xref: /openbmc/linux/drivers/gpu/drm/gud/gud_drv.c (revision 1f25d005)
140e1a70bSNoralf Trønnes // SPDX-License-Identifier: MIT
240e1a70bSNoralf Trønnes /*
340e1a70bSNoralf Trønnes  * Copyright 2020 Noralf Trønnes
440e1a70bSNoralf Trønnes  */
540e1a70bSNoralf Trønnes 
640e1a70bSNoralf Trønnes #include <linux/dma-buf.h>
740e1a70bSNoralf Trønnes #include <linux/dma-mapping.h>
840e1a70bSNoralf Trønnes #include <linux/lz4.h>
940e1a70bSNoralf Trønnes #include <linux/module.h>
1040e1a70bSNoralf Trønnes #include <linux/platform_device.h>
1140e1a70bSNoralf Trønnes #include <linux/string_helpers.h>
1240e1a70bSNoralf Trønnes #include <linux/usb.h>
1340e1a70bSNoralf Trønnes #include <linux/vmalloc.h>
1440e1a70bSNoralf Trønnes #include <linux/workqueue.h>
1540e1a70bSNoralf Trønnes 
1640e1a70bSNoralf Trønnes #include <drm/drm_atomic_helper.h>
1740e1a70bSNoralf Trønnes #include <drm/drm_damage_helper.h>
1840e1a70bSNoralf Trønnes #include <drm/drm_debugfs.h>
1940e1a70bSNoralf Trønnes #include <drm/drm_drv.h>
2040e1a70bSNoralf Trønnes #include <drm/drm_fb_helper.h>
2140e1a70bSNoralf Trønnes #include <drm/drm_fourcc.h>
2240e1a70bSNoralf Trønnes #include <drm/drm_gem_atomic_helper.h>
2340e1a70bSNoralf Trønnes #include <drm/drm_gem_framebuffer_helper.h>
2440e1a70bSNoralf Trønnes #include <drm/drm_gem_shmem_helper.h>
2540e1a70bSNoralf Trønnes #include <drm/drm_managed.h>
2640e1a70bSNoralf Trønnes #include <drm/drm_print.h>
2740e1a70bSNoralf Trønnes #include <drm/drm_probe_helper.h>
2840e1a70bSNoralf Trønnes #include <drm/drm_simple_kms_helper.h>
2940e1a70bSNoralf Trønnes #include <drm/gud.h>
3040e1a70bSNoralf Trønnes 
3140e1a70bSNoralf Trønnes #include "gud_internal.h"
3240e1a70bSNoralf Trønnes 
3340e1a70bSNoralf Trønnes /* Only used internally */
3440e1a70bSNoralf Trønnes static const struct drm_format_info gud_drm_format_r1 = {
3540e1a70bSNoralf Trønnes 	.format = GUD_DRM_FORMAT_R1,
3640e1a70bSNoralf Trønnes 	.num_planes = 1,
3740e1a70bSNoralf Trønnes 	.char_per_block = { 1, 0, 0 },
3840e1a70bSNoralf Trønnes 	.block_w = { 8, 0, 0 },
3940e1a70bSNoralf Trønnes 	.block_h = { 1, 0, 0 },
4040e1a70bSNoralf Trønnes 	.hsub = 1,
4140e1a70bSNoralf Trønnes 	.vsub = 1,
4240e1a70bSNoralf Trønnes };
4340e1a70bSNoralf Trønnes 
4440e1a70bSNoralf Trønnes static const struct drm_format_info gud_drm_format_xrgb1111 = {
4540e1a70bSNoralf Trønnes 	.format = GUD_DRM_FORMAT_XRGB1111,
4640e1a70bSNoralf Trønnes 	.num_planes = 1,
4740e1a70bSNoralf Trønnes 	.char_per_block = { 1, 0, 0 },
4840e1a70bSNoralf Trønnes 	.block_w = { 2, 0, 0 },
4940e1a70bSNoralf Trønnes 	.block_h = { 1, 0, 0 },
5040e1a70bSNoralf Trønnes 	.hsub = 1,
5140e1a70bSNoralf Trønnes 	.vsub = 1,
5240e1a70bSNoralf Trønnes };
5340e1a70bSNoralf Trønnes 
5440e1a70bSNoralf Trønnes static int gud_usb_control_msg(struct usb_interface *intf, bool in,
5540e1a70bSNoralf Trønnes 			       u8 request, u16 value, void *buf, size_t len)
5640e1a70bSNoralf Trønnes {
5740e1a70bSNoralf Trønnes 	u8 requesttype = USB_TYPE_VENDOR | USB_RECIP_INTERFACE;
5840e1a70bSNoralf Trønnes 	u8 ifnum = intf->cur_altsetting->desc.bInterfaceNumber;
5940e1a70bSNoralf Trønnes 	struct usb_device *usb = interface_to_usbdev(intf);
6040e1a70bSNoralf Trønnes 	unsigned int pipe;
6140e1a70bSNoralf Trønnes 
6240e1a70bSNoralf Trønnes 	if (len && !buf)
6340e1a70bSNoralf Trønnes 		return -EINVAL;
6440e1a70bSNoralf Trønnes 
6540e1a70bSNoralf Trønnes 	if (in) {
6640e1a70bSNoralf Trønnes 		pipe = usb_rcvctrlpipe(usb, 0);
6740e1a70bSNoralf Trønnes 		requesttype |= USB_DIR_IN;
6840e1a70bSNoralf Trønnes 	} else {
6940e1a70bSNoralf Trønnes 		pipe = usb_sndctrlpipe(usb, 0);
7040e1a70bSNoralf Trønnes 		requesttype |= USB_DIR_OUT;
7140e1a70bSNoralf Trønnes 	}
7240e1a70bSNoralf Trønnes 
7340e1a70bSNoralf Trønnes 	return usb_control_msg(usb, pipe, request, requesttype, value,
7440e1a70bSNoralf Trønnes 			       ifnum, buf, len, USB_CTRL_GET_TIMEOUT);
7540e1a70bSNoralf Trønnes }
7640e1a70bSNoralf Trønnes 
7740e1a70bSNoralf Trønnes static int gud_get_display_descriptor(struct usb_interface *intf,
7840e1a70bSNoralf Trønnes 				      struct gud_display_descriptor_req *desc)
7940e1a70bSNoralf Trønnes {
8040e1a70bSNoralf Trønnes 	void *buf;
8140e1a70bSNoralf Trønnes 	int ret;
8240e1a70bSNoralf Trønnes 
8340e1a70bSNoralf Trønnes 	buf = kmalloc(sizeof(*desc), GFP_KERNEL);
8440e1a70bSNoralf Trønnes 	if (!buf)
8540e1a70bSNoralf Trønnes 		return -ENOMEM;
8640e1a70bSNoralf Trønnes 
8740e1a70bSNoralf Trønnes 	ret = gud_usb_control_msg(intf, true, GUD_REQ_GET_DESCRIPTOR, 0, buf, sizeof(*desc));
8840e1a70bSNoralf Trønnes 	memcpy(desc, buf, sizeof(*desc));
8940e1a70bSNoralf Trønnes 	kfree(buf);
9040e1a70bSNoralf Trønnes 	if (ret < 0)
9140e1a70bSNoralf Trønnes 		return ret;
9240e1a70bSNoralf Trønnes 	if (ret != sizeof(*desc))
9340e1a70bSNoralf Trønnes 		return -EIO;
9440e1a70bSNoralf Trønnes 
