112eb90f1SThomas Gleixner // SPDX-License-Identifier: GPL-2.0-only
25320918bSDave Airlie /*
35320918bSDave Airlie * Copyright (C) 2012 Red Hat
45320918bSDave Airlie *
55320918bSDave Airlie * based in parts on udlfb.c:
65320918bSDave Airlie * Copyright (C) 2009 Roberto De Ioris <roberto@unbit.it>
75320918bSDave Airlie * Copyright (C) 2009 Jaya Kumar <jayakumar.lkml@gmail.com>
85320918bSDave Airlie * Copyright (C) 2009 Bernie Thompson <bernie@plugable.com>
95320918bSDave Airlie */
105320918bSDave Airlie
1144f29ad9SThomas Zimmermann #include <linux/bitfield.h>
1244f29ad9SThomas Zimmermann
1372d73dd3SThomas Zimmermann #include <drm/drm_atomic.h>
149fda81e0SThomas Zimmermann #include <drm/drm_atomic_helper.h>
1548c5c68fSGeert Uytterhoeven #include <drm/drm_crtc_helper.h>
16230b8b04SThomas Zimmermann #include <drm/drm_damage_helper.h>
17ca2bd373SThomas Zimmermann #include <drm/drm_drv.h>
180862cfd3SThomas Zimmermann #include <drm/drm_edid.h>
19a8109f5bSThomas Zimmermann #include <drm/drm_fourcc.h>
205ceeb328SThomas Zimmermann #include <drm/drm_gem_atomic_helper.h>
219fda81e0SThomas Zimmermann #include <drm/drm_gem_framebuffer_helper.h>
22a8109f5bSThomas Zimmermann #include <drm/drm_gem_shmem_helper.h>
23a9dcf380SSam Ravnborg #include <drm/drm_modeset_helper_vtables.h>
2472d73dd3SThomas Zimmermann #include <drm/drm_plane_helper.h>
250862cfd3SThomas Zimmermann #include <drm/drm_probe_helper.h>
26a9dcf380SSam Ravnborg #include <drm/drm_vblank.h>
27a9dcf380SSam Ravnborg
285320918bSDave Airlie #include "udl_drv.h"
29ff76e82cSThomas Zimmermann #include "udl_proto.h"
309fda81e0SThomas Zimmermann
315320918bSDave Airlie /*
321b8db07fSThomas Zimmermann * All DisplayLink bulk operations start with 0xaf (UDL_MSG_BULK), followed by
331b8db07fSThomas Zimmermann * a specific command code. All operations are written to a command buffer, which
341b8db07fSThomas Zimmermann * the driver sends to the device.
355320918bSDave Airlie */
udl_set_register(char * buf,u8 reg,u8 val)365320918bSDave Airlie static char *udl_set_register(char *buf, u8 reg, u8 val)
375320918bSDave Airlie {
381b8db07fSThomas Zimmermann *buf++ = UDL_MSG_BULK;
391b8db07fSThomas Zimmermann *buf++ = UDL_CMD_WRITEREG;
405320918bSDave Airlie *buf++ = reg;
415320918bSDave Airlie *buf++ = val;
421b8db07fSThomas Zimmermann
435320918bSDave Airlie return buf;
445320918bSDave Airlie }
455320918bSDave Airlie
udl_vidreg_lock(char * buf)465320918bSDave Airlie static char *udl_vidreg_lock(char *buf)
475320918bSDave Airlie {
48cb7b995dSThomas Zimmermann return udl_set_register(buf, UDL_REG_VIDREG, UDL_VIDREG_LOCK);
495320918bSDave Airlie }
505320918bSDave Airlie
udl_vidreg_unlock(char * buf)515320918bSDave Airlie static char *udl_vidreg_unlock(char *buf)
525320918bSDave Airlie {
53cb7b995dSThomas Zimmermann return udl_set_register(buf, UDL_REG_VIDREG, UDL_VIDREG_UNLOCK);
545320918bSDave Airlie }
555320918bSDave Airlie
udl_set_blank_mode(char * buf,u8 mode)56997d33c3SThomas Zimmermann static char *udl_set_blank_mode(char *buf, u8 mode)
575320918bSDave Airlie {
58ff76e82cSThomas Zimmermann return udl_set_register(buf, UDL_REG_BLANKMODE, mode);
595320918bSDave Airlie }
605320918bSDave Airlie
udl_set_color_depth(char * buf,u8 selection)615320918bSDave Airlie static char *udl_set_color_depth(char *buf, u8 selection)
625320918bSDave Airlie {
63ed24ed48SThomas Zimmermann return udl_set_register(buf, UDL_REG_COLORDEPTH, selection);
645320918bSDave Airlie }
655320918bSDave Airlie
udl_set_base16bpp(char * buf,u32 base)6644f29ad9SThomas Zimmermann static char *udl_set_base16bpp(char *buf, u32 base)
675320918bSDave Airlie {
6844f29ad9SThomas Zimmermann /* the base pointer is 24 bits wide, 0x20 is hi byte. */
6944f29ad9SThomas Zimmermann u8 reg20 = FIELD_GET(UDL_BASE_ADDR2_MASK, base);
7044f29ad9SThomas Zimmermann u8 reg21 = FIELD_GET(UDL_BASE_ADDR1_MASK, base);
7144f29ad9SThomas Zimmermann u8 reg22 = FIELD_GET(UDL_BASE_ADDR0_MASK, base);
7244f29ad9SThomas Zimmermann
7344f29ad9SThomas Zimmermann buf = udl_set_register(buf, UDL_REG_BASE16BPP_ADDR2, reg20);
7444f29ad9SThomas Zimmermann buf = udl_set_register(buf, UDL_REG_BASE16BPP_ADDR1, reg21);
7544f29ad9SThomas Zimmermann buf = udl_set_register(buf, UDL_REG_BASE16BPP_ADDR0, reg22);
7644f29ad9SThomas Zimmermann
7744f29ad9SThomas Zimmermann return buf;
785320918bSDave Airlie }
795320918bSDave Airlie
805320918bSDave Airlie /*
815320918bSDave Airlie * DisplayLink HW has separate 16bpp and 8bpp framebuffers.
