ExprNodes.py 144 KB
Newer Older
William Stein's avatar
William Stein committed
1 2 3 4
#
#   Pyrex - Parse tree nodes for expressions
#

5
import operator
William Stein's avatar
William Stein committed
6 7
from string import join

8
from Errors import error, warning, InternalError
William Stein's avatar
William Stein committed
9 10 11
import Naming
from Nodes import Node
import PyrexTypes
12
from PyrexTypes import py_object_type, c_long_type, typecast, error_type
William Stein's avatar
William Stein committed
13 14
import Symtab
import Options
15
from Annotate import AnnotationItem
William Stein's avatar
William Stein committed
16

William Stein's avatar
William Stein committed
17
from Cython.Debugging import print_call_chain
William Stein's avatar
William Stein committed
18 19 20
from DebugFlags import debug_disposal_code, debug_temp_alloc, \
    debug_coercion

21

William Stein's avatar
William Stein committed
22 23 24 25 26 27 28 29 30 31 32 33 34
class ExprNode(Node):
    #  subexprs     [string]     Class var holding names of subexpr node attrs
    #  type         PyrexType    Type of the result
    #  result_code  string       Code fragment
    #  result_ctype string       C type of result_code if different from type
    #  is_temp      boolean      Result is in a temporary variable
    #  is_sequence_constructor  
    #               boolean      Is a list or tuple constructor expression
    #  saved_subexpr_nodes
    #               [ExprNode or [ExprNode or None] or None]
    #                            Cached result of subexpr_nodes()
    
    result_ctype = None
35
    type = None
William Stein's avatar
William Stein committed
36 37 38 39 40 41 42 43 44 45 46 47 48 49 50 51 52 53 54 55 56 57 58 59 60 61 62 63 64 65 66 67 68 69 70 71 72 73 74 75 76 77 78 79 80 81 82 83 84 85 86 87 88 89 90 91 92 93 94 95

    #  The Analyse Expressions phase for expressions is split
    #  into two sub-phases:
    #
    #    Analyse Types
    #      Determines the result type of the expression based
    #      on the types of its sub-expressions, and inserts
    #      coercion nodes into the expression tree where needed.
    #      Marks nodes which will need to have temporary variables
    #      allocated.
    #
    #    Allocate Temps
    #      Allocates temporary variables where needed, and fills
    #      in the result_code field of each node.
    #
    #  ExprNode provides some convenience routines which
    #  perform both of the above phases. These should only
    #  be called from statement nodes, and only when no
    #  coercion nodes need to be added around the expression
    #  being analysed. In that case, the above two phases
    #  should be invoked separately.
    #
    #  Framework code in ExprNode provides much of the common
    #  processing for the various phases. It makes use of the
    #  'subexprs' class attribute of ExprNodes, which should
    #  contain a list of the names of attributes which can
    #  hold sub-nodes or sequences of sub-nodes.
    #  
    #  The framework makes use of a number of abstract methods. 
    #  Their responsibilities are as follows.
    #
    #    Declaration Analysis phase
    #
    #      analyse_target_declaration
    #        Called during the Analyse Declarations phase to analyse
    #        the LHS of an assignment or argument of a del statement.
    #        Nodes which cannot be the LHS of an assignment need not
    #        implement it.
    #
    #    Expression Analysis phase
    #
    #      analyse_types
    #        - Call analyse_types on all sub-expressions.
    #        - Check operand types, and wrap coercion nodes around
    #          sub-expressions where needed.
    #        - Set the type of this node.
    #        - If a temporary variable will be required for the
    #          result, set the is_temp flag of this node.
    #
    #      analyse_target_types
    #        Called during the Analyse Types phase to analyse
    #        the LHS of an assignment or argument of a del 
    #        statement. Similar responsibilities to analyse_types.
    #
    #      allocate_temps
    #        - Call allocate_temps for all sub-nodes.
    #        - Call allocate_temp for this node.
    #        - If a temporary was allocated, call release_temp on 
    #          all sub-expressions.
    #
96 97 98 99 100 101 102
    #      allocate_target_temps
    #        - Call allocate_temps on sub-nodes and allocate any other
    #          temps used during assignment.
    #        - Fill in result_code with a C lvalue if needed.
    #        - If a rhs node is supplied, call release_temp on it.
    #        - Call release_temp on sub-nodes and release any other
    #          temps used during assignment.
William Stein's avatar
William Stein committed
103
    #
104
    #      calculate_result_code
Stefan Behnel's avatar
Stefan Behnel committed
105 106 107
    #        - Called during the Allocate Temps phase. Should return a
    #          C code fragment evaluating to the result. This is only
    #          called when the result is not a temporary.
108 109 110 111 112
    #
    #      target_code
    #        Called by the default implementation of allocate_target_temps.
    #        Should return a C lvalue for assigning to the node. The default
    #        implementation calls calculate_result_code.
William Stein's avatar
William Stein committed
113 114 115 116 117 118 119 120 121 122 123 124 125 126 127 128 129 130 131 132 133 134 135 136 137 138 139 140 141 142 143 144 145 146 147 148 149 150 151 152 153 154 155 156 157 158 159 160 161 162 163 164 165 166 167 168 169
    #
    #      check_const
    #        - Check that this node and its subnodes form a
    #          legal constant expression. If so, do nothing,
    #          otherwise call not_const. 
    #
    #        The default implementation of check_const 
    #        assumes that the expression is not constant.
    #
    #      check_const_addr
    #        - Same as check_const, except check that the
    #          expression is a C lvalue whose address is
    #          constant. Otherwise, call addr_not_const.
    #
    #        The default implementation of calc_const_addr
    #        assumes that the expression is not a constant 
    #        lvalue.
    #
    #   Code Generation phase
    #
    #      generate_evaluation_code
    #        - Call generate_evaluation_code for sub-expressions.
    #        - Perform the functions of generate_result_code
    #          (see below).
    #        - If result is temporary, call generate_disposal_code
    #          on all sub-expressions.
    #
    #        A default implementation of generate_evaluation_code
    #        is provided which uses the following abstract method:
    #
    #          generate_result_code
    #            - Generate any C statements necessary to calculate
    #              the result of this node from the results of its
    #              sub-expressions.
    #
    #      generate_assignment_code
    #        Called on the LHS of an assignment.
    #        - Call generate_evaluation_code for sub-expressions.
    #        - Generate code to perform the assignment.
    #        - If the assignment absorbed a reference, call
    #          generate_post_assignment_code on the RHS,
    #          otherwise call generate_disposal_code on it.
    #
    #      generate_deletion_code
    #        Called on an argument of a del statement.
    #        - Call generate_evaluation_code for sub-expressions.
    #        - Generate code to perform the deletion.
    #        - Call generate_disposal_code on all sub-expressions.
    #
    #
    
    is_sequence_constructor = 0
    is_attribute = 0
    
    saved_subexpr_nodes = None
    is_temp = 0

170 171 172
    def get_child_attrs(self):
        """Automatically provide the contents of subexprs as children, unless child_attr
        has been declared. See Nodes.Node.get_child_accessors."""
Robert Bradshaw's avatar
Robert Bradshaw committed
173 174 175
        if self.child_attrs is not None:
            return self.child_attrs
        elif self.subexprs is not None:
176 177
            return self.subexprs
        
William Stein's avatar
William Stein committed
178 179 180 181 182 183 184 185 186 187 188 189 190 191 192 193 194 195 196 197 198 199 200 201 202 203 204 205 206 207 208 209 210 211 212 213 214 215 216 217 218 219 220 221 222
    def not_implemented(self, method_name):
        print_call_chain(method_name, "not implemented") ###
        raise InternalError(
            "%s.%s not implemented" %
                (self.__class__.__name__, method_name))		
                
    def is_lvalue(self):
        return 0
    
    def is_ephemeral(self):
        #  An ephemeral node is one whose result is in
        #  a Python temporary and we suspect there are no
        #  other references to it. Certain operations are
        #  disallowed on such values, since they are
        #  likely to result in a dangling pointer.
        return self.type.is_pyobject and self.is_temp

    def subexpr_nodes(self):
        #  Extract a list of subexpression nodes based
        #  on the contents of the subexprs class attribute.
        if self.saved_subexpr_nodes is None:
            nodes = []
            for name in self.subexprs:
                item = getattr(self, name)
                if item:
                    if isinstance(item, ExprNode):
                        nodes.append(item)
                    else:
                        nodes.extend(item)
            self.saved_subexpr_nodes = nodes
        return self.saved_subexpr_nodes
    
    def result_as(self, type = None):
        #  Return the result code cast to the specified C type.
        return typecast(type, self.ctype(), self.result_code)
    
    def py_result(self):
        #  Return the result code cast to PyObject *.
        return self.result_as(py_object_type)
    
    def ctype(self):
        #  Return the native C type of the result (i.e. the
        #  C type of the result_code expression).
        return self.result_ctype or self.type
    
223 224 225 226 227 228 229 230
    def compile_time_value(self, denv):
        #  Return value of compile-time expression, or report error.
        error(self.pos, "Invalid compile-time expression")
    
    def compile_time_value_error(self, e):
        error(self.pos, "Error in compile-time expression: %s: %s" % (
            e.__class__.__name__, e))
    
William Stein's avatar
William Stein committed
231 232 233 234 235 236 237 238 239 240 241 242 243 244 245 246 247 248 249 250 251 252 253
    # ------------- Declaration Analysis ----------------
    
    def analyse_target_declaration(self, env):
        error(self.pos, "Cannot assign to or delete this")
    
    # ------------- Expression Analysis ----------------
    
    def analyse_const_expression(self, env):
        #  Called during the analyse_declarations phase of a
        #  constant expression. Analyses the expression's type,
        #  checks whether it is a legal const expression,
        #  and determines its value.
        self.analyse_types(env)
        self.allocate_temps(env)
        self.check_const()
    
    def analyse_expressions(self, env):
        #  Convenience routine performing both the Type
        #  Analysis and Temp Allocation phases for a whole 
        #  expression.
        self.analyse_types(env)
        self.allocate_temps(env)
    
254
    def analyse_target_expression(self, env, rhs):
William Stein's avatar
William Stein committed
255 256 257 258
        #  Convenience routine performing both the Type
        #  Analysis and Temp Allocation phases for the LHS of
        #  an assignment.
        self.analyse_target_types(env)
259
        self.allocate_target_temps(env, rhs)
William Stein's avatar
William Stein committed
260 261 262 263 264 265 266 267 268 269 270 271 272 273 274 275 276 277 278 279 280 281 282 283 284 285 286 287 288 289 290 291 292 293 294 295 296 297 298 299 300 301 302 303 304 305 306 307 308 309 310 311 312 313 314 315 316 317 318 319 320
    
    def analyse_boolean_expression(self, env):
        #  Analyse expression and coerce to a boolean.
        self.analyse_types(env)
        bool = self.coerce_to_boolean(env)
        bool.allocate_temps(env)
        return bool
    
    def analyse_temp_boolean_expression(self, env):
        #  Analyse boolean expression and coerce result into
        #  a temporary. This is used when a branch is to be
        #  performed on the result and we won't have an
        #  opportunity to ensure disposal code is executed
        #  afterwards. By forcing the result into a temporary,
        #  we ensure that all disposal has been done by the
        #  time we get the result.
        self.analyse_types(env)
        bool = self.coerce_to_boolean(env)
        temp_bool = bool.coerce_to_temp(env)
        temp_bool.allocate_temps(env)
        return temp_bool
    
    # --------------- Type Analysis ------------------
    
    def analyse_as_module(self, env):
        # If this node can be interpreted as a reference to a
        # cimported module, return its scope, else None.
        return None
    
    def analyse_as_extension_type(self, env):
        # If this node can be interpreted as a reference to an
        # extension type, return its type, else None.
        return None
    
    def analyse_types(self, env):
        self.not_implemented("analyse_types")
    
    def analyse_target_types(self, env):
        self.analyse_types(env)
    
    def check_const(self):
        self.not_const()
    
    def not_const(self):
        error(self.pos, "Not allowed in a constant expression")
    
    def check_const_addr(self):
        self.addr_not_const()
    
    def addr_not_const(self):
        error(self.pos, "Address is not constant")
    
    # ----------------- Result Allocation -----------------
    
    def result_in_temp(self):
        #  Return true if result is in a temporary owned by
        #  this node or one of its subexpressions. Overridden
        #  by certain nodes which can share the result of
        #  a subnode.
        return self.is_temp
            
321 322
    def allocate_target_temps(self, env, rhs):
        #  Perform temp allocation for the LHS of an assignment.
William Stein's avatar
William Stein committed
323
        if debug_temp_alloc:
Stefan Behnel's avatar
Stefan Behnel committed
324
            print("%s Allocating target temps" % self)
William Stein's avatar
William Stein committed
325 326
        self.allocate_subexpr_temps(env)
        self.result_code = self.target_code()
327 328 329
        if rhs:
            rhs.release_temp(env)
        self.release_subexpr_temps(env)
William Stein's avatar
William Stein committed
330 331 332 333 334 335 336 337
    
    def allocate_temps(self, env, result = None):
        #  Allocate temporary variables for this node and
        #  all its sub-expressions. If a result is specified,
        #  this must be a temp node and the specified variable
        #  is used as the result instead of allocating a new
        #  one.
        if debug_temp_alloc:
Stefan Behnel's avatar
Stefan Behnel committed
338
            print("%s Allocating temps" % self)
William Stein's avatar
William Stein committed
339 340 341 342 343 344 345 346 347
        self.allocate_subexpr_temps(env)
        self.allocate_temp(env, result)
        if self.is_temp:
            self.release_subexpr_temps(env)
    
    def allocate_subexpr_temps(self, env):
        #  Allocate temporary variables for all sub-expressions
        #  of this node.
        if debug_temp_alloc:
Stefan Behnel's avatar
Stefan Behnel committed
348
            print("%s Allocating temps for: %s" % (self, self.subexprs))
William Stein's avatar
William Stein committed
349 350 351
        for node in self.subexpr_nodes():
            if node:
                if debug_temp_alloc:
Stefan Behnel's avatar
Stefan Behnel committed
352
                    print("%s Allocating temps for %s" % (self, node))
William Stein's avatar
William Stein committed
353 354 355 356 357 358 359 360 361 362
                node.allocate_temps(env)
    
    def allocate_temp(self, env, result = None):
        #  If this node requires a temporary variable for its
        #  result, allocate one, otherwise set the result to
        #  a C code fragment. If a result is specified,
        #  this must be a temp node and the specified variable
        #  is used as the result instead of allocating a new
        #  one.
        if debug_temp_alloc:
Stefan Behnel's avatar
Stefan Behnel committed
363
            print("%s Allocating temp" % self)
William Stein's avatar
William Stein committed
364 365 366 367 368 369 370 371 372 373 374 375 376
        if result:
            if not self.is_temp:
                raise InternalError("Result forced on non-temp node")
            self.result_code = result
        elif self.is_temp:
            type = self.type
            if not type.is_void:
                if type.is_pyobject:
                    type = PyrexTypes.py_object_type
                self.result_code = env.allocate_temp(type)
            else:
                self.result_code = None
            if debug_temp_alloc:
Stefan Behnel's avatar
Stefan Behnel committed
377
                print("%s Allocated result %s" % (self, self.result_code))
William Stein's avatar
William Stein committed
378 379 380 381 382 383 384 385 386 387
        else:
            self.result_code = self.calculate_result_code()
    
    def target_code(self):
        #  Return code fragment for use as LHS of a C assignment.
        return self.calculate_result_code()
    
    def calculate_result_code(self):
        self.not_implemented("calculate_result_code")
    
388 389 390
#	def release_target_temp(self, env):
#		#  Release temporaries used by LHS of an assignment.
#		self.release_subexpr_temps(env)
William Stein's avatar
William Stein committed
391 392 393 394 395 396

    def release_temp(self, env):
        #  If this node owns a temporary result, release it,
        #  otherwise release results of its sub-expressions.
        if self.is_temp:
            if debug_temp_alloc:
Stefan Behnel's avatar
Stefan Behnel committed
397
                print("%s Releasing result %s" % (self, self.result_code))
William Stein's avatar
William Stein committed
398 399 400 401 402 403 404 405 406 407 408 409 410 411 412 413 414 415 416 417
            env.release_temp(self.result_code)
        else:
            self.release_subexpr_temps(env)
    
    def release_subexpr_temps(self, env):
        #  Release the results of all sub-expressions of
        #  this node.
        for node in self.subexpr_nodes():
            if node:
                node.release_temp(env)
    
    # ---------------- Code Generation -----------------
    
    def make_owned_reference(self, code):
        #  If result is a pyobject, make sure we own
        #  a reference to it.
        if self.type.is_pyobject and not self.result_in_temp():
            code.put_incref(self.result_code, self.ctype())
    
    def generate_evaluation_code(self, code):
418
        code.mark_pos(self.pos)
William Stein's avatar
William Stein committed
419 420 421 422 423 424 425 426 427 428 429 430 431 432 433 434 435 436 437 438 439 440 441 442 443 444 445 446 447 448 449 450 451 452 453 454 455 456 457 458 459 460 461 462 463 464 465 466 467 468 469 470
        #  Generate code to evaluate this node and
        #  its sub-expressions, and dispose of any
        #  temporary results of its sub-expressions.
        self.generate_subexpr_evaluation_code(code)
        self.generate_result_code(code)
        if self.is_temp:
            self.generate_subexpr_disposal_code(code)
    
    def generate_subexpr_evaluation_code(self, code):
        for node in self.subexpr_nodes():
            node.generate_evaluation_code(code)
    
    def generate_result_code(self, code):
        self.not_implemented("generate_result_code")
    
    def generate_disposal_code(self, code):
        # If necessary, generate code to dispose of 
        # temporary Python reference.
        if self.is_temp:
            if self.type.is_pyobject:
                code.put_decref_clear(self.result_code, self.ctype())
        else:
            self.generate_subexpr_disposal_code(code)
    
    def generate_subexpr_disposal_code(self, code):
        #  Generate code to dispose of temporary results
        #  of all sub-expressions.
        for node in self.subexpr_nodes():
            node.generate_disposal_code(code)
    
    def generate_post_assignment_code(self, code):
        # Same as generate_disposal_code except that
        # assignment will have absorbed a reference to
        # the result if it is a Python object.
        if self.is_temp:
            if self.type.is_pyobject:
                code.putln("%s = 0;" % self.result_code)
        else:
            self.generate_subexpr_disposal_code(code)
    
    def generate_assignment_code(self, rhs, code):
        #  Stub method for nodes which are not legal as
        #  the LHS of an assignment. An error will have 
        #  been reported earlier.
        pass
    
    def generate_deletion_code(self, code):
        #  Stub method for nodes that are not legal as
        #  the argument of a del statement. An error
        #  will have been reported earlier.
        pass
    
471 472 473 474 475 476
    # ---------------- Annotation ---------------------
    
    def annotate(self, code):
        for node in self.subexpr_nodes():
            node.annotate(code)
    
William Stein's avatar
William Stein committed
477 478 479 480 481 482 483 484 485 486 487 488 489 490 491 492 493 494 495
    # ----------------- Coercion ----------------------
    
    def coerce_to(self, dst_type, env):
        #   Coerce the result so that it can be assigned to
        #   something of type dst_type. If processing is necessary,
        #   wraps this node in a coercion node and returns that.
        #   Otherwise, returns this node unchanged.
        #
        #   This method is called during the analyse_expressions
        #   phase of the src_node's processing.
        src = self
        src_type = self.type
        src_is_py_type = src_type.is_pyobject
        dst_is_py_type = dst_type.is_pyobject
        
        if dst_type.is_pyobject:
            if not src.type.is_pyobject:
                src = CoerceToPyTypeNode(src, env)
            if not src.type.subtype_of(dst_type):
496 497
                if not isinstance(src, NoneNode):
                    src = PyTypeTestNode(src, dst_type, env)
William Stein's avatar
William Stein committed
498 499 500
        elif src.type.is_pyobject:
            src = CoerceFromPyTypeNode(dst_type, src, env)
        else: # neither src nor dst are py types
501
            # Added the string comparison, since for c types that
502
            # is enough, but Cython gets confused when the types are
503
            # in different files.
504
            if not (str(src.type) == str(dst_type) or dst_type.assignable_from(src_type)):
William Stein's avatar
William Stein committed
505 506 507 508 509 510 511 512 513 514 515 516 517 518
                error(self.pos, "Cannot assign type '%s' to '%s'" %
                    (src.type, dst_type))
        return src

    def coerce_to_pyobject(self, env):
        return self.coerce_to(PyrexTypes.py_object_type, env)

    def coerce_to_boolean(self, env):
        #  Coerce result to something acceptable as
        #  a boolean value.
        type = self.type
        if type.is_pyobject or type.is_ptr or type.is_float:
            return CoerceToBooleanNode(self, env)
        else:
519
            if not type.is_int and not type.is_error:
William Stein's avatar
William Stein committed
520 521 522 523 524 525 526 527 528 529 530 531 532 533 534 535 536 537 538 539 540 541 542 543 544 545 546 547 548 549 550 551 552 553 554 555 556 557 558 559 560 561 562
                error(self.pos, 
                    "Type '%s' not acceptable as a boolean" % type)
            return self
    
    def coerce_to_integer(self, env):
        # If not already some C integer type, coerce to longint.
        if self.type.is_int:
            return self
        else:
            return self.coerce_to(PyrexTypes.c_long_type, env)
    
    def coerce_to_temp(self, env):
        #  Ensure that the result is in a temporary.
        if self.result_in_temp():
            return self
        else:
            return CoerceToTempNode(self, env)
    
    def coerce_to_simple(self, env):
        #  Ensure that the result is simple (see is_simple).
        if self.is_simple():
            return self
        else:
            return self.coerce_to_temp(env)
    
    def is_simple(self):
        #  A node is simple if its result is something that can
        #  be referred to without performing any operations, e.g.
        #  a constant, local var, C global var, struct member
        #  reference, or temporary.
        return self.result_in_temp()


class AtomicExprNode(ExprNode):
    #  Abstract base class for expression nodes which have
    #  no sub-expressions.
    
    subexprs = []


class PyConstNode(AtomicExprNode):
    #  Abstract base class for constant Python values.
    
