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29deff15c3
updated fift updated tonlib
588 lines
16 KiB
C++
588 lines
16 KiB
C++
/*
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This file is part of TON Blockchain Library.
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TON Blockchain Library is free software: you can redistribute it and/or modify
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it under the terms of the GNU Lesser General Public License as published by
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the Free Software Foundation, either version 2 of the License, or
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(at your option) any later version.
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TON Blockchain Library is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU Lesser General Public License for more details.
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You should have received a copy of the GNU Lesser General Public License
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along with TON Blockchain Library. If not, see <http://www.gnu.org/licenses/>.
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Copyright 2017-2019 Telegram Systems LLP
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*/
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#pragma once
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#include "common/refcnt.hpp"
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#include "vm/cellslice.h"
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#include "vm/stack.hpp"
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#include "vm/vmstate.h"
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#include "vm/log.h"
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namespace vm {
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using td::Ref;
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class VmState;
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class Continuation;
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class DispatchTable;
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struct ControlRegs {
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static constexpr int creg_num = 4, dreg_num = 2, dreg_idx = 4;
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Ref<Continuation> c[creg_num]; // c0..c3
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Ref<Cell> d[dreg_num]; // c4..c5
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Ref<Tuple> c7; // c7
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Ref<Continuation> get_c(unsigned idx) const {
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return idx < creg_num ? c[idx] : Ref<Continuation>{};
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}
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Ref<Cell> get_d(unsigned idx) const {
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idx -= dreg_idx;
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return idx < dreg_num ? d[idx] : Ref<Cell>{};
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}
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Ref<Tuple> get_c7() const {
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return c7;
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}
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StackEntry get(unsigned idx) const;
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static bool valid_idx(unsigned idx) {
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return idx < creg_num || (idx >= dreg_idx && idx < dreg_idx + dreg_num) || idx == 7;
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}
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void set_c0(Ref<Continuation> cont) {
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c[0] = std::move(cont);
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}
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void set_c1(Ref<Continuation> cont) {
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c[1] = std::move(cont);
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}
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void set_c2(Ref<Continuation> cont) {
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c[2] = std::move(cont);
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}
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void set_c3(Ref<Continuation> cont) {
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c[3] = std::move(cont);
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}
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void set_c4(Ref<Cell> cell) {
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d[0] = std::move(cell);
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}
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bool set_c(unsigned idx, Ref<Continuation> cont) {
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if (idx < creg_num) {
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c[idx] = std::move(cont);
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return true;
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} else {
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return false;
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}
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}
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bool set_d(unsigned idx, Ref<Cell> cell) {
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idx -= dreg_idx;
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if (idx < dreg_num) {
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d[idx] = std::move(cell);
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return true;
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} else {
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return false;
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}
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}
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bool set_c7(Ref<Tuple> tuple) {
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c7 = std::move(tuple);
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return true;
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}
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bool set(unsigned idx, StackEntry value);
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void define_c0(Ref<Continuation> cont) {
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if (c[0].is_null()) {
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c[0] = std::move(cont);
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}
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}
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void define_c1(Ref<Continuation> cont) {
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if (c[1].is_null()) {
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c[1] = std::move(cont);
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}
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}
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void define_c2(Ref<Continuation> cont) {
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if (c[2].is_null()) {
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c[2] = std::move(cont);
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}
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}
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bool define_c(unsigned idx, Ref<Continuation> cont) {
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if (idx < creg_num && c[idx].is_null()) {
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c[idx] = std::move(cont);
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return true;
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} else {
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return false;
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}
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}
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bool define_d(unsigned idx, Ref<Cell> cell) {
