650 lines
24 KiB
C
650 lines
24 KiB
C
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/*
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* Copyright 2015 Advanced Micro Devices, Inc.
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*
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* Permission is hereby granted, free of charge, to any person obtaining a
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* copy of this software and associated documentation files (the "Software"),
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* to deal in the Software without restriction, including without limitation
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* the rights to use, copy, modify, merge, publish, distribute, sublicense,
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* and/or sell copies of the Software, and to permit persons to whom the
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* Software is furnished to do so, subject to the following conditions:
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*
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* The above copyright notice and this permission notice shall be included in
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* all copies or substantial portions of the Software.
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*
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* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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* IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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* FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
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* THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
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* OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
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* ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
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* OTHER DEALINGS IN THE SOFTWARE.
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*
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* Authors: AMD
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*/
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#ifndef DRIVERS_GPU_DRM_AMD_DC_DEV_DC_INC_RESOURCE_H_
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#define DRIVERS_GPU_DRM_AMD_DC_DEV_DC_INC_RESOURCE_H_
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#include "core_types.h"
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#include "core_status.h"
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#include "dal_asic_id.h"
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#include "dm_pp_smu.h"
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#include "spl/dc_spl.h"
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#define MEMORY_TYPE_MULTIPLIER_CZ 4
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#define MEMORY_TYPE_HBM 2
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#define IS_PIPE_SYNCD_VALID(pipe) ((((pipe)->pipe_idx_syncd) & 0x80)?1:0)
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#define GET_PIPE_SYNCD_FROM_PIPE(pipe) ((pipe)->pipe_idx_syncd & 0x7F)
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#define SET_PIPE_SYNCD_TO_PIPE(pipe, pipe_syncd) ((pipe)->pipe_idx_syncd = (0x80 | pipe_syncd))
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enum dce_version resource_parse_asic_id(
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struct hw_asic_id asic_id);
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struct resource_caps {
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int num_timing_generator;
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int num_opp;
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int num_video_plane;
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int num_audio;
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int num_stream_encoder;
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int num_pll;
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int num_dwb;
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int num_ddc;
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int num_vmid;
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int num_dsc;
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unsigned int num_dig_link_enc; // Total number of DIGs (digital encoders) in DIO (Display Input/Output).
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unsigned int num_usb4_dpia; // Total number of USB4 DPIA (DisplayPort Input Adapters).
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int num_hpo_dp_stream_encoder;
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int num_hpo_dp_link_encoder;
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int num_mpc_3dlut;
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};
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struct resource_straps {
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uint32_t hdmi_disable;
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uint32_t dc_pinstraps_audio;
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uint32_t audio_stream_number;
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};
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struct resource_create_funcs {
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void (*read_dce_straps)(
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struct dc_context *ctx, struct resource_straps *straps);
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struct audio *(*create_audio)(
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struct dc_context *ctx, unsigned int inst);
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struct stream_encoder *(*create_stream_encoder)(
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enum engine_id eng_id, struct dc_context *ctx);
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struct hpo_dp_stream_encoder *(*create_hpo_dp_stream_encoder)(
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enum engine_id eng_id, struct dc_context *ctx);
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struct hpo_dp_link_encoder *(*create_hpo_dp_link_encoder)(
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uint8_t inst,
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struct dc_context *ctx);
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struct dce_hwseq *(*create_hwseq)(
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struct dc_context *ctx);
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};
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bool resource_construct(
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unsigned int num_virtual_links,
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struct dc *dc,
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struct resource_pool *pool,
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const struct resource_create_funcs *create_funcs);
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struct resource_pool *dc_create_resource_pool(struct dc *dc,
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const struct dc_init_data *init_data,
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enum dce_version dc_version);
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void dc_destroy_resource_pool(struct dc *dc);
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enum dc_status resource_map_pool_resources(
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const struct dc *dc,
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struct dc_state *context,
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struct dc_stream_state *stream);
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void resource_build_test_pattern_params(
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struct resource_context *res_ctx,
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struct pipe_ctx *pipe_ctx);
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bool resource_build_scaling_params(struct pipe_ctx *pipe_ctx);
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enum dc_status resource_build_scaling_params_for_context(
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const struct dc *dc,
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struct dc_state *context);
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void resource_build_info_frame(struct pipe_ctx *pipe_ctx);
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void resource_unreference_clock_source(
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struct resource_context *res_ctx,
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const struct resource_pool *pool,
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struct clock_source *clock_source);
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void resource_reference_clock_source(
