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ton/crypto/vm/tupleops.cpp
EmelyanenkoK 9f93888cf4
TVM Upgrade (#686)
* New TVM instructions

* Remove PREVBLOCKS

* Separate target ton_crypto into TVM-related and -unrelared code

* Add fine for failed "send message"; rework SENDMSG

* Fix include

* Fix bugs, improve action fines

* Disable fines for special accounts

* Handle msg_balance_remaining.grams == null in transaction.cpp

* Bugfixes in SENDMSG

* Fix fee calculation in SENDMSG

* Fix CellStorageStat and transaction.cpp after merge

* SETBOUNCEONACTIONPHASEFAIL instruction

* ADDDIVMOD instructions

* RUNVM, RUNVMX instructions

* Changes in RUNVM

* Tests for adddiv and runvm

* HASHEXT instruction

* Improve opcode-timing

More iterations
Don't measure preliminary run
Remove logs and other excessive operations
Add "error" to output

* Increase RUNVM gas price

* Optimize HASHEXT, adjust gas price

* Add "bounce of action fail" flag to actions

* Stack operations with unlimited arguments

* Ristretto255 instructions

* Adjust gas consumption

* Optional fixed number of return values in RUNVM, fix exception handling

* Adjust gas consumption

* Simplify gas consumption logic

* Support of secp256k1 and sodium libraries in builds (#11)

* add support of secp256k1 library to the builds (linux, win)

* add support of secp256k1 library to the builds (linux, win)

* install secp256k1 via brew

* install libsodium via brew;
change sodium to upper case in FindSodium.cmake

* install libsodium via brew;
change sodium to upper case in FindSodium.cmake

* simplify FindSodium.cmake

* bug fixing

* bug fixing

* bug fixing

* add macro SODIUM_STATIC

* adjust build command for windows

* put back original FindSodium.cmake

* put back original FindSodium.cmake

* fix sodium unzipped path for windows;
add ninja

* fix sodium unzipped path for windows;
add ninja

* fix sodium unzipped path for windows;
add ninja

* Win32 github build for secp256k1

* x64 architecture github build for secp256k1

* fix sodium linking on linux

* enable docker buildx arm64 builds from forked repos

* enable docker buildx arm64 builds from forked repos

* enable docker buildx arm64 builds from forked repos

* adjust mac builds for secp2561k and sodium

* fix tonlib jni generation

* minor fix

* sync fixes across platforms

* add libsodium build script for android and precompiled static libraries

* build tonlib for android (fails)

* FindSodium uppercase

* remove system libsodium for android, use precompiled instead;
specify SECP256K1_INCLUDE_DIR fir mac 12.6

* uppercase sodium

* simplify FindSodium

* fix windows build sodium path;
use ninja for windows

* simplify sodium 2

* adjust windows sodium paths;
add paths to android jni

* add ninja build windows

* add ninja build windows

* add ninja build windows 2

* remove win ninja

* fix 1

* fix 2

* fix win 3

* fix linux compile 3

* fix jni 1

* fix jni 2 and mac

* fix jni 3

* fix jni 4

* fix jni 5

* fix mac 6

* fix mac 7 and jni paths

* fix jni 8

* rework sodium for android

* rework sodium for android

* rework sodium for android 2

* fixed sodium for android 2

* fixed sodium for android 3

* static secp256k1 for android

* add precompiled arm secp256k1

* add precompiled arm secp256k1

* build native-lib with secp256k1 x86-64 (non arm)

* update precompiled with NDK libsecp256k1.a

* update precompiled with NDK libsecp256k1.a

* update precompiled with NDK libsecp256k1.a

* refactor llvm-strip location

* refactor llvm-strip location

* add native-lib.so for armv7a, armv8a

* add native-lib.so for armv7a, armv8a

* test  armv7a, armv8a

* armv7a - fails linking on sodium, test -> armv8a

* works x86-64, armv7a - fails linking on sodium, armv8a - fails linking secp256k1 (incompatible with aarch64linux)