9540e1a70bSNoralf Trønnes 	if (desc->magic != le32_to_cpu(GUD_DISPLAY_MAGIC))
9640e1a70bSNoralf Trønnes 		return -ENODATA;
9740e1a70bSNoralf Trønnes 
9840e1a70bSNoralf Trønnes 	DRM_DEV_DEBUG_DRIVER(&intf->dev,
9940e1a70bSNoralf Trønnes 			     "version=%u flags=0x%x compression=0x%x max_buffer_size=%u\n",
10040e1a70bSNoralf Trønnes 			     desc->version, le32_to_cpu(desc->flags), desc->compression,
10140e1a70bSNoralf Trønnes 			     le32_to_cpu(desc->max_buffer_size));
10240e1a70bSNoralf Trønnes 
10340e1a70bSNoralf Trønnes 	if (!desc->version || !desc->max_width || !desc->max_height ||
10440e1a70bSNoralf Trønnes 	    le32_to_cpu(desc->min_width) > le32_to_cpu(desc->max_width) ||
10540e1a70bSNoralf Trønnes 	    le32_to_cpu(desc->min_height) > le32_to_cpu(desc->max_height))
10640e1a70bSNoralf Trønnes 		return -EINVAL;
10740e1a70bSNoralf Trønnes 
10840e1a70bSNoralf Trønnes 	return 0;
10940e1a70bSNoralf Trønnes }
11040e1a70bSNoralf Trønnes 
11140e1a70bSNoralf Trønnes static int gud_status_to_errno(u8 status)
11240e1a70bSNoralf Trønnes {
11340e1a70bSNoralf Trønnes 	switch (status) {
11440e1a70bSNoralf Trønnes 	case GUD_STATUS_OK:
11540e1a70bSNoralf Trønnes 		return 0;
11640e1a70bSNoralf Trønnes 	case GUD_STATUS_BUSY:
11740e1a70bSNoralf Trønnes 		return -EBUSY;
11840e1a70bSNoralf Trønnes 	case GUD_STATUS_REQUEST_NOT_SUPPORTED:
11940e1a70bSNoralf Trønnes 		return -EOPNOTSUPP;
12040e1a70bSNoralf Trønnes 	case GUD_STATUS_PROTOCOL_ERROR:
12140e1a70bSNoralf Trønnes 		return -EPROTO;
12240e1a70bSNoralf Trønnes 	case GUD_STATUS_INVALID_PARAMETER:
12340e1a70bSNoralf Trønnes 		return -EINVAL;
12440e1a70bSNoralf Trønnes 	case GUD_STATUS_ERROR:
12540e1a70bSNoralf Trønnes 		return -EREMOTEIO;
12640e1a70bSNoralf Trønnes 	default:
12740e1a70bSNoralf Trønnes 		return -EREMOTEIO;
12840e1a70bSNoralf Trønnes 	}
12940e1a70bSNoralf Trønnes }
13040e1a70bSNoralf Trønnes 
13140e1a70bSNoralf Trønnes static int gud_usb_get_status(struct usb_interface *intf)
13240e1a70bSNoralf Trønnes {
13340e1a70bSNoralf Trønnes 	int ret, status = -EIO;
13440e1a70bSNoralf Trønnes 	u8 *buf;
13540e1a70bSNoralf Trønnes 
13640e1a70bSNoralf Trønnes 	buf = kmalloc(sizeof(*buf), GFP_KERNEL);
13740e1a70bSNoralf Trønnes 	if (!buf)
13840e1a70bSNoralf Trønnes 		return -ENOMEM;
13940e1a70bSNoralf Trønnes 
14040e1a70bSNoralf Trønnes 	ret = gud_usb_control_msg(intf, true, GUD_REQ_GET_STATUS, 0, buf, sizeof(*buf));
14140e1a70bSNoralf Trønnes 	if (ret == sizeof(*buf))
14240e1a70bSNoralf Trønnes 		status = gud_status_to_errno(*buf);
14340e1a70bSNoralf Trønnes 	kfree(buf);
14440e1a70bSNoralf Trønnes 
14540e1a70bSNoralf Trønnes 	if (ret < 0)
14640e1a70bSNoralf Trønnes 		return ret;
14740e1a70bSNoralf Trønnes 
14840e1a70bSNoralf Trønnes 	return status;
14940e1a70bSNoralf Trønnes }
15040e1a70bSNoralf Trønnes 
15140e1a70bSNoralf Trønnes static int gud_usb_transfer(struct gud_device *gdrm, bool in, u8 request, u16 index,
15240e1a70bSNoralf Trønnes 			    void *buf, size_t len)
15340e1a70bSNoralf Trønnes {
15440e1a70bSNoralf Trønnes 	struct usb_interface *intf = to_usb_interface(gdrm->drm.dev);
15540e1a70bSNoralf Trønnes 	int idx, ret;
15640e1a70bSNoralf Trønnes 
15740e1a70bSNoralf Trønnes 	drm_dbg(&gdrm->drm, "%s: request=0x%x index=%u len=%zu\n",
15840e1a70bSNoralf Trønnes 		in ? "get" : "set", request, index, len);
15940e1a70bSNoralf Trønnes 
16040e1a70bSNoralf Trønnes 	if (!drm_dev_enter(&gdrm->drm, &idx))
16140e1a70bSNoralf Trønnes 		return -ENODEV;
16240e1a70bSNoralf Trønnes 
16340e1a70bSNoralf Trønnes 	mutex_lock(&gdrm->ctrl_lock);
16440e1a70bSNoralf Trønnes 
16540e1a70bSNoralf Trønnes 	ret = gud_usb_control_msg(intf, in, request, index, buf, len);
16640e1a70bSNoralf Trønnes 	if (ret == -EPIPE || ((gdrm->flags & GUD_DISPLAY_FLAG_STATUS_ON_SET) && !in && ret >= 0)) {
16740e1a70bSNoralf Trønnes 		int status;
16840e1a70bSNoralf Trønnes 
16940e1a70bSNoralf Trønnes 		status = gud_usb_get_status(intf);
17040e1a70bSNoralf Trønnes 		if (status < 0) {
17140e1a70bSNoralf Trønnes 			ret = status;
17240e1a70bSNoralf Trønnes 		} else if (ret < 0) {
17340e1a70bSNoralf Trønnes 			dev_err_once(gdrm->drm.dev,
17440e1a70bSNoralf Trønnes 				     "Unexpected status OK for failed transfer\n");
17540e1a70bSNoralf Trønnes 			ret = -EPIPE;
17640e1a70bSNoralf Trønnes 		}
17740e1a70bSNoralf Trønnes 	}
17840e1a70bSNoralf Trønnes 
17940e1a70bSNoralf Trønnes 	if (ret < 0) {
18040e1a70bSNoralf Trønnes 		drm_dbg(&gdrm->drm, "ret=%d\n", ret);
18140e1a70bSNoralf Trønnes 		gdrm->stats_num_errors++;
18240e1a70bSNoralf Trønnes 	}
18340e1a70bSNoralf Trønnes 
18440e1a70bSNoralf Trønnes 	mutex_unlock(&gdrm->ctrl_lock);
18540e1a70bSNoralf Trønnes 	drm_dev_exit(idx);
18640e1a70bSNoralf Trønnes 
18740e1a70bSNoralf Trønnes 	return ret;
18840e1a70bSNoralf Trønnes }
18940e1a70bSNoralf Trønnes 
19040e1a70bSNoralf Trønnes /*
19140e1a70bSNoralf Trønnes  * @buf cannot be allocated on the stack.