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struct resource_context *res_ctx,
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const struct resource_pool *pool,
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struct clock_source *clock_source);
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int resource_get_clock_source_reference(
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struct resource_context *res_ctx,
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const struct resource_pool *pool,
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struct clock_source *clock_source);
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bool resource_are_streams_timing_synchronizable(
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struct dc_stream_state *stream1,
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struct dc_stream_state *stream2);
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bool resource_are_vblanks_synchronizable(
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struct dc_stream_state *stream1,
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struct dc_stream_state *stream2);
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struct clock_source *resource_find_used_clk_src_for_sharing(
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struct resource_context *res_ctx,
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struct pipe_ctx *pipe_ctx);
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struct clock_source *dc_resource_find_first_free_pll(
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struct resource_context *res_ctx,
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const struct resource_pool *pool);
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bool resource_attach_surfaces_to_context(
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struct dc_plane_state *const *plane_state,
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int surface_count,
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struct dc_stream_state *dc_stream,
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struct dc_state *context,
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const struct resource_pool *pool);
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#define FREE_PIPE_INDEX_NOT_FOUND -1
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/*
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* pipe types are identified based on MUXes in DCN front end that are capable
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* of taking input from one DCN pipeline to another DCN pipeline. The name is
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* in a form of XXXX_YYYY, where XXXX is the DCN front end hardware block the
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* pipeline ends with and YYYY is the rendering role that the pipe is in.
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*
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* For instance OTG_MASTER is a pipe ending with OTG hardware block in its
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* pipeline and it is in a role of a master pipe for timing generation.
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*
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* For quick reference a diagram of each pipe type's areas of responsibility
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* for outputting timings on the screen is shown below:
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*
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* Timing Active for Stream 0
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* __________________________________________________
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* |OTG master 0 (OPP head 0)|OPP head 2 (DPP pipe 2) |
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* | (DPP pipe 0)| |
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* | Top Plane 0 | |
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* | ______________|____ |
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* | |DPP pipe 1 |DPP | |
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* | | |pipe| |
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* | | Bottom |3 | |
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* | | Plane 1 | | |
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* | | | | |
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* | |______________|____| |
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* | | |
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* | | |
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* | ODM slice 0 | ODM slice 1 |
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* |_________________________|________________________|
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*
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* Timing Active for Stream 1
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* __________________________________________________
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* |OTG master 4 (OPP head 4) |
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* | |
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* | |
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* | |
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* | |
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* | |
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* | Blank Pixel Data |
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* | (generated by DPG4) |
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* | |
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* | |
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* | |
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* | |
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* | |
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* |__________________________________________________|
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*
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* Inter-pipe Relation
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* __________________________________________________
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* |PIPE IDX| DPP PIPES | OPP HEADS | OTG MASTER |
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* | | plane 0 | slice 0 | |
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* | 0 | -------------MPC---------ODM----------- |
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* | | plane 1 | | | | |
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* | 1 | ------------- | | | |
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* | | plane 0 | slice 1 | | |
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* | 2 | -------------MPC--------- | |
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* | | plane 1 | | | |
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* | 3 | ------------- | | |
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* | | | blank | |
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* | 4 | | ----------------------- |
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* | | | | |
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* | 5 | (FREE) | | |
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* |________|_______________|___________|_____________|
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*
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* The following is a quick reference of the class relation:
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*
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* DC state ---1--------0..N--- streams
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*
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* stream ---1-----------1--- OTG Master pipe
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*
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* OTG Master pipe ---1--------1..N--- OPP Head pipes
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*
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* OPP Head pipe ---1--------0..N--- DPP pipes
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*
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* stream ---1--------0..N--- Planes
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*
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* Plane ---1--------1..N--- DPP pipes
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*
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*/
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enum pipe_type {
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/* free pipe - free pipe is an uninitialized pipe without a stream
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* associated with it. It is a free DCN pipe resource. It can be
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* acquired as any type of pipe.
