379 lines
		
	
	
		
			11 KiB
		
	
	
	
		
			C
		
	
	
	
			
		
		
	
	
			379 lines
		
	
	
		
			11 KiB
		
	
	
	
		
			C
		
	
	
	
/**
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 * Copyright © 2009 Red Hat, Inc.
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 *
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 *  Permission is hereby granted, free of charge, to any person obtaining a
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 *  copy of this software and associated documentation files (the "Software"),
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 *  to deal in the Software without restriction, including without limitation
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 *  the rights to use, copy, modify, merge, publish, distribute, sublicense,
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 *  and/or sell copies of the Software, and to permit persons to whom the
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 *  Software is furnished to do so, subject to the following conditions:
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 *
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 *  The above copyright notice and this permission notice (including the next
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 *  paragraph) shall be included in all copies or substantial portions of the
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 *  Software.
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 *
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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
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 *  THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
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 *  LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
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 *  FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER
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 *  DEALINGS IN THE SOFTWARE.
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 */
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/* Test relies on assert() */
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#undef NDEBUG
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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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/*
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 * Protocol testing for XISelectEvents request.
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 *
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 * Test approach:
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 *
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 * Wrap XISetEventMask to intercept when the server tries to apply the event
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 * mask. Ensure that the mask passed in is equivalent to the one supplied by
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 * the client. Ensure that invalid devices and invalid masks return errors
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 * as appropriate.
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 *
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 * Tests included:
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 * BadValue for num_masks < 0
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 * BadWindow for invalid windows
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 * BadDevice for non-existing devices
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 * BadImplemenation for devices >= 0xFF
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 * BadValue if HierarchyChanged bit is set for devices other than
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 *          XIAllDevices
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 * BadValue for invalid mask bits
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 * Sucecss for excessive mask lengths
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 *
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 */
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#include <stdint.h>
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#include <X11/X.h>
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#include <X11/Xproto.h>
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#include <X11/extensions/XI2proto.h>
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#include "inputstr.h"
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#include "windowstr.h"
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#include "extinit.h"            /* for XInputExtensionInit */
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#include "scrnintstr.h"
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#include "exglobals.h"
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#include "xiselectev.h"
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#include "protocol-common.h"
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DECLARE_WRAP_FUNCTION(XISetEventMask, int, DeviceIntPtr dev,
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                      WindowPtr win, ClientPtr client,
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                      int len, unsigned char *mask);
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static unsigned char *data[4096 * 20];  /* the request data buffer */
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extern ClientRec client_window;
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static int
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override_XISetEventMask(DeviceIntPtr dev, WindowPtr win, ClientPtr client,
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                        int len, unsigned char *mask)
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{
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    return Success;
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}
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static void
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request_XISelectEvent(xXISelectEventsReq * req, int error)
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{
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    int i;
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    int rc;
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    ClientRec client;
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    xXIEventMask *mask, *next;
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    req->length = (sz_xXISelectEventsReq / 4);
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    mask = (xXIEventMask *) &req[1];
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    for (i = 0; i < req->num_masks; i++) {
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        req->length += sizeof(xXIEventMask) / 4 + mask->mask_len;
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        mask = (xXIEventMask *) ((char *) &mask[1] + mask->mask_len * 4);
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    }
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    client = init_client(req->length, req);
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    rc = ProcXISelectEvents(&client);
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    assert(rc == error);
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    client.swapped = TRUE;
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    mask = (xXIEventMask *) &req[1];
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    for (i = 0; i < req->num_masks; i++) {
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        next = (xXIEventMask *) ((char *) &mask[1] + mask->mask_len * 4);
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        swaps(&mask->deviceid);
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        swaps(&mask->mask_len);
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        mask = next;
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    }
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    swapl(&req->win);
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    swaps(&req->length);
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    swaps(&req->num_masks);
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    rc = SProcXISelectEvents(&client);
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    assert(rc == error);
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}
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static void
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_set_bit(unsigned char *bits, int bit)
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{
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    SetBit(bits, bit);
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    if (bit >= XI_TouchBegin && bit <= XI_TouchOwnership) {
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        SetBit(bits, XI_TouchBegin);
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        SetBit(bits, XI_TouchUpdate);
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        SetBit(bits, XI_TouchEnd);
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    }
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    if (bit >= XI_GesturePinchBegin && bit <= XI_GesturePinchEnd) {
