struct drm_display_mode *mode,
struct drm_display_mode *adjusted_mode)
{
- struct mdp5_encoder *mdp5_cmd_enc = to_mdp5_encoder(encoder);
-
mode = adjusted_mode;
DBG("set mode: %d:\"%s\" %d %d %d %d %d %d %d %d %d %d 0x%x 0x%x",
mode->vsync_end, mode->vtotal,
mode->type, mode->flags);
pingpong_tearcheck_setup(encoder, mode);
- mdp5_crtc_set_pipeline(encoder->crtc, mdp5_cmd_enc->intf,
- mdp5_cmd_enc->ctl);
+ mdp5_crtc_set_pipeline(encoder->crtc);
}
void mdp5_cmd_encoder_disable(struct drm_encoder *encoder)
struct mdp5_encoder *mdp5_cmd_enc = to_mdp5_encoder(encoder);
struct mdp5_ctl *ctl = mdp5_cmd_enc->ctl;
struct mdp5_interface *intf = mdp5_cmd_enc->intf;
+ struct mdp5_pipeline *pipeline = mdp5_crtc_get_pipeline(encoder->crtc);
if (WARN_ON(!mdp5_cmd_enc->enabled))
return;
pingpong_tearcheck_disable(encoder);
- mdp5_ctl_set_encoder_state(ctl, false);
- mdp5_ctl_commit(ctl, mdp_ctl_flush_mask_encoder(intf));
+ mdp5_ctl_set_encoder_state(ctl, pipeline, false);
+ mdp5_ctl_commit(ctl, pipeline, mdp_ctl_flush_mask_encoder(intf));
bs_set(mdp5_cmd_enc, 0);
struct mdp5_encoder *mdp5_cmd_enc = to_mdp5_encoder(encoder);
struct mdp5_ctl *ctl = mdp5_cmd_enc->ctl;
struct mdp5_interface *intf = mdp5_cmd_enc->intf;
+ struct mdp5_pipeline *pipeline = mdp5_crtc_get_pipeline(encoder->crtc);
if (WARN_ON(mdp5_cmd_enc->enabled))
return;
if (pingpong_tearcheck_enable(encoder))
return;
- mdp5_ctl_commit(ctl, mdp_ctl_flush_mask_encoder(intf));
+ mdp5_ctl_commit(ctl, pipeline, mdp_ctl_flush_mask_encoder(intf));
- mdp5_ctl_set_encoder_state(ctl, true);
+ mdp5_ctl_set_encoder_state(ctl, pipeline, true);
mdp5_cmd_enc->enabled = true;
}
{
struct mdp5_crtc_state *mdp5_cstate = to_mdp5_crtc_state(crtc->state);
struct mdp5_ctl *ctl = mdp5_cstate->ctl;
+ struct mdp5_pipeline *pipeline = &mdp5_cstate->pipeline;
DBG("%s: flush=%08x", crtc->name, flush_mask);
- return mdp5_ctl_commit(ctl, flush_mask);
+ return mdp5_ctl_commit(ctl, pipeline, flush_mask);
}
/*
static void complete_flip(struct drm_crtc *crtc, struct drm_file *file)
{
struct mdp5_crtc_state *mdp5_cstate = to_mdp5_crtc_state(crtc->state);
+ struct mdp5_pipeline *pipeline = &mdp5_cstate->pipeline;
struct mdp5_crtc *mdp5_crtc = to_mdp5_crtc(crtc);
struct mdp5_ctl *ctl = mdp5_cstate->ctl;
struct drm_device *dev = crtc->dev;
if (ctl && !crtc->state->enable) {
/* set STAGE_UNUSED for all layers */
- mdp5_ctl_blend(ctl, NULL, 0, 0);
+ mdp5_ctl_blend(ctl, pipeline, NULL, 0, 0);
/* XXX: What to do here? */
/* mdp5_crtc->ctl = NULL; */
}
{
struct mdp5_crtc *mdp5_crtc = to_mdp5_crtc(crtc);
struct mdp5_crtc_state *mdp5_cstate = to_mdp5_crtc_state(crtc->state);
+ struct mdp5_pipeline *pipeline = &mdp5_cstate->pipeline;
struct mdp5_kms *mdp5_kms = get_kms(crtc);
struct drm_plane *plane;
const struct mdp5_cfg_hw *hw_cfg;
struct mdp5_plane_state *pstate, *pstates[STAGE_MAX + 1] = {NULL};
const struct mdp_format *format;
- struct mdp5_hw_mixer *mixer = mdp5_cstate->pipeline.mixer;
+ struct mdp5_hw_mixer *mixer = pipeline->mixer;
