Mercurial > hg > xemacs-beta
view netinstall/root.cc @ 5191:71ee43b8a74d
Add #'equalp as a hash test by default; add #'define-hash-table-test, GNU API
tests/ChangeLog addition:
2010-04-05 Aidan Kehoe <kehoea@parhasard.net>
* automated/hash-table-tests.el:
Test the new built-in #'equalp hash table test. Test
#'define-hash-table-test.
* automated/lisp-tests.el:
When asserting that two objects are #'equalp, also assert that
their #'equalp-hash is identical.
man/ChangeLog addition:
2010-04-03 Aidan Kehoe <kehoea@parhasard.net>
* lispref/hash-tables.texi (Introduction to Hash Tables):
Document that we now support #'equalp as a hash table test by
default, and mention #'define-hash-table-test.
(Working With Hash Tables): Document #'define-hash-table-test.
src/ChangeLog addition:
2010-04-05 Aidan Kehoe <kehoea@parhasard.net>
* elhash.h:
* elhash.c (struct Hash_Table_Test, lisp_object_eql_equal)
(lisp_object_eql_hash, lisp_object_equal_equal)
(lisp_object_equal_hash, lisp_object_equalp_hash)
(lisp_object_equalp_equal, lisp_object_general_hash)
(lisp_object_general_equal, Feq_hash, Feql_hash, Fequal_hash)
(Fequalp_hash, define_hash_table_test, Fdefine_hash_table_test)
(init_elhash_once_early, mark_hash_table_tests, string_equalp_hash):
* glyphs.c (vars_of_glyphs):
Add a new hash table test in C, #'equalp.
Make it possible to specify new hash table tests with functions
define_hash_table_test, #'define-hash-table-test.
Use define_hash_table_test() in glyphs.c.
Expose the hash functions (besides that used for #'equal) to Lisp,
for people writing functions to be used with #'define-hash-table-test.
Call define_hash_table_test() very early in temacs, to create the
built-in hash table tests.
* ui-gtk.c (emacs_gtk_boxed_hash):
* specifier.h (struct specifier_methods):
* specifier.c (specifier_hash):
* rangetab.c (range_table_entry_hash, range_table_hash):
* number.c (bignum_hash, ratio_hash, bigfloat_hash):
* marker.c (marker_hash):
* lrecord.h (struct lrecord_implementation):
* keymap.c (keymap_hash):
* gui.c (gui_item_id_hash, gui_item_hash):
* glyphs.c (image_instance_hash, glyph_hash):
* glyphs-x.c (x_image_instance_hash):
* glyphs-msw.c (mswindows_image_instance_hash):
* glyphs-gtk.c (gtk_image_instance_hash):
* frame-msw.c (mswindows_set_title_from_ibyte):
* fontcolor.c (color_instance_hash, font_instance_hash):
* fontcolor-x.c (x_color_instance_hash):
* fontcolor-tty.c (tty_color_instance_hash):
* fontcolor-msw.c (mswindows_color_instance_hash):
* fontcolor-gtk.c (gtk_color_instance_hash):
* fns.c (bit_vector_hash):
* floatfns.c (float_hash):
* faces.c (face_hash):
* extents.c (extent_hash):
* events.c (event_hash):
* data.c (weak_list_hash, weak_box_hash):
* chartab.c (char_table_entry_hash, char_table_hash):
* bytecode.c (compiled_function_hash):
* alloc.c (vector_hash):
Change the various object hash methods to take a new EQUALP
parameter, hashing appropriately for #'equalp if it is true.
author | Aidan Kehoe <kehoea@parhasard.net> |
---|---|
date | Mon, 05 Apr 2010 13:03:35 +0100 |
parents | ce0b3f2eff35 |
children |
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/* * Copyright (c) 2000, Red Hat, Inc. * * This program 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 of the License, or * (at your option) any later version. * * A copy of the GNU General Public License can be found at * http://www.gnu.org/ * * Written by DJ Delorie <dj@cygnus.com> * */ /* The purpose of this file is to ask the user where they want the root of the installation to be, and to ask whether the user prefers text or binary mounts. */ #include "win32.h" #include <shlobj.h> #include <stdio.h> #include <stdlib.h> #include <ctype.h> #include "dialog.h" #include "resource.h" #include "state.h" #include "msg.h" #include "regedit.h" #include "reginfo.h" #include "concat.h" #include "log.h" static int rb[] = { IDC_INSTALL_CYGWIN, IDC_INSTALL_NATIVE, 0 }; static int su[] = { IDC_ROOT_SYSTEM, IDC_ROOT_USER, 0 }; static void check_if_enable_next (HWND h) { EnableWindow (GetDlgItem (h, IDOK), install_type && root_dir && root_scope); } static void load_dialog (HWND h) { rbset (h, rb, install_type); rbset (h, su, root_scope); eset (h, IDC_ROOT_DIR, root_dir); check_if_enable_next (h); } static void save_dialog (HWND h) { install_type = rbget (h, rb); root_scope = rbget (h, su); char* new_root_dir = eget (h, IDC_ROOT_DIR, root_dir); if (!root_dir || strcmp (new_root_dir, root_dir) != 0) root_dir_default = 0; root_dir = new_root_dir; } /* * is_admin () determines whether or not the current user is a member of the * Administrators group. On Windows 9X, the current user is considered an * Administrator by definition. */ static int is_admin () { // Windows 