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idx -= dreg_idx;
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if (idx < dreg_num && d[idx].is_null()) {
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d[idx] = std::move(cell);
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return true;
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} else {
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return false;
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}
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}
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void define_c4(Ref<Cell> cell) {
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if (d[0].is_null()) {
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d[0] = std::move(cell);
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}
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}
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bool define_c7(Ref<Tuple> tuple) {
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if (c7.is_null()) {
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c7 = std::move(tuple);
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}
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return true;
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}
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bool define(unsigned idx, StackEntry value);
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ControlRegs& operator&=(const ControlRegs& save); // clears all c[i]'s which are present in save
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ControlRegs& operator^=(const ControlRegs& save); // sets c[i]=save.c[i] for all save.c[i] != 0
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ControlRegs& operator^=(ControlRegs&& save);
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};
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struct ControlData {
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Ref<Stack> stack;
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ControlRegs save;
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int nargs;
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int cp;
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ControlData() : nargs(-1), cp(-1) {
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}
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ControlData(int _cp) : nargs(-1), cp(_cp) {
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}
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ControlData(Ref<Stack> _stack) : stack(std::move(_stack)), nargs(-1), cp(-1) {
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}
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ControlData(int _cp, Ref<Stack> _stack, int _nargs = -1) : stack(std::move(_stack)), nargs(_nargs), cp(_cp) {
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}
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};
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class Continuation : public td::CntObject {
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public:
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virtual int jump(VmState* st) const & = 0;
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virtual int jump_w(VmState* st) &;
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virtual ControlData* get_cdata() {
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return 0;
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}
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virtual const ControlData* get_cdata() const {
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return 0;
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}
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bool has_c0() const;
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Continuation() {
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}
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Continuation(const Continuation&) = default;
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Continuation(Continuation&&) {
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}
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Continuation& operator=(const Continuation&) {
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return *this;
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}
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Continuation& operator=(Continuation&&) {
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return *this;
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}
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~Continuation() override = default;
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};
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class QuitCont : public Continuation {
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int exit_code;
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public:
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QuitCont(int _code = 0) : exit_code(_code) {
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}
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~QuitCont() override = default;
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int jump(VmState* st) const & override {
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return ~exit_code;
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}
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};
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class ExcQuitCont : public Continuation {
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public:
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ExcQuitCont() = default;
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~ExcQuitCont() override = default;
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int jump(VmState* st) const & override;
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};
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class PushIntCont : public Continuation {
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int push_val;
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Ref<Continuation> next;
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public:
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PushIntCont(int val, Ref<Continuation> _next) : push_val(val), next(_next) {
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}
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~PushIntCont() override = default;
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int jump(VmState* st) const & override;
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int jump_w(VmState* st) & override;
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};
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class RepeatCont : public Continuation {
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Ref<Continuation> body, after;
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long long count;
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public:
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RepeatCont(Ref<Continuation> _body, Ref<Continuation> _after, long long _count)
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: body(std::move(_body)), after(std::move(_after)), count(_count) {
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}
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~RepeatCont() override = default;
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int jump(VmState* st) const & override;
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int jump_w(VmState* st) & override;
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};
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class AgainCont : public Continuation {
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Ref<Continuation> body;
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public:
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AgainCont(Ref<Continuation> _body) : body(std::move(_body)) {
