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* build: fix build with Boost 1.85 and remove instances of viewkey logging ↵jeffro2562024-09-101-1/+1
| | | | | | | | | | | [RELEASE] 1. Use std::is_standard_layout and std::is_trivially_copyable instead of std::is_pod for KV byte-wise serialization, which fixes compile issue for Boost UUIDs 2. Removed reimplementation of std::hash for boost::uuids::uuid 3. Removed << operator overload for crypto::secret_key 4. Removed instances in code where private view key was dumped to the log in plaintext Release version of #9450, containing C++14 modified assertions
* serialization: fix infinite loops and clean up dispatchingjeffro2562024-02-081-5/+34
| | | | Resolves #8687
* multisig: fix critical vulnerabilities in signinganon2022-06-301-2/+2
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* Copyright: Update to 2022mj-xmr2022-03-041-1/+1
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* unit_tests: fix use after free in serialization testmoneromooo-monero2021-09-081-2/+4
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* Improve cryptonote (block and tx) binary read performanceLee Clagett2021-01-231-7/+5
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* Integrate CLSAGs into moneromoneromooo-monero2020-08-271-1/+21
| | | | They are allowed from v12, and MLSAGs are rejected from v13.
* Merge pull request #6690Alexander Blair2020-08-271-1/+1
|\ | | | | | | 7175dcb10 replace most boost serialization with existing monero serialization (moneromooo-monero)
| * replace most boost serialization with existing monero serializationmoneromooo-monero2020-08-171-1/+1
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | This reduces the attack surface for data that can come from malicious sources (exported output and key images, multisig transactions...) since the monero serialization is already exposed to the outside, and the boost lib we were using had a few known crashers. For interoperability, a new load-deprecated-formats wallet setting is added (off by default). This allows loading boost format data if there is no alternative. It will likely go at some point, along with the ability to load those. Notably, the peer lists file still uses the boost serialization code, as the data it stores is define in epee, while the new serialization code is in monero, and migrating it was fairly hairy. Since this file is local and not obtained from anyone else, the marginal risk is minimal, but it could be migrated later if needed. Some tests and tools also do, this will stay as is for now.
* | Revert "Use domain-separated ChaCha20 for in-memory key encryption"luigi11112020-08-171-40/+0
|/ | | | This reverts commit 921dd8dde5d381052d0aa2936304a3541a230c55.
* Use domain-separated ChaCha20 for in-memory key encryptionSarang Noether2020-08-091-0/+40
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* Update copyright year to 2020SomaticFanatic2020-05-061-1/+1
| | | | Update copyright year to 2020
* wallet: do not split integrated addresses in address book apimoneromooo-monero2020-01-261-1/+0
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* ringct: prevent use of full ringct signatures for more than one inputmoneromooo-monero2019-04-111-65/+14
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* Make difficulty 128 bit instead of 64 bitmoneromooo-monero2019-03-241-0/+23
| | | | | | Based on Boolberry work by: jahrsg <jahr@jahr.me> cr.zoidberg <crypto.zoidberg@gmail.com>
* Update 2019 copyrightbinaryFate2019-03-051-1/+1
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* ringct: remove unused senderPk from ecdhTuplemoneromooo-monero2019-01-221-2/+0
| | | | This was an early ringct field, which was never used in production
* add a bulletproof version, new bulletproof type, and rct configmoneromooo-monero2019-01-221-1/+2
| | | | This makes it easier to modify the bulletproof format
* simplewallet: print the number of show/all transfersmoneromooo-monero2018-11-041-1/+0
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* wallet2: only export necessary outputs and key imagesmoneromooo-monero2018-11-041-1/+13
| | | | | and disable annoying test that requires ridiculous amounts of skullduggery every time some format changes
* Merge pull request #4264luigi11112018-09-041-1/+1
|\ | | | | | | 0c8d8f6 unit_tests: remove std::move in return statement (moneromooo-monero)
| * unit_tests: remove std::move in return statementmoneromooo-monero2018-08-151-1/+1
| | | | | | | | This actually prevents copy elision
* | wallet2: make --restricted-rpc available for wallet RPC onlystoffu2018-08-161-2/+1
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* | wallet: allow adjusting number of rounds for the key derivation functionstoffu2018-08-081-1/+1
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* Stagenetstoffu2018-03-051-14/+14
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* Code modifications to integrate Ledger HW device into monero-wallet-cli.cslashm2018-03-041-1/+2
| | | | | | | | | | | | | | | | | | | The basic approach it to delegate all sensitive data (master key, secret ephemeral key, key derivation, ....) and related operations to the device. As device has low memory, it does not keep itself the values (except for view/spend keys) but once computed there are encrypted (with AES are equivalent) and return back to monero-wallet-cli. When they need to be manipulated by the device, they are decrypted on receive. Moreover, using the client for storing the value in encrypted form limits the modification in the client code. Those values are transfered from one C-structure to another one as previously. The code modification has been done with the wishes to be open to any other hardware wallet. To achieve that a C++ class hw::Device has been introduced. Two initial implementations are provided: the "default", which remaps all calls to initial Monero code, and the "Ledger", which delegates all calls to Ledger device.
