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651 lines
18 KiB
651 lines
18 KiB
/*
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* Copyright (C) 2010-2017 ARM Limited. All rights reserved.
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*
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* Copyright (C) 2008 The Android Open Source Project
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*
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you may not use this file except in compliance with the License.
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* You may obtain a copy of the License at
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*/
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#include <string.h>
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#include <errno.h>
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#include <fcntl.h>
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#include <stdlib.h>
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#include <sys/ioctl.h>
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#include <linux/fb.h>
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#include <log/log.h>
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#include <cutils/atomic.h>
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#include <hardware/hardware.h>
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#include <hardware/fb.h>
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#include <GLES/gl.h>
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#if GRALLOC_USE_GRALLOC1_API == 1
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#include <hardware/gralloc1.h>
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#else
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#include <hardware/gralloc.h>
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#endif
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#include "mali_gralloc_module.h"
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#include "mali_gralloc_private_interface_types.h"
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#include "mali_gralloc_buffer.h"
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#include "gralloc_helper.h"
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#include "gralloc_vsync.h"
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#include "mali_gralloc_bufferaccess.h"
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#include "mali_gralloc_ion.h"
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#define STANDARD_LINUX_SCREEN
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// numbers of buffers for page flipping
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#define NUM_BUFFERS NUM_FB_BUFFERS
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enum
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{
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PAGE_FLIP = 0x00000001,
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};
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static int fb_set_swap_interval(struct framebuffer_device_t *dev, int interval)
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{
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if (interval < dev->minSwapInterval)
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{
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interval = dev->minSwapInterval;
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}
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else if (interval > dev->maxSwapInterval)
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{
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interval = dev->maxSwapInterval;
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}
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private_module_t *m = reinterpret_cast<private_module_t *>(dev->common.module);
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m->swapInterval = interval;
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if (0 == interval)
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{
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gralloc_vsync_disable(dev);
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}
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else
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{
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gralloc_vsync_enable(dev);
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}
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return 0;
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}
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static int fb_post(struct framebuffer_device_t *dev, buffer_handle_t buffer)
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{
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if (private_handle_t::validate(buffer) < 0)
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{
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return -EINVAL;
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}
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private_handle_t const *hnd = reinterpret_cast<private_handle_t const *>(buffer);
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private_module_t *m = reinterpret_cast<private_module_t *>(dev->common.module);
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if (m->currentBuffer)
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{
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mali_gralloc_unlock(m, m->currentBuffer);
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m->currentBuffer = 0;
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}
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if (hnd->flags & private_handle_t::PRIV_FLAGS_FRAMEBUFFER)
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{
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mali_gralloc_lock(m, buffer, private_module_t::PRIV_USAGE_LOCKED_FOR_POST, -1, -1, -1, -1, NULL);
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int interrupt;
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m->info.activate = FB_ACTIVATE_VBL;
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m->info.yoffset = hnd->offset / m->finfo.line_length;
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#ifdef STANDARD_LINUX_SCREEN
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if (ioctl(m->framebuffer->fd, FBIOPAN_DISPLAY, &m->info) == -1)
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{
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AERR("FBIOPAN_DISPLAY failed for fd: %d", m->framebuffer->fd);
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mali_gralloc_unlock(m, buffer);
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return -errno;
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}
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#else /*Standard Android way*/
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if (ioctl(m->framebuffer->fd, FBIOPUT_VSCREENINFO, &m->info) == -1)
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{
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AERR("FBIOPUT_VSCREENINFO failed for fd: %d", m->framebuffer->fd);
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mali_gralloc_unlock(m, buffer);
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return -errno;
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}
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#endif
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if (0 != gralloc_wait_for_vsync(dev))
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{
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AERR("Gralloc wait for vsync failed for fd: %d", m->framebuffer->fd);
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mali_gralloc_unlock(m, buffer);
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return -errno;
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}
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m->currentBuffer = buffer;
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}
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else
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{
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void *fb_vaddr;
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void *buffer_vaddr;
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mali_gralloc_lock(m, m->framebuffer, GRALLOC_USAGE_SW_WRITE_RARELY, -1, -1, -1, -1, &fb_vaddr);
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mali_gralloc_lock(m, buffer, GRALLOC_USAGE_SW_READ_RARELY, -1, -1, -1, -1, &buffer_vaddr);
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// If buffer's alignment match framebuffer alignment we can do a direct copy.
