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-rw-r--r--third_party/aom/av1/common/reconintra.h98
1 files changed, 61 insertions, 37 deletions
diff --git a/third_party/aom/av1/common/reconintra.h b/third_party/aom/av1/common/reconintra.h
index 42797e310..a7d9e8b79 100644
--- a/third_party/aom/av1/common/reconintra.h
+++ b/third_party/aom/av1/common/reconintra.h
@@ -22,15 +22,16 @@ extern "C" {
void av1_init_intra_predictors(void);
void av1_predict_intra_block_facade(const AV1_COMMON *cm, MACROBLOCKD *xd,
- int plane, int block_idx, int blk_col,
- int blk_row, TX_SIZE tx_size);
+ int plane, int blk_col, int blk_row,
+ TX_SIZE tx_size);
void av1_predict_intra_block(const AV1_COMMON *cm, const MACROBLOCKD *xd,
- int bw, int bh, BLOCK_SIZE bsize,
- PREDICTION_MODE mode, const uint8_t *ref,
- int ref_stride, uint8_t *dst, int dst_stride,
- int aoff, int loff, int plane);
+ int bw, int bh, TX_SIZE tx_size,
+ PREDICTION_MODE mode, int angle_delta,
+ int use_palette,
+ FILTER_INTRA_MODE filter_intra_mode,
+ const uint8_t *ref, int ref_stride, uint8_t *dst,
+ int dst_stride, int aoff, int loff, int plane);
-#if CONFIG_INTERINTRA
// Mapping of interintra to intra mode for use in the intra component
static const PREDICTION_MODE interintra_to_intra_mode[INTERINTRA_MODES] = {
DC_PRED, V_PRED, H_PRED, SMOOTH_PRED
@@ -41,44 +42,67 @@ static const INTERINTRA_MODE intra_to_interintra_mode[INTRA_MODES] = {
II_DC_PRED, II_V_PRED, II_H_PRED, II_V_PRED, II_SMOOTH_PRED, II_V_PRED,
II_H_PRED, II_H_PRED, II_V_PRED, II_SMOOTH_PRED, II_SMOOTH_PRED
};
-#endif // CONFIG_INTERINTRA
-
-#if CONFIG_FILTER_INTRA
-#define FILTER_INTRA_PREC_BITS 10
-#endif // CONFIG_FILTER_INTRA
-
-#define CONFIG_INTRA_EDGE_UPSAMPLE CONFIG_INTRA_EDGE
-#define CONFIG_USE_ANGLE_DELTA_SUB8X8 0
-
-#if CONFIG_EXT_INTRA
-static INLINE int av1_is_directional_mode(PREDICTION_MODE mode,
- BLOCK_SIZE bsize) {
-#if CONFIG_INTRA_EDGE_UPSAMPLE
- (void)bsize;
- return mode >= V_PRED && mode <= D63_PRED;
-#else
- return mode >= V_PRED && mode <= D63_PRED && bsize >= BLOCK_8X8;
-#endif
+
+#define FILTER_INTRA_SCALE_BITS 4
+
+static INLINE int av1_is_directional_mode(PREDICTION_MODE mode) {
+ return mode >= V_PRED && mode <= D67_PRED;
}
static INLINE int av1_use_angle_delta(BLOCK_SIZE bsize) {
- (void)bsize;
-#if CONFIG_USE_ANGLE_DELTA_SUB8X8
- return 1;
-#else
return bsize >= BLOCK_8X8;
-#endif
}
-#endif // CONFIG_EXT_INTRA
-#if CONFIG_INTRABC
-static INLINE int av1_allow_intrabc(BLOCK_SIZE bsize,
- const AV1_COMMON *const cm) {
- return (bsize >= BLOCK_8X8 || bsize == BLOCK_4X4) &&
- cm->allow_screen_content_tools;
+static INLINE int av1_allow_intrabc(const AV1_COMMON *const cm) {
+ return frame_is_intra_only(cm) && cm->allow_screen_content_tools &&
+ cm->allow_intrabc;
+}
+
+static INLINE int av1_filter_intra_allowed_bsize(const AV1_COMMON *const cm,
+ BLOCK_SIZE bs) {
+ if (!cm->seq_params.enable_filter_intra || bs == BLOCK_INVALID) return 0;
+
+ return block_size_wide[bs] <= 32 && block_size_high[bs] <= 32;
}
-#endif // CONFIG_INTRABC
+static INLINE int av1_filter_intra_allowed(const AV1_COMMON *const cm,
+ const MB_MODE_INFO *mbmi) {
+ return mbmi->mode == DC_PRED &&
+ mbmi->palette_mode_info.palette_size[0] == 0 &&
+ av1_filter_intra_allowed_bsize(cm, mbmi->sb_type);
+}
+
+extern const int8_t av1_filter_intra_taps[FILTER_INTRA_MODES][8][8];
+
+// Get the shift (up-scaled by 256) in X w.r.t a unit change in Y.
+// If angle > 0 && angle < 90, dx = -((int)(256 / t));
+// If angle > 90 && angle < 180, dx = (int)(256 / t);
+// If angle > 180 && angle < 270, dx = 1;
+static INLINE int av1_get_dx(int angle) {
+ if (angle > 0 && angle < 90) {
+ return dr_intra_derivative[angle];
+ } else if (angle > 90 && angle < 180) {
+ return dr_intra_derivative[180 - angle];
+ } else {
+ // In this case, we are not really going to use dx. We may return any value.
+ return 1;
+ }
+}
+
+// Get the shift (up-scaled by 256) in Y w.r.t a unit change in X.
+// If angle > 0 && angle < 90, dy = 1;
+// If angle > 90 && angle < 180, dy = (int)(256 * t);
+// If angle > 180 && angle < 270, dy = -((int)(256 * t));
+static INLINE int av1_get_dy(int angle) {
+ if (angle > 90 && angle < 180) {
+ return dr_intra_derivative[angle - 90];
+ } else if (angle > 180 && angle < 270) {
+ return dr_intra_derivative[270 - angle];
+ } else {
+ // In this case, we are not really going to use dy. We may return any value.
+ return 1;
+ }
+}
#ifdef __cplusplus
} // extern "C"
#endif