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authorDaniel Baumann <daniel.baumann@progress-linux.org>2024-04-19 00:47:55 +0000
committerDaniel Baumann <daniel.baumann@progress-linux.org>2024-04-19 00:47:55 +0000
commit26a029d407be480d791972afb5975cf62c9360a6 (patch)
treef435a8308119effd964b339f76abb83a57c29483 /media/openmax_dl
parentInitial commit. (diff)
downloadfirefox-26a029d407be480d791972afb5975cf62c9360a6.tar.xz
firefox-26a029d407be480d791972afb5975cf62c9360a6.zip
Adding upstream version 124.0.1.upstream/124.0.1
Signed-off-by: Daniel Baumann <daniel.baumann@progress-linux.org>
Diffstat (limited to 'media/openmax_dl')
-rw-r--r--media/openmax_dl/LICENSE39
-rw-r--r--media/openmax_dl/OWNERS3
-rw-r--r--media/openmax_dl/README.chromium19
-rw-r--r--media/openmax_dl/README.mozilla9
-rw-r--r--media/openmax_dl/dl/api/armCOMM_s.h417
-rw-r--r--media/openmax_dl/dl/api/armOMX.h289
-rw-r--r--media/openmax_dl/dl/api/omxtypes.h286
-rw-r--r--media/openmax_dl/dl/api/omxtypes_s.h76
-rw-r--r--media/openmax_dl/dl/moz.build49
-rw-r--r--media/openmax_dl/dl/sp/api/armSP.h92
-rw-r--r--media/openmax_dl/dl/sp/api/omxSP.h2620
-rw-r--r--media/openmax_dl/dl/sp/src/armSP_FFTInv_CCSToR_F32_preTwiddleRadix2_unsafe_s.S294
-rw-r--r--media/openmax_dl/dl/sp/src/armSP_FFT_CToC_FC32_Radix2_fs_unsafe_s.S134
-rw-r--r--media/openmax_dl/dl/sp/src/armSP_FFT_CToC_FC32_Radix2_ls_unsafe_s.S153
-rw-r--r--media/openmax_dl/dl/sp/src/armSP_FFT_CToC_FC32_Radix2_unsafe_s.S191
-rw-r--r--media/openmax_dl/dl/sp/src/armSP_FFT_CToC_FC32_Radix4_fs_unsafe_s.S251
-rw-r--r--media/openmax_dl/dl/sp/src/armSP_FFT_CToC_FC32_Radix4_ls_unsafe_s.S339
-rw-r--r--media/openmax_dl/dl/sp/src/armSP_FFT_CToC_FC32_Radix4_unsafe_s.S331
-rw-r--r--media/openmax_dl/dl/sp/src/armSP_FFT_CToC_FC32_Radix8_fs_unsafe_s.S422
-rw-r--r--media/openmax_dl/dl/sp/src/armSP_FFT_F32TwiddleTable.c4643
-rw-r--r--media/openmax_dl/dl/sp/src/omxSP_FFTFwd_RToCCS_F32_Sfs_s.S404
-rw-r--r--media/openmax_dl/dl/sp/src/omxSP_FFTGetBufSize_R_F32.c49
-rw-r--r--media/openmax_dl/dl/sp/src/omxSP_FFTGetBufSize_R_S32.c91
-rw-r--r--media/openmax_dl/dl/sp/src/omxSP_FFTInit_R_F32.c210
-rw-r--r--media/openmax_dl/dl/sp/src/omxSP_FFTInv_CCSToR_F32_Sfs_unscaled_s.S284
25 files changed, 11695 insertions, 0 deletions
diff --git a/media/openmax_dl/LICENSE b/media/openmax_dl/LICENSE
new file mode 100644
index 0000000000..845a9342eb
--- /dev/null
+++ b/media/openmax_dl/LICENSE
@@ -0,0 +1,39 @@
+Use of this source code is governed by a BSD-style license that can be
+found in the LICENSE file in the root of the source tree. All
+contributing project authors may be found in the AUTHORS file in the
+root of the source tree.
+
+The files were originally licensed by ARM Limited.
+
+The following files:
+
+ * dl/api/omxtypes.h
+ * dl/sp/api/omxSP.h
+
+are licensed by Khronos:
+
+Copyright (c) 2005-2008,2015 The Khronos Group Inc.
+
+Permission is hereby granted, free of charge, to any person obtaining a
+copy of this software and/or associated documentation files (the
+"Materials"), to deal in the Materials without restriction, including
+without limitation the rights to use, copy, modify, merge, publish,
+distribute, sublicense, and/or sell copies of the Materials, and to
+permit persons to whom the Materials are furnished to do so, subject to
+the following conditions:
+
+The above copyright notice and this permission notice shall be included
+in all copies or substantial portions of the Materials.
+
+MODIFICATIONS TO THIS FILE MAY MEAN IT NO LONGER ACCURATELY REFLECTS
+KHRONOS STANDARDS. THE UNMODIFIED, NORMATIVE VERSIONS OF KHRONOS
+SPECIFICATIONS AND HEADER INFORMATION ARE LOCATED AT
+ https://www.khronos.org/registry/
+
+THE MATERIALS ARE PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
+EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
+MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.
+IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY
+CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT,
+TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE
+MATERIALS OR THE USE OR OTHER DEALINGS IN THE MATERIALS.
diff --git a/media/openmax_dl/OWNERS b/media/openmax_dl/OWNERS
new file mode 100644
index 0000000000..34fc598f0b
--- /dev/null
+++ b/media/openmax_dl/OWNERS
@@ -0,0 +1,3 @@
+ajm@google.com
+kma@google.com
+rtoy@google.com
diff --git a/media/openmax_dl/README.chromium b/media/openmax_dl/README.chromium
new file mode 100644
index 0000000000..3dbc3ffe29
--- /dev/null
+++ b/media/openmax_dl/README.chromium
@@ -0,0 +1,19 @@
+Name: OpenMAX DL
+Short Name: OpenMax DL
+URL: https://silver.arm.com/download/Software/Graphics/OX000-BU-00010-r1p0-00bet0/OX000-BU-00010-r1p0-00bet0.tgz
+Version: 1.0.2
+License: BSD
+License File: LICENSE
+Security Critical: yes
+
+Description:
+Implementation of OpenMAX DL spec from ARM. This is used to support
+WebAudio for Chromium on Android.
+
+Local Modifications:
+Only the FFT routines from the OpenMAX DL package are included. The
+code was modified to work with gcc and a new implementation for a
+floating-point FFT was added.
+
+The original ARM license is unclear, but Google has obtained
+permission to relicense this code under a BSD license.
diff --git a/media/openmax_dl/README.mozilla b/media/openmax_dl/README.mozilla
new file mode 100644
index 0000000000..1dbf41b605
--- /dev/null
+++ b/media/openmax_dl/README.mozilla
@@ -0,0 +1,9 @@
+Bug 1158741 added an omxSP_FFTInv_CCSToR_F32_Sfs_unscaled function as an
+optimization which performs the same operation as
+omxSP_FFTInv_CCSToR_F32_Sfs except it doesn't scale the results by the
+length of the FFT. For consistency with other FFT routines used, it does
+multiply the results by two.
+
+The affected files are:
+media/openmax_dl/dl/sp/api/omxSP.h
+media/openmax_dl/dl/sp/src/omxSP_FFTInv_CCSToR_F32_Sfs_unscaled_s.S
diff --git a/media/openmax_dl/dl/api/armCOMM_s.h b/media/openmax_dl/dl/api/armCOMM_s.h
new file mode 100644
index 0000000000..203e8ceaf0
--- /dev/null
+++ b/media/openmax_dl/dl/api/armCOMM_s.h
@@ -0,0 +1,417 @@
+@// -*- Mode: asm; -*-
+@//
+@// Copyright (c) 2013 The WebRTC project authors. All Rights Reserved.
+@//
+@// Use of this source code is governed by a BSD-style license
+@// that can be found in the LICENSE file in the root of the source
+@// tree. An additional intellectual property rights grant can be found
+@// in the file PATENTS. All contributing project authors may
+@// be found in the AUTHORS file in the root of the source tree.
+@//
+@// This file was originally licensed as follows. It has been
+@// relicensed with permission from the copyright holders.
+@//
+
+@//
+@// File Name: armCOMM_s.h
+@// OpenMAX DL: v1.0.2
+@// Last Modified Revision: 13871
+@// Last Modified Date: Fri, 09 May 2008
+@//
+@// (c) Copyright 2007-2008 ARM Limited. All Rights Reserved.
+@//
+@//
+@//
+@// ARM optimized OpenMAX common header file
+@//
+
+ .set _SBytes, 0 @ Number of scratch bytes on stack
+ .set _Workspace, 0 @ Stack offset of scratch workspace
+
+ .set _RRegList, 0 @ R saved register list (last register number)
+ .set _DRegList, 0 @ D saved register list (last register number)
+
+ @// Work out a list of R saved registers, and how much stack space is needed.
+ @// gas doesn't support setting a variable to a string, so we set _RRegList to
+ @// the register number.
+ .macro _M_GETRREGLIST rreg
+ .ifeqs "\rreg", ""
+ @ Nothing needs to be saved
+ .exitm
+ .endif
+ @ If rreg is lr or r4, save lr and r4
+ .ifeqs "\rreg", "lr"
+ .set _RRegList, 4
+ .exitm
+ .endif
+
+ .ifeqs "\rreg", "r4"
+ .set _RRegList, 4
+ .exitm
+ .endif
+
+ @ If rreg = r5 or r6, save up to register r6
+ .ifeqs "\rreg", "r5"
+ .set _RRegList, 6
+ .exitm
+ .endif
+ .ifeqs "\rreg", "r6"
+ .set _RRegList, 6
+ .exitm
+ .endif
+
+ @ If rreg = r7 or r8, save up to register r8
+ .ifeqs "\rreg", "r7"
+ .set _RRegList, 8
+ .exitm
+ .endif
+ .ifeqs "\rreg", "r8"
+ .set _RRegList, 8
+ .exitm
+ .endif
+
+ @ If rreg = r9 or r10, save up to register r10
+ .ifeqs "\rreg", "r9"
+ .set _RRegList, 10
+ .exitm
+ .endif
+ .ifeqs "\rreg", "r10"
+ .set _RRegList, 10
+ .exitm
+ .endif
+
+ @ If rreg = r11 or r12, save up to register r12
+ .ifeqs "\rreg", "r11"
+ .set _RRegList, 12
+ .exitm
+ .endif
+ .ifeqs "\rreg", "r12"
+ .set _RRegList, 12
+ .exitm
+ .endif
+
+ .warning "Unrecognized saved r register limit: \rreg"
+ .endm
+
+ @ Work out list of D saved registers, like for R registers.
+ .macro _M_GETDREGLIST dreg
+ .ifeqs "\dreg", ""
+ .set _DRegList, 0
+ .exitm
+ .endif
+
+ .ifeqs "\dreg", "d8"
+ .set _DRegList, 8
+ .exitm
+ .endif
+
+ .ifeqs "\dreg", "d9"
+ .set _DRegList, 9
+ .exitm
+ .endif
+
+ .ifeqs "\dreg", "d10"
+ .set _DRegList, 10
+ .exitm
+ .endif
+
+ .ifeqs "\dreg", "d11"
+ .set _DRegList, 11
+ .exitm
+ .endif
+
+ .ifeqs "\dreg", "d12"
+ .set _DRegList, 12
+ .exitm
+ .endif
+
+ .ifeqs "\dreg", "d13"
+ .set _DRegList, 13
+ .exitm
+ .endif
+
+ .ifeqs "\dreg", "d14"
+ .set _DRegList, 14
+ .exitm
+ .endif
+
+ .ifeqs "\dreg", "d15"
+ .set _DRegList, 15
+ .exitm
+ .endif
+
+ .warning "Unrecognized saved d register limit: \rreg"
+ .endm
+
+@//////////////////////////////////////////////////////////
+@// Function header and footer macros
+@//////////////////////////////////////////////////////////
+
+ @ Function Header Macro
+ @ Generates the function prologue
+ @ Note that functions should all be "stack-moves-once"
+ @ The FNSTART and FNEND macros should be the only places
+ @ where the stack moves.
+ @
+ @ name = function name
+ @ rreg = "" don't stack any registers
+ @ "lr" stack "lr" only
+ @ "rN" stack registers "r4-rN,lr"
+ @ dreg = "" don't stack any D registers
+ @ "dN" stack registers "d8-dN"
+ @
+ @ Note: ARM Archicture procedure call standard AAPCS
+ @ states that r4-r11, sp, d8-d15 must be preserved by
+ @ a compliant function.
+ .macro M_START name, rreg, dreg
+ .set _Workspace, 0
+
+ @ Define the function and make it external.
+ .global \name
+#ifndef __clang__
+ .func \name
+#endif
+ .section .text.\name,"ax",%progbits
+ .arch armv7-a
+ .fpu neon
+ .syntax unified
+ .object_arch armv4
+ .align 2
+\name :
+.fnstart
+ @ Save specified R registers
+ _M_GETRREGLIST \rreg
+ _M_PUSH_RREG
+
+ @ Save specified D registers
+ _M_GETDREGLIST \dreg
+ _M_PUSH_DREG
+
+ @ Ensure size claimed on stack is 8-byte aligned
+ .if (_SBytes & 7) != 0
+ .set _SBytes, _SBytes + (8 - (_SBytes & 7))
+ .endif
+ .if _SBytes != 0
+ sub sp, sp, #_SBytes
+ .endif
+ .endm
+
+ @ Function Footer Macro
+ @ Generates the function epilogue
+ .macro M_END
+ @ Restore the stack pointer to its original value on function entry
+ .if _SBytes != 0
+ add sp, sp, #_SBytes
+ .endif
+ @ Restore any saved R or D registers.
+ _M_RET
+ .fnend
+#ifndef __clang__
+ .endfunc
+#endif
+ @ Reset the global stack tracking variables back to their
+ @ initial values.
+ .set _SBytes, 0
+ .endm
+
+ @// Based on the value of _DRegList, push the specified set of registers
+ @// to the stack. Is there a better way?
+ .macro _M_PUSH_DREG
+ .if _DRegList == 8
+ vpush {d8}
+ .exitm
+ .endif
+
+ .if _DRegList == 9
+ vpush {d8-d9}
+ .exitm
+ .endif
+
+ .if _DRegList == 10
+ vpush {d8-d10}
+ .exitm
+ .endif
+
+ .if _DRegList == 11
+ vpush {d8-d11}
+ .exitm
+ .endif
+
+ .if _DRegList == 12
+ vpush {d8-d12}
+ .exitm
+ .endif
+
+ .if _DRegList == 13
+ vpush {d8-d13}
+ .exitm
+ .endif
+
+ .if _DRegList == 14
+ vpush {d8-d14}
+ .exitm
+ .endif
+
+ .if _DRegList == 15
+ vpush {d8-d15}
+ .exitm
+ .endif
+ .endm
+
+ @// Based on the value of _RRegList, push the specified set of registers
+ @// to the stack. Is there a better way?
+ .macro _M_PUSH_RREG
+ .if _RRegList == 4
+ stmfd sp!, {r4, lr}
+ .exitm
+ .endif
+
+ .if _RRegList == 6
+ stmfd sp!, {r4-r6, lr}
+ .exitm
+ .endif
+
+ .if _RRegList == 8
+ stmfd sp!, {r4-r8, lr}
+ .exitm
+ .endif
+
+ .if _RRegList == 10
+ stmfd sp!, {r4-r10, lr}
+ .exitm
+ .endif
+
+ .if _RRegList == 12
+ stmfd sp!, {r4-r12, lr}
+ .exitm
+ .endif
+ .endm
+
+ @// The opposite of _M_PUSH_DREG
+ .macro _M_POP_DREG
+ .if _DRegList == 8
+ vpop {d8}
+ .exitm
+ .endif
+
+ .if _DRegList == 9
+ vpop {d8-d9}
+ .exitm
+ .endif
+
+ .if _DRegList == 10
+ vpop {d8-d10}
+ .exitm
+ .endif
+
+ .if _DRegList == 11
+ vpop {d8-d11}
+ .exitm
+ .endif
+
+ .if _DRegList == 12
+ vpop {d8-d12}
+ .exitm
+ .endif
+
+ .if _DRegList == 13
+ vpop {d8-d13}
+ .exitm
+ .endif
+
+ .if _DRegList == 14
+ vpop {d8-d14}
+ .exitm
+ .endif
+
+ .if _DRegList == 15
+ vpop {d8-d15}
+ .exitm
+ .endif
+ .endm
+
+ @// The opposite of _M_PUSH_RREG
+ .macro _M_POP_RREG cc
+ .if _RRegList == 0
+ bx\cc lr
+ .exitm
+ .endif
+ .if _RRegList == 4
+ ldm\cc\()fd sp!, {r4, pc}
+ .exitm
+ .endif
+
+ .if _RRegList == 6
+ ldm\cc\()fd sp!, {r4-r6, pc}
+ .exitm
+ .endif
+
+ .if _RRegList == 8
+ ldm\cc\()fd sp!, {r4-r8, pc}
+ .exitm
+ .endif
+
+ .if _RRegList == 10
+ ldm\cc\()fd sp!, {r4-r10, pc}
+ .exitm
+ .endif
+
+ .if _RRegList == 12
+ ldm\cc\()fd sp!, {r4-r12, pc}
+ .exitm
+ .endif
+ .endm
+
+ @ Produce function return instructions
+ .macro _M_RET cc
+ _M_POP_DREG \cc
+ _M_POP_RREG \cc
+ .endm
+
+ @// Allocate 4-byte aligned area of name
+ @// |name| and size |size| bytes.
+ .macro M_ALLOC4 name, size
+ .if (_SBytes & 3) != 0
+ .set _SBytes, _SBytes + (4 - (_SBytes & 3))
+ .endif
+ .set \name\()_F, _SBytes
+ .set _SBytes, _SBytes + \size
+
+ .endm
+
+ @ Load word from stack
+ .macro M_LDR r, a0, a1, a2, a3
+ _M_DATA "ldr", 4, \r, \a0, \a1, \a2, \a3
+ .endm
+
+ @ Store word to stack
+ .macro M_STR r, a0, a1, a2, a3
+ _M_DATA "str", 4, \r, \a0, \a1, \a2, \a3
+ .endm
+
+ @ Macro to perform a data access operation
+ @ Such as LDR or STR
+ @ The addressing mode is modified such that
+ @ 1. If no address is given then the name is taken
+ @ as a stack offset
+ @ 2. If the addressing mode is not available for the
+ @ state being assembled for (eg Thumb) then a suitable
+ @ addressing mode is substituted.
+ @
+ @ On Entry:
+ @ $i = Instruction to perform (eg "LDRB")
+ @ $a = Required byte alignment
+ @ $r = Register(s) to transfer (eg "r1")
+ @ $a0,$a1,$a2. Addressing mode and condition. One of:
+ @ label {,cc}
+ @ [base] {,,,cc}
+ @ [base, offset]{!} {,,cc}
+ @ [base, offset, shift]{!} {,cc}
+ @ [base], offset {,,cc}
+ @ [base], offset, shift {,cc}
+ @
+ @ WARNING: Most of the above are not supported, except the first case.
+ .macro _M_DATA i, a, r, a0, a1, a2, a3
+ .set _Offset, _Workspace + \a0\()_F
+ \i\a1 \r, [sp, #_Offset]
+ .endm
diff --git a/media/openmax_dl/dl/api/armOMX.h b/media/openmax_dl/dl/api/armOMX.h
new file mode 100644
index 0000000000..0ad21c42ce
--- /dev/null
+++ b/media/openmax_dl/dl/api/armOMX.h
@@ -0,0 +1,289 @@
+/*
+ * Copyright (c) 2013 The WebRTC project authors. All Rights Reserved.
+ *
+ * Use of this source code is governed by a BSD-style license
+ * that can be found in the LICENSE file in the root of the source
+ * tree. An additional intellectual property rights grant can be found
+ * in the file PATENTS. All contributing project authors may
+ * be found in the AUTHORS file in the root of the source tree.
+ *
+ * This file was originally licensed as follows. It has been
+ * relicensed with permission from the copyright holders.
+ */
+
+/*
+ *
+ * File Name: armOMX_ReleaseVersion.h
+ * OpenMAX DL: v1.0.2
+ * Last Modified Revision: 15322
+ * Last Modified Date: Wed, 15 Oct 2008
+ *
+ * (c) Copyright 2007-2008 ARM Limited. All Rights Reserved.
+ *
+ *
+ *
+ * This file allows a version of the OMX DL libraries to be built where some or
+ * all of the function names can be given a user specified suffix.
+ *
+ * You might want to use it where:
+ *
+ * - you want to rename a function "out of the way" so that you could replace
+ * a function with a different version (the original version would still be
+ * in the library just with a different name - so you could debug the new
+ * version by comparing it to the output of the old)
+ *
+ * - you want to rename all the functions to versions with a suffix so that
+ * you can include two versions of the library and choose between functions
+ * at runtime.
+ *
+ * e.g. omxIPBM_Copy_U8_C1R could be renamed omxIPBM_Copy_U8_C1R_CortexA8
+ *
+ */
+
+
+#ifndef _armOMX_H_
+#define _armOMX_H_
+
+#define ARMOMX_ENABLE_RENAMING 0
+#if ARMOMX_ENABLE_RENAMING
+
+/* We need to define these two macros in order to expand and concatenate the names */
+#define OMXCAT2BAR(A, B) omx ## A ## B
+#define OMXCATBAR(A, B) OMXCAT2BAR(A, B)
+
+/* Define the suffix to add to all functions - the default is no suffix */
+#define BARE_SUFFIX
+
+
+
+/* Define what happens to the bare suffix-less functions, down to the sub-domain accuracy */
+#define OMXACAAC_SUFFIX BARE_SUFFIX
+#define OMXACMP3_SUFFIX BARE_SUFFIX
+#define OMXICJP_SUFFIX BARE_SUFFIX
+#define OMXIPBM_SUFFIX BARE_SUFFIX
+#define OMXIPCS_SUFFIX BARE_SUFFIX
+#define OMXIPPP_SUFFIX BARE_SUFFIX
+#define OMXSP_SUFFIX BARE_SUFFIX
+#define OMXVCCOMM_SUFFIX BARE_SUFFIX
+#define OMXVCM4P10_SUFFIX BARE_SUFFIX
+#define OMXVCM4P2_SUFFIX BARE_SUFFIX
+
+
+
+
+/* Define what the each bare, un-suffixed OpenMAX API function names is to be renamed */
+#define omxACAAC_DecodeChanPairElt OMXCATBAR(ACAAC_DecodeChanPairElt, OMXACAAC_SUFFIX)
+#define omxACAAC_DecodeDatStrElt OMXCATBAR(ACAAC_DecodeDatStrElt, OMXACAAC_SUFFIX)
+#define omxACAAC_DecodeFillElt OMXCATBAR(ACAAC_DecodeFillElt, OMXACAAC_SUFFIX)
+#define omxACAAC_DecodeIsStereo_S32 OMXCATBAR(ACAAC_DecodeIsStereo_S32, OMXACAAC_SUFFIX)
+#define omxACAAC_DecodeMsPNS_S32_I OMXCATBAR(ACAAC_DecodeMsPNS_S32_I, OMXACAAC_SUFFIX)
+#define omxACAAC_DecodeMsStereo_S32_I OMXCATBAR(ACAAC_DecodeMsStereo_S32_I, OMXACAAC_SUFFIX)
+#define omxACAAC_DecodePrgCfgElt OMXCATBAR(ACAAC_DecodePrgCfgElt, OMXACAAC_SUFFIX)
+#define omxACAAC_DecodeTNS_S32_I OMXCATBAR(ACAAC_DecodeTNS_S32_I, OMXACAAC_SUFFIX)
+#define omxACAAC_DeinterleaveSpectrum_S32 OMXCATBAR(ACAAC_DeinterleaveSpectrum_S32, OMXACAAC_SUFFIX)
+#define omxACAAC_EncodeTNS_S32_I OMXCATBAR(ACAAC_EncodeTNS_S32_I, OMXACAAC_SUFFIX)
+#define omxACAAC_LongTermPredict_S32 OMXCATBAR(ACAAC_LongTermPredict_S32, OMXACAAC_SUFFIX)
+#define omxACAAC_LongTermReconstruct_S32_I OMXCATBAR(ACAAC_LongTermReconstruct_S32_I, OMXACAAC_SUFFIX)
+#define omxACAAC_MDCTFwd_S32 OMXCATBAR(ACAAC_MDCTFwd_S32, OMXACAAC_SUFFIX)
+#define omxACAAC_MDCTInv_S32_S16 OMXCATBAR(ACAAC_MDCTInv_S32_S16, OMXACAAC_SUFFIX)
+#define omxACAAC_NoiselessDecode OMXCATBAR(ACAAC_NoiselessDecode, OMXACAAC_SUFFIX)
+#define omxACAAC_QuantInv_S32_I OMXCATBAR(ACAAC_QuantInv_S32_I, OMXACAAC_SUFFIX)
+#define omxACAAC_UnpackADIFHeader OMXCATBAR(ACAAC_UnpackADIFHeader, OMXACAAC_SUFFIX)
+#define omxACAAC_UnpackADTSFrameHeader OMXCATBAR(ACAAC_UnpackADTSFrameHeader, OMXACAAC_SUFFIX)
+
+
+#define omxACMP3_HuffmanDecode_S32 OMXCATBAR(ACMP3_HuffmanDecode_S32, OMXACMP3_SUFFIX)
+#define omxACMP3_HuffmanDecodeSfb_S32 OMXCATBAR(ACMP3_HuffmanDecodeSfb_S32, OMXACMP3_SUFFIX)
+#define omxACMP3_HuffmanDecodeSfbMbp_S32 OMXCATBAR(ACMP3_HuffmanDecodeSfbMbp_S32, OMXACMP3_SUFFIX)
+#define omxACMP3_MDCTInv_S32 OMXCATBAR(ACMP3_MDCTInv_S32, OMXACMP3_SUFFIX)
+#define omxACMP3_ReQuantize_S32_I OMXCATBAR(ACMP3_ReQuantize_S32_I, OMXACMP3_SUFFIX)
+#define omxACMP3_ReQuantizeSfb_S32_I OMXCATBAR(ACMP3_ReQuantizeSfb_S32_I, OMXACMP3_SUFFIX)
+#define omxACMP3_SynthPQMF_S32_S16 OMXCATBAR(ACMP3_SynthPQMF_S32_S16, OMXACMP3_SUFFIX)
+#define omxACMP3_UnpackFrameHeader OMXCATBAR(ACMP3_UnpackFrameHeader, OMXACMP3_SUFFIX)
+#define omxACMP3_UnpackScaleFactors_S8 OMXCATBAR(ACMP3_UnpackScaleFactors_S8, OMXACMP3_SUFFIX)
+#define omxACMP3_UnpackSideInfo OMXCATBAR(ACMP3_UnpackSideInfo, OMXACMP3_SUFFIX)
+
+#define omxICJP_CopyExpand_U8_C3 OMXCATBAR(ICJP_CopyExpand_U8_C3, OMXICJP_SUFFIX)
+#define omxICJP_DCTFwd_S16 OMXCATBAR(ICJP_DCTFwd_S16, OMXICJP_SUFFIX)
+#define omxICJP_DCTFwd_S16_I OMXCATBAR(ICJP_DCTFwd_S16_I, OMXICJP_SUFFIX)
+#define omxICJP_DCTInv_S16 OMXCATBAR(ICJP_DCTInv_S16, OMXICJP_SUFFIX)
+#define omxICJP_DCTInv_S16_I OMXCATBAR(ICJP_DCTInv_S16_I, OMXICJP_SUFFIX)
+#define omxICJP_DCTQuantFwd_Multiple_S16 OMXCATBAR(ICJP_DCTQuantFwd_Multiple_S16, OMXICJP_SUFFIX)
+#define omxICJP_DCTQuantFwd_S16 OMXCATBAR(ICJP_DCTQuantFwd_S16, OMXICJP_SUFFIX)
+#define omxICJP_DCTQuantFwd_S16_I OMXCATBAR(ICJP_DCTQuantFwd_S16_I, OMXICJP_SUFFIX)
+#define omxICJP_DCTQuantFwdTableInit OMXCATBAR(ICJP_DCTQuantFwdTableInit, OMXICJP_SUFFIX)
+#define omxICJP_DCTQuantInv_Multiple_S16 OMXCATBAR(ICJP_DCTQuantInv_Multiple_S16, OMXICJP_SUFFIX)
+#define omxICJP_DCTQuantInv_S16 OMXCATBAR(ICJP_DCTQuantInv_S16, OMXICJP_SUFFIX)
+#define omxICJP_DCTQuantInv_S16_I OMXCATBAR(ICJP_DCTQuantInv_S16_I, OMXICJP_SUFFIX)
+#define omxICJP_DCTQuantInvTableInit OMXCATBAR(ICJP_DCTQuantInvTableInit, OMXICJP_SUFFIX)
+#define omxICJP_DecodeHuffman8x8_Direct_S16_C1 OMXCATBAR(ICJP_DecodeHuffman8x8_Direct_S16_C1, OMXICJP_SUFFIX)
+#define omxICJP_DecodeHuffmanSpecGetBufSize_U8 OMXCATBAR(ICJP_DecodeHuffmanSpecGetBufSize_U8, OMXICJP_SUFFIX)
+#define omxICJP_DecodeHuffmanSpecInit_U8 OMXCATBAR(ICJP_DecodeHuffmanSpecInit_U8, OMXICJP_SUFFIX)
+#define omxICJP_EncodeHuffman8x8_Direct_S16_U1_C1 OMXCATBAR(ICJP_EncodeHuffman8x8_Direct_S16_U1_C1, OMXICJP_SUFFIX)
+#define omxICJP_EncodeHuffmanSpecGetBufSize_U8 OMXCATBAR(ICJP_EncodeHuffmanSpecGetBufSize_U8, OMXICJP_SUFFIX)
+#define omxICJP_EncodeHuffmanSpecInit_U8 OMXCATBAR(ICJP_EncodeHuffmanSpecInit_U8, OMXICJP_SUFFIX)
+
+#define omxIPBM_AddC_U8_C1R_Sfs OMXCATBAR(IPBM_AddC_U8_C1R_Sfs, OMXIPBM_SUFFIX)
+#define omxIPBM_Copy_U8_C1R OMXCATBAR(IPBM_Copy_U8_C1R, OMXIPBM_SUFFIX)
+#define omxIPBM_Copy_U8_C3R OMXCATBAR(IPBM_Copy_U8_C3R, OMXIPBM_SUFFIX)
+#define omxIPBM_Mirror_U8_C1R OMXCATBAR(IPBM_Mirror_U8_C1R, OMXIPBM_SUFFIX)
+#define omxIPBM_MulC_U8_C1R_Sfs OMXCATBAR(IPBM_MulC_U8_C1R_Sfs, OMXIPBM_SUFFIX)
+
+#define omxIPCS_ColorTwistQ14_U8_C3R OMXCATBAR(IPCS_ColorTwistQ14_U8_C3R, OMXIPCS_SUFFIX)
+#define omxIPCS_BGR565ToYCbCr420LS_MCU_U16_S16_C3P3R OMXCATBAR(IPCS_BGR565ToYCbCr420LS_MCU_U16_S16_C3P3R, OMXIPCS_SUFFIX)
+#define omxIPCS_BGR565ToYCbCr422LS_MCU_U16_S16_C3P3R OMXCATBAR(IPCS_BGR565ToYCbCr422LS_MCU_U16_S16_C3P3R, OMXIPCS_SUFFIX)
+#define omxIPCS_BGR565ToYCbCr444LS_MCU_U16_S16_C3P3R OMXCATBAR(IPCS_BGR565ToYCbCr444LS_MCU_U16_S16_C3P3R, OMXIPCS_SUFFIX)
+#define omxIPCS_BGR888ToYCbCr420LS_MCU_U8_S16_C3P3R OMXCATBAR(IPCS_BGR888ToYCbCr420LS_MCU_U8_S16_C3P3R, OMXIPCS_SUFFIX)
+#define omxIPCS_BGR888ToYCbCr422LS_MCU_U8_S16_C3P3R OMXCATBAR(IPCS_BGR888ToYCbCr422LS_MCU_U8_S16_C3P3R, OMXIPCS_SUFFIX)
+#define omxIPCS_BGR888ToYCbCr444LS_MCU_U8_S16_C3P3R OMXCATBAR(IPCS_BGR888ToYCbCr444LS_MCU_U8_S16_C3P3R, OMXIPCS_SUFFIX)
+#define omxIPCS_YCbCr420RszCscRotBGR_U8_P3C3R OMXCATBAR(IPCS_YCbCr420RszCscRotBGR_U8_P3C3R, OMXIPCS_SUFFIX)
+#define omxIPCS_YCbCr420RszRot_U8_P3R OMXCATBAR(IPCS_YCbCr420RszRot_U8_P3R, OMXIPCS_SUFFIX)
+#define omxIPCS_YCbCr420ToBGR565_U8_U16_P3C3R OMXCATBAR(IPCS_YCbCr420ToBGR565_U8_U16_P3C3R, OMXIPCS_SUFFIX)
+#define omxIPCS_YCbCr420ToBGR565LS_MCU_S16_U16_P3C3R OMXCATBAR(IPCS_YCbCr420ToBGR565LS_MCU_S16_U16_P3C3R, OMXIPCS_SUFFIX)
+#define omxIPCS_YCbCr420ToBGR888LS_MCU_S16_U8_P3C3R OMXCATBAR(IPCS_YCbCr420ToBGR888LS_MCU_S16_U8_P3C3R, OMXIPCS_SUFFIX)
+#define omxIPCS_YCbCr422RszCscRotBGR_U8_P3C3R OMXCATBAR(IPCS_YCbCr422RszCscRotBGR_U8_P3C3R, OMXIPCS_SUFFIX)
+#define omxIPCS_CbYCrY422RszCscRotBGR_U8_U16_C2R OMXCATBAR(IPCS_CbYCrY422RszCscRotBGR_U8_U16_C2R, OMXIPCS_SUFFIX)
+#define omxIPCS_YCbCr422RszRot_U8_P3R OMXCATBAR(IPCS_YCbCr422RszRot_U8_P3R, OMXIPCS_SUFFIX)
+#define omxIPCS_YCbYCr422ToBGR565_U8_U16_C2C3R OMXCATBAR(IPCS_YCbYCr422ToBGR565_U8_U16_C2C3R, OMXIPCS_SUFFIX)
+#define omxIPCS_YCbCr422ToBGR565LS_MCU_S16_U16_P3C3R OMXCATBAR(IPCS_YCbCr422ToBGR565LS_MCU_S16_U16_P3C3R, OMXIPCS_SUFFIX)
+#define omxIPCS_YCbYCr422ToBGR888_U8_C2C3R OMXCATBAR(IPCS_YCbYCr422ToBGR888_U8_C2C3R, OMXIPCS_SUFFIX)
+#define omxIPCS_YCbCr422ToBGR888LS_MCU_S16_U8_P3C3R OMXCATBAR(IPCS_YCbCr422ToBGR888LS_MCU_S16_U8_P3C3R, OMXIPCS_SUFFIX)
+#define omxIPCS_YCbCr422ToBGR888LS_MCU_S16_U8_P3C3R OMXCATBAR(IPCS_YCbCr422ToBGR888LS_MCU_S16_U8_P3C3R, OMXIPCS_SUFFIX)
+#define omxIPCS_CbYCrY422ToYCbCr420Rotate_U8_C2P3R OMXCATBAR(IPCS_CbYCrY422ToYCbCr420Rotate_U8_C2P3R, OMXIPCS_SUFFIX)
+#define omxIPCS_YCbCr422ToYCbCr420Rotate_U8_P3R OMXCATBAR(IPCS_YCbCr422ToYCbCr420Rotate_U8_P3R, OMXIPCS_SUFFIX)
+#define omxIPCS_YCbCr444ToBGR565_U8_U16_C3R OMXCATBAR(IPCS_YCbCr444ToBGR565_U8_U16_C3R, OMXIPCS_SUFFIX)
+#define omxIPCS_YCbCr444ToBGR565_U8_U16_P3C3R OMXCATBAR(IPCS_YCbCr444ToBGR565_U8_U16_P3C3R, OMXIPCS_SUFFIX)
+#define omxIPCS_YCbCr444ToBGR565LS_MCU_S16_U16_P3C3R OMXCATBAR(IPCS_YCbCr444ToBGR565LS_MCU_S16_U16_P3C3R, OMXIPCS_SUFFIX)
+#define omxIPCS_YCbCr444ToBGR888_U8_C3R OMXCATBAR(IPCS_YCbCr444ToBGR888_U8_C3R, OMXIPCS_SUFFIX)
+
+#define omxIPPP_Deblock_HorEdge_U8_I OMXCATBAR(IPPP_Deblock_HorEdge_U8_I, OMXIPPP_SUFFIX)
+#define omxIPPP_Deblock_VerEdge_U8_I OMXCATBAR(IPPP_Deblock_VerEdge_U8_I, OMXIPPP_SUFFIX)
+#define omxIPPP_FilterFIR_U8_C1R OMXCATBAR(IPPP_FilterFIR_U8_C1R, OMXIPPP_SUFFIX)
+#define omxIPPP_FilterMedian_U8_C1R OMXCATBAR(IPPP_FilterMedian_U8_C1R, OMXIPPP_SUFFIX)
+#define omxIPPP_GetCentralMoment_S64 OMXCATBAR(IPPP_GetCentralMoment_S64, OMXIPPP_SUFFIX)
+#define omxIPPP_GetSpatialMoment_S64 OMXCATBAR(IPPP_GetSpatialMoment_S64, OMXIPPP_SUFFIX)
+#define omxIPPP_MomentGetStateSize OMXCATBAR(IPPP_MomentGetStateSize, OMXIPPP_SUFFIX)
+#define omxIPPP_MomentInit OMXCATBAR(IPPP_MomentInit, OMXIPPP_SUFFIX)
+#define omxIPPP_Moments_U8_C1R OMXCATBAR(IPPP_Moments_U8_C1R, OMXIPPP_SUFFIX)
+#define omxIPPP_Moments_U8_C3R OMXCATBAR(IPPP_Moments_U8_C3R, OMXIPPP_SUFFIX)
+
+#define omxSP_BlockExp_S16 OMXCATBAR(SP_BlockExp_S16, OMXSP_SUFFIX)
+#define omxSP_BlockExp_S32 OMXCATBAR(SP_BlockExp_S32, OMXSP_SUFFIX)
+#define omxSP_Copy_S16 OMXCATBAR(SP_Copy_S16, OMXSP_SUFFIX)
+#define omxSP_DotProd_S16 OMXCATBAR(SP_DotProd_S16, OMXSP_SUFFIX)
+#define omxSP_DotProd_S16_Sfs OMXCATBAR(SP_DotProd_S16_Sfs, OMXSP_SUFFIX)
+#define omxSP_FFTFwd_CToC_SC16_Sfs OMXCATBAR(SP_FFTFwd_CToC_SC16_Sfs, OMXSP_SUFFIX)
+#define omxSP_FFTFwd_CToC_SC32_Sfs OMXCATBAR(SP_FFTFwd_CToC_SC32_Sfs, OMXSP_SUFFIX)
+#define omxSP_FFTFwd_RToCCS_S16S32_Sfs OMXCATBAR(SP_FFTFwd_RToCCS_S16S32_Sfs, OMXSP_SUFFIX)
+#define omxSP_FFTFwd_RToCCS_S32_Sfs OMXCATBAR(SP_FFTFwd_RToCCS_S32_Sfs, OMXSP_SUFFIX)
+#define omxSP_FFTGetBufSize_C_SC16 OMXCATBAR(SP_FFTGetBufSize_C_SC16, OMXSP_SUFFIX)
+#define omxSP_FFTGetBufSize_C_SC32 OMXCATBAR(SP_FFTGetBufSize_C_SC32, OMXSP_SUFFIX)
+#define omxSP_FFTGetBufSize_R_S16S32 OMXCATBAR(SP_FFTGetBufSize_R_S16S32, OMXSP_SUFFIX)
+#define omxSP_FFTGetBufSize_R_S32 OMXCATBAR(SP_FFTGetBufSize_R_S32, OMXSP_SUFFIX)
+#define omxSP_FFTInit_C_SC16 OMXCATBAR(SP_FFTInit_C_SC16, OMXSP_SUFFIX)