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// If not we must fallback to do an aligned copy of each line.
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if (hnd->byte_stride == (int)m->finfo.line_length)
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{
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memcpy(fb_vaddr, buffer_vaddr, m->finfo.line_length * m->info.yres);
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}
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else
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{
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uintptr_t fb_offset = 0;
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uintptr_t buffer_offset = 0;
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unsigned int i;
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for (i = 0; i < m->info.yres; i++)
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{
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memcpy((void *)((uintptr_t)fb_vaddr + fb_offset), (void *)((uintptr_t)buffer_vaddr + buffer_offset),
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m->finfo.line_length);
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fb_offset += m->finfo.line_length;
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buffer_offset += hnd->byte_stride;
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}
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}
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mali_gralloc_unlock(m, buffer);
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mali_gralloc_unlock(m, m->framebuffer);
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}
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return 0;
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}
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static int init_frame_buffer_locked(struct private_module_t *module)
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{
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if (module->framebuffer)
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{
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return 0; // Nothing to do, already initialized
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}
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char const *const device_template[] = { "/dev/graphics/fb%u", "/dev/fb%u", NULL };
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int fd = -1;
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int i = 0;
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char name[64];
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while ((fd == -1) && device_template[i])
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{
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snprintf(name, 64, device_template[i], 0);
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fd = open(name, O_RDWR, 0);
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i++;
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}
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if (fd < 0)
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{
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return -errno;
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}
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struct fb_fix_screeninfo finfo;
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if (ioctl(fd, FBIOGET_FSCREENINFO, &finfo) == -1)
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{
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return -errno;
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}
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struct fb_var_screeninfo info;
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if (ioctl(fd, FBIOGET_VSCREENINFO, &info) == -1)
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{
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return -errno;
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}
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info.reserved[0] = 0;
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info.reserved[1] = 0;
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info.reserved[2] = 0;
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info.xoffset = 0;
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info.yoffset = 0;
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info.activate = FB_ACTIVATE_NOW;
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#ifdef GRALLOC_16_BITS
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/*
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* Explicitly request 5/6/5
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*/
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info.bits_per_pixel = 16;
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info.red.offset = 11;
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info.red.length = 5;
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info.green.offset = 5;
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info.green.length = 6;
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info.blue.offset = 0;
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info.blue.length = 5;
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info.transp.offset = 0;
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info.transp.length = 0;
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#else
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/*
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* Explicitly request 8/8/8
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*/
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info.bits_per_pixel = 32;
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info.red.offset = 16;
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info.red.length = 8;
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info.green.offset = 8;
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info.green.length = 8;
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info.blue.offset = 0;
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info.blue.length = 8;
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info.transp.offset = 0;
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info.transp.length = 0;
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#endif
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/*
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* Request NUM_BUFFERS screens (at lest 2 for page flipping)
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*/
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info.yres_virtual = info.yres * NUM_BUFFERS;
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uint32_t flags = PAGE_FLIP;
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if (ioctl(fd, FBIOPUT_VSCREENINFO, &info) == -1)
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{
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info.yres_virtual = info.yres;
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flags &= ~PAGE_FLIP;
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AWAR("FBIOPUT_VSCREENINFO failed, page flipping not supported fd: %d", fd);
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}
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if (info.yres_virtual < info.yres * 2)
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{
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// we need at least 2 for page-flipping
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info.yres_virtual = info.yres;
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flags &= ~PAGE_FLIP;
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AWAR("page flipping not supported (yres_virtual=%d, requested=%d)", info.yres_virtual, info.yres * 2);
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}
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if (ioctl(fd, FBIOGET_VSCREENINFO, &info) == -1)
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{
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return -errno;
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}
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int refreshRate = 0;
