mirror of
https://github.com/mstorsjo/fdk-aac.git
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Bug: 71430241 Test: CTS DecoderTest and DecoderTestAacDrc original-Change-Id: Iaa20f749b8a04d553b20247cfe1a8930ebbabe30 Apply clang-format also on header files. original-Change-Id: I14de1ef16bbc79ec0283e745f98356a10efeb2e4 Fixes for MPEG-D DRC original-Change-Id: If1de2d74bbbac84b3f67de3b88b83f6a23b8a15c Catch unsupported tw_mdct at an early stage original-Change-Id: Ied9dd00d754162a0e3ca1ae3e6b854315d818afe Fixing PVC transition frames original-Change-Id: Ib75725abe39252806c32d71176308f2c03547a4e Move qmf bands sanity check original-Change-Id: Iab540c3013c174d9490d2ae100a4576f51d8dbc4 Initialize scaling variable original-Change-Id: I3c4087101b70e998c71c1689b122b0d7762e0f9e Add 16 qmf band configuration to getSlotNrgHQ() original-Change-Id: I49a5d30f703a1b126ff163df9656db2540df21f1 Always apply byte alignment at the end of the AudioMuxElement original-Change-Id: I42d560287506d65d4c3de8bfe3eb9a4ebeb4efc7 Setup SBR element only if no parse error exists original-Change-Id: I1915b73704bc80ab882b9173d6bec59cbd073676 Additional array index check in HCR original-Change-Id: I18cc6e501ea683b5009f1bbee26de8ddd04d8267 Fix fade-in index selection in concealment module original-Change-Id: Ibf802ed6ed8c05e9257e1f3b6d0ac1162e9b81c1 Enable explicit backward compatible parser for AAC_LD original-Change-Id: I27e9c678dcb5d40ed760a6d1e06609563d02482d Skip spatial specific config in explicit backward compatible ASC original-Change-Id: Iff7cc365561319e886090cedf30533f562ea4d6e Update flags description in decoder API original-Change-Id: I9a5b4f8da76bb652f5580cbd3ba9760425c43830 Add QMF domain reset function original-Change-Id: I4f89a8a2c0277d18103380134e4ed86996e9d8d6 DRC upgrade v2.1.0 original-Change-Id: I5731c0540139dab220094cd978ef42099fc45b74 Fix integer overflow in sqrtFixp_lookup() original-Change-Id: I429a6f0d19aa2cc957e0f181066f0ca73968c914 Fix integer overflow in invSqrtNorm2() original-Change-Id: I84de5cbf9fb3adeb611db203fe492fabf4eb6155 Fix integer overflow in GenerateRandomVector() original-Change-Id: I3118a641008bd9484d479e5b0b1ee2b5d7d44d74 Fix integer overflow in adjustTimeSlot_EldGrid() original-Change-Id: I29d503c247c5c8282349b79df940416a512fb9d5 Fix integer overflow in FDKsbrEnc_codeEnvelope() original-Change-Id: I6b34b61ebb9d525b0c651ed08de2befc1f801449 Follow-up on: Fix integer overflow in adjustTimeSlot_EldGrid() original-Change-Id: I6f8f578cc7089e5eb7c7b93e580b72ca35ad689a Fix integer overflow in get_pk_v2() original-Change-Id: I63375bed40d45867f6eeaa72b20b1f33e815938c Fix integer overflow in Syn_filt_zero() original-Change-Id: Ie0c02fdfbe03988f9d3b20d10cd9fe4c002d1279 Fix integer overflow in CFac_CalcFacSignal() original-Change-Id: Id2d767c40066c591b51768e978eb8af3b803f0c5 Fix integer overflow in FDKaacEnc_FDKaacEnc_calcPeNoAH() original-Change-Id: Idcbd0f4a51ae2550ed106aa6f3d678d1f9724841 Fix integer overflow in sbrDecoder_calculateGainVec() original-Change-Id: I7081bcbe29c5cede9821b38d93de07c7add2d507 Fix integer overflow in CLpc_SynthesisLattice() original-Change-Id: I4a95ddc18de150102352d4a1845f06094764c881 Fix integer overflow in Pred_Lt4() original-Change-Id: I4dbd012b2de7d07c3e70a47b92e3bfae8dbc750a Fix integer overflow in FDKsbrEnc_InitSbrFastTransientDetector() original-Change-Id: I788cbec1a4a00f44c2f3a72ad7a4afa219807d04 Fix unsigned integer overflow in FDKaacEnc_WriteBitstream() original-Change-Id: I68fc75166e7d2cd5cd45b18dbe3d8c2a92f1822a Fix unsigned integer overflow in FDK_MetadataEnc_Init() original-Change-Id: Ie8d025f9bcdb2442c704bd196e61065c03c10af4 Fix overflow in pseudo random number generators original-Change-Id: I3e2551ee01356297ca14e3788436ede80bd5513c Fix unsigned integer overflow in sbrDecoder_Parse() original-Change-Id: I3f231b2f437e9c37db4d5b964164686710eee971 Fix unsigned integer overflow in longsub() original-Change-Id: I73c2bc50415cac26f1f5a29e125bbe75f9180a6e Fix unsigned integer overflow in CAacDecoder_DecodeFrame() original-Change-Id: Ifce2db4b1454b46fa5f887e9d383f1cc43b291e4 Fix overflow at CLpdChannelStream_Read() original-Change-Id: Idb9d822ce3a4272e4794b643644f5434e2d4bf3f Fix unsigned integer overflow in Hcr_State_BODY_SIGN_ESC__ESC_WORD() original-Change-Id: I1ccf77c0015684b85534c5eb97162740a870b71c Fix unsigned integer overflow in UsacConfig_Parse() original-Change-Id: Ie6d27f84b6ae7eef092ecbff4447941c77864d9f Fix unsigned integer overflow in aacDecoder_drcParse() original-Change-Id: I713f28e883eea3d70b6fa56a7b8f8c22bcf66ca0 Fix unsigned integer overflow in aacDecoder_drcReadCompression() original-Change-Id: Ia34dfeb88c4705c558bce34314f584965cafcf7a Fix unsigned integer overflow in CDataStreamElement_Read() original-Change-Id: Iae896cc1d11f0a893d21be6aa90bd3e60a2c25f0 Fix unsigned integer overflow in transportDec_AdjustEndOfAccessUnit() original-Change-Id: I64cf29a153ee784bb4a16fdc088baabebc0007dc Fix unsigned integer overflow in transportDec_GetAuBitsRemaining() original-Change-Id: I975b3420faa9c16a041874ba0db82e92035962e4 Fix unsigned integer overflow in extractExtendedData() original-Change-Id: I2a59eb09e2053cfb58dfb75fcecfad6b85a80a8f Fix signed integer overflow in CAacDecoder_ExtPayloadParse() original-Change-Id: I4ad5ca4e3b83b5d964f1c2f8c5e7b17c477c7929 Fix unsigned integer overflow in CAacDecoder_DecodeFrame() original-Change-Id: I29a39df77d45c52a0c9c5c83c1ba81f8d0f25090 Follow-up on: Fix integer overflow in CLpc_SynthesisLattice() original-Change-Id: I8fb194ffc073a3432a380845be71036a272d388f Fix signed integer overflow in _interpolateDrcGain() original-Change-Id: I879ec9ab14005069a7c47faf80e8bc6e03d22e60 Fix unsigned integer overflow in FDKreadBits() original-Change-Id: I1f47a6a8037ff70375aa8844947d5681bb4287ad Fix unsigned integer overflow in FDKbyteAlign() original-Change-Id: Id5f3a11a0c9e50fc6f76ed6c572dbd4e9f2af766 Fix unsigned integer overflow in FDK_get32() original-Change-Id: I9d33b8e97e3d38cbb80629cb859266ca0acdce96 Fix unsigned integer overflow in FDK_pushBack() original-Change-Id: Ic87f899bc8c6acf7a377a8ca7f3ba74c3a1e1c19 Fix unsigned integer overflow in FDK_pushForward() original-Change-Id: I3b754382f6776a34be1602e66694ede8e0b8effc Fix unsigned integer overflow in ReadPsData() original-Change-Id: I25361664ba8139e32bbbef2ca8c106a606ce9c37 Fix signed integer overflow in E_UTIL_residu() original-Change-Id: I8c3abd1f437ee869caa8fb5903ce7d3d641b6aad REVERT: Follow-up on: Integer overflow in CLpc_SynthesisLattice(). original-Change-Id: I3d340099acb0414795c8dfbe6362bc0a8f045f9b Follow-up on: Fix integer overflow in CLpc_SynthesisLattice() original-Change-Id: I4aedb8b3a187064e9f4d985175aa55bb99cc7590 Follow-up on: Fix unsigned integer overflow in aacDecoder_drcParse() original-Change-Id: