2006-11-26 11:13:41 -07:00
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/************************************************************
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Author: Eamon Walsh <ewalsh@epoch.ncsc.mil>
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Permission to use, copy, modify, distribute, and sell this software and its
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documentation for any purpose is hereby granted without fee, provided that
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this permission notice appear in supporting documentation. This permission
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notice shall be included in all copies or substantial portions of the
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Software.
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THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
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AUTHOR BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN
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AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
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CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
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********************************************************/
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#ifdef HAVE_DIX_CONFIG_H
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#include <dix-config.h>
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#endif
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#include <stdarg.h>
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#include "windowstr.h"
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#include "scrnintstr.h"
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#include "gcstruct.h"
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#include "xacestr.h"
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#include "modinit.h"
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CallbackListPtr XaceHooks[XACE_NUM_HOOKS] = {0};
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/* Proc vectors for untrusted clients, swapped and unswapped versions.
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* These are the same as the normal proc vectors except that extensions
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* that haven't declared themselves secure will have ProcBadRequest plugged
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* in for their major opcode dispatcher. This prevents untrusted clients
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* from guessing extension major opcodes and using the extension even though
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* the extension can't be listed or queried.
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*/
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2007-11-24 10:55:21 -07:00
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static int (*UntrustedProcVector[256])(
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2006-11-26 11:13:41 -07:00
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ClientPtr /*client*/
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);
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2007-11-24 10:55:21 -07:00
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static int (*SwappedUntrustedProcVector[256])(
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2006-11-26 11:13:41 -07:00
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ClientPtr /*client*/
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);
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/* Entry point for hook functions. Called by Xserver.
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*/
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int XaceHook(int hook, ...)
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{
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pointer calldata; /* data passed to callback */
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int *prv = NULL; /* points to return value from callback */
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va_list ap; /* argument list */
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va_start(ap, hook);
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/* Marshal arguments for passing to callback.
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* Each callback has its own case, which sets up a structure to hold
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* the arguments and integer return parameter, or in some cases just
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* sets calldata directly to a single argument (with no return result)
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*/
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switch (hook)
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{
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case XACE_CORE_DISPATCH: {
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XaceCoreDispatchRec rec = {
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va_arg(ap, ClientPtr),
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TRUE /* default allow */
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};
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calldata = &rec;
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prv = &rec.rval;
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break;
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}
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case XACE_RESOURCE_ACCESS: {
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XaceResourceAccessRec rec = {
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va_arg(ap, ClientPtr),
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va_arg(ap, XID),
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va_arg(ap, RESTYPE),
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va_arg(ap, Mask),
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va_arg(ap, pointer),
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TRUE /* default allow */
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};
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calldata = &rec;
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prv = &rec.rval;
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break;
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}
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case XACE_DEVICE_ACCESS: {
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XaceDeviceAccessRec rec = {
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va_arg(ap, ClientPtr),
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va_arg(ap, DeviceIntPtr),
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va_arg(ap, Bool),
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TRUE /* default allow */
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};
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calldata = &rec;
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prv = &rec.rval;
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break;
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}
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case XACE_PROPERTY_ACCESS: {
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XacePropertyAccessRec rec = {
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va_arg(ap, ClientPtr),
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va_arg(ap, WindowPtr),
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va_arg(ap, Atom),
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va_arg(ap, Mask),
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2007-11-24 10:55:21 -07:00
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XaceAllowOperation /* default allow */
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2006-11-26 11:13:41 -07:00
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};
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calldata = &rec;
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prv = &rec.rval;
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break;
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}
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case XACE_DRAWABLE_ACCESS: {
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XaceDrawableAccessRec rec = {
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va_arg(ap, ClientPtr),
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va_arg(ap, DrawablePtr),
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TRUE /* default allow */
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};
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calldata = &rec;
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prv = &rec.rval;
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break;
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}
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case XACE_MAP_ACCESS:
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case XACE_BACKGRND_ACCESS: {
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XaceMapAccessRec rec = {
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va_arg(ap, ClientPtr),
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va_arg(ap, WindowPtr),
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TRUE /* default allow */
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};
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calldata = &rec;
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prv = &rec.rval;
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break;
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}
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case XACE_EXT_DISPATCH:
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case XACE_EXT_ACCESS: {
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XaceExtAccessRec rec = {
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va_arg(ap, ClientPtr),
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va_arg(ap, ExtensionEntry*),
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TRUE /* default allow */
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};
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calldata = &rec;
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prv = &rec.rval;
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break;
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}
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case XACE_HOSTLIST_ACCESS: {
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XaceHostlistAccessRec rec = {
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va_arg(ap, ClientPtr),
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va_arg(ap, Mask),
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TRUE /* default allow */
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};
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calldata = &rec;
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prv = &rec.rval;
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break;
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}
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case XACE_SITE_POLICY: {
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XaceSitePolicyRec rec = {
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va_arg(ap, char*),
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va_arg(ap, int),
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FALSE /* default unrecognized */
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};
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calldata = &rec;
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prv = &rec.rval;