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}
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~AgainCont() override = default;
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int jump(VmState* st) const & override;
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int jump_w(VmState* st) & override;
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};
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class UntilCont : public Continuation {
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Ref<Continuation> body, after;
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public:
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UntilCont(Ref<Continuation> _body, Ref<Continuation> _after) : body(std::move(_body)), after(std::move(_after)) {
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}
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~UntilCont() override = default;
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int jump(VmState* st) const & override;
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int jump_w(VmState* st) & override;
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};
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class WhileCont : public Continuation {
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Ref<Continuation> cond, body, after;
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bool chkcond;
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public:
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WhileCont(Ref<Continuation> _cond, Ref<Continuation> _body, Ref<Continuation> _after, bool _chk = true)
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: cond(std::move(_cond)), body(std::move(_body)), after(std::move(_after)), chkcond(_chk) {
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}
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~WhileCont() override = default;
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int jump(VmState* st) const & override;
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int jump_w(VmState* st) & override;
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};
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class ArgContExt : public Continuation {
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ControlData data;
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Ref<Continuation> ext;
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public:
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ArgContExt(Ref<Continuation> _ext) : data(), ext(_ext) {
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}
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ArgContExt(Ref<Continuation> _ext, Ref<Stack> _stack) : data(_stack), ext(_ext) {
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}
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ArgContExt(const ArgContExt&) = default;
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ArgContExt(ArgContExt&&) = default;
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~ArgContExt() override = default;
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int jump(VmState* st) const & override;
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int jump_w(VmState* st) & override;
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ControlData* get_cdata() override {
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return &data;
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}
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const ControlData* get_cdata() const override {
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return &data;
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}
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td::CntObject* make_copy() const override {
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return new ArgContExt{*this};
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}
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};
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class OrdCont : public Continuation {
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ControlData data;
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Ref<CellSlice> code;
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friend class VmState;
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public:
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OrdCont() : data(), code() {
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}
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//OrdCont(Ref<CellSlice> _code) : data(), code(std::move(_code)) {}
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OrdCont(Ref<CellSlice> _code, int _cp) : data(_cp), code(std::move(_code)) {
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}
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//OrdCont(Ref<CellSlice> _code, Ref<Stack> _stack) : data(std::move(_stack)), code(std::move(_code)) {}
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OrdCont(Ref<CellSlice> _code, int _cp, Ref<Stack> _stack, int nargs = -1)
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: data(_cp, std::move(_stack), nargs), code(std::move(_code)) {
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}
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OrdCont(const OrdCont&) = default;
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OrdCont(OrdCont&&) = default;
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~OrdCont() override = default;
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td::CntObject* make_copy() const override {
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return new OrdCont{*this};
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}
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int jump(VmState* st) const & override;
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int jump_w(VmState* st) & override;
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ControlData* get_cdata() override {
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return &data;
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}
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const ControlData* get_cdata() const override {
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return &data;
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}
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Stack& get_stack() {
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return data.stack.write();
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}
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const Stack& get_stack_const() const {
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return *(data.stack);
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}
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Ref<Stack> get_stack_ref() const {
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return data.stack;
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}
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Ref<OrdCont> copy_ord() const & {
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return Ref<OrdCont>{true, *this};
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}
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Ref<OrdCont> copy_ord() && {
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return Ref<OrdCont>{true, *this};
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}
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};
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struct GasLimits {
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static constexpr long long infty = (1ULL << 63) - 1;
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long long gas_max, gas_limit, gas_credit, gas_remaining, gas_base;
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GasLimits() : gas_max(infty), gas_limit(infty), gas_credit(0), gas_remaining(infty), gas_base(infty) {
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}
