diff options
Diffstat (limited to 'drivers/gpu/drm/i915/intel_dp.c')
-rw-r--r-- | drivers/gpu/drm/i915/intel_dp.c | 1592 |
1 files changed, 926 insertions, 666 deletions
diff --git a/drivers/gpu/drm/i915/intel_dp.c b/drivers/gpu/drm/i915/intel_dp.c index 13f9b56a9ce7..48da4a969a0a 100644 --- a/drivers/gpu/drm/i915/intel_dp.c +++ b/drivers/gpu/drm/i915/intel_dp.c @@ -32,19 +32,31 @@ #include <linux/notifier.h> #include <linux/reboot.h> #include <asm/byteorder.h> -#include <drm/drmP.h> #include <drm/drm_atomic_helper.h> #include <drm/drm_crtc.h> -#include <drm/drm_crtc_helper.h> #include <drm/drm_dp_helper.h> #include <drm/drm_edid.h> #include <drm/drm_hdcp.h> +#include <drm/drm_probe_helper.h> #include "intel_drv.h" #include <drm/i915_drm.h> #include "i915_drv.h" #define DP_DPRX_ESI_LEN 14 +/* DP DSC small joiner has 2 FIFOs each of 640 x 6 bytes */ +#define DP_DSC_MAX_SMALL_JOINER_RAM_BUFFER 61440 +#define DP_DSC_MIN_SUPPORTED_BPC 8 +#define DP_DSC_MAX_SUPPORTED_BPC 10 + +/* DP DSC throughput values used for slice count calculations KPixels/s */ +#define DP_DSC_PEAK_PIXEL_RATE 2720000 +#define DP_DSC_MAX_ENC_THROUGHPUT_0 340000 +#define DP_DSC_MAX_ENC_THROUGHPUT_1 400000 + +/* DP DSC FEC Overhead factor = (100 - 2.4)/100 */ +#define DP_DSC_FEC_OVERHEAD_FACTOR 976 + /* Compliance test status bits */ #define INTEL_DP_RESOLUTION_SHIFT_MASK 0 #define INTEL_DP_RESOLUTION_PREFERRED (1 << INTEL_DP_RESOLUTION_SHIFT_MASK) @@ -93,6 +105,14 @@ static const struct dp_link_dpll chv_dpll[] = { { .p1 = 4, .p2 = 1, .n = 1, .m1 = 2, .m2 = 0x6c00000 } }, }; +/* Constants for DP DSC configurations */ +static const u8 valid_dsc_bpp[] = {6, 8, 10, 12, 15}; + +/* With Single pipe configuration, HW is capable of supporting maximum + * of 4 slices per line. + */ +static const u8 valid_dsc_slicecount[] = {1, 2, 4}; + /** * intel_dp_is_edp - is the given port attached to an eDP panel (either CPU or PCH) * @intel_dp: DP struct @@ -222,138 +242,6 @@ intel_dp_link_required(int pixel_clock, int bpp) return DIV_ROUND_UP(pixel_clock * bpp, 8); } -void icl_program_mg_dp_mode(struct intel_dp *intel_dp) -{ - struct intel_digital_port *intel_dig_port = dp_to_dig_port(intel_dp); - struct drm_i915_private *dev_priv = dp_to_i915(intel_dp); - enum port port = intel_dig_port->base.port; - enum tc_port tc_port = intel_port_to_tc(dev_priv, port); - u32 ln0, ln1, lane_info; - - if (tc_port == PORT_TC_NONE || intel_dig_port->tc_type == TC_PORT_TBT) - return; - - ln0 = I915_READ(MG_DP_MODE(port, 0)); - ln1 = I915_READ(MG_DP_MODE(port, 1)); - - switch (intel_dig_port->tc_type) { - case TC_PORT_TYPEC: - ln0 &= ~(MG_DP_MODE_CFG_DP_X1_MODE | MG_DP_MODE_CFG_DP_X2_MODE); - ln1 &= ~(MG_DP_MODE_CFG_DP_X1_MODE | MG_DP_MODE_CFG_DP_X2_MODE); - - lane_info = (I915_READ(PORT_TX_DFLEXDPSP) & - DP_LANE_ASSIGNMENT_MASK(tc_port)) >> - DP_LANE_ASSIGNMENT_SHIFT(tc_port); - - switch (lane_info) { - case 0x1: - case 0x4: - break; - case 0x2: - ln0 |= MG_DP_MODE_CFG_DP_X1_MODE; - break; - case 0x3: - ln0 |= MG_DP_MODE_CFG_DP_X1_MODE | - MG_DP_MODE_CFG_DP_X2_MODE; - break; - case 0x8: - ln1 |= MG_DP_MODE_CFG_DP_X1_MODE; - break; - case 0xC: - ln1 |= MG_DP_MODE_CFG_DP_X1_MODE | - MG_DP_MODE_CFG_DP_X2_MODE; - break; - case 0xF: - ln0 |= MG_DP_MODE_CFG_DP_X1_MODE | - MG_DP_MODE_CFG_DP_X2_MODE; - ln1 |= MG_DP_MODE_CFG_DP_X1_MODE | - MG_DP_MODE_CFG_DP_X2_MODE; - break; - default: - MISSING_CASE(lane_info); - } - break; - - case TC_PORT_LEGACY: - ln0 |= MG_DP_MODE_CFG_DP_X1_MODE | MG_DP_MODE_CFG_DP_X2_MODE; - ln1 |= MG_DP_MODE_CFG_DP_X1_MODE | MG_DP_MODE_CFG_DP_X2_MODE; - break; - - default: - MISSING_CASE(intel_dig_port->tc_type); - return; - } - - I915_WRITE(MG_DP_MODE(port, 0), ln0); - I915_WRITE(MG_DP_MODE(port, 1), ln1); -} - -void icl_enable_phy_clock_gating(struct intel_digital_port *dig_port) -{ - struct drm_i915_private *dev_priv = to_i915(dig_port->base.base.dev); - enum port port = dig_port->base.port; - enum tc_port tc_port = intel_port_to_tc(dev_priv, port); - i915_reg_t mg_regs[2] = { MG_DP_MODE(port, 0), MG_DP_MODE(port, 1) }; - u32 val; - int i; - - if (tc_port == PORT_TC_NONE) - return; - - for (i = 0; i < ARRAY_SIZE(mg_regs); i++) { - val = I915_READ(mg_regs[i]); - val |= MG_DP_MODE_CFG_TR2PWR_GATING | - MG_DP_MODE_CFG_TRPWR_GATING | - MG_DP_MODE_CFG_CLNPWR_GATING | - MG_DP_MODE_CFG_DIGPWR_GATING | - MG_DP_MODE_CFG_GAONPWR_GATING; - I915_WRITE(mg_regs[i], val); - } - - val = I915_READ(MG_MISC_SUS0(tc_port)); - val |= MG_MISC_SUS0_SUSCLK_DYNCLKGATE_MODE(3) | - MG_MISC_SUS0_CFG_TR2PWR_GATING | - MG_MISC_SUS0_CFG_CL2PWR_GATING | - MG_MISC_SUS0_CFG_GAONPWR_GATING | - MG_MISC_SUS0_CFG_TRPWR_GATING | - MG_MISC_SUS0_CFG_CL1PWR_GATING | - MG_MISC_SUS0_CFG_DGPWR_GATING; - I915_WRITE(MG_MISC_SUS0(tc_port), val); -} - -void icl_disable_phy_clock_gating(struct intel_digital_port *dig_port) -{ - struct drm_i915_private *dev_priv = to_i915(dig_port->base.base.dev); - enum port port = dig_port->base.port; - enum tc_port tc_port = intel_port_to_tc(dev_priv, port); - i915_reg_t mg_regs[2] = { MG_DP_MODE(port, 0), MG_DP_MODE(port, 1) }; - u32 val; - int i; - - if (tc_port == PORT_TC_NONE) - return; - - for (i = 0; i < ARRAY_SIZE(mg_regs); i++) { - val = I915_READ(mg_regs[i]); - val &= ~(MG_DP_MODE_CFG_TR2PWR_GATING | - MG_DP_MODE_CFG_TRPWR_GATING | - MG_DP_MODE_CFG_CLNPWR_GATING | - MG_DP_MODE_CFG_DIGPWR_GATING | - MG_DP_MODE_CFG_GAONPWR_GATING); - I915_WRITE(mg_regs[i], val); - } - - val = I915_READ(MG_MISC_SUS0(tc_port)); - val &= ~(MG_MISC_SUS0_SUSCLK_DYNCLKGATE_MODE_MASK | - MG_MISC_SUS0_CFG_TR2PWR_GATING | - MG_MISC_SUS0_CFG_CL2PWR_GATING | - MG_MISC_SUS0_CFG_GAONPWR_GATING | - MG_MISC_SUS0_CFG_TRPWR_GATING | - MG_MISC_SUS0_CFG_CL1PWR_GATING | - MG_MISC_SUS0_CFG_DGPWR_GATING); - I915_WRITE(MG_MISC_SUS0(tc_port), val); -} - int intel_dp_max_data_rate(int max_link_clock, int max_lanes) { @@ -415,9 +303,11 @@ static int cnl_max_source_rate(struct intel_dp *intel_dp) static int icl_max_source_rate(struct intel_dp *intel_dp) { struct intel_digital_port *dig_port = dp_to_dig_port(intel_dp); + struct drm_i915_private *dev_priv = to_i915(dig_port->base.base.dev); enum port port = dig_port->base.port; - if (port == PORT_B) + if (intel_port_is_combophy(dev_priv, port) && + !intel_dp_is_edp(intel_dp)) return 540000; return 810000; @@ -455,7 +345,7 @@ intel_dp_set_source_rates(struct intel_dp *intel_dp) if (INTEL_GEN(dev_priv) >= 10) { source_rates = cnl_rates; size = ARRAY_SIZE(cnl_rates); - if (INTEL_GEN(dev_priv) == 10) + if (IS_GEN(dev_priv, 10)) max_rate = cnl_max_source_rate(intel_dp); else max_rate = icl_max_source_rate(intel_dp); @@ -539,7 +429,7 @@ static void intel_dp_set_common_rates(struct intel_dp *intel_dp) } static bool intel_dp_link_params_valid(struct intel_dp *intel_dp, int link_rate, - uint8_t lane_count) + u8 lane_count) { /* * FIXME: we need to synchronize the current link parameters with @@ -559,7 +449,7 @@ static bool intel_dp_link_params_valid(struct intel_dp *intel_dp, int link_rate, static bool intel_dp_can_link_train_fallback_for_edp(struct intel_dp *intel_dp, int link_rate, - uint8_t lane_count) + u8 lane_count) { const struct drm_display_mode *fixed_mode = intel_dp->attached_connector->panel.fixed_mode; @@ -574,7 +464,7 @@ static bool intel_dp_can_link_train_fallback_for_edp(struct intel_dp *intel_dp, } int intel_dp_get_link_train_fallback_values(struct intel_dp *intel_dp, - int link_rate, uint8_t lane_count) + int link_rate, u8 lane_count) { int index; @@ -616,9 +506,12 @@ intel_dp_mode_valid(struct drm_connector *connector, struct intel_dp *intel_dp = intel_attached_dp(connector); struct intel_connector *intel_connector = to_intel_connector(connector); struct drm_display_mode *fixed_mode = intel_connector->panel.fixed_mode; + struct drm_i915_private *dev_priv = to_i915(connector->dev); int target_clock = mode->clock; int max_rate, mode_rate, max_lanes, max_link_clock; int max_dotclk; + u16 dsc_max_output_bpp = 0; + u8 dsc_slice_count = 0; if (mode->flags & DRM_MODE_FLAG_DBLSCAN) return MODE_NO_DBLESCAN; @@ -641,7 +534,33 @@ intel_dp_mode_valid(struct drm_connector *connector, max_rate = intel_dp_max_data_rate(max_link_clock, max_lanes); mode_rate = intel_dp_link_required(target_clock, 18); - if (mode_rate > max_rate || target_clock > max_dotclk) + /* + * Output bpp is stored in 6.4 format so right shift by 4 to get the + * integer value since we support only integer values of bpp. + */ + if ((INTEL_GEN(dev_priv) >= 10 || IS_GEMINILAKE(dev_priv)) && + drm_dp_sink_supports_dsc(intel_dp->dsc_dpcd)) { + if (intel_dp_is_edp(intel_dp)) { + dsc_max_output_bpp = + drm_edp_dsc_sink_output_bpp(intel_dp->dsc_dpcd) >> 4; + dsc_slice_count = + drm_dp_dsc_sink_max_slice_count(intel_dp->dsc_dpcd, + true); + } else if (drm_dp_sink_supports_fec(intel_dp->fec_capable)) { + dsc_max_output_bpp = + intel_dp_dsc_get_output_bpp(max_link_clock, + max_lanes, + target_clock, + mode->hdisplay) >> 4; + dsc_slice_count = + intel_dp_dsc_get_slice_count(intel_dp, + target_clock, + mode->hdisplay); + } + } + + if ((mode_rate > max_rate && !(dsc_max_output_bpp && dsc_slice_count)) || + target_clock > max_dotclk) return MODE_CLOCK_HIGH; if (mode->clock < 10000) @@ -653,19 +572,19 @@ intel_dp_mode_valid(struct drm_connector *connector, return MODE_OK; } -uint32_t intel_dp_pack_aux(const uint8_t *src, int src_bytes) +u32 intel_dp_pack_aux(const u8 *src, int src_bytes) { - int i; - uint32_t v = 0; + int i; + u32 v = 0; if (src_bytes > 4) src_bytes = 4; for (i = 0; i < src_bytes; i++) - v |= ((uint32_t) src[i]) << ((3-i) * 8); + v |= ((u32)src[i]) << ((3 - i) * 8); return v; } -static void intel_dp_unpack_aux(uint32_t src, uint8_t *dst, int dst_bytes) +static void intel_dp_unpack_aux(u32 src, u8 *dst, int dst_bytes) { int i; if (dst_bytes > 4) @@ -682,28 +601,39 @@ intel_dp_init_panel_power_sequencer_registers(struct intel_dp *intel_dp, static void intel_dp_pps_init(struct intel_dp *intel_dp); -static void pps_lock(struct intel_dp *intel_dp) +static intel_wakeref_t +pps_lock(struct intel_dp *intel_dp) { struct drm_i915_private *dev_priv = dp_to_i915(intel_dp); + intel_wakeref_t wakeref; /* * See intel_power_sequencer_reset() why we need * a power domain reference here. */ - intel_display_power_get(dev_priv, intel_dp->aux_power_domain); + wakeref = intel_display_power_get(dev_priv, + intel_aux_power_domain(dp_to_dig_port(intel_dp))); mutex_lock(&dev_priv->pps_mutex); + + return wakeref; } -static void pps_unlock(struct intel_dp *intel_dp) +static intel_wakeref_t +pps_unlock(struct intel_dp *intel_dp, intel_wakeref_t wakeref) { struct drm_i915_private *dev_priv = dp_to_i915(intel_dp); mutex_unlock(&dev_priv->pps_mutex); - - intel_display_power_put(dev_priv, intel_dp->aux_power_domain); + intel_display_power_put(dev_priv, + intel_aux_power_domain(dp_to_dig_port(intel_dp)), + wakeref); + return 0; } +#define with_pps_lock(dp, wf) \ + for ((wf) = pps_lock(dp); (wf); (wf) = pps_unlock((dp), (wf))) + static void vlv_power_sequencer_kick(struct intel_dp *intel_dp) { @@ -713,7 +643,7 @@ vlv_power_sequencer_kick(struct intel_dp *intel_dp) bool pll_enabled, release_cl_override = false; enum dpio_phy phy = DPIO_PHY(pipe); enum dpio_channel ch = vlv_pipe_to_channel(pipe); - uint32_t DP; + u32 DP; if (WARN(I915_READ(intel_dp->output_reg) & DP_PORT_EN, "skipping pipe %c power sequencer kick due to port %c being active\n", @@ -1052,30 +982,29 @@ static int edp_notify_handler(struct