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x86: simple_idct10_template: fix overflow in pass
When the input of a pass has 15 or 16 bits of precision (in particular the column pass), the addition of a bias to W4 may lead to overflows in the input to pmaddwd. This requires postponing the adding of the bias to after the first butterfly. To do so, the fact that m15, unused although zeroed, is exploited. In case the pass is safe, an address can be directly used, and the number of xmm regs can be decreased. Otherwise, the 32bits bias is loaded into it. Signed-off-by: Michael Niedermayer <michael@niedermayer.cc>
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@ -37,17 +37,17 @@ cextern pw_1019
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section .text align=16
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%macro idct_put_fn 1
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cglobal prores_idct_put_10, 4, 4, %1
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%macro idct_put_fn 0
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cglobal prores_idct_put_10, 4, 4, 15
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IDCT_PUT_FN pw_1, 15, pw_88, 18, pw_4, pw_1019, r3
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RET
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%endmacro
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INIT_XMM sse2
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idct_put_fn 16
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idct_put_fn
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%if HAVE_AVX_EXTERNAL
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INIT_XMM avx
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idct_put_fn 16
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idct_put_fn
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%endif
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%endif
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@ -75,6 +75,7 @@ cextern w7_min_w5
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; a2 -= W6 * row[2];
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; a3 -= W2 * row[2];
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%ifstr %1
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mova m15, [pd_round_ %+ %2]
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%else
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paddw m10, [%1]
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%endif
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@ -87,6 +88,17 @@ cextern w7_min_w5
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pmaddwd m7, m1, [w4_min_w2]
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pmaddwd m0, [w4_plus_w2]
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pmaddwd m1, [w4_plus_w2]
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%ifstr %1
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; Adding 1<<(%2-1) for >=15 bits values
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paddd m2, m15
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paddd m3, m15
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paddd m4, m15
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paddd m5, m15
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paddd m6, m15
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paddd m7, m15
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paddd m0, m15
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paddd m1, m15
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%endif
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; a0: -1*row[0]-1*row[2]
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; a1: -1*row[0]
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@ -225,7 +237,6 @@ cextern w7_min_w5
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%macro IDCT_PUT_FN 6-7
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movsxd r1, r1d
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pxor m15, m15 ; zero
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; for (i = 0; i < 8; i++)
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; idctRowCondDC(block + i*8);
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