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*/
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FREE_PIPE,
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/* OTG master pipe - the master pipe of its OPP head pipes with a
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* functional OTG. It merges all its OPP head pipes pixel data in ODM
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* block and output to back end DIG. OTG master pipe is responsible for
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* generating entire CRTC timing to back end DIG. An OTG master pipe may
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* or may not have a plane. If it has a plane it blends it as the left
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* most MPC slice of the top most layer. If it doesn't have a plane it
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* can output pixel data from its OPP head pipes' test pattern
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* generators (DPG) such as solid black pixel data to blank the screen.
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*/
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OTG_MASTER,
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/* OPP head pipe - the head pipe of an MPC blending tree with a
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* functional OPP outputting to an OTG. OPP head pipe is responsible for
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* processing output pixels in its own ODM slice. It may or may not have
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* a plane. If it has a plane it blends it as the top most layer within
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* its own ODM slice. If it doesn't have a plane it can output pixel
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* data from its DPG such as solid black pixel data to blank the pixel
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* data in its own ODM slice. OTG master pipe is also an OPP head pipe
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* but with more responsibility.
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*/
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OPP_HEAD,
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/* DPP pipe - the pipe with a functional DPP outputting to an OPP head
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* pipe's MPC. DPP pipe is responsible for processing pixel data from
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* its own MPC slice of a plane. It must be connected to an OPP head
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* pipe and it must have a plane associated with it.
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*/
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DPP_PIPE,
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};
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/*
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* Determine if the input pipe_ctx is of a pipe type.
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* return - true if pipe_ctx is of the input type.
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*/
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bool resource_is_pipe_type(const struct pipe_ctx *pipe_ctx, enum pipe_type type);
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/*
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* Acquire a pipe as OTG master pipe and allocate pipe resources required to
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* enable stream output.
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*/
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enum dc_status resource_add_otg_master_for_stream_output(struct dc_state *new_ctx,
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const struct resource_pool *pool,
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struct dc_stream_state *stream);
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/*
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* Release pipe resources and the OTG master pipe associated with the stream
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* The stream must have all planes removed and ODM/MPC slice counts are reset
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* to 1 before invoking this interface.
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*/
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void resource_remove_otg_master_for_stream_output(struct dc_state *new_ctx,
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const struct resource_pool *pool,
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struct dc_stream_state *stream);
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/*
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* Add plane to the bottom most layer in plane composition and allocate DPP pipe
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* resources as needed.
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* return - true if plane is added in plane composition, false otherwise.
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*/
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bool resource_append_dpp_pipes_for_plane_composition(
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struct dc_state *new_ctx,
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struct dc_state *cur_ctx,
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struct resource_pool *pool,
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struct pipe_ctx *otg_master_pipe,
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struct dc_plane_state *plane_state);
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/*
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* Add plane to the bottom most layer in plane composition and allocate DPP pipe
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* resources as needed.
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* return - true if plane is added in plane composition, false otherwise.
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*/
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void resource_remove_dpp_pipes_for_plane_composition(
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struct dc_state *context,
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const struct resource_pool *pool,
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const struct dc_plane_state *plane_state);
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/*
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* Update ODM slice count by acquiring or releasing pipes. If new slices need
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* to be added, it is going to add them to the last ODM index. If existing
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* slices need to be removed, it is going to remove them from the last ODM
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* index.
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*
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* return - true if ODM slices are updated and required pipes are acquired. All
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* affected pipe parameters are updated.