notifier_block *this, unsigned long code, struct intel_dp *intel_dp = container_of(this, typeof(* intel_dp), edp_notifier); struct drm_i915_private *dev_priv = dp_to_i915(intel_dp); + intel_wakeref_t wakeref; if (!intel_dp_is_edp(intel_dp) || code != SYS_RESTART) return 0; - pps_lock(intel_dp); - - if (IS_VALLEYVIEW(dev_priv) || IS_CHERRYVIEW(dev_priv)) { - enum pipe pipe = vlv_power_sequencer_pipe(intel_dp); - i915_reg_t pp_ctrl_reg, pp_div_reg; - u32 pp_div; - - pp_ctrl_reg = PP_CONTROL(pipe); - pp_div_reg = PP_DIVISOR(pipe); - pp_div = I915_READ(pp_div_reg); - pp_div &= PP_REFERENCE_DIVIDER_MASK; - - /* 0x1F write to PP_DIV_REG sets max cycle delay */ - I915_WRITE(pp_div_reg, pp_div | 0x1F); - I915_WRITE(pp_ctrl_reg, PANEL_UNLOCK_REGS | PANEL_POWER_OFF); - msleep(intel_dp->panel_power_cycle_delay); + with_pps_lock(intel_dp, wakeref) { + if (IS_VALLEYVIEW(dev_priv) || IS_CHERRYVIEW(dev_priv)) { + enum pipe pipe = vlv_power_sequencer_pipe(intel_dp); + i915_reg_t pp_ctrl_reg, pp_div_reg; + u32 pp_div; + + pp_ctrl_reg = PP_CONTROL(pipe); + pp_div_reg = PP_DIVISOR(pipe); + pp_div = I915_READ(pp_div_reg); + pp_div &= PP_REFERENCE_DIVIDER_MASK; + + /* 0x1F write to PP_DIV_REG sets max cycle delay */ + I915_WRITE(pp_div_reg, pp_div | 0x1F); + I915_WRITE(pp_ctrl_reg, PANEL_UNLOCK_REGS); + msleep(intel_dp->panel_power_cycle_delay); + } } - pps_unlock(intel_dp); - return 0; } @@ -1121,17 +1050,21 @@ intel_dp_check_edp(struct intel_dp *intel_dp) } } -static uint32_t +static u32 intel_dp_aux_wait_done(struct intel_dp *intel_dp) { struct drm_i915_private *dev_priv = dp_to_i915(intel_dp); i915_reg_t ch_ctl = intel_dp->aux_ch_ctl_reg(intel_dp); - uint32_t status; + u32 status; bool done; #define C (((status = I915_READ_NOTRACE(ch_ctl)) & DP_AUX_CH_CTL_SEND_BUSY) == 0) done = wait_event_timeout(dev_priv->gmbus_wait_queue, C, msecs_to_jiffies_timeout(10)); + + /* just trace the final value */ + trace_i915_reg_rw(false, ch_ctl, status, sizeof(status), true); + if (!done) DRM_ERROR("dp aux hw did not signal timeout!\n"); #undef C @@ -1139,7 +1072,7 @@ intel_dp_aux_wait_done(struct intel_dp *intel_dp) return status; } -static uint32_t g4x_get_aux_clock_divider(struct intel_dp *intel_dp, int index) +static u32 g4x_get_aux_clock_divider(struct intel_dp *intel_dp, int index) { struct drm_i915_private *dev_priv = dp_to_i915(intel_dp); @@ -1153,9 +1086,10 @@ static uint32_t g4x_get_aux_clock_divider(struct intel_dp *intel_dp, int index) return DIV_ROUND_CLOSEST(dev_priv->rawclk_freq, 2000); } -static uint32_t ilk_get_aux_clock_divider(struct intel_dp *intel_dp, int index) +static u32 ilk_get_aux_clock_divider(struct intel_dp *intel_dp, int index) { struct drm_i915_private *dev_priv = dp_to_i915(intel_dp); + struct intel_digital_port *dig_port = dp_to_dig_port(intel_dp); if (index) return 0; @@ -1165,17 +1099,18 @@ static uint32_t ilk_get_aux_clock_divider(struct intel_dp *intel_dp, int index) * like to run at 2MHz. So, take the cdclk or PCH rawclk value and * divide by 2000 and use that */ - if (intel_dp->aux_ch == AUX_CH_A) + if (dig_port->aux_ch == AUX_CH_A) return DIV_ROUND_CLOSEST(dev_priv->cdclk.hw.cdclk, 2000); else return DIV_ROUND_CLOSEST(dev_priv->rawclk_freq, 2000); } -static uint32_t hsw_get_aux_clock_divider(struct intel_dp *intel_dp, int index) +static u32 hsw_get_aux_clock_divider(struct intel_dp *intel_dp, int index) { struct drm_i915_private *dev_priv = dp_to_i915(intel_dp); + struct intel_digital_port *dig_port = dp_to_dig_port(intel_dp); - if (intel_dp->aux_ch != AUX_CH_A && HAS_PCH_LPT_H(dev_priv)) { + if (dig_port->aux_ch != AUX_CH_A && HAS_PCH_LPT_H(dev_priv)) { /* Workaround for non-ULT HSW */ switch (index) { case 0: return 63; @@ -1187,7 +1122,7 @@ static uint32_t hsw_get_aux_clock_divider(struct intel_dp *intel_dp, int index) return ilk_get_aux_clock_divider(intel_dp, index); } -static uint32_t skl_get_aux_clock_divider(struct intel_dp *intel_dp, int index) +static u32 skl_get_aux_clock_divider(struct intel_dp *intel_dp, int index) { /* * SKL doesn't need us to program the AUX clock divider (Hardware will @@ -1197,16 +1132,16 @@ static uint32_t skl_get_aux_clock_divider(struct intel_dp *intel_dp, int index) return index ? 0 : 1; } -static uint32_t g4x_get_aux_send_ctl(struct intel_dp *intel_dp, - int send_bytes, - uint32_t aux_clock_divider) +static u32 g4x_get_aux_send_ctl(struct intel_dp *intel_dp, + int send_bytes, + u32 aux_clock_divider) { struct intel_digital_port *intel_dig_port = dp_to_dig_port(intel_dp); struct drm_i915_private *dev_priv = to_i915(intel_dig_port->base.base.dev); - uint32_t precharge, timeout; + u32 precharge, timeout; - if (IS_GEN6(dev_priv)) + if (IS_GEN(dev_priv, 6)) precharge = 3; else precharge = 5; @@ -1227,12 +1162,12 @@ static uint32_t g4x_get_aux_send_ctl(struct intel_dp *intel_dp, (aux_clock_divider << DP_AUX_CH_CTL_BIT_CLOCK_2X_SHIFT); } -static uint32_t skl_get_aux_send_ctl(struct intel_dp *intel_dp, - int send_bytes, - uint32_t unused) +static u32 skl_get_aux_send_ctl(struct intel_dp *intel_dp, + int send_bytes, + u32 unused) { struct intel_digital_port *intel_dig_port = dp_to_dig_port(intel_dp); - uint32_t ret; + u32 ret; ret = DP_AUX_CH_CTL_SEND_BUSY | DP_AUX_CH_CTL_DONE | @@ -1252,25 +1187,26 @@ static uint32_t skl_get_aux_send_ctl(struct intel_dp *intel_dp, static int intel_dp_aux_xfer(struct intel_dp *intel_dp, - const uint8_t *send, int send_bytes, - uint8_t *recv, int recv_size, + const u8 *send, int send_bytes, + u8 *recv, int recv_size, u32 aux_send_ctl_flags) { struct intel_digital_port *intel_dig_port = dp_to_dig_port(intel_dp); struct drm_i915_private *dev_priv = to_i915(intel_dig_port->base.base.dev); i915_reg_t ch_ctl, ch_data[5]; - uint32_t aux_clock_divider; + u32 aux_clock_divider; + intel_wakeref_t wakeref; int i, ret, recv_bytes; - uint32_t status; int try, clock = 0; + u32 status; bool vdd; ch_ctl = intel_dp->aux_ch_ctl_reg(intel_dp); for (i = 0; i < ARRAY_SIZE(ch_data); i++) ch_data[i] = intel_dp->aux_ch_data_reg(intel_dp, i); - pps_lock(intel_dp); + wakeref = pps_lock(intel_dp); /* * We will be called with VDD already enabled for dpcd/edid/oui reads. @@ -1295,6 +1231,8 @@ intel_dp_aux_xfer(struct intel_dp *intel_dp, break; msleep(1); } + /* just trace the final value */ + trace_i915_reg_rw(false, ch_ctl, status, sizeof(status), true); if (try == 3) { static u32 last_status = -1; @@ -1414,7 +1352,7 @@ out: if (vdd) edp_panel_vdd_off(intel_dp, false); - pps_unlock(intel_dp); + pps_unlock(intel_dp, wakeref); return ret; } @@ -1436,7 +1374,7 @@ static ssize_t intel_dp_aux_transfer(struct drm_dp_aux *aux, struct drm_dp_aux_msg *msg) { struct intel_dp *intel_dp = container_of(aux, struct intel_dp, aux); - uint8_t txbuf[20], rxbuf[20]; + u8 txbuf[20], rxbuf[20]; size_t txsize, rxsize; int ret; @@ -1503,80 +1441,12 @@ intel_dp_aux_transfer(struct drm_dp_aux *aux, struct drm_dp_aux_msg *msg) return ret; } -static enum aux_ch intel_aux_ch(struct intel_dp *intel_dp) -{ - struct intel_encoder *encoder = &dp_to_dig_port(intel_dp)->base; - struct drm_i915_private *dev_priv = to_i915(encoder->base.dev); - enum port port = encoder->port; - const struct ddi_vbt_port_info *info = - &dev_priv->vbt.ddi_port_info[port]; - enum aux_ch aux_ch; - - if (!info->alternate_aux_channel) { - aux_ch = (enum aux_ch) port; - - DRM_DEBUG_KMS("using AUX %c for port %c (platform default)\n", - aux_ch_name(aux_ch), port_name(port)); - return aux_ch; - } - - switch (info->alternate_aux_channel) { - case DP_AUX_A: - aux_ch = AUX_CH_A; - break; - case DP_AUX_B: - aux_ch = AUX_CH_B; - break; - case DP_AUX_C: - aux_ch = AUX_CH_C; - break; - case DP_AUX_D: - aux_ch = AUX_CH_D; - break; - case DP_AUX_E: - aux_ch = AUX_CH_E; - break; - case DP_AUX_F: - aux_ch = AUX_CH_F; - break; - default: - MISSING_CASE(info->alternate_aux_channel); - aux_ch = AUX_CH_A; - break; - } - - DRM_DEBUG_KMS("using AUX %c for port %c (VBT)\n", - aux_ch_name(aux_ch), port_name(port)); - - return aux_ch; -} - -static enum intel_display_power_domain -intel_aux_power_domain(struct intel_dp *intel_dp) -{ - switch (intel_dp->aux_ch) { - case AUX_CH_A: - return POWER_DOMAIN_AUX_A; - case AUX_CH_B: - return POWER_DOMAIN_AUX_B; - case AUX_CH_C: - return POWER_DOMAIN_AUX_C; - case AUX_CH_D: - return POWER_DOMAIN_AUX_D; - case AUX_CH_E: - return POWER_DOMAIN_AUX_E; - case AUX_CH_F: - return POWER_DOMAIN_AUX_F; - default: - MISSING_CASE(intel_dp->aux_ch); - return POWER_DOMAIN_AUX_A; - } -} static i915_reg_t g4x_aux_ctl_reg(struct intel_dp *intel_dp) { struct drm_i915_private *dev_priv = dp_to_i915(intel_dp); - enum aux_ch aux_ch = intel_dp->aux_ch; + struct intel_digital_port *dig_port = dp_to_dig_port(intel_dp); + enum aux_ch aux_ch = dig_port->aux_ch; switch (aux_ch) { case AUX_CH_B: @@ -1592,7 +1462,8 @@ static i915_reg_t g4x_aux_ctl_reg(struct intel_dp *intel_dp) static i915_reg_t g4x_aux_data_reg(struct intel_dp *intel_dp, int index) { struct drm_i915_private *dev_priv = dp_to_i915(intel_dp); - enum aux_ch aux_ch = intel_dp->aux_ch; + struct intel_digital_port *dig_port = dp_to_dig_port(intel_dp); + enum aux_ch aux_ch = dig_port->aux_ch; switch (aux_ch) { case AUX_CH_B: @@ -1608,7 +1479,8 @@ static i915_reg_t g4x_aux_data_reg(struct intel_dp *intel_dp, int index) static i915_reg_t ilk_aux_ctl_reg(struct intel_dp *intel_dp) { struct drm_i915_private *dev_priv = dp_to_i915(intel_dp); - enum aux_ch aux_ch = intel_dp->aux_ch; + struct intel_digital_port *dig_port = dp_to_dig_port(intel_dp); + enum aux_ch aux_ch = dig_port->aux_ch; switch (aux_ch) { case AUX_CH_A: @@ -1626,7 +1498,8 @@ static i915_reg_t ilk_aux_ctl_reg(struct intel_dp *intel_dp) static i915_reg_t ilk_aux_data_reg(struct intel_dp *intel_dp, int index) { struct drm_i915_private *dev_priv = dp_to_i915(intel_dp); - enum aux_ch aux_ch = intel_dp->aux_ch; + struct intel_digital_port *dig_port = dp_to_dig_port(intel_dp); + enum aux_ch aux_ch = dig_port->aux_ch; switch (aux_ch) { case AUX_CH_A: @@ -1644,7 +1517,8 @@ static i915_reg_t ilk_aux_data_reg(struct intel_dp *intel_dp, int index) static i915_reg_t skl_aux_ctl_reg(struct intel_dp *intel_dp) { struct drm_i915_private *dev_priv = dp_to_i915(intel_dp); - enum aux_ch aux_ch = intel_dp->aux_ch; + struct intel_digital_port *dig_port = dp_to_dig_port(intel_dp); + enum aux_ch aux_ch = dig_port->aux_ch; switch (aux_ch) { case AUX_CH_A: @@ -1663,7 +1537,8 @@ static i915_reg_t skl_aux_ctl_reg(struct intel_dp *intel_dp) static i915_reg_t skl_aux_data_reg(struct intel_dp *intel_dp, int index) { struct drm_i915_private *dev_priv = dp_to_i915(intel_dp); - enum aux_ch aux_ch = intel_dp->aux_ch; + struct intel_digital_port *dig_port = dp_to_dig_port(intel_dp); + enum aux_ch aux_ch = dig_port->aux_ch; switch (aux_ch) { case AUX_CH_A: @@ -1689,10 +1564,8 @@ static void intel_dp_aux_init(struct intel_dp *intel_dp) { struct drm_i915_private *dev_priv = dp_to_i915(intel_dp); - struct intel_encoder *encoder = &dp_to_dig_port(intel_dp)->base; - - intel_dp->aux_ch = intel_aux_ch(intel_dp); - intel_dp->aux_power_domain = intel_aux_power_domain(intel_dp); + struct intel_digital_port *dig_port = dp_to_dig_port(intel_dp); + struct intel_encoder *encoder = &dig_port->base; if (INTEL_GEN(dev_priv) >= 9) { intel_dp->aux_ch_ctl_reg = skl_aux_ctl_reg; @@ -1834,7 +1707,7 @@ int intel_dp_rate_select(struct intel_dp *intel_dp, int rate) } void intel_dp_compute_rate(struct intel_dp *intel_dp, int port_clock, - uint8_t *link_bw, uint8_t *rate_select) + u8 *link_bw, u8 *rate_select) { /* eDP 1.4 rate select method. */ if (intel_dp->use_rate_select) { @@ -1853,6 +1726,41 @@ struct link_config_limits { int min_bpp, max_bpp; }; +static bool intel_dp_source_supports_fec(struct intel_dp *intel_dp, + const struct intel_crtc_state *pipe_config) +{ + struct drm_i915_private *dev_priv = dp_to_i915(intel_dp); + + return INTEL_GEN(dev_priv) >= 11 && + pipe_config->cpu_transcoder != TRANSCODER_A; +} + +static bool intel_dp_supports_fec(struct intel_dp *intel_dp, + const struct intel_crtc_state *pipe_config) +{ + return intel_dp_source_supports_fec(intel_dp, pipe_config) && + drm_dp_sink_supports_fec(intel_dp->fec_capable); +} + +static bool intel_dp_source_supports_dsc(struct intel_dp *intel_dp, + const struct intel_crtc_state *pipe_config) +{ + struct drm_i915_private *dev_priv = dp_to_i915(intel_dp); + + return INTEL_GEN(dev_priv) >= 10 && + pipe_config->cpu_transcoder != TRANSCODER_A; +} + +static bool intel_dp_supports_dsc(struct intel_dp *intel_dp, + const struct intel_crtc_state *pipe_config) +{ + if (!intel_dp_is_edp(intel_dp) && !pipe_config->fec_enable) + return false; + + return intel_dp_source_supports_dsc(intel_dp, pipe_config) && + drm_dp_sink_supports_dsc(intel_dp->dsc_dpcd); +} + static int intel_dp_compute_bpp(struct intel_dp *intel_dp, struct intel_crtc_state *pipe_config) { @@ -1916,7 +1824,7 @@ intel_dp_adjust_compliance_config(struct intel_dp *intel_dp, } /* Optimize link config in order: max bpp, min clock, min lanes */ -static bool +static int intel_dp_compute_link_config_wide(struct intel_dp *intel_dp, struct intel_crtc_state *pipe_config, const struct link_config_limits *limits) @@ -1942,23 +1850,138 @@ intel_dp_compute_link_config_wide(struct intel_dp *intel_dp, pipe_config->pipe_bpp = bpp; pipe_config->port_clock = link_clock; - return true; + return 0; } } } } - return false; + return -EINVAL; } -static bool +static int intel_dp_dsc_compute_bpp(struct intel_dp *intel_dp, u8 dsc_max_bpc) +{ + int i, num_bpc; + u8 dsc_bpc[3] = {0}; + + num_bpc = drm_dp_dsc_sink_supported_input_bpcs(intel_dp->dsc_dpcd, + dsc_bpc); + for (i = 0; i < num_bpc; i++) { + if (dsc_max_bpc >= dsc_bpc[i]) + return dsc_bpc[i] * 3; + } + + return 0; +} + +static int intel_dp_dsc_compute_config(struct intel_dp *intel_dp, + struct intel_crtc_state *pipe_config, + struct drm_connector_state *conn_state, + struct link_config_limits *limits) +{ + struct intel_digital_port *dig_port = dp_to_dig_port(intel_dp); + struct drm_i915_private *dev_priv = to_i915(dig_port->base.base.dev); + struct drm_display_mode *adjusted_mode = &pipe_config->base.adjusted_mode; + u8 dsc_max_bpc; + int pipe_bpp; + int ret; + + pipe_config->fec_enable = !intel_dp_is_edp(intel_dp) && + intel_dp_supports_fec(intel_dp, pipe_config); + + if (!intel_dp_supports_dsc(intel_dp, pipe_config)) + return -EINVAL; + + dsc_max_bpc = min_t(u8, DP_DSC_MAX_SUPPORTED_BPC, + conn_state->max_requested_bpc); + + pipe_bpp = intel_dp_dsc_compute_bpp(intel_dp, dsc_max_bpc); + if (pipe_bpp < DP_DSC_MIN_SUPPORTED_BPC * 3) { + DRM_DEBUG_KMS("No DSC support for less than 8bpc\n"); + return -EINVAL; + } + + /* + * For now enable DSC for max bpp, max link rate, max lane count. + * Optimize this later for the minimum possible link rate/lane count + * with DSC enabled for the requested mode. + */ + pipe_config->pipe_bpp = pipe_bpp; + pipe_config->port_clock = intel_dp->common_rates[limits->max_clock]; + pipe_config->lane_count = limits->max_lane_count; + + if (intel_dp_is_edp(intel_dp)) { + pipe_config->dsc_params.compressed_bpp = + min_t(u16, drm_edp_dsc_sink_output_bpp(intel_dp->dsc_dpcd) >> 4, + pipe_config->pipe_bpp); + pipe_config->dsc_params.slice_count = + drm_dp_dsc_sink_max_slice_count(intel_dp->dsc_dpcd, + true); + } else { + u16 dsc_max_output_bpp; + u8 dsc_dp_slice_count; + + dsc_max_output_bpp = + intel_dp_dsc_get_output_bpp(pipe_config->port_clock, + pipe_config->lane_count, + adjusted_mode->crtc_clock, + adjusted_mode->crtc_hdisplay); + dsc_dp_slice_count = + intel_dp_dsc_get_slice_count(intel_dp, + adjusted_mode->crtc_clock, + adjusted_mode->crtc_hdisplay); + if (!dsc_max_output_bpp || !dsc_dp_slice_count) { + DRM_DEBUG_KMS("Compressed BPP/Slice Count not supported\n"); + return -EINVAL; + } + pipe_config->dsc_params.compressed_bpp = min_t(u16, + dsc_max_output_bpp >> 4, + pipe_config->pipe_bpp); + pipe_config->dsc_params.slice_count = dsc_dp_slice_count; + } + /* + * VDSC engine operates at 1 Pixel per clock, so if peak pixel rate + * is greater than the maximum Cdclock and if slice count is even + * then we need to use 2 VDSC instances. + */ + if (adjusted_mode->crtc_clock > dev_priv->max_cdclk_freq) { + if (pipe_config->dsc_params.slice_count > 1) { + pipe_config->dsc_params.dsc_split = true; + } else { + DRM_DEBUG_KMS("Cannot split stream to use 2 VDSC instances\n"); + return -EINVAL; + } + } + + ret = intel_dp_compute_dsc_params(intel_dp, pipe_config); + if (ret < 0) { + DRM_DEBUG_KMS("Cannot compute valid DSC parameters for Input Bpp = %d " + "Compressed BPP = %d\n", + pipe_config->pipe_bpp, + pipe_config->dsc_params.compressed_bpp); + return ret; + } + + pipe_config->dsc_params.compression_enable = true; + DRM_DEBUG_KMS("DP DSC computed with Input Bpp = %d " + "Compressed Bpp = %d Slice Count = %d\n", + pipe_config->pipe_bpp, + pipe_config->dsc_params.compressed_bpp, + pipe_config->dsc_params.slice_count); + + return 0; +} + +static int intel_dp_compute_link_config(struct intel_encoder *encoder, - struct intel_crtc_state *pipe_config) + struct intel_crtc_state *pipe_config, + struct drm_connector_state *conn_state) { struct drm_display_mode *adjusted_mode = &pipe_config->base.adjusted_mode; struct intel_dp *intel_dp = enc_to_intel_dp(&encoder->base); struct link_config_limits limits; int common_len; + int ret; common_len = intel_dp_common_len_rate_limit(intel_dp, intel_dp->max_link_rate); @@ -1999,23 +2022,43 @@ intel_dp_compute_link_config(struct intel_encoder *encoder, * Optimize for slow and wide. This is the place to add alternative * optimization policy. */ - if (!intel_dp_compute_link_config_wide(intel_dp, pipe_config, &limits)) - return false; + ret = intel_dp_compute_link_config_wide(intel_dp, pipe_config, &limits); + + /* enable compression if the mode doesn't fit available BW */ + DRM_DEBUG_KMS("Force DSC en = %d\n", intel_dp->force_dsc_en); + if (ret || intel_dp->force_dsc_en) { + ret = intel_dp_dsc_compute_config(intel_dp, pipe_config, + conn_state, &limits); + if (ret < 0) + return ret; + } - DRM_DEBUG_KMS("DP lane count %d clock %d bpp %d\n", - pipe_config->lane_count, pipe_config->port_clock, - pipe_config->pipe_bpp); + if (pipe_config->dsc_params.compression_enable) { + DRM_DEBUG_KMS("DP lane count %d clock %d Input bpp %d Compressed bpp %d\n", + pipe_config->lane_count, pipe_config->port_clock, + pipe_config->pipe_bpp, + pipe_config->dsc_params.compressed_bpp); - DRM_DEBUG_KMS("DP link rate required %i available %i\n", - intel_dp_link_required(adjusted_mode->crtc_clock, - pipe_config->pipe_bpp), - intel_dp_max_data_rate(pipe_config->port_clock, - pipe_config->lane_count)); + DRM_DEBUG_KMS("DP link rate required %i available %i\n", + intel_dp_link_required(adjusted_mode->crtc_clock, + pipe_config->dsc_params.compressed_bpp), + intel_dp_max_data_rate(pipe_config->port_clock, + pipe_config->lane_count)); + } else { + DRM_DEBUG_KMS("DP lane count %d clock %d bpp %d\n", + pipe_config->lane_count, pipe_config->port_clock, + pipe_config->pipe_bpp); - return true; + DRM_DEBUG_KMS("DP link rate required %i available %i\n", + intel_dp_link_required(adjusted_mode->crtc_clock, + pipe_config->pipe_bpp), + intel_dp_max_data_rate(pipe_config->port_clock, + pipe_config->lane_count)); + } + return 0; } -bool +int intel_dp_compute_config(struct intel_encoder *encoder, struct intel_crtc_state *pipe_config, struct drm_connector_state *conn_state) @@ -2023,6 +2066,7 @@ intel_dp_compute_config(struct intel_encoder *encoder, struct drm_i915_private *dev_priv = to_i915(encoder->base.dev); struct drm_display_mode *adjusted_mode = &pipe_config->base.adjusted_mode; struct intel_dp *intel_dp = enc_to_intel_dp(&encoder->base); + struct intel_lspcon *lspcon = enc_to_intel_lspcon(&encoder->base); enum port port = encoder->port; struct intel_crtc *intel_crtc = to_intel_crtc(pipe_config->base.crtc); struct intel_connector *intel_connector = intel_dp->attached_connector; @@ -2030,10 +2074,15 @@ intel_dp_compute_config(struct intel_encoder *encoder, to_intel_digital_connector_state(conn_state); bool constant_n = drm_dp_has_quirk(&intel_dp->desc, DP_DPCD_QUIRK_CONSTANT_N); + int ret; if (HAS_PCH_SPLIT(dev_priv) && !HAS_DDI(dev_priv) && port != PORT_A) pipe_config->has_pch_encoder = true; + pipe_config->output_format = INTEL_OUTPUT_FORMAT_RGB; + if (lspcon->active) + lspcon_ycbcr420_config(&intel_connector->base, pipe_config); + pipe_config->has_drrs = false; if (IS_G4X(dev_priv) || port == PORT_A) pipe_config->has_audio = false; @@ -2047,14 +2096,12 @@ intel_dp_compute_config(struct intel_encoder *encoder, adjusted_mode); if (INTEL_GEN(dev_priv) >= 9) { - int ret; - ret = skl_update_scaler_crtc(pipe_config); if (ret) return ret; } - if (HAS_GMCH_DISPLAY(dev_priv)) + if (HAS_GMCH(dev_priv)) intel_gmch_panel_fitting(intel_crtc, pipe_config, conn_state->scaling_mode); else @@ -2063,17 +2110,18 @@ intel_dp_compute_config(struct intel_encoder *encoder, } if (adjusted_mode->flags & DRM_MODE_FLAG_DBLSCAN) - return false; + return -EINVAL; - if (HAS_GMCH_DISPLAY(dev_priv) && + if (HAS_GMCH(dev_priv) && adjusted_mode->flags & DRM_MODE_FLAG_INTERLACE) - return false; + return -EINVAL; if (adjusted_mode->flags & DRM_MODE_FLAG_DBLCLK) - return false; + return -EINVAL; - if (!intel_dp_compute_link_config(encoder, pipe_config)) - return false; + ret = intel_dp_compute_link_config(encoder, pipe_config, conn_state); + if (ret < 0) + return ret; if (intel_conn_state->broadcast_rgb == INTEL_BROADCAST_RGB_AUTO) { /* @@ -2090,11 +2138,20 @@ intel_dp_compute_config(struct intel_encoder *encoder, intel_conn_state->broadcast_rgb == INTEL_BROADCAST_RGB_LIMITED; } - intel_link_compute_m_n(pipe_config->pipe_bpp, pipe_config->lane_count, - adjusted_mode->crtc_clock, - pipe_config->port_clock, - &pipe_config->dp_m_n, - constant_n); + if (!pipe_config->dsc_params.compression_enable) + intel_link_compute_m_n(pipe_config->pipe_bpp, + pipe_config->lane_count, + adjusted_mode->crtc_clock, + pipe_config->port_clock, + &pipe_config->dp_m_n, + constant_n); + else + intel_link_compute_m_n(pipe_config->dsc_params.compressed_bpp, + pipe_config->lane_count, + adjusted_mode->crtc_clock, + pipe_config->port_clock, + &pipe_config->dp_m_n, + constant_n); if (intel_connector->panel.downclock_mode != NULL && dev_priv->drrs.type == SEAMLESS_DRRS_SUPPORT) { @@ -2112,11 +2169,11 @@ intel_dp_compute_config(struct intel_encoder *encoder, intel_psr_compute_config(intel_dp, pipe_config); - return true; + return 0; } void intel_dp_set_link_params(struct intel_dp *intel_dp, - int link_rate, uint8_t lane_count, + int link_rate, u8 lane_count, bool link_mst) { intel_dp->link_trained = false; @@ -2338,7 +2395,8 @@ static bool edp_panel_vdd_on(struct intel_dp *intel_dp) if (edp_have_panel_vdd(intel_dp)) return need_to_disable; - intel_display_power_get(dev_priv, intel_dp->aux_power_domain); + intel_display_power_get(dev_priv, + intel_aux_power_domain(intel_dig_port)); DRM_DEBUG_KMS("Turning