+#define omxSP_FFTInit_C_SC32 OMXCATBAR(SP_FFTInit_C_SC32, OMXSP_SUFFIX)
+#define omxSP_FFTInit_R_S16S32 OMXCATBAR(SP_FFTInit_R_S16S32, OMXSP_SUFFIX)
+#define omxSP_FFTInit_R_S32 OMXCATBAR(SP_FFTInit_R_S32, OMXSP_SUFFIX)
+#define omxSP_FFTInv_CCSToR_S32_Sfs OMXCATBAR(SP_FFTInv_CCSToR_S32_Sfs, OMXSP_SUFFIX)
+#define omxSP_FFTInv_CCSToR_S32S16_Sfs OMXCATBAR(SP_FFTInv_CCSToR_S32S16_Sfs, OMXSP_SUFFIX)
+#define omxSP_FFTInv_CToC_SC16_Sfs OMXCATBAR(SP_FFTInv_CToC_SC16_Sfs, OMXSP_SUFFIX)
+#define omxSP_FFTInv_CToC_SC32_Sfs OMXCATBAR(SP_FFTInv_CToC_SC32_Sfs, OMXSP_SUFFIX)
+#define omxSP_FilterMedian_S32 OMXCATBAR(SP_FilterMedian_S32, OMXSP_SUFFIX)
+#define omxSP_FilterMedian_S32_I OMXCATBAR(SP_FilterMedian_S32_I, OMXSP_SUFFIX)
+#define omxSP_FIR_Direct_S16 OMXCATBAR(SP_FIR_Direct_S16, OMXSP_SUFFIX)
+#define omxSP_FIR_Direct_S16_I OMXCATBAR(SP_FIR_Direct_S16_I, OMXSP_SUFFIX)
+#define omxSP_FIR_Direct_S16_ISfs OMXCATBAR(SP_FIR_Direct_S16_ISfs, OMXSP_SUFFIX)
+#define omxSP_FIR_Direct_S16_Sfs OMXCATBAR(SP_FIR_Direct_S16_Sfs, OMXSP_SUFFIX)
+#define omxSP_FIROne_Direct_S16 OMXCATBAR(SP_FIROne_Direct_S16, OMXSP_SUFFIX)
+#define omxSP_FIROne_Direct_S16_I OMXCATBAR(SP_FIROne_Direct_S16_I, OMXSP_SUFFIX)
+#define omxSP_FIROne_Direct_S16_ISfs OMXCATBAR(SP_FIROne_Direct_S16_ISfs, OMXSP_SUFFIX)
+#define omxSP_FIROne_Direct_S16_Sfs OMXCATBAR(SP_FIROne_Direct_S16_Sfs, OMXSP_SUFFIX)
+#define omxSP_IIR_BiQuadDirect_S16 OMXCATBAR(SP_IIR_BiQuadDirect_S16, OMXSP_SUFFIX)
+#define omxSP_IIR_BiQuadDirect_S16_I OMXCATBAR(SP_IIR_BiQuadDirect_S16_I, OMXSP_SUFFIX)
+#define omxSP_IIR_Direct_S16 OMXCATBAR(SP_IIR_Direct_S16, OMXSP_SUFFIX)
+#define omxSP_IIR_Direct_S16_I OMXCATBAR(SP_IIR_Direct_S16_I, OMXSP_SUFFIX)
+#define omxSP_IIROne_BiQuadDirect_S16 OMXCATBAR(SP_IIROne_BiQuadDirect_S16, OMXSP_SUFFIX)
+#define omxSP_IIROne_BiQuadDirect_S16_I OMXCATBAR(SP_IIROne_BiQuadDirect_S16_I, OMXSP_SUFFIX)
+#define omxSP_IIROne_Direct_S16 OMXCATBAR(SP_IIROne_Direct_S16, OMXSP_SUFFIX)
+#define omxSP_IIROne_Direct_S16_I OMXCATBAR(SP_IIROne_Direct_S16_I, OMXSP_SUFFIX)
+
+#define omxVCCOMM_Average_16x OMXCATBAR(VCCOMM_Average_16x, OMXVCCOMM_SUFFIX)
+#define omxVCCOMM_Average_8x OMXCATBAR(VCCOMM_Average_8x, OMXVCCOMM_SUFFIX)
+#define omxVCCOMM_ComputeTextureErrorBlock OMXCATBAR(VCCOMM_ComputeTextureErrorBlock, OMXVCCOMM_SUFFIX)
+#define omxVCCOMM_ComputeTextureErrorBlock_SAD OMXCATBAR(VCCOMM_ComputeTextureErrorBlock_SAD, OMXVCCOMM_SUFFIX)
+#define omxVCCOMM_Copy16x16 OMXCATBAR(VCCOMM_Copy16x16, OMXVCCOMM_SUFFIX)
+#define omxVCCOMM_Copy8x8 OMXCATBAR(VCCOMM_Copy8x8, OMXVCCOMM_SUFFIX)
+#define omxVCCOMM_ExpandFrame_I OMXCATBAR(VCCOMM_ExpandFrame_I, OMXVCCOMM_SUFFIX)
+#define omxVCCOMM_LimitMVToRect OMXCATBAR(VCCOMM_LimitMVToRect, OMXVCCOMM_SUFFIX)
+#define omxVCCOMM_SAD_16x OMXCATBAR(VCCOMM_SAD_16x, OMXVCCOMM_SUFFIX)
+#define omxVCCOMM_SAD_8x OMXCATBAR(VCCOMM_SAD_8x, OMXVCCOMM_SUFFIX)
+
+#define omxVCM4P10_Average_4x OMXCATBAR(VCM4P10_Average_4x, OMXVCM4P10_SUFFIX)
+#define omxVCM4P10_BlockMatch_Half OMXCATBAR(VCM4P10_BlockMatch_Half, OMXVCM4P10_SUFFIX)
+#define omxVCM4P10_BlockMatch_Integer OMXCATBAR(VCM4P10_BlockMatch_Integer, OMXVCM4P10_SUFFIX)
+#define omxVCM4P10_BlockMatch_Quarter OMXCATBAR(VCM4P10_BlockMatch_Quarter, OMXVCM4P10_SUFFIX)
+#define omxVCM4P10_DeblockChroma_I OMXCATBAR(VCM4P10_DeblockChroma_I, OMXVCM4P10_SUFFIX)
+#define omxVCM4P10_DeblockLuma_I OMXCATBAR(VCM4P10_DeblockLuma_I, OMXVCM4P10_SUFFIX)
+#define omxVCM4P10_DecodeChromaDcCoeffsToPairCAVLC OMXCATBAR(VCM4P10_DecodeChromaDcCoeffsToPairCAVLC, OMXVCM4P10_SUFFIX)
+#define omxVCM4P10_DecodeCoeffsToPairCAVLC OMXCATBAR(VCM4P10_DecodeCoeffsToPairCAVLC, OMXVCM4P10_SUFFIX)
+#define omxVCM4P10_DequantTransformResidualFromPairAndAdd OMXCATBAR(VCM4P10_DequantTransformResidualFromPairAndAdd, OMXVCM4P10_SUFFIX)
+#define omxVCM4P10_FilterDeblockingChroma_HorEdge_I OMXCATBAR(VCM4P10_FilterDeblockingChroma_HorEdge_I, OMXVCM4P10_SUFFIX)
+#define omxVCM4P10_FilterDeblockingChroma_VerEdge_I OMXCATBAR(VCM4P10_FilterDeblockingChroma_VerEdge_I, OMXVCM4P10_SUFFIX)
+#define omxVCM4P10_FilterDeblockingLuma_HorEdge_I OMXCATBAR(VCM4P10_FilterDeblockingLuma_HorEdge_I, OMXVCM4P10_SUFFIX)
+#define omxVCM4P10_FilterDeblockingLuma_VerEdge_I OMXCATBAR(VCM4P10_FilterDeblockingLuma_VerEdge_I, OMXVCM4P10_SUFFIX)
+#define omxVCM4P10_GetVLCInfo OMXCATBAR(VCM4P10_GetVLCInfo, OMXVCM4P10_SUFFIX)
+#define omxVCM4P10_InterpolateChroma OMXCATBAR(VCM4P10_InterpolateChroma, OMXVCM4P10_SUFFIX)
+#define omxVCM4P10_InterpolateHalfHor_Luma OMXCATBAR(VCM4P10_InterpolateHalfHor_Luma, OMXVCM4P10_SUFFIX)
+#define omxVCM4P10_InterpolateHalfVer_Luma OMXCATBAR(VCM4P10_InterpolateHalfVer_Luma, OMXVCM4P10_SUFFIX)
+#define omxVCM4P10_InterpolateLuma OMXCATBAR(VCM4P10_InterpolateLuma, OMXVCM4P10_SUFFIX)
+#define omxVCM4P10_InvTransformDequant_ChromaDC OMXCATBAR(VCM4P10_InvTransformDequant_ChromaDC, OMXVCM4P10_SUFFIX)
+#define omxVCM4P10_InvTransformDequant_LumaDC OMXCATBAR(VCM4P10_InvTransformDequant_LumaDC, OMXVCM4P10_SUFFIX)
+#define omxVCM4P10_InvTransformResidualAndAdd OMXCATBAR(VCM4P10_InvTransformResidualAndAdd, OMXVCM4P10_SUFFIX)
+#define omxVCM4P10_MEGetBufSize OMXCATBAR(VCM4P10_MEGetBufSize, OMXVCM4P10_SUFFIX)
+#define omxVCM4P10_MEInit OMXCATBAR(VCM4P10_MEInit, OMXVCM4P10_SUFFIX)
+#define omxVCM4P10_MotionEstimationMB OMXCATBAR(VCM4P10_MotionEstimationMB, OMXVCM4P10_SUFFIX)
+#define omxVCM4P10_PredictIntra_16x16 OMXCATBAR(VCM4P10_PredictIntra_16x16, OMXVCM4P10_SUFFIX)
+#define omxVCM4P10_PredictIntra_4x4 OMXCATBAR(VCM4P10_PredictIntra_4x4, OMXVCM4P10_SUFFIX)
+#define omxVCM4P10_PredictIntraChroma_8x8 OMXCATBAR(VCM4P10_PredictIntraChroma_8x8, OMXVCM4P10_SUFFIX)
+#define omxVCM4P10_SAD_4x OMXCATBAR(VCM4P10_SAD_4x, OMXVCM4P10_SUFFIX)
+#define omxVCM4P10_SADQuar_16x OMXCATBAR(VCM4P10_SADQuar_16x, OMXVCM4P10_SUFFIX)
+#define omxVCM4P10_SADQuar_4x OMXCATBAR(VCM4P10_SADQuar_4x, OMXVCM4P10_SUFFIX)
+#define omxVCM4P10_SADQuar_8x OMXCATBAR(VCM4P10_SADQuar_8x, OMXVCM4P10_SUFFIX)
+#define omxVCM4P10_SATD_4x4 OMXCATBAR(VCM4P10_SATD_4x4, OMXVCM4P10_SUFFIX)
+#define omxVCM4P10_SubAndTransformQDQResidual OMXCATBAR(VCM4P10_SubAndTransformQDQResidual, OMXVCM4P10_SUFFIX)
+#define omxVCM4P10_TransformDequantChromaDCFromPair OMXCATBAR(VCM4P10_TransformDequantChromaDCFromPair, OMXVCM4P10_SUFFIX)
+#define omxVCM4P10_TransformDequantLumaDCFromPair OMXCATBAR(VCM4P10_TransformDequantLumaDCFromPair, OMXVCM4P10_SUFFIX)
+#define omxVCM4P10_TransformQuant_ChromaDC OMXCATBAR(VCM4P10_TransformQuant_ChromaDC, OMXVCM4P10_SUFFIX)
+#define omxVCM4P10_TransformQuant_LumaDC OMXCATBAR(VCM4P10_TransformQuant_LumaDC, OMXVCM4P10_SUFFIX)
+
+#define omxVCM4P2_BlockMatch_Half_16x16 OMXCATBAR(VCM4P2_BlockMatch_Half_16x16, OMXVCM4P2_SUFFIX)
+#define omxVCM4P2_BlockMatch_Half_8x8 OMXCATBAR(VCM4P2_BlockMatch_Half_8x8, OMXVCM4P2_SUFFIX)
+#define omxVCM4P2_BlockMatch_Integer_16x16 OMXCATBAR(VCM4P2_BlockMatch_Integer_16x16, OMXVCM4P2_SUFFIX)
+#define omxVCM4P2_BlockMatch_Integer_8x8 OMXCATBAR(VCM4P2_BlockMatch_Integer_8x8, OMXVCM4P2_SUFFIX)
+#define omxVCM4P2_DCT8x8blk OMXCATBAR(VCM4P2_DCT8x8blk, OMXVCM4P2_SUFFIX)
+#define omxVCM4P2_DecodeBlockCoef_Inter OMXCATBAR(VCM4P2_DecodeBlockCoef_Inter, OMXVCM4P2_SUFFIX)
+#define omxVCM4P2_DecodeBlockCoef_Intra OMXCATBAR(VCM4P2_DecodeBlockCoef_Intra, OMXVCM4P2_SUFFIX)
+#define omxVCM4P2_DecodePadMV_PVOP OMXCATBAR(VCM4P2_DecodePadMV_PVOP, OMXVCM4P2_SUFFIX)
+#define omxVCM4P2_DecodeVLCZigzag_Inter OMXCATBAR(VCM4P2_DecodeVLCZigzag_Inter, OMXVCM4P2_SUFFIX)
+#define omxVCM4P2_DecodeVLCZigzag_IntraACVLC OMXCATBAR(VCM4P2_DecodeVLCZigzag_IntraACVLC, OMXVCM4P2_SUFFIX)
+#define omxVCM4P2_DecodeVLCZigzag_IntraDCVLC OMXCATBAR(VCM4P2_DecodeVLCZigzag_IntraDCVLC, OMXVCM4P2_SUFFIX)
+#define omxVCM4P2_EncodeMV OMXCATBAR(VCM4P2_EncodeMV, OMXVCM4P2_SUFFIX)
+#define omxVCM4P2_EncodeVLCZigzag_Inter OMXCATBAR(VCM4P2_EncodeVLCZigzag_Inter, OMXVCM4P2_SUFFIX)
+#define omxVCM4P2_EncodeVLCZigzag_IntraACVLC OMXCATBAR(VCM4P2_EncodeVLCZigzag_IntraACVLC, OMXVCM4P2_SUFFIX)
+#define omxVCM4P2_EncodeVLCZigzag_IntraDCVLC OMXCATBAR(VCM4P2_EncodeVLCZigzag_IntraDCVLC, OMXVCM4P2_SUFFIX)
+#define omxVCM4P2_FindMVpred OMXCATBAR(VCM4P2_FindMVpred, OMXVCM4P2_SUFFIX)
+#define omxVCM4P2_IDCT8x8blk OMXCATBAR(VCM4P2_IDCT8x8blk, OMXVCM4P2_SUFFIX)
+#define omxVCM4P2_MCReconBlock OMXCATBAR(VCM4P2_MCReconBlock, OMXVCM4P2_SUFFIX)
+#define omxVCM4P2_MEGetBufSize OMXCATBAR(VCM4P2_MEGetBufSize, OMXVCM4P2_SUFFIX)
+#define omxVCM4P2_MEInit OMXCATBAR(VCM4P2_MEInit, OMXVCM4P2_SUFFIX)
+#define omxVCM4P2_MotionEstimationMB OMXCATBAR(VCM4P2_MotionEstimationMB, OMXVCM4P2_SUFFIX)
+#define omxVCM4P2_PredictReconCoefIntra OMXCATBAR(VCM4P2_PredictReconCoefIntra, OMXVCM4P2_SUFFIX)
+#define omxVCM4P2_QuantInter_I OMXCATBAR(VCM4P2_QuantInter_I, OMXVCM4P2_SUFFIX)
+#define omxVCM4P2_QuantIntra_I OMXCATBAR(VCM4P2_QuantIntra_I, OMXVCM4P2_SUFFIX)
+#define omxVCM4P2_QuantInvInter_I OMXCATBAR(VCM4P2_QuantInvInter_I, OMXVCM4P2_SUFFIX)
+#define omxVCM4P2_QuantInvIntra_I OMXCATBAR(VCM4P2_QuantInvIntra_I, OMXVCM4P2_SUFFIX)
+#define omxVCM4P2_TransRecBlockCoef_inter OMXCATBAR(VCM4P2_TransRecBlockCoef_inter, OMXVCM4P2_SUFFIX)
+#define omxVCM4P2_TransRecBlockCoef_intra OMXCATBAR(VCM4P2_TransRecBlockCoef_intra, OMXVCM4P2_SUFFIX)
+
+#endif /* endif ARMOMX_ENABLE_RENAMING */
+#endif /* _armOMX_h_ */
diff --git a/media/openmax_dl/dl/api/omxtypes.h b/media/openmax_dl/dl/api/omxtypes.h
new file mode 100644
index 0000000000..97718eac22
--- /dev/null
+++ b/media/openmax_dl/dl/api/omxtypes.h
@@ -0,0 +1,286 @@
+/**
+ * File: omxtypes.h
+ * Brief: Defines basic Data types used in OpenMAX v1.0.2 header files.
+ *
+ * Copyright (c) 2005-2008,2015 The Khronos Group Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and/or associated documentation files (the
+ * "Materials"), to deal in the Materials without restriction, including
+ * without limitation the rights to use, copy, modify, merge, publish,
+ * distribute, sublicense, and/or sell copies of the Materials, and to
+ * permit persons to whom the Materials are furnished to do so, subject to
+ * the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included
+ * in all copies or substantial portions of the Materials.
+ *
+ * MODIFICATIONS TO THIS FILE MAY MEAN IT NO LONGER ACCURATELY REFLECTS
+ * KHRONOS STANDARDS. THE UNMODIFIED, NORMATIVE VERSIONS OF KHRONOS
+ * SPECIFICATIONS AND HEADER INFORMATION ARE LOCATED AT
+ * https://www.khronos.org/registry/
+ *
+ * THE MATERIALS ARE PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
+ * EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
+ * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.
+ * IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY
+ * CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT,
+ * TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE
+ * MATERIALS OR THE USE OR OTHER DEALINGS IN THE MATERIALS.
+ *
+ */
+
+#ifndef _OMXTYPES_H_
+#define _OMXTYPES_H_
+
+#include <limits.h>
+
+#ifdef __cplusplus
+extern "C" {
+#endif
+
+/*
+ * Maximum FFT order supported by the twiddle table. Only used by the
+ * float FFT routines. Must be consistent with the table in
+ * armSP_FFT_F32TwiddleTable.c.
+ */
+#ifdef BIG_FFT_TABLE
+#define TWIDDLE_TABLE_ORDER 15
+#else
+#define TWIDDLE_TABLE_ORDER 12
+#endif
+
+#define OMX_IN
+#define OMX_OUT
+#define OMX_INOUT
+
+
+typedef enum {
+
+ /* Mandatory return codes - use cases are explicitly described for each function */
+ OMX_Sts_NoErr = 0, /* No error, the function completed successfully */
+ OMX_Sts_Err = -2, /* Unknown/unspecified error */
+ OMX_Sts_InvalidBitstreamValErr = -182, /* Invalid value detected during bitstream processing */
+ OMX_Sts_MemAllocErr = -9, /* Not enough memory allocated for the operation */
+ OMX_StsACAAC_GainCtrErr = -159, /* AAC: Unsupported gain control data detected */
+ OMX_StsACAAC_PrgNumErr = -167, /* AAC: Invalid number of elements for one program */
+ OMX_StsACAAC_CoefValErr = -163, /* AAC: Invalid quantized coefficient value */
+ OMX_StsACAAC_MaxSfbErr = -162, /* AAC: Invalid maxSfb value in relation to numSwb */
+ OMX_StsACAAC_PlsDataErr = -160, /* AAC: pulse escape sequence data error */
+
+ /* Optional return codes - use cases are explicitly described for each function*/
+ OMX_Sts_BadArgErr = -5, /* Bad Arguments */
+
+ OMX_StsACAAC_TnsNumFiltErr = -157, /* AAC: Invalid number of TNS filters */
+ OMX_StsACAAC_TnsLenErr = -156, /* AAC: Invalid TNS region length */
+ OMX_StsACAAC_TnsOrderErr = -155, /* AAC: Invalid order of TNS filter */
+ OMX_StsACAAC_TnsCoefResErr = -154, /* AAC: Invalid bit-resolution for TNS filter coefficients */
+ OMX_StsACAAC_TnsCoefErr = -153, /* AAC: Invalid TNS filter coefficients */
+ OMX_StsACAAC_TnsDirectErr = -152, /* AAC: Invalid TNS filter direction */
+
+ OMX_StsICJP_JPEGMarkerErr = -183, /* JPEG marker encountered within an entropy-coded block; */
+ /* Huffman decoding operation terminated early. */
+ OMX_StsICJP_JPEGMarker = -181, /* JPEG marker encountered; Huffman decoding */
+ /* operation terminated early. */
+ OMX_StsIPPP_ContextMatchErr = -17, /* Context parameter doesn't match to the operation */
+
+ OMX_StsSP_EvenMedianMaskSizeErr = -180, /* Even size of the Median Filter mask was replaced by the odd one */
+
+ OMX_Sts_MaximumEnumeration = INT_MAX /*Placeholder, forces enum of size OMX_INT*/
+
+ } OMXResult; /** Return value or error value returned from a function. Identical to OMX_INT */
+
+
+/* OMX_U8 */
+#if UCHAR_MAX == 0xff
+typedef unsigned char OMX_U8;
+#elif USHRT_MAX == 0xff
+typedef unsigned short int OMX_U8;
+#else
+#error OMX_U8 undefined
+#endif
+
+
+/* OMX_S8 */
+#if SCHAR_MAX == 0x7f
+typedef signed char OMX_S8;
+#elif SHRT_MAX == 0x7f
+typedef signed short int OMX_S8;
+#else
+#error OMX_S8 undefined
+#endif
+
+
+/* OMX_U16 */
+#if USHRT_MAX == 0xffff
+typedef unsigned short int OMX_U16;
+#elif UINT_MAX == 0xffff
+typedef unsigned int OMX_U16;
+#else
+#error OMX_U16 undefined
+#endif
+
+
+/* OMX_S16 */
+#if SHRT_MAX == 0x7fff
+typedef signed short int OMX_S16;
+#elif INT_MAX == 0x7fff
+typedef signed int OMX_S16;
+#else
+#error OMX_S16 undefined
+#endif
+
+
+/* OMX_U32 */
+#if UINT_MAX == 0xffffffff
+typedef unsigned int OMX_U32;
+#elif LONG_MAX == 0xffffffff
+typedef unsigned long int OMX_U32;
+#else
+#error OMX_U32 undefined
+#endif
+
+
+/* OMX_S32 */
+#if INT_MAX == 0x7fffffff
+typedef signed int OMX_S32;
+#elif LONG_MAX == 0x7fffffff
+typedef long signed int OMX_S32;
+#else
+#error OMX_S32 undefined
+#endif
+
+
+/* OMX_U64 & OMX_S64 */
+#if defined( _WIN32 ) || defined ( _WIN64 )
+ typedef __int64 OMX_S64; /** Signed 64-bit integer */
+ typedef unsigned __int64 OMX_U64; /** Unsigned 64-bit integer */
+ #define OMX_MIN_S64 (0x8000000000000000i64)
+ #define OMX_MIN_U64 (0x0000000000000000i64)
+ #define OMX_MAX_S64 (0x7FFFFFFFFFFFFFFFi64)
+ #define OMX_MAX_U64 (0xFFFFFFFFFFFFFFFFi64)
+#else
+ typedef long long OMX_S64; /** Signed 64-bit integer */
+ typedef unsigned long long OMX_U64; /** Unsigned 64-bit integer */
+ #define OMX_MIN_S64 (0x8000000000000000LL)
+ #define OMX_MIN_U64 (0x0000000000000000LL)
+ #define OMX_MAX_S64 (0x7FFFFFFFFFFFFFFFLL)
+ #define OMX_MAX_U64 (0xFFFFFFFFFFFFFFFFLL)
+#endif
+
+
+/* OMX_SC8 */
+typedef struct
+{
+ OMX_S8 Re; /** Real part */
+ OMX_S8 Im; /** Imaginary part */
+
+} OMX_SC8; /** Signed 8-bit complex number */
+
+
+/* OMX_SC16 */
+typedef struct
+{
+ OMX_S16 Re; /** Real part */
+ OMX_S16 Im; /** Imaginary part */
+
+} OMX_SC16; /** Signed 16-bit complex number */
+
+
+/* OMX_SC32 */
+typedef struct
+{
+ OMX_S32 Re; /** Real part */
+ OMX_S32 Im; /** Imaginary part */
+
+} OMX_SC32; /** Signed 32-bit complex number */
+
+
+/* OMX_SC64 */
+typedef struct
+{
+ OMX_S64 Re; /** Real part */
+ OMX_S64 Im; /** Imaginary part */
+
+} OMX_SC64; /** Signed 64-bit complex number */
+
+
+/* OMX_F32 */
+typedef float OMX_F32; /** Single precision floating point,IEEE 754 */
+
+/* OMX_F64 */
+typedef double OMX_F64; /** Double precision floating point,IEEE 754 */
+
+/* OMX_FC32 */
+typedef struct
+{
+ OMX_F32 Re; /** Real part */
+ OMX_F32 Im; /** Imaginary part */
+
+} OMX_FC32; /** single precision floating point complex number */
+
+/* OMX_FC64 */
+typedef struct
+{
+ OMX_F64 Re; /** Real part */
+ OMX_F64 Im; /** Imaginary part */
+
+} OMX_FC64; /** double precision floating point complex number */
+
+/* OMX_INT */
+typedef int OMX_INT; /** signed integer corresponding to machine word length, has maximum signed value INT_MAX*/
+
+
+#define OMX_MIN_S8 (-128)
+#define OMX_MIN_U8 0
+#define OMX_MIN_S16 (-32768)
+#define OMX_MIN_U16 0
+#define OMX_MIN_S32 (-2147483647-1)
+#define OMX_MIN_U32 0
+
+#define OMX_MAX_S8 (127)
+#define OMX_MAX_U8 (255)
+#define OMX_MAX_S16 (32767)
+#define OMX_MAX_U16 (0xFFFF)
+#define OMX_MAX_S32 (2147483647)
+#define OMX_MAX_U32 (0xFFFFFFFF)
+
+typedef void OMXVoid;
+
+#ifndef NULL
+#define NULL ((void*)0)
+#endif
+
+/** Defines the geometric position and size of a rectangle,
+ * where x,y defines the coordinates of the top left corner
+ * of the rectangle, with dimensions width in the x-direction
+ * and height in the y-direction */
+typedef struct {
+ OMX_INT x; /** x-coordinate of top left corner of rectangle */
+ OMX_INT y; /** y-coordinate of top left corner of rectangle */
+ OMX_INT width; /** Width in the x-direction. */
+ OMX_INT height; /** Height in the y-direction. */
+}OMXRect;
+
+
+/** Defines the geometric position of a point, */
+typedef struct
+{
+ OMX_INT x; /** x-coordinate */
+ OMX_INT y; /** y-coordinate */
+
+} OMXPoint;
+
+
+/** Defines the dimensions of a rectangle, or region of interest in an image */
+typedef struct
+{
+ OMX_INT width; /** Width of the rectangle, in the x-direction */
+ OMX_INT height; /** Height of the rectangle, in the y-direction */
+
+} OMXSize;
+
+#ifdef __cplusplus
+}
+#endif
+#endif /* _OMXTYPES_H_ */
diff --git a/media/openmax_dl/dl/api/omxtypes_s.h b/media/openmax_dl/dl/api/omxtypes_s.h
new file mode 100644
index 0000000000..d880d351fd
--- /dev/null
+++ b/media/openmax_dl/dl/api/omxtypes_s.h
@@ -0,0 +1,76 @@
+@//
+@// Copyright (c) 2013 The WebRTC project authors. All Rights Reserved.
+@//
+@// Use of this source code is governed by a BSD-style license
+@// that can be found in the LICENSE file in the root of the source
+@// tree. An additional intellectual property rights grant can be found
+@// in the file PATENTS. All contributing project authors may
+@// be found in the AUTHORS file in the root of the source tree.
+@//
+@// This file was originally licensed as follows. It has been
+@// relicensed with permission from the copyright holders.
+@//
+
+@//
+@// File Name: omxtypes_s.h
+@// OpenMAX DL: v1.0.2
+@// Last Modified Revision: 9622
+@// Last Modified Date: Wed, 06 Feb 2008
+@//
+@// (c) Copyright 2007-2008 ARM Limited. All Rights Reserved.
+@//
+@//
+
+@// Mandatory return codes - use cases are explicitly described for each function
+ .equ OMX_Sts_NoErr, 0 @// No error the function completed successfully
+ .equ OMX_Sts_Err, -2 @// Unknown/unspecified error
+ .equ OMX_Sts_InvalidBitstreamValErr, -182 @// Invalid value detected during bitstream processing
+ .equ OMX_Sts_MemAllocErr, -9 @// Not enough memory allocated for the operation
+ .equ OMX_StsACAAC_GainCtrErr, -159 @// AAC: Unsupported gain control data detected
+ .equ OMX_StsACAAC_PrgNumErr, -167 @// AAC: Invalid number of elements for one program
+ .equ OMX_StsACAAC_CoefValErr, -163 @// AAC: Invalid quantized coefficient value
+ .equ OMX_StsACAAC_MaxSfbErr, -162 @// AAC: Invalid maxSfb value in relation to numSwb
+ .equ OMX_StsACAAC_PlsDataErr, -160 @// AAC: pulse escape sequence data error
+
+@// Optional return codes - use cases are explicitly described for each function
+ .equ OMX_Sts_BadArgErr, -5 @// Bad Arguments
+
+ .equ OMX_StsACAAC_TnsNumFiltErr, -157 @// AAC: Invalid number of TNS filters
+ .equ OMX_StsACAAC_TnsLenErr, -156 @// AAC: Invalid TNS region length
+ .equ OMX_StsACAAC_TnsOrderErr, -155 @// AAC: Invalid order of TNS filter
+ .equ OMX_StsACAAC_TnsCoefResErr, -154 @// AAC: Invalid bit-resolution for TNS filter coefficients
+ .equ OMX_StsACAAC_TnsCoefErr, -153 @// AAC: Invalid TNS filter coefficients
+ .equ OMX_StsACAAC_TnsDirectErr, -152 @// AAC: Invalid TNS filter direction
+ .equ OMX_StsICJP_JPEGMarkerErr, -183 @// JPEG marker encountered within an entropy-coded block;
+ @// Huffman decoding operation terminated early.
+ .equ OMX_StsICJP_JPEGMarker, -181 @// JPEG marker encountered; Huffman decoding
+ @// operation terminated early.
+ .equ OMX_StsIPPP_ContextMatchErr, -17 @// Context parameter doesn't match to the operation
+
+ .equ OMX_StsSP_EvenMedianMaskSizeErr, -180 @// Even size of the Median Filter mask was replaced by the odd one
+
+ .equ OMX_Sts_MaximumEnumeration, 0x7FFFFFFF
+
+
+
+ .equ OMX_MIN_S8, (-128)
+ .equ OMX_MIN_U8, 0
+ .equ OMX_MIN_S16, (-32768)
+ .equ OMX_MIN_U16, 0
+
+
+ .equ OMX_MIN_S32, (-2147483647-1)
+ .equ OMX_MIN_U32, 0
+
+ .equ OMX_MAX_S8, (127)
+ .equ OMX_MAX_U8, (255)
+ .equ OMX_MAX_S16, (32767)
+ .equ OMX_MAX_U16, (0xFFFF)
+ .equ OMX_MAX_S32, (2147483647)
+ .equ OMX_MAX_U32, (0xFFFFFFFF)
+
+ .equ OMX_VC_UPPER, 0x1 @// Used by the PredictIntra functions
+ .equ OMX_VC_LEFT, 0x2 @// Used by the PredictIntra functions
+ .equ OMX_VC_UPPER_RIGHT, 0x40 @// Used by the PredictIntra functions
+
+ .equ NULL, 0
diff --git a/media/openmax_dl/dl/moz.build b/media/openmax_dl/dl/moz.build
new file mode 100644
index 0000000000..9a091c69ed
--- /dev/null
+++ b/media/openmax_dl/dl/moz.build
@@ -0,0 +1,49 @@
+# -*- Mode: python; indent-tabs-mode: nil; tab-width: 40 -*-
+# vim: set filetype=python:
+# This Source Code Form is subject to the terms of the Mozilla Public
+# License, v. 2.0. If a copy of the MPL was not distributed with this
+# file, You can obtain one at http://mozilla.org/MPL/2.0/.
+
+if CONFIG['TARGET_CPU'] == 'arm' and CONFIG['BUILD_ARM_NEON']:
+ Library('openmax_dl')
+
+ EXPORTS.dl.api += [
+ 'api/armCOMM_s.h',
+ 'api/armOMX.h',
+ 'api/omxtypes.h',
+ 'api/omxtypes_s.h',
+ ]
+
+ EXPORTS.dl.sp.api += [
+ 'sp/api/armSP.h',
+ 'sp/api/omxSP.h',
+ ]
+
+ SOURCES += [
+ 'sp/src/armSP_FFT_F32TwiddleTable.c',
+ 'sp/src/omxSP_FFTGetBufSize_R_F32.c',
+ 'sp/src/omxSP_FFTGetBufSize_R_S32.c',
+ 'sp/src/omxSP_FFTInit_R_F32.c',
+ ]
+
+ SOURCES += [
+ 'sp/src/armSP_FFT_CToC_FC32_Radix2_fs_unsafe_s.S',
+ 'sp/src/armSP_FFT_CToC_FC32_Radix2_ls_unsafe_s.S',
+ 'sp/src/armSP_FFT_CToC_FC32_Radix2_unsafe_s.S',
+ 'sp/src/armSP_FFT_CToC_FC32_Radix4_fs_unsafe_s.S',
+ 'sp/src/armSP_FFT_CToC_FC32_Radix4_ls_unsafe_s.S',
+ 'sp/src/armSP_FFT_CToC_FC32_Radix4_unsafe_s.S',
+ 'sp/src/armSP_FFT_CToC_FC32_Radix8_fs_unsafe_s.S',
+ 'sp/src/armSP_FFTInv_CCSToR_F32_preTwiddleRadix2_unsafe_s.S',
+ 'sp/src/omxSP_FFTFwd_RToCCS_F32_Sfs_s.S',
+ 'sp/src/omxSP_FFTInv_CCSToR_F32_Sfs_unscaled_s.S',
+ ]
+
+ LOCAL_INCLUDES += [
+ '..',
+ 'api'
+ ]
+
+ DEFINES['BIG_FFT_TABLE'] = True
+
+ FINAL_LIBRARY = 'xul'
diff --git a/media/openmax_dl/dl/sp/api/armSP.h b/media/openmax_dl/dl/sp/api/armSP.h
new file mode 100644
index 0000000000..f615a87c7a
--- /dev/null
+++ b/media/openmax_dl/dl/sp/api/armSP.h
@@ -0,0 +1,92 @@
+/*
+ * Copyright (c) 2013 The WebRTC project authors. All Rights Reserved.
+ *
+ * Use of this source code is governed by a BSD-style license
+ * that can be found in the LICENSE file in the root of the source
+ * tree. An additional intellectual property rights grant can be found
+ * in the file PATENTS. All contributing project authors may
+ * be found in the AUTHORS file in the root of the source tree.
+ *
+ * This file was originally licensed as follows. It has been
+ * relicensed with permission from the copyright holders.
+ */
+
+/**
+ *
+ * File Name: armSP.h
+ * OpenMAX DL: v1.0.2
+ * Last Modified Revision: 7014
+ * Last Modified Date: Wed, 01 Aug 2007
+ *
+ * (c) Copyright 2007-2008 ARM Limited. All Rights Reserved.
+ *
+ *
+ *
+ * File: armSP.h
+ * Brief: Declares API's/Basic Data types used across the OpenMAX Signal Processing domain
+ *
+ */
+#ifndef _armSP_H_
+#define _armSP_H_
+
+#include "dl/api/omxtypes.h"
+
+#ifdef __cplusplus
+extern "C" {
+#endif
+
+/** FFT Specific declarations */
+extern OMX_S32 armSP_FFT_S32TwiddleTable[1026];
+extern OMX_F32 armSP_FFT_F32TwiddleTable[];
+
+typedef struct ARMsFFTSpec_SC32_Tag
+{
+ OMX_U32 N;
+ OMX_U16 *pBitRev;
+ OMX_SC32 *pTwiddle;
+ OMX_SC32 *pBuf;
+}ARMsFFTSpec_SC32;
+
+
+typedef struct ARMsFFTSpec_SC16_Tag
+{
+ OMX_U32 N;
+ OMX_U16 *pBitRev;
+ OMX_SC16 *pTwiddle;
+ OMX_SC16 *pBuf;
+}ARMsFFTSpec_SC16;
+
+typedef struct ARMsFFTSpec_R_SC32_Tag
+{
+ OMX_U32 N;
+ OMX_U16 *pBitRev;
+ OMX_SC32 *pTwiddle;
+ OMX_S32 *pBuf;
+}ARMsFFTSpec_R_SC32;
+
+typedef struct ARMsFFTSpec_R_FC32_Tag
+{
+ OMX_U32 N;
+ OMX_U16* pBitRev;
+ OMX_FC32* pTwiddle;
+ OMX_F32* pBuf;
+} ARMsFFTSpec_R_FC32;
+
+typedef struct ARMsFFTSpec_FC32_Tag
+{
+ OMX_U32 N;
+ OMX_U16* pBitRev;
+ OMX_FC32* pTwiddle;
+ OMX_FC32* pBuf;
+} ARMsFFTSpec_FC32;
+
+#ifdef __cplusplus
+}
+#endif
+
+#endif
+
+/*End of File*/
+
+
+
diff --git a/media/openmax_dl/dl/sp/api/omxSP.h b/media/openmax_dl/dl/sp/api/omxSP.h
new file mode 100644
index 0000000000..f2a3f5db67
--- /dev/null
+++ b/media/openmax_dl/dl/sp/api/omxSP.h
@@ -0,0 +1,2620 @@
+/**
+ * File: omxSP.h
+ * Brief: OpenMAX DL v1.0.2 - Signal Processing library
+ *
+ * Copyright (c) 2005-2008,2015 The Khronos Group Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and/or associated documentation files (the
+ * "Materials"), to deal in the Materials without restriction, including
+ * without limitation the rights to use, copy, modify, merge, publish,
+ * distribute, sublicense, and/or sell copies of the Materials, and to
+ * permit persons to whom the Materials are furnished to do so, subject to
+ * the following conditions:
+ *
+ * The above copyright notice and this permission notice shall be included
+ * in all copies or substantial portions of the Materials.
+ *
+ * MODIFICATIONS TO THIS FILE MAY MEAN IT NO LONGER ACCURATELY REFLECTS
+ * KHRONOS STANDARDS. THE UNMODIFIED, NORMATIVE VERSIONS OF KHRONOS
+ * SPECIFICATIONS AND HEADER INFORMATION ARE LOCATED AT
+ * https://www.khronos.org/registry/
+ *
+ * THE MATERIALS ARE PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
+ * EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
+ * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.
+ * IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY
+ * CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT,
+ * TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE
+ * MATERIALS OR THE USE OR OTHER DEALINGS IN THE MATERIALS.
