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448 lines
16 KiB
448 lines
16 KiB
/* |
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* Copyright (c) 2011-2013, The Linux Foundation. All rights reserved. |
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* |
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* Redistribution and use in source and binary forms, with or without |
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* modification, are permitted provided that the following conditions are |
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* met: |
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* * Redistributions of source code must retain the above copyright |
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* notice, this list of conditions and the following disclaimer. |
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* * Redistributions in binary form must reproduce the above |
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* copyright notice, this list of conditions and the following |
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* disclaimer in the documentation and/or other materials provided |
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* with the distribution. |
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* * Neither the name of The Linux Foundation. nor the names of its |
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* contributors may be used to endorse or promote products derived |
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* from this software without specific prior written permission. |
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* |
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* THIS SOFTWARE IS PROVIDED "AS IS" AND ANY EXPRESS OR IMPLIED |
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* WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF |
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* MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NON-INFRINGEMENT |
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* ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS |
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* BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR |
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* CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF |
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* SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR |
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* BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, |
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* WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE |
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* OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN |
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* IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. |
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*/ |
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#ifndef OVERLAY_H |
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#define OVERLAY_H |
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#include "overlayUtils.h" |
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#include "mdp_version.h" |
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#include "utils/threads.h" |
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#ifdef USES_POST_PROCESSING |
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#include "lib-postproc.h" |
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#endif |
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struct MetaData_t; |
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namespace overlay { |
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class GenericPipe; |
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class Overlay : utils::NoCopy { |
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public: |
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enum { DMA_BLOCK_MODE, DMA_LINE_MODE }; |
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//Abstract Display types. Each backed by a LayerMixer, |
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//represented by a fb node. |
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//High res panels can be backed by 2 layer mixers and a single fb node. |
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enum { DPY_PRIMARY, DPY_EXTERNAL, DPY_WRITEBACK, DPY_UNUSED }; |
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enum { DPY_MAX = DPY_UNUSED }; |
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enum { MIXER_LEFT, MIXER_RIGHT, MIXER_UNUSED }; |
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enum { MIXER_DEFAULT = MIXER_LEFT, MIXER_MAX = MIXER_UNUSED }; |
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enum { MAX_FB_DEVICES = DPY_MAX }; |
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enum { FORMAT_YUV, FORMAT_RGB , FORMAT_NONE }; |
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struct PipeSpecs { |
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PipeSpecs() : formatClass(FORMAT_RGB), needsScaling(false), fb(false), |
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dpy(DPY_PRIMARY), mixer(MIXER_DEFAULT), numActiveDisplays(1) {} |
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int formatClass; |
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bool needsScaling; |
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bool fb; |
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int dpy; |
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int mixer; |
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int numActiveDisplays; |
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}; |
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/* dtor close */ |
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~Overlay(); |
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/* Marks the beginning of a drawing round, resets usage bits on pipes |
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* Should be called when drawing begins before any pipe config is done. |
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*/ |
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void configBegin(); |
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/* Marks the end of config for this drawing round |
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* Will do garbage collection of pipe objects and thus calling UNSETs, |
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* closing FDs, removing rotator objects and memory, if allocated. |
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* Should be called after all pipe configs are done. |
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*/ |
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void configDone(); |
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/* Get a pipe that supported the specified format class (yuv, rgb) and has |
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* scaling capabilities. |
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*/ |
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utils::eDest getPipe(const PipeSpecs& pipeSpecs); |
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/* Returns the eDest corresponding to an already allocated pipeid. |
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* Useful for the reservation case, when libvpu reserves the pipe at its |
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* end, and expect the overlay to allocate a given pipe for a layer. |
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*/ |
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utils::eDest reservePipe(int pipeid); |
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/* getting dest for the given pipeid */ |
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utils::eDest getDest(int pipeid); |
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/* getting overlay.pipeid for the given dest */ |
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int getPipeId(utils::eDest dest); |
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void setSource(const utils::PipeArgs args, utils::eDest dest); |
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void setCrop(const utils::Dim& d, utils::eDest dest); |
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void setColor(const uint32_t color, utils::eDest dest); |
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void setTransform(const int orientation, utils::eDest dest); |
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void setPosition(const utils::Dim& dim, utils::eDest dest); |
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void setVisualParams(const MetaData_t& data, utils::eDest dest); |
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bool commit(utils::eDest dest); |