825320918bSDave Airlie * In 24bpp modes, the low 323 RGB bits go in the 8bpp framebuffer
835320918bSDave Airlie */
udl_set_base8bpp(char * buf,u32 base)8444f29ad9SThomas Zimmermann static char *udl_set_base8bpp(char *buf, u32 base)
855320918bSDave Airlie {
8644f29ad9SThomas Zimmermann /* the base pointer is 24 bits wide, 0x26 is hi byte. */
8744f29ad9SThomas Zimmermann u8 reg26 = FIELD_GET(UDL_BASE_ADDR2_MASK, base);
8844f29ad9SThomas Zimmermann u8 reg27 = FIELD_GET(UDL_BASE_ADDR1_MASK, base);
8944f29ad9SThomas Zimmermann u8 reg28 = FIELD_GET(UDL_BASE_ADDR0_MASK, base);
9044f29ad9SThomas Zimmermann
9144f29ad9SThomas Zimmermann buf = udl_set_register(buf, UDL_REG_BASE8BPP_ADDR2, reg26);
9244f29ad9SThomas Zimmermann buf = udl_set_register(buf, UDL_REG_BASE8BPP_ADDR1, reg27);
9344f29ad9SThomas Zimmermann buf = udl_set_register(buf, UDL_REG_BASE8BPP_ADDR0, reg28);
9444f29ad9SThomas Zimmermann
9544f29ad9SThomas Zimmermann return buf;
965320918bSDave Airlie }
975320918bSDave Airlie
udl_set_register_16(char * wrptr,u8 reg,u16 value)985320918bSDave Airlie static char *udl_set_register_16(char *wrptr, u8 reg, u16 value)
995320918bSDave Airlie {
1005320918bSDave Airlie wrptr = udl_set_register(wrptr, reg, value >> 8);
1015320918bSDave Airlie return udl_set_register(wrptr, reg+1, value);
1025320918bSDave Airlie }
1035320918bSDave Airlie
1045320918bSDave Airlie /*
1055320918bSDave Airlie * This is kind of weird because the controller takes some
1065320918bSDave Airlie * register values in a different byte order than other registers.
1075320918bSDave Airlie */
udl_set_register_16be(char * wrptr,u8 reg,u16 value)1085320918bSDave Airlie static char *udl_set_register_16be(char *wrptr, u8 reg, u16 value)
1095320918bSDave Airlie {
1105320918bSDave Airlie wrptr = udl_set_register(wrptr, reg, value);
1115320918bSDave Airlie return udl_set_register(wrptr, reg+1, value >> 8);
1125320918bSDave Airlie }
1135320918bSDave Airlie
1145320918bSDave Airlie /*
1155320918bSDave Airlie * LFSR is linear feedback shift register. The reason we have this is
1165320918bSDave Airlie * because the display controller needs to minimize the clock depth of
1175320918bSDave Airlie * various counters used in the display path. So this code reverses the
1185320918bSDave Airlie * provided value into the lfsr16 value by counting backwards to get
1195320918bSDave Airlie * the value that needs to be set in the hardware comparator to get the
1205320918bSDave Airlie * same actual count. This makes sense once you read above a couple of
1215320918bSDave Airlie * times and think about it from a hardware perspective.
1225320918bSDave Airlie */
udl_lfsr16(u16 actual_count)1235320918bSDave Airlie static u16 udl_lfsr16(u16 actual_count)
1245320918bSDave Airlie {
1255320918bSDave Airlie u32 lv = 0xFFFF; /* This is the lfsr value that the hw starts with */
1265320918bSDave Airlie
1275320918bSDave Airlie while (actual_count--) {
1285320918bSDave Airlie lv = ((lv << 1) |
1295320918bSDave Airlie (((lv >> 15) ^ (lv >> 4) ^ (lv >> 2) ^ (lv >> 1)) & 1))
1305320918bSDave Airlie & 0xFFFF;
1315320918bSDave Airlie }
1325320918bSDave Airlie
1335320918bSDave Airlie return (u16) lv;
1345320918bSDave Airlie }
1355320918bSDave Airlie
1365320918bSDave Airlie /*
1375320918bSDave Airlie * This does LFSR conversion on the value that is to be written.
1385320918bSDave Airlie * See LFSR explanation above for more detail.
1395320918bSDave Airlie */
udl_set_register_lfsr16(char * wrptr,u8 reg,u16 value)1405320918bSDave Airlie static char *udl_set_register_lfsr16(char *wrptr, u8 reg, u16 value)
1415320918bSDave Airlie {
1425320918bSDave Airlie return udl_set_register_16(wrptr, reg, udl_lfsr16(value));
1435320918bSDave Airlie }
1445320918bSDave Airlie
1455320918bSDave Airlie /*
1469869e40dSThomas Zimmermann * Takes a DRM display mode and converts it into the DisplayLink
1479869e40dSThomas Zimmermann * equivalent register commands.