19240e1a70bSNoralf Trønnes  * Returns number of bytes received or negative error code on failure.
19340e1a70bSNoralf Trønnes  */
19440e1a70bSNoralf Trønnes int gud_usb_get(struct gud_device *gdrm, u8 request, u16 index, void *buf, size_t max_len)
19540e1a70bSNoralf Trønnes {
19640e1a70bSNoralf Trønnes 	return gud_usb_transfer(gdrm, true, request, index, buf, max_len);
19740e1a70bSNoralf Trønnes }
19840e1a70bSNoralf Trønnes 
19940e1a70bSNoralf Trønnes /*
20040e1a70bSNoralf Trønnes  * @buf can be allocated on the stack or NULL.
20140e1a70bSNoralf Trønnes  * Returns zero on success or negative error code on failure.
20240e1a70bSNoralf Trønnes  */
20340e1a70bSNoralf Trønnes int gud_usb_set(struct gud_device *gdrm, u8 request, u16 index, void *buf, size_t len)
20440e1a70bSNoralf Trønnes {
20540e1a70bSNoralf Trønnes 	void *trbuf = NULL;
20640e1a70bSNoralf Trønnes 	int ret;
20740e1a70bSNoralf Trønnes 
20840e1a70bSNoralf Trønnes 	if (buf && len) {
20940e1a70bSNoralf Trønnes 		trbuf = kmemdup(buf, len, GFP_KERNEL);
21040e1a70bSNoralf Trønnes 		if (!trbuf)
21140e1a70bSNoralf Trønnes 			return -ENOMEM;
21240e1a70bSNoralf Trønnes 	}
21340e1a70bSNoralf Trønnes 
21440e1a70bSNoralf Trønnes 	ret = gud_usb_transfer(gdrm, false, request, index, trbuf, len);
21540e1a70bSNoralf Trønnes 	kfree(trbuf);
21640e1a70bSNoralf Trønnes 	if (ret < 0)
21740e1a70bSNoralf Trønnes 		return ret;
21840e1a70bSNoralf Trønnes 
21940e1a70bSNoralf Trønnes 	return ret != len ? -EIO : 0;
22040e1a70bSNoralf Trønnes }
22140e1a70bSNoralf Trønnes 
22240e1a70bSNoralf Trønnes /*
22340e1a70bSNoralf Trønnes  * @val can be allocated on the stack.
22440e1a70bSNoralf Trønnes  * Returns zero on success or negative error code on failure.
22540e1a70bSNoralf Trønnes  */
22640e1a70bSNoralf Trønnes int gud_usb_get_u8(struct gud_device *gdrm, u8 request, u16 index, u8 *val)
22740e1a70bSNoralf Trønnes {
22840e1a70bSNoralf Trønnes 	u8 *buf;
22940e1a70bSNoralf Trønnes 	int ret;
23040e1a70bSNoralf Trønnes 
23140e1a70bSNoralf Trønnes 	buf = kmalloc(sizeof(*val), GFP_KERNEL);
23240e1a70bSNoralf Trønnes 	if (!buf)
23340e1a70bSNoralf Trønnes 		return -ENOMEM;
23440e1a70bSNoralf Trønnes 
23540e1a70bSNoralf Trønnes 	ret = gud_usb_get(gdrm, request, index, buf, sizeof(*val));
23640e1a70bSNoralf Trønnes 	*val = *buf;
23740e1a70bSNoralf Trønnes 	kfree(buf);
23840e1a70bSNoralf Trønnes 	if (ret < 0)
23940e1a70bSNoralf Trønnes 		return ret;
24040e1a70bSNoralf Trønnes 
24140e1a70bSNoralf Trønnes 	return ret != sizeof(*val) ? -EIO : 0;
24240e1a70bSNoralf Trønnes }
24340e1a70bSNoralf Trønnes 
24440e1a70bSNoralf Trønnes /* Returns zero on success or negative error code on failure. */
24540e1a70bSNoralf Trønnes int gud_usb_set_u8(struct gud_device *gdrm, u8 request, u8 val)
24640e1a70bSNoralf Trønnes {
24740e1a70bSNoralf Trønnes 	return gud_usb_set(gdrm, request, 0, &val, sizeof(val));
24840e1a70bSNoralf Trønnes }
24940e1a70bSNoralf Trønnes 
25040e1a70bSNoralf Trønnes static int gud_get_properties(struct gud_device *gdrm)
25140e1a70bSNoralf Trønnes {
25240e1a70bSNoralf Trønnes 	struct gud_property_req *properties;
25340e1a70bSNoralf Trønnes 	unsigned int i, num_properties;
25440e1a70bSNoralf Trønnes 	int ret;
25540e1a70bSNoralf Trønnes 
25640e1a70bSNoralf Trønnes 	properties = kcalloc(GUD_PROPERTIES_MAX_NUM, sizeof(*properties), GFP_KERNEL);
25740e1a70bSNoralf Trønnes 	if (!properties)
25840e1a70bSNoralf Trønnes 		return -ENOMEM;
25940e1a70bSNoralf Trønnes 
26040e1a70bSNoralf Trønnes 	ret = gud_usb_get(gdrm, GUD_REQ_GET_PROPERTIES, 0,
26140e1a70bSNoralf Trønnes 			  properties, GUD_PROPERTIES_MAX_NUM * sizeof(*properties));
26240e1a70bSNoralf Trønnes 	if (ret <= 0)
26340e1a70bSNoralf Trønnes 		goto out;
26440e1a70bSNoralf Trønnes 	if (ret % sizeof(*properties)) {
26540e1a70bSNoralf Trønnes 		ret = -EIO;
26640e1a70bSNoralf Trønnes 		goto out;
26740e1a70bSNoralf Trønnes 	}
26840e1a70bSNoralf Trønnes 
26940e1a70bSNoralf Trønnes 	num_properties = ret / sizeof(*properties);
27040e1a70bSNoralf Trønnes 	ret = 0;
27140e1a70bSNoralf Trønnes 
27240e1a70bSNoralf Trønnes 	gdrm->properties = drmm_kcalloc(&gdrm->drm, num_properties, sizeof(*gdrm->properties),
27340e1a70bSNoralf Trønnes 					GFP_KERNEL);
27440e1a70bSNoralf Trønnes 	if (!gdrm->properties) {
27540e1a70bSNoralf Trønnes 		ret = -ENOMEM;
27640e1a70bSNoralf Trønnes 		goto out;
27740e1a70bSNoralf Trønnes 	}
27840e1a70bSNoralf Trønnes 
27940e1a70bSNoralf Trønnes 	for (i = 0; i < num_properties; i++) {
28040e1a70bSNoralf Trønnes 		u16 prop = le16_to_cpu(properties[i].prop);
28140e1a70bSNoralf Trønnes 		u64 val = le64_to_cpu(properties[i].val);
28240e1a70bSNoralf Trønnes 
28340e1a70bSNoralf Trønnes 		switch (prop) {
28440e1a70bSNoralf Trønnes 		case GUD_PROPERTY_ROTATION:
28540e1a70bSNoralf Trønnes 			/*
28640e1a70bSNoralf Trønnes 			 * DRM UAPI matches the protocol so use the value directly,
28740e1a70bSNoralf Trønnes 			 * but mask out any additions on future devices.
