exynos_drm.c revision 5324fb0d
1e88f27b3Smrg/*
2e88f27b3Smrg * Copyright (C) 2012 Samsung Electronics Co., Ltd.
3e88f27b3Smrg *
4e88f27b3Smrg * Permission is hereby granted, free of charge, to any person obtaining a
5e88f27b3Smrg * copy of this software and associated documentation files (the "Software"),
6e88f27b3Smrg * to deal in the Software without restriction, including without limitation
7e88f27b3Smrg * the rights to use, copy, modify, merge, publish, distribute, sublicense,
8e88f27b3Smrg * and/or sell copies of the Software, and to permit persons to whom the
9e88f27b3Smrg * Software is furnished to do so, subject to the following conditions:
10e88f27b3Smrg *
11e88f27b3Smrg * The above copyright notice and this permission notice (including the next
12e88f27b3Smrg * paragraph) shall be included in all copies or substantial portions of the
13e88f27b3Smrg * Software.
14e88f27b3Smrg *
15e88f27b3Smrg * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
16e88f27b3Smrg * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
17e88f27b3Smrg * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.  IN NO EVENT SHALL
18e88f27b3Smrg * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
19e88f27b3Smrg * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
20e88f27b3Smrg * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
21e88f27b3Smrg * SOFTWARE.
22e88f27b3Smrg *
23e88f27b3Smrg * Authors:
24e88f27b3Smrg *    Inki Dae <inki.dae@samsung.com>
25e88f27b3Smrg */
26e88f27b3Smrg
27e88f27b3Smrg#include <stdlib.h>
28e88f27b3Smrg#include <stdio.h>
29e88f27b3Smrg#include <string.h>
30e88f27b3Smrg#include <errno.h>
313f012e29Smrg#include <unistd.h>
32e88f27b3Smrg
33e88f27b3Smrg#include <sys/mman.h>
34e88f27b3Smrg#include <linux/stddef.h>
35e88f27b3Smrg
36e88f27b3Smrg#include <xf86drm.h>
37e88f27b3Smrg
38e6188e58Smrg#include "libdrm_macros.h"
39e88f27b3Smrg#include "exynos_drm.h"
40e88f27b3Smrg#include "exynos_drmif.h"
41e88f27b3Smrg
423f012e29Smrg#define U642VOID(x) ((void *)(unsigned long)(x))
433f012e29Smrg
44e88f27b3Smrg/*
45e88f27b3Smrg * Create exynos drm device object.
46e88f27b3Smrg *
47e88f27b3Smrg * @fd: file descriptor to exynos drm driver opened.
48e88f27b3Smrg *
49e88f27b3Smrg * if true, return the device object else NULL.
50e88f27b3Smrg */
517cdc0497Smrgdrm_public struct exynos_device * exynos_device_create(int fd)
52e88f27b3Smrg{
53e88f27b3Smrg	struct exynos_device *dev;
54e88f27b3Smrg
55e88f27b3Smrg	dev = calloc(sizeof(*dev), 1);
56e88f27b3Smrg	if (!dev) {
57e88f27b3Smrg		fprintf(stderr, "failed to create device[%s].\n",
58e88f27b3Smrg				strerror(errno));
59e88f27b3Smrg		return NULL;
60e88f27b3Smrg	}
61e88f27b3Smrg
62e88f27b3Smrg	dev->fd = fd;
63e88f27b3Smrg
64e88f27b3Smrg	return dev;
65e88f27b3Smrg}
66e88f27b3Smrg
67e88f27b3Smrg/*
68e88f27b3Smrg * Destroy exynos drm device object
69e88f27b3Smrg *
70e88f27b3Smrg * @dev: exynos drm device object.
71e88f27b3Smrg */
727cdc0497Smrgdrm_public void exynos_device_destroy(struct exynos_device *dev)
73e88f27b3Smrg{
74e88f27b3Smrg	free(dev);
75e88f27b3Smrg}
76e88f27b3Smrg
77e88f27b3Smrg/*
78e88f27b3Smrg * Create a exynos buffer object to exynos drm device.