1485320918bSDave Airlie */
udl_set_display_mode(char * buf,struct drm_display_mode * mode)1499869e40dSThomas Zimmermann static char *udl_set_display_mode(char *buf, struct drm_display_mode *mode)
1505320918bSDave Airlie {
1519869e40dSThomas Zimmermann u16 reg01 = mode->crtc_htotal - mode->crtc_hsync_start;
1529869e40dSThomas Zimmermann u16 reg03 = reg01 + mode->crtc_hdisplay;
1539869e40dSThomas Zimmermann u16 reg05 = mode->crtc_vtotal - mode->crtc_vsync_start;
1549869e40dSThomas Zimmermann u16 reg07 = reg05 + mode->crtc_vdisplay;
1559869e40dSThomas Zimmermann u16 reg09 = mode->crtc_htotal - 1;
1569869e40dSThomas Zimmermann u16 reg0b = 1; /* libdlo hardcodes hsync start to 1 */
1579869e40dSThomas Zimmermann u16 reg0d = mode->crtc_hsync_end - mode->crtc_hsync_start + 1;
1589869e40dSThomas Zimmermann u16 reg0f = mode->hdisplay;
1599869e40dSThomas Zimmermann u16 reg11 = mode->crtc_vtotal;
1609869e40dSThomas Zimmermann u16 reg13 = 0; /* libdlo hardcodes vsync start to 0 */
1619869e40dSThomas Zimmermann u16 reg15 = mode->crtc_vsync_end - mode->crtc_vsync_start;
1629869e40dSThomas Zimmermann u16 reg17 = mode->crtc_vdisplay;
1639869e40dSThomas Zimmermann u16 reg1b = mode->clock / 5;
1645320918bSDave Airlie
1659869e40dSThomas Zimmermann buf = udl_set_register_lfsr16(buf, UDL_REG_XDISPLAYSTART, reg01);
1669869e40dSThomas Zimmermann buf = udl_set_register_lfsr16(buf, UDL_REG_XDISPLAYEND, reg03);
1679869e40dSThomas Zimmermann buf = udl_set_register_lfsr16(buf, UDL_REG_YDISPLAYSTART, reg05);
1689869e40dSThomas Zimmermann buf = udl_set_register_lfsr16(buf, UDL_REG_YDISPLAYEND, reg07);
1699869e40dSThomas Zimmermann buf = udl_set_register_lfsr16(buf, UDL_REG_XENDCOUNT, reg09);
1709869e40dSThomas Zimmermann buf = udl_set_register_lfsr16(buf, UDL_REG_HSYNCSTART, reg0b);
1719869e40dSThomas Zimmermann buf = udl_set_register_lfsr16(buf, UDL_REG_HSYNCEND, reg0d);
1729869e40dSThomas Zimmermann buf = udl_set_register_16(buf, UDL_REG_HPIXELS, reg0f);
1739869e40dSThomas Zimmermann buf = udl_set_register_lfsr16(buf, UDL_REG_YENDCOUNT, reg11);
1749869e40dSThomas Zimmermann buf = udl_set_register_lfsr16(buf, UDL_REG_VSYNCSTART, reg13);
1759869e40dSThomas Zimmermann buf = udl_set_register_lfsr16(buf, UDL_REG_VSYNCEND, reg15);
1769869e40dSThomas Zimmermann buf = udl_set_register_16(buf, UDL_REG_VPIXELS, reg17);
1779869e40dSThomas Zimmermann buf = udl_set_register_16be(buf, UDL_REG_PIXELCLOCK5KHZ, reg1b);
1785320918bSDave Airlie
1799869e40dSThomas Zimmermann return buf;
1805320918bSDave Airlie }
1815320918bSDave Airlie
udl_dummy_render(char * wrptr)1825bd42f69SDave Airlie static char *udl_dummy_render(char *wrptr)
1835bd42f69SDave Airlie {
1841b8db07fSThomas Zimmermann *wrptr++ = UDL_MSG_BULK;
1851b8db07fSThomas Zimmermann *wrptr++ = UDL_CMD_WRITECOPY16;
1865bd42f69SDave Airlie *wrptr++ = 0x00; /* from addr */
1875bd42f69SDave Airlie *wrptr++ = 0x00;
1885bd42f69SDave Airlie *wrptr++ = 0x00;
1895bd42f69SDave Airlie *wrptr++ = 0x01; /* one pixel */
1905bd42f69SDave Airlie *wrptr++ = 0x00; /* to address */
1915bd42f69SDave Airlie *wrptr++ = 0x00;
1925bd42f69SDave Airlie *wrptr++ = 0x00;
1935bd42f69SDave Airlie return wrptr;
1945bd42f69SDave Airlie }
1955bd42f69SDave Airlie
udl_log_cpp(unsigned int cpp)196a8109f5bSThomas Zimmermann static long udl_log_cpp(unsigned int cpp)
197a8109f5bSThomas Zimmermann {
198a8109f5bSThomas Zimmermann if (WARN_ON(!is_power_of_2(cpp)))
199a8109f5bSThomas Zimmermann return -EINVAL;
200a8109f5bSThomas Zimmermann return __ffs(cpp);
201a8109f5bSThomas Zimmermann }
202a8109f5bSThomas Zimmermann
udl_handle_damage(struct drm_framebuffer * fb,const struct iosys_map * map,const struct drm_rect * clip)2037938f421SLucas De Marchi static int udl_handle_damage(struct drm_framebuffer *fb,
2047938f421SLucas De Marchi const struct iosys_map *map,
205b13fa27aSTakashi Iwai const struct drm_rect *clip)
206a8109f5bSThomas Zimmermann {
207a8109f5bSThomas Zimmermann struct drm_device *dev = fb->dev;
2085ceeb328SThomas Zimmermann void *vaddr = map->vaddr; /* TODO: Use mapping abstraction properly */
209ce724470SThomas Zimmermann int i, ret;
210a8109f5bSThomas Zimmermann char *cmd;
211a8109f5bSThomas Zimmermann struct urb *urb;
212a8109f5bSThomas Zimmermann int log_bpp;
213a8109f5bSThomas Zimmermann
214a8109f5bSThomas Zimmermann ret = udl_log_cpp(fb->format->cpp[0]);
215a8109f5bSThomas Zimmermann if (ret < 0)
