Mercurial > hg > xemacs-beta
view lisp/cl-seq.el @ 1204:e22b0213b713
[xemacs-hg @ 2003-01-12 11:07:58 by michaels]
modules/ChangeLog:
2002-12-16 Ben Wing <ben@xemacs.org>
* postgresql/postgresql.c:
remove ifdef USE_KKCC.
src/ChangeLog:
2003-01-08 Mike Sperber <mike@xemacs.org>
* console.h (CDFW_CONSOLE): Don't lead to a crash if we're dealing
with a dead window/frame/device/console.
2002-12-20 Mike Sperber <mike@xemacs.org>
* ui-gtk.c: Fix typo from Ben's patch: emacs_ffi_data is a
typedef, not a struct. emacs_gtk_object_data is a typedef, not a
struct.
* gtk-glue.c (gdk_event_to_emacs_event): Fix typos from Ben's
patch: le -> emacs_event + rearrange the code.
* event-gtk.c (gtk_event_to_emacs_event): Fix typos from Ben's
patch: ..._UNDERLYING_GDK_EVENT -> ..._GDK_EVENT, ev -> key_event.
* device-gtk.c: Fix typo from Ben's patch: x_keysym_map_hash_table
-> x_keysym_map_hashtable.
2002-12-19 Mike Sperber <mike@xemacs.org>
* menubar-x.c (set_frame_menubar): Initialize protect_me field of
popup_data.
2002-12-16 Ben Wing <ben@xemacs.org>
Major cleanup of KKCC, etc.
KKCC, pdump-related:
-- descriptions are written for all objects. this required some
changes in the format of some objects, e.g. extents, popup-data,
coding system, lstream, lcrecord-list.
-- KKCC now handles weakness in markers, hash tables, elsewhere
correctly (formerly, you'd eventually get a stack overflow due
to endlessly expanding markers).
-- textual changes: lrecord_description -> memory_description,
struct_description -> sized_memory_description.
-- extensive comment describing descriptions and pdump.
-- redo XD_UNION so it works inline and change its format to provide
sufficient info for pdump. implement XD_UNION in pdump. also add
XD_UNION_DYNAMIC_SIZE, which works like XD_UNION except for when
auto-computing structure sizes.
-- add support for XD_INDIRECT in description offsets (used by
extents).
-- add support for "description maps", allowing for indirect
descriptions that are retrieved from an object at run-time. this
generalizes XD_CODING_SYSTEM_END, XD_SPECIFIER_END, etc., which
have now been eliminated.
-- add a fifth field "flags" to memory_description, to support flags
that can be specified for this particular line. Currently defined
flags are XD_FLAG_NO_KKCC (KKCC should ignore this entry; useful
for the weakness above in markers, etc.), XD_FLAG_NO_PDUMP (pdump
should ignore this entry), XD_FLAG_UNION_DEFAULT_ENTRY (in
union maps, this specifies a "default" entry for all remaining
values), and XD_FLAG_FREE_LISP_OBJECT (for use with lcrecord-lists).
-- clean up the kkcc-itis in events, so that the differences
between event data as separate objects and as a union are now
minimized to a small number of places. with the new XD_UNION, we
no longer need event data as separate objects, so this code is no
longer ifdef USE_KKCC, but instead ifdef EVENT_DATA_AS_OBJECTS,
not used by default. make sure that we explicitly free the
separate event data objects when no longer in use, to maintain the
invariant the event processing causes no consing.
-- also remove other USE_KKCC ifdefs when not necessary.
-- allow for KKCC compilation under MS Windows.
-- fix README.kkcc.
-- dump_add_root_object -> dump_add_root_lisp_object.
-- implement dump_add_root_block and use this to handle
dump_add_opaque.
-- factor out some code duplicated in kkcc and pdump.
Other allocation/object-related:
-- change various *slots.h so MARKED_SLOT() call no longer
includes semicolon.
-- free_marker() takes a Lisp_Object not a direct pointer.
-- make bit vectors lcrecords, like vectors, and eliminate code
that essentially duplicated the lcrecord handling.
-- additional asserts in FREE_FIXED_TYPE, formerly duplicated in
the various callers of this.
-- all lcrecord allocation functions now zero out the returned
lcrecords. unnecessary calls to zero_lcrecord removed. add long
comment describing these functions.
-- extract out process and coding system slots, like for buffers,
frames, etc.
-- lcrecords now set the type of items sitting on the free list to
lcrecord_type_free.
-- changes to the way that gap arrays are allocated, for kkcc's
benefit -- now, one single memory block with a stretchy array on
the end, instead of a separate block holding the array.
Error-checking-related:
-- now can compile with C++ under MS Windows. clean up compile errors
discovered that way. (a few were real problems)
-- add C++ error-checking code to verify problems with mismatched
GCPRO/UNGCPRO. (there were a few in the kkcc code.) add long
comment about how to catch insufficient GCPRO (yes, it's possible
using C++).
-- add debug_p4(), a simple object printer, when debug_print()
doesn't work.
-- add dp() and db() as short synonyms of debug_print(),
debug_backtrace().
-- `print' tries EXTREMELY hard to avoid core dumping when printing
when crashing or from debug_print(), and tries as hard as it
reasonably can in other situations.
-- Correct the message output upon crashing to be more up-to-date.
Event-related:
-- document event-matches-key-specifier-p better.
-- generalize the dispatch queues formerly duplicated in the
various event implementations. add event methods to drain pending
events. generalize and clean up QUIT handling, removing
event-specific quit processing. allow arbitrary keystrokes, not
just ASCII, to be the QUIT char. among other things, this should
fix some longstanding bugs in X quit handling. long comment
describing the various event queues.
-- implement delaying of XFlush() if there are pending expose events.
SOMEONE PLEASE TRY THIS OUT.
-- Fix `xemacs -batch -l dunnet' under Cygwin. Try to fix under
MS Windows but not quite there yet.
Other:
-- class -> class_ and no more C++ games with this item.
new -> new_ in the lwlib code, so far not elsewhere.
-- use `struct htentry' not `struct hentry' in elhash.c to avoid
debugger confusion with hash.c.
-- new macros ALIST_LOOP_3, ALIST_LOOP_4.
* README.kkcc:
* alloc.c:
* alloc.c (deadbeef_memory):
* alloc.c (allocate_lisp_storage):
* alloc.c (copy_lisp_object):
* alloc.c (ALLOCATE_FIXED_TYPE_1):
* alloc.c (FREE_FIXED_TYPE):
* alloc.c (make_vector_internal):
* alloc.c (make_bit_vector_internal):
* alloc.c (make_key_data):
* alloc.c (make_button_data):
* alloc.c (make_motion_data):
* alloc.c (make_process_data):
* alloc.c (make_timeout_data):
* alloc.c (make_magic_data):
* alloc.c (make_magic_eval_data):
* alloc.c (make_eval_data):
* alloc.c (make_misc_user_data):
* alloc.c (struct string_chars_block):
* alloc.c (mark_lcrecord_list):
* alloc.c (make_lcrecord_list):
* alloc.c (alloc_managed_lcrecord):
* alloc.c (free_managed_lcrecord):
* alloc.c (alloc_automanaged_lcrecord):
* alloc.c (staticpro_1):
* alloc.c (staticpro):
* alloc.c (lispdesc_indirect_count_1):
* alloc.c (lispdesc_indirect_description_1):
* alloc.c (lispdesc_one_description_line_size):
* alloc.c (lispdesc_structure_size):
* alloc.c (mark_object_maybe_checking_free):
* alloc.c (mark_with_description):
* alloc.c (mark_struct_contents):
* alloc.c (mark_object):
* alloc.c (tick_lcrecord_stats):
* alloc.c (free_cons):
* alloc.c (free_key_data):
* alloc.c (free_button_data):
* alloc.c (free_motion_data):
* alloc.c (free_process_data):
* alloc.c (free_timeout_data):
* alloc.c (free_magic_data):
* alloc.c (free_magic_eval_data):
* alloc.c (free_eval_data):
* alloc.c (free_misc_user_data):
* alloc.c (free_marker):
* alloc.c (compact_string_chars):
* alloc.c (gc_sweep):
* alloc.c (garbage_collect_1):
* alloc.c (Fgarbage_collect):
* alloc.c (common_init_alloc_early):
* alloc.c (init_alloc_early):
* alloc.c (init_alloc_once_early):
* buffer.c:
* buffer.c (mark_buffer):
* buffer.c (MARKED_SLOT):
* buffer.c (cleanup_buffer_undo_lists):
* buffer.c (Fget_file_buffer):
* buffer.h (MARKED_SLOT):
* bufslots.h:
* bytecode.c:
* callint.c:
* casetab.c:
* chartab.c:
* chartab.c (symbol_to_char_table_type):
* cmdloop.c:
* cmdloop.c (Fcommand_loop_1):
* config.h.in (new):
* conslots.h:
* console-gtk-impl.h (struct gtk_frame):
* console-impl.h:
* console-impl.h (struct console):
* console-impl.h (MARKED_SLOT):
* console-impl.h (CONSOLE_QUIT_EVENT):
* console-msw-impl.h (XM_BUMPQUEUE):
* console-msw.c (write_string_to_mswindows_debugging_output):
* console-msw.h:
* console-stream-impl.h:
* console-stream-impl.h (struct stream_console):
* console-stream.c:
* console-stream.c (stream_init_console):
* console-stream.h:
* console-tty.c:
* console-tty.h:
* console-x.h:
* console.c:
* console.c (mark_console):
* console.c (MARKED_SLOT):
* console.c (allocate_console):
* console.c (get_console_variant):
* console.c (create_console):
* console.c (delete_console_internal):
* console.c (Fset_input_mode):
* console.c (Fcurrent_input_mode):
* console.c (common_init_complex_vars_of_console):
* console.h:
* console.h (console_variant):
* console.h (device_metrics):
* data.c:
* data.c (Faref):
* data.c (Faset):
* data.c (decode_weak_list_type):
* database.c:
* debug.c (xemacs_debug_loop):
* debug.c (FROB):
* debug.c (Fadd_debug_class_to_check):
* debug.c (Fdelete_debug_class_to_check):
* debug.c (Fset_debug_classes_to_check):
* debug.c (Fset_debug_class_types_to_check):
* debug.c (Fdebug_types_being_checked):
* debug.h (DASSERT):
* device-gtk.c:
* device-impl.h (struct device):
* device-impl.h (MARKED_SLOT):
* device-msw.c:
* device-x.c:
* device-x.c (x_init_device_class):
* device-x.c (x_comp_visual_info):
* device-x.c (x_try_best_visual_class):
* device-x.c (x_init_device):
* device-x.c (construct_name_list):
* device-x.c (x_get_resource_prefix):
* device-x.c (Fx_get_resource):
* device-x.c (Fx_display_visual_class):
* device.c:
* device.c (MARKED_SLOT):
* device.c (allocate_device):
* device.c (Fmake_device):
* device.c (delete_device_internal):
* device.c (Fset_device_class):
* device.h:
* devslots.h:
* devslots.h (MARKED_SLOT):
* dialog-msw.c:
* dired-msw.c (mswindows_ls_sort_fcn):
* dired-msw.c (mswindows_get_files):
* dired-msw.c (mswindows_format_file):
* doprnt.c (parse_doprnt_spec):
* dumper.c:
* dumper.c (struct):
* dumper.c (dump_add_root_block):
* dumper.c (dump_add_root_struct_ptr):
* dumper.c (dump_add_root_lisp_object):
* dumper.c (pdump_struct_list_elt):
* dumper.c (pdump_get_entry_list):
* dumper.c (pdump_backtrace):
* dumper.c (pdump_bump_depth):
* dumper.c (pdump_register_sub):
* dumper.c (pdump_register_object):
* dumper.c (pdump_register_struct_contents):
* dumper.c (pdump_register_struct):
* dumper.c (pdump_store_new_pointer_offsets):
* dumper.c (pdump_dump_data):
* dumper.c (pdump_reloc_one):
* dumper.c (pdump_allocate_offset):
* dumper.c (pdump_scan_by_alignment):
* dumper.c (pdump_dump_root_blocks):
* dumper.c (pdump_dump_rtables):
* dumper.c (pdump_dump_root_lisp_objects):
* dumper.c (pdump):
* dumper.c (pdump_load_finish):
* dumper.c (pdump_file_get):
* dumper.c (pdump_resource_get):
* dumper.c (pdump_load):
* editfns.c (save_excursion_restore):
* editfns.c (user_login_name):
* editfns.c (save_restriction_restore):
* elhash.c:
* elhash.c (htentry):
* elhash.c (struct Lisp_Hash_Table):
* elhash.c (HTENTRY_CLEAR_P):
* elhash.c (LINEAR_PROBING_LOOP):
* elhash.c (check_hash_table_invariants):
* elhash.c (mark_hash_table):
* elhash.c (hash_table_equal):
* elhash.c (print_hash_table_data):
* elhash.c (free_hentries):
* elhash.c (make_general_lisp_hash_table):
* elhash.c (decode_hash_table_weakness):
* elhash.c (decode_hash_table_test):
* elhash.c (Fcopy_hash_table):
* elhash.c (resize_hash_table):
* elhash.c (pdump_reorganize_hash_table):
* elhash.c (find_htentry):
* elhash.c (Fgethash):
* elhash.c (Fputhash):
* elhash.c (remhash_1):
* elhash.c (Fremhash):
* elhash.c (Fclrhash):
* elhash.c (copy_compress_hentries):
* elhash.c (elisp_maphash_unsafe):
* elhash.c (finish_marking_weak_hash_tables):
* elhash.c (prune_weak_hash_tables):
* elhash.h:
* emacs.c:
* emacs.c (main_1):
* emacs.c (main):
* emacs.c (shut_down_emacs):
* emodules.h (dump_add_root_lisp_object):
* eval.c:
* eval.c (unwind_to_catch):
* eval.c (maybe_signal_error_1):
* eval.c (maybe_signal_continuable_error_1):
* eval.c (maybe_signal_error):
* eval.c (maybe_signal_continuable_error):
* eval.c (maybe_signal_error_2):
* eval.c (maybe_signal_continuable_error_2):
* eval.c (maybe_signal_ferror):
* eval.c (maybe_signal_continuable_ferror):
* eval.c (maybe_signal_ferror_with_frob):
* eval.c (maybe_signal_continuable_ferror_with_frob):
* eval.c (maybe_syntax_error):
* eval.c (maybe_sferror):
* eval.c (maybe_invalid_argument):
* eval.c (maybe_invalid_constant):
* eval.c (maybe_invalid_operation):
* eval.c (maybe_invalid_change):
* eval.c (maybe_invalid_state):
* eval.c (Feval):
* eval.c (call_trapping_problems):
* eval.c (call_with_suspended_errors):
* eval.c (warn_when_safe_lispobj):
* eval.c (warn_when_safe):
* eval.c (vars_of_eval):
* event-Xt.c:
* event-Xt.c (maybe_define_x_key_as_self_inserting_character):
* event-Xt.c (x_to_emacs_keysym):
* event-Xt.c (x_event_to_emacs_event):
* event-Xt.c (emacs_Xt_enqueue_focus_event):
* event-Xt.c (emacs_Xt_format_magic_event):
* event-Xt.c (emacs_Xt_compare_magic_event):
* event-Xt.c (emacs_Xt_hash_magic_event):
* event-Xt.c (emacs_Xt_handle_magic_event):
* event-Xt.c (Xt_timeout_to_emacs_event):
* event-Xt.c (Xt_process_to_emacs_event):
* event-Xt.c (signal_special_Xt_user_event):
* event-Xt.c (emacs_Xt_next_event):
* event-Xt.c (emacs_Xt_event_handler):
* event-Xt.c (emacs_Xt_drain_queue):
* event-Xt.c (emacs_Xt_event_pending_p):
* event-Xt.c (check_if_pending_expose_event):
* event-Xt.c (reinit_vars_of_event_Xt):
* event-Xt.c (vars_of_event_Xt):
* event-gtk.c:
* event-gtk.c (IS_MODIFIER_KEY):
* event-gtk.c (emacs_gtk_format_magic_event):
* event-gtk.c (emacs_gtk_compare_magic_event):
* event-gtk.c (emacs_gtk_hash_magic_event):
* event-gtk.c (emacs_gtk_handle_magic_event):
* event-gtk.c (gtk_to_emacs_keysym):
* event-gtk.c (gtk_timeout_to_emacs_event):
* event-gtk.c (gtk_process_to_emacs_event):
* event-gtk.c (dragndrop_data_received):
* event-gtk.c (signal_special_gtk_user_event):
* event-gtk.c (emacs_gtk_next_event):
* event-gtk.c (gtk_event_to_emacs_event):
* event-gtk.c (generic_event_handler):
* event-gtk.c (emacs_shell_event_handler):
* event-gtk.c (emacs_gtk_drain_queue):
* event-gtk.c (emacs_gtk_event_pending_p):
* event-gtk.c (reinit_vars_of_event_gtk):
* event-gtk.c (vars_of_event_gtk):
* event-msw.c:
* event-msw.c (struct winsock_stream):
* event-msw.c (winsock_reader):
* event-msw.c (winsock_writer):
* event-msw.c (mswindows_enqueue_dispatch_event):
* event-msw.c (mswindows_enqueue_misc_user_event):
* event-msw.c (mswindows_enqueue_magic_event):
* event-msw.c (mswindows_enqueue_process_event):
* event-msw.c (mswindows_enqueue_mouse_button_event):
* event-msw.c (mswindows_enqueue_keypress_event):
* event-msw.c (mswindows_dequeue_dispatch_event):
* event-msw.c (emacs_mswindows_drain_queue):
* event-msw.c (mswindows_need_event_in_modal_loop):
* event-msw.c (mswindows_need_event):
* event-msw.c (mswindows_wm_timer_callback):
* event-msw.c (dde_eval_string):
* event-msw.c (Fdde_alloc_advise_item):
* event-msw.c (mswindows_dde_callback):
* event-msw.c (mswindows_wnd_proc):
* event-msw.c (remove_timeout_mapper):
* event-msw.c (emacs_mswindows_remove_timeout):
* event-msw.c (emacs_mswindows_event_pending_p):
* event-msw.c (emacs_mswindows_format_magic_event):
* event-msw.c (emacs_mswindows_compare_magic_event):
* event-msw.c (emacs_mswindows_hash_magic_event):
* event-msw.c (emacs_mswindows_handle_magic_event):
* event-msw.c (emacs_mswindows_select_console):
* event-msw.c (emacs_mswindows_unselect_console):
* event-msw.c (reinit_vars_of_event_mswindows):
* event-msw.c (vars_of_event_mswindows):
* event-stream.c:
* event-stream.c (mark_command_builder):
* event-stream.c (reset_command_builder_event_chain):
* event-stream.c (allocate_command_builder):
* event-stream.c (copy_command_builder):
* event-stream.c (command_builder_append_event):
* event-stream.c (event_stream_event_pending_p):
* event-stream.c (event_stream_force_event_pending):
* event-stream.c (maybe_read_quit_event):
* event-stream.c (event_stream_drain_queue):
* event-stream.c (remove_quit_p_event):
* event-stream.c (event_stream_quit_p):
* event-stream.c (echo_key_event):
* event-stream.c (maybe_kbd_translate):
* event-stream.c (execute_help_form):
* event-stream.c (event_stream_generate_wakeup):
* event-stream.c (enqueue_dispatch_event):
* event-stream.c (enqueue_magic_eval_event):
* event-stream.c (Fenqueue_eval_event):
* event-stream.c (enqueue_misc_user_event):
* event-stream.c (enqueue_misc_user_event_pos):
