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-rw-r--r--README.md105
-rw-r--r--conf/conf-notes.txt2
-rw-r--r--conf/local.conf.sample3
3 files changed, 89 insertions, 21 deletions
diff --git a/README.md b/README.md
index d78ecab29..3ceff4223 100644
--- a/README.md
+++ b/README.md
@@ -35,14 +35,14 @@ URI: git://git.openembedded.org/meta-openembedded
URI: https://gerrit.automotivelinux.org/gerrit/AGL/meta-agl
> branch: master
-> revision: 56eb51bfe05a1dd7c3c49cb7465ed83b0a072c78
+> revision: 4d71b6fbe454ff51342ab1eb6791fad66ba98c3e
> (or later)
## The Renesas R-Car Gen2 (Porter) board depends in addition on: ##
URI: https://gerrit.automotivelinux.org/gerrit/AGL/meta-renesas
> branch: agl-1.0-bsp-1.8.0
-> revision: 13a2551505942808752a1721c9a27ce7d35cec33
+> revision: bf30de66badcac7ef82d3758aa44c116ee791a28
> (or later)
Packagegroups
@@ -145,15 +145,15 @@ NOTE: These instructions are based on GENIVI wiki, [here](http://wiki.projects.g
$ cd -
$ git clone https://gerrit.automotivelinux.org/gerrit/AGL/meta-agl
$ cd meta-agl
- $ git checkout 56eb51bfe05a1dd7c3c49cb7465ed83b0a072c78
+ $ git checkout 4d71b6fbe454ff51342ab1eb6791fad66ba98c3e
$ cd -
$ git clone https://gerrit.automotivelinux.org/gerrit/AGL/meta-renesas
$ cd meta-renesas
- $ git checkout c28172567a6325f5692e5d33b1ae1c1e64e59ddf
+ $ git checkout bf30de66badcac7ef82d3758aa44c116ee791a28
$ cd -
$ git clone https://gerrit.automotivelinux.org/gerrit/AGL/meta-agl
-#### Obtain and Install Renesas Graphics Drivers
+#### Obtain and Install Renesas Graphics/Multimedia Drivers
1. Download packages from Renesas
@@ -179,20 +179,13 @@ NOTE: These instructions are based on GENIVI wiki, [here](http://wiki.projects.g
* Related Linux drivers
> R-Car_Series_Evaluation_Software_Package_of_Linux_Drivers-*.tar.gz
-3. Extract 2 tar archives
- $ tar xf R-Car_Series_Evaluation_Software_Package_for_Linux-*.tar.gz
- $ tar xf R-Car_Series_Evaluation_Software_Package_of_Linux_Drivers-*.tar.gz
+3. Copy the graphics acceleration drivers by shell script.
+ $ cd $AGL_TOP/meta-renesas/meta-rcar-gen2
+ $ ./copy_gfx_software_porter.sh ../../binary-tmp
-4. Copy 2 files manually
- 1. Locate `EVA_r8a7791_linux_sgx_binaries_gles2.tar.bz2` in the Multimedia and Graphics library deliverable and copy it into the BSP layer.
- $ cd $AGL_TOP
- $ cp <path_to_file>/EVA_r8a7791_linux_sgx_binaries_gles2.tar.bz2 \
- meta-renesas/meta-rcar-gen2/recipes-graphics/gles-module/\
- gles-user-module/r8a7791_linux_sgx_binaries_gles2.tar.bz2
-
- 2. Locate `SGX_KM_M2.tar.bz2` in the related linux drivers deliverable and copy it into the BSP layer.
- $ cp <path_to_file>SGX_KM_M2.tar.bz2 \
- $ meta-renesas/meta-rcar-gen2/recipes-kernel/gles-module/gles-kernel-module
+4. Copy the multimedia acceleration drivers by shell script.
+ $ cd $AGL_TOP/meta-renesas/meta-rcar-gen2
+ $ ./copy_mm_software_lcb.sh ../../binary-tmp
#### Build from the Source code
@@ -201,11 +194,44 @@ You can build a R-Car2 M2 (porter) image using the following steps:
1. Export TEMPLATECONF to pick up correct configuration for the build
$ export TEMPLATECONF=$AGL_TOP/meta-renesas/meta-rcar-gen2/conf
-2. Run the following command:
+2. (Optional) If you want to use multimedia accelerations, uncomment
+ manually 4 `IMAGE_INSTALL_append_porter` in conf/local.conf.
+ #IMAGE_INSTALL_append_porter = " \
+ # gstreamer1.0-plugins-bad-waylandsink \
+ # "
+
+ #IMAGE_INSTALL_append_porter = " \
+ # gstreamer1.0-plugins-base-videorate \
+ ...
+ #"
+
+ #IMAGE_INSTALL_append_porter = " \
+ # libegl libegl-dev libgbm-dev \
+ ...
+ # "
+
+ #IMAGE_INSTALL_append_porter = " \
+ # packagegroup-rcar-gen2-multimedia \
+ ...