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break;
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}
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case XACE_DECLARE_EXT_SECURE: {
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XaceDeclareExtSecureRec rec = {
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va_arg(ap, ExtensionEntry*),
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va_arg(ap, Bool)
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};
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calldata = &rec;
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break;
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}
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case XACE_AUTH_AVAIL: {
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XaceAuthAvailRec rec = {
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va_arg(ap, ClientPtr),
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va_arg(ap, XID)
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};
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calldata = &rec;
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break;
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}
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case XACE_KEY_AVAIL: {
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XaceKeyAvailRec rec = {
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va_arg(ap, xEventPtr),
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va_arg(ap, DeviceIntPtr),
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va_arg(ap, int)
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};
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calldata = &rec;
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break;
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}
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case XACE_WINDOW_INIT: {
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XaceWindowRec rec = {
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va_arg(ap, ClientPtr),
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va_arg(ap, WindowPtr)
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};
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calldata = &rec;
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break;
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}
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case XACE_AUDIT_BEGIN: {
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XaceAuditRec rec = {
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va_arg(ap, ClientPtr),
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0
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};
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calldata = &rec;
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break;
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}
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case XACE_AUDIT_END: {
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XaceAuditRec rec = {
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va_arg(ap, ClientPtr),
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va_arg(ap, int)
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};
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calldata = &rec;
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break;
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}
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default: {
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va_end(ap);
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return 0; /* unimplemented hook number */
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}
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}
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va_end(ap);
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/* call callbacks and return result, if any. */
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CallCallbacks(&XaceHooks[hook], calldata);
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return prv ? *prv : 0;
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}
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static int
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ProcXaceDispatch(ClientPtr client)
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{
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REQUEST(xReq);
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switch (stuff->data)
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{
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default:
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return BadRequest;
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}
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} /* ProcXaceDispatch */
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static int
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SProcXaceDispatch(ClientPtr client)
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{
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REQUEST(xReq);
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switch (stuff->data)
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{
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default:
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return BadRequest;
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}
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} /* SProcXaceDispatch */
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/* XaceResetProc
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*
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* Arguments:
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* extEntry is the extension information for the XACE extension.
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*
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* Returns: nothing.
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*
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* Side Effects:
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* Performs any cleanup needed by XACE at server shutdown time.
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*/
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static void
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XaceResetProc(ExtensionEntry *extEntry)
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{
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int i;
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for (i=0; i<XACE_NUM_HOOKS; i++)
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{
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DeleteCallbackList(&XaceHooks[i]);
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XaceHooks[i] = NULL;
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}
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} /* XaceResetProc */
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static int
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XaceCatchDispatchProc(ClientPtr client)
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{
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REQUEST(xReq);
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int major = stuff->reqType;
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if (!ProcVector[major])
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return (BadRequest);
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if (!XaceHook(XACE_CORE_DISPATCH, client))
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return (BadAccess);
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return client->swapped ?
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(* SwappedProcVector[major])(client) :
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(* ProcVector[major])(client);
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}
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static int
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XaceCatchExtProc(ClientPtr client)
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{
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REQUEST(xReq);
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int major = stuff->reqType;
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ExtensionEntry *ext = GetExtensionEntry(major);
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if (!ext || !ProcVector[major])
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return (BadRequest);
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if (!XaceHook(XACE_EXT_DISPATCH, client, ext))
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return (BadRequest); /* pretend extension doesn't exist */
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return client->swapped ?
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(* SwappedProcVector[major])(client) :
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(* ProcVector[major])(client);
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}
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/* SecurityClientStateCallback
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*
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* Arguments:
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* pcbl is &ClientStateCallback.
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* nullata is NULL.
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* calldata is a pointer to a NewClientInfoRec (include/dixstruct.h)
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* which contains information about client state changes.
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*
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* Returns: nothing.
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*
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* Side Effects:
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*
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* If a new client is connecting, its authorization ID is copied to
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* client->authID. If this is a generated authorization, its reference
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* count is bumped, its timer is cancelled if it was running, and its
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* trustlevel is copied to TRUSTLEVEL(client).
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*
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* If a client is disconnecting and the client was using a generated
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* authorization, the authorization's reference count is decremented, and
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* if it is now zero, the timer for this authorization is started.
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*/
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static void
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XaceClientStateCallback(
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CallbackListPtr *pcbl,
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pointer nulldata,
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pointer calldata)
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{
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NewClientInfoRec *pci = (NewClientInfoRec *)calldata;
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ClientPtr client = pci->client;
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switch (client->clientState)
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{
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case ClientStateRunning:
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{
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client->requestVector = client->swapped ?