uint32_t lm = mixer->lm;
struct mdp5_ctl *ctl = mdp5_cstate->ctl;
uint32_t blend_op, fg_alpha, bg_alpha, ctl_blend_flags = 0;
mdp5_write(mdp5_kms, REG_MDP5_LM_BLEND_COLOR_OUT(lm), mixer_op_mode);
- mdp5_ctl_blend(ctl, stage, plane_cnt, ctl_blend_flags);
+ mdp5_ctl_blend(ctl, pipeline, stage, plane_cnt, ctl_blend_flags);
out:
spin_unlock_irqrestore(&mdp5_crtc->lm_lock, flags);
{
struct mdp5_crtc *mdp5_crtc = to_mdp5_crtc(crtc);
struct mdp5_crtc_state *mdp5_cstate = to_mdp5_crtc_state(crtc->state);
+ struct mdp5_pipeline *pipeline = &mdp5_cstate->pipeline;
struct drm_device *dev = crtc->dev;
struct mdp5_kms *mdp5_kms = get_kms(crtc);
struct drm_gem_object *cursor_bo, *old_bo = NULL;
spin_unlock_irqrestore(&mdp5_crtc->cursor.lock, flags);
set_cursor:
- ret = mdp5_ctl_set_cursor(ctl, 0, cursor_enable);
+ ret = mdp5_ctl_set_cursor(ctl, pipeline, 0, cursor_enable);
if (ret) {
dev_err(dev->dev, "failed to %sable cursor: %d\n",
cursor_enable ? "en" : "dis", ret);
return mdp5_crtc->vblank.irqmask;
}
-void mdp5_crtc_set_pipeline(struct drm_crtc *crtc,
- struct mdp5_interface *intf, struct mdp5_ctl *ctl)
+void mdp5_crtc_set_pipeline(struct drm_crtc *crtc)
{
struct mdp5_crtc_state *mdp5_cstate = to_mdp5_crtc_state(crtc->state);
- struct mdp5_hw_mixer *mixer = mdp5_cstate->pipeline.mixer;
struct mdp5_kms *mdp5_kms = get_kms(crtc);
/* should this be done elsewhere ? */
mdp_irq_update(&mdp5_kms->base);
- mdp5_ctl_set_pipeline(ctl, intf, mixer);
+ mdp5_ctl_set_pipeline(mdp5_cstate->ctl, &mdp5_cstate->pipeline);
}
struct mdp5_ctl *mdp5_crtc_get_ctl(struct drm_crtc *crtc)
ERR_PTR(-EINVAL) : mdp5_cstate->pipeline.mixer;
}
+struct mdp5_pipeline *mdp5_crtc_get_pipeline(struct drm_crtc *crtc)
+{
+ struct mdp5_crtc_state *mdp5_cstate;
+
+ if (WARN_ON(!crtc))
+ return ERR_PTR(-EINVAL);
+
+ mdp5_cstate = to_mdp5_crtc_state(crtc->state);
+
+ return &mdp5_cstate->pipeline;
+}
+
void mdp5_crtc_wait_for_commit_done(struct drm_crtc *crtc)
{
struct mdp5_crtc_state *mdp5_cstate = to_mdp5_crtc_state(crtc->state);
struct mdp5_ctl_manager *ctlm;
u32 id;
- struct mdp5_hw_mixer *mixer;
/* CTL status bitmask */
u32 status;
- /* Operation Mode Configuration for the Pipeline */
- struct mdp5_interface *intf;
-
bool encoder_enabled;
uint32_t start_mask;
spin_unlock_irqrestore(&ctl->hw_lock, flags);
}
-int mdp5_ctl_set_pipeline(struct mdp5_ctl *ctl, struct mdp5_interface *intf,
- struct mdp5_hw_mixer *mixer)
+int mdp5_ctl_set_pipeline(struct mdp5_ctl *ctl, struct mdp5_pipeline *pipeline)
{
struct mdp5_ctl_manager *ctl_mgr = ctl->ctlm;
struct mdp5_kms *mdp5_kms = get_kms(ctl_mgr);
-
- ctl->mixer = mixer;
- ctl->intf = intf;
+ struct mdp5_interface *intf = pipeline->intf;
+ struct mdp5_hw_mixer *mixer = pipeline->mixer;
ctl->start_mask = mdp_ctl_flush_mask_lm(mixer->lm) |
mdp_ctl_flush_mask_encoder(intf);
return 0;
}
-static bool start_signal_needed(struct mdp5_ctl *ctl)
+static bool start_signal_needed(struct mdp5_ctl *ctl,
+ struct mdp5_pipeline *pipeline)
{