79e88f27b3Smrg *
80e88f27b3Smrg * @dev: exynos drm device object.
81e88f27b3Smrg * @size: user-desired size.
82e88f27b3Smrg * flags: user-desired memory type.
83e88f27b3Smrg *	user can set one or more types among several types to memory
84e88f27b3Smrg *	allocation and cache attribute types. and as default,
85e88f27b3Smrg *	EXYNOS_BO_NONCONTIG and EXYNOS-BO_NONCACHABLE types would
86e88f27b3Smrg *	be used.
87e88f27b3Smrg *
88e88f27b3Smrg * if true, return a exynos buffer object else NULL.
89e88f27b3Smrg */
907cdc0497Smrgdrm_public struct exynos_bo * exynos_bo_create(struct exynos_device *dev,
917cdc0497Smrg                                               size_t size, uint32_t flags)
92e88f27b3Smrg{
93e88f27b3Smrg	struct exynos_bo *bo;
94e88f27b3Smrg	struct drm_exynos_gem_create req = {
95e88f27b3Smrg		.size = size,
96e88f27b3Smrg		.flags = flags,
97e88f27b3Smrg	};
98e88f27b3Smrg
99e88f27b3Smrg	if (size == 0) {
100e88f27b3Smrg		fprintf(stderr, "invalid size.\n");
101e88f27b3Smrg		goto fail;
102e88f27b3Smrg	}
103e88f27b3Smrg
104e88f27b3Smrg	bo = calloc(sizeof(*bo), 1);
105e88f27b3Smrg	if (!bo) {
106e88f27b3Smrg		fprintf(stderr, "failed to create bo[%s].\n",
107e88f27b3Smrg				strerror(errno));
108e88f27b3Smrg		goto err_free_bo;
109e88f27b3Smrg	}
110e88f27b3Smrg
111e88f27b3Smrg	bo->dev = dev;
112e88f27b3Smrg
113e88f27b3Smrg	if (drmIoctl(dev->fd, DRM_IOCTL_EXYNOS_GEM_CREATE, &req)){
114e88f27b3Smrg		fprintf(stderr, "failed to create gem object[%s].\n",
115e88f27b3Smrg				strerror(errno));
116e88f27b3Smrg		goto err_free_bo;
117e88f27b3Smrg	}
118e88f27b3Smrg
119e88f27b3Smrg	bo->handle = req.handle;
120e88f27b3Smrg	bo->size = size;
121e88f27b3Smrg	bo->flags = flags;
122e88f27b3Smrg
123e88f27b3Smrg	return bo;
124e88f27b3Smrg
125e88f27b3Smrgerr_free_bo:
126e88f27b3Smrg	free(bo);
127e88f27b3Smrgfail:
128e88f27b3Smrg	return NULL;
129e88f27b3Smrg}
130e88f27b3Smrg
131e88f27b3Smrg/*
132e88f27b3Smrg * Get information to gem region allocated.
133e88f27b3Smrg *
134e88f27b3Smrg * @dev: exynos drm device object.
135e88f27b3Smrg * @handle: gem handle to request gem info.
136e88f27b3Smrg * @size: size to gem object and returned by kernel side.
137e88f27b3Smrg * @flags: gem flags to gem object and returned by kernel side.
138e88f27b3Smrg *
139e88f27b3Smrg * with this function call, you can get flags and size to gem handle
140e88f27b3Smrg * through bo object.
141e88f27b3Smrg *
142e88f27b3Smrg * if true, return 0 else negative.