9X users are considered Administrators by definition OSVERSIONINFO verinfo; verinfo.dwOSVersionInfoSize = sizeof (verinfo); GetVersionEx (&verinfo); if (verinfo.dwPlatformId != VER_PLATFORM_WIN32_NT) return 1; // Get the process token for the current process HANDLE token; BOOL status = OpenProcessToken (GetCurrentProcess(), TOKEN_QUERY, &token); if (!status) return 0; // Get the group token information UCHAR token_info[1024]; PTOKEN_GROUPS groups = (PTOKEN_GROUPS) token_info; DWORD token_info_len = sizeof (token_info); status = GetTokenInformation (token, TokenGroups, token_info, token_info_len, &token_info_len); CloseHandle(token); if (!status) return 0; // Create the Administrators group SID PSID admin_sid; SID_IDENTIFIER_AUTHORITY authority = SECURITY_NT_AUTHORITY; status = AllocateAndInitializeSid (&authority, 2, SECURITY_BUILTIN_DOMAIN_RID, DOMAIN_ALIAS_RID_ADMINS, 0, 0, 0, 0, 0, 0, &admin_sid); if (!status) return 0; // Check to see if the user is a member of the Administrators group status = 0; for (UINT i=0; i<groups->GroupCount; i++) { if (EqualSid(groups->Groups[i].Sid, admin_sid)) { status = 1; break; } } // Destroy the Administrators group SID FreeSid (admin_sid); // Return whether or not the user is a member of the Administrators group return status; } static void change_default_root (int id) { int issystem; char* cygroot = find_cygwin_root (&issystem); if (id == IDC_INSTALL_CYGWIN && cygroot) { root_dir = concat (cygroot, XEMACS_CYGWIN_DEFAULT_ROOT, 0); install_type = IDC_INSTALL_CYGWIN; } else if (id == IDC_INSTALL_NATIVE) { char windir[_MAX_PATH]; GetWindowsDirectory (windir, sizeof (windir)); windir[2] = 0; root_dir = concat (windir, XEMACS_DEFAULT_ROOT, 0); install_type = IDC_INSTALL_NATIVE; } } static int CALLBACK browse_cb (HWND h, UINT m, LPARAM lp, LPARAM data) { switch (m) { case BFFM_INITIALIZED: if (root_dir) SendMessage (h, BFFM_SETSELECTION, TRUE, (LPARAM)root_dir); break; } return 0; } static void browse (HWND h) { BROWSEINFO bi; CHAR name[MAX_PATH]; LPITEMIDLIST pidl; memset (&bi, 0, sizeof (bi)); bi.hwndOwner = h; bi.pszDisplayName = name; bi.lpszTitle = "Select an installation root directory"; bi.ulFlags = BIF_RETURNONLYFSDIRS; bi.lpfn = browse_cb; pidl = SHBrowseForFolder (&bi); if (pidl) { if (SHGetPathFromIDList (pidl, name)) eset (h, IDC_ROOT_DIR, name); } } #define isslash(c) ((c) == '\\' || (c) == '/') static int directory_is_absolute () { if (isalpha (root_dir[0]) && root_dir[1] == ':' && (root_dir[2] == '\\' || root_dir[2] == '/')) return 1; return 0; } static int directory_is_rootdir () { char *c; for (c = root_dir; *c; c++) if (isslash (c[0]) && c[1] && !isslash (c[1])) return 0; return 1; } static int cygwin_without_cygwin () { int issystem; if (install_type == IDC_INSTALL_CYGWIN && !find_cygwin_root (&issystem)) return 1; return 0; } static BOOL dialog_cmd (HWND h, int id, HWND hwndctl, UINT code) { switch (id) { case IDC_ROOT_DIR: case IDC_ROOT_SYSTEM: case IDC_ROOT_USER: save_dialog (h); check_if_enable_next (h); break; case IDC_INSTALL_NATIVE: case IDC_INSTALL_CYGWIN: if (root_dir_default) { change_default_root (id); eset (h, IDC_ROOT_DIR, root_dir); } save_dialog (h); check_if_enable_next (h); break; case IDC_ROOT_BROWSE: browse (h); break; case IDOK: save_dialog (h); if (! directory_is_absolute ()) { note (IDS_ROOT_ABSOLUTE); break; } if (directory_is_rootdir ()) if (IDNO == yesno (IDS_ROOT_SLASH)) break; if (cygwin_without_cygwin ()) if (IDNO == yesno (IDS_ROOT_NOCYGWIN)) break; create_xemacs_root (backslash (root_dir), root_scope == IDC_ROOT_SYSTEM ? 1 : 0, install_type == IDC_INSTALL_NATIVE ? 1 : 0); switch (source) { case IDC_SOURCE_NETINST: NEXT (IDD_NET); break; case IDC_SOURCE_CWD: NEXT (IDD_S_FROM_CWD); break; default: msg ("source is default? %d\n", source); NEXT (0); } break; case IDC_BACK: save_dialog (h); NEXT (IDD_LOCAL_DIR); break; case IDCANCEL: NEXT (0); break; } return FALSE; } static BOOL CALLBACK dialog_proc (HWND h, UINT message, WPARAM wParam, LPARAM lParam) { switch (message) { case WM_INITDIALOG: load_dialog (h); return FALSE; case WM_COMMAND: return HANDLE_WM_COMMAND (h, wParam, lParam, dialog_cmd); } return FALSE; } static void set_default_root () { change_default_root (IDC_INSTALL_NATIVE); root_scope = (is_admin()) ? IDC_ROOT_SYSTEM : IDC_ROOT_USER; root_dir_default = 1; } void do_root (HINSTANCE h) { int rv = 0; // init will have read a previous root if (!root_dir) set_default_root (); rv = DialogBox (h, MAKEINTRESOURCE (IDD_ROOT), 0, dialog_proc); if (rv == -1) fatal (IDS_DIALOG_FAILED); log (0, "root: %s %s %s", root_dir, (install_type == IDC_INSTALL_NATIVE) ? "native" : "cygwin", (root_scope == IDC_ROOT_USER) ? "user" : "system"); }