freesync.c 42.1 KB
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/*
 * Copyright 2016 Advanced Micro Devices, Inc.
 *
 * Permission is hereby granted, free of charge, to any person obtaining a
 * copy of this software and associated documentation files (the "Software"),
 * to deal in the Software without restriction, including without limitation
 * the rights to use, copy, modify, merge, publish, distribute, sublicense,
 * and/or sell copies of the Software, and to permit persons to whom the
 * Software is furnished to do so, subject to the following conditions:
 *
 * The above copyright notice and this permission notice shall be included in
 * all copies or substantial portions of the Software.
 *
 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.  IN NO EVENT SHALL
 * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
 * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
 * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
 * OTHER DEALINGS IN THE SOFTWARE.
 *
 * Authors: AMD
 *
 */

#include "dm_services.h"
#include "dc.h"
#include "mod_freesync.h"
#include "core_types.h"

#define MOD_FREESYNC_MAX_CONCURRENT_STREAMS  32

/* Refresh rate ramp at a fixed rate of 65 Hz/second */
#define STATIC_SCREEN_RAMP_DELTA_REFRESH_RATE_PER_FRAME ((1000 / 60) * 65)
/* Number of elements in the render times cache array */
#define RENDER_TIMES_MAX_COUNT 20
/* Threshold to exit BTR (to avoid frequent enter-exits at the lower limit) */
#define BTR_EXIT_MARGIN 2000
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/* Number of consecutive frames to check before entering/exiting fixed refresh*/
#define FIXED_REFRESH_ENTER_FRAME_COUNT 5
#define FIXED_REFRESH_EXIT_FRAME_COUNT 5
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#define FREESYNC_REGISTRY_NAME "freesync_v1"

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#define FREESYNC_NO_STATIC_FOR_EXTERNAL_DP_REGKEY "DalFreeSyncNoStaticForExternalDp"

#define FREESYNC_NO_STATIC_FOR_INTERNAL_REGKEY "DalFreeSyncNoStaticForInternal"

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struct gradual_static_ramp {
	bool ramp_is_active;
	bool ramp_direction_is_up;
	unsigned int ramp_current_frame_duration_in_ns;
};

struct time_cache {
	/* video (48Hz feature) related */
	unsigned int update_duration_in_ns;

	/* BTR/fixed refresh related */
	unsigned int prev_time_stamp_in_us;

	unsigned int min_render_time_in_us;
	unsigned int max_render_time_in_us;

	unsigned int render_times_index;
	unsigned int render_times[RENDER_TIMES_MAX_COUNT];
};

struct below_the_range {
	bool btr_active;
	bool program_btr;

	unsigned int mid_point_in_us;

	unsigned int inserted_frame_duration_in_us;
	unsigned int frames_to_insert;
	unsigned int frame_counter;
};

struct fixed_refresh {
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	bool fixed_active;
	bool program_fixed;
	unsigned int frame_counter;
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};

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struct freesync_range {
	unsigned int min_refresh;
	unsigned int max_frame_duration;
	unsigned int vmax;

	unsigned int max_refresh;
	unsigned int min_frame_duration;
	unsigned int vmin;
};

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struct freesync_state {
	bool fullscreen;
	bool static_screen;
	bool video;

	unsigned int nominal_refresh_rate_in_micro_hz;
	bool windowed_fullscreen;

	struct time_cache time;

	struct gradual_static_ramp static_ramp;
	struct below_the_range btr;
	struct fixed_refresh fixed_refresh;
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	struct freesync_range freesync_range;
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};

struct freesync_entity {
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	struct dc_stream_state *stream;
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	struct mod_freesync_caps *caps;
	struct freesync_state state;
	struct mod_freesync_user_enable user_enable;
};

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struct freesync_registry_options {
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	bool drr_external_supported;
	bool drr_internal_supported;
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};

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struct core_freesync {
	struct mod_freesync public;
	struct dc *dc;
	struct freesync_entity *map;
	int num_entities;
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	struct freesync_registry_options opts;
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};

#define MOD_FREESYNC_TO_CORE(mod_freesync)\
		container_of(mod_freesync, struct core_freesync, public)

static bool check_dc_support(const struct dc *dc)
{
	if (dc->stream_funcs.adjust_vmin_vmax == NULL)
		return false;

	return true;
}

struct mod_freesync *mod_freesync_create(struct dc *dc)
{
	struct core_freesync *core_freesync =
			dm_alloc(sizeof(struct core_freesync));

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	struct dc  *core_dc = dc;
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	struct persistent_data_flag flag;

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	int i, data = 0;
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	if (core_freesync == NULL)
		goto fail_alloc_context;

	core_freesync->map = dm_alloc(sizeof(struct freesync_entity) *
			MOD_FREESYNC_MAX_CONCURRENT_STREAMS);

	if (core_freesync->map == NULL)
		goto fail_alloc_map;

	for (i = 0; i < MOD_FREESYNC_MAX_CONCURRENT_STREAMS; i++)
		core_freesync->map[i].stream = NULL;

	core_freesync->num_entities = 0;

	if (dc == NULL)
		goto fail_construct;

	core_freesync->dc = dc;

	if (!check_dc_support(dc))
		goto fail_construct;

	/* Create initial module folder in registry for freesync enable data */
	flag.save_per_edid = true;
	flag.save_per_link = false;
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	dm_write_persistent_data(core_dc->ctx, NULL, FREESYNC_REGISTRY_NAME,
			NULL, NULL, 0, &flag);
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	flag.save_per_edid = false;
	flag.save_per_link = false;
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	if (dm_read_persistent_data(core_dc->ctx, NULL, NULL,
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			FREESYNC_NO_STATIC_FOR_INTERNAL_REGKEY,
			&data, sizeof(data), &flag)) {
		core_freesync->opts.drr_internal_supported =
			(data & 1) ? false : true;
	}

	if (dm_read_persistent_data(core_dc->ctx, NULL, NULL,
			FREESYNC_NO_STATIC_FOR_EXTERNAL_DP_REGKEY,
			&data, sizeof(data), &flag)) {
		core_freesync->opts.drr_external_supported =
				(data & 1) ? false : true;
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	}
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	return &core_freesync->public;

fail_construct:
	dm_free(core_freesync->map);

fail_alloc_map:
	dm_free(core_freesync);

fail_alloc_context:
	return NULL;
}

void mod_freesync_destroy(struct mod_freesync *mod_freesync)
{
	if (mod_freesync != NULL) {
		int i;
		struct core_freesync *core_freesync =
				MOD_FREESYNC_TO_CORE(mod_freesync);

