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blender-archive/source/blender/editors/screen/screendump.c
Sergey Sharybin a73dd3476e Color Management, Stage 2: Switch color pipeline to use OpenColorIO
Replace old color pipeline which was supporting linear/sRGB color spaces
only with OpenColorIO-based pipeline.

This introduces two configurable color spaces:

- Input color space for images and movie clips. This space is used to convert
  images/movies from color space in which file is saved to Blender's linear
  space (for float images, byte images are not internally converted, only input
  space is stored for such images and used later).

  This setting could be found in image/clip data block settings.

- Display color space which defines space in which particular display is working.

  This settings could be found in scene's Color Management panel.

When render result is being displayed on the screen, apart from converting image
to display space, some additional conversions could happen.

This conversions are:

- View, which defines tone curve applying before display transformation.
  These are different ways to view the image on the same display device.
  For example it could be used to emulate film view on sRGB display.

- Exposure affects on image exposure before tone map is applied.

- Gamma is post-display gamma correction, could be used to match particular
  display gamma.

- RGB curves are user-defined curves which are applying before display
  transformation, could be used for different purposes.

All this settings by default are only applying on render result and does not
affect on other images. If some particular image needs to be affected by this
transformation, "View as Render" setting of image data block should be set to
truth. Movie clips are always affected by all display transformations.

This commit also introduces configurable color space in which sequencer is
working. This setting could be found in scene's Color Management panel and
it should be used if such stuff as grading needs to be done in color space
different from sRGB (i.e. when Film view on sRGB display is use, using VD16
space as sequencer's internal space would make grading working in space
which is close to the space using for display).

Some technical notes:

- Image buffer's float buffer is now always in linear space, even if it was
  created from 16bit byte images.

- Space of byte buffer is stored in image buffer's rect_colorspace property.

- Profile of image buffer was removed since it's not longer meaningful.

- OpenGL and GLSL is supposed to always work in sRGB space. It is possible
  to support other spaces, but it's quite large project which isn't so
  much important.

- Legacy Color Management option disabled is emulated by using None display.
  It could have some regressions, but there's no clear way to avoid them.

- If OpenColorIO is disabled on build time, it should make blender behaving
  in the same way as previous release with color management enabled.

More details could be found at this page (more details would be added soon):
http://wiki.blender.org/index.php/Dev:Ref/Release_Notes/2.64/Color_Management

--
Thanks to Xavier Thomas, Lukas Toene for initial work on OpenColorIO
integration and to Brecht van Lommel for some further development and code/
usecase review!
2012-09-15 10:05:07 +00:00