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*
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* false if resource fails to complete this update. The function is not designed
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* to recover the creation of invalid topologies. Returning false is typically
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* an indication of insufficient validation in caller's stack. new_ctx will be
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* invalid. Caller may attempt to restore new_ctx by calling this function
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* again with original slice count.
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*/
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bool resource_update_pipes_for_stream_with_slice_count(
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struct dc_state *new_ctx,
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const struct dc_state *cur_ctx,
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const struct resource_pool *pool,
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const struct dc_stream_state *stream,
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int new_slice_count);
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/*
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* Update MPC slice count by acquiring or releasing DPP pipes. If new slices
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* need to be added it is going to add to the last MPC index. If existing
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* slices need to be removed, it is going to remove them from the last MPC
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* index.
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*
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* @dpp_pipe - top most dpp pipe for MPCC combine.
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*
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* return - true if MPC slices are updated and required pipes are acquired. All
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* affected pipe parameters are updated.
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*
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* false if resource fails to complete this update. The function is not designed
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* to recover the creation of invalid topologies. Returning false is typically
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* an indication of insufficient validation in caller's stack. new_ctx will be
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* invalid. Caller may attempt to restore new_ctx by calling this function
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* again with original slice count.
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*/
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bool resource_update_pipes_for_plane_with_slice_count(
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struct dc_state *new_ctx,
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const struct dc_state *cur_ctx,
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const struct resource_pool *pool,
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const struct dc_plane_state *plane,
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int slice_count);
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/*
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* Get the OTG master pipe in resource context associated with the stream.
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* return - NULL if not found. Otherwise the OTG master pipe associated with the
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* stream.
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*/
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struct pipe_ctx *resource_get_otg_master_for_stream(
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struct resource_context *res_ctx,
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const struct dc_stream_state *stream);
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/*
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* Get an array of OPP heads in opp_heads ordered with index low to high for OTG
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* master pipe in res_ctx.
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* return - number of OPP heads in the array. If otg_master passed in is not
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* an OTG master, the function returns 0.
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*/
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int resource_get_opp_heads_for_otg_master(const struct pipe_ctx *otg_master,
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struct resource_context *res_ctx,
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struct pipe_ctx *opp_heads[MAX_PIPES]);
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/*
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* Get an array of DPP pipes in dpp_pipes ordered with index low to high for OPP
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* head pipe in res_ctx.
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* return - number of DPP pipes in the array. If opp_head passed in is not
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* an OPP pipe, the function returns 0.
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*/
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int resource_get_dpp_pipes_for_opp_head(const struct pipe_ctx *opp_head,
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struct resource_context *res_ctx,
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struct pipe_ctx *dpp_pipes[MAX_PIPES]);
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/*
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* Get an array of DPP pipes in dpp_pipes ordered with index low to high for
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* plane in res_ctx.
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* return - number of DPP pipes in the array.
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*/
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int resource_get_dpp_pipes_for_plane(const struct dc_plane_state *plane,
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struct resource_context *res_ctx,
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struct pipe_ctx *dpp_pipes[MAX_PIPES]);
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/*
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* Get the OTG master pipe for the input pipe context.
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* return - the OTG master pipe for the input pipe
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* context.
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*/
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struct pipe_ctx *resource_get_otg_master(const struct pipe_ctx *pipe_ctx);
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/*
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* Get the OPP head pipe for the input pipe context.
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* return - the OPP head pipe for the input pipe
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* context.
|
||
|
*/
|
||
|
struct pipe_ctx *resource_get_opp_head(const struct pipe_ctx *pipe_ctx);
|
||
|
|
||
|
/*
|
||
|
* Get the DPP pipe allocated for MPC slice 0 and ODM slice 0 of the plane
|
||
|
* associated with dpp_pipe.
|
||
|
*/
|
||
|
struct pipe_ctx *resource_get_primary_dpp_pipe(const struct pipe_ctx *dpp_pipe);
|
||
|
|
||
|
/*
|
||
|
* Get the MPC slice index counting from 0 from left most slice
|
||
|
* For example, if a DPP pipe is used as a secondary pipe in MPCC combine, MPC
|
||
|
* split index is greater than 0.