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        SetBit(bits, XI_GesturePinchBegin);
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        SetBit(bits, XI_GesturePinchUpdate);
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        SetBit(bits, XI_GesturePinchEnd);
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    }
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    if (bit >= XI_GestureSwipeBegin && bit <= XI_GestureSwipeEnd) {
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        SetBit(bits, XI_GestureSwipeBegin);
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        SetBit(bits, XI_GestureSwipeUpdate);
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        SetBit(bits, XI_GestureSwipeEnd);
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    }
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}
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static void
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_clear_bit(unsigned char *bits, int bit)
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{
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    ClearBit(bits, bit);
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    if (bit >= XI_TouchBegin && bit <= XI_TouchOwnership) {
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        ClearBit(bits, XI_TouchBegin);
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        ClearBit(bits, XI_TouchUpdate);
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        ClearBit(bits, XI_TouchEnd);
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    }
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    if (bit >= XI_GesturePinchBegin && bit <= XI_GesturePinchEnd) {
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        ClearBit(bits, XI_GesturePinchBegin);
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        ClearBit(bits, XI_GesturePinchUpdate);
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        ClearBit(bits, XI_GesturePinchEnd);
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    }
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    if (bit >= XI_GestureSwipeBegin && bit <= XI_GestureSwipeEnd) {
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        ClearBit(bits, XI_GestureSwipeBegin);
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        ClearBit(bits, XI_GestureSwipeUpdate);
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        ClearBit(bits, XI_GestureSwipeEnd);
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    }
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}
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static void
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request_XISelectEvents_masks(xXISelectEventsReq * req)
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{
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    int i, j;
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    xXIEventMask *mask;
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    int nmasks = XI2MASKSIZE;
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    unsigned char *bits;
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    mask = (xXIEventMask *) &req[1];
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    req->win = ROOT_WINDOW_ID;
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    /* if a clients submits more than 100 masks, consider it insane and untested */
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    for (i = 1; i <= 1000; i += 33) {
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        req->num_masks = i;
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        mask->deviceid = XIAllDevices;
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        /* Test 0:
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         * mask_len is 0 -> Success
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         */
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        mask->mask_len = 0;
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        request_XISelectEvent(req, Success);
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        /* Test 1:
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         * mask may be larger than needed for XI2LASTEVENT.
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         * Test setting each valid mask bit, while leaving unneeded bits 0.
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         * -> Success
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         */
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        bits = (unsigned char *) &mask[1];
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        mask->mask_len = (nmasks + 3) / 4 * 10;
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        memset(bits, 0, mask->mask_len * 4);
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        for (j = 0; j <= XI2LASTEVENT; j++) {
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            _set_bit(bits, j);
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            request_XISelectEvent(req, Success);
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            _clear_bit(bits, j);
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        }
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        /* Test 2:
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         * mask may be larger than needed for XI2LASTEVENT.
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         * Test setting all valid mask bits, while leaving unneeded bits 0.
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         * -> Success
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         */
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        bits = (unsigned char *) &mask[1];
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        mask->mask_len = (nmasks + 3) / 4 * 10;
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        memset(bits, 0, mask->mask_len * 4);
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        for (j = 0; j <= XI2LASTEVENT; j++) {
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            _set_bit(bits, j);
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            request_XISelectEvent(req, Success);
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        }
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        /* Test 3:
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         * mask is larger than needed for XI2LASTEVENT. If any unneeded bit
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         * is set -> BadValue
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         */
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        bits = (unsigned char *) &mask[1];
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        mask->mask_len = (nmasks + 3) / 4 * 10;
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        memset(bits, 0, mask->mask_len * 4);
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        for (j = XI2LASTEVENT + 1; j < mask->mask_len * 4; j++) {
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            _set_bit(bits, j);
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            request_XISelectEvent(req, BadValue);
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            _clear_bit(bits, j);
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        }
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        /* Test 4:
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         * Mask len is a sensible length, only valid bits are set -> Success
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         */
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        bits = (unsigned char *) &mask[1];
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        mask->mask_len = (nmasks + 3) / 4;
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        memset(bits, 0, mask->mask_len * 4);
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        for (j = 0; j <= XI2LASTEVENT; j++) {
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            _set_bit(bits, j);
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            request_XISelectEvent(req, Success);
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        }
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        /* Test 5:
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         * Mask len is 1 and XI_GestureSwipeEnd is set outside the mask.
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         * That bit should be ignored -> Success
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         */
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        bits = (unsigned char *) &mask[1];
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        mask->mask_len = 1;
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        memset(bits, 0, 5);
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        SetBit(bits, XI_ButtonPress); // does not matter which one
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        SetBit(bits, XI_GestureSwipeEnd);
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        request_XISelectEvent(req, Success);
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        /* Test 6:
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         * HierarchyChanged bit is BadValue for devices other than
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         * XIAllDevices
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         */
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        bits = (unsigned char *) &mask[1];
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        mask->mask_len = (nmasks + 3) / 4;
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        memset(bits, 0, mask->mask_len * 4);
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        SetBit(bits, XI_HierarchyChanged);
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        mask->deviceid = XIAllDevices;
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        request_XISelectEvent(req, Success);
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        for (j = 1; j < devices.num_devices; j++) {
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            mask->deviceid = j;
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            request_XISelectEvent(req, BadValue);
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        }
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        /* Test 7:
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         * All bits set minus hierarchy changed bit -> Success
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         */
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        bits = (unsigned char *) &mask[1];
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        mask->mask_len = (nmasks + 3) / 4;
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        memset(bits, 0, mask->mask_len * 4);
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        for (j = 0; j <= XI2LASTEVENT; j++)
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            _set_bit(bits, j);
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        _clear_bit(bits, XI_HierarchyChanged);
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        for (j = 1; j < 6; j++) {
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            mask->deviceid = j;
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            request_XISelectEvent(req, Success);
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        }
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        mask =
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            (xXIEventMask *) ((char *) mask + sizeof(xXIEventMask) +
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                              mask->mask_len * 4);
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    }
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}
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static void
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test_XISelectEvents(void)
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{
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    int i;
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    xXIEventMask *mask;
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    xXISelectEventsReq *req;
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    wrapped_XISetEventMask = override_XISetEventMask;
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    init_simple();
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    req = (xXISelectEventsReq *) data;
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    request_init(req, XISelectEvents);
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    dbg("Testing for BadValue on zero-length masks\n");
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    /* zero masks are BadValue, regardless of the window */
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    req->num_masks = 0;
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    req->win = None;
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    request_XISelectEvent(req, BadValue);
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    req->win = ROOT_WINDOW_ID;
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    request_XISelectEvent(req, BadValue);
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    req->win = CLIENT_WINDOW_ID;
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    request_XISelectEvent(req, BadValue);
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    dbg("Testing for BadWindow.\n");
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    /* None window is BadWindow, regardless of the masks.
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     * We don't actually need to set the masks here, BadWindow must occur
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     * before checking the masks.
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     */
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    req->win = None;
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    req->num_masks = 1;
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    request_XISelectEvent(req, BadWindow);
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    req->num_masks = 2;
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    request_XISelectEvent(req, BadWindow);
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    req->num_masks = 0xFF;
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    request_XISelectEvent(req, BadWindow);
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    /* request size is 3, so 0xFFFC is the highest num_mask that doesn't
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     * overflow req->length */
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    req->num_masks = 0xFFFC;
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    request_XISelectEvent(req, BadWindow);
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    dbg("Triggering num_masks/length overflow\n");
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    req->win = ROOT_WINDOW_ID;
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    /* Integer overflow - req->length can't hold that much */
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    req->num_masks = 0xFFFF;
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    request_XISelectEvent(req, BadLength);
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    req->win = ROOT_WINDOW_ID;
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    req->num_masks = 1;
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    dbg("Triggering bogus mask length error\n");
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    mask = (xXIEventMask *) &req[1];
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    mask->deviceid = 0;
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    mask->mask_len = 0xFFFF;
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    request_XISelectEvent(req, BadLength);
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    /* testing various device ids */
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    dbg("Testing existing device ids.\n");
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    for (i = 0; i < 6; i++) {
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        mask = (xXIEventMask *) &req[1];
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        mask->deviceid = i;
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        mask->mask_len = 1;
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        req->win = ROOT_WINDOW_ID;
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        req->num_masks = 1;
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        request_XISelectEvent(req, Success);
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    }
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    dbg("Testing non-existing device ids.\n");
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    for (i = 6; i <= 0xFFFF; i++) {
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        req->win = ROOT_WINDOW_ID;
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        req->num_masks = 1;
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        mask = (xXIEventMask *) &req[1];
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        mask->deviceid = i;
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        mask->mask_len = 1;
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        request_XISelectEvent(req, BadDevice);
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    }
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    request_XISelectEvents_masks(req);
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}
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const testfunc_t*
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protocol_xiselectevents_test(void)
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{
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    static const testfunc_t testfuncs[] = {
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        test_XISelectEvents,
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        NULL,
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    };
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    return testfuncs;
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}
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