+ *
+ */
+
+/* *****************************************************************************************/
+
+#ifndef _OMXSP_H_
+#define _OMXSP_H_
+
+#include "dl/api/omxtypes.h"
+
+#ifdef __cplusplus
+extern "C" {
+#endif
+
+
+/* 2.1 Vendor-Specific FFT Data Structures */
+ typedef void OMXFFTSpec_C_SC16;
+ typedef void OMXFFTSpec_C_SC32;
+ typedef void OMXFFTSpec_R_S16S32;
+ typedef void OMXFFTSpec_R_S16;
+ typedef void OMXFFTSpec_R_S32;
+ typedef void OMXFFTSpec_R_F32;
+ typedef void OMXFFTSpec_C_FC32;
+
+/**
+ * Function: omxSP_Copy_S16 (2.2.1.1.1)
+ *
+ * Description:
+ * Copies the len elements of the vector pointed to by pSrcinto the len
+ * elements of the vector pointed to by pDst. That is:
+ * pDst[i] = pSrc[i], for (i=0, 1, ..., len-1)
+ *
+ * Input Arguments:
+ *
+ * pSrc - pointer to the source vector
+ * len - number of elements contained in the source and destination vectors
+ *
+ * Output Arguments:
+ *
+ * pDst - pointer to the destination vector
+ *
+ * Return Value:
+ *
+ * OMX_Sts_NoErr - no error
+ * OMX_Sts_BadArgErr - bad arguments detected; returned if one or more of
+ * the following is true:
+ * - pSrc or pDst is NULL
+ * - len < 0
+ *
+ */
+OMXResult omxSP_Copy_S16 (
+ const OMX_S16 *pSrc,
+ OMX_S16 *pDst,
+ OMX_INT len
+);
+
+
+
+/**
+ * Function: omxSP_DotProd_S16 (2.2.2.1.1)
+ *
+ * Description:
+ * Calculates the dot product of the two input vectors. This function does
+ * not perform scaling. The internal accumulator width must be at least 32
+ * bits. If any of the partially accumulated values exceeds the range of a
+ * signed 32-bit integer then the result is undefined.
+ *
+ * Input Arguments:
+ *
+ * pSrc1 - pointer to the first input vector; must be aligned on an 8-byte
+ * boundary.
+ * pSrc2 - pointer to the second input vector; must be aligned on an 8-byte
+ * boundary.
+ * len - length of the vectors in pSrc1 and pSrc2
+ *
+ * Output Arguments:
+ *
+ * Return Value:
+ *
+ * The dot product result Note: this function returns the actual result
+ * rather than the standard OMXError.
+ *
+ */
+OMX_S32 omxSP_DotProd_S16 (
+ const OMX_S16 *pSrc1,
+ const OMX_S16 *pSrc2,
+ OMX_INT len
+);
+
+
+
+/**
+ * Function: omxSP_DotProd_S16_Sfs (2.2.2.1.2)
+ *
+ * Description:
+ * Calculates the dot product of the two input signals with output scaling
+ * and saturation, i.e., the result is multiplied by two to the power of the
+ * negative (-)scalefactor (scaled) prior to return. The result is saturated
+ * with rounding if the scaling operation produces a value outside the range
+ * of a signed 32-bit integer. Rounding behavior is defined in section 1.6.7
+ * Integer Scaling and Rounding Conventions. The internal accumulator width
+ * must be at least 32 bits. The result is undefined if any of the partially
+ * accumulated values exceeds the range of a signed 32-bit integer.
+ *
+ * Input Arguments:
+ *
+ * pSrc1 - pointer to the first input vector; must be aligned on an 8-byte
+ * boundary.
+ * pSrc2 - pointer to the second input vector; must be aligned on an 8-byte
+ * boundary.
+ * len - length of the vectors in pSrc1 and pSrc2
+ * scaleFactor - integer scalefactor
+ *
+ * Output Arguments:
+ *
+ * Return Value:
+ *
+ * The dot product result Note: This function returns the actual result
+ * rather than the standard OMXError.
+ *
+ */
+OMX_S32 omxSP_DotProd_S16_Sfs (
+ const OMX_S16 *pSrc1,
+ const OMX_S16 *pSrc2,
+ OMX_INT len,
+ OMX_INT scaleFactor
+);
+
+
+
+/**
+ * Function: omxSP_BlockExp_S16 (2.2.2.2.2)
+ *
+ * Description:
+ * Block exponent calculation for 16-bit and 32-bit signals (count leading
+ * sign bits). These functions compute the number of extra sign bits of all
+ * values in the 16-bit and 32-bit input vector pSrc and return the minimum
+ * sign bit count. This is also the maximum shift value that could be used in
+ * scaling the block of data. The functions BlockExp_S16 and
+ * BlockExp_S32 return the values 15 and 31, respectively, for input vectors in
+ * which all entries are equal to zero.
+ *
+ * Note: These functions differ from other DL functions by not returning the
+ * standard OMXError but the actual result.
+ *
+ * Input Arguments:
+ *
+ * pSrc - pointer to the input vector
+ * len - number of elements contained in the input and output
+ * vectors (0 < len < 65536)
+ *
+ * Output Arguments:
+ *
+ * none
+ *
+ * Return Value:
+ *
+ * Maximum exponent that may be used in scaling
+ *
+ */
+OMX_INT omxSP_BlockExp_S16 (
+ const OMX_S16 *pSrc,
+ OMX_INT len
+);
+
+
+
+/**
+ * Function: omxSP_BlockExp_S32 (2.2.2.2.2)
+ *
+ * Description:
+ * Block exponent calculation for 16-bit and 32-bit signals (count leading
+ * sign bits). These functions compute the number of extra sign bits of all
+ * values in the 16-bit and 32-bit input vector pSrc and return the minimum
+ * sign bit count. This is also the maximum shift value that could be used in
+ * scaling the block of data. The functions BlockExp_S16 and
+ * BlockExp_S32 return the values 15 and 31, respectively, for input vectors in
+ * which all entries are equal to zero.
+ *
+ * Note: These functions differ from other DL functions by not returning the
+ * standard OMXError but the actual result.
+ *
+ * Input Arguments:
+ *
+ * pSrc - pointer to the input vector
+ * len - number of elements contained in the input and output
+ * vectors (0 < len < 65536)
+ *
+ * Output Arguments:
+ *
+ * none
+ *
+ * Return Value:
+ *
+ * Maximum exponent that may be used in scaling
+ *
+ */
+OMX_INT omxSP_BlockExp_S32 (
+ const OMX_S32 *pSrc,
+ OMX_INT len
+);
+
+
+
+/**
+ * Function: omxSP_FIR_Direct_S16 (2.2.3.1.1)
+ *
+ * Description:
+ * Block FIR filtering for 16-bit data type. This function applies the
+ * FIR filter defined by the coefficient vector pTapsQ15 to a vector of
+ * input data. The result is saturated with rounding if the operation
+ * produces a value outside the range of a signed 16-bit integer.
+ * Rounding behavior is defined in:
+ * section 1.6.7 "Integer Scaling and Rounding Conventions".
+ * The internal accumulator width must be at least 32 bits. The result
+ * is undefined if any of the partially accumulated values exceeds the
+ * range of a signed 32-bit integer.
+ *
+ *
+ * Input Arguments:
+ *
+ * pSrc - pointer to the vector of input samples to which the
+ * filter is applied
+ * sampLen - the number of samples contained in the input and output
+ * vectors
+ * pTapsQ15 - pointer to the vector that contains the filter coefficients,
+ * represented in Q0.15 format (defined in section 1.6.5). Given
+ * that:
+ * -32768 = pTapsQ15(k) < 32768,
+ * 0 = k <tapsLen,
+ * the range on the actual filter coefficients is -1 = bK <1, and
+ * therefore coefficient normalization may be required during the
+ * filter design process.
+ * tapsLen - the number of taps, or, equivalently, the filter order + 1
+ * pDelayLine - pointer to the 2.tapsLen -element filter memory buffer
+ * (state). The user is responsible for allocation, initialization,
+ * and de-allocation. The filter memory elements are initialized to
+ * zero in most applications.
+ * pDelayLineIndex - pointer to the filter memory index that is maintained
+ * internally by the function. The user should initialize the value
+ * of this index to zero.
+ *
+ * Output Arguments:
+ *
+ * pDst - pointer to the vector of filtered output samples
+ *
+ * Return Value:
+ *
+ * OMX_Sts_NoErr - no error
+ * OMX_Sts_BadArgErr - bad arguments; returned if one or more of the
+ * following is true:
+ * - One or more of the following pointers is NULL:
+ * - pSrc,
+ * - pDst,
+ * - pSrcDst,
+ * - pTapsQ15,
+ * - pDelayLine, or
+ * - pDelayLineIndex
+ * - samplen < 0
+ * - tapslen < 1
+ * - *pDelayLineIndex < 0 or *pDelayLineIndex >= (2 * tapslen).
+ *
+ */
+OMXResult omxSP_FIR_Direct_S16 (
+ const OMX_S16 *pSrc,
+ OMX_S16 *pDst,
+ OMX_INT sampLen,
+ const OMX_S16 *pTapsQ15,
+ OMX_INT tapsLen,
+ OMX_S16 *pDelayLine,
+ OMX_INT *pDelayLineIndex
+);
+
+
+
+/**
+ * Function: omxSP_FIR_Direct_S16_I (2.2.3.1.1)
+ *
+ * Description:
+ * Block FIR filtering for 16-bit data type. This function applies the
+ * FIR filter defined by the coefficient vector pTapsQ15 to a vector of
+ * input data. The result is saturated with rounding if the operation
+ * produces a value outside the range of a signed 16-bit integer.
+ * Rounding behavior is defined in:
+ * section 1.6.7 "Integer Scaling and Rounding Conventions".
+ * The internal accumulator width must be at least 32 bits. The result
+ * is undefined if any of the partially accumulated values exceeds the
+ * range of a signed 32-bit integer.
+ *
+ * Input Arguments:
+ *
+ * pSrcDst - pointer to the vector of input samples to which the
+ * filter is applied
+ * sampLen - the number of samples contained in the input and output
+ * vectors
+ * pTapsQ15 - pointer to the vector that contains the filter coefficients,
+ * represented in Q0.15 format (defined in section 1.6.5). Given
+ * that:
+ * -32768 = pTapsQ15(k) < 32768,
+ * 0 = k <tapsLen,
+ * the range on the actual filter coefficients is -1 = bK <1, and
+ * therefore coefficient normalization may be required during the
+ * filter design process.
+ * tapsLen - the number of taps, or, equivalently, the filter order + 1
+ * pDelayLine - pointer to the 2.tapsLen -element filter memory buffer
+ * (state). The user is responsible for allocation, initialization,
+ * and de-allocation. The filter memory elements are initialized to
+ * zero in most applications.
+ * pDelayLineIndex - pointer to the filter memory index that is maintained
+ * internally by the function. The user should initialize the value
+ * of this index to zero.
+ *
+ * Output Arguments:
+ *
+ * pSrcDst - pointer to the vector of filtered output samples
+ *
+ * Return Value:
+ *
+ * OMX_Sts_NoErr - no error
+ * OMX_Sts_BadArgErr - bad arguments; returned if one or more of the
+ * following is true:
+ * - One or more of the following pointers is NULL:
+ * - pSrc,
+ * - pDst,
+ * - pSrcDst,
+ * - pTapsQ15,
+ * - pDelayLine, or
+ * - pDelayLineIndex
+ * - samplen < 0
+ * - tapslen < 1
+ * - *pDelayLineIndex < 0 or *pDelayLineIndex >= (2 * tapslen).
+ *
+ */
+OMXResult omxSP_FIR_Direct_S16_I (
+ OMX_S16 *pSrcDst,
+ OMX_INT sampLen,
+ const OMX_S16 *pTapsQ15,
+ OMX_INT tapsLen,
+ OMX_S16 *pDelayLine,
+ OMX_INT *pDelayLineIndex
+);
+
+
+
+/**
+ * Function: omxSP_FIR_Direct_S16_Sfs (2.2.3.1.1)
+ *
+ * Description:
+ * Block FIR filtering for 16-bit data type. This function applies
+ * the FIR filter defined by the coefficient vector pTapsQ15 to a
+ * vector of input data. The output is multiplied by 2 to the negative
+ * power of scalefactor (i.e., 2^-scalefactor) before returning to the caller.
+ * Scaling and rounding conventions are defined in section 1.6.7.
+ * The internal accumulator width must be at least 32 bits.
+ * The result is undefined if any of the partially accumulated
+ * values exceeds the range of a signed 32-bit integer.
+ *
+ * Input Arguments:
+ *
+ * pSrc - pointer to the vector of input samples to which the
+ * filter is applied
+ * sampLen - the number of samples contained in the input and output
+ * vectors
+ * pTapsQ15 - pointer to the vector that contains the filter coefficients,
+ * represented in Q0.15 format (defined in section 1.6.5). Given
+ * that:
+ * -32768 = pTapsQ15(k) < 32768,
+ * 0 = k <tapsLen,
+ * the range on the actual filter coefficients is -1 = bK <1, and
+ * therefore coefficient normalization may be required during the
+ * filter design process.
+ * tapsLen - the number of taps, or, equivalently, the filter order + 1
+ * pDelayLine - pointer to the 2.tapsLen -element filter memory buffer
+ * (state). The user is responsible for allocation, initialization,
+ * and de-allocation. The filter memory elements are initialized to
+ * zero in most applications.
+ * pDelayLineIndex - pointer to the filter memory index that is maintained
+ * internally by the function. The user should initialize the value
+ * of this index to zero.
+ * scaleFactor - saturation fixed scalefactor
+ *
+ * Output Arguments:
+ *
+ * pDst - pointer to the vector of filtered output samples
+ *
+ * Return Value:
+ *
+ * OMX_Sts_NoErr - no error
+ * OMX_Sts_BadArgErr - bad arguments; returned if one or more of the
+ * following is true:
+ * - One or more of the following pointers is NULL:
+ * - pSrc,
+ * - pDst,
+ * - pSrcDst,
+ * - pTapsQ15,
+ * - pDelayLine, or
+ * - pDelayLineIndex
+ * - samplen < 0
+ * - tapslen < 1
+ * - scaleFactor < 0
+ * - *pDelayLineIndex < 0 or *pDelayLineIndex >= (2 * tapslen).
+ *
+ */
+OMXResult omxSP_FIR_Direct_S16_Sfs (
+ const OMX_S16 *pSrc,
+ OMX_S16 *pDst,
+ OMX_INT sampLen,
+ const OMX_S16 *pTapsQ15,
+ OMX_INT tapsLen,
+ OMX_S16 *pDelayLine,
+ OMX_INT *pDelayLineIndex,
+ OMX_INT scaleFactor
+);
+
+
+
+/**
+ * Function: omxSP_FIR_Direct_S16_ISfs (2.2.3.1.1)
+ *
+ * Description:
+ * Block FIR filtering for 16-bit data type. This function applies
+ * the FIR filter defined by the coefficient vector pTapsQ15 to a
+ * vector of input data. The output is multiplied by 2 to the negative
+ * power of scalefactor (i.e., 2^-scalefactor) before returning to the caller.
+ * Scaling and rounding conventions are defined in section 1.6.7.
+ * The internal accumulator width must be at least 32 bits.
+ * The result is undefined if any of the partially accumulated
+ * values exceeds the range of a signed 32-bit integer.
+ *
+ * Input Arguments:
+ *
+ * pSrcDst - pointer to the vector of input samples to which the
+ * filter is applied
+ * sampLen - the number of samples contained in the input and output
+ * vectors
+ * pTapsQ15 - pointer to the vector that contains the filter coefficients,
+ * represented in Q0.15 format (defined in section 1.6.5). Given
+ * that:
+ * -32768 = pTapsQ15(k) < 32768,
+ * 0 = k <tapsLen,
+ * the range on the actual filter coefficients is -1 = bK <1, and
+ * therefore coefficient normalization may be required during the
+ * filter design process.
+ * tapsLen - the number of taps, or, equivalently, the filter order + 1
+ * pDelayLine - pointer to the 2.tapsLen -element filter memory buffer
+ * (state). The user is responsible for allocation, initialization,
+ * and de-allocation. The filter memory elements are initialized to
+ * zero in most applications.
+ * pDelayLineIndex - pointer to the filter memory index that is maintained
+ * internally by the function. The user should initialize the value
+ * of this index to zero.
+ * scaleFactor - saturation fixed scalefactor
+ *
+ * Output Arguments:
+ *
+ * pSrcDst - pointer to the vector of filtered output samples
+ *
+ * Return Value:
+ *
+ * OMX_Sts_NoErr - no error
+ * OMX_Sts_BadArgErr - bad arguments; returned if one or more of the
+ * following is true:
+ * - One or more of the following pointers is NULL:
+ * - pSrc,
+ * - pDst,
+ * - pSrcDst,
+ * - pTapsQ15,
+ * - pDelayLine, or
+ * - pDelayLineIndex
+ * - samplen < 0
+ * - tapslen < 1
+ * - scaleFactor < 0
+ * - *pDelayLineIndex < 0 or *pDelayLineIndex >= (2 * tapslen).
+ *
+ */
+OMXResult omxSP_FIR_Direct_S16_ISfs (
+ OMX_S16 *pSrcDst,
+ OMX_INT sampLen,
+ const OMX_S16 *pTapsQ15,
+ OMX_INT tapsLen,
+ OMX_S16 *pDelayLine,
+ OMX_INT *pDelayLineIndex,
+ OMX_INT scaleFactor
+);
+
+
+
+/**
+ * Function: omxSP_FIROne_Direct_S16 (2.2.3.1.2)
+ *
+ * Description:
+ * Single-sample FIR filtering for 16-bit data type. These functions apply
+ * the FIR filter defined by the coefficient vector pTapsQ15 to a single
+ * sample of input data. The result is saturated with rounding if the
+ * operation produces a value outside the range of a signed 16-bit integer.
+ * Rounding behavior is defined in:
+ * section 1.6.7 "Integer Scaling and Rounding Conventions".
+ * The internal accumulator width must be at least 32 bits. The result is
+ * undefined if any of the partially accumulated values exceeds the range of a
+ * signed 32-bit integer.
+ *
+ * Input Arguments:
+ *
+ * val - the single input sample to which the filter is
+ * applied.
+ * pTapsQ15 - pointer to the vector that contains the filter coefficients,
+ * represented in Q0.15 format (as defined in section 1.6.5). Given
+ * that:
+ * -32768 = pTapsQ15(k) < 32768,
+ * 0 = k < tapsLen,
+ * the range on the actual filter coefficients is -1 = bK <1, and
+ * therefore coefficient normalization may be required during the
+ * filter design process.
+ * tapsLen - the number of taps, or, equivalently, the filter order + 1
+ * pDelayLine - pointer to the 2.tapsLen -element filter memory buffer
+ * (state). The user is responsible for allocation, initialization,
+ * and de-allocation. The filter memory elements are initialized to
+ * zero in most applications.
+ * pDelayLineIndex - pointer to the filter memory index that is maintained
+ * internally by the function. The user should initialize the value
+ * of this index to zero.
+ *
+ * Output Arguments:
+ *
+ * pResult - pointer to the filtered output sample
+ *
+ * Return Value:
+ *
+ * OMX_Sts_NoErr - no error
+ * OMX_Sts_BadArgErr - bad arguments; returned if one or more of the
+ * following is true:
+ * - One or more of the following pointers is NULL:
+ * - pResult,
+ * - pTapsQ15,
+ * - pDelayLine, or
+ * - pDelayLineIndex
+ * - tapslen < 1
+ * - *pDelayLineIndex < 0 or *pDelayLineIndex >= (2 * tapslen)
+ *
+ */
+OMXResult omxSP_FIROne_Direct_S16 (
+ OMX_S16 val,
+ OMX_S16 *pResult,
+ const OMX_S16 *pTapsQ15,
+ OMX_INT tapsLen,
+ OMX_S16 *pDelayLine,
+ OMX_INT *pDelayLineIndex
+);
+
+
+
+/**
+ * Function: omxSP_FIROne_Direct_S16_I (2.2.3.1.2)
+ *
+ * Description:
+ * Single-sample FIR filtering for 16-bit data type. These functions apply
+ * the FIR filter defined by the coefficient vector pTapsQ15 to a single
+ * sample of input data. The result is saturated with rounding if the
+ * operation produces a value outside the range of a signed 16-bit integer.
+ * Rounding behavior is defined in:
+ * section 1.6.7 "Integer Scaling and Rounding Conventions".
+ * The internal accumulator width must be at least 32 bits. The result is
+ * undefined if any of the partially accumulated values exceeds the range of a
+ * signed 32-bit integer.
+ *
+ * Input Arguments:
+ *
+ * pValResult - pointer to the single input sample to which the filter is
+ * applied.
+ * pTapsQ15 - pointer to the vector that contains the filter coefficients,
+ * represented in Q0.15 format (as defined in section 1.6.5). Given
+ * that:
+ * -32768 = pTapsQ15(k) < 32768,
+ * 0 = k < tapsLen,
+ * the range on the actual filter coefficients is -1 = bK <1, and
+ * therefore coefficient normalization may be required during the
+ * filter design process.
+ * tapsLen - the number of taps, or, equivalently, the filter order + 1
+ * pDelayLine - pointer to the 2.tapsLen -element filter memory buffer
+ * (state). The user is responsible for allocation, initialization,
+ * and de-allocation. The filter memory elements are initialized to
+ * zero in most applications.
+ * pDelayLineIndex - pointer to the filter memory index that is maintained
+ * internally by the function. The user should initialize the value
+ * of this index to zero.
+ *
+ * Output Arguments:
+ *
+ * pValResult - pointer to the filtered output sample
+ *
+ * Return Value:
+ *
+ * OMX_Sts_NoErr - no error
+ * OMX_Sts_BadArgErr - bad arguments; returned if one or more of the
+ * following is true:
+ * - One or more of the following pointers is NULL:
+ * - pValResult,
+ * - pTapsQ15,
+ * - pDelayLine, or
+ * - pDelayLineIndex
+ * - tapslen < 1
+ * - *pDelayLineIndex < 0 or *pDelayLineIndex >= (2 * tapslen)
+ *
+ */
+OMXResult omxSP_FIROne_Direct_S16_I (
+ OMX_S16 *pValResult,
+ const OMX_S16 *pTapsQ15,
+ OMX_INT tapsLen,
+ OMX_S16 *pDelayLine,
+ OMX_INT *pDelayLineIndex
+);
+
+
+
+/**
+ * Function: omxSP_FIROne_Direct_S16_Sfs (2.2.3.1.2)
+ *
+ * Description:
+ * Single-sample FIR filtering for 16-bit data type. These functions apply
+ * the FIR filter defined by the coefficient vector pTapsQ15 to a single
+ * sample of input data. The output is multiplied by 2 to the negative power
+ * of scalefactor (i.e., 2^-scalefactor) before returning to the user.
+ * Scaling and rounding conventions are defined in section 1.6.7.
+ * The internal accumulator width must be at least 32 bits.
+ * The result is undefined if any of the partially accumulated values exceeds
+ * the range of a signed 32-bit integer.
+ *
+ * Input Arguments:
+ *
+ * val - the single input sample to which the filter is
+ * applied.
+ * pTapsQ15 - pointer to the vector that contains the filter coefficients,
+ * represented in Q0.15 format (as defined in section 1.6.5). Given
+ * that:
+ * -32768 = pTapsQ15(k) < 32768,
+ * 0 = k < tapsLen,
+ * the range on the actual filter coefficients is -1 = bK <1, and
+ * therefore coefficient normalization may be required during the
+ * filter design process.
+ * tapsLen - the number of taps, or, equivalently, the filter order + 1
+ * pDelayLine - pointer to the 2.tapsLen -element filter memory buffer
+ * (state). The user is responsible for allocation, initialization,
+ * and de-allocation. The filter memory elements are initialized to
+ * zero in most applications.
+ * pDelayLineIndex - pointer to the filter memory index that is maintained
+ * internally by the function. The user should initialize the value
+ * of this index to zero.
+ * scaleFactor - saturation fixed scaleFactor
+ *
+ * Output Arguments:
+ *
+ * pResult - pointer to the filtered output sample
+ *
+ * Return Value:
+ *
+ * OMX_Sts_NoErr - no error
+ * OMX_Sts_BadArgErr - bad arguments; returned if one or more of the
+ * following is true:
+ * - One or more of the following pointers is NULL:
+ * - pResult,
+ * - pTapsQ15,
+ * - pDelayLine, or
+ * - pDelayLineIndex
+ * - tapslen < 1
+ * - scaleFactor < 0
+ * - *pDelayLineIndex < 0 or *pDelayLineIndex >= (2 * tapslen)
+ *
+ */
+OMXResult omxSP_FIROne_Direct_S16_Sfs (
+ OMX_S16 val,
+ OMX_S16 *pResult,
+ const OMX_S16 *pTapsQ15,
+ OMX_INT tapsLen,
+ OMX_S16 *pDelayLine,
+ OMX_INT *pDelayLineIndex,
+ OMX_INT scaleFactor
+);
+
+
+
+/**
+ * Function: omxSP_FIROne_Direct_S16_ISfs (2.2.3.1.2)
+ *
+ * Description:
+ * Single-sample FIR filtering for 16-bit data type. These functions apply
+ * the FIR filter defined by the coefficient vector pTapsQ15 to a single
+ * sample of input data. The output is multiplied by 2 to the negative power
+ * of scalefactor (i.e., 2^-scalefactor) before returning to the user.
+ * Scaling and rounding conventions are defined in section 1.6.7.
+ * The internal accumulator width must be at least 32 bits.
+ * The result is undefined if any of the partially accumulated values exceeds
+ * the range of a signed 32-bit integer.
+ *
+ * Input Arguments:
+ *
+ * pValResult - the pointer to a single input sample to which the filter is
+ * applied.
+ * pTapsQ15 - pointer to the vector that contains the filter coefficients,
+ * represented in Q0.15 format (as defined in section 1.6.5). Given
+ * that:
+ * -32768 = pTapsQ15(k) < 32768,
+ * 0 = k < tapsLen,
+ * the range on the actual filter coefficients is -1 = bK <1, and
+ * therefore coefficient normalization may be required during the
+ * filter design process.
+ * tapsLen - the number of taps, or, equivalently, the filter order + 1
+ * pDelayLine - pointer to the 2.tapsLen -element filter memory buffer
+ * (state). The user is responsible for allocation, initialization,
+ * and de-allocation. The filter memory elements are initialized to
+ * zero in most applications.
+ * pDelayLineIndex - pointer to the filter memory index that is maintained
+ * internally by the function. The user should initialize the value
+ * of this index to zero.
+ * scaleFactor - saturation fixed scaleFactor
+ *
+ * Output Arguments:
+ *
+ * pValResult - pointer to the filtered output sample
+ *
+ * Return Value:
+ *
+ * OMX_Sts_NoErr - no error
+ * OMX_Sts_BadArgErr - bad arguments; returned if one or more of the
+ * following is true:
+ * - One or more of the following pointers is NULL:
+ * - pValResult,
+ * - pTapsQ15,
+ * - pDelayLine, or
+ * - pDelayLineIndex
+ * - tapslen < 1
+ * - scaleFactor < 0
+ * - *pDelayLineIndex < 0 or *pDelayLineIndex >= (2 * tapslen)
+ *
+ */
+OMXResult omxSP_FIROne_Direct_S16_ISfs (
+ OMX_S16 *pValResult,
+ const OMX_S16 *pTapsQ15,
+ OMX_INT tapsLen,
+ OMX_S16 *pDelayLine,
+ OMX_INT *pDelayLineIndex,
+ OMX_INT scaleFactor
+);
+
+
+
+/**
+ * Function: omxSP_IIR_Direct_S16 (2.2.3.2.1)
+ *
+ * Description:
+ * Block IIR filtering for 16-bit data. This function applies the direct form
+ * II IIR filter defined by the coefficient vector pTaps to a vector of input
+ * data. The internal accumulator width must be at least 32 bits, and the
+ * result is saturated if the operation produces a value outside the range of
+ * a signed 16-bit integer, i.e., the output will saturate to 0x8000 (-32768)
+ * for a negative overflow or 0x7fff (32767) for a positive overflow. The
+ * result is undefined if any of the partially accumulated values exceeds the
+ * range of a signed 32-bit integer.
+ *
+ * Input Arguments:
+ *
+ * pSrc - pointer to the vector of input samples to which the
+ * filter is applied
+ * len - the number of samples contained in both the input and output
+ * vectors
+ * pTaps - pointer to the 2L+2-element vector that contains the combined
+ * numerator and denominator filter coefficients from the system
+ * transfer function, H(z). Coefficient scaling and coefficient
+ * vector organization should follow the conventions described
+ * above. The value of the coefficient scaleFactor exponent must be
+ * non-negative (sf=0).
+ * order - the maximum of the degrees of the numerator and denominator
+ * coefficient polynomials from the system transfer function, H(z).
+ * In the notation of section 2.2.3.2, the parameter
+ * order=max(K,M)=L gives the maximum delay, in samples, used to
+ * compute each output sample.
+ * pDelayLine - pointer to the L-element filter memory buffer (state). The
+ * user is responsible for allocation, initialization, and
+ * deallocation. The filter memory elements are initialized to zero
+ * in most applications.
+ *
+ * Output Arguments:
+ *
+ * pDst - pointer to the vector of filtered output samples
+ *
+ * Return Value:
+ *
+ * OMX_Sts_NoErr - no error
+ * OMX_Sts_BadArgErr - bad arguments; returned if one or more of the
+ * following is true:
+ * - one or more of the following pointers is NULL:
+ * - pSrc,
+ * - pDst,
+ * - pTaps, or
+ * - pDelayLine.
+ * - len < 0
+ * - pTaps[order+1] < 0 (negative scaling)
+ * - order < 1
+ *
+ */
+OMXResult omxSP_IIR_Direct_S16 (
+ const OMX_S16 *pSrc,
+ OMX_S16 *pDst,
+ OMX_INT len,
+ const OMX_S16 *pTaps,
+ OMX_INT order,
+ OMX_S32 *pDelayLine
+);
+
+
+
+/**
+ * Function: omxSP_IIR_Direct_S16_I (2.2.3.2.1)
+ *
+ * Description:
+ * Block IIR filtering for 16-bit data. This function applies the direct form
+ * II IIR filter defined by the coefficient vector pTaps to a vector of input
+ * data. The internal accumulator width must be at least 32 bits, and the
+ * result is saturated if the operation produces a value outside the range of
+ * a signed 16-bit integer, i.e., the output will saturate to 0x8000 (-32768)
+ * for a negative overflow or 0x7fff (32767) for a positive overflow. The
+ * result is undefined if any of the partially accumulated values exceeds the
+ * range of a signed 32-bit integer.
+ *
+ * Input Arguments:
+ *
+ * pSrcDst - pointer to the vector of input samples to which the
+ * filter is applied
+ * len - the number of samples contained in both the input and output
+ * vectors
+ * pTaps - pointer to the 2L+2-element vector that contains the combined
+ * numerator and denominator filter coefficients from the system
+ * transfer function, H(z). Coefficient scaling and coefficient
+ * vector organization should follow the conventions described
+ * above. The value of the coefficient scaleFactor exponent must be
+ * non-negative (sf>=0).
+ * order - the maximum of the degrees of the numerator and denominator
+ * coefficient polynomials from the system transfer function, H(z).
+ * In the notation of section 2.2.3.2, the parameter
+ * order=max(K,M)=L gives the maximum delay, in samples, used to
+ * compute each output sample.
+ * pDelayLine - pointer to the L-element filter memory buffer (state). The
+ * user is responsible for allocation, initialization, and
+ * deallocation. The filter memory elements are initialized to zero
+ * in most applications.
+ *
+ * Output Arguments:
+ *
+ * pSrcDst - pointer to the vector of filtered output samples
+ *
+ * Return Value:
+ *
+ * OMX_Sts_NoErr - no error
+ * OMX_Sts_BadArgErr - bad arguments; returned if one or more of the
+ * following is true:
+ * - one or more of the following pointers is NULL:
+ * - pSrcDst,
+ * - pTaps, or
+ * - pDelayLine.
+ * - len < 0
+ * - pTaps[order+1] < 0 (negative scaling)
+ * - order < 1
+ *
+ */
+OMXResult omxSP_IIR_Direct_S16_I (
+ OMX_S16 *pSrcDst,
+ OMX_INT len,
+ const OMX_S16 *pTaps,
+ OMX_INT order,
+ OMX_S32 *pDelayLine
+);
+
+
+
+/**
+ * Function: omxSP_IIROne_Direct_S16 (2.2.3.2.2)
+ *
+ * Description:
+ * Single sample IIR filtering for 16-bit data. This function applies the
+ * direct form II IIR filter defined by the coefficient vector pTaps to a
+ * single sample of input data. The internal accumulator width must be at
+ * least 32 bits, and the result is saturated if the operation produces a
+ * value outside the range of a signed 16-bit integer, i.e., the output will
+ * saturate to 0x8000 (-32768) for a negative overflow or 0x7fff (32767) for a
+ * positive overflow. The result is undefined if any of the partially
+ * accumulated values exceeds the range of a signed 32-bit integer.
+ *
+ * Input Arguments:
+ *
+ * val - the single input sample to which the filter is
+ * applied.
+ * pTaps - pointer to the 2L+2 -element vector that contains the combined
+ * numerator and denominator filter coefficients from the system
+ * transfer function, H(z). Coefficient scaling and coefficient
+ * vector organization should follow the conventions described
+ * above. The value of the coefficient scaleFactor exponent must be
+ * non-negative (sf>=0).
+ * order - the maximum of the degrees of the numerator and denominator
+ * coefficient polynomials from the system transfer function, H(z).
+ * In the notation of section 2.2.3.2, the parameter
+ * order=max(K,M)=L gives the maximum delay, in samples, used to
+ * compute each output sample.
+ * pDelayLine - pointer to the L-element filter memory buffer (state). The
+ * user is responsible for allocation, initialization, and
+ * deallocation. The filter memory elements are initialized to zero
+ * in most applications.
+ *
+ * Output Arguments:
+ *
+ * pResult - pointer to the filtered output sample
+ *
+ * Return Value:
+ *
+ * OMX_Sts_NoErr - no error
+ * OMX_Sts_BadArgErr - bad arguments; returned if one or more of the
+ * following is true:
+ * - one or more of the following pointers is NULL: pResult,
+ * pTaps, or pDelayLine.
+ * - order < 1
+ * - pTaps[order+1] < 0 (negative scaling)
+ *
+ */
+OMXResult omxSP_IIROne_Direct_S16 (
+ OMX_S16 val,
+ OMX_S16 *pResult,
+ const OMX_S16 *pTaps,
+ OMX_INT order,
+ OMX_S32 *pDelayLine
+);
+
+
+
+/**
+ * Function: omxSP_IIROne_Direct_S16_I (2.2.3.2.2)
+ *
+ * Description:
+ * Single sample IIR filtering for 16-bit data. This function applies the
+ * direct form II IIR filter defined by the coefficient vector pTaps to a
+ * single sample of input data. The internal accumulator width must be at
+ * least 32 bits, and the result is saturated if the operation produces a
+ * value outside the range of a signed 16-bit integer, i.e., the output will
+ * saturate to 0x8000 (-32768) for a negative overflow or 0x7fff (32767) for a
+ * positive overflow. The result is undefined if any of the partially
+ * accumulated values exceeds the range of a signed 32-bit integer.
+ *
+ * Input Arguments:
+ *
+ * pValResult - pointer to the single input sample to which the filter is
+ * applied.
+ * pTaps - pointer to the 2L+2 -element vector that contains the combined
+ * numerator and denominator filter coefficients from the system
+ * transfer function, H(z). Coefficient scaling and coefficient
+ * vector organization should follow the conventions described
+ * above. The value of the coefficient scaleFactor exponent must be
+ * non-negative (sf>=0).
+ * order - the maximum of the degrees of the numerator and denominator
+ * coefficient polynomials from the system transfer function, H(z).
+ * In the notation of section 2.2.3.2, the parameter
+ * order=max(K,M)=L gives the maximum delay, in samples, used to
+ * compute each output sample.
+ * pDelayLine - pointer to the L-element filter memory buffer (state). The
+ * user is responsible for allocation, initialization, and
+ * deallocation. The filter memory elements are initialized to zero
+ * in most applications.
+ *
+ * Output Arguments:
+ *
+ * pValResult - pointer to the filtered output sample
+ *
+ * Return Value:
+ *
+ * OMX_Sts_NoErr - no error
+ * OMX_Sts_BadArgErr - bad arguments; returned if one or more of the
+ * following is true:
+ * - one or more of the following pointers is NULL:
+ * pValResult, pTaps, or pDelayLine.
+ * - order < 1
+ * - pTaps[order+1] < 0 (negative scaling)
+ *
+ */
+OMXResult omxSP_IIROne_Direct_S16_I (
+ OMX_S16 *pValResult,
+ const OMX_S16 *pTaps,
+ OMX_INT order,
+ OMX_S32 *pDelayLine
+);
+
+
+
+/**
+ * Function: omxSP_IIR_BiQuadDirect_S16 (2.2.3.3.1)
+ *
+ * Description:
+ * Block biquad IIR filtering for 16-bit data type. This function applies the
+ * direct form II biquad IIR cascade defined by the coefficient vector pTaps
+ * to a vector of input data. The internal accumulator width must be at least
+ * 32 bits, and the result is saturated if the operation produces a value
+ * outside the range of a signed 16-bit integer, i.e., the output will
+ * saturate to 0x8000 (-32768) for a negative overflow or 0x7fff (32767) for a
+ * positive overflow. The result is undefined if any of the partially
+ * accumulated values exceeds the range of a signed 32-bit integer.
+ *
+ * Input Arguments:
+ *
+ * pSrc - pointer to the vector of input samples to which the
+ * filter is applied
+ * len - the number of samples contained in both the input and output
+ * vectors
+ * pTaps - pointer to the 6P -element vector that contains the combined
+ * numerator and denominator filter coefficients from the biquad
+ * cascade. Coefficient scaling and coefficient vector organization
+ * should follow the conventions described above. The value of the
+ * coefficient scaleFactor exponent must be non-negative. (sfp>=0).
+ * numBiquad - the number of biquads contained in the IIR filter cascade:
+ * (P)
+ * pDelayLine - pointer to the 2P -element filter memory buffer (state).
+ * The user is responsible for allocation, initialization, and
+ * de-allocation. The filter memory elements are initialized to
+ * zero in most applications.
+ *
+ * Output Arguments:
+ *
+ * pDst - pointer to the vector of filtered output samples
+ *
+ * Return Value:
+ *
+ * OMX_Sts_NoErr - no error
+ * OMX_Sts_BadArgErr - bad arguments; returned if one or more of the
+ * following is true:
+ * - one or more of the following pointers is NULL: pSrc, pDst,
+ * pTaps, or pDelayLine.
+ * - len < 0
+ * - numBiquad < 1
+ * - pTaps[3+n*6] < 0, for 0 <= n < numBiquad (negative scaling)
+ *
+ */
+OMXResult omxSP_IIR_BiQuadDirect_S16 (
+ const OMX_S16 *pSrc,
+ OMX_S16 *pDst,
+ OMX_INT len,
+ const OMX_S16 *pTaps,
+ OMX_INT numBiquad,
+ OMX_S32 *pDelayLine
+);
+
+
+
+/**
+ * Function: omxSP_IIR_BiQuadDirect_S16_I (2.2.3.3.1)
+ *
+ * Description:
+ * Block biquad IIR filtering for 16-bit data type. This function applies the
+ * direct form II biquad IIR cascade defined by the coefficient vector pTaps
+ * to a vector of input data. The internal accumulator width must be at least
+ * 32 bits, and the result is saturated if the operation produces a value
+ * outside the range of a signed 16-bit integer, i.e., the output will
+ * saturate to 0x8000 (-32768) for a negative overflow or 0x7fff (32767) for a
+ * positive overflow. The result is undefined if any of the partially
+ * accumulated values exceeds the range of a signed 32-bit integer.
+ *
+ * Input Arguments:
+ *
+ * pSrcDst - pointer to the vector of input samples to which the
+ * filter is applied
+ * len - the number of samples contained in both the input and output
+ * vectors
+ * pTaps - pointer to the 6P -element vector that contains the combined
+ * numerator and denominator filter coefficients from the biquad
+ * cascade. Coefficient scaling and coefficient vector organization
+ * should follow the conventions described above. The value of the
+ * coefficient scaleFactor exponent must be non-negative. (sfp>=0).
