Commit 9edba557 authored by Vitaly Prosyak's avatar Vitaly Prosyak Committed by Alex Deucher

drm/amd/display: RV stereo support

HDMI frame pack and DP frame alternate in band
Signed-off-by: default avatarVitaly Prosyak <vitaly.prosyak@amd.com>
Reviewed-by: default avatarTony Cheng <Tony.Cheng@amd.com>
Acked-by: default avatarHarry Wentland <Harry.Wentland@amd.com>
Signed-off-by: default avatarAlex Deucher <alexander.deucher@amd.com>
parent c9742685
......@@ -361,6 +361,7 @@ struct dc_surface_status {
struct dc_plane_address requested_address;
struct dc_plane_address current_address;
bool is_flip_pending;
bool is_right_eye;
};
/*
......@@ -476,7 +477,7 @@ struct dc_stream {
const struct dc_transfer_func *out_transfer_func;
struct colorspace_transform gamut_remap_matrix;
struct csc_transform csc_color_matrix;
enum view_3d_format view_format;
/* TODO: custom INFO packets */
/* TODO: ABM info (DMCU) */
/* TODO: PSR info */
......@@ -591,6 +592,15 @@ bool dc_commit_streams(
struct dc *dc,
const struct dc_stream *streams[],
uint8_t stream_count);
/*
* Enable stereo when commit_streams is not required,
* for example, frame alternate.
*/
bool dc_enable_stereo(
struct dc *dc,
struct validate_context *context,
const struct dc_stream *streams[],
uint8_t stream_count);
/**
* Create a new default stream for the requested sink
......@@ -777,6 +787,14 @@ struct dc_container_id {
unsigned short productCode;
};
struct stereo_3d_features {
bool supported ;
bool allTimings ;
bool cloneMode ;
bool scaling ;
bool singleFrameSWPacked;
};
/*
* The sink structure contains EDID and other display device properties
*/
......@@ -788,6 +806,7 @@ struct dc_sink {
uint32_t dongle_max_pix_clk;
bool converter_disable_audio;
void *priv;
struct stereo_3d_features features_3d[TIMING_3D_FORMAT_MAX];
};
void dc_sink_retain(const struct dc_sink *sink);
......
......@@ -78,112 +78,22 @@ static void dcn10_program_global_sync(
VREADY_OFFSET, tg->dlg_otg_param.vready_offset);
}
struct crtc_stereo_flags {
uint8_t PROGRAM_STEREO :1;
uint8_t PROGRAM_POLARITY :1;
uint8_t RIGHT_EYE_POLARITY :1;
uint8_t FRAME_PACKED :1;
uint8_t DISABLE_STEREO_DP_SYNC :1;
};
static void dcn10_enable_stereo(struct timing_generator *tg,
const struct crtc_stereo_flags *flags,
const struct dc_crtc_timing *timing)
{
struct dcn10_timing_generator *tgn10 = DCN10TG_FROM_TG(tg);
uint32_t active_width = timing->h_addressable;
uint32_t space1_size = timing->v_total - timing->v_addressable;
if (flags) {
uint32_t stereo_en = flags->FRAME_PACKED == 0 ? 1 : 0;
if (flags->PROGRAM_STEREO)
REG_UPDATE_3(OTG_STEREO_CONTROL,
OTG_STEREO_EN, stereo_en,
OTG_STEREO_SYNC_OUTPUT_LINE_NUM, 0,
OTG_STEREO_SYNC_OUTPUT_POLARITY, 0);
if (flags->PROGRAM_POLARITY)
REG_UPDATE(OTG_STEREO_CONTROL,
