forked from KolibriOS/kolibrios
d5c80240f4
git-svn-id: svn://kolibrios.org@4377 a494cfbc-eb01-0410-851d-a64ba20cac60
289 lines
5.7 KiB
C
289 lines
5.7 KiB
C
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// -kr -i4 -ts4 -bls -bl -bli0
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#include <stdio.h>
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#include <malloc.h>
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#include <stdbool.h>
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#include <pixlib2.h>
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#include "pixdriver.h"
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#include <kos32sys.h>
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void* load_library(const char *name);
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#define DISPLAY_VERSION 0x0200 /* 2.00 */
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#define SRV_GETVERSION 0
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#define SRV_GET_CAPS 3
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#define BUFFER_SIZE(n) ((n)*sizeof(uint32_t))
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#define __ALIGN_MASK(x,mask) (((x)+(mask))&~(mask))
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#define ALIGN(x,a) __ALIGN_MASK(x,(typeof(x))(a)-1)
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#define to_surface(x) (surface_t*)((x)->handle)
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typedef struct
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{
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uint32_t width;
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uint32_t height;
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void *data;
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uint32_t pitch;
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uint32_t bo;
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uint32_t bo_size;
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uint32_t flags;
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} surface_t;
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static uint32_t service;
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static uint32_t hw_caps;
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static struct pix_driver pix_driver;
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uint32_t init_pixlib(uint32_t caps)
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{
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void *lib;
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uint32_t (*drventry)(uint32_t service, struct pix_driver *driver);
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uint32_t api_version;
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ioctl_t io;
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if (service != 0)
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return caps & hw_caps;
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service = get_service("DISPLAY");
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if (service == 0)
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goto fail;
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io.handle = service;
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io.io_code = SRV_GETVERSION;
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io.input = NULL;
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io.inp_size = 0;
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io.output = &api_version;
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io.out_size = BUFFER_SIZE(1);
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if (call_service(&io) != 0)
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goto fail;
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if ((DISPLAY_VERSION > (api_version & 0xFFFF)) ||
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(DISPLAY_VERSION < (api_version >> 16)))
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goto fail;
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lib = load_library("intel-sna.drv");
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if(lib == 0)
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lib = load_library("intel-uxa.drv");
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if(lib == 0)
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goto fail;
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drventry = get_proc_address(lib, "DrvInit");
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if( drventry == NULL)
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goto fail;
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hw_caps = drventry(service, &pix_driver);
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if (hw_caps)
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printf("2D caps %s%s%s\n",
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(hw_caps & HW_BIT_BLIT) != 0 ? "HW_BIT_BLIT " : "",
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(hw_caps & HW_TEX_BLIT) != 0 ? "HW_TEX_BLIT " : "",
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(hw_caps & HW_VID_BLIT) != 0 ? "HW_VID_BLIT " : "");
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return caps & hw_caps;
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fail:
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service = 0;
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return 0;
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};
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void done_pixlib()
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{
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if (hw_caps != 0)
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pix_driver.fini();
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};
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int create_bitmap(bitmap_t * bitmap)
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{
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uint32_t size, bo_size;
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uint32_t pitch, max_pitch;
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void *buffer;
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surface_t *sf;
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bitmap->handle = -1;
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bitmap->data = (void *) -1;
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bitmap->pitch = -1;
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if (bitmap->flags &= hw_caps)
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return pix_driver.create_bitmap(bitmap);
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pitch = ALIGN(bitmap->width * 4, 16);
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max_pitch = ALIGN(bitmap->max_width * 4, 16);
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size = ALIGN(pitch * bitmap->height, 4096);
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bo_size = ALIGN(max_pitch * bitmap->max_height, 4096);
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if (bo_size < size)
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bo_size = size;
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sf = malloc(sizeof(*sf));
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if (sf == NULL)
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return -1;
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buffer = user_alloc(bo_size);
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if (buffer == NULL)
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{
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free(sf);
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return -1;
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};
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sf->width = bitmap->width;
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sf->height = bitmap->height;
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sf->data = buffer;
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sf->pitch = pitch;
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sf->bo = 0;
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sf->bo_size = bo_size;