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if (info.pixclock > 0)
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{
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refreshRate =
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1000000000000000LLU / (uint64_t(info.upper_margin + info.lower_margin + info.yres + info.hsync_len) *
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(info.left_margin + info.right_margin + info.xres + info.vsync_len) * info.pixclock);
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}
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else
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{
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AWAR("fbdev pixclock is zero for fd: %d", fd);
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}
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if (refreshRate == 0)
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{
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refreshRate = 60 * 1000; // 60 Hz
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}
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if (int(info.width) <= 0 || int(info.height) <= 0)
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{
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// the driver doesn't return that information
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// default to 160 dpi
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info.width = ((info.xres * 25.4f) / 160.0f + 0.5f);
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info.height = ((info.yres * 25.4f) / 160.0f + 0.5f);
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}
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float xdpi = (info.xres * 25.4f) / info.width;
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float ydpi = (info.yres * 25.4f) / info.height;
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float fps = refreshRate / 1000.0f;
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AINF("using (fd=%d)\n"
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"id = %s\n"
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"xres = %d px\n"
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"yres = %d px\n"
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"xres_virtual = %d px\n"
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"yres_virtual = %d px\n"
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"bpp = %d\n"
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"r = %2u:%u\n"
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"g = %2u:%u\n"
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"b = %2u:%u\n",
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fd, finfo.id, info.xres, info.yres, info.xres_virtual, info.yres_virtual, info.bits_per_pixel, info.red.offset,
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info.red.length, info.green.offset, info.green.length, info.blue.offset, info.blue.length);
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AINF("width = %d mm (%f dpi)\n"
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"height = %d mm (%f dpi)\n"
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"refresh rate = %.2f Hz\n",
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info.width, xdpi, info.height, ydpi, fps);
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if (0 == strncmp(finfo.id, "CLCD FB", 7))
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{
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module->dpy_type = MALI_DPY_TYPE_CLCD;
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}
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else if (0 == strncmp(finfo.id, "ARM Mali HDLCD", 14))
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{
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module->dpy_type = MALI_DPY_TYPE_HDLCD;
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}
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else if (0 == strncmp(finfo.id, "ARM HDLCD Control", 16))
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{
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module->dpy_type = MALI_DPY_TYPE_HDLCD;
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}
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else
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{
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module->dpy_type = MALI_DPY_TYPE_UNKNOWN;
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}
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if (ioctl(fd, FBIOGET_FSCREENINFO, &finfo) == -1)
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{
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return -errno;
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}
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if (finfo.smem_len <= 0)
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{
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return -errno;
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}
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module->flags = flags;
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module->info = info;
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module->finfo = finfo;
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module->xdpi = xdpi;
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module->ydpi = ydpi;
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module->fps = fps;
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module->swapInterval = 1;
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/*
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* map the framebuffer
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*/
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size_t fbSize = round_up_to_page_size(finfo.line_length * info.yres_virtual);
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void *vaddr = mmap(0, fbSize, PROT_READ | PROT_WRITE, MAP_SHARED, fd, 0);
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if (vaddr == MAP_FAILED)
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{
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AERR("Error mapping the framebuffer (%s)", strerror(errno));
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return -errno;
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}
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memset(vaddr, 0, fbSize);
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// Create a "fake" buffer object for the entire frame buffer memory, and store it in the module
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module->framebuffer = new private_handle_t(private_handle_t::PRIV_FLAGS_FRAMEBUFFER, fbSize, vaddr,
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GRALLOC_USAGE_HW_FB, GRALLOC_USAGE_HW_FB, dup(fd), 0);
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module->numBuffers = info.yres_virtual / info.yres;
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module->bufferMask = 0;
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return 0;
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}
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static int init_frame_buffer(struct private_module_t *module)
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{
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pthread_mutex_lock(&module->lock);
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int err = init_frame_buffer_locked(module);
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pthread_mutex_unlock(&module->lock);
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return err;
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}
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static int fb_close(struct hw_device_t *device)
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{
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framebuffer_device_t *dev = reinterpret_cast<framebuffer_device_t *>(device);
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if (dev)
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{
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free(dev);