+ * numBiquad - the number of biquads contained in the IIR filter cascade:
+ * (P)
+ * pDelayLine - pointer to the 2P -element filter memory buffer (state).
+ * The user is responsible for allocation, initialization, and
+ * de-allocation. The filter memory elements are initialized to
+ * zero in most applications.
+ *
+ * Output Arguments:
+ *
+ * pSrcDst - pointer to the vector of filtered output samples
+ *
+ * Return Value:
+ *
+ * OMX_Sts_NoErr - no error
+ * OMX_Sts_BadArgErr - bad arguments; returned if one or more of the
+ * following is true:
+ * - one or more of the following pointers is NULL:
+ * pSrcDst, pTaps, or pDelayLine.
+ * - len < 0
+ * - numBiquad < 1
+ * - pTaps[3+n*6] < 0, for 0 <= n < numBiquad (negative scaling)
+ *
+ */
+OMXResult omxSP_IIR_BiQuadDirect_S16_I (
+ OMX_S16 *pSrcDst,
+ OMX_INT len,
+ const OMX_S16 *pTaps,
+ OMX_INT numBiquad,
+ OMX_S32 *pDelayLine
+);
+
+
+
+/**
+ * Function: omxSP_IIROne_BiQuadDirect_S16 (2.2.3.3.2)
+ *
+ * Description:
+ * Single-sample biquad IIR filtering for 16-bit data type. This function
+ * applies the direct form II biquad IIR cascade defined by the coefficient
+ * vector pTaps to a single sample of input data. The internal accumulator
+ * width must be at least 32 bits, and the result is saturated if the
+ * operation produces a value outside the range of a signed 16-bit integer,
+ * i.e., the output will saturate to 0x8000 (-32768) for a negative overflow
+ * or 0x7fff (32767) for a positive overflow. The result is undefined if any
+ * of the partially accumulated values exceeds the range of a signed 32-bit
+ * integer.
+ *
+ * Input Arguments:
+ *
+ * val - the single input sample to which the filter is
+ * applied.
+ * pTaps - pointer to the 6P-element vector that contains the combined
+ * numerator and denominator filter coefficients from the biquad
+ * cascade. Coefficient scaling and coefficient vector organization
+ * should follow the conventions described above. The value of the
+ * coefficient scalefactor exponent must be non-negative: (sfp>=0).
+ * numBiquad - the number of biquads contained in the IIR filter cascade:
+ * (P)
+ * pDelayLine - pointer to the 2p-element filter memory buffer (state). The
+ * user is responsible for allocation, initialization, and
+ * deallocation. The filter memory elements are initialized to zero
+ * in most applications.
+ *
+ * Output Arguments:
+ *
+ * pResult - pointer to the filtered output sample
+ *
+ * Return Value:
+ *
+ * OMX_Sts_NoErr - no error
+ * OMX_Sts_BadArgErr - bad arguments; returned if one or more of the
+ * following is true:
+ * - one or more of the following pointers is NULL: pResult,
+ * pValResult, pTaps, or pDelayLine.
+ * - numBiquad < 1
+ * - pTaps[3+n*6] < 0, for 0 <= n < numBiquad (negative scaling)
+ *
+ */
+OMXResult omxSP_IIROne_BiQuadDirect_S16 (
+ OMX_S16 val,
+ OMX_S16 *pResult,
+ const OMX_S16 *pTaps,
+ OMX_INT numBiquad,
+ OMX_S32 *pDelayLine
+);
+
+
+
+/**
+ * Function: omxSP_IIROne_BiQuadDirect_S16_I (2.2.3.3.2)
+ *
+ * Description:
+ * Single-sample biquad IIR filtering for 16-bit data type. This function
+ * applies the direct form II biquad IIR cascade defined by the coefficient
+ * vector pTaps to a single sample of input data. The internal accumulator
+ * width must be at least 32 bits, and the result is saturated if the
+ * operation produces a value outside the range of a signed 16-bit integer,
+ * i.e., the output will saturate to 0x8000 (-32768) for a negative overflow
+ * or 0x7fff (32767) for a positive overflow. The result is undefined if any
+ * of the partially accumulated values exceeds the range of a signed 32-bit
+ * integer.
+ *
+ * Input Arguments:
+ *
+ * pValResult - pointer to the single input sample to which the filter is
+ * applied.
+ * pTaps - pointer to the 6P-element vector that contains the combined
+ * numerator and denominator filter coefficients from the biquad
+ * cascade. Coefficient scaling and coefficient vector organization
+ * should follow the conventions described above. The value of the
+ * coefficient scalefactor exponent must be non-negative: (sfp>=0).
+ * numBiquad - the number of biquads contained in the IIR filter cascade:
+ * (P)
+ * pDelayLine - pointer to the 2p-element filter memory buffer (state). The
+ * user is responsible for allocation, initialization, and
+ * deallocation. The filter memory elements are initialized to zero
+ * in most applications.
+ *
+ * Output Arguments:
+ *
+ * pValResult - pointer to the filtered output sample
+ *
+ * Return Value:
+ *
+ * OMX_Sts_NoErr - no error
+ * OMX_Sts_BadArgErr - bad arguments; returned if one or more of the
+ * following is true:
+ * - one or more of the following pointers is NULL:
+ * pValResult, pTaps, or pDelayLine.
+ * - numBiquad < 1
+ * - pTaps[3+n*6] < 0, for 0 <= n < numBiquad (negative scaling)
+ *
+ */
+OMXResult omxSP_IIROne_BiQuadDirect_S16_I (
+ OMX_S16 *pValResult,
+ const OMX_S16 *pTaps,
+ OMX_INT numBiquad,
+ OMX_S32 *pDelayLine
+);
+
+
+
+/**
+ * Function: omxSP_FilterMedian_S32 (2.2.3.4.1)
+ *
+ * Description:
+ * This function computes the median over the region specified by the median
+ * mask for the every element of the input array. The median outputs are
+ * stored in the corresponding elements of the output vector.
+ *
+ * Input Arguments:
+ *
+ * pSrc - pointer to the input vector
+ * len - number of elements contained in the input and output vectors (0 <
+ * len < 65536)
+ * maskSize - median mask size; if an even value is specified, the function
+ * subtracts 1 and uses the odd value of the filter mask for median
+ * filtering (0 < maskSize < 256)
+ *
+ * Output Arguments:
+ *
+ * pDst - pointer to the median-filtered output vector
+ *
+ * Return Value:
+ *
+ * OMX_Sts_NoErr - no error
+ * OMX_Sts_BadArgErr - bad arguments; returned if one or more of the
+ * following is true:
+ * - one or more of the following pointers is NULL: pSrc, pDst.
+ * - len < 0
+ * - maskSize < 1 or maskSize> 255
+ * OMX_StsSP_EvenMedianMaskSizeErr - even mask size replaced by odd mask
+ * size
+ *
+ */
+OMXResult omxSP_FilterMedian_S32 (
+ const OMX_S32 *pSrc,
+ OMX_S32 *pDst,
+ OMX_INT len,
+ OMX_INT maskSize
+);
+
+
+
+/**
+ * Function: omxSP_FilterMedian_S32_I (2.2.3.4.1)
+ *
+ * Description:
+ * This function computes the median over the region specified by the median
+ * mask for the every element of the input array. The median outputs are
+ * stored in the corresponding elements of the output vector.
+ *
+ * Input Arguments:
+ *
+ * pSrcDst - pointer to the input vector
+ * len - number of elements contained in the input and output vectors (0 <
+ * len < 65536)
+ * maskSize - median mask size; if an even value is specified, the function
+ * subtracts 1 and uses the odd value of the filter mask for median
+ * filtering (0 < maskSize < 256)
+ *
+ * Output Arguments:
+ *
+ * pSrcDst - pointer to the median-filtered output vector
+ *
+ * Return Value:
+ *
+ * OMX_Sts_NoErr - no error
+ * OMX_Sts_BadArgErr - bad arguments; returned if one or more of the
+ * following is true:
+ * - pSrcDst is NULL.
+ * - len < 0
+ * - maskSize < 1 or maskSize> 255
+ * OMX_StsSP_EvenMedianMaskSizeErr - even mask size replaced by odd mask
+ * size
+ *
+ */
+OMXResult omxSP_FilterMedian_S32_I (
+ OMX_S32 *pSrcDst,
+ OMX_INT len,
+ OMX_INT maskSize
+);
+
+
+
+/**
+ * Function: omxSP_FFTInit_C_SC16 (2.2.4.1.2)
+ *
+ * Description:
+ * These functions initialize the specification structures required for the
+ * complex FFT and IFFT functions. Desired block length is specified as an
+ * input. The function <FFTInit_C_SC16> is used to initialize the
+ * specification structures for functions <FFTFwd_CToC_SC16_Sfs> and
+ * <FFTInv_CToC_SC16_Sfs>.
+ *
+ * Memory for the specification structure *pFFTSpec
+ * must be allocated prior to calling these functions and should be 4-byte
+ * aligned for omxSP_FFTInit_C_SC16.
+ *
+ * The space required for *pFFTSpec, in bytes, can be
+ * determined using <FFTGetBufSize_C_SC16>.
+ *
+ * Input Arguments:
+ *
+ * order - base-2 logarithm of the desired block length;
+ * valid in the range [0,12]
+ *
+ * Output Arguments:
+ *
+ * pFFTSpec - pointer to initialized specification structure
+ *
+ * Return Value:
+ *
+ * OMX_Sts_NoErr -no error
+ * OMX_Sts_BadArgErr - bad arguments; returned if one or more of the
+ * following is true:
+ * - pFFTSpec is either NULL or violates the 4-byte alignment
+ * restrictions
+ * - order < 0 or order > 12
+ *
+ */
+OMXResult omxSP_FFTInit_C_SC16 (
+ OMXFFTSpec_C_SC16 *pFFTSpec,
+ OMX_INT order
+);
+
+
+
+/**
+ * Function: omxSP_FFTInit_C_SC32 (2.2.4.1.2)
+ *
+ * Description:
+ * These functions initialize the specification structures required for the
+ * complex FFT and IFFT functions. Desired block length is specified as an
+ * input. The function <FFTInit_C_SC32> is used to initialize
+ * the specification structures for the functions <FFTFwd_CToC_SC32_Sfs> and
+ * <FFTInv_CToC_SC32_Sfs>.
+ *
+ * Memory for the specification structure *pFFTSpec must be allocated prior
+ * to calling these functions and should be 8-byte aligned for
+ * omxSP_FFTInit_C_SC32.
+ *
+ * The space required for *pFFTSpec, in bytes, can be
+ * determined using <FFTGetBufSize_C_SC32>.
+ *
+ * Input Arguments:
+ *
+ * order - base-2 logarithm of the desired block length; valid in the range
+ * [0,12]
+ *
+ * Output Arguments:
+ *
+ * pFFTSpec - pointer to initialized specification structure
+ *
+ * Return Value:
+ *
+ * OMX_Sts_NoErr -no error
+ * OMX_Sts_BadArgErr - bad arguments; returned if one or more of the
+ * following is true:
+ * - pFFTSpec is either NULL or violates the 8-byte alignment
+ * restrictions
+ * - order < 0 or order > 12
+ *
+ */
+OMXResult omxSP_FFTInit_C_SC32 (
+ OMXFFTSpec_C_SC32 *pFFTSpec,
+ OMX_INT order
+);
+
+/**
+ * Function: omxSP_FFTInit_C_FC32 (2.2.4.1.2)
+ *
+ * Description:
+ * These functions initialize the specification structures required for the
+ * complex FFT and IFFT functions. Desired block length is specified as an
+ * input. The function <FFTInit_C_FC32> is used to initialize
+ * the specification structures for the functions <FFTFwd_CToC_FC32_Sfs> and
+ * <FFTInv_CToC_FC32_Sfs>.
+ *
+ * Memory for the specification structure *pFFTSpec must be allocated prior
+ * to calling these functions and should be 8-byte aligned for
+ * omxSP_FFTInit_C_FC32.
+ *
+ * The space required for *pFFTSpec, in bytes, can be
+ * determined using <FFTGetBufSize_C_FC32>.
+ *
+ * Input Arguments:
+ *
+ * order - base-2 logarithm of the desired block length; valid in the range
+ * [1,15]
+ *
+ * Output Arguments:
+ *
+ * pFFTSpec - pointer to initialized specification structure
+ *
+ * Return Value:
+ *
+ * OMX_Sts_NoErr -no error
+ * OMX_Sts_BadArgErr - bad arguments; returned if one or more of the
+ * following is true:
+ * - pFFTSpec is either NULL or violates the 8-byte alignment
+ * restrictions
+ * - order < 1 or order > 15
+ *
+ */
+OMXResult omxSP_FFTInit_C_FC32(
+ OMXFFTSpec_C_FC32* pFFTSpec,
+ OMX_INT order
+);
+
+
+
+/**
+ * Function: omxSP_FFTInit_R_S16S32 (2.2.4.1.4)
+ *
+ * Description:
+ * These functions initialize specification structures required for the real
+ * FFT and IFFT functions. The function <FFTInit_R_S16S32> is used to
+ * initialize the specification structures for functions
+ * <FFTFwd_RToCCS_S16S32_Sfs> and <FFTInv_CCSToR_S32S16_Sfs>.
+ *
+ * Memory for
+ * *pFFTFwdSpec must be allocated before calling these functions and should be
+ * 8-byte aligned. The number of bytes required for *pFFTFwdSpec can be
+ * determined using <FFTGetBufSize_R_S16S32>.
+ *
+ * Input Arguments:
+ *
+ * order - base-2 logarithm of the desired block length; valid in the range
+ * [0,12]
+ *
+ * Output Arguments:
+ *
+ * pFFTFwdSpec - pointer to the initialized specification structure
+ *
+ * Return Value:
+ *
+ * OMX_Sts_NoErr - no error
+ * OMX_Sts_BadArgErr - bad arguments; returned if one or more of the
+ * following is true:
+ * - pFFTFwdSpec is either NULL or violates the 8-byte alignment
+ * restrictions
+ * - order < 0 or order > 12
+ *
+ */
+OMXResult omxSP_FFTInit_R_S16S32(
+ OMXFFTSpec_R_S16S32* pFFTFwdSpec,
+ OMX_INT order
+);
+
+
+
+/**
+ * Function: omxSP_FFTInit_R_S16
+ *
+ * Description:
+ * These functions initialize specification structures required for the real
+ * FFT and IFFT functions. The function <FFTInit_R_S16> is used
+ * to initialize the specification structures for functions
+ * <FFTFwd_RToCCS_S16_Sfs> and <FFTInv_CCSToR_S16_Sfs>.
+ *
+ * Memory for *pFFTFwdSpec must be allocated before calling these functions
+ * and should be 8-byte aligned.
+ *
+ * The number of bytes required for *pFFTFwdSpec can be
+ * determined using <FFTGetBufSize_R_S16>.
+ *
+ * Input Arguments:
+ *
+ * order - base-2 logarithm of the desired block length; valid in the range
+ * [1,12]
+ *
+ * Output Arguments:
+ *
+ * pFFTFwdSpec - pointer to the initialized specification structure
+ *
+ * Return Value:
+ *
+ * OMX_Sts_NoErr - no error
+ * OMX_Sts_BadArgErr - bad arguments; returned if one or more of the
+ * following is true:
+ * - pFFTFwdSpec is either NULL or violates the 8-byte alignment
+ * restrictions
+ * - order < 1 or order > 12
+ *
+ */
+OMXResult omxSP_FFTInit_R_S16 (
+ OMXFFTSpec_R_S32*pFFTFwdSpec,
+ OMX_INT order
+);
+
+/**
+ * Function: omxSP_FFTInit_R_S32 (2.2.4.1.4)
+ *
+ * Description:
+ * These functions initialize specification structures required for the real
+ * FFT and IFFT functions. The function <FFTInit_R_S32> is used to initialize
+ * the specification structures for functions <FFTFwd_RToCCS_S32_Sfs>
+ * and <FFTInv_CCSToR_S32_Sfs>.
+ *
+ * Memory for *pFFTFwdSpec must be allocated before calling these functions
+ * and should be 8-byte aligned.
+ *
+ * The number of bytes required for *pFFTFwdSpec can be
+ * determined using <FFTGetBufSize_R_S32>.
+ *
+ * Input Arguments:
+ *
+ * order - base-2 logarithm of the desired block length; valid in the range
+ * [0,12]
+ *
+ * Output Arguments:
+ *
+ * pFFTFwdSpec - pointer to the initialized specification structure
+ *
+ * Return Value:
+ *
+ * OMX_Sts_NoErr - no error
+ * OMX_Sts_BadArgErr - bad arguments; returned if one or more of the
+ * following is true:
+ * - pFFTFwdSpec is either NULL or violates the 8-byte alignment
+ * restrictions
+ * - order < 0 or order > 12
+ *
+ */
+OMXResult omxSP_FFTInit_R_S32 (
+ OMXFFTSpec_R_S32*pFFTFwdSpec,
+ OMX_INT order
+);
+
+/**
+ * Function: omxSP_FFTInit_R_F32
+ *
+ * Description:
+ * These functions initialize specification structures required for the real
+ * FFT and IFFT functions. The function <FFTInit_R_F32> is used to initialize
+ * the specification structures for functions <FFTFwd_RToCCS_F32_Sfs>
+ * and <FFTInv_CCSToR_F32_Sfs>.
+ *
+ * Memory for *pFFTFwdSpec must be allocated before calling these functions
+ * and should be 8-byte aligned.
+ *
+ * The number of bytes required for *pFFTFwdSpec can be
+ * determined using <FFTGetBufSize_R_F32>.
+ *
+ * Input Arguments:
+ *
+ * order - base-2 logarithm of the desired block length; valid in the range
+ * [1,15]
+ *
+ * Output Arguments:
+ *
+ * pFFTFwdSpec - pointer to the initialized specification structure
+ *
+ * Return Value:
+ *
+ * OMX_Sts_NoErr - no error
+ * OMX_Sts_BadArgErr - bad arguments; returned if one or more of the
+ * following is true:
+ * - pFFTFwdSpec is either NULL or violates the 8-byte alignment
+ * restrictions
+ * - order < 1 or order > 15
+ *
+ */
+OMXResult omxSP_FFTInit_R_F32(
+ OMXFFTSpec_R_F32* pFFTFwdSpec,
+ OMX_INT order
+);
+
+/**
+ * Function: omxSP_FFTGetBufSize_C_SC16 (2.2.4.1.6)
+ *
+ * Description:
+ * These functions compute the size of the specification structure
+ * required for the length 2^order complex FFT and IFFT functions. The function
+ * <FFTGetBufSize_C_SC16> is used in conjunction with the 16-bit functions
+ * <FFTFwd_CToC_SC16_Sfs> and <FFTInv_CToC_SC16_Sfs>.
+ *
+ * Input Arguments:
+ *
+ * order - base-2 logarithm of the desired block length; valid in the range
+ * [0,12]
+ *
+ * Output Arguments:
+ *
+ * pSize - pointer to the number of bytes required for the specification
+ * structure
+ *
+ * Return Value:
+ *
+ * OMX_Sts_NoErr - no error
+ * OMX_Sts_BadArgErr - bad arguments; returned if one or more of the
+ * following is true:
+ * - pSize is NULL
+ * - order < 0 or order > 12
+ *
+ */
+OMXResult omxSP_FFTGetBufSize_C_SC16 (
+ OMX_INT order,
+ OMX_INT *pSize
+);
+
+
+
+/**
+ * Function: omxSP_FFTGetBufSize_C_SC32 (2.2.4.1.6)
+ *
+ * Description:
+ * These functions compute the size of the specification structure
+ * required for the length 2^order complex FFT and IFFT functions. The function
+ * <FFTGetBufSize_C_SC32> is used in conjunction with the 32-bit functions
+ * <FFTFwd_CToC_SC32_Sfs> and <FFTInv_CToC_SC32_Sfs>.
+ *
+ * Input Arguments:
+ *
+ * order - base-2 logarithm of the desired block length; valid in the range
+ * [0,12]
+ *
+ * Output Arguments:
+ *
+ * pSize - pointer to the number of bytes required for the specification
+ * structure
+ *
+ * Return Value:
+ *
+ * OMX_Sts_NoErr - no error
+ * OMX_Sts_BadArgErr - bad arguments; returned if one or more of the
+ * following is true:
+ * - pSize is NULL
+ * - order < 0 or order > 12
+ *
+ */
+OMXResult omxSP_FFTGetBufSize_C_SC32 (
+ OMX_INT order,
+ OMX_INT *pSize
+);
+
+/**
+ * Function: omxSP_FFTGetBufSize_C_FC32
+ *
+ * Description:
+ * These functions compute the size of the specification structure
+ * required for the length 2^order complex FFT and IFFT functions. The function
+ * <FFTGetBufSize_C_FC32> is used in conjunction with the 32-bit functions
+ * <FFTFwd_CToC_FC32_Sfs> and <FFTInv_CToC_FC32_Sfs>.
+ *
+ * Input Arguments:
+ *
+ * order - base-2 logarithm of the desired block length; valid in the range
+ * [1,15]
+ *
+ * Output Arguments:
+ *
+ * pSize - pointer to the number of bytes required for the specification
+ * structure
+ *
+ * Return Value:
+ *
+ * OMX_Sts_NoErr - no error
+ * OMX_Sts_BadArgErr - bad arguments; returned if one or more of the
+ * following is true:
+ * - pSize is NULL
+ * - order < 1 or order > 15
+ *
+ */
+OMXResult omxSP_FFTGetBufSize_C_FC32(
+ OMX_INT order,
+ OMX_INT* pSize
+);
+
+
+/**
+ * Function: omxSP_FFTGetBufSize_R_S16S32 (2.2.4.1.8)
+ *
+ * Description:
+ * order These functions compute the size of the specification structure
+ * required for the length 2^order real FFT and IFFT functions. The function
+ * <FFTGetBufSize_R_S16S32> is used in conjunction with the 16-bit functions
+ * <FFTFwd_RToCCS_S16S32_Sfs> and <FFTInv_CCSToR_S32S16_Sfs>.
+ *
+ * Input Arguments:
+ *
+ * order - base-2 logarithm of the length; valid in the range [0,12]
+ *
+ * Output Arguments:
+ *
+ * pSize - pointer to the number of bytes required for the specification
+ * structure
+ *
+ * Return Value:
+ *
+ * OMX_Sts_NoErr - no error
+ * OMX_Sts_BadArgErr - bad arguments The function returns
+ * OMX_Sts_BadArgErr if one or more of the following is true:
+ * pSize is NULL
+ * order < 0 or order > 12
+ *
+ */
+OMXResult omxSP_FFTGetBufSize_R_S16S32(
+ OMX_INT order,
+ OMX_INT* pSize
+);
+
+
+/**
+ * Function: omxSP_FFTGetBufSize_R_S16
+ *
+ * Description:
+ * These functions compute the size of the specification structure
+ * required for the length 2^order real FFT and IFFT functions. The function
+ * <FFTGetBufSize_R_S16> is used in conjunction with the 16-bit
+ * functions <FFTFwd_RToCCS_S16_Sfs> and <FFTInv_CCSToR_S16_Sfs>.
+ *
+ * Input Arguments:
+ *
+ * order - base-2 logarithm of the length; valid in the range
+ * [1,12]
+ *
+ * Output Arguments:
+ *
+ * pSize - pointer to the number of bytes required for the specification
+ * structure
+ *
+ * Return Value:
+ *
+ * OMX_Sts_NoErr - no error
+ * OMX_Sts_BadArgErr - bad arguments The function returns
+ * OMX_Sts_BadArgErr if one or more of the following is true:
+ * pSize is NULL
+ * order < 1 or order > 12
+ *
+ */
+OMXResult omxSP_FFTGetBufSize_R_S16 (
+ OMX_INT order,
+ OMX_INT *pSize
+);
+
+/**
+ * Function: omxSP_FFTGetBufSize_R_S32 (2.2.4.1.8)
+ *
+ * Description:
+ * These functions compute the size of the specification structure
+ * required for the length 2^order real FFT and IFFT functions. The function
+ * <FFTGetBufSize_R_S32> is used in conjunction with the 32-bit functions
+ * <FFTFwd_RToCCS_S32_Sfs> and <FFTInv_CCSToR_S32_Sfs>.
+ *
+ * Input Arguments:
+ *
+ * order - base-2 logarithm of the length; valid in the range [0,12]
+ *
+ * Output Arguments:
+ *
+ * pSize - pointer to the number of bytes required for the specification
+ * structure
+ *
+ * Return Value:
+ *
+ * OMX_Sts_NoErr - no error
+ * OMX_Sts_BadArgErr - bad arguments The function returns
+ * OMX_Sts_BadArgErr if one or more of the following is true:
+ * pSize is NULL
+ * order < 0 or order > 12
+ *
+ */
+OMXResult omxSP_FFTGetBufSize_R_S32 (
+ OMX_INT order,
+ OMX_INT *pSize
+);
+
+/**
+ * Function: omxSP_FFTGetBufSize_R_F32
+ *
+ * Description:
+ * These functions compute the size of the specification structure
+ * required for the length 2^order real FFT and IFFT functions. The function
+ * <FFTGetBufSize_R_F32> is used in conjunction with the 32-bit functions
+ * <FFTFwd_RToCCS_F32_Sfs> and <FFTInv_CCSToR_F32_Sfs>.
+ *
+ * Input Arguments:
+ *
+ * order - base-2 logarithm of the length; valid in the range [1,15]
+ *
+ * Output Arguments:
+ *
+ * pSize - pointer to the number of bytes required for the specification
+ * structure
+ *
+ * Return Value:
+ *
+ * OMX_Sts_NoErr - no error
+ * OMX_Sts_BadArgErr - bad arguments The function returns
+ * OMX_Sts_BadArgErr if one or more of the following is true:
+ * pSize is NULL
+ * order < 1 or order > 15
+ *
+ */
+OMXResult omxSP_FFTGetBufSize_R_F32(
+ OMX_INT order,
+ OMX_INT* pSize
+);
+
+
+
+/**
+ * Function: omxSP_FFTFwd_CToC_SC16_Sfs (2.2.4.2.2)
+ *
+ * Description:
+ * Compute an FFT for a complex signal of length of 2^order,
+ * where 0 <= order <= 12.
+ * Transform length is determined by the specification structure, which
+ * must be initialized prior to calling the FFT function using the appropriate
+ * helper, i.e., <FFTInit_C_sc32> or <FFTInit_C_SC16>. The relationship
+ * between the input and output sequences can be expressed in terms of the
+ * DFT, i.e.,
+ *
+ * X[k] = 2^(-scaleFactor) . SUM[n=0...N-1]x[n].e^(-jnk.2.pi/N)
+ * k = 0,1,2,..., N-1
+ * N = 2^order
+ *
+ * Input Arguments:
+ * pSrc - pointer to the input signal, a complex-valued vector of length 2^order;
+ * must be aligned on a 32 byte boundary.
+ * pFFTSpec - pointer to the preallocated and initialized specification
+ * structure
+ * scaleFactor - output scale factor; the range for is [0,16]
+ *
+ * Output Arguments:
+ * pDst - pointer to the complex-valued output vector, of length 2^order;
+ * must be aligned on an 32-byte boundary.
+ *
+ * Return Value:
+ *
+ * OMX_Sts_NoErr - no error
+ * OMX_Sts_BadArgErr - returned if one or more of the following conditions
+ * is true:
+ * - one or more of the following pointers is NULL: pSrc, pDst, or
+ * pFFTSpec.
+ * - pSrc or pDst is not 32-byte aligned
+ * - scaleFactor<0 or scaleFactor>16
+ *
+ */
+
+OMXResult omxSP_FFTFwd_CToC_SC16_Sfs (
+ const OMX_SC16 *pSrc,
+ OMX_SC16 *pDst,
+ const OMXFFTSpec_C_SC16 *pFFTSpec,
+ OMX_INT scaleFactor
+);
+
+OMXResult omxSP_FFTFwd_CToC_SC16_Sfs_neon (
+ const OMX_SC16 *pSrc,
+ OMX_SC16 *pDst,
+ const OMXFFTSpec_C_SC16 *pFFTSpec,
+ OMX_INT scaleFactor
+);
+
+/**
+ * Function: omxSP_FFTFwd_CToC_SC32_Sfs (2.2.4.2.2)
+ *
+ * Description:
+ * Compute an FFT for a complex signal of length of 2^order,
+ * where 0 <= order <= 12.
+ * Transform length is determined by the specification structure, which
+ * must be initialized prior to calling the FFT function using the appropriate
+ * helper, i.e., <FFTInit_C_sc32> or <FFTInit_C_SC16>. The relationship
+ * between the input and output sequences can be expressed in terms of the
+ * DFT, i.e.,
+ *
+ * X[k] = 2^(-scaleFactor) . SUM[n=0...N-1]x[n].e^(-jnk.2.pi/N)
+ * k = 0,1,2,..., N-1
+ * N = 2^order
+ *
+ * Input Arguments:
+ * pSrc - pointer to the input signal, a complex-valued vector of length 2^order;
+ * must be aligned on a 32 byte boundary.
+ * pFFTSpec - pointer to the preallocated and initialized specification
+ * structure
+ * scaleFactor - output scale factor; the range is [0,32]
+ *
+ * Output Arguments:
+ * pDst - pointer to the complex-valued output vector, of length 2^order; must be
+ * aligned on an 32-byte boundary.
+ *
+ * Return Value:
+ *
+ * OMX_Sts_NoErr - no error
+ * OMX_Sts_BadArgErr - returned if one or more of the following conditions
+ * is true:
+ * - one or more of the following pointers is NULL: pSrc, pDst, or
+ * pFFTSpec.
+ * - pSrc or pDst is not 32-byte aligned
+ * - scaleFactor<0 or scaleFactor >32
+ *
+ */
+OMXResult omxSP_FFTFwd_CToC_SC32_Sfs (
+ const OMX_SC32 *pSrc,
+ OMX_SC32 *pDst,
+ const OMXFFTSpec_C_SC32 *pFFTSpec,
+ OMX_INT scaleFactor
+);
+
+
+
+/**
+ * Function: omxSP_FFTInv_CToC_SC16_Sfs (2.2.4.2.4)
+ *
+ * Description:
+ * These functions compute an inverse FFT for a complex signal of length
+ * of 2^order, where 0 <= order <= 12. Transform length is determined by the
+ * specification structure, which must be initialized prior to calling the FFT
+ * function using the appropriate helper, i.e., <FFTInit_C_sc32> or
+ * <FFTInit_C_SC16>. The relationship between the input and output sequences
+ * can be expressed in terms of the IDFT, i.e.:
+ *
+ * x[n] = (2^(-scalefactor)/N) . SUM[k=0,...,N-1] X[k].e^(jnk.2.pi/N)
+ * n=0,1,2,...N-1
+ * N=2^order.
+ *
+ * Input Arguments:
+ * pSrc - pointer to the complex-valued input signal, of length 2^order ;
+ * must be aligned on a 32-byte boundary.
+ * pFFTSpec - pointer to the preallocated and initialized specification
+ * structure
+ * scaleFactor - scale factor of the output. Valid range is [0,16].
+ *
+ * Output Arguments:
+ * order
+ * pDst - pointer to the complex-valued output signal, of length 2^order;
+ * must be aligned on a 32-byte boundary.
+ *
+ * Return Value:
+ *
+ * Positive value - the shift scale that was performed inside
+ * OMX_Sts_NoErr - no error
+ * OMX_Sts_BadArgErr - returned if one or more of the following conditions
+ * is true:
+ * - one or more of the following pointers is NULL: pSrc, pDst, or
+ * pFFTSpec.
+ * - pSrc or pDst is not 32-byte aligned
+ * - scaleFactor<0 or scaleFactor>16
+ *
+ */
+OMXResult omxSP_FFTInv_CToC_SC16_Sfs (
+ const OMX_SC16 *pSrc,
+ OMX_SC16 *pDst,
+ const OMXFFTSpec_C_SC16 *pFFTSpec,
+ OMX_INT scaleFactor
+);
+
+OMXResult omxSP_FFTInv_CToC_SC16_Sfs_neon (
+ const OMX_SC16 *pSrc,
+ OMX_SC16 *pDst,
+ const OMXFFTSpec_C_SC16 *pFFTSpec,
+ OMX_INT scaleFactor
+);
+
+
+
+
+/**
+ * Function: omxSP_FFTInv_CToC_SC32_Sfs (2.2.4.2.4)
+ *
+ * Description:
+ * These functions compute an inverse FFT for a complex signal of length
+ * of 2^order, where 0 <= order <= 12. Transform length is determined by the
+ * specification structure, which must be initialized prior to calling the FFT
+ * function using the appropriate helper, i.e., <FFTInit_C_sc32> or
+ * <FFTInit_C_SC16>. The relationship between the input and output sequences
+ * can be expressed in terms of the IDFT, i.e.:
+ *
+ * x[n] = (2^(-scalefactor)/N) . SUM[k=0,...,N-1] X[k].e^(jnk.2.pi/N)
+ * n=0,1,2,...N-1
+ * N=2^order.
+ *
+ * Input Arguments:
+ * pSrc - pointer to the complex-valued input signal, of length 2^order ;
+ * must be aligned on a 32-byte boundary.
+ * pFFTSpec - pointer to the preallocated and initialized specification
+ * structure
+ * scaleFactor - scale factor of the output. Valid range is [0,32].
+ *
+ * Output Arguments:
+ * order
+ * pDst - pointer to the complex-valued output signal, of length 2^order;
+ * must be aligned on a 32-byte boundary.
+ *
+ * Return Value:
+ *
+ * OMX_Sts_NoErr - no error
+ * OMX_Sts_BadArgErr - returned if one or more of the following conditions
+ * is true:
+ * - one or more of the following pointers is NULL: pSrc, pDst, or
+ * pFFTSpec.
+ * - pSrc or pDst is not 32-byte aligned
+ * - scaleFactor<0 or scaleFactor>32
+ *
+ */
+OMXResult omxSP_FFTInv_CToC_SC32_Sfs (
+ const OMX_SC32 *pSrc,
+ OMX_SC32 *pDst,
+ const OMXFFTSpec_C_SC32 *pFFTSpec,
+ OMX_INT scaleFactor
+);
+
+
+
+/**
+ * Function: omxSP_FFTFwd_RToCCS_S16S32_Sfs (2.2.4.4.2)
+ *
+ * Description:
+ * These functions compute an FFT for a real-valued signal of length of 2^order,
+ * where 0 <= order <= 12. Transform length is determined by the
+ * specification structure, which must be initialized prior to calling the FFT
+ * function using the appropriate helper, i.e., <FFTInit_R_S16S32>.
+ * The relationship between the input and output sequences
+ * can be expressed in terms of the DFT, i.e.:
+ *
+ * x[n] = (2^(-scalefactor)/N) . SUM[k=0,...,N-1] X[k].e^(jnk.2.pi/N)
+ * n=0,1,2,...N-1
+ * N=2^order.
+ *
+ * The conjugate-symmetric output sequence is represented using a CCS vector,
+ * which is of length N+2, and is organized as follows:
+ *
+ * Index: 0 1 2 3 4 5 . . . N-2 N-1 N N+1
+ * Component: R0 0 R1 I1 R2 I2 . . . R[N/2-1] I[N/2-1] R[N/2] 0
+ *
+ * where R[n] and I[n], respectively, denote the real and imaginary components
+ * for FFT bin 'n'. Bins are numbered from 0 to N/2, where N is the FFT length.
+ * Bin index 0 corresponds to the DC component, and bin index N/2 corresponds to the
+ * foldover frequency.
+ *
+ * Input Arguments:
+ * pSrc - pointer to the real-valued input sequence, of length 2^order;
+ * must be aligned on a 32-byte boundary.
+ * pFFTSpec - pointer to the preallocated and initialized specification
+ * structure
+ * scaleFactor - output scale factor; valid range is [0, 32]
+ *
+ * Output Arguments:
+ * pDst - pointer to output sequence, represented using CCS format, of
+ * length (2^order)+2; must be aligned on a 32-byte boundary.
+ *
+ * Return Value:
+ *
+ * OMX_Sts_NoErr - no error
+ * OMX_Sts_BadArgErr - bad arguments, if one or more of the following is true:
+ * - one of the pointers pSrc, pDst, or pFFTSpec is NULL
+ * - pSrc or pDst is not aligned on a 32-byte boundary
+ * - scaleFactor<0 or scaleFactor >32
+ *
+ */
+OMXResult omxSP_FFTFwd_RToCCS_S16S32_Sfs (
+ const OMX_S16 *pSrc,
+ OMX_S32 *pDst,
+ const OMXFFTSpec_R_S16S32 *pFFTSpec,
+ OMX_INT scaleFactor
+);
+
+
+/**
+ * Function: omxSP_FFTFwd_RToCCS_S16_Sfs
+ *
+ * Description:
+ * These functions compute an FFT for a real-valued signal of length of 2^order,
+ * where 0 < order <= 12. Transform length is determined by the
+ * specification structure, which must be initialized prior to calling the FFT
+ * function using the appropriate helper, i.e., <FFTInit_R_S16>.
+ * The relationship between the input and output sequences can
+ * be expressed in terms of the DFT, i.e.:
+ *
+ * x[n] = (2^(-scalefactor)/N) . SUM[k=0,...,N-1] X[k].e^(jnk.2.pi/N)
+ * n=0,1,2,...N-1
+ * N=2^order.
+ *
+ * The conjugate-symmetric output sequence is represented using a CCS vector,
+ * which is of length N+2, and is organized as follows:
+ *
+ * Index: 0 1 2 3 4 5 . . . N-2 N-1 N N+1
+ * Component: R0 0 R1 I1 R2 I2 . . . R[N/2-1] I[N/2-1] R[N/2] 0
+ *
+ * where R[n] and I[n], respectively, denote the real and imaginary components
+ * for FFT bin 'n'. Bins are numbered from 0 to N/2, where N is the FFT length.
+ * Bin index 0 corresponds to the DC component, and bin index N/2 corresponds to
+ * the foldover frequency.
+ *
+ * Input Arguments:
+ * pSrc - pointer to the real-valued input sequence, of length 2^order;
+ * must be aligned on a 32-byte boundary.
+ * pFFTSpec - pointer to the preallocated and initialized specification
+ * structure
+ * scaleFactor - output scale factor; valid range is [0, 16]
+ *
+ * Output Arguments:
+ * pDst - pointer to output sequence, represented using CCS format, of
+ * length (2^order)+2; must be aligned on a 32-byte boundary.
+ *
+ * Return Value:
+ *
+ * OMX_Sts_NoErr - no error
+ * OMX_Sts_BadArgErr - bad arguments, if one or more of followings is true:
+ * - one of the pointers pSrc, pDst, or pFFTSpec is NULL
+ * - pSrc or pDst is not aligned on a 32-byte boundary
+ * - scaleFactor<0 or scaleFactor >16
+ *
+ */
+OMXResult omxSP_FFTFwd_RToCCS_S16_Sfs (
+ const OMX_S16* pSrc,
+ OMX_S16* pDst,
+ const OMXFFTSpec_R_S16* pFFTSpec,
+ OMX_INT scaleFactor
+);
+
+
+/**
+ * Function: omxSP_FFTFwd_RToCCS_S32_Sfs (2.2.4.4.2)
+ *
+ * Description:
+ * These functions compute an FFT for a real-valued signal of length of 2^order,
+ * where 0 <= order <= 12. Transform length is determined by the
+ * specification structure, which must be initialized prior to calling the FFT
+ * function using the appropriate helper, i.e., <FFTInit_R_S32>.
+ * The relationship between the input and output sequences
+ * can be expressed in terms of the DFT, i.e.:
+ *
+ * x[n] = (2^(-scalefactor)/N) . SUM[k=0,...,N-1] X[k].e^(jnk.2.pi/N)
+ * n=0,1,2,...N-1
+ * N=2^order.
+ *
+ * The conjugate-symmetric output sequence is represented using a CCS vector,
+ * which is of length N+2, and is organized as follows:
+ *
+ * Index: 0 1 2 3 4 5 . . . N-2 N-1 N N+1
+ * Component: R0 0 R1 I1 R2 I2 . . . R[N/2-1] I[N/2-1] R[N/2] 0
+ *
+ * where R[n] and I[n], respectively, denote the real and imaginary components
+ * for FFT bin 'n'. Bins are numbered from 0 to N/2, where N is the FFT length.