* update libpsec256k1, sodium static libs

* test x86 android native-lib

* test armv7 android native-lib

* test armv8 android native-lib

* x86_64 and arm64 android native-lib works

* x86_64 and arm64 android native-lib works

* x86_64 and arm64 android native-lib works

* test armv7 android native-lib

* test all android native-libs

* test all android native-libs

* test all android native-libs

* test all android native-libs - without SodiumAndroid

* test all android native-libs - with FindSodiumAndroid.cmake

* win, with Sodium via SODIUM_DIR

* win, with Sodium via SODIUM_DIR env

* win, with Sodium via SODIUM_DIR env

* win, with Sodium via SODIUM_DIR env and SODIUM_USE_STATIC_LIBS

* win, with Sodium via SODIUM_DIR, SODIUM_USE_STATIC_LIBS and SODIUM_INCLUDE_DIR

* android, with FindSodium

* android, with FindSodium with SODIUM_USE_STATIC_LIBS

* remove if not apple

* target_link_libraries(ton_crypto_core PUBLIC secp256k1)

* android SECP256K1_INCLUDE_DIRS

* android SECP256K1_INCLUDE_DIR

* add libsecp256k1.a/so pre-compiled with ubuntu 22 x86-64

* add libsecp256k1.a/so pre-compiled with ubuntu 22 x86-64

* sodium dirs

* sodium dirs

* sodium dirs

* remove NOT APPLE and SodiumAndroid

* add NOT APPLE and remove SodiumAndroid

* add NOT APPLE and remove SodiumAndroid

* remove build scripts for 18.04, reduce CMakeLists.txt

* remove build scripts for 18.04, reduce CMakeLists.txt

* Fix cas consumption during library load

* Fix fetch_config_params after merge

* Add all ADDDIVMOD ops to Asm.fif

* Save unpaid storage fee to due_payment

* Add "set prev blocks info" to emulator

* Adjusted builds  (#13)

* Update flake.nix

Add libsodium

* add libsecp256k1-dev and libsodium-dev into wasm build

* make back emulator a shared library;
put emulator to artifacts;
compile wasm artifacts with sodium and secp256k1.

* add secp256k1 to nix

* compile emulator statically with nix

* compile emulator statically with nix

* compile emulator lib statically with nix

* compile emulator lib statically with nix

* add libemulator to artifacts

* add shared libemulator library to artifacts

* minor release fix

* update set-output commands;
add recent_changelog.md

* releases fixes

* releases fixes, multiline

* releases fixes, multiline

* releases fixes, multiline

* put back multiline changelog

* put back multiline changelog

* ConfigParam 19 (global-id) and GLOBALID instruction

* Fix gas consumption in HASHEXT

* Add blst library

* Add bls instructions

* Allow passing long code to opcode-timing

* Add bls testcase

* More BLS instructions

* Fix tests, add bls tests

* Add more bls tests

* Improve some bls operations

* Adjust some BLS gas prices

* Adjust BLS gas prices

* Enable __BLST_PORTABLE__ flag only if PORTABLE flag is set

* Add tests for BLS_PAIRING

* GASCONSUMED instruction

* Fix compilation against docker with blst library; (#14)

* fix compilation against docker with blst library;
add precompiled libblst.a to android builds

* minor fix

* Adjust BLKSWX gas

* Fix comparison with NAN

* Allow arbitrary integers for scalars in ristretto multiplication, fix test

* Adjust nix builds according to PR 694 (#15)

* integrate and test PR-694

* integrate and test PR-694, test 2

* Add P256_CHKSIGN (secp256r1)

---------

Co-authored-by: SpyCheese <mikle98@yandex.ru>
Co-authored-by: neodiX42 <namlem@gmail.com>
2023-05-24 21:14:13 +03:00