* unit_tests.serialization: refactored with ASSERT_EQ_MAPstoffu2018-02-121-17/+21
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* Update 2018 copyrightxmr-eric2018-01-261-1/+1
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* Merge pull request #2990Riccardo Spagni2018-01-101-1/+0
|\ | | | | | | 2d17feb0 factor STL container serialization (moneromooo-monero)
| * factor STL container serializationmoneromooo-monero2017-12-221-1/+0
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* | Add a chacha20 variant to go with chacha8moneromooo-monero2017-12-251-4/+4
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* Add N/N multisig tx generation and signingmoneromooo-monero2017-12-171-1/+1
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | Scheme by luigi1111: Multisig for RingCT on Monero 2 of 2 User A (coordinator): Spendkey b,B Viewkey a,A (shared) User B: Spendkey c,C Viewkey a,A (shared) Public Address: C+B, A Both have their own watch only wallet via C+B, a A will coordinate spending process (though B could easily as well, coordinator is more needed for more participants) A and B watch for incoming outputs B creates "half" key images for discovered output D: I2_D = (Hs(aR)+c) * Hp(D) B also creates 1.5 random keypairs (one scalar and 2 pubkeys; one on base G and one on base Hp(D)) for each output, storing the scalar(k) (linked to D), and sending the pubkeys with I2_D. A also creates "half" key images: I1_D = (Hs(aR)+b) * Hp(D) Then I_D = I1_D + I2_D Having I_D allows A to check spent status of course, but more importantly allows A to actually build a transaction prefix (and thus transaction). A builds the transaction until most of the way through MLSAG_Gen, adding the 2 pubkeys (per input) provided with I2_D to his own generated ones where they are needed (secret row L, R). At this point, A has a mostly completed transaction (but with an invalid/incomplete signature). A sends over the tx and includes r, which allows B (with the recipient's address) to verify the destination and amount (by reconstructing the stealth address and decoding ecdhInfo). B then finishes the signature by computing ss[secret_index][0] = ss[secret_index][0] + k - cc[secret_index]*c (secret indices need to be passed as well). B can then broadcast the tx, or send it back to A for broadcasting. Once B has completed the signing (and verified the tx to be valid), he can add the full I_D to his cache, allowing him to verify spent status as well. NOTE: A and B *must* present key A and B to each other with a valid signature proving they know a and b respectively. Otherwise, trickery like the following becomes possible: A creates viewkey a,A, spendkey b,B, and sends a,A,B to B. B creates a fake key C = zG - B. B sends C back to A. The combined spendkey C+B then equals zG, allowing B to spend funds at any time! The signature fixes this, because B does not know a c corresponding to C (and thus can't produce a signature). 2 of 3 User A (coordinator) Shared viewkey a,A "spendkey" j,J User B "spendkey" k,K User C "spendkey" m,M A collects K and M from B and C B collects J and M from A and C C collects J and K from A and B A computes N = nG, n = Hs(jK) A computes O = oG, o = Hs(jM) B anc C compute P = pG, p = Hs(kM) || Hs(mK) B and C can also compute N and O respectively if they wish to be able to coordinate Address: N+O+P, A The rest follows as above. The coordinator possesses 2 of 3 needed keys; he can get the other needed part of the signature/key images from either of the other two. Alternatively, if secure communication exists between parties: A gives j to B B gives k to C C gives m to A Address: J+K+M, A 3 of 3 Identical to 2 of 2, except the coordinator must collect the key images from both of the others. The transaction must also be passed an additional hop: A -> B -> C (or A -> C -> B), who can then broadcast it or send it back to A. N-1 of N Generally the same as 2 of 3, except participants need to be arranged in a ring to pass their keys around (using either the secure or insecure method). For example (ignoring viewkey so letters line up): [4 of 5] User: spendkey A: a B: b C: c D: d E: e a -> B, b -> C, c -> D, d -> E, e -> A Order of signing does not matter, it just must reach n-1 users. A "remaining keys" list must be passed around with the transaction so the signers know if they should use 1 or both keys. Collecting key image parts becomes a little messy, but basically every wallet sends over both of their parts with a tag for each. Thia way the coordinating wallet can keep track of which images have been added and which wallet they come from. Reasoning: 1. The key images must be added only once (coordinator will get key images for key a from both