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/* | ||
This file is part of TON Blockchain Library. | ||
TON Blockchain Library is free software: you can redistribute it and/or modify | ||
it under the terms of the GNU Lesser General Public License as published by | ||
the Free Software Foundation, either version 2 of the License, or | ||
(at your option) any later version. | ||
TON Blockchain Library is distributed in the hope that it will be useful, | ||
but WITHOUT ANY WARRANTY; without even the implied warranty of | ||
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the | ||
GNU Lesser General Public License for more details. | ||
You should have received a copy of the GNU Lesser General Public License | ||
along with TON Blockchain Library. If not, see <http://www.gnu.org/licenses/>. | ||
*/ | ||
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#include "block-parse.h" | ||
#include "block.h" | ||
#include "td/db/utils/BlobView.h" | ||
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#include <iostream> | ||
#include "td/utils/OptionParser.h" | ||
#include "td/utils/Time.h" | ||
#include "td/utils/filesystem.h" | ||
#include "td/utils/logging.h" | ||
#include "vm/cells/MerkleProof.h" | ||
#include "vm/db/StaticBagOfCellsDb.h" | ||
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#include <fstream> | ||
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void print_help() { | ||
std::cerr << "mintless-proof-generator - generates proofs for mintless jettons\n"; | ||
std::cerr << "Usage:\n"; | ||
std::cerr << " mintless-proof-generator generate <input-list> <output-file>\tGenerate a full tree for " | ||
"<input-list>, save boc to <output-file>\n"; | ||
std::cerr << " mintless-proof-generator make_proof <input-boc> <address> <output-file>\tGenerate a proof for " | ||
"address <address> from tree <input-boc>, save boc to file <output-file>\n"; | ||
std::cerr << " mintless-proof-generator parse <input-boc> <output-file>\tRead a tree from <input-boc> and output it " | ||
"as text to <output-file>\n"; | ||
exit(2); | ||
} | ||
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void log_mem_stat() { | ||
auto r_stat = td::mem_stat(); | ||
if (r_stat.is_error()) { | ||
LOG(WARNING) << "Memory: " << r_stat.move_as_error(); | ||
return; | ||
} | ||
auto stat = r_stat.move_as_ok(); | ||
LOG(WARNING) << "Memory: " | ||
<< "res=" << stat.resident_size_ << " (peak=" << stat.resident_size_peak_ | ||
<< ") virt=" << stat.virtual_size_ << " (peak=" << stat.virtual_size_peak_ << ")"; | ||
} | ||
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td::BitArray<3 + 8 + 256> address_to_key(const block::StdAddress &address) { | ||
// addr_std$10 anycast:(Maybe Anycast) workchain_id:int8 address:bits256 = MsgAddressInt; | ||
vm::CellBuilder cb; | ||
cb.store_long(0b100, 3); | ||
cb.store_long(address.workchain, 8); | ||
cb.store_bits(address.addr.as_bitslice()); | ||
return cb.data_bits(); | ||
} | ||
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struct Entry { | ||
block::StdAddress address; | ||
td::RefInt256 amount; | ||
td::uint64 start_from = 0, expired_at = 0; | ||
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td::BitArray<3 + 8 + 256> get_key() const { | ||
return address_to_key(address); | ||
} | ||
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td::Ref<vm::CellSlice> get_value() const { | ||
// _ amount:Coins start_from:uint48 expired_at:uint48 = AirdropItem; | ||
vm::CellBuilder cb; | ||
bool ok = block::tlb::t_Grams.store_integer_value(cb, *amount) && cb.store_ulong_rchk_bool(start_from, 48) && | ||
cb.store_ulong_rchk_bool(expired_at, 48); | ||
LOG_CHECK(ok) << "Failed to serialize AirdropItem"; | ||
return cb.as_cellslice_ref(); | ||
} | ||