563 564
    is_literal = 1
    
William Stein's avatar
William Stein committed
565 566 567 568 569 570 571 572 573 574 575 576 577 578 579 580 581 582
    def is_simple(self):
        return 1
    
    def analyse_types(self, env):
        self.type = py_object_type
    
    def calculate_result_code(self):
        return self.value

    def generate_result_code(self, code):
        pass


class NoneNode(PyConstNode):
    #  The constant value None
    
    value = "Py_None"
    
583 584 585
    def compile_time_value(self, denv):
        return None
    
586 587 588 589
class BoolNode(PyConstNode):
    #  The constant value True or False
    
    def compile_time_value(self, denv):
590
        return self.value
591 592 593 594 595 596 597 598 599 600
    
    def calculate_result_code(self):
        if self.value:
            return "Py_True"
        else:
            return "Py_False"

    def coerce_to(self, dst_type, env):
        value = self.value
        if dst_type.is_numeric:
601
            return IntNode(self.pos, value=int(self.value)).coerce_to(dst_type, env)
602 603
        else:
            return PyConstNode.coerce_to(self, dst_type, env)
William Stein's avatar
William Stein committed
604 605 606 607 608 609

class EllipsisNode(PyConstNode):
    #  '...' in a subscript list.
    
    value = "Py_Ellipsis"

610 611 612
    def compile_time_value(self, denv):
        return Ellipsis

William Stein's avatar
William Stein committed
613 614 615 616 617 618 619 620 621 622 623 624 625 626 627 628 629 630 631 632 633 634 635 636 637 638

class ConstNode(AtomicExprNode):
    # Abstract base type for literal constant nodes.
    #
    # value     string      C code fragment
    
    is_literal = 1
    
    def is_simple(self):
        return 1
    
    def analyse_types(self, env):
        pass # Types are held in class variables
    
    def check_const(self):
        pass
    
    def calculate_result_code(self):
        return str(self.value)

    def generate_result_code(self, code):
        pass


class NullNode(ConstNode):
    type = PyrexTypes.c_null_ptr_type
639
    value = "NULL"
William Stein's avatar
William Stein committed
640 641 642 643 644


class CharNode(ConstNode):
    type = PyrexTypes.c_char_type
    
645 646 647
    def compile_time_value(self, denv):
        return ord(self.value)
    
William Stein's avatar
William Stein committed
648 649 650 651 652 653 654
    def calculate_result_code(self):
        return "'%s'" % self.value


class IntNode(ConstNode):
    type = PyrexTypes.c_long_type

655 656 657 658
    def coerce_to(self, dst_type, env):
        # Arrange for a Python version of the string to be pre-allocated
        # when coercing to a Python type.
        if dst_type.is_pyobject:
Robert Bradshaw's avatar
Robert Bradshaw committed
659
            self.entry = env.get_py_num(self.value)
660 661 662 663 664 665 666 667 668 669 670
            self.type = PyrexTypes.py_object_type
        # We still need to perform normal coerce_to processing on the
        # result, because we might be coercing to an extension type,
        # in which case a type test node will be needed.
        return ConstNode.coerce_to(self, dst_type, env)

    def calculate_result_code(self):
        if self.type.is_pyobject:
            return self.entry.cname
        else:
            return str(self.value)
William Stein's avatar
William Stein committed
671

672
    def compile_time_value(self, denv):
673
        return int(self.value, 0)
674 675


William Stein's avatar
William Stein committed
676 677 678
class FloatNode(ConstNode):
    type = PyrexTypes.c_double_type

679 680
    def compile_time_value(self, denv):
        return float(self.value)
Stefan Behnel's avatar
Stefan Behnel committed
681 682 683 684
    
    def calculate_result_code(self):
        strval = str(self.value)
        if strval == 'nan':
685
            return "(Py_HUGE_VAL * 0)"
Stefan Behnel's avatar
Stefan Behnel committed
686
        elif strval == 'inf':
687
            return "Py_HUGE_VAL"
Stefan Behnel's avatar
Stefan Behnel committed
688
        elif strval == '-inf':
689
            return "(-Py_HUGE_VAL)"
Stefan Behnel's avatar
Stefan Behnel committed
690 691
        else:
            return strval
692

William Stein's avatar
William Stein committed
693 694 695 696 697

class StringNode(ConstNode):
    #  entry   Symtab.Entry
    
    type = PyrexTypes.c_char_ptr_type
698 699

    def compile_time_value(self, denv):
700
        return self.value
William Stein's avatar
William Stein committed
701 702 703 704 705
    
    def analyse_types(self, env):
        self.entry = env.add_string_const(self.value)
    
    def coerce_to(self, dst_type, env):
706
        if dst_type.is_int:
707 708 709
            if not self.type.is_pyobject and len(self.entry.init) == 1:
                # we use the *encoded* value here
                return CharNode(self.pos, value=self.entry.init)
710 711 712
            else:
                error(self.pos, "Only coerce single-character ascii strings can be used as ints.")
                return self
William Stein's avatar
William Stein committed
713 714 715 716 717 718 719 720 721 722 723 724 725 726 727 728 729 730 731 732 733 734 735 736 737 738 739 740 741 742
        # Arrange for a Python version of the string to be pre-allocated
        # when coercing to a Python type.
        if dst_type.is_pyobject and not self.type.is_pyobject:
            node = self.as_py_string_node(env)
        else:
            node = self
        # We still need to perform normal coerce_to processing on the
        # result, because we might be coercing to an extension type,
        # in which case a type test node will be needed.
        return ConstNode.coerce_to(node, dst_type, env)

    def as_py_string_node(self, env):
        # Return a new StringNode with the same entry as this node
        # but whose type is a Python type instead of a C type.
        entry = self.entry
        env.add_py_string(entry)
        return StringNode(self.pos, entry = entry, type = py_object_type)
            
    def calculate_result_code(self):
        if self.type.is_pyobject:
            return self.entry.pystring_cname
        else:
            return self.entry.cname


class LongNode(AtomicExprNode):
    #  Python long integer literal
    #
    #  value   string
    
743 744 745
    def compile_time_value(self, denv):
        return long(self.value)
    
William Stein's avatar
William Stein committed
746 747 748 749 750 751
    def analyse_types(self, env):
        self.type = py_object_type
        self.is_temp = 1
    
    def generate_evaluation_code(self, code):
        code.putln(
Robert Bradshaw's avatar
Robert Bradshaw committed
752
            '%s = PyLong_FromString("%s", 0, 0); %s' % (
William Stein's avatar
William Stein committed
753 754
                self.result_code,
                self.value,
Robert Bradshaw's avatar
Robert Bradshaw committed
755
                code.error_goto_if_null(self.result_code, self.pos)))
William Stein's avatar
William Stein committed
756 757 758 759 760 761 762


class ImagNode(AtomicExprNode):
    #  Imaginary number literal
    #
    #  value   float    imaginary part
    
763 764 765
    def compile_time_value(self, denv):
        return complex(0.0, self.value)
    
William Stein's avatar
William Stein committed
766 767 768 769 770 771
    def analyse_types(self, env):
        self.type = py_object_type
        self.is_temp = 1
    
    def generate_evaluation_code(self, code):
        code.putln(
Robert Bradshaw's avatar
Robert Bradshaw committed
772
            "%s = PyComplex_FromDoubles(0.0, %s); %s" % (
William Stein's avatar
William Stein committed
773 774
                self.result_code,
                self.value,
Robert Bradshaw's avatar
Robert Bradshaw committed
775
                code.error_goto_if_null(self.result_code, self.pos)))
William Stein's avatar
William Stein committed
776 777 778 779 780 781


class NameNode(AtomicExprNode):
    #  Reference to a local or global variable name.
    #
    #  name            string    Python name of the variable
782
    #
William Stein's avatar
William Stein committed
783
    #  entry           Entry     Symbol table entry
784
    #  interned_cname  string
William Stein's avatar
William Stein committed
785 786 787
    
    is_name = 1
    
788 789 790 791
    def compile_time_value(self, denv):
        try:
            return denv.lookup(self.name)
        except KeyError:
Stefan Behnel's avatar
Stefan Behnel committed
792
            error(self.pos, "Compile-time name '%s' not defined" % self.name)
793 794 795 796 797 798 799 800
    
    def coerce_to(self, dst_type, env):
        #  If coercing to a generic pyobject and this is a builtin
        #  C function with a Python equivalent, manufacture a NameNode
        #  referring to the Python builtin.
        #print "NameNode.coerce_to:", self.name, dst_type ###
        if dst_type is py_object_type:
            entry = self.entry
801
            if entry and entry.is_cfunction:
802 803
                var_entry = entry.as_variable
                if var_entry:
804 805
                    if var_entry.is_builtin and Options.cache_builtins:
                        var_entry = env.declare_builtin(var_entry.name, self.pos)
806 807 808 809 810 811
                    node = NameNode(self.pos, name = self.name)
                    node.entry = var_entry
                    node.analyse_rvalue_entry(env)
                    return node
        return AtomicExprNode.coerce_to(self, dst_type, env)
    
William Stein's avatar
William Stein committed
812 813 814 815 816 817 818 819 820 821 822 823 824
    def analyse_as_module(self, env):
        # Try to interpret this as a reference to a cimported module.
        # Returns the module scope, or None.
        entry = env.lookup(self.name)
        if entry and entry.as_module:
            return entry.as_module
        return None
    
    def analyse_as_extension_type(self, env):
        # Try to interpret this as a reference to an extension type.
        # Returns the extension type, or None.
        entry = env.lookup(self.name)
        if entry and entry.is_type and entry.type.is_extension_type:
825 826 827
            return entry.type
        else:
            return None
William Stein's avatar
William Stein committed
828 829 830 831 832
    
    def analyse_target_declaration(self, env):
        self.entry = env.lookup_here(self.name)
        if not self.entry:
            self.entry = env.declare_var(self.name, py_object_type, self.pos)
833
        env.control_flow.set_state(self.pos, (self.name, 'initalized'), True)
Robert Bradshaw's avatar
Robert Bradshaw committed
834
        env.control_flow.set_state(self.pos, (self.name, 'source'), 'assignment')
835 836
        if self.entry.is_declared_generic:
            self.result_ctype = py_object_type
William Stein's avatar
William Stein committed
837 838 839 840 841
    
    def analyse_types(self, env):
        self.entry = env.lookup(self.name)
        if not self.entry:
            self.entry = env.declare_builtin(self.name, self.pos)
842 843 844
        if not self.entry:
            self.type = PyrexTypes.error_type
            return
845 846 847
        self.analyse_rvalue_entry(env)
        
    def analyse_target_types(self, env):
William Stein's avatar
William Stein committed
848
        self.analyse_entry(env)
849 850 851 852
        if not self.is_lvalue():
            error(self.pos, "Assignment to non-lvalue '%s'"
                % self.name)
            self.type = PyrexTypes.error_type
Stefan Behnel's avatar
Stefan Behnel committed
853
        self.entry.used = 1
William Stein's avatar
William Stein committed
854
        
855 856 857 858
    def analyse_rvalue_entry(self, env):
        #print "NameNode.analyse_rvalue_entry:", self.name ###
        #print "Entry:", self.entry.__dict__ ###
        self.analyse_entry(env)
859 860
        entry = self.entry
        if entry.is_declared_generic:
William Stein's avatar
William Stein committed
861
            self.result_ctype = py_object_type
862
        if entry.is_pyglobal or entry.is_builtin:
863 864 865 866
            if Options.cache_builtins and entry.is_builtin:
                self.is_temp = 0
            else:
                self.is_temp = 1
William Stein's avatar
William Stein committed
867 868 869 870 871
            if Options.intern_names:
                env.use_utility_code(get_name_interned_utility_code)
            else:
                env.use_utility_code(get_name_utility_code)
    
872 873
    def analyse_entry(self, env):
        #print "NameNode.analyse_entry:", self.name ###
William Stein's avatar
William Stein committed
874
        self.check_identifier_kind()
875 876 877 878 879 880
        entry = self.entry
        type = entry.type
        self.type = type
        if entry.is_pyglobal or entry.is_builtin:
            assert type.is_pyobject, "Python global or builtin not a Python object"
            if Options.intern_names:
Robert Bradshaw's avatar
Robert Bradshaw committed
881
                self.interned_cname = self.entry.interned_cname = env.intern(self.entry.name)
882

William Stein's avatar
William Stein committed
883
    def check_identifier_kind(self):
884
        #print "NameNode.check_identifier_kind:", self.entry.name ###
885
        #print self.entry.__dict__ ###
William Stein's avatar
William Stein committed
886
        entry = self.entry
Stefan Behnel's avatar
Stefan Behnel committed
887
        #entry.used = 1
William Stein's avatar
William Stein committed
888 889 890 891 892 893 894 895 896 897 898 899 900 901 902 903 904
        if not (entry.is_const or entry.is_variable 
            or entry.is_builtin or entry.is_cfunction):
                if self.entry.as_variable:
                    self.entry = self.entry.as_variable
                else:
                    error(self.pos, 
                        "'%s' is not a constant, variable or function identifier" % self.name)
    
    def is_simple(self):
        #  If it's not a C variable, it'll be in a temp.
        return 1
    
    def calculate_target_results(self, env):
        pass
    
    def check_const(self):
        entry = self.entry
Robert Bradshaw's avatar
Robert Bradshaw committed
905
        if entry is not None and not (entry.is_const or entry.is_cfunction or entry.is_builtin):
William Stein's avatar
William Stein committed
906 907 908 909
            self.not_const()
    
    def check_const_addr(self):
        entry = self.entry
910
        if not (entry.is_cglobal or entry.is_cfunction or entry.is_builtin):
William Stein's avatar
William Stein committed
911 912 913 914 915 916 917 918 919 920 921
            self.addr_not_const()

    def is_lvalue(self):
        return self.entry.is_variable and \
            not self.entry.type.is_array and \
            not self.entry.is_readonly
    
    def is_ephemeral(self):
        #  Name nodes are never ephemeral, even if the
        #  result is in a temporary.
        return 0
Stefan Behnel's avatar
Stefan Behnel committed
922 923 924
    
    def allocate_temp(self, env, result = None):
        AtomicExprNode.allocate_temp(self, env, result)
Stefan Behnel's avatar
Stefan Behnel committed
925 926 927 928 929
        entry = self.entry
        if entry:
            entry.used = 1
            if entry.utility_code:
                env.use_utility_code(entry.utility_code)
Stefan Behnel's avatar
Stefan Behnel committed
930
        
William Stein's avatar
William Stein committed
931
    def calculate_result_code(self):
Stefan Behnel's avatar
Stefan Behnel committed
932 933
        entry = self.entry
        if not entry:
William Stein's avatar
William Stein committed
934
            return "<error>" # There was an error earlier
Stefan Behnel's avatar
Stefan Behnel committed
935
        return entry.cname
William Stein's avatar
William Stein committed
936 937
    
    def generate_result_code(self, code):
938
        assert hasattr(self, 'entry')
William Stein's avatar
William Stein committed
939 940 941
        entry = self.entry
        if entry is None:
            return # There was an error earlier
942 943 944
        if entry.is_builtin and Options.cache_builtins:
            return # Lookup already cached
        elif entry.is_pyglobal or entry.is_builtin:
William Stein's avatar
William Stein committed
945 946 947 948 949 950
            if entry.is_builtin:
                namespace = Naming.builtins_cname
            else: # entry.is_pyglobal
                namespace = entry.namespace_cname
            if Options.intern_names:
                code.putln(
Robert Bradshaw's avatar
Robert Bradshaw committed
951
                    '%s = __Pyx_GetName(%s, %s); %s' % (
William Stein's avatar
William Stein committed
952 953
                    self.result_code,
                    namespace, 
954
                    self.interned_cname,
Robert Bradshaw's avatar
Robert Bradshaw committed
955
                    code.error_goto_if_null(self.result_code, self.pos)))		
William Stein's avatar
William Stein committed
956 957
            else:
                code.putln(
Robert Bradshaw's avatar
Robert Bradshaw committed
958
                    '%s = __Pyx_GetName(%s, "%s"); %s' % (
William Stein's avatar
William Stein committed
959 960 961
                    self.result_code,
                    namespace, 
                    self.entry.name,
962
                    code.error_goto_if_null(self.result_code, self.pos)))
963 964
        elif entry.is_local and False:
            # control flow not good enough yet
Robert Bradshaw's avatar
Robert Bradshaw committed
965
            assigned = entry.scope.control_flow.get_state((entry.name, 'initalized'), self.pos)
966 967
            if assigned is False:
                error(self.pos, "local variable '%s' referenced before assignment" % entry.name)
Robert Bradshaw's avatar
Robert Bradshaw committed
968 969 970
            elif not Options.init_local_none and assigned is None:
                code.putln('if (%s == 0) { PyErr_SetString(PyExc_UnboundLocalError, "%s"); %s }' % (entry.cname, entry.name, code.error_goto(self.pos)))
                entry.scope.control_flow.set_state(self.pos, (entry.name, 'initalized'), True)
William Stein's avatar
William Stein committed
971 972

    def generate_assignment_code(self, rhs, code):
973
        #print "NameNode.generate_assignment_code:", self.name ###
William Stein's avatar
William Stein committed
974 975 976
        entry = self.entry
        if entry is None:
            return # There was an error earlier
977 978 979

        # is_pyglobal seems to be True for module level-globals only.
        # We use this to access class->tp_dict if necessary.
William Stein's avatar
William Stein committed
980 981
        if entry.is_pyglobal:
            namespace = self.entry.namespace_cname
982 983 984 985 986 987 988
            if entry.is_member:
                # if we entry is a member we have to cheat: SetAttr does not work
                # on types, so we create a descriptor which is then added to tp_dict
                if Options.intern_names:
                    code.put_error_if_neg(self.pos,
                        'PyDict_SetItem(%s->tp_dict, %s, %s)' % (
                            namespace,
989
                            self.interned_cname,
990 991 992 993 994 995 996 997 998 999 1000 1001 1002
                            rhs.py_result()))
                else:
                    code.put_error_if_neg(self.pos,
                        'PyDict_SetItemString(%s->tp_dict, %s, %s)' % (
                            namespace,
                            entry.name,
                            rhs.py_result()))

            else: 
                if Options.intern_names:
                    code.put_error_if_neg(self.pos,
                        'PyObject_SetAttr(%s, %s, %s)' % (
                            namespace,
1003
                            self.interned_cname,
1004 1005 1006 1007 1008 1009 1010 1011
                            rhs.py_result()))
                else:
                    code.put_error_if_neg(self.pos,
                        'PyObject_SetAttrString(%s, "%s", %s)' % (
                            namespace, 
                            entry.name,
                            rhs.py_result()))
                if debug_disposal_code:
Stefan Behnel's avatar
Stefan Behnel committed
1012 1013
                    print("NameNode.generate_assignment_code:")
                    print("...generating disposal code for %s" % rhs)
1014 1015
                rhs.generate_disposal_code(code)
                
William Stein's avatar
William Stein committed
1016 1017 1018 1019 1020 1021 1022
        else:
            if self.type.is_pyobject:
                #print "NameNode.generate_assignment_code: to", self.name ###
                #print "...from", rhs ###
                #print "...LHS type", self.type, "ctype", self.ctype() ###
                #print "...RHS type", rhs.type, "ctype", rhs.ctype() ###
                rhs.make_owned_reference(code)
Robert Bradshaw's avatar
Robert Bradshaw committed
1023 1024 1025 1026 1027 1028 1029 1030
                if entry.is_local and not Options.init_local_none:
                    initalized = entry.scope.control_flow.get_state((entry.name, 'initalized'), self.pos)
                    if initalized is True:
                        code.put_decref(self.result_code, self.ctype())
                    elif initalized is None:
                        code.put_xdecref(self.result_code, self.ctype())
                else:
                    code.put_decref(self.result_code, self.ctype())
William Stein's avatar
William Stein committed
1031 1032
            code.putln('%s = %s;' % (self.result_code, rhs.result_as(self.ctype())))
            if debug_disposal_code:
Stefan Behnel's avatar
Stefan Behnel committed
1033 1034
                print("NameNode.generate_assignment_code:")
                print("...generating post-assignment code for %s" % rhs)
William Stein's avatar
William Stein committed
1035 1036 1037 1038 1039 1040 1041 1042
            rhs.generate_post_assignment_code(code)
    
    def generate_deletion_code(self, code):
        if self.entry is None:
            return # There was an error earlier
        if not self.entry.is_pyglobal:
            error(self.pos, "Deletion of local or C global name not supported")
            return
Robert Bradshaw's avatar
Robert Bradshaw committed
1043 1044
        code.put_error_if_neg(self.pos, 
            'PyObject_DelAttrString(%s, "%s")' % (
William Stein's avatar
William Stein committed
1045
                Naming.module_cname,
Robert Bradshaw's avatar
Robert Bradshaw committed
1046
                self.entry.name))
1047 1048 1049 1050 1051 1052 1053 1054
                
    def annotate(self, code):
        if hasattr(self, 'is_called') and self.is_called:
            pos = (self.pos[0], self.pos[1], self.pos[2] - len(self.name) - 1)
            if self.type.is_pyobject:
                code.annotate(pos, AnnotationItem('py_call', 'python function', size=len(self.name)))
            else:
                code.annotate(pos, AnnotationItem('c_call', 'c function', size=len(self.name)))
William Stein's avatar
William Stein committed
1055 1056 1057 1058 1059 1060 1061 1062 1063 1064 1065 1066 1067 1068 1069 1070 1071
            

class BackquoteNode(ExprNode):
    #  `expr`
    #
    #  arg    ExprNode
    
    subexprs = ['arg']
    
    def analyse_types(self, env):
        self.arg.analyse_types(env)
        self.arg = self.arg.coerce_to_pyobject(env)
        self.type = py_object_type
        self.is_temp = 1
    
    def generate_result_code(self, code):
        code.putln(
Robert Bradshaw's avatar
Robert Bradshaw committed
1072
            "%s = PyObject_Repr(%s); %s" % (
William Stein's avatar
William Stein committed
1073 1074
                self.result_code,
                self.arg.py_result(),
Robert Bradshaw's avatar
Robert Bradshaw committed
1075
                code.error_goto_if_null(self.result_code, self.pos)))
William Stein's avatar
William Stein committed
1076 1077 1078 1079 1080 1081 1082 1083 1084 1085 1086 1087 1088 1089 1090 1091 1092 1093 1094 1095 1096 1097 1098 1099 1100 1101 1102


class ImportNode(ExprNode):
    #  Used as part of import statement implementation.
    #  Implements result = 
    #    __import__(module_name, globals(), None, name_list)
    #
    #  module_name   StringNode         dotted name of module
    #  name_list     ListNode or None   list of names to be imported
    
    subexprs = ['module_name', 'name_list']