eDP port %c VDD on\n", port_name(intel_dig_port->base.port)); @@ -2377,15 +2435,15 @@ static bool edp_panel_vdd_on(struct intel_dp *intel_dp) */ void intel_edp_panel_vdd_on(struct intel_dp *intel_dp) { + intel_wakeref_t wakeref; bool vdd; if (!intel_dp_is_edp(intel_dp)) return; - pps_lock(intel_dp); - vdd = edp_panel_vdd_on(intel_dp); - pps_unlock(intel_dp); - + vdd = false; + with_pps_lock(intel_dp, wakeref) + vdd = edp_panel_vdd_on(intel_dp); I915_STATE_WARN(!vdd, "eDP port %c VDD already requested on\n", port_name(dp_to_dig_port(intel_dp)->base.port)); } @@ -2424,18 +2482,21 @@ static void edp_panel_vdd_off_sync(struct intel_dp *intel_dp) if ((pp & PANEL_POWER_ON) == 0) intel_dp->panel_power_off_time = ktime_get_boottime(); - intel_display_power_put(dev_priv, intel_dp->aux_power_domain); + intel_display_power_put_unchecked(dev_priv, + intel_aux_power_domain(intel_dig_port)); } static void edp_panel_vdd_work(struct work_struct *__work) { - struct intel_dp *intel_dp = container_of(to_delayed_work(__work), - struct intel_dp, panel_vdd_work); + struct intel_dp *intel_dp = + container_of(to_delayed_work(__work), + struct intel_dp, panel_vdd_work); + intel_wakeref_t wakeref; - pps_lock(intel_dp); - if (!intel_dp->want_panel_vdd) - edp_panel_vdd_off_sync(intel_dp); - pps_unlock(intel_dp); + with_pps_lock(intel_dp, wakeref) { + if (!intel_dp->want_panel_vdd) + edp_panel_vdd_off_sync(intel_dp); + } } static void edp_panel_vdd_schedule_off(struct intel_dp *intel_dp) @@ -2499,7 +2560,7 @@ static void edp_panel_on(struct intel_dp *intel_dp) pp_ctrl_reg = _pp_ctrl_reg(intel_dp); pp = ironlake_get_pp_control(intel_dp); - if (IS_GEN5(dev_priv)) { + if (IS_GEN(dev_priv, 5)) { /* ILK workaround: disable reset around power sequence */ pp &= ~PANEL_POWER_RESET; I915_WRITE(pp_ctrl_reg, pp); @@ -2507,7 +2568,7 @@ static void edp_panel_on(struct intel_dp *intel_dp) } pp |= PANEL_POWER_ON; - if (!IS_GEN5(dev_priv)) + if (!IS_GEN(dev_priv, 5)) pp |= PANEL_POWER_RESET; I915_WRITE(pp_ctrl_reg, pp); @@ -2516,7 +2577,7 @@ static void edp_panel_on(struct intel_dp *intel_dp) wait_panel_on(intel_dp); intel_dp->last_power_on = jiffies; - if (IS_GEN5(dev_priv)) { + if (IS_GEN(dev_priv, 5)) { pp |= PANEL_POWER_RESET; /* restore panel reset bit */ I915_WRITE(pp_ctrl_reg, pp); POSTING_READ(pp_ctrl_reg); @@ -2525,18 +2586,20 @@ static void edp_panel_on(struct intel_dp *intel_dp) void intel_edp_panel_on(struct intel_dp *intel_dp) { + intel_wakeref_t wakeref; + if (!intel_dp_is_edp(intel_dp)) return; - pps_lock(intel_dp); - edp_panel_on(intel_dp); - pps_unlock(intel_dp); + with_pps_lock(intel_dp, wakeref) + edp_panel_on(intel_dp); } static void edp_panel_off(struct intel_dp *intel_dp) { struct drm_i915_private *dev_priv = dp_to_i915(intel_dp); + struct intel_digital_port *dig_port = dp_to_dig_port(intel_dp); u32 pp; i915_reg_t pp_ctrl_reg; @@ -2546,10 +2609,10 @@ static void edp_panel_off(struct intel_dp *intel_dp) return; DRM_DEBUG_KMS("Turn eDP port %c panel power off\n", - port_name(dp_to_dig_port(intel_dp)->base.port)); + port_name(dig_port->base.port)); WARN(!intel_dp->want_panel_vdd, "Need eDP port %c VDD to turn off panel\n", - port_name(dp_to_dig_port(intel_dp)->base.port)); + port_name(dig_port->base.port)); pp = ironlake_get_pp_control(intel_dp); /* We need to switch off panel power _and_ force vdd, for otherwise some @@ -2568,25 +2631,25 @@ static void edp_panel_off(struct intel_dp *intel_dp) intel_dp->panel_power_off_time = ktime_get_boottime(); /* We got a reference when we enabled the VDD. */ - intel_display_power_put(dev_priv, intel_dp->aux_power_domain); + intel_display_power_put_unchecked(dev_priv, intel_aux_power_domain(dig_port)); } void intel_edp_panel_off(struct intel_dp *intel_dp) { + intel_wakeref_t wakeref; + if (!intel_dp_is_edp(intel_dp)) return; - pps_lock(intel_dp); - edp_panel_off(intel_dp); - pps_unlock(intel_dp); + with_pps_lock(intel_dp, wakeref) + edp_panel_off(intel_dp); } /* Enable backlight in the panel power control. */ static void _intel_edp_backlight_on(struct intel_dp *intel_dp) { struct drm_i915_private *dev_priv = dp_to_i915(intel_dp); - u32 pp; - i915_reg_t pp_ctrl_reg; + intel_wakeref_t wakeref; /* * If we enable the backlight right away following a panel power @@ -2596,17 +2659,16 @@ static void _intel_edp_backlight_on(struct intel_dp *intel_dp) */ wait_backlight_on(intel_dp); - pps_lock(intel_dp); - - pp = ironlake_get_pp_control(intel_dp); - pp |= EDP_BLC_ENABLE; - - pp_ctrl_reg = _pp_ctrl_reg(intel_dp); + with_pps_lock(intel_dp, wakeref) { + i915_reg_t pp_ctrl_reg = _pp_ctrl_reg(intel_dp); + u32 pp; - I915_WRITE(pp_ctrl_reg, pp); - POSTING_READ(pp_ctrl_reg); + pp = ironlake_get_pp_control(intel_dp); + pp |= EDP_BLC_ENABLE; - pps_unlock(intel_dp); + I915_WRITE(pp_ctrl_reg, pp); + POSTING_READ(pp_ctrl_reg); + } } /* Enable backlight PWM and backlight PP control. */ @@ -2628,23 +2690,21 @@ void intel_edp_backlight_on(const struct intel_crtc_state *crtc_state, static void _intel_edp_backlight_off(struct intel_dp *intel_dp) { struct drm_i915_private *dev_priv = dp_to_i915(intel_dp); - u32 pp; - i915_reg_t pp_ctrl_reg; + intel_wakeref_t wakeref; if (!intel_dp_is_edp(intel_dp)) return; - pps_lock(intel_dp); - - pp = ironlake_get_pp_control(intel_dp); - pp &= ~EDP_BLC_ENABLE; - - pp_ctrl_reg = _pp_ctrl_reg(intel_dp); + with_pps_lock(intel_dp, wakeref) { + i915_reg_t pp_ctrl_reg = _pp_ctrl_reg(intel_dp); + u32 pp; - I915_WRITE(pp_ctrl_reg, pp); - POSTING_READ(pp_ctrl_reg); + pp = ironlake_get_pp_control(intel_dp); + pp &= ~EDP_BLC_ENABLE; - pps_unlock(intel_dp); + I915_WRITE(pp_ctrl_reg, pp); + POSTING_READ(pp_ctrl_reg); + } intel_dp->last_backlight_off = jiffies; edp_wait_backlight_off(intel_dp); @@ -2672,12 +2732,12 @@ static void intel_edp_backlight_power(struct intel_connector *connector, bool enable) { struct intel_dp *intel_dp = intel_attached_dp(&connector->base); + intel_wakeref_t wakeref; bool is_enabled; - pps_lock(intel_dp); - is_enabled = ironlake_get_pp_control(intel_dp) & EDP_BLC_ENABLE; - pps_unlock(intel_dp); - + is_enabled = false; + with_pps_lock(intel_dp, wakeref) + is_enabled = ironlake_get_pp_control(intel_dp) & EDP_BLC_ENABLE; if (is_enabled == enable) return; @@ -2744,7 +2804,7 @@ static void ironlake_edp_pll_on(struct intel_dp *intel_dp, * 1. Wait for the start of vertical blank on the enabled pipe going to FDI * 2. Program DP PLL enable */ - if (IS_GEN5(dev_priv)) + if (IS_GEN(dev_priv, 5)) intel_wait_for_vblank_if_active(dev_priv, !crtc->pipe); intel_dp->DP |= DP_PLL_ENABLE; @@ -2788,6 +2848,22 @@ static bool downstream_hpd_needs_d0(struct intel_dp *intel_dp) intel_dp->downstream_ports[0] & DP_DS_PORT_HPD; } +void intel_dp_sink_set_decompression_state(struct intel_dp *intel_dp, + const struct intel_crtc_state *crtc_state, + bool enable) +{ + int ret; + + if (!crtc_state->dsc_params.compression_enable) + return; + + ret = drm_dp_dpcd_writeb(&intel_dp->aux, DP_DSC_ENABLE, + enable ? DP_DECOMPRESSION_EN : 0); + if (ret < 0) + DRM_DEBUG_KMS("Failed to %s sink decompression state\n", + enable ? "enable" : "disable"); +} + /* If the sink supports it, try to set the power state appropriately */ void intel_dp_sink_dpms(struct intel_dp *intel_dp, int mode) { @@ -2878,16 +2954,18 @@ static bool intel_dp_get_hw_state(struct intel_encoder *encoder, { struct drm_i915_private *dev_priv = to_i915(encoder->base.dev); struct intel_dp *intel_dp = enc_to_intel_dp(&encoder->base); + intel_wakeref_t wakeref; bool ret; - if (!intel_display_power_get_if_enabled(dev_priv, - encoder->power_domain)) + wakeref = intel_display_power_get_if_enabled(dev_priv, + encoder->power_domain); + if (!wakeref) return false; ret = intel_dp_port_enabled(dev_priv, intel_dp->output_reg, encoder->port, pipe); - intel_display_power_put(dev_priv, encoder->power_domain); + intel_display_power_put(dev_priv, encoder->power_domain, wakeref); return ret; } @@ -3055,20 +3133,20 @@ static void chv_post_disable_dp(struct intel_encoder *encoder, static void _intel_dp_set_link_train(struct intel_dp *intel_dp, - uint32_t *DP, - uint8_t dp_train_pat) + u32 *DP, + u8 dp_train_pat) { struct drm_i915_private *dev_priv = dp_to_i915(intel_dp); struct intel_digital_port *intel_dig_port = dp_to_dig_port(intel_dp); enum port port = intel_dig_port->base.port; - uint8_t train_pat_mask = drm_dp_training_pattern_mask(intel_dp->dpcd); + u8 train_pat_mask = drm_dp_training_pattern_mask(intel_dp->dpcd); if (dp_train_pat & train_pat_mask) DRM_DEBUG_KMS("Using DP training pattern TPS%d\n", dp_train_pat & train_pat_mask); if (HAS_DDI(dev_priv)) { - uint32_t temp = I915_READ(DP_TP_CTL(port)); + u32 temp = I915_READ(DP_TP_CTL(port)); if (dp_train_pat & DP_LINK_SCRAMBLING_DISABLE) temp |= DP_TP_CTL_SCRAMBLE_DISABLE; @@ -3167,24 +3245,23 @@ static void intel_enable_dp(struct intel_encoder *encoder, struct drm_i915_private *dev_priv = to_i915(encoder->base.dev); struct intel_dp *intel_dp = enc_to_intel_dp(&encoder->base); struct intel_crtc *crtc = to_intel_crtc(pipe_config->base.crtc); - uint32_t dp_reg = I915_READ(intel_dp->output_reg); + u32 dp_reg = I915_READ(intel_dp->output_reg); enum pipe pipe = crtc->pipe; + intel_wakeref_t wakeref; if (WARN_ON(dp_reg & DP_PORT_EN)) return; - pps_lock(intel_dp); - - if (IS_VALLEYVIEW(dev_priv) || IS_CHERRYVIEW(dev_priv)) - vlv_init_panel_power_sequencer(encoder, pipe_config); - - intel_dp_enable_port(intel_dp, pipe_config); + with_pps_lock(intel_dp, wakeref) { + if (IS_VALLEYVIEW(dev_priv) || IS_CHERRYVIEW(dev_priv)) + vlv_init_panel_power_sequencer(encoder, pipe_config); - edp_panel_vdd_on(intel_dp); - edp_panel_on(intel_dp); - edp_panel_vdd_off(intel_dp, true); + intel_dp_enable_port(intel_dp, pipe_config); - pps_unlock(intel_dp); + edp_panel_vdd_on(intel_dp); + edp_panel_on(intel_dp); + edp_panel_vdd_off(intel_dp, true); + } if (IS_VALLEYVIEW(dev_priv) || IS_CHERRYVIEW(dev_priv)) { unsigned int lane_mask = 0x0; @@ -3387,14 +3464,14 @@ static void chv_dp_post_pll_disable(struct intel_encoder *encoder, * link status information */ bool -intel_dp_get_link_status(struct intel_dp *intel_dp, uint8_t link_status[DP_LINK_STATUS_SIZE]) +intel_dp_get_link_status(struct intel_dp *intel_dp, u8 link_status[DP_LINK_STATUS_SIZE]) { return drm_dp_dpcd_read(&intel_dp->aux, DP_LANE0_1_STATUS, link_status, DP_LINK_STATUS_SIZE) == DP_LINK_STATUS_SIZE; } /* These are source-specific values. */ -uint8_t +u8 intel_dp_voltage_max(struct intel_dp *intel_dp) { struct drm_i915_private *dev_priv = dp_to_i915(intel_dp); @@ -3413,8 +3490,8 @@ intel_dp_voltage_max(struct intel_dp *intel_dp) return DP_TRAIN_VOLTAGE_SWING_LEVEL_2; } -uint8_t -intel_dp_pre_emphasis_max(struct intel_dp *intel_dp, uint8_t voltage_swing) +u8 +intel_dp_pre_emphasis_max(struct intel_dp *intel_dp, u8 voltage_swing) { struct drm_i915_private *dev_priv = dp_to_i915(intel_dp); struct intel_encoder *encoder = &dp_to_dig_port(intel_dp)->base; @@ -3459,12 +3536,12 @@ intel_dp_pre_emphasis_max(struct intel_dp *intel_dp, uint8_t voltage_swing) } } -static uint32_t vlv_signal_levels(struct intel_dp *intel_dp) +static u32 vlv_signal_levels(struct intel_dp *intel_dp) { struct intel_encoder *encoder = &dp_to_dig_port(intel_dp)->base; unsigned long demph_reg_value, preemph_reg_value, uniqtranscale_reg_value; - uint8_t train_set = intel_dp->train_set[0]; + u8 train_set = intel_dp->train_set[0]; switch (train_set & DP_TRAIN_PRE_EMPHASIS_MASK) { case DP_TRAIN_PRE_EMPH_LEVEL_0: @@ -3545,12 +3622,12 @@ static uint32_t vlv_signal_levels(struct intel_dp *intel_dp) return 0; } -static uint32_t chv_signal_levels(struct intel_dp *intel_dp) +static u32 chv_signal_levels(struct intel_dp *intel_dp) { struct intel_encoder *encoder = &dp_to_dig_port(intel_dp)->base; u32 deemph_reg_value, margin_reg_value; bool uniq_trans_scale = false; - uint8_t train_set = intel_dp->train_set[0]; + u8 train_set = intel_dp->train_set[0]; switch (train_set & DP_TRAIN_PRE_EMPHASIS_MASK) { case DP_TRAIN_PRE_EMPH_LEVEL_0: @@ -3628,10 +3705,10 @@ static uint32_t chv_signal_levels(struct intel_dp *intel_dp) return 0; } -static uint32_t -g4x_signal_levels(uint8_t train_set) +static u32 +g4x_signal_levels(u8 train_set) { - uint32_t signal_levels = 0; + u32 signal_levels = 0; switch (train_set & DP_TRAIN_VOLTAGE_SWING_MASK) { case DP_TRAIN_VOLTAGE_SWING_LEVEL_0: @@ -3667,8 +3744,8 @@ g4x_signal_levels(uint8_t train_set) } /* SNB CPU eDP voltage swing and pre-emphasis control */ -static uint32_t -snb_cpu_edp_signal_levels(uint8_t train_set) +static u32 +snb_cpu_edp_signal_levels(u8 train_set) { int signal_levels = train_set & (DP_TRAIN_VOLTAGE_SWING_MASK | DP_TRAIN_PRE_EMPHASIS_MASK); @@ -3695,8 +3772,8 @@ snb_cpu_edp_signal_levels(uint8_t train_set) } /* IVB CPU eDP voltage swing and pre-emphasis control */ -static uint32_t -ivb_cpu_edp_signal_levels(uint8_t train_set) +static u32 +ivb_cpu_edp_signal_levels(u8 train_set) { int signal_levels = train_set & (DP_TRAIN_VOLTAGE_SWING_MASK | DP_TRAIN_PRE_EMPHASIS_MASK); @@ -3731,8 +3808,8 @@ intel_dp_set_signal_levels(struct intel_dp *intel_dp) struct drm_i915_private *dev_priv = dp_to_i915(intel_dp); struct intel_digital_port *intel_dig_port = dp_to_dig_port(intel_dp); enum port port = intel_dig_port->base.port; - uint32_t signal_levels, mask = 0; - uint8_t train_set = intel_dp->train_set[0]; + u32 signal_levels, mask = 0; + u8 train_set = intel_dp->train_set[0]; if (IS_GEN9_LP(dev_priv) || INTEL_GEN(dev_priv) >= 10) { signal_levels = bxt_signal_levels(intel_dp); @@ -3746,7 +3823,7 @@ intel_dp_set_signal_levels(struct intel_dp *intel_dp) } else if (IS_IVYBRIDGE(dev_priv) && port == PORT_A) { signal_levels = ivb_cpu_edp_signal_levels(train_set); mask = EDP_LINK_TRAIN_VOL_EMP_MASK_IVB; - } else if (IS_GEN6(dev_priv) && port == PORT_A) { + } else if (IS_GEN(dev_priv, 6) && port == PORT_A) { signal_levels = snb_cpu_edp_signal_levels(train_set); mask = EDP_LINK_TRAIN_VOL_EMP_MASK_SNB; } else { @@ -3771,7 +3848,7 @@ intel_dp_set_signal_levels(struct intel_dp *intel_dp) void intel_dp_program_link_training_pattern(struct intel_dp *intel_dp, - uint8_t dp_train_pat) + u8 dp_train_pat) { struct intel_digital_port *intel_dig_port = dp_to_dig_port(intel_dp); struct drm_i915_private *dev_priv = @@ -3788,7 +3865,7 @@ void intel_dp_set_idle_link_train(struct intel_dp *intel_dp) struct drm_i915_private *dev_priv = dp_to_i915(intel_dp); struct intel_digital_port *intel_dig_port = dp_to_dig_port(intel_dp); enum port port = intel_dig_port->base.port; - uint32_t val; + u32 val; if (!HAS_DDI(dev_priv)) return; @@ -3823,7 +3900,7 @@ intel_dp_link_down(struct intel_encoder *encoder, struct intel_dp *intel_dp = enc_to_intel_dp(&encoder->base); struct intel_crtc *crtc = to_intel_crtc(old_crtc_state->base.crtc); enum port port = encoder->port; - uint32_t DP = intel_dp->DP; + u32 DP = intel_dp->DP; if (WARN_ON(HAS_DDI(dev_priv))) return; @@ -3882,12 +3959,49 @@ intel_dp_link_down(struct intel_encoder *encoder, intel_dp->DP = DP; if (IS_VALLEYVIEW(dev_priv) || IS_CHERRYVIEW(dev_priv)) { - pps_lock(intel_dp); - intel_dp->active_pipe = INVALID_PIPE; - pps_unlock(intel_dp); + intel_wakeref_t wakeref; + + with_pps_lock(intel_dp, wakeref) + intel_dp->active_pipe = INVALID_PIPE; } } +static void +intel_dp_extended_receiver_capabilities(struct intel_dp *intel_dp) +{ + u8 dpcd_ext[6]; + + /* + * Prior to DP1.3 the bit represented by + * DP_EXTENDED_RECEIVER_CAP_FIELD_PRESENT was reserved. + * if it is set DP_DPCD_REV at 0000h could be at a value less than + * the true capability of the panel. The only way to check is to + * then compare 0000h and 2200h. + */ + if (!(intel_dp->dpcd[DP_TRAINING_AUX_RD_INTERVAL] & + DP_EXTENDED_RECEIVER_CAP_FIELD_PRESENT)) + return; + + if (drm_dp_dpcd_read(&intel_dp->aux, DP_DP13_DPCD_REV, + &dpcd_ext, sizeof(dpcd_ext)) != sizeof(dpcd_ext)) { + DRM_ERROR("DPCD failed read at extended capabilities\n"); + return; + } + + if (intel_dp->dpcd[DP_DPCD_REV] > dpcd_ext[DP_DPCD_REV]) { + DRM_DEBUG_KMS("DPCD extended DPCD rev less than base DPCD rev\n"); + return; + } + + if (!memcmp(intel_dp->dpcd, dpcd_ext, sizeof(dpcd_ext))) + return; + + DRM_DEBUG_KMS("Base DPCD: %*ph\n", + (int)sizeof(intel_dp->dpcd), intel_dp->dpcd); + + memcpy(intel_dp->dpcd, dpcd_ext, sizeof(dpcd_ext)); +} + bool intel_dp_read_dpcd(struct intel_dp *intel_dp) { @@ -3895,11 +4009,47 @@ intel_dp_read_dpcd(struct intel_dp *intel_dp) sizeof(intel_dp->dpcd)) < 0) return false; /* aux transfer failed */ + intel_dp_extended_receiver_capabilities(intel_dp); + DRM_DEBUG_KMS("DPCD: %*ph\n", (int) sizeof(intel_dp->dpcd), intel_dp->dpcd); return intel_dp->dpcd[DP_DPCD_REV] != 0; } +static void intel_dp_get_dsc_sink_cap(struct intel_dp *intel_dp) +{ + /* + * Clear the cached register set to avoid using stale values + * for the sinks that do not support DSC. + */ + memset(intel_dp->dsc_dpcd, 0, sizeof(intel_dp->dsc_dpcd)); + + /* Clear fec_capable to avoid using stale values */ + intel_dp->fec_capable = 0; + + /* Cache the DSC DPCD if eDP or DP rev >= 1.4 */ + if (intel_dp->dpcd[DP_DPCD_REV] >= 0x14 || + intel_dp->edp_dpcd[0] >= DP_EDP_14) { + if (drm_dp_dpcd_read(&intel_dp->aux, DP_DSC_SUPPORT, + intel_dp->dsc_dpcd, + sizeof(intel_dp->dsc_dpcd)) < 0) + DRM_ERROR("Failed to read DPCD register 0x%x\n", + DP_DSC_SUPPORT); + + DRM_DEBUG_KMS("DSC DPCD: %*ph\n", + (int)sizeof(intel_dp->dsc_dpcd), + intel_dp->dsc_dpcd); + + /* FEC is supported only on DP 1.4 */ + if (!intel_dp_is_edp(intel_dp) && + drm_dp_dpcd_readb(&intel_dp->aux, DP_FEC_CAPABILITY, + &intel_dp->fec_capable) < 0) + DRM_ERROR("Failed to read FEC DPCD register\n"); + + DRM_DEBUG_KMS("FEC CAPABILITY: %x\n", intel_dp->fec_capable); + } +} + static bool intel_edp_init_dpcd(struct intel_dp *intel_dp) { @@ -3976,6 +4126,10 @@ intel_edp_init_dpcd(struct intel_dp *intel_dp) intel_dp_set_common_rates(intel_dp); + /* Read the eDP DSC DPCD registers */ + if (INTEL_GEN(dev_priv) >= 10 || IS_GEMINILAKE(dev_priv)) + intel_dp_get_dsc_sink_cap(intel_dp); + return true; } @@ -3983,8 +4137,6 @@ intel_edp_init_dpcd(struct intel_dp *intel_dp) static bool intel_dp_get_dpcd(struct intel_dp *intel_dp) { - u8 sink_count; - if (!intel_dp_read_dpcd(intel_dp)) return false; @@ -3994,25 +4146,35 @@ intel_dp_get_dpcd(struct intel_dp *intel_dp) intel_dp_set_common_rates(intel_dp); } - if (drm_dp_dpcd_readb(&intel_dp->aux, DP_SINK_COUNT, &sink_count) <= 0) - return false; - /* - * Sink count can change between short pulse hpd hence - * a member variable in intel_dp will track any changes - * between short pulse interrupts. + * Some eDP panels do not set a valid value for sink count, that is why + * it don't care about read it here and in intel_edp_init_dpcd(). */ - intel_dp->sink_count = DP_GET_SINK_COUNT(sink_count); + if (!intel_dp_is_edp(intel_dp)) { + u8 count; + ssize_t r; - /* - * SINK_COUNT == 0 and DOWNSTREAM_PORT_PRESENT == 1 implies that - * a dongle is present but no display. Unless we require to know - * if a dongle is present or not, we don't need to update - * downstream port information. So, an early return here saves - * time from performing other operations which are not required. - */ - if (!intel_dp_is_edp(intel_dp) && !intel_dp->sink_count) - return false; + r = drm_dp_dpcd_readb(&intel_dp->aux, DP_SINK_COUNT, &count); + if (r < 1) + return false; + + /* + * Sink count can change between short pulse hpd hence + * a member variable in intel_dp will track any changes + * between short pulse interrupts. + */ + intel_dp->sink_count = DP_GET_SINK_COUNT(count); + + /* + * SINK_COUNT == 0 and DOWNSTREAM_PORT_PRESENT == 1 implies that + * a dongle is present but no display. Unless we require to know + * if a dongle is present or not, we don't need to update + * downstream port information. So, an early return here saves + * time from performing other operations which are not required. + */ + if (!intel_dp->sink_count) + return false; + } if (!drm_dp_is_branch(intel_dp->dpcd)) return true; /* native DP sink */ @@ -4029,16 +4191,10 @@ intel_dp_get_dpcd(struct intel_dp *intel_dp) } static bool -intel_dp_can_mst(struct intel_dp *intel_dp) +intel_dp_sink_can_mst(struct intel_dp *intel_dp) { u8 mstm_cap; - if (!i915_modparams.enable_dp_mst) - return false; - - if (!intel_dp->can_mst) - return false; - if (intel_dp->dpcd[DP_DPCD_REV] < 0x12) return false; @@ -4048,34 +4204,36 @@ intel_dp_can_mst(struct intel_dp *intel_dp) return mstm_cap & DP_MST_CAP; } +static bool +intel_dp_can_mst(struct intel_dp *intel_dp) +{ + return i915_modparams.enable_dp_mst && + intel_dp->can_mst && + intel_dp_sink_can_mst(intel_dp); +} + static void intel_dp_configure_mst(struct intel_dp *intel_dp) { - if (!i915_modparams.enable_dp_mst) - return; + struct intel_encoder *encoder = + &dp_to_dig_port(intel_dp)->base; + bool sink_can_mst = intel_dp_sink_can_mst(intel_dp); + + DRM_DEBUG_KMS("MST support? port %c: %s, sink: %s, modparam: %s\n", + port_name(encoder->port), yesno(intel_dp->can_mst), + yesno(sink_can_mst), yesno(i915_modparams.enable_dp_mst)); if (!intel_dp->can_mst) return; - intel_dp->is_mst = intel_dp_can_mst(intel_dp); - - if (intel_dp->is_mst) - DRM_DEBUG_KMS("Sink is MST capable\n"); - else - DRM_DEBUG_KMS("Sink is not MST capable\n"); + intel_dp->is_mst = sink_can_mst && + i915_modparams.enable_dp_mst; drm_dp_mst_topology_mgr_set_mst(&intel_dp->mst_mgr, intel_dp->is_mst); } static bool -intel_dp_get_sink_irq(struct intel_dp *intel_dp, u8 *sink_irq_vector) -{ - return drm_dp_dpcd_readb(&intel_dp->aux, DP_DEVICE_SERVICE_IRQ_VECTOR, - sink_irq_vector) == 1; -} - -static bool intel_dp_get_sink_irq_esi(struct intel_dp *intel_dp, u8 *sink_irq_vector) { return drm_dp_dpcd_read(&intel_dp->aux, DP_SINK_COUNT_ESI, @@ -4083,11 +4241,96 @@ intel_dp_get_sink_irq_esi(struct intel_dp *intel_dp, u8 *sink_irq_vector) DP_DPRX_ESI_LEN; } -static uint8_t intel_dp_autotest_link_training(struct intel_dp *intel_dp) +u16 intel_dp_dsc_get_output_bpp(int link_clock, u8 lane_count, + int mode_clock, int mode_hdisplay) +{ + u16 bits_per_pixel, max_bpp_small_joiner_ram; + int i; + + /* + * Available Link Bandwidth(Kbits/sec) = (NumberOfLanes)* + * (LinkSymbolClock)* 8 * ((100-FECOverhead)/100)*(TimeSlotsPerMTP) + * FECOverhead = 2.4%, for SST -> TimeSlotsPerMTP is 1, + * for MST -> TimeSlotsPerMTP has to be calculated + */ + bits_per_pixel = (link_clock * lane_count * 8 * + DP_DSC_FEC_OVERHEAD_FACTOR) / + mode_clock; + + /* Small Joiner Check: output bpp <= joiner RAM (bits) / Horiz. width */ + max_bpp_small_joiner_ram = DP_DSC_MAX_SMALL_JOINER_RAM_BUFFER / + mode_hdisplay; + + /* + * Greatest allowed DSC BPP = MIN (output BPP from avaialble Link BW + * check, output bpp from small joiner RAM check) + */ + bits_per_pixel = min(bits_per_pixel, max_bpp_small_joiner_ram); + + /* Error out if the max bpp is less than smallest