+ * Bin index 0 corresponds to the DC component, and bin index N/2 corresponds to the
+ * foldover frequency.
+ *
+ * Input Arguments:
+ * pSrc - pointer to the real-valued input sequence, of length 2^order;
+ * must be aligned on a 32-byte boundary.
+ * pFFTSpec - pointer to the preallocated and initialized specification
+ * structure
+ * scaleFactor - output scale factor; valid range is [0, 32]
+ *
+ * Output Arguments:
+ * pDst - pointer to output sequence, represented using CCS format, of
+ * length (2^order)+2; must be aligned on a 32-byte boundary.
+ *
+ * Return Value:
+ *
+ * OMX_Sts_NoErr - no error
+ * OMX_Sts_BadArgErr - bad arguments, if one or more of the following is true:
+ * - one of the pointers pSrc, pDst, or pFFTSpec is NULL
+ * - pSrc or pDst is not aligned on a 32-byte boundary
+ * - scaleFactor<0 or scaleFactor >32
+ *
+ */
+OMXResult omxSP_FFTFwd_RToCCS_S32_Sfs (
+ const OMX_S32 *pSrc,
+ OMX_S32 *pDst,
+ const OMXFFTSpec_R_S32 *pFFTSpec,
+ OMX_INT scaleFactor
+);
+
+/**
+ * Function: omxSP_FFTFwd_CToC_FC32_Sfs (2.2.4.2.2)
+ *
+ * Description:
+ * Compute an FFT for a complex signal of length of 2^order,
+ * where 0 <= order <= 15.
+ * Transform length is determined by the specification structure, which
+ * must be initialized prior to calling the FFT function using the appropriate
+ * helper, i.e., <FFTInit_C_sc32> or <FFTInit_C_SC16>. The relationship
+ * between the input and output sequences can be expressed in terms of the
+ * DFT, i.e.,
+ *
+ * X[k] = SUM[n=0...N-1]x[n].e^(-jnk.2.pi/N)
+ * k = 0,1,2,..., N-1
+ * N = 2^order
+ *
+ * Input Arguments:
+ * pSrc - pointer to the input signal, a complex-valued vector of length
+ * 2^order; must be aligned on a 32 byte boundary.
+ * pFFTSpec - pointer to the preallocated and initialized specification
+ * structure
+ *
+ * Output Arguments:
+ * pDst - pointer to the complex-valued output vector, of length 2^order;
+ * must be aligned on an 32-byte boundary.
+ *
+ * Return Value:
+ *
+ * OMX_Sts_NoErr - no error
+ * OMX_Sts_BadArgErr - returned if one or more of the following conditions
+ * is true:
+ * - one or more of the following pointers is NULL: pSrc, pDst, or
+ * pFFTSpec.
+ * - pSrc or pDst is not 32-byte aligned
+ * - scaleFactor<0 or scaleFactor >32
+ *
+ */
+OMXResult omxSP_FFTFwd_CToC_FC32_Sfs (
+ const OMX_FC32 *pSrc,
+ OMX_FC32 *pDst,
+ const OMXFFTSpec_C_FC32 *pFFTSpec
+);
+#ifdef __arm__
+/*
+ * Non-NEON version
+ */
+OMXResult omxSP_FFTFwd_CToC_FC32_Sfs_vfp (
+ const OMX_FC32 *pSrc,
+ OMX_FC32 *pDst,
+ const OMXFFTSpec_C_FC32 *pFFTSpec
+);
+#endif
+
+/**
+ * Function: omxSP_FFTFwd_RToCCS_F32_Sfs
+ *
+ * Description:
+ * These functions compute an FFT for a real-valued signal of length
+ * of 2^order, where 0 <= order <= 12. Transform length is determined
+ * by the specification structure, which must be initialized prior to
+ * calling the FFT function using the appropriate helper, i.e.,
+ * <FFTInit_R_F32>. The relationship between the input and output
+ * sequences can be expressed in terms of the DFT, i.e.:
+ *
+ * x[n] = (2^(-scalefactor)/N) . SUM[k=0,...,N-1] X[k].e^(jnk.2.pi/N)
+ * n=0,1,2,...N-1
+ * N=2^order.
+ *
+ * The conjugate-symmetric output sequence is represented using a CCS vector,
+ * which is of length N+2, and is organized as follows:
+ *
+ * Index: 0 1 2 3 4 5 . . . N-2 N-1 N N+1
+ * Component: R0 0 R1 I1 R2 I2 . . . R[N/2-1] I[N/2-1] R[N/2] 0
+ *
+ * where R[n] and I[n], respectively, denote the real and imaginary
+ * components for FFT bin 'n'. Bins are numbered from 0 to N/2, where
+ * N is the FFT length. Bin index 0 corresponds to the DC component,
+ * and bin index N/2 corresponds to the foldover frequency.
+ *
+ * Input Arguments:
+ * pSrc - pointer to the real-valued input sequence, of length 2^order;
+ * must be aligned on a 32-byte boundary.
+ * pFFTSpec - pointer to the preallocated and initialized specification
+ * structure
+ *
+ * Output Arguments:
+ * pDst - pointer to output sequence, represented using CCS format, of
+ * length (2^order)+2; must be aligned on a 32-byte boundary.
+ *
+ * Return Value:
+ *
+ * OMX_Sts_NoErr - no error
+
+ * OMX_Sts_BadArgErr - bad arguments, if one or more of the
+ * following is true: - one of the pointers pSrc, pDst, or pFFTSpec
+ * is NULL - pSrc or pDst is not aligned on a 32-byte boundary
+ *
+ */
+OMXResult omxSP_FFTFwd_RToCCS_F32_Sfs(
+ const OMX_F32* pSrc,
+ OMX_F32* pDst,
+ const OMXFFTSpec_R_F32* pFFTSpec
+);
+
+#ifdef __arm__
+/*
+ * Non-NEON version of omxSP_FFTFwd_RToCCS_F32_Sfs
+ */
+OMXResult omxSP_FFTFwd_RToCCS_F32_Sfs_vfp(
+ const OMX_F32* pSrc,
+ OMX_F32* pDst,
+ const OMXFFTSpec_R_F32* pFFTSpec
+);
+
+/*
+ * Just like omxSP_FFTFwd_RToCCS_F32_Sfs, but automatically detects
+ * whether NEON is available or not and chooses the appropriate
+ * routine.
+ */
+extern OMXResult (*omxSP_FFTFwd_RToCCS_F32)(
+ const OMX_F32* pSrc,
+ OMX_F32* pDst,
+ const OMXFFTSpec_R_F32* pFFTSpec
+);
+#else
+#define omxSP_FFTFwd_RToCCS_F32 omxSP_FFTFwd_RToCCS_F32_Sfs
+#endif
+
+/**
+ * Function: omxSP_FFTInv_CCSToR_S32S16_Sfs (2.2.4.4.4)
+ *
+ * Description:
+ * These functions compute the inverse FFT for a conjugate-symmetric input
+ * sequence. Transform length is determined by the specification structure,
+ * which must be initialized prior to calling the FFT function using
+ * <FFTInit_R_S16S32>. For a transform of length M, the input sequence is
+ * represented using a packed CCS vector of length M+2, and is organized
+ * as follows:
+ *
+ * Index: 0 1 2 3 4 5 . . . M-2 M-1 M M+1
+ * Component R[0] 0 R[1] I[1] R[2] I[2] . . . R[M/2-1] I[M/2-1] R[M/2] 0
+ *
+ * where R[n] and I[n], respectively, denote the real and imaginary components for FFT bin n.
+ * Bins are numbered from 0 to M/2, where M is the FFT length. Bin index 0
+ * corresponds to the DC component, and bin index M/2 corresponds to the
+ * foldover frequency.
+ *
+ * Input Arguments:
+ * pSrc - pointer to the complex-valued input sequence represented using
+ * CCS format, of length (2^order) + 2; must be aligned on a 32-byte
+ * boundary.
+ * pFFTSpec - pointer to the preallocated and initialized specification
+ * structure
+ * scaleFactor - output scalefactor; range is [0,16]
+ *
+ * Output Arguments:
+ * pDst - pointer to the real-valued output sequence, of length 2^order ; must be
+ * aligned on a 32-byte boundary.
+ *
+ * Return Value:
+ *
+ * OMX_Sts_NoErr - no error
+ * OMX_Sts_BadArgErr - bad arguments if one or more of the following is true:
+ * - pSrc, pDst, or pFFTSpec is NULL
+ * - pSrc or pDst is not aligned on a 32-byte boundary
+ * - scaleFactor<0 or scaleFactor >16
+ *
+ */
+OMXResult omxSP_FFTInv_CCSToR_S32S16_Sfs (
+ const OMX_S32 *pSrc,
+ OMX_S16 *pDst,
+ const OMXFFTSpec_R_S16S32 *pFFTSpec,
+ OMX_INT scaleFactor
+);
+
+
+/**
+ * Function: omxSP_FFTInv_CCSToR_S16_Sfs
+ *
+ * Description:
+ * These functions compute the inverse FFT for a conjugate-symmetric input
+ * sequence. Transform length is determined by the specification structure,
+ * which must be initialized prior to calling the FFT function using
+ * <FFTInit_R_S16>. For a transform of length M, the input
+ * sequence is represented using a packed CCS vector of length
+ * M+2, and is organized as follows:
+ *
+ * Index: 0 1 2 3 4 5 . . . M-2 M-1 M M+1
+ * Component R[0] 0 R[1] I[1] R[2] I[2] . . . R[M/2-1] I[M/2-1] R[M/2] 0
+ *
+ * where R[n] and I[n], respectively, denote the real and imaginary components
+ * for FFT bin n.
+ * Bins are numbered from 0 to M/2, where M is the FFT length. Bin index 0
+ * corresponds to the DC component, and bin index M/2 corresponds to the
+ * foldover frequency.
+ *
+ * Input Arguments:
+ * pSrc - pointer to the complex-valued input sequence represented using
+ * CCS format, of length (2^order) + 2; must be aligned on a 32-byte
+ * boundary.
+ * pFFTSpec - pointer to the preallocated and initialized specification
+ * structure
+ * scaleFactor - output scalefactor; range is [0,16]
+ *
+ * Output Arguments:
+ * pDst - pointer to the real-valued output sequence, of length 2^order ; must
+ * be aligned on a 32-byte boundary.
+ *
+ * Return Value:
+ *
+ * OMX_Sts_NoErr - no error
+ * OMX_Sts_BadArgErr - bad arguments if one or more of the following is true:
+ * - pSrc, pDst, or pFFTSpec is NULL
+ * - pSrc or pDst is not aligned on a 32-byte boundary
+ * - scaleFactor<0 or scaleFactor >16
+ *
+ */
+OMXResult omxSP_FFTInv_CCSToR_S16_Sfs (
+ const OMX_S16* pSrc,
+ OMX_S16* pDst,
+ const OMXFFTSpec_R_S16* pFFTSpec,
+ OMX_INT scaleFactor
+);
+
+/**
+ * Function: omxSP_FFTInv_CCSToR_S32_Sfs (2.2.4.4.4)
+ *
+ * Description:
+ * These functions compute the inverse FFT for a conjugate-symmetric input
+ * sequence. Transform length is determined by the specification structure,
+ * which must be initialized prior to calling the FFT function using
+ * <FFTInit_R_S32>. For a transform of length M, the input sequence is
+ * represented using a packed CCS vector of length M+2, and is organized
+ * as follows:
+ *
+ * Index: 0 1 2 3 4 5 . . . M-2 M-1 M M+1
+ * Component R[0] 0 R[1] I[1] R[2] I[2] . . . R[M/2-1] I[M/2-1] R[M/2] 0
+ *
+ * where R[n] and I[n], respectively, denote the real and imaginary components for FFT bin n.
+ * Bins are numbered from 0 to M/2, where M is the FFT length. Bin index 0
+ * corresponds to the DC component, and bin index M/2 corresponds to the
+ * foldover frequency.
+ *
+ * Input Arguments:
+ * pSrc - pointer to the complex-valued input sequence represented using
+ * CCS format, of length (2^order) + 2; must be aligned on a 32-byte
+ * boundary.
+ * pFFTSpec - pointer to the preallocated and initialized specification
+ * structure
+ * scaleFactor - output scalefactor; range is [0,32]
+ *
+ * Output Arguments:
+ * pDst - pointer to the real-valued output sequence, of length 2^order ; must be
+ * aligned on a 32-byte boundary.
+ *
+ * Return Value:
+ *
+ * OMX_Sts_NoErr - no error
+ * OMX_Sts_BadArgErr - bad arguments if one or more of the following is true:
+ * - pSrc, pDst, or pFFTSpec is NULL
+ * - pSrc or pDst is not aligned on a 32-byte boundary
+ * - scaleFactor<0 or scaleFactor >32
+ *
+ */
+OMXResult omxSP_FFTInv_CCSToR_S32_Sfs (
+ const OMX_S32 *pSrc,
+ OMX_S32 *pDst,
+ const OMXFFTSpec_R_S32 *pFFTSpec,
+ OMX_INT scaleFactor
+);
+
+/**
+ * Function: omxSP_FFTInv_CToC_FC32_Sfs (2.2.4.2.4)
+ *
+ * Description:
+ * These functions compute an inverse FFT for a complex signal of
+ * length of 2^order, where 0 <= order <= 15. Transform length is
+ * determined by the specification structure, which must be
+ * initialized prior to calling the FFT function using the appropriate
+ * helper, i.e., <FFTInit_C_FC32>. The relationship between the input
+ * and output sequences can be expressed in terms of the IDFT, i.e.:
+ *
+ * x[n] = SUM[k=0,...,N-1] X[k].e^(jnk.2.pi/N)
+ * n=0,1,2,...N-1
+ * N=2^order.
+ *
+ * Input Arguments:
+ * pSrc - pointer to the complex-valued input signal, of length 2^order ;
+ * must be aligned on a 32-byte boundary.
+ * pFFTSpec - pointer to the preallocated and initialized specification
+ * structure
+ *
+ * Output Arguments:
+ * order
+ * pDst - pointer to the complex-valued output signal, of length 2^order;
+ * must be aligned on a 32-byte boundary.
+ *
+ * Return Value:
+ *
+ * OMX_Sts_NoErr - no error
+ * OMX_Sts_BadArgErr - returned if one or more of the following conditions
+ * is true:
+ * - one or more of the following pointers is NULL: pSrc, pDst, or
+ * pFFTSpec.
+ * - pSrc or pDst is not 32-byte aligned
+ * - scaleFactor<0 or scaleFactor>32
+ *
+ */
+OMXResult omxSP_FFTInv_CToC_FC32_Sfs (
+ const OMX_FC32 *pSrc,
+ OMX_FC32 *pDst,
+ const OMXFFTSpec_C_FC32 *pFFTSpec
+);
+#ifdef __arm__
+/*
+ * Non-NEON version
+ */
+OMXResult omxSP_FFTInv_CToC_FC32_Sfs_vfp (
+ const OMX_FC32 *pSrc,
+ OMX_FC32 *pDst,
+ const OMXFFTSpec_C_FC32 *pFFTSpec
+);
+#endif
+
+/**
+ * Function: omxSP_FFTInv_CCSToR_F32_Sfs
+ *
+ * Description:
+ * These functions compute the inverse FFT for a conjugate-symmetric input
+ * sequence. Transform length is determined by the specification structure,
+ * which must be initialized prior to calling the FFT function using
+ * <FFTInit_R_F32>. For a transform of length M, the input sequence is
+ * represented using a packed CCS vector of length M+2, and is organized
+ * as follows:
+ *
+ * Index: 0 1 2 3 4 5 . . . M-2 M-1 M M+1
+ * Comp: R[0] 0 R[1] I[1] R[2] I[2] . . . R[M/2-1] I[M/2-1] R[M/2] 0
+ *
+ * where R[n] and I[n], respectively, denote the real and imaginary
+ * components for FFT bin n. Bins are numbered from 0 to M/2, where M
+ * is the FFT length. Bin index 0 corresponds to the DC component,
+ * and bin index M/2 corresponds to the foldover frequency.
+ *
+ * Input Arguments:
+ * pSrc - pointer to the complex-valued input sequence represented
+ * using CCS format, of length (2^order) + 2; must be aligned on a
+ * 32-byte boundary.
+ * pFFTSpec - pointer to the preallocated and initialized
+ * specification structure
+ *
+ * Output Arguments:
+ * pDst - pointer to the real-valued output sequence, of length
+ * 2^order ; must be aligned on a 32-byte boundary.
+ *
+ * Return Value:
+ *
+ * OMX_Sts_NoErr - no error
+
+ * OMX_Sts_BadArgErr - bad arguments if one or more of the
+ * following is true:
+ * - pSrc, pDst, or pFFTSpec is NULL
+ * - pSrc or pDst is not aligned on a 32-byte boundary
+ * - scaleFactor<0 or scaleFactor >32
+ *
+ */
+OMXResult omxSP_FFTInv_CCSToR_F32_Sfs(
+ const OMX_F32* pSrc,
+ OMX_F32* pDst,
+ const OMXFFTSpec_R_F32* pFFTSpec
+);
+
+#ifdef __arm__
+/*
+ * Non-NEON version of omxSP_FFTInv_CCSToR_F32_Sfs
+ */
+OMXResult omxSP_FFTInv_CCSToR_F32_Sfs_vfp(
+ const OMX_F32* pSrc,
+ OMX_F32* pDst,
+ const OMXFFTSpec_R_F32* pFFTSpec
+);
+
+/*
+ * Just like omxSP_FFTInv_CCSToR_F32_Sfs, but automatically detects
+ * whether NEON is available or not and chooses the appropriate
+ * routine.
+ */
+extern OMXResult (*omxSP_FFTInv_CCSToR_F32)(
+ const OMX_F32* pSrc,
+ OMX_F32* pDst,
+ const OMXFFTSpec_R_F32* pFFTSpec);
+#else
+#define omxSP_FFTInv_CCSToR_F32 omxSP_FFTInv_CCSToR_F32_Sfs
+#endif
+
+/*
+ * Just like omxSP_FFTInv_CCSToR_F32_Sfs, but does not scale the result.
+ * (Actually, we multiple by two for consistency with other FFT routines in
+ * use.)
+ */
+OMXResult omxSP_FFTInv_CCSToR_F32_Sfs_unscaled(
+ const OMX_F32* pSrc,
+ OMX_F32* pDst,
+ const OMXFFTSpec_R_F32* pFFTSpec
+);
+
+
+#ifdef __cplusplus
+}
+#endif
+
+#endif /** end of #define _OMXSP_H_ */
+
+/** EOF */
+
diff --git a/media/openmax_dl/dl/sp/src/armSP_FFTInv_CCSToR_F32_preTwiddleRadix2_unsafe_s.S b/media/openmax_dl/dl/sp/src/armSP_FFTInv_CCSToR_F32_preTwiddleRadix2_unsafe_s.S
new file mode 100644
index 0000000000..e1656118b6
--- /dev/null
+++ b/media/openmax_dl/dl/sp/src/armSP_FFTInv_CCSToR_F32_preTwiddleRadix2_unsafe_s.S
@@ -0,0 +1,294 @@
+@//
+@// Copyright (c) 2013 The WebRTC project authors. All Rights Reserved.
+@//
+@// Use of this source code is governed by a BSD-style license
+@// that can be found in the LICENSE file in the root of the source
+@// tree. An additional intellectual property rights grant can be found
+@// in the file PATENTS. All contributing project authors may
+@// be found in the AUTHORS file in the root of the source tree.
+@//
+@// This is a modification of
+@// armSP_FFTInv_CCSToR_S32_preTwiddleRadix2_unsafe_s.s to support float
+@// instead of SC32.
+@//
+
+@//
+@// Description:
+@// Compute the "preTwiddleRadix2" stage prior to the call to the complexFFT
+@// It does a Z(k) = Feven(k) + jW^(-k) FOdd(k); k=0,1,2,...N/2-1 computation
+@//
+@//
+
+
+@// Include standard headers
+
+#include "dl/api/armCOMM_s.h"
+#include "dl/api/omxtypes_s.h"
+
+
+@// Import symbols required from other files
+@// (For example tables)
+
+
+@// Set debugging level
+@//DEBUG_ON SETL {TRUE}
+
+
+
+@// Guarding implementation by the processor name
+
+
+
+ @// Guarding implementation by the processor name
+
+
+
+@//Input Registers
+
+#define pSrc r0
+#define pDst r1
+#define pFFTSpec r2
+#define scale r3
+
+
+@// Output registers
+#define result r0
+
+@//Local Scratch Registers
+
+#define argTwiddle r1
+#define argDst r2
+#define argScale r4
+#define tmpOrder r4
+#define pTwiddle r4
+#define pOut r5
+#define subFFTSize r7
+#define subFFTNum r6
+#define N r6
+#define order r14
+#define diff r9
+@// Total num of radix stages required to complete the FFT
+#define count r8
+#define x0r r4
+#define x0i r5
+#define diffMinusOne r2
+#define round r3
+
+#define pOut1 r2
+#define size r7
+#define step r8
+#define step1 r9
+#define twStep r10
+#define pTwiddleTmp r11
+#define argTwiddle1 r12
+#define zero r14
+
+@// Neon registers
+
+#define dX0 D0
+#define dShift D1
+#define dX1 D1
+#define dY0 D2
+#define dY1 D3
+#define dX0r D0
+#define dX0i D1
+#define dX1r D2
+#define dX1i D3
+#define dW0r D4
+#define dW0i D5
+#define dW1r D6
+#define dW1i D7
+#define dT0 D8
+#define dT1 D9
+#define dT2 D10
+#define dT3 D11
+#define qT0 D12
+#define qT1 D14
+#define qT2 D16
+#define qT3 D18
+#define dY0r D4
+#define dY0i D5
+#define dY1r D6
+#define dY1i D7
+
+#define dY2 D4
+#define dY3 D5
+#define dW0 D6
+#define dW1 D7
+#define dW0Tmp D10
+#define dW1Neg D11
+
+#define half D13
+
+@ Structure offsets for the FFTSpec
+ .set ARMsFFTSpec_N, 0
+ .set ARMsFFTSpec_pBitRev, 4
+ .set ARMsFFTSpec_pTwiddle, 8
+ .set ARMsFFTSpec_pBuf, 12
+
+ .MACRO FFTSTAGE scaled, inverse, name
+
+ @// Read the size from structure and take log
+ LDR N, [pFFTSpec, #ARMsFFTSpec_N]
+
+ @// Read other structure parameters
+ LDR pTwiddle, [pFFTSpec, #ARMsFFTSpec_pTwiddle]
+ LDR pOut, [pFFTSpec, #ARMsFFTSpec_pBuf]
+
+ VMOV.F32 half, #0.5
+
+
+ MOV size,N,ASR #1 @// preserve the contents of N
+ MOV step,N,LSL #2 @// step = N/2 * 8 bytes
+
+
+ @// Z(k) = 1/2 {[F(k) + F'(N/2-k)] +j*W^(-k) [F(k) - F'(N/2-k)]}
+ @// Note: W^(k) is stored as negated value and also need to
+ @// conjugate the values from the table
+
+ @// Z(0) : no need of twiddle multiply
+ @// Z(0) = 1/2 { [F(0) + F'(N/2)] +j [F(0) - F'(N/2)] }
+
+ VLD1.F32 dX0,[pSrc],step
+ ADD pOut1,pOut,step @// pOut1 = pOut+ N/2*8 bytes
+
+ VLD1.F32 dX1,[pSrc]!
+ @// twStep = 3N/8 * 8 bytes pointing to W^1
+ SUB twStep,step,size,LSL #1
+
+ MOV step1,size,LSL #2 @// step1 = N/4 * 8 = N/2*4 bytes
+ SUB step1,step1,#8 @// (N/4-1)*8 bytes
+
+ VADD.F32 dY0,dX0,dX1 @// [b+d | a+c]
+ VSUB.F32 dY1,dX0,dX1 @// [b-d | a-c]
+ VMUL.F32 dY0, dY0, half[0]
+ VMUL.F32 dY1, dY1, half[0]
+
+ @// dY0= [a-c | a+c] ;dY1= [b-d | b+d]
+ VZIP.F32 dY0,dY1
+
+ VSUB.F32 dX0,dY0,dY1
+ SUBS size,size,#2
+ VADD.F32 dX1,dY0,dY1
+
+ SUB pSrc,pSrc,step
+
+ VST1.F32 dX0[0],[pOut1]!
+ ADD pTwiddleTmp,pTwiddle,#8 @// W^2
+ VST1.F32 dX1[1],[pOut1]!
+ ADD argTwiddle1,pTwiddle,twStep @// W^1
+
+
+ BLT decrementScale\name
+ BEQ lastElement\name
+
+
+ @// Z(k) = 1/2[F(k) + F'(N/2-k)] +j*W^(-k) [F(k) - F'(N/2-k)]
+ @// Note: W^k is stored as negative values in the table and also
+ @// need to conjugate the values from the table.
+ @//
+ @// Process 4 elements at a time. E.g: Z(1),Z(2) and Z(N/2-2),Z(N/2-1)
+ @// since both of them require F(1),F(2) and F(N/2-2),F(N/2-1)
+
+
+ SUB step,step,#24
+evenOddButterflyLoop\name :
+
+
+ VLD1.F32 dW0r,[argTwiddle1],step1
+ VLD1.F32 dW1r,[argTwiddle1]!
+
+ VLD2.F32 {dX0r,dX0i},[pSrc],step
+ SUB argTwiddle1,argTwiddle1,step1
+ VLD2.F32 {dX1r,dX1i},[pSrc]!
+
+ SUB step1,step1,#8 @// (N/4-2)*8 bytes
+ VLD1.F32 dW0i,[pTwiddleTmp],step1
+ VLD1.F32 dW1i,[pTwiddleTmp]!
+ SUB pSrc,pSrc,step
+
+ SUB pTwiddleTmp,pTwiddleTmp,step1
+ VREV64.F32 dX1r,dX1r
+ VREV64.F32 dX1i,dX1i
+ SUBS size,size,#4
+
+
+ VSUB.F32 dT2,dX0r,dX1r @// a-c
+ VADD.F32 dT3,dX0i,dX1i @// b+d
+ VADD.F32 dT0,dX0r,dX1r @// a+c
+ VSUB.F32 dT1,dX0i,dX1i @// b-d
+ SUB step1,step1,#8
+
+ VMUL.F32 dT2, dT2, half[0]
+ VMUL.F32 dT3, dT3, half[0]
+
+ VMUL.F32 dT0, dT0, half[0]
+ VMUL.F32 dT1, dT1, half[0]
+
+ VZIP.F32 dW1r,dW1i
+ VZIP.F32 dW0r,dW0i
+
+
+ VMUL.F32 dX1r,dW1r,dT2
+ VMUL.F32 dX1i,dW1r,dT3
+ VMUL.F32 dX0r,dW0r,dT2
+ VMUL.F32 dX0i,dW0r,dT3
+
+ VMLS.F32 dX1r,dW1i,dT3
+ VMLA.F32 dX1i,dW1i,dT2
+
+ VMLA.F32 dX0r,dW0i,dT3
+ VMLS.F32 dX0i,dW0i,dT2
+
+
+ VADD.F32 dY1r,dT0,dX1i @// F(N/2 -1)
+ VSUB.F32 dY1i,dX1r,dT1
+
+ VREV64.F32 dY1r,dY1r
+ VREV64.F32 dY1i,dY1i
+
+
+ VADD.F32 dY0r,dT0,dX0i @// F(1)
+ VSUB.F32 dY0i,dT1,dX0r
+
+
+ VST2.F32 {dY0r,dY0i},[pOut1],step
+ VST2.F32 {dY1r,dY1i},[pOut1]!
+ SUB pOut1,pOut1,step
+ SUB step,step,#32 @// (N/2-4)*8 bytes
+
+
+ BGT evenOddButterflyLoop\name
+
+
+ @// set both the ptrs to the last element
+ SUB pSrc,pSrc,#8
+ SUB pOut1,pOut1,#8
+
+ @// Last element can be expanded as follows
+ @// 1/2[Z(k) + Z'(k)] - j w^-k [Z(k) - Z'(k)] (since W^k is stored as
+ @// -ve)
+ @// 1/2[(a+jb) + (a-jb)] - j w^-k [(a+jb) - (a-jb)]
+ @// 1/2[2a+j0] - j (c-jd) [0+j2b]
+ @// (a+bc, -bd)
+ @// Since (c,d) = (0,1) for the last element, result is just (a,-b)
+
+lastElement\name :
+ VLD1.F32 dX0r,[pSrc]
+
+ VST1.F32 dX0r[0],[pOut1]!
+ VNEG.F32 dX0r,dX0r
+ VST1.F32 dX0r[1],[pOut1]
+
+
+
+decrementScale\name :
+
+ .endm
+
+ M_START armSP_FFTInv_CCSToR_F32_preTwiddleRadix2_unsafe,r4
+
+ FFTSTAGE "FALSE","TRUE",Inv
+ M_END
+
+ .end
diff --git a/media/openmax_dl/dl/sp/src/armSP_FFT_CToC_FC32_Radix2_fs_unsafe_s.S b/media/openmax_dl/dl/sp/src/armSP_FFT_CToC_FC32_Radix2_fs_unsafe_s.S
new file mode 100644
index 0000000000..770848c623
--- /dev/null
+++ b/media/openmax_dl/dl/sp/src/armSP_FFT_CToC_FC32_Radix2_fs_unsafe_s.S
@@ -0,0 +1,134 @@
+@//
+@// Copyright (c) 2013 The WebRTC project authors. All Rights Reserved.
+@//
+@// Use of this source code is governed by a BSD-style license
+@// that can be found in the LICENSE file in the root of the source
+@// tree. An additional intellectual property rights grant can be found
+@// in the file PATENTS. All contributing project authors may
+@// be found in the AUTHORS file in the root of the source tree.
+@//
+@// This is a modification of armSP_FFT_CToC_SC32_Radix2_fs_unsafe_s.S
+@// to support float instead of SC32.
+@//
+
+@//
+@// Description:
+@// Compute the first stage of a Radix 2 DIT in-order out-of-place FFT
+@// stage for a N point complex signal.
+@//
+@//
+
+
+@// Include standard headers
+
+#include "dl/api/armCOMM_s.h"
+#include "dl/api/omxtypes_s.h"
+
+
+@// Import symbols required from other files
+@// (For example tables)
+
+
+
+
+@// Set debugging level
+@//DEBUG_ON SETL {TRUE}
+
+
+
+@// Guarding implementation by the processor name
+
+
+
+@// Guarding implementation by the processor name
+
+
+@//Input Registers
+
+#define pSrc r0
+#define pDst r2
+#define pTwiddle r1
+#define pPingPongBuf r5
+#define subFFTNum r6
+#define subFFTSize r7
+
+
+@//Output Registers
+
+
+@//Local Scratch Registers
+
+#define pointStep r3
+#define outPointStep r3
+#define grpSize r4
+#define setCount r4
+#define step r8
+#define dstStep r8
+
+@// Neon Registers
+
+#define dX0 D0
+#define dX1 D1
+#define dY0 D2
+#define dY1 D3
+
+
+ .MACRO FFTSTAGE scaled, inverse, name
+
+ @// Define stack arguments
+
+
+ @// update subFFTSize and subFFTNum into RN6 and RN7 for the next stage
+
+
+ MOV subFFTSize,#2
+ LSR grpSize,subFFTNum,#1
+ MOV subFFTNum,grpSize
+
+
+ @// pT0+1 increments pT0 by 8 bytes
+ @// pT0+pointStep = increment of 8*pointStep bytes = 4*grpSize bytes
+ @// Note: outPointStep = pointStep for firststage
+ @// Note: setCount = grpSize/2 (reuse the updated grpSize for setCount)
+
+ MOV pointStep,grpSize,LSL #3
+ RSB step,pointStep,#8
+
+
+ @// Loop on the sets for grp zero
+
+grpZeroSetLoop\name :
+
+ VLD1.F32 dX0,[pSrc],pointStep
+ VLD1.F32 dX1,[pSrc],step @// step = -pointStep + 8
+ SUBS setCount,setCount,#1
+
+ VADD.F32 dY0,dX0,dX1
+ VSUB.F32 dY1,dX0,dX1
+
+ VST1.F32 dY0,[pDst],outPointStep
+ @// dstStep = step = -pointStep + 8
+ VST1.F32 dY1,[pDst],dstStep
+
+ BGT grpZeroSetLoop\name
+
+
+ @// reset pSrc to pDst for the next stage
+ SUB pSrc,pDst,pointStep @// pDst -= 2*grpSize
+ MOV pDst,pPingPongBuf
+
+ .endm
+
+
+
+ M_START armSP_FFTFwd_CToC_FC32_Radix2_fs_OutOfPlace_unsafe,r4
+ FFTSTAGE "FALSE","FALSE",fwd
+ M_END
+
+
+
+ M_START armSP_FFTInv_CToC_FC32_Radix2_fs_OutOfPlace_unsafe,r4
+ FFTSTAGE "FALSE","TRUE",inv
+ M_END
+
+ .end
diff --git a/media/openmax_dl/dl/sp/src/armSP_FFT_CToC_FC32_Radix2_ls_unsafe_s.S b/media/openmax_dl/dl/sp/src/armSP_FFT_CToC_FC32_Radix2_ls_unsafe_s.S
new file mode 100644
index 0000000000..ac8d982200
--- /dev/null
+++ b/media/openmax_dl/dl/sp/src/armSP_FFT_CToC_FC32_Radix2_ls_unsafe_s.S
@@ -0,0 +1,153 @@
+@//
+@// Copyright (c) 2013 The WebRTC project authors. All Rights Reserved.
+@//
+@// Use of this source code is governed by a BSD-style license
+@// that can be found in the LICENSE file in the root of the source
+@// tree. An additional intellectual property rights grant can be found
+@// in the file PATENTS. All contributing project authors may
+@// be found in the AUTHORS file in the root of the source tree.
+@//
+@// This is a modification of armSP_FFT_CToC_SC32_Radix2_ls_unsafe_s.S
+@// to support float instead of SC32.
+@//
+
+@//
+@// Description:
+@// Compute the last stage of a Radix 2 DIT in-order out-of-place FFT
+@// stage for a N point complex signal.
+@//
+@//
+
+
+@// Include standard headers
+
+#include "dl/api/armCOMM_s.h"
+#include "dl/api/omxtypes_s.h"
+
+
+@// Import symbols required from other files
+@// (For example tables)
+
+
+
+
+@// Set debugging level
+@//DEBUG_ON SETL {TRUE}
+
+
+@// Guarding implementation by the processor name
+
+
+@//Input Registers
+
+#define pSrc r0
+#define pDst r2
+#define pTwiddle r1
+#define subFFTNum r6
+#define subFFTSize r7
+
+
+@//Output Registers
+
+
+@//Local Scratch Registers
+
+
+#define outPointStep r3
+#define grpCount r4
+#define dstStep r5
+#define pTmp r4
+
+@// Neon Registers
+
+#define dWr d0
+#define dWi d1
+#define dXr0 d2
+#define dXi0 d3
+#define dXr1 d4
+#define dXi1 d5
+#define dYr0 d6
+#define dYi0 d7
+#define dYr1 d8
+#define dYi1 d9
+#define qT0 d10
+#define qT1 d12
+
+ .MACRO FFTSTAGE scaled, inverse, name
+
+
+ MOV outPointStep,subFFTSize,LSL #3
+ @// Update grpCount and grpSize rightaway
+
+ MOV subFFTNum,#1 @//after the last stage
+ LSL grpCount,subFFTSize,#1
+
+ @// update subFFTSize for the next stage
+ MOV subFFTSize,grpCount
+
+ RSB dstStep,outPointStep,#16
+
+
+ @// Loop on 2 grps at a time for the last stage
+
+radix2lsGrpLoop\name :
+ @ dWr = [pTwiddle[0].Re, pTwiddle[1].Re]
+ @ dWi = [pTwiddle[0].Im, pTwiddle[1].Im]
+ VLD2.F32 {dWr,dWi},[pTwiddle, :64]!
+
+ @ dXr0 = [pSrc[0].Re, pSrc[2].Re]
+ @ dXi0 = [pSrc[0].Im, pSrc[2].Im]
+ @ dXr1 = [pSrc[1].Re, pSrc[3].Re]
+ @ dXi1 = [pSrc[1].Im, pSrc[3].Im]
+ VLD4.F32 {dXr0,dXi0,dXr1,dXi1},[pSrc, :128]!
+ SUBS grpCount,grpCount,#4 @// grpCount is multiplied by 2
+
+ .ifeqs "\inverse", "TRUE"
+ VMUL.F32 qT0,dWr,dXr1
+ VMLA.F32 qT0,dWi,dXi1 @// real part
+ VMUL.F32 qT1,dWr,dXi1
+ VMLS.F32 qT1,dWi,dXr1 @// imag part
+
+ .else
+
+ VMUL.F32 qT0,dWr,dXr1
+ VMLS.F32 qT0,dWi,dXi1 @// real part
+ VMUL.F32 qT1,dWr,dXi1
+ VMLA.F32 qT1,dWi,dXr1 @// imag part
+
+ .endif
+
+ VSUB.F32 dYr0,dXr0,qT0
+ VSUB.F32 dYi0,dXi0,qT1
+ VADD.F32 dYr1,dXr0,qT0
+ VADD.F32 dYi1,dXi0,qT1
+
+ VST2.F32 {dYr0,dYi0},[pDst],outPointStep
+ VST2.F32 {dYr1,dYi1},[pDst],dstStep @// dstStep = step = -outPointStep + 16
+
+ BGT radix2lsGrpLoop\name
+
+
+ @// Reset and Swap pSrc and pDst for the next stage
+ MOV pTmp,pDst
+ SUB pDst,pSrc,outPointStep,LSL #1 @// pDst -= 4*size; pSrc -= 8*size bytes
+ SUB pSrc,pTmp,outPointStep
+
+ @// Reset pTwiddle for the next stage
+ SUB pTwiddle,pTwiddle,outPointStep @// pTwiddle -= 4*size bytes
+
+ .endm
+
+
+
+ M_START armSP_FFTFwd_CToC_FC32_Radix2_ls_OutOfPlace_unsafe,r4,""
+ FFTSTAGE "FALSE","FALSE",fwd
+ M_END
+
+
+
+ M_START armSP_FFTInv_CToC_FC32_Radix2_ls_OutOfPlace_unsafe,r4
+ FFTSTAGE "FALSE","TRUE",inv
+ M_END
+
+ .end
diff --git a/media/openmax_dl/dl/sp/src/armSP_FFT_CToC_FC32_Radix2_unsafe_s.S b/media/openmax_dl/dl/sp/src/armSP_FFT_CToC_FC32_Radix2_unsafe_s.S
new file mode 100644
index 0000000000..f04e9b84ff
--- /dev/null
+++ b/media/openmax_dl/dl/sp/src/armSP_FFT_CToC_FC32_Radix2_unsafe_s.S
@@ -0,0 +1,191 @@
+@//
+@// Copyright (c) 2013 The WebRTC project authors. All Rights Reserved.
+@//
+@// Use of this source code is governed by a BSD-style license
+@// that can be found in the LICENSE file in the root of the source
+@// tree. An additional intellectual property rights grant can be found
+@// in the file PATENTS. All contributing project authors may
+@// be found in the AUTHORS file in the root of the source tree.
+@//
+@// This is a modification of armSP_FFT_CToC_SC32_Radix2_unsafe_s.s
+@// to support float instead of SC32.
+@//
+
+@// Description:
+@// Compute a Radix 2 DIT in-order out-of-place FFT stage for an N point
+@// complex signal. This handles the general stage, not the first or last
+@// stage.