    def analyse_types(self, env):
        self.module_name.analyse_types(env)
        self.module_name = self.module_name.coerce_to_pyobject(env)
        if self.name_list:
            self.name_list.analyse_types(env)
        self.type = py_object_type
        self.is_temp = 1
        env.use_utility_code(import_utility_code)
    
    def generate_result_code(self, code):
        if self.name_list:
            name_list_code = self.name_list.py_result()
        else:
            name_list_code = "0"
        code.putln(
Robert Bradshaw's avatar
Robert Bradshaw committed
1103
            "%s = __Pyx_Import(%s, %s); %s" % (
William Stein's avatar
William Stein committed
1104 1105 1106
                self.result_code,
                self.module_name.py_result(),
                name_list_code,
Robert Bradshaw's avatar
Robert Bradshaw committed
1107
                code.error_goto_if_null(self.result_code, self.pos)))
William Stein's avatar
William Stein committed
1108 1109 1110 1111 1112 1113 1114 1115 1116 1117 1118 1119 1120 1121 1122


class IteratorNode(ExprNode):
    #  Used as part of for statement implementation.
    #  Implements result = iter(sequence)
    #
    #  sequence   ExprNode
    
    subexprs = ['sequence']
    
    def analyse_types(self, env):
        self.sequence.analyse_types(env)
        self.sequence = self.sequence.coerce_to_pyobject(env)
        self.type = py_object_type
        self.is_temp = 1
Robert Bradshaw's avatar
Robert Bradshaw committed
1123 1124 1125 1126 1127 1128 1129
        
        self.counter = TempNode(self.pos, PyrexTypes.c_py_ssize_t_type, env)
        self.counter.allocate_temp(env)
        
    def release_temp(self, env):
        env.release_temp(self.result_code)
        self.counter.release_temp(env)
William Stein's avatar
William Stein committed
1130 1131 1132
    
    def generate_result_code(self, code):
        code.putln(
Robert Bradshaw's avatar
Robert Bradshaw committed
1133 1134 1135 1136 1137 1138
            "if (PyList_CheckExact(%s)) { %s = 0; %s = %s; Py_INCREF(%s); }" % (
                self.sequence.py_result(),
                self.counter.result_code,
                self.result_code,
                self.sequence.py_result(),
                self.result_code))
Robert Bradshaw's avatar
Robert Bradshaw committed
1139
        code.putln("else { %s = PyObject_GetIter(%s); %s }" % (
William Stein's avatar
William Stein committed
1140 1141
                self.result_code,
                self.sequence.py_result(),
Robert Bradshaw's avatar
Robert Bradshaw committed
1142
                code.error_goto_if_null(self.result_code, self.pos)))
William Stein's avatar
William Stein committed
1143 1144 1145 1146 1147 1148 1149 1150 1151 1152 1153 1154 1155 1156 1157 1158 1159


class NextNode(AtomicExprNode):
    #  Used as part of for statement implementation.
    #  Implements result = iterator.next()
    #  Created during analyse_types phase.
    #  The iterator is not owned by this node.
    #
    #  iterator   ExprNode
    
    def __init__(self, iterator, env):
        self.pos = iterator.pos
        self.iterator = iterator
        self.type = py_object_type
        self.is_temp = 1
    
    def generate_result_code(self, code):
Robert Bradshaw's avatar
Robert Bradshaw committed
1160 1161 1162 1163 1164 1165 1166 1167 1168 1169
        code.putln(
            "if (PyList_CheckExact(%s)) { if (%s >= PyList_GET_SIZE(%s)) break; %s = PyList_GET_ITEM(%s, %s++); Py_INCREF(%s); }" % (
                self.iterator.py_result(),
                self.iterator.counter.result_code,
                self.iterator.py_result(),
                self.result_code,
                self.iterator.py_result(),
                self.iterator.counter.result_code,
                self.result_code))
        code.putln("else {")
William Stein's avatar
William Stein committed
1170 1171 1172 1173 1174 1175 1176
        code.putln(
            "%s = PyIter_Next(%s);" % (
                self.result_code,
                self.iterator.py_result()))
        code.putln(
            "if (!%s) {" %
                self.result_code)
Robert Bradshaw's avatar
Robert Bradshaw committed
1177
        code.error_goto_if_PyErr(self.pos)
Robert Bradshaw's avatar
Robert Bradshaw committed
1178 1179 1180
        code.putln("break;")
        code.putln("}")
        code.putln("}")
1181

William Stein's avatar
William Stein committed
1182 1183 1184 1185 1186 1187

class ExcValueNode(AtomicExprNode):
    #  Node created during analyse_types phase
    #  of an ExceptClauseNode to fetch the current
    #  exception value.
    
1188
    def __init__(self, pos, env, var):
William Stein's avatar
William Stein committed
1189 1190
        ExprNode.__init__(self, pos)
        self.type = py_object_type
1191
        self.var = var
William Stein's avatar
William Stein committed
1192
    
1193 1194 1195
    def calculate_result_code(self):
        return self.var

William Stein's avatar
William Stein committed
1196
    def generate_result_code(self, code):
1197
        pass
William Stein's avatar
William Stein committed
1198 1199 1200 1201 1202 1203 1204 1205 1206 1207 1208 1209


class TempNode(AtomicExprNode):
    #  Node created during analyse_types phase
    #  of some nodes to hold a temporary value.
    
    def __init__(self, pos, type, env):
        ExprNode.__init__(self, pos)
        self.type = type
        if type.is_pyobject:
            self.result_ctype = py_object_type
        self.is_temp = 1
1210 1211 1212
        
    def analyse_types(self, env):
        return self.type
William Stein's avatar
William Stein committed
1213 1214 1215 1216 1217 1218 1219 1220 1221 1222 1223 1224 1225 1226 1227 1228 1229 1230 1231 1232 1233 1234 1235 1236
    
    def generate_result_code(self, code):
        pass


class PyTempNode(TempNode):
    #  TempNode holding a Python value.
    
    def __init__(self, pos, env):
        TempNode.__init__(self, pos, PyrexTypes.py_object_type, env)


#-------------------------------------------------------------------
#
#  Trailer nodes
#
#-------------------------------------------------------------------

class IndexNode(ExprNode):
    #  Sequence indexing.
    #
    #  base     ExprNode
    #  index    ExprNode
    
1237
    subexprs = ['base', 'index', 'py_index']
William Stein's avatar
William Stein committed
1238
    
1239 1240 1241 1242 1243 1244 1245 1246
    def compile_time_value(self, denv):
        base = self.base.compile_time_value(denv)
        index = self.index.compile_time_value(denv)
        try:
            return base[index]
        except Exception, e:
            self.compile_time_value_error(e)
    
William Stein's avatar
William Stein committed
1247 1248 1249 1250 1251 1252 1253 1254 1255
    def is_ephemeral(self):
        return self.base.is_ephemeral()
    
    def analyse_target_declaration(self, env):
        pass
    
    def analyse_types(self, env):
        self.base.analyse_types(env)
        self.index.analyse_types(env)
1256 1257 1258 1259 1260 1261 1262
        if self.base.type.is_pyobject:
            if self.index.type.is_int:
                self.index = self.index.coerce_to(PyrexTypes.c_py_ssize_t_type, env).coerce_to_simple(env)
                self.py_index = CloneNode(self.index).coerce_to_pyobject(env)
            else:
                self.index = self.index.coerce_to_pyobject(env)
                self.py_index = CloneNode(self.index)
William Stein's avatar
William Stein committed
1263 1264 1265
            self.type = py_object_type
            self.is_temp = 1
        else:
1266
            self.py_index = CloneNode(self.index) # so that it exists for subexpr processing
William Stein's avatar
William Stein committed
1267 1268 1269 1270 1271 1272 1273 1274 1275
            if self.base.type.is_ptr or self.base.type.is_array:
                self.type = self.base.type.base_type
            else:
                error(self.pos,
                    "Attempting to index non-array type '%s'" %
                        self.base.type)
                self.type = PyrexTypes.error_type
            if self.index.type.is_pyobject:
                self.index = self.index.coerce_to(
1276
                    PyrexTypes.c_py_ssize_t_type, env)
William Stein's avatar
William Stein committed
1277 1278 1279 1280 1281 1282 1283 1284 1285 1286 1287 1288 1289 1290 1291
            if not self.index.type.is_int:
                error(self.pos,
                    "Invalid index type '%s'" %
                        self.index.type)
    
    def check_const_addr(self):
        self.base.check_const_addr()
        self.index.check_const()
    
    def is_lvalue(self):
        return 1
    
    def calculate_result_code(self):
        return "(%s[%s])" % (
            self.base.result_code, self.index.result_code)
1292 1293 1294 1295 1296 1297 1298 1299 1300 1301

    def generate_subexpr_evaluation_code(self, code):
        # do not evaluate self.py_index in case we don't need it
        self.base.generate_evaluation_code(code)
        self.index.generate_evaluation_code(code)
        
    def generate_subexpr_disposal_code(self, code):
        # if we used self.py_index, it will be disposed of manually
        self.base.generate_disposal_code(code)
        self.index.generate_disposal_code(code)
1302

William Stein's avatar
William Stein committed
1303 1304
    def generate_result_code(self, code):
        if self.type.is_pyobject:
1305 1306 1307 1308 1309 1310 1311 1312 1313 1314 1315 1316 1317 1318 1319 1320 1321 1322 1323 1324 1325 1326 1327 1328 1329 1330
            if self.index.type.is_int:
                code.putln("if (PyList_CheckExact(%s) && 0 <= %s && %s < PyList_GET_SIZE(%s)) {" % (
                        self.base.py_result(),
                        self.index.result_code,
                        self.index.result_code,
                        self.base.py_result()))
                code.putln("%s = PyList_GET_ITEM(%s, %s); Py_INCREF(%s);" % (
                        self.result_code,
                        self.base.py_result(),
                        self.index.result_code,
                        self.result_code))
                code.putln("} else if (PyTuple_CheckExact(%s) && 0 <= %s && %s < PyTuple_GET_SIZE(%s)) {" % (
                        self.base.py_result(),
                        self.index.result_code,
                        self.index.result_code,
                        self.base.py_result()))
                code.putln("%s = PyTuple_GET_ITEM(%s, %s); Py_INCREF(%s);" % (
                        self.result_code,
                        self.base.py_result(),
                        self.index.result_code,
                        self.result_code))
                code.putln("} else {")
                self.generate_generic_code_result(code)
                code.putln("}")
            else:
                self.generate_generic_code_result(code)
1331

1332 1333 1334
    def generate_generic_code_result(self, code):
        self.py_index.generate_result_code(code)
        code.putln(
Robert Bradshaw's avatar
Robert Bradshaw committed
1335
            "%s = PyObject_GetItem(%s, %s); %s" % (
1336 1337 1338
                self.result_code,
                self.base.py_result(),
                self.py_index.py_result(),
Robert Bradshaw's avatar
Robert Bradshaw committed
1339
                code.error_goto_if_null(self.result_code, self.pos)))
1340 1341
        if self.is_temp:
            self.py_index.generate_disposal_code(code)
1342

William Stein's avatar
William Stein committed
1343 1344 1345
    def generate_assignment_code(self, rhs, code):
        self.generate_subexpr_evaluation_code(code)
        if self.type.is_pyobject:
1346 1347 1348 1349 1350 1351 1352 1353 1354 1355 1356 1357 1358 1359 1360 1361 1362 1363 1364
            if self.index.type.is_int:
                code.putln("if (PyList_CheckExact(%s) && 0 <= %s && %s < PyList_GET_SIZE(%s)) {" % (
                        self.base.py_result(),
                        self.index.result_code,
                        self.index.result_code,
                        self.base.py_result()))
                code.putln("Py_DECREF(PyList_GET_ITEM(%s, %s)); Py_INCREF(%s);" % (
                        self.base.py_result(),
                        self.index.result_code,
                        rhs.py_result()))
                code.putln("PyList_SET_ITEM(%s, %s, %s);" % (
                        self.base.py_result(),
                        self.index.result_code,
                        rhs.py_result()))
                code.putln("} else {")
                self.generate_generic_assignment_code(rhs, code)
                code.putln("}")
            else:
                self.generate_generic_assignment_code(rhs, code)
William Stein's avatar
William Stein committed
1365 1366 1367 1368
        else:
            code.putln(
                "%s = %s;" % (
                    self.result_code, rhs.result_code))
1369
        self.generate_subexpr_disposal_code(code)
William Stein's avatar
William Stein committed
1370 1371
        rhs.generate_disposal_code(code)
    
1372 1373
    def generate_generic_assignment_code(self, rhs, code):
        self.py_index.generate_result_code(code)
Robert Bradshaw's avatar
Robert Bradshaw committed
1374 1375
        code.put_error_if_neg(self.pos, 
            "PyObject_SetItem(%s, %s, %s)" % (
1376 1377
                self.base.py_result(),
                self.py_index.py_result(),
Robert Bradshaw's avatar
Robert Bradshaw committed
1378
                rhs.py_result()))
1379 1380 1381
        if self.is_temp:
            self.py_index.generate_disposal_code(code)
    
William Stein's avatar
William Stein committed
1382 1383
    def generate_deletion_code(self, code):
        self.generate_subexpr_evaluation_code(code)
1384
        self.py_index.generate_evaluation_code(code)
Robert Bradshaw's avatar
Robert Bradshaw committed
1385 1386
        code.put_error_if_neg(self.pos, 
            "PyObject_DelItem(%s, %s)" % (
William Stein's avatar
William Stein committed
1387
                self.base.py_result(),
Robert Bradshaw's avatar
Robert Bradshaw committed
1388
                self.py_index.py_result()))
William Stein's avatar
William Stein committed
1389
        self.generate_subexpr_disposal_code(code)
1390
        self.py_index.generate_disposal_code(code)
1391

William Stein's avatar
William Stein committed
1392 1393 1394 1395 1396 1397 1398 1399 1400 1401

class SliceIndexNode(ExprNode):
    #  2-element slice indexing
    #
    #  base      ExprNode
    #  start     ExprNode or None
    #  stop      ExprNode or None
    
    subexprs = ['base', 'start', 'stop']
    
1402 1403 1404 1405 1406 1407 1408 1409 1410
    def compile_time_value(self, denv):
        base = self.base.compile_time_value(denv)
        start = self.start.compile_time_value(denv)
        stop = self.stop.compile_time_value(denv)
        try:
            return base[start:stop]
        except Exception, e:
            self.compile_time_value_error(e)
    
William Stein's avatar
William Stein committed
1411 1412 1413 1414 1415 1416 1417 1418 1419 1420
    def analyse_target_declaration(self, env):
        pass

    def analyse_types(self, env):
        self.base.analyse_types(env)
        if self.start:
            self.start.analyse_types(env)
        if self.stop:
            self.stop.analyse_types(env)
        self.base = self.base.coerce_to_pyobject(env)
1421
        c_int = PyrexTypes.c_py_ssize_t_type
William Stein's avatar
William Stein committed
1422 1423 1424 1425 1426 1427 1428 1429 1430
        if self.start:
            self.start = self.start.coerce_to(c_int, env)
        if self.stop:
            self.stop = self.stop.coerce_to(c_int, env)
        self.type = py_object_type
        self.is_temp = 1
    
    def generate_result_code(self, code):
        code.putln(
Robert Bradshaw's avatar
Robert Bradshaw committed
1431
            "%s = PySequence_GetSlice(%s, %s, %s); %s" % (
William Stein's avatar
William Stein committed
1432 1433 1434 1435
                self.result_code,
                self.base.py_result(),
                self.start_code(),
                self.stop_code(),
Robert Bradshaw's avatar
Robert Bradshaw committed
1436
                code.error_goto_if_null(self.result_code, self.pos)))
William Stein's avatar
William Stein committed
1437 1438 1439
    
    def generate_assignment_code(self, rhs, code):
        self.generate_subexpr_evaluation_code(code)
Robert Bradshaw's avatar
Robert Bradshaw committed
1440 1441
        code.put_error_if_neg(self.pos, 
            "PySequence_SetSlice(%s, %s, %s, %s)" % (
William Stein's avatar
William Stein committed
1442 1443 1444
                self.base.py_result(),
                self.start_code(),
                self.stop_code(),
Robert Bradshaw's avatar
Robert Bradshaw committed
1445
                rhs.result_code))
William Stein's avatar
William Stein committed
1446 1447 1448 1449 1450
        self.generate_subexpr_disposal_code(code)
        rhs.generate_disposal_code(code)

    def generate_deletion_code(self, code):
        self.generate_subexpr_evaluation_code(code)
Robert Bradshaw's avatar
Robert Bradshaw committed
1451 1452
        code.put_error_if_neg(self.pos,
            "PySequence_DelSlice(%s, %s, %s)" % (
William Stein's avatar
William Stein committed
1453 1454
                self.base.py_result(),
                self.start_code(),
Robert Bradshaw's avatar
Robert Bradshaw committed
1455
                self.stop_code()))
William Stein's avatar
William Stein committed
1456 1457 1458 1459 1460 1461 1462 1463 1464 1465 1466 1467
        self.generate_subexpr_disposal_code(code)
    
    def start_code(self):
        if self.start:
            return self.start.result_code
        else:
            return "0"
    
    def stop_code(self):
        if self.stop:
            return self.stop.result_code
        else:
1468
            return "PY_SSIZE_T_MAX"
William Stein's avatar
William Stein committed
1469 1470 1471 1472 1473 1474 1475 1476 1477 1478 1479 1480 1481
    
    def calculate_result_code(self):
        # self.result_code is not used, but this method must exist
        return "<unused>"
    

class SliceNode(ExprNode):
    #  start:stop:step in subscript list
    #
    #  start     ExprNode
    #  stop      ExprNode
    #  step      ExprNode
    
1482 1483 1484 1485 1486 1487 1488 1489 1490
    def compile_time_value(self, denv):
        start = self.start.compile_time_value(denv)
        stop = self.stop.compile_time_value(denv)
        step = step.step.compile_time_value(denv)
        try:
            return slice(start, stop, step)
        except Exception, e:
            self.compile_time_value_error(e)

William Stein's avatar
William Stein committed
1491 1492 1493 1494 1495 1496 1497 1498 1499 1500 1501 1502 1503 1504
    subexprs = ['start', 'stop', 'step']
    
    def analyse_types(self, env):
        self.start.analyse_types(env)
        self.stop.analyse_types(env)
        self.step.analyse_types(env)
        self.start = self.start.coerce_to_pyobject(env)
        self.stop = self.stop.coerce_to_pyobject(env)
        self.step = self.step.coerce_to_pyobject(env)
        self.type = py_object_type
        self.is_temp = 1
    
    def generate_result_code(self, code):
        code.putln(
Robert Bradshaw's avatar
Robert Bradshaw committed
1505
            "%s = PySlice_New(%s, %s, %s); %s" % (
William Stein's avatar
William Stein committed
1506 1507 1508 1509
                self.result_code,
                self.start.py_result(), 
                self.stop.py_result(), 
                self.step.py_result(),
Robert Bradshaw's avatar
Robert Bradshaw committed
1510
                code.error_goto_if_null(self.result_code, self.pos)))
William Stein's avatar
William Stein committed
1511 1512 1513 1514 1515 1516 1517 1518 1519

class SimpleCallNode(ExprNode):
    #  Function call without keyword, * or ** args.
    #
    #  function       ExprNode
    #  args           [ExprNode]
    #  arg_tuple      ExprNode or None     used internally
    #  self           ExprNode or None     used internally
    #  coerced_self   ExprNode or None     used internally
1520
    #  wrapper_call   bool                 used internally
William Stein's avatar
William Stein committed
1521 1522 1523 1524 1525 1526
    
    subexprs = ['self', 'coerced_self', 'function', 'args', 'arg_tuple']
    
    self = None
    coerced_self = None
    arg_tuple = None
1527
    wrapper_call = False
William Stein's avatar
William Stein committed
1528
    
1529 1530 1531 1532 1533 1534 1535 1536
    def compile_time_value(self, denv):
        function = self.function.compile_time_value(denv)
        args = [arg.compile_time_value(denv) for arg in self.args]
        try:
            return function(*args)
        except Exception, e:
            self.compile_time_value_error(e)

William Stein's avatar
William Stein committed
1537 1538 1539 1540 1541 1542 1543 1544 1545 1546 1547
    def analyse_types(self, env):
        function = self.function
        function.is_called = 1
        self.function.analyse_types(env)
        if function.is_attribute and function.entry and function.entry.is_cmethod:
            # Take ownership of the object from which the attribute
            # was obtained, because we need to pass it as 'self'.
            self.self = function.obj
            function.obj = CloneNode(self.self)
        func_type = self.function_type()
        if func_type.is_pyobject:
1548 1549
            self.arg_tuple = TupleNode(self.pos, args = self.args)
            self.arg_tuple.analyse_types(env)
William Stein's avatar
William Stein committed
1550 1551 1552 1553 1554 1555 1556 1557 1558 1559 1560 1561 1562 1563 1564 1565 1566 1567 1568 1569 1570 1571 1572 1573 1574 1575 1576 1577 1578 1579 1580 1581 1582 1583
            self.args = None
            self.type = py_object_type
            self.is_temp = 1
        else:
            for arg in self.args:
                arg.analyse_types(env)
            if self.self and func_type.args:
                # Coerce 'self' to the type expected by the method.
                expected_type = func_type.args[0].type
                self.coerced_self = CloneNode(self.self).coerce_to(
                    expected_type, env)
                # Insert coerced 'self' argument into argument list.
                self.args.insert(0, self.coerced_self)
            self.analyse_c_function_call(env)
    
    def function_type(self):
        # Return the type of the function being called, coercing a function
        # pointer to a function if necessary.
        func_type = self.function.type
        if func_type.is_ptr:
            func_type = func_type.base_type
        return func_type
    
    def analyse_c_function_call(self, env):
        func_type = self.function_type()
        # Check function type
        if not func_type.is_cfunction:
            if not func_type.is_error:
                error(self.pos, "Calling non-function type '%s'" %
                    func_type)
            self.type = PyrexTypes.error_type
            self.result_code = "<error>"
            return
        # Check no. of args
1584 1585
        max_nargs = len(func_type.args)
        expected_nargs = max_nargs - func_type.optional_arg_count
William Stein's avatar
William Stein committed
1586 1587
        actual_nargs = len(self.args)
        if actual_nargs < expected_nargs \
1588
            or (not func_type.has_varargs and actual_nargs > max_nargs):
William Stein's avatar
William Stein committed
1589 1590 1591
                expected_str = str(expected_nargs)
                if func_type.has_varargs:
                    expected_str = "at least " + expected_str
1592
                elif func_type.optional_arg_count:
1593
                    if actual_nargs < max_nargs:
1594 1595 1596
                        expected_str = "at least " + expected_str
                    else:
                        expected_str = "at most " + str(max_nargs)
William Stein's avatar
William Stein committed
1597 1598 1599 1600 1601 1602 1603 1604
                error(self.pos, 
                    "Call with wrong number of arguments (expected %s, got %s)"
                        % (expected_str, actual_nargs))
                self.args = None
                self.type = PyrexTypes.error_type
                self.result_code = "<error>"
                return
        # Coerce arguments
1605
        for i in range(min(max_nargs, actual_nargs)):
William Stein's avatar
William Stein committed
1606 1607
            formal_type = func_type.args[i].type
            self.args[i] = self.args[i].coerce_to(formal_type, env)
1608
        for i in range(max_nargs, actual_nargs):
William Stein's avatar
William Stein committed
1609 1610 1611 1612 1613 1614 1615 1616 1617 1618 1619
            if self.args[i].type.is_pyobject:
                error(self.args[i].pos, 
                    "Python object cannot be passed as a varargs parameter")
        # Calc result type and code fragment
        self.type = func_type.return_type
        if self.type.is_pyobject \
            or func_type.exception_value is not None \
            or func_type.exception_check:
                self.is_temp = 1
                if self.type.is_pyobject:
                    self.result_ctype = py_object_type
Robert Bradshaw's avatar
Robert Bradshaw committed
1620 1621 1622 1623 1624
        # C++ exception handler
        if func_type.exception_check == '+':
            if func_type.exception_value is None:
                env.use_utility_code(cpp_exception_utility_code)