402 lines
13 KiB
C++

/*
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/>.
Copyright 2017-2020 Telegram Systems LLP
*/
#include "vm/log.h"
#include "vm/stackops.h"
#include "vm/opctable.h"
#include "vm/stack.hpp"
#include "vm/excno.hpp"
#include "vm/vm.h"
namespace vm {
int exec_push_null(VmState* st) {
VM_LOG(st) << "execute PUSHNULL";
st->get_stack().push({});
return 0;
}
int exec_is_null(VmState* st) {
Stack& stack = st->get_stack();
VM_LOG(st) << "execute ISNULL";
stack.push_bool(stack.pop_chk().empty());
return 0;
}
int exec_null_swap_if(VmState* st, bool cond, int depth) {
Stack& stack = st->get_stack();
VM_LOG(st) << "execute NULL" << (depth ? "ROTR" : "SWAP") << (cond ? "IF" : "IFNOT");
stack.check_underflow(depth + 1);
auto x = stack.pop_int_finite();
if (!x->sgn() != cond) {
stack.push({});
for (int i = 0; i < depth; i++) {
swap(stack[i], stack[i + 1]);
}
}
stack.push_int(std::move(x));
return 0;
}
int exec_null_swap_if_many(VmState* st, bool cond, int depth, int count) {
Stack& stack = st->get_stack();
VM_LOG(st) << "execute NULL" << (depth ? "ROTR" : "SWAP") << (cond ? "IF" : "IFNOT") << count;
stack.check_underflow(depth + 1);
auto x = stack.pop_int_finite();
if (!x->sgn() != cond) {
for (int i = 0; i < count; i++) {
stack.push({});
}
for (int i = 0; i < depth; i++) {
swap(stack[i], stack[i + count]);
}
}
stack.push_int(std::move(x));
return 0;
}
int exec_mktuple_common(VmState* st, unsigned n) {
Stack& stack = st->get_stack();
stack.check_underflow(n);
Ref<Tuple> ref{true};
auto& tuple = ref.unique_write();
tuple.reserve(n);
for (int i = n - 1; i >= 0; i--) {
tuple.push_back(std::move(stack[i]));
}
stack.pop_many(n);
st->consume_tuple_gas(n);
stack.push_tuple(std::move(ref));
return 0;
}
int exec_mktuple(VmState* st, unsigned args) {
args &= 15;
VM_LOG(st) << "execute TUPLE " << args;
return exec_mktuple_common(st, args);
}
int exec_mktuple_var(VmState* st) {
VM_LOG(st) << "execute TUPLEVAR";
unsigned args = st->get_stack().pop_smallint_range(255);
return exec_mktuple_common(st, args);
}
int exec_tuple_index_common(Stack& stack, unsigned n) {
auto tuple = stack.pop_tuple_range(255);
stack.push(tuple_index(tuple, n));
return 0;
}
int exec_tuple_index(VmState* st, unsigned args) {
args &= 15;
VM_LOG(st) << "execute INDEX " << args;
return exec_tuple_index_common(st->get_stack(), args);
}
int exec_tuple_index_var(VmState* st) {
VM_LOG(st) << "execute INDEXVAR";
st->check_underflow(2);
unsigned args = st->get_stack().pop_smallint_range(254);
return exec_tuple_index_common(st->get_stack(), args);
}
int exec_tuple_quiet_index_common(Stack& stack, unsigned n) {
stack.push(tuple_extend_index(stack.pop_maybe_tuple_range(255), n));
return 0;
}
int exec_tuple_quiet_index(VmState* st, unsigned args) {
args &= 15;
VM_LOG(st) << "execute INDEXQ " << args;
return exec_tuple_quiet_index_common(st->get_stack(), args);
}
int exec_tuple_quiet_index_var(VmState* st) {
VM_LOG(st) << "execute INDEXVARQ";
st->check_underflow(2);
unsigned args = st->get_stack().pop_smallint_range(254);
return exec_tuple_quiet_index_common(st->get_stack(), args);