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GasLimits(long long _limit, long long _max = infty, long long _credit = 0)
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: gas_max(_max)
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, gas_limit(_limit)
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, gas_credit(_credit)
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, gas_remaining(_limit + _credit)
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, gas_base(gas_remaining) {
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}
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long long gas_consumed() const {
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return gas_base - gas_remaining;
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}
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void set_limits(long long _max, long long _limit, long long _credit = 0);
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void change_base(long long _base) {
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gas_remaining += _base - gas_base;
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gas_base = _base;
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}
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void change_limit(long long _limit);
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void consume(long long amount) {
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// LOG(DEBUG) << "consume " << amount << " gas (" << gas_remaining << " remaining)";
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gas_remaining -= amount;
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}
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bool try_consume(long long amount) {
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// LOG(DEBUG) << "try consume " << amount << " gas (" << gas_remaining << " remaining)";
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return (gas_remaining -= amount) >= 0;
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}
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void gas_exception() const;
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void gas_exception(bool cond) const {
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if (!cond) {
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gas_exception();
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}
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}
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void consume_chk(long long amount) {
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gas_exception(try_consume(amount));
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}
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void check() const {
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gas_exception(gas_remaining >= 0);
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}
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bool final_ok() const {
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return gas_remaining >= gas_credit;
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}
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};
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class VmState final : public VmStateInterface {
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Ref<CellSlice> code;
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Ref<Stack> stack;
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ControlRegs cr;
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int cp;
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long long steps{0};
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const DispatchTable* dispatch;
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Ref<QuitCont> quit0, quit1;
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VmLog log;
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GasLimits gas;
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std::vector<Ref<Cell>> libraries;
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int stack_trace{0}, debug_off{0};
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public:
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static constexpr unsigned cell_load_gas_price = 100, cell_create_gas_price = 500, exception_gas_price = 50,
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tuple_entry_gas_price = 1;
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VmState();
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VmState(Ref<CellSlice> _code);
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VmState(Ref<CellSlice> _code, Ref<Stack> _stack, int flags = 0, Ref<Cell> _data = {}, VmLog log = {},
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std::vector<Ref<Cell>> _libraries = {}, Ref<Tuple> init_c7 = {});
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VmState(Ref<CellSlice> _code, Ref<Stack> _stack, const GasLimits& _gas, int flags = 0, Ref<Cell> _data = {},
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VmLog log = {}, std::vector<Ref<Cell>> _libraries = {}, Ref<Tuple> init_c7 = {});
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template <typename... Args>
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VmState(Ref<Cell> code_cell, Args&&... args)
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: VmState(convert_code_cell(std::move(code_cell)), std::forward<Args>(args)...) {
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}
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bool set_gas_limits(long long _max, long long _limit, long long _credit = 0);
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bool final_gas_ok() const {
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return gas.final_ok();
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}
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long long gas_consumed() const {
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return gas.gas_consumed();
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}
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void consume_gas(long long amount) {
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gas.consume(amount);
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}
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void consume_tuple_gas(unsigned tuple_len) {
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consume_gas(tuple_len * tuple_entry_gas_price);
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}
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void consume_tuple_gas(const Ref<vm::Tuple>& tup) {
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if (tup.not_null()) {
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consume_tuple_gas((unsigned)tup->size());
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}
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}
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GasLimits get_gas_limits() const {
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return gas;
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}
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void change_gas_limit(long long new_limit);
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template <typename... Args>
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void check_underflow(Args... args) {
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stack->check_underflow(args...);
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}
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bool register_library_collection(Ref<Cell> lib);
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Ref<Cell> load_library(
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td::ConstBitPtr hash) override; // may throw a dictionary exception; returns nullptr if library is not found
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void register_cell_load() override;
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void register_cell_create() override;
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bool init_cp(int new_cp);