		for (i = 0; i < core_freesync->num_entities; i++)
			if (core_freesync->map[i].stream)
				dc_stream_release(core_freesync->map[i].stream);

		dm_free(core_freesync->map);

		dm_free(core_freesync);
	}
}

/* Given a specific dc_stream* this function finds its equivalent
 * on the core_freesync->map and returns the corresponding index
 */
static unsigned int map_index_from_stream(struct core_freesync *core_freesync,
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		struct dc_stream_state *stream)
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{
	unsigned int index = 0;

	for (index = 0; index < core_freesync->num_entities; index++) {
		if (core_freesync->map[index].stream == stream) {
			return index;
		}
	}
	/* Could not find stream requested */
	ASSERT(false);
	return index;
}

bool mod_freesync_add_stream(struct mod_freesync *mod_freesync,
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		struct dc_stream_state *stream, struct mod_freesync_caps *caps)
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{
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	struct dc  *core_dc = NULL;
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	struct core_freesync *core_freesync = NULL;
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	int persistent_freesync_enable = 0;
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	struct persistent_data_flag flag;
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	unsigned int nom_refresh_rate_uhz;
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	unsigned long long temp;
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	if (mod_freesync == NULL)
		return false;

	core_freesync = MOD_FREESYNC_TO_CORE(mod_freesync);
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	core_dc = core_freesync->dc;
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	flag.save_per_edid = true;
	flag.save_per_link = false;

	if (core_freesync->num_entities < MOD_FREESYNC_MAX_CONCURRENT_STREAMS) {

		dc_stream_retain(stream);

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		temp = stream->timing.pix_clk_khz;
		temp *= 1000ULL * 1000ULL * 1000ULL;
		temp = div_u64(temp, stream->timing.h_total);
		temp = div_u64(temp, stream->timing.v_total);

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		nom_refresh_rate_uhz = (unsigned int) temp;
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		core_freesync->map[core_freesync->num_entities].stream = stream;
		core_freesync->map[core_freesync->num_entities].caps = caps;

		core_freesync->map[core_freesync->num_entities].state.
			fullscreen = false;
		core_freesync->map[core_freesync->num_entities].state.
			static_screen = false;
		core_freesync->map[core_freesync->num_entities].state.
			video = false;
		core_freesync->map[core_freesync->num_entities].state.time.
			update_duration_in_ns = 0;
		core_freesync->map[core_freesync->num_entities].state.
			static_ramp.ramp_is_active = false;

		/* get persistent data from registry */
		if (dm_read_persistent_data(core_dc->ctx, stream->sink,
					FREESYNC_REGISTRY_NAME,
					"userenable", &persistent_freesync_enable,
					sizeof(int), &flag)) {
			core_freesync->map[core_freesync->num_entities].user_enable.
				enable_for_gaming =
				(persistent_freesync_enable & 1) ? true : false;
			core_freesync->map[core_freesync->num_entities].user_enable.
				enable_for_static =
				(persistent_freesync_enable & 2) ? true : false;
			core_freesync->map[core_freesync->num_entities].user_enable.
				enable_for_video =
				(persistent_freesync_enable & 4) ? true : false;
		} else {
			core_freesync->map[core_freesync->num_entities].user_enable.
					enable_for_gaming = false;
			core_freesync->map[core_freesync->num_entities].user_enable.
					enable_for_static = false;
			core_freesync->map[core_freesync->num_entities].user_enable.
					enable_for_video = false;
		}

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		if (caps->supported &&
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			nom_refresh_rate_uhz >= caps->min_refresh_in_micro_hz &&
			nom_refresh_rate_uhz <= caps->max_refresh_in_micro_hz)
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			stream->ignore_msa_timing_param = 1;
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		core_freesync->num_entities++;
		return true;
	}
	return false;
}

bool mod_freesync_remove_stream(struct mod_freesync *mod_freesync,
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		struct dc_stream_state *stream)
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{
	int i = 0;
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	struct core_freesync *core_freesync = NULL;
	unsigned int index = 0;

	if (mod_freesync == NULL)
		return false;

	core_freesync = MOD_FREESYNC_TO_CORE(mod_freesync);
	index = map_index_from_stream(core_freesync, stream);

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	dc_stream_release(core_freesync->map[index].stream);
	core_freesync->map[index].stream = NULL;
	/* To remove this entity, shift everything after down */
	for (i = index; i < core_freesync->num_entities - 1; i++)
		core_freesync->map[i] = core_freesync->map[i + 1];
	core_freesync->num_entities--;
	return true;
}

static void update_stream_freesync_context(struct core_freesync *core_freesync,
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		struct dc_stream_state *stream)
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{
	unsigned int index;
	struct freesync_context *ctx;

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	ctx = &stream->freesync_ctx;
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	index = map_index_from_stream(core_freesync, stream);

	ctx->supported = core_freesync->map[index].caps->supported;
	ctx->enabled = (core_freesync->map[index].user_enable.enable_for_gaming ||
		core_freesync->map[index].user_enable.enable_for_video ||
		core_freesync->map[index].user_enable.enable_for_static);
	ctx->active = (core_freesync->map[index].state.fullscreen ||
		core_freesync->map[index].state.video ||
		core_freesync->map[index].state.static_ramp.ramp_is_active);
	ctx->min_refresh_in_micro_hz =
			core_freesync->map[index].caps->min_refresh_in_micro_hz;
	ctx->nominal_refresh_in_micro_hz = core_freesync->
		map[index].state.nominal_refresh_rate_in_micro_hz;

}

static void update_stream(struct core_freesync *core_freesync,
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		struct dc_stream_state *stream)
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{
	unsigned int index = map_index_from_stream(core_freesync, stream);
	if (core_freesync->map[index].caps->supported) {
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		stream->ignore_msa_timing_param = 1;
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		update_stream_freesync_context(core_freesync, stream);
	}
}