I2aa2e13916213bf52a67e8b0518e7bf7e57fb37d Fix integer overflow in acelp original-Change-Id: Ie6390c136d84055f8b728aefbe4ebef6e029dc77 Fix unsigned integer overflow in aacDecoder_UpdateBitStreamCounters() original-Change-Id: I391ffd97ddb0b2c184cba76139bfb356a3b4d2e2 Adjust concealment default settings original-Change-Id: I6a95db935a327c47df348030bcceafcb29f54b21 Saturate estimatedStartPos original-Change-Id: I27be2085e0ae83ec9501409f65e003f6bcba1ab6 Negative shift exponent in _interpolateDrcGain() original-Change-Id: I18edb26b26d002aafd5e633d4914960f7a359c29 Negative shift exponent in calculateICC() original-Change-Id: I3dcd2ae98d2eb70ee0d59750863cbb2a6f4f8aba Too large shift exponent in FDK_put() original-Change-Id: Ib7d9aaa434d2d8de4a13b720ca0464b31ca9b671 Too large shift exponent in CalcInvLdData() original-Change-Id: I43e6e78d4cd12daeb1dcd5d82d1798bdc2550262 Member access within null pointer of type SBR_CHANNEL original-Change-Id: Idc5e4ea8997810376d2f36bbdf628923b135b097 Member access within null pointer of type CpePersistentData original-Change-Id: Ib6c91cb0d37882768e5baf63324e429589de0d9d Member access within null pointer FDKaacEnc_psyMain() original-Change-Id: I7729b7f4479970531d9dc823abff63ca52e01997 Member access within null pointer FDKaacEnc_GetPnsParam() original-Change-Id: I9aa3b9f3456ae2e0f7483dbd5b3dde95fc62da39 Member access within null pointer FDKsbrEnc_EnvEncodeFrame() original-Change-Id: I67936f90ea714e90b3e81bc0dd1472cc713eb23a Add HCR sanity check original-Change-Id: I6c1d9732ebcf6af12f50b7641400752f74be39f7 Fix memory issue for HBE edge case with 8:3 SBR original-Change-Id: I11ea58a61e69fbe8bf75034b640baee3011e63e9 Additional SBR parametrization sanity check for ELD original-Change-Id: Ie26026fbfe174c2c7b3691f6218b5ce63e322140 Add MPEG-D DRC channel layout check original-Change-Id: Iea70a74f171b227cce636a9eac4ba662777a2f72 Additional out-of-bounds checks in MPEG-D DRC original-Change-Id: Ife4a8c3452c6fde8a0a09e941154a39a769777d4 Change-Id: Ic63cb2f628720f54fe9b572b0cb528e2599c624e
951 lines
29 KiB
C++
951 lines
29 KiB
C++
/* -----------------------------------------------------------------------------
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Software License for The Fraunhofer FDK AAC Codec Library for Android
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© Copyright 1995 - 2018 Fraunhofer-Gesellschaft zur Förderung der angewandten
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Forschung e.V. All rights reserved.
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1. INTRODUCTION
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The Fraunhofer FDK AAC Codec Library for Android ("FDK AAC Codec") is software
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that implements the MPEG Advanced Audio Coding ("AAC") encoding and decoding
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scheme for digital audio. This FDK AAC Codec software is intended to be used on
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a wide variety of Android devices.
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AAC's HE-AAC and HE-AAC v2 versions are regarded as today's most efficient
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general perceptual audio codecs. AAC-ELD is considered the best-performing
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full-bandwidth communications codec by independent studies and is widely
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deployed. AAC has been standardized by ISO and IEC as part of the MPEG
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specifications.
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Patent licenses for necessary patent claims for the FDK AAC Codec (including
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those of Fraunhofer) may be obtained through Via Licensing
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(www.vialicensing.com) or through the respective patent owners individually for
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the purpose of encoding or decoding bit streams in products that are compliant
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with the ISO/IEC MPEG audio standards. Please note that most manufacturers of
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Android devices already license these patent claims through Via Licensing or
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directly from the patent owners, and therefore FDK AAC Codec software may
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already be covered under those patent licenses when it is used for those
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licensed purposes only.
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Commercially-licensed AAC software libraries, including floating-point versions
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with enhanced sound quality, are also available from Fraunhofer. Users are
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encouraged to check the Fraunhofer website for additional applications
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information and documentation.
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2. COPYRIGHT LICENSE
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Redistribution and use in source and binary forms, with or without modification,
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are permitted without payment of copyright license fees provided that you
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satisfy the following conditions:
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You must retain the complete text of this software license in redistributions of
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the FDK AAC Codec or your modifications thereto in source code form.
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You must retain the complete text of this software license in the documentation
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and/or other materials provided with redistributions of the FDK AAC Codec or
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your modifications thereto in binary form. You must make available free of
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charge copies of the complete source code of the FDK AAC Codec and your
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modifications thereto to recipients of copies in binary form.
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The name of Fraunhofer may not be used to endorse or promote products derived
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from this library without prior written permission.