* event-stream.c (next_event_internal):
* event-stream.c (Fnext_event):
* event-stream.c (Faccept_process_output):
* event-stream.c (execute_internal_event):
* event-stream.c (munge_keymap_translate):
* event-stream.c (command_builder_find_leaf_no_mule_processing):
* event-stream.c (command_builder_find_leaf):
* event-stream.c (lookup_command_event):
* event-stream.c (is_scrollbar_event):
* event-stream.c (execute_command_event):
* event-stream.c (Fdispatch_event):
* event-stream.c (Fread_key_sequence):
* event-stream.c (dribble_out_event):
* event-stream.c (vars_of_event_stream):
* event-tty.c (tty_timeout_to_emacs_event):
* event-tty.c (emacs_tty_next_event):
* event-tty.c (emacs_tty_drain_queue):
* event-tty.c (reinit_vars_of_event_tty):
* event-unixoid.c:
* event-unixoid.c (find_tty_or_stream_console_from_fd):
* event-unixoid.c (read_event_from_tty_or_stream_desc):
* event-unixoid.c (drain_tty_devices):
* event-unixoid.c (poll_fds_for_input):
* events.c:
* events.c (deinitialize_event):
* events.c (zero_event):
* events.c (mark_event):
* events.c (print_event_1):
* events.c (print_event):
* events.c (event_equal):
* events.c (event_hash):
* events.c (Fmake_event):
* events.c (Fdeallocate_event):
* events.c (Fcopy_event):
* events.c (map_event_chain_remove):
* events.c (character_to_event):
* events.c (event_to_character):
* events.c (Fevent_to_character):
* events.c (format_event_object):
* events.c (upshift_event):
* events.c (downshift_event):
* events.c (event_upshifted_p):
* events.c (Fevent_live_p):
* events.c (Fevent_type):
* events.c (Fevent_timestamp):
* events.c (CHECK_EVENT_TYPE):
* events.c (CHECK_EVENT_TYPE2):
* events.c (CHECK_EVENT_TYPE3):
* events.c (Fevent_key):
* events.c (Fevent_button):
* events.c (Fevent_modifier_bits):
* events.c (event_x_y_pixel_internal):
* events.c (event_pixel_translation):
* events.c (Fevent_process):
* events.c (Fevent_function):
* events.c (Fevent_object):
* events.c (Fevent_properties):
* events.c (syms_of_events):
* events.c (vars_of_events):
* events.h:
* events.h (struct event_stream):
* events.h (struct Lisp_Key_Data):
* events.h (KEY_DATA_KEYSYM):
* events.h (EVENT_KEY_KEYSYM):
* events.h (struct Lisp_Button_Data):
* events.h (EVENT_BUTTON_BUTTON):
* events.h (struct Lisp_Motion_Data):
* events.h (EVENT_MOTION_X):
* events.h (struct Lisp_Process_Data):
* events.h (EVENT_PROCESS_PROCESS):
* events.h (struct Lisp_Timeout_Data):
* events.h (EVENT_TIMEOUT_INTERVAL_ID):
* events.h (struct Lisp_Eval_Data):
* events.h (EVENT_EVAL_FUNCTION):
* events.h (struct Lisp_Misc_User_Data):
* events.h (EVENT_MISC_USER_FUNCTION):
* events.h (struct Lisp_Magic_Eval_Data):
* events.h (EVENT_MAGIC_EVAL_INTERNAL_FUNCTION):
* events.h (struct Lisp_Magic_Data):
* events.h (EVENT_MAGIC_UNDERLYING):
* events.h (EVENT_MAGIC_GDK_EVENT):
* events.h (struct Lisp_Event):
* events.h (XEVENT_CHANNEL):
* events.h (SET_EVENT_TIMESTAMP_ZERO):
* events.h (SET_EVENT_CHANNEL):
* events.h (SET_EVENT_NEXT):
* events.h (XSET_EVENT_TYPE):
* events.h (struct command_builder):
* extents.c:
* extents.c (gap_array_adjust_markers):
* extents.c (gap_array_recompute_derived_values):
* extents.c (gap_array_move_gap):
* extents.c (gap_array_make_gap):
* extents.c (gap_array_insert_els):
* extents.c (gap_array_delete_els):
* extents.c (gap_array_make_marker):
* extents.c (gap_array_delete_marker):
* extents.c (gap_array_move_marker):
* extents.c (make_gap_array):
* extents.c (free_gap_array):
* extents.c (extent_list_num_els):
* extents.c (extent_list_insert):
* extents.c (mark_extent_auxiliary):
* extents.c (allocate_extent_auxiliary):
* extents.c (decode_extent_at_flag):
* extents.c (verify_extent_mapper):
* extents.c (symbol_to_glyph_layout):
* extents.c (syms_of_extents):
* faces.c:
* file-coding.c:
* file-coding.c (struct_detector_category_description =):
* file-coding.c (detector_category_dynarr_description_1):
* file-coding.c (struct_detector_description =):
* file-coding.c (detector_dynarr_description_1):
* file-coding.c (MARKED_SLOT):
* file-coding.c (mark_coding_system):
* file-coding.c (coding_system_extra_description_map):
* file-coding.c (coding_system_description):
* file-coding.c (allocate_coding_system):
* file-coding.c (symbol_to_eol_type):
* file-coding.c (Fcoding_system_aliasee):
* file-coding.c (set_coding_stream_coding_system):
* file-coding.c (struct convert_eol_coding_system):
* file-coding.c (struct undecided_coding_system):
* file-coding.c (undecided_mark_coding_stream):
* file-coding.c (coding_category_symbol_to_id):
* file-coding.c (struct gzip_coding_system):
* file-coding.c (coding_system_type_create):
* file-coding.h:
* file-coding.h (struct Lisp_Coding_System):
* file-coding.h (CODING_SYSTEM_SLOT_DECLARATION):
* file-coding.h (coding_system_variant):
* file-coding.h (struct coding_system_methods):
* file-coding.h (DEFINE_CODING_SYSTEM_TYPE_WITH_DATA):
* file-coding.h (INITIALIZE_CODING_SYSTEM_TYPE_WITH_DATA):
* file-coding.h (struct coding_stream):
* fileio.c (Fsubstitute_in_file_name):
* floatfns.c:
* fns.c:
* fns.c (base64_encode_1):
* frame-gtk.c:
* frame-gtk.c (Fgtk_start_drag_internal):
* frame-impl.h (struct frame):
* frame-impl.h (MARKED_SLOT):
* frame-msw.c:
* frame-x.c:
* frame-x.c (Fcde_start_drag_internal):
* frame-x.c (Foffix_start_drag_internal):
* frame.c:
* frame.c (MARKED_SLOT):
* frame.c (allocate_frame_core):
* frame.c (delete_frame_internal):
* frame.c (Fmouse_position_as_motion_event):
* frameslots.h:
* frameslots.h (MARKED_SLOT_ARRAY):
* free-hook.c:
* glyphs-msw.c (mswindows_widget_instantiate):
* glyphs-x.c:
* glyphs-x.c (convert_EImage_to_XImage):
* glyphs.c:
* glyphs.c (process_image_string_instantiator):
* glyphs.c (mark_image_instance):
* glyphs.c (allocate_image_instance):
* glyphs.c (unmap_subwindow):
* glyphs.c (map_subwindow):
* glyphs.c (syms_of_glyphs):
* glyphs.c (specifier_type_create_image):
* glyphs.h:
* glyphs.h (struct text_image_instance):
* glyphs.h (struct Lisp_Image_Instance):
* gmalloc.c:
* gmalloc.c ("C"):
* gpmevent.c (Freceive_gpm_event):
* gpmevent.c (gpm_next_event_cb):
* gpmevent.c (vars_of_gpmevent):
* gtk-glue.c (gdk_event_to_emacs_event):
* gtk-xemacs.c (gtk_xemacs_class_init):
* gui-msw.c:
* gui-msw.c (mswindows_handle_gui_wm_command):
* gui-msw.c (mswindows_translate_menu_or_dialog_item):
* gui-x.c:
* gui-x.c (mark_popup_data):
* gui-x.c (snarf_widget_value_mapper):
* gui-x.c (gcpro_popup_callbacks):
* gui-x.c (ungcpro_popup_callbacks):
* gui-x.c (free_popup_widget_value_tree):
* gui-x.c (popup_selection_callback):
* gui-x.h:
* gui-x.h (struct popup_data):
* gui.c:
* gui.c (allocate_gui_item):
* gutter.c (decode_gutter_position):
* hash.c (NULL_ENTRY):
* indent.c (vmotion_1):
* indent.c (vmotion_pixels):
* input-method-motif.c (res):
* input-method-xlib.c (IMInstantiateCallback):
* input-method-xlib.c (XIM_init_device):
* input-method-xlib.c (res):
* intl-encap-win32.c:
* intl-encap-win32.c (qxeSHGetDataFromIDList):
* intl-win32.c:
* intl-win32.c (mswindows_multibyte_cp_type):
* intl-win32.c (struct mswindows_multibyte_coding_system):
* keymap.c:
* keymap.c (make_key_description):
* keymap.c (keymap_store):
* keymap.c (get_keyelt):
* keymap.c (keymap_lookup_1):
* keymap.c (define_key_parser):
* keymap.c (key_desc_list_to_event):
* keymap.c (event_matches_key_specifier_p):
* keymap.c (meta_prefix_char_p):
* keymap.c (ensure_meta_prefix_char_keymapp):
* keymap.c (Fdefine_key):
* keymap.c (struct raw_lookup_key_mapper_closure):
* keymap.c (raw_lookup_key):
* keymap.c (raw_lookup_key_mapper):
* keymap.c (lookup_keys):
* keymap.c (lookup_events):
* keymap.c (Flookup_key):
* keymap.c (struct map_keymap_unsorted_closure):
* keymap.c (map_keymap_unsorted_mapper):
* keymap.c (map_keymap_sorted):
* keymap.c (map_keymap_mapper):
* keymap.c (map_keymap):
* keymap.c (accessible_keymaps_mapper_1):
* keymap.c (Faccessible_keymaps):
* keymap.c (Fsingle_key_description):
* keymap.c (raw_keys_to_keys):
* keymap.c (format_raw_keys):
* keymap.c (where_is_recursive_mapper):
* keymap.c (where_is_internal):
* keymap.c (describe_map_mapper_shadow_search):
* keymap.c (keymap_lookup_inherited_mapper):
* keymap.c (describe_map_mapper):
* keymap.h (event_matches_key_specifier_p):
* lisp.h:
* lisp.h (this):
* lisp.h (RETURN_NOT_REACHED):