451 lines
11 KiB
C

/*
* ***** BEGIN GPL LICENSE BLOCK *****
*
* This program 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 Foundation; either version 2
* of the License, or (at your option) any later version.
*
* This program 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 this program; if not, write to the Free Software Foundation,
* Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA.
*
* The Original Code is Copyright (C) 2001-2002 by NaN Holding BV.
* All rights reserved.
*
* Contributor(s): Blender Foundation
*
* ***** END GPL LICENSE BLOCK *****
* Making screendumps.
*/
/** \file blender/editors/screen/screendump.c
* \ingroup edscr
*/
#include <string.h>
#include "MEM_guardedalloc.h"
#include "BLI_blenlib.h"
#include "BLI_utildefines.h"
#include "IMB_imbuf_types.h"
#include "IMB_imbuf.h"
#include "DNA_scene_types.h"
#include "DNA_screen_types.h"
#include "DNA_space_types.h"
#include "DNA_userdef_types.h"
#include "BKE_context.h"
#include "BKE_global.h"
#include "BKE_main.h"
#include "BKE_image.h"
#include "BKE_report.h"
#include "BKE_writeavi.h"
#include "BIF_gl.h"
#include "RNA_access.h"
#include "RNA_define.h"
#include "UI_interface.h"
#include "WM_types.h"
#include "WM_api.h"
#include "PIL_time.h"
#include "ED_screen_types.h"
#include "screen_intern.h"
typedef struct ScreenshotData {
unsigned int *dumprect;
int dumpsx, dumpsy;
rcti crop;
ImageFormatData im_format;
} ScreenshotData;
/* get shot from frontbuffer */
static unsigned int *screenshot(bContext *C, int *dumpsx, int *dumpsy)
{
wmWindow *win = CTX_wm_window(C);
int x = 0, y = 0;
unsigned int *dumprect = NULL;
x = 0;
y = 0;
*dumpsx = win->sizex;
*dumpsy = win->sizey;
if (*dumpsx && *dumpsy) {
dumprect = MEM_mallocN(sizeof(int) * (*dumpsx) * (*dumpsy), "dumprect");
glReadBuffer(GL_FRONT);
glReadPixels(x, y, *dumpsx, *dumpsy, GL_RGBA, GL_UNSIGNED_BYTE, dumprect);
glFinish();
glReadBuffer(GL_BACK);
}
return dumprect;
}
/* call from both exec and invoke */
static int screenshot_data_create(bContext *C, wmOperator *op)
{
unsigned int *dumprect;
int dumpsx, dumpsy;
/* do redraw so we don't show popups/menus */
WM_redraw_windows(C);
dumprect = screenshot(C, &dumpsx, &dumpsy);
if (dumprect) {
ScreenshotData *scd = MEM_callocN(sizeof(ScreenshotData), "screenshot");
ScrArea *sa = CTX_wm_area(C);
scd->dumpsx = dumpsx;
scd->dumpsy = dumpsy;
scd->dumprect = dumprect;
if (sa) {
scd->crop = sa->totrct;
}
BKE_imformat_defaults(&scd->im_format);
op->customdata = scd;
return TRUE;
}
else {
op->customdata = NULL;
return FALSE;
}
}
static void screenshot_data_free(wmOperator *op)
{
ScreenshotData *scd = op->customdata;
if (scd) {
if (scd->dumprect)
MEM_freeN(scd->dumprect);
MEM_freeN(scd);
op->customdata = NULL;
}
}
static void screenshot_crop(ImBuf *ibuf, rcti crop)
{
unsigned int *to = ibuf->rect;
unsigned int *from = ibuf->rect + crop.ymin * ibuf->x + crop.xmin;
int crop_x = BLI_RCT_SIZE_X(&crop);
int crop_y = BLI_RCT_SIZE_Y(&crop);
int y;
if (crop_x > 0 && crop_y > 0) {
for (y = 0; y < crop_y; y++, to += crop_x, from += ibuf->x)
memmove(to, from, sizeof(unsigned int) * crop_x);
ibuf->x = crop_x;
ibuf->y = crop_y;
}
}
static int screenshot_exec(bContext *C, wmOperator *op)
{
ScreenshotData *scd = op->customdata;
if (scd == NULL) {
/* when running exec directly */
screenshot_data_create(C, op);
scd = op->customdata;
}
if (scd) {
if (scd->dumprect) {