OTG_STEREO_EYE_FLAG_POLARITY,
flags->RIGHT_EYE_POLARITY == 0 ? 0:1);
if (flags->DISABLE_STEREO_DP_SYNC)
REG_UPDATE(OTG_STEREO_CONTROL,
OTG_DISABLE_STEREOSYNC_OUTPUT_FOR_DP, 1);
if (flags->PROGRAM_STEREO && flags->FRAME_PACKED)
REG_UPDATE_3(OTG_3D_STRUCTURE_CONTROL,
OTG_3D_STRUCTURE_EN, 1,
OTG_3D_STRUCTURE_V_UPDATE_MODE, 1,
OTG_3D_STRUCTURE_STEREO_SEL_OVR, 1);
}
REG_UPDATE(OPPBUF_CONTROL,
OPPBUF_ACTIVE_WIDTH, active_width);
REG_UPDATE(OPPBUF_3D_PARAMETERS_0,
OPPBUF_3D_VACT_SPACE1_SIZE, space1_size);
return;
}
static void dcn10_disable_stereo(struct timing_generator *tg)
{
struct dcn10_timing_generator *tgn10 = DCN10TG_FROM_TG(tg);
REG_SET(OTG_STEREO_CONTROL, 0,
OTG_STEREO_EN, 0);
OTG_STEREO_EN, 0);
REG_SET_3(OTG_3D_STRUCTURE_CONTROL, 0,
OTG_3D_STRUCTURE_EN, 0,
OTG_3D_STRUCTURE_V_UPDATE_MODE, 0,
OTG_3D_STRUCTURE_STEREO_SEL_OVR, 0);
OTG_3D_STRUCTURE_EN, 0,
OTG_3D_STRUCTURE_V_UPDATE_MODE, 0,
OTG_3D_STRUCTURE_STEREO_SEL_OVR, 0);
REG_UPDATE(OPPBUF_CONTROL,
OPPBUF_ACTIVE_WIDTH, 0);
OPPBUF_ACTIVE_WIDTH, 0);
REG_UPDATE(OPPBUF_3D_PARAMETERS_0,
OPPBUF_3D_VACT_SPACE1_SIZE, 0);
return;
}
static bool is_frame_alternate_stereo(enum dc_timing_3d_format fmt)
{
bool ret = false;
if (fmt == TIMING_3D_FORMAT_FRAME_ALTERNATE ||
fmt == TIMING_3D_FORMAT_INBAND_FA ||
fmt == TIMING_3D_FORMAT_DP_HDMI_INBAND_FA ||
fmt == TIMING_3D_FORMAT_SIDEBAND_FA)
ret = true;
return ret;
}
static void dcn10_do_stereo(struct timing_generator *tg,
const struct dc_crtc_timing *dc_crtc_timing)
{
struct crtc_stereo_flags stereo_flags = {0};
if (dc_crtc_timing->timing_3d_format == TIMING_3D_FORMAT_NONE ||
dc_crtc_timing->timing_3d_format == TIMING_3D_FORMAT_SIDE_BY_SIDE ||
dc_crtc_timing->timing_3d_format == TIMING_3D_FORMAT_TOP_AND_BOTTOM)
dcn10_disable_stereo(tg);
else {
stereo_flags.PROGRAM_STEREO = 1;
stereo_flags.PROGRAM_POLARITY = 1;
stereo_flags.DISABLE_STEREO_DP_SYNC = 0;
stereo_flags.RIGHT_EYE_POLARITY =
dc_crtc_timing->flags.RIGHT_EYE_3D_POLARITY;
if (dc_crtc_timing->timing_3d_format ==
TIMING_3D_FORMAT_HW_FRAME_PACKING)
stereo_flags.FRAME_PACKED = 1;
if (is_frame_alternate_stereo(
dc_crtc_timing->timing_3d_format) ||
dc_crtc_timing->timing_3d_format ==
TIMING_3D_FORMAT_HW_FRAME_PACKING)
dcn10_enable_stereo(tg, &stereo_flags, dc_crtc_timing);
}
OPPBUF_3D_VACT_SPACE1_SIZE, 0);
}
/**
......@@ -361,9 +271,8 @@ static void tg_program_timing_generator(
REG_UPDATE(OTG_H_TIMING_CNTL,
OTG_H_TIMING_DIV_BY2, h_div_2);
/* Enable crtc stereo frame pack tested... todo more
*/
dcn10_do_stereo(tg, &patched_crtc_timing);
dcn10_disable_stereo( tg);
}
/** tg_program_blanking
......@@ -605,7 +514,8 @@ static bool tg_validate_timing(
timing->timing_3d_format != TIMING_3D_FORMAT_HW_FRAME_PACKING &&
timing->timing_3d_format != TIMING_3D_FORMAT_TOP_AND_BOTTOM &&
