1c582b7e3Smrg/*
2c582b7e3Smrg * Copyright 1999, 2000 ATI Technologies Inc., Markham, Ontario,
3c582b7e3Smrg *                      Precision Insight, Inc., Cedar Park, Texas, and
4c582b7e3Smrg *                      VA Linux Systems Inc., Fremont, California.
5c582b7e3Smrg *
6c582b7e3Smrg * All Rights Reserved.
7c582b7e3Smrg *
8c582b7e3Smrg * Permission is hereby granted, free of charge, to any person obtaining
9c582b7e3Smrg * a copy of this software and associated documentation files (the
10c582b7e3Smrg * "Software"), to deal in the Software without restriction, including
11c582b7e3Smrg * without limitation on the rights to use, copy, modify, merge,
12c582b7e3Smrg * publish, distribute, sublicense, and/or sell copies of the Software,
13c582b7e3Smrg * and to permit persons to whom the Software is furnished to do so,
14c582b7e3Smrg * subject to the following conditions:
15c582b7e3Smrg *
16c582b7e3Smrg * The above copyright notice and this permission notice (including the
17c582b7e3Smrg * next paragraph) shall be included in all copies or substantial
18c582b7e3Smrg * portions of the Software.
19c582b7e3Smrg *
20c582b7e3Smrg * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
21c582b7e3Smrg * EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
22c582b7e3Smrg * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
23c582b7e3Smrg * NON-INFRINGEMENT.  IN NO EVENT SHALL ATI, PRECISION INSIGHT, VA LINUX
24c582b7e3Smrg * SYSTEMS AND/OR THEIR SUPPLIERS BE LIABLE FOR ANY CLAIM, DAMAGES OR
25c582b7e3Smrg * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
26c582b7e3Smrg * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
27c582b7e3Smrg * OTHER DEALINGS IN THE SOFTWARE.
28c582b7e3Smrg */
29c582b7e3Smrg
30c582b7e3Smrg/*
31c582b7e3Smrg * Authors:
32c582b7e3Smrg *   Rickard E. Faith <faith@valinux.com>
33c582b7e3Smrg *   Kevin E. Martin <martin@valinux.com>
34c582b7e3Smrg *
35c582b7e3Smrg * References:
36c582b7e3Smrg *
37c582b7e3Smrg *   RAGE 128 VR/ RAGE 128 GL Register Reference Manual (Technical
38c582b7e3Smrg *   Reference Manual P/N RRG-G04100-C Rev. 0.04), ATI Technologies: April
39c582b7e3Smrg *   1999.
40c582b7e3Smrg *
41c582b7e3Smrg *   RAGE 128 Software Development Manual (Technical Reference Manual P/N
42c582b7e3Smrg *   SDK-G04000 Rev. 0.01), ATI Technologies: June 1999.
43c582b7e3Smrg *
44c582b7e3Smrg */
45c582b7e3Smrg
46c582b7e3Smrg#ifdef HAVE_CONFIG_H
47c582b7e3Smrg#include "config.h"
48c582b7e3Smrg#endif
49c582b7e3Smrg
50c582b7e3Smrg				/* Driver data structures */
51c582b7e3Smrg#include "r128.h"
52c582b7e3Smrg#include "r128_reg.h"
53c582b7e3Smrg
54c582b7e3Smrg				/* X and server generic header files */
55c582b7e3Smrg#include "xf86.h"
56c582b7e3Smrg
5742a55b46Smrg				/* Because for EXA we need to use a different allocator */
5842a55b46Smrg#ifdef USE_EXA
5942a55b46Smrg#include "exa.h"
6042a55b46Smrg#endif
6142a55b46Smrg
62e3d74329Smrg#define CURSOR_WIDTH    64
63e3d74329Smrg#define CURSOR_HEIGHT   64
64c582b7e3Smrg
65e3d74329Smrgvoid r128_crtc_show_cursor(xf86CrtcPtr crtc)
66c582b7e3Smrg{
67e3d74329Smrg    ScrnInfoPtr pScrn = crtc->scrn;
68e3d74329Smrg    R128CrtcPrivatePtr r128_crtc = crtc->driver_private;
69e3d74329Smrg    R128InfoPtr info = R128PTR(pScrn);