William Stein's avatar
William Stein committed
1625 1626 1627 1628 1629 1630 1631 1632 1633
    def calculate_result_code(self):
        return self.c_call_code()
    
    def c_call_code(self):
        func_type = self.function_type()
        if self.args is None or not func_type.is_cfunction:
            return "<error>"
        formal_args = func_type.args
        arg_list_code = []
1634 1635 1636 1637 1638
        args = zip(formal_args, self.args)
        max_nargs = len(func_type.args)
        expected_nargs = max_nargs - func_type.optional_arg_count
        actual_nargs = len(self.args)
        for formal_arg, actual_arg in args[:expected_nargs]:
William Stein's avatar
William Stein committed
1639 1640
                arg_code = actual_arg.result_as(formal_arg.type)
                arg_list_code.append(arg_code)
1641
                
1642
        if func_type.optional_arg_count:
1643
            if expected_nargs == actual_nargs:
1644
                optional_args = 'NULL'
1645 1646 1647 1648 1649 1650 1651 1652
            else:
                optional_arg_code = [str(actual_nargs - expected_nargs)]
                for formal_arg, actual_arg in args[expected_nargs:actual_nargs]:
                    arg_code = actual_arg.result_as(formal_arg.type)
                    optional_arg_code.append(arg_code)
#                for formal_arg in formal_args[actual_nargs:max_nargs]:
#                    optional_arg_code.append(formal_arg.type.cast_code('0'))
                optional_arg_struct = '{%s}' % ','.join(optional_arg_code)
1653 1654
                optional_args = PyrexTypes.c_void_ptr_type.cast_code(
                    '&' + func_type.op_arg_struct.base_type.cast_code(optional_arg_struct))
1655
            arg_list_code.append(optional_args)
1656
            
William Stein's avatar
William Stein committed
1657 1658 1659
        for actual_arg in self.args[len(formal_args):]:
            arg_list_code.append(actual_arg.result_code)
        result = "%s(%s)" % (self.function.result_code,
1660
            join(arg_list_code, ", "))
1661
        if self.wrapper_call or \
1662
                self.function.entry.is_unbound_cmethod and self.function.entry.type.is_overridable:
1663
            result = "(%s = 1, %s)" % (Naming.skip_dispatch_cname, result)
William Stein's avatar
William Stein committed
1664 1665 1666 1667 1668
        return result
    
    def generate_result_code(self, code):
        func_type = self.function_type()
        if func_type.is_pyobject:
1669
            arg_code = self.arg_tuple.py_result()
William Stein's avatar
William Stein committed
1670
            code.putln(
1671
                "%s = PyObject_Call(%s, %s, NULL); %s" % (
William Stein's avatar
William Stein committed
1672 1673
                    self.result_code,
                    self.function.py_result(),
1674
                    arg_code,
Robert Bradshaw's avatar
Robert Bradshaw committed
1675
                    code.error_goto_if_null(self.result_code, self.pos)))
William Stein's avatar
William Stein committed
1676 1677 1678 1679 1680 1681 1682 1683 1684 1685 1686 1687 1688 1689 1690 1691 1692 1693 1694 1695 1696 1697
        elif func_type.is_cfunction:
            exc_checks = []
            if self.type.is_pyobject:
                exc_checks.append("!%s" % self.result_code)
            else:
                exc_val = func_type.exception_value
                exc_check = func_type.exception_check
                if exc_val is not None:
                    exc_checks.append("%s == %s" % (self.result_code, exc_val))
                if exc_check:
                    exc_checks.append("PyErr_Occurred()")
            if self.is_temp or exc_checks:
                rhs = self.c_call_code()
                if self.result_code:
                    lhs = "%s = " % self.result_code
                    if self.is_temp and self.type.is_pyobject:
                        #return_type = self.type # func_type.return_type
                        #print "SimpleCallNode.generate_result_code: casting", rhs, \
                        #	"from", return_type, "to pyobject" ###
                        rhs = typecast(py_object_type, self.type, rhs)
                else:
                    lhs = ""
Felix Wu's avatar
Felix Wu committed
1698
                if func_type.exception_check == '+':
Robert Bradshaw's avatar
Robert Bradshaw committed
1699 1700 1701 1702 1703 1704
                    if func_type.exception_value is None:
                        raise_py_exception = "__Pyx_CppExn2PyErr()"
                    elif func_type.exception_value.type.is_pyobject:
                        raise_py_exception = 'PyErr_SetString(%s, "")' % func_type.exception_value.entry.cname
                    else:
                        raise_py_exception = '%s(); if (!PyErr_Occurred()) PyErr_SetString(PyExc_RuntimeError , "Error converting c++ exception.")' % func_type.exception_value.entry.cname
Felix Wu's avatar
Felix Wu committed
1705
                    code.putln(
Robert Bradshaw's avatar
Robert Bradshaw committed
1706
                    "try {%s%s;} catch(...) {%s; %s}" % (
Felix Wu's avatar
Felix Wu committed
1707 1708
                        lhs,
                        rhs,
Robert Bradshaw's avatar
Robert Bradshaw committed
1709
                        raise_py_exception,
Felix Wu's avatar
Felix Wu committed
1710 1711
                        code.error_goto(self.pos)))
                    return
William Stein's avatar
William Stein committed
1712
                code.putln(
Robert Bradshaw's avatar
Robert Bradshaw committed
1713
                    "%s%s; %s" % (
William Stein's avatar
William Stein committed
1714 1715
                        lhs,
                        rhs,
Robert Bradshaw's avatar
Robert Bradshaw committed
1716
                        code.error_goto_if(" && ".join(exc_checks), self.pos)))    
William Stein's avatar
William Stein committed
1717 1718 1719 1720 1721 1722 1723 1724 1725 1726 1727 1728

class GeneralCallNode(ExprNode):
    #  General Python function call, including keyword,
    #  * and ** arguments.
    #
    #  function         ExprNode
    #  positional_args  ExprNode          Tuple of positional arguments
    #  keyword_args     ExprNode or None  Dict of keyword arguments
    #  starstar_arg     ExprNode or None  Dict of extra keyword args
    
    subexprs = ['function', 'positional_args', 'keyword_args', 'starstar_arg']

1729 1730 1731 1732 1733 1734 1735 1736 1737 1738 1739
    def compile_time_value(self, denv):
        function = self.function.compile_time_value(denv)
        positional_args = self.positional_args.compile_time_value(denv)
        keyword_args = self.keyword_args.compile_time_value(denv)
        starstar_arg = self.starstar_arg.compile_time_value(denv)
        try:
            keyword_args.update(starstar_arg)
            return function(*positional_args, **keyword_args)
        except Exception, e:
            self.compile_time_value_error(e)

William Stein's avatar
William Stein committed
1740 1741 1742 1743 1744 1745 1746 1747 1748 1749 1750 1751 1752 1753 1754 1755 1756 1757
    def analyse_types(self, env):
        self.function.analyse_types(env)
        self.positional_args.analyse_types(env)
        if self.keyword_args:
            self.keyword_args.analyse_types(env)
        if self.starstar_arg:
            self.starstar_arg.analyse_types(env)
        self.function = self.function.coerce_to_pyobject(env)
        self.positional_args = \
            self.positional_args.coerce_to_pyobject(env)
        if self.starstar_arg:
            self.starstar_arg = \
                self.starstar_arg.coerce_to_pyobject(env)
        self.type = py_object_type
        self.is_temp = 1
        
    def generate_result_code(self, code):
        if self.keyword_args and self.starstar_arg:
Robert Bradshaw's avatar
Robert Bradshaw committed
1758 1759
            code.put_error_if_neg(self.pos, 
                "PyDict_Update(%s, %s)" % (
William Stein's avatar
William Stein committed
1760
                    self.keyword_args.py_result(), 
Robert Bradshaw's avatar
Robert Bradshaw committed
1761
                    self.starstar_arg.py_result()))
William Stein's avatar
William Stein committed
1762 1763 1764 1765 1766 1767 1768 1769
            keyword_code = self.keyword_args.py_result()
        elif self.keyword_args:
            keyword_code = self.keyword_args.py_result()
        elif self.starstar_arg:
            keyword_code = self.starstar_arg.py_result()
        else:
            keyword_code = None
        if not keyword_code:
1770
            call_code = "PyObject_Call(%s, %s, NULL)" % (
William Stein's avatar
William Stein committed
1771 1772 1773 1774 1775 1776 1777 1778
                self.function.py_result(),
                self.positional_args.py_result())
        else:
            call_code = "PyEval_CallObjectWithKeywords(%s, %s, %s)" % (
                self.function.py_result(),
                self.positional_args.py_result(),
                keyword_code)
        code.putln(
Robert Bradshaw's avatar
Robert Bradshaw committed
1779
            "%s = %s; %s" % (
William Stein's avatar
William Stein committed
1780 1781
                self.result_code,
                call_code,
Robert Bradshaw's avatar
Robert Bradshaw committed
1782
                code.error_goto_if_null(self.result_code, self.pos)))
William Stein's avatar
William Stein committed
1783 1784 1785 1786 1787 1788 1789 1790 1791 1792


class AsTupleNode(ExprNode):
    #  Convert argument to tuple. Used for normalising
    #  the * argument of a function call.
    #
    #  arg    ExprNode
    
    subexprs = ['arg']
    
1793 1794 1795 1796 1797 1798 1799
    def compile_time_value(self, denv):
        arg = self.arg.compile_time_value(denv)
        try:
            return tuple(arg)
        except Exception, e:
            self.compile_time_value_error(e)

William Stein's avatar
William Stein committed
1800 1801 1802 1803 1804 1805 1806 1807
    def analyse_types(self, env):
        self.arg.analyse_types(env)
        self.arg = self.arg.coerce_to_pyobject(env)
        self.type = py_object_type
        self.is_temp = 1
    
    def generate_result_code(self, code):
        code.putln(
Robert Bradshaw's avatar
Robert Bradshaw committed
1808
            "%s = PySequence_Tuple(%s); %s" % (
William Stein's avatar
William Stein committed
1809 1810
                self.result_code,
                self.arg.py_result(),
Robert Bradshaw's avatar
Robert Bradshaw committed
1811
                code.error_goto_if_null(self.result_code, self.pos)))
William Stein's avatar
William Stein committed
1812 1813 1814 1815 1816 1817 1818 1819 1820 1821 1822 1823 1824 1825 1826 1827 1828 1829 1830 1831 1832 1833 1834 1835
    

class AttributeNode(ExprNode):
    #  obj.attribute
    #
    #  obj          ExprNode
    #  attribute    string
    #
    #  Used internally:
    #
    #  is_py_attr           boolean   Is a Python getattr operation
    #  member               string    C name of struct member
    #  is_called            boolean   Function call is being done on result
    #  entry                Entry     Symbol table entry of attribute
    #  interned_attr_cname	string    C name of interned attribute name
    
    is_attribute = 1
    subexprs = ['obj']
    
    type = PyrexTypes.error_type
    result = "<error>"
    entry = None
    is_called = 0

1836 1837 1838 1839 1840 1841 1842 1843 1844 1845 1846
    def coerce_to(self, dst_type, env):
        #  If coercing to a generic pyobject and this is a cpdef function
        #  we can create the corresponding attribute
        if dst_type is py_object_type:
            entry = self.entry
            if entry and entry.is_cfunction and entry.as_variable:
                # must be a cpdef function
                self.is_temp = 1
                self.entry = entry.as_variable
                self.analyse_as_python_attribute(env) 
                return self
1847
        return ExprNode.coerce_to(self, dst_type, env)
1848
    
1849 1850 1851 1852 1853 1854 1855 1856 1857 1858 1859 1860
    def compile_time_value(self, denv):
        attr = self.attribute
        if attr.beginswith("__") and attr.endswith("__"):
            self.error("Invalid attribute name '%s' in compile-time expression"
                % attr)
            return None
        obj = self.arg.compile_time_value(denv)
        try:
            return getattr(obj, attr)
        except Exception, e:
            self.compile_time_value_error(e)

William Stein's avatar
William Stein committed
1861 1862 1863 1864 1865 1866 1867 1868 1869 1870 1871 1872 1873 1874 1875 1876 1877 1878 1879 1880 1881 1882 1883 1884 1885 1886 1887 1888 1889 1890 1891 1892 1893 1894 1895 1896 1897 1898 1899 1900 1901 1902 1903 1904
    def analyse_target_declaration(self, env):
        pass
    
    def analyse_target_types(self, env):
        self.analyse_types(env, target = 1)
    
    def analyse_types(self, env, target = 0):
        if self.analyse_as_cimported_attribute(env, target):
            return
        if not target and self.analyse_as_unbound_cmethod(env):
            return
        self.analyse_as_ordinary_attribute(env, target)
    
    def analyse_as_cimported_attribute(self, env, target):
        # Try to interpret this as a reference to an imported
        # C const, type, var or function. If successful, mutates
        # this node into a NameNode and returns 1, otherwise
        # returns 0.
        module_scope = self.obj.analyse_as_module(env)
        if module_scope:
            entry = module_scope.lookup_here(self.attribute)
            if entry and (
                entry.is_cglobal or entry.is_cfunction
                or entry.is_type or entry.is_const):
                    self.mutate_into_name_node(env, entry, target)
                    return 1
        return 0
    
    def analyse_as_unbound_cmethod(self, env):
        # Try to interpret this as a reference to an unbound
        # C method of an extension type. If successful, mutates
        # this node into a NameNode and returns 1, otherwise
        # returns 0.
        type = self.obj.analyse_as_extension_type(env)
        if type:
            entry = type.scope.lookup_here(self.attribute)
            if entry and entry.is_cmethod:
                # Create a temporary entry describing the C method
                # as an ordinary function.
                ubcm_entry = Symtab.Entry(entry.name,
                    "%s->%s" % (type.vtabptr_cname, entry.cname),
                    entry.type)
                ubcm_entry.is_cfunction = 1
                ubcm_entry.func_cname = entry.func_cname
1905
                ubcm_entry.is_unbound_cmethod = 1
William Stein's avatar
William Stein committed
1906 1907 1908 1909 1910 1911 1912 1913 1914 1915 1916 1917 1918 1919 1920 1921 1922 1923 1924 1925 1926 1927 1928 1929 1930 1931 1932 1933 1934 1935 1936 1937 1938 1939 1940
                self.mutate_into_name_node(env, ubcm_entry, None)
                return 1
        return 0
    
    def analyse_as_extension_type(self, env):
        # Try to interpret this as a reference to an extension type
        # in a cimported module. Returns the extension type, or None.
        module_scope = self.obj.analyse_as_module(env)
        if module_scope:
            entry = module_scope.lookup_here(self.attribute)
            if entry and entry.is_type and entry.type.is_extension_type:
                return entry.type
        return None
    
    def analyse_as_module(self, env):
        # Try to interpret this as a reference to a cimported module
        # in another cimported module. Returns the module scope, or None.
        module_scope = self.obj.analyse_as_module(env)
        if module_scope:
            entry = module_scope.lookup_here(self.attribute)
            if entry and entry.as_module:
                return entry.as_module
        return None
                
    def mutate_into_name_node(self, env, entry, target):
        # Mutate this node into a NameNode and complete the
        # analyse_types phase.
        self.__class__ = NameNode
        self.name = self.attribute
        self.entry = entry
        del self.obj
        del self.attribute
        if target:
            NameNode.analyse_target_types(self, env)
        else:
1941
            NameNode.analyse_rvalue_entry(self, env)
William Stein's avatar
William Stein committed
1942 1943 1944 1945 1946
    
    def analyse_as_ordinary_attribute(self, env, target):
        self.obj.analyse_types(env)
        self.analyse_attribute(env)
        if self.entry and self.entry.is_cmethod and not self.is_called:
1947 1948
#            error(self.pos, "C method can only be called")
            pass
1949 1950 1951
        ## Reference to C array turns into pointer to first element.
        #while self.type.is_array:
        #	self.type = self.type.element_ptr_type()
William Stein's avatar
William Stein committed
1952 1953 1954 1955 1956 1957 1958 1959 1960 1961 1962 1963
        if self.is_py_attr:
            if not target:
                self.is_temp = 1
                self.result_ctype = py_object_type
    
    def analyse_attribute(self, env):
        # Look up attribute and set self.type and self.member.
        self.is_py_attr = 0
        self.member = self.attribute
        if self.obj.type.is_string:
            self.obj = self.obj.coerce_to_pyobject(env)
        obj_type = self.obj.type
1964
        if obj_type.is_ptr or obj_type.is_array:
William Stein's avatar
William Stein committed
1965 1966 1967 1968 1969 1970 1971 1972 1973 1974
            obj_type = obj_type.base_type
            self.op = "->"
        elif obj_type.is_extension_type:
            self.op = "->"
        else:
            self.op = "."
        if obj_type.has_attributes:
            entry = None
            if obj_type.attributes_known():
                entry = obj_type.scope.lookup_here(self.attribute)
Robert Bradshaw's avatar
Robert Bradshaw committed
1975 1976
                if entry and entry.is_member:
                    entry = None
William Stein's avatar
William Stein committed
1977 1978 1979 1980 1981 1982 1983
            else:
                error(self.pos, 
                    "Cannot select attribute of incomplete type '%s'" 
                    % obj_type)
                obj_type = PyrexTypes.error_type
            self.entry = entry
            if entry:
1984 1985
                if obj_type.is_extension_type and entry.name == "__weakref__":
                    error(self.pos, "Illegal use of special attribute __weakref__")
1986 1987
                # methods need the normal attribute lookup
                # because they do not have struct entries
1988 1989 1990 1991
                if entry.is_variable or entry.is_cmethod:
                    self.type = entry.type
                    self.member = entry.cname
                    return
William Stein's avatar
William Stein committed
1992 1993 1994 1995 1996 1997 1998 1999 2000
                else:
                    # If it's not a variable or C method, it must be a Python
                    # method of an extension type, so we treat it like a Python
                    # attribute.
                    pass
        # If we get here, the base object is not a struct/union/extension 
        # type, or it is an extension type and the attribute is either not
        # declared or is declared as a Python method. Treat it as a Python
        # attribute reference.
2001 2002 2003 2004 2005
        self.analyse_as_python_attribute(env)
                    
    def analyse_as_python_attribute(self, env):
        obj_type = self.obj.type
        self.member = self.attribute
William Stein's avatar
William Stein committed
2006 2007 2008 2009 2010 2011 2012 2013 2014 2015 2016 2017 2018 2019 2020 2021 2022 2023 2024 2025 2026 2027 2028 2029 2030 2031 2032 2033 2034 2035 2036 2037 2038 2039 2040 2041 2042 2043 2044 2045 2046 2047 2048 2049 2050 2051 2052
        if obj_type.is_pyobject:
            self.type = py_object_type
            self.is_py_attr = 1
            if Options.intern_names:
                self.interned_attr_cname = env.intern(self.attribute)
        else:
            if not obj_type.is_error:
                error(self.pos, 
                    "Object of type '%s' has no attribute '%s'" %
                    (obj_type, self.attribute))
        
    def is_simple(self):
        if self.obj:
            return self.result_in_temp() or self.obj.is_simple()
        else:
            return NameNode.is_simple(self)

    def is_lvalue(self):
        if self.obj:
            return 1
        else:
            return NameNode.is_lvalue(self)
    
    def is_ephemeral(self):
        if self.obj:
            return self.obj.is_ephemeral()
        else:
            return NameNode.is_ephemeral(self)
    
    def calculate_result_code(self):
        #print "AttributeNode.calculate_result_code:", self.member ###
        #print "...obj node =", self.obj, "code", self.obj.result_code ###
        #print "...obj type", self.obj.type, "ctype", self.obj.ctype() ###
        obj = self.obj
        obj_code = obj.result_as(obj.type)
        #print "...obj_code =", obj_code ###
        if self.entry and self.entry.is_cmethod:
            return "((struct %s *)%s%s%s)->%s" % (
                obj.type.vtabstruct_cname, obj_code, self.op, 
                obj.type.vtabslot_cname, self.member)
        else:
            return "%s%s%s" % (obj_code, self.op, self.member)
    
    def generate_result_code(self, code):
        if self.is_py_attr:
            if Options.intern_names:
                code.putln(
Robert Bradshaw's avatar
Robert Bradshaw committed
2053
                    '%s = PyObject_GetAttr(%s, %s); %s' % (
William Stein's avatar
William Stein committed
2054 2055 2056
                        self.result_code,
                        self.obj.py_result(),
                        self.interned_attr_cname,
Robert Bradshaw's avatar
Robert Bradshaw committed
2057
                        code.error_goto_if_null(self.result_code, self.pos)))
William Stein's avatar
William Stein committed
2058 2059
            else:
                code.putln(
Robert Bradshaw's avatar
Robert Bradshaw committed
2060
                    '%s = PyObject_GetAttrString(%s, "%s"); %s' % (
William Stein's avatar
William Stein committed
2061
                        self.result_code,
kayhayen@gmx.de's avatar
typo  
kayhayen@gmx.de committed
2062
                        self.obj.py_result(),
William Stein's avatar
William Stein committed
2063
                        self.attribute,
Robert Bradshaw's avatar
Robert Bradshaw committed
2064
                        code.error_goto_if_null(self.result_code, self.pos)))
William Stein's avatar
William Stein committed
2065 2066 2067 2068 2069
    