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bool queueBuffer(int fd, uint32_t offset, utils::eDest dest); |
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/* pipe reservation session is running */ |
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bool sessionInProgress(utils::eDest dest); |
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/* pipe reservation session has ended*/ |
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bool isSessionEnded(utils::eDest dest); |
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/* start session for the pipe reservation */ |
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void startSession(utils::eDest dest); |
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/* end all started sesisons */ |
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void endAllSessions(); |
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/* Returns available ("unallocated") pipes for a display's mixer */ |
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int availablePipes(int dpy, int mixer); |
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/* Returns available ("unallocated") pipes for a display */ |
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int availablePipes(int dpy); |
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/* Returns available ("unallocated") pipe of given type for a display */ |
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int availablePipes(int dpy, utils::eMdpPipeType type); |
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/* Returns if any of the requested pipe type is attached to any of the |
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* displays |
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*/ |
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bool isPipeTypeAttached(utils::eMdpPipeType type); |
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/* Compare pipe priorities and return |
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* true - A swap is needed to fix the priority. |
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* false - Good, priority wise. |
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*/ |
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bool needsPrioritySwap(utils::eDest pipe1Index, utils::eDest pipe2Index); |
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/* Returns pipe dump. Expects a NULL terminated buffer of big enough size |
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* to populate. |
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*/ |
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/* Returns if DMA pipe multiplexing is supported by the mdss driver */ |
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static bool isDMAMultiplexingSupported(); |
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/* Returns if UI scaling on external is supported on the targets */ |
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static bool isUIScalingOnExternalSupported(); |
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void getDump(char *buf, size_t len); |
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/* Reset usage and allocation bits on all pipes for given display */ |
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void clear(int dpy); |
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/* Validate the set of pipes for a display and set them in driver */ |
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bool validateAndSet(const int& dpy, const int& fbFd); |
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/* Closes open pipes, called during startup */ |
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static int initOverlay(); |
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/* Returns the singleton instance of overlay */ |
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static Overlay* getInstance(); |
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static void setDMAMode(const int& mode); |
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static int getDMAMode(); |
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/* Returns the framebuffer node backing up the display */ |
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static int getFbForDpy(const int& dpy); |
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static bool displayCommit(const int& fd); |
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/* Overloads display commit with ROI's of each halves. |
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* Single interface panels will only update left ROI. */ |
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static bool displayCommit(const int& fd, const utils::Dim& lRoi, |
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const utils::Dim& rRoi); |
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/* Logs pipe lifecycle events like set, unset, commit when enabled */ |
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static void debugPipeLifecycle(const bool& enable); |
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/* Returns true if pipe life cycle logging is enabled */ |
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static bool isDebugPipeLifecycle(); |
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private: |
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/* Ctor setup */ |
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explicit Overlay(); |
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/*Validate index range, abort if invalid */ |
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void validate(int index); |
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static void setDMAMultiplexingSupported(); |
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/* Returns an available pipe based on the type of pipe requested. When ANY |
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* is requested, the first available VG or RGB is returned. If no pipe is |
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* available for the display "dpy" then INV is returned. Note: If a pipe is |
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* assigned to a certain display, then it cannot be assigned to another |
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* display without being garbage-collected once. To add if a pipe is |
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* asisgned to a mixer within a display it cannot be reused for another |
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* mixer without being UNSET once*/ |
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utils::eDest nextPipe(utils::eMdpPipeType, const PipeSpecs& pipeSpecs); |
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/* Helpers that enfore target specific policies while returning pipes */ |
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utils::eDest getPipe_8x26(const PipeSpecs& pipeSpecs); |
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utils::eDest getPipe_8x16(const PipeSpecs& pipeSpecs); |
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utils::eDest getPipe_8x39(const PipeSpecs& pipeSpecs); |
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utils::eDest getPipe_8994(const PipeSpecs& pipeSpecs); |
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/* Returns the handle to libscale.so's programScale function */ |
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static int (*getFnProgramScale())(struct mdp_overlay_list *); |
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/* Creates a scalar object using libscale.so */ |
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static void initScalar(); |
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/* Destroys the scalar object using libscale.so */ |
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static void destroyScalar(); |
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/* Sets the pipe type RGB/VG/DMA*/ |
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void setPipeType(utils::eDest pipeIndex, const utils::eMdpPipeType pType); |
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/* Dynamically link ABL library */ |
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static void initPostProc(); |
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static void destroyPostProc(); |
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static int (*getFnPpParams())(const struct compute_params *, |
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struct mdp_overlay_pp_params *); |
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/* Just like a Facebook for pipes, but much less profile info */ |
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struct PipeBook { |
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void init(); |
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void destroy(); |