+ struct mdp5_interface *intf = pipeline->intf;
+
if (!ctl->encoder_enabled || ctl->start_mask != 0)
return false;
- switch (ctl->intf->type) {
+ switch (intf->type) {
case INTF_WB:
return true;
case INTF_DSI:
- return ctl->intf->mode == MDP5_INTF_DSI_MODE_COMMAND;
+ return intf->mode == MDP5_INTF_DSI_MODE_COMMAND;
default:
return false;
}
spin_unlock_irqrestore(&ctl->hw_lock, flags);
}
-static void refill_start_mask(struct mdp5_ctl *ctl)
+static void refill_start_mask(struct mdp5_ctl *ctl,
+ struct mdp5_pipeline *pipeline)
{
- struct mdp5_interface *intf = ctl->intf;
+ struct mdp5_interface *intf = pipeline->intf;
+ struct mdp5_hw_mixer *mixer = pipeline->mixer;
- ctl->start_mask = mdp_ctl_flush_mask_lm(ctl->mixer->lm);
+ ctl->start_mask = mdp_ctl_flush_mask_lm(mixer->lm);
/*
* Writeback encoder needs to program & flush
* Note:
* This encoder state is needed to trigger START signal (data path kickoff).
*/
-int mdp5_ctl_set_encoder_state(struct mdp5_ctl *ctl, bool enabled)
+int mdp5_ctl_set_encoder_state(struct mdp5_ctl *ctl,
+ struct mdp5_pipeline *pipeline,
+ bool enabled)
{
+ struct mdp5_interface *intf = pipeline->intf;
+
if (WARN_ON(!ctl))
return -EINVAL;
ctl->encoder_enabled = enabled;
- DBG("intf_%d: %s", ctl->intf->num, enabled ? "on" : "off");
+ DBG("intf_%d: %s", intf->num, enabled ? "on" : "off");
- if (start_signal_needed(ctl)) {
+ if (start_signal_needed(ctl, pipeline)) {
send_start_signal(ctl);
- refill_start_mask(ctl);
+ refill_start_mask(ctl, pipeline);
}
return 0;
* CTL registers need to be flushed after calling this function
* (call mdp5_ctl_commit() with mdp_ctl_flush_mask_ctl() mask)
*/
-int mdp5_ctl_set_cursor(struct mdp5_ctl *ctl, int cursor_id, bool enable)
+int mdp5_ctl_set_cursor(struct mdp5_ctl *ctl, struct mdp5_pipeline *pipeline,
+ int cursor_id, bool enable)
{
struct mdp5_ctl_manager *ctl_mgr = ctl->ctlm;
unsigned long flags;
u32 blend_cfg;
- struct mdp5_hw_mixer *mixer = ctl->mixer;
+ struct mdp5_hw_mixer *mixer = pipeline->mixer;
if (unlikely(WARN_ON(!mixer))) {
dev_err(ctl_mgr->dev->dev, "CTL %d cannot find LM",
}
}
-int mdp5_ctl_blend(struct mdp5_ctl *ctl, enum mdp5_pipe *stage, u32 stage_cnt,
- u32 ctl_blend_op_flags)
+int mdp5_ctl_blend(struct mdp5_ctl *ctl, struct mdp5_pipeline *pipeline,
+ enum mdp5_pipe *stage, u32 stage_cnt, u32 ctl_blend_op_flags)
{
- struct mdp5_hw_mixer *mixer = ctl->mixer;
+ struct mdp5_hw_mixer *mixer = pipeline->mixer;
unsigned long flags;
u32 blend_cfg = 0, blend_ext_cfg = 0;
int i, start_stage;
}
}
-static u32 fix_sw_flush(struct mdp5_ctl *ctl, u32 flush_mask)
+static u32 fix_sw_flush(struct mdp5_ctl *ctl, struct mdp5_pipeline *pipeline,
+ u32 flush_mask)
{
struct mdp5_ctl_manager *ctl_mgr = ctl->ctlm;
u32 sw_mask = 0;
/* for some targets, cursor bit is the same as LM bit */
if (BIT_NEEDS_SW_FIX(MDP5_CTL_FLUSH_CURSOR_0))
- sw_mask |= mdp_ctl_flush_mask_lm(ctl->mixer->lm);
+ sw_mask |= mdp_ctl_flush_mask_lm(pipeline->mixer->lm);
return sw_mask;
}
*
* Return H/W flushed bit mask.