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static Entry parse(td::BitArray<3 + 8 + 256> key, vm::CellSlice value) { | ||
Entry e; | ||
td::ConstBitPtr ptr = key.bits(); | ||
LOG_CHECK(ptr.get_uint(3) == 0b100) << "Invalid address"; | ||
ptr.advance(3); | ||
e.address.workchain = (ton::WorkchainId)ptr.get_int(8); | ||
ptr.advance(8); | ||
e.address.addr = ptr; | ||
bool ok = block::tlb::t_Grams.as_integer_skip_to(value, e.amount) && value.fetch_uint_to(48, e.start_from) && | ||
value.fetch_uint_to(48, e.expired_at) && value.empty_ext(); | ||
LOG_CHECK(ok) << "Failed to parse AirdropItem"; | ||
return e; | ||
} | ||
}; | ||
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bool read_entry(std::istream &f, Entry &entry) { | ||
std::string line; | ||
while (std::getline(f, line)) { | ||
std::vector<std::string> v = td::full_split(line, ' '); | ||
if (v.empty()) { | ||
continue; | ||
} | ||
auto S = [&]() -> td::Status { | ||
if (v.size() != 4) { | ||
return td::Status::Error("Invalid line in input"); | ||
} | ||
TRY_RESULT_PREFIX_ASSIGN(entry.address, block::StdAddress::parse(v[0]), "Invalid address in input: "); | ||
entry.amount = td::string_to_int256(v[1]); | ||
if (entry.amount.is_null() || !entry.amount->is_valid() || entry.amount->sgn() < 0) { | ||
return td::Status::Error(PSTRING() << "Invalid amount in input: " << v[1]); | ||
} | ||
TRY_RESULT_PREFIX_ASSIGN(entry.start_from, td::to_integer_safe<td::uint64>(v[2]), | ||
"Invalid start_from in input: "); | ||
TRY_RESULT_PREFIX_ASSIGN(entry.expired_at, td::to_integer_safe<td::uint64>(v[3]), | ||
"Invalid expired_at in input: "); | ||
return td::Status::OK(); | ||
}(); | ||
S.ensure(); | ||
return true; | ||
} | ||
return false; | ||
} | ||
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td::Status run_generate(std::string in_filename, std::string out_filename) { | ||
LOG(INFO) << "Generating tree from " << in_filename; | ||
std::ifstream in_file{in_filename}; | ||
LOG_CHECK(in_file.is_open()) << "Cannot open file " << in_filename; | ||
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Entry entry; | ||
vm::Dictionary dict{3 + 8 + 256}; | ||
td::uint64 count = 0; | ||
td::Timestamp log_at = td::Timestamp::in(5.0); | ||
while (read_entry(in_file, entry)) { | ||
++count; | ||
bool ok = dict.set(entry.get_key(), entry.get_value(), vm::DictionaryBase::SetMode::Add); | ||
LOG_CHECK(ok) << "Failed to add entry " << entry.address.rserialize() << " (line #" << count << ")"; | ||
if (log_at.is_in_past()) { | ||
LOG(INFO) << "Added " << count << " entries"; | ||
log_at = td::Timestamp::in(5.0); | ||
} | ||
} | ||
LOG_CHECK(in_file.eof()) << "Failed to read file " << in_filename; | ||
in_file.close(); | ||
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LOG_CHECK(count != 0) << "Input is empty"; | ||
td::Ref<vm::Cell> root = dict.get_root_cell(); | ||
LOG(INFO) << "Total: " << count << " entries, root hash: " << root->get_hash().to_hex(); | ||
vm::BagOfCells boc; | ||
boc.add_root(root); | ||
TRY_STATUS(boc.import_cells()); | ||
LOG(INFO) << "Writing to " << out_filename; | ||
TRY_RESULT(fd, td::FileFd::open(out_filename, td::FileFd::Write | td::FileFd::Truncate | td::FileFd::Create)); | ||
TRY_STATUS(boc.serialize_to_file(fd, 31)); | ||
TRY_STATUS(fd.sync()); | ||
fd.close(); | ||
log_mem_stat(); | ||
return td::Status::OK(); | ||
} | ||
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td::Status run_make_proof(std::string in_filename, std::string s_address, std::string out_filename) { | ||
LOG(INFO) << "Generating proof for " << s_address << ", input file is " << in_filename; | ||
TRY_RESULT(address, block::StdAddress::parse(s_address)); | ||
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TRY_RESULT(blob_view, td::FileBlobView::create(in_filename)); | ||