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}
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return 0;
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}
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static int fb_alloc_framebuffer_dmabuf(private_module_t *m, private_handle_t *hnd)
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{
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struct fb_dmabuf_export fb_dma_buf;
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int res;
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res = ioctl(m->framebuffer->fd, FBIOGET_DMABUF, &fb_dma_buf);
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if (res == 0)
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{
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hnd->share_fd = fb_dma_buf.fd;
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return 0;
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}
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else
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{
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AINF("FBIOGET_DMABUF ioctl failed(%d). See gralloc_priv.h and the integration manual for vendor framebuffer "
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"integration",
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res);
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return -1;
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}
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}
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static int fb_alloc_from_ion_module(mali_gralloc_module *m, size_t buffer_size, uint64_t consumer_usage,
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uint64_t producer_usage, buffer_handle_t *pHandle)
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{
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buffer_descriptor_t fb_buffer_descriptor;
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gralloc_buffer_descriptor_t gralloc_buffer_descriptor[1];
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bool shared = false;
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int err = 0;
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fb_buffer_descriptor.size = buffer_size;
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fb_buffer_descriptor.consumer_usage = consumer_usage;
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fb_buffer_descriptor.producer_usage = producer_usage;
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gralloc_buffer_descriptor[0] = (gralloc_buffer_descriptor_t)(&fb_buffer_descriptor);
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err = mali_gralloc_ion_allocate(m, gralloc_buffer_descriptor, 1, pHandle, &shared);
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return err;
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}
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static int fb_alloc_framebuffer_locked(mali_gralloc_module *m, uint64_t consumer_usage, uint64_t producer_usage,
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buffer_handle_t *pHandle, int *stride, int *byte_stride)
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{
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// allocate the framebuffer
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if (m->framebuffer == NULL)
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{
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// initialize the framebuffer, the framebuffer is mapped once and forever.
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int err = init_frame_buffer_locked(m);
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if (err < 0)
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{
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return err;
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}
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}
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uint32_t bufferMask = m->bufferMask;
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const uint32_t numBuffers = m->numBuffers;
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/* framebufferSize is used for allocating the handle to the framebuffer and refers
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* to the size of the actual framebuffer.
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* alignedFramebufferSize is used for allocating a possible internal buffer and
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* thus need to consider internal alignment requirements. */
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const size_t framebufferSize = m->finfo.line_length * m->info.yres;
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const size_t alignedFramebufferSize = GRALLOC_ALIGN(m->finfo.line_length, 64) * m->info.yres;
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*stride = m->info.xres;
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if (numBuffers == 1)
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{
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// If we have only one buffer, we never use page-flipping. Instead,
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// we return a regular buffer which will be memcpy'ed to the main
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// screen when post is called.
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uint64_t newConsumerUsage = (consumer_usage & ~GRALLOC_USAGE_HW_FB);
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uint64_t newProducerUsage = (producer_usage & ~GRALLOC_USAGE_HW_FB) | GRALLOC_USAGE_HW_2D;
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AWAR("fallback to single buffering. Virtual Y-res too small %d", m->info.yres);
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*byte_stride = GRALLOC_ALIGN(m->finfo.line_length, 64);
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return fb_alloc_from_ion_module(m, alignedFramebufferSize, newConsumerUsage, newProducerUsage, pHandle);
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}
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if (bufferMask >= ((1LU << numBuffers) - 1))
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{
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// We ran out of buffers, reset bufferMask
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bufferMask = 0;
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m->bufferMask = 0;
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}
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uintptr_t framebufferVaddr = (uintptr_t)m->framebuffer->base;
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// find a free slot
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for (uint32_t i = 0; i < numBuffers; i++)
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{
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if ((bufferMask & (1LU << i)) == 0)
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{
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m->bufferMask |= (1LU << i);
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break;
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}
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framebufferVaddr += framebufferSize;
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}
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// The entire framebuffer memory is already mapped, now create a buffer object for parts of this memory
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private_handle_t *hnd = new private_handle_t(
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private_handle_t::PRIV_FLAGS_FRAMEBUFFER, framebufferSize, (void *)framebufferVaddr, consumer_usage,
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producer_usage, dup(m->framebuffer->fd), (framebufferVaddr - (uintptr_t)m->framebuffer->base));
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/*
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* Perform allocator specific actions. If these fail we fall back to a regular buffer
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* which will be memcpy'ed to the main screen when fb_post is called.