ImBuf *ibuf;
char path[FILE_MAX];
RNA_string_get(op->ptr, "filepath", path);
BLI_path_abs(path, G.main->name);
/* operator ensures the extension */
ibuf = IMB_allocImBuf(scd->dumpsx, scd->dumpsy, 24, 0);
ibuf->rect = scd->dumprect;
/* crop to show only single editor */
if (!RNA_boolean_get(op->ptr, "full"))
screenshot_crop(ibuf, scd->crop);
if (scd->im_format.planes == R_IMF_PLANES_BW) {
/* bw screenshot? - users will notice if it fails! */
IMB_color_to_bw(ibuf);
}
BKE_imbuf_write(ibuf, path, &scd->im_format);
IMB_freeImBuf(ibuf);
}
}
screenshot_data_free(op);
return OPERATOR_FINISHED;
}
static int screenshot_invoke(bContext *C, wmOperator *op, wmEvent *UNUSED(event))
{
if (screenshot_data_create(C, op)) {
if (RNA_struct_property_is_set(op->ptr, "filepath"))
return screenshot_exec(C, op);
/* extension is added by 'screenshot_check' after */
RNA_string_set(op->ptr, "filepath", G.relbase_valid ? G.main->name : "//screen");
WM_event_add_fileselect(C, op);
return OPERATOR_RUNNING_MODAL;
}
return OPERATOR_CANCELLED;
}
static int screenshot_check(bContext *UNUSED(C), wmOperator *op)
{
ScreenshotData *scd = op->customdata;
return WM_operator_filesel_ensure_ext_imtype(op, scd->im_format.imtype);
}
static int screenshot_cancel(bContext *UNUSED(C), wmOperator *op)
{
screenshot_data_free(op);
return OPERATOR_CANCELLED;
}
static int screenshot_draw_check_prop(PointerRNA *UNUSED(ptr), PropertyRNA *prop)
{
const char *prop_id = RNA_property_identifier(prop);
return !(strcmp(prop_id, "filepath") == 0);
}
static void screenshot_draw(bContext *UNUSED(C), wmOperator *op)
{
uiLayout *layout = op->layout;
ScreenshotData *scd = op->customdata;
PointerRNA ptr;
/* image template */
RNA_pointer_create(NULL, &RNA_ImageFormatSettings, &scd->im_format, &ptr);
uiTemplateImageSettings(layout, &ptr, TRUE);
/* main draw call */
RNA_pointer_create(NULL, op->type->srna, op->properties, &ptr);
uiDefAutoButsRNA(layout, &ptr, screenshot_draw_check_prop, '\0');
}
void SCREEN_OT_screenshot(wmOperatorType *ot)
{
ot->name = "Save Screenshot"; /* weak: opname starting with 'save' makes filewindow give save-over */
ot->idname = "SCREEN_OT_screenshot";
ot->description = "Capture a picture of the active area or whole Blender window";
ot->invoke = screenshot_invoke;
ot->check = screenshot_check;
ot->exec = screenshot_exec;
ot->cancel = screenshot_cancel;
ot->ui = screenshot_draw;
ot->poll = WM_operator_winactive;
ot->flag = 0;
WM_operator_properties_filesel(ot, FOLDERFILE | IMAGEFILE, FILE_SPECIAL, FILE_SAVE,
WM_FILESEL_FILEPATH, FILE_DEFAULTDISPLAY);
RNA_def_boolean(ot->srna, "full", 1, "Full Screen", "Screenshot the whole Blender window");
}
/* *************** screenshot movie job ************************* */
typedef struct ScreenshotJob {
Main *bmain;
Scene *scene;
unsigned int *dumprect;
int x, y, dumpsx, dumpsy;
short *stop;
short *do_update;
ReportList reports;
} ScreenshotJob;
static void screenshot_freejob(void *sjv)
{
ScreenshotJob *sj = sjv;
if (sj->dumprect)
MEM_freeN(sj->dumprect);
MEM_freeN(sj);
}
/* called before redraw notifiers, copies a new dumprect */
static void screenshot_updatejob(void *sjv)
{
ScreenshotJob *sj = sjv;
unsigned int *dumprect;
if (sj->dumprect == NULL) {
dumprect = MEM_mallocN(sizeof(int) * sj->dumpsx * sj->dumpsy, "dumprect");
glReadPixels(sj->x, sj->y, sj->dumpsx, sj->dumpsy, GL_RGBA, GL_UNSIGNED_BYTE, dumprect);
