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-- This file is part of SmartEiffel The GNU Eiffel Compiler Tools and Libraries
--
-- SmartEiffel is free software; you can redistribute it and/or modify it
-- under the terms of the GNU General Public License, as published by the
-- Free Software Foundation; either version 2, or (at your option) any later
-- version.
-- SmartEiffel is distributed in the hope that it will be useful but WITHOUT
-- ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
-- FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
-- more details. You should have received a copy of the GNU General Public
-- License along with SmartEiffel; see the file COPYING. If not, write to
-- the Free Software Foundation, Inc., 59 Temple Place - Suite 330, Boston,
-- MA 02111-1307, USA.
--
-- Copyright(C) 1994-2002: INRIA - LORIA (INRIA Lorraine) - ESIAL U.H.P.
-- - University of Nancy 1 - FRANCE
-- Copyright(C) 2003: INRIA - LORIA (INRIA Lorraine) - I.U.T. Charlemagne
-- - University of Nancy 2 - FRANCE
--
-- Dominique COLNET, Suzanne COLLIN, Olivier ZENDRA,
-- Philippe RIBET, Cyril ADRIAN
--
-- http://SmartEiffel.loria.fr - SmartEiffel@loria.fr
--
class OPEN_OPERAND
--
-- An open operand `?' in some agent definition.
--
inherit EXPRESSION
creation make, with
feature
is_current: BOOLEAN is False
is_manifest_string: BOOLEAN is False
is_void: BOOLEAN is False
side_effect_free: BOOLEAN is False
is_result: BOOLEAN is False
is_writable: BOOLEAN is False
once_pre_computable: BOOLEAN is False
is_static: BOOLEAN is False
extra_bracket_flag: BOOLEAN is False
isa_dca_inline_argument: INTEGER is 0
dca_inline_argument(formal_arg_type: E_TYPE) is
do
check False end
end
start_position: POSITION
-- Of the `?' character.
bracketed_pretty_print, pretty_print is
do
if type = Void then
pretty_printer.put_character('?')
else
pretty_printer.put_character('{')
type.pretty_print
pretty_printer.put_character('}')
end
end
print_as_target is
do
check False end
end
short, short_target is
do
not_yet_implemented
end
precedence: INTEGER is
do
Result := atomic_precedence
end
to_runnable(ct: E_TYPE): like Current is
local
t: E_TYPE
do
if run_feature = Void then
error_handler.add_position(start_position)
error_handler.append("Open operand out of agent scope. %
%(Missing %"agent%" keyword?)")
error_handler.print_as_fatal_error
elseif type /= Void then
t := type.to_runnable(ct)
if t = Void then
error_handler.add_position(type.start_position)
error_handler.append(em)
error_handler.print_as_fatal_error
end
type := t
t := run_feature.arguments.type(rank)
if not type.is_a(t) then
error_handler.add_position(type.start_position)
error_handler.add_position(t.start_position)
error_handler.append(em)
error_handler.print_as_fatal_error
end
end
Result := Current
end
simplify_1_, simplify_2: like Current is
do
Result := Current
end
afd_check is do end
safety_check is do end
collect_c_tmp is do end
stupid_switch(run_time_set: RUN_TIME_SET): BOOLEAN is do end
c_frame_descriptor(format, locals: STRING) is
do
not_yet_implemented
end
assertion_check(tag: CHARACTER) is
do
not_yet_implemented
end
start_lookup_class: BASE_CLASS is
do
not_yet_implemented
end
compile_to_c is
do
cpp.put_character('a')
cpp.put_integer(rank)
end
mapping_c_target(formal_type: E_TYPE) is
do
check False end
end
mapping_c_arg(formal_arg_type: E_TYPE) is
do
compile_to_c
end
result_type: E_TYPE is
do
if type = Void then
Result := run_feature.arguments.type(rank)
else
Result := type
end
Result := Result.run_type
ensure then
Result.run_type = Result
end
use_current: BOOLEAN is False
to_integer_or_error: INTEGER is
do
to_integer_error
end
jvm_assign_creation, jvm_assign is
do
check False end
end
compile_to_jvm_into(dest: E_TYPE): INTEGER is
do
not_yet_implemented
end
compile_target_to_jvm, compile_to_jvm is
do
not_yet_implemented
end
jvm_branch_if_false: INTEGER is
do
not_yet_implemented
end
jvm_branch_if_true: INTEGER is
do
not_yet_implemented
end
feature {EFFECTIVE_ARG_LIST,OPEN_OPERAND}
notify(e_agent: E_AGENT; rf: RUN_FEATURE; r: like rank): like Current is
require
r.in_range(1,rf.arguments.count)
do
if run_feature = Void then
run_feature := rf
rank := r
e_agent.register(Current)
Result := Current
else
create Result.with(start_position,type)
Result := Result.notify(e_agent,rf,r)
end
ensure
run_feature = rf
rank = r
end
feature {E_AGENT}
rank: INTEGER
-- The `rank' of the corresponding open argument in run_feature.
feature {OPEN_OPERAND_VISITOR}
accept(visitor: OPEN_OPERAND_VISITOR) is
do
visitor.visit_open_operand(Current)
end
feature {NONE}
type: E_TYPE
-- The one used between {} when the ? notation is not used.
run_feature: RUN_FEATURE
-- When checked, the corresponding one.
make(sp: like start_position) is
require
not sp.is_unknown
do
start_position := sp
ensure
start_position = sp
end
with(sp: like start_position; t: like type) is
require
not sp.is_unknown
do
start_position := sp
type := t
ensure
start_position = sp
type = t
end
em: STRING is "Bad open operand type."
end -- OPEN_OPERAND
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