RetroArch/gfx/drivers_context/xegl_ctx.c
2023-07-16 08:00:49 +02:00

623 lines
16 KiB
C

/* RetroArch - A frontend for libretro.
* Copyright (C) 2010-2014 - Hans-Kristian Arntzen
* Copyright (C) 2011-2017 - Daniel De Matteis
*
* RetroArch is free software: you can redistribute it and/or modify it under the terms
* of the GNU General Public License as published by the Free Software Found-
* ation, either version 3 of the License, or (at your option) any later version.
*
* RetroArch is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY;
* without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR
* PURPOSE. See the GNU General Public License for more details.
*
* You should have received a copy of the GNU General Public License along with RetroArch.
* If not, see <http://www.gnu.org/licenses/>.
*/
/* X/EGL context. Mostly used for testing GLES code paths. */
#include <stdint.h>
#include <stdlib.h>
#include <string/stdstring.h>
#ifdef HAVE_CONFIG_H
#include "../../config.h"
#endif
#include "../../frontend/frontend_driver.h"
#include "../../configuration.h"
#include "../../input/input_driver.h"
#include "../../verbosity.h"
#include "../common/egl_common.h"
#include "../common/x11_common.h"
#ifdef HAVE_XINERAMA
#include "../common/xinerama_common.h"
#endif
#ifndef EGL_OPENGL_ES3_BIT_KHR
#define EGL_OPENGL_ES3_BIT_KHR 0x0040
#endif
#ifndef EGL_PLATFORM_X11_KHR
#define EGL_PLATFORM_X11_KHR 0x31D5
#endif
typedef struct
{
#ifdef HAVE_EGL
egl_ctx_data_t egl;
#endif
#ifdef HAVE_XF86VM
bool should_reset_mode;
#endif
} xegl_ctx_data_t;
/* TODO/FIXME - static globals */
static enum gfx_ctx_api xegl_api = GFX_CTX_NONE;
static int xegl_nul_handler(Display *dpy, XErrorEvent *event) { return 0; }
static void gfx_ctx_xegl_destroy(void *data)
{
xegl_ctx_data_t *xegl = (xegl_ctx_data_t*)data;
x11_input_ctx_destroy();
#ifdef HAVE_EGL
egl_destroy(&xegl->egl);
#endif
if (g_x11_win)
{
#ifdef HAVE_XINERAMA
/* Save last used monitor for later. */
xinerama_save_last_used_monitor(RootWindow(
g_x11_dpy, DefaultScreen(g_x11_dpy)));
#endif
x11_window_destroy(false);
}
x11_colormap_destroy();
#ifdef HAVE_XF86VM
if (xegl->should_reset_mode)
{
x11_exit_fullscreen(g_x11_dpy);
xegl->should_reset_mode = false;
}
#endif
free(data);
/* Do not close g_x11_dpy. We'll keep one for the entire application
* lifecycle to work-around nVidia EGL limitations.
*/
}
#define XEGL_ATTRIBS_BASE \
EGL_SURFACE_TYPE, EGL_WINDOW_BIT, \
EGL_RED_SIZE, 1, \
EGL_GREEN_SIZE, 1, \
EGL_BLUE_SIZE, 1, \
EGL_ALPHA_SIZE, 0, \
EGL_DEPTH_SIZE, 0
static void *gfx_ctx_xegl_init(void *video_driver)
{
#ifdef HAVE_EGL
static const EGLint egl_attribs_gl[] = {
XEGL_ATTRIBS_BASE,
EGL_RENDERABLE_TYPE, EGL_OPENGL_BIT,
EGL_NONE,
};
static const EGLint egl_attribs_gles[] = {
XEGL_ATTRIBS_BASE,
EGL_RENDERABLE_TYPE, EGL_OPENGL_ES2_BIT,
EGL_NONE,
};
#ifdef EGL_KHR_create_context
static const EGLint egl_attribs_gles3[] = {
XEGL_ATTRIBS_BASE,
EGL_RENDERABLE_TYPE, EGL_OPENGL_ES3_BIT_KHR,
EGL_NONE,
};
#endif
#ifdef HAVE_VG
static const EGLint egl_attribs_vg[] = {
XEGL_ATTRIBS_BASE,
EGL_RENDERABLE_TYPE, EGL_OPENVG_BIT,
EGL_NONE,
};
#endif
EGLint n;
EGLint major, minor;
const EGLint *attrib_ptr = NULL;
#endif
xegl_ctx_data_t *xegl = NULL;
if (g_egl_inited)
return NULL;
XInitThreads();
if (!(xegl = (xegl_ctx_data_t*)calloc(1, sizeof(xegl_ctx_data_t))))
return NULL;
