vp9: invert order of two conditions.
This makes it equal to row-based loopfilter code, and also makes the chroma/luma code identical.
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@ -3309,11 +3309,11 @@ static void loopfilter_sb(AVCodecContext *ctx, struct VP9Filter *lflvl,
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unsigned hm = hm1 | hm2 | hm13 | hm23;
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for (x = 1; hm & ~(x - 1); x <<= 1, ptr += 8, l++) {
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if (hm1 & x) {
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int L = *l, H = L >> 4;
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int E = s->filter.mblim_lut[L], I = s->filter.lim_lut[L];
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if (col || x > 1) {
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if (hm1 & x) {
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int L = *l, H = L >> 4;
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int E = s->filter.mblim_lut[L], I = s->filter.lim_lut[L];
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if (col || x > 1) {
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if (hmask1[0] & x) {
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if (hmask2[0] & x) {
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av_assert2(l[8] == L);
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@ -3333,12 +3333,10 @@ static void loopfilter_sb(AVCodecContext *ctx, struct VP9Filter *lflvl,
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s->dsp.loop_filter_8[!!(hmask1[1] & x)]
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[0](ptr, ls_y, E, I, H);
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}
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}
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} else if (hm2 & x) {
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int L = l[8], H = L >> 4;
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int E = s->filter.mblim_lut[L], I = s->filter.lim_lut[L];
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} else if (hm2 & x) {
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int L = l[8], H = L >> 4;
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int E = s->filter.mblim_lut[L], I = s->filter.lim_lut[L];
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if (col || x > 1) {
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s->dsp.loop_filter_8[!!(hmask2[1] & x)]
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[0](ptr + 8 * ls_y, ls_y, E, I, H);
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}
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