mirror of
https://github.com/ton-blockchain/ton
synced 2025-02-12 19:22:37 +00:00
This is a very big change. If FunC has `.methods()` and `~methods()`, Tolk has only dot, one and only way to call a `.method()`. A method may mutate an object, or may not. It's a behavioral and semantic difference from FunC. - `cs.loadInt(32)` modifies a slice and returns an integer - `b.storeInt(x, 32)` modifies a builder - `b = b.storeInt()` also works, since it not only modifies, but returns - chained methods also work, they return `self` - everything works exactly as expected, similar to JS - no runtime overhead, exactly same Fift instructions - custom methods are created with ease - tilda `~` does not exist in Tolk at all
206 lines
6.9 KiB
C++
206 lines
6.9 KiB
C++
/*
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This file is part of TON Blockchain source code.
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TON Blockchain is free software; you can redistribute it and/or
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modify it under the terms of the GNU General Public License
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as published by the Free Software Foundation; either version 2
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of the License, or (at your option) any later version.
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TON Blockchain 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 General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with TON Blockchain. If not, see <http://www.gnu.org/licenses/>.
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In addition, as a special exception, the copyright holders give permission
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to link the code of portions of this program with the OpenSSL library.
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You must obey the GNU General Public License in all respects for all
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of the code used other than OpenSSL. If you modify file(s) with this
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exception, you may extend this exception to your version of the file(s),
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but you are not obligated to do so. If you do not wish to do so, delete this
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exception statement from your version. If you delete this exception statement
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from all source files in the program, then also delete it here.
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*/
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#include "tolk.h"
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#include "src-file.h"
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#include "ast.h"
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#include "compiler-state.h"
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namespace tolk {
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bool SymValCodeFunc::does_need_codegen() const {
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// when a function is declared, but not referenced from code in any way, don't generate its body
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if (!is_really_used && G.settings.remove_unused_functions) {
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return false;
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}
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// when a function is referenced like `var a = some_fn;` (or in some other non-call way), its continuation should exist
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if (flags & flagUsedAsNonCall) {
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return true;
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}
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// currently, there is no inlining, all functions are codegenerated
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// (but actually, unused ones are later removed by Fift)
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// in the future, we may want to implement a true AST inlining for "simple" functions
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return true;
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}
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void SymValCodeFunc::set_code(CodeBlob* code) {
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this->code = code;
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}
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void SymValAsmFunc::set_code(std::vector<AsmOp> code) {
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this->ext_compile = make_ext_compile(std::move(code));
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}
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static void generate_output_func(SymDef* func_sym) {
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SymValCodeFunc* func_val = dynamic_cast<SymValCodeFunc*>(func_sym->value);
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tolk_assert(func_val);
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std::string name = G.symbols.get_name(func_sym->sym_idx);
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if (G.is_verbosity(2)) {
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std::cerr << "\n\n=========================\nfunction " << name << " : " << func_val->get_type() << std::endl;
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}
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if (!func_val->code) {
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throw ParseError(func_sym->loc, "function `" + name + "` is just declared, not implemented");
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} else {
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CodeBlob& code = *(func_val->code);
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if (G.is_verbosity(3)) {
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code.print(std::cerr, 9);
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}
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code.simplify_var_types();
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if (G.is_verbosity(5)) {
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std::cerr << "after simplify_var_types: \n";
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code.print(std::cerr, 0);
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}
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code.prune_unreachable_code();
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if (G.is_verbosity(5)) {
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std::cerr << "after prune_unreachable: \n";
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code.print(std::cerr, 0);
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}
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code.split_vars(true);
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if (G.is_verbosity(5)) {
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std::cerr << "after split_vars: \n";
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code.print(std::cerr, 0);
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}
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for (int i = 0; i < 8; i++) {
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code.compute_used_code_vars();
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if (G.is_verbosity(4)) {
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std::cerr << "after compute_used_vars: \n";
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code.print(std::cerr, 6);
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}
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code.fwd_analyze();
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if (G.is_verbosity(5)) {
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std::cerr << "after fwd_analyze: \n";
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code.print(std::cerr, 6);
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}
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code.prune_unreachable_code();
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if (G.is_verbosity(5)) {