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You may not charge copyright license fees for anyone to use, copy or distribute
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the FDK AAC Codec software or your modifications thereto.
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Your modified versions of the FDK AAC Codec must carry prominent notices stating
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that you changed the software and the date of any change. For modified versions
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of the FDK AAC Codec, the term "Fraunhofer FDK AAC Codec Library for Android"
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must be replaced by the term "Third-Party Modified Version of the Fraunhofer FDK
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AAC Codec Library for Android."
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3. NO PATENT LICENSE
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NO EXPRESS OR IMPLIED LICENSES TO ANY PATENT CLAIMS, including without
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limitation the patents of Fraunhofer, ARE GRANTED BY THIS SOFTWARE LICENSE.
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Fraunhofer provides no warranty of patent non-infringement with respect to this
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software.
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You may use this FDK AAC Codec software or modifications thereto only for
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purposes that are authorized by appropriate patent licenses.
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4. DISCLAIMER
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This FDK AAC Codec software is provided by Fraunhofer on behalf of the copyright
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holders and contributors "AS IS" and WITHOUT ANY EXPRESS OR IMPLIED WARRANTIES,
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including but not limited to the implied warranties of merchantability and
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fitness for a particular purpose. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR
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CONTRIBUTORS BE LIABLE for any direct, indirect, incidental, special, exemplary,
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or consequential damages, including but not limited to procurement of substitute
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goods or services; loss of use, data, or profits, or business interruption,
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however caused and on any theory of liability, whether in contract, strict
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liability, or tort (including negligence), arising in any way out of the use of
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this software, even if advised of the possibility of such damage.
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5. CONTACT INFORMATION
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Fraunhofer Institute for Integrated Circuits IIS
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Attention: Audio and Multimedia Departments - FDK AAC LL
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Am Wolfsmantel 33
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91058 Erlangen, Germany
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www.iis.fraunhofer.de/amm
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amm-info@iis.fraunhofer.de
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----------------------------------------------------------------------------- */
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/**************************** AAC encoder library ******************************
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Author(s): M.Werner
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Description: Huffman Bitcounter & coder
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*******************************************************************************/
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#include "bit_cnt.h"
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#include "aacEnc_ram.h"
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#define HI_LTAB(a) (a >> 16)
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#define LO_LTAB(a) (a & 0xffff)
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/*****************************************************************************
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functionname: FDKaacEnc_count1_2_3_4_5_6_7_8_9_10_11
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description: counts tables 1-11
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returns:
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input: quantized spectrum
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output: bitCount for tables 1-11
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*****************************************************************************/
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static void FDKaacEnc_count1_2_3_4_5_6_7_8_9_10_11(const SHORT *const values,
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const INT width,
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INT *RESTRICT bitCount) {
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INT i;
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INT bc1_2, bc3_4, bc5_6, bc7_8, bc9_10, bc11, sc;
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INT t0, t1, t2, t3;