28840e1a70bSNoralf Trønnes 			 */
28940e1a70bSNoralf Trønnes 			val &= GUD_ROTATION_MASK;
29040e1a70bSNoralf Trønnes 			ret = drm_plane_create_rotation_property(&gdrm->pipe.plane,
29140e1a70bSNoralf Trønnes 								 DRM_MODE_ROTATE_0, val);
29240e1a70bSNoralf Trønnes 			break;
29340e1a70bSNoralf Trønnes 		default:
29440e1a70bSNoralf Trønnes 			/* New ones might show up in future devices, skip those we don't know. */
29540e1a70bSNoralf Trønnes 			drm_dbg(&gdrm->drm, "Ignoring unknown property: %u\n", prop);
29640e1a70bSNoralf Trønnes 			continue;
29740e1a70bSNoralf Trønnes 		}
29840e1a70bSNoralf Trønnes 
29940e1a70bSNoralf Trønnes 		if (ret)
30040e1a70bSNoralf Trønnes 			goto out;
30140e1a70bSNoralf Trønnes 
30240e1a70bSNoralf Trønnes 		gdrm->properties[gdrm->num_properties++] = prop;
30340e1a70bSNoralf Trønnes 	}
30440e1a70bSNoralf Trønnes out:
30540e1a70bSNoralf Trønnes 	kfree(properties);
30640e1a70bSNoralf Trønnes 
30740e1a70bSNoralf Trønnes 	return ret;
30840e1a70bSNoralf Trønnes }
30940e1a70bSNoralf Trønnes 
31040e1a70bSNoralf Trønnes /*
31140e1a70bSNoralf Trønnes  * FIXME: Dma-buf sharing requires DMA support by the importing device.
31240e1a70bSNoralf Trønnes  *        This function is a workaround to make USB devices work as well.
31340e1a70bSNoralf Trønnes  *        See todo.rst for how to fix the issue in the dma-buf framework.
31440e1a70bSNoralf Trønnes  */
31540e1a70bSNoralf Trønnes static struct drm_gem_object *gud_gem_prime_import(struct drm_device *drm, struct dma_buf *dma_buf)
31640e1a70bSNoralf Trønnes {
31740e1a70bSNoralf Trønnes 	struct gud_device *gdrm = to_gud_device(drm);
31840e1a70bSNoralf Trønnes 
31940e1a70bSNoralf Trønnes 	if (!gdrm->dmadev)
32040e1a70bSNoralf Trønnes 		return ERR_PTR(-ENODEV);
32140e1a70bSNoralf Trønnes 
32240e1a70bSNoralf Trønnes 	return drm_gem_prime_import_dev(drm, dma_buf, gdrm->dmadev);
32340e1a70bSNoralf Trønnes }
32440e1a70bSNoralf Trønnes 
32540e1a70bSNoralf Trønnes static int gud_stats_debugfs(struct seq_file *m, void *data)
32640e1a70bSNoralf Trønnes {
32740e1a70bSNoralf Trønnes 	struct drm_info_node *node = m->private;
32840e1a70bSNoralf Trønnes 	struct gud_device *gdrm = to_gud_device(node->minor->dev);
32940e1a70bSNoralf Trønnes 	char buf[10];
33040e1a70bSNoralf Trønnes 
33140e1a70bSNoralf Trønnes 	string_get_size(gdrm->bulk_len, 1, STRING_UNITS_2, buf, sizeof(buf));
33240e1a70bSNoralf Trønnes 	seq_printf(m, "Max buffer size: %s\n", buf);
33340e1a70bSNoralf Trønnes 	seq_printf(m, "Number of errors:  %u\n", gdrm->stats_num_errors);
33440e1a70bSNoralf Trønnes 
33540e1a70bSNoralf Trønnes 	seq_puts(m, "Compression:      ");
33640e1a70bSNoralf Trønnes 	if (gdrm->compression & GUD_COMPRESSION_LZ4)
33740e1a70bSNoralf Trønnes 		seq_puts(m, " lz4");
33840e1a70bSNoralf Trønnes 	if (!gdrm->compression)
33940e1a70bSNoralf Trønnes 		seq_puts(m, " none");
34040e1a70bSNoralf Trønnes 	seq_puts(m, "\n");
34140e1a70bSNoralf Trønnes 
34240e1a70bSNoralf Trønnes 	if (gdrm->compression) {
34340e1a70bSNoralf Trønnes 		u64 remainder;
34440e1a70bSNoralf Trønnes 		u64 ratio = div64_u64_rem(gdrm->stats_length, gdrm->stats_actual_length,
34540e1a70bSNoralf Trønnes 					  &remainder);
34640e1a70bSNoralf Trønnes 		u64 ratio_frac = div64_u64(remainder * 10, gdrm->stats_actual_length);
34740e1a70bSNoralf Trønnes 
34840e1a70bSNoralf Trønnes 		seq_printf(m, "Compression ratio: %llu.%llu\n", ratio, ratio_frac);
34940e1a70bSNoralf Trønnes 	}
35040e1a70bSNoralf Trønnes 
35140e1a70bSNoralf Trønnes 	return 0;
35240e1a70bSNoralf Trønnes }
35340e1a70bSNoralf Trønnes 
35440e1a70bSNoralf Trønnes static const struct drm_info_list gud_debugfs_list[] = {
35540e1a70bSNoralf Trønnes 	{ "stats", gud_stats_debugfs, 0, NULL },
35640e1a70bSNoralf Trønnes };
35740e1a70bSNoralf Trønnes 
35840e1a70bSNoralf Trønnes static void gud_debugfs_init(struct drm_minor *minor)
35940e1a70bSNoralf Trønnes {
36040e1a70bSNoralf Trønnes 	drm_debugfs_create_files(gud_debugfs_list, ARRAY_SIZE(gud_debugfs_list),
36140e1a70bSNoralf Trønnes 				 minor->debugfs_root, minor);
36240e1a70bSNoralf Trønnes }
36340e1a70bSNoralf Trønnes 
36440e1a70bSNoralf Trønnes static const struct drm_simple_display_pipe_funcs gud_pipe_funcs = {
36540e1a70bSNoralf Trønnes 	.check      = gud_pipe_check,
