Ignore some UBSan errors
They proved to be too difficult to fix properly, so we revert the saturation fixes that were done in https://codereview.webrtc.org/2729573002 and https://codereview.webrtc.org/2746903002, and ignore them instead. BUG=webrtc:7307, chromium:709364, chromium:693868 Review-Url: https://codereview.webrtc.org/2809483002 Cr-Commit-Position: refs/heads/master@{#17612}
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@ -63,11 +63,6 @@ static __inline int WebRtcSpl_CountLeadingZeros64(uint64_t n) {
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#endif
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}
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static __inline int32_t WebRtcSpl_SatW64ToW32(int64_t x) {
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int32_t x32 = (int32_t)x;
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return x32 == x ? x32 : x < 0 ? INT32_MIN : INT32_MAX;
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}
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#ifdef WEBRTC_ARCH_ARM_V7
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#include "webrtc/common_audio/signal_processing/include/spl_inl_armv7.h"
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#else
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@ -26,7 +26,7 @@
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#include "lpc_tables.h"
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#include "settings.h"
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#include "signal_processing_library.h"
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#include "webrtc/base/checks.h"
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#include "webrtc/base/sanitizer.h"
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/*
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* Eenumerations for arguments to functions WebRtcIsacfix_MatrixProduct1()
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@ -189,6 +189,22 @@ static void CalcCorrelation(int32_t *PSpecQ12, int32_t *CorrQ7)
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}
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}
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// Some arithmetic operations that are allowed to overflow. (It's still
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// undefined behavior, so not a good idea; this just makes UBSan ignore the
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// violations, so that our old code can continue to do what it's always been
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// doing.)
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static inline int32_t OverflowingMulS16S32ToS32(int16_t a, int32_t b)
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RTC_NO_SANITIZE("signed-integer-overflow") {
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return a * b;
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}
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static inline int32_t OverflowingAddS32S32ToS32(int32_t a, int32_t b)
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RTC_NO_SANITIZE("signed-integer-overflow") {
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return a + b;
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}
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static inline int32_t OverflowingSubS32S32ToS32(int32_t a, int32_t b)
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RTC_NO_SANITIZE("signed-integer-overflow") {
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return a - b;
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}
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/* compute inverse AR power spectrum */
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static void CalcInvArSpec(const int16_t *ARCoefQ12,
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@ -231,11 +247,11 @@ static void CalcInvArSpec(const int16_t *ARCoefQ12,
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CurveQ16[n] = sum;
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for (k = 1; k < AR_ORDER; k += 2) {
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for (n = 0; n < FRAMESAMPLES/8; n++) {
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const int64_t p =
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(WebRtcIsacfix_kCos[k][n] * (int64_t)CorrQ11[k + 1] + 2) >> 2;
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CurveQ16[n] += WebRtcSpl_SatW64ToW32(p);
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}
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for (n = 0; n < FRAMESAMPLES/8; n++)
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CurveQ16[n] +=
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(OverflowingMulS16S32ToS32(WebRtcIsacfix_kCos[k][n], CorrQ11[k + 1]) +
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2) >>
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2;
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}
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CS_ptrQ9 = WebRtcIsacfix_kCos[0];
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@ -261,8 +277,8 @@ static void CalcInvArSpec(const int16_t *ARCoefQ12,
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for (k=0; k<FRAMESAMPLES/8; k++) {
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int32_t diff_q16 = diffQ16[k] * (1 << shftVal);
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CurveQ16[FRAMESAMPLES / 4 - 1 - k] =
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WebRtcSpl_SubSatW32(CurveQ16[k], diff_q16);
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CurveQ16[k] = WebRtcSpl_AddSatW32(CurveQ16[k], diff_q16);
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OverflowingSubS32S32ToS32(CurveQ16[k], diff_q16);
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CurveQ16[k] = OverflowingAddS32S32ToS32(CurveQ16[k], diff_q16);
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}
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}
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@ -497,10 +513,8 @@ int WebRtcIsacfix_DecodeSpec(Bitstr_dec *streamdata,
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{
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for (k = 0; k < FRAMESAMPLES; k += 4)
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{
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gainQ10 = WebRtcSpl_DivW32W16ResW16(
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30 << 10, (int16_t)((uint32_t)(WebRtcSpl_AddSatW32(
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invARSpec2_Q16[k >> 2], 2195456)) >>
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16));
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gainQ10 = WebRtcSpl_DivW32W16ResW16(30 << 10,
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(int16_t)((uint32_t)(invARSpec2_Q16[k >> 2] + 2195456) >> 16));
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*frQ7++ = (int16_t)((data[k] * gainQ10 + 512) >> 10);
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*fiQ7++ = (int16_t)((data[k + 1] * gainQ10 + 512) >> 10);
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*frQ7++ = (int16_t)((data[k + 2] * gainQ10 + 512) >> 10);
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@ -511,10 +525,8 @@ int WebRtcIsacfix_DecodeSpec(Bitstr_dec *streamdata,
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{
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for (k = 0; k < FRAMESAMPLES; k += 4)
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{
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gainQ10 = WebRtcSpl_DivW32W16ResW16(
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36 << 10, (int16_t)((uint32_t)(WebRtcSpl_AddSatW32(
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invARSpec2_Q16[k >> 2], 2654208)) >>
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16));
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gainQ10 = WebRtcSpl_DivW32W16ResW16(36 << 10,
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(int16_t)((uint32_t)(invARSpec2_Q16[k >> 2] + 2654208) >> 16));
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*frQ7++ = (int16_t)((data[k] * gainQ10 + 512) >> 10);
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*fiQ7++ = (int16_t)((data[k + 1] * gainQ10 + 512) >> 10);
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*frQ7++ = (int16_t)((data[k + 2] * gainQ10 + 512) >> 10);
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