|
||
|
*/
|
||
|
int resource_get_mpc_slice_index(const struct pipe_ctx *dpp_pipe);
|
||
|
|
||
|
/*
|
||
|
* Get the number of MPC slices associated with the pipe.
|
||
|
* The function returns 0 if the pipe is not associated with an MPC combine
|
||
|
* pipe topology.
|
||
|
*/
|
||
|
int resource_get_mpc_slice_count(const struct pipe_ctx *pipe);
|
||
|
|
||
|
/*
|
||
|
* Get the number of ODM slices associated with the pipe.
|
||
|
* The function returns 0 if the pipe is not associated with an ODM combine
|
||
|
* pipe topology.
|
||
|
*/
|
||
|
int resource_get_odm_slice_count(const struct pipe_ctx *pipe);
|
||
|
|
||
|
/* Get the ODM slice index counting from 0 from left most slice */
|
||
|
int resource_get_odm_slice_index(const struct pipe_ctx *opp_head);
|
||
|
|
||
|
/* Get ODM slice source rect in timing active as input to OPP block */
|
||
|
struct rect resource_get_odm_slice_src_rect(struct pipe_ctx *pipe_ctx);
|
||
|
|
||
|
/* Get ODM slice destination rect in timing active as output from OPP block */
|
||
|
struct rect resource_get_odm_slice_dst_rect(struct pipe_ctx *pipe_ctx);
|
||
|
|
||
|
/* Get ODM slice destination width in timing active as output from OPP block */
|
||
|
int resource_get_odm_slice_dst_width(struct pipe_ctx *otg_master,
|
||
|
bool is_last_segment);
|
||
|
|
||
|
/* determine if pipe topology is changed between state a and state b */
|
||
|
bool resource_is_pipe_topology_changed(const struct dc_state *state_a,
|
||
|
const struct dc_state *state_b);
|
||
|
|
||
|
/*
|
||
|
* determine if the two OTG master pipes have the same ODM topology
|
||
|
* return
|
||
|
* false - if pipes passed in are not OTG masters or ODM topology is
|
||
|
* changed.
|
||
|
* true - otherwise
|
||
|
*/
|
||
|
bool resource_is_odm_topology_changed(const struct pipe_ctx *otg_master_a,
|
||
|
const struct pipe_ctx *otg_master_b);
|
||
|
|
||
|
/* log the pipe topology update in state */
|
||
|
void resource_log_pipe_topology_update(struct dc *dc, struct dc_state *state);
|
||
|
|
||
|
/*
|
||
|
* Look for a free pipe in new resource context that is used as a secondary OPP
|
||
|
* head by cur_otg_master.
|
||
|
*
|
||
|
* return - FREE_PIPE_INDEX_NOT_FOUND if free pipe is not found, otherwise
|
||
|
* pipe idx of the free pipe
|
||
|
*/
|
||
|
int resource_find_free_pipe_used_as_sec_opp_head_by_cur_otg_master(
|
||
|
const struct resource_context *cur_res_ctx,
|
||
|
struct resource_context *new_res_ctx,
|
||
|
const struct pipe_ctx *cur_otg_master);
|
||
|
|
||
|
/*
|
||
|
* Look for a free pipe in new resource context that is used as a secondary DPP
|
||
|
* pipe in MPC blending tree associated with input OPP head pipe.
|
||
|
*
|
||
|
* return - FREE_PIPE_INDEX_NOT_FOUND if free pipe is not found, otherwise
|
||
|
* pipe idx of the free pipe
|
||
|
*/
|
||
|
int resource_find_free_pipe_used_in_cur_mpc_blending_tree(
|
||
|
const struct resource_context *cur_res_ctx,
|
||
|
struct resource_context *new_res_ctx,
|
||
|
const struct pipe_ctx *cur_opp_head);
|
||
|
|
||
|
/*
|
||
|
* Look for a free pipe in new resource context that is not used in current
|
||
|
* resource context.