216a8109f5bSThomas Zimmermann return ret;
217a8109f5bSThomas Zimmermann log_bpp = ret;
218a8109f5bSThomas Zimmermann
219a8109f5bSThomas Zimmermann urb = udl_get_urb(dev);
220fcc21447SThomas Zimmermann if (!urb)
221fcc21447SThomas Zimmermann return -ENOMEM;
222a8109f5bSThomas Zimmermann cmd = urb->transfer_buffer;
223a8109f5bSThomas Zimmermann
224b13fa27aSTakashi Iwai for (i = clip->y1; i < clip->y2; i++) {
225a8109f5bSThomas Zimmermann const int line_offset = fb->pitches[0] * i;
226b13fa27aSTakashi Iwai const int byte_offset = line_offset + (clip->x1 << log_bpp);
227b13fa27aSTakashi Iwai const int dev_byte_offset = (fb->width * i + clip->x1) << log_bpp;
228b13fa27aSTakashi Iwai const int byte_width = drm_rect_width(clip) << log_bpp;
229a8109f5bSThomas Zimmermann ret = udl_render_hline(dev, log_bpp, &urb, (char *)vaddr,
230a8109f5bSThomas Zimmermann &cmd, byte_offset, dev_byte_offset,
231a8109f5bSThomas Zimmermann byte_width);
232a8109f5bSThomas Zimmermann if (ret)
233fcc21447SThomas Zimmermann return ret;
234a8109f5bSThomas Zimmermann }
235a8109f5bSThomas Zimmermann
236a8109f5bSThomas Zimmermann if (cmd > (char *)urb->transfer_buffer) {
237a8109f5bSThomas Zimmermann /* Send partial buffer remaining before exiting */
238a8109f5bSThomas Zimmermann int len;
239a8109f5bSThomas Zimmermann if (cmd < (char *)urb->transfer_buffer + urb->transfer_buffer_length)
2401b8db07fSThomas Zimmermann *cmd++ = UDL_MSG_BULK;
241a8109f5bSThomas Zimmermann len = cmd - (char *)urb->transfer_buffer;
242a8109f5bSThomas Zimmermann ret = udl_submit_urb(dev, urb, len);
243a8109f5bSThomas Zimmermann } else {
244a8109f5bSThomas Zimmermann udl_urb_completion(urb);
245a8109f5bSThomas Zimmermann }
246a8109f5bSThomas Zimmermann
247fcc21447SThomas Zimmermann return 0;
248a8109f5bSThomas Zimmermann }
249a8109f5bSThomas Zimmermann
2509fda81e0SThomas Zimmermann /*
25172d73dd3SThomas Zimmermann * Primary plane
2529fda81e0SThomas Zimmermann */
2539fda81e0SThomas Zimmermann
25472d73dd3SThomas Zimmermann static const uint32_t udl_primary_plane_formats[] = {
2559fda81e0SThomas Zimmermann DRM_FORMAT_RGB565,
2569fda81e0SThomas Zimmermann DRM_FORMAT_XRGB8888,
2579fda81e0SThomas Zimmermann };
2589fda81e0SThomas Zimmermann
25972d73dd3SThomas Zimmermann static const uint64_t udl_primary_plane_fmtmods[] = {
26072d73dd3SThomas Zimmermann DRM_FORMAT_MOD_LINEAR,
26172d73dd3SThomas Zimmermann DRM_FORMAT_MOD_INVALID
26272d73dd3SThomas Zimmermann };
26372d73dd3SThomas Zimmermann
udl_primary_plane_helper_atomic_update(struct drm_plane * plane,struct drm_atomic_state * state)26472d73dd3SThomas Zimmermann static void udl_primary_plane_helper_atomic_update(struct drm_plane *plane,
26572d73dd3SThomas Zimmermann struct drm_atomic_state *state)
2665320918bSDave Airlie {
267ca2bd373SThomas Zimmermann struct drm_device *dev = plane->dev;
26872d73dd3SThomas Zimmermann struct drm_plane_state *plane_state = drm_atomic_get_new_plane_state(state, plane);
2695ceeb328SThomas Zimmermann struct drm_shadow_plane_state *shadow_plane_state = to_drm_shadow_plane_state(plane_state);
27072d73dd3SThomas Zimmermann struct drm_framebuffer *fb = plane_state->fb;
27172d73dd3SThomas Zimmermann struct drm_plane_state *old_plane_state = drm_atomic_get_old_plane_state(state, plane);
272fcc21447SThomas Zimmermann struct drm_atomic_helper_damage_iter iter;
273fcc21447SThomas Zimmermann struct drm_rect damage;
274fcc21447SThomas Zimmermann int ret, idx;
27572d73dd3SThomas Zimmermann
27672d73dd3SThomas Zimmermann if (!fb)
27772d73dd3SThomas Zimmermann return; /* no framebuffer; plane is disabled */
27872d73dd3SThomas Zimmermann
279fcc21447SThomas Zimmermann ret = drm_gem_fb_begin_cpu_access(fb, DMA_FROM_DEVICE);
280fcc21447SThomas Zimmermann if (ret)
281fcc21447SThomas Zimmermann return;
282fcc21447SThomas Zimmermann
283fcc21447SThomas Zimmermann if (!drm_dev_enter(dev, &idx))
284fcc21447SThomas Zimmermann goto out_drm_gem_fb_end_cpu_access;
285fcc21447SThomas Zimmermann
286fcc21447SThomas Zimmermann drm_atomic_helper_damage_iter_init(&iter, old_plane_state, plane_state);
287fcc21447SThomas Zimmermann drm_atomic_for_each_plane_damage(&iter, &damage) {
288fcc21447SThomas Zimmermann udl_handle_damage(fb, &shadow_plane_state->data[0], &damage);
289fcc21447SThomas Zimmermann }
290ca2bd373SThomas Zimmermann
291ca2bd373SThomas Zimmermann drm_dev_exit(idx);
292fcc21447SThomas Zimmermann