*/
-u32 mdp5_ctl_commit(struct mdp5_ctl *ctl, u32 flush_mask)
+u32 mdp5_ctl_commit(struct mdp5_ctl *ctl,
+ struct mdp5_pipeline *pipeline,
+ u32 flush_mask)
{
struct mdp5_ctl_manager *ctl_mgr = ctl->ctlm;
unsigned long flags;
ctl->pending_ctl_trigger = 0;
}
- flush_mask |= fix_sw_flush(ctl, flush_mask);
+ flush_mask |= fix_sw_flush(ctl, pipeline, flush_mask);
flush_mask &= ctl_mgr->flush_hw_mask;
spin_unlock_irqrestore(&ctl->hw_lock, flags);
}
- if (start_signal_needed(ctl)) {
+ if (start_signal_needed(ctl, pipeline)) {
send_start_signal(ctl);
- refill_start_mask(ctl);
+ refill_start_mask(ctl, pipeline);
}
return curr_ctl_flush_mask;
found:
ctl = &ctl_mgr->ctls[c];
- ctl->mixer = NULL;
ctl->status |= CTL_STAT_BUSY;
ctl->pending_ctl_trigger = 0;
DBG("CTL %d allocated", ctl->id);
int mdp5_ctl_get_ctl_id(struct mdp5_ctl *ctl);
struct mdp5_interface;
-int mdp5_ctl_set_pipeline(struct mdp5_ctl *ctl, struct mdp5_interface *intf,
- struct mdp5_hw_mixer *lm);
-int mdp5_ctl_set_encoder_state(struct mdp5_ctl *ctl, bool enabled);
+struct mdp5_pipeline;
+int mdp5_ctl_set_pipeline(struct mdp5_ctl *ctl, struct mdp5_pipeline *p);
+int mdp5_ctl_set_encoder_state(struct mdp5_ctl *ctl, struct mdp5_pipeline *p,
+ bool enabled);
-int mdp5_ctl_set_cursor(struct mdp5_ctl *ctl, int cursor_id, bool enable);
+int mdp5_ctl_set_cursor(struct mdp5_ctl *ctl, struct mdp5_pipeline *pipeline,
+ int cursor_id, bool enable);
int mdp5_ctl_pair(struct mdp5_ctl *ctlx, struct mdp5_ctl *ctly, bool enable);
/*
* (call mdp5_ctl_commit() with mdp_ctl_flush_mask_ctl() mask)
*/
#define MDP5_CTL_BLEND_OP_FLAG_BORDER_OUT BIT(0)
-int mdp5_ctl_blend(struct mdp5_ctl *ctl, enum mdp5_pipe *stage, u32 stage_cnt,
+int mdp5_ctl_blend(struct mdp5_ctl *ctl, struct mdp5_pipeline *pipeline,
+ enum mdp5_pipe *stage, u32 stage_cnt,
u32 ctl_blend_op_flags);
/**
u32 mdp_ctl_flush_mask_encoder(struct mdp5_interface *intf);
/* @flush_mask: see CTL flush masks definitions below */
-u32 mdp5_ctl_commit(struct mdp5_ctl *ctl, u32 flush_mask);
+u32 mdp5_ctl_commit(struct mdp5_ctl *ctl, struct mdp5_pipeline *pipeline,
+ u32 flush_mask);
u32 mdp5_ctl_get_commit_status(struct mdp5_ctl *ctl);
spin_unlock_irqrestore(&mdp5_encoder->intf_lock, flags);
- mdp5_crtc_set_pipeline(encoder->crtc, mdp5_encoder->intf,
- mdp5_encoder->ctl);
+ mdp5_crtc_set_pipeline(encoder->crtc);
}
static void mdp5_vid_encoder_disable(struct drm_encoder *encoder)