switch (xegl_api)
{
case GFX_CTX_OPENGL_API:
attrib_ptr = egl_attribs_gl;
break;
case GFX_CTX_OPENGL_ES_API:
#ifdef EGL_KHR_create_context
if (xegl->egl.major >= 3)
attrib_ptr = egl_attribs_gles3;
else
#endif
attrib_ptr = egl_attribs_gles;
break;
case GFX_CTX_OPENVG_API:
#ifdef HAVE_VG
attrib_ptr = egl_attribs_vg;
#endif
break;
default:
break;
}
if (!x11_connect())
goto error;
#ifdef HAVE_EGL
if (!egl_init_context(&xegl->egl, EGL_PLATFORM_X11_KHR,
(EGLNativeDisplayType)g_x11_dpy, &major, &minor, &n,
attrib_ptr, egl_default_accept_config_cb))
{
egl_report_error();
goto error;
}
if (n == 0 || !xegl->egl.config)
goto error;
#endif
return xegl;
error:
gfx_ctx_xegl_destroy(xegl);
return NULL;
}
static EGLint *xegl_fill_attribs(xegl_ctx_data_t *xegl, EGLint *attr)
{
switch (xegl_api)
{
#ifdef EGL_KHR_create_context
case GFX_CTX_OPENGL_API:
{
unsigned
version = xegl->egl.major * 1000 + xegl->egl.minor;
bool core = version >= 3001;
#ifdef GL_DEBUG
bool debug = true;
#else
struct retro_hw_render_callback
*hwr = video_driver_get_hw_context();
bool debug = hwr->debug_context;
#endif
if (core)
{
*attr++ = EGL_CONTEXT_MAJOR_VERSION_KHR;
*attr++ = xegl->egl.major;
*attr++ = EGL_CONTEXT_MINOR_VERSION_KHR;
*attr++ = xegl->egl.minor;
/* Technically, we don't have core/compat until 3.2.
* Version 3.1 is either compat or not depending
* on GL_ARB_compatibility.
*/
if (version >= 3002)
{
*attr++ = EGL_CONTEXT_OPENGL_PROFILE_MASK_KHR;
*attr++ = EGL_CONTEXT_OPENGL_CORE_PROFILE_BIT_KHR;
}
}
if (debug)
{
*attr++ = EGL_CONTEXT_FLAGS_KHR;
*attr++ = EGL_CONTEXT_OPENGL_DEBUG_BIT_KHR;
}
break;
}
#endif
case GFX_CTX_OPENGL_ES_API:
/* Same as EGL_CONTEXT_MAJOR_VERSION. */
*attr++ = EGL_CONTEXT_CLIENT_VERSION;
*attr++ = xegl->egl.major ? (EGLint)xegl->egl.major : 2;
#ifdef EGL_KHR_create_context
if (xegl->egl.minor > 0)
{
*attr++ = EGL_CONTEXT_MINOR_VERSION_KHR;
*attr++ = xegl->egl.minor;
}
#endif
break;
default:
break;
}
*attr = EGL_NONE;
return attr;
}
/* forward declaration */
static void gfx_ctx_xegl_set_swap_interval(void *data, int swap_interval);
static bool gfx_ctx_xegl_set_video_mode(void *data,
unsigned width, unsigned height,
bool fullscreen)
{
XEvent event;
EGLint egl_attribs[16];
EGLint vid, num_visuals;
EGLint *attr = NULL;
#ifdef HAVE_XF86VM
bool true_full = false;
#endif
int x_off = 0;
int y_off = 0;
XVisualInfo temp = {0};
XSetWindowAttributes swa = {0};
XVisualInfo *vi = NULL;
xegl_ctx_data_t *xegl = (xegl_ctx_data_t*)data;
settings_t *settings = config_get_ptr();
bool video_disable_composition = settings->bools.video_disable_composition;
bool windowed_fullscreen = settings->bools.video_windowed_fullscreen;
unsigned video_monitor_index = settings->uints.video_monitor_index;
int (*old_handler)(Display*, XErrorEvent*) = NULL;
frontend_driver_install_signal_handler();
attr = egl_attribs;
attr = xegl_fill_attribs(xegl, attr);
#ifdef HAVE_EGL
if (!egl_get_native_visual_id(&xegl->egl, &vid))
goto error;
#endif
temp.visualid = vid;
if (!(vi = XGetVisualInfo(g_x11_dpy, VisualIDMask, &temp, &num_visuals)))
goto error;
swa.colormap = g_x11_cmap = XCreateColormap(
g_x11_dpy, RootWindow(g_x11_dpy, vi->screen),
vi->visual, AllocNone);
swa.event_mask = StructureNotifyMask
| KeyPressMask
| ButtonPressMask
| ButtonReleaseMask
| KeyReleaseMask
| EnterWindowMask
| LeaveWindowMask;
swa.override_redirect = False;