293fcc21447SThomas Zimmermann out_drm_gem_fb_end_cpu_access:
294fcc21447SThomas Zimmermann drm_gem_fb_end_cpu_access(fb, DMA_FROM_DEVICE);
29572d73dd3SThomas Zimmermann }
29672d73dd3SThomas Zimmermann
29772d73dd3SThomas Zimmermann static const struct drm_plane_helper_funcs udl_primary_plane_helper_funcs = {
29872d73dd3SThomas Zimmermann DRM_GEM_SHADOW_PLANE_HELPER_FUNCS,
29972d73dd3SThomas Zimmermann .atomic_check = drm_plane_helper_atomic_check,
30072d73dd3SThomas Zimmermann .atomic_update = udl_primary_plane_helper_atomic_update,
30172d73dd3SThomas Zimmermann };
30272d73dd3SThomas Zimmermann
30372d73dd3SThomas Zimmermann static const struct drm_plane_funcs udl_primary_plane_funcs = {
30472d73dd3SThomas Zimmermann .update_plane = drm_atomic_helper_update_plane,
30572d73dd3SThomas Zimmermann .disable_plane = drm_atomic_helper_disable_plane,
30672d73dd3SThomas Zimmermann .destroy = drm_plane_cleanup,
30772d73dd3SThomas Zimmermann DRM_GEM_SHADOW_PLANE_FUNCS,
30872d73dd3SThomas Zimmermann };
30972d73dd3SThomas Zimmermann
31072d73dd3SThomas Zimmermann /*
31172d73dd3SThomas Zimmermann * CRTC
31272d73dd3SThomas Zimmermann */
31372d73dd3SThomas Zimmermann
udl_crtc_helper_atomic_enable(struct drm_crtc * crtc,struct drm_atomic_state * state)31472d73dd3SThomas Zimmermann static void udl_crtc_helper_atomic_enable(struct drm_crtc *crtc, struct drm_atomic_state *state)
31572d73dd3SThomas Zimmermann {
31672d73dd3SThomas Zimmermann struct drm_device *dev = crtc->dev;
31772d73dd3SThomas Zimmermann struct drm_crtc_state *crtc_state = drm_atomic_get_new_crtc_state(state, crtc);
31872d73dd3SThomas Zimmermann struct drm_display_mode *mode = &crtc_state->mode;
319890e4de8SThomas Zimmermann struct urb *urb;
3205320918bSDave Airlie char *buf;
321ca2bd373SThomas Zimmermann int idx;
322ca2bd373SThomas Zimmermann
323ca2bd373SThomas Zimmermann if (!drm_dev_enter(dev, &idx))
324ca2bd373SThomas Zimmermann return;
3255320918bSDave Airlie
326890e4de8SThomas Zimmermann urb = udl_get_urb(dev);
327890e4de8SThomas Zimmermann if (!urb)
328ca2bd373SThomas Zimmermann goto out;
3295320918bSDave Airlie
330890e4de8SThomas Zimmermann buf = (char *)urb->transfer_buffer;
331890e4de8SThomas Zimmermann buf = udl_vidreg_lock(buf);
332ff76e82cSThomas Zimmermann buf = udl_set_color_depth(buf, UDL_COLORDEPTH_16BPP);
3335320918bSDave Airlie /* set base for 16bpp segment to 0 */
334890e4de8SThomas Zimmermann buf = udl_set_base16bpp(buf, 0);
3355320918bSDave Airlie /* set base for 8bpp segment to end of fb */
336890e4de8SThomas Zimmermann buf = udl_set_base8bpp(buf, 2 * mode->vdisplay * mode->hdisplay);
3379869e40dSThomas Zimmermann buf = udl_set_display_mode(buf, mode);
338ff76e82cSThomas Zimmermann buf = udl_set_blank_mode(buf, UDL_BLANKMODE_ON);
339890e4de8SThomas Zimmermann buf = udl_vidreg_unlock(buf);
340890e4de8SThomas Zimmermann buf = udl_dummy_render(buf);
3415bd42f69SDave Airlie
342890e4de8SThomas Zimmermann udl_submit_urb(dev, urb, buf - (char *)urb->transfer_buffer);
343ca2bd373SThomas Zimmermann
344ca2bd373SThomas Zimmermann out:
345ca2bd373SThomas Zimmermann drm_dev_exit(idx);
3469fda81e0SThomas Zimmermann }
3479fda81e0SThomas Zimmermann
udl_crtc_helper_atomic_disable(struct drm_crtc * crtc,struct drm_atomic_state * state)34872d73dd3SThomas Zimmermann static void udl_crtc_helper_atomic_disable(struct drm_crtc *crtc, struct drm_atomic_state *state)
3499fda81e0SThomas Zimmermann {
350997d33c3SThomas Zimmermann struct drm_device *dev = crtc->dev;
351997d33c3SThomas Zimmermann struct urb *urb;
352997d33c3SThomas Zimmermann char *buf;
353ca2bd373SThomas Zimmermann int idx;
354ca2bd373SThomas Zimmermann
355ca2bd373SThomas Zimmermann if (!drm_dev_enter(dev, &idx))
356ca2bd373SThomas Zimmermann return;
357997d33c3SThomas Zimmermann
358997d33c3SThomas Zimmermann urb = udl_get_urb(dev);
359997d33c3SThomas Zimmermann if (!urb)
360ca2bd373SThomas Zimmermann goto out;
361997d33c3SThomas Zimmermann
362997d33c3SThomas Zimmermann buf = (char *)urb->transfer_buffer;
363997d33c3SThomas Zimmermann buf = udl_vidreg_lock(buf);
364ff76e82cSThomas Zimmermann buf = udl_set_blank_mode(buf, UDL_BLANKMODE_POWERDOWN);
365997d33c3SThomas Zimmermann buf = udl_vidreg_unlock(buf);
366997d33c3SThomas Zimmermann buf = udl_dummy_render(buf);
367997d33c3SThomas Zimmermann
368997d33c3SThomas Zimmermann udl_submit_urb(dev, urb, buf - (char *)urb->transfer_buffer);
369ca2bd373SThomas Zimmermann