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sf->flags = bitmap->flags;
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bitmap->handle = (uint32_t) sf;
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// printf("create bitmap %p handle %p data %p w %d h%d\n",
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// bitmap, bitmap->handle, bitmap->data, bitmap->width, bitmap->height);
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return 0;
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};
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int destroy_bitmap(bitmap_t * bitmap)
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{
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surface_t *sf = to_surface(bitmap);
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if (sf->flags & hw_caps)
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return pix_driver.destroy_bitmap(bitmap);
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user_free(sf->data);
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free(sf);
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bitmap->handle = -1;
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bitmap->data = (void *) -1;
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bitmap->pitch = -1;
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return 0;
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};
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int lock_bitmap(bitmap_t * bitmap)
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{
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surface_t *sf = to_surface(bitmap);
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if (bitmap->data != (void *) -1)
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return 0;
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if (sf->flags & hw_caps)
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return pix_driver.lock_bitmap(bitmap);
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bitmap->data = sf->data;
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bitmap->pitch = sf->pitch;
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return 0;
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};
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int blit_bitmap(bitmap_t * bitmap, int dst_x, int dst_y,
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int w, int h, int src_x, int src_y)
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{
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struct blit_call bc;
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int ret;
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surface_t *sf = to_surface(bitmap);
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if (sf->flags & hw_caps & HW_BIT_BLIT)
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return pix_driver.blit(bitmap, 0, 0, dst_x, dst_y, w, h, src_x, src_y);
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bc.dstx = dst_x;
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bc.dsty = dst_y;
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bc.w = w;
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bc.h = h;
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bc.srcx = 0;
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bc.srcy = 0;
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bc.srcw = w;
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bc.srch = h;
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bc.stride = sf->pitch;
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bc.bitmap = sf->data;
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__asm__ __volatile__(
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"int $0x40":"=a"(ret):"a"(73), "b"(0x00),
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"c"(&bc):"memory");
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bitmap->data = (void *) -1;
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bitmap->pitch = -1;
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return ret;
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};
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int fplay_blit_bitmap(bitmap_t * bitmap, int dst_x, int dst_y, int w, int h)
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{
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struct blit_call bc;
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int ret;
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surface_t *sf = to_surface(bitmap);
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if (sf->flags & hw_caps & HW_TEX_BLIT)
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return pix_driver.blit(bitmap, 1, 1, dst_x, dst_y, w, h, 0, 0);
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bc.dstx = dst_x;
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bc.dsty = dst_y;
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bc.w = w;
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bc.h = h;
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bc.srcx = 0;
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bc.srcy = 0;
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bc.srcw = w;
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bc.srch = h;
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bc.stride = sf->pitch;
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bc.bitmap = sf->data;
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__asm__ __volatile__(
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"int $0x40":"=a"(ret):"a"(73), "b"(0x00),
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"c"(&bc):"memory");
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bitmap->data = (void *) -1;
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bitmap->pitch = -1;
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return ret;
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};
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int resize_bitmap(bitmap_t * bitmap)
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{
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uint32_t size;
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uint32_t pitch;
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// printf("%s\n", __FUNCTION__);
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surface_t *sf = to_surface(bitmap);
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if (sf->flags & hw_caps)
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return pix_driver.resize_bitmap(bitmap);
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pitch = ALIGN(bitmap->width * 4, 16);
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size = ALIGN(pitch * bitmap->height, 4096);
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bitmap->pitch = -1;
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bitmap->data = (void *) -1;
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if (size > sf->bo_size)
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{
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sf->data = user_realloc(sf->data, size); /* grow buffer */
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if (sf->data == NULL)
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return -1;
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sf->bo_size = size;
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} else if (size < sf->bo_size)
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user_unmap(sf->data, size, sf->bo_size - size); /* unmap unused pages */
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sf->width = bitmap->width;
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sf->height = bitmap->height;
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sf->pitch = pitch;
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return 0;
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};
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int sna_create_mask()
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{
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return 0;
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}
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