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1d59fccf10
This adds a conformance test which renders a texture point using a 2x2 texture with a different color for each texel. It then verifies that each texel is mapped to the correct position on the point. The test is currently failing. The test requires the point sprite feature flag so this patch also adds a TEST_REQUIREMENT_* flag for that. Reviewed-by: Robert Bragg <robert@linux.intel.com>
227 lines
6.1 KiB
C
227 lines
6.1 KiB
C
#define COGL_ENABLE_EXPERIMENTAL_2_0_API
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#include <cogl/cogl.h>
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#include <stdlib.h>
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#include "test-utils.h"
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#define FB_WIDTH 512
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#define FB_HEIGHT 512
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static gboolean cogl_test_is_verbose;
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void
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test_utils_init (TestUtilsSharedState *state,
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TestFlags flags)
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{
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static int counter = 0;
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GError *error = NULL;
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CoglOnscreen *onscreen = NULL;
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CoglDisplay *display;
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CoglRenderer *renderer;
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gboolean missing_requirement = FALSE;
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if (counter != 0)
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g_critical ("We don't support running more than one test at a time\n"
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"in a single test run due to the state leakage that can\n"
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"cause subsequent tests to fail.\n"
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"\n"
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"If you want to run all the tests you should run\n"
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"$ make test-report");
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counter++;
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if (g_getenv ("COGL_TEST_VERBOSE") || g_getenv ("V"))
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cogl_test_is_verbose = TRUE;
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if (g_getenv ("G_DEBUG"))
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{
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char *debug = g_strconcat (g_getenv ("G_DEBUG"), ",fatal-warnings", NULL);
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g_setenv ("G_DEBUG", debug, TRUE);
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g_free (debug);
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}
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else
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g_setenv ("G_DEBUG", "fatal-warnings", TRUE);
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g_setenv ("COGL_X11_SYNC", "1", 0);
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state->ctx = cogl_context_new (NULL, &error);
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if (!state->ctx)
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g_critical ("Failed to create a CoglContext: %s", error->message);
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display = cogl_context_get_display (state->ctx);
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renderer = cogl_display_get_renderer (display);
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if (flags & TEST_REQUIREMENT_GL &&
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cogl_renderer_get_driver (renderer) != COGL_DRIVER_GL)
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{
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missing_requirement = TRUE;
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}
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if (flags & TEST_REQUIREMENT_NPOT &&
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!cogl_has_feature (state->ctx, COGL_FEATURE_ID_TEXTURE_NPOT))
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{
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missing_requirement = TRUE;
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}
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if (flags & TEST_REQUIREMENT_TEXTURE_3D &&
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!cogl_has_feature (state->ctx, COGL_FEATURE_ID_TEXTURE_3D))
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{
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missing_requirement = TRUE;
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}
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if (flags & TEST_REQUIREMENT_POINT_SPRITE &&
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!cogl_has_feature (state->ctx, COGL_FEATURE_ID_POINT_SPRITE))
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{
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missing_requirement = TRUE;
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}
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if (flags & TEST_KNOWN_FAILURE)
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{
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missing_requirement = TRUE;
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}
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if (getenv ("COGL_TEST_ONSCREEN"))
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{
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onscreen = cogl_onscreen_new (state->ctx, 640, 480);
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state->fb = COGL_FRAMEBUFFER (onscreen);
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}
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else
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{
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CoglHandle offscreen;
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CoglHandle tex = cogl_texture_2d_new_with_size (state->ctx,
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FB_WIDTH, FB_HEIGHT,
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COGL_PIXEL_FORMAT_ANY,
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&error);
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if (!tex)
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g_critical ("Failed to allocate texture: %s", error->message);
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offscreen = cogl_offscreen_new_to_texture (tex);
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state->fb = COGL_FRAMEBUFFER (offscreen);
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}
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if (!cogl_framebuffer_allocate (state->fb, &error))
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g_critical ("Failed to allocate framebuffer: %s", error->message);
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if (onscreen)
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cogl_onscreen_show (onscreen);
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cogl_framebuffer_clear4f (state->fb,
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COGL_BUFFER_BIT_COLOR |
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COGL_BUFFER_BIT_DEPTH |
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COGL_BUFFER_BIT_STENCIL,
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0, 0, 0, 1);
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cogl_push_framebuffer (state->fb);
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if (missing_requirement)
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g_print ("WARNING: Missing required feature[s] for this test\n");
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}
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void
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test_utils_fini (TestUtilsSharedState *state)
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{
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cogl_pop_framebuffer ();
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if (state->fb)
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cogl_object_unref (state->fb);
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if (state->ctx)
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cogl_object_unref (state->ctx);
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}
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static gboolean
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compare_component (int a, int b)
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{
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return ABS (a - b) <= 1;
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}
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void
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test_utils_compare_pixel (const guint8 *screen_pixel, guint32 expected_pixel)
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{
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/* Compare each component with a small fuzz factor */
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if (!compare_component (screen_pixel[0], expected_pixel >> 24) ||
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!compare_component (screen_pixel[1], (expected_pixel >> 16) & 0xff) ||
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!compare_component (screen_pixel[2], (expected_pixel >> 8) & 0xff))
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{
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guint32 screen_pixel_num = GUINT32_FROM_BE (*(guint32 *) screen_pixel);
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char *screen_pixel_string =
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g_strdup_printf ("#%06x", screen_pixel_num >> 8);
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char *expected_pixel_string =
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g_strdup_printf ("#%06x", expected_pixel >> 8);
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g_assert_cmpstr (screen_pixel_string, ==, expected_pixel_string);
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g_free (screen_pixel_string);
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g_free (expected_pixel_string);
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}
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}
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void
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test_utils_check_pixel (int x, int y, guint32 expected_pixel)
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{
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guint8 pixel[4];
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cogl_read_pixels (x, y, 1, 1, COGL_READ_PIXELS_COLOR_BUFFER,
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COGL_PIXEL_FORMAT_RGBA_8888_PRE,
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pixel);
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test_utils_compare_pixel (pixel, expected_pixel);
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}
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void
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test_utils_check_pixel_rgb (int x, int y, int r, int g, int b)
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{
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test_utils_check_pixel (x, y, (r << 24) | (g << 16) | (b << 8));
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}
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void
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test_utils_check_region (int x, int y,
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int width, int height,
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guint32 expected_rgba)
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{
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guint8 *pixels, *p;
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pixels = p = g_malloc (width * height * 4);
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cogl_read_pixels (x,
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y,
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width,
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height,
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COGL_READ_PIXELS_COLOR_BUFFER,
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COGL_PIXEL_FORMAT_RGBA_8888,
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p);
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/* Check whether the center of each division is the right color */
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for (y = 0; y < height; y++)
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for (x = 0; x < width; x++)
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{
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test_utils_compare_pixel (p, expected_rgba);
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p += 4;
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}
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g_free (pixels);
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}
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CoglTexture *
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test_utils_create_color_texture (CoglContext *context,
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guint32 color)
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{
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CoglTexture2D *tex_2d;
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color = GUINT32_TO_BE (color);
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tex_2d = cogl_texture_2d_new_from_data (context,
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1, 1, /* width/height */
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COGL_PIXEL_FORMAT_RGBA_8888_PRE,
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COGL_PIXEL_FORMAT_RGBA_8888_PRE,
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4, /* rowstride */
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(guint8 *) &color,
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NULL);
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return COGL_TEXTURE (tex_2d);
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}
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gboolean
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cogl_test_verbose (void)
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{
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return cogl_test_is_verbose;
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}
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