allowed valid bpp */ + if (bits_per_pixel < valid_dsc_bpp[0]) { + DRM_DEBUG_KMS("Unsupported BPP %d\n", bits_per_pixel); + return 0; + } + + /* Find the nearest match in the array of known BPPs from VESA */ + for (i = 0; i < ARRAY_SIZE(valid_dsc_bpp) - 1; i++) { + if (bits_per_pixel < valid_dsc_bpp[i + 1]) + break; + } + bits_per_pixel = valid_dsc_bpp[i]; + + /* + * Compressed BPP in U6.4 format so multiply by 16, for Gen 11, + * fractional part is 0 + */ + return bits_per_pixel << 4; +} + +u8 intel_dp_dsc_get_slice_count(struct intel_dp *intel_dp, + int mode_clock, + int mode_hdisplay) +{ + u8 min_slice_count, i; + int max_slice_width; + + if (mode_clock <= DP_DSC_PEAK_PIXEL_RATE) + min_slice_count = DIV_ROUND_UP(mode_clock, + DP_DSC_MAX_ENC_THROUGHPUT_0); + else + min_slice_count = DIV_ROUND_UP(mode_clock, + DP_DSC_MAX_ENC_THROUGHPUT_1); + + max_slice_width = drm_dp_dsc_sink_max_slice_width(intel_dp->dsc_dpcd); + if (max_slice_width < DP_DSC_MIN_SLICE_WIDTH_VALUE) { + DRM_DEBUG_KMS("Unsupported slice width %d by DP DSC Sink device\n", + max_slice_width); + return 0; + } + /* Also take into account max slice width */ + min_slice_count = min_t(u8, min_slice_count, + DIV_ROUND_UP(mode_hdisplay, + max_slice_width)); + + /* Find the closest match to the valid slice count values */ + for (i = 0; i < ARRAY_SIZE(valid_dsc_slicecount); i++) { + if (valid_dsc_slicecount[i] > + drm_dp_dsc_sink_max_slice_count(intel_dp->dsc_dpcd, + false)) + break; + if (min_slice_count <= valid_dsc_slicecount[i]) + return valid_dsc_slicecount[i]; + } + + DRM_DEBUG_KMS("Unsupported Slice Count %d\n", min_slice_count); + return 0; +} + +static u8 intel_dp_autotest_link_training(struct intel_dp *intel_dp) { int status = 0; int test_link_rate; - uint8_t test_lane_count, test_link_bw; + u8 test_lane_count, test_link_bw; /* (DP CTS 1.2) * 4.3.1.11 */ @@ -4120,10 +4363,10 @@ static uint8_t intel_dp_autotest_link_training(struct intel_dp *intel_dp) return DP_TEST_ACK; } -static uint8_t intel_dp_autotest_video_pattern(struct intel_dp *intel_dp) +static u8 intel_dp_autotest_video_pattern(struct intel_dp *intel_dp) { - uint8_t test_pattern; - uint8_t test_misc; + u8 test_pattern; + u8 test_misc; __be16 h_width, v_height; int status = 0; @@ -4181,9 +4424,9 @@ static uint8_t intel_dp_autotest_video_pattern(struct intel_dp *intel_dp) return DP_TEST_ACK; } -static uint8_t intel_dp_autotest_edid(struct intel_dp *intel_dp) +static u8 intel_dp_autotest_edid(struct intel_dp *intel_dp) { - uint8_t test_result = DP_TEST_ACK; + u8 test_result = DP_TEST_ACK; struct intel_connector *intel_connector = intel_dp->attached_connector; struct drm_connector *connector = &intel_connector->base; @@ -4225,16 +4468,16 @@ static uint8_t intel_dp_autotest_edid(struct intel_dp *intel_dp) return test_result; } -static uint8_t intel_dp_autotest_phy_pattern(struct intel_dp *intel_dp) +static u8 intel_dp_autotest_phy_pattern(struct intel_dp *intel_dp) { - uint8_t test_result = DP_TEST_NAK; + u8 test_result = DP_TEST_NAK; return test_result; } static void intel_dp_handle_test_request(struct intel_dp *intel_dp) { - uint8_t response = DP_TEST_NAK; - uint8_t request = 0; + u8 response = DP_TEST_NAK; + u8 request = 0; int status; status = drm_dp_dpcd_readb(&intel_dp->aux, DP_TEST_REQUEST, &request); @@ -4322,12 +4565,10 @@ go_again: return ret; } else { - struct intel_digital_port *intel_dig_port = dp_to_dig_port(intel_dp); DRM_DEBUG_KMS("failed to get ESI - device may have failed\n"); intel_dp->is_mst = false; - drm_dp_mst_topology_mgr_set_mst(&intel_dp->mst_mgr, intel_dp->is_mst); - /* send a hotplug event */ - drm_kms_helper_hotplug_event(intel_dig_port->base.base.dev); + drm_dp_mst_topology_mgr_set_mst(&intel_dp->mst_mgr, + intel_dp->is_mst); } } return -EINVAL; @@ -4341,6 +4582,17 @@ intel_dp_needs_link_retrain(struct intel_dp *intel_dp) if (!intel_dp->link_trained) return false; + /* + * While PSR source HW is enabled, it will control main-link sending + * frames, enabling and disabling it so trying to do a retrain will fail + * as the link would or not be on or it could mix training patterns + * and frame data at the same time causing retrain to fail. + * Also when exiting PSR, HW will retrain the link anyways fixing + * any link status error. + */ + if (intel_psr_enabled(intel_dp)) + return false; + if (!intel_dp_get_link_status(intel_dp, link_status)) return false; @@ -4403,7 +4655,7 @@ int intel_dp_retrain_link(struct intel_encoder *encoder, /* Suppress underruns caused by re-training */ intel_set_cpu_fifo_underrun_reporting(dev_priv, crtc->pipe, false); - if (crtc->config->has_pch_encoder) + if (crtc_state->has_pch_encoder) intel_set_pch_fifo_underrun_reporting(dev_priv, intel_crtc_pch_transcoder(crtc), false); @@ -4414,7 +4666,7 @@ int intel_dp_retrain_link(struct intel_encoder *encoder, intel_wait_for_vblank(dev_priv, crtc->pipe); intel_set_cpu_fifo_underrun_reporting(dev_priv, crtc->pipe, true); - if (crtc->config->has_pch_encoder) + if (crtc_state->has_pch_encoder) intel_set_pch_fifo_underrun_reporting(dev_priv, intel_crtc_pch_transcoder(crtc), true); @@ -4462,6 +4714,29 @@ static bool intel_dp_hotplug(struct intel_encoder *encoder, return changed; } +static void intel_dp_check_service_irq(struct intel_dp *intel_dp) +{ + u8 val; + + if (intel_dp->dpcd[DP_DPCD_REV] < 0x11) + return; + + if (drm_dp_dpcd_readb(&intel_dp->aux, + DP_DEVICE_SERVICE_IRQ_VECTOR, &val) != 1 || !val) + return; + + drm_dp_dpcd_writeb(&intel_dp->aux, DP_DEVICE_SERVICE_IRQ_VECTOR, val); + + if (val & DP_AUTOMATED_TEST_REQUEST) + intel_dp_handle_test_request(intel_dp); + + if (val & DP_CP_IRQ) + intel_hdcp_check_link(intel_dp->attached_connector); + + if (val & DP_SINK_SPECIFIC_IRQ) + DRM_DEBUG_DRIVER("Sink specific irq unhandled\n"); +} + /* * According to DP spec * 5.1.2: @@ -4479,7 +4754,6 @@ static bool intel_dp_short_pulse(struct intel_dp *intel_dp) { struct drm_i915_private *dev_priv = dp_to_i915(intel_dp); - u8 sink_irq_vector = 0; u8 old_sink_count = intel_dp->sink_count; bool ret; @@ -4502,20 +4776,7 @@ intel_dp_short_pulse(struct intel_dp *intel_dp) return false; } - /* Try to read the source of the interrupt */ - if (intel_dp->dpcd[DP_DPCD_REV] >= 0x11 && - intel_dp_get_sink_irq(intel_dp, &sink_irq_vector) && - sink_irq_vector != 0) { - /* Clear interrupt source */ - drm_dp_dpcd_writeb(&intel_dp->aux, - DP_DEVICE_SERVICE_IRQ_VECTOR, - sink_irq_vector); - - if (sink_irq_vector & DP_AUTOMATED_TEST_REQUEST) - intel_dp_handle_test_request(intel_dp); - if (sink_irq_vector & (DP_CP_IRQ | DP_SINK_SPECIFIC_IRQ)) - DRM_DEBUG_DRIVER("CP or sink specific irq unhandled\n"); - } + intel_dp_check_service_irq(intel_dp); /* Handle CEC interrupts, if any */ drm_dp_cec_irq(&intel_dp->aux); @@ -4540,8 +4801,8 @@ static enum drm_connector_status intel_dp_detect_dpcd(struct intel_dp *intel_dp) { struct intel_lspcon *lspcon = dp_to_lspcon(intel_dp); - uint8_t *dpcd = intel_dp->dpcd; - uint8_t type; + u8 *dpcd = intel_dp->dpcd; + u8 type; if (lspcon->active) lspcon_resume(lspcon); @@ -4778,28 +5039,38 @@ static bool icl_combo_port_connected(struct drm_i915_private *dev_priv, return I915_READ(SDEISR) & SDE_DDI_HOTPLUG_ICP(port); } +static const char *tc_type_name(enum tc_port_type type) +{ + static const char * const names[] = { + [TC_PORT_UNKNOWN] = "unknown", + [TC_PORT_LEGACY] = "legacy", + [TC_PORT_TYPEC] = "typec", + [TC_PORT_TBT] = "tbt", + }; + + if (WARN_ON(type >= ARRAY_SIZE(names))) + type = TC_PORT_UNKNOWN; + + return names[type]; +} + static void icl_update_tc_port_type(struct drm_i915_private *dev_priv, struct intel_digital_port *intel_dig_port, bool is_legacy, bool is_typec, bool is_tbt) { enum port port = intel_dig_port->base.port; enum tc_port_type old_type = intel_dig_port->tc_type; - const char *type_str; WARN_ON(is_legacy + is_typec + is_tbt != 1); - if (is_legacy) { + if (is_legacy) intel_dig_port->tc_type = TC_PORT_LEGACY; - type_str = "legacy"; - } else if (is_typec) { + else if (is_typec) intel_dig_port->tc_type = TC_PORT_TYPEC; - type_str = "typec"; - } else if (is_tbt) { + else if (is_tbt) intel_dig_port->tc_type = TC_PORT_TBT; - type_str = "tbt"; - } else { + else return; - } /* Types are not supposed to be changed at runtime. */ WARN_ON(old_type != TC_PORT_UNKNOWN && @@ -4807,7 +5078,7 @@ static void icl_update_tc_port_type(struct drm_i915_private *dev_priv, if (old_type != intel_dig_port->tc_type) DRM_DEBUG_KMS("Port %c has TC type %s\n", port_name(port), - type_str); + tc_type_name(intel_dig_port->tc_type)); } /* @@ -4844,6 +5115,7 @@ static bool icl_tc_phy_connect(struct drm_i915_private *dev_priv, val = I915_READ(PORT_TX_DFLEXDPPMS); if (!(val & DP_PHY_MODE_STATUS_COMPLETED(tc_port))) { DRM_DEBUG_KMS("DP PHY for TC port %d not ready\n", tc_port); + WARN_ON(dig_port->tc_legacy_port); return false; } @@ -4864,9 +5136,7 @@ static bool icl_tc_phy_connect(struct drm_i915_private *dev_priv, if (dig_port->tc_type == TC_PORT_TYPEC && !(I915_READ(PORT_TX_DFLEXDPSP) & TC_LIVE_STATE_TC(tc_port))) { DRM_DEBUG_KMS("TC PHY %d sudden disconnect.\n", tc_port); - val = I915_READ(PORT_TX_DFLEXDPCSSS); - val &= ~DP_PHY_MODE_STATUS_NOT_SAFE(tc_port); - I915_WRITE(PORT_TX_DFLEXDPCSSS, val); + icl_tc_phy_disconnect(dev_priv, dig_port); return false; } @@ -4877,25 +5147,32 @@ static bool icl_tc_phy_connect(struct drm_i915_private *dev_priv, * See the comment at the connect function. This implements the Disconnect * Flow. */ -static void icl_tc_phy_disconnect(struct drm_i915_private *dev_priv, - struct intel_digital_port *dig_port) +void icl_tc_phy_disconnect(struct drm_i915_private *dev_priv, + struct intel_digital_port *dig_port) { enum tc_port tc_port = intel_port_to_tc(dev_priv, dig_port->base.port); - u32 val; - if (dig_port->tc_type != TC_PORT_LEGACY && - dig_port->tc_type != TC_PORT_TYPEC) + if (dig_port->tc_type == TC_PORT_UNKNOWN) return; /* - * This function may be called many times in a row without an HPD event - * in between, so try to avoid the write when we can. + * TBT disconnection flow is read the live status, what was done in + * caller. */ - val = I915_READ(PORT_TX_DFLEXDPCSSS); - if (val & DP_PHY_MODE_STATUS_NOT_SAFE(tc_port)) { + if (dig_port->tc_type == TC_PORT_TYPEC || + dig_port->tc_type == TC_PORT_LEGACY) { + u32 val; + + val = I915_READ(PORT_TX_DFLEXDPCSSS); val &= ~DP_PHY_MODE_STATUS_NOT_SAFE(tc_port); I915_WRITE(PORT_TX_DFLEXDPCSSS, val); } + + DRM_DEBUG_KMS("Port %c TC type %s disconnected\n", + port_name(dig_port->base.port), + tc_type_name(dig_port->tc_type)); + + dig_port->tc_type = TC_PORT_UNKNOWN; } /* @@ -4916,7 +5193,14 @@ static bool icl_tc_port_connected(struct drm_i915_private *dev_priv, bool is_legacy, is_typec, is_tbt; u32 dpsp; - is_legacy = I915_READ(SDEISR) & SDE_TC_HOTPLUG_ICP(tc_port); + /* + * WARN if we got a legacy port HPD, but VBT didn't mark the port as + * legacy. Treat the port as legacy from now on. + */ + if (WARN_ON(!intel_dig_port->tc_legacy_port && + I915_READ(SDEISR) & SDE_TC_HOTPLUG_ICP(tc_port))) + intel_dig_port->tc_legacy_port = true; + is_legacy = intel_dig_port->tc_legacy_port; /* * The spec says we shouldn't be using the ISR bits for detecting @@ -4928,6 +5212,7 @@ static bool icl_tc_port_connected(struct drm_i915_private *dev_priv, if (!is_legacy && !is_typec && !is_tbt) { icl_tc_phy_disconnect(dev_priv, intel_dig_port); + return false; } @@ -4945,19 +5230,14 @@ static bool icl_digital_port_connected(struct