36640e1a70bSNoralf Trønnes 	.update	    = gud_pipe_update,
36740e1a70bSNoralf Trønnes };
36840e1a70bSNoralf Trønnes 
36940e1a70bSNoralf Trønnes static const struct drm_mode_config_funcs gud_mode_config_funcs = {
37040e1a70bSNoralf Trønnes 	.fb_create = drm_gem_fb_create_with_dirty,
37140e1a70bSNoralf Trønnes 	.atomic_check = drm_atomic_helper_check,
37240e1a70bSNoralf Trønnes 	.atomic_commit = drm_atomic_helper_commit,
37340e1a70bSNoralf Trønnes };
37440e1a70bSNoralf Trønnes 
37540e1a70bSNoralf Trønnes static const u64 gud_pipe_modifiers[] = {
37640e1a70bSNoralf Trønnes 	DRM_FORMAT_MOD_LINEAR,
37740e1a70bSNoralf Trønnes 	DRM_FORMAT_MOD_INVALID
37840e1a70bSNoralf Trønnes };
37940e1a70bSNoralf Trønnes 
38040e1a70bSNoralf Trønnes DEFINE_DRM_GEM_FOPS(gud_fops);
38140e1a70bSNoralf Trønnes 
38240e1a70bSNoralf Trønnes static const struct drm_driver gud_drm_driver = {
38340e1a70bSNoralf Trønnes 	.driver_features	= DRIVER_MODESET | DRIVER_GEM | DRIVER_ATOMIC,
38440e1a70bSNoralf Trønnes 	.fops			= &gud_fops,
38540e1a70bSNoralf Trønnes 	DRM_GEM_SHMEM_DRIVER_OPS,
38640e1a70bSNoralf Trønnes 	.gem_prime_import	= gud_gem_prime_import,
38740e1a70bSNoralf Trønnes 	.debugfs_init		= gud_debugfs_init,
38840e1a70bSNoralf Trønnes 
38940e1a70bSNoralf Trønnes 	.name			= "gud",
39040e1a70bSNoralf Trønnes 	.desc			= "Generic USB Display",
39140e1a70bSNoralf Trønnes 	.date			= "20200422",
39240e1a70bSNoralf Trønnes 	.major			= 1,
39340e1a70bSNoralf Trønnes 	.minor			= 0,
39440e1a70bSNoralf Trønnes };
39540e1a70bSNoralf Trønnes 
3962eecd93bSNoralf Trønnes static int gud_alloc_bulk_buffer(struct gud_device *gdrm)
3972eecd93bSNoralf Trønnes {
3982eecd93bSNoralf Trønnes 	unsigned int i, num_pages;
3992eecd93bSNoralf Trønnes 	struct page **pages;
4002eecd93bSNoralf Trønnes 	void *ptr;
4012eecd93bSNoralf Trønnes 	int ret;
4022eecd93bSNoralf Trønnes 
4032eecd93bSNoralf Trønnes 	gdrm->bulk_buf = vmalloc_32(gdrm->bulk_len);
4042eecd93bSNoralf Trønnes 	if (!gdrm->bulk_buf)
4052eecd93bSNoralf Trønnes 		return -ENOMEM;
4062eecd93bSNoralf Trønnes 
4072eecd93bSNoralf Trønnes 	num_pages = DIV_ROUND_UP(gdrm->bulk_len, PAGE_SIZE);
4082eecd93bSNoralf Trønnes 	pages = kmalloc_array(num_pages, sizeof(struct page *), GFP_KERNEL);
4092eecd93bSNoralf Trønnes 	if (!pages)
4102eecd93bSNoralf Trønnes 		return -ENOMEM;
4112eecd93bSNoralf Trønnes 
4122eecd93bSNoralf Trønnes 	for (i = 0, ptr = gdrm->bulk_buf; i < num_pages; i++, ptr += PAGE_SIZE)
4132eecd93bSNoralf Trønnes 		pages[i] = vmalloc_to_page(ptr);
4142eecd93bSNoralf Trønnes 
4152eecd93bSNoralf Trønnes 	ret = sg_alloc_table_from_pages(&gdrm->bulk_sgt, pages, num_pages,
4162eecd93bSNoralf Trønnes 					0, gdrm->bulk_len, GFP_KERNEL);
4172eecd93bSNoralf Trønnes 	kfree(pages);
4182eecd93bSNoralf Trønnes 
4192eecd93bSNoralf Trønnes 	return ret;
4202eecd93bSNoralf Trønnes }
4212eecd93bSNoralf Trønnes 
422f8ac863bSNoralf Trønnes static void gud_free_buffers_and_mutex(void *data)
42340e1a70bSNoralf Trønnes {
424f8ac863bSNoralf Trønnes 	struct gud_device *gdrm = data;
42540e1a70bSNoralf Trønnes 
42640e1a70bSNoralf Trønnes 	vfree(gdrm->compress_buf);
427f8ac863bSNoralf Trønnes 	gdrm->compress_buf = NULL;
4282eecd93bSNoralf Trønnes 	sg_free_table(&gdrm->bulk_sgt);
4292eecd93bSNoralf Trønnes 	vfree(gdrm->bulk_buf);
430f8ac863bSNoralf Trønnes 	gdrm->bulk_buf = NULL;
43140e1a70bSNoralf Trønnes 	mutex_destroy(&gdrm->ctrl_lock);
43240e1a70bSNoralf Trønnes }
43340e1a70bSNoralf Trønnes 
43440e1a70bSNoralf Trønnes static int gud_probe(struct usb_interface *intf, const struct usb_device_id *id)
43540e1a70bSNoralf Trønnes {
43640e1a70bSNoralf Trønnes 	const struct drm_format_info *xrgb8888_emulation_format = NULL;
43740e1a70bSNoralf Trønnes 	bool rgb565_supported = false, xrgb8888_supported = false;
43840e1a70bSNoralf Trønnes 	unsigned int num_formats_dev, num_formats = 0;
43940e1a70bSNoralf Trønnes 	struct usb_endpoint_descriptor *bulk_out;
44040e1a70bSNoralf Trønnes 	struct gud_display_descriptor_req desc;
44140e1a70bSNoralf Trønnes 	struct device *dev = &intf->dev;
44240e1a70bSNoralf Trønnes 	size_t max_buffer_size = 0;
44340e1a70bSNoralf Trønnes 	struct gud_device *gdrm;
44440e1a70bSNoralf Trønnes 	struct drm_device *drm;
44540e1a70bSNoralf Trønnes 	u8 *formats_dev;