TRY_RESULT(boc, vm::StaticBagOfCellsDbLazy::create(std::move(blob_view))); | ||
TRY_RESULT(root, boc->get_root_cell(0)); | ||
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vm::MerkleProofBuilder mpb{root}; | ||
vm::Dictionary dict{mpb.root(), 3 + 8 + 256}; | ||
auto key = address_to_key(address); | ||
td::Ref<vm::CellSlice> value = dict.lookup(key); | ||
LOG_CHECK(value.not_null()) << "No entry for address " << s_address; | ||
Entry e = Entry::parse(key, *value); | ||
LOG(INFO) << "Entry: address=" << e.address.workchain << ":" << e.address.addr.to_hex() | ||
<< " amount=" << e.amount->to_dec_string() << " start_from=" << e.start_from | ||
<< " expire_at=" << e.expired_at; | ||
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TRY_RESULT(proof, mpb.extract_proof_boc()); | ||
LOG(INFO) << "Writing proof to " << out_filename << " (" << td::format::as_size(proof.size()) << ")"; | ||
TRY_STATUS(td::write_file(out_filename, proof)); | ||
log_mem_stat(); | ||
return td::Status::OK(); | ||
} | ||
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td::Status run_parse(std::string in_filename, std::string out_filename) { | ||
LOG(INFO) << "Parsing " << in_filename; | ||
std::ofstream out_file{out_filename}; | ||
LOG_CHECK(out_file.is_open()) << "Cannot open file " << out_filename; | ||
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TRY_RESULT(blob_view, td::FileBlobView::create(in_filename)); | ||
TRY_RESULT(boc, vm::StaticBagOfCellsDbLazy::create(std::move(blob_view))); | ||
TRY_RESULT(root, boc->get_root_cell(0)); | ||
LOG(INFO) << "Root hash = " << root->get_hash().to_hex(); | ||
vm::Dictionary dict{root, 3 + 8 + 256}; | ||
td::Timestamp log_at = td::Timestamp::in(5.0); | ||
td::uint64 count = 0; | ||
bool ok = dict.check_for_each([&](td::Ref<vm::CellSlice> value, td::ConstBitPtr key, int key_len) { | ||
CHECK(key_len == 3 + 8 + 256); | ||
Entry e = Entry::parse(key, *value); | ||
out_file << e.address.workchain << ":" << e.address.addr.to_hex() << " " << e.amount->to_dec_string() << " " | ||
<< e.start_from << " " << e.expired_at << "\n"; | ||
LOG_CHECK(!out_file.fail()) << "Failed to write to " << out_filename; | ||
++count; | ||
if (log_at.is_in_past()) { | ||
LOG(INFO) << "Parsed " << count << " entries"; | ||
log_at = td::Timestamp::in(5.0); | ||
} | ||
return true; | ||
}); | ||
LOG_CHECK(ok) << "Failed to parse dictionary"; | ||
out_file.close(); | ||
LOG_CHECK(!out_file.fail()) << "Failed to write to " << out_filename; | ||
LOG(INFO) << "Done: " << count << " entries"; | ||
log_mem_stat(); | ||
return td::Status::OK(); | ||
} | ||
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int main(int argc, char *argv[]) { | ||
SET_VERBOSITY_LEVEL(verbosity_INFO); | ||
td::set_log_fatal_error_callback([](td::CSlice) { exit(2); }); | ||
if (argc <= 1) { | ||
print_help(); | ||
return 2; | ||
} | ||
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std::string command = argv[1]; | ||
try { | ||
if (command == "generate") { | ||
if (argc != 4) { | ||
print_help(); | ||
} | ||
run_generate(argv[2], argv[3]).ensure(); | ||
return 0; | ||
} | ||
if (command == "make_proof") { | ||
if (argc != 5) { | ||
print_help(); | ||
} | ||
run_make_proof(argv[2], argv[3], argv[4]).ensure(); | ||
return 0; | ||
} | ||
if (command == "parse") { | ||
if (argc != 4) { | ||
print_help(); | ||
} | ||
run_parse(argv[2], argv[3]).ensure(); | ||
return 0; | ||
} | ||
} catch (vm::VmError &e) { | ||
LOG(FATAL) << "VM error: " << e.get_msg(); | ||
} catch (vm::VmVirtError &e) { | ||
LOG(FATAL) << "VM error: " << e.get_msg(); | ||
} | ||
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LOG(FATAL) << "Unknown command '" << command << "'"; | ||
} |
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