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std::cerr << "after prune_unreachable: \n";
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code.print(std::cerr, 6);
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}
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}
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code.mark_noreturn();
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if (G.is_verbosity(3)) {
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code.print(std::cerr, 15);
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}
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if (G.is_verbosity(2)) {
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std::cerr << "\n---------- resulting code for " << name << " -------------\n";
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}
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const char* modifier = "";
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if (func_val->is_inline()) {
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modifier = "INLINE";
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} else if (func_val->is_inline_ref()) {
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modifier = "REF";
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}
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std::cout << std::string(2, ' ') << name << " PROC" << modifier << ":<{\n";
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int mode = 0;
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if (G.settings.stack_layout_comments) {
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mode |= Stack::_StkCmt | Stack::_CptStkCmt;
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}
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if (func_val->is_inline() && code.ops->noreturn()) {
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mode |= Stack::_InlineFunc;
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}
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if (func_val->is_inline() || func_val->is_inline_ref()) {
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mode |= Stack::_InlineAny;
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}
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code.generate_code(std::cout, mode, 2);
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std::cout << std::string(2, ' ') << "}>\n";
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if (G.is_verbosity(2)) {
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std::cerr << "--------------\n";
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}
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}
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}
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void pipeline_generate_fif_output_to_std_cout(const AllSrcFiles& all_src_files) {
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std::cout << "\"Asm.fif\" include\n";
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std::cout << "// automatically generated from ";
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bool need_comma = false;
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for (const SrcFile* file : all_src_files) {
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if (!file->is_stdlib_file()) {
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if (need_comma) {
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std::cout << ", ";
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}
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std::cout << file->rel_filename;
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need_comma = true;
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}
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}
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std::cout << std::endl;
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std::cout << "PROGRAM{\n";
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bool has_main_procedure = false;
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for (SymDef* func_sym : G.all_code_functions) {
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SymValCodeFunc* func_val = dynamic_cast<SymValCodeFunc*>(func_sym->value);
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tolk_assert(func_val);
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if (!func_val->does_need_codegen()) {
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if (G.is_verbosity(2)) {
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std::cerr << func_sym->name() << ": code not generated, function does not need codegen\n";
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}
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continue;
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}
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std::string name = G.symbols.get_name(func_sym->sym_idx);
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if (func_val->is_entrypoint() && (name == "main" || name == "onInternalMessage")) {
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has_main_procedure = true;
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}
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std::cout << std::string(2, ' ');
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if (func_val->method_id.is_null()) {
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std::cout << "DECLPROC " << name << "\n";
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} else {
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std::cout << func_val->method_id << " DECLMETHOD " << name << "\n";
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}
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}
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if (!has_main_procedure) {
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throw Fatal("the contract has no entrypoint; forgot `fun onInternalMessage(...)`?");
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}
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for (SymDef* gvar_sym : G.all_global_vars) {
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auto* glob_val = dynamic_cast<SymValGlobVar*>(gvar_sym->value);
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tolk_assert(glob_val);
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if (!glob_val->is_really_used && G.settings.remove_unused_functions) {
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if (G.is_verbosity(2)) {
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std::cerr << gvar_sym->name() << ": variable not generated, it's unused\n";
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}
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continue;
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}
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std::string name = G.symbols.get_name(gvar_sym->sym_idx);
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std::cout << std::string(2, ' ') << "DECLGLOBVAR " << name << "\n";
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}
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for (SymDef* func_sym : G.all_code_functions) {
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SymValCodeFunc* func_val = dynamic_cast<SymValCodeFunc*>(func_sym->value);
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if (!func_val->does_need_codegen()) {
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continue;
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}
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generate_output_func(func_sym);
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}
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std::cout << "}END>c\n";
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if (!G.settings.boc_output_filename.empty()) {
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std::cout << "boc>B \"" << G.settings.boc_output_filename << "\" B>file\n";
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}
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}
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} // namespace tolk
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