#ifdef HAVE_XF86VM
if (fullscreen && !windowed_fullscreen)
{
if (x11_enter_fullscreen(g_x11_dpy, width, height))
{
char *wm_name = x11_get_wm_name(g_x11_dpy);
xegl->should_reset_mode = true;
true_full = true;
if (wm_name)
{
RARCH_LOG("[X/EGL]: Window manager is %s.\n", wm_name);
if (strcasestr(wm_name, "xfwm"))
{
RARCH_LOG("[X/EGL]: Using override-redirect workaround.\n");
swa.override_redirect = True;
}
free(wm_name);
}
if (!x11_has_net_wm_fullscreen(g_x11_dpy))
swa.override_redirect = True;
}
else
RARCH_ERR("[X/EGL]: Entering true fullscreen failed. Will attempt windowed mode.\n");
}
#endif
if (video_monitor_index)
g_x11_screen = video_monitor_index - 1;
#ifdef HAVE_XINERAMA
if (fullscreen || g_x11_screen != 0)
{
unsigned new_width = width;
unsigned new_height = height;
if (xinerama_get_coord(g_x11_dpy, g_x11_screen,
&x_off, &y_off, &new_width, &new_height))
RARCH_LOG("[X/EGL]: Using Xinerama on screen #%u.\n", g_x11_screen);
else
RARCH_LOG("[X/EGL]: Xinerama is not active on screen.\n");
if (fullscreen)
{
width = new_width;
height = new_height;
}
}
#endif
RARCH_LOG("[X/EGL]: X = %d, Y = %d, W = %u, H = %u.\n",
x_off, y_off, width, height);
g_x11_win = XCreateWindow(g_x11_dpy, RootWindow(g_x11_dpy, vi->screen),
x_off, y_off, width, height, 0,
vi->depth, InputOutput, vi->visual,
CWBorderPixel | CWColormap | CWEventMask | CWOverrideRedirect,
&swa);
XSetWindowBackground(g_x11_dpy, g_x11_win, 0);
if (fullscreen && video_disable_composition)
{
uint32_t value = 1;
Atom cardinal = XInternAtom(g_x11_dpy, "CARDINAL", False);
Atom net_wm_bypass_compositor = XInternAtom(g_x11_dpy, "_NET_WM_BYPASS_COMPOSITOR", False);
RARCH_LOG("[X/EGL]: Requesting compositor bypass.\n");
XChangeProperty(g_x11_dpy, g_x11_win, net_wm_bypass_compositor, cardinal, 32, PropModeReplace, (const unsigned char*)&value, 1);
}
if (!egl_create_context(&xegl->egl, (attr != egl_attribs) ? egl_attribs : NULL))
{
egl_report_error();
goto error;
}
if (!egl_create_surface(&xegl->egl, (void*)g_x11_win))
goto error;
x11_set_window_attr(g_x11_dpy, g_x11_win);
x11_update_title(NULL);
if (fullscreen)
x11_show_mouse(data, false);
#ifdef HAVE_XF86VM
if (true_full)
{
RARCH_LOG("[X/EGL]: Using true fullscreen.\n");
XMapRaised(g_x11_dpy, g_x11_win);
x11_set_net_wm_fullscreen(g_x11_dpy, g_x11_win);
}
else
#endif
if (fullscreen)
{
/* We attempted true fullscreen, but failed.
* Attempt using windowed fullscreen. */
XMapRaised(g_x11_dpy, g_x11_win);
RARCH_LOG("[X/EGL]: Using windowed fullscreen.\n");
/* We have to move the window to the screen we
* want to go fullscreen on first.
* x_off and y_off usually get ignored in XCreateWindow().
*/
x11_move_window(g_x11_dpy, g_x11_win, x_off, y_off, width, height);
x11_set_net_wm_fullscreen(g_x11_dpy, g_x11_win);
}
else
{
XMapWindow(g_x11_dpy, g_x11_win);
/* If we want to map the window on a different screen,
* we'll have to do it by force.
*
* Otherwise, we should try to let the window manager sort it out.
* x_off and y_off usually get ignored in XCreateWindow().
*/
if (g_x11_screen)
x11_move_window(g_x11_dpy, g_x11_win, x_off, y_off, width, height);
}
x11_event_queue_check(&event);
x11_install_quit_atom();
#ifdef HAVE_EGL
gfx_ctx_xegl_set_swap_interval(&xegl->egl, xegl->egl.interval);
#endif
/* This can blow up on some drivers. It's not fatal,
* so override errors for this call.