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static void calc_freesync_range(struct core_freesync *core_freesync,
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		struct dc_stream_state *stream,
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		struct freesync_state *state,
		unsigned int min_refresh_in_uhz,
		unsigned int max_refresh_in_uhz)
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{
	unsigned int min_frame_duration_in_ns = 0, max_frame_duration_in_ns = 0;
	unsigned int index = map_index_from_stream(core_freesync, stream);
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	uint32_t vtotal = stream->timing.v_total;
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	if ((min_refresh_in_uhz == 0) || (max_refresh_in_uhz == 0)) {
		state->freesync_range.min_refresh =
				state->nominal_refresh_rate_in_micro_hz;
		state->freesync_range.max_refresh =
				state->nominal_refresh_rate_in_micro_hz;

		state->freesync_range.max_frame_duration = 0;
		state->freesync_range.min_frame_duration = 0;

		state->freesync_range.vmax = vtotal;
		state->freesync_range.vmin = vtotal;

		return;
	}

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	min_frame_duration_in_ns = ((unsigned int) (div64_u64(
					(1000000000ULL * 1000000),
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					max_refresh_in_uhz)));
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	max_frame_duration_in_ns = ((unsigned int) (div64_u64(
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		(1000000000ULL * 1000000),
		min_refresh_in_uhz)));

	state->freesync_range.min_refresh = min_refresh_in_uhz;
	state->freesync_range.max_refresh = max_refresh_in_uhz;
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	state->freesync_range.max_frame_duration = max_frame_duration_in_ns;
	state->freesync_range.min_frame_duration = min_frame_duration_in_ns;

	state->freesync_range.vmax = div64_u64(div64_u64(((unsigned long long)(
		max_frame_duration_in_ns) * stream->timing.pix_clk_khz),
		stream->timing.h_total), 1000000);
	state->freesync_range.vmin = div64_u64(div64_u64(((unsigned long long)(
		min_frame_duration_in_ns) * stream->timing.pix_clk_khz),
		stream->timing.h_total), 1000000);
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	/* vmin/vmax cannot be less than vtotal */
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	if (state->freesync_range.vmin < vtotal) {
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		/* Error of 1 is permissible */
		ASSERT((state->freesync_range.vmin + 1) >= vtotal);
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		state->freesync_range.vmin = vtotal;
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	}

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	if (state->freesync_range.vmax < vtotal) {
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		/* Error of 1 is permissible */
		ASSERT((state->freesync_range.vmax + 1) >= vtotal);
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		state->freesync_range.vmax = vtotal;
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	}
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	/* Determine whether BTR can be supported */
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	if (max_frame_duration_in_ns >=
			2 * min_frame_duration_in_ns)
		core_freesync->map[index].caps->btr_supported = true;
	else
		core_freesync->map[index].caps->btr_supported = false;
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	/* Cache the time variables */
	state->time.max_render_time_in_us =
		max_frame_duration_in_ns / 1000;
	state->time.min_render_time_in_us =
		min_frame_duration_in_ns / 1000;
	state->btr.mid_point_in_us =
		(max_frame_duration_in_ns +
		min_frame_duration_in_ns) / 2000;
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}

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static void calc_v_total_from_duration(struct dc_stream_state *stream,
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		unsigned int duration_in_ns, int *v_total_nominal)
{
	*v_total_nominal = div64_u64(div64_u64(((unsigned long long)(
				duration_in_ns) * stream->timing.pix_clk_khz),
				stream->timing.h_total), 1000000);
}

static void calc_v_total_for_static_ramp(struct core_freesync *core_freesync,
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		struct dc_stream_state *stream,
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		unsigned int index, int *v_total)
{
	unsigned int frame_duration = 0;

	struct gradual_static_ramp *static_ramp_variables =
				&core_freesync->map[index].state.static_ramp;

	/* Calc ratio between new and current frame duration with 3 digit */
	unsigned int frame_duration_ratio = div64_u64(1000000,
		(1000 +  div64_u64(((unsigned long long)(
		STATIC_SCREEN_RAMP_DELTA_REFRESH_RATE_PER_FRAME) *
		static_ramp_variables->ramp_current_frame_duration_in_ns),
		1000000000)));

	/* Calculate delta between new and current frame duration in ns */
	unsigned int frame_duration_delta = div64_u64(((unsigned long long)(
		static_ramp_variables->ramp_current_frame_duration_in_ns) *
		(1000 - frame_duration_ratio)), 1000);

	/* Adjust frame duration delta based on ratio between current and
	 * standard frame duration (frame duration at 60 Hz refresh rate).
	 */
	unsigned int ramp_rate_interpolated = div64_u64(((unsigned long long)(
		frame_duration_delta) * static_ramp_variables->
		ramp_current_frame_duration_in_ns), 16666666);

	/* Going to a higher refresh rate (lower frame duration) */
	if (static_ramp_variables->ramp_direction_is_up) {
		/* reduce frame duration */
		static_ramp_variables->ramp_current_frame_duration_in_ns -=
			ramp_rate_interpolated;

		/* min frame duration */
		frame_duration = ((unsigned int) (div64_u64(
			(1000000000ULL * 1000000),
			core_freesync->map[index].state.
			nominal_refresh_rate_in_micro_hz)));

		/* adjust for frame duration below min */
		if (static_ramp_variables->ramp_current_frame_duration_in_ns <=
			frame_duration) {

			static_ramp_variables->ramp_is_active = false;
			static_ramp_variables->
				ramp_current_frame_duration_in_ns =
				frame_duration;
		}
	/* Going to a lower refresh rate (larger frame duration) */
	} else {
		/* increase frame duration */
		static_ramp_variables->ramp_current_frame_duration_in_ns +=
			ramp_rate_interpolated;

		/* max frame duration */
		frame_duration = ((unsigned int) (div64_u64(
			(1000000000ULL * 1000000),
			core_freesync->map[index].caps->min_refresh_in_micro_hz)));

		/* adjust for frame duration above max */
		if (static_ramp_variables->ramp_current_frame_duration_in_ns >=
			frame_duration) {

			static_ramp_variables->ramp_is_active = false;
			static_ramp_variables->
				ramp_current_frame_duration_in_ns =
				frame_duration;
		}
	}

	calc_v_total_from_duration(stream, static_ramp_variables->
		ramp_current_frame_duration_in_ns, v_total);
}

static void reset_freesync_state_variables(struct freesync_state* state)
{
	state->static_ramp.ramp_is_active = false;
	if (state->nominal_refresh_rate_in_micro_hz)
		state->static_ramp.ramp_current_frame_duration_in_ns =
			((unsigned int) (div64_u64(
			(1000000000ULL * 1000000),
			state->nominal_refresh_rate_in_micro_hz)));

	state->btr.btr_active = false;
	state->btr.frame_counter = 0;
	state->btr.frames_to_insert = 0;
	state->btr.inserted_frame_duration_in_us = 0;
	state->btr.program_btr = false;