    def generate_assignment_code(self, rhs, code):
        self.obj.generate_evaluation_code(code)
        if self.is_py_attr:
            if Options.intern_names:
Robert Bradshaw's avatar
Robert Bradshaw committed
2070 2071
                code.put_error_if_neg(self.pos, 
                    'PyObject_SetAttr(%s, %s, %s)' % (
William Stein's avatar
William Stein committed
2072 2073
                        self.obj.py_result(),
                        self.interned_attr_cname,
Robert Bradshaw's avatar
Robert Bradshaw committed
2074
                        rhs.py_result()))
William Stein's avatar
William Stein committed
2075
            else:
Robert Bradshaw's avatar
Robert Bradshaw committed
2076 2077
                code.put_error_if_neg(self.pos,
                    'PyObject_SetAttrString(%s, "%s", %s)' % (
William Stein's avatar
William Stein committed
2078 2079
                        self.obj.py_result(),
                        self.attribute,
Robert Bradshaw's avatar
Robert Bradshaw committed
2080
                        rhs.py_result()))
William Stein's avatar
William Stein committed
2081 2082 2083 2084 2085 2086 2087 2088 2089
            rhs.generate_disposal_code(code)
        else:
            select_code = self.result_code
            if self.type.is_pyobject:
                rhs.make_owned_reference(code)
                code.put_decref(select_code, self.ctype())
            code.putln(
                "%s = %s;" % (
                    select_code,
2090 2091
                    rhs.result_as(self.ctype())))
                    #rhs.result_code))
William Stein's avatar
William Stein committed
2092 2093 2094 2095 2096 2097 2098
            rhs.generate_post_assignment_code(code)
        self.obj.generate_disposal_code(code)
    
    def generate_deletion_code(self, code):
        self.obj.generate_evaluation_code(code)
        if self.is_py_attr:
            if Options.intern_names:
Robert Bradshaw's avatar
Robert Bradshaw committed
2099 2100
                code.put_error_if_neg(self.pos,
                    'PyObject_DelAttr(%s, %s)' % (
William Stein's avatar
William Stein committed
2101
                        self.obj.py_result(),
Robert Bradshaw's avatar
Robert Bradshaw committed
2102
                        self.interned_attr_cname))
William Stein's avatar
William Stein committed
2103
            else:
Robert Bradshaw's avatar
Robert Bradshaw committed
2104 2105
                code.put_error_if_neg(self.pos, 
                    'PyObject_DelAttrString(%s, "%s")' % (
William Stein's avatar
William Stein committed
2106
                        self.obj.py_result(),
Robert Bradshaw's avatar
Robert Bradshaw committed
2107
                        self.attribute))
William Stein's avatar
William Stein committed
2108 2109 2110
        else:
            error(self.pos, "Cannot delete C attribute of extension type")
        self.obj.generate_disposal_code(code)
2111 2112 2113 2114 2115 2116
        
    def annotate(self, code):
        if self.is_py_attr:
            code.annotate(self.pos, AnnotationItem('py_attr', 'python attribute', size=len(self.attribute)))
        else:
            code.annotate(self.pos, AnnotationItem('c_attr', 'c attribute', size=len(self.attribute)))
William Stein's avatar
William Stein committed
2117 2118 2119 2120 2121 2122 2123 2124 2125 2126 2127 2128

#-------------------------------------------------------------------
#
#  Constructor nodes
#
#-------------------------------------------------------------------

class SequenceNode(ExprNode):
    #  Base class for list and tuple constructor nodes.
    #  Contains common code for performing sequence unpacking.
    #
    #  args                    [ExprNode]
2129
    #  iterator                ExprNode
William Stein's avatar
William Stein committed
2130 2131 2132 2133 2134 2135 2136 2137
    #  unpacked_items          [ExprNode] or None
    #  coerced_unpacked_items  [ExprNode] or None
    
    subexprs = ['args']
    
    is_sequence_constructor = 1
    unpacked_items = None
    
2138 2139 2140
    def compile_time_value_list(self, denv):
        return [arg.compile_time_value(denv) for arg in self.args]

William Stein's avatar
William Stein committed
2141 2142 2143 2144 2145 2146 2147 2148 2149 2150 2151 2152 2153
    def analyse_target_declaration(self, env):
        for arg in self.args:
            arg.analyse_target_declaration(env)

    def analyse_types(self, env):
        for i in range(len(self.args)):
            arg = self.args[i]
            arg.analyse_types(env)
            self.args[i] = arg.coerce_to_pyobject(env)
        self.type = py_object_type
        self.is_temp = 1
    
    def analyse_target_types(self, env):
2154 2155
        self.iterator = PyTempNode(self.pos, env)
        self.unpacked_items = []
William Stein's avatar
William Stein committed
2156 2157 2158 2159 2160 2161 2162 2163 2164 2165
        self.coerced_unpacked_items = []
        for arg in self.args:
            arg.analyse_target_types(env)
            unpacked_item = PyTempNode(self.pos, env)
            coerced_unpacked_item = unpacked_item.coerce_to(arg.type, env)
            self.unpacked_items.append(unpacked_item)
            self.coerced_unpacked_items.append(coerced_unpacked_item)
        self.type = py_object_type
        env.use_utility_code(unpacking_utility_code)
    
2166 2167 2168
    def allocate_target_temps(self, env, rhs):
        self.iterator.allocate_temps(env)
        for arg, node in zip(self.args, self.coerced_unpacked_items):
William Stein's avatar
William Stein committed
2169
            node.allocate_temps(env)
2170 2171 2172
            arg.allocate_target_temps(env, node)
            #arg.release_target_temp(env)
            #node.release_temp(env)
2173 2174
        if rhs:
            rhs.release_temp(env)
2175 2176 2177 2178 2179 2180 2181 2182
        self.iterator.release_temp(env)
    
#	def release_target_temp(self, env):
#		#for arg in self.args:
#		#	arg.release_target_temp(env)
#		#for node in self.coerced_unpacked_items:
#		#	node.release_temp(env)
#		self.iterator.release_temp(env)
William Stein's avatar
William Stein committed
2183 2184 2185 2186 2187
    
    def generate_result_code(self, code):
        self.generate_operation_code(code)
    
    def generate_assignment_code(self, rhs, code):
Robert Bradshaw's avatar
Robert Bradshaw committed
2188 2189 2190 2191 2192
        code.putln(
            "if (PyTuple_CheckExact(%s) && PyTuple_GET_SIZE(%s) == %s) {" % (
                rhs.py_result(), 
                rhs.py_result(), 
                len(self.args)))
Stefan Behnel's avatar
Stefan Behnel committed
2193
        code.putln("PyObject* tuple = %s;" % rhs.py_result())
Robert Bradshaw's avatar
Robert Bradshaw committed
2194 2195 2196
        for i in range(len(self.args)):
            item = self.unpacked_items[i]
            code.putln(
Stefan Behnel's avatar
Stefan Behnel committed
2197
                "%s = PyTuple_GET_ITEM(tuple, %s);" % (
Robert Bradshaw's avatar
Robert Bradshaw committed
2198 2199 2200 2201 2202 2203 2204
                    item.result_code,
                    i))
            code.put_incref(item.result_code, item.ctype())
            value_node = self.coerced_unpacked_items[i]
            value_node.generate_evaluation_code(code)
            self.args[i].generate_assignment_code(value_node, code)
            
2205
        rhs.generate_disposal_code(code)
Robert Bradshaw's avatar
Robert Bradshaw committed
2206 2207 2208
        code.putln("}")
        code.putln("else {")

2209
        code.putln(
Robert Bradshaw's avatar
Robert Bradshaw committed
2210
            "%s = PyObject_GetIter(%s); %s" % (
2211 2212
                self.iterator.result_code,
                rhs.py_result(),
Robert Bradshaw's avatar
Robert Bradshaw committed
2213
                code.error_goto_if_null(self.iterator.result_code, self.pos)))
2214
        rhs.generate_disposal_code(code)
William Stein's avatar
William Stein committed
2215 2216
        for i in range(len(self.args)):
            item = self.unpacked_items[i]
2217 2218
            unpack_code = "__Pyx_UnpackItem(%s, %d)" % (
                self.iterator.py_result(), i)
William Stein's avatar
William Stein committed
2219
            code.putln(
Robert Bradshaw's avatar
Robert Bradshaw committed
2220
                "%s = %s; %s" % (
William Stein's avatar
William Stein committed
2221 2222
                    item.result_code,
                    typecast(item.ctype(), py_object_type, unpack_code),
Robert Bradshaw's avatar
Robert Bradshaw committed
2223
                    code.error_goto_if_null(item.result_code, self.pos)))
William Stein's avatar
William Stein committed
2224 2225 2226
            value_node = self.coerced_unpacked_items[i]
            value_node.generate_evaluation_code(code)
            self.args[i].generate_assignment_code(value_node, code)
Robert Bradshaw's avatar
Robert Bradshaw committed
2227 2228 2229
        code.put_error_if_neg(self.pos, 
            "__Pyx_EndUnpack(%s)" % (
                self.iterator.py_result()))
William Stein's avatar
William Stein committed
2230
        if debug_disposal_code:
Stefan Behnel's avatar
Stefan Behnel committed
2231
            print("UnpackNode.generate_assignment_code:")
2232
            print("...generating disposal code for %s" % self.iterator)
2233
        self.iterator.generate_disposal_code(code)
William Stein's avatar
William Stein committed
2234

2235
        code.putln("}")
2236 2237 2238 2239 2240 2241 2242 2243 2244
        
    def annotate(self, code):
        for arg in self.args:
            arg.annotate(code)
        if self.unpacked_items:
            for arg in self.unpacked_items:
                arg.annotate(code)
            for arg in self.coerced_unpacked_items:
                arg.annotate(code)
William Stein's avatar
William Stein committed
2245 2246 2247 2248


class TupleNode(SequenceNode):
    #  Tuple constructor.
Robert Bradshaw's avatar
Robert Bradshaw committed
2249 2250 2251 2252 2253
    
    def analyse_types(self, env):
        if len(self.args) == 0:
            self.type = py_object_type
            self.is_temp = 0
2254
            self.is_literal = 1
Robert Bradshaw's avatar
Robert Bradshaw committed
2255 2256 2257 2258 2259
        else:
            SequenceNode.analyse_types(self, env)
            
    def calculate_result_code(self):
        if len(self.args) > 0:
2260
            error(self.pos, "Positive length tuples must be constructed.")
Robert Bradshaw's avatar
Robert Bradshaw committed
2261 2262
        else:
            return Naming.empty_tuple
William Stein's avatar
William Stein committed
2263

2264 2265 2266 2267 2268 2269 2270
    def compile_time_value(self, denv):
        values = self.compile_time_value_list(denv)
        try:
            return tuple(values)
        except Exception, e:
            self.compile_time_value_error(e)
    
William Stein's avatar
William Stein committed
2271
    def generate_operation_code(self, code):
Robert Bradshaw's avatar
Robert Bradshaw committed
2272 2273 2274
        if len(self.args) == 0:
            # result_code is Naming.empty_tuple
            return
William Stein's avatar
William Stein committed
2275
        code.putln(
Robert Bradshaw's avatar
Robert Bradshaw committed
2276
            "%s = PyTuple_New(%s); %s" % (
William Stein's avatar
William Stein committed
2277 2278
                self.result_code,
                len(self.args),
Robert Bradshaw's avatar
Robert Bradshaw committed
2279
                code.error_goto_if_null(self.result_code, self.pos)))
William Stein's avatar
William Stein committed
2280 2281 2282 2283 2284 2285 2286 2287 2288 2289 2290 2291 2292 2293 2294 2295 2296 2297 2298 2299 2300
        for i in range(len(self.args)):
            arg = self.args[i]
            if not arg.result_in_temp():
                code.put_incref(arg.result_code, arg.ctype())
            code.putln(
                "PyTuple_SET_ITEM(%s, %s, %s);" % (
                    self.result_code,
                    i,
                    arg.py_result()))
    
    def generate_subexpr_disposal_code(self, code):
        # We call generate_post_assignment_code here instead
        # of generate_disposal_code, because values were stored
        # in the tuple using a reference-stealing operation.
        for arg in self.args:
            arg.generate_post_assignment_code(code)		


class ListNode(SequenceNode):
    #  List constructor.
    
2301 2302 2303
    def compile_time_value(self, denv):
        return self.compile_time_value_list(denv)

William Stein's avatar
William Stein committed
2304
    def generate_operation_code(self, code):
Robert Bradshaw's avatar
Robert Bradshaw committed
2305
        code.putln("%s = PyList_New(%s); %s" %
William Stein's avatar
William Stein committed
2306 2307
            (self.result_code,
            len(self.args),
Robert Bradshaw's avatar
Robert Bradshaw committed
2308
            code.error_goto_if_null(self.result_code, self.pos)))
William Stein's avatar
William Stein committed
2309 2310 2311 2312 2313 2314 2315 2316 2317 2318 2319 2320 2321 2322 2323 2324 2325
        for i in range(len(self.args)):
            arg = self.args[i]
            #if not arg.is_temp:
            if not arg.result_in_temp():
                code.put_incref(arg.result_code, arg.ctype())
            code.putln("PyList_SET_ITEM(%s, %s, %s);" %
                (self.result_code,
                i,
                arg.py_result()))
                
    def generate_subexpr_disposal_code(self, code):
        # We call generate_post_assignment_code here instead
        # of generate_disposal_code, because values were stored
        # in the list using a reference-stealing operation.
        for arg in self.args:
            arg.generate_post_assignment_code(code)		

Robert Bradshaw's avatar
Robert Bradshaw committed
2326 2327 2328 2329
            
class ListComprehensionNode(SequenceNode):

    subexprs = []
2330
    is_sequence_constructor = 0 # not unpackable
Robert Bradshaw's avatar
Robert Bradshaw committed
2331 2332 2333 2334 2335 2336 2337 2338

    def analyse_types(self, env): 
        self.type = py_object_type
        self.is_temp = 1
        self.append.target = self # this is a CloneNode used in the PyList_Append in the inner loop
        
    def allocate_temps(self, env, result = None): 
        if debug_temp_alloc:
Stefan Behnel's avatar
Stefan Behnel committed
2339
            print("%s Allocating temps" % self)
Robert Bradshaw's avatar
Robert Bradshaw committed
2340 2341 2342 2343 2344
        self.allocate_temp(env, result)
        self.loop.analyse_declarations(env)
        self.loop.analyse_expressions(env)
        
    def generate_operation_code(self, code):
Robert Bradshaw's avatar
Robert Bradshaw committed
2345
        code.putln("%s = PyList_New(%s); %s" %
Robert Bradshaw's avatar
Robert Bradshaw committed
2346 2347
            (self.result_code,
            0,
Robert Bradshaw's avatar
Robert Bradshaw committed
2348
            code.error_goto_if_null(self.result_code, self.pos)))
Robert Bradshaw's avatar
Robert Bradshaw committed
2349
        self.loop.generate_execution_code(code)
2350 2351 2352
        
    def annotate(self, code):
        self.loop.annotate(code)
Robert Bradshaw's avatar
Robert Bradshaw committed
2353 2354 2355 2356 2357 2358 2359 2360 2361 2362 2363 2364 2365 2366


class ListComprehensionAppendNode(ExprNode):

    subexprs = ['expr']
    
    def analyse_types(self, env):
        self.expr.analyse_types(env)
        if self.expr.type != py_object_type:
            self.expr = self.expr.coerce_to_pyobject(env)
        self.type = PyrexTypes.c_int_type
        self.is_temp = 1
    
    def generate_result_code(self, code):
Robert Bradshaw's avatar
Robert Bradshaw committed
2367
        code.putln("%s = PyList_Append(%s, %s); %s" %
Robert Bradshaw's avatar
Robert Bradshaw committed
2368 2369 2370
            (self.result_code,
            self.target.result_code,
            self.expr.result_code,
Robert Bradshaw's avatar
Robert Bradshaw committed
2371
            code.error_goto_if(self.result_code, self.pos)))
Robert Bradshaw's avatar
Robert Bradshaw committed
2372

William Stein's avatar
William Stein committed
2373 2374 2375 2376

class DictNode(ExprNode):
    #  Dictionary constructor.
    #
2377 2378 2379
    #  key_value_pairs  [DictItemNode]
    
    subexprs = ['key_value_pairs']
William Stein's avatar
William Stein committed
2380
    
2381
    def compile_time_value(self, denv):
Robert Bradshaw's avatar
Robert Bradshaw committed
2382 2383
        pairs = [(item.key.compile_time_value(denv), item.value.compile_time_value(denv))
            for item in self.key_value_pairs]
2384 2385 2386 2387 2388
        try:
            return dict(pairs)
        except Exception, e:
            self.compile_time_value_error(e)
    
William Stein's avatar
William Stein committed
2389
    def analyse_types(self, env):
Robert Bradshaw's avatar
Robert Bradshaw committed
2390 2391
        for item in self.key_value_pairs:
            item.analyse_types(env)
William Stein's avatar
William Stein committed
2392 2393 2394 2395 2396 2397 2398
        self.type = py_object_type
        self.is_temp = 1
    
    def allocate_temps(self, env, result = None):
        #  Custom method used here because key-value
        #  pairs are evaluated and used one at a time.
        self.allocate_temp(env, result)
Robert Bradshaw's avatar
Robert Bradshaw committed
2399 2400 2401 2402 2403
        for item in self.key_value_pairs:
            item.key.allocate_temps(env)
            item.value.allocate_temps(env)
            item.key.release_temp(env)
            item.value.release_temp(env)
William Stein's avatar
William Stein committed
2404 2405 2406 2407 2408
    
    def generate_evaluation_code(self, code):
        #  Custom method used here because key-value
        #  pairs are evaluated and used one at a time.
        code.putln(
Robert Bradshaw's avatar
Robert Bradshaw committed
2409
            "%s = PyDict_New(); %s" % (
William Stein's avatar
William Stein committed
2410
                self.result_code,
Robert Bradshaw's avatar
Robert Bradshaw committed
2411
                code.error_goto_if_null(self.result_code, self.pos)))
Robert Bradshaw's avatar
Robert Bradshaw committed
2412 2413
        for item in self.key_value_pairs:
            item.generate_evaluation_code(code)
Robert Bradshaw's avatar
Robert Bradshaw committed
2414 2415
            code.put_error_if_neg(self.pos, 
                "PyDict_SetItem(%s, %s, %s)" % (
William Stein's avatar
William Stein committed
2416
                    self.result_code,
Robert Bradshaw's avatar
Robert Bradshaw committed
2417 2418 2419
                    item.key.py_result(),
                    item.value.py_result()))
            item.generate_disposal_code(code)
2420 2421
            
    def annotate(self, code):
Robert Bradshaw's avatar
Robert Bradshaw committed
2422 2423 2424 2425 2426 2427 2428 2429 2430 2431 2432 2433 2434 2435 2436 2437 2438 2439 2440 2441 2442 2443 2444
        for item in self.key_value_pairs:
            item.annotate(code)
            
class DictItemNode(ExprNode):
    # Represents a single item in a DictNode
    #
    # key          ExprNode
    # value        ExprNode
    subexprs = ['key', 'value']
            
    def analyse_types(self, env):
        self.key.analyse_types(env)
        self.value.analyse_types(env)
        self.key = self.key.coerce_to_pyobject(env)
        self.value = self.value.coerce_to_pyobject(env)
        
    def generate_evaluation_code(self, code):
        self.key.generate_evaluation_code(code)
        self.value.generate_evaluation_code(code)
        
    def generate_disposal_code(self, code):
        self.key.generate_disposal_code(code)
        self.value.generate_disposal_code(code)
William Stein's avatar
William Stein committed
2445 2446 2447 2448 2449 2450 2451 2452 2453 2454 2455 2456 2457 2458 2459 2460 2461 2462 2463 2464 2465 2466 2467 2468 2469 2470 2471 2472

class ClassNode(ExprNode):
    #  Helper class used in the implementation of Python
    #  class definitions. Constructs a class object given
    #  a name, tuple of bases and class dictionary.
    #
    #  name         ExprNode           Name of the class
    #  bases        ExprNode           Base class tuple
    #  dict         ExprNode           Class dict (not owned by this node)
    #  doc          ExprNode or None   Doc string
    #  module_name  string             Name of defining module
    
    subexprs = ['name', 'bases', 'doc']
    
    def analyse_types(self, env):
        self.name.analyse_types(env)
        self.name = self.name.coerce_to_pyobject(env)
        self.bases.analyse_types(env)
        if self.doc:
            self.doc.analyse_types(env)
            self.doc = self.doc.coerce_to_pyobject(env)
        self.module_name = env.global_scope().qualified_name
        self.type = py_object_type
        self.is_temp = 1
        env.use_utility_code(create_class_utility_code);
    
    def generate_result_code(self, code):
        if self.doc:
Robert Bradshaw's avatar
Robert Bradshaw committed
2473 2474
            code.put_error_if_neg(self.pos, 
                'PyDict_SetItemString(%s, "__doc__", %s)' % (
William Stein's avatar
William Stein committed
2475
                    self.dict.py_result(),
Robert Bradshaw's avatar
Robert Bradshaw committed
2476
                    self.doc.py_result()))
William Stein's avatar
William Stein committed
2477
        code.putln(
Robert Bradshaw's avatar
Robert Bradshaw committed
2478
            '%s = __Pyx_CreateClass(%s, %s, %s, "%s"); %s' % (
William Stein's avatar
William Stein committed
2479 2480 2481 2482 2483
                self.result_code,
                self.bases.py_result(),
                self.dict.py_result(),
                self.name.py_result(),
                self.module_name,
Robert Bradshaw's avatar
Robert Bradshaw committed
2484
                code.error_goto_if_null(self.result_code, self.pos)))
William Stein's avatar
William Stein committed
2485 2486 2487 2488 2489 2490 2491 2492 2493 2494 2495 2496 2497 2498 2499 2500 2501 2502 2503


class UnboundMethodNode(ExprNode):
    #  Helper class used in the implementation of Python
    #  class definitions. Constructs an unbound method
    #  object from a class and a function.
    #
    #  class_cname   string     C var holding the class object
    #  function      ExprNode   Function object
    
    subexprs = ['function']
    
    def analyse_types(self, env):
        self.function.analyse_types(env)
        self.type = py_object_type
        self.is_temp = 1
    
    def generate_result_code(self, code):
        code.putln(
Robert Bradshaw's avatar
Robert Bradshaw committed
2504
            "%s = PyMethod_New(%s, 0, %s); %s" % (
William Stein's avatar
William Stein committed
2505 2506 2507
                self.result_code,
                self.function.py_result(),
                self.class_cname,
Robert Bradshaw's avatar
Robert Bradshaw committed
2508
                code.error_goto_if_null(self.result_code, self.pos)))
William Stein's avatar
William Stein committed
2509 2510 2511 2512 2513 2514 2515 2516 2517 2518 2519 2520 2521 2522 2523


class PyCFunctionNode(AtomicExprNode):
    #  Helper class used in the implementation of Python
    #  class definitions. Constructs a PyCFunction object
    #  from a PyMethodDef struct.
    #
    #  pymethdef_cname   string   PyMethodDef structure
    
    def analyse_types(self, env):
        self.type = py_object_type
        self.is_temp = 1
    
    def generate_result_code(self, code):
        code.putln(
Robert Bradshaw's avatar
Robert Bradshaw committed
2524
            "%s = PyCFunction_New(&%s, 0); %s" % (
William Stein's avatar
William Stein committed
2525 2526
                self.result_code,
                self.pymethdef_cname,
Robert Bradshaw's avatar
Robert Bradshaw committed
2527
                code.error_goto_if_null(self.result_code, self.pos)))
William Stein's avatar
William Stein committed
2528 2529 2530 2531 2532 2533 2534