*/
old_handler = XSetErrorHandler(xegl_nul_handler);
XSetInputFocus(g_x11_dpy, g_x11_win, RevertToNone, CurrentTime);
XSync(g_x11_dpy, False);
XSetErrorHandler(old_handler);
XFree(vi);
g_egl_inited = true;
#ifdef HAVE_XF86VM
if (!x11_input_ctx_new(true_full))
goto error;
#else
if (!x11_input_ctx_new(false))
goto error;
#endif
return true;
error:
if (vi)
XFree(vi);
gfx_ctx_xegl_destroy(data);
return false;
}
static void gfx_ctx_xegl_input_driver(void *data,
const char *joypad_name,
input_driver_t **input, void **input_data)
{
void *xinput = input_driver_init_wrap(&input_x, joypad_name);
*input = xinput ? &input_x : NULL;
*input_data = xinput;
}
static enum gfx_ctx_api gfx_ctx_xegl_get_api(void *data) { return xegl_api; }
static bool gfx_ctx_xegl_bind_api(void *video_driver,
enum gfx_ctx_api api, unsigned major, unsigned minor)
{
g_egl_major = major;
g_egl_minor = minor;
xegl_api = api;
switch (api)
{
case GFX_CTX_OPENGL_API:
#ifndef EGL_KHR_create_context
if ((major * 1000 + minor) >= 3001)
break;
#endif
return egl_bind_api(EGL_OPENGL_API);
case GFX_CTX_OPENGL_ES_API:
#ifndef EGL_KHR_create_context
if (major >= 3)
break;
#endif
return egl_bind_api(EGL_OPENGL_ES_API);
case GFX_CTX_OPENVG_API:
#ifdef HAVE_VG
return egl_bind_api(EGL_OPENVG_API);
#endif
default:
break;
}
return false;
}
static void gfx_ctx_xegl_swap_buffers(void *data)
{
xegl_ctx_data_t *xegl = (xegl_ctx_data_t*)data;
#ifdef HAVE_EGL
egl_swap_buffers(&xegl->egl);
#endif
}
static void gfx_ctx_xegl_bind_hw_render(void *data, bool enable)
{
#ifdef HAVE_EGL
xegl_ctx_data_t *xegl = (xegl_ctx_data_t*)data;
egl_bind_hw_render(&xegl->egl, enable);
#endif
}
static void gfx_ctx_xegl_set_swap_interval(void *data, int swap_interval)
{
#ifdef HAVE_EGL
xegl_ctx_data_t *xegl = (xegl_ctx_data_t*)data;
egl_set_swap_interval(&xegl->egl, swap_interval);
#endif
}
static gfx_ctx_proc_t gfx_ctx_xegl_get_proc_address(const char *symbol)
{
switch (xegl_api)
{
case GFX_CTX_OPENGL_ES_API:
case GFX_CTX_OPENVG_API:
#ifdef HAVE_EGL
return egl_get_proc_address(symbol);
#else
break;
#endif
case GFX_CTX_OPENGL_API:
case GFX_CTX_NONE:
default:
break;
}
return NULL;
}
static uint32_t gfx_ctx_xegl_get_flags(void *data)
{
uint32_t flags = 0;
if (string_is_equal(video_driver_get_ident(), "glcore"))
{
#if defined(HAVE_SLANG) && defined(HAVE_SPIRV_CROSS)
BIT32_SET(flags, GFX_CTX_FLAGS_SHADERS_SLANG);
#endif
}
else
{
BIT32_SET(flags, GFX_CTX_FLAGS_SHADERS_GLSL);
}
return flags;
}
static void gfx_ctx_xegl_set_flags(void *data, uint32_t flags) { }
const gfx_ctx_driver_t gfx_ctx_x_egl =
{
gfx_ctx_xegl_init,
gfx_ctx_xegl_destroy,
gfx_ctx_xegl_get_api,
gfx_ctx_xegl_bind_api,
gfx_ctx_xegl_set_swap_interval,
gfx_ctx_xegl_set_video_mode,
x11_get_video_size,
#ifdef HAVE_XF86VM
x11_get_refresh_rate,
#else
NULL,
#endif
NULL, /* get_video_output_size */
NULL, /* get_video_output_prev */
NULL, /* get_video_output_next */
x11_get_metrics,
NULL,
x11_update_title,
x11_check_window,
NULL, /* set_resize */
x11_has_focus,
x11_suspend_screensaver,
true, /* has_windowed */
gfx_ctx_xegl_swap_buffers,
gfx_ctx_xegl_input_driver,
gfx_ctx_xegl_get_proc_address,
NULL,
NULL,
x11_show_mouse,
"egl_x",
gfx_ctx_xegl_get_flags,
gfx_ctx_xegl_set_flags,
gfx_ctx_xegl_bind_hw_render,
NULL,
NULL
};