+@//
+@//
+
+
+@// Include standard headers
+
+#include "dl/api/armCOMM_s.h"
+#include "dl/api/omxtypes_s.h"
+
+
+@// Import symbols required from other files
+@// (For example tables)
+
+
+
+@// Set debugging level
+@//DEBUG_ON SETL {TRUE}
+
+
+
+@// Guarding implementation by the processor name
+
+
+
+
+@// Guarding implementation by the processor name
+
+
+@//Input Registers
+
+#define pSrc r0
+#define pDst r2
+#define pTwiddle r1
+#define subFFTNum r6
+#define subFFTSize r7
+
+
+@//Output Registers
+
+
+@//Local Scratch Registers
+
+#define outPointStep r3
+#define pointStep r4
+#define grpCount r5
+#define setCount r8
+@//const RN 9
+#define step r10
+#define dstStep r11
+#define pTable r9
+#define pTmp r9
+
+@// Neon Registers
+
+#define dW D0
+#define dX0 D2
+#define dX1 D3
+#define dX2 D4
+#define dX3 D5
+#define dY0 D6
+#define dY1 D7
+#define dY2 D8
+#define dY3 D9
+#define qT0 D10
+#define qT1 D11
+
+
+ .MACRO FFTSTAGE scaled, inverse, name
+
+ @// Define stack arguments
+
+
+ @// Update grpCount and grpSize rightaway inorder to reuse pGrpCount
+ @// and pGrpSize regs
+
+ LSR subFFTNum,subFFTNum,#1 @//grpSize
+ LSL grpCount,subFFTSize,#1
+
+
+ @// pT0+1 increments pT0 by 8 bytes
+ @// pT0+pointStep = increment of 8*pointStep bytes = 4*grpSize bytes
+ MOV pointStep,subFFTNum,LSL #2
+
+ @// update subFFTSize for the next stage
+ MOV subFFTSize,grpCount
+
+ @// pOut0+1 increments pOut0 by 8 bytes
+ @// pOut0+outPointStep == increment of 8*outPointStep bytes =
+ @// 4*size bytes
+ SMULBB outPointStep,grpCount,pointStep
+ LSL pointStep,pointStep,#1
+
+
+ RSB step,pointStep,#16
+ RSB dstStep,outPointStep,#16
+
+ @// Loop on the groups
+
+radix2GrpLoop\name :
+ MOV setCount,pointStep,LSR #3
+ VLD1.F32 dW,[pTwiddle],pointStep @//[wi | wr]
+
+
+ @// Loop on the sets
+
+
+radix2SetLoop\name :
+
+
+ @// point0: dX0-real part dX1-img part
+ VLD2.F32 {dX0,dX1},[pSrc],pointStep
+ @// point1: dX2-real part dX3-img part
+ VLD2.F32 {dX2,dX3},[pSrc],step
+
+ SUBS setCount,setCount,#2
+
+ .ifeqs "\inverse", "TRUE"
+ VMUL.F32 qT0,dX2,dW[0]
+ VMLA.F32 qT0,dX3,dW[1] @// real part
+ VMUL.F32 qT1,dX3,dW[0]
+ VMLS.F32 qT1,dX2,dW[1] @// imag part
+
+ .else
+
+ VMUL.F32 qT0,dX2,dW[0]
+ VMLS.F32 qT0,dX3,dW[1] @// real part
+ VMUL.F32 qT1,dX3,dW[0]
+ VMLA.F32 qT1,dX2,dW[1] @// imag part
+
+ .endif
+
+ VSUB.F32 dY0,dX0,qT0
+ VSUB.F32 dY1,dX1,qT1
+ VADD.F32 dY2,dX0,qT0
+ VADD.F32 dY3,dX1,qT1
+
+ VST2.F32 {dY0,dY1},[pDst],outPointStep
+ @// dstStep = -outPointStep + 16
+ VST2.F32 {dY2,dY3},[pDst],dstStep
+
+ BGT radix2SetLoop\name
+
+ SUBS grpCount,grpCount,#2
+ ADD pSrc,pSrc,pointStep
+ BGT radix2GrpLoop\name
+
+
+ @// Reset and Swap pSrc and pDst for the next stage
+ MOV pTmp,pDst
+ @// pDst -= 4*size; pSrc -= 8*size bytes
+ SUB pDst,pSrc,outPointStep,LSL #1
+ SUB pSrc,pTmp,outPointStep
+
+ @// Reset pTwiddle for the next stage
+ @// pTwiddle -= 4*size bytes
+ SUB pTwiddle,pTwiddle,outPointStep
+
+
+ .endm
+
+
+
+ M_START armSP_FFTFwd_CToC_FC32_Radix2_OutOfPlace_unsafe,r4
+ FFTSTAGE "FALSE","FALSE",FWD
+ M_END
+
+
+
+ M_START armSP_FFTInv_CToC_FC32_Radix2_OutOfPlace_unsafe,r4
+ FFTSTAGE "FALSE","TRUE",INV
+ M_END
+
+
+ .end
diff --git a/media/openmax_dl/dl/sp/src/armSP_FFT_CToC_FC32_Radix4_fs_unsafe_s.S b/media/openmax_dl/dl/sp/src/armSP_FFT_CToC_FC32_Radix4_fs_unsafe_s.S
new file mode 100644
index 0000000000..6a3c835338
--- /dev/null
+++ b/media/openmax_dl/dl/sp/src/armSP_FFT_CToC_FC32_Radix4_fs_unsafe_s.S
@@ -0,0 +1,251 @@
+@//
+@// Copyright (c) 2013 The WebRTC project authors. All Rights Reserved.
+@//
+@// Use of this source code is governed by a BSD-style license
+@// that can be found in the LICENSE file in the root of the source
+@// tree. An additional intellectual property rights grant can be found
+@// in the file PATENTS. All contributing project authors may
+@// be found in the AUTHORS file in the root of the source tree.
+@//
+@//
+@// This is a modification of armSP_FFT_CToC_SC32_Radix4_fs_unsafe_s.s
+@// to support float instead of SC32.
+@//
+
+@//
+@// Description:
+@// Compute a first stage Radix 4 FFT stage for a N point complex signal
+@//
+@//
+
+
+@// Include standard headers
+
+#include "dl/api/armCOMM_s.h"
+#include "dl/api/omxtypes_s.h"
+
+@// Import symbols required from other files
+@// (For example tables)
+
+
+
+
+@// Set debugging level
+@//DEBUG_ON SETL {TRUE}
+
+
+
+@// Guarding implementation by the processor name
+
+
+
+@// Guarding implementation by the processor name
+
+
+@//Input Registers
+
+#define pSrc r0
+#define pDst r2
+#define pTwiddle r1
+#define pPingPongBuf r5
+#define subFFTNum r6
+#define subFFTSize r7
+
+
+@//Output Registers
+
+
+@//Local Scratch Registers
+
+#define grpSize r3
+@// Reuse grpSize as setCount
+#define setCount r3
+#define pointStep r4
+#define outPointStep r4
+#define setStep r8
+#define step1 r9
+#define step3 r10
+
+@// Neon Registers
+
+#define dXr0 D0
+#define dXi0 D1
+#define dXr1 D2
+#define dXi1 D3
+#define dXr2 D4
+#define dXi2 D5
+#define dXr3 D6
+#define dXi3 D7
+#define dYr0 D8
+#define dYi0 D9
+#define dYr1 D10
+#define dYi1 D11
+#define dYr2 D12
+#define dYi2 D13
+#define dYr3 D14
+#define dYi3 D15
+#define qX0 Q0
+#define qX1 Q1
+#define qX2 Q2
+#define qX3 Q3
+#define qY0 Q4
+#define qY1 Q5
+#define qY2 Q6
+#define qY3 Q7
+#define dZr0 D16
+#define dZi0 D17
+#define dZr1 D18
+#define dZi1 D19
+#define dZr2 D20
+#define dZi2 D21
+#define dZr3 D22
+#define dZi3 D23
+#define qZ0 Q8
+#define qZ1 Q9
+#define qZ2 Q10
+#define qZ3 Q11
+
+
+ .MACRO FFTSTAGE scaled, inverse, name
+
+ @// Define stack arguments
+
+ @// pT0+1 increments pT0 by 8 bytes
+ @// pT0+pointStep = increment of 8*pointStep bytes = 2*grpSize bytes
+ @// Note: outPointStep = pointStep for firststage
+
+ MOV pointStep,subFFTNum,LSL #1
+
+
+ @// Update pSubFFTSize and pSubFFTNum regs
+ VLD2.F32 {dXr0,dXi0},[pSrc, :128],pointStep @// data[0]
+ @// subFFTSize = 1 for the first stage
+ MOV subFFTSize,#4
+
+ @// Note: setCount = subFFTNum/4 (reuse the grpSize reg for setCount)
+ LSR grpSize,subFFTNum,#2
+ VLD2.F32 {dXr1,dXi1},[pSrc, :128],pointStep @// data[1]
+ MOV subFFTNum,grpSize
+
+
+ @// Calculate the step of input data for the next set
+ @//MOV setStep,pointStep,LSL #1
+ MOV setStep,grpSize,LSL #4
+ VLD2.F32 {dXr2,dXi2},[pSrc, :128],pointStep @// data[2]
+ @// setStep = 3*pointStep
+ ADD setStep,setStep,pointStep
+ @// setStep = - 3*pointStep+16
+ RSB setStep,setStep,#16
+
+ @// data[3] & update pSrc for the next set
+ VLD2.F32 {dXr3,dXi3},[pSrc, :128],setStep
+ @// step1 = 2*pointStep
+ MOV step1,pointStep,LSL #1
+
+ VADD.F32 qY0,qX0,qX2
+
+ @// step3 = -pointStep
+ RSB step3,pointStep,#0
+
+ @// grp = 0 a special case since all the twiddle factors are 1
+ @// Loop on the sets : 2 sets at a time
+
+radix4fsGrpZeroSetLoop\name :
+
+
+
+ @// Decrement setcount
+ SUBS setCount,setCount,#2
+
+
+ @// finish first stage of 4 point FFT
+
+
+ VSUB.F32 qY2,qX0,qX2
+
+ VLD2.F32 {dXr0,dXi0},[pSrc, :128],step1 @// data[0]
+ VADD.F32 qY1,qX1,qX3
+ VLD2.F32 {dXr2,dXi2},[pSrc, :128],step3 @// data[2]
+ VSUB.F32 qY3,qX1,qX3
+
+
+ @// finish second stage of 4 point FFT
+
+ .ifeqs "\inverse", "TRUE"
+
+ VLD2.F32 {dXr1,dXi1},[pSrc, :128],step1 @// data[1]
+ VADD.F32 qZ0,qY0,qY1
+
+ @// data[3] & update pSrc for the next set, but not if it's the
+ @// last iteration so that we don't read past the end of the
+ @// input array.
+ BEQ radix4SkipLastUpdateInv\name
+ VLD2.F32 {dXr3,dXi3},[pSrc, :128],setStep
+radix4SkipLastUpdateInv\name:
+ VSUB.F32 dZr3,dYr2,dYi3
+
+ VST2.F32 {dZr0,dZi0},[pDst, :128],outPointStep
+ VADD.F32 dZi3,dYi2,dYr3
+
+ VSUB.F32 qZ1,qY0,qY1
+ VST2.F32 {dZr3,dZi3},[pDst, :128],outPointStep
+
+ VADD.F32 dZr2,dYr2,dYi3
+ VST2.F32 {dZr1,dZi1},[pDst, :128],outPointStep
+ VSUB.F32 dZi2,dYi2,dYr3
+
+ VADD.F32 qY0,qX0,qX2 @// u0 for next iteration
+ VST2.F32 {dZr2,dZi2},[pDst, :128],setStep
+
+
+ .else
+
+ VLD2.F32 {dXr1,dXi1},[pSrc, :128],step1 @// data[1]
+ VADD.F32 qZ0,qY0,qY1
+
+ @// data[3] & update pSrc for the next set, but not if it's the
+ @// last iteration so that we don't read past the end of the
+ @// input array.
+ BEQ radix4SkipLastUpdateFwd\name
+ VLD2.F32 {dXr3,dXi3},[pSrc, :128],setStep
+radix4SkipLastUpdateFwd\name:
+ VADD.F32 dZr2,dYr2,dYi3
+
+ VST2.F32 {dZr0,dZi0},[pDst, :128],outPointStep
+ VSUB.F32 dZi2,dYi2,dYr3
+
+ VSUB.F32 qZ1,qY0,qY1
+ VST2.F32 {dZr2,dZi2},[pDst, :128],outPointStep
+
+ VSUB.F32 dZr3,dYr2,dYi3
+ VST2.F32 {dZr1,dZi1},[pDst, :128],outPointStep
+ VADD.F32 dZi3,dYi2,dYr3
+
+ VADD.F32 qY0,qX0,qX2 @// u0 for next iteration
+ VST2.F32 {dZr3,dZi3},[pDst, :128],setStep
+
+ .endif
+
+ BGT radix4fsGrpZeroSetLoop\name
+
+ @// reset pSrc to pDst for the next stage
+ SUB pSrc,pDst,pointStep @// pDst -= 2*grpSize
+ MOV pDst,pPingPongBuf
+
+
+ .endm
+
+
+
+ M_START armSP_FFTFwd_CToC_FC32_Radix4_fs_OutOfPlace_unsafe,r4
+ FFTSTAGE "FALSE","FALSE",fwd
+ M_END
+
+
+
+ M_START armSP_FFTInv_CToC_FC32_Radix4_fs_OutOfPlace_unsafe,r4
+ FFTSTAGE "FALSE","TRUE",inv
+ M_END
+
+
+ .end
diff --git a/media/openmax_dl/dl/sp/src/armSP_FFT_CToC_FC32_Radix4_ls_unsafe_s.S b/media/openmax_dl/dl/sp/src/armSP_FFT_CToC_FC32_Radix4_ls_unsafe_s.S
new file mode 100644
index 0000000000..c2e798874b
--- /dev/null
+++ b/media/openmax_dl/dl/sp/src/armSP_FFT_CToC_FC32_Radix4_ls_unsafe_s.S
@@ -0,0 +1,339 @@
+@//
+@// Copyright (c) 2013 The WebRTC project authors. All Rights Reserved.
+@//
+@// Use of this source code is governed by a BSD-style license
+@// that can be found in the LICENSE file in the root of the source
+@// tree. An additional intellectual property rights grant can be found
+@// in the file PATENTS. All contributing project authors may
+@// be found in the AUTHORS file in the root of the source tree.
+@//
+@// This is a modification of armSP_FFT_CToC_SC32_Radix4_ls_unsafe_s.s
+@// to support float instead of SC32.
+@//
+
+@//
+@// Description:
+@// Compute a Radix 4 FFT stage for a N point complex signal
+@//
+@//
+
+
+@// Include standard headers
+
+#include "dl/api/armCOMM_s.h"
+#include "dl/api/omxtypes_s.h"
+
+@// Import symbols required from other files
+@// (For example tables)
+
+
+
+
+@// Set debugging level
+@//DEBUG_ON SETL {TRUE}
+
+
+@// Guarding implementation by the processor name
+
+
+@// Import symbols required from other files
+@// (For example tables)
+ @//IMPORT armAAC_constTable
+
+@//Input Registers
+
+#define pSrc r0
+#define pDst r2
+#define pTwiddle r1
+#define subFFTNum r6
+#define subFFTSize r7
+
+
+
+@//Output Registers
+
+
+@//Local Scratch Registers
+
+#define outPointStep r3
+#define grpCount r4
+#define dstStep r5
+#define grpTwStep r8
+#define stepTwiddle r9
+#define twStep r10
+#define pTmp r4
+#define step16 r11
+#define step24 r12
+
+
+@// Neon Registers
+
+#define dButterfly1Real02 D0
+#define dButterfly1Imag02 D1
+#define dButterfly1Real13 D2
+#define dButterfly1Imag13 D3
+#define dButterfly2Real02 D4
+#define dButterfly2Imag02 D5
+#define dButterfly2Real13 D6
+#define dButterfly2Imag13 D7
+#define dXr0 D0
+#define dXi0 D1
+#define dXr1 D2
+#define dXi1 D3
+#define dXr2 D4
+#define dXi2 D5
+#define dXr3 D6
+#define dXi3 D7
+
+#define dYr0 D16
+#define dYi0 D17
+#define dYr1 D18
+#define dYi1 D19
+#define dYr2 D20
+#define dYi2 D21
+#define dYr3 D22
+#define dYi3 D23
+
+#define dW1r D8
+#define dW1i D9
+#define dW2r D10
+#define dW2i D11
+#define dW3r D12
+#define dW3i D13
+#define qT0 d14
+#define qT1 d16
+#define qT2 d18
+#define qT3 d20
+#define qT4 d22
+#define qT5 d24
+
+#define dZr0 D14
+#define dZi0 D15
+#define dZr1 D26
+#define dZi1 D27
+#define dZr2 D28
+#define dZi2 D29
+#define dZr3 D30
+#define dZi3 D31
+
+#define qX0 Q0
+#define qY0 Q8
+#define qY1 Q9
+#define qY2 Q10
+#define qY3 Q11
+#define qZ0 Q7
+#define qZ1 Q13
+#define qZ2 Q14
+#define qZ3 Q15
+
+
+
+ .MACRO FFTSTAGE scaled, inverse , name
+
+ @// Define stack arguments
+
+
+ @// pOut0+1 increments pOut0 by 8 bytes
+ @// pOut0+outPointStep == increment of 8*outPointStep bytes
+ MOV outPointStep,subFFTSize,LSL #3
+
+ @// Update grpCount and grpSize rightaway
+
+ VLD2.F32 {dW1r,dW1i},[pTwiddle, :128] @// [wi|wr]
+ MOV step16,#16
+ LSL grpCount,subFFTSize,#2
+
+ VLD1.F32 dW2r,[pTwiddle, :64] @// [wi|wr]
+ MOV subFFTNum,#1 @//after the last stage
+
+ VLD1.F32 dW3r,[pTwiddle, :64],step16 @// [wi|wr]
+ MOV stepTwiddle,#0
+
+ VLD1.F32 dW2i,[pTwiddle, :64]! @// [wi|wr]
+ SUB grpTwStep,stepTwiddle,#8 @// grpTwStep = -8 to start with
+
+ @// update subFFTSize for the next stage
+ MOV subFFTSize,grpCount
+ VLD1.F32 dW3i,[pTwiddle, :64],grpTwStep @// [wi|wr]
+ MOV dstStep,outPointStep,LSL #1
+
+ @// AC.r AC.i BD.r BD.i
+ VLD4.F32 {dButterfly1Real02,dButterfly1Imag02,dButterfly1Real13,dButterfly1Imag13},[pSrc, :256]!
+ ADD dstStep,dstStep,outPointStep @// dstStep = 3*outPointStep
+ RSB dstStep,dstStep,#16 @// dstStep = - 3*outPointStep+16
+ MOV step24,#24
+
+ @// AC.r AC.i BD.r BD.i
+ VLD4.F32 {dButterfly2Real02,dButterfly2Imag02,dButterfly2Real13,dButterfly2Imag13},[pSrc, :256]!
+
+
+ @// Process two groups at a time
+
+radix4lsGrpLoop\name :
+
+ VZIP.F32 dW2r,dW2i
+ ADD stepTwiddle,stepTwiddle,#16
+ VZIP.F32 dW3r,dW3i
+ ADD grpTwStep,stepTwiddle,#4
+ VUZP.F32 dButterfly1Real13, dButterfly2Real13 @// B.r D.r
+ SUB twStep,stepTwiddle,#16 @// -16+stepTwiddle
+ VUZP.F32 dButterfly1Imag13, dButterfly2Imag13 @// B.i D.i
+ MOV grpTwStep,grpTwStep,LSL #1
+ VUZP.F32 dButterfly1Real02, dButterfly2Real02 @// A.r C.r
+ RSB grpTwStep,grpTwStep,#0 @// -8-2*stepTwiddle
+
+
+ VUZP.F32 dButterfly1Imag02, dButterfly2Imag02 @// A.i C.i
+
+
+ @// grpCount is multiplied by 4
+ SUBS grpCount,grpCount,#8
+
+ .ifeqs "\inverse", "TRUE"
+ VMUL.F32 dZr1,dW1r,dXr1
+ VMLA.F32 dZr1,dW1i,dXi1 @// real part
+ VMUL.F32 dZi1,dW1r,dXi1
+ VMLS.F32 dZi1,dW1i,dXr1 @// imag part
+
+ .else
+
+ VMUL.F32 dZr1,dW1r,dXr1
+ VMLS.F32 dZr1,dW1i,dXi1 @// real part
+ VMUL.F32 dZi1,dW1r,dXi1
+ VMLA.F32 dZi1,dW1i,dXr1 @// imag part
+
+ .endif
+
+ VLD2.F32 {dW1r,dW1i},[pTwiddle, :128],stepTwiddle @// [wi|wr]
+
+ .ifeqs "\inverse", "TRUE"
+ VMUL.F32 dZr2,dW2r,dXr2
+ VMLA.F32 dZr2,dW2i,dXi2 @// real part
+ VMUL.F32 dZi2,dW2r,dXi2
+ VLD1.F32 dW2r,[pTwiddle, :64],step16 @// [wi|wr]
+ VMLS.F32 dZi2,dW2i,dXr2 @// imag part
+
+ .else
+
+ VMUL.F32 dZr2,dW2r,dXr2
+ VMLS.F32 dZr2,dW2i,dXi2 @// real part
+ VMUL.F32 dZi2,dW2r,dXi2
+ VLD1.F32 dW2r,[pTwiddle, :64],step16 @// [wi|wr]
+ VMLA.F32 dZi2,dW2i,dXr2 @// imag part
+
+ .endif
+
+
+ VLD1.F32 dW2i,[pTwiddle, :64],twStep @// [wi|wr]
+
+ @// move qX0 so as to load for the next iteration
+ VMOV qZ0,qX0
+
+ .ifeqs "\inverse", "TRUE"
+ VMUL.F32 dZr3,dW3r,dXr3
+ VMLA.F32 dZr3,dW3i,dXi3 @// real part
+ VMUL.F32 dZi3,dW3r,dXi3
+ VLD1.F32 dW3r,[pTwiddle, :64],step24
+ VMLS.F32 dZi3,dW3i,dXr3 @// imag part
+
+ .else
+
+ VMUL.F32 dZr3,dW3r,dXr3
+ VMLS.F32 dZr3,dW3i,dXi3 @// real part
+ VMUL.F32 dZi3,dW3r,dXi3
+ VLD1.F32 dW3r,[pTwiddle, :64],step24
+ VMLA.F32 dZi3,dW3i,dXr3 @// imag part
+
+ .endif
+
+ VLD1.F32 dW3i,[pTwiddle, :64],grpTwStep @// [wi|wr]
+
+ @// Don't do the load on the last iteration so we don't read past the end
+ @// of pSrc.
+ addeq pSrc, pSrc, #64
+ beq radix4lsSkipRead\name
+ @// AC.r AC.i BD.r BD.i
+ VLD4.F32 {dButterfly1Real02,dButterfly1Imag02,dButterfly1Real13,dButterfly1Imag13},[pSrc, :256]!
+
+ @// AC.r AC.i BD.r BD.i
+ VLD4.F32 {dButterfly2Real02,dButterfly2Imag02,dButterfly2Real13,dButterfly2Imag13},[pSrc, :256]!
+radix4lsSkipRead\name:
+
+ @// finish first stage of 4 point FFT
+
+ VADD.F32 qY0,qZ0,qZ2
+ VSUB.F32 qY2,qZ0,qZ2
+ VADD.F32 qY1,qZ1,qZ3
+ VSUB.F32 qY3,qZ1,qZ3
+
+
+ @// finish second stage of 4 point FFT
+
+ .ifeqs "\inverse", "TRUE"
+
+ VSUB.F32 qZ0,qY2,qY1
+
+ VADD.F32 dZr3,dYr0,dYi3
+ VST2.F32 {dZr0,dZi0},[pDst, :128],outPointStep
+ VSUB.F32 dZi3,dYi0,dYr3
+
+ VADD.F32 qZ2,qY2,qY1
+ VST2.F32 {dZr3,dZi3},[pDst, :128],outPointStep
+
+ VSUB.F32 dZr1,dYr0,dYi3
+ VST2.F32 {dZr2,dZi2},[pDst, :128],outPointStep
+ VADD.F32 dZi1,dYi0,dYr3
+
+ @// dstStep = -outPointStep + 16
+ VST2.F32 {dZr1,dZi1},[pDst, :128],dstStep
+
+
+ .else
+
+ VSUB.F32 qZ0,qY2,qY1
+
+ VSUB.F32 dZr1,dYr0,dYi3
+ VST2.F32 {dZr0,dZi0},[pDst, :128],outPointStep
+ VADD.F32 dZi1,dYi0,dYr3
+
+ VADD.F32 qZ2,qY2,qY1
+ VST2.F32 {dZr1,dZi1},[pDst, :128],outPointStep
+
+ VADD.F32 dZr3,dYr0,dYi3
+ VST2.F32 {dZr2,dZi2},[pDst, :128],outPointStep
+ VSUB.F32 dZi3,dYi0,dYr3
+
+ @// dstStep = -outPointStep + 16
+ VST2.F32 {dZr3,dZi3},[pDst, :128],dstStep
+
+
+ .endif
+
+ BGT radix4lsGrpLoop\name
+
+
+ @// Reset and Swap pSrc and pDst for the next stage
+ MOV pTmp,pDst
+ @// Extra increment done in final iteration of the loop
+ SUB pSrc,pSrc,#64
+ @// pDst -= 4*size; pSrc -= 8*size bytes
+ SUB pDst,pSrc,outPointStep,LSL #2
+ SUB pSrc,pTmp,outPointStep
+ SUB pTwiddle,pTwiddle,subFFTSize,LSL #1
+ @// Extra increment done in final iteration of the loop
+ SUB pTwiddle,pTwiddle,#16
+
+ .endm
+
+
+ M_START armSP_FFTFwd_CToC_FC32_Radix4_ls_OutOfPlace_unsafe,r4
+ FFTSTAGE "FALSE","FALSE",fwd
+ M_END
+
+
+ M_START armSP_FFTInv_CToC_FC32_Radix4_ls_OutOfPlace_unsafe,r4
+ FFTSTAGE "FALSE","TRUE",inv
+ M_END
+
+
+ .end
diff --git a/media/openmax_dl/dl/sp/src/armSP_FFT_CToC_FC32_Radix4_unsafe_s.S b/media/openmax_dl/dl/sp/src/armSP_FFT_CToC_FC32_Radix4_unsafe_s.S
new file mode 100644
index 0000000000..dc71eff63c
--- /dev/null
+++ b/media/openmax_dl/dl/sp/src/armSP_FFT_CToC_FC32_Radix4_unsafe_s.S
@@ -0,0 +1,331 @@
+@//
+@// Copyright (c) 2013 The WebRTC project authors. All Rights Reserved.
+@//
+@// Use of this source code is governed by a BSD-style license
+@// that can be found in the LICENSE file in the root of the source
+@// tree. An additional intellectual property rights grant can be found
+@// in the file PATENTS. All contributing project authors may
+@// be found in the AUTHORS file in the root of the source tree.
+@//
+@//
+@// This is a modification of armSP_FFT_CToC_SC32_Radix4_unsafe_s.s
+@// to support float instead of SC32.
+@//
+
+@//
+@// Description:
+@// Compute a Radix 4 FFT stage for a N point complex signal
+@//
+@//
+
+
+@// Include standard headers
+
+#include "dl/api/armCOMM_s.h"
+#include "dl/api/omxtypes_s.h"
+
+
+@// Import symbols required from other files
+@// (For example tables)
+
+
+
+
+@// Set debugging level
+@//DEBUG_ON SETL {TRUE}
+
+
+
+@// Guarding implementation by the processor name
+
+
+
+
+@// Guarding implementation by the processor name
+
+
+@// Import symbols required from other files
+@// (For example tables)
+
+
+@//Input Registers
+
+#define pSrc r0
+#define pDst r2
+#define pTwiddle r1
+#define subFFTNum r6
+#define subFFTSize r7
+
+
+
+@//Output Registers
+
+
+@//Local Scratch Registers
+
+#define grpCount r3
+#define pointStep r4
+#define outPointStep r5
+#define stepTwiddle r12
+#define setCount r14
+#define srcStep r8
+#define setStep r9
+#define dstStep r10
+#define twStep r11
+#define t1 r3
+
+@// Neon Registers
+
+#define dW1 D0
+#define dW2 D1
+#define dW3 D2
+
+#define dXr0 D4
+#define dXi0 D5
+#define dXr1 D6
+#define dXi1 D7
+#define dXr2 D8
+#define dXi2 D9
+#define dXr3 D10
+#define dXi3 D11
+#define dYr0 D12
+#define dYi0 D13
+#define dYr1 D14
+#define dYi1 D15
+#define dYr2 D16
+#define dYi2 D17
+#define dYr3 D18
+#define dYi3 D19
+#define qT0 d16
+#define qT1 d18
+#define qT2 d12
+#define qT3 d14
+#define dZr0 D20
+#define dZi0 D21
+#define dZr1 D22
+#define dZi1 D23
+#define dZr2 D24
+#define dZi2 D25
+#define dZr3 D26
+#define dZi3 D27
+
+#define qY0 Q6
+#define qY1 Q7
+#define qY2 Q8
+#define qY3 Q9
+#define qX0 Q2
+#define qZ0 Q10
+#define qZ1 Q11
+#define qZ2 Q12
+#define qZ3 Q13
+
+ .MACRO FFTSTAGE scaled, inverse , name
+
+ @// Define stack arguments
+
+
+ @// Update grpCount and grpSize rightaway inorder to reuse
+ @// pGrpCount and pGrpSize regs
+
+ LSL grpCount,subFFTSize,#2
+ LSR subFFTNum,subFFTNum,#2
+ MOV subFFTSize,grpCount
+
+ VLD1.F32 dW1,[pTwiddle] @//[wi | wr]
+ @// pT0+1 increments pT0 by 8 bytes
+ @// pT0+pointStep = increment of 8*pointStep bytes = 2*grpSize bytes
+ MOV pointStep,subFFTNum,LSL #1
+
+
+ @// pOut0+1 increments pOut0 by 8 bytes
+ @// pOut0+outPointStep == increment of 8*outPointStep bytes
+ @// = 2*size bytes
+
+ MOV stepTwiddle,#0
+ VLD1.F32 dW2,[pTwiddle] @//[wi | wr]
+ SMULBB outPointStep,grpCount,pointStep
+ LSL pointStep,pointStep,#2 @// 2*grpSize
+
+ VLD1.F32 dW3,[pTwiddle] @//[wi | wr]
+ MOV srcStep,pointStep,LSL #1 @// srcStep = 2*pointStep
+ ADD setStep,srcStep,pointStep @// setStep = 3*pointStep
+
+ RSB setStep,setStep,#0 @// setStep = - 3*pointStep
+ SUB srcStep,srcStep,#16 @// srcStep = 2*pointStep-16
+
+ MOV dstStep,outPointStep,LSL #1
+ ADD dstStep,dstStep,outPointStep @// dstStep = 3*outPointStep
+ @// dstStep = - 3*outPointStep+16
+ RSB dstStep,dstStep,#16
+
+
+
+radix4GrpLoop\name :
+
+ VLD2.F32 {dXr0,dXi0},[pSrc],pointStep @// data[0]
+ ADD stepTwiddle,stepTwiddle,pointStep
+ VLD2.F32 {dXr1,dXi1},[pSrc],pointStep @// data[1]
+ @// set pTwiddle to the first point
+ ADD pTwiddle,pTwiddle,stepTwiddle
+ VLD2.F32 {dXr2,dXi2},[pSrc],pointStep @// data[2]
+ MOV twStep,stepTwiddle,LSL #2
+
+ @// data[3] & update pSrc for the next set
+ VLD2.F32 {dXr3,dXi3},[pSrc],setStep
+ SUB twStep,stepTwiddle,twStep @// twStep = -3*stepTwiddle
+
+ MOV setCount,pointStep,LSR #3
+ @// set pSrc to data[0] of the next set
+ ADD pSrc,pSrc,#16
+ @// increment to data[1] of the next set
+ ADD pSrc,pSrc,pointStep
+
+
+ @// Loop on the sets
+
+radix4SetLoop\name :
+
+
+
+ .ifeqs "\inverse", "TRUE"
+ VMUL.F32 dZr1,dXr1,dW1[0]
+ VMUL.F32 dZi1,dXi1,dW1[0]
+ VMUL.F32 dZr2,dXr2,dW2[0]
+ VMUL.F32 dZi2,dXi2,dW2[0]
+ VMUL.F32 dZr3,dXr3,dW3[0]
+ VMUL.F32 dZi3,dXi3,dW3[0]
+
+ VMLA.F32 dZr1,dXi1,dW1[1] @// real part
+ VMLS.F32 dZi1,dXr1,dW1[1] @// imag part
+
+ @// data[1] for next iteration
+ VLD2.F32 {dXr1,dXi1},[pSrc],pointStep
+
+ VMLA.F32 dZr2,dXi2,dW2[1] @// real part
+ VMLS.F32 dZi2,dXr2,dW2[1] @// imag part
+
+ @// data[2] for next iteration
+ VLD2.F32 {dXr2,dXi2},[pSrc],pointStep
+
+ VMLA.F32 dZr3,dXi3,dW3[1] @// real part
+ VMLS.F32 dZi3,dXr3,dW3[1] @// imag part
+ .else
+ VMUL.F32 dZr1,dXr1,dW1[0]
+ VMUL.F32 dZi1,dXi1,dW1[0]
+ VMUL.F32 dZr2,dXr2,dW2[0]
+ VMUL.F32 dZi2,dXi2,dW2[0]
+ VMUL.F32 dZr3,dXr3,dW3[0]
+ VMUL.F32 dZi3,dXi3,dW3[0]
+
+ VMLS.F32 dZr1,dXi1,dW1[1] @// real part
+ VMLA.F32 dZi1,dXr1,dW1[1] @// imag part
+
+ @// data[1] for next iteration
+ VLD2.F32 {dXr1,dXi1},[pSrc],pointStep
+
+ VMLS.F32 dZr2,dXi2,dW2[1] @// real part
+ VMLA.F32 dZi2,dXr2,dW2[1] @// imag part
+
+ @// data[2] for next iteration
+ VLD2.F32 {dXr2,dXi2},[pSrc],pointStep
+
+ VMLS.F32 dZr3,dXi3,dW3[1] @// real part
+ VMLA.F32 dZi3,dXr3,dW3[1] @// imag part
+ .endif
+
+ @// data[3] & update pSrc to data[0]
+ @// But don't read on the very last iteration because that reads past
+ @// the end of pSrc. The last iteration is grpCount = 4, setCount = 2.
+ cmp grpCount, #4
+ cmpeq setCount, #2 @// Test setCount if grpCount = 4
+ @// These are executed only if both grpCount = 4 and setCount = 2
+ addeq pSrc, pSrc, setStep
+ beq radix4SkipRead\name
+ VLD2.F32 {dXr3,dXi3},[pSrc],setStep
+radix4SkipRead\name:
+ SUBS setCount,setCount,#2
+
+ @// finish first stage of 4 point FFT
+ VADD.F32 qY0,qX0,qZ2
+ VSUB.F32 qY2,qX0,qZ2
+
+ @// data[0] for next iteration
+ VLD2.F32 {dXr0,dXi0},[pSrc, :128]!
+ VADD.F32 qY1,qZ1,qZ3
+ VSUB.F32 qY3,qZ1,qZ3
+
+ @// finish second stage of 4 point FFT
+
+ VSUB.F32 qZ0,qY2,qY1
+
+
+ .ifeqs "\inverse", "TRUE"
+
+ VADD.F32 dZr3,dYr0,dYi3
+ VST2.F32 {dZr0,dZi0},[pDst, :128],outPointStep
+ VSUB.F32 dZi3,dYi0,dYr3
+
+ VADD.F32 qZ2,qY2,qY1
+ VST2.F32 {dZr3,dZi3},[pDst, :128],outPointStep
+
+ VSUB.F32 dZr1,dYr0,dYi3
+ VST2.F32 {dZr2,dZi2},[pDst, :128],outPointStep
+ VADD.F32 dZi1,dYi0,dYr3
+
+ VST2.F32 {dZr1,dZi1},[pDst, :128],dstStep
+
+
+ .else
+
+ VSUB.F32 dZr1,dYr0,dYi3
+ VST2.F32 {dZr0,dZi0},[pDst, :128],outPointStep
+ VADD.F32 dZi1,dYi0,dYr3
+
+ VADD.F32 qZ2,qY2,qY1
+ VST2.F32 {dZr1,dZi1},[pDst, :128],outPointStep
+
+ VADD.F32 dZr3,dYr0,dYi3
+ VST2.F32 {dZr2,dZi2},[pDst, :128],outPointStep
+ VSUB.F32 dZi3,dYi0,dYr3
+
+ VST2.F32 {dZr3,dZi3},[pDst, :128],dstStep
+
+
+ .endif
+
+ @// increment to data[1] of the next set
+ ADD pSrc,pSrc,pointStep
+ BGT radix4SetLoop\name
+
+
+ VLD1.F32 dW1,[pTwiddle, :64],stepTwiddle @//[wi | wr]
+ @// subtract 4 since grpCount multiplied by 4
+ SUBS grpCount,grpCount,#4
+ VLD1.F32 dW2,[pTwiddle, :64],stepTwiddle @//[wi | wr]
+ @// increment pSrc for the next grp
+ ADD pSrc,pSrc,srcStep
+ VLD1.F32 dW3,[pTwiddle, :64],twStep @//[wi | wr]
+ BGT radix4GrpLoop\name
+
+
+ @// Reset and Swap pSrc and pDst for the next stage
+ MOV t1,pDst
+ @// pDst -= 2*size; pSrc -= 8*size bytes
+ SUB pDst,pSrc,outPointStep,LSL #2
+ SUB pSrc,t1,outPointStep
+
+
+ .endm
+
+
+ M_START armSP_FFTFwd_CToC_FC32_Radix4_OutOfPlace_unsafe,r4
+ FFTSTAGE "FALSE","FALSE",FWD
+ M_END
+
+
+ M_START armSP_FFTInv_CToC_FC32_Radix4_OutOfPlace_unsafe,r4
+ FFTSTAGE "FALSE","TRUE",INV
+ M_END
+
+
+ .end
diff --git a/media/openmax_dl/dl/sp/src/armSP_FFT_CToC_FC32_Radix8_fs_unsafe_s.S b/media/openmax_dl/dl/sp/src/armSP_FFT_CToC_FC32_Radix8_fs_unsafe_s.S
new file mode 100644
index 0000000000..569818c5c3
--- /dev/null
+++ b/media/openmax_dl/dl/sp/src/armSP_FFT_CToC_FC32_Radix8_fs_unsafe_s.S
@@ -0,0 +1,422 @@
+@//
+@// Copyright (c) 2013 The WebRTC project authors. All Rights Reserved.
+@//
+@// Use of this source code is governed by a BSD-style license
+@// that can be found in the LICENSE file in the root of the source
+@// tree. An additional intellectual property rights grant can be found
+@// in the file PATENTS. All contributing project authors may
+@// be found in the AUTHORS file in the root of the source tree.
+@//
+@// This is a modification of armSP_FFT_CToC_FC32_Radix8_fs_unsafe_s.s
+@// to support float instead of SC32.