#-------------------------------------------------------------------
#
#  Unary operator nodes
#
#-------------------------------------------------------------------

2535 2536 2537 2538 2539 2540 2541
compile_time_unary_operators = {
    'not': operator.not_,
    '~': operator.inv,
    '-': operator.neg,
    '+': operator.pos,
}

William Stein's avatar
William Stein committed
2542 2543 2544 2545 2546 2547 2548 2549 2550 2551 2552 2553 2554 2555
class UnopNode(ExprNode):
    #  operator     string
    #  operand      ExprNode
    #
    #  Processing during analyse_expressions phase:
    #
    #    analyse_c_operation
    #      Called when the operand is not a pyobject.
    #      - Check operand type and coerce if needed.
    #      - Determine result type and result code fragment.
    #      - Allocate temporary for result if needed.
    
    subexprs = ['operand']
    
2556 2557 2558 2559 2560 2561 2562 2563 2564 2565 2566 2567
    def compile_time_value(self, denv):
        func = compile_time_unary_operators.get(self.operator)
        if not func:
            error(self.pos,
                "Unary '%s' not supported in compile-time expression"
                    % self.operator)
        operand = self.operand.compile_time_value(denv)
        try:
            return func(operand)
        except Exception, e:
            self.compile_time_value_error(e)

William Stein's avatar
William Stein committed
2568 2569 2570 2571 2572 2573 2574 2575 2576 2577 2578 2579 2580 2581 2582 2583 2584 2585 2586 2587 2588 2589 2590 2591 2592 2593 2594 2595
    def analyse_types(self, env):
        self.operand.analyse_types(env)
        if self.is_py_operation():
            self.coerce_operand_to_pyobject(env)
            self.type = py_object_type
            self.is_temp = 1
        else:
            self.analyse_c_operation(env)
    
    def check_const(self):
        self.operand.check_const()
    
    def is_py_operation(self):
        return self.operand.type.is_pyobject
    
    def coerce_operand_to_pyobject(self, env):
        self.operand = self.operand.coerce_to_pyobject(env)
    
    def generate_result_code(self, code):
        if self.operand.type.is_pyobject:
            self.generate_py_operation_code(code)
        else:
            if self.is_temp:
                self.generate_c_operation_code(code)
    
    def generate_py_operation_code(self, code):
        function = self.py_operation_function()
        code.putln(
Robert Bradshaw's avatar
Robert Bradshaw committed
2596
            "%s = %s(%s); %s" % (
William Stein's avatar
William Stein committed
2597 2598 2599
                self.result_code, 
                function, 
                self.operand.py_result(),
Robert Bradshaw's avatar
Robert Bradshaw committed
2600
                code.error_goto_if_null(self.result_code, self.pos)))
William Stein's avatar
William Stein committed
2601 2602 2603 2604 2605 2606 2607 2608 2609 2610 2611 2612 2613
        
    def type_error(self):
        if not self.operand.type.is_error:
            error(self.pos, "Invalid operand type for '%s' (%s)" %
                (self.operator, self.operand.type))
        self.type = PyrexTypes.error_type


class NotNode(ExprNode):
    #  'not' operator
    #
    #  operand   ExprNode
    
2614 2615 2616 2617 2618 2619 2620
    def compile_time_value(self, denv):
        operand = self.operand.compile_time_value(denv)
        try:
            return not operand
        except Exception, e:
            self.compile_time_value_error(e)

William Stein's avatar
William Stein committed
2621 2622 2623 2624 2625
    subexprs = ['operand']
    
    def analyse_types(self, env):
        self.operand.analyse_types(env)
        self.operand = self.operand.coerce_to_boolean(env)
2626
        self.type = PyrexTypes.c_bint_type
William Stein's avatar
William Stein committed
2627 2628 2629 2630 2631 2632 2633 2634 2635 2636 2637 2638 2639 2640 2641 2642 2643 2644 2645 2646 2647 2648 2649 2650 2651 2652 2653 2654 2655 2656 2657 2658 2659 2660 2661 2662 2663 2664 2665 2666 2667 2668 2669 2670 2671 2672 2673 2674 2675 2676 2677 2678 2679 2680 2681 2682 2683 2684 2685 2686 2687 2688 2689 2690 2691 2692 2693 2694 2695 2696 2697 2698 2699 2700 2701 2702 2703 2704 2705 2706 2707 2708 2709 2710 2711 2712 2713 2714 2715 2716 2717 2718 2719 2720 2721 2722 2723 2724 2725
    
    def calculate_result_code(self):
        return "(!%s)" % self.operand.result_code
    
    def generate_result_code(self, code):
        pass


class UnaryPlusNode(UnopNode):
    #  unary '+' operator
    
    operator = '+'
    
    def analyse_c_operation(self, env):
        self.type = self.operand.type
    
    def py_operation_function(self):
        return "PyNumber_Positive"
    
    def calculate_result_code(self):
        return self.operand.result_code


class UnaryMinusNode(UnopNode):
    #  unary '-' operator
    
    operator = '-'
    
    def analyse_c_operation(self, env):
        if self.operand.type.is_numeric:
            self.type = self.operand.type
        else:
            self.type_error()
    
    def py_operation_function(self):
        return "PyNumber_Negative"
    
    def calculate_result_code(self):
        return "(-%s)" % self.operand.result_code


class TildeNode(UnopNode):
    #  unary '~' operator

    def analyse_c_operation(self, env):
        if self.operand.type.is_int:
            self.type = self.operand.type
        else:
            self.type_error()

    def py_operation_function(self):
        return "PyNumber_Invert"
    
    def calculate_result_code(self):
        return "(~%s)" % self.operand.result_code


class AmpersandNode(ExprNode):
    #  The C address-of operator.
    #
    #  operand  ExprNode
    
    subexprs = ['operand']

    def analyse_types(self, env):
        self.operand.analyse_types(env)
        argtype = self.operand.type
        if not (argtype.is_cfunction or self.operand.is_lvalue()):
            self.error("Taking address of non-lvalue")
            return
        if argtype.is_pyobject:
            self.error("Cannot take address of Python variable")
            return
        self.type = PyrexTypes.c_ptr_type(argtype)
    
    def check_const(self):
        self.operand.check_const_addr()
    
    def error(self, mess):
        error(self.pos, mess)
        self.type = PyrexTypes.error_type
        self.result_code = "<error>"
    
    def calculate_result_code(self):
        return "(&%s)" % self.operand.result_code

    def generate_result_code(self, code):
        pass
    

unop_node_classes = {
    "+":  UnaryPlusNode,
    "-":  UnaryMinusNode,
    "~":  TildeNode,
}

def unop_node(pos, operator, operand):
    # Construct unnop node of appropriate class for 
    # given operator.
2726 2727
    if isinstance(operand, IntNode) and operator == '-':
        return IntNode(pos = operand.pos, value = -int(operand.value))
Robert Bradshaw's avatar
Robert Bradshaw committed
2728 2729
    elif isinstance(operand, UnopNode) and operand.operator == operator:
        warning(pos, "Python has no increment/decrement operator: %s%sx = %s(%sx) = x" % ((operator,)*4), 5)
William Stein's avatar
William Stein committed
2730 2731 2732 2733 2734 2735 2736 2737 2738 2739 2740 2741 2742 2743 2744 2745 2746 2747 2748 2749
    return unop_node_classes[operator](pos, 
        operator = operator, 
        operand = operand)


class TypecastNode(ExprNode):
    #  C type cast
    #
    #  base_type    CBaseTypeNode
    #  declarator   CDeclaratorNode
    #  operand      ExprNode
    
    subexprs = ['operand']
    
    def analyse_types(self, env):
        base_type = self.base_type.analyse(env)
        _, self.type = self.declarator.analyse(base_type, env)
        self.operand.analyse_types(env)
        to_py = self.type.is_pyobject
        from_py = self.operand.type.is_pyobject
2750 2751
        if from_py and not to_py and self.operand.is_ephemeral() and not self.type.is_numeric:
            error(self.pos, "Casting temporary Python object to non-numeric non-Python type")
William Stein's avatar
William Stein committed
2752 2753
        if to_py and not from_py:
            self.result_ctype = py_object_type
2754
            self.is_temp = 1
2755 2756
            if self.operand.type.to_py_function:
                self.operand = self.operand.coerce_to_pyobject(env)
2757 2758
            else:
                warning(self.pos, "No conversion from %s to %s, python object pointer used." % (self.operand.type, self.type))
2759 2760 2761
        elif from_py and not to_py:
            if self.type.from_py_function:
                self.operand = self.operand.coerce_to(self.type, env)
2762 2763
            else:
                warning(self.pos, "No conversion from %s to %s, python object pointer used." % (self.type, self.operand.type))
2764 2765 2766
        elif from_py and to_py:
            if self.typecheck and self.type.is_extension_type:
                self.operand = PyTypeTestNode(self.operand, self.type, env)
William Stein's avatar
William Stein committed
2767 2768 2769 2770 2771 2772 2773 2774 2775 2776 2777 2778 2779 2780 2781 2782 2783 2784 2785 2786 2787 2788 2789 2790 2791 2792 2793 2794 2795 2796 2797 2798 2799 2800 2801 2802 2803 2804 2805 2806 2807 2808 2809 2810 2811 2812 2813
    
    def check_const(self):
        self.operand.check_const()
    
    def calculate_result_code(self):
        opnd = self.operand
        result_code = self.type.cast_code(opnd.result_code)
        return result_code
    
    def result_as(self, type):
        if self.type.is_pyobject and not self.is_temp:
            #  Optimise away some unnecessary casting
            return self.operand.result_as(type)
        else:
            return ExprNode.result_as(self, type)

    def generate_result_code(self, code):
        if self.is_temp:
            code.putln(
                "%s = (PyObject *)%s;" % (
                    self.result_code,
                    self.operand.result_code))
            code.put_incref(self.result_code, self.ctype())


class SizeofNode(ExprNode):
    #  Abstract base class for sizeof(x) expression nodes.

    def check_const(self):
        pass

    def generate_result_code(self, code):
        pass


class SizeofTypeNode(SizeofNode):
    #  C sizeof function applied to a type
    #
    #  base_type   CBaseTypeNode
    #  declarator  CDeclaratorNode
    
    subexprs = []
    
    def analyse_types(self, env):
        base_type = self.base_type.analyse(env)
        _, arg_type = self.declarator.analyse(base_type, env)
        self.arg_type = arg_type
2814
        if arg_type.is_pyobject and not arg_type.is_extension_type:
William Stein's avatar
William Stein committed
2815 2816 2817 2818 2819 2820 2821 2822
            error(self.pos, "Cannot take sizeof Python object")
        elif arg_type.is_void:
            error(self.pos, "Cannot take sizeof void")
        elif not arg_type.is_complete():
            error(self.pos, "Cannot take sizeof incomplete type '%s'" % arg_type)
        self.type = PyrexTypes.c_int_type
        
    def calculate_result_code(self):
2823 2824 2825 2826 2827 2828
        if self.arg_type.is_extension_type:
            # the size of the pointer is boring
            # we want the size of the actual struct
            arg_code = self.arg_type.declaration_code("", deref=1)
        else:
            arg_code = self.arg_type.declaration_code("")
William Stein's avatar
William Stein committed
2829 2830 2831 2832 2833 2834 2835 2836 2837 2838 2839 2840 2841 2842 2843 2844 2845 2846 2847 2848 2849 2850 2851 2852 2853 2854 2855
        return "(sizeof(%s))" % arg_code
    

class SizeofVarNode(SizeofNode):
    #  C sizeof function applied to a variable
    #
    #  operand   ExprNode
    
    subexprs = ['operand']
    
    def analyse_types(self, env):
        self.operand.analyse_types(env)
        self.type = PyrexTypes.c_int_type
    
    def calculate_result_code(self):
        return "(sizeof(%s))" % self.operand.result_code
    
    def generate_result_code(self, code):
        pass


#-------------------------------------------------------------------
#
#  Binary operator nodes
#
#-------------------------------------------------------------------

Stefan Behnel's avatar
Stefan Behnel committed
2856 2857 2858
def _not_in(x, seq):
    return x not in seq

2859 2860 2861
compile_time_binary_operators = {
    '<': operator.lt,
    '<=': operator.le,
2862
    '==': operator.eq,
2863 2864 2865 2866 2867 2868 2869 2870 2871 2872 2873 2874 2875 2876 2877 2878 2879 2880
    '!=': operator.ne,
    '>=': operator.ge,
    '>': operator.gt,
    'is': operator.is_,
    'is_not': operator.is_not,
    '+': operator.add,
    '&': operator.and_,
    '/': operator.div,
    '//': operator.floordiv,
    '<<': operator.lshift,
    '%': operator.mod,
    '*': operator.mul,
    '|': operator.or_,
    '**': operator.pow,
    '>>': operator.rshift,
    '-': operator.sub,
    #'/': operator.truediv,
    '^': operator.xor,
Stefan Behnel's avatar
Stefan Behnel committed
2881 2882
    'in': operator.contains,
    'not_in': _not_in,
2883 2884 2885 2886 2887 2888 2889
}

def get_compile_time_binop(node):
    func = compile_time_binary_operators.get(node.operator)
    if not func:
        error(node.pos,
            "Binary '%s' not supported in compile-time expression"
2890
                % node.operator)
2891 2892
    return func

William Stein's avatar
William Stein committed
2893 2894 2895 2896 2897 2898 2899 2900 2901 2902 2903 2904 2905 2906 2907
class BinopNode(ExprNode):
    #  operator     string
    #  operand1     ExprNode
    #  operand2     ExprNode
    #
    #  Processing during analyse_expressions phase:
    #
    #    analyse_c_operation
    #      Called when neither operand is a pyobject.
    #      - Check operand types and coerce if needed.
    #      - Determine result type and result code fragment.
    #      - Allocate temporary for result if needed.
    
    subexprs = ['operand1', 'operand2']
    
2908 2909 2910 2911 2912 2913 2914 2915 2916
    def compile_time_value(self, denv):
        func = get_compile_time_binop(self)
        operand1 = self.operand1.compile_time_value(denv)
        operand2 = self.operand2.compile_time_value(denv)
        try:
            return func(operand1, operand2)
        except Exception, e:
            self.compile_time_value_error(e)

William Stein's avatar
William Stein committed
2917 2918 2919 2920 2921 2922 2923
    def analyse_types(self, env):
        self.operand1.analyse_types(env)
        self.operand2.analyse_types(env)
        if self.is_py_operation():
            self.coerce_operands_to_pyobjects(env)
            self.type = py_object_type
            self.is_temp = 1
2924 2925
            if Options.incref_local_binop and self.operand1.type.is_pyobject:
                self.operand1 = self.operand1.coerce_to_temp(env)
William Stein's avatar
William Stein committed
2926 2927 2928 2929 2930 2931 2932 2933 2934 2935 2936 2937 2938 2939 2940 2941 2942 2943 2944 2945 2946 2947 2948 2949
        else:
            self.analyse_c_operation(env)
    
    def is_py_operation(self):
        return (self.operand1.type.is_pyobject 
            or self.operand2.type.is_pyobject)
    
    def coerce_operands_to_pyobjects(self, env):
        self.operand1 = self.operand1.coerce_to_pyobject(env)
        self.operand2 = self.operand2.coerce_to_pyobject(env)
    
    def check_const(self):
        self.operand1.check_const()
        self.operand2.check_const()
    
    def generate_result_code(self, code):
        #print "BinopNode.generate_result_code:", self.operand1, self.operand2 ###
        if self.operand1.type.is_pyobject:
            function = self.py_operation_function()
            if function == "PyNumber_Power":
                extra_args = ", Py_None"
            else:
                extra_args = ""
            code.putln(
Robert Bradshaw's avatar
Robert Bradshaw committed
2950
                "%s = %s(%s, %s%s); %s" % (
William Stein's avatar
William Stein committed
2951 2952 2953 2954 2955
                    self.result_code, 
                    function, 
                    self.operand1.py_result(),
                    self.operand2.py_result(),
                    extra_args,
Robert Bradshaw's avatar
Robert Bradshaw committed
2956
                    code.error_goto_if_null(self.result_code, self.pos)))
William Stein's avatar
William Stein committed
2957 2958 2959 2960 2961 2962 2963 2964 2965 2966 2967 2968 2969 2970 2971 2972 2973 2974 2975
        else:
            if self.is_temp:
                self.generate_c_operation_code(code)
    
    def type_error(self):
        if not (self.operand1.type.is_error
                or self.operand2.type.is_error):
            error(self.pos, "Invalid operand types for '%s' (%s; %s)" %
                (self.operator, self.operand1.type, 
                    self.operand2.type))
        self.type = PyrexTypes.error_type


class NumBinopNode(BinopNode):
    #  Binary operation taking numeric arguments.
    
    def analyse_c_operation(self, env):
        type1 = self.operand1.type
        type2 = self.operand2.type
2976 2977 2978 2979
        if self.operator == "**" and type1.is_int and type2.is_int:
            error(self.pos, "** with two C int types is ambiguous")
            self.type = error_type
            return
William Stein's avatar
William Stein committed
2980 2981 2982 2983 2984 2985 2986 2987 2988 2989 2990
        self.type = self.compute_c_result_type(type1, type2)
        if not self.type:
            self.type_error()
    
    def compute_c_result_type(self, type1, type2):
        if self.c_types_okay(type1, type2):
            return PyrexTypes.widest_numeric_type(type1, type2)
        else:
            return None
    
    def c_types_okay(self, type1, type2):
2991 2992 2993
        #print "NumBinopNode.c_types_okay:", type1, type2 ###
        return (type1.is_numeric  or type1.is_enum) \
            and (type2.is_numeric  or type2.is_enum)
William Stein's avatar
William Stein committed
2994 2995 2996 2997 2998 2999 3000 3001 3002 3003 3004 3005 3006 3007 3008 3009 3010 3011 3012 3013

    def calculate_result_code(self):
        return "(%s %s %s)" % (
            self.operand1.result_code, 
            self.operator, 
            self.operand2.result_code)
    
    def py_operation_function(self):
        return self.py_functions[self.operator]

    py_functions = {
        "|":		"PyNumber_Or",
        "^":		"PyNumber_Xor",
        "&":		"PyNumber_And",
        "<<":		"PyNumber_Lshift",
        ">>":		"PyNumber_Rshift",
        "+":		"PyNumber_Add",
        "-":		"PyNumber_Subtract",
        "*":		"PyNumber_Multiply",
        "/":		"PyNumber_Divide",
Robert Bradshaw's avatar
Robert Bradshaw committed
3014
        "//":		"PyNumber_FloorDivide",
William Stein's avatar
William Stein committed
3015
        "%":		"PyNumber_Remainder",
3016
        "**":       "PyNumber_Power"
William Stein's avatar
William Stein committed
3017 3018 3019 3020 3021 3022 3023
    }


class IntBinopNode(NumBinopNode):
    #  Binary operation taking integer arguments.
    
    def c_types_okay(self, type1, type2):
3024 3025 3026
        #print "IntBinopNode.c_types_okay:", type1, type2 ###
        return (type1.is_int or type1.is_enum) \
            and (type2.is_int or type2.is_enum)
William Stein's avatar
William Stein committed
3027 3028 3029 3030 3031 3032 3033 3034 3035 3036 3037 3038 3039

    
class AddNode(NumBinopNode):
    #  '+' operator.
    
    def is_py_operation(self):
        if self.operand1.type.is_string \
            and self.operand2.type.is_string:
                return 1
        else:
            return NumBinopNode.is_py_operation(self)

    def compute_c_result_type(self, type1, type2):
3040 3041
        #print "AddNode.compute_c_result_type:", type1, self.operator, type2 ###
        if (type1.is_ptr or type1.is_array) and (type2.is_int or type2.is_enum):
William Stein's avatar
William Stein committed
3042
            return type1
3043
        elif (type2.is_ptr or type2.is_array) and (type1.is_int or type1.is_enum):
William Stein's avatar
William Stein committed
3044 3045 3046 3047 3048 3049 3050 3051 3052 3053
            return type2
        else:
            return NumBinopNode.compute_c_result_type(
                self, type1, type2)


class SubNode(NumBinopNode):
    #  '-' operator.
    
    def compute_c_result_type(self, type1, type2):
3054
        if (type1.is_ptr or type1.is_array) and (type2.is_int or type2.is_enum):
William Stein's avatar
William Stein committed
3055
            return type1
3056
        elif (type1.is_ptr or type1.is_array) and (type2.is_ptr or type2.is_array):
William Stein's avatar
William Stein committed
3057 3058 3059 3060 3061 3062 3063 3064 3065 3066 3067 3068 3069 3070 3071 3072 3073 3074 3075
            return PyrexTypes.c_int_type
        else:
            return NumBinopNode.compute_c_result_type(
                self, type1, type2)


class MulNode(NumBinopNode):
    #  '*' operator.
    