44640e1a70bSNoralf Trønnes 	u32 *formats;
44740e1a70bSNoralf Trønnes 	int ret, i;
44840e1a70bSNoralf Trønnes 
44940e1a70bSNoralf Trønnes 	ret = usb_find_bulk_out_endpoint(intf->cur_altsetting, &bulk_out);
45040e1a70bSNoralf Trønnes 	if (ret)
45140e1a70bSNoralf Trønnes 		return ret;
45240e1a70bSNoralf Trønnes 
45340e1a70bSNoralf Trønnes 	ret = gud_get_display_descriptor(intf, &desc);
45440e1a70bSNoralf Trønnes 	if (ret) {
45540e1a70bSNoralf Trønnes 		DRM_DEV_DEBUG_DRIVER(dev, "Not a display interface: ret=%d\n", ret);
45640e1a70bSNoralf Trønnes 		return -ENODEV;
45740e1a70bSNoralf Trønnes 	}
45840e1a70bSNoralf Trønnes 
45940e1a70bSNoralf Trønnes 	if (desc.version > 1) {
46040e1a70bSNoralf Trønnes 		dev_err(dev, "Protocol version %u is not supported\n", desc.version);
46140e1a70bSNoralf Trønnes 		return -ENODEV;
46240e1a70bSNoralf Trønnes 	}
46340e1a70bSNoralf Trønnes 
46440e1a70bSNoralf Trønnes 	gdrm = devm_drm_dev_alloc(dev, &gud_drm_driver, struct gud_device, drm);
46540e1a70bSNoralf Trønnes 	if (IS_ERR(gdrm))
46640e1a70bSNoralf Trønnes 		return PTR_ERR(gdrm);
46740e1a70bSNoralf Trønnes 
46840e1a70bSNoralf Trønnes 	drm = &gdrm->drm;
46940e1a70bSNoralf Trønnes 	drm->mode_config.funcs = &gud_mode_config_funcs;
47040e1a70bSNoralf Trønnes 	ret = drmm_mode_config_init(drm);
47140e1a70bSNoralf Trønnes 	if (ret)
47240e1a70bSNoralf Trønnes 		return ret;
47340e1a70bSNoralf Trønnes 
47440e1a70bSNoralf Trønnes 	gdrm->flags = le32_to_cpu(desc.flags);
47540e1a70bSNoralf Trønnes 	gdrm->compression = desc.compression & GUD_COMPRESSION_LZ4;
47640e1a70bSNoralf Trønnes 
47740e1a70bSNoralf Trønnes 	if (gdrm->flags & GUD_DISPLAY_FLAG_FULL_UPDATE && gdrm->compression)
47840e1a70bSNoralf Trønnes 		return -EINVAL;
47940e1a70bSNoralf Trønnes 
48040e1a70bSNoralf Trønnes 	mutex_init(&gdrm->ctrl_lock);
48140e1a70bSNoralf Trønnes 	mutex_init(&gdrm->damage_lock);
48240e1a70bSNoralf Trønnes 	INIT_WORK(&gdrm->work, gud_flush_work);
48340e1a70bSNoralf Trønnes 	gud_clear_damage(gdrm);
48440e1a70bSNoralf Trønnes 
485f8ac863bSNoralf Trønnes 	ret = devm_add_action(dev, gud_free_buffers_and_mutex, gdrm);
48640e1a70bSNoralf Trønnes 	if (ret)
48740e1a70bSNoralf Trønnes 		return ret;
48840e1a70bSNoralf Trønnes 
48940e1a70bSNoralf Trønnes 	drm->mode_config.min_width = le32_to_cpu(desc.min_width);
49040e1a70bSNoralf Trønnes 	drm->mode_config.max_width = le32_to_cpu(desc.max_width);
49140e1a70bSNoralf Trønnes 	drm->mode_config.min_height = le32_to_cpu(desc.min_height);
49240e1a70bSNoralf Trønnes 	drm->mode_config.max_height = le32_to_cpu(desc.max_height);
49340e1a70bSNoralf Trønnes 
49440e1a70bSNoralf Trønnes 	formats_dev = devm_kmalloc(dev, GUD_FORMATS_MAX_NUM, GFP_KERNEL);
49540e1a70bSNoralf Trønnes 	/* Add room for emulated XRGB8888 */
49640e1a70bSNoralf Trønnes 	formats = devm_kmalloc_array(dev, GUD_FORMATS_MAX_NUM + 1, sizeof(*formats), GFP_KERNEL);
49740e1a70bSNoralf Trønnes 	if (!formats_dev || !formats)
49840e1a70bSNoralf Trønnes 		return -ENOMEM;
49940e1a70bSNoralf Trønnes 
50040e1a70bSNoralf Trønnes 	ret = gud_usb_get(gdrm, GUD_REQ_GET_FORMATS, 0, formats_dev, GUD_FORMATS_MAX_NUM);
50140e1a70bSNoralf Trønnes 	if (ret < 0)
50240e1a70bSNoralf Trønnes 		return ret;
50340e1a70bSNoralf Trønnes 
50440e1a70bSNoralf Trønnes 	num_formats_dev = ret;
50540e1a70bSNoralf Trønnes 	for (i = 0; i < num_formats_dev; i++) {
50640e1a70bSNoralf Trønnes 		const struct drm_format_info *info;
50740e1a70bSNoralf Trønnes 		size_t fmt_buf_size;
50840e1a70bSNoralf Trønnes 		u32 format;
50940e1a70bSNoralf Trønnes 
51040e1a70bSNoralf Trønnes 		format = gud_to_fourcc(formats_dev[i]);
51140e1a70bSNoralf Trønnes 		if (!format) {
51240e1a70bSNoralf Trønnes 			drm_dbg(drm, "Unsupported format: 0x%02x\n", formats_dev[i]);
51340e1a70bSNoralf Trønnes 			continue;
51440e1a70bSNoralf Trønnes 		}
51540e1a70bSNoralf Trønnes 
51640e1a70bSNoralf Trønnes 		if (format == GUD_DRM_FORMAT_R1)
51740e1a70bSNoralf Trønnes 			info = &gud_drm_format_r1;
51840e1a70bSNoralf Trønnes 		else if (format == GUD_DRM_FORMAT_XRGB1111)
51940e1a70bSNoralf Trønnes 			info = &gud_drm_format_xrgb1111;
52040e1a70bSNoralf Trønnes 		else
52140e1a70bSNoralf Trønnes 			info = drm_format_info(format);
52240e1a70bSNoralf Trønnes 