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*/
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if (fb_alloc_framebuffer_dmabuf(m, hnd) == -1)
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{
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delete hnd;
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uint64_t newConsumerUsage = (consumer_usage & ~GRALLOC_USAGE_HW_FB);
|
|
uint64_t newProducerUsage = (producer_usage & ~GRALLOC_USAGE_HW_FB) | GRALLOC_USAGE_HW_2D;
|
|
AERR("Fallback to single buffering. Unable to map framebuffer memory to handle:%p", hnd);
|
|
*byte_stride = GRALLOC_ALIGN(m->finfo.line_length, 64);
|
|
return fb_alloc_from_ion_module(m, alignedFramebufferSize, newConsumerUsage, newProducerUsage, pHandle);
|
|
}
|
|
|
|
*pHandle = hnd;
|
|
*byte_stride = m->finfo.line_length;
|
|
|
|
return 0;
|
|
}
|
|
|
|
int fb_alloc_framebuffer(mali_gralloc_module *m, uint64_t consumer_usage, uint64_t producer_usage,
|
|
buffer_handle_t *pHandle, int *stride, int *byte_stride)
|
|
{
|
|
pthread_mutex_lock(&m->lock);
|
|
int err = fb_alloc_framebuffer_locked(m, consumer_usage, producer_usage, pHandle, stride, byte_stride);
|
|
pthread_mutex_unlock(&m->lock);
|
|
return err;
|
|
}
|
|
|
|
int compositionComplete(struct framebuffer_device_t *dev)
|
|
{
|
|
GRALLOC_UNUSED(dev);
|
|
|
|
/* By doing a finish here we force the GL driver to start rendering
|
|
all the drawcalls up to this point, and to wait for the rendering to be complete.*/
|
|
glFinish();
|
|
/* The rendering of the backbuffer is now completed.
|
|
When SurfaceFlinger later does a call to eglSwapBuffer(), the swap will be done
|
|
synchronously in the same thread, and not asynchronoulsy in a background thread later.
|
|
The SurfaceFlinger requires this behaviour since it releases the lock on all the
|
|
SourceBuffers (Layers) after the compositionComplete() function returns.
|
|
However this "bad" behaviour by SurfaceFlinger should not affect performance,
|
|
since the Applications that render the SourceBuffers (Layers) still get the
|
|
full renderpipeline using asynchronous rendering. So they perform at maximum speed,
|
|
and because of their complexity compared to the Surface flinger jobs, the Surface flinger
|
|
is normally faster even if it does everyhing synchronous and serial.