+@//
+
+@//
+@// Description:
+@// Compute a first stage Radix 8 FFT stage for a N point complex signal
+@//
+@//
+
+
+@// Include standard headers
+
+#include "dl/api/armCOMM_s.h"
+#include "dl/api/omxtypes_s.h"
+
+@// Import symbols required from other files
+@// (For example tables)
+
+
+@// Set debugging level
+@//DEBUG_ON SETL {TRUE}
+
+
+
+@// Guarding implementation by the processor name
+
+
+
+
+@// Guarding implementation by the processor name
+
+@//Input Registers
+
+#define pSrc r0
+#define pDst r2
+#define pTwiddle r1
+#define subFFTNum r6
+#define subFFTSize r7
+@// dest buffer for the next stage (not pSrc for first stage)
+#define pPingPongBuf r5
+
+
+@//Output Registers
+
+
+@//Local Scratch Registers
+
+#define grpSize r3
+@// Reuse grpSize as setCount
+#define setCount r3
+#define pointStep r4
+#define outPointStep r4
+#define setStep r8
+#define step1 r9
+#define step2 r10
+#define t0 r11
+
+
+@// Neon Registers
+
+#define dXr0 D0
+#define dXi0 D1
+#define dXr1 D2
+#define dXi1 D3
+#define dXr2 D4
+#define dXi2 D5
+#define dXr3 D6
+#define dXi3 D7
+#define dXr4 D8
+#define dXi4 D9
+#define dXr5 D10
+#define dXi5 D11
+#define dXr6 D12
+#define dXi6 D13
+#define dXr7 D14
+#define dXi7 D15
+#define qX0 Q0
+#define qX1 Q1
+#define qX2 Q2
+#define qX3 Q3
+#define qX4 Q4
+#define qX5 Q5
+#define qX6 Q6
+#define qX7 Q7
+
+#define dUr0 D16
+#define dUi0 D17
+#define dUr2 D18
+#define dUi2 D19
+#define dUr4 D20
+#define dUi4 D21
+#define dUr6 D22
+#define dUi6 D23
+#define dUr1 D24
+#define dUi1 D25
+#define dUr3 D26
+#define dUi3 D27
+#define dUr5 D28
+#define dUi5 D29
+@// reuse dXr7 and dXi7
+#define dUr7 D30
+#define dUi7 D31
+#define qU0 Q8
+#define qU1 Q12
+#define qU2 Q9
+#define qU3 Q13
+#define qU4 Q10
+#define qU5 Q14
+#define qU6 Q11
+#define qU7 Q15
+
+
+#define dVr0 D24
+#define dVi0 D25
+#define dVr2 D26
+#define dVi2 D27
+#define dVr4 D28
+#define dVi4 D29
+#define dVr6 D30
+#define dVi6 D31
+#define dVr1 D16
+#define dVi1 D17
+#define dVr3 D18
+#define dVi3 D19
+#define dVr5 D20
+#define dVi5 D21
+#define dVr7 D22
+#define dVi7 D23
+#define qV0 Q12
+#define qV1 Q8
+#define qV2 Q13
+#define qV3 Q9
+#define qV4 Q14
+#define qV5 Q10
+#define qV6 Q15
+#define qV7 Q11
+
+#define dYr0 D16
+#define dYi0 D17
+#define dYr2 D18
+#define dYi2 D19
+#define dYr4 D20
+#define dYi4 D21
+#define dYr6 D22
+#define dYi6 D23
+#define dYr1 D24
+#define dYi1 D25
+#define dYr3 D26
+#define dYi3 D27
+#define dYr5 D28
+#define dYi5 D29
+#define dYr7 D30
+#define dYi7 D31
+#define qY0 Q8
+#define qY1 Q12
+#define qY2 Q9
+#define qY3 Q13
+#define qY4 Q10
+#define qY5 Q14
+#define qY6 Q11
+#define qY7 Q15
+
+#define dT0 D14
+#define dT1 D15
+
+
+ .MACRO FFTSTAGE scaled, inverse, name
+
+ @// Define stack arguments
+
+ @// Update pSubFFTSize and pSubFFTNum regs
+ @// subFFTSize = 1 for the first stage
+ MOV subFFTSize,#8
+ ADR t0,ONEBYSQRT2\name
+
+ @// Note: setCount = subFFTNum/8 (reuse the grpSize reg for setCount)
+ LSR grpSize,subFFTNum,#3
+ MOV subFFTNum,grpSize
+
+
+ @// pT0+1 increments pT0 by 8 bytes
+ @// pT0+pointStep = increment of 8*pointStep bytes = grpSize bytes
+ @// Note: outPointStep = pointStep for firststage
+
+ MOV pointStep,grpSize,LSL #3
+
+
+ @// Calculate the step of input data for the next set
+ @//MOV step1,pointStep,LSL #1 @// step1 = 2*pointStep
+ VLD2.F32 {dXr0,dXi0},[pSrc, :128],pointStep @// data[0]
+ MOV step1,grpSize,LSL #4
+
+ MOV step2,pointStep,LSL #3
+ VLD2.F32 {dXr1,dXi1},[pSrc, :128],pointStep @// data[1]
+ SUB step2,step2,pointStep @// step2 = 7*pointStep
+ @// setStep = - 7*pointStep+16
+ RSB setStep,step2,#16
+
+ VLD2.F32 {dXr2,dXi2},[pSrc, :128],pointStep @// data[2]
+ VLD2.F32 {dXr3,dXi3},[pSrc, :128],pointStep @// data[3]
+ VLD2.F32 {dXr4,dXi4},[pSrc, :128],pointStep @// data[4]
+ VLD2.F32 {dXr5,dXi5},[pSrc, :128],pointStep @// data[5]
+ VLD2.F32 {dXr6,dXi6},[pSrc, :128],pointStep @// data[6]
+ @// data[7] & update pSrc for the next set
+ @// setStep = -7*pointStep + 16
+ VLD2.F32 {dXr7,dXi7},[pSrc, :128],setStep
+ @// grp = 0 a special case since all the twiddle factors are 1
+ @// Loop on the sets
+
+radix8fsGrpZeroSetLoop\name :
+
+ @// Decrement setcount
+ SUBS setCount,setCount,#2
+
+
+ @// finish first stage of 8 point FFT
+
+ VADD.F32 qU0,qX0,qX4
+ VADD.F32 qU2,qX1,qX5
+ VADD.F32 qU4,qX2,qX6
+ VADD.F32 qU6,qX3,qX7
+
+ @// finish second stage of 8 point FFT
+
+ VADD.F32 qV0,qU0,qU4
+ VSUB.F32 qV2,qU0,qU4
+ VADD.F32 qV4,qU2,qU6
+ VSUB.F32 qV6,qU2,qU6
+
+ @// finish third stage of 8 point FFT
+
+ VADD.F32 qY0,qV0,qV4
+ VSUB.F32 qY4,qV0,qV4
+ VST2.F32 {dYr0,dYi0},[pDst, :128],step1 @// store y0
+
+ .ifeqs "\inverse", "TRUE"
+
+ VSUB.F32 dYr2,dVr2,dVi6
+ VADD.F32 dYi2,dVi2,dVr6
+
+ VADD.F32 dYr6,dVr2,dVi6
+ VST2.F32 {dYr2,dYi2},[pDst, :128],step1 @// store y2
+ VSUB.F32 dYi6,dVi2,dVr6
+
+ VSUB.F32 qU1,qX0,qX4
+ VST2.F32 {dYr4,dYi4},[pDst, :128],step1 @// store y4
+
+ VSUB.F32 qU3,qX1,qX5
+ VSUB.F32 qU5,qX2,qX6
+ VST2.F32 {dYr6,dYi6},[pDst, :128],step1 @// store y6
+
+ .ELSE
+
+ VADD.F32 dYr6,dVr2,dVi6
+ VSUB.F32 dYi6,dVi2,dVr6
+
+ VSUB.F32 dYr2,dVr2,dVi6
+ VST2.F32 {dYr6,dYi6},[pDst, :128],step1 @// store y2
+ VADD.F32 dYi2,dVi2,dVr6
+
+
+ VSUB.F32 qU1,qX0,qX4
+ VST2.F32 {dYr4,dYi4},[pDst, :128],step1 @// store y4
+ VSUB.F32 qU3,qX1,qX5
+ VSUB.F32 qU5,qX2,qX6
+ VST2.F32 {dYr2,dYi2},[pDst, :128],step1 @// store y6
+
+
+ .ENDIF
+
+ @// finish first stage of 8 point FFT
+
+ VSUB.F32 qU7,qX3,qX7
+ VLD1.F32 dT0[0], [t0]
+
+ @// finish second stage of 8 point FFT
+
+ VSUB.F32 dVr1,dUr1,dUi5
+ @// data[0] for next iteration
+ VLD2.F32 {dXr0,dXi0},[pSrc, :128],pointStep
+ VADD.F32 dVi1,dUi1,dUr5
+ VADD.F32 dVr3,dUr1,dUi5
+ VLD2.F32 {dXr1,dXi1},[pSrc, :128],pointStep @// data[1]
+ VSUB.F32 dVi3,dUi1,dUr5
+
+ VSUB.F32 dVr5,dUr3,dUi7
+ VLD2.F32 {dXr2,dXi2},[pSrc, :128],pointStep @// data[2]
+ VADD.F32 dVi5,dUi3,dUr7
+ VADD.F32 dVr7,dUr3,dUi7
+ VLD2.F32 {dXr3,dXi3},[pSrc, :128],pointStep @// data[3]
+ VSUB.F32 dVi7,dUi3,dUr7
+
+ @// finish third stage of 8 point FFT
+
+ .ifeqs "\inverse", "TRUE"
+
+ @// calculate a*v5
+ VMUL.F32 dT1,dVr5,dT0[0] @// use dVi0 for dT1
+
+ VLD2.F32 {dXr4,dXi4},[pSrc, :128],pointStep @// data[4]
+ VMUL.F32 dVi5,dVi5,dT0[0]
+
+ VLD2.F32 {dXr5,dXi5},[pSrc, :128],pointStep @// data[5]
+ VSUB.F32 dVr5,dT1,dVi5 @// a * V5
+ VADD.F32 dVi5,dT1,dVi5
+
+ VLD2.F32 {dXr6,dXi6},[pSrc, :128],pointStep @// data[6]
+
+ @// calculate b*v7
+ VMUL.F32 dT1,dVr7,dT0[0]
+ VMUL.F32 dVi7,dVi7,dT0[0]
+
+ VADD.F32 qY1,qV1,qV5
+ VSUB.F32 qY5,qV1,qV5
+
+
+ VADD.F32 dVr7,dT1,dVi7 @// b * V7
+ VSUB.F32 dVi7,dVi7,dT1
+ SUB pDst, pDst, step2 @// set pDst to y1
+
+ @// On the last iteration, this will read past the end of pSrc,
+ @// so skip this read.
+ BEQ radix8SkipLastUpdateInv\name
+ VLD2.F32 {dXr7,dXi7},[pSrc, :128],setStep @// data[7]
+radix8SkipLastUpdateInv\name:
+
+ VSUB.F32 dYr3,dVr3,dVr7
+ VSUB.F32 dYi3,dVi3,dVi7
+ VST2.F32 {dYr1,dYi1},[pDst, :128],step1 @// store y1
+ VADD.F32 dYr7,dVr3,dVr7
+ VADD.F32 dYi7,dVi3,dVi7
+
+
+ VST2.F32 {dYr3,dYi3},[pDst, :128],step1 @// store y3
+ VST2.F32 {dYr5,dYi5},[pDst, :128],step1 @// store y5
+ VST2.F32 {dYr7,dYi7},[pDst, :128] @// store y7
+ ADD pDst, pDst, #16
+
+ .ELSE
+
+ @// calculate b*v7
+ VMUL.F32 dT1,dVr7,dT0[0]
+ VLD2.F32 {dXr4,dXi4},[pSrc, :128],pointStep @// data[4]
+ VMUL.F32 dVi7,dVi7,dT0[0]
+
+ VLD2.F32 {dXr5,dXi5},[pSrc, :128],pointStep @// data[5]
+ VADD.F32 dVr7,dT1,dVi7 @// b * V7
+ VSUB.F32 dVi7,dVi7,dT1
+
+ VLD2.F32 {dXr6,dXi6},[pSrc, :128],pointStep @// data[6]
+
+ @// calculate a*v5
+ VMUL.F32 dT1,dVr5,dT0[0] @// use dVi0 for dT1
+ VMUL.F32 dVi5,dVi5,dT0[0]
+
+ VADD.F32 dYr7,dVr3,dVr7
+ VADD.F32 dYi7,dVi3,dVi7
+ SUB pDst, pDst, step2 @// set pDst to y1
+
+ VSUB.F32 dVr5,dT1,dVi5 @// a * V5
+ VADD.F32 dVi5,dT1,dVi5
+
+ @// On the last iteration, this will read past the end of pSrc,
+ @// so skip this read.
+ BEQ radix8SkipLastUpdateFwd\name
+ VLD2.F32 {dXr7,dXi7},[pSrc, :128],setStep @// data[7]
+radix8SkipLastUpdateFwd\name:
+
+ VSUB.F32 qY5,qV1,qV5
+
+ VSUB.F32 dYr3,dVr3,dVr7
+ VST2.F32 {dYr7,dYi7},[pDst, :128],step1 @// store y1
+ VSUB.F32 dYi3,dVi3,dVi7
+ VADD.F32 qY1,qV1,qV5
+
+
+ VST2.F32 {dYr5,dYi5},[pDst, :128],step1 @// store y3
+ VST2.F32 {dYr3,dYi3},[pDst, :128],step1 @// store y5
+ VST2.F32 {dYr1,dYi1},[pDst, :128]! @// store y7
+
+ .ENDIF
+
+
+ @// update pDst for the next set
+ SUB pDst, pDst, step2
+ BGT radix8fsGrpZeroSetLoop\name
+
+
+ @// reset pSrc to pDst for the next stage
+ SUB pSrc,pDst,pointStep @// pDst -= 2*grpSize
+ MOV pDst,pPingPongBuf
+
+
+
+ .endm
+
+
+ @// Allocate stack memory required by the function
+
+
+ M_START armSP_FFTFwd_CToC_FC32_Radix8_fs_OutOfPlace_unsafe,r4
+ FFTSTAGE "FALSE","FALSE",FWD
+ M_END
+ONEBYSQRT2FWD: .float 0.7071067811865476e0
+
+ M_START armSP_FFTInv_CToC_FC32_Radix8_fs_OutOfPlace_unsafe,r4
+ FFTSTAGE "FALSE","TRUE",INV
+ M_END
+ONEBYSQRT2INV: .float 0.7071067811865476e0
+
+
+ .end
diff --git a/media/openmax_dl/dl/sp/src/armSP_FFT_F32TwiddleTable.c b/media/openmax_dl/dl/sp/src/armSP_FFT_F32TwiddleTable.c
new file mode 100644
index 0000000000..87d98614fa
--- /dev/null
+++ b/media/openmax_dl/dl/sp/src/armSP_FFT_F32TwiddleTable.c
@@ -0,0 +1,4643 @@
+/*
+ * Copyright (c) 2013 The WebRTC project authors. All Rights Reserved.
+ *
+ * Use of this source code is governed by a BSD-style license
+ * that can be found in the LICENSE file in the root of the source
+ * tree. An additional intellectual property rights grant can be found
+ * in the file PATENTS. All contributing project authors may
+ * be found in the AUTHORS file in the root of the source tree.
+ *
+ */
+
+/*
+ * Description:
+ * Twiddle table for Forward FFT in float format.
+ * It contains complex pairs [-cos (W * i), -sin (W * i)] where W = -2*PI/N
+ * and 0<= i<= N/8. N is the max size of the FFT. Here N = 2^12
+ * Values for N/8 < i < N are generated in the FFTInit function using the
+ * symmetries of cos and sine.
+ *
+ * We use the negative to be consistent with the S32 version.
+**/
+
+#include "dl/api/omxtypes.h"
+
+#define TWIDDLE_TABLE_ENTRIES ((1 << TWIDDLE_TABLE_ORDER) / 8)
+
+const OMX_F32 armSP_FFT_F32TwiddleTable[2 * TWIDDLE_TABLE_ENTRIES + 2] = {
+#if TWIDDLE_TABLE_ORDER == 15
+ -1.000000000000000e+00, 0.000000000000000e+00,
+ -9.999999816164293e-01, 1.917475973107033e-04,
+ -9.999999264657179e-01, 3.834951875713956e-04,
+ -9.999998345478677e-01, 5.752427637320661e-04,
+ -9.999997058628822e-01, 7.669903187427045e-04,
+ -9.999995404107661e-01, 9.587378455533014e-04,
+ -9.999993381915255e-01, 1.150485337113848e-03,
+ -9.999990992051678e-01, 1.342232786374338e-03,
+ -9.999988234517019e-01, 1.533980186284766e-03,
+ -9.999985109311378e-01, 1.725727529795126e-03,
+ -9.999981616434870e-01, 1.917474809855419e-03,
+ -9.999977755887623e-01, 2.109222019415644e-03,
+ -9.999973527669782e-01, 2.300969151425805e-03,
+ -9.999968931781499e-01, 2.492716198835908e-03,
+ -9.999963968222944e-01, 2.684463154595962e-03,
+ -9.999958636994299e-01, 2.876210011655979e-03,
+ -9.999952938095762e-01, 3.067956762965976e-03,
+ -9.999946871527541e-01, 3.259703401475973e-03,
+ -9.999940437289858e-01, 3.451449920135994e-03,
+ -9.999933635382952e-01, 3.643196311896068e-03,
+ -9.999926465807072e-01, 3.834942569706228e-03,
+ -9.999918928562480e-01, 4.026688686516512e-03,
+ -9.999911023649456e-01, 4.218434655276963e-03,
+ -9.999902751068289e-01, 4.410180468937631e-03,
+ -9.999894110819284e-01, 4.601926120448570e-03,
+ -9.999885102902757e-01, 4.793671602759841e-03,
+ -9.999875727319041e-01, 4.985416908821511e-03,
+ -9.999865984068480e-01, 5.177162031583651e-03,
+ -9.999855873151432e-01, 5.368906963996342e-03,
+ -9.999845394568270e-01, 5.560651699009674e-03,
+ -9.999834548319377e-01, 5.752396229573736e-03,
+ -9.999823334405153e-01, 5.944140548638633e-03,
+ -9.999811752826011e-01, 6.135884649154475e-03,
+ -9.999799803582377e-01, 6.327628524071378e-03,
+ -9.999787486674688e-01, 6.519372166339468e-03,
+ -9.999774802103399e-01, 6.711115568908879e-03,
+ -9.999761749868976e-01, 6.902858724729756e-03,
+ -9.999748329971898e-01, 7.094601626752250e-03,
+ -9.999734542412659e-01, 7.286344267926521e-03,
+ -9.999720387191767e-01, 7.478086641202744e-03,
+ -9.999705864309741e-01, 7.669828739531097e-03,
+ -9.999690973767116e-01, 7.861570555861772e-03,
+ -9.999675715564438e-01, 8.053312083144972e-03,
+ -9.999660089702269e-01, 8.245053314330906e-03,
+ -9.999644096181183e-01, 8.436794242369799e-03,
+ -9.999627735001769e-01, 8.628534860211886e-03,
+ -9.999611006164628e-01, 8.820275160807411e-03,
+ -9.999593909670375e-01, 9.012015137106633e-03,
+ -9.999576445519639e-01, 9.203754782059820e-03,
+ -9.999558613713061e-01, 9.395494088617251e-03,
+ -9.999540414251298e-01, 9.587233049729225e-03,
+ -9.999521847135018e-01, 9.778971658346043e-03,
+ -9.999502912364905e-01, 9.970709907418030e-03,
+ -9.999483609941654e-01, 1.016244778989551e-02,
+ -9.999463939865975e-01, 1.035418529872884e-02,
+ -9.999443902138591e-01, 1.054592242686838e-02,
+ -9.999423496760239e-01, 1.073765916726449e-02,
+ -9.999402723731670e-01, 1.092939551286757e-02,
+ -9.999381583053646e-01, 1.112113145662802e-02,
+ -9.999360074726946e-01, 1.131286699149626e-02,
+ -9.999338198752360e-01, 1.150460211042271e-02,
+ -9.999315955130692e-01, 1.169633680635784e-02,
+ -9.999293343862761e-01, 1.188807107225209e-02,
+ -9.999270364949396e-01, 1.207980490105596e-02,
+ -9.999247018391445e-01, 1.227153828571993e-02,
+ -9.999223304189765e-01, 1.246327121919451e-02,
+ -9.999199222345228e-01, 1.265500369443024e-02,
+ -9.999174772858718e-01, 1.284673570437766e-02,
+ -9.999149955731135e-01, 1.303846724198733e-02,
+ -9.999124770963392e-01, 1.323019830020983e-02,
+ -9.999099218556415e-01, 1.342192887199577e-02,
+ -9.999073298511143e-01, 1.361365895029574e-02,
+ -9.999047010828529e-01, 1.380538852806039e-02,
+ -9.999020355509539e-01, 1.399711759824037e-02,
+ -9.998993332555154e-01, 1.418884615378634e-02,
+ -9.998965941966367e-01, 1.438057418764901e-02,
+ -9.998938183744185e-01, 1.457230169277906e-02,
+ -9.998910057889630e-01, 1.476402866212725e-02,
+ -9.998881564403733e-01, 1.495575508864430e-02,
+ -9.998852703287545e-01, 1.514748096528099e-02,
+ -9.998823474542126e-01, 1.533920628498810e-02,
+ -9.998793878168549e-01, 1.553093104071645e-02,
+ -9.998763914167904e-01, 1.572265522541686e-02,
+ -9.998733582541293e-01, 1.591437883204018e-02,
+ -9.998702883289830e-01, 1.610610185353729e-02,
+ -9.998671816414644e-01, 1.629782428285906e-02,
+ -9.998640381916877e-01, 1.648954611295644e-02,
+ -9.998608579797685e-01, 1.668126733678033e-02,
+ -9.998576410058239e-01, 1.687298794728171e-02,
+ -9.998543872699719e-01, 1.706470793741156e-02,
+ -9.998510967723322e-01, 1.725642730012088e-02,
+ -9.998477695130259e-01, 1.744814602836069e-02,
+ -9.998444054921752e-01, 1.763986411508205e-02,
+ -9.998410047099040e-01, 1.783158155323604e-02,
+ -9.998375671663371e-01, 1.802329833577375e-02,
+ -9.998340928616010e-01, 1.821501445564629e-02,
+ -9.998305817958234e-01, 1.840672990580482e-02,
+ -9.998270339691334e-01, 1.859844467920051e-02,
+ -9.998234493816616e-01, 1.879015876878455e-02,
+ -9.998198280335394e-01, 1.898187216750818e-02,
+ -9.998161699249004e-01, 1.917358486832262e-02,
+ -9.998124750558788e-01, 1.936529686417916e-02,
+ -9.998087434266105e-01, 1.955700814802908e-02,
+ -9.998049750372329e-01, 1.974871871282373e-02,
+ -9.998011698878843e-01, 1.994042855151444e-02,
+ -9.997973279787047e-01, 2.013213765705259e-02,
+ -9.997934493098353e-01, 2.032384602238959e-02,
+ -9.997895338814188e-01, 2.051555364047688e-02,
+ -9.997855816935992e-01, 2.070726050426589e-02,
+ -9.997815927465217e-01, 2.089896660670814e-02,
+ -9.997775670403329e-01, 2.109067194075512e-02,
+ -9.997735045751810e-01, 2.128237649935839e-02,
+ -9.997694053512153e-01, 2.147408027546951e-02,
+ -9.997652693685865e-01, 2.166578326204008e-02,
+ -9.997610966274466e-01, 2.185748545202174e-02,
+ -9.997568871279491e-01, 2.204918683836614e-02,
+ -9.997526408702488e-01, 2.224088741402496e-02,
+ -9.997483578545018e-01, 2.243258717194993e-02,
+ -9.997440380808654e-01, 2.262428610509280e-02,
+ -9.997396815494987e-01, 2.281598420640535e-02,
+ -9.997352882605617e-01, 2.300768146883937e-02,
+ -9.997308582142160e-01, 2.319937788534672e-02,
+ -9.997263914106245e-01, 2.339107344887926e-02,
+ -9.997218878499513e-01, 2.358276815238889e-02,
+ -9.997173475323622e-01, 2.377446198882755e-02,
+ -9.997127704580239e-01, 2.396615495114721e-02,
+ -9.997081566271049e-01, 2.415784703229986e-02,
+ -9.997035060397746e-01, 2.434953822523753e-02,
+ -9.996988186962042e-01, 2.454122852291229e-02,
+ -9.996940945965660e-01, 2.473291791827622e-02,
+ -9.996893337410336e-01, 2.492460640428147e-02,
+ -9.996845361297821e-01, 2.511629397388019e-02,
+ -9.996797017629879e-01, 2.530798062002457e-02,
+ -9.996748306408287e-01, 2.549966633566685e-02,
+ -9.996699227634838e-01, 2.569135111375929e-02,
+ -9.996649781311333e-01, 2.588303494725420e-02,
+ -9.996599967439592e-01, 2.607471782910390e-02,
+ -9.996549786021447e-01, 2.626639975226076e-02,
+ -9.996499237058742e-01, 2.645808070967719e-02,
+ -9.996448320553336e-01, 2.664976069430562e-02,
+ -9.996397036507102e-01, 2.684143969909853e-02,
+ -9.996345384921923e-01, 2.703311771700843e-02,
+ -9.996293365799701e-01, 2.722479474098788e-02,
+ -9.996240979142346e-01, 2.741647076398944e-02,
+ -9.996188224951786e-01, 2.760814577896574e-02,
+ -9.996135103229960e-01, 2.779981977886944e-02,
+ -9.996081613978821e-01, 2.799149275665324e-02,
+ -9.996027757200335e-01, 2.818316470526987e-02,
+ -9.995973532896484e-01, 2.837483561767210e-02,
+ -9.995918941069260e-01, 2.856650548681273e-02,
+ -9.995863981720671e-01, 2.875817430564461e-02,
+ -9.995808654852737e-01, 2.894984206712064e-02,
+ -9.995752960467492e-01, 2.914150876419372e-02,
+ -9.995696898566986e-01, 2.933317438981684e-02,
+ -9.995640469153277e-01, 2.952483893694298e-02,
+ -9.995583672228443e-01, 2.971650239852519e-02,
+ -9.995526507794570e-01, 2.990816476751655e-02,
+ -9.995468975853760e-01, 3.009982603687020e-02,
+ -9.995411076408129e-01, 3.029148619953928e-02,
+ -9.995352809459805e-01, 3.048314524847701e-02,
+ -9.995294175010931e-01, 3.067480317663663e-02,
+ -9.995235173063663e-01, 3.086645997697141e-02,
+ -9.995175803620170e-01, 3.105811564243470e-02,
+ -9.995116066682634e-01, 3.124977016597986e-02,
+ -9.995055962253253e-01, 3.144142354056030e-02,
+ -9.994995490334236e-01, 3.163307575912948e-02,
+ -9.994934650927806e-01, 3.182472681464089e-02,
+ -9.994873444036201e-01, 3.201637670004806e-02,
+ -9.994811869661670e-01, 3.220802540830459e-02,
+ -9.994749927806478e-01, 3.239967293236409e-02,
+ -9.994687618472900e-01, 3.259131926518023e-02,
+ -9.994624941663232e-01, 3.278296439970672e-02,
+ -9.994561897379773e-01, 3.297460832889734e-02,
+ -9.994498485624845e-01, 3.316625104570586e-02,
+ -9.994434706400778e-01, 3.335789254308614e-02,
+ -9.994370559709915e-01, 3.354953281399207e-02,
+ -9.994306045554617e-01, 3.374117185137758e-02,
+ -9.994241163937256e-01, 3.393280964819666e-02,
+ -9.994175914860217e-01, 3.412444619740333e-02,
+ -9.994110298325898e-01, 3.431608149195165e-02,
+ -9.994044314336713e-01, 3.450771552479575e-02,
+ -9.993977962895086e-01, 3.469934828888980e-02,
+ -9.993911244003460e-01, 3.489097977718800e-02,
+ -9.993844157664286e-01, 3.508260998264462e-02,
+ -9.993776703880028e-01, 3.527423889821395e-02,
+ -9.993708882653172e-01, 3.546586651685035e-02,
+ -9.993640693986205e-01, 3.565749283150822e-02,
+ -9.993572137881640e-01, 3.584911783514202e-02,
+ -9.993503214341994e-01, 3.604074152070623e-02,
+ -9.993433923369802e-01, 3.623236388115540e-02,
+ -9.993364264967612e-01, 3.642398490944411e-02,
+ -9.993294239137984e-01, 3.661560459852703e-02,
+ -9.993223845883495e-01, 3.680722294135883e-02,
+ -9.993153085206731e-01, 3.699883993089426e-02,
+ -9.993081957110295e-01, 3.719045556008812e-02,
+ -9.993010461596801e-01, 3.738206982189523e-02,
+ -9.992938598668878e-01, 3.757368270927049e-02,
+ -9.992866368329167e-01, 3.776529421516886e-02,
+ -9.992793770580327e-01, 3.795690433254531e-02,
+ -9.992720805425026e-01, 3.814851305435489e-02,
+ -9.992647472865944e-01, 3.834012037355269e-02,
+ -9.992573772905781e-01, 3.853172628309387e-02,
+ -9.992499705547244e-01, 3.872333077593362e-02,
+ -9.992425270793058e-01, 3.891493384502719e-02,
+ -9.992350468645959e-01, 3.910653548332989e-02,
+ -9.992275299108696e-01, 3.929813568379706e-02,
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+ -8.760700941954066e-01, 4.821837720791227e-01,
+ -8.753294031041109e-01, 4.835270789329187e-01,
+ -8.745866522781761e-01, 4.848692480007911e-01,
+ -8.738418434653669e-01, 4.862102761244864e-01,
+ -8.730949784182901e-01, 4.875501601484360e-01,
+ -8.723460588943915e-01, 4.888888969197632e-01,
+ -8.715950866559510e-01, 4.902264832882912e-01,
+ -8.708420634700790e-01, 4.915629161065499e-01,
+ -8.700869911087115e-01, 4.928981922297840e-01,
+ -8.693298713486068e-01, 4.942323085159597e-01,
+ -8.685707059713409e-01, 4.955652618257725e-01,
+ -8.678094967633033e-01, 4.968970490226545e-01,
+ -8.670462455156926e-01, 4.982276669727819e-01,
+ -8.662809540245130e-01, 4.995571125450818e-01,
+ -8.655136240905691e-01, 5.008853826112407e-01,
+ -8.647442575194624e-01, 5.022124740457108e-01,
+ -8.639728561215868e-01, 5.035383837257176e-01,
+ -8.631994217121242e-01, 5.048631085312676e-01,
+ -8.624239561110406e-01, 5.061866453451552e-01,
+ -8.616464611430813e-01, 5.075089910529709e-01,
+ -8.608669386377673e-01, 5.088301425431070e-01,
+ -8.600853904293901e-01, 5.101500967067668e-01,
+ -8.593018183570085e-01, 5.114688504379703e-01,
+ -8.585162242644427e-01, 5.127864006335630e-01,
+ -8.577286100002721e-01, 5.141027441932217e-01,
+ -8.569389774178288e-01, 5.154178780194629e-01,
+ -8.561473283751945e-01, 5.167317990176499e-01,
+ -8.553536647351960e-01, 5.180445040959993e-01,
+ -8.545579883654005e-01, 5.193559901655896e-01,
+ -8.537603011381114e-01, 5.206662541403672e-01,
+ -8.529606049303636e-01, 5.219752929371544e-01,
+ -8.521589016239198e-01, 5.232831034756564e-01,
+ -8.513551931052652e-01, 5.245896826784690e-01,
+ -8.505494812656035e-01, 5.258950274710846e-01,
+ -8.497417680008525e-01, 5.271991347819013e-01,
+ -8.489320552116396e-01, 5.285020015422285e-01,
+ -8.481203448032972e-01, 5.298036246862946e-01,
+ -8.473066386858583e-01, 5.311040011512550e-01,
+ -8.464909387740521e-01, 5.324031278771979e-01,
+ -8.456732469872991e-01, 5.337010018071530e-01,
+ -8.448535652497071e-01, 5.349976198870972e-01,
+ -8.440318954900664e-01, 5.362929790659632e-01,
+ -8.432082396418454e-01, 5.375870762956454e-01,
+ -8.423825996431858e-01, 5.388799085310084e-01,
+ -8.415549774368984e-01, 5.401714727298929e-01,
+ -8.407253749704581e-01, 5.414617658531234e-01,
+ -8.398937941959995e-01, 5.427507848645159e-01,
+ -8.390602370703127e-01, 5.440385267308838e-01,
+ -8.382247055548381e-01, 5.453249884220465e-01,
+ -8.373872016156619e-01, 5.466101669108349e-01,
+ -8.365477272235120e-01, 5.478940591731002e-01,
+ -8.357062843537526e-01, 5.491766621877197e-01,
+ -8.348628749863800e-01, 5.504579729366048e-01,
+ -8.340175011060181e-01, 5.517379884047073e-01,
+ -8.331701647019132e-01, 5.530167055800275e-01,
+ -8.323208677679297e-01, 5.542941214536200e-01,
+ -8.314696123025452e-01, 5.555702330196022e-01,
+ -8.306164003088463e-01, 5.568450372751601e-01,
+ -8.297612337945230e-01, 5.581185312205561e-01,
+ -8.289041147718649e-01, 5.593907118591361e-01,
+ -8.280450452577558e-01, 5.606615761973360e-01,
+ -8.271840272736691e-01, 5.619311212446895e-01,
+ -8.263210628456635e-01, 5.631993440138341e-01,
+ -8.254561540043776e-01, 5.644662415205195e-01,
+ -8.245893027850253e-01, 5.657318107836131e-01,
+ -8.237205112273914e-01, 5.669960488251087e-01,
+ -8.228497813758264e-01, 5.682589526701315e-01,
+ -8.219771152792416e-01, 5.695205193469471e-01,
+ -8.211025149911046e-01, 5.707807458869673e-01,
+ -8.202259825694347e-01, 5.720396293247570e-01,
+ -8.193475200767969e-01, 5.732971666980422e-01,
+ -8.184671295802987e-01, 5.745533550477158e-01,
+ -8.175848131515837e-01, 5.758081914178453e-01,
+ -8.167005728668278e-01, 5.770616728556794e-01,
+ -8.158144108067338e-01, 5.783137964116556e-01,
+ -8.149263290565266e-01, 5.795645591394056e-01,
+ -8.140363297059484e-01, 5.808139580957645e-01,
+ -8.131444148492536e-01, 5.820619903407754e-01,
+ -8.122505865852039e-01, 5.833086529376983e-01,
+ -8.113548470170637e-01, 5.845539429530153e-01,
+ -8.104571982525948e-01, 5.857978574564389e-01,
+ -8.095576424040513e-01, 5.870403935209180e-01,
+ -8.086561815881750e-01, 5.882815482226452e-01,
+ -8.077528179261904e-01, 5.895213186410639e-01,
+ -8.068475535437993e-01, 5.907597018588742e-01,
+ -8.059403905711763e-01, 5.919966949620410e-01,
+ -8.050313311429637e-01, 5.932322950397998e-01,
+ -8.041203773982658e-01, 5.944664991846644e-01,
+ -8.032075314806449e-01, 5.956993044924334e-01,
+ -8.022927955381157e-01, 5.969307080621965e-01,
+ -8.013761717231402e-01, 5.981607069963423e-01,
+ -8.004576621926228e-01, 5.993892984005645e-01,
+ -7.995372691079050e-01, 6.006164793838690e-01,
+ -7.986149946347608e-01, 6.018422470585800e-01,
+ -7.976908409433912e-01, 6.030665985403482e-01,
+ -7.967648102084188e-01, 6.042895309481560e-01,
+ -7.958369046088836e-01, 6.055110414043255e-01,
+ -7.949071263282370e-01, 6.067311270345245e-01,
+ -7.939754775543372e-01, 6.079497849677736e-01,
+ -7.930419604794436e-01, 6.091670123364532e-01,
+ -7.921065773002124e-01, 6.103828062763095e-01,
+ -7.911693302176902e-01, 6.115971639264619e-01,
+ -7.902302214373100e-01, 6.128100824294097e-01,
+ -7.892892531688857e-01, 6.140215589310384e-01,
+ -7.883464276266063e-01, 6.152315905806268e-01,
+ -7.874017470290314e-01, 6.164401745308536e-01,
+ -7.864552135990858e-01, 6.176473079378039e-01,
+ -7.855068295640539e-01, 6.188529879609763e-01,
+ -7.845565971555752e-01, 6.200572117632891e-01,
+ -7.836045186096382e-01, 6.212599765110876e-01,
+ -7.826505961665757e-01, 6.224612793741500e-01,
+ -7.816948320710594e-01, 6.236611175256945e-01,
+ -7.807372285720945e-01, 6.248594881423863e-01,
+ -7.797777879230146e-01, 6.260563884043435e-01,
+ -7.788165123814760e-01, 6.272518154951441e-01,
+ -7.778534042094531e-01, 6.284457666018327e-01,
+ -7.768884656732324e-01, 6.296382389149270e-01,
+ -7.759216990434077e-01, 6.308292296284245e-01,
+ -7.749531065948739e-01, 6.320187359398091e-01,
+ -7.739826906068229e-01, 6.332067550500572e-01,
+ -7.730104533627370e-01, 6.343932841636455e-01,
+ -7.720363971503845e-01, 6.355783204885561e-01,
+ -7.710605242618138e-01, 6.367618612362842e-01,
+ -7.700828369933479e-01, 6.379439036218440e-01,
+ -7.691033376455797e-01, 6.391244448637757e-01,
+ -7.681220285233654e-01, 6.403034821841517e-01,
+ -7.671389119358204e-01, 6.414810128085832e-01,
+ -7.661539901963129e-01, 6.426570339662269e-01,
+ -7.651672656224590e-01, 6.438315428897914e-01,
+ -7.641787405361167e-01, 6.450045368155439e-01,
+ -7.631884172633813e-01, 6.461760129833163e-01,
+ -7.621962981345789e-01, 6.473459686365121e-01,
+ -7.612023854842618e-01, 6.485144010221124e-01,
+ -7.602066816512024e-01, 6.496813073906832e-01,
+ -7.592091889783881e-01, 6.508466849963809e-01,
+ -7.582099098130153e-01, 6.520105310969595e-01,
+ -7.572088465064846e-01, 6.531728429537768e-01,
+ -7.562060014143945e-01, 6.543336178318004e-01,
+ -7.552013768965365e-01, 6.554928529996153e-01,
+ -7.541949753168892e-01, 6.566505457294289e-01,
+ -7.531867990436125e-01, 6.578066932970786e-01,
+ -7.521768504490428e-01, 6.589612929820373e-01,
+ -7.511651319096865e-01, 6.601143420674205e-01,
+ -7.501516458062151e-01, 6.612658378399923e-01,
+ -7.491363945234594e-01, 6.624157775901718e-01,
+ -7.481193804504036e-01, 6.635641586120398e-01,
+ -7.471006059801801e-01, 6.647109782033448e-01,
+ -7.460800735100638e-01, 6.658562336655097e-01,
+ -7.450577854414661e-01, 6.669999223036375e-01,
+ -7.440337441799293e-01, 6.681420414265185e-01,
+ -7.430079521351217e-01, 6.692825883466360e-01,
+ -7.419804117208311e-01, 6.704215603801731e-01,
+ -7.409511253549591e-01, 6.715589548470183e-01,
+ -7.399200954595162e-01, 6.726947690707729e-01,
+ -7.388873244606151e-01, 6.738290003787560e-01,
+ -7.378528147884660e-01, 6.749616461020119e-01,
+ -7.368165688773699e-01, 6.760927035753159e-01,
+ -7.357785891657136e-01, 6.772221701371803e-01,
+ -7.347388780959635e-01, 6.783500431298615e-01,
+ -7.336974381146604e-01, 6.794763198993650e-01,
+ -7.326542716724128e-01, 6.806009977954530e-01,
+ -7.316093812238926e-01, 6.817240741716497e-01,
+ -7.305627692278276e-01, 6.828455463852481e-01,
+ -7.295144381469970e-01, 6.839654117973154e-01,
+ -7.284643904482252e-01, 6.850836677727004e-01,
+ -7.274126286023758e-01, 6.862003116800386e-01,
+ -7.263591550843460e-01, 6.873153408917590e-01,
+ -7.253039723730608e-01, 6.884287527840904e-01,
+ -7.242470829514670e-01, 6.895405447370668e-01,
+ -7.231884893065275e-01, 6.906507141345346e-01,
+ -7.221281939292153e-01, 6.917592583641577e-01,
+ -7.210661993145081e-01, 6.928661748174246e-01,
+ -7.200025079613817e-01, 6.939714608896540e-01,
+ -7.189371223728045e-01, 6.950751139800009e-01,
+ -7.178700450557317e-01, 6.961771314914630e-01,
+ -7.168012785210995e-01, 6.972775108308865e-01,
+ -7.157308252838186e-01, 6.983762494089729e-01,
+ -7.146586878627691e-01, 6.994733446402838e-01,
+ -7.135848687807936e-01, 7.005687939432483e-01,
+ -7.125093705646923e-01, 7.016625947401685e-01,
+ -7.114321957452164e-01, 7.027547444572253e-01,
+ -7.103533468570624e-01, 7.038452405244849e-01,
+ -7.092728264388657e-01, 7.049340803759049e-01,
+ -7.081906370331954e-01, 7.060212614493397e-01,
+ -7.071067811865476e-01, 7.071067811865475e-01,
+#else
+#error Unsupported twiddle table size
+#endif
+};
diff --git a/media/openmax_dl/dl/sp/src/omxSP_FFTFwd_RToCCS_F32_Sfs_s.S b/media/openmax_dl/dl/sp/src/omxSP_FFTFwd_RToCCS_F32_Sfs_s.S
new file mode 100644
index 0000000000..bbbd9d5b43
--- /dev/null
+++ b/media/openmax_dl/dl/sp/src/omxSP_FFTFwd_RToCCS_F32_Sfs_s.S
@@ -0,0 +1,404 @@
+@//
+@// Copyright (c) 2013 The WebRTC project authors. All Rights Reserved.