    def is_py_operation(self):
        type1 = self.operand1.type
        type2 = self.operand2.type
        if (type1.is_string and type2.is_int) \
            or (type2.is_string and type1.is_int):
                return 1
        else:
            return NumBinopNode.is_py_operation(self)


Robert Bradshaw's avatar
Robert Bradshaw committed
3076 3077 3078 3079 3080 3081 3082 3083 3084 3085
class FloorDivNode(NumBinopNode):
    #  '//' operator.
    
    def calculate_result_code(self):
        return "(%s %s %s)" % (
            self.operand1.result_code, 
            "/",  # c division is by default floor-div 
            self.operand2.result_code)


William Stein's avatar
William Stein committed
3086 3087 3088 3089 3090 3091 3092 3093 3094 3095 3096
class ModNode(IntBinopNode):
    #  '%' operator.
    
    def is_py_operation(self):
        return (self.operand1.type.is_string
            or self.operand2.type.is_string
            or IntBinopNode.is_py_operation(self))


class PowNode(NumBinopNode):
    #  '**' operator.
3097

William Stein's avatar
William Stein committed
3098 3099 3100
    def analyse_types(self, env):
        env.pow_function_used = 1
        NumBinopNode.analyse_types(self, env)
3101

William Stein's avatar
William Stein committed
3102 3103 3104 3105 3106
    def compute_c_result_type(self, type1, type2):
        if self.c_types_okay(type1, type2):
            return PyrexTypes.c_double_type
        else:
            return None
3107

3108 3109
    def c_types_okay(self, type1, type2):
        return type1.is_float or type2.is_float
3110

3111 3112 3113 3114 3115 3116 3117 3118
    def type_error(self):
        if not (self.operand1.type.is_error or self.operand2.type.is_error):
            if self.operand1.type.is_int and self.operand2.type.is_int:
                error(self.pos, "C has no integer powering, use python ints or floats instead '%s' (%s; %s)" %
                    (self.operator, self.operand1.type, self.operand2.type))
            else:
                NumBinopNode.type_error(self)
        self.type = PyrexTypes.error_type
3119

William Stein's avatar
William Stein committed
3120 3121 3122
    def calculate_result_code(self):
        return "pow(%s, %s)" % (
            self.operand1.result_code, self.operand2.result_code)
3123

William Stein's avatar
William Stein committed
3124 3125 3126 3127 3128 3129 3130 3131 3132 3133 3134 3135 3136

class BoolBinopNode(ExprNode):
    #  Short-circuiting boolean operation.
    #
    #  operator     string
    #  operand1     ExprNode
    #  operand2     ExprNode
    #  temp_bool    ExprNode     used internally
    
    temp_bool = None
    
    subexprs = ['operand1', 'operand2', 'temp_bool']
    
3137 3138 3139 3140 3141 3142 3143 3144
    def compile_time_value(self, denv):
        if self.operator == 'and':
            return self.operand1.compile_time_value(denv) \
                and self.operand2.compile_time_value(denv)
        else:
            return self.operand1.compile_time_value(denv) \
                or self.operand2.compile_time_value(denv)

William Stein's avatar
William Stein committed
3145 3146 3147 3148 3149 3150 3151
    def analyse_types(self, env):
        self.operand1.analyse_types(env)
        self.operand2.analyse_types(env)
        if self.operand1.type.is_pyobject or \
                self.operand2.type.is_pyobject:
            self.operand1 = self.operand1.coerce_to_pyobject(env)
            self.operand2 = self.operand2.coerce_to_pyobject(env)
3152
            self.temp_bool = TempNode(self.pos, PyrexTypes.c_bint_type, env)
William Stein's avatar
William Stein committed
3153 3154 3155 3156
            self.type = py_object_type
        else:
            self.operand1 = self.operand1.coerce_to_boolean(env)
            self.operand2 = self.operand2.coerce_to_boolean(env)
3157
            self.type = PyrexTypes.c_bint_type
William Stein's avatar
William Stein committed
3158 3159 3160 3161 3162 3163 3164 3165 3166 3167 3168 3169 3170 3171 3172 3173 3174 3175 3176 3177 3178 3179 3180 3181 3182 3183 3184 3185 3186 3187 3188 3189 3190 3191 3192 3193 3194 3195 3196 3197 3198 3199 3200 3201 3202 3203 3204 3205 3206 3207 3208 3209 3210 3211 3212 3213 3214 3215 3216 3217 3218 3219 3220 3221
        # For what we're about to do, it's vital that
        # both operands be temp nodes.
        self.operand1 = self.operand1.coerce_to_temp(env) #CTT
        self.operand2 = self.operand2.coerce_to_temp(env)
        # coerce_to_simple does not seem to be sufficient
        #self.operand1 = self.operand1.coerce_to_simple(env)
        #self.operand2 = self.operand2.coerce_to_simple(env)
        self.is_temp = 1
    
    def allocate_temps(self, env, result_code = None):
        #  We don't need both operands at the same time, and
        #  one of the operands will also be our result. So we
        #  use an allocation strategy here which results in
        #  this node and both its operands sharing the same
        #  result variable. This allows us to avoid some 
        #  assignments and increfs/decrefs that would otherwise
        #  be necessary.
        self.allocate_temp(env, result_code)
        self.operand1.allocate_temps(env, self.result_code)
        if self.temp_bool:
            self.temp_bool.allocate_temp(env)
            self.temp_bool.release_temp(env)
        self.operand2.allocate_temps(env, self.result_code)
        #  We haven't called release_temp on either operand,
        #  because although they are temp nodes, they don't own 
        #  their result variable. And because they are temp
        #  nodes, any temps in their subnodes will have been
        #  released before their allocate_temps returned.
        #  Therefore, they contain no temp vars that need to
        #  be released.

    def check_const(self):
        self.operand1.check_const()
        self.operand2.check_const()
    
    def calculate_result_code(self):
        return "(%s %s %s)" % (
            self.operand1.result_code,
            self.py_to_c_op[self.operator],
            self.operand2.result_code)
    
    py_to_c_op = {'and': "&&", 'or': "||"}

    def generate_evaluation_code(self, code):
        self.operand1.generate_evaluation_code(code)
        test_result = self.generate_operand1_test(code)
        if self.operator == 'and':
            sense = ""
        else:
            sense = "!"
        code.putln(
            "if (%s%s) {" % (
                sense,
                test_result))
        self.operand1.generate_disposal_code(code)
        self.operand2.generate_evaluation_code(code)
        code.putln(
            "}")
    
    def generate_operand1_test(self, code):
        #  Generate code to test the truth of the first operand.
        if self.type.is_pyobject:
            test_result = self.temp_bool.result_code
            code.putln(
3222
                "%s = __Pyx_PyObject_IsTrue(%s); %s" % (
William Stein's avatar
William Stein committed
3223 3224
                    test_result,
                    self.operand1.py_result(),
Robert Bradshaw's avatar
Robert Bradshaw committed
3225
                    code.error_goto_if_neg(test_result, self.pos)))
William Stein's avatar
William Stein committed
3226 3227 3228 3229 3230
        else:
            test_result = self.operand1.result_code
        return test_result


Robert Bradshaw's avatar
Robert Bradshaw committed
3231 3232 3233 3234 3235 3236 3237 3238 3239 3240 3241 3242 3243 3244 3245 3246 3247
class CondExprNode(ExprNode):
    #  Short-circuiting conditional expression.
    #
    #  test        ExprNode
    #  true_val    ExprNode
    #  false_val   ExprNode
    
    temp_bool = None
    
    subexprs = ['test', 'true_val', 'false_val']
    
    def analyse_types(self, env):
        self.test.analyse_types(env)
        self.test = self.test.coerce_to_boolean(env)
        self.true_val.analyse_types(env)
        self.false_val.analyse_types(env)
        self.type = self.compute_result_type(self.true_val.type, self.false_val.type)
3248 3249 3250 3251 3252 3253 3254 3255
        if self.true_val.type.is_pyobject or self.false_val.type.is_pyobject:
            self.true_val = self.true_val.coerce_to(self.type, env)
            self.false_val = self.false_val.coerce_to(self.type, env)
        # must be tmp variables so they can share a result
        self.true_val = self.true_val.coerce_to_temp(env)
        self.false_val = self.false_val.coerce_to_temp(env)
        self.is_temp = 1
        if self.type == PyrexTypes.error_type:
Robert Bradshaw's avatar
Robert Bradshaw committed
3256 3257 3258 3259 3260 3261 3262 3263 3264 3265 3266 3267 3268 3269 3270 3271 3272 3273 3274 3275 3276 3277 3278 3279 3280 3281 3282 3283 3284 3285 3286
            self.type_error()
    
    def allocate_temps(self, env, result_code = None):
        #  We only ever evaluate one side, and this is 
        #  after evaluating the truth value, so we may
        #  use an allocation strategy here which results in
        #  this node and both its operands sharing the same
        #  result variable. This allows us to avoid some 
        #  assignments and increfs/decrefs that would otherwise
        #  be necessary.
        self.allocate_temp(env, result_code)
        self.test.allocate_temps(env, result_code)
        self.true_val.allocate_temps(env, self.result_code)
        self.false_val.allocate_temps(env, self.result_code)
        #  We haven't called release_temp on either value,
        #  because although they are temp nodes, they don't own 
        #  their result variable. And because they are temp
        #  nodes, any temps in their subnodes will have been
        #  released before their allocate_temps returned.
        #  Therefore, they contain no temp vars that need to
        #  be released.
        
    def compute_result_type(self, type1, type2):
        if type1 == type2:
            return type1
        elif type1.is_numeric and type2.is_numeric:
            return PyrexTypes.widest_numeric_type(type1, type2)
        elif type1.is_extension_type and type1.subtype_of_resolved_type(type2):
            return type2
        elif type2.is_extension_type and type2.subtype_of_resolved_type(type1):
            return type1
3287 3288
        elif type1.is_pyobject or type2.is_pyobject:
            return py_object_type
3289 3290 3291 3292
        elif type1.assignable_from(type2):
            return type1
        elif type2.assignable_from(type1):
            return type2
Robert Bradshaw's avatar
Robert Bradshaw committed
3293
        else:
3294
            return PyrexTypes.error_type
Robert Bradshaw's avatar
Robert Bradshaw committed
3295 3296 3297 3298 3299 3300
        
    def type_error(self):
        if not (self.true_val.type.is_error or self.false_val.type.is_error):
            error(self.pos, "Incompatable types in conditional expression (%s; %s)" %
                (self.true_val.type, self.false_val.type))
        self.type = PyrexTypes.error_type
3301
    
Robert Bradshaw's avatar
Robert Bradshaw committed
3302 3303 3304 3305 3306 3307 3308 3309 3310 3311 3312 3313 3314 3315
    def check_const(self):
        self.test.check_const()
        self.true_val.check_const()
        self.false_val.check_const()
    
    def generate_evaluation_code(self, code):
        self.test.generate_evaluation_code(code)
        code.putln("if (%s) {" % self.test.result_code )
        self.true_val.generate_evaluation_code(code)
        code.putln("} else {")
        self.false_val.generate_evaluation_code(code)
        code.putln("}")
        self.test.generate_disposal_code(code)

3316 3317 3318 3319 3320 3321 3322 3323 3324 3325
richcmp_constants = {
    "<" : "Py_LT",
    "<=": "Py_LE",
    "==": "Py_EQ",
    "!=": "Py_NE",
    "<>": "Py_NE",
    ">" : "Py_GT",
    ">=": "Py_GE",
}

William Stein's avatar
William Stein committed
3326 3327 3328 3329
class CmpNode:
    #  Mixin class containing code common to PrimaryCmpNodes
    #  and CascadedCmpNodes.
    
3330 3331
    def cascaded_compile_time_value(self, operand1, denv):
        func = get_compile_time_binop(self)
3332
        operand2 = self.operand2.compile_time_value(denv)
3333 3334 3335 3336
        try:
            result = func(operand1, operand2)
        except Exception, e:
            self.compile_time_value_error(e)
3337
            result = None
3338 3339 3340 3341 3342 3343
        if result:
            cascade = self.cascade
            if cascade:
                result = result and cascade.compile_time_value(operand2, denv)
        return result

William Stein's avatar
William Stein committed
3344 3345 3346 3347 3348
    def is_python_comparison(self):
        return (self.has_python_operands()
            or (self.cascade and self.cascade.is_python_comparison())
            or self.operator in ('in', 'not_in'))

3349 3350 3351 3352
    def is_python_result(self):
        return ((self.has_python_operands() and self.operator not in ('is', 'is_not', 'in', 'not_in'))
            or (self.cascade and self.cascade.is_python_result()))

William Stein's avatar
William Stein committed
3353 3354 3355 3356 3357 3358 3359 3360 3361 3362 3363 3364
    def check_types(self, env, operand1, op, operand2):
        if not self.types_okay(operand1, op, operand2):
            error(self.pos, "Invalid types for '%s' (%s, %s)" %
                (self.operator, operand1.type, operand2.type))
    
    def types_okay(self, operand1, op, operand2):
        type1 = operand1.type
        type2 = operand2.type
        if type1.is_error or type2.is_error:
            return 1
        if type1.is_pyobject: # type2 will be, too
            return 1
3365
        elif type1.is_ptr or type1.is_array:
William Stein's avatar
William Stein committed
3366
            return type1.is_null_ptr or type2.is_null_ptr \
3367 3368 3369 3370 3371
                or ((type2.is_ptr or type2.is_array)
                    and type1.base_type.same_as(type2.base_type))
        elif ((type1.is_numeric and type2.is_numeric
                    or type1.is_enum and (type1 is type2 or type2.is_int)
                    or type1.is_int and type2.is_enum)
William Stein's avatar
William Stein committed
3372 3373 3374
                and op not in ('is', 'is_not')):
            return 1
        else:
3375
            return type1.is_cfunction and type1.is_cfunction and type1 == type2
William Stein's avatar
William Stein committed
3376 3377 3378

    def generate_operation_code(self, code, result_code, 
            operand1, op , operand2):
3379 3380 3381 3382 3383 3384
        if self.type is PyrexTypes.py_object_type:
            coerce_result = "__Pyx_PyBool_FromLong"
        else:
            coerce_result = ""
        if 'not' in op: negation = "!"
        else: negation = ""
William Stein's avatar
William Stein committed
3385 3386
        if op == 'in' or op == 'not_in':
            code.putln(
3387
                "%s = %s(%sPySequence_Contains(%s, %s)); %s" % (
William Stein's avatar
William Stein committed
3388
                    result_code, 
3389 3390
                    coerce_result, 
                    negation,
William Stein's avatar
William Stein committed
3391 3392
                    operand2.py_result(), 
                    operand1.py_result(), 
Robert Bradshaw's avatar
Robert Bradshaw committed
3393
                    code.error_goto_if_neg(result_code, self.pos)))
William Stein's avatar
William Stein committed
3394 3395
        elif (operand1.type.is_pyobject
            and op not in ('is', 'is_not')):
3396 3397
                code.putln("%s = PyObject_RichCompare(%s, %s, %s); %s" % (
                        result_code, 
William Stein's avatar
William Stein committed
3398 3399
                        operand1.py_result(), 
                        operand2.py_result(), 
3400 3401
                        richcmp_constants[op],
                        code.error_goto_if_null(result_code, self.pos)))
William Stein's avatar
William Stein committed
3402
        else:
3403 3404 3405 3406 3407
            type1 = operand1.type
            type2 = operand2.type
            if (type1.is_extension_type or type2.is_extension_type) \
                    and not type1.same_as(type2):
                common_type = py_object_type
3408 3409
            elif type1.is_numeric:
                common_type = PyrexTypes.widest_numeric_type(type1, type2)
3410
            else:
3411 3412 3413
                common_type = type1
            code1 = operand1.result_as(common_type)
            code2 = operand2.result_as(common_type)
3414
            code.putln("%s = %s(%s %s %s);" % (
William Stein's avatar
William Stein committed
3415
                result_code, 
3416
                coerce_result, 
3417
                code1, 
William Stein's avatar
William Stein committed
3418
                self.c_operator(op), 
3419 3420
                code2))

William Stein's avatar
William Stein committed
3421 3422 3423 3424 3425 3426 3427 3428 3429 3430 3431 3432 3433 3434 3435 3436 3437 3438 3439 3440 3441 3442 3443
    def c_operator(self, op):
        if op == 'is':
            return "=="
        elif op == 'is_not':
            return "!="
        else:
            return op
    

class PrimaryCmpNode(ExprNode, CmpNode):
    #  Non-cascaded comparison or first comparison of
    #  a cascaded sequence.
    #
    #  operator      string
    #  operand1      ExprNode
    #  operand2      ExprNode
    #  cascade       CascadedCmpNode
    
    #  We don't use the subexprs mechanism, because
    #  things here are too complicated for it to handle.
    #  Instead, we override all the framework methods
    #  which use it.
    
Robert Bradshaw's avatar
Robert Bradshaw committed
3444 3445
    child_attrs = ['operand1', 'operand2', 'cascade']
    
William Stein's avatar
William Stein committed
3446 3447
    cascade = None
    
3448
    def compile_time_value(self, denv):
3449
        operand1 = self.operand1.compile_time_value(denv)
3450 3451
        return self.cascaded_compile_time_value(operand1, denv)

William Stein's avatar
William Stein committed
3452 3453 3454 3455 3456 3457 3458 3459
    def analyse_types(self, env):
        self.operand1.analyse_types(env)
        self.operand2.analyse_types(env)
        if self.cascade:
            self.cascade.analyse_types(env, self.operand2)
        self.is_pycmp = self.is_python_comparison()
        if self.is_pycmp:
            self.coerce_operands_to_pyobjects(env)
3460 3461
        if self.has_int_operands():
            self.coerce_chars_to_ints(env)
William Stein's avatar
William Stein committed
3462 3463 3464 3465 3466
        if self.cascade:
            #self.operand2 = self.operand2.coerce_to_temp(env) #CTT
            self.operand2 = self.operand2.coerce_to_simple(env)
            self.cascade.coerce_cascaded_operands_to_temp(env)
        self.check_operand_types(env)
3467 3468 3469 3470 3471 3472 3473 3474
        if self.is_python_result():
            self.type = PyrexTypes.py_object_type
        else:
            self.type = PyrexTypes.c_bint_type
        cdr = self.cascade
        while cdr:
            cdr.type = self.type
            cdr = cdr.cascade
William Stein's avatar
William Stein committed
3475 3476 3477 3478 3479 3480 3481 3482 3483 3484 3485 3486
        if self.is_pycmp or self.cascade:
            self.is_temp = 1
    
    def check_operand_types(self, env):
        self.check_types(env, 
            self.operand1, self.operator, self.operand2)
        if self.cascade:
            self.cascade.check_operand_types(env, self.operand2)
    
    def has_python_operands(self):
        return (self.operand1.type.is_pyobject
            or self.operand2.type.is_pyobject)
3487
            
William Stein's avatar
William Stein committed
3488 3489 3490 3491 3492 3493
    def coerce_operands_to_pyobjects(self, env):
        self.operand1 = self.operand1.coerce_to_pyobject(env)
        self.operand2 = self.operand2.coerce_to_pyobject(env)
        if self.cascade:
            self.cascade.coerce_operands_to_pyobjects(env)
        
3494 3495 3496 3497 3498 3499 3500 3501 3502 3503 3504 3505
    def has_int_operands(self):
        return (self.operand1.type.is_int or self.operand2.type.is_int) \
           or (self.cascade and self.cascade.has_int_operands())
    
    def coerce_chars_to_ints(self, env):
        if self.operand1.type.is_string:
            self.operand1 = self.operand1.coerce_to(PyrexTypes.c_uchar_type, env)
        if self.operand2.type.is_string:
            self.operand2 = self.operand2.coerce_to(PyrexTypes.c_uchar_type, env)
        if self.cascade:
            self.cascade.coerce_chars_to_ints(env)
    
William Stein's avatar
William Stein committed
3506 3507 3508 3509 3510 3511 3512 3513 3514 3515 3516 3517 3518 3519 3520 3521 3522 3523 3524 3525 3526 3527 3528 3529 3530 3531 3532 3533 3534 3535 3536 3537 3538 3539 3540 3541 3542 3543 3544 3545 3546
    def allocate_subexpr_temps(self, env):
        self.operand1.allocate_temps(env)
        self.operand2.allocate_temps(env)
        if self.cascade:
            self.cascade.allocate_subexpr_temps(env)
    
    def release_subexpr_temps(self, env):
        self.operand1.release_temp(env)
        self.operand2.release_temp(env)
        if self.cascade:
            self.cascade.release_subexpr_temps(env)
    
    def check_const(self):
        self.operand1.check_const()
        self.operand2.check_const()
        if self.cascade:
            self.not_const()

    def calculate_result_code(self):
        return "(%s %s %s)" % (
            self.operand1.result_code,
            self.c_operator(self.operator),
            self.operand2.result_code)
    
    def generate_evaluation_code(self, code):
        self.operand1.generate_evaluation_code(code)
        self.operand2.generate_evaluation_code(code)
        if self.is_temp:
            self.generate_operation_code(code, self.result_code, 
                self.operand1, self.operator, self.operand2)
            if self.cascade:
                self.cascade.generate_evaluation_code(code,
                    self.result_code, self.operand2)
            self.operand1.generate_disposal_code(code)
            self.operand2.generate_disposal_code(code)
    
    def generate_subexpr_disposal_code(self, code):
        #  If this is called, it is a non-cascaded cmp,
        #  so only need to dispose of the two main operands.
        self.operand1.generate_disposal_code(code)
        self.operand2.generate_disposal_code(code)
3547 3548 3549 3550 3551 3552
        
    def annotate(self, code):
        self.operand1.annotate(code)
        self.operand2.annotate(code)
        if self.cascade:
            self.cascade.annotate(code)
William Stein's avatar
William Stein committed
3553 3554 3555 3556 3557 3558 3559 3560 3561 3562 3563 3564


class CascadedCmpNode(Node, CmpNode):
    #  A CascadedCmpNode is not a complete expression node. It 
    #  hangs off the side of another comparison node, shares 
    #  its left operand with that node, and shares its result 
    #  with the PrimaryCmpNode at the head of the chain.
    #
    #  operator      string
    #  operand2      ExprNode
    #  cascade       CascadedCmpNode

Robert Bradshaw's avatar
Robert Bradshaw committed
3565 3566
    child_attrs = ['operand2', 'cascade']

