expr.h 8.4 KB

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  1. #pragma once
  2. #include "codeobject.h"
  3. #include "common.h"
  4. #include "lexer.h"
  5. #include "error.h"
  6. #include "vm.h"
  7. namespace pkpy{
  8. struct CodeEmitContext;
  9. struct Expr;
  10. typedef std::unique_ptr<Expr> Expr_;
  11. struct Expr{
  12. int line = 0;
  13. virtual ~Expr() = default;
  14. virtual void emit(CodeEmitContext* ctx) = 0;
  15. virtual bool is_literal() const { return false; }
  16. virtual bool is_json_object() const { return false; }
  17. virtual bool is_attrib() const { return false; }
  18. virtual bool is_compare() const { return false; }
  19. virtual int star_level() const { return 0; }
  20. virtual bool is_tuple() const { return false; }
  21. bool is_starred() const { return star_level() > 0; }
  22. std::string str() const { PK_ASSERT(false); }
  23. // for OP_DELETE_XXX
  24. [[nodiscard]] virtual bool emit_del(CodeEmitContext* ctx) {
  25. PK_UNUSED(ctx);
  26. return false;
  27. }
  28. // for OP_STORE_XXX
  29. [[nodiscard]] virtual bool emit_store(CodeEmitContext* ctx) {
  30. PK_UNUSED(ctx);
  31. return false;
  32. }
  33. };
  34. struct CodeEmitContext{
  35. VM* vm;
  36. CodeObject_ co;
  37. // some bugs on MSVC (error C2280) when using std::vector<Expr_>
  38. // so we use stack_no_copy instead
  39. stack_no_copy<Expr_> s_expr;
  40. int level;
  41. std::set<Str> global_names;
  42. CodeEmitContext(VM* vm, CodeObject_ co, int level): vm(vm), co(co), level(level) {}
  43. int curr_block_i = 0;
  44. bool is_compiling_class = false;
  45. int for_loop_depth = 0;
  46. int get_loop() const;
  47. CodeBlock* enter_block(CodeBlockType type);
  48. void exit_block();
  49. void emit_expr(); // clear the expression stack and generate bytecode
  50. std::string _log_s_expr();
  51. int emit(Opcode opcode, int arg, int line);
  52. void patch_jump(int index);
  53. bool add_label(StrName name);
  54. int add_varname(StrName name);
  55. int add_const(PyObject* v);
  56. int add_func_decl(FuncDecl_ decl);
  57. };
  58. struct NameExpr: Expr{
  59. StrName name;
  60. NameScope scope;
  61. NameExpr(StrName name, NameScope scope): name(name), scope(scope) {}
  62. void emit(CodeEmitContext* ctx) override;
  63. bool emit_del(CodeEmitContext* ctx) override;
  64. bool emit_store(CodeEmitContext* ctx) override;
  65. };
  66. struct InvertExpr: Expr{
  67. Expr_ child;
  68. InvertExpr(Expr_&& child): child(std::move(child)) {}
  69. void emit(CodeEmitContext* ctx) override;
  70. };
  71. struct StarredExpr: Expr{
  72. int level;
  73. Expr_ child;
  74. StarredExpr(int level, Expr_&& child): level(level), child(std::move(child)) {}
  75. int star_level() const override { return level; }
  76. void emit(CodeEmitContext* ctx) override;
  77. bool emit_store(CodeEmitContext* ctx) override;
  78. };
  79. struct NotExpr: Expr{
  80. Expr_ child;
  81. NotExpr(Expr_&& child): child(std::move(child)) {}
  82. void emit(CodeEmitContext* ctx) override;
  83. };
  84. struct AndExpr: Expr{
  85. Expr_ lhs;
  86. Expr_ rhs;
  87. void emit(CodeEmitContext* ctx) override;
  88. };
  89. struct OrExpr: Expr{
  90. Expr_ lhs;
  91. Expr_ rhs;
  92. void emit(CodeEmitContext* ctx) override;
  93. };
  94. // [None, True, False, ...]