timing->timing_3d_format != TIMING_3D_FORMAT_SIDE_BY_SIDE &&
timing->timing_3d_format != TIMING_3D_FORMAT_FRAME_ALTERNATE)
timing->timing_3d_format != TIMING_3D_FORMAT_FRAME_ALTERNATE &&
timing->timing_3d_format != TIMING_3D_FORMAT_INBAND_FA)
return false;
/* Temporarily blocking interlacing mode until it's supported */
......@@ -1145,6 +1055,76 @@ void dcn10_timing_generator_get_crtc_scanoutpos(
*v_position = position.vertical_count;
}
static void dcn10_enable_stereo(struct timing_generator *tg,
const struct dc_crtc_timing *timing, struct crtc_stereo_flags *flags)
{
struct dcn10_timing_generator *tgn10 = DCN10TG_FROM_TG(tg);
uint32_t active_width = timing->h_addressable;
uint32_t space1_size = timing->v_total - timing->v_addressable;
if (flags) {
uint32_t stereo_en;
stereo_en = flags->FRAME_PACKED == 0 ? 1 : 0;
if (flags->PROGRAM_STEREO)
REG_UPDATE_3(OTG_STEREO_CONTROL,
OTG_STEREO_EN, stereo_en,
OTG_STEREO_SYNC_OUTPUT_LINE_NUM, 0,
OTG_STEREO_SYNC_OUTPUT_POLARITY, 0);
if (flags->PROGRAM_POLARITY)
REG_UPDATE(OTG_STEREO_CONTROL,
OTG_STEREO_EYE_FLAG_POLARITY,
flags->RIGHT_EYE_POLARITY == 0 ? 0 : 1);
if (flags->DISABLE_STEREO_DP_SYNC)
REG_UPDATE(OTG_STEREO_CONTROL,
OTG_DISABLE_STEREOSYNC_OUTPUT_FOR_DP, 1);
if (flags->PROGRAM_STEREO && flags->FRAME_PACKED)
REG_UPDATE_3(OTG_3D_STRUCTURE_CONTROL,
OTG_3D_STRUCTURE_EN, 1,
OTG_3D_STRUCTURE_V_UPDATE_MODE, 1,
OTG_3D_STRUCTURE_STEREO_SEL_OVR, 1);
}
REG_UPDATE(OPPBUF_CONTROL,
OPPBUF_ACTIVE_WIDTH, active_width);
REG_UPDATE(OPPBUF_3D_PARAMETERS_0,
OPPBUF_3D_VACT_SPACE1_SIZE, space1_size);
}
static void dcn10_program_stereo(struct timing_generator *tg,
const struct dc_crtc_timing *timing, struct crtc_stereo_flags *flags)
{
if (flags->PROGRAM_STEREO)
dcn10_enable_stereo(tg, timing, flags);
else
dcn10_disable_stereo(tg);
}
static bool dcn10_is_stereo_left_eye(struct timing_generator *tg)
{
bool ret = false;
uint32_t left_eye = 0;
struct dcn10_timing_generator *tgn10 = DCN10TG_FROM_TG(tg);
REG_GET(OTG_STEREO_STATUS,
OTG_STEREO_CURRENT_EYE, &left_eye);
if (left_eye == 1)
ret = true;
else
ret = false;
return ret;
}
static struct timing_generator_funcs dcn10_tg_funcs = {
.validate_timing = tg_validate_timing,
.program_timing = tg_program_timing,
......@@ -1183,7 +1163,9 @@ static struct timing_generator_funcs dcn10_tg_funcs = {
.enable_optc_clock = enable_optc_clock,
.set_drr = dcn10_timing_generator_set_drr,
.set_static_screen_control = set_static_screen_control,
.set_test_pattern = dcn10_timing_generator_set_test_pattern
.set_test_pattern = dcn10_timing_generator_set_test_pattern,
.program_stereo = dcn10_program_stereo,
.is_stereo_left_eye = dcn10_is_stereo_left_eye
};
void dcn10_timing_generator_init(struct dcn10_timing_generator *tgn10)
......