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	state->fixed_refresh.fixed_active = false;
	state->fixed_refresh.program_fixed = false;
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}
/*
 * Sets freesync mode on a stream depending on current freesync state.
 */
static bool set_freesync_on_streams(struct core_freesync *core_freesync,
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		struct dc_stream_state **streams, int num_streams)
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{
	int v_total_nominal = 0, v_total_min = 0, v_total_max = 0;
	unsigned int stream_idx, map_index = 0;
	struct freesync_state *state;

	if (num_streams == 0 || streams == NULL || num_streams > 1)
		return false;

	for (stream_idx = 0; stream_idx < num_streams; stream_idx++) {

		map_index = map_index_from_stream(core_freesync,
				streams[stream_idx]);

		state = &core_freesync->map[map_index].state;

		if (core_freesync->map[map_index].caps->supported) {

			/* Fullscreen has the topmost priority. If the
			 * fullscreen bit is set, we are in a fullscreen
			 * application where it should not matter if it is
			 * static screen. We should not check the static_screen
			 * or video bit.
			 *
			 * Special cases of fullscreen include btr and fixed
			 * refresh. We program btr on every flip and involves
			 * programming full range right before the last inserted frame.
			 * However, we do not want to program the full freesync range
			 * when fixed refresh is active, because we only program
			 * that logic once and this will override it.
			 */
			if (core_freesync->map[map_index].user_enable.
				enable_for_gaming == true &&
				state->fullscreen == true &&
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				state->fixed_refresh.fixed_active == false) {
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				/* Enable freesync */

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				v_total_min = state->freesync_range.vmin;
				v_total_max = state->freesync_range.vmax;
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				/* Update the freesync context for the stream */
				update_stream_freesync_context(core_freesync,
						streams[stream_idx]);

				core_freesync->dc->stream_funcs.
				adjust_vmin_vmax(core_freesync->dc, streams,
						num_streams, v_total_min,
						v_total_max);

				return true;

			} else if (core_freesync->map[map_index].user_enable.
				enable_for_video && state->video == true) {
				/* Enable 48Hz feature */

				calc_v_total_from_duration(streams[stream_idx],
					state->time.update_duration_in_ns,
					&v_total_nominal);

				/* Program only if v_total_nominal is in range*/
				if (v_total_nominal >=
					streams[stream_idx]->timing.v_total) {

					/* Update the freesync context for
					 * the stream
					 */
					update_stream_freesync_context(
						core_freesync,
						streams[stream_idx]);

					core_freesync->dc->stream_funcs.
					adjust_vmin_vmax(
						core_freesync->dc, streams,
						num_streams, v_total_nominal,
						v_total_nominal);
				}
				return true;

			} else {
				/* Disable freesync */
				v_total_nominal = streams[stream_idx]->
					timing.v_total;

				/* Update the freesync context for
				 * the stream
				 */
				update_stream_freesync_context(
					core_freesync,
					streams[stream_idx]);

				core_freesync->dc->stream_funcs.
						adjust_vmin_vmax(
						core_freesync->dc, streams,
						num_streams, v_total_nominal,
						v_total_nominal);

				/* Reset the cached variables */
				reset_freesync_state_variables(state);

				return true;
			}
		} else {
			/* Disable freesync */
			v_total_nominal = streams[stream_idx]->
				timing.v_total;
			/*
			 * we have to reset drr always even sink does
			 * not support freesync because a former stream has
			 * be programmed
			 */
			core_freesync->dc->stream_funcs.
					adjust_vmin_vmax(
					core_freesync->dc, streams,
					num_streams, v_total_nominal,
					v_total_nominal);
			/* Reset the cached variables */
			reset_freesync_state_variables(state);
		}

	}

	return false;
}

static void set_static_ramp_variables(struct core_freesync *core_freesync,
		unsigned int index, bool enable_static_screen)
{
	unsigned int frame_duration = 0;
687 688 689 690
	unsigned int nominal_refresh_rate = core_freesync->map[index].state.
			nominal_refresh_rate_in_micro_hz;
	unsigned int min_refresh_rate= core_freesync->map[index].caps->
			min_refresh_in_micro_hz;
691 692 693
	struct gradual_static_ramp *static_ramp_variables =
			&core_freesync->map[index].state.static_ramp;

694 695 696 697 698 699 700 701
	/* If we are ENABLING static screen, refresh rate should go DOWN.
	 * If we are DISABLING static screen, refresh rate should go UP.
	 */
	if (enable_static_screen)
		static_ramp_variables->ramp_direction_is_up = false;
	else
		static_ramp_variables->ramp_direction_is_up = true;

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	/* If ramp is not active, set initial frame duration depending on
	 * whether we are enabling/disabling static screen mode. If the ramp is
	 * already active, ramp should continue in the opposite direction
	 * starting with the current frame duration
	 */
	if (!static_ramp_variables->ramp_is_active) {
		if (enable_static_screen == true) {
			/* Going to lower refresh rate, so start from max
			 * refresh rate (min frame duration)
			 */
			frame_duration = ((unsigned int) (div64_u64(
				(1000000000ULL * 1000000),
714
				nominal_refresh_rate)));
715 716 717 718 719 720
		} else {
			/* Going to higher refresh rate, so start from min
			 * refresh rate (max frame duration)
			 */
			frame_duration = ((unsigned int) (div64_u64(
				(1000000000ULL * 1000000),
721
				min_refresh_rate)));
722 723 724 725
		}
		static_ramp_variables->
			ramp_current_frame_duration_in_ns = frame_duration;

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		static_ramp_variables->ramp_is_active = true;
	}
728 729 730
}

void mod_freesync_handle_v_update(struct mod_freesync *mod_freesync,
731
		struct dc_stream_state **streams, int num_streams)
732
{
733 734
	unsigned int index, v_total, inserted_frame_v_total = 0;
	unsigned int min_frame_duration_in_ns, vmax, vmin = 0;
735
	struct freesync_state *state;
736
	struct core_freesync *core_freesync = NULL;
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	struct dc_static_screen_events triggers = {0};
738 739 740 741 742

	if (mod_freesync == NULL)
		return;

	core_freesync = MOD_FREESYNC_TO_CORE(mod_freesync);
743 744 745 746 747 748 749 750 751 752 753 754 755 756 757 758

	if (core_freesync->num_entities == 0)
		return;

	index = map_index_from_stream(core_freesync,
		streams[0]);

	if (core_freesync->map[index].caps->supported == false)
		return;

	state = &core_freesync->map[index].state;

	/* Below the Range Logic */

	/* Only execute if in fullscreen mode */
	if (state->fullscreen == true &&
759 760 761 762 763 764 765 766 767 768 769 770 771 772 773 774 775
		core_freesync->map[index].user_enable.enable_for_gaming &&
		core_freesync->map[index].caps->btr_supported &&
		state->btr.btr_active) {