}
int do_explode_tuple(VmState* st, Ref<Tuple> tuple, unsigned n) {
auto& stack = st->get_stack();
if (tuple.is_unique()) {
auto& tw = tuple.unique_write();
for (unsigned i = 0; i < n; i++) {
stack.push(std::move(tw[i]));
}
} else {
const auto& t = *tuple;
for (unsigned i = 0; i < n; i++) {
stack.push(t[i]);
}
}
st->consume_tuple_gas(n);
return 0;
}
int exec_untuple_common(VmState* st, unsigned n) {
return do_explode_tuple(st, st->get_stack().pop_tuple_range(n, n), n);
}
int exec_untuple(VmState* st, unsigned args) {
args &= 15;
VM_LOG(st) << "execute UNTUPLE " << args;
return exec_untuple_common(st, args);
}
int exec_untuple_var(VmState* st) {
VM_LOG(st) << "execute UNTUPLEVAR";
st->check_underflow(2);
unsigned args = st->get_stack().pop_smallint_range(255);
return exec_untuple_common(st, args);
}
int exec_untuple_first_common(VmState* st, unsigned n) {
return do_explode_tuple(st, st->get_stack().pop_tuple_range(255, n), n);
}
int exec_untuple_first(VmState* st, unsigned args) {
args &= 15;
VM_LOG(st) << "execute UNPACKFIRST " << args;
return exec_untuple_first_common(st, args);
}
int exec_untuple_first_var(VmState* st) {
VM_LOG(st) << "execute UNPACKFIRSTVAR";
st->check_underflow(2);
unsigned args = st->get_stack().pop_smallint_range(255);
return exec_untuple_first_common(st, args);
}
int exec_explode_tuple_common(VmState* st, unsigned n) {
auto t = st->get_stack().pop_tuple_range(n);
unsigned l = (unsigned)(t->size());
do_explode_tuple(st, std::move(t), l);
st->get_stack().push_smallint(l);
return 0;
}
int exec_explode_tuple(VmState* st, unsigned args) {
args &= 15;
VM_LOG(st) << "execute EXPLODE " << args;
return exec_explode_tuple_common(st, args);
}
int exec_explode_tuple_var(VmState* st) {
VM_LOG(st) << "execute EXPLODEVAR";
st->check_underflow(2);
unsigned args = st->get_stack().pop_smallint_range(255);
return exec_explode_tuple_common(st, args);
}
int exec_tuple_set_index_common(VmState* st, unsigned idx) {
Stack& stack = st->get_stack();
auto x = stack.pop();
auto tuple = stack.pop_tuple_range(255);
if (idx >= tuple->size()) {
throw VmError{Excno::range_chk, "tuple index out of range"};
}
tuple.write()[idx] = std::move(x);
st->consume_tuple_gas(tuple);
stack.push(std::move(tuple));
return 0;
}
int exec_tuple_set_index(VmState* st, unsigned args) {
args &= 15;
VM_LOG(st) << "execute SETINDEX " << args;
st->check_underflow(2);
return exec_tuple_set_index_common(st, args);
}
int exec_tuple_set_index_var(VmState* st) {
VM_LOG(st) << "execute SETINDEXVAR";
st->check_underflow(3);
unsigned args = st->get_stack().pop_smallint_range(254);
return exec_tuple_set_index_common(st, args);
}
int exec_tuple_quiet_set_index_common(VmState* st, unsigned idx) {
Stack& stack = st->get_stack();
auto x = stack.pop();
auto tuple = stack.pop_maybe_tuple_range(255);
if (idx >= 255) {
throw VmError{Excno::range_chk, "tuple index out of range"};
}
auto tpay = tuple_extend_set_index(tuple, idx, std::move(x));
if (tpay > 0) {
st->consume_tuple_gas(tpay);
}
stack.push_maybe_tuple(std::move(tuple));
return 0;
}