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bool set_cp(int new_cp);
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void force_cp(int new_cp);
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int get_cp() const {
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return cp;
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}
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int incr_stack_trace(int v) {
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return stack_trace += v;
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}
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long long get_steps_count() const {
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return steps;
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}
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td::BitArray<256> get_state_hash() const;
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td::BitArray<256> get_final_state_hash(int exit_code) const;
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int step();
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int run();
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Stack& get_stack() {
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return stack.write();
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}
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const Stack& get_stack_const() const {
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return *stack;
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}
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Ref<Stack> get_stack_ref() const {
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return stack;
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}
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Ref<Continuation> get_c0() const {
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return cr.c[0];
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}
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Ref<Continuation> get_c1() const {
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return cr.c[1];
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}
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Ref<Continuation> get_c2() const {
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return cr.c[2];
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}
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Ref<Continuation> get_c3() const {
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return cr.c[3];
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}
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Ref<Cell> get_c4() const {
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return cr.d[0];
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}
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Ref<Tuple> get_c7() const {
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return cr.c7;
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}
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Ref<Continuation> get_c(unsigned idx) const {
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return cr.get_c(idx);
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}
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Ref<Cell> get_d(unsigned idx) const {
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return cr.get_d(idx);
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}
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StackEntry get(unsigned idx) const {
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return cr.get(idx);
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}
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const VmLog& get_log() const {
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return log;
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}
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void define_c0(Ref<Continuation> cont) {
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cr.define_c0(std::move(cont));
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}
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void set_c0(Ref<Continuation> cont) {
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cr.set_c0(std::move(cont));
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}
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void set_c1(Ref<Continuation> cont) {
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cr.set_c1(std::move(cont));
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}
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void set_c2(Ref<Continuation> cont) {
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cr.set_c2(std::move(cont));
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}
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bool set_c(unsigned idx, Ref<Continuation> val) {
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return cr.set_c(idx, std::move(val));
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}
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bool set_d(unsigned idx, Ref<Cell> val) {
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return cr.set_d(idx, std::move(val));
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}
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void set_c4(Ref<Cell> val) {
|
|
cr.set_c4(std::move(val));
|
|
}
|
|
bool set_c7(Ref<Tuple> val) {
|
|
return cr.set_c7(std::move(val));
|
|
}
|
|
bool set(unsigned idx, StackEntry val) {
|
|
return cr.set(idx, std::move(val));
|
|
}
|
|
void set_stack(Ref<Stack> new_stk) {
|
|
stack = std::move(new_stk);
|
|
}
|
|
Ref<Stack> swap_stack(Ref<Stack> new_stk) {
|
|
stack.swap(new_stk);
|
|
return new_stk;
|
|
}
|
|
void ensure_throw(bool cond) const {
|
|
if (!cond) {
|
|
fatal();
|
|
}
|
|
}
|
|
void set_code(Ref<CellSlice> _code, int _cp) {
|
|
code = std::move(_code);
|
|
force_cp(_cp);
|
|
}
|
|
Ref<CellSlice> get_code() const {
|
|
return code;
|
|
}
|
|
void push_code() {
|
|
get_stack().push_cellslice(get_code());
|
|
}
|
|
void adjust_cr(const ControlRegs& save) {
|
|
cr ^= save;
|
|
}
|
|
void adjust_cr(ControlRegs&& save) {
|
|
cr ^= save;
|
|
}
|
|
void preclear_cr(const ControlRegs& save) {
|
|
cr &= save;
|
|
}
|
|
int call(Ref<Continuation> cont);
|
|
int call(Ref<Continuation> cont, int pass_args, int ret_args = -1);
|
|
int jump(Ref<Continuation> cont);
|
|
int jump(Ref<Continuation> cont, int pass_args);
|
|
int ret();
|
|
int ret(int ret_args);
|
|
int ret_alt();
|
|
int ret_alt(int ret_args);
|
|
int repeat(Ref<Continuation> body, Ref<Continuation> after, long long count);
|
|
int again(Ref<Continuation> body);
|
|
int until(Ref<Continuation> body, Ref<Continuation> after);
|
|
int loop_while(Ref<Continuation> cond, Ref<Continuation> body, Ref<Continuation> after);
|
|
int throw_exception(int excno, StackEntry&& arg);
|
|
int throw_exception(int excno);
|
|
Ref<OrdCont> extract_cc(int save_cr = 1, int stack_copy = -1, int cc_args = -1);
|
|
void fatal(void) const {
|
|
throw VmFatal{};
|
|
}
|
|
int jump_to(Ref<Continuation> cont) {
|
|
return cont->is_unique() ? cont.unique_write().jump_w(this) : cont->jump(this);
|
|
}
|
|
static Ref<CellSlice> convert_code_cell(Ref<Cell> code_cell);
|
|
|
|
private:
|
|
void init_cregs(bool same_c3 = false, bool push_0 = true);
|
|
};
|
|
|
|
int run_vm_code(Ref<CellSlice> _code, Ref<Stack>& _stack, int flags = 0, Ref<Cell>* data_ptr = 0, VmLog log = {},
|
|
long long* steps = nullptr, GasLimits* gas_limits = nullptr, std::vector<Ref<Cell>> libraries = {},
|
|
Ref<Tuple> init_c7 = {});
|
|
int run_vm_code(Ref<CellSlice> _code, Stack& _stack, int flags = 0, Ref<Cell>* data_ptr = 0, VmLog log = {},
|
|
long long* steps = nullptr, GasLimits* gas_limits = nullptr, std::vector<Ref<Cell>> libraries = {},
|
|
Ref<Tuple> init_c7 = {});
|
|
|
|
ControlData* force_cdata(Ref<Continuation>& cont);
|
|
ControlRegs* force_cregs(Ref<Continuation>& cont);
|
|
|
|
Ref<vm::Cell> lookup_library_in(td::ConstBitPtr key, Ref<vm::Cell> lib_root);
|
|
|
|
} // namespace vm
|