......@@ -51,6 +51,7 @@
SRI(OTG_CONTROL, OTG, inst),\
SRI(OTG_STEREO_CONTROL, OTG, inst),\
SRI(OTG_3D_STRUCTURE_CONTROL, OTG, inst),\
SRI(OTG_STEREO_STATUS, OTG, inst),\
SRI(OTG_V_TOTAL_MAX, OTG, inst),\
SRI(OTG_V_TOTAL_MIN, OTG, inst),\
SRI(OTG_V_TOTAL_CONTROL, OTG, inst),\
......@@ -96,6 +97,7 @@ struct dcn_tg_registers {
uint32_t OTG_CONTROL;
uint32_t OTG_STEREO_CONTROL;
uint32_t OTG_3D_STRUCTURE_CONTROL;
uint32_t OTG_STEREO_STATUS;
uint32_t OTG_V_TOTAL_MAX;
uint32_t OTG_V_TOTAL_MIN;
uint32_t OTG_V_TOTAL_CONTROL;
......@@ -157,6 +159,8 @@ struct dcn_tg_registers {
SF(OTG0_OTG_STEREO_CONTROL, OTG_STEREO_SYNC_OUTPUT_POLARITY, mask_sh),\
SF(OTG0_OTG_STEREO_CONTROL, OTG_STEREO_EYE_FLAG_POLARITY, mask_sh),\
SF(OTG0_OTG_STEREO_CONTROL, OTG_DISABLE_STEREOSYNC_OUTPUT_FOR_DP, mask_sh),\
SF(OTG0_OTG_STEREO_CONTROL, OTG_DISABLE_STEREOSYNC_OUTPUT_FOR_DP, mask_sh),\
SF(OTG0_OTG_STEREO_STATUS, OTG_STEREO_CURRENT_EYE, mask_sh),\
SF(OTG0_OTG_3D_STRUCTURE_CONTROL, OTG_3D_STRUCTURE_EN, mask_sh),\
SF(OTG0_OTG_3D_STRUCTURE_CONTROL, OTG_3D_STRUCTURE_V_UPDATE_MODE, mask_sh),\
SF(OTG0_OTG_3D_STRUCTURE_CONTROL, OTG_3D_STRUCTURE_STEREO_SEL_OVR, mask_sh),\
......@@ -243,6 +247,7 @@ struct dcn_tg_registers {
type OTG_STEREO_SYNC_OUTPUT_LINE_NUM;\
type OTG_STEREO_SYNC_OUTPUT_POLARITY;\
type OTG_STEREO_EYE_FLAG_POLARITY;\
type OTG_STEREO_CURRENT_EYE;\
type OTG_DISABLE_STEREOSYNC_OUTPUT_FOR_DP;\
type OTG_3D_STRUCTURE_EN;\
type OTG_3D_STRUCTURE_V_UPDATE_MODE;\
......
......@@ -100,6 +100,15 @@ struct _dlg_otg_param {
enum signal_type signal;
};
#endif
struct crtc_stereo_flags {
uint8_t PROGRAM_STEREO : 1;
uint8_t PROGRAM_POLARITY : 1;
uint8_t RIGHT_EYE_POLARITY : 1;
uint8_t FRAME_PACKED : 1;
uint8_t DISABLE_STEREO_DP_SYNC : 1;
};
struct timing_generator {
const struct timing_generator_funcs *funcs;
struct dc_bios *bp;
......@@ -171,6 +180,9 @@ struct timing_generator_funcs {
void (*program_global_sync)(struct timing_generator *tg);
void (*enable_optc_clock)(struct timing_generator *tg, bool enable);
#endif
void (*program_stereo)(struct timing_generator *tg,
const struct dc_crtc_timing *timing, struct crtc_stereo_flags *flags);
bool (*is_stereo_left_eye)(struct timing_generator *tg);
};
#endif
......@@ -143,6 +143,10 @@ struct hw_sequencer_funcs {
struct pipe_ctx *pipe_ctx,
struct validate_context *context,
struct core_dc *dc);
void (*setup_stereo)(
struct pipe_ctx *pipe_ctx,
struct core_dc *dc);
};
void color_space_to_black_color(
......
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