		/* TODO: pass in flag for Pre-DCE12 ASIC
		 * in order for frame variable duration to take affect,
		 * it needs to be done one VSYNC early, which is at
		 * frameCounter == 1.
		 * For DCE12 and newer updates to V_TOTAL_MIN/MAX
		 * will take affect on current frame
		 */
		if (state->btr.frames_to_insert == state->btr.frame_counter) {

			min_frame_duration_in_ns = ((unsigned int) (div64_u64(
					(1000000000ULL * 1000000),
					state->nominal_refresh_rate_in_micro_hz)));

776
			vmin = state->freesync_range.vmin;
777

778
			inserted_frame_v_total = vmin;
779

780 781 782 783
			if (min_frame_duration_in_ns / 1000)
				inserted_frame_v_total =
					state->btr.inserted_frame_duration_in_us *
					vmin / (min_frame_duration_in_ns / 1000);
784

785 786 787
			/* Set length of inserted frames as v_total_max*/
			vmax = inserted_frame_v_total;
			vmin = inserted_frame_v_total;
788

789 790 791 792
			/* Program V_TOTAL */
			core_freesync->dc->stream_funcs.adjust_vmin_vmax(
				core_freesync->dc, streams,
				num_streams, vmin, vmax);
793
		}
794 795 796 797 798 799 800

		if (state->btr.frame_counter > 0)
			state->btr.frame_counter--;

		/* Restore FreeSync */
		if (state->btr.frame_counter == 0)
			set_freesync_on_streams(core_freesync, streams, num_streams);
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	}

	/* If in fullscreen freesync mode or in video, do not program
	 * static screen ramp values
	 */
	if (state->fullscreen == true || state->video == true) {

		state->static_ramp.ramp_is_active = false;

		return;
	}

	/* Gradual Static Screen Ramping Logic */

	/* Execute if ramp is active and user enabled freesync static screen*/
	if (state->static_ramp.ramp_is_active &&
		core_freesync->map[index].user_enable.enable_for_static) {

		calc_v_total_for_static_ramp(core_freesync, streams[0],
				index, &v_total);

		/* Update the freesync context for the stream */
		update_stream_freesync_context(core_freesync, streams[0]);

		/* Program static screen ramp values */
		core_freesync->dc->stream_funcs.adjust_vmin_vmax(
					core_freesync->dc, streams,
					num_streams, v_total,
					v_total);
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		triggers.overlay_update = true;
		triggers.surface_update = true;

		core_freesync->dc->stream_funcs.set_static_screen_events(
					core_freesync->dc, streams,	num_streams,
					&triggers);
837 838 839 840
	}
}

void mod_freesync_update_state(struct mod_freesync *mod_freesync,
841
		struct dc_stream_state **streams, int num_streams,
842 843 844 845 846
		struct mod_freesync_params *freesync_params)
{
	bool freesync_program_required = false;
	unsigned int stream_index;
	struct freesync_state *state;
847
	struct core_freesync *core_freesync = NULL;
848
	struct dc_static_screen_events triggers = {0};
849 850 851 852 853

	if (mod_freesync == NULL)
		return;

	core_freesync = MOD_FREESYNC_TO_CORE(mod_freesync);
854 855 856 857 858 859 860 861 862

	if (core_freesync->num_entities == 0)
		return;

	for(stream_index = 0; stream_index < num_streams; stream_index++) {

		unsigned int map_index = map_index_from_stream(core_freesync,
				streams[stream_index]);

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		bool is_embedded = dc_is_embedded_signal(
				streams[stream_index]->sink->sink_signal);

		struct freesync_registry_options *opts = &core_freesync->opts;

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		state = &core_freesync->map[map_index].state;

		switch (freesync_params->state){
		case FREESYNC_STATE_FULLSCREEN:
			state->fullscreen = freesync_params->enable;
			freesync_program_required = true;
			state->windowed_fullscreen =
					freesync_params->windowed_fullscreen;
			break;
		case FREESYNC_STATE_STATIC_SCREEN:
878 879
			/* Static screen ramp is disabled by default, but can
			 * be enabled through regkey.
880
			 */
881 882 883 884 885 886 887 888 889 890 891 892
			if ((is_embedded && opts->drr_internal_supported) ||
				(!is_embedded && opts->drr_external_supported))

				if (state->static_screen !=
						freesync_params->enable) {

					/* Change the state flag */
					state->static_screen =
							freesync_params->enable;

					/* Update static screen ramp */
					set_static_ramp_variables(core_freesync,
893 894
						map_index,
						freesync_params->enable);
895
				}
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			/* We program the ramp starting next VUpdate */
			break;
		case FREESYNC_STATE_VIDEO:
			/* Change core variables only if there is a change*/
			if(freesync_params->update_duration_in_ns !=
				state->time.update_duration_in_ns) {

				state->video = freesync_params->enable;
				state->time.update_duration_in_ns =
					freesync_params->update_duration_in_ns;

				freesync_program_required = true;
			}
			break;
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		case FREESYNC_STATE_NONE:
			/* handle here to avoid warning */
			break;
913 914 915
		}
	}

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	/* Update mask */
	triggers.overlay_update = true;
	triggers.surface_update = true;

	core_freesync->dc->stream_funcs.set_static_screen_events(
		core_freesync->dc, streams, num_streams,
		&triggers);

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	if (freesync_program_required)
		/* Program freesync according to current state*/
		set_freesync_on_streams(core_freesync, streams, num_streams);
}


bool mod_freesync_get_state(struct mod_freesync *mod_freesync,
931
		struct dc_stream_state *stream,
932 933
		struct mod_freesync_params *freesync_params)
{
934
	unsigned int index = 0;
935
	struct core_freesync *core_freesync = NULL;
936

937 938 939 940 941
	if (mod_freesync == NULL)
		return false;

	core_freesync = MOD_FREESYNC_TO_CORE(mod_freesync);
	index = map_index_from_stream(core_freesync, stream);
942 943 944 945 946 947 948 949 950 951 952 953 954 955 956 957 958 959

	if (core_freesync->map[index].state.fullscreen) {
		freesync_params->state = FREESYNC_STATE_FULLSCREEN;
		freesync_params->enable = true;
	} else if (core_freesync->map[index].state.static_screen) {
		freesync_params->state = FREESYNC_STATE_STATIC_SCREEN;
		freesync_params->enable = true;
	} else if (core_freesync->map[index].state.video) {
		freesync_params->state = FREESYNC_STATE_VIDEO;
		freesync_params->enable = true;
	} else {
		freesync_params->state = FREESYNC_STATE_NONE;
		freesync_params->enable = false;
	}

	freesync_params->update_duration_in_ns =
		core_freesync->map[index].state.time.update_duration_in_ns;

