@ @ Copyright (c) 2011 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. @ @ Contains a function for the core loop in the normalized lattice AR @ filter routine for iSAC codec, optimized for ARMv7 platforms. @ @ Output is bit-exact with the reference C code in lattic_c.c @ @ Register usage: @ @ r0: &ar_g_Q0 @ r1: &ar_f_Q0 @ r2: &cth_Q15 @ r3: &sth_Q15 @ r4: out loop counter @ r5: tmpAR @ r9: inner loop counter @ r12: constant #16384 @ r6, r7, r8, r10, r11: scratch #include "modules/audio_coding/codecs/isac/fix/source/settings.h" #include "rtc_base/system/asm_defines.h" GLOBAL_FUNCTION WebRtcIsacfix_FilterArLoop .align 2 DEFINE_FUNCTION WebRtcIsacfix_FilterArLoop push {r4-r11} add r1, #2 @ &ar_f_Q0[1] mov r12, #16384 mov r4, #HALF_SUBFRAMELEN sub r4, #1 @ Outer loop counter = HALF_SUBFRAMELEN - 1 HALF_SUBFRAME_LOOP: @ for (n = 0; n < HALF_SUBFRAMELEN - 1; n++) ldr r9, [sp, #32] @ Restore the inner loop counter to order_coef ldrh r5, [r1] @ tmpAR = ar_f_Q0[n+1] add r0, r9, asl #1 @ Restore r0 to &ar_g_Q0[order_coef] add r2, r9, asl #1 @ Restore r2 to &cth_Q15[order_coef] add r3, r9, asl #1 @ Restore r3 to &sth_Q15[order_coef] ORDER_COEF_LOOP: @ for (k = order_coef; k > 0; k--) ldrh r7, [r3, #-2]! @ sth_Q15[k - 1] ldrh r6, [r2, #-2]! @ cth_Q15[k - 1] ldrh r8, [r0, #-2] @ ar_g_Q0[k