143e88f27b3Smrg */
1447cdc0497Smrgdrm_public int exynos_bo_get_info(struct exynos_device *dev, uint32_t handle,
1457cdc0497Smrg                                  size_t *size, uint32_t *flags)
146e88f27b3Smrg{
147e88f27b3Smrg	int ret;
148e88f27b3Smrg	struct drm_exynos_gem_info req = {
149e88f27b3Smrg		.handle = handle,
150e88f27b3Smrg	};
151e88f27b3Smrg
152e88f27b3Smrg	ret = drmIoctl(dev->fd, DRM_IOCTL_EXYNOS_GEM_GET, &req);
153e88f27b3Smrg	if (ret < 0) {
154e88f27b3Smrg		fprintf(stderr, "failed to get gem object information[%s].\n",
155e88f27b3Smrg				strerror(errno));
156e88f27b3Smrg		return ret;
157e88f27b3Smrg	}
158e88f27b3Smrg
159e88f27b3Smrg	*size = req.size;
160e88f27b3Smrg	*flags = req.flags;
161e88f27b3Smrg
162e88f27b3Smrg	return 0;
163e88f27b3Smrg}
164e88f27b3Smrg
165e88f27b3Smrg/*
166e88f27b3Smrg * Destroy a exynos buffer object.
167e88f27b3Smrg *
168e88f27b3Smrg * @bo: a exynos buffer object to be destroyed.
169e88f27b3Smrg */
1707cdc0497Smrgdrm_public void exynos_bo_destroy(struct exynos_bo *bo)
171e88f27b3Smrg{
172e88f27b3Smrg	if (!bo)
173e88f27b3Smrg		return;
174e88f27b3Smrg
175e88f27b3Smrg	if (bo->vaddr)
176e88f27b3Smrg		munmap(bo->vaddr, bo->size);
177e88f27b3Smrg
178e88f27b3Smrg	if (bo->handle) {
179e88f27b3Smrg		struct drm_gem_close req = {
180e88f27b3Smrg			.handle = bo->handle,
181e88f27b3Smrg		};
182e88f27b3Smrg
183e88f27b3Smrg		drmIoctl(bo->dev->fd, DRM_IOCTL_GEM_CLOSE, &req);
184e88f27b3Smrg	}
185e88f27b3Smrg
186e88f27b3Smrg	free(bo);
187e88f27b3Smrg}
188e88f27b3Smrg
189e88f27b3Smrg
190e88f27b3Smrg/*
191e88f27b3Smrg * Get a exynos buffer object from a gem global object name.
192e88f27b3Smrg *
193e88f27b3Smrg * @dev: a exynos device object.
194e88f27b3Smrg * @name: a gem global object name exported by another process.
195e88f27b3Smrg *
196e88f27b3Smrg * this interface is used to get a exynos buffer object from a gem
197e88f27b3Smrg * global object name sent by another process for buffer sharing.
198e88f27b3Smrg *
199e88f27b3Smrg * if true, return a exynos buffer object else NULL.
200e88f27b3Smrg *
201e88f27b3Smrg */
2027cdc0497Smrgdrm_public struct exynos_bo *
203baaff307Smrgexynos_bo_from_name(struct exynos_device *dev, uint32_t name)
204e88f27b3Smrg{
205e88f27b3Smrg	struct exynos_bo *bo;
206e88f27b3Smrg	struct drm_gem_open req = {
207e88f27b3Smrg		.name = name,
208e88f27b3Smrg	};
209e88f27b3Smrg
210e88f27b3Smrg	bo = calloc(sizeof(*bo), 1);
211e88f27b3Smrg	if (!bo) {
212e88f27b3Smrg		fprintf(stderr, "failed to allocate bo[%s].\n",
213e88f27b3Smrg				strerror(errno));
214e88f27b3Smrg		return NULL;
215e88f27b3Smrg	}
216e88f27b3Smrg
217e88f27b3Smrg	if (drmIoctl(dev->fd, DRM_IOCTL_GEM_OPEN, &req)) {
218e88f27b3Smrg		fprintf(stderr, "failed to open gem object[%s].\n",
219e88f27b3Smrg				strerror(errno));
220e88f27b3Smrg		goto err_free_bo;
221e88f27b3Smrg	}
222e88f27b3Smrg
223e88f27b3Smrg	bo->dev = dev;
224e88f27b3Smrg	bo->name = name;
225e88f27b3Smrg	bo->handle = req.handle;
226e88f27b3Smrg
227e88f27b3Smrg	return bo;
228e88f27b3Smrg
229e88f27b3Smrgerr_free_bo:
230e88f27b3Smrg	free(bo);
231e88f27b3Smrg	return NULL;
232e88f27b3Smrg}
233e88f27b3Smrg
234e88f27b3Smrg/*
235e88f27b3Smrg * Get a gem global object name from a gem object handle.