370ca2bd373SThomas Zimmermann out:
371ca2bd373SThomas Zimmermann drm_dev_exit(idx);
3729fda81e0SThomas Zimmermann }
3739fda81e0SThomas Zimmermann
37472d73dd3SThomas Zimmermann static const struct drm_crtc_helper_funcs udl_crtc_helper_funcs = {
37548c5c68fSGeert Uytterhoeven .atomic_check = drm_crtc_helper_atomic_check,
37672d73dd3SThomas Zimmermann .atomic_enable = udl_crtc_helper_atomic_enable,
37772d73dd3SThomas Zimmermann .atomic_disable = udl_crtc_helper_atomic_disable,
37872d73dd3SThomas Zimmermann };
37940377ef2SStéphane Marchesin
38072d73dd3SThomas Zimmermann static const struct drm_crtc_funcs udl_crtc_funcs = {
38172d73dd3SThomas Zimmermann .reset = drm_atomic_helper_crtc_reset,
38272d73dd3SThomas Zimmermann .destroy = drm_crtc_cleanup,
38372d73dd3SThomas Zimmermann .set_config = drm_atomic_helper_set_config,
38472d73dd3SThomas Zimmermann .page_flip = drm_atomic_helper_page_flip,
38572d73dd3SThomas Zimmermann .atomic_duplicate_state = drm_atomic_helper_crtc_duplicate_state,
38672d73dd3SThomas Zimmermann .atomic_destroy_state = drm_atomic_helper_crtc_destroy_state,
38772d73dd3SThomas Zimmermann };
3889fda81e0SThomas Zimmermann
38972d73dd3SThomas Zimmermann /*
39072d73dd3SThomas Zimmermann * Encoder
39172d73dd3SThomas Zimmermann */
39240377ef2SStéphane Marchesin
39372d73dd3SThomas Zimmermann static const struct drm_encoder_funcs udl_encoder_funcs = {
39472d73dd3SThomas Zimmermann .destroy = drm_encoder_cleanup,
3955320918bSDave Airlie };
3965320918bSDave Airlie
3979fda81e0SThomas Zimmermann /*
3980862cfd3SThomas Zimmermann * Connector
3990862cfd3SThomas Zimmermann */
4000862cfd3SThomas Zimmermann
udl_connector_helper_get_modes(struct drm_connector * connector)4010862cfd3SThomas Zimmermann static int udl_connector_helper_get_modes(struct drm_connector *connector)
4020862cfd3SThomas Zimmermann {
4030862cfd3SThomas Zimmermann struct udl_connector *udl_connector = to_udl_connector(connector);
4040862cfd3SThomas Zimmermann
4050862cfd3SThomas Zimmermann drm_connector_update_edid_property(connector, udl_connector->edid);
4060862cfd3SThomas Zimmermann if (udl_connector->edid)
4070862cfd3SThomas Zimmermann return drm_add_edid_modes(connector, udl_connector->edid);
4080862cfd3SThomas Zimmermann
4090862cfd3SThomas Zimmermann return 0;
4100862cfd3SThomas Zimmermann }
4110862cfd3SThomas Zimmermann
4120862cfd3SThomas Zimmermann static const struct drm_connector_helper_funcs udl_connector_helper_funcs = {
4130862cfd3SThomas Zimmermann .get_modes = udl_connector_helper_get_modes,
4140862cfd3SThomas Zimmermann };
4150862cfd3SThomas Zimmermann
udl_get_edid_block(void * data,u8 * buf,unsigned int block,size_t len)4160862cfd3SThomas Zimmermann static int udl_get_edid_block(void *data, u8 *buf, unsigned int block, size_t len)
4170862cfd3SThomas Zimmermann {
4180862cfd3SThomas Zimmermann struct udl_device *udl = data;
4190862cfd3SThomas Zimmermann struct drm_device *dev = &udl->drm;
4200862cfd3SThomas Zimmermann struct usb_device *udev = udl_to_usb_device(udl);
4210862cfd3SThomas Zimmermann u8 *read_buff;
4220862cfd3SThomas Zimmermann int ret;
4230862cfd3SThomas Zimmermann size_t i;
4240862cfd3SThomas Zimmermann
4250862cfd3SThomas Zimmermann read_buff = kmalloc(2, GFP_KERNEL);
4260862cfd3SThomas Zimmermann if (!read_buff)
4270862cfd3SThomas Zimmermann return -ENOMEM;
4280862cfd3SThomas Zimmermann
4290862cfd3SThomas Zimmermann for (i = 0; i < len; i++) {
4300862cfd3SThomas Zimmermann int bval = (i + block * EDID_LENGTH) << 8;
4310862cfd3SThomas Zimmermann
4320862cfd3SThomas Zimmermann ret = usb_control_msg(udev, usb_rcvctrlpipe(udev, 0),
4330862cfd3SThomas Zimmermann 0x02, (0x80 | (0x02 << 5)), bval,
4340862cfd3SThomas Zimmermann 0xA1, read_buff, 2, USB_CTRL_GET_TIMEOUT);
4350862cfd3SThomas Zimmermann if (ret < 0) {
4360862cfd3SThomas Zimmermann drm_err(dev, "Read EDID byte %zu failed err %x\n", i, ret);
4370862cfd3SThomas Zimmermann goto err_kfree;
4380862cfd3SThomas Zimmermann } else if (ret < 1) {
4390862cfd3SThomas Zimmermann ret = -EIO;
4400862cfd3SThomas Zimmermann drm_err(dev, "Read EDID byte %zu failed\n", i);
4410862cfd3SThomas Zimmermann goto err_kfree;
4420862cfd3SThomas Zimmermann }
4430862cfd3SThomas Zimmermann
4440862cfd3SThomas Zimmermann buf[i] = read_buff[1];
4450862cfd3SThomas Zimmermann }
4460862cfd3SThomas Zimmermann
4470862cfd3SThomas Zimmermann kfree(read_buff);
4480862cfd3SThomas Zimmermann