+@//
+@// Use of this source code is governed by a BSD-style license
+@// that can be found in the LICENSE file in the root of the source
+@// tree. An additional intellectual property rights grant can be found
+@// in the file PATENTS. All contributing project authors may
+@// be found in the AUTHORS file in the root of the source tree.
+@//
+@// This is a modification of omxSP_FFTFwd_RToCCS_S32_Sfs_s.s
+@// to support float instead of SC32.
+@//
+
+@//
+@// Description:
+@// Compute FFT for a real signal
+@//
+@//
+
+
+@// Include standard headers
+
+#include "dl/api/armCOMM_s.h"
+#include "dl/api/omxtypes_s.h"
+
+
+@// Import symbols required from other files
+@// (For example tables)
+
+ .extern armSP_FFTFwd_CToC_FC32_Radix2_fs_OutOfPlace_unsafe
+ .extern armSP_FFTFwd_CToC_FC32_Radix4_fs_OutOfPlace_unsafe
+ .extern armSP_FFTFwd_CToC_FC32_Radix8_fs_OutOfPlace_unsafe
+ .extern armSP_FFTFwd_CToC_FC32_Radix4_OutOfPlace_unsafe
+ .extern armSP_FFTFwd_CToC_FC32_Radix4_fs_OutOfPlace_unsafe
+ .extern armSP_FFTFwd_CToC_FC32_Radix8_fs_OutOfPlace_unsafe
+ .extern armSP_FFTFwd_CToC_FC32_Radix2_OutOfPlace_unsafe
+
+@// Set debugging level
+@//DEBUG_ON SETL {TRUE}
+
+
+
+@// Guarding implementation by the processor name
+
+
+
+ @// Guarding implementation by the processor name
+
+@// Import symbols required from other files
+@// (For example tables)
+ .extern armSP_FFTFwd_CToC_FC32_Radix4_ls_OutOfPlace_unsafe
+ .extern armSP_FFTFwd_CToC_FC32_Radix2_ls_OutOfPlace_unsafe
+
+
+@//Input Registers
+
+#define pSrc r0
+#define pDst r1
+#define pFFTSpec r2
+#define scale r3
+
+
+@// Output registers
+#define result r0
+
+@//Local Scratch Registers
+
+#define argTwiddle r1
+#define argDst r2
+#define argScale r4
+#define tmpOrder r4
+#define pTwiddle r4
+#define pOut r5
+#define subFFTSize r7
+#define subFFTNum r6
+#define N r6
+#define order r14
+#define diff r9
+@// Total num of radix stages required to comple the FFT
+#define count r8
+#define x0r r4
+#define x0i r5
+#define diffMinusOne r2
+#define subFFTSizeTmp r6
+#define step r3
+#define step1 r4
+#define twStep r8
+#define zero r9
+#define pTwiddleTmp r5
+#define t0 r10
+
+@// Neon registers
+
+#define dX0 d0
+#define dzero d1
+#define dZero d2
+#define dShift d3
+#define dX0r d2
+#define dX0i d3
+#define dX1r d4
+#define dX1i d5
+#define dT0 d6
+#define dT1 d7
+#define dT2 d8
+#define dT3 d9
+#define qT0 d10
+#define qT1 d12
+#define dW0r d14
+#define dW0i d15
+#define dW1r d16
+#define dW1i d17
+#define dY0r d14
+#define dY0i d15
+#define dY1r d16
+#define dY1i d17
+#define dY0rS64 d14.s64
+#define dY0iS64 d15.s64
+#define qT2 d18
+#define qT3 d20
+@// lastThreeelements
+#define dX1 d3
+#define dW0 d4
+#define dW1 d5
+#define dY0 d10
+#define dY1 d11
+#define dY2 d12
+#define dY3 d13
+
+#define half d0
+
+ @// Allocate stack memory required by the function
+
+ @// Write function header
+ M_START omxSP_FFTFwd_RToCCS_F32_Sfs,r11,d15
+
+@ Structure offsets for the FFTSpec
+ .set ARMsFFTSpec_N, 0
+ .set ARMsFFTSpec_pBitRev, 4
+ .set ARMsFFTSpec_pTwiddle, 8
+ .set ARMsFFTSpec_pBuf, 12
+
+ @// Define stack arguments
+
+ @// Read the size from structure and take log
+ LDR N, [pFFTSpec, #ARMsFFTSpec_N]
+
+ @// Read other structure parameters
+ LDR pTwiddle, [pFFTSpec, #ARMsFFTSpec_pTwiddle]
+ LDR pOut, [pFFTSpec, #ARMsFFTSpec_pBuf]
+
+ @// N=1 Treat seperately
+ CMP N,#1
+ BGT sizeGreaterThanOne
+ VLD1.F32 dX0[0],[pSrc]
+ MOV zero,#0
+ VMOV.F32 dzero[0],zero
+ VMOV.F32 dZero[0],zero
+ VST3.F32 {dX0[0],dzero[0],dZero[0]},[pDst]
+
+ B End
+
+
+
+sizeGreaterThanOne:
+ @// Do a N/2 point complex FFT including the scaling
+
+ MOV N,N,ASR #1 @// N/2 point complex FFT
+
+ CLZ order,N @// N = 2^order
+ RSB order,order,#31
+ MOV subFFTSize,#1
+ @//MOV subFFTNum,N
+
+ CMP order,#3
+ BGT orderGreaterthan3 @// order > 3
+
+ CMP order,#1
+ BGE orderGreaterthan0 @// order > 0
+ VLD1.F32 dX0,[pSrc]
+ VST1.F32 dX0,[pOut]
+ MOV pSrc,pOut
+ MOV argDst,pDst
+ BLT FFTEnd
+
+orderGreaterthan0:
+ @// set the buffers appropriately for various orders
+ CMP order,#2
+ MOVEQ argDst,pDst
+ MOVNE argDst,pOut
+ @// Pass the first stage destination in RN5
+ MOVNE pOut,pDst
+ MOV argTwiddle,pTwiddle
+
+ CMP order,#1
+ BGT orderGreaterthan1
+ @// order = 1
+ BL armSP_FFTFwd_CToC_FC32_Radix2_fs_OutOfPlace_unsafe
+ B FFTEnd
+
+orderGreaterthan1:
+ CMP order,#2
+ BGT orderGreaterthan2
+ @// order =2
+ BL armSP_FFTFwd_CToC_FC32_Radix2_fs_OutOfPlace_unsafe
+ BL armSP_FFTFwd_CToC_FC32_Radix2_ls_OutOfPlace_unsafe
+ B FFTEnd
+
+orderGreaterthan2:@// order =3
+ BL armSP_FFTFwd_CToC_FC32_Radix2_fs_OutOfPlace_unsafe
+ BL armSP_FFTFwd_CToC_FC32_Radix2_OutOfPlace_unsafe
+ BL armSP_FFTFwd_CToC_FC32_Radix2_ls_OutOfPlace_unsafe
+
+ B FFTEnd
+
+
+
+orderGreaterthan3:
+specialScaleCase:
+
+ @// Set input args to fft stages
+ TST order, #2
+ MOVEQ argDst,pDst
+ MOVNE argDst,pOut
+ @// Pass the first stage destination in RN5
+ MOVNE pOut,pDst
+ MOV argTwiddle,pTwiddle
+
+ @//check for even or odd order
+ @// NOTE: The following combination of BL's would work fine even though
+ @// the first BL would corrupt the flags. This is because the end of
+ @// the "grpZeroSetLoop" loop inside
+ @// armSP_FFTFwd_CToC_FC32_Radix4_fs_OutOfPlace_unsafe sets the Z flag
+ @// to EQ
+
+ TST order,#0x00000001
+ BLEQ armSP_FFTFwd_CToC_FC32_Radix4_fs_OutOfPlace_unsafe
+ BLNE armSP_FFTFwd_CToC_FC32_Radix8_fs_OutOfPlace_unsafe
+
+ CMP subFFTNum,#4
+ BLT FFTEnd
+
+
+unscaledRadix4Loop:
+ BEQ lastStageUnscaledRadix4
+ BL armSP_FFTFwd_CToC_FC32_Radix4_OutOfPlace_unsafe
+ CMP subFFTNum,#4
+ B unscaledRadix4Loop
+
+lastStageUnscaledRadix4:
+ BL armSP_FFTFwd_CToC_FC32_Radix4_ls_OutOfPlace_unsafe
+ B FFTEnd
+
+
+FFTEnd:
+finalComplexToRealFixup:
+
+
+ @// F(0) = 1/2[Z(0) + Z'(0)] - j [Z(0) - Z'(0)]
+ @// 1/2[(a+jb) + (a-jb)] - j [(a+jb) - (a-jb)]
+ @// 1/2[2a+j0] - j [0+j2b]
+ @// (a+b, 0)
+
+ @// F(N/2) = 1/2[Z(0) + Z'(0)] + j [Z(0) - Z'(0)]
+ @// 1/2[(a+jb) + (a-jb)] + j [(a+jb) - (a-jb)]
+ @// 1/2[2a+j0] + j [0+j2b]
+ @// (a-b, 0)
+
+ @// F(0) and F(N/2)
+ VLD2.F32 {dX0r[0],dX0i[0]},[pSrc]!
+ MOV zero,#0
+ VMOV.F32 dX0r[1],zero
+ MOV step,subFFTSize,LSL #3 @// step = N/2 * 8 bytes
+ VMOV.F32 dX0i[1],zero
+ @// twStep = 3N/8 * 8 bytes pointing to W^1
+ SUB twStep,step,subFFTSize,LSL #1
+
+ VADD.F32 dY0r,dX0r,dX0i @// F(0) = ((Z0.r+Z0.i) , 0)
+ MOV step1,subFFTSize,LSL #2 @// step1 = N/2 * 4 bytes
+ VSUB.F32 dY0i,dX0r,dX0i @// F(N/2) = ((Z0.r-Z0.i) , 0)
+ SUBS subFFTSize,subFFTSize,#2
+
+ VST1.F32 dY0r,[argDst],step
+ ADD pTwiddleTmp,argTwiddle,#8 @// W^2
+ VST1.F32 dY0i,[argDst]!
+ ADD argTwiddle,argTwiddle,twStep @// W^1
+
+ VDUP.F32 dzero,zero
+ SUB argDst,argDst,step
+
+ BLT End
+ BEQ lastElement
+ SUB step,step,#24
+ SUB step1,step1,#8 @// (N/4-1)*8 bytes
+
+ @// F(k) = 1/2[Z(k) + Z'(N/2-k)] -j*W^(k) [Z(k) - Z'(N/2-k)]
+ @// Note: W^k is stored as negative values in the table
+ @// Process 4 elements at a time. E.g: F(1),F(2) and F(N/2-2),F(N/2-1)
+ @// since both of them require Z(1),Z(2) and Z(N/2-2),Z(N/2-1)
+
+
+ ADR t0, HALF
+ VLD1.F32 half[0], [t0]
+
+evenOddButterflyLoop:
+
+
+ VLD1.F32 dW0r,[argTwiddle],step1
+ VLD1.F32 dW1r,[argTwiddle]!
+
+ VLD2.F32 {dX0r,dX0i},[pSrc],step
+ SUB argTwiddle,argTwiddle,step1
+ VLD2.F32 {dX1r,dX1i},[pSrc]!
+
+
+
+ SUB step1,step1,#8 @// (N/4-2)*8 bytes
+ VLD1.F32 dW0i,[pTwiddleTmp],step1
+ VLD1.F32 dW1i,[pTwiddleTmp]!
+ SUB pSrc,pSrc,step
+
+ SUB pTwiddleTmp,pTwiddleTmp,step1
+ VREV64.F32 dX1r,dX1r
+ VREV64.F32 dX1i,dX1i
+ SUBS subFFTSize,subFFTSize,#4
+
+
+
+ VSUB.F32 dT2,dX0r,dX1r @// a-c
+ SUB step1,step1,#8
+ VADD.F32 dT0,dX0r,dX1r @// a+c
+ VSUB.F32 dT1,dX0i,dX1i @// b-d
+ VADD.F32 dT3,dX0i,dX1i @// b+d
+ VMUL.F32 dT0,dT0,half[0]
+ VMUL.F32 dT1,dT1,half[0]
+ VZIP.F32 dW1r,dW1i
+ VZIP.F32 dW0r,dW0i
+
+
+ VMUL.F32 qT0,dW1r,dT2
+ VMUL.F32 qT1,dW1r,dT3
+ VMUL.F32 qT2,dW0r,dT2
+ VMUL.F32 qT3,dW0r,dT3
+
+ VMLA.F32 qT0,dW1i,dT3
+ VMLS.F32 qT1,dW1i,dT2
+
+ VMLS.F32 qT2,dW0i,dT3
+ VMLA.F32 qT3,dW0i,dT2
+
+
+ VMUL.F32 dX1r,qT0,half[0]
+ VMUL.F32 dX1i,qT1,half[0]
+
+ VSUB.F32 dY1r,dT0,dX1i @// F(N/2 -1)
+ VADD.F32 dY1i,dT1,dX1r
+ VNEG.F32 dY1i,dY1i
+
+ VREV64.F32 dY1r,dY1r
+ VREV64.F32 dY1i,dY1i
+
+
+ VMUL.F32 dX0r,qT2,half[0]
+ VMUL.F32 dX0i,qT3,half[0]
+
+ VSUB.F32 dY0r,dT0,dX0i @// F(1)
+ VADD.F32 dY0i,dT1,dX0r
+
+
+ VST2.F32 {dY0r,dY0i},[argDst],step
+ VST2.F32 {dY1r,dY1i},[argDst]!
+ SUB argDst,argDst,step
+ SUB step,step,#32 @// (N/2-4)*8 bytes
+
+
+ BGT evenOddButterflyLoop
+
+ @// set both the ptrs to the last element
+ SUB pSrc,pSrc,#8
+ SUB argDst,argDst,#8
+
+
+
+ @// Last element can be expanded as follows
+ @// 1/2[Z(k) + Z'(k)] + j w^k [Z(k) - Z'(k)]
+ @// 1/2[(a+jb) + (a-jb)] + j w^k [(a+jb) - (a-jb)]
+ @// 1/2[2a+j0] + j (c+jd) [0+j2b]
+ @// (a-bc, -bd)
+ @// Since (c,d) = (0,1) for the last element, result is just (a,-b)
+
+lastElement:
+ VLD1.F32 dX0r,[pSrc]
+
+ VST1.F32 dX0r[0],[argDst]!
+ VNEG.F32 dX0r,dX0r
+ VST1.F32 dX0r[1],[argDst]!
+
+End:
+ @// Set return value
+ MOV result, #OMX_Sts_NoErr
+
+ @// Write function tail
+ M_END
+HALF: .float 0.5
+ .end
diff --git a/media/openmax_dl/dl/sp/src/omxSP_FFTGetBufSize_R_F32.c b/media/openmax_dl/dl/sp/src/omxSP_FFTGetBufSize_R_F32.c
new file mode 100644
index 0000000000..19b16bbd95
--- /dev/null
+++ b/media/openmax_dl/dl/sp/src/omxSP_FFTGetBufSize_R_F32.c
@@ -0,0 +1,49 @@
+/*
+ * Copyright (c) 2013 The WebRTC project authors. All Rights Reserved.
+ *
+ * Use of this source code is governed by a BSD-style license
+ * that can be found in the LICENSE file in the root of the source
+ * tree. An additional intellectual property rights grant can be found
+ * in the file PATENTS. All contributing project authors may
+ * be found in the AUTHORS file in the root of the source tree.
+ *
+ */
+
+#include "dl/api/armOMX.h"
+#include "dl/api/omxtypes.h"
+#include "dl/sp/api/armSP.h"
+#include "dl/sp/api/omxSP.h"
+
+/**
+ * Function: omxSP_FFTGetBufSize_R_F32
+ *
+ * Description:
+ * Computes the size of the specification structure required for the length
+ * 2^order real FFT and IFFT functions.
+ *
+ * Remarks:
+ * This function is used in conjunction with the 32-bit functions
+ * <FFTFwd_RToCCS_F32_Sfs> and <FFTInv_CCSToR_F32_Sfs>.
+ *
+ * Parameters:
+ * [in] order base-2 logarithm of the length; valid in the range
+ * [1,12]. ([1,15] if BIG_FFT_TABLE is defined.)
+ * [out] pSize pointer to the number of bytes required for the
+ * specification structure.
+ *
+ * Return Value:
+ * Standard omxError result. See enumeration for possible result codes.
+ *
+ */
+
+OMXResult omxSP_FFTGetBufSize_R_F32(OMX_INT order, OMX_INT *pSize) {
+ if (!pSize || (order < 1) || (order > TWIDDLE_TABLE_ORDER))
+ return OMX_Sts_BadArgErr;
+
+ /*
+ * The required size is the same as for R_S32, because the
+ * elements are the same size and because ARMsFFTSpec_R_SC32 is
+ * the same size as ARMsFFTSpec_R_FC32.
+ */
+ return omxSP_FFTGetBufSize_R_S32(order, pSize);
+}
diff --git a/media/openmax_dl/dl/sp/src/omxSP_FFTGetBufSize_R_S32.c b/media/openmax_dl/dl/sp/src/omxSP_FFTGetBufSize_R_S32.c
new file mode 100644
index 0000000000..d57294700e
--- /dev/null
+++ b/media/openmax_dl/dl/sp/src/omxSP_FFTGetBufSize_R_S32.c
@@ -0,0 +1,91 @@
+/*
+ * Copyright (c) 2013 The WebRTC project authors. All Rights Reserved.
+ *
+ * Use of this source code is governed by a BSD-style license
+ * that can be found in the LICENSE file in the root of the source
+ * tree. An additional intellectual property rights grant can be found
+ * in the file PATENTS. All contributing project authors may
+ * be found in the AUTHORS file in the root of the source tree.
+ *
+ * This file was originally licensed as follows. It has been
+ * relicensed with permission from the copyright holders.
+ */
+
+/**
+ *
+ * File Name: omxSP_FFTGetBufSize_R_S32.c
+ * OpenMAX DL: v1.0.2
+ * Last Modified Revision: 7777
+ * Last Modified Date: Thu, 27 Sep 2007
+ *
+ * (c) Copyright 2007-2008 ARM Limited. All Rights Reserved.
+ *
+ *
+ * Description:
+ * Computes the size of the specification structure required.
+ */
+
+#include "dl/api/armOMX.h"
+#include "dl/api/omxtypes.h"
+#include "dl/sp/api/armSP.h"
+#include "dl/sp/api/omxSP.h"
+
+/**
+ * Function: omxSP_FFTGetBufSize_R_S32
+ *
+ * Description:
+ * Computes the size of the specification structure required for the length
+ * 2^order real FFT and IFFT functions.
+ *
+ * Remarks:
+ * This function is used in conjunction with the 32-bit functions
+ * <FFTFwd_RToCCS_S32_Sfs> and <FFTInv_CCSToR_S32_Sfs>.
+ *
+ * Parameters:
+ * [in] order base-2 logarithm of the length; valid in the range
+ * [0,12].
+ * [out] pSize pointer to the number of bytes required for the
+ * specification structure.
+ *
+ * Return Value:
+ * Standard omxError result. See enumeration for possible result codes.
+ *
+ */
+
+OMXResult omxSP_FFTGetBufSize_R_S32(
+ OMX_INT order,
+ OMX_INT *pSize
+ )
+{
+ OMX_INT NBy2,N,twiddleSize;
+
+
+ /* Check for order zero */
+ if (order == 0)
+ {
+ *pSize = sizeof(ARMsFFTSpec_R_SC32)
+ + sizeof(OMX_S32) * (2); /* Extra size 'N' is used in FFTInv_CCSToR_S32S16_Sfs as a temporary buf */
+
+ return OMX_Sts_NoErr;
+ }
+
+ NBy2 = 1 << (order - 1);
+ N = NBy2<<1;
+ twiddleSize = 5*N/8; /* 3/4(N/2) + N/4 */
+
+ /* 2 pointers to store bitreversed array and twiddle factor array */
+ *pSize = sizeof(ARMsFFTSpec_R_SC32)
+ /* Twiddle factors */
+ + sizeof(OMX_SC32) * twiddleSize
+ /* Ping Pong buffer for doing the N/2 point complex FFT */
+ + sizeof(OMX_S32) * (N<<1) /* Extra size 'N' is used in FFTInv_CCSToR_S32_Sfs as a temporary buf */
+ + 62 ; /* Extra bytes to get 32 byte alignment of ptwiddle and pBuf */
+
+
+ return OMX_Sts_NoErr;
+}
+
+/*****************************************************************************
+ * END OF FILE
+ *****************************************************************************/
+
diff --git a/media/openmax_dl/dl/sp/src/omxSP_FFTInit_R_F32.c b/media/openmax_dl/dl/sp/src/omxSP_FFTInit_R_F32.c
new file mode 100644
index 0000000000..32d22230ed
--- /dev/null
+++ b/media/openmax_dl/dl/sp/src/omxSP_FFTInit_R_F32.c
@@ -0,0 +1,210 @@
+/*
+ * Copyright (c) 2013 The WebRTC project authors. All Rights Reserved.
+ *
+ * Use of this source code is governed by a BSD-style license
+ * that can be found in the LICENSE file in the root of the source
+ * tree. An additional intellectual property rights grant can be found
+ * in the file PATENTS. All contributing project authors may
+ * be found in the AUTHORS file in the root of the source tree.
+ *
+ * This is a modification of omxSP_FFTInit_R_S32.c to support float
+ * instead of S32.
+ */
+
+#include "dl/api/armOMX.h"
+#include "dl/api/omxtypes.h"
+#include "dl/sp/api/armSP.h"
+#include "dl/sp/api/omxSP.h"
+
+/**
+ * Function: omxSP_FFTInit_R_F32
+ *
+ * Description:
+ * Initialize the real forward-FFT specification information struct.
+ *
+ * Remarks:
+ * This function is used to initialize the specification structures
+ * for functions <ippsFFTFwd_RToCCS_F32_Sfs> and
+ * <ippsFFTInv_CCSToR_F32_Sfs>. Memory for *pFFTSpec must be
+ * allocated prior to calling this function. The number of bytes
+ * required for *pFFTSpec can be determined using
+ * <FFTGetBufSize_R_F32>.
+ *
+ * Parameters:
+ * [in] order base-2 logarithm of the desired block length;
+ * valid in the range [1,12]. ([1,15] if
+ * BIG_FFT_TABLE is defined.)
+ * [out] pFFTFwdSpec pointer to the initialized specification structure.
+ *
+ * Return Value:
+ * Standard omxError result. See enumeration for possible result codes.
+ *
+ */
+OMXResult omxSP_FFTInit_R_F32(OMXFFTSpec_R_F32* pFFTSpec, OMX_INT order) {
+ OMX_INT i;
+ OMX_INT j;
+ OMX_FC32* pTwiddle;
+ OMX_FC32* pTwiddle1;
+ OMX_FC32* pTwiddle2;
+ OMX_FC32* pTwiddle3;
+ OMX_FC32* pTwiddle4;
+ OMX_F32* pBuf;
+ OMX_U16* pBitRev;
+ OMX_U32 pTmp;
+ OMX_INT Nby2;
+ OMX_INT N;
+ OMX_INT M;
+ OMX_INT diff;
+ OMX_INT step;
+ OMX_F32 x;
+ OMX_F32 y;
+ OMX_F32 xNeg;
+ ARMsFFTSpec_R_FC32* pFFTStruct = 0;
+
+ pFFTStruct = (ARMsFFTSpec_R_FC32 *) pFFTSpec;
+
+ /* Validate args */
+ if (!pFFTSpec || (order < 1) || (order > TWIDDLE_TABLE_ORDER))
+ return OMX_Sts_BadArgErr;
+
+ /* Do the initializations */
+ Nby2 = 1 << (order - 1);
+ N = Nby2 << 1;
+
+ /* optimized implementations don't use bitreversal */
+ pBitRev = NULL;
+
+ pTwiddle = (OMX_FC32 *) (sizeof(ARMsFFTSpec_R_SC32) + (OMX_S8*) pFFTSpec);
+
+ /* Align to 32 byte boundary */
+ pTmp = ((OMX_U32)pTwiddle) & 31;
+ if (pTmp)
+ pTwiddle = (OMX_FC32*) ((OMX_S8*)pTwiddle + (32 - pTmp));
+
+ pBuf = (OMX_F32*) (sizeof(OMX_FC32)*(5*N/8) + (OMX_S8*) pTwiddle);
+
+ /* Align to 32 byte boundary */
+ pTmp = ((OMX_U32)pBuf)&31; /* (OMX_U32)pBuf % 32 */
+ if (pTmp)
+ pBuf = (OMX_F32*) ((OMX_S8*)pBuf + (32 - pTmp));
+
+ /*
+ * Filling Twiddle factors :
+ *
+ * exp^(-j*2*PI*k/ (N/2) ) ; k=0,1,2,...,3/4(N/2)
+ *
+ * N/2 point complex FFT is used to compute N point real FFT The
+ * original twiddle table "armSP_FFT_F32TwiddleTable" is of size
+ * (MaxSize/8 + 1) Rest of the values i.e., upto MaxSize are
+ * calculated using the symmetries of sin and cos The max size of
+ * the twiddle table needed is 3/4(N/2) for a radix-4 stage
+ *
+ * W = (-2 * PI) / N
+ * N = 1 << order
+ * W = -PI >> (order - 1)
+ */
+
+ M = Nby2 >> 3;
+ diff = TWIDDLE_TABLE_ORDER - (order - 1);
+ /* step into the twiddle table for the current order */
+ step = 1 << diff;
+
+ x = armSP_FFT_F32TwiddleTable[0];
+ y = armSP_FFT_F32TwiddleTable[1];
+ xNeg = 1;
+
+ if ((order - 1) >= 3) {
+ /* i = 0 case */
+ pTwiddle[0].Re = x;
+ pTwiddle[0].Im = y;
+ pTwiddle[2*M].Re = -y;
+ pTwiddle[2*M].Im = xNeg;
+ pTwiddle[4*M].Re = xNeg;
+ pTwiddle[4*M].Im = y;
+
+ for (i = 1; i <= M; i++) {
+ j = i*step;
+
+ x = armSP_FFT_F32TwiddleTable[2*j];
+ y = armSP_FFT_F32TwiddleTable[2*j+1];
+
+ pTwiddle[i].Re = x;
+ pTwiddle[i].Im = y;
+ pTwiddle[2*M-i].Re = -y;
+ pTwiddle[2*M-i].Im = -x;
+ pTwiddle[2*M+i].Re = y;
+ pTwiddle[2*M+i].Im = -x;
+ pTwiddle[4*M-i].Re = -x;
+ pTwiddle[4*M-i].Im = y;
+ pTwiddle[4*M+i].Re = -x;
+ pTwiddle[4*M+i].Im = -y;
+ pTwiddle[6*M-i].Re = y;
+ pTwiddle[6*M-i].Im = x;
+ }
+ } else if ((order - 1) == 2) {
+ pTwiddle[0].Re = x;
+ pTwiddle[0].Im = y;
+ pTwiddle[1].Re = -y;
+ pTwiddle[1].Im = xNeg;
+ pTwiddle[2].Re = xNeg;
+ pTwiddle[2].Im = y;
+ } else if ((order-1) == 1) {
+ pTwiddle[0].Re = x;
+ pTwiddle[0].Im = y;
+ }
+
+ /*
+ * Now fill the last N/4 values : exp^(-j*2*PI*k/N) ;
+ * k=1,3,5,...,N/2-1 These are used for the final twiddle fix-up for
+ * converting complex to real FFT
+ */
+
+ M = N >> 3;
+ diff = TWIDDLE_TABLE_ORDER - order;
+ step = 1 << diff;
+
+ pTwiddle1 = pTwiddle + 3*N/8;
+ pTwiddle4 = pTwiddle1 + (N/4 - 1);
+ pTwiddle3 = pTwiddle1 + N/8;
+ pTwiddle2 = pTwiddle1 + (N/8 - 1);
+
+ x = armSP_FFT_F32TwiddleTable[0];
+ y = armSP_FFT_F32TwiddleTable[1];
+ xNeg = 1;
+
+ if (order >=3) {
+ for (i = 1; i <= M; i += 2) {
+ j = i*step;
+
+ x = armSP_FFT_F32TwiddleTable[2*j];
+ y = armSP_FFT_F32TwiddleTable[2*j+1];
+
+ pTwiddle1[0].Re = x;
+ pTwiddle1[0].Im = y;
+ pTwiddle1 += 1;
+ pTwiddle2[0].Re = -y;
+ pTwiddle2[0].Im = -x;
+ pTwiddle2 -= 1;
+ pTwiddle3[0].Re = y;
+ pTwiddle3[0].Im = -x;
+ pTwiddle3 += 1;
+ pTwiddle4[0].Re = -x;
+ pTwiddle4[0].Im = y;
+ pTwiddle4 -= 1;
+ }
+ } else {
+ if (order == 2) {
+ pTwiddle1[0].Re = -y;
+ pTwiddle1[0].Im = xNeg;
+ }
+ }
+
+
+ /* Update the structure */
+ pFFTStruct->N = N;
+ pFFTStruct->pTwiddle = pTwiddle;
+ pFFTStruct->pBitRev = pBitRev;
+ pFFTStruct->pBuf = pBuf;
+
+ return OMX_Sts_NoErr;
+}
diff --git a/media/openmax_dl/dl/sp/src/omxSP_FFTInv_CCSToR_F32_Sfs_unscaled_s.S b/media/openmax_dl/dl/sp/src/omxSP_FFTInv_CCSToR_F32_Sfs_unscaled_s.S
new file mode 100644
index 0000000000..838de317f0
--- /dev/null
+++ b/media/openmax_dl/dl/sp/src/omxSP_FFTInv_CCSToR_F32_Sfs_unscaled_s.S
@@ -0,0 +1,284 @@
+@//
+@// Copyright (c) 2013 The WebRTC project authors. All Rights Reserved.
+@//
+@// Copyright 2016, Mozilla Foundation and contributors
+@//
+@// Use of this source code is governed by a BSD-style license
+@// that can be found in the LICENSE file in the root of the source
+@// tree. An additional intellectual property rights grant can be found
+@// in the file PATENTS. All contributing project authors may
+@// be found in the AUTHORS file in the root of the source tree.
+@//
+@// This is a modification of omxSP_FFTInv_CCSToR_S32_Sfs_s.s
+@// to support float instead of SC32.
+@//
+@// It is further modified to produce an "unscaled" version, which
+@// actually multiplies by two for consistency with the other FFT functions
+@// in use.
+@//
+
+@//
+@// Description:
+@// Compute an inverse FFT for a complex signal
+@//
+@//
+
+
+@// Include standard headers
+
+#include "dl/api/armCOMM_s.h"
+#include "dl/api/omxtypes_s.h"
+
+
+@// Import symbols required from other files
+@// (For example tables)
+
+ .extern armSP_FFTInv_CToC_FC32_Radix2_fs_OutOfPlace_unsafe
+ .extern armSP_FFTInv_CToC_FC32_Radix4_fs_OutOfPlace_unsafe
+ .extern armSP_FFTInv_CToC_FC32_Radix8_fs_OutOfPlace_unsafe
+ .extern armSP_FFTInv_CToC_FC32_Radix4_OutOfPlace_unsafe
+ .extern armSP_FFTInv_CToC_FC32_Radix2_OutOfPlace_unsafe
+ .extern armSP_FFTInv_CCSToR_F32_preTwiddleRadix2_unsafe
+
+
+@// Set debugging level
+@//DEBUG_ON SETL {TRUE}
+
+
+
+@// Guarding implementation by the processor name
+
+
+
+ @// Guarding implementation by the processor name
+
+@// Import symbols required from other files
+@// (For example tables)
+ .extern armSP_FFTInv_CToC_FC32_Radix4_ls_OutOfPlace_unsafe
+ .extern armSP_FFTInv_CToC_FC32_Radix2_ls_OutOfPlace_unsafe
+
+
+@//Input Registers
+
+#define pSrc r0
+#define pDst r1
+#define pFFTSpec r2
+#define scale r3
+
+
+@// Output registers
+#define result r0
+
+@//Local Scratch Registers
+
+#define argTwiddle r1
+#define argDst r2
+#define argScale r4
+#define tmpOrder r4
+#define pTwiddle r4
+#define pOut r5
+#define subFFTSize r7
+#define subFFTNum r6
+#define N r6
+#define order r14
+#define diff r9
+@// Total num of radix stages required to comple the FFT
+#define count r8
+#define x0r r4
+#define x0i r5
+#define diffMinusOne r2
+#define round r3
+
+#define pOut1 r2
+#define size r7
+#define step r8
+#define step1 r9
+#define twStep r10
+#define pTwiddleTmp r11
+#define argTwiddle1 r12
+#define zero r14
+
+@// Neon registers
+
+#define dX0 D0
+#define dShift D1
+#define dX1 D1
+#define dY0 D2
+#define dY1 D3
+#define dX0r D0
+#define dX0i D1
+#define dX1r D2
+#define dX1i D3
+#define dW0r D4
+#define dW0i D5
+#define dW1r D6
+#define dW1i D7
+#define dT0 D8
+#define dT1 D9
+#define dT2 D10
+#define dT3 D11
+#define qT0 d12
+#define qT1 d14
+#define qT2 d16
+#define qT3 d18
+#define dY0r D4
+#define dY0i D5
+#define dY1r D6
+#define dY1i D7
+#define dzero D20
+
+#define dY2 D4
+#define dY3 D5
+#define dW0 D6
+#define dW1 D7
+#define dW0Tmp D10
+#define dW1Neg D11
+
+#define sN S0.S32
+#define fN S1
+@// two must be the same as dScale[0]!
+#define dScale D2
+#define two S4
+
+
+ @// Allocate stack memory required by the function
+ M_ALLOC4 complexFFTSize, 4
+
+ @// Write function header
+ M_START omxSP_FFTInv_CCSToR_F32_Sfs_unscaled,r11,d15
+
+@ Structure offsets for the FFTSpec
+ .set ARMsFFTSpec_N, 0
+ .set ARMsFFTSpec_pBitRev, 4
+ .set ARMsFFTSpec_pTwiddle, 8
+ .set ARMsFFTSpec_pBuf, 12
+
+ @// Define stack arguments
+
+ @// Read the size from structure and take log
+ LDR N, [pFFTSpec, #ARMsFFTSpec_N]
+
+ @// Read other structure parameters
+ LDR pTwiddle, [pFFTSpec, #ARMsFFTSpec_pTwiddle]
+ LDR pOut, [pFFTSpec, #ARMsFFTSpec_pBuf]
+
+ @// N=1 Treat seperately
+ CMP N,#1
+ BGT sizeGreaterThanOne
+ VLD1.F32 dX0[0],[pSrc]
+ VST1.F32 dX0[0],[pDst]
+
+ B End
+
+sizeGreaterThanOne:
+
+ @// Call the preTwiddle Radix2 stage before doing the compledIFFT
+
+
+ BL armSP_FFTInv_CCSToR_F32_preTwiddleRadix2_unsafe
+
+
+complexIFFT:
+
+ ASR N,N,#1 @// N/2 point complex IFFT
+ M_STR N, complexFFTSize @ Save N for scaling later
+ ADD pSrc,pOut,N,LSL #3 @// set pSrc as pOut1
+
+ CLZ order,N @// N = 2^order
+ RSB order,order,#31
+ MOV subFFTSize,#1
+ @//MOV subFFTNum,N
+
+ CMP order,#3
+ BGT orderGreaterthan3 @// order > 3
+
+ CMP order,#1
+ BGE orderGreaterthan0 @// order > 0
+
+ VLD1.F32 dX0,[pSrc]
+ VST1.F32 dX0,[pDst]
+ MOV pSrc,pDst
+ BLT FFTEnd
+
+orderGreaterthan0:
+ @// set the buffers appropriately for various orders
+ CMP order,#2
+ MOVNE argDst,pDst
+ MOVEQ argDst,pOut
+ @// Pass the first stage destination in RN5
+ MOVEQ pOut,pDst
+ MOV argTwiddle,pTwiddle
+
+ BGE orderGreaterthan1
+ BLLT armSP_FFTInv_CToC_FC32_Radix2_fs_OutOfPlace_unsafe @// order = 1
+ B FFTEnd
+
+orderGreaterthan1:
+ MOV tmpOrder,order @// tmpOrder = RN 4
+ BL armSP_FFTInv_CToC_FC32_Radix2_fs_OutOfPlace_unsafe
+ CMP tmpOrder,#2
+ BLGT armSP_FFTInv_CToC_FC32_Radix2_OutOfPlace_unsafe
+ BL armSP_FFTInv_CToC_FC32_Radix2_ls_OutOfPlace_unsafe
+ B FFTEnd
+
+
+orderGreaterthan3:
+specialScaleCase:
+
+ @// Set input args to fft stages
+ TST order, #2
+ MOVNE argDst,pDst
+ MOVEQ argDst,pOut
+ @// Pass the first stage destination in RN5
+ MOVEQ pOut,pDst
+ MOV argTwiddle,pTwiddle
+
+ @//check for even or odd order
+ @// NOTE: The following combination of BL's would work fine even though
+ @// the first BL would corrupt the flags. This is because the end of
+ @// the "grpZeroSetLoop" loop inside
+ @// armSP_FFTInv_CToC_FC32_Radix4_fs_OutOfPlace_unsafe sets the Z flag
+ @// to EQ
+
+ TST order,#0x00000001
+ BLEQ armSP_FFTInv_CToC_FC32_Radix4_fs_OutOfPlace_unsafe
+ BLNE armSP_FFTInv_CToC_FC32_Radix8_fs_OutOfPlace_unsafe
+
+ CMP subFFTNum,#4
+ BLT FFTEnd
+
+
+unscaledRadix4Loop:
+ BEQ lastStageUnscaledRadix4
+ BL armSP_FFTInv_CToC_FC32_Radix4_OutOfPlace_unsafe
+ CMP subFFTNum,#4
+ B unscaledRadix4Loop
+
+lastStageUnscaledRadix4:
+ BL armSP_FFTInv_CToC_FC32_Radix4_ls_OutOfPlace_unsafe
+ B FFTEnd
+
+FFTEnd: @// Does only the scaling
+ @ Scale inverse FFT result by 2 for consistency with other FFTs
+ VMOV.F32 two, #2.0 @ two = dScale[0]
+
+ @// N = subFFTSize ; dataptr = pDst
+scaleFFTData:
+ VLD1.F32 {dX0},[pSrc] @// pSrc contains pDst pointer
+ SUBS subFFTSize,subFFTSize,#1
+ VMUL.F32 dX0, dX0, dScale[0]
+ VST1.F32 {dX0},[pSrc]!
+
+ BGT scaleFFTData
+
+
+End:
+ @// Set return value
+ MOV result, #OMX_Sts_NoErr
+
+ @// Write function tail
+ M_END
+
+
+
+ .end