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bc1_2 = 0;
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bc3_4 = 0;
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bc5_6 = 0;
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bc7_8 = 0;
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bc9_10 = 0;
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bc11 = 0;
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sc = 0;
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DWORD_ALIGNED(values);
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for (i = 0; i < width; i += 4) {
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t0 = values[i + 0];
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t1 = values[i + 1];
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t2 = values[i + 2];
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t3 = values[i + 3];
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bc1_2 += (INT)FDKaacEnc_huff_ltab1_2[t0 + 1][t1 + 1][t2 + 1][t3 + 1];
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bc5_6 += (INT)FDKaacEnc_huff_ltab5_6[t0 + 4][t1 + 4] +
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(INT)FDKaacEnc_huff_ltab5_6[t2 + 4][t3 + 4];
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t0 = fixp_abs(t0);
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sc += (t0 > 0);
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t1 = fixp_abs(t1);
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sc += (t1 > 0);
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t2 = fixp_abs(t2);
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sc += (t2 > 0);
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t3 = fixp_abs(t3);
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sc += (t3 > 0);
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bc3_4 += (INT)FDKaacEnc_huff_ltab3_4[t0][t1][t2][t3];
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bc7_8 += (INT)FDKaacEnc_huff_ltab7_8[t0][t1] +
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(INT)FDKaacEnc_huff_ltab7_8[t2][t3];
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bc9_10 += (INT)FDKaacEnc_huff_ltab9_10[t0][t1] +
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(INT)FDKaacEnc_huff_ltab9_10[t2][t3];
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bc11 +=
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(INT)FDKaacEnc_huff_ltab11[t0][t1] + (INT)FDKaacEnc_huff_ltab11[t2][t3];
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}
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bitCount[1] = HI_LTAB(bc1_2);
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bitCount[2] = LO_LTAB(bc1_2);
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bitCount[3] = HI_LTAB(bc3_4) + sc;
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bitCount[4] = LO_LTAB(bc3_4) + sc;
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bitCount[5] = HI_LTAB(bc5_6);
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bitCount[6] = LO_LTAB(bc5_6);
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bitCount[7] = HI_LTAB(bc7_8) + sc;
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bitCount[8] = LO_LTAB(bc7_8) + sc;
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bitCount[9] = HI_LTAB(bc9_10) + sc;
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bitCount[10] = LO_LTAB(bc9_10) + sc;
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bitCount[11] = bc11 + sc;
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}
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/*****************************************************************************
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functionname: FDKaacEnc_count3_4_5_6_7_8_9_10_11
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description: counts tables 3-11
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returns:
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input: quantized spectrum
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output: bitCount for tables 3-11
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*****************************************************************************/
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static void FDKaacEnc_count3_4_5_6_7_8_9_10_11(const SHORT *const values,
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const INT width,
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INT *RESTRICT bitCount) {
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INT i;
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INT bc3_4, bc5_6, bc7_8, bc9_10, bc11, sc;
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INT t0, t1, t2, t3;
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bc3_4 = 0;
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bc5_6 = 0;
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bc7_8 = 0;
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bc9_10 = 0;
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bc11 = 0;
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sc = 0;
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DWORD_ALIGNED(values);
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for (i = 0; i < width; i += 4) {
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t0 = values[i + 0];
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t1 = values[i + 1];
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t2 = values[i + 2];
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t3 = values[i + 3];
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bc5_6 += (INT)FDKaacEnc_huff_ltab5_6[t0 + 4][t1 + 4] +