4490862cfd3SThomas Zimmermann return 0;
4500862cfd3SThomas Zimmermann
4510862cfd3SThomas Zimmermann err_kfree:
4520862cfd3SThomas Zimmermann kfree(read_buff);
4530862cfd3SThomas Zimmermann return ret;
4540862cfd3SThomas Zimmermann }
4550862cfd3SThomas Zimmermann
udl_connector_detect(struct drm_connector * connector,bool force)4560862cfd3SThomas Zimmermann static enum drm_connector_status udl_connector_detect(struct drm_connector *connector, bool force)
4570862cfd3SThomas Zimmermann {
458ca2bd373SThomas Zimmermann struct drm_device *dev = connector->dev;
459ca2bd373SThomas Zimmermann struct udl_device *udl = to_udl(dev);
4600862cfd3SThomas Zimmermann struct udl_connector *udl_connector = to_udl_connector(connector);
461ca2bd373SThomas Zimmermann enum drm_connector_status status = connector_status_disconnected;
462ca2bd373SThomas Zimmermann int idx;
4630862cfd3SThomas Zimmermann
4640862cfd3SThomas Zimmermann /* cleanup previous EDID */
4650862cfd3SThomas Zimmermann kfree(udl_connector->edid);
466ca2bd373SThomas Zimmermann udl_connector->edid = NULL;
4670862cfd3SThomas Zimmermann
468ca2bd373SThomas Zimmermann if (!drm_dev_enter(dev, &idx))
4690862cfd3SThomas Zimmermann return connector_status_disconnected;
4700862cfd3SThomas Zimmermann
471ca2bd373SThomas Zimmermann udl_connector->edid = drm_do_get_edid(connector, udl_get_edid_block, udl);
472ca2bd373SThomas Zimmermann if (udl_connector->edid)
473ca2bd373SThomas Zimmermann status = connector_status_connected;
474ca2bd373SThomas Zimmermann
475ca2bd373SThomas Zimmermann drm_dev_exit(idx);
476ca2bd373SThomas Zimmermann
477ca2bd373SThomas Zimmermann return status;
4780862cfd3SThomas Zimmermann }
4790862cfd3SThomas Zimmermann
udl_connector_destroy(struct drm_connector * connector)4800862cfd3SThomas Zimmermann static void udl_connector_destroy(struct drm_connector *connector)
4810862cfd3SThomas Zimmermann {
4820862cfd3SThomas Zimmermann struct udl_connector *udl_connector = to_udl_connector(connector);
4830862cfd3SThomas Zimmermann
4840862cfd3SThomas Zimmermann drm_connector_cleanup(connector);
4850862cfd3SThomas Zimmermann kfree(udl_connector->edid);
4860862cfd3SThomas Zimmermann kfree(udl_connector);
4870862cfd3SThomas Zimmermann }
4880862cfd3SThomas Zimmermann
4890862cfd3SThomas Zimmermann static const struct drm_connector_funcs udl_connector_funcs = {
4900862cfd3SThomas Zimmermann .reset = drm_atomic_helper_connector_reset,
4910862cfd3SThomas Zimmermann .detect = udl_connector_detect,
4920862cfd3SThomas Zimmermann .fill_modes = drm_helper_probe_single_connector_modes,
4930862cfd3SThomas Zimmermann .destroy = udl_connector_destroy,
4940862cfd3SThomas Zimmermann .atomic_duplicate_state = drm_atomic_helper_connector_duplicate_state,
4950862cfd3SThomas Zimmermann .atomic_destroy_state = drm_atomic_helper_connector_destroy_state,
4960862cfd3SThomas Zimmermann };
4970862cfd3SThomas Zimmermann
udl_connector_init(struct drm_device * dev)4980862cfd3SThomas Zimmermann struct drm_connector *udl_connector_init(struct drm_device *dev)
4990862cfd3SThomas Zimmermann {
5000862cfd3SThomas Zimmermann struct udl_connector *udl_connector;
5010862cfd3SThomas Zimmermann struct drm_connector *connector;
5020862cfd3SThomas Zimmermann int ret;
5030862cfd3SThomas Zimmermann
5040862cfd3SThomas Zimmermann udl_connector = kzalloc(sizeof(*udl_connector), GFP_KERNEL);
5050862cfd3SThomas Zimmermann if (!udl_connector)
5060862cfd3SThomas Zimmermann return ERR_PTR(-ENOMEM);
5070862cfd3SThomas Zimmermann
5080862cfd3SThomas Zimmermann connector = &udl_connector->connector;
5090862cfd3SThomas Zimmermann ret = drm_connector_init(dev, connector, &udl_connector_funcs, DRM_MODE_CONNECTOR_VGA);
5100862cfd3SThomas Zimmermann if (ret)
5110862cfd3SThomas Zimmermann goto err_kfree;
5120862cfd3SThomas Zimmermann
5130862cfd3SThomas Zimmermann drm_connector_helper_add(connector, &udl_connector_helper_funcs);
5140862cfd3SThomas Zimmermann
515*b29c910cSThomas Zimmermann connector->polled = DRM_CONNECTOR_POLL_CONNECT |
5160862cfd3SThomas Zimmermann DRM_CONNECTOR_POLL_DISCONNECT;
5170862cfd3SThomas Zimmermann
5180862cfd3SThomas Zimmermann return connector;
5190862cfd3SThomas Zimmermann
5200862cfd3SThomas Zimmermann err_kfree:
5210862cfd3SThomas Zimmermann kfree(udl_connector);
5220862cfd3SThomas Zimmermann return ERR_PTR(ret);
5230862cfd3SThomas Zimmermann }
5240862cfd3SThomas Zimmermann