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	freesync_params->windowed_fullscreen =
			core_freesync->map[index].state.windowed_fullscreen;

963 964 965 966
	return true;
}

bool mod_freesync_set_user_enable(struct mod_freesync *mod_freesync,
967
		struct dc_stream_state **streams, int num_streams,
968 969 970 971 972
		struct mod_freesync_user_enable *user_enable)
{
	unsigned int stream_index, map_index;
	int persistent_data = 0;
	struct persistent_data_flag flag;
973
	struct dc  *core_dc = NULL;
974 975 976 977 978 979
	struct core_freesync *core_freesync = NULL;

	if (mod_freesync == NULL)
		return false;

	core_freesync = MOD_FREESYNC_TO_CORE(mod_freesync);
980
	core_dc = core_freesync->dc;
981 982 983 984 985 986 987 988 989 990 991 992 993 994 995 996 997 998 999 1000 1001 1002 1003 1004 1005 1006 1007 1008 1009 1010 1011 1012 1013 1014 1015 1016 1017 1018

	flag.save_per_edid = true;
	flag.save_per_link = false;

	for(stream_index = 0; stream_index < num_streams;
			stream_index++){

		map_index = map_index_from_stream(core_freesync,
				streams[stream_index]);

		core_freesync->map[map_index].user_enable = *user_enable;

		/* Write persistent data in registry*/
		if (core_freesync->map[map_index].user_enable.
				enable_for_gaming)
			persistent_data = persistent_data | 1;
		if (core_freesync->map[map_index].user_enable.
				enable_for_static)
			persistent_data = persistent_data | 2;
		if (core_freesync->map[map_index].user_enable.
				enable_for_video)
			persistent_data = persistent_data | 4;

		dm_write_persistent_data(core_dc->ctx,
					streams[stream_index]->sink,
					FREESYNC_REGISTRY_NAME,
					"userenable",
					&persistent_data,
					sizeof(int),
					&flag);
	}

	set_freesync_on_streams(core_freesync, streams, num_streams);

	return true;
}

bool mod_freesync_get_user_enable(struct mod_freesync *mod_freesync,
1019
		struct dc_stream_state *stream,
1020 1021
		struct mod_freesync_user_enable *user_enable)
{
1022 1023
	unsigned int index = 0;
	struct core_freesync *core_freesync = NULL;
1024

1025 1026 1027 1028 1029
	if (mod_freesync == NULL)
		return false;

	core_freesync = MOD_FREESYNC_TO_CORE(mod_freesync);
	index = map_index_from_stream(core_freesync, stream);
1030 1031 1032 1033 1034 1035

	*user_enable = core_freesync->map[index].user_enable;

	return true;
}

1036
bool mod_freesync_get_static_ramp_active(struct mod_freesync *mod_freesync,
1037
		struct dc_stream_state *stream,
1038 1039 1040 1041 1042 1043 1044 1045 1046 1047 1048 1049 1050 1051 1052 1053 1054
		bool *is_ramp_active)
{
	unsigned int index = 0;
	struct core_freesync *core_freesync = NULL;

	if (mod_freesync == NULL)
		return false;

	core_freesync = MOD_FREESYNC_TO_CORE(mod_freesync);
	index = map_index_from_stream(core_freesync, stream);

	*is_ramp_active =
		core_freesync->map[index].state.static_ramp.ramp_is_active;

	return true;
}

1055
bool mod_freesync_override_min_max(struct mod_freesync *mod_freesync,
1056
		struct dc_stream_state *streams,
1057
		unsigned int min_refresh,
1058 1059
		unsigned int max_refresh,
		struct mod_freesync_caps *caps)
1060 1061 1062 1063 1064 1065 1066 1067 1068 1069 1070 1071
{
	unsigned int index = 0;
	struct core_freesync *core_freesync;
	struct freesync_state *state;

	if (mod_freesync == NULL)
		return false;

	core_freesync = MOD_FREESYNC_TO_CORE(mod_freesync);
	index = map_index_from_stream(core_freesync, streams);
	state = &core_freesync->map[index].state;

1072 1073 1074 1075
	if (max_refresh == 0)
		max_refresh = state->nominal_refresh_rate_in_micro_hz;

	if (min_refresh == 0) {
1076 1077 1078 1079 1080 1081 1082 1083 1084 1085 1086 1087 1088 1089 1090 1091 1092 1093
		/* Restore defaults */
		calc_freesync_range(core_freesync, streams, state,
			core_freesync->map[index].caps->
			min_refresh_in_micro_hz,
			state->nominal_refresh_rate_in_micro_hz);
	} else {
		calc_freesync_range(core_freesync, streams,
				state,
				min_refresh,
				max_refresh);

		/* Program vtotal min/max */
		core_freesync->dc->stream_funcs.adjust_vmin_vmax(
			core_freesync->dc, &streams, 1,
			state->freesync_range.vmin,
			state->freesync_range.vmax);
	}

1094 1095 1096 1097 1098 1099 1100 1101 1102 1103 1104
	if (min_refresh != 0 &&
			dc_is_embedded_signal(streams->sink->sink_signal) &&
			(max_refresh - min_refresh >= 10000000)) {
		caps->supported = true;
		caps->min_refresh_in_micro_hz = min_refresh;
		caps->max_refresh_in_micro_hz = max_refresh;
	}

	/* Update the stream */
	update_stream(core_freesync, streams);

1105 1106 1107 1108
	return true;
}

bool mod_freesync_get_min_max(struct mod_freesync *mod_freesync,
1109
		struct dc_stream_state *stream,
1110 1111 1112 1113 1114 1115 1116 1117 1118 1119 1120 1121 1122 1123 1124 1125 1126 1127 1128 1129 1130
		unsigned int *min_refresh,
		unsigned int *max_refresh)
{
	unsigned int index = 0;
	struct core_freesync *core_freesync = NULL;

	if (mod_freesync == NULL)
		return false;

	core_freesync = MOD_FREESYNC_TO_CORE(mod_freesync);
	index = map_index_from_stream(core_freesync, stream);