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(INT)FDKaacEnc_huff_ltab5_6[t2 + 4][t3 + 4];
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t0 = fixp_abs(t0);
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sc += (t0 > 0);
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t1 = fixp_abs(t1);
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sc += (t1 > 0);
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t2 = fixp_abs(t2);
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sc += (t2 > 0);
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t3 = fixp_abs(t3);
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sc += (t3 > 0);
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bc3_4 += (INT)FDKaacEnc_huff_ltab3_4[t0][t1][t2][t3];
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bc7_8 += (INT)FDKaacEnc_huff_ltab7_8[t0][t1] +
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(INT)FDKaacEnc_huff_ltab7_8[t2][t3];
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bc9_10 += (INT)FDKaacEnc_huff_ltab9_10[t0][t1] +
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(INT)FDKaacEnc_huff_ltab9_10[t2][t3];
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bc11 +=
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(INT)FDKaacEnc_huff_ltab11[t0][t1] + (INT)FDKaacEnc_huff_ltab11[t2][t3];
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}
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bitCount[1] = INVALID_BITCOUNT;
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bitCount[2] = INVALID_BITCOUNT;
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bitCount[3] = HI_LTAB(bc3_4) + sc;
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bitCount[4] = LO_LTAB(bc3_4) + sc;
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bitCount[5] = HI_LTAB(bc5_6);
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bitCount[6] = LO_LTAB(bc5_6);
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bitCount[7] = HI_LTAB(bc7_8) + sc;
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bitCount[8] = LO_LTAB(bc7_8) + sc;
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bitCount[9] = HI_LTAB(bc9_10) + sc;
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bitCount[10] = LO_LTAB(bc9_10) + sc;
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bitCount[11] = bc11 + sc;
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}
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/*****************************************************************************
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functionname: FDKaacEnc_count5_6_7_8_9_10_11
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description: counts tables 5-11
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returns:
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input: quantized spectrum
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output: bitCount for tables 5-11
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*****************************************************************************/
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static void FDKaacEnc_count5_6_7_8_9_10_11(const SHORT *const values,
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const INT width,
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INT *RESTRICT bitCount) {
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INT i;
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INT bc5_6, bc7_8, bc9_10, bc11, sc;
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INT t0, t1, t2, t3;
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bc5_6 = 0;
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bc7_8 = 0;
|
|
bc9_10 = 0;
|
|
bc11 = 0;
|
|
sc = 0;
|
|
|
|
DWORD_ALIGNED(values);
|
|
|
|
for (i = 0; i < width; i += 4) {
|
|
t0 = values[i + 0];
|
|
t1 = values[i + 1];
|
|
t2 = values[i + 2];
|
|
t3 = values[i + 3];
|
|
|
|
bc5_6 += (INT)FDKaacEnc_huff_ltab5_6[t0 + 4][t1 + 4] +
|
|
(INT)FDKaacEnc_huff_ltab5_6[t2 + 4][t3 + 4];
|
|
|
|
t0 = fixp_abs(t0);
|
|
sc += (t0 > 0);
|
|
t1 = fixp_abs(t1);
|
|
sc += (t1 > 0);
|
|
t2 = fixp_abs(t2);
|
|
sc += (t2 > 0);
|
|
t3 = fixp_abs(t3);
|
|
sc += (t3 > 0);
|
|
|
|
bc7_8 += (INT)FDKaacEnc_huff_ltab7_8[t0][t1] +
|
|
(INT)FDKaacEnc_huff_ltab7_8[t2][t3];
|
|
bc9_10 += (INT)FDKaacEnc_huff_ltab9_10[t0][t1] +
|
|
(INT)FDKaacEnc_huff_ltab9_10[t2][t3];
|
|
bc11 +=
|
|
(INT)FDKaacEnc_huff_ltab11[t0][t1] + (INT)FDKaacEnc_huff_ltab11[t2][t3];
|
|
}
|
|
bitCount[1] = INVALID_BITCOUNT;
|
|
bitCount[2] = INVALID_BITCOUNT;
|
|
bitCount[3] = INVALID_BITCOUNT;
|
|
bitCount[4] = INVALID_BITCOUNT;
|
|
bitCount[5] = HI_LTAB(bc5_6);
|
|
bitCount[6] = LO_LTAB(bc5_6);
|
|
bitCount[7] = HI_LTAB(bc7_8) + sc;
|
|
bitCount[8] = LO_LTAB(bc7_8) + sc;
|
|
bitCount[9] = HI_LTAB(bc9_10) + sc;
|
|
bitCount[10] = LO_LTAB(bc9_10) + sc;
|
|
bitCount[11] = bc11 + sc;
|
|
}
|
|
|
|
/*****************************************************************************
|
|
|
|
functionname: FDKaacEnc_count7_8_9_10_11
|
|
description: counts tables 7-11
|
|
returns:
|
|
input: quantized spectrum
|
|
output: bitCount for tables 7-11
|
|
|
|
*****************************************************************************/
|
|
|
|
static void FDKaacEnc_count7_8_9_10_11(const SHORT *const values,
|
|
const INT width,
|
|
INT *RESTRICT bitCount) {
|
|
INT i;
|
|
INT bc7_8, bc9_10, bc11, sc;
|
|
INT t0, t1, t2, t3;
|
|
|
|
bc7_8 = 0;
|
|
bc9_10 = 0;
|
|
bc11 = 0;
|
|
sc = 0;
|
|
|
|
DWORD_ALIGNED(values);
|
|
|
|
for (i = 0; i < width; i += 4) {
|
|
t0 = values[i + 0];
|
|
t1 = values[i + 1];
|
|
t2 = values[i + 2];
|
|
t3 = values[i + 3];
|
|
|
|
t0 = fixp_abs(t0);
|
|