236e88f27b3Smrg *
237e88f27b3Smrg * @bo: a exynos buffer object including gem handle.
238e88f27b3Smrg * @name: a gem global object name to be got by kernel driver.
239e88f27b3Smrg *
240e88f27b3Smrg * this interface is used to get a gem global object name from a gem object
241e88f27b3Smrg * handle to a buffer that wants to share it with another process.
242e88f27b3Smrg *
243e88f27b3Smrg * if true, return 0 else negative.
244e88f27b3Smrg */
2457cdc0497Smrgdrm_public int exynos_bo_get_name(struct exynos_bo *bo, uint32_t *name)
246e88f27b3Smrg{
247e88f27b3Smrg	if (!bo->name) {
248e88f27b3Smrg		struct drm_gem_flink req = {
249e88f27b3Smrg			.handle = bo->handle,
250e88f27b3Smrg		};
251e88f27b3Smrg		int ret;
252e88f27b3Smrg
253e88f27b3Smrg		ret = drmIoctl(bo->dev->fd, DRM_IOCTL_GEM_FLINK, &req);
254e88f27b3Smrg		if (ret) {
255e88f27b3Smrg			fprintf(stderr, "failed to get gem global name[%s].\n",
256e88f27b3Smrg					strerror(errno));
257e88f27b3Smrg			return ret;
258e88f27b3Smrg		}
259e88f27b3Smrg
260e88f27b3Smrg		bo->name = req.name;
261e88f27b3Smrg	}
262e88f27b3Smrg
263e88f27b3Smrg	*name = bo->name;
264e88f27b3Smrg
265e88f27b3Smrg	return 0;
266e88f27b3Smrg}
267e88f27b3Smrg
2687cdc0497Smrgdrm_public uint32_t exynos_bo_handle(struct exynos_bo *bo)
269e88f27b3Smrg{
270e88f27b3Smrg	return bo->handle;
271e88f27b3Smrg}
272e88f27b3Smrg
273e88f27b3Smrg/*
274e88f27b3Smrg * Mmap a buffer to user space.
275e88f27b3Smrg *
276e88f27b3Smrg * @bo: a exynos buffer object including a gem object handle to be mmapped
277e88f27b3Smrg *	to user space.
278e88f27b3Smrg *
2795324fb0dSmrg * if true, user pointer mmapped else NULL.
280e88f27b3Smrg */
2817cdc0497Smrgdrm_public void *exynos_bo_map(struct exynos_bo *bo)
282e88f27b3Smrg{
283e88f27b3Smrg	if (!bo->vaddr) {
284e88f27b3Smrg		struct exynos_device *dev = bo->dev;
285e6188e58Smrg		struct drm_mode_map_dumb arg;
286e6188e58Smrg		void *map = NULL;
287e88f27b3Smrg		int ret;
288e88f27b3Smrg
289e6188e58Smrg		memset(&arg, 0, sizeof(arg));
290e6188e58Smrg		arg.handle = bo->handle;
291e6188e58Smrg
292e6188e58Smrg		ret = drmIoctl(dev->fd, DRM_IOCTL_MODE_MAP_DUMB, &arg);
293e88f27b3Smrg		if (ret) {
294e6188e58Smrg			fprintf(stderr, "failed to map dumb buffer[%s].\n",
295e88f27b3Smrg				strerror(errno));
296e88f27b3Smrg			return NULL;
297e88f27b3Smrg		}
298e88f27b3Smrg
299e6188e58Smrg		map = drm_mmap(0, bo->size, PROT_READ | PROT_WRITE, MAP_SHARED,
300e6188e58Smrg				dev->fd, arg.offset);
301e6188e58Smrg
302e6188e58Smrg		if (map != MAP_FAILED)
303e6188e58Smrg			bo->vaddr = map;
304e88f27b3Smrg	}
305e88f27b3Smrg
306e88f27b3Smrg	return bo->vaddr;
307e88f27b3Smrg}
308e88f27b3Smrg
309e88f27b3Smrg/*
310e88f27b3Smrg * Export gem object to dmabuf as file descriptor.