int exec_tuple_quiet_set_index(VmState* st, unsigned args) {
args &= 15;
VM_LOG(st) << "execute SETINDEXQ " << args;
st->check_underflow(2);
return exec_tuple_quiet_set_index_common(st, args);
}
int exec_tuple_quiet_set_index_var(VmState* st) {
VM_LOG(st) << "execute SETINDEXVARQ";
st->check_underflow(3);
unsigned args = st->get_stack().pop_smallint_range(254);
return exec_tuple_quiet_set_index_common(st, args);
}
int exec_tuple_length(VmState* st) {
Stack& stack = st->get_stack();
VM_LOG(st) << "execute TLEN";
auto t = stack.pop_tuple_range(255);
stack.push_smallint((long long)(t->size()));
return 0;
}
int exec_tuple_length_quiet(VmState* st) {
Stack& stack = st->get_stack();
VM_LOG(st) << "execute QTLEN";
auto t = stack.pop_chk();
stack.push_smallint(t.is_tuple() ? (long long)(t.as_tuple()->size()) : -1LL);
return 0;
}
int exec_is_tuple(VmState* st) {
Stack& stack = st->get_stack();
VM_LOG(st) << "execute ISTUPLE";
stack.push_bool(stack.pop_chk().is_tuple());
return 0;
}
int exec_tuple_last(VmState* st) {
Stack& stack = st->get_stack();
VM_LOG(st) << "execute LAST";
auto t = stack.pop_tuple_range(255, 1);
stack.push(t->back());
return 0;
}
int exec_tuple_push(VmState* st) {
Stack& stack = st->get_stack();
VM_LOG(st) << "execute TPUSH";
stack.check_underflow(2);
auto x = stack.pop();
auto t = stack.pop_tuple_range(254);
t.write().push_back(std::move(x));
st->consume_tuple_gas(t);
stack.push(std::move(t));
return 0;
}
int exec_tuple_pop(VmState* st) {
Stack& stack = st->get_stack();
VM_LOG(st) << "execute TPOP";
auto t = stack.pop_tuple_range(255, 1);
auto x = std::move(t.write().back());
t.write().pop_back();
st->consume_tuple_gas(t);
stack.push(std::move(t));
stack.push(std::move(x));
return 0;
}
int exec_tuple_index2(VmState* st, unsigned args) {
unsigned i = (args >> 2) & 3, j = args & 3;
VM_LOG(st) << "execute INDEX2 " << i << "," << j;
Stack& stack = st->get_stack();
auto tuple = stack.pop_tuple_range(255);
auto t1 = tuple_index(tuple, i).as_tuple_range(255);
if (t1.is_null()) {
throw VmError{Excno::type_chk, "intermediate value is not a tuple"};
}
stack.push(tuple_index(t1, j));
return 0;
}
std::string dump_tuple_index2(CellSlice& cs, unsigned args) {
unsigned i = (args >> 2) & 3, j = args & 3;
std::ostringstream os;
os << "INDEX2 " << i << ',' << j;
return os.str();
}
int exec_tuple_index3(VmState* st, unsigned args) {
unsigned i = (args >> 4) & 3, j = (args >> 2) & 3, k = args & 3;
VM_LOG(st) << "execute INDEX3 " << i << "," << j << "," << k;
Stack& stack = st->get_stack();
auto tuple = stack.pop_tuple_range(255);
auto t1 = tuple_index(tuple, i).as_tuple_range(255);
if (t1.is_null()) {
throw VmError{Excno::type_chk, "intermediate value is not a tuple"};
}
auto t2 = tuple_index(t1, j).as_tuple_range(255);
if (t2.is_null()) {
throw VmError{Excno::type_chk, "intermediate value is not a tuple"};
}
stack.push(tuple_index(t2, k));
return 0;
}
std::string dump_tuple_index3(CellSlice& cs, unsigned args) {
unsigned i = (args >> 4) & 3, j = (args >> 2) & 3, k = args & 3;
std::ostringstream os;
os << "INDEX3 " << i << ',' << j << ',' << k;