sc += (t0 > 0);
|
|
t1 = fixp_abs(t1);
|
|
sc += (t1 > 0);
|
|
t2 = fixp_abs(t2);
|
|
sc += (t2 > 0);
|
|
t3 = fixp_abs(t3);
|
|
sc += (t3 > 0);
|
|
|
|
bc7_8 += (INT)FDKaacEnc_huff_ltab7_8[t0][t1] +
|
|
(INT)FDKaacEnc_huff_ltab7_8[t2][t3];
|
|
bc9_10 += (INT)FDKaacEnc_huff_ltab9_10[t0][t1] +
|
|
(INT)FDKaacEnc_huff_ltab9_10[t2][t3];
|
|
bc11 +=
|
|
(INT)FDKaacEnc_huff_ltab11[t0][t1] + (INT)FDKaacEnc_huff_ltab11[t2][t3];
|
|
}
|
|
|
|
bitCount[1] = INVALID_BITCOUNT;
|
|
bitCount[2] = INVALID_BITCOUNT;
|
|
bitCount[3] = INVALID_BITCOUNT;
|
|
bitCount[4] = INVALID_BITCOUNT;
|
|
bitCount[5] = INVALID_BITCOUNT;
|
|
bitCount[6] = INVALID_BITCOUNT;
|
|
bitCount[7] = HI_LTAB(bc7_8) + sc;
|
|
bitCount[8] = LO_LTAB(bc7_8) + sc;
|
|
bitCount[9] = HI_LTAB(bc9_10) + sc;
|
|
bitCount[10] = LO_LTAB(bc9_10) + sc;
|
|
bitCount[11] = bc11 + sc;
|
|
}
|
|
|
|
/*****************************************************************************
|
|
|
|
functionname: FDKaacEnc_count9_10_11
|
|
description: counts tables 9-11
|
|
returns:
|
|
input: quantized spectrum
|
|
output: bitCount for tables 9-11
|
|
|
|
*****************************************************************************/
|
|
|
|
static void FDKaacEnc_count9_10_11(const SHORT *const values, const INT width,
|
|
INT *RESTRICT bitCount) {
|
|
INT i;
|
|
INT bc9_10, bc11, sc;
|
|
INT t0, t1, t2, t3;
|
|
|
|
bc9_10 = 0;
|
|
bc11 = 0;
|
|
sc = 0;
|
|
|
|
DWORD_ALIGNED(values);
|
|
|
|
for (i = 0; i < width; i += 4) {
|
|
t0 = values[i + 0];
|
|
t1 = values[i + 1];
|
|
t2 = values[i + 2];
|
|
t3 = values[i + 3];
|
|
|
|
t0 = fixp_abs(t0);
|
|
sc += (t0 > 0);
|
|
t1 = fixp_abs(t1);
|
|
sc += (t1 > 0);
|
|
t2 = fixp_abs(t2);
|
|
sc += (t2 > 0);
|
|
t3 = fixp_abs(t3);
|
|
sc += (t3 > 0);
|
|
|
|
bc9_10 += (INT)FDKaacEnc_huff_ltab9_10[t0][t1] +
|
|
(INT)FDKaacEnc_huff_ltab9_10[t2][t3];
|
|
bc11 +=
|
|
(INT)FDKaacEnc_huff_ltab11[t0][t1] + (INT)FDKaacEnc_huff_ltab11[t2][t3];
|
|
}
|
|
|
|
bitCount[1] = INVALID_BITCOUNT;
|
|
bitCount[2] = INVALID_BITCOUNT;
|
|
bitCount[3] = INVALID_BITCOUNT;
|
|
bitCount[4] = INVALID_BITCOUNT;
|
|
bitCount[5] = INVALID_BITCOUNT;
|
|
bitCount[6] = INVALID_BITCOUNT;
|
|
bitCount[7] = INVALID_BITCOUNT;
|
|
bitCount[8] = INVALID_BITCOUNT;
|
|
bitCount[9] = HI_LTAB(bc9_10) + sc;
|
|
bitCount[10] = LO_LTAB(bc9_10) + sc;
|
|
bitCount[11] = bc11 + sc;
|
|
}
|
|
|
|
/*****************************************************************************
|
|
|
|
functionname: FDKaacEnc_count11
|
|
description: counts table 11
|
|
returns:
|
|
input: quantized spectrum
|
|
output: bitCount for table 11
|
|
|
|
*****************************************************************************/
|
|
|
|
static void FDKaacEnc_count11(const SHORT *const values, const INT width,
|
|
INT *RESTRICT bitCount) {
|
|
INT i;
|
|
INT bc11, sc;
|
|
INT t0, t1, t2, t3;
|
|
|
|
bc11 = 0;
|
|
sc = 0;
|
|
|
|
DWORD_ALIGNED(values);
|
|
|
|
for (i = 0; i < width; i += 4) {
|
|
t0 = values[i + 0];
|
|
t1 = values[i + 1];
|
|
t2 = values[i + 2];
|
|
t3 = values[i + 3];
|
|
|
|
t0 = fixp_abs(t0);
|
|
sc += (t0 > 0);
|
|
t1 = fixp_abs(t1);
|
|
sc += (t1 > 0);
|
|
t2 = fixp_abs(t2);
|
|
sc += (t2 > 0);
|
|
t3 = fixp_abs(t3);
|
|
sc += (t3 > 0);
|
|
|
|
bc11 +=
|
|
(INT)FDKaacEnc_huff_ltab11[t0][t1] + (INT)FDKaacEnc_huff_ltab11[t2][t3];
|
|
}
|
|
|
|
bitCount[1] = INVALID_BITCOUNT;
|
|
bitCount[2] = INVALID_BITCOUNT;
|
|
bitCount[3] = INVALID_BITCOUNT;
|
|
bitCount[4] = INVALID_BITCOUNT;
|
|
bitCount[5] = INVALID_BITCOUNT;
|
|
bitCount[6] = INVALID_BITCOUNT;
|
|
bitCount[7] = INVALID_BITCOUNT;
|
|
bitCount[8] = INVALID_BITCOUNT;
|
|
bitCount[9] = INVALID_BITCOUNT;
|
|
bitCount[10] = INVALID_BITCOUNT;
|
|
bitCount[11] = bc11 + sc;
|
|
}
|
|
|
|
/*****************************************************************************
|
|
|
|
functionname: FDKaacEnc_countEsc
|
|
description: counts table 11 (with Esc)
|
|
returns:
|
|
input: quantized spectrum
|
|
output: bitCount for tables 11 (with Esc)
|
|
|
|
*****************************************************************************/
|
|
|
|
static void FDKaacEnc_countEsc(const SHORT *const values, const INT width,
|
|
INT *RESTRICT bitCount) {
|
|
INT i;
|
|
INT bc11, ec, sc;
|
|
INT t0, t1, t00, t01;
|
|
|
|
bc11 = 0;
|
|
sc = 0;
|
|
ec = 0;
|
|
for (i = 0; i < width; i += 2) {
|
|
t0 = fixp_abs(values[i + 0]);
|
|
t1 = fixp_abs(values[i + 1]);
|
|
|
|
sc += (t0 > 0) + (t1 > 0);
|
|
|
|
t00 = fixMin(t0, 16);
|
|
t01 = fixMin(t1, 16);
|
|
bc11 += (INT)FDKaacEnc_huff_ltab11[t00][t01];
|
|
|
|
if (t0 >= 16) {
|
|
ec += 5;
|
|
while ((t0 >>= 1) >= 16) ec += 2;
|
|
}
|
|
|
|
if (t1 >= 16) {
|
|
ec += 5;
|
|
while ((t1 >>= 1) >= 16) ec += 2;
|
|
}
|
|
}
|
|
|
|
for (i = 0; i < 11; i++) bitCount[i] = INVALID_BITCOUNT;
|
|
|
|
bitCount[11] = bc11 + sc + ec;
|
|
}
|
|
|
|
typedef void (*COUNT_FUNCTION)(const SHORT *const values, const INT width,
|
|
INT *RESTRICT bitCount);
|
|
|
|
static const COUNT_FUNCTION countFuncTable[CODE_BOOK_ESC_LAV + 1] = {
|
|
|
|
FDKaacEnc_count1_2_3_4_5_6_7_8_9_10_11, /* 0 */
|
|
FDKaacEnc_count1_2_3_4_5_6_7_8_9_10_11, /* 1 */
|
|
FDKaacEnc_count3_4_5_6_7_8_9_10_11, /* 2 */
|
|
FDKaacEnc_count5_6_7_8_9_10_11, /* 3 */
|
|
FDKaacEnc_count5_6_7_8_9_10_11, /* 4 */
|
|
FDKaacEnc_count7_8_9_10_11, /* 5 */
|
|
FDKaacEnc_count7_8_9_10_11, /* 6 */
|
|
FDKaacEnc_count7_8_9_10_11, /* 7 */
|
|
FDKaacEnc_count9_10_11, /* 8 */
|
|
FDKaacEnc_count9_10_11, /* 9 */
|
|
FDKaacEnc_count9_10_11, /* 10 */
|
|
FDKaacEnc_count9_10_11, /* 11 */
|
|
FDKaacEnc_count9_10_11, /* 12 */
|
|
FDKaacEnc_count11, /* 13 */
|
|
FDKaacEnc_count11, /* 14 */
|
|
FDKaacEnc_count11, /* 15 */
|
|
FDKaacEnc_countEsc /* 16 */
|
|
};
|