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/* Check if pipe exists and return true, false otherwise */ |
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bool valid(); |
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/* Hardware pipe wrapper */ |
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GenericPipe *mPipe; |
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/* Display using this pipe. Refer to enums above */ |
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int mDisplay; |
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/* Mixer within a split display this pipe is attached to */ |
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int mMixer; |
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/* Format for which this pipe is attached to the mixer*/ |
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int mFormatType; |
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/* operations on bitmap */ |
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static bool pipeUsageUnchanged(); |
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static void setUse(int index); |
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static void resetUse(int index); |
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static bool isUsed(int index); |
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static bool isNotUsed(int index); |
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static void save(); |
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static void setAllocation(int index); |
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static void resetAllocation(int index); |
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static bool isAllocated(int index); |
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static bool isNotAllocated(int index); |
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static utils::eMdpPipeType getPipeType(utils::eDest dest); |
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static const char* getDestStr(utils::eDest dest); |
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static int NUM_PIPES; |
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static utils::eMdpPipeType pipeTypeLUT[utils::OV_MAX]; |
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static int pipeMinID[utils::OV_MDP_PIPE_ANY]; |
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static int pipeMaxID[utils::OV_MDP_PIPE_ANY]; |
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/* Session for reserved pipes */ |
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enum Session { |
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NONE, |
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START, |
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END |
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}; |
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Session mSession; |
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private: |
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//usage tracks if a successful commit happened. So a pipe could be |
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//allocated to a display, but it may not end up using it for various |
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//reasons. If one display actually uses a pipe then it amy not be |
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//used by another display, without an UNSET in between. |
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static int sPipeUsageBitmap; |
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static int sLastUsageBitmap; |
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//Tracks which pipe objects are allocated. This does not imply that they |
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//will actually be used. For example, a display might choose to acquire |
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//3 pipe objects in one shot and proceed with config only if it gets all |
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//3. The bitmap helps allocate different pipe objects on each request. |
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static int sAllocatedBitmap; |
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}; |
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PipeBook mPipeBook[utils::OV_INVALID]; //Used as max |
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/* Singleton Instance*/ |
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static Overlay *sInstance; |
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static int sDpyFbMap[DPY_MAX]; |
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static int sDMAMode; |
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static bool sDMAMultiplexingSupported; |
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static void *sLibScaleHandle; |
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static int (*sFnProgramScale)(struct mdp_overlay_list *); |
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/* Dynamically link ABL library */ |
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static void *sLibAblHandle; |
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static int (*sFnppParams)(const struct compute_params *, |
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struct mdp_overlay_pp_params *); |
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static bool sDebugPipeLifecycle; |
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friend class MdpCtrl; |
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}; |
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inline void Overlay::validate(int index) { |
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OVASSERT(index >=0 && index < PipeBook::NUM_PIPES, \ |
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"%s, Index out of bounds: %d", __FUNCTION__, index); |
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OVASSERT(mPipeBook[index].valid(), "Pipe does not exist %s", |
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PipeBook::getDestStr((utils::eDest)index)); |
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} |
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inline int Overlay::availablePipes(int dpy, int mixer) { |
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int avail = 0; |
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for(int i = 0; i < PipeBook::NUM_PIPES; i++) { |
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if( (mPipeBook[i].mDisplay == DPY_UNUSED || |
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mPipeBook[i].mDisplay == dpy) && |
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(mPipeBook[i].mMixer == MIXER_UNUSED || |
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mPipeBook[i].mMixer == mixer) && |
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PipeBook::isNotAllocated(i) && |
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!(Overlay::getDMAMode() == Overlay::DMA_BLOCK_MODE && |
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PipeBook::getPipeType((utils::eDest)i) == |
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utils::OV_MDP_PIPE_DMA)) { |
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avail++; |
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} |
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} |
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return avail; |
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} |
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inline int Overlay::availablePipes(int dpy) { |
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int avail = 0; |
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for(int i = 0; i < PipeBook::NUM_PIPES; i++) { |
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if( (mPipeBook[i].mDisplay == DPY_UNUSED || |
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mPipeBook[i].mDisplay == dpy) && |
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PipeBook::isNotAllocated(i) && |
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!(Overlay::getDMAMode() == Overlay::DMA_BLOCK_MODE && |
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PipeBook::getPipeType((utils::eDest)i) == |
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utils::OV_MDP_PIPE_DMA)) { |
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avail++; |
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} |
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} |
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return avail; |
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} |
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inline int Overlay::availablePipes(int dpy, utils::eMdpPipeType type) { |
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int avail = 0; |
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for(int i = 0; i < PipeBook::NUM_PIPES; i++) { |