311e88f27b3Smrg *
312baaff307Smrg * @dev: exynos device object
313baaff307Smrg * @handle: gem handle to export as file descriptor of dmabuf
314baaff307Smrg * @fd: file descriptor returned from kernel
315e88f27b3Smrg *
316baaff307Smrg * @return: 0 on success, -1 on error, and errno will be set
317e88f27b3Smrg */
3187cdc0497Smrgdrm_public int
319baaff307Smrgexynos_prime_handle_to_fd(struct exynos_device *dev, uint32_t handle, int *fd)
320e88f27b3Smrg{
321baaff307Smrg	return drmPrimeHandleToFD(dev->fd, handle, 0, fd);
322e88f27b3Smrg}
323e88f27b3Smrg
324e88f27b3Smrg/*
325e88f27b3Smrg * Import file descriptor into gem handle.
326e88f27b3Smrg *
327baaff307Smrg * @dev: exynos device object
328baaff307Smrg * @fd: file descriptor of dmabuf to import
329baaff307Smrg * @handle: gem handle returned from kernel
330e88f27b3Smrg *
331baaff307Smrg * @return: 0 on success, -1 on error, and errno will be set
332e88f27b3Smrg */
3337cdc0497Smrgdrm_public int
334baaff307Smrgexynos_prime_fd_to_handle(struct exynos_device *dev, int fd, uint32_t *handle)
335e88f27b3Smrg{
336baaff307Smrg	return drmPrimeFDToHandle(dev->fd, fd, handle);
337e88f27b3Smrg}
338e88f27b3Smrg
339e88f27b3Smrg
340e88f27b3Smrg
341e88f27b3Smrg/*
342e88f27b3Smrg * Request Wireless Display connection or disconnection.
343e88f27b3Smrg *
344e88f27b3Smrg * @dev: a exynos device object.
345e88f27b3Smrg * @connect: indicate whether connectoin or disconnection request.
3463f012e29Smrg * @ext: indicate whether edid data includes extensions data or not.
347e88f27b3Smrg * @edid: a pointer to edid data from Wireless Display device.
348e88f27b3Smrg *
349e88f27b3Smrg * this interface is used to request Virtual Display driver connection or
350e88f27b3Smrg * disconnection. for this, user should get a edid data from the Wireless
351e88f27b3Smrg * Display device and then send that data to kernel driver with connection
352e88f27b3Smrg * request
353e88f27b3Smrg *
354e88f27b3Smrg * if true, return 0 else negative.
355e88f27b3Smrg */
3567cdc0497Smrgdrm_public int
357baaff307Smrgexynos_vidi_connection(struct exynos_device *dev, uint32_t connect,
358baaff307Smrg		       uint32_t ext, void *edid)
359e88f27b3Smrg{
360e88f27b3Smrg	struct drm_exynos_vidi_connection req = {
361e88f27b3Smrg		.connection	= connect,
362e88f27b3Smrg		.extensions	= ext,
363baaff307Smrg		.edid		= (uint64_t)(uintptr_t)edid,
364e88f27b3Smrg	};
365e88f27b3Smrg	int ret;
366e88f27b3Smrg
367e88f27b3Smrg	ret = drmIoctl(dev->fd, DRM_IOCTL_EXYNOS_VIDI_CONNECTION, &req);
368e88f27b3Smrg	if (ret) {
369e88f27b3Smrg		fprintf(stderr, "failed to request vidi connection[%s].\n",
370e88f27b3Smrg				strerror(errno));
371e88f27b3Smrg		return ret;
372e88f27b3Smrg	}
373e88f27b3Smrg
374e88f27b3Smrg	return 0;
375e88f27b3Smrg}
3763f012e29Smrg
3773f012e29Smrgstatic void