A and B, he must add only one to get the proper key actual key image) 2. The coordinator must keep track of which helper pubkeys came from which wallet (discussed in 2 of 2 section). The coordinator must choose only one set to use, then include his choice in the "remaining keys" list so the other wallets know which of their keys to use. You can generalize it further to N-2 of N or even M of N, but I'm not sure there's legitimate demand to justify the complexity. It might also be straightforward enough to support with minimal changes from N-1 format. You basically just give each user additional keys for each additional "-1" you desire. N-2 would be 3 keys per user, N-3 4 keys, etc. The process is somewhat cumbersome: To create a N/N multisig wallet: - each participant creates a normal wallet - each participant runs "prepare_multisig", and sends the resulting string to every other participant - each participant runs "make_multisig N A B C D...", with N being the threshold and A B C D... being the strings received from other participants (the threshold must currently equal N) As txes are received, participants' wallets will need to synchronize so that those new outputs may be spent: - each participant runs "export_multisig FILENAME", and sends the FILENAME file to every other participant - each participant runs "import_multisig A B C D...", with A B C D... being the filenames received from other participants Then, a transaction may be initiated: - one of the participants runs "transfer ADDRESS AMOUNT" - this partly signed transaction will be written to the "multisig_monero_tx" file - the initiator sends this file to another participant - that other participant runs "sign_multisig multisig_monero_tx" - the resulting transaction is written to the "multisig_monero_tx" file again - if the threshold was not reached, the file must be sent to another participant, until enough have signed - the last participant to sign runs "submit_multisig multisig_monero_tx" to relay the transaction to the Monero network
* remove "using namespace std" from headersmoneromooo-monero2017-11-141-0/+1
| | | | | | | It's nasty, and actually breaks on Solaris, where if.h fails to build due to: struct map *if_memmap;
* Merge pull request #2610Riccardo Spagni2017-10-151-4/+4
|\ | | | | | | 44c1d160 unit_tests: fix compiling on Windows (iDunk5400)
| * unit_tests: fix compiling on WindowsiDunk54002017-10-081-4/+4
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* | Subaddresseskenshi842017-10-071-10/+10
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* tests: pass data dir as argredfish2017-09-281-8/+9
| | | | | | | This fixes test failure on builds that happen to be built in 'build/' instead of 'build/release'. Use boost filesystem path type.
* Improvements for epee binary to hex functions:Lee Clagett2017-04-111-4/+0
| | | | | | | - Performance improvements - Added `span` for zero-copy pointer+length arguments - Added `std::ostream` overload for direct writing to output buffers - Removal of unused `string_tools::buff_to_hex`
* core: cache tx and block hashes in the respective classesmoneromooo-monero2017-03-231-0/+14
| | | | An idea from smooth
* update copyright year, fix occasional lack of newline at line endRiccardo Spagni2017-02-211-1/+1
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* extract some basic code from libcryptonote_core into libcryptonote_basickenshi842017-02-081-2/+2
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* unit_tests: fix portable serialization tests hardcoded data pathmoneromooo-monero2017-01-141-4/+4
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* portable serializer: tests addedkenshi842017-01-031-0/+513
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* Fixed uninitialized valgrind errors in serialization testsLee Clagett2016-12-201-2/+4
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* ringct: switch to Borromean signaturesShen Noether2016-12-041-7/+7
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* tests: fix uninitialized data valgrind reports in serialization testsmoneromooo-monero2016-11-201-1/+4
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* ringct: check the size of amount_keys is the same as destinationsmoneromooo-monero2016-10-291-0/+1
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* rct: rework serialization to avoid storing vector sizesmoneromooo-monero2016-09-141-2/+5
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* rct: rework v2 txes into prunable and non prunable datamoneromooo-monero2016-08-281-12/+13
| | | | Nothing is pruned, but this allows easier changes later.
* rct: change the simple flag to a typemoneromooo-monero2016-08-281-1/+1
| | | | for future expansion