  95. struct Literal0Expr: Expr{
  96. TokenIndex token;
  97. Literal0Expr(TokenIndex token): token(token) {}
  98. bool is_json_object() const override { return true; }
  99. void emit(CodeEmitContext* ctx) override;
  100. };
  101. struct LongExpr: Expr{
  102. Str s;
  103. LongExpr(const Str& s): s(s) {}
  104. void emit(CodeEmitContext* ctx) override;
  105. };
  106. struct BytesExpr: Expr{
  107. Str s;
  108. BytesExpr(const Str& s): s(s) {}
  109. void emit(CodeEmitContext* ctx) override;
  110. };
  111. // @num, @str which needs to invoke OP_LOAD_CONST
  112. struct LiteralExpr: Expr{
  113. TokenValue value;
  114. LiteralExpr(TokenValue value): value(value) {}
  115. void emit(CodeEmitContext* ctx) override;
  116. bool is_literal() const override { return true; }
  117. bool is_json_object() const override { return true; }
  118. };
  119. struct NegatedExpr: Expr{
  120. Expr_ child;
  121. NegatedExpr(Expr_&& child): child(std::move(child)) {}
  122. void emit(CodeEmitContext* ctx) override;
  123. bool is_json_object() const override { return child->is_literal(); }
  124. };
  125. struct SliceExpr: Expr{
  126. Expr_ start;
  127. Expr_ stop;
  128. Expr_ step;
  129. void emit(CodeEmitContext* ctx) override;
  130. };
  131. struct DictItemExpr: Expr{
  132. Expr_ key; // maybe nullptr if it is **kwargs
  133. Expr_ value;
  134. int star_level() const override { return value->star_level(); }
  135. void emit(CodeEmitContext* ctx) override;
  136. };
  137. struct SequenceExpr: Expr{
  138. std::vector<Expr_> items;
  139. SequenceExpr(std::vector<Expr_>&& items): items(std::move(items)) {}
  140. virtual Opcode opcode() const = 0;
  141. void emit(CodeEmitContext* ctx) override {
  142. for(auto& item: items) item->emit(ctx);
  143. ctx->emit(opcode(), items.size(), line);
  144. }
  145. };
  146. struct ListExpr: SequenceExpr{
  147. using SequenceExpr::SequenceExpr;
  148. Opcode opcode() const override {
  149. for(auto& e: items) if(e->is_starred()) return OP_BUILD_LIST_UNPACK;
  150. return OP_BUILD_LIST;
  151. }
  152. bool is_json_object() const override { return true; }
  153. };
  154. struct DictExpr: SequenceExpr{
  155. using SequenceExpr::SequenceExpr;
  156. Opcode opcode() const override {
  157. for(auto& e: items) if(e->is_starred()) return OP_BUILD_DICT_UNPACK;
  158. return OP_BUILD_DICT;
  159. }
  160. bool is_json_object() const override { return true; }
  161. };
  162. struct SetExpr: SequenceExpr{
  163. using SequenceExpr::SequenceExpr;
  164. Opcode opcode() const override {
  165. for(auto& e: items) if(e->is_starred()) return OP_BUILD_SET_UNPACK;
  166. return OP_BUILD_SET;
  167. }
  168. };
  169. struct TupleExpr: SequenceExpr{
  170. using SequenceExpr::SequenceExpr;
  171. bool is_tuple() const override { return true; }
  172. Opcode opcode() const override {
  173. for(auto& e: items) if(e->is_starred()) return OP_BUILD_TUPLE_UNPACK;
  174. return OP_BUILD_TUPLE;
  175. }
  176. bool emit_store(CodeEmitContext* ctx) override;
  177. bool emit_del(CodeEmitContext* ctx) override;