3783f012e29Smrgexynos_handle_vendor(int fd, struct drm_event *e, void *ctx)
3793f012e29Smrg{
3803f012e29Smrg	struct drm_exynos_g2d_event *g2d;
3813f012e29Smrg	struct exynos_event_context *ectx = ctx;
3823f012e29Smrg
3833f012e29Smrg	switch (e->type) {
3843f012e29Smrg		case DRM_EXYNOS_G2D_EVENT:
3853f012e29Smrg			if (ectx->version < 1 || ectx->g2d_event_handler == NULL)
3863f012e29Smrg				break;
3873f012e29Smrg			g2d = (struct drm_exynos_g2d_event *)e;
3883f012e29Smrg			ectx->g2d_event_handler(fd, g2d->cmdlist_no, g2d->tv_sec,
3893f012e29Smrg						g2d->tv_usec, U642VOID(g2d->user_data));
3903f012e29Smrg			break;
3913f012e29Smrg
3923f012e29Smrg		default:
3933f012e29Smrg			break;
3943f012e29Smrg	}
3953f012e29Smrg}
3963f012e29Smrg
3977cdc0497Smrgdrm_public int
3983f012e29Smrgexynos_handle_event(struct exynos_device *dev, struct exynos_event_context *ctx)
3993f012e29Smrg{
4003f012e29Smrg	char buffer[1024];
4013f012e29Smrg	int len, i;
4023f012e29Smrg	struct drm_event *e;
4033f012e29Smrg	struct drm_event_vblank *vblank;
4043f012e29Smrg	drmEventContextPtr evctx = &ctx->base;
4053f012e29Smrg
4063f012e29Smrg	/* The DRM read semantics guarantees that we always get only
4073f012e29Smrg	 * complete events. */
4083f012e29Smrg	len = read(dev->fd, buffer, sizeof buffer);
4093f012e29Smrg	if (len == 0)
4103f012e29Smrg		return 0;
4113f012e29Smrg	if (len < (int)sizeof *e)
4123f012e29Smrg		return -1;
4133f012e29Smrg
4143f012e29Smrg	i = 0;
4153f012e29Smrg	while (i < len) {
416d8807b2fSmrg		e = (struct drm_event *)(buffer + i);
4173f012e29Smrg		switch (e->type) {
4183f012e29Smrg		case DRM_EVENT_VBLANK:
4193f012e29Smrg			if (evctx->version < 1 ||
4203f012e29Smrg			    evctx->vblank_handler == NULL)
4213f012e29Smrg				break;
4223f012e29Smrg			vblank = (struct drm_event_vblank *) e;
4233f012e29Smrg			evctx->vblank_handler(dev->fd,
4243f012e29Smrg					      vblank->sequence,
4253f012e29Smrg					      vblank->tv_sec,
4263f012e29Smrg					      vblank->tv_usec,
4273f012e29Smrg					      U642VOID (vblank->user_data));
4283f012e29Smrg			break;
4293f012e29Smrg		case DRM_EVENT_FLIP_COMPLETE:
4303f012e29Smrg			if (evctx->version < 2 ||
4313f012e29Smrg			    evctx->page_flip_handler == NULL)
4323f012e29Smrg				break;
4333f012e29Smrg			vblank = (struct drm_event_vblank *) e;
4343f012e29Smrg			evctx->page_flip_handler(dev->fd,
4353f012e29Smrg						 vblank->sequence,
4363f012e29Smrg						 vblank->tv_sec,
4373f012e29Smrg						 vblank->tv_usec,
4383f012e29Smrg						 U642VOID (vblank->user_data));
4393f012e29Smrg			break;
4403f012e29Smrg		default:
4413f012e29Smrg			exynos_handle_vendor(dev->fd, e, evctx);
4423f012e29Smrg			break;
4433f012e29Smrg		}
4443f012e29Smrg		i += e->length;
4453f012e29Smrg	}
4463f012e29Smrg
4473f012e29Smrg	return 0;
4483f012e29Smrg}
449