+ # "
+
+ Also it is needed to uncomment this,
+ #MACHINE_FEATURES_append = " multimedia"
+
+ This `multimedia` enables meta-renesas's multimedia configuration.
+ The version of GStreamer1.0 which AGL distro use, will be changed
+ to 1.2.3 (meta-renesas prefers) from 1.4.1(meta-agl default) by this switch.
+
+3. Run the following command:
$ cd $AGL_TOP
$ source poky/oe-init-build-env
-3. Build the full image of AGL Demo Platform and applications
+ (Optional) If you want to use multimedia accelerations, confirm your
+ conf/bblayer.conf has a entry of `meta-openembedded/meta-multimedia`
+ in BBLAYERS because packagegroup-rcar-gen2-multimedia needs some extra
+ packages there.
+
+4. Build the full image of AGL Demo Platform and applications
$ bitbake agl-demo-platform
### Deployment (SDCARD)
@@ -255,3 +281,42 @@ NOTE: To boot weston on porter board, we need keyboard and mouse. (USB2.0 can be
2. Then weston is booted automatically, and weston-terminal appears.
3. Have fun! :)
+
+4. (Optional) This is how to test and play multimedia contents with acceleration.
+
+ 1. Boot porter without mouse and keyboard, it avoid to boot weston automatically.
+ For now, when running weston, V4L2 deosn't work correctly, so we have to
+ stop weston first (GST plugin `waylandsink` also doesn't work correctly for now).
+
+ 2. Execute these instructions:
+ $ export LD_LIBRARY_PATH="/lib:/usr/lib:/usr/local/lib:"
+
+ # Set the mixer
+ $ amixer set "LINEOUT Mixer DACL" on
+ $ amixer set "DVC Out" 10
+
+ $ modprobe -a mmngr mmngrbuf s3ctl uvcs_cmn vspm fdpm
+
+ $ media-ctl -d /dev/media0 -r
+ $ media-ctl -d /dev/media0 -l '"vsp1.2 rpf.0":1 -> "vsp1.2 uds.0":0 [1]'
+ $ media-ctl -d /dev/media0 -l '"vsp1.2 uds.0":1 -> "vsp1.2 wpf.0":0 [1]'
+ $ media-ctl -d /dev/media0 -l '"vsp1.2 wpf.0":1 -> "vsp1.2 lif":0 [1]'
+ $ media-ctl -d /dev/media0 -V '"vsp1.2 rpf.0":0 [fmt:AYUV32/1920x1080]'
+ $ media-ctl -d /dev/media0 -V '"vsp1.2 rpf.0":1 [fmt:AYUV32/1920x1080]'
+ $ media-ctl -d /dev/media0 -V '"vsp1.2 uds.0":0 [fmt:AYUV32/1920x1080]'
+ $ media-ctl -d /dev/media0 -V '"vsp1.2 uds.0":1 [fmt:AYUV32/640x480]'
+ $ media-ctl -d /dev/media0 -V '"vsp1.2 wpf.0":0 [fmt:AYUV32/640x480]'
+ $ media-ctl -d /dev/media0 -V '"vsp1.2 wpf.0":1 [fmt:ARGB32/640x480]'
+ $ media-ctl -d /dev/media0 -V '"vsp1.2 lif":0 [fmt:ARGB32/640x480]'
+
+ # in caes R-Car M2 (HDMI - DU1 - vspd0)
+ $ modetest -M rcar-du -s 10@8:1280x720@AR24 -d -P '8@19:640x480+100+200@XR24' &
+
+ After these command, Test pattern will show on display connected to
+ porter's HDMI port.
+
+ Then, you can play H264(MP4) movie like these,
+ $ gst-launch-1.0 filesrc location=./sample.mp4 ! qtdemux name=d d. ! \
+ queue ! omxh264dec no-copy=true ! v4l2sink device=/dev/video1 \
+ io-mode=userptr d. ! queue ! faad ! alsasink device=hw:0,0
+
diff --git a/conf/conf-notes.txt b/conf/conf-notes.txt
new file mode 100644
index 000000000..177b7066f
--- /dev/null
+++ b/conf/conf-notes.txt
@@ -0,0 +1,2 @@
+Common targets are:
+ agl-demo-platform
diff --git a/conf/local.conf.sample b/conf/local.conf.sample
index de0b99038..d8e88e3c4 100644
--- a/conf/local.conf.sample
+++ b/conf/local.conf.sample
@@ -84,7 +84,8 @@ MACHINE ??= "qemux86-64"
# Ultimately when creating custom policy, people will likely end up subclassing
# these defaults.
#
-DISTRO ?= "poky"
+#DISTRO ?= "poky"
+DISTRO ?= "poky-agl"
# As an example of a subclass there is a "bleeding" edge policy configuration
# where many versions are set to the absolute latest code from the upstream
# source control systems. This is just mentioned here as an example, its not