|
||
|
*
|
||
|
* return - FREE_PIPE_INDEX_NOT_FOUND if free pipe is not found, otherwise
|
||
|
* pipe idx of the free pipe
|
||
|
*/
|
||
|
int recource_find_free_pipe_not_used_in_cur_res_ctx(
|
||
|
const struct resource_context *cur_res_ctx,
|
||
|
struct resource_context *new_res_ctx,
|
||
|
const struct resource_pool *pool);
|
||
|
|
||
|
/*
|
||
|
* Look for a free pipe in new resource context that is used in current resource
|
||
|
* context as an OTG master pipe.
|
||
|
*
|
||
|
* return - FREE_PIPE_INDEX_NOT_FOUND if free pipe is not found, otherwise
|
||
|
* pipe idx of the free pipe
|
||
|
*/
|
||
|
int recource_find_free_pipe_used_as_otg_master_in_cur_res_ctx(
|
||
|
const struct resource_context *cur_res_ctx,
|
||
|
struct resource_context *new_res_ctx,
|
||
|
const struct resource_pool *pool);
|
||
|
|
||
|
/*
|
||
|
* Look for a free pipe in new resource context that is used as a secondary DPP
|
||
|
* pipe in current resource context.
|
||
|
* return - FREE_PIPE_INDEX_NOT_FOUND if free pipe is not found, otherwise
|
||
|
* pipe idx of the free pipe
|
||
|
*/
|
||
|
int resource_find_free_pipe_used_as_cur_sec_dpp(
|
||
|
const struct resource_context *cur_res_ctx,
|
||
|
struct resource_context *new_res_ctx,
|
||
|
const struct resource_pool *pool);
|
||
|
|
||
|
/*
|
||
|
* Look for a free pipe in new resource context that is used as a secondary DPP
|
||
|
* pipe in any MPCC combine in current resource context.
|
||
|
* return - FREE_PIPE_INDEX_NOT_FOUND if free pipe is not found, otherwise
|
||
|
* pipe idx of the free pipe
|
||
|
*/
|
||
|
int resource_find_free_pipe_used_as_cur_sec_dpp_in_mpcc_combine(
|
||
|
const struct resource_context *cur_res_ctx,
|
||
|
struct resource_context *new_res_ctx,
|
||
|
const struct resource_pool *pool);
|
||
|
|
||
|
/*
|
||
|
* Look for any free pipe in new resource context.
|
||
|
* return - FREE_PIPE_INDEX_NOT_FOUND if free pipe is not found, otherwise
|
||
|
* pipe idx of the free pipe
|
||
|
*/
|
||
|
int resource_find_any_free_pipe(struct resource_context *new_res_ctx,
|
||
|
const struct resource_pool *pool);
|
||
|
|
||
|
/*
|
||
|
* Legacy find free secondary pipe logic deprecated for newer DCNs as it doesn't
|
||
|
* find the most optimal free pipe to prevent from time consuming hardware state
|
||
|
* transitions.