52340e1a70bSNoralf Trønnes 		switch (format) {
52440e1a70bSNoralf Trønnes 		case GUD_DRM_FORMAT_R1:
52540e1a70bSNoralf Trønnes 			fallthrough;
5264cabfedcSNoralf Trønnes 		case DRM_FORMAT_R8:
5274cabfedcSNoralf Trønnes 			fallthrough;
52840e1a70bSNoralf Trønnes 		case GUD_DRM_FORMAT_XRGB1111:
529*1f25d005SNoralf Trønnes 			fallthrough;
530*1f25d005SNoralf Trønnes 		case DRM_FORMAT_RGB332:
53140e1a70bSNoralf Trønnes 			if (!xrgb8888_emulation_format)
53240e1a70bSNoralf Trønnes 				xrgb8888_emulation_format = info;
53340e1a70bSNoralf Trønnes 			break;
53440e1a70bSNoralf Trønnes 		case DRM_FORMAT_RGB565:
53540e1a70bSNoralf Trønnes 			rgb565_supported = true;
53640e1a70bSNoralf Trønnes 			if (!xrgb8888_emulation_format)
53740e1a70bSNoralf Trønnes 				xrgb8888_emulation_format = info;
53840e1a70bSNoralf Trønnes 			break;
53940e1a70bSNoralf Trønnes 		case DRM_FORMAT_XRGB8888:
54040e1a70bSNoralf Trønnes 			xrgb8888_supported = true;
54140e1a70bSNoralf Trønnes 			break;
542166633c8Skernel test robot 		}
54340e1a70bSNoralf Trønnes 
54440e1a70bSNoralf Trønnes 		fmt_buf_size = drm_format_info_min_pitch(info, 0, drm->mode_config.max_width) *
54540e1a70bSNoralf Trønnes 			       drm->mode_config.max_height;
54640e1a70bSNoralf Trønnes 		max_buffer_size = max(max_buffer_size, fmt_buf_size);
54740e1a70bSNoralf Trønnes 
54840e1a70bSNoralf Trønnes 		if (format == GUD_DRM_FORMAT_R1 || format == GUD_DRM_FORMAT_XRGB1111)
54940e1a70bSNoralf Trønnes 			continue; /* Internal not for userspace */
55040e1a70bSNoralf Trønnes 
55140e1a70bSNoralf Trønnes 		formats[num_formats++] = format;
55240e1a70bSNoralf Trønnes 	}
55340e1a70bSNoralf Trønnes 
55440e1a70bSNoralf Trønnes 	if (!num_formats && !xrgb8888_emulation_format) {
55540e1a70bSNoralf Trønnes 		dev_err(dev, "No supported pixel formats found\n");
55640e1a70bSNoralf Trønnes 		return -EINVAL;
55740e1a70bSNoralf Trønnes 	}
55840e1a70bSNoralf Trønnes 
55940e1a70bSNoralf Trønnes 	/* Prefer speed over color depth */
56040e1a70bSNoralf Trønnes 	if (rgb565_supported)
56140e1a70bSNoralf Trønnes 		drm->mode_config.preferred_depth = 16;
56240e1a70bSNoralf Trønnes 
56340e1a70bSNoralf Trønnes 	if (!xrgb8888_supported && xrgb8888_emulation_format) {
56440e1a70bSNoralf Trønnes 		gdrm->xrgb8888_emulation_format = xrgb8888_emulation_format;
56540e1a70bSNoralf Trønnes 		formats[num_formats++] = DRM_FORMAT_XRGB8888;
56640e1a70bSNoralf Trønnes 	}
56740e1a70bSNoralf Trønnes 
56840e1a70bSNoralf Trønnes 	if (desc.max_buffer_size)
56940e1a70bSNoralf Trønnes 		max_buffer_size = le32_to_cpu(desc.max_buffer_size);
5702eecd93bSNoralf Trønnes 	/* Prevent a misbehaving device from allocating loads of RAM. 4096x4096@XRGB8888 = 64 MB */
5712eecd93bSNoralf Trønnes 	if (max_buffer_size > SZ_64M)
5722eecd93bSNoralf Trønnes 		max_buffer_size = SZ_64M;
57340e1a70bSNoralf Trønnes 
57440e1a70bSNoralf Trønnes 	gdrm->bulk_pipe = usb_sndbulkpipe(interface_to_usbdev(intf), usb_endpoint_num(bulk_out));
57540e1a70bSNoralf Trønnes 	gdrm->bulk_len = max_buffer_size;
57640e1a70bSNoralf Trønnes 
5772eecd93bSNoralf Trønnes 	ret = gud_alloc_bulk_buffer(gdrm);
5782eecd93bSNoralf Trønnes 	if (ret)
5792eecd93bSNoralf Trønnes 		return ret;
5802eecd93bSNoralf Trønnes 
58140e1a70bSNoralf Trønnes 	if (gdrm->compression & GUD_COMPRESSION_LZ4) {
58240e1a70bSNoralf Trønnes 		gdrm->lz4_comp_mem = devm_kmalloc(dev, LZ4_MEM_COMPRESS, GFP_KERNEL);
58340e1a70bSNoralf Trønnes 		if (!gdrm->lz4_comp_mem)
58440e1a70bSNoralf Trønnes 			return -ENOMEM;
58540e1a70bSNoralf Trønnes 
58640e1a70bSNoralf Trønnes 		gdrm->compress_buf = vmalloc(gdrm->bulk_len);
58740e1a70bSNoralf Trønnes 		if (!gdrm->compress_buf)
58840e1a70bSNoralf Trønnes 			return -ENOMEM;
58940e1a70bSNoralf Trønnes 	}
59040e1a70bSNoralf Trønnes 
59140e1a70bSNoralf Trønnes 	ret = drm_simple_display_pipe_init(drm, &gdrm->pipe, &gud_pipe_funcs,
59240e1a70bSNoralf Trønnes 					   formats, num_formats,
59340e1a70bSNoralf Trønnes 					   gud_pipe_modifiers, NULL);
59440e1a70bSNoralf Trønnes 	if (ret)
59540e1a70bSNoralf Trønnes 		return ret;
59640e1a70bSNoralf Trønnes 
59740e1a70bSNoralf Trønnes 	devm_kfree(dev, formats);
59840e1a70bSNoralf Trønnes 	devm_kfree(dev, formats_dev);
59940e1a70bSNoralf Trønnes 
60040e1a70bSNoralf Trønnes 	ret = gud_get_properties(gdrm);