* lisp.h (struct Lisp_Vector):
* lisp.h (struct Lisp_Bit_Vector):
* lisp.h (UNGCPRO_1):
* lisp.h (NUNGCPRO):
* lisp.h (NNUNGCPRO):
* lisp.h (DECLARE_INLINE_HEADER):
* lrecord.h:
* lrecord.h (struct lrecord_header):
* lrecord.h (struct lcrecord_header):
* lrecord.h (lrecord_type):
* lrecord.h (struct lrecord_implementation):
* lrecord.h (RECORD_DUMPABLE):
* lrecord.h (memory_description_type):
* lrecord.h (data_description_entry_flags):
* lrecord.h (struct memory_description):
* lrecord.h (struct sized_memory_description):
* lrecord.h (XD_INDIRECT):
* lrecord.h (XD_IS_INDIRECT):
* lrecord.h (XD_DYNARR_DESC):
* lrecord.h (DEFINE_BASIC_LRECORD_IMPLEMENTATION):
* lrecord.h (MAKE_LRECORD_IMPLEMENTATION):
* lrecord.h (MAKE_EXTERNAL_LRECORD_IMPLEMENTATION):
* lrecord.h (alloc_lcrecord_type):
* lstream.c:
* lstream.c (Lstream_new):
* lstream.c (lisp_buffer_marker):
* lstream.h:
* lstream.h (lstream_implementation):
* lstream.h (DEFINE_LSTREAM_IMPLEMENTATION):
* lstream.h (DEFINE_LSTREAM_IMPLEMENTATION_WITH_DATA):
* marker.c:
* marker.c (copy_marker_1):
* mem-limits.h:
* menubar-gtk.c:
* menubar-gtk.c (gtk_popup_menu):
* menubar-msw.c:
* menubar-msw.c (mswindows_popup_menu):
* menubar-x.c (make_dummy_xbutton_event):
* menubar-x.c (command_builder_operate_menu_accelerator):
* menubar-x.c (menu_accelerator_safe_compare):
* menubar-x.c (menu_accelerator_safe_mod_compare):
* mule-charset.c:
* mule-charset.c (make_charset):
* mule-charset.c (Fcharset_property):
* mule-coding.c:
* mule-coding.c (ccs_description_1):
* mule-coding.c (ccs_description =):
* mule-coding.c (ccsd_description_1):
* mule-coding.c (ccsd_description =):
* nt.c (getpwnam):
* nt.c (init_mswindows_environment):
* nt.c (get_cached_volume_information):
* nt.c (mswindows_is_executable):
* nt.c (read_unc_volume):
* nt.c (mswindows_access):
* nt.c (mswindows_link):
* nt.c (mswindows_fstat):
* nt.c (mswindows_stat):
* nt.c (mswindows_executable_type):
* nt.c (Fmswindows_short_file_name):
* nt.c (Fmswindows_long_file_name):
* objects-impl.h (struct Lisp_Color_Instance):
* objects-impl.h (struct Lisp_Font_Instance):
* objects-tty.c:
* objects-x.c (allocate_nearest_color):
* objects.c:
* objects.c (Fmake_color_instance):
* objects.c (Fmake_font_instance):
* objects.c (font_instantiate):
* opaque.c:
* opaque.c (make_opaque):
* opaque.c (make_opaque_ptr):
* opaque.c (reinit_opaque_early):
* opaque.c (init_opaque_once_early):
* print.c:
* print.c (printing_badness):
* print.c (printing_major_badness):
* print.c (print_internal):
* print.c (debug_p4):
* print.c (dp):
* print.c (debug_backtrace):
* process-nt.c (nt_create_process):
* process-nt.c (get_internet_address):
* process-unix.c:
* process-unix.c (struct unix_process_data):
* process-unix.c (get_internet_address):
* process-unix.c (unix_alloc_process_data):
* process-unix.c (unix_create_process):
* process-unix.c (try_to_initialize_subtty):
* process-unix.c (unix_kill_child_process):
* process-unix.c (process_type_create_unix):
* process.c:
* process.c (mark_process):
* process.c (MARKED_SLOT):
* process.c (make_process_internal):
* process.c (Fprocess_tty_name):
* process.c (decode_signal):
* process.h:
* procimpl.h:
* procimpl.h (struct process_methods):
* procimpl.h (struct Lisp_Process):
* rangetab.c:
* realpath.c (readlink_and_correct_case):
* redisplay-x.c (x_window_output_end):
* redisplay-x.c (x_redraw_exposed_area):
* redisplay-x.c (x_clear_frame):
* redisplay.c:
* redisplay.h:
* redisplay.h (struct rune_dglyph):
* redisplay.h (struct rune):
* scrollbar.c:
* scrollbar.c (create_scrollbar_instance):
* specifier.c:
* specifier.c (specifier_empty_extra_description_1):
* specifier.c (make_specifier_internal):
* specifier.c (decode_locale_type):
* specifier.c (decode_how_to_add_specification):
* specifier.h:
* specifier.h (struct specifier_methods):
* specifier.h (DEFINE_SPECIFIER_TYPE_WITH_DATA):
* specifier.h (INITIALIZE_SPECIFIER_TYPE_WITH_DATA):
* symbols.c:
* symbols.c (Fsetplist):
* symbols.c (default_value):
* symbols.c (decode_magic_handler_type):
* symbols.c (handler_type_from_function_symbol):
* symbols.c (Fdefvaralias):
* symbols.c (init_symbols_once_early):
* symbols.c (reinit_symbols_early):
* symsinit.h:
* sysdep.c (sys_subshell):
* sysdep.c (tty_init_sys_modes_on_device):
* syswindows.h:
* text.c (dfc_convert_to_external_format):
* text.c (dfc_convert_to_internal_format):
* text.c (reinit_eistring_early):
* text.c (init_eistring_once_early):
* text.c (reinit_vars_of_text):
* text.h:
* text.h (INC_IBYTEPTR_FMT):
* text.h (DEC_IBYTEPTR_FMT):
* toolbar.c:
* toolbar.c (decode_toolbar_position):
* tooltalk.c:
* ui-gtk.c:
* unexnt.c:
* unexnt.c (_start):
* unexnt.c (unexec):
* unexnt.c (get_section_info):
* unicode.c:
* unicode.c (vars_of_unicode):
* window.c:
* window.c (allocate_window):
* window.c (new_window_mirror):
* window.c (update_mirror_internal):
* winslots.h:
author | michaels |
---|---|
date | Sun, 12 Jan 2003 11:08:22 +0000 |
parents | 023b83f4e54b |
children | 393039450288 |
line wrap: on
line source
;;; cl-seq.el --- Common Lisp extensions for XEmacs Lisp (part three) ;; Copyright (C) 1993 Free Software Foundation, Inc. ;; Author: Dave Gillespie <daveg@synaptics.com> ;; Maintainer: XEmacs Development Team ;; Version: 2.02 ;; Keywords: extensions, dumped ;; This file is part of XEmacs. ;; XEmacs 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. ;; XEmacs 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 XEmacs; see the file COPYING. If not, write to the Free ;; Software Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA ;; 02111-1307, USA. ;;; Synched up with: FSF 19.34. ;;; Commentary: ;; This file is dumped with XEmacs. ;; These are extensions to Emacs Lisp that provide a degree of ;; Common Lisp compatibility, beyond what is already built-in ;; in Emacs Lisp. ;; ;; This package was written by Dave Gillespie; it is a complete ;; rewrite of Cesar Quiroz's original cl.el package of December 1986. ;; ;; This package works with Emacs 18, Emacs 19, and Lucid Emacs 19. ;; ;; Bug reports, comments, and suggestions are welcome! ;; This file contains the Common Lisp sequence and list functions ;; which take keyword arguments. ;; See cl.el for Change Log. ;;; Code: (or (memq 'cl-19 features) (error "Tried to load `cl-seq' before `cl'!")) ;;; We define these here so that this file can compile without having ;;; loaded the cl.el file already. (defmacro cl-push (x place) (list 'setq place (list 'cons x place))) (defmacro cl-pop (place) (list 'car (list 'prog1 place (list 'setq place (list 'cdr place))))) ;;; Keyword parsing. This is special-cased here so that we can compile ;;; this file independent from cl-macs. (defmacro cl-parsing-keywords (kwords other-keys &rest body) "Helper macro for functions with keyword arguments. This is a temporary solution, until keyword arguments are natively supported. Declare your function ending with (... &rest cl-keys), then wrap the function body in a call to `cl-parsing-keywords'. KWORDS is a list of keyword definitions. Each definition should be either a keyword or a list (KEYWORD DEFAULT-VALUE). In the former case, the default value is nil. The keywords are available in BODY as the name of the keyword, minus its initial colon and prepended with `cl-'. OTHER-KEYS specifies other keywords that are accepted but ignored. It is either the value 't' (ignore all other keys, equivalent to the &allow-other-keys argument declaration in Common Lisp) or a list in the same format as KWORDS. If keywords are given that are not in KWORDS and not allowed by OTHER-KEYS, an error will normally be signalled; but the caller can override this by specifying a non-nil value for the keyword :allow-other-keys (which defaults to t)." (cons 'let* (cons (mapcar (function (lambda (x) (let* ((var (if (consp x) (car x) x)) (mem (list 'car (list 'cdr (list 'memq (list 'quote var) 'cl-keys))))) (if (eq var ':test-not) (setq mem (list 'and mem (list 'setq 'cl-test mem) t))) (if (eq var ':if-not) (setq mem (list 'and mem (list 'setq 'cl-if mem) t))) (list (intern (format "cl-%s" (substring (symbol-name var) 1))) (if (consp x) (list 'or mem (car (cdr x))) mem))))) kwords) (append (and (not (eq other-keys t)) (list (list 'let '((cl-keys-temp cl-keys)) (list 'while 'cl-keys-temp (list 