70c582b7e3Smrg    unsigned char *R128MMIO = info->MMIO;
71e3d74329Smrg    int crtc_id = r128_crtc->crtc_id;
72e3d74329Smrg
73e3d74329Smrg    switch (crtc_id) {
74e3d74329Smrg    case 0:
75e3d74329Smrg        OUTREGP(R128_CRTC_GEN_CNTL, R128_CRTC_CUR_EN, ~R128_CRTC_CUR_EN);
76e3d74329Smrg        break;
77e3d74329Smrg    case 1:
78e3d74329Smrg        OUTREGP(R128_CRTC2_GEN_CNTL, R128_CRTC2_CUR_EN, ~R128_CRTC2_CUR_EN);
79e3d74329Smrg        break;
80e3d74329Smrg    default:
81e3d74329Smrg        return;
82c582b7e3Smrg    }
83c582b7e3Smrg}
84c582b7e3Smrg
85e3d74329Smrgvoid r128_crtc_hide_cursor(xf86CrtcPtr crtc)
86c582b7e3Smrg{
87e3d74329Smrg    ScrnInfoPtr pScrn = crtc->scrn;
88e3d74329Smrg    R128CrtcPrivatePtr r128_crtc = crtc->driver_private;
89e3d74329Smrg    R128InfoPtr info = R128PTR(pScrn);
90e3d74329Smrg    unsigned char *R128MMIO = info->MMIO;
91e3d74329Smrg    int crtc_id = r128_crtc->crtc_id;
92c582b7e3Smrg
93e3d74329Smrg    switch (crtc_id) {
94e3d74329Smrg    case 0:
95e3d74329Smrg        OUTREGP(R128_CRTC_GEN_CNTL, 0, ~R128_CRTC_CUR_EN);
96e3d74329Smrg        break;
97e3d74329Smrg    case 1:
98e3d74329Smrg        OUTREGP(R128_CRTC2_GEN_CNTL, 0, ~R128_CRTC2_CUR_EN);
99e3d74329Smrg        break;
100e3d74329Smrg    default:
101e3d74329Smrg        return;
102c582b7e3Smrg    }
103c582b7e3Smrg}
104c582b7e3Smrg
105e3d74329Smrgvoid r128_crtc_set_cursor_colors(xf86CrtcPtr crtc, int bg, int fg)
106c582b7e3Smrg{
107e3d74329Smrg    ScrnInfoPtr pScrn = crtc->scrn;
108e3d74329Smrg    R128CrtcPrivatePtr r128_crtc = crtc->driver_private;
109e3d74329Smrg    R128InfoPtr info = R128PTR(pScrn);
110c582b7e3Smrg    unsigned char *R128MMIO = info->MMIO;
111e3d74329Smrg    int crtc_id = r128_crtc->crtc_id;
112e3d74329Smrg
113e3d74329Smrg    switch (crtc_id) {
114e3d74329Smrg    case 0:
115e3d74329Smrg        OUTREG(R128_CUR_CLR0, bg);
116e3d74329Smrg        OUTREG(R128_CUR_CLR1, fg);
117e3d74329Smrg        break;
118e3d74329Smrg    case 1:
119e3d74329Smrg        OUTREG(R128_CUR2_CLR0, bg);
120e3d74329Smrg        OUTREG(R128_CUR2_CLR1, fg);
121e3d74329Smrg        break;
122c582b7e3Smrg    default:
123e3d74329Smrg        return;
124c582b7e3Smrg    }
125c582b7e3Smrg}
126c582b7e3Smrg
127e3d74329Smrgvoid r128_crtc_set_cursor_position (xf86CrtcPtr crtc, int x, int y)
128c582b7e3Smrg{
129e3d74329Smrg    ScrnInfoPtr           pScrn         = crtc->scrn;
130e3d74329Smrg    R128InfoPtr           info          = R128PTR(pScrn);
131e3d74329Smrg    R128CrtcPrivatePtr    r128_crtc     = crtc->driver_private;
132e3d74329Smrg    unsigned char         *R128MMIO     = info->MMIO;
133e3d74329Smrg    int                   crtc_id       = r128_crtc->crtc_id;
134e3d74329Smrg
135e3d74329Smrg    int xorigin = 0, yorigin = 0;
136e3d74329Smrg    DisplayModePtr mode = &crtc->mode;
137e3d74329Smrg
138e3d74329Smrg    if (x < 0) xorigin = -x + 1;
139e3d74329Smrg    if (y < 0) yorigin = -y + 1;
140e3d74329Smrg    if (xorigin >= CURSOR_WIDTH)  xorigin = CURSOR_WIDTH - 1;
141e3d74329Smrg    if (yorigin >= CURSOR_HEIGHT) yorigin = CURSOR_HEIGHT - 1;
142e3d74329Smrg
143e3d74329Smrg    if (mode->Flags & V_INTERLACE)
144e3d74329Smrg        y /= 2;
145e3d74329Smrg    else if (mode->Flags & V_DBLSCAN)
146e3d74329Smrg        y *= 2;