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SwappedUntrustedProcVector : UntrustedProcVector;
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break;
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}
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default: break;
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}
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} /* XaceClientStateCallback */
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/* XaceExtensionInit
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*
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* Initialize the XACE Extension
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*/
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void XaceExtensionInit(INITARGS)
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{
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ExtensionEntry *extEntry;
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int i;
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if (!AddCallback(&ClientStateCallback, XaceClientStateCallback, NULL))
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return;
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extEntry = AddExtension(XACE_EXTENSION_NAME,
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XaceNumberEvents, XaceNumberErrors,
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ProcXaceDispatch, SProcXaceDispatch,
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XaceResetProc, StandardMinorOpcode);
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/* initialize dispatching intercept functions */
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for (i = 0; i < 128; i++)
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{
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UntrustedProcVector[i] = XaceCatchDispatchProc;
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SwappedUntrustedProcVector[i] = XaceCatchDispatchProc;
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}
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for (i = 128; i < 256; i++)
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{
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UntrustedProcVector[i] = XaceCatchExtProc;
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SwappedUntrustedProcVector[i] = XaceCatchExtProc;
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}
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}
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/* XaceCensorImage
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*
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* Called after pScreen->GetImage to prevent pieces or trusted windows from
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* being returned in image data from an untrusted window.
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*
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* Arguments:
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* client is the client doing the GetImage.
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* pVisibleRegion is the visible region of the window.
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* widthBytesLine is the width in bytes of one horizontal line in pBuf.
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* pDraw is the source window.
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* x, y, w, h is the rectangle of image data from pDraw in pBuf.
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* format is the format of the image data in pBuf: ZPixmap or XYPixmap.
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* pBuf is the image data.
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*
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* Returns: nothing.
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*
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* Side Effects:
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* Any part of the rectangle (x, y, w, h) that is outside the visible
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* region of the window will be destroyed (overwritten) in pBuf.
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*/
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void
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XaceCensorImage(client, pVisibleRegion, widthBytesLine, pDraw, x, y, w, h,
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format, pBuf)
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ClientPtr client;
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RegionPtr pVisibleRegion;
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long widthBytesLine;
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DrawablePtr pDraw;
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int x, y, w, h;
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unsigned int format;
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char * pBuf;
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{
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2007-11-24 10:55:21 -07:00
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ScreenPtr pScreen;
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2006-11-26 11:13:41 -07:00
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RegionRec imageRegion; /* region representing x,y,w,h */
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RegionRec censorRegion; /* region to obliterate */
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BoxRec imageBox;
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int nRects;
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2007-11-24 10:55:21 -07:00
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pScreen = pDraw->pScreen;
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2006-11-26 11:13:41 -07:00
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imageBox.x1 = x;
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imageBox.y1 = y;
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imageBox.x2 = x + w;
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imageBox.y2 = y + h;
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REGION_INIT(pScreen, &imageRegion, &imageBox, 1);
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REGION_NULL(pScreen, &censorRegion);
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/* censorRegion = imageRegion - visibleRegion */
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REGION_SUBTRACT(pScreen, &censorRegion, &imageRegion, pVisibleRegion);
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nRects = REGION_NUM_RECTS(&censorRegion);
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if (nRects > 0)
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{ /* we have something to censor */
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GCPtr pScratchGC = NULL;
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PixmapPtr pPix = NULL;
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xRectangle *pRects = NULL;
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Bool failed = FALSE;
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int depth = 1;
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int bitsPerPixel = 1;
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int i;
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BoxPtr pBox;
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/* convert region to list-of-rectangles for PolyFillRect */
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pRects = (xRectangle *)ALLOCATE_LOCAL(nRects * sizeof(xRectangle *));
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if (!pRects)
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{
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failed = TRUE;
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goto failSafe;
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}
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for (pBox = REGION_RECTS(&censorRegion), i = 0;
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i < nRects;
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i++, pBox++)
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{
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pRects[i].x = pBox->x1;
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pRects[i].y = pBox->y1 - imageBox.y1;
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pRects[i].width = pBox->x2 - pBox->x1;
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pRects[i].height = pBox->y2 - pBox->y1;
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}
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/* use pBuf as a fake pixmap */
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if (format == ZPixmap)
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{
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depth = pDraw->depth;
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bitsPerPixel = pDraw->bitsPerPixel;
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}
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pPix = GetScratchPixmapHeader(pDraw->pScreen, w, h,
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depth, bitsPerPixel,
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widthBytesLine, (pointer)pBuf);
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if (!pPix)
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{
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failed = TRUE;
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goto failSafe;
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}
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pScratchGC = GetScratchGC(depth, pPix->drawable.pScreen);
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if (!pScratchGC)
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{
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failed = TRUE;
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goto failSafe;
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}
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ValidateGC(&pPix->drawable, pScratchGC);
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(* pScratchGC->ops->PolyFillRect)(&pPix->drawable,
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pScratchGC, nRects, pRects);
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failSafe:
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if (failed)
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{
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/* Censoring was not completed above. To be safe, wipe out
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* all the image data so that nothing trusted gets out.
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*/
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bzero(pBuf, (int)(widthBytesLine * h));
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}
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if (pRects) DEALLOCATE_LOCAL(pRects);
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if (pScratchGC) FreeScratchGC(pScratchGC);
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if (pPix) FreeScratchPixmapHeader(pPix);
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}
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REGION_UNINIT(pScreen, &imageRegion);
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REGION_UNINIT(pScreen, &censorRegion);
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} /* XaceCensorImage */
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