'or (list 'memq '(car cl-keys-temp) (list 'quote (mapcar (function (lambda (x) (if (consp x) (car x) x))) (append kwords other-keys)))) '(car (cdr (memq (quote :allow-other-keys) cl-keys))) '(error "Bad keyword argument %s" (car cl-keys-temp))) '(setq cl-keys-temp (cdr (cdr cl-keys-temp))))))) body)))) (put 'cl-parsing-keywords 'lisp-indent-function 2) (put 'cl-parsing-keywords 'edebug-form-spec '(sexp sexp &rest form)) (defmacro cl-check-key (x) (list 'if 'cl-key (list 'funcall 'cl-key x) x)) (defmacro cl-check-test-nokey (item x) (list 'cond (list 'cl-test (list 'eq (list 'not (list 'funcall 'cl-test item x)) 'cl-test-not)) (list 'cl-if (list 'eq (list 'not (list 'funcall 'cl-if x)) 'cl-if-not)) (list 't (list 'if (list 'numberp item) (list 'equal item x) (list 'eq item x))))) (defmacro cl-check-test (item x) (list 'cl-check-test-nokey item (list 'cl-check-key x))) (defmacro cl-check-match (x y) (setq x (list 'cl-check-key x) y (list 'cl-check-key y)) (list 'if 'cl-test (list 'eq (list 'not (list 'funcall 'cl-test x y)) 'cl-test-not) (list 'if (list 'numberp x) (list 'equal x y) (list 'eq x y)))) (put 'cl-check-key 'edebug-form-spec 'edebug-forms) (put 'cl-check-test 'edebug-form-spec 'edebug-forms) (put 'cl-check-test-nokey 'edebug-form-spec 'edebug-forms) (put 'cl-check-match 'edebug-form-spec 'edebug-forms) (defvar cl-test) (defvar cl-test-not) (defvar cl-if) (defvar cl-if-not) (defvar cl-key) (defun reduce (cl-func cl-seq &rest cl-keys) "Reduce two-argument FUNCTION across SEQUENCE. Keywords supported: :start :end :from-end :initial-value :key" (cl-parsing-keywords (:from-end (:start 0) :end :initial-value :key) () (or (listp cl-seq) (setq cl-seq (append cl-seq nil))) (setq cl-seq (subseq cl-seq cl-start cl-end)) (if cl-from-end (setq cl-seq (nreverse cl-seq))) (let ((cl-accum (cond ((memq ':initial-value cl-keys) cl-initial-value) (cl-seq (cl-check-key (cl-pop cl-seq))) (t (funcall cl-func))))) (if cl-from-end (while cl-seq (setq cl-accum (funcall cl-func (cl-check-key (cl-pop cl-seq)) cl-accum))) (while cl-seq (setq cl-accum (funcall cl-func cl-accum (cl-check-key (cl-pop cl-seq)))))) cl-accum))) (defun fill (seq item &rest cl-keys) "Fill the elements of SEQ with ITEM. Keywords supported: :start :end" (cl-parsing-keywords ((:start 0) :end) () (if (listp seq) (let ((p (nthcdr cl-start seq)) (n (if cl-end (- cl-end cl-start) 8000000))) (while (and p (>= (setq n (1- n)) 0)) (setcar p item) (setq p (cdr p)))) (or cl-end (setq cl-end (length seq))) (if (and (= cl-start 0) (= cl-end (length seq))) (fillarray seq item) (while (< cl-start cl-end) (aset seq cl-start item) (setq cl-start (1+ cl-start))))) seq)) (defun replace (cl-seq1 cl-seq2 &rest cl-keys) "Replace the elements of SEQ1 with the elements of SEQ2. SEQ1 is destructively modified, then returned. Keywords supported: :start1 :end1 :start2 :end2" (cl-parsing-keywords ((:start1 0) :end1 (:start2 0) :end2) () (if (and (eq cl-seq1 cl-seq2) (<= cl-start2 cl-start1)) (or (= cl-start1 cl-start2) (let* ((cl-len (length cl-seq1)) (cl-n (min (- (or cl-end1 cl-len) cl-start1) (- (or cl-end2 cl-len) cl-start2)))) (while (>= (setq cl-n (1- cl-n)) 0) (cl-set-elt cl-seq1 (+ cl-start1 cl-n) (elt cl-seq2 (+ cl-start2 cl-n)))))) (if (listp cl-seq1) (let ((cl-p1 (nthcdr cl-start1 cl-seq1)) (cl-n1 (if cl-end1 (- cl-end1 cl-start1) 4000000))) (if (listp cl-seq2) (let ((cl-p2 (nthcdr cl-start2 cl-seq2)) (cl-n (min cl-n1 (if cl-end2 (- cl-end2 cl-start2) 4000000)))) (while (and cl-p1 cl-p2 (>= (setq cl-n (1- cl-n)) 0)) (setcar cl-p1 (car cl-p2)) (setq cl-p1 (cdr cl-p1) cl-p2 (cdr cl-p2)))) (setq cl-end2 (min (or cl-end2 (length cl-seq2)) (+ cl-start2 cl-n1))) (while (and cl-p1 (< cl-start2 cl-end2)) (setcar cl-p1 (aref cl-seq2 cl-start2)) (setq cl-p1 (cdr cl-p1) cl-start2 (1+ cl-start2))))) (setq cl-end1 (min (or cl-end1 (length cl-seq1)) (+ cl-start1 (- (or cl-end2 (length cl-seq2)) cl-start2)))) (if (listp cl-seq2) (let ((cl-p2 (nthcdr cl-start2 cl-seq2))) (while (< cl-start1 cl-end1) (aset cl-seq1 cl-start1 (car cl-p2)) (setq cl-p2 (cdr cl-p2) cl-start1 (1+ cl-start1)))) (while (< cl-start1 cl-end1) (aset cl-seq1 cl-start1 (aref cl-seq2 cl-start2)) (setq cl-start2 (1+ cl-start2) cl-start1 (1+ cl-start1)))))) cl-seq1)) (defun remove* (cl-item cl-seq &rest cl-keys) "Remove all occurrences of ITEM in SEQ. This is a non-destructive function; it makes a copy of SEQ if necessary to avoid corrupting the original SEQ. Keywords supported: :test :test-not :key :count :start :end :from-end" (cl-parsing-keywords (:test :test-not :key :if :if-not :count :from-end (:start 0) :end) () (if (<= (or cl-count (setq cl-count 8000000)) 0) cl-seq (if (or (nlistp cl-seq) (and cl-from-end (< cl-count 4000000))) (let ((cl-i (cl-position cl-item cl-seq cl-start cl-end cl-from-end))) (if cl-i (let ((cl-res (apply 'delete* cl-item (append cl-seq nil) (append (if cl-from-end (list ':end (1+ cl-i)) (list ':start cl-i)) cl-keys)))) (if (listp cl-seq) cl-res (if (stringp cl-seq) (concat cl-res) (vconcat cl-res)))) cl-seq)) (setq cl-end (- (or cl-end 8000000) cl-start)) (if (= cl-start 0) (while (and cl-seq (> cl-end 0) (cl-check-test cl-item (car cl-seq)) (setq cl-end (1- cl-end) cl-seq (cdr cl-seq)) (> (setq cl-count (1- cl-count)) 0)))) (if (and (> cl-count 0) (> cl-end 0)) (let ((cl-p (if (> cl-start 0) (nthcdr cl-start cl-seq) (setq cl-end (1- cl-end)) (cdr cl-seq)))) (while (and cl-p (> cl-end 0) (not (cl-check-test cl-item (car cl-p)))) (setq cl-p (cdr cl-p) cl-end (1- cl-end))) (if (and cl-p (> cl-end 0)) (nconc (ldiff cl-seq cl-p) (if (= cl-count 1) (cdr cl-p) (and (cdr cl-p) (apply 'delete* cl-item (copy-sequence (cdr cl-p)) ':start 0 ':end (1- cl-end) ':count (1- cl-count) cl-keys)))) cl-seq)) cl-seq))))) (defun remove-if (cl-pred cl-list &rest cl-keys) "Remove all items satisfying PREDICATE in SEQ. This is a non-destructive function; it makes a copy of SEQ if necessary to avoid corrupting the original SEQ. Keywords supported: :key :count :start :end :from-end" (apply 'remove* nil cl-list ':if cl-pred cl-keys)) (defun remove-if-not (cl-pred cl-list &rest cl-keys) "Remove all items not satisfying PREDICATE in SEQ. This is a non-destructive function; it makes a copy of SEQ if necessary to avoid corrupting the original SEQ. Keywords supported: :key :count :start :end :from-end" (apply 'remove* nil cl-list ':if-not cl-pred cl-keys)) (defun delete* (cl-item cl-seq &rest cl-keys) "Remove all occurrences of ITEM in SEQ. This is a destructive function; it reuses the storage of SEQ whenever possible. Keywords supported: :test :test-not :key :count :start :end :from-end" (cl-parsing-keywords (:test :test-not :key :if :if-not :count :from-end (:start 0) :end) () (if (<= (or cl-count (setq cl-count 8000000)) 0) cl-seq (if (listp cl-seq) (if (and cl-from-end (< cl-count 4000000)) (let (cl-i) (while (and (>= (setq cl-count (1- cl-count)) 0) (setq cl-i (cl-position cl-item cl-seq cl-start cl-end cl-from-end))) (if (= cl-i 0) (setq cl-seq (cdr cl-seq)) (let ((cl-tail (nthcdr (1- cl-i) cl-seq))) (setcdr cl-tail (cdr (cdr cl-tail))))) (setq cl-end cl-i)) cl-seq) (setq cl-end (- (or cl-end 8000000) cl-start)) (if (= cl-start 0) (progn (while (and cl-seq (> cl-end 0) (cl-check-test cl-item (car cl-seq)) (setq cl-end (1- cl-end) cl-seq (cdr cl-seq)) (> (setq cl-count (1- cl-count)) 0))) (setq cl-end (1- cl-end))) (setq cl-start (1- cl-start))) (if (and (> cl-count 0) (> cl-end 0)) (let ((cl-p (nthcdr cl-start cl-seq))) (while (and (cdr cl-p) (> cl-end 0)) (if (cl-check-test cl-item (car (cdr cl-p))) (progn (setcdr cl-p (cdr (cdr cl-p))) (if (= (setq cl-count (1- cl-count)) 0) (setq cl-end 1))) (setq cl-p (cdr cl-p))) (setq cl-end (1- cl-end))))) cl-seq) (apply 'remove* cl-item cl-seq cl-keys))))) (defun delete-if (cl-pred cl-list &rest cl-keys) "Remove all items satisfying PREDICATE in SEQ. This is a destructive function; it reuses the storage of SEQ whenever possible. Keywords supported: :key :count :start :end :from-end" (apply 'delete* nil cl-list ':if cl-pred cl-keys)) (defun delete-if-not (cl-pred cl-list &rest cl-keys) "Remove all items not satisfying PREDICATE in SEQ. This is a destructive function; it reuses the storage of SEQ whenever possible. Keywords supported: :key :count :start :end :from-end" (apply 'delete* nil cl-list ':if-not cl-pred cl-keys)) (or (and (fboundp 'delete) (subrp (symbol-function 'delete))) (defalias 'delete (function (lambda (x y) (delete* x y ':test 'equal))))) (defun remove (cl-item cl-seq) "Remove all occurrences of ITEM in SEQ, testing with `equal' This is a non-destructive function; it makes a copy of SEQ if necessary to avoid corrupting the original SEQ. Also see: `remove*', `delete', `delete*'" (remove* cl-item cl-seq ':test 'equal)) (defun remq (cl-elt cl-list) "Remove all occurrences of ELT in LIST, comparing with `eq'. This is a non-destructive function; it makes a copy of LIST to avoid corrupting the original LIST. Also see: `delq', `delete', `delete*', `remove', `remove*'." (if (memq cl-elt cl-list) (delq cl-elt (copy-list cl-list)) cl-list)) (defun remove-duplicates (cl-seq &rest cl-keys) "Return a copy of SEQ with all duplicate elements removed. Keywords supported: :test :test-not :key :start :end :from-end" (cl-delete-duplicates cl-seq cl-keys t)) (defun delete-duplicates (cl-seq &rest cl-keys) "Remove all duplicate elements from SEQ (destructively). Keywords supported: :test :test-not :key :start :end :from-end" (cl-delete-duplicates cl-seq cl-keys nil)) (defun cl-delete-duplicates (cl-seq cl-keys cl-copy) (if (listp cl-seq) (cl-parsing-keywords (:test :test-not :key (:start 0) :end :from-end :if) () (if cl-from-end (let ((cl-p (nthcdr cl-start cl-seq)) cl-i) (setq cl-end (- (or cl-end (length cl-seq)) cl-start)) (while (> cl-end 1) (setq cl-i 0) (while (setq cl-i (cl-position (cl-check-key (car cl-p)) (cdr cl-p) cl-i (1- cl-end))) (if cl-copy (setq cl-seq (copy-sequence cl-seq) cl-p (nthcdr cl-start cl-seq) cl-copy nil)) (let ((cl-tail (nthcdr cl-i cl-p))) (setcdr cl-tail (cdr (cdr cl-tail)))) (setq cl-end (1- cl-end))) (setq cl-p (cdr cl-p) cl-end (1- cl-end) cl-start (1+ cl-start))) cl-seq) (setq cl-end (- (or cl-end (length cl-seq)) cl-start)) (while (and (cdr cl-seq) (= cl-start 0) (> cl-end 1) (cl-position (cl-check-key (car cl-seq)) (cdr cl-seq) 0 (1- cl-end))) (setq cl-seq (cdr cl-seq) cl-end (1- cl-end))) (let ((cl-p (if (> cl-start 0) (nthcdr (1- cl-start) cl-seq) (setq cl-end (1- cl-end) cl-start 1) cl-seq))) (while (and (cdr (cdr cl-p)) (> cl-end 1)) (if (cl-position (cl-check-key (car (cdr cl-p))) (cdr (cdr cl-p)) 0 (1- cl-end)) (progn (if cl-copy (setq cl-seq (copy-sequence cl-seq) cl-p (nthcdr (1- cl-start) cl-seq) cl-copy nil)) (setcdr cl-p (cdr (cdr cl-p)))) (setq cl-p (cdr cl-p))) (setq cl-end (1- cl-end) cl-start (1+ cl-start))) cl-seq))) (let ((cl-res (cl-delete-duplicates (append cl-seq nil) cl-keys nil))) (if (stringp cl-seq) (concat cl-res) (vconcat cl-res))))) (defun substitute (cl-new cl-old cl-seq &rest cl-keys) "Substitute NEW for OLD in SEQ. This is a non-destructive function; it makes a copy of SEQ if necessary to avoid corrupting the original SEQ. Keywords supported: :test :test-not :key :count :start :end :from-end" (cl-parsing-keywords (:test :test-not :key :if :if-not :count (:start 0) :end :from-end) () (if (or (eq cl-old cl-new) (<= (or cl-count (setq cl-from-end nil cl-count 8000000)) 0)) cl-seq (let ((cl-i (cl-position cl-old cl-seq cl-start cl-end))) (if (not cl-i) cl-seq (setq cl-seq (copy-sequence cl-seq)) (or cl-from-end (progn (cl-set-elt cl-seq cl-i cl-new) (setq cl-i (1+ cl-i) cl-count (1- cl-count)))) (apply 'nsubstitute cl-new cl-old cl-seq ':count cl-count ':start cl-i cl-keys)))))) (defun substitute-if (cl-new cl-pred cl-list &rest cl-keys) "Substitute NEW for all items satisfying PREDICATE in SEQ. This is a non-destructive function; it makes a copy of SEQ if necessary to avoid corrupting the original SEQ. Keywords supported: :key :count :start :end :from-end" (apply 'substitute cl-new nil cl-list ':if cl-pred cl-keys)) (defun substitute-if-not (cl-new cl-pred cl-list &rest cl-keys) "Substitute NEW for all items not satisfying PREDICATE in SEQ. This is a non-destructive function; it makes a copy of SEQ if necessary to avoid corrupting the original SEQ. Keywords supported: :key :count :start :end :from-end" (apply 'substitute cl-new nil cl-list ':if-not cl-pred cl-keys)) (defun nsubstitute (cl-new cl-old cl-seq &rest cl-keys) "Substitute NEW for OLD in SEQ. This is a destructive function; it reuses the storage of SEQ whenever possible. Keywords supported: :test :test-not :key :count :start :end :from-end" (cl-parsing-keywords (:test :test-not :key :if :if-not :count (:start 0) :end :from-end) () (or (eq cl-old cl-new) (<= (or cl-count (setq cl-count 8000000)) 0) (if (and (listp cl-seq) (or (not cl-from-end) (> cl-count 4000000))) (let ((cl-p (nthcdr cl-start cl-seq))) (setq cl-end (- (or cl-end 8000000) cl-start)) (while (and cl-p (> cl-end 0) (> cl-count 0)) (if (cl-check-test cl-old (car cl-p)) (progn (setcar cl-p cl-new) (setq cl-count (1- cl-count)))) (setq cl-p (cdr cl-p) cl-end (1- cl-end)))) (or cl-end (setq cl-end (length cl-seq))) (if cl-from-end (while (and (< cl-start cl-end) (> cl-count 0)) (setq cl-end (1- cl-end)) (if (cl-check-test cl-old (elt cl-seq cl-end)) (progn (cl-set-elt cl-seq cl-end cl-new) (setq cl-count (1- cl-count))))) (while (and (< cl-start cl-end) (> cl-count 0)) (if (cl-check-test cl-old (aref cl-seq cl-start)) (progn (aset cl-seq cl-start cl-new) (setq cl-count (1- cl-count)))) (setq cl-start (1+ cl-start)))))) cl-seq)) (defun nsubstitute-if (cl-new cl-pred cl-list &rest cl-keys) "Substitute NEW for all items satisfying PREDICATE in SEQ. This is a destructive function; it reuses the storage of SEQ whenever possible. Keywords supported: :key :count :start :end :from-end" (apply 'nsubstitute cl-new nil cl-list ':if cl-pred cl-keys)) (defun nsubstitute-if-not (cl-new cl-pred cl-list &rest cl-keys) "Substitute NEW for all items not satisfying PREDICATE in SEQ. This is a destructive function; it reuses the storage of SEQ whenever possible. Keywords supported: :key :count :start :end :from-end" (apply 'nsubstitute cl-new nil cl-list ':if-not cl-pred cl-keys)) (defun find (cl-item cl-seq &rest cl-keys) "Find the first occurrence of ITEM in LIST. Return the matching ITEM, or nil if not found. Keywords supported: :test :test-not :key :start :end :from-end" (let ((cl-pos (apply 'position cl-item cl-seq cl-keys))) (and cl-pos (elt cl-seq cl-pos)))) (defun find-if (cl-pred cl-list &rest cl-keys) "Find the first item satisfying PREDICATE in LIST. Return the matching ITEM, or nil if not found. Keywords supported: :key :start :end :from-end" (apply 'find nil cl-list ':if cl-pred cl-keys)) (defun find-if-not (cl-pred cl-list &rest cl-keys) "Find the first item not satisfying PREDICATE in LIST. Return the matching ITEM, or nil if not found. Keywords supported: :key :start :end :from-end" (apply 'find nil cl-list ':if-not cl-pred cl-keys)) (defun position (cl-item cl-seq &rest cl-keys) "Find the first occurrence of ITEM in LIST. Return the index of the matching item, or nil if not found. Keywords supported: :test :test-not :key :start :end :from-end" (cl-parsing-keywords (:test :test-not :key :if :if-not (:start 0) :end :from-end) () (cl-position cl-item cl-seq cl-start cl-end cl-from-end))) (defun cl-position (cl-item cl-seq cl-start &optional cl-end cl-from-end) (if (listp cl-seq) (let ((cl-p (nthcdr cl-start cl-seq))) (or cl-end (setq cl-end 8000000)) (let ((cl-res nil)) (while (and cl-p (< cl-start cl-end) (or (not cl-res) cl-from-end)) (if (cl-check-test cl-item (car cl-p)) (setq cl-res cl-start)) (setq cl-p (cdr cl-p) cl-start (1+ cl-start))) cl-res)) (or cl-end (setq cl-end (length cl-seq))) (if cl-from-end (progn (while (and (>= (setq cl-end (1- cl-end)) cl-start) (not (cl-check-test cl-item (aref cl-seq cl-end))))) (and (>= cl-end cl-start) cl-end)) (while (and (< cl-start cl-end) (not (cl-check-test cl-item (aref cl-seq cl-start)))) (setq cl-start (1+ cl-start))) (and (< cl-start cl-end) cl-start)))) (defun position-if (cl-pred cl-list &rest cl-keys) "Find the first item satisfying PREDICATE in LIST. Return the index of the matching item, or nil if not found. Keywords supported: :key :start :end :from-end" (apply 'position nil cl-list ':if cl-pred cl-keys)) (defun position-if-not (cl-pred cl-list &rest cl-keys) "Find the first item not satisfying PREDICATE in LIST. Return the