	*min_refresh =
		core_freesync->map[index].state.freesync_range.min_refresh;
	*max_refresh =
		core_freesync->map[index].state.freesync_range.max_refresh;

	return true;
}

bool mod_freesync_get_vmin_vmax(struct mod_freesync *mod_freesync,
1131
		struct dc_stream_state *stream,
1132 1133 1134 1135 1136 1137 1138 1139 1140 1141 1142 1143 1144 1145 1146 1147 1148 1149 1150 1151 1152
		unsigned int *vmin,
		unsigned int *vmax)
{
	unsigned int index = 0;
	struct core_freesync *core_freesync = NULL;

	if (mod_freesync == NULL)
		return false;

	core_freesync = MOD_FREESYNC_TO_CORE(mod_freesync);
	index = map_index_from_stream(core_freesync, stream);

	*vmin =
		core_freesync->map[index].state.freesync_range.vmin;
	*vmax =
		core_freesync->map[index].state.freesync_range.vmax;

	return true;
}

bool mod_freesync_get_v_position(struct mod_freesync *mod_freesync,
1153
		struct dc_stream_state *stream,
1154 1155 1156 1157 1158 1159 1160 1161 1162 1163 1164 1165 1166 1167 1168 1169 1170
		unsigned int *nom_v_pos,
		unsigned int *v_pos)
{
	unsigned int index = 0;
	struct core_freesync *core_freesync = NULL;
	struct crtc_position position;

	if (mod_freesync == NULL)
		return false;

	core_freesync = MOD_FREESYNC_TO_CORE(mod_freesync);
	index = map_index_from_stream(core_freesync, stream);

	if (core_freesync->dc->stream_funcs.get_crtc_position(
			core_freesync->dc, &stream, 1,
			&position.vertical_count, &position.nominal_vcount)) {

1171 1172
		*nom_v_pos = position.nominal_vcount;
		*v_pos = position.vertical_count;
1173 1174 1175 1176 1177 1178 1179

		return true;
	}

	return false;
}

1180
void mod_freesync_notify_mode_change(struct mod_freesync *mod_freesync,
1181
		struct dc_stream_state **streams, int num_streams)
1182 1183 1184
{
	unsigned int stream_index, map_index;
	struct freesync_state *state;
1185
	struct core_freesync *core_freesync = NULL;
1186
	struct dc_static_screen_events triggers = {0};
1187
	unsigned long long temp = 0;
1188 1189 1190 1191 1192

	if (mod_freesync == NULL)
		return;

	core_freesync = MOD_FREESYNC_TO_CORE(mod_freesync);
1193 1194 1195 1196 1197 1198 1199

	for (stream_index = 0; stream_index < num_streams; stream_index++) {
		map_index = map_index_from_stream(core_freesync,
				streams[stream_index]);

		state = &core_freesync->map[map_index].state;

1200 1201 1202 1203 1204 1205 1206 1207 1208 1209
		/* Update the field rate for new timing */
		temp = streams[stream_index]->timing.pix_clk_khz;
		temp *= 1000ULL * 1000ULL * 1000ULL;
		temp = div_u64(temp,
				streams[stream_index]->timing.h_total);
		temp = div_u64(temp,
				streams[stream_index]->timing.v_total);
		state->nominal_refresh_rate_in_micro_hz =
				(unsigned int) temp;

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		if (core_freesync->map[map_index].caps->supported) {

			/* Update the stream */
			update_stream(core_freesync, streams[stream_index]);

1215 1216 1217 1218
			/* Calculate vmin/vmax and refresh rate for
			 * current mode
			 */
			calc_freesync_range(core_freesync, *streams, state,
1219
				core_freesync->map[map_index].caps->
1220 1221
				min_refresh_in_micro_hz,
				state->nominal_refresh_rate_in_micro_hz);
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			/* Update mask */
			triggers.overlay_update = true;
			triggers.surface_update = true;

			core_freesync->dc->stream_funcs.set_static_screen_events(
				core_freesync->dc, streams, num_streams,
				&triggers);
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		}
	}

	/* Program freesync according to current state*/
	set_freesync_on_streams(core_freesync, streams, num_streams);
}

/* Add the timestamps to the cache and determine whether BTR programming
 * is required, depending on the times calculated
 */
static void update_timestamps(struct core_freesync *core_freesync,
1241
		const struct dc_stream_state *stream, unsigned int map_index,
1242 1243 1244 1245 1246 1247 1248 1249 1250 1251 1252 1253 1254 1255 1256 1257 1258 1259 1260 1261 1262 1263
		unsigned int last_render_time_in_us)
{
	struct freesync_state *state = &core_freesync->map[map_index].state;

	state->time.render_times[state->time.render_times_index] =
			last_render_time_in_us;
	state->time.render_times_index++;

	if (state->time.render_times_index >= RENDER_TIMES_MAX_COUNT)
		state->time.render_times_index = 0;

	if (last_render_time_in_us + BTR_EXIT_MARGIN <
		state->time.max_render_time_in_us) {

		/* Exit Below the Range */
		if (state->btr.btr_active) {

			state->btr.program_btr = true;
			state->btr.btr_active = false;
			state->btr.frame_counter = 0;

		/* Exit Fixed Refresh mode */
1264
		} else if (state->fixed_refresh.fixed_active) {
1265

1266
			state->fixed_refresh.frame_counter++;
1267

1268 1269 1270 1271 1272 1273
			if (state->fixed_refresh.frame_counter >
					FIXED_REFRESH_EXIT_FRAME_COUNT) {
				state->fixed_refresh.frame_counter = 0;
				state->fixed_refresh.program_fixed = true;
				state->fixed_refresh.fixed_active = false;
			}
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		}

	} else if (last_render_time_in_us > state->time.max_render_time_in_us) {

		/* Enter Below the Range */
		if (!state->btr.btr_active &&
1280
			core_freesync->map[map_index].caps->btr_supported) {
1281 1282 1283 1284 1285

			state->btr.program_btr = true;
			state->btr.btr_active = true;

		/* Enter Fixed Refresh mode */
1286
		} else if (!state->fixed_refresh.fixed_active &&
1287 1288
			!core_freesync->map[map_index].caps->btr_supported) {

1289
			state->fixed_refresh.frame_counter++;
1290

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			if (state->fixed_refresh.frame_counter >
					FIXED_REFRESH_ENTER_FRAME_COUNT) {
				state->fixed_refresh.frame_counter = 0;
				state->fixed_refresh.program_fixed = true;
				state->fixed_refresh.fixed_active = true;
			}
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		}
	}