|
|
|
INT FDKaacEnc_bitCount(const SHORT *const values, const INT width,
|
|
const INT maxVal, INT *const RESTRICT bitCount) {
|
|
/*
|
|
check if we can use codebook 0
|
|
*/
|
|
|
|
bitCount[0] = (maxVal == 0) ? 0 : INVALID_BITCOUNT;
|
|
|
|
countFuncTable[fixMin(maxVal, (INT)CODE_BOOK_ESC_LAV)](values, width,
|
|
bitCount);
|
|
|
|
return (0);
|
|
}
|
|
|
|
/*
|
|
count difference between actual and zeroed lines
|
|
*/
|
|
INT FDKaacEnc_countValues(SHORT *RESTRICT values, INT width, INT codeBook) {
|
|
INT i, t0, t1, t2, t3;
|
|
INT bitCnt = 0;
|
|
|
|
switch (codeBook) {
|
|
case CODE_BOOK_ZERO_NO:
|
|
break;
|
|
|
|
case CODE_BOOK_1_NO:
|
|
for (i = 0; i < width; i += 4) {
|
|
t0 = values[i + 0];
|
|
t1 = values[i + 1];
|
|
t2 = values[i + 2];
|
|
t3 = values[i + 3];
|
|
bitCnt +=
|
|
HI_LTAB(FDKaacEnc_huff_ltab1_2[t0 + 1][t1 + 1][t2 + 1][t3 + 1]);
|
|
}
|
|
break;
|
|
|
|
case CODE_BOOK_2_NO:
|
|
for (i = 0; i < width; i += 4) {
|
|
t0 = values[i + 0];
|
|
t1 = values[i + 1];
|
|
t2 = values[i + 2];
|
|
t3 = values[i + 3];
|
|
bitCnt +=
|
|
LO_LTAB(FDKaacEnc_huff_ltab1_2[t0 + 1][t1 + 1][t2 + 1][t3 + 1]);
|
|
}
|
|
break;
|
|
|
|
case CODE_BOOK_3_NO:
|
|
for (i = 0; i < width; i += 4) {
|
|
t0 = fixp_abs(values[i + 0]);
|
|
bitCnt += (t0 > 0);
|
|
t1 = fixp_abs(values[i + 1]);
|
|
bitCnt += (t1 > 0);
|
|
t2 = fixp_abs(values[i + 2]);
|
|
bitCnt += (t2 > 0);
|
|
t3 = fixp_abs(values[i + 3]);
|
|
bitCnt += (t3 > 0);
|
|
bitCnt += HI_LTAB(FDKaacEnc_huff_ltab3_4[t0][t1][t2][t3]);
|
|
}
|
|
break;
|
|
|
|
case CODE_BOOK_4_NO:
|
|
for (i = 0; i < width; i += 4) {
|
|
t0 = fixp_abs(values[i + 0]);
|
|
bitCnt += (t0 > 0);
|
|
t1 = fixp_abs(values[i + 1]);
|
|
bitCnt += (t1 > 0);
|
|
t2 = fixp_abs(values[i + 2]);
|
|
bitCnt += (t2 > 0);
|
|
t3 = fixp_abs(values[i + 3]);
|
|
bitCnt += (t3 > 0);
|
|
bitCnt += LO_LTAB(FDKaacEnc_huff_ltab3_4[t0][t1][t2][t3]);
|
|
}
|
|
break;
|
|
|
|
case CODE_BOOK_5_NO:
|
|
for (i = 0; i < width; i += 4) {
|
|
t0 = values[i + 0];
|
|
t1 = values[i + 1];
|
|
t2 = values[i + 2];
|
|
t3 = values[i + 3];
|
|
bitCnt += HI_LTAB(FDKaacEnc_huff_ltab5_6[t0 + 4][t1 + 4]) +
|
|
HI_LTAB(FDKaacEnc_huff_ltab5_6[t2 + 4][t3 + 4]);
|
|
}
|
|
break;
|
|
|
|
case CODE_BOOK_6_NO:
|
|
for (i = 0; i < width; i += 4) {
|
|
t0 = values[i + 0];
|
|
t1 = values[i + 1];
|
|
t2 = values[i + 2];
|
|
t3 = values[i + 3];
|
|
bitCnt += LO_LTAB(FDKaacEnc_huff_ltab5_6[t0 + 4][t1 + 4]) +
|
|
LO_LTAB(FDKaacEnc_huff_ltab5_6[t2 + 4][t3 + 4]);
|
|
}
|
|
break;
|
|
|
|
case CODE_BOOK_7_NO:
|
|
for (i = 0; i < width; i += 4) {
|
|
t0 = fixp_abs(values[i + 0]);
|
|
bitCnt += (t0 > 0);
|
|
t1 = fixp_abs(values[i + 1]);
|
|
bitCnt += (t1 > 0);
|
|
t2 = fixp_abs(values[i + 2]);
|
|
bitCnt += (t2 > 0);
|
|
t3 = fixp_abs(values[i + 3]);
|
|
bitCnt += (t3 > 0);
|
|
bitCnt += HI_LTAB(FDKaacEnc_huff_ltab7_8[t0][t1]) +
|
|
HI_LTAB(FDKaacEnc_huff_ltab7_8[t2][t3]);
|
|
}
|
|
break;
|
|
|
|
case CODE_BOOK_8_NO:
|
|
for (i = 0; i < width; i += 4) {
|
|
t0 = fixp_abs(values[i + 0]);
|
|
bitCnt += (t0 > 0);
|
|
t1 = fixp_abs(values[i + 1]);
|
|
bitCnt += (t1 > 0);
|
|
t2 = fixp_abs(values[i + 2]);
|
|
bitCnt += (t2 > 0);
|
|
t3 = fixp_abs(values[i + 3]);
|
|
bitCnt += (t3 > 0);
|
|
bitCnt += LO_LTAB(FDKaacEnc_huff_ltab7_8[t0][t1]) +
|
|
LO_LTAB(FDKaacEnc_huff_ltab7_8[t2][t3]);
|
|
}
|
|
break;
|
|
|
|
case CODE_BOOK_9_NO:
|
|
for (i = 0; i < width; i += 4) {
|
|
t0 = fixp_abs(values[i + 0]);
|
|
bitCnt += (t0 > 0);
|
|
t1 = fixp_abs(values[i + 1]);
|
|
bitCnt += (t1 > 0);
|
|
t2 = fixp_abs(values[i + 2]);
|
|
bitCnt += (t2 > 0);
|
|
t3 = fixp_abs(values[i + 3]);
|
|
bitCnt += (t3 > 0);
|
|
bitCnt += HI_LTAB(FDKaacEnc_huff_ltab9_10[t0][t1]) +
|
|
HI_LTAB(FDKaacEnc_huff_ltab9_10[t2][t3]);
|
|
}
|
|
break;
|
|
|
|
case CODE_BOOK_10_NO:
|
|
for (i = 0; i < width; i += 4) {
|
|
t0 = fixp_abs(values[i + 0]);
|
|
bitCnt += (t0 > 0);
|
|
t1 = fixp_abs(values[i + 1]);
|
|
bitCnt += (t1 > 0);
|
|
t2 = fixp_abs(values[i + 2]);
|
|
bitCnt += (t2 > 0);
|
|
t3 = fixp_abs(values[i + 3]);
|
|
bitCnt += (t3 > 0);
|
|
bitCnt += LO_LTAB(FDKaacEnc_huff_ltab9_10[t0][t1]) +
|
|
LO_LTAB(FDKaacEnc_huff_ltab9_10[t2][t3]);
|
|
}
|
|
break;
|
|
|
|
case CODE_BOOK_ESC_NO:
|
|
for (i = 0; i < width; i += 2) {
|
|
t0 = fixp_abs(values[i + 0]);
|
|
bitCnt += (t0 > 0);
|
|
t1 = fixp_abs(values[i + 1]);
|
|
bitCnt += (t1 > 0);
|
|
bitCnt += (INT)FDKaacEnc_huff_ltab11[fixMin(t0, 16)][fixMin(t1, 16)];
|
|
if (t0 >= 16) {
|
|
bitCnt += 5;
|
|
while ((t0 >>= 1) >= 16) bitCnt += 2;
|
|
}
|
|
if (t1 >= 16) {
|
|
bitCnt += 5;
|
|
while ((t1 >>= 1) >= 16) bitCnt += 2;
|
|
}
|
|
}
|
|
break;
|
|
|
|
default:
|
|
break;
|
|
}
|
|
|
|
return (bitCnt);
|
|
}
|
|
|
|
INT FDKaacEnc_codeValues(SHORT *RESTRICT values, INT width, INT codeBook,
|
|
HANDLE_FDK_BITSTREAM hBitstream) {
|
|
INT i, t0, t1, t2, t3, t00, t01;
|
|
INT codeWord, codeLength;
|
|
INT sign, signLength;
|
|
|
|
DWORD_ALIGNED(values);
|
|
|
|
switch (codeBook) {
|
|
case CODE_BOOK_ZERO_NO:
|
|
break;
|
|
|
|
case CODE_BOOK_1_NO:
|
|
for (i = 0; i < width; i += 4) {
|
|
t0 = values[i + 0] + 1;
|
|
t1 = values[i + 1] + 1;
|
|
t2 = values[i + 2] + 1;
|
|
t3 = values[i + 3] + 1;
|
|
codeWord = FDKaacEnc_huff_ctab1[t0][t1][t2][t3];
|
|
codeLength = HI_LTAB(FDKaacEnc_huff_ltab1_2[t0][t1][t2][t3]);
|
|
FDKwriteBits(hBitstream, codeWord, codeLength);
|
|
}
|
|
break;
|
|
|
|
case CODE_BOOK_2_NO:
|
|
for (i = 0; i < width; i += 4) {
|
|
t0 = values[i + 0] + 1;
|
|
t1 = values[i + 1] + 1;
|
|
t2 = values[i + 2] + 1;
|
|
t3 = values[i + 3] + 1;
|
|
codeWord = FDKaacEnc_huff_ctab2[t0][t1][t2][t3];
|
|
codeLength = LO_LTAB(FDKaacEnc_huff_ltab1_2[t0][t1][t2][t3]);
|
|