index of the matching item, or nil if not found. Keywords supported: :key :start :end :from-end" (apply 'position nil cl-list ':if-not cl-pred cl-keys)) (defun count (cl-item cl-seq &rest cl-keys) "Count the number of occurrences of ITEM in LIST. Keywords supported: :test :test-not :key :start :end" (cl-parsing-keywords (:test :test-not :key :if :if-not (:start 0) :end) () (let ((cl-count 0) cl-x) (or cl-end (setq cl-end (length cl-seq))) (if (consp cl-seq) (setq cl-seq (nthcdr cl-start cl-seq))) (while (< cl-start cl-end) (setq cl-x (if (consp cl-seq) (cl-pop cl-seq) (aref cl-seq cl-start))) (if (cl-check-test cl-item cl-x) (setq cl-count (1+ cl-count))) (setq cl-start (1+ cl-start))) cl-count))) (defun count-if (cl-pred cl-list &rest cl-keys) "Count the number of items satisfying PREDICATE in LIST. Keywords supported: :key :start :end" (apply 'count nil cl-list ':if cl-pred cl-keys)) (defun count-if-not (cl-pred cl-list &rest cl-keys) "Count the number of items not satisfying PREDICATE in LIST. Keywords supported: :key :start :end" (apply 'count nil cl-list ':if-not cl-pred cl-keys)) (defun mismatch (cl-seq1 cl-seq2 &rest cl-keys) "Compare SEQ1 with SEQ2, return index of first mismatching element. Return nil if the sequences match. If one sequence is a prefix of the other, the return value indicates the end of the shorted sequence. Keywords supported: :test :test-not :key :start1 :end1 :start2 :end2 :from-end" (cl-parsing-keywords (:test :test-not :key :from-end (:start1 0) :end1 (:start2 0) :end2) () (or cl-end1 (setq cl-end1 (length cl-seq1))) (or cl-end2 (setq cl-end2 (length cl-seq2))) (if cl-from-end (progn (while (and (< cl-start1 cl-end1) (< cl-start2 cl-end2) (cl-check-match (elt cl-seq1 (1- cl-end1)) (elt cl-seq2 (1- cl-end2)))) (setq cl-end1 (1- cl-end1) cl-end2 (1- cl-end2))) (and (or (< cl-start1 cl-end1) (< cl-start2 cl-end2)) (1- cl-end1))) (let ((cl-p1 (and (listp cl-seq1) (nthcdr cl-start1 cl-seq1))) (cl-p2 (and (listp cl-seq2) (nthcdr cl-start2 cl-seq2)))) (while (and (< cl-start1 cl-end1) (< cl-start2 cl-end2) (cl-check-match (if cl-p1 (car cl-p1) (aref cl-seq1 cl-start1)) (if cl-p2 (car cl-p2) (aref cl-seq2 cl-start2)))) (setq cl-p1 (cdr cl-p1) cl-p2 (cdr cl-p2) cl-start1 (1+ cl-start1) cl-start2 (1+ cl-start2))) (and (or (< cl-start1 cl-end1) (< cl-start2 cl-end2)) cl-start1))))) (defun search (cl-seq1 cl-seq2 &rest cl-keys) "Search for SEQ1 as a subsequence of SEQ2. Return the index of the leftmost element of the first match found; return nil if there are no matches. Keywords supported: :test :test-not :key :start1 :end1 :start2 :end2 :from-end" (cl-parsing-keywords (:test :test-not :key :from-end (:start1 0) :end1 (:start2 0) :end2) () (or cl-end1 (setq cl-end1 (length cl-seq1))) (or cl-end2 (setq cl-end2 (length cl-seq2))) (if (>= cl-start1 cl-end1) (if cl-from-end cl-end2 cl-start2) (let* ((cl-len (- cl-end1 cl-start1)) (cl-first (cl-check-key (elt cl-seq1 cl-start1))) (cl-if nil) cl-pos) (setq cl-end2 (- cl-end2 (1- cl-len))) (while (and (< cl-start2 cl-end2) (setq cl-pos (cl-position cl-first cl-seq2 cl-start2 cl-end2 cl-from-end)) (apply 'mismatch cl-seq1 cl-seq2 ':start1 (1+ cl-start1) ':end1 cl-end1 ':start2 (1+ cl-pos) ':end2 (+ cl-pos cl-len) ':from-end nil cl-keys)) (if cl-from-end (setq cl-end2 cl-pos) (setq cl-start2 (1+ cl-pos)))) (and (< cl-start2 cl-end2) cl-pos))))) (defun sort* (cl-seq cl-pred &rest cl-keys) "Sort the argument SEQUENCE according to PREDICATE. This is a destructive function; it reuses the storage of SEQUENCE if possible. Keywords supported: :key" (if (nlistp cl-seq) (replace cl-seq (apply 'sort* (append cl-seq nil) cl-pred cl-keys)) (cl-parsing-keywords (:key) () (if (memq cl-key '(nil identity)) (sort cl-seq cl-pred) (sort cl-seq (function (lambda (cl-x cl-y) (funcall cl-pred (funcall cl-key cl-x) (funcall cl-key cl-y))))))))) (defun stable-sort (cl-seq cl-pred &rest cl-keys) "Sort the argument SEQUENCE stably according to PREDICATE. This is a destructive function; it reuses the storage of SEQUENCE if possible. Keywords supported: :key" (apply 'sort* cl-seq cl-pred cl-keys)) (defun merge (cl-type cl-seq1 cl-seq2 cl-pred &rest cl-keys) "Destructively merge the two sequences to produce a new sequence. TYPE is the sequence type to return, SEQ1 and SEQ2 are the two argument sequences, and PRED is a `less-than' predicate on the elements. Keywords supported: :key" (or (listp cl-seq1) (setq cl-seq1 (append cl-seq1 nil))) (or (listp cl-seq2) (setq cl-seq2 (append cl-seq2 nil))) (cl-parsing-keywords (:key) () (let ((cl-res nil)) (while (and cl-seq1 cl-seq2) (if (funcall cl-pred (cl-check-key (car cl-seq2)) (cl-check-key (car cl-seq1))) (cl-push (cl-pop cl-seq2) cl-res) (cl-push (cl-pop cl-seq1) cl-res))) (coerce (nconc (nreverse cl-res) cl-seq1 cl-seq2) cl-type)))) ;;; See compiler macro in cl-macs.el (defun member* (cl-item cl-list &rest cl-keys) "Find the first occurrence of ITEM in LIST. Return the sublist of LIST whose car is ITEM. Keywords supported: :test :test-not :key" (if cl-keys (cl-parsing-keywords (:test :test-not :key :if :if-not) () (while (and cl-list (not (cl-check-test cl-item (car cl-list)))) (setq cl-list (cdr cl-list))) cl-list) (if (and (numberp cl-item) (not (integerp cl-item))) (member cl-item cl-list) (memq cl-item cl-list)))) (defun member-if (cl-pred cl-list &rest cl-keys) "Find the first item satisfying PREDICATE in LIST. Return the sublist of LIST whose car matches. Keywords supported: :key" (apply 'member* nil cl-list ':if cl-pred cl-keys)) (defun member-if-not (cl-pred cl-list &rest cl-keys) "Find the first item not satisfying PREDICATE in LIST. Return the sublist of LIST whose car matches. Keywords supported: :key" (apply 'member* nil cl-list ':if-not cl-pred cl-keys)) (defun cl-adjoin (cl-item cl-list &rest cl-keys) (if (cl-parsing-keywords (:key) t (apply 'member* (cl-check-key cl-item) cl-list cl-keys)) cl-list (cons cl-item cl-list))) ;;; See compiler macro in cl-macs.el (defun assoc* (cl-item cl-alist &rest cl-keys) "Find the first item whose car matches ITEM in LIST. Keywords supported: :test :test-not :key" (if cl-keys (cl-parsing-keywords (:test :test-not :key :if :if-not) () (while (and cl-alist (or (not (consp (car cl-alist))) (not (cl-check-test cl-item (car (car cl-alist)))))) (setq cl-alist (cdr cl-alist))) (and cl-alist (car cl-alist))) (if (and (numberp cl-item) (not (integerp cl-item))) (assoc cl-item cl-alist) (assq cl-item cl-alist)))) (defun assoc-if (cl-pred cl-list &rest cl-keys) "Find the first item whose car satisfies PREDICATE in LIST. Keywords supported: :key" (apply 'assoc* nil cl-list ':if cl-pred cl-keys)) (defun assoc-if-not (cl-pred cl-list &rest cl-keys) "Find the first item whose car does not satisfy PREDICATE in LIST. Keywords supported: :key" (apply 'assoc* nil cl-list ':if-not cl-pred cl-keys)) (defun rassoc* (cl-item cl-alist &rest cl-keys) "Find the first item whose cdr matches ITEM in LIST. Keywords supported: :test :test-not :key" (if (or cl-keys (numberp cl-item)) (cl-parsing-keywords (:test :test-not :key :if :if-not) () (while (and cl-alist (or (not (consp (car cl-alist))) (not (cl-check-test cl-item (cdr (car cl-alist)))))) (setq cl-alist (cdr cl-alist))) (and cl-alist (car cl-alist))) (rassq cl-item cl-alist))) (defun rassoc-if (cl-pred cl-list &rest cl-keys) "Find the first item whose cdr satisfies PREDICATE in LIST. Keywords supported: :key" (apply 'rassoc* nil cl-list ':if cl-pred cl-keys)) (defun rassoc-if-not (cl-pred cl-list &rest cl-keys) "Find the first item whose cdr does not satisfy PREDICATE in LIST. Keywords supported: :key" (apply 'rassoc* nil cl-list ':if-not cl-pred cl-keys)) (defun union (cl-list1 cl-list2 &rest cl-keys) "Combine LIST1 and LIST2 using a set-union operation. The result list contains all items that appear in either LIST1 or LIST2. This is a non-destructive function; it makes a copy of the data if necessary to avoid corrupting the original LIST1 and LIST2. Keywords supported: :test :test-not :key" (cond ((null cl-list1) cl-list2) ((null cl-list2) cl-list1) ((equal cl-list1 cl-list2) cl-list1) (t (or (>= (length cl-list1) (length cl-list2)) (setq cl-list1 (prog1 cl-list2 (setq cl-list2 cl-list1)))) (while cl-list2 (if (or cl-keys (numberp (car cl-list2))) (setq