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if((mPipeBook[i].mDisplay == DPY_UNUSED || |
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mPipeBook[i].mDisplay == dpy) && |
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PipeBook::isNotAllocated(i) && |
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type == PipeBook::getPipeType((utils::eDest)i)) { |
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avail++; |
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} |
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} |
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return avail; |
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} |
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inline void Overlay::setDMAMode(const int& mode) { |
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if(mode == DMA_LINE_MODE || mode == DMA_BLOCK_MODE) |
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sDMAMode = mode; |
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} |
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inline void Overlay::setDMAMultiplexingSupported() { |
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sDMAMultiplexingSupported = false; |
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if(qdutils::MDPVersion::getInstance().is8x26()) |
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sDMAMultiplexingSupported = true; |
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} |
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inline bool Overlay::isDMAMultiplexingSupported() { |
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return sDMAMultiplexingSupported; |
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} |
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inline bool Overlay::isUIScalingOnExternalSupported() { |
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if(qdutils::MDPVersion::getInstance().is8x26() or |
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qdutils::MDPVersion::getInstance().is8x16() or |
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qdutils::MDPVersion::getInstance().is8x39()) { |
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return false; |
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} |
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return true; |
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} |
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inline int Overlay::getDMAMode() { |
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return sDMAMode; |
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} |
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inline int Overlay::getFbForDpy(const int& dpy) { |
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OVASSERT(dpy >= 0 && dpy < DPY_MAX, "Invalid dpy %d", dpy); |
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return sDpyFbMap[dpy]; |
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} |
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inline int (*Overlay::getFnProgramScale())(struct mdp_overlay_list *) { |
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return sFnProgramScale; |
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} |
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inline int (*Overlay::getFnPpParams())(const struct compute_params *, |
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struct mdp_overlay_pp_params *) { |
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return sFnppParams; |
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} |
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inline void Overlay::debugPipeLifecycle(const bool& enable) { |
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sDebugPipeLifecycle = enable; |
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} |
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inline bool Overlay::isDebugPipeLifecycle() { |
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return sDebugPipeLifecycle; |
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} |
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inline bool Overlay::PipeBook::valid() { |
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return (mPipe != NULL); |
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} |
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inline bool Overlay::PipeBook::pipeUsageUnchanged() { |
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return (sPipeUsageBitmap == sLastUsageBitmap); |
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} |
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inline void Overlay::PipeBook::setUse(int index) { |
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sPipeUsageBitmap |= (1 << index); |
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} |
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inline void Overlay::PipeBook::resetUse(int index) { |
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sPipeUsageBitmap &= ~(1 << index); |
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} |
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inline bool Overlay::PipeBook::isUsed(int index) { |
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return sPipeUsageBitmap & (1 << index); |
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} |
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inline bool Overlay::PipeBook::isNotUsed(int index) { |
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return !isUsed(index); |
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} |
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inline void Overlay::PipeBook::save() { |
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sLastUsageBitmap = sPipeUsageBitmap; |
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} |
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inline void Overlay::PipeBook::setAllocation(int index) { |
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sAllocatedBitmap |= (1 << index); |
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} |
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inline void Overlay::PipeBook::resetAllocation(int index) { |
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sAllocatedBitmap &= ~(1 << index); |
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} |
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inline bool Overlay::PipeBook::isAllocated(int index) { |
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return sAllocatedBitmap & (1 << index); |
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} |
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inline bool Overlay::PipeBook::isNotAllocated(int index) { |
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return !isAllocated(index); |
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} |
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inline utils::eMdpPipeType Overlay::PipeBook::getPipeType(utils::eDest dest) { |
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return pipeTypeLUT[(int)dest]; |
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} |
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inline void Overlay::startSession(utils::eDest dest) { |
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mPipeBook[(int)dest].mSession = PipeBook::START; |
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} |
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inline bool Overlay::sessionInProgress(utils::eDest dest) { |
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return (mPipeBook[(int)dest].mSession == PipeBook::START); |
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} |
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inline bool Overlay::isSessionEnded(utils::eDest dest) { |
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return (mPipeBook[(int)dest].mSession == PipeBook::END); |
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} |
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inline const char* Overlay::PipeBook::getDestStr(utils::eDest dest) { |
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switch(getPipeType(dest)) { |
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case utils::OV_MDP_PIPE_RGB: return "RGB"; |
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case utils::OV_MDP_PIPE_VG: return "VG"; |
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case utils::OV_MDP_PIPE_DMA: return "DMA"; |
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default: return "Invalid"; |
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} |
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return "Invalid"; |
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} |
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}; // overlay |
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#endif // OVERLAY_H
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