147e3d74329Smrg
148e3d74329Smrg    if(crtc_id == 0) {
149e3d74329Smrg        OUTREG(R128_CUR_HORZ_VERT_OFF, (R128_CUR_LOCK | (xorigin << 16) | yorigin));
150e3d74329Smrg        OUTREG(R128_CUR_HORZ_VERT_POSN, (R128_CUR_LOCK | ((xorigin ? 0 : x) << 16) | (yorigin ? 0 : y)));
151e3d74329Smrg        OUTREG(R128_CUR_OFFSET, r128_crtc->cursor_offset + pScrn->fbOffset + yorigin * 16);
152e3d74329Smrg    } else if (crtc_id == 1) {
153e3d74329Smrg        OUTREG(R128_CUR2_HORZ_VERT_OFF, (R128_CUR2_LOCK | (xorigin << 16) | yorigin));
154e3d74329Smrg        OUTREG(R128_CUR2_HORZ_VERT_POSN, (R128_CUR2_LOCK | ((xorigin ? 0 : x) << 16) | (yorigin ? 0 : y)));
155e3d74329Smrg        OUTREG(R128_CUR2_OFFSET, r128_crtc->cursor_offset + pScrn->fbOffset + yorigin * 16);
156e3d74329Smrg    }
157c582b7e3Smrg}
158c582b7e3Smrg
159e3d74329Smrgvoid r128_crtc_load_cursor_image(xf86CrtcPtr crtc, unsigned char *src)
160c582b7e3Smrg{
161e3d74329Smrg    ScrnInfoPtr pScrn = crtc->scrn;
162e3d74329Smrg    R128CrtcPrivatePtr r128_crtc = crtc->driver_private;
163e3d74329Smrg    int crtc_id = r128_crtc->crtc_id;
164e3d74329Smrg
165c582b7e3Smrg    R128InfoPtr   info      = R128PTR(pScrn);
166c582b7e3Smrg    unsigned char *R128MMIO = info->MMIO;
167e3d74329Smrg    uint32_t      save1     = 0;
168e3d74329Smrg    uint32_t      save2     = 0;
169e3d74329Smrg
170e3d74329Smrg    if (crtc_id == 0) {
171e3d74329Smrg	save1 = INREG(R128_CRTC_GEN_CNTL);
172e3d74329Smrg	OUTREG(R128_CRTC_GEN_CNTL, save1 & (uint32_t)~R128_CRTC_CUR_EN);
173e3d74329Smrg    } else if (crtc_id == 1) {
174e3d74329Smrg	save2 = INREG(R128_CRTC2_GEN_CNTL);
175e3d74329Smrg	OUTREG(R128_CRTC2_GEN_CNTL, save2 & (uint32_t)~R128_CRTC2_CUR_EN);
176c582b7e3Smrg    }
177c582b7e3Smrg
178e3d74329Smrg#if X_BYTE_ORDER == X_BIG_ENDIAN
179e3d74329Smrg    if (info->CurrentLayout.pixel_bytes == 4 || info->CurrentLayout.pixel_bytes == 3)
180e3d74329Smrg        R128CopySwap(info->FB + r128_crtc->cursor_offset + pScrn->fbOffset, src,
181e3d74329Smrg                     CURSOR_WIDTH * CURSOR_HEIGHT / 4, APER_0_BIG_ENDIAN_32BPP_SWAP);
182e3d74329Smrg    else if (info->CurrentLayout.pixel_bytes == 2)
183e3d74329Smrg        R128CopySwap(info->FB + r128_crtc->cursor_offset + pScrn->fbOffset, src,
184e3d74329Smrg                     CURSOR_WIDTH * CURSOR_HEIGHT / 4, APER_0_BIG_ENDIAN_16BPP_SWAP);
185e3d74329Smrg    else
186e3d74329Smrg#endif
187e3d74329Smrg    memcpy(info->FB + r128_crtc->cursor_offset + pScrn->fbOffset, src, CURSOR_WIDTH * CURSOR_HEIGHT / 4);
188c582b7e3Smrg
189e3d74329Smrg    if (crtc_id == 0)
190e3d74329Smrg	OUTREG(R128_CRTC_GEN_CNTL, save1);
191e3d74329Smrg    else
192e3d74329Smrg        OUTREG(R128_CRTC2_GEN_CNTL, save2);
193c582b7e3Smrg}
194c582b7e3Smrg
195c582b7e3Smrg/* Initialize hardware cursor support. */
196c582b7e3SmrgBool R128CursorInit(ScreenPtr pScreen)
197c582b7e3Smrg{
19842a55b46Smrg    ScrnInfoPtr           pScrn   = xf86ScreenToScrn(pScreen);
199c582b7e3Smrg    R128InfoPtr           info    = R128PTR(pScrn);
20042a55b46Smrg    FBAreaPtr             fbarea  = NULL;
20142a55b46Smrg#ifdef USE_EXA
20242a55b46Smrg    ExaOffscreenArea*	  osArea  = NULL;
20342a55b46Smrg#else
20442a55b46Smrg    void*		  osArea  = NULL;
20542a55b46Smrg#endif