|
||
|
*/
|
||
|
struct pipe_ctx *resource_find_free_secondary_pipe_legacy(
|
||
|
struct resource_context *res_ctx,
|
||
|
const struct resource_pool *pool,
|
||
|
const struct pipe_ctx *primary_pipe);
|
||
|
|
||
|
bool resource_validate_attach_surfaces(
|
||
|
const struct dc_validation_set set[],
|
||
|
int set_count,
|
||
|
const struct dc_state *old_context,
|
||
|
struct dc_state *context,
|
||
|
const struct resource_pool *pool);
|
||
|
|
||
|
enum dc_status resource_map_clock_resources(
|
||
|
const struct dc *dc,
|
||
|
struct dc_state *context,
|
||
|
struct dc_stream_state *stream);
|
||
|
|
||
|
enum dc_status resource_map_phy_clock_resources(
|
||
|
const struct dc *dc,
|
||
|
struct dc_state *context,
|
||
|
struct dc_stream_state *stream);
|
||
|
|
||
|
bool pipe_need_reprogram(
|
||
|
struct pipe_ctx *pipe_ctx_old,
|
||
|
struct pipe_ctx *pipe_ctx);
|
||
|
|
||
|
void resource_build_bit_depth_reduction_params(struct dc_stream_state *stream,
|
||
|
struct bit_depth_reduction_params *fmt_bit_depth);
|
||
|
|
||
|
void update_audio_usage(
|
||
|
struct resource_context *res_ctx,
|
||
|
const struct resource_pool *pool,
|
||
|
struct audio *audio,
|
||
|
bool acquired);
|
||
|
|
||
|
unsigned int resource_pixel_format_to_bpp(enum surface_pixel_format format);
|
||
|
|
||
|
bool get_temp_dp_link_res(struct dc_link *link,
|
||
|
struct link_resource *link_res,
|
||
|
struct dc_link_settings *link_settings);
|
||
|
|
||
|
void reset_syncd_pipes_from_disabled_pipes(struct dc *dc,
|
||
|
struct dc_state *context);
|
||
|
|
||
|
void check_syncd_pipes_for_disabled_master_pipe(struct dc *dc,
|
||
|
struct dc_state *context,
|
||
|
uint8_t disabled_master_pipe_idx);
|
||
|
|
||
|
void reset_sync_context_for_pipe(const struct dc *dc,
|
||
|
struct dc_state *context,
|
||
|
uint8_t pipe_idx);
|
||
|
|
||
|
uint8_t resource_transmitter_to_phy_idx(const struct dc *dc, enum transmitter transmitter);
|
||
|
|
||
|
const struct link_hwss *get_link_hwss(const struct dc_link *link,
|
||
|
const struct link_resource *link_res);
|
||
|
|
||
|
bool is_h_timing_divisible_by_2(struct dc_stream_state *stream);
|
||
|
|
||
|
bool dc_resource_acquire_secondary_pipe_for_mpc_odm_legacy(
|
||
|
const struct dc *dc,
|
||
|
struct dc_state *state,
|
||
|
struct pipe_ctx *pri_pipe,
|
||
|
struct pipe_ctx *sec_pipe,
|
||
|
bool odm);
|
||
|
|
||
|
/* A test harness interface that modifies dp encoder resources in the given dc
|
||
|
* state and bypasses the need to revalidate. The interface assumes that the
|
||
|
* test harness interface is called with pre-validated link config stored in the
|
||
|
* pipe_ctx and updates dp encoder resources according to the link config.
|
||
|
*/
|
||
|
enum dc_status update_dp_encoder_resources_for_test_harness(const struct dc *dc,
|
||
|
struct dc_state *context,
|
||
|
struct pipe_ctx *pipe_ctx);
|
||
|
|
||
|
bool check_subvp_sw_cursor_fallback_req(const struct dc *dc, struct dc_stream_state *stream);
|
||
|
|
||
|
/* Get hw programming parameters container from pipe context
|
||
|
* @pipe_ctx: pipe context
|
||
|
* @dscl_prog_data: struct to hold programmable hw reg values
|
||
|
*/
|
||
|
struct dscl_prog_data *resource_get_dscl_prog_data(struct pipe_ctx *pipe_ctx);
|
||
|
/* Setup dc callbacks for dml2
|
||
|
* @dc: the display core structure
|
||
|
* @dml2_options: struct to hold callbacks
|
||
|
*/
|
||
|
void resource_init_common_dml2_callbacks(struct dc *dc, struct dml2_configuration_options *dml2_options);
|
||
|
|
||
|
/*
|
||
|
*Calculate total DET allocated for all pipes for a given OTG_MASTER pipe
|
||
|
*/
|
||
|
int resource_calculate_det_for_stream(struct dc_state *state, struct pipe_ctx *otg_master);
|
||
|
|
||
|
bool resource_is_hpo_acquired(struct dc_state *context);
|
||
|
#endif /* DRIVERS_GPU_DRM_AMD_DC_DEV_DC_INC_RESOURCE_H_ */
|