William Stein's avatar
William Stein committed
3567 3568 3569 3570 3571 3572 3573 3574 3575 3576 3577 3578 3579 3580 3581
    cascade = None
    
    def analyse_types(self, env, operand1):
        self.operand2.analyse_types(env)
        if self.cascade:
            self.cascade.analyse_types(env, self.operand2)
    
    def check_operand_types(self, env, operand1):
        self.check_types(env, 
            operand1, self.operator, self.operand2)
        if self.cascade:
            self.cascade.check_operand_types(env, self.operand2)
    
    def has_python_operands(self):
        return self.operand2.type.is_pyobject
3582
        
William Stein's avatar
William Stein committed
3583 3584 3585 3586 3587
    def coerce_operands_to_pyobjects(self, env):
        self.operand2 = self.operand2.coerce_to_pyobject(env)
        if self.cascade:
            self.cascade.coerce_operands_to_pyobjects(env)

3588 3589 3590 3591 3592 3593 3594
    def has_int_operands(self):
        return self.operand2.type.is_int
        
    def coerce_chars_to_ints(self, env):
        if self.operand2.type.is_string:
            self.operand2 = self.operand2.coerce_to(PyrexTypes.c_uchar_type, env)

William Stein's avatar
William Stein committed
3595 3596 3597 3598 3599 3600 3601 3602 3603 3604 3605 3606 3607 3608 3609 3610 3611
    def coerce_cascaded_operands_to_temp(self, env):
        if self.cascade:
            #self.operand2 = self.operand2.coerce_to_temp(env) #CTT
            self.operand2 = self.operand2.coerce_to_simple(env)
            self.cascade.coerce_cascaded_operands_to_temp(env)
    
    def allocate_subexpr_temps(self, env):
        self.operand2.allocate_temps(env)
        if self.cascade:
            self.cascade.allocate_subexpr_temps(env)
    
    def release_subexpr_temps(self, env):
        self.operand2.release_temp(env)
        if self.cascade:
            self.cascade.release_subexpr_temps(env)
    
    def generate_evaluation_code(self, code, result, operand1):
3612 3613 3614 3615
        if self.type.is_pyobject:
            code.putln("if (__Pyx_PyObject_IsTrue(%s)) {" % result)
        else:
            code.putln("if (%s) {" % result)
William Stein's avatar
William Stein committed
3616 3617 3618 3619 3620 3621 3622 3623 3624 3625
        self.operand2.generate_evaluation_code(code)
        self.generate_operation_code(code, result, 
            operand1, self.operator, self.operand2)
        if self.cascade:
            self.cascade.generate_evaluation_code(
                code, result, self.operand2)
        # Cascaded cmp result is always temp
        self.operand2.generate_disposal_code(code)
        code.putln("}")

3626 3627 3628 3629 3630
    def annotate(self, code):
        self.operand2.annotate(code)
        if self.cascade:
            self.cascade.annotate(code)

William Stein's avatar
William Stein committed
3631 3632 3633 3634 3635 3636 3637 3638 3639 3640 3641 3642 3643

binop_node_classes = {
    "or":		BoolBinopNode,
    "and":	BoolBinopNode,
    "|":		IntBinopNode,
    "^":		IntBinopNode,
    "&":		IntBinopNode,
    "<<":		IntBinopNode,
    ">>":		IntBinopNode,
    "+":		AddNode,
    "-":		SubNode,
    "*":		MulNode,
    "/":		NumBinopNode,
Robert Bradshaw's avatar
Robert Bradshaw committed
3644
    "//":		FloorDivNode,
William Stein's avatar
William Stein committed
3645 3646 3647 3648 3649 3650 3651 3652 3653 3654 3655 3656 3657 3658 3659 3660 3661 3662 3663 3664 3665 3666 3667 3668 3669 3670 3671 3672 3673 3674 3675 3676 3677 3678
    "%":		ModNode,
    "**":		PowNode
}

def binop_node(pos, operator, operand1, operand2):
    # Construct binop node of appropriate class for 
    # given operator.
    return binop_node_classes[operator](pos, 
        operator = operator, 
        operand1 = operand1, 
        operand2 = operand2)

#-------------------------------------------------------------------
#
#  Coercion nodes
#
#  Coercion nodes are special in that they are created during
#  the analyse_types phase of parse tree processing.
#  Their __init__ methods consequently incorporate some aspects
#  of that phase.
#
#-------------------------------------------------------------------

class CoercionNode(ExprNode):
    #  Abstract base class for coercion nodes.
    #
    #  arg       ExprNode       node being coerced
    
    subexprs = ['arg']
    
    def __init__(self, arg):
        self.pos = arg.pos
        self.arg = arg
        if debug_coercion:
Stefan Behnel's avatar
Stefan Behnel committed
3679
            print("%s Coercing %s" % (self, self.arg))
3680 3681 3682 3683 3684 3685
            
    def annotate(self, code):
        self.arg.annotate(code)
        if self.arg.type != self.type:
            file, line, col = self.pos
            code.annotate((file, line, col-1), AnnotationItem(style='coerce', tag='coerce', text='[%s] to [%s]' % (self.arg.type, self.type)))
William Stein's avatar
William Stein committed
3686 3687 3688 3689 3690 3691 3692 3693 3694 3695 3696 3697 3698 3699 3700 3701 3702 3703 3704 3705 3706 3707 3708 3709 3710 3711 3712 3713 3714 3715


class CastNode(CoercionNode):
    #  Wrap a node in a C type cast.
    
    def __init__(self, arg, new_type):
        CoercionNode.__init__(self, arg)
        self.type = new_type
    
    def calculate_result_code(self):
        return self.arg.result_as(self.type)

    def generate_result_code(self, code):
        self.arg.generate_result_code(code)


class PyTypeTestNode(CoercionNode):
    #  This node is used to check that a generic Python
    #  object is an instance of a particular extension type.
    #  This node borrows the result of its argument node.

    def __init__(self, arg, dst_type, env):
        #  The arg is know to be a Python object, and
        #  the dst_type is known to be an extension type.
        assert dst_type.is_extension_type, "PyTypeTest on non extension type"
        CoercionNode.__init__(self, arg)
        self.type = dst_type
        self.result_ctype = arg.ctype()
        env.use_utility_code(type_test_utility_code)
    
3716 3717 3718
    def analyse_types(self, env):
        pass
    
William Stein's avatar
William Stein committed
3719 3720 3721 3722 3723 3724 3725 3726 3727 3728 3729 3730 3731
    def result_in_temp(self):
        return self.arg.result_in_temp()
    
    def is_ephemeral(self):
        return self.arg.is_ephemeral()
    
    def calculate_result_code(self):
        return self.arg.result_code
    
    def generate_result_code(self, code):
        if self.type.typeobj_is_available():
            code.putln(
                "if (!__Pyx_TypeTest(%s, %s)) %s" % (
3732
                    self.arg.py_result(), 
William Stein's avatar
William Stein committed
3733 3734 3735 3736 3737 3738 3739 3740 3741 3742 3743 3744 3745 3746 3747 3748 3749 3750 3751 3752 3753 3754 3755 3756
                    self.type.typeptr_cname,
                    code.error_goto(self.pos)))
        else:
            error(self.pos, "Cannot test type of extern C class "
                "without type object name specification")
                
    def generate_post_assignment_code(self, code):
        self.arg.generate_post_assignment_code(code)
                
                
class CoerceToPyTypeNode(CoercionNode):
    #  This node is used to convert a C data type
    #  to a Python object.

    def __init__(self, arg, env):
        CoercionNode.__init__(self, arg)
        self.type = py_object_type
        self.is_temp = 1
        if not arg.type.to_py_function:
            error(arg.pos,
                "Cannot convert '%s' to Python object" % arg.type)
    
    def generate_result_code(self, code):
        function = self.arg.type.to_py_function
Robert Bradshaw's avatar
Robert Bradshaw committed
3757
        code.putln('%s = %s(%s); %s' % (
William Stein's avatar
William Stein committed
3758 3759 3760
            self.result_code, 
            function, 
            self.arg.result_code, 
Robert Bradshaw's avatar
Robert Bradshaw committed
3761
            code.error_goto_if_null(self.result_code, self.pos)))
William Stein's avatar
William Stein committed
3762 3763 3764 3765 3766 3767 3768 3769 3770 3771 3772 3773 3774 3775 3776 3777 3778 3779 3780


class CoerceFromPyTypeNode(CoercionNode):
    #  This node is used to convert a Python object
    #  to a C data type.

    def __init__(self, result_type, arg, env):
        CoercionNode.__init__(self, arg)
        self.type = result_type
        self.is_temp = 1
        if not result_type.from_py_function:
            error(arg.pos,
                "Cannot convert Python object to '%s'" % result_type)
        if self.type.is_string and self.arg.is_ephemeral():
            error(arg.pos,
                "Obtaining char * from temporary Python value")
    
    def generate_result_code(self, code):
        function = self.type.from_py_function
3781 3782 3783 3784
        operand = self.arg.py_result()
        rhs = "%s(%s)" % (function, operand)
        if self.type.is_enum:
            rhs = typecast(self.type, c_long_type, rhs)
Robert Bradshaw's avatar
Robert Bradshaw committed
3785
        code.putln('%s = %s; %s' % (
William Stein's avatar
William Stein committed
3786
            self.result_code, 
3787
            rhs,
3788
            code.error_goto_if(self.type.error_condition(self.result_code), self.pos)))
William Stein's avatar
William Stein committed
3789 3790 3791 3792 3793 3794 3795 3796


class CoerceToBooleanNode(CoercionNode):
    #  This node is used when a result needs to be used
    #  in a boolean context.
    
    def __init__(self, arg, env):
        CoercionNode.__init__(self, arg)
3797
        self.type = PyrexTypes.c_bint_type
William Stein's avatar
William Stein committed
3798 3799 3800 3801 3802 3803 3804 3805 3806 3807 3808 3809 3810 3811
        if arg.type.is_pyobject:
            self.is_temp = 1
    
    def check_const(self):
        if self.is_temp:
            self.not_const()
        self.arg.check_const()
    
    def calculate_result_code(self):
        return "(%s != 0)" % self.arg.result_code

    def generate_result_code(self, code):
        if self.arg.type.is_pyobject:
            code.putln(
3812
                "%s = __Pyx_PyObject_IsTrue(%s); %s" % (
William Stein's avatar
William Stein committed
3813 3814
                    self.result_code, 
                    self.arg.py_result(), 
Robert Bradshaw's avatar
Robert Bradshaw committed
3815
                    code.error_goto_if_neg(self.result_code, self.pos)))
William Stein's avatar
William Stein committed
3816 3817 3818 3819 3820 3821 3822 3823 3824 3825 3826 3827 3828 3829 3830 3831 3832 3833 3834 3835 3836 3837 3838 3839 3840 3841 3842 3843 3844 3845 3846 3847 3848 3849 3850


class CoerceToTempNode(CoercionNode):
    #  This node is used to force the result of another node
    #  to be stored in a temporary. It is only used if the
    #  argument node's result is not already in a temporary.

    def __init__(self, arg, env):
        CoercionNode.__init__(self, arg)
        self.type = self.arg.type
        self.is_temp = 1
        if self.type.is_pyobject:
            self.result_ctype = py_object_type
    
    def generate_result_code(self, code):
        #self.arg.generate_evaluation_code(code) # Already done
        # by generic generate_subexpr_evaluation_code!
        code.putln("%s = %s;" % (
            self.result_code, self.arg.result_as(self.ctype())))
        if self.type.is_pyobject:
            code.put_incref(self.result_code, self.ctype())


class CloneNode(CoercionNode):
    #  This node is employed when the result of another node needs
    #  to be used multiple times. The argument node's result must
    #  be in a temporary. This node "borrows" the result from the
    #  argument node, and does not generate any evaluation or
    #  disposal code for it. The original owner of the argument 
    #  node is responsible for doing those things.
    
    subexprs = [] # Arg is not considered a subexpr
    
    def __init__(self, arg):
        CoercionNode.__init__(self, arg)
3851 3852 3853 3854 3855
        if hasattr(arg, 'type'):
            self.type = arg.type
            self.result_ctype = arg.result_ctype
        if hasattr(arg, 'entry'):
            self.entry = arg.entry
William Stein's avatar
William Stein committed
3856 3857 3858
    
    def calculate_result_code(self):
        return self.arg.result_code
Robert Bradshaw's avatar
Robert Bradshaw committed
3859 3860 3861 3862 3863
        
    def analyse_types(self, env):
        self.type = self.arg.type
        self.result_ctype = self.arg.result_ctype
        self.is_temp = 1
3864 3865
        if hasattr(self.arg, 'entry'):
            self.entry = self.arg.entry
William Stein's avatar
William Stein committed
3866 3867 3868 3869 3870 3871 3872 3873 3874
    
    #def result_as_extension_type(self):
    #	return self.arg.result_as_extension_type()
    
    def generate_evaluation_code(self, code):
        pass

    def generate_result_code(self, code):
        pass
3875 3876
        
    def generate_disposal_code(self, code):
3877 3878
        pass
                
3879 3880 3881 3882 3883
    def allocate_temps(self, env):
        self.result_code = self.calculate_result_code()
        
    def release_temp(self, env):
        pass
William Stein's avatar
William Stein committed
3884 3885 3886 3887 3888 3889 3890
    
#------------------------------------------------------------------------------------
#
#  Runtime support code
#
#------------------------------------------------------------------------------------

3891
get_name_utility_code = [
William Stein's avatar
William Stein committed
3892
"""
3893 3894
static PyObject *__Pyx_GetName(PyObject *dict, char *name); /*proto*/
""","""
William Stein's avatar
William Stein committed
3895 3896 3897 3898 3899 3900 3901
static PyObject *__Pyx_GetName(PyObject *dict, char *name) {
    PyObject *result;
    result = PyObject_GetAttrString(dict, name);
    if (!result)
        PyErr_SetString(PyExc_NameError, name);
    return result;
}
3902
"""]
William Stein's avatar
William Stein committed
3903

3904
get_name_interned_utility_code = [
William Stein's avatar
William Stein committed
3905
"""
3906 3907
static PyObject *__Pyx_GetName(PyObject *dict, PyObject *name); /*proto*/
""","""
William Stein's avatar
William Stein committed
3908 3909 3910 3911 3912 3913 3914
static PyObject *__Pyx_GetName(PyObject *dict, PyObject *name) {
    PyObject *result;
    result = PyObject_GetAttr(dict, name);
    if (!result)
        PyErr_SetObject(PyExc_NameError, name);
    return result;
}
3915
"""]
William Stein's avatar
William Stein committed
3916 3917 3918

#------------------------------------------------------------------------------------

3919
import_utility_code = [
William Stein's avatar
William Stein committed
3920
"""
3921 3922
static PyObject *__Pyx_Import(PyObject *name, PyObject *from_list); /*proto*/
""","""
William Stein's avatar
William Stein committed
3923 3924 3925 3926 3927 3928 3929 3930 3931 3932 3933 3934 3935 3936 3937 3938 3939 3940 3941 3942 3943 3944 3945 3946 3947 3948 3949 3950 3951 3952 3953 3954 3955 3956 3957
static PyObject *__Pyx_Import(PyObject *name, PyObject *from_list) {
    PyObject *__import__ = 0;
    PyObject *empty_list = 0;
    PyObject *module = 0;
    PyObject *global_dict = 0;
    PyObject *empty_dict = 0;
    PyObject *list;
    __import__ = PyObject_GetAttrString(%(BUILTINS)s, "__import__");
    if (!__import__)
        goto bad;
    if (from_list)
        list = from_list;
    else {
        empty_list = PyList_New(0);
        if (!empty_list)
            goto bad;
        list = empty_list;
    }
    global_dict = PyModule_GetDict(%(GLOBALS)s);
    if (!global_dict)
        goto bad;
    empty_dict = PyDict_New();
    if (!empty_dict)
        goto bad;
    module = PyObject_CallFunction(__import__, "OOOO",
        name, global_dict, empty_dict, list);
bad:
    Py_XDECREF(empty_list);
    Py_XDECREF(__import__);
    Py_XDECREF(empty_dict);
    return module;
}
""" % {
    "BUILTINS": Naming.builtins_cname,
    "GLOBALS":  Naming.module_cname,
3958
}]
William Stein's avatar
William Stein committed
3959 3960 3961

#------------------------------------------------------------------------------------

3962
get_exception_utility_code = [
William Stein's avatar
William Stein committed
3963
"""
3964 3965
static PyObject *__Pyx_GetExcValue(void); /*proto*/
""","""
William Stein's avatar
William Stein committed
3966 3967
static PyObject *__Pyx_GetExcValue(void) {
    PyObject *type = 0, *value = 0, *tb = 0;
3968
    PyObject *tmp_type, *tmp_value, *tmp_tb;
William Stein's avatar
William Stein committed
3969 3970 3971 3972 3973 3974 3975 3976 3977 3978
    PyObject *result = 0;
    PyThreadState *tstate = PyThreadState_Get();
    PyErr_Fetch(&type, &value, &tb);
    PyErr_NormalizeException(&type, &value, &tb);
    if (PyErr_Occurred())
        goto bad;
    if (!value) {
        value = Py_None;
        Py_INCREF(value);
    }
3979 3980 3981
    tmp_type = tstate->exc_type;
    tmp_value = tstate->exc_value;
    tmp_tb = tstate->exc_traceback;
William Stein's avatar
William Stein committed
3982 3983 3984
    tstate->exc_type = type;
    tstate->exc_value = value;
    tstate->exc_traceback = tb;
3985 3986 3987 3988 3989
    /* Make sure tstate is in a consistent state when we XDECREF
    these objects (XDECREF may run arbitrary code). */
    Py_XDECREF(tmp_type);
    Py_XDECREF(tmp_value);
    Py_XDECREF(tmp_tb);
William Stein's avatar
William Stein committed
3990 3991 3992 3993 3994 3995 3996 3997 3998 3999 4000
    result = value;
    Py_XINCREF(result);
    type = 0;
    value = 0;
    tb = 0;
bad:
    Py_XDECREF(type);
    Py_XDECREF(value);
    Py_XDECREF(tb);
    return result;
}
4001
"""]
William Stein's avatar
William Stein committed
4002 4003 4004

#------------------------------------------------------------------------------------

4005
unpacking_utility_code = [
William Stein's avatar
William Stein committed
4006
"""
4007
static PyObject *__Pyx_UnpackItem(PyObject *, Py_ssize_t index); /*proto*/
4008 4009
static int __Pyx_EndUnpack(PyObject *); /*proto*/
""","""
4010
static PyObject *__Pyx_UnpackItem(PyObject *iter, Py_ssize_t index) {
4011 4012
    PyObject *item;
    if (!(item = PyIter_Next(iter))) {
4013 4014 4015 4016 4017 4018 4019 4020
        if (!PyErr_Occurred()) {
            PyErr_Format(PyExc_ValueError,
                #if PY_VERSION_HEX < 0x02050000
                    "need more than %d values to unpack", (int)index);
                #else
                    "need more than %zd values to unpack", index);
                #endif
        }
4021 4022
    }
    return item;
4023
}
William Stein's avatar
William Stein committed
4024

4025 4026 4027 4028
static int __Pyx_EndUnpack(PyObject *iter) {
    PyObject *item;
    if ((item = PyIter_Next(iter))) {
        Py_DECREF(item);
4029
        PyErr_SetString(PyExc_ValueError, "too many values to unpack");
4030 4031 4032 4033 4034 4035
        return -1;
    }
    else if (!PyErr_Occurred())
        return 0;
    else
        return -1;
4036
}
4037
"""]
William Stein's avatar
William Stein committed
4038 4039 4040

#------------------------------------------------------------------------------------

4041
type_test_utility_code = [
William Stein's avatar
William Stein committed
4042
"""
4043 4044
static int __Pyx_TypeTest(PyObject *obj, PyTypeObject *type); /*proto*/
""","""
William Stein's avatar
William Stein committed
4045 4046 4047 4048 4049 4050 4051 4052 4053 4054 4055
static int __Pyx_TypeTest(PyObject *obj, PyTypeObject *type) {
    if (!type) {
        PyErr_Format(PyExc_SystemError, "Missing type object");
        return 0;
    }
    if (obj == Py_None || PyObject_TypeCheck(obj, type))
        return 1;
    PyErr_Format(PyExc_TypeError, "Cannot convert %s to %s",
        obj->ob_type->tp_name, type->tp_name);
    return 0;
}
4056
"""]
William Stein's avatar
William Stein committed
4057 4058 4059

#------------------------------------------------------------------------------------

4060
create_class_utility_code = [
William Stein's avatar
William Stein committed
4061
"""
4062 4063
static PyObject *__Pyx_CreateClass(PyObject *bases, PyObject *dict, PyObject *name, char *modname); /*proto*/
""","""
William Stein's avatar
William Stein committed
4064 4065 4066 4067 4068 4069 4070 4071 4072 4073 4074 4075 4076 4077 4078 4079
static PyObject *__Pyx_CreateClass(
    PyObject *bases, PyObject *dict, PyObject *name, char *modname)
{
    PyObject *py_modname;
    PyObject *result = 0;
    
    py_modname = PyString_FromString(modname);
    if (!py_modname)
        goto bad;
    if (PyDict_SetItemString(dict, "__module__", py_modname) < 0)
        goto bad;
    result = PyClass_New(bases, dict, name);
bad:
    Py_XDECREF(py_modname);
    return result;
}
4080
"""]
William Stein's avatar
William Stein committed
4081 4082

#------------------------------------------------------------------------------------
Robert Bradshaw's avatar
Robert Bradshaw committed
4083 4084 4085

cpp_exception_utility_code = [
"""
4086 4087
#ifndef __Pyx_CppExn2PyErr
static void __Pyx_CppExn2PyErr() {
Robert Bradshaw's avatar
Robert Bradshaw committed
4088 4089 4090 4091 4092 4093 4094 4095 4096 4097 4098 4099 4100 4101 4102 4103
  try {
    if (PyErr_Occurred())
      ; // let the latest Python exn pass through and ignore the current one
    else
      throw;
  } catch (const std::out_of_range& exn) {
    // catch out_of_range explicitly so the proper Python exn may be raised
    PyErr_SetString(PyExc_IndexError, exn.what());
  } catch (const std::exception& exn) {
    PyErr_SetString(PyExc_RuntimeError, exn.what());
  }
  catch (...)
  {
    PyErr_SetString(PyExc_RuntimeError, "Unknown exception");
  }
}
4104 4105
#endif
""",""]
Robert Bradshaw's avatar
Robert Bradshaw committed
4106 4107

#------------------------------------------------------------------------------------