206e3d74329Smrg    xf86CrtcConfigPtr     xf86_config = XF86_CRTC_CONFIG_PTR(pScrn);
207e3d74329Smrg    uint32_t              cursor_offset = 0;
208e3d74329Smrg    int                   cpp = info->CurrentLayout.pixel_bytes;
209c582b7e3Smrg    int                   width;
210e3d74329Smrg    int                   width_bytes;
211c582b7e3Smrg    int                   height;
212c582b7e3Smrg    int                   size;
213e3d74329Smrg    int                   size_bytes;
214e3d74329Smrg    int                   c;
215c582b7e3Smrg
216e3d74329Smrg    size                      = CURSOR_WIDTH * CURSOR_HEIGHT / 4;
217e3d74329Smrg    size_bytes                = size * 2;
218c582b7e3Smrg    width                     = pScrn->displayWidth;
219e3d74329Smrg    width_bytes               = width * (pScrn->bitsPerPixel / 8);
220e3d74329Smrg    height                    = ((size_bytes * xf86_config->num_crtc) + width_bytes - 1) / width_bytes;
22142a55b46Smrg
22242a55b46Smrg    if(!info->useEXA) {
22342a55b46Smrg	fbarea = xf86AllocateOffscreenArea(pScreen, width, height,
22442a55b46Smrg					   16, NULL, NULL, NULL);
22542a55b46Smrg
226e3d74329Smrg	if (fbarea)
227e3d74329Smrg	    cursor_offset = R128_ALIGN((fbarea->box.x1 + width * fbarea->box.y1) * cpp, 16);
22842a55b46Smrg    }
22942a55b46Smrg#ifdef USE_EXA
23042a55b46Smrg    else {
23142a55b46Smrg	osArea = exaOffscreenAlloc(pScreen, width * height, 16,
23242a55b46Smrg				   TRUE, NULL, NULL);
23342a55b46Smrg
234e3d74329Smrg	if (osArea)
235e3d74329Smrg	    cursor_offset = osArea->offset;
23642a55b46Smrg    }
23742a55b46Smrg#endif
23842a55b46Smrg
23942a55b46Smrg    if ((!info->useEXA && !fbarea) || (info->useEXA && !osArea)) {
240c582b7e3Smrg	xf86DrvMsg(pScrn->scrnIndex, X_WARNING,
241c582b7e3Smrg		   "Hardware cursor disabled"
242c582b7e3Smrg		   " due to insufficient offscreen memory\n");
243e3d74329Smrg        return FALSE;
244e3d74329Smrg    } else {
245e3d74329Smrg        for (c = 0; c < xf86_config->num_crtc; c++) {
246e3d74329Smrg            xf86CrtcPtr crtc = xf86_config->crtc[c];
247e3d74329Smrg	    R128CrtcPrivatePtr r128_crtc = crtc->driver_private;
248e3d74329Smrg
249e3d74329Smrg            r128_crtc->cursor_offset = cursor_offset + (c * size);
250e3d74329Smrg            xf86DrvMsg(pScrn->scrnIndex, X_INFO,
251e3d74329Smrg		       "Will use %d kb for hardware cursor %d at offset 0x%08x\n",
252e3d74329Smrg		       (size_bytes * xf86_config->num_crtc) / 1024, c,
253e3d74329Smrg		       (unsigned int)r128_crtc->cursor_offset);
254e3d74329Smrg        }
255c582b7e3Smrg    }
256c582b7e3Smrg
257e3d74329Smrg    return xf86_cursors_init(pScreen, CURSOR_WIDTH, CURSOR_HEIGHT,
258e3d74329Smrg			     (HARDWARE_CURSOR_TRUECOLOR_AT_8BPP |
259e3d74329Smrg			      HARDWARE_CURSOR_AND_SOURCE_WITH_MASK |
260e3d74329Smrg			      HARDWARE_CURSOR_SHOW_TRANSPARENT |
261e3d74329Smrg			      HARDWARE_CURSOR_UPDATE_UNHIDDEN |
262e3d74329Smrg#if X_BYTE_ORDER == X_LITTLE_ENDIAN
263e3d74329Smrg			      HARDWARE_CURSOR_BIT_ORDER_MSBFIRST |
264e3d74329Smrg#endif
265e3d74329Smrg			      HARDWARE_CURSOR_INVERT_MASK |
266e3d74329Smrg			      HARDWARE_CURSOR_SWAP_SOURCE_AND_MASK |
267e3d74329Smrg			      HARDWARE_CURSOR_SOURCE_MASK_INTERLEAVE_64));
268c582b7e3Smrg}
269