	/* When Below the Range is active, must react on every frame */
	if (state->btr.btr_active)
		state->btr.program_btr = true;
}

static void apply_below_the_range(struct core_freesync *core_freesync,
1306
		struct dc_stream_state *stream, unsigned int map_index,
1307 1308 1309 1310 1311 1312 1313 1314 1315 1316 1317 1318 1319 1320 1321 1322 1323 1324 1325 1326 1327 1328 1329 1330 1331 1332 1333 1334 1335 1336 1337 1338 1339 1340 1341 1342 1343 1344 1345 1346 1347 1348 1349
		unsigned int last_render_time_in_us)
{
	unsigned int inserted_frame_duration_in_us = 0;
	unsigned int mid_point_frames_ceil = 0;
	unsigned int mid_point_frames_floor = 0;
	unsigned int frame_time_in_us = 0;
	unsigned int delta_from_mid_point_in_us_1 = 0xFFFFFFFF;
	unsigned int delta_from_mid_point_in_us_2 = 0xFFFFFFFF;
	unsigned int frames_to_insert = 0;
	unsigned int min_frame_duration_in_ns = 0;
	struct freesync_state *state = &core_freesync->map[map_index].state;

	if (!state->btr.program_btr)
		return;

	state->btr.program_btr = false;

	min_frame_duration_in_ns = ((unsigned int) (div64_u64(
		(1000000000ULL * 1000000),
		state->nominal_refresh_rate_in_micro_hz)));

	/* Program BTR */

	/* BTR set to "not active" so disengage */
	if (!state->btr.btr_active)

		/* Restore FreeSync */
		set_freesync_on_streams(core_freesync, &stream, 1);

	/* BTR set to "active" so engage */
	else {

		/* Calculate number of midPoint frames that could fit within
		 * the render time interval- take ceil of this value
		 */
		mid_point_frames_ceil = (last_render_time_in_us +
			state->btr.mid_point_in_us- 1) /
			state->btr.mid_point_in_us;

		if (mid_point_frames_ceil > 0) {

			frame_time_in_us = last_render_time_in_us /
				mid_point_frames_ceil;
1350 1351
			delta_from_mid_point_in_us_1 =
				(state->btr.mid_point_in_us >
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				frame_time_in_us) ?
				(state->btr.mid_point_in_us - frame_time_in_us):
				(frame_time_in_us - state->btr.mid_point_in_us);
		}

		/* Calculate number of midPoint frames that could fit within
		 * the render time interval- take floor of this value
		 */
		mid_point_frames_floor = last_render_time_in_us /
			state->btr.mid_point_in_us;

		if (mid_point_frames_floor > 0) {

			frame_time_in_us = last_render_time_in_us /
				mid_point_frames_floor;
1367 1368
			delta_from_mid_point_in_us_2 =
				(state->btr.mid_point_in_us >
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				frame_time_in_us) ?
				(state->btr.mid_point_in_us - frame_time_in_us):
				(frame_time_in_us - state->btr.mid_point_in_us);
		}

		/* Choose number of frames to insert based on how close it
		 * can get to the mid point of the variable range.
		 */
		if (delta_from_mid_point_in_us_1 < delta_from_mid_point_in_us_2)
			frames_to_insert = mid_point_frames_ceil;
		else
			frames_to_insert = mid_point_frames_floor;

		/* Either we've calculated the number of frames to insert,
		 * or we need to insert min duration frames
		 */
		if (frames_to_insert > 0)
			inserted_frame_duration_in_us = last_render_time_in_us /
							frames_to_insert;

		if (inserted_frame_duration_in_us <
			state->time.min_render_time_in_us)

			inserted_frame_duration_in_us =
				state->time.min_render_time_in_us;

		/* Cache the calculated variables */
		state->btr.inserted_frame_duration_in_us =
			inserted_frame_duration_in_us;
		state->btr.frames_to_insert = frames_to_insert;
		state->btr.frame_counter = frames_to_insert;

	}
}

static void apply_fixed_refresh(struct core_freesync *core_freesync,
1405
		struct dc_stream_state *stream, unsigned int map_index)
1406 1407 1408 1409
{
	unsigned int vmin = 0, vmax = 0;
	struct freesync_state *state = &core_freesync->map[map_index].state;

1410
	if (!state->fixed_refresh.program_fixed)
1411 1412
		return;

1413
	state->fixed_refresh.program_fixed = false;
1414 1415 1416 1417

	/* Program Fixed Refresh */

	/* Fixed Refresh set to "not active" so disengage */
1418
	if (!state->fixed_refresh.fixed_active) {
1419 1420 1421 1422 1423
		set_freesync_on_streams(core_freesync, &stream, 1);

	/* Fixed Refresh set to "active" so engage (fix to max) */
	} else {

1424
		vmin = state->freesync_range.vmin;
1425 1426 1427 1428 1429 1430 1431 1432 1433 1434 1435

		vmax = vmin;

		core_freesync->dc->stream_funcs.adjust_vmin_vmax(
				core_freesync->dc, &stream,
				1, vmin,
				vmax);
	}
}

void mod_freesync_pre_update_plane_addresses(struct mod_freesync *mod_freesync,
1436
		struct dc_stream_state **streams, int num_streams,
1437 1438 1439
		unsigned int curr_time_stamp_in_us)
{
	unsigned int stream_index, map_index, last_render_time_in_us = 0;
1440 1441 1442 1443 1444 1445
	struct core_freesync *core_freesync = NULL;

	if (mod_freesync == NULL)
		return;

	core_freesync = MOD_FREESYNC_TO_CORE(mod_freesync);
1446 1447 1448 1449 1450 1451 1452 1453 1454 1455 1456 1457 1458 1459 1460 1461 1462 1463 1464 1465 1466 1467 1468 1469 1470 1471 1472 1473 1474 1475 1476 1477 1478 1479 1480 1481 1482 1483 1484

	for (stream_index = 0; stream_index < num_streams; stream_index++) {

		map_index = map_index_from_stream(core_freesync,
						streams[stream_index]);

		if (core_freesync->map[map_index].caps->supported) {

			last_render_time_in_us = curr_time_stamp_in_us -
					core_freesync->map[map_index].state.time.
					prev_time_stamp_in_us;

			/* Add the timestamps to the cache and determine
			 * whether BTR program is required
			 */
			update_timestamps(core_freesync, streams[stream_index],
					map_index, last_render_time_in_us);

			if (core_freesync->map[map_index].state.fullscreen &&
				core_freesync->map[map_index].user_enable.
				enable_for_gaming) {

				if (core_freesync->map[map_index].caps->btr_supported) {

					apply_below_the_range(core_freesync,
						streams[stream_index], map_index,
						last_render_time_in_us);
				} else {
					apply_fixed_refresh(core_freesync,
						streams[stream_index], map_index);
				}
			}

			core_freesync->map[map_index].state.time.
				prev_time_stamp_in_us = curr_time_stamp_in_us;
		}

	}
}