FDKwriteBits(hBitstream, codeWord, codeLength);
|
|
}
|
|
break;
|
|
|
|
case CODE_BOOK_3_NO:
|
|
for (i = 0; i < (width >> 2); i++) {
|
|
sign = 0;
|
|
signLength = 0;
|
|
int index[4];
|
|
for (int j = 0; j < 4; j++) {
|
|
int ti = *values++;
|
|
int zero = (ti == 0) ? 0 : 1;
|
|
signLength += zero;
|
|
sign = (sign << zero) + ((UINT)ti >> 31);
|
|
index[j] = fixp_abs(ti);
|
|
}
|
|
codeWord = FDKaacEnc_huff_ctab3[index[0]][index[1]][index[2]][index[3]];
|
|
codeLength = HI_LTAB(
|
|
FDKaacEnc_huff_ltab3_4[index[0]][index[1]][index[2]][index[3]]);
|
|
FDKwriteBits(hBitstream, (codeWord << signLength) | sign,
|
|
codeLength + signLength);
|
|
}
|
|
break;
|
|
|
|
case CODE_BOOK_4_NO:
|
|
for (i = 0; i < width; i += 4) {
|
|
sign = 0;
|
|
signLength = 0;
|
|
int index[4];
|
|
for (int j = 0; j < 4; j++) {
|
|
int ti = *values++;
|
|
int zero = (ti == 0) ? 0 : 1;
|
|
signLength += zero;
|
|
sign = (sign << zero) + ((UINT)ti >> 31);
|
|
index[j] = fixp_abs(ti);
|
|
}
|
|
codeWord = FDKaacEnc_huff_ctab4[index[0]][index[1]][index[2]][index[3]];
|
|
codeLength = LO_LTAB(
|
|
FDKaacEnc_huff_ltab3_4[index[0]][index[1]][index[2]][index[3]]);
|
|
FDKwriteBits(hBitstream, (codeWord << signLength) | sign,
|
|
codeLength + signLength);
|
|
}
|
|
break;
|
|
|
|
case CODE_BOOK_5_NO:
|
|
for (i = 0; i < (width >> 2); i++) {
|
|
t0 = *values++ + 4;
|
|
t1 = *values++ + 4;
|
|
t2 = *values++ + 4;
|
|
t3 = *values++ + 4;
|
|
codeWord = FDKaacEnc_huff_ctab5[t0][t1];
|
|
codeLength =
|
|
HI_LTAB(FDKaacEnc_huff_ltab5_6[t2][t3]); /* length of 2nd cw */
|
|
codeWord = (codeWord << codeLength) + FDKaacEnc_huff_ctab5[t2][t3];
|
|
codeLength += HI_LTAB(FDKaacEnc_huff_ltab5_6[t0][t1]);
|
|
FDKwriteBits(hBitstream, codeWord, codeLength);
|
|
}
|
|
break;
|
|
|
|
case CODE_BOOK_6_NO:
|
|
for (i = 0; i < (width >> 2); i++) {
|
|
t0 = *values++ + 4;
|
|
t1 = *values++ + 4;
|
|
t2 = *values++ + 4;
|
|
t3 = *values++ + 4;
|
|
codeWord = FDKaacEnc_huff_ctab6[t0][t1];
|
|
codeLength =
|
|
LO_LTAB(FDKaacEnc_huff_ltab5_6[t2][t3]); /* length of 2nd cw */
|
|
codeWord = (codeWord << codeLength) + FDKaacEnc_huff_ctab6[t2][t3];
|
|
codeLength += LO_LTAB(FDKaacEnc_huff_ltab5_6[t0][t1]);
|
|
FDKwriteBits(hBitstream, codeWord, codeLength);
|
|
}
|
|
break;
|
|
|
|
case CODE_BOOK_7_NO:
|
|
for (i = 0; i < (width >> 1); i++) {
|
|
t0 = *values++;
|
|
sign = ((UINT)t0 >> 31);
|
|
t0 = fixp_abs(t0);
|
|
signLength = (t0 == 0) ? 0 : 1;
|
|
t1 = *values++;
|
|
INT zero = (t1 == 0) ? 0 : 1;
|
|
signLength += zero;
|
|
sign = (sign << zero) + ((UINT)t1 >> 31);
|
|
t1 = fixp_abs(t1);
|
|
codeWord = FDKaacEnc_huff_ctab7[t0][t1];
|
|
codeLength = HI_LTAB(FDKaacEnc_huff_ltab7_8[t0][t1]);
|
|
FDKwriteBits(hBitstream, (codeWord << signLength) | sign,
|
|
codeLength + signLength);
|
|
}
|
|
break;
|
|
|
|
case CODE_BOOK_8_NO:
|
|
for (i = 0; i < (width >> 1); i++) {
|
|
t0 = *values++;
|
|
sign = ((UINT)t0 >> 31);
|
|
t0 = fixp_abs(t0);
|
|
signLength = (t0 == 0) ? 0 : 1;
|
|
t1 = *values++;
|
|
INT zero = (t1 == 0) ? 0 : 1;
|
|
signLength += zero;
|
|
sign = (sign << zero) + ((UINT)t1 >> 31);
|
|
t1 = fixp_abs(t1);
|
|
codeWord = FDKaacEnc_huff_ctab8[t0][t1];
|
|
codeLength = LO_LTAB(FDKaacEnc_huff_ltab7_8[t0][t1]);
|
|
FDKwriteBits(hBitstream, (codeWord << signLength) | sign,
|
|
codeLength + signLength);
|
|
}
|
|
break;
|
|
|
|
case CODE_BOOK_9_NO:
|
|
for (i = 0; i < (width >> 1); i++) {
|
|
t0 = *values++;
|
|
sign = ((UINT)t0 >> 31);
|
|
t0 = fixp_abs(t0);
|
|
signLength = (t0 == 0) ? 0 : 1;
|
|
t1 = *values++;
|
|
INT zero = (t1 == 0) ? 0 : 1;
|
|
signLength += zero;
|
|
sign = (sign << zero) + ((UINT)t1 >> 31);
|
|
t1 = fixp_abs(t1);
|
|
codeWord = FDKaacEnc_huff_ctab9[t0][t1];
|
|
codeLength = HI_LTAB(FDKaacEnc_huff_ltab9_10[t0][t1]);
|
|
FDKwriteBits(hBitstream, (codeWord << signLength) | sign,
|
|
codeLength + signLength);
|
|
}
|
|
break;
|
|
|
|
case CODE_BOOK_10_NO:
|
|
for (i = 0; i < (width >> 1); i++) {
|
|
t0 = *values++;
|
|
sign = ((UINT)t0 >> 31);
|
|
t0 = fixp_abs(t0);
|
|
signLength = (t0 == 0) ? 0 : 1;
|
|
t1 = *values++;
|
|
INT zero = (t1 == 0) ? 0 : 1;
|
|
signLength += zero;
|
|
sign = (sign << zero) + ((UINT)t1 >> 31);
|
|
t1 = fixp_abs(t1);
|
|
codeWord = FDKaacEnc_huff_ctab10[t0][t1];
|
|
codeLength = LO_LTAB(FDKaacEnc_huff_ltab9_10[t0][t1]);
|
|
FDKwriteBits(hBitstream, (codeWord << signLength) | sign,
|
|
codeLength + signLength);
|
|
}
|
|
break;
|
|
|
|
case CODE_BOOK_ESC_NO:
|
|
for (i = 0; i < (width >> 1); i++) {
|
|
t0 = *values++;
|
|
sign = ((UINT)t0 >> 31);
|
|
t0 = fixp_abs(t0);
|
|
signLength = (t0 == 0) ? 0 : 1;
|
|
t1 = *values++;
|
|
INT zero = (t1 == 0) ? 0 : 1;
|
|
signLength += zero;
|
|
sign = (sign << zero) + ((UINT)t1 >> 31);
|
|
t1 = fixp_abs(t1);
|
|
|
|
t00 = fixMin(t0, 16);
|
|
t01 = fixMin(t1, 16);
|
|
|
|
codeWord = FDKaacEnc_huff_ctab11[t00][t01];
|
|
codeLength = (INT)FDKaacEnc_huff_ltab11[t00][t01];
|
|
FDKwriteBits(hBitstream, (codeWord << signLength) | sign,
|
|
codeLength + signLength);
|
|
for (int j = 0; j < 2; j++) {
|
|
if (t0 >= 16) {
|
|
INT n = 4, p = t0;
|
|
for (; (p >>= 1) >= 16;) n++;
|
|
FDKwriteBits(hBitstream,
|
|
(((1 << (n - 3)) - 2) << n) | (t0 - (1 << n)),
|
|
n + n - 3);
|
|
}
|
|
t0 = t1;
|
|
}
|
|
}
|
|
break;
|
|
|
|
default:
|
|
break;
|
|
}
|
|
return (0);
|
|
}
|
|
|
|
INT FDKaacEnc_codeScalefactorDelta(INT delta, HANDLE_FDK_BITSTREAM hBitstream) {
|
|
INT codeWord, codeLength;
|
|
|
|
if (fixp_abs(delta) > CODE_BOOK_SCF_LAV) return (1);
|
|
|
|
codeWord = FDKaacEnc_huff_ctabscf[delta + CODE_BOOK_SCF_LAV];
|
|
codeLength = (INT)FDKaacEnc_huff_ltabscf[delta + CODE_BOOK_SCF_LAV];
|
|
FDKwriteBits(hBitstream, codeWord, codeLength);
|
|
return (0);
|
|
}
|