  178. };
  179. struct CompExpr: Expr{
  180. Expr_ expr; // loop expr
  181. Expr_ vars; // loop vars
  182. Expr_ iter; // loop iter
  183. Expr_ cond; // optional if condition
  184. virtual Opcode op0() = 0;
  185. virtual Opcode op1() = 0;
  186. void emit(CodeEmitContext* ctx) override;
  187. };
  188. struct ListCompExpr: CompExpr{
  189. Opcode op0() override { return OP_BUILD_LIST; }
  190. Opcode op1() override { return OP_LIST_APPEND; }
  191. };
  192. struct DictCompExpr: CompExpr{
  193. Opcode op0() override { return OP_BUILD_DICT; }
  194. Opcode op1() override { return OP_DICT_ADD; }
  195. };
  196. struct SetCompExpr: CompExpr{
  197. Opcode op0() override { return OP_BUILD_SET; }
  198. Opcode op1() override { return OP_SET_ADD; }
  199. };
  200. struct LambdaExpr: Expr{
  201. FuncDecl_ decl;
  202. LambdaExpr(FuncDecl_ decl): decl(decl) {}
  203. void emit(CodeEmitContext* ctx) override {
  204. int index = ctx->add_func_decl(decl);
  205. ctx->emit(OP_LOAD_FUNCTION, index, line);
  206. }
  207. };
  208. struct FStringExpr: Expr{
  209. Str src;
  210. FStringExpr(const Str& src): src(src) {}
  211. void _load_simple_expr(CodeEmitContext* ctx, Str expr);
  212. void emit(CodeEmitContext* ctx) override;
  213. };
  214. struct SubscrExpr: Expr{
  215. Expr_ a;
  216. Expr_ b;
  217. void emit(CodeEmitContext* ctx) override;
  218. bool emit_del(CodeEmitContext* ctx) override;
  219. bool emit_store(CodeEmitContext* ctx) override;
  220. };
  221. struct AttribExpr: Expr{
  222. Expr_ a;
  223. Str b;
  224. AttribExpr(Expr_ a, const Str& b): a(std::move(a)), b(b) {}
  225. AttribExpr(Expr_ a, Str&& b): a(std::move(a)), b(std::move(b)) {}
  226. void emit(CodeEmitContext* ctx) override;
  227. bool emit_del(CodeEmitContext* ctx) override;
  228. bool emit_store(CodeEmitContext* ctx) override;
  229. void emit_method(CodeEmitContext* ctx);
  230. bool is_attrib() const override { return true; }
  231. };
  232. struct CallExpr: Expr{
  233. Expr_ callable;
  234. std::vector<Expr_> args;
  235. // **a will be interpreted as a special keyword argument: {"**": a}
  236. std::vector<std::pair<Str, Expr_>> kwargs;
  237. void emit(CodeEmitContext* ctx) override;
  238. };
  239. struct GroupedExpr: Expr{
  240. Expr_ a;
  241. GroupedExpr(Expr_&& a): a(std::move(a)) {}
  242. void emit(CodeEmitContext* ctx) override{
  243. a->emit(ctx);
  244. }
  245. bool emit_del(CodeEmitContext* ctx) override {
  246. return a->emit_del(ctx);
  247. }
  248. bool emit_store(CodeEmitContext* ctx) override {
  249. return a->emit_store(ctx);
  250. }
  251. };
  252. struct BinaryExpr: Expr{
  253. TokenIndex op;
  254. Expr_ lhs;
  255. Expr_ rhs;
  256. bool is_compare() const override;
  257. void _emit_compare(CodeEmitContext* ctx, std::vector<int>& jmps);
  258. void emit(CodeEmitContext* ctx) override;
  259. };
  260. struct TernaryExpr: Expr{
  261. Expr_ cond;
  262. Expr_ true_expr;
  263. Expr_ false_expr;
  264. void emit(CodeEmitContext* ctx) override;
  265. };
  266. } // namespace pkpy