struct mdp5_encoder *mdp5_encoder = to_mdp5_encoder(encoder);
struct mdp5_kms *mdp5_kms = get_kms(encoder);
struct mdp5_ctl *ctl = mdp5_encoder->ctl;
+ struct mdp5_pipeline *pipeline = mdp5_crtc_get_pipeline(encoder->crtc);
struct mdp5_hw_mixer *mixer = mdp5_crtc_get_mixer(encoder->crtc);
struct mdp5_interface *intf = mdp5_encoder->intf;
int intfn = mdp5_encoder->intf->num;
if (WARN_ON(!mdp5_encoder->enabled))
return;
- mdp5_ctl_set_encoder_state(ctl, false);
+ mdp5_ctl_set_encoder_state(ctl, pipeline, false);
spin_lock_irqsave(&mdp5_encoder->intf_lock, flags);
mdp5_write(mdp5_kms, REG_MDP5_INTF_TIMING_ENGINE_EN(intfn), 0);
spin_unlock_irqrestore(&mdp5_encoder->intf_lock, flags);
- mdp5_ctl_commit(ctl, mdp_ctl_flush_mask_encoder(intf));
+ mdp5_ctl_commit(ctl, pipeline, mdp_ctl_flush_mask_encoder(intf));
/*
* Wait for a vsync so we know the ENABLE=0 latched before
struct mdp5_kms *mdp5_kms = get_kms(encoder);
struct mdp5_ctl *ctl = mdp5_encoder->ctl;
struct mdp5_interface *intf = mdp5_encoder->intf;
+ struct mdp5_pipeline *pipeline = mdp5_crtc_get_pipeline(encoder->crtc);
int intfn = intf->num;
unsigned long flags;
spin_lock_irqsave(&mdp5_encoder->intf_lock, flags);
mdp5_write(mdp5_kms, REG_MDP5_INTF_TIMING_ENGINE_EN(intfn), 1);
spin_unlock_irqrestore(&mdp5_encoder->intf_lock, flags);
- mdp5_ctl_commit(ctl, mdp_ctl_flush_mask_encoder(intf));
+ mdp5_ctl_commit(ctl, pipeline, mdp_ctl_flush_mask_encoder(intf));
- mdp5_ctl_set_encoder_state(ctl, true);
+ mdp5_ctl_set_encoder_state(ctl, pipeline, true);
mdp5_encoder->enabled = true;
}
uint32_t mdp5_crtc_vblank(struct drm_crtc *crtc);
struct mdp5_hw_mixer *mdp5_crtc_get_mixer(struct drm_crtc *crtc);
-void mdp5_crtc_set_pipeline(struct drm_crtc *crtc,
- struct mdp5_interface *intf, struct mdp5_ctl *ctl);
+struct mdp5_pipeline *mdp5_crtc_get_pipeline(struct drm_crtc *crtc);
+void mdp5_crtc_set_pipeline(struct drm_crtc *crtc);
void mdp5_crtc_wait_for_commit_done(struct drm_crtc *crtc);
struct drm_crtc *mdp5_crtc_init(struct drm_device *dev,
struct drm_plane *plane,
if (new_plane_state->visible) {
struct mdp5_ctl *ctl;
+ struct mdp5_pipeline *pipeline = mdp5_crtc_get_pipeline(crtc);
ret = mdp5_plane_mode_set(plane, crtc, fb,
&new_plane_state->src,
ctl = mdp5_crtc_get_ctl(crtc);
- mdp5_ctl_commit(ctl, mdp5_plane_get_flush(plane));
+ mdp5_ctl_commit(ctl, pipeline, mdp5_plane_get_flush(plane));
}
*to_mdp5_plane_state(plane_state) =