return os.str();
}
void register_tuple_ops(OpcodeTable& cp0) {
using namespace std::placeholders;
cp0.insert(OpcodeInstr::mksimple(0x6d, 8, "PUSHNULL", exec_push_null))
.insert(OpcodeInstr::mksimple(0x6e, 8, "ISNULL", exec_is_null))
.insert(OpcodeInstr::mkfixed(0x6f0, 12, 4, instr::dump_1c("TUPLE "), exec_mktuple))
.insert(OpcodeInstr::mkfixed(0x6f1, 12, 4, instr::dump_1c("INDEX "), exec_tuple_index))
.insert(OpcodeInstr::mkfixed(0x6f2, 12, 4, instr::dump_1c("UNTUPLE "), exec_untuple))
.insert(OpcodeInstr::mkfixed(0x6f3, 12, 4, instr::dump_1c("UNPACKFIRST "), exec_untuple_first))
.insert(OpcodeInstr::mkfixed(0x6f4, 12, 4, instr::dump_1c("EXPLODE "), exec_explode_tuple))
.insert(OpcodeInstr::mkfixed(0x6f5, 12, 4, instr::dump_1c("SETINDEX "), exec_tuple_set_index))
.insert(OpcodeInstr::mkfixed(0x6f6, 12, 4, instr::dump_1c("INDEXQ "), exec_tuple_quiet_index))
.insert(OpcodeInstr::mkfixed(0x6f7, 12, 4, instr::dump_1c("SETINDEXQ "), exec_tuple_quiet_set_index))
.insert(OpcodeInstr::mksimple(0x6f80, 16, "TUPLEVAR", exec_mktuple_var))
.insert(OpcodeInstr::mksimple(0x6f81, 16, "INDEXVAR", exec_tuple_index_var))
.insert(OpcodeInstr::mksimple(0x6f82, 16, "UNTUPLEVAR", exec_untuple_var))
.insert(OpcodeInstr::mksimple(0x6f83, 16, "UNPACKFIRSTVAR", exec_untuple_first_var))
.insert(OpcodeInstr::mksimple(0x6f84, 16, "EXPLODEVAR", exec_explode_tuple_var))
.insert(OpcodeInstr::mksimple(0x6f85, 16, "SETINDEXVAR", exec_tuple_set_index_var))
.insert(OpcodeInstr::mksimple(0x6f86, 16, "INDEXVARQ", exec_tuple_quiet_index_var))
.insert(OpcodeInstr::mksimple(0x6f87, 16, "SETINDEXVARQ", exec_tuple_quiet_set_index_var))
.insert(OpcodeInstr::mksimple(0x6f88, 16, "TLEN", exec_tuple_length))
.insert(OpcodeInstr::mksimple(0x6f89, 16, "QTLEN", exec_tuple_length_quiet))
.insert(OpcodeInstr::mksimple(0x6f8a, 16, "ISTUPLE", exec_is_tuple))
.insert(OpcodeInstr::mksimple(0x6f8b, 16, "LAST", exec_tuple_last))
.insert(OpcodeInstr::mksimple(0x6f8c, 16, "TPUSH", exec_tuple_push))
.insert(OpcodeInstr::mksimple(0x6f8d, 16, "TPOP", exec_tuple_pop))
.insert(OpcodeInstr::mksimple(0x6fa0, 16, "NULLSWAPIF", std::bind(exec_null_swap_if, _1, true, 0)))
.insert(OpcodeInstr::mksimple(0x6fa1, 16, "NULLSWAPIFNOT", std::bind(exec_null_swap_if, _1, false, 0)))
.insert(OpcodeInstr::mksimple(0x6fa2, 16, "NULLROTRIF", std::bind(exec_null_swap_if, _1, true, 1)))
.insert(OpcodeInstr::mksimple(0x6fa3, 16, "NULLROTRIFNOT", std::bind(exec_null_swap_if, _1, false, 1)))
.insert(OpcodeInstr::mksimple(0x6fa4, 16, "NULLSWAPIF2", std::bind(exec_null_swap_if_many, _1, true, 0, 2)))
.insert(OpcodeInstr::mksimple(0x6fa5, 16, "NULLSWAPIFNOT2", std::bind(exec_null_swap_if_many, _1, false, 0, 2)))
.insert(OpcodeInstr::mksimple(0x6fa6, 16, "NULLROTRIF2", std::bind(exec_null_swap_if_many, _1, true, 1, 2)))
.insert(OpcodeInstr::mksimple(0x6fa7, 16, "NULLROTRIFNOT2", std::bind(exec_null_swap_if_many, _1, false, 1, 2)))
.insert(OpcodeInstr::mkfixed(0x6fb, 12, 4, dump_tuple_index2, exec_tuple_index2))
.insert(OpcodeInstr::mkfixed(0x6fc >> 2, 10, 6, dump_tuple_index3, exec_tuple_index3));
}
} // namespace vm