cl-list1 (apply 'adjoin (car cl-list2) cl-list1 cl-keys)) (or (memq (car cl-list2) cl-list1) (cl-push (car cl-list2) cl-list1))) (cl-pop cl-list2)) cl-list1))) (defun nunion (cl-list1 cl-list2 &rest cl-keys) "Combine LIST1 and LIST2 using a set-union operation. The result list contains all items that appear in either LIST1 or LIST2. This is a destructive function; it reuses the storage of LIST1 and LIST2 whenever possible. Keywords supported: :test :test-not :key" (cond ((null cl-list1) cl-list2) ((null cl-list2) cl-list1) (t (apply 'union cl-list1 cl-list2 cl-keys)))) (defun intersection (cl-list1 cl-list2 &rest cl-keys) "Combine LIST1 and LIST2 using a set-intersection operation. The result list contains all items that appear in both LIST1 and LIST2. This is a non-destructive function; it makes a copy of the data if necessary to avoid corrupting the original LIST1 and LIST2. Keywords supported: :test :test-not :key" (and cl-list1 cl-list2 (if (equal cl-list1 cl-list2) cl-list1 (cl-parsing-keywords (:key) (:test :test-not) (let ((cl-res nil)) (or (>= (length cl-list1) (length cl-list2)) (setq cl-list1 (prog1 cl-list2 (setq cl-list2 cl-list1)))) (while cl-list2 (if (if (or cl-keys (numberp (car cl-list2))) (apply 'member* (cl-check-key (car cl-list2)) cl-list1 cl-keys) (memq (car cl-list2) cl-list1)) (cl-push (car cl-list2) cl-res)) (cl-pop cl-list2)) cl-res))))) (defun nintersection (cl-list1 cl-list2 &rest cl-keys) "Combine LIST1 and LIST2 using a set-intersection operation. The result list contains all items that appear in both LIST1 and LIST2. This is a destructive function; it reuses the storage of LIST1 and LIST2 whenever possible. Keywords supported: :test :test-not :key" (and cl-list1 cl-list2 (apply 'intersection cl-list1 cl-list2 cl-keys))) (defun set-difference (cl-list1 cl-list2 &rest cl-keys) "Combine LIST1 and LIST2 using a set-difference operation. The result list contains all items that appear in LIST1 but not LIST2. This is a non-destructive function; it makes a copy of the data if necessary to avoid corrupting the original LIST1 and LIST2. Keywords supported: :test :test-not :key" (if (or (null cl-list1) (null cl-list2)) cl-list1 (cl-parsing-keywords (:key) (:test :test-not) (let ((cl-res nil)) (while cl-list1 (or (if (or cl-keys (numberp (car cl-list1))) (apply 'member* (cl-check-key (car cl-list1)) cl-list2 cl-keys) (memq (car cl-list1) cl-list2)) (cl-push (car cl-list1) cl-res)) (cl-pop cl-list1)) cl-res)))) (defun nset-difference (cl-list1 cl-list2 &rest cl-keys) "Combine LIST1 and LIST2 using a set-difference operation. The result list contains all items that appear in LIST1 but not LIST2. This is a destructive function; it reuses the storage of LIST1 and LIST2 whenever possible. Keywords supported: :test :test-not :key" (if (or (null cl-list1) (null cl-list2)) cl-list1 (apply 'set-difference cl-list1 cl-list2 cl-keys))) (defun set-exclusive-or (cl-list1 cl-list2 &rest cl-keys) "Combine LIST1 and LIST2 using a set-exclusive-or operation. The result list contains all items that appear in exactly one of LIST1, LIST2. This is a non-destructive function; it makes a copy of the data if necessary to avoid corrupting the original LIST1 and LIST2. Keywords supported: :test :test-not :key" (cond ((null cl-list1) cl-list2) ((null cl-list2) cl-list1) ((equal cl-list1 cl-list2) nil) (t (append (apply 'set-difference cl-list1 cl-list2 cl-keys) (apply 'set-difference cl-list2 cl-list1 cl-keys))))) (defun nset-exclusive-or (cl-list1 cl-list2 &rest cl-keys) "Combine LIST1 and LIST2 using a set-exclusive-or operation. The result list contains all items that appear in exactly one of LIST1, LIST2. This is a destructive function; it reuses the storage of LIST1 and LIST2 whenever possible. Keywords supported: :test :test-not :key" (cond ((null cl-list1) cl-list2) ((null cl-list2) cl-list1) ((equal cl-list1 cl-list2) nil) (t (nconc (apply 'nset-difference cl-list1 cl-list2 cl-keys) (apply 'nset-difference cl-list2 cl-list1 cl-keys))))) (defun subsetp (cl-list1 cl-list2 &rest cl-keys) "True if LIST1 is a subset of LIST2. I.e., if every element of LIST1 also appears in LIST2. Keywords supported: :test :test-not :key" (cond ((null cl-list1) t) ((null cl-list2) nil) ((equal cl-list1 cl-list2) t) (t (cl-parsing-keywords (:key) (:test :test-not) (while (and cl-list1 (apply 'member* (cl-check-key (car cl-list1)) cl-list2 cl-keys)) (cl-pop cl-list1)) (null cl-list1))))) (defun subst-if (cl-new cl-pred cl-tree &rest cl-keys) "Substitute NEW for elements matching PREDICATE in TREE (non-destructively). Return a copy of TREE with all matching elements replaced by NEW. Keywords supported: :key" (apply 'sublis (list (cons nil cl-new)) cl-tree ':if cl-pred cl-keys)) (defun subst-if-not (cl-new cl-pred cl-tree &rest cl-keys) "Substitute NEW for elts not matching PREDICATE in TREE (non-destructively). Return a copy of TREE with all non-matching elements replaced by NEW. Keywords supported: :key" (apply 'sublis (list (cons nil cl-new)) cl-tree ':if-not cl-pred cl-keys)) (defun nsubst (cl-new cl-old cl-tree &rest cl-keys) "Substitute NEW for OLD everywhere in TREE (destructively). Any element of TREE which is `eql' to OLD is changed to NEW (via a call to `setcar'). Keywords supported: :test :test-not :key" (apply 'nsublis (list (cons cl-old cl-new)) cl-tree cl-keys)) (defun nsubst-if (cl-new cl-pred cl-tree &rest cl-keys) "Substitute NEW for elements matching PREDICATE in TREE (destructively). Any element of TREE which matches is changed to NEW (via a call to `setcar'). Keywords supported: :key" (apply 'nsublis (list (cons nil cl-new)) cl-tree ':if cl-pred cl-keys)) (defun nsubst-if-not (cl-new cl-pred cl-tree &rest cl-keys) "Substitute NEW for elements not matching PREDICATE in TREE (destructively). Any element of TREE which matches is changed to NEW (via a call to `setcar'). Keywords supported: :key" (apply 'nsublis (list (cons nil cl-new)) cl-tree ':if-not cl-pred cl-keys)) (defun sublis (cl-alist cl-tree &rest cl-keys) "Perform substitutions indicated by ALIST in TREE (non-destructively). Return a copy of TREE with all matching elements replaced. Keywords supported: :test :test-not :key" (cl-parsing-keywords (:test :test-not :key :if :if-not) () (cl-sublis-rec cl-tree))) (defvar cl-alist) (defun cl-sublis-rec (cl-tree) ; uses cl-alist/key/test*/if* (let ((cl-temp (cl-check-key cl-tree)) (cl-p cl-alist)) (while (and cl-p (not (cl-check-test-nokey (car (car cl-p)) cl-temp))) (setq cl-p (cdr cl-p))) (if cl-p (cdr (car cl-p)) (if (consp cl-tree) (let ((cl-a (cl-sublis-rec (car cl-tree))) (cl-d (cl-sublis-rec (cdr cl-tree)))) (if (and (eq cl-a (car cl-tree)) (eq cl-d (cdr cl-tree))) cl-tree (cons cl-a cl-d))) cl-tree)))) (defun nsublis (cl-alist cl-tree &rest cl-keys) "Perform substitutions indicated by ALIST in TREE (destructively). Any matching element of TREE is changed via a call to `setcar'. Keywords supported: :test :test-not :key" (cl-parsing-keywords (:test :test-not :key :if :if-not) () (let ((cl-hold (list cl-tree))) (cl-nsublis-rec cl-hold) (car cl-hold)))) (defun cl-nsublis-rec (cl-tree) ; uses cl-alist/temp/p/key/test*/if* (while (consp cl-tree) (let ((cl-temp (cl-check-key (car cl-tree))) (cl-p cl-alist)) (while (and cl-p (not (cl-check-test-nokey (car (car cl-p)) cl-temp))) (setq cl-p (cdr cl-p))) (if cl-p (setcar cl-tree (cdr (car cl-p))) (if (consp (car cl-tree)) (cl-nsublis-rec (car cl-tree)))) (setq cl-temp (cl-check-key (cdr cl-tree)) cl-p cl-alist) (while (and cl-p (not (cl-check-test-nokey (car (car cl-p)) cl-temp))) (setq cl-p (cdr cl-p))) (if cl-p (progn (setcdr cl-tree (cdr (car cl-p))) (setq cl-tree nil)) (setq cl-tree (cdr cl-tree)))))) (defun tree-equal (cl-x cl-y &rest cl-keys) "Return t if trees X and Y have `eql' leaves. Atoms are compared by `eql'; cons cells are compared recursively. Keywords supported: :test :test-not :key" (cl-parsing-keywords (:test :test-not :key) () (cl-tree-equal-rec cl-x cl-y))) (defun cl-tree-equal-rec (cl-x cl-y) (while (and (consp cl-x) (consp cl-y) (cl-tree-equal-rec (car cl-x) (car cl-y))) (setq cl-x (cdr cl-x) cl-y (cdr cl-y))) (and (not (consp cl-x)) (not (consp cl-y)) (cl-check-match cl-x cl-y))) (run-hooks 'cl-seq-load-hook) ;;; cl-seq.el ends here