glFinish();
sj->dumprect = dumprect;
}
}
/* only this runs inside thread */
static void screenshot_startjob(void *sjv, short *stop, short *do_update, float *UNUSED(progress))
{
ScreenshotJob *sj = sjv;
RenderData rd = sj->scene->r;
bMovieHandle *mh = BKE_movie_handle_get(sj->scene->r.im_format.imtype);
/* we need this as local variables for renderdata */
rd.frs_sec = U.scrcastfps;
rd.frs_sec_base = 1.0f;
if (BKE_imtype_is_movie(rd.im_format.imtype)) {
if (!mh->start_movie(sj->scene, &rd, sj->dumpsx, sj->dumpsy, &sj->reports)) {
printf("screencast job stopped\n");
return;
}
}
else
mh = NULL;
sj->stop = stop;
sj->do_update = do_update;
*do_update = TRUE; /* wait for opengl rect */
while (*stop == 0) {
if (sj->dumprect) {
if (mh) {
if (mh->append_movie(&rd, rd.sfra, rd.cfra, (int *)sj->dumprect,
sj->dumpsx, sj->dumpsy, &sj->reports))
{
BKE_reportf(&sj->reports, RPT_INFO, "Appended frame: %d", rd.cfra);
printf("Appended frame %d\n", rd.cfra);
}
else {
break;
}
}
else {
ImBuf *ibuf = IMB_allocImBuf(sj->dumpsx, sj->dumpsy, rd.im_format.planes, 0);
char name[FILE_MAX];
int ok;
BKE_makepicstring(name, rd.pic, sj->bmain->name, rd.cfra, rd.im_format.imtype, rd.scemode & R_EXTENSION, TRUE);
ibuf->rect = sj->dumprect;
ok = BKE_imbuf_write(ibuf, name, &rd.im_format);
if (ok == 0) {
printf("Write error: cannot save %s\n", name);
BKE_reportf(&sj->reports, RPT_INFO, "Write error: cannot save %s\n", name);
break;
}
else {
printf("Saved file: %s\n", name);
BKE_reportf(&sj->reports, RPT_INFO, "Saved file: %s", name);
}
/* imbuf knows which rects are not part of ibuf */
IMB_freeImBuf(ibuf);
}
MEM_freeN(sj->dumprect);
sj->dumprect = NULL;
*do_update = TRUE;
rd.cfra++;
}
else
PIL_sleep_ms(U.scrcastwait);
}
if (mh)
mh->end_movie();
BKE_report(&sj->reports, RPT_INFO, "Screencast job stopped");
}
static int screencast_exec(bContext *C, wmOperator *op)
{
bScreen *screen = CTX_wm_screen(C);
wmJob *wm_job = WM_jobs_get(CTX_wm_manager(C), CTX_wm_window(C), screen, "Screencast", 0, WM_JOB_TYPE_SCREENCAST);
ScreenshotJob *sj = MEM_callocN(sizeof(ScreenshotJob), "screenshot job");
/* setup sj */
if (RNA_boolean_get(op->ptr, "full")) {
wmWindow *win = CTX_wm_window(C);
sj->x = 0;
sj->y = 0;
sj->dumpsx = win->sizex;
sj->dumpsy = win->sizey;
}
else {
ScrArea *curarea = CTX_wm_area(C);
sj->x = curarea->totrct.xmin;
sj->y = curarea->totrct.ymin;
sj->dumpsx = curarea->totrct.xmax - sj->x;
sj->dumpsy = curarea->totrct.ymax - sj->y;
}
sj->bmain = CTX_data_main(C);
sj->scene = CTX_data_scene(C);
BKE_reports_init(&sj->reports, RPT_PRINT);
/* setup job */
WM_jobs_customdata_set(wm_job, sj, screenshot_freejob);
WM_jobs_timer(wm_job, 0.1, 0, NC_SCREEN | ND_SCREENCAST);
WM_jobs_callbacks(wm_job, screenshot_startjob, NULL, screenshot_updatejob, NULL);
WM_jobs_start(CTX_wm_manager(C), wm_job);
WM_event_add_notifier(C, NC_SCREEN | ND_SCREENCAST, screen);
return OPERATOR_FINISHED;
}
void SCREEN_OT_screencast(wmOperatorType *ot)
{
ot->name = "Make Screencast";
ot->idname = "SCREEN_OT_screencast";
ot->description = "Capture a video of the active area or whole Blender window";
ot->invoke = WM_operator_confirm;
ot->exec = screencast_exec;
ot->poll = WM_operator_winactive;
ot->flag = 0;
RNA_def_property(ot->srna, "filepath", PROP_STRING, PROP_FILEPATH);
RNA_def_boolean(ot->srna, "full", 1, "Full Screen", "Screencast the whole Blender window");
}