intel_encoder *encoder) struct drm_i915_private *dev_priv = to_i915(encoder->base.dev); struct intel_digital_port *dig_port = enc_to_dig_port(&encoder->base); - switch (encoder->hpd_pin) { - case HPD_PORT_A: - case HPD_PORT_B: + if (intel_port_is_combophy(dev_priv, encoder->port)) return icl_combo_port_connected(dev_priv, dig_port); - case HPD_PORT_C: - case HPD_PORT_D: - case HPD_PORT_E: - case HPD_PORT_F: + else if (intel_port_is_tc(dev_priv, encoder->port)) return icl_tc_port_connected(dev_priv, dig_port); - default: + else MISSING_CASE(encoder->hpd_pin); - return false; - } + + return false; } /* @@ -4975,27 +5255,30 @@ bool intel_digital_port_connected(struct intel_encoder *encoder) { struct drm_i915_private *dev_priv = to_i915(encoder->base.dev); - if (HAS_GMCH_DISPLAY(dev_priv)) { + if (HAS_GMCH(dev_priv)) { if (IS_GM45(dev_priv)) return gm45_digital_port_connected(encoder); else return g4x_digital_port_connected(encoder); } - if (IS_GEN5(dev_priv)) - return ilk_digital_port_connected(encoder); - else if (IS_GEN6(dev_priv)) - return snb_digital_port_connected(encoder); - else if (IS_GEN7(dev_priv)) - return ivb_digital_port_connected(encoder); - else if (IS_GEN8(dev_priv)) - return bdw_digital_port_connected(encoder); + if (INTEL_GEN(dev_priv) >= 11) + return icl_digital_port_connected(encoder); + else if (IS_GEN(dev_priv, 10) || IS_GEN9_BC(dev_priv)) + return spt_digital_port_connected(encoder); else if (IS_GEN9_LP(dev_priv)) return bxt_digital_port_connected(encoder); - else if (IS_GEN9_BC(dev_priv) || IS_GEN10(dev_priv)) - return spt_digital_port_connected(encoder); - else - return icl_digital_port_connected(encoder); + else if (IS_GEN(dev_priv, 8)) + return bdw_digital_port_connected(encoder); + else if (IS_GEN(dev_priv, 7)) + return ivb_digital_port_connected(encoder); + else if (IS_GEN(dev_priv, 6)) + return snb_digital_port_connected(encoder); + else if (IS_GEN(dev_priv, 5)) + return ilk_digital_port_connected(encoder); + + MISSING_CASE(INTEL_GEN(dev_priv)); + return false; } static struct edid * @@ -5042,28 +5325,36 @@ intel_dp_unset_edid(struct intel_dp *intel_dp) } static int -intel_dp_long_pulse(struct intel_connector *connector, - struct drm_modeset_acquire_ctx *ctx) +intel_dp_detect(struct drm_connector *connector, + struct drm_modeset_acquire_ctx *ctx, + bool force) { - struct drm_i915_private *dev_priv = to_i915(connector->base.dev); - struct intel_dp *intel_dp = intel_attached_dp(&connector->base); + struct drm_i915_private *dev_priv = to_i915(connector->dev); + struct intel_dp *intel_dp = intel_attached_dp(connector); + struct intel_digital_port *dig_port = dp_to_dig_port(intel_dp); + struct intel_encoder *encoder = &dig_port->base; enum drm_connector_status status; - u8 sink_irq_vector = 0; + enum intel_display_power_domain aux_domain = + intel_aux_power_domain(dig_port); + intel_wakeref_t wakeref; + DRM_DEBUG_KMS("[CONNECTOR:%d:%s]\n", + connector->base.id, connector->name); WARN_ON(!drm_modeset_is_locked(&dev_priv->drm.mode_config.connection_mutex)); - intel_display_power_get(dev_priv, intel_dp->aux_power_domain); + wakeref = intel_display_power_get(dev_priv, aux_domain); /* Can't disconnect eDP */ if (intel_dp_is_edp(intel_dp)) status = edp_detect(intel_dp); - else if (intel_digital_port_connected(&dp_to_dig_port(intel_dp)->base)) + else if (intel_digital_port_connected(encoder)) status = intel_dp_detect_dpcd(intel_dp); else status = connector_status_disconnected; if (status == connector_status_disconnected) { memset(&intel_dp->compliance, 0, sizeof(intel_dp->compliance)); + memset(intel_dp->dsc_dpcd, 0, sizeof(intel_dp->dsc_dpcd)); if (intel_dp->is_mst) { DRM_DEBUG_KMS("MST device may have disappeared %d vs %d\n", @@ -5089,6 +5380,10 @@ intel_dp_long_pulse(struct intel_connector *connector, intel_dp_print_rates(intel_dp); + /* Read DP Sink DSC Cap DPCD regs for DP v1.4 */ + if (INTEL_GEN(dev_priv) >= 11) + intel_dp_get_dsc_sink_cap(intel_dp); + drm_dp_read_desc(&intel_dp->aux, &intel_dp->desc, drm_dp_is_branch(intel_dp->dpcd)); @@ -5109,9 +5404,13 @@ intel_dp_long_pulse(struct intel_connector *connector, * with an IRQ_HPD, so force a link status check. */ if (!intel_dp_is_edp(intel_dp)) { - struct intel_encoder *encoder = &dp_to_dig_port(intel_dp)->base; + int ret; - intel_dp_retrain_link(encoder, ctx); + ret = intel_dp_retrain_link(encoder, ctx); + if (ret) { + intel_display_power_put(dev_priv, aux_domain, wakeref); + return ret; + } } /* @@ -5123,61 +5422,17 @@ intel_dp_long_pulse(struct intel_connector *connector, intel_dp->aux.i2c_defer_count = 0; intel_dp_set_edid(intel_dp); - if (intel_dp_is_edp(intel_dp) || connector->detect_edid) + if (intel_dp_is_edp(intel_dp) || + to_intel_connector(connector)->detect_edid) status = connector_status_connected; - intel_dp->detect_done = true; - - /* Try to read the source of the interrupt */ - if (intel_dp->dpcd[DP_DPCD_REV] >= 0x11 && - intel_dp_get_sink_irq(intel_dp, &sink_irq_vector) && - sink_irq_vector != 0) { - /* Clear interrupt source */ - drm_dp_dpcd_writeb(&intel_dp->aux, - DP_DEVICE_SERVICE_IRQ_VECTOR, - sink_irq_vector); - if (sink_irq_vector & DP_AUTOMATED_TEST_REQUEST) - intel_dp_handle_test_request(intel_dp); - if (sink_irq_vector & (DP_CP_IRQ | DP_SINK_SPECIFIC_IRQ)) - DRM_DEBUG_DRIVER("CP or sink specific irq unhandled\n"); - } + intel_dp_check_service_irq(intel_dp); out: if (status != connector_status_connected && !intel_dp->is_mst) intel_dp_unset_edid(intel_dp); - intel_display_power_put(dev_priv, intel_dp->aux_power_domain); - return status; -} - -static int -intel_dp_detect(struct drm_connector *connector, - struct drm_modeset_acquire_ctx *ctx, - bool force) -{ - struct intel_dp *intel_dp = intel_attached_dp(connector); - int status = connector->status; - - DRM_DEBUG_KMS("[CONNECTOR:%d:%s]\n", - connector->base.id, connector->name); - - /* If full detect is not performed yet, do a full detect */ - if (!intel_dp->detect_done) { - struct drm_crtc *crtc; - int ret; - - crtc = connector->state->crtc; - if (crtc) { - ret = drm_modeset_lock(&crtc->mutex, ctx); - if (ret) - return ret; - } - - status = intel_dp_long_pulse(intel_dp->attached_connector, ctx); - } - - intel_dp->detect_done = false; - + intel_display_power_put(dev_priv, aux_domain, wakeref); return status; } @@ -5185,8 +5440,12 @@ static void intel_dp_force(struct drm_connector *connector) { struct intel_dp *intel_dp = intel_attached_dp(connector); - struct intel_encoder *intel_encoder = &dp_to_dig_port(intel_dp)->base; + struct intel_digital_port *dig_port = dp_to_dig_port(intel_dp); + struct intel_encoder *intel_encoder = &dig_port->base; struct drm_i915_private *dev_priv = to_i915(intel_encoder->base.dev); + enum intel_display_power_domain aux_domain = + intel_aux_power_domain(dig_port); + intel_wakeref_t wakeref; DRM_DEBUG_KMS("[CONNECTOR:%d:%s]\n", connector->base.id, connector->name); @@ -5195,11 +5454,11 @@ intel_dp_force(struct drm_connector *connector) if (connector->status != connector_status_connected) return; - intel_display_power_get(dev_priv, intel_dp->aux_power_domain); + wakeref = intel_display_power_get(dev_priv, aux_domain); intel_dp_set_edid(intel_dp); - intel_display_power_put(dev_priv, intel_dp->aux_power_domain); + intel_display_power_put(dev_priv, aux_domain, wakeref); } static int intel_dp_get_modes(struct drm_connector *connector) @@ -5264,42 +5523,22 @@ intel_dp_connector_unregister(struct drm_connector *connector) intel_connector_unregister(connector); } -static void -intel_dp_connector_destroy(struct drm_connector *connector) -{ - struct intel_connector *intel_connector = to_intel_connector(connector); - - kfree(intel_connector->detect_edid); - - if (!IS_ERR_OR_NULL(intel_connector->edid)) - kfree(intel_connector->edid); - - /* - * Can't call intel_dp_is_edp() since the encoder may have been - * destroyed already. - */ - if (connector->connector_type == DRM_MODE_CONNECTOR_eDP) - intel_panel_fini(&intel_connector->panel); - - drm_connector_cleanup(connector); - kfree(connector); -} - -void intel_dp_encoder_destroy(struct drm_encoder *encoder) +void intel_dp_encoder_flush_work(struct drm_encoder *encoder) { struct intel_digital_port *intel_dig_port = enc_to_dig_port(encoder); struct intel_dp *intel_dp = &intel_dig_port->dp; intel_dp_mst_encoder_cleanup(intel_dig_port); if (intel_dp_is_edp(intel_dp)) { + intel_wakeref_t wakeref; + cancel_delayed_work_sync(&intel_dp->panel_vdd_work); /* * vdd might still be enabled do to the delayed vdd off. * Make sure vdd is actually turned off here. */ - pps_lock(intel_dp); - edp_panel_vdd_off_sync(intel_dp); - pps_unlock(intel_dp); + with_pps_lock(intel_dp, wakeref) + edp_panel_vdd_off_sync(intel_dp); if (intel_dp->edp_notifier.notifier_call) { unregister_reboot_notifier(&intel_dp->edp_notifier); @@ -5308,14 +5547,20 @@ void intel_dp_encoder_destroy(struct drm_encoder *encoder) } intel_dp_aux_fini(intel_dp); +} + +static void intel_dp_encoder_destroy(struct drm_encoder *encoder) +{ + intel_dp_encoder_flush_work(encoder); drm_encoder_cleanup(encoder); - kfree(intel_dig_port); + kfree(enc_to_dig_port(encoder)); } void intel_dp_encoder_suspend(struct intel_encoder *intel_encoder) { struct intel_dp *intel_dp = enc_to_intel_dp(&intel_encoder->base); + intel_wakeref_t wakeref; if (!intel_dp_is_edp(intel_dp)) return; @@ -5325,9 +5570,8 @@ void intel_dp_encoder_suspend(struct intel_encoder *intel_encoder) * Make sure vdd is actually turned off here. */ cancel_delayed_work_sync(&intel_dp->panel_vdd_work); - pps_lock(intel_dp); - edp_panel_vdd_off_sync(intel_dp); - pps_unlock(intel_dp); + with_pps_lock(intel_dp, wakeref) + edp_panel_vdd_off_sync(intel_dp); } static @@ -5340,7 +5584,7 @@ int intel_dp_hdcp_write_an_aksv(struct intel_digital_port *intel_dig_port, .address = DP_AUX_HDCP_AKSV, .size = DRM_HDCP_KSV_LEN, }; - uint8_t txbuf[HEADER_SIZE + DRM_HDCP_KSV_LEN] = {}, rxbuf[2], reply = 0; + u8 txbuf[HEADER_SIZE + DRM_HDCP_KSV_LEN] = {}, rxbuf[2], reply = 0; ssize_t dpcd_ret; int ret; @@ -5348,7 +5592,8 @@ int intel_dp_hdcp_write_an_aksv(struct intel_digital_port *intel_dig_port, dpcd_ret = drm_dp_dpcd_write(&intel_dig_port->dp.aux, DP_AUX_HDCP_AN, an, DRM_HDCP_AN_LEN); if (dpcd_ret != DRM_HDCP_AN_LEN) { - DRM_ERROR("Failed to write An over DP/AUX (%zd)\n", dpcd_ret); + DRM_DEBUG_KMS("Failed to write An over DP/AUX (%zd)\n", + dpcd_ret); return dpcd_ret >= 0 ? -EIO : dpcd_ret; } @@ -5364,15 +5609,20 @@ int intel_dp_hdcp_write_an_aksv(struct intel_digital_port *intel_dig_port, rxbuf, sizeof(rxbuf), DP_AUX_CH_CTL_AUX_AKSV_SELECT); if (ret < 0) { - DRM_ERROR("Write Aksv over DP/AUX failed (%d)\n", ret); + DRM_DEBUG_KMS("Write Aksv over DP/AUX failed (%d)\n", ret); return ret; } else if (ret == 0) { - DRM_ERROR("Aksv write over DP/AUX was empty\n"); + DRM_DEBUG_KMS("Aksv write over DP/AUX was empty\n"); return -EIO; } reply = (rxbuf[0] >> 4) & DP_AUX_NATIVE_REPLY_MASK; - return reply == DP_AUX_NATIVE_REPLY_ACK ? 