5250862cfd3SThomas Zimmermann /*
5269fda81e0SThomas Zimmermann * Modesetting
5279fda81e0SThomas Zimmermann */
5285320918bSDave Airlie
udl_mode_config_mode_valid(struct drm_device * dev,const struct drm_display_mode * mode)529c020f660SThomas Zimmermann static enum drm_mode_status udl_mode_config_mode_valid(struct drm_device *dev,
530c020f660SThomas Zimmermann const struct drm_display_mode *mode)
531c020f660SThomas Zimmermann {
532c020f660SThomas Zimmermann struct udl_device *udl = to_udl(dev);
533c020f660SThomas Zimmermann
534c020f660SThomas Zimmermann if (udl->sku_pixel_limit) {
535c020f660SThomas Zimmermann if (mode->vdisplay * mode->hdisplay > udl->sku_pixel_limit)
536c020f660SThomas Zimmermann return MODE_MEM;
537c020f660SThomas Zimmermann }
538c020f660SThomas Zimmermann
539c020f660SThomas Zimmermann return MODE_OK;
540c020f660SThomas Zimmermann }
541c020f660SThomas Zimmermann
54272d73dd3SThomas Zimmermann static const struct drm_mode_config_funcs udl_mode_config_funcs = {
543230b8b04SThomas Zimmermann .fb_create = drm_gem_fb_create_with_dirty,
544c020f660SThomas Zimmermann .mode_valid = udl_mode_config_mode_valid,
5459fda81e0SThomas Zimmermann .atomic_check = drm_atomic_helper_check,
5469fda81e0SThomas Zimmermann .atomic_commit = drm_atomic_helper_commit,
5475320918bSDave Airlie };
5485320918bSDave Airlie
udl_modeset_init(struct drm_device * dev)5495320918bSDave Airlie int udl_modeset_init(struct drm_device *dev)
5505320918bSDave Airlie {
5516ae355a2SDaniel Vetter struct udl_device *udl = to_udl(dev);
55272d73dd3SThomas Zimmermann struct drm_plane *primary_plane;
55372d73dd3SThomas Zimmermann struct drm_crtc *crtc;
55472d73dd3SThomas Zimmermann struct drm_encoder *encoder;
555e829cf0bSThomas Zimmermann struct drm_connector *connector;
556e829cf0bSThomas Zimmermann int ret;
557e829cf0bSThomas Zimmermann
558fe5b7c86SDaniel Vetter ret = drmm_mode_config_init(dev);
559fe5b7c86SDaniel Vetter if (ret)
560fe5b7c86SDaniel Vetter return ret;
5615320918bSDave Airlie
5625320918bSDave Airlie dev->mode_config.min_width = 640;
5635320918bSDave Airlie dev->mode_config.min_height = 480;
5645320918bSDave Airlie dev->mode_config.max_width = 2048;
5655320918bSDave Airlie dev->mode_config.max_height = 2048;
566d8177841SThomas Zimmermann dev->mode_config.preferred_depth = 16;
56772d73dd3SThomas Zimmermann dev->mode_config.funcs = &udl_mode_config_funcs;
5685320918bSDave Airlie
56972d73dd3SThomas Zimmermann primary_plane = &udl->primary_plane;
57072d73dd3SThomas Zimmermann ret = drm_universal_plane_init(dev, primary_plane, 0,
57172d73dd3SThomas Zimmermann &udl_primary_plane_funcs,
57272d73dd3SThomas Zimmermann udl_primary_plane_formats,
57372d73dd3SThomas Zimmermann ARRAY_SIZE(udl_primary_plane_formats),
57472d73dd3SThomas Zimmermann udl_primary_plane_fmtmods,
57572d73dd3SThomas Zimmermann DRM_PLANE_TYPE_PRIMARY, NULL);
57672d73dd3SThomas Zimmermann if (ret)
57772d73dd3SThomas Zimmermann return ret;
57872d73dd3SThomas Zimmermann drm_plane_helper_add(primary_plane, &udl_primary_plane_helper_funcs);
57972d73dd3SThomas Zimmermann drm_plane_enable_fb_damage_clips(primary_plane);
58072d73dd3SThomas Zimmermann
58172d73dd3SThomas Zimmermann crtc = &udl->crtc;
58272d73dd3SThomas Zimmermann ret = drm_crtc_init_with_planes(dev, crtc, primary_plane, NULL,
58372d73dd3SThomas Zimmermann &udl_crtc_funcs, NULL);
58472d73dd3SThomas Zimmermann if (ret)
58572d73dd3SThomas Zimmermann return ret;
58672d73dd3SThomas Zimmermann drm_crtc_helper_add(crtc, &udl_crtc_helper_funcs);
58772d73dd3SThomas Zimmermann
58872d73dd3SThomas Zimmermann encoder = &udl->encoder;
58972d73dd3SThomas Zimmermann ret = drm_encoder_init(dev, encoder, &udl_encoder_funcs, DRM_MODE_ENCODER_DAC, NULL);
59072d73dd3SThomas Zimmermann if (ret)
59172d73dd3SThomas Zimmermann return ret;
59272d73dd3SThomas Zimmermann encoder->possible_crtcs = drm_crtc_mask(crtc);
5935320918bSDave Airlie
594e829cf0bSThomas Zimmermann connector = udl_connector_init(dev);
595fe5b7c86SDaniel Vetter if (IS_ERR(connector))
596fe5b7c86SDaniel Vetter return PTR_ERR(connector);
59772d73dd3SThomas Zimmermann ret = drm_connector_attach_encoder(connector, encoder);
5989fda81e0SThomas Zimmermann if (ret)
599fe5b7c86SDaniel Vetter return ret;
6009fda81e0SThomas Zimmermann
6019fda81e0SThomas Zimmermann drm_mode_config_reset(dev);
6025320918bSDave Airlie
6035320918bSDave Airlie return 0;
6045320918bSDave Airlie }
605