ERROR) << "key_type " << key_type << " isn't supported for signing";
353     return false;
354   }
355   out_signature->swap(signature);
356   return true;
357 }
358 
SignHashWithKeys(const brillo::Blob & hash_data,const vector<string> & private_key_paths,string * out_serialized_signature)359 bool PayloadSigner::SignHashWithKeys(const brillo::Blob& hash_data,
360                                      const vector<string>& private_key_paths,
361                                      string* out_serialized_signature) {
362   vector<brillo::Blob> signatures;
363   vector<size_t> padded_signature_sizes;
364   for (const string& path : private_key_paths) {
365     brillo::Blob signature;
366     TEST_AND_RETURN_FALSE(SignHash(hash_data, path, &signature));
367     signatures.push_back(signature);
368 
369     size_t padded_signature_size;
370     TEST_AND_RETURN_FALSE(
371         GetMaximumSignatureSize(path, &padded_signature_size));
372     padded_signature_sizes.push_back(padded_signature_size);
373   }
374   TEST_AND_RETURN_FALSE(ConvertSignaturesToProtobuf(
375       signatures, padded_signature_sizes, out_serialized_signature));
376   return true;
377 }
378 
SignPayload(const string & unsigned_payload_path,const vector<string> & private_key_paths,const uint64_t metadata_size,const uint32_t metadata_signature_size,const uint64_t signatures_offset,string * out_serialized_signature)379 bool PayloadSigner::SignPayload(const string& unsigned_payload_path,
380                                 const vector<string>& private_key_paths,
381                                 const uint64_t metadata_size,
382                                 const uint32_t metadata_signature_size,
383                                 const uint64_t signatures_offset,
384                                 string* out_serialized_signature) {
385   brillo::Blob payload;
386   TEST_AND_RETURN_FALSE(utils::ReadFile(unsigned_payload_path, &payload));
387   brillo::Blob hash_data;
388   TEST_AND_RETURN_FALSE(CalculateHashFromPayload(payload,
389                                                  metadata_size,
390                                                  metadata_signature_size,
391                                                  signatures_offset,
392                                                  &hash_data,
393                                                  nullptr));
394   TEST_AND_RETURN_FALSE(
395       SignHashWithKeys(hash_data, private_key_paths, out_serialized_signature));
396   return true;
397 }
398 
SignatureBlobLength(const vector<string> & private_key_paths,uint64_t * out_length)399 bool PayloadSigner::SignatureBlobLength(const vector<string>& private_key_paths,
400                                         uint64_t* out_length) {
401   DCHECK(out_length);
402   brillo::Blob hash_blob;
403   TEST_AND_RETURN_FALSE(HashCalculator::RawHashOfData({'x'}, &hash_blob));
404   string sig_blob;
405   TEST_AND_RETURN_FALSE(
406       SignHashWithKeys(hash_blob, private_key_paths, &sig_blob));
407   *out_length = sig_blob.size();
408   return true;
409 }
410 
HashPayloadForSigning(const string & payload_path,const vector<size_t> & signature_sizes,brillo::Blob * out_payload_hash_data,brillo::Blob * out_metadata_hash)411 bool PayloadSigner::HashPayloadForSigning(const string& payload_path,
412                                           const vector<size_t>& signature_sizes,
413                                           brillo::Blob* out_payload_hash_data,
414                                           brillo::Blob* out_metadata_hash) {
415   // Create a signature blob with signatures filled with 0.
416   // Will be used for both payload signature and metadata signature.
417   vector<brillo::Blob> signatures;
418   for (int signature_size : signature_sizes) {
419     signatures.emplace_back(signature_size, 0);
420   }
421   string signature;
422   TEST_AND_RETURN_FALSE(
423       ConvertSignaturesToProtobuf(signatures, signature_sizes, &signature));
424 
425   brillo::Blob payload;
426   uint64_t metadata_size, signatures_offset;
427   uint32_t metadata_signature_size;
428   // Prepare payload for hashing.
429   TEST_AND_RETURN_FALSE(AddSignatureBlobToPayload(payload_path,
430                                                   signature,
431                                                   signature,
432                                                   &payload,
433                                                   &metadata_size,
434                                                   &metadata_signature_size,
435                                                   &signatures_offset));
436   TEST_AND_RETURN_FALSE(CalculateHashFromPayload(payload,
437                                                  metadata_size,
438                                                  metadata_signature_size,
439                                                  signatures_offset,
440                                                  out_payload_hash_data,
441                                                  out_metadata_hash));
442   return true;
443 }
444 
AddSignatureToPayload(const string & payload_path,const vector<size_t> & padded_signature_sizes,const vector<brillo::Blob> & payload_signatures,const vector<brillo::Blob> & metadata_signatures,const string & signed_payload_path,uint64_t * out_metadata_size)445 bool PayloadSigner::AddSignatureToPayload(
446     const string& payload_path,
447     const vector<size_t>& padded_signature_sizes,
448     const vector<brillo::Blob>& payload_signatures,
449     const vector<brillo::Blob>& metadata_signatures,
450     const string& signed_payload_path,
451     uint64_t* out_metadata_size) {
452   // TODO(petkov): Reduce memory usage -- the payload is manipulated in memory.
453 
454   // Loads the payload and adds the signature op to it.
455   string payload_signature, metadata_signature;
456   TEST_AND_RETURN_FALSE(ConvertSignaturesToProtobuf(
457       payload_signatures, padded_signature_sizes, &payload_signature));
458   if (!metadata_signatures.empty()) {
459     TEST_AND_RETURN_FALSE(ConvertSignaturesToProtobuf(
460         metadata_signatures, padded_signature_sizes, &metadata_signature));
461   }
462   brillo::Blob payload;
463   uint64_t signatures_offset;
464   uint32_t metadata_signature_size;
465   TEST_AND_RETURN_FALSE(AddSignatureBlobToPayload(payload_path,
466                                                   payload_signature,
467                                                   metadata_signature,
468                                                   &payload,
469                                                   out_metadata_size,
470                                                   &metadata_signature_size,
471                                                   &signatures_offset));
472 
473   LOG(INFO) << "Signed payload size: " << payload.size();
474   TEST_AND_RETURN_FALSE(utils::WriteFile(
475       signed_payload_path.c_str(), payload.data(), payload.size()));
476   return true;
477 }
478 
GetMetadataSignature(const void * const metadata,size_t metadata_size,const string & private_key_path,string * out_signature)479 bool PayloadSigner::GetMetadataSignature(const void* const metadata,
480                                          size_t metadata_size,
481                                          const string& private_key_path,
482                                          string* out_signature) {
483   // Calculates the hash on the updated payload. Note that the payload includes
484   // the signature op but doesn't include the signature blob at the end.
485   brillo::Blob metadata_hash;
486   TEST_AND_RETURN_FALSE(
487       HashCalculator::RawHashOfBytes(metadata, metadata_size, &metadata_hash));
488 
489   brillo::Blob signature;
490   TEST_AND_RETURN_FALSE(SignHash(metadata_hash, private_key_path, &signature));
491 
492   *out_signature = brillo::data_encoding::Base64Encode(signature);
493   return true;
494 }
495 
496 }  // namespace chromeos_update_engine
497