0 : -EIO; + if (reply != DP_AUX_NATIVE_REPLY_ACK) { + DRM_DEBUG_KMS("Aksv write: no DP_AUX_NATIVE_REPLY_ACK %x\n", + reply); + return -EIO; + } + return 0; } static int intel_dp_hdcp_read_bksv(struct intel_digital_port *intel_dig_port, @@ -5382,7 +5632,7 @@ static int intel_dp_hdcp_read_bksv(struct intel_digital_port *intel_dig_port, ret = drm_dp_dpcd_read(&intel_dig_port->dp.aux, DP_AUX_HDCP_BKSV, bksv, DRM_HDCP_KSV_LEN); if (ret != DRM_HDCP_KSV_LEN) { - DRM_ERROR("Read Bksv from DP/AUX failed (%zd)\n", ret); + DRM_DEBUG_KMS("Read Bksv from DP/AUX failed (%zd)\n", ret); return ret >= 0 ? -EIO : ret; } return 0; @@ -5400,7 +5650,7 @@ static int intel_dp_hdcp_read_bstatus(struct intel_digital_port *intel_dig_port, ret = drm_dp_dpcd_read(&intel_dig_port->dp.aux, DP_AUX_HDCP_BINFO, bstatus, DRM_HDCP_BSTATUS_LEN); if (ret != DRM_HDCP_BSTATUS_LEN) { - DRM_ERROR("Read bstatus from DP/AUX failed (%zd)\n", ret); + DRM_DEBUG_KMS("Read bstatus from DP/AUX failed (%zd)\n", ret); return ret >= 0 ? -EIO : ret; } return 0; @@ -5415,7 +5665,7 @@ int intel_dp_hdcp_read_bcaps(struct intel_digital_port *intel_dig_port, ret = drm_dp_dpcd_read(&intel_dig_port->dp.aux, DP_AUX_HDCP_BCAPS, bcaps, 1); if (ret != 1) { - DRM_ERROR("Read bcaps from DP/AUX failed (%zd)\n", ret); + DRM_DEBUG_KMS("Read bcaps from DP/AUX failed (%zd)\n", ret); return ret >= 0 ? -EIO : ret; } @@ -5445,7 +5695,7 @@ int intel_dp_hdcp_read_ri_prime(struct intel_digital_port *intel_dig_port, ret = drm_dp_dpcd_read(&intel_dig_port->dp.aux, DP_AUX_HDCP_RI_PRIME, ri_prime, DRM_HDCP_RI_LEN); if (ret != DRM_HDCP_RI_LEN) { - DRM_ERROR("Read Ri' from DP/AUX failed (%zd)\n", ret); + DRM_DEBUG_KMS("Read Ri' from DP/AUX failed (%zd)\n", ret); return ret >= 0 ? -EIO : ret; } return 0; @@ -5460,7 +5710,7 @@ int intel_dp_hdcp_read_ksv_ready(struct intel_digital_port *intel_dig_port, ret = drm_dp_dpcd_read(&intel_dig_port->dp.aux, DP_AUX_HDCP_BSTATUS, &bstatus, 1); if (ret != 1) { - DRM_ERROR("Read bstatus from DP/AUX failed (%zd)\n", ret); + DRM_DEBUG_KMS("Read bstatus from DP/AUX failed (%zd)\n", ret); return ret >= 0 ? -EIO : ret; } *ksv_ready = bstatus & DP_BSTATUS_READY; @@ -5482,8 +5732,8 @@ int intel_dp_hdcp_read_ksv_fifo(struct intel_digital_port *intel_dig_port, ksv_fifo + i * DRM_HDCP_KSV_LEN, len); if (ret != len) { - DRM_ERROR("Read ksv[%d] from DP/AUX failed (%zd)\n", i, - ret); + DRM_DEBUG_KMS("Read ksv[%d] from DP/AUX failed (%zd)\n", + i, ret); return ret >= 0 ? -EIO : ret; } } @@ -5503,7 +5753,7 @@ int intel_dp_hdcp_read_v_prime_part(struct intel_digital_port *intel_dig_port, DP_AUX_HDCP_V_PRIME(i), part, DRM_HDCP_V_PRIME_PART_LEN); if (ret != DRM_HDCP_V_PRIME_PART_LEN) { - DRM_ERROR("Read v'[%d] from DP/AUX failed (%zd)\n", i, ret); + DRM_DEBUG_KMS("Read v'[%d] from DP/AUX failed (%zd)\n", i, ret); return ret >= 0 ? -EIO : ret; } return 0; @@ -5526,7 +5776,7 @@ bool intel_dp_hdcp_check_link(struct intel_digital_port *intel_dig_port) ret = drm_dp_dpcd_read(&intel_dig_port->dp.aux, DP_AUX_HDCP_BSTATUS, &bstatus, 1); if (ret != 1) { - DRM_ERROR("Read bstatus from DP/AUX failed (%zd)\n", ret); + DRM_DEBUG_KMS("Read bstatus from DP/AUX failed (%zd)\n", ret); return false; } @@ -5565,6 +5815,7 @@ static const struct intel_hdcp_shim intel_dp_hdcp_shim = { static void intel_edp_panel_vdd_sanitize(struct intel_dp *intel_dp) { struct drm_i915_private *dev_priv = dp_to_i915(intel_dp); + struct intel_digital_port *dig_port = dp_to_dig_port(intel_dp); lockdep_assert_held(&dev_priv->pps_mutex); @@ -5578,7 +5829,7 @@ static void intel_edp_panel_vdd_sanitize(struct intel_dp *intel_dp) * indefinitely. */ DRM_DEBUG_KMS("VDD left on by BIOS, adjusting state tracking\n"); - intel_display_power_get(dev_priv, intel_dp->aux_power_domain); + intel_display_power_get(dev_priv, intel_aux_power_domain(dig_port)); edp_panel_vdd_schedule_off(intel_dp); } @@ -5601,6 +5852,7 @@ void intel_dp_encoder_reset(struct drm_encoder *encoder) struct drm_i915_private *dev_priv = to_i915(encoder->dev); struct intel_dp *intel_dp = enc_to_intel_dp(encoder); struct intel_lspcon *lspcon = dp_to_lspcon(intel_dp); + intel_wakeref_t wakeref; if (!HAS_DDI(dev_priv)) intel_dp->DP = I915_READ(intel_dp->output_reg); @@ -5610,18 +5862,19 @@ void intel_dp_encoder_reset(struct drm_encoder *encoder) intel_dp->reset_link_params = true; - pps_lock(intel_dp); - - if (IS_VALLEYVIEW(dev_priv) || IS_CHERRYVIEW(dev_priv)) - intel_dp->active_pipe = vlv_active_pipe(intel_dp); + with_pps_lock(intel_dp, wakeref) { + if (IS_VALLEYVIEW(dev_priv) || IS_CHERRYVIEW(dev_priv)) + intel_dp->active_pipe = vlv_active_pipe(intel_dp); - if (intel_dp_is_edp(intel_dp)) { - /* Reinit the power sequencer, in case BIOS did something with it. */ - intel_dp_pps_init(intel_dp); - intel_edp_panel_vdd_sanitize(intel_dp); + if (intel_dp_is_edp(intel_dp)) { + /* + * Reinit the power sequencer, in case BIOS did + * something nasty with it. + */ + intel_dp_pps_init(intel_dp); + intel_edp_panel_vdd_sanitize(intel_dp); + } } - - pps_unlock(intel_dp); } static const struct drm_connector_funcs intel_dp_connector_funcs = { @@ -5631,7 +5884,7 @@ static const struct drm_connector_funcs intel_dp_connector_funcs = { .atomic_set_property = intel_digital_connector_atomic_set_property, .late_register = intel_dp_connector_register, .early_unregister = intel_dp_connector_unregister, - .destroy = intel_dp_connector_destroy, + .destroy = intel_connector_destroy, .atomic_destroy_state = drm_atomic_helper_connector_destroy_state, .atomic_duplicate_state = intel_digital_connector_duplicate_state, }; @@ -5654,6 +5907,7 @@ intel_dp_hpd_pulse(struct intel_digital_port *intel_dig_port, bool long_hpd) struct intel_dp *intel_dp = &intel_dig_port->dp; struct drm_i915_private *dev_priv = dp_to_i915(intel_dp); enum irqreturn ret = IRQ_NONE; + intel_wakeref_t wakeref; if (long_hpd && intel_dig_port->base.type == INTEL_OUTPUT_EDP) { /* @@ -5673,11 +5927,11 @@ intel_dp_hpd_pulse(struct intel_digital_port *intel_dig_port, bool long_hpd) if (long_hpd) { intel_dp->reset_link_params = true; - intel_dp->detect_done = false; return IRQ_NONE; } - intel_display_power_get(dev_priv, intel_dp->aux_power_domain); + wakeref = intel_display_power_get(dev_priv, + intel_aux_power_domain(intel_dig_port)); if (intel_dp->is_mst) { if (intel_dp_check_mst_status(intel_dp) == -EINVAL) { @@ -5690,7 +5944,6 @@ intel_dp_hpd_pulse(struct intel_digital_port *intel_dig_port, bool long_hpd) intel_dp->is_mst = false; drm_dp_mst_topology_mgr_set_mst(&intel_dp->mst_mgr, intel_dp->is_mst); - intel_dp->detect_done = false; goto put_power; } } @@ -5700,19 +5953,16 @@ intel_dp_hpd_pulse(struct intel_digital_port *intel_dig_port, bool long_hpd) handled = intel_dp_short_pulse(intel_dp); - /* Short pulse can signify loss of hdcp authentication */ - intel_hdcp_check_link(intel_dp->attached_connector); - - if (!handled) { - intel_dp->detect_done = false; + if (!handled) goto put_power; - } } ret = IRQ_HANDLED; put_power: - intel_display_power_put(dev_priv, intel_dp->aux_power_domain); + intel_display_power_put(dev_priv, + intel_aux_power_domain(intel_dig_port), + wakeref); return ret; } @@ -5743,12 +5993,16 @@ intel_dp_add_properties(struct intel_dp *intel_dp, struct drm_connector *connect intel_attach_force_audio_property(connector); intel_attach_broadcast_rgb_property(connector); + if (HAS_GMCH(dev_priv)) + drm_connector_attach_max_bpc_property(connector, 6, 10); + else if (INTEL_GEN(dev_priv) >= 5) + drm_connector_attach_max_bpc_property(connector, 6, 12); if (intel_dp_is_edp(intel_dp)) { u32 allowed_scalers; allowed_scalers = BIT(DRM_MODE_SCALE_ASPECT) | BIT(DRM_MODE_SCALE_FULLSCREEN); - if (!HAS_GMCH_DISPLAY(dev_priv)) + if (!HAS_GMCH(dev_priv)) allowed_scalers |= BIT(DRM_MODE_SCALE_CENTER); drm_connector_attach_scaling_mode_property(connector, allowed_scalers); @@ -6099,10 +6353,10 @@ static void intel_dp_set_drrs_state(struct drm_i915_private *dev_priv, if (INTEL_GEN(dev_priv) >= 8 && !IS_CHERRYVIEW(dev_priv)) { switch (index) { case DRRS_HIGH_RR: - intel_dp_set_m_n(intel_crtc, M1_N1); + intel_dp_set_m_n(crtc_state, M1_N1); break; case DRRS_LOW_RR: - intel_dp_set_m_n(intel_crtc, M2_N2); + intel_dp_set_m_n(crtc_state, M2_N2); break; case DRRS_MAX_RR: default: @@ -6155,8 +6409,8 @@ void intel_edp_drrs_enable(struct intel_dp *intel_dp, } mutex_lock(&dev_priv->drrs.mutex); - if (WARN_ON(dev_priv->drrs.dp)) { - DRM_ERROR("DRRS already enabled\n"); + if (dev_priv->drrs.dp) { + DRM_DEBUG_KMS("DRRS already enabled\n"); goto unlock; } @@ -6416,12 +6670,15 @@ static bool intel_edp_init_connector(struct intel_dp *intel_dp, struct drm_display_mode *downclock_mode = NULL; bool has_dpcd; struct drm_display_mode *scan; - struct edid *edid; enum pipe pipe = INVALID_PIPE; + intel_wakeref_t wakeref; + struct edid *edid; if (!intel_dp_is_edp(intel_dp)) return true; + INIT_DELAYED_WORK(&intel_dp->panel_vdd_work, edp_panel_vdd_work); + /* * On IBX/CPT we may get here with LVDS already registered. Since the * driver uses the only internal power sequencer available for both @@ -6435,13 +6692,11 @@ static bool intel_edp_init_connector(struct intel_dp *intel_dp, return false; } - pps_lock(intel_dp); - - intel_dp_init_panel_power_timestamps(intel_dp); - intel_dp_pps_init(intel_dp); - intel_edp_panel_vdd_sanitize(intel_dp); - - pps_unlock(intel_dp); + with_pps_lock(intel_dp, wakeref) { + intel_dp_init_panel_power_timestamps(intel_dp); + intel_dp_pps_init(intel_dp); + intel_edp_panel_vdd_sanitize(intel_dp); + } /* Cache DPCD and EDID for edp. */ has_dpcd = intel_edp_init_dpcd(intel_dp); @@ -6514,6 +6769,10 @@ static bool intel_edp_init_connector(struct intel_dp *intel_dp, intel_connector->panel.backlight.power = intel_edp_backlight_power; intel_panel_setup_backlight(connector, pipe); + if (fixed_mode) + drm_connector_init_panel_orientation_property( + connector, fixed_mode->hdisplay, fixed_mode->vdisplay); + return true; out_vdd_off: @@ -6522,9 +6781,8 @@ out_vdd_off: * vdd might still be enabled do to the delayed vdd off. * Make sure vdd is actually turned off here. */ - pps_lock(intel_dp); - edp_panel_vdd_off_sync(intel_dp); - pps_unlock(intel_dp); + with_pps_lock(intel_dp, wakeref) + edp_panel_vdd_off_sync(intel_dp); return false; } @@ -6616,7 +6874,7 @@ intel_dp_init_connector(struct intel_digital_port *intel_dig_port, drm_connector_init(dev, connector, &intel_dp_connector_funcs, type); drm_connector_helper_add(connector, &intel_dp_connector_helper_funcs); - if (!HAS_GMCH_DISPLAY(dev_priv)) + if (!HAS_GMCH(dev_priv)) connector->interlace_allowed = true; connector->doublescan_allowed = 0; @@ -6624,9 +6882,6 @@ intel_dp_init_connector(struct intel_digital_port *intel_dig_port, intel_dp_aux_init(intel_dp); - INIT_DELAYED_WORK(&intel_dp->panel_vdd_work, - edp_panel_vdd_work); - intel_connector_attach_encoder(intel_connector, intel_encoder); if (HAS_DDI(dev_priv)) @@ -6701,6 +6956,7 @@ bool intel_dp_init(struct drm_i915_private *dev_priv, intel_encoder->compute_config = intel_dp_compute_config; intel_encoder->get_hw_state = intel_dp_get_hw_state; intel_encoder->get_config = intel_dp_get_config; + intel_encoder->update_pipe = intel_panel_update_backlight; intel_encoder->suspend = intel_dp_encoder_suspend; if (IS_CHERRYVIEW(dev_priv)) { intel_encoder->pre_pll_enable = chv_dp_pre_pll_enable; @@ -6743,6 +6999,7 @@ bool intel_dp_init(struct drm_i915_private *dev_priv, if (port != PORT_A) intel_infoframe_init(intel_dig_port); + intel_dig_port->aux_ch = intel_bios_port_aux_ch(dev_priv, port); if (!intel_dp_init_connector(intel_dig_port, intel_connector)) goto err_init_connector; @@ -6794,7 +7051,10 @@ void intel_dp_mst_resume(struct drm_i915_private *dev_priv) continue; ret = drm_dp_mst_topology_mgr_resume(&intel_dp->mst_mgr); - if (ret) - intel_dp_check_mst_status(intel_dp); + if (ret) { + intel_dp->is_mst = false; + drm_dp_mst_topology_mgr_set_mst(&intel_dp->mst_mgr, + false); + } } } |