|
|
*/
|
|
return 0;
|
|
}
|
|
|
|
int framebuffer_device_open(hw_module_t const *module, const char *name, hw_device_t **device)
|
|
{
|
|
int status = -EINVAL;
|
|
|
|
GRALLOC_UNUSED(name);
|
|
|
|
#if GRALLOC_USE_GRALLOC1_API == 1
|
|
gralloc1_device_t *gralloc_device;
|
|
#else
|
|
alloc_device_t *gralloc_device;
|
|
#endif
|
|
|
|
#if DISABLE_FRAMEBUFFER_HAL == 1
|
|
AERR("Framebuffer HAL not support/disabled %s",
|
|
#ifdef MALI_DISPLAY_VERSION
|
|
"with MALI display enable");
|
|
#else
|
|
"");
|
|
#endif
|
|
return -ENODEV;
|
|
#endif
|
|
|
|
#if GRALLOC_USE_GRALLOC1_API == 1
|
|
status = gralloc1_open(module, &gralloc_device);
|
|
#else
|
|
status = gralloc_open(module, &gralloc_device);
|
|
#endif
|
|
|
|
if (status < 0)
|
|
{
|
|
return status;
|
|
}
|
|
|
|
private_module_t *m = (private_module_t *)module;
|
|
status = init_frame_buffer(m);
|
|
|
|
/* malloc is used instead of 'new' to instantiate the struct framebuffer_device_t
|
|
* C++11 spec specifies that if a class/struct has a const member,default constructor
|
|
* is deleted. So, if 'new' is used to instantiate the class/struct, it will throw
|
|
* error complaining about deleted constructor. Even if the struct is wrapped in a class
|
|
* it will still try to use the base class constructor to initialize the members, resulting
|
|
* in error 'deleted constructor'.
|
|
* This leaves two options
|
|
* Option 1: initialize the const members at the instantiation time. With {value1, value2 ..}
|
|
* Which relies on the order of the members, and if members are reordered or a new member is introduced
|
|
* it will end up assiging wrong value to members. Designated assignment as well has been removed in C++11
|
|
* Option 2: use malloc instead of 'new' to allocate the class/struct and initialize the members in code.
|
|
* This is the only maintainable option available.
|
|
*/
|
|
|
|
framebuffer_device_t *dev = reinterpret_cast<framebuffer_device_t *>(malloc(sizeof(framebuffer_device_t)));
|
|
|
|
/* if either or both of init_frame_buffer() and malloc failed */
|
|
if ((status < 0) || (!dev))
|
|
{
|
|
#if GRALLOC_USE_GRALLOC1_API == 1
|
|
gralloc1_close(gralloc_device);
|
|
#else
|
|
gralloc_close(gralloc_device);
|
|
#endif
|
|
(!dev) ? (void)(status = -ENOMEM) : free(dev);
|
|
return status;
|
|
}
|
|
|
|
memset(dev, 0, sizeof(*dev));
|
|
|
|
/* initialize the procs */
|
|
dev->common.tag = HARDWARE_DEVICE_TAG;
|
|
dev->common.version = 0;
|
|
dev->common.module = const_cast<hw_module_t *>(module);
|
|
dev->common.close = fb_close;
|
|
dev->setSwapInterval = fb_set_swap_interval;
|
|
dev->post = fb_post;
|
|
dev->setUpdateRect = 0;
|
|
dev->compositionComplete = &compositionComplete;
|
|
|
|
int stride = m->finfo.line_length / (m->info.bits_per_pixel >> 3);
|
|
const_cast<uint32_t &>(dev->flags) = 0;
|
|
const_cast<uint32_t &>(dev->width) = m->info.xres;
|
|
const_cast<uint32_t &>(dev->height) = m->info.yres;
|
|
const_cast<int &>(dev->stride) = stride;
|
|
#ifdef GRALLOC_16_BITS
|
|
const_cast<int &>(dev->format) = HAL_PIXEL_FORMAT_RGB_565;
|
|
#else
|
|
const_cast<int &>(dev->format) = HAL_PIXEL_FORMAT_BGRA_8888;
|
|
#endif
|
|
const_cast<float &>(dev->xdpi) = m->xdpi;
|
|
const_cast<float &>(dev->ydpi) = m->ydpi;
|
|
const_cast<float &>(dev->fps) = m->fps;
|
|
const_cast<int &>(dev->minSwapInterval) = 0;
|
|
const_cast<int &>(dev->maxSwapInterval) = 1;
|
|
*device = &dev->common;
|
|
|
|
gralloc_vsync_enable(dev);
|
|
|
|
return status;
|
|
}
|