60140e1a70bSNoralf Trønnes 	if (ret) {
60240e1a70bSNoralf Trønnes 		dev_err(dev, "Failed to get properties (error=%d)\n", ret);
60340e1a70bSNoralf Trønnes 		return ret;
60440e1a70bSNoralf Trønnes 	}
60540e1a70bSNoralf Trønnes 
60640e1a70bSNoralf Trønnes 	drm_plane_enable_fb_damage_clips(&gdrm->pipe.plane);
60740e1a70bSNoralf Trønnes 
60840e1a70bSNoralf Trønnes 	ret = gud_get_connectors(gdrm);
60940e1a70bSNoralf Trønnes 	if (ret) {
61040e1a70bSNoralf Trønnes 		dev_err(dev, "Failed to get connectors (error=%d)\n", ret);
61140e1a70bSNoralf Trønnes 		return ret;
61240e1a70bSNoralf Trønnes 	}
61340e1a70bSNoralf Trønnes 
61440e1a70bSNoralf Trønnes 	drm_mode_config_reset(drm);
61540e1a70bSNoralf Trønnes 
61640e1a70bSNoralf Trønnes 	usb_set_intfdata(intf, gdrm);
61740e1a70bSNoralf Trønnes 
61840e1a70bSNoralf Trønnes 	gdrm->dmadev = usb_intf_get_dma_device(intf);
61940e1a70bSNoralf Trønnes 	if (!gdrm->dmadev)
62040e1a70bSNoralf Trønnes 		dev_warn(dev, "buffer sharing not supported");
62140e1a70bSNoralf Trønnes 
62240e1a70bSNoralf Trønnes 	ret = drm_dev_register(drm, 0);
62340e1a70bSNoralf Trønnes 	if (ret) {
62440e1a70bSNoralf Trønnes 		put_device(gdrm->dmadev);
62540e1a70bSNoralf Trønnes 		return ret;
62640e1a70bSNoralf Trønnes 	}
62740e1a70bSNoralf Trønnes 
62840e1a70bSNoralf Trønnes 	drm_kms_helper_poll_init(drm);
62940e1a70bSNoralf Trønnes 
63040e1a70bSNoralf Trønnes 	drm_fbdev_generic_setup(drm, 0);
63140e1a70bSNoralf Trønnes 
63240e1a70bSNoralf Trønnes 	return 0;
63340e1a70bSNoralf Trønnes }
63440e1a70bSNoralf Trønnes 
63540e1a70bSNoralf Trønnes static void gud_disconnect(struct usb_interface *interface)
63640e1a70bSNoralf Trønnes {
63740e1a70bSNoralf Trønnes 	struct gud_device *gdrm = usb_get_intfdata(interface);
63840e1a70bSNoralf Trønnes 	struct drm_device *drm = &gdrm->drm;
63940e1a70bSNoralf Trønnes 
64040e1a70bSNoralf Trønnes 	drm_dbg(drm, "%s:\n", __func__);
64140e1a70bSNoralf Trønnes 
64240e1a70bSNoralf Trønnes 	drm_kms_helper_poll_fini(drm);
64340e1a70bSNoralf Trønnes 	drm_dev_unplug(drm);
64440e1a70bSNoralf Trønnes 	drm_atomic_helper_shutdown(drm);
64540e1a70bSNoralf Trønnes 	put_device(gdrm->dmadev);
64640e1a70bSNoralf Trønnes 	gdrm->dmadev = NULL;
64740e1a70bSNoralf Trønnes }
64840e1a70bSNoralf Trønnes 
64940e1a70bSNoralf Trønnes static int gud_suspend(struct usb_interface *intf, pm_message_t message)
65040e1a70bSNoralf Trønnes {
65140e1a70bSNoralf Trønnes 	struct gud_device *gdrm = usb_get_intfdata(intf);
65240e1a70bSNoralf Trønnes 
65340e1a70bSNoralf Trønnes 	return drm_mode_config_helper_suspend(&gdrm->drm);
65440e1a70bSNoralf Trønnes }
65540e1a70bSNoralf Trønnes 
65640e1a70bSNoralf Trønnes static int gud_resume(struct usb_interface *intf)
65740e1a70bSNoralf Trønnes {
65840e1a70bSNoralf Trønnes 	struct gud_device *gdrm = usb_get_intfdata(intf);
65940e1a70bSNoralf Trønnes 
66040e1a70bSNoralf Trønnes 	drm_mode_config_helper_resume(&gdrm->drm);
66140e1a70bSNoralf Trønnes 
66240e1a70bSNoralf Trønnes 	return 0;
66340e1a70bSNoralf Trønnes }
66440e1a70bSNoralf Trønnes 
66540e1a70bSNoralf Trønnes static const struct usb_device_id gud_id_table[] = {
66640e1a70bSNoralf Trønnes 	{ USB_DEVICE_INTERFACE_CLASS(0x1d50, 0x614d, USB_CLASS_VENDOR_SPEC) },
667b3f4ef66SNoralf Trønnes 	{ USB_DEVICE_INTERFACE_CLASS(0x16d0, 0x10a9, USB_CLASS_VENDOR_SPEC) },
66840e1a70bSNoralf Trønnes 	{ }
66940e1a70bSNoralf Trønnes };
67040e1a70bSNoralf Trønnes 
67140e1a70bSNoralf Trønnes MODULE_DEVICE_TABLE(usb, gud_id_table);
67240e1a70bSNoralf Trønnes 
67340e1a70bSNoralf Trønnes static struct usb_driver gud_usb_driver = {
67440e1a70bSNoralf Trønnes 	.name		= "gud",
67540e1a70bSNoralf Trønnes 	.probe		= gud_probe,
67640e1a70bSNoralf Trønnes 	.disconnect	= gud_disconnect,
67740e1a70bSNoralf Trønnes 	.id_table	= gud_id_table,
67840e1a70bSNoralf Trønnes 	.suspend	= gud_suspend,
67940e1a70bSNoralf Trønnes 	.resume		= gud_resume,
68040e1a70bSNoralf Trønnes 	.reset_resume	= gud_resume,
68140e1a70bSNoralf Trønnes };
68240e1a70bSNoralf Trønnes 
68340e1a70bSNoralf Trønnes module_usb_driver(gud_usb_driver);
68440e1a70bSNoralf Trønnes 
68540e1a70bSNoralf Trønnes MODULE_AUTHOR("Noralf Trønnes");
68640e1a70bSNoralf Trønnes MODULE_LICENSE("Dual MIT/GPL");
687