Split the CMRR M/N register programming into intel_vrr_enable_cmrr() and intel_vrr_disable_cmrr(), and drive them from intel_vrr_set_fixed_rr_timings() based on crtc_state->vrr.cmrr.enable.
VRR_CTL_CMRR_ENABLE is not set explicitly, writing TRANS_CMRR_N_HI arms CMRR in hardware. Drop the now-unused cmrr_enable argument to intel_vrr_tg_enable(). No functional change intended for non-CMRR configurations. --v2: - Commit message changes. - Added Simplified enable/disable sequence. (Chaitanya) --v3: - Guard CMRR enable condition (Chaitanya) - Comment changes updated (Chaitanya) - Squash register write commits together and avoid double writing issue. (Chaitanya) --v4: - Guard CMRR enable/disable with platform check Signed-off-by: Mitul Golani <[email protected]> Assisted-by: Claude:claude-opus-4-8 --- drivers/gpu/drm/i915/display/intel_vrr.c | 66 +++++++++++++++++------- 1 file changed, 47 insertions(+), 19 deletions(-) diff --git a/drivers/gpu/drm/i915/display/intel_vrr.c b/drivers/gpu/drm/i915/display/intel_vrr.c index e8c6516fd36a..6bc3ccd62513 100644 --- a/drivers/gpu/drm/i915/display/intel_vrr.c +++ b/drivers/gpu/drm/i915/display/intel_vrr.c @@ -195,6 +195,40 @@ static bool intel_vrr_cmrr_possible(const struct intel_crtc_state *crtc_state) return (HAS_CMRR(display) && intel_vrr_always_use_vrr_tg(display)); } +static void +intel_vrr_enable_cmrr(const struct intel_crtc_state *crtc_state) +{ + struct intel_display *display = to_intel_display(crtc_state); + enum transcoder cpu_transcoder = crtc_state->cpu_transcoder; + + if (!intel_vrr_cmrr_possible(crtc_state)) + return; + + intel_de_write(display, TRANS_CMRR_M_HI(display, cpu_transcoder), + upper_32_bits(crtc_state->vrr.cmrr.cmrr_m)); + intel_de_write(display, TRANS_CMRR_M_LO(display, cpu_transcoder), + lower_32_bits(crtc_state->vrr.cmrr.cmrr_m)); + intel_de_write(display, TRANS_CMRR_N_LO(display, cpu_transcoder), + lower_32_bits(crtc_state->vrr.cmrr.cmrr_n)); + intel_de_write(display, TRANS_CMRR_N_HI(display, cpu_transcoder), + upper_32_bits(crtc_state->vrr.cmrr.cmrr_n)); +} + +static void +intel_vrr_disable_cmrr(const struct intel_crtc_state *crtc_state) +{ + struct intel_display *display = to_intel_display(crtc_state); + enum transcoder cpu_transcoder = crtc_state->cpu_transcoder; + + if (!intel_vrr_cmrr_possible(crtc_state)) + return; + + intel_de_write(display, TRANS_CMRR_M_HI(display, cpu_transcoder), 0); + intel_de_write(display, TRANS_CMRR_M_LO(display, cpu_transcoder), 0); + intel_de_write(display, TRANS_CMRR_N_LO(display, cpu_transcoder), 0); + intel_de_write(display, TRANS_CMRR_N_HI(display, cpu_transcoder), 0); +} + static void intel_vrr_cmrr_compute_config(struct intel_crtc_state *crtc_state) { @@ -351,6 +385,11 @@ void intel_vrr_set_fixed_rr_timings(const struct intel_crtc_state *crtc_state, if (!intel_vrr_possible(crtc_state)) return; + if (crtc_state->vrr.cmrr.enable) + intel_vrr_enable_cmrr(crtc_state); + else + intel_vrr_disable_cmrr(crtc_state); + intel_de_write(display, TRANS_VRR_VMIN(display, transcoder), intel_vrr_fixed_rr_hw_vmin(crtc_state) - 1); intel_de_write(display, TRANS_VRR_VMAX(display, transcoder), @@ -662,17 +701,6 @@ void intel_vrr_set_transcoder_timings(const struct intel_crtc_state *crtc_state) return; } - if (crtc_state->vrr.cmrr.enable) { - intel_de_write(display, TRANS_CMRR_M_HI(display, cpu_transcoder), - upper_32_bits(crtc_state->vrr.cmrr.cmrr_m)); - intel_de_write(display, TRANS_CMRR_M_LO(display, cpu_transcoder), - lower_32_bits(crtc_state->vrr.cmrr.cmrr_m)); - intel_de_write(display, TRANS_CMRR_N_HI(display, cpu_transcoder), - upper_32_bits(crtc_state->vrr.cmrr.cmrr_n)); - intel_de_write(display, TRANS_CMRR_N_LO(display, cpu_transcoder), - lower_32_bits(crtc_state->vrr.cmrr.cmrr_n)); - } - intel_vrr_set_fixed_rr_timings(crtc_state, cpu_transcoder); intel_cmtg_set_vrr_timings(crtc_state); @@ -938,8 +966,7 @@ intel_vrr_disable_dc_balancing(const struct intel_crtc_state *old_crtc_state) intel_de_write(display, TRANS_VRR_CTL(display, cpu_transcoder), vrr_ctl); } -static void intel_vrr_tg_enable(const struct intel_crtc_state *crtc_state, - bool cmrr_enable) +static void intel_vrr_tg_enable(const struct intel_crtc_state *crtc_state) { struct intel_display *display = to_intel_display(crtc_state); enum transcoder cpu_transcoder = crtc_state->cpu_transcoder; @@ -951,11 +978,12 @@ static void intel_vrr_tg_enable(const struct intel_crtc_state *crtc_state, vrr_ctl = VRR_CTL_VRR_ENABLE | trans_vrr_ctl(crtc_state); /* - * FIXME this might be broken as bspec seems to imply that - * even VRR_CTL_CMRR_ENABLE is armed by TRANS_CMRR_N_HI - * when enabling CMRR (but not when disabling CMRR?). + * This full TRANS_VRR_CTL write is the authoritative one, so it must + * carry VRR_CTL_CMRR_ENABLE when CMRR is in use. Writing TRANS_CMRR_N_HI + * arms the bit in hardware, but this later write would otherwise clear + * it again. */ - if (cmrr_enable) + if (crtc_state->vrr.cmrr.enable) vrr_ctl |= VRR_CTL_CMRR_ENABLE; intel_de_write(display, TRANS_VRR_CTL(display, cpu_transcoder), vrr_ctl); @@ -991,7 +1019,7 @@ void intel_vrr_enable(const struct intel_crtc_state *crtc_state) intel_vrr_enable_dc_balancing(crtc_state); if (!intel_vrr_always_use_vrr_tg(display)) - intel_vrr_tg_enable(crtc_state, crtc_state->vrr.cmrr.enable); + intel_vrr_tg_enable(crtc_state); } void intel_vrr_disable(const struct intel_crtc_state *old_crtc_state) @@ -1018,7 +1046,7 @@ void intel_vrr_transcoder_enable(const struct intel_crtc_state *crtc_state) return; if (intel_vrr_always_use_vrr_tg(display)) - intel_vrr_tg_enable(crtc_state, false); + intel_vrr_tg_enable(crtc_state); } void intel_vrr_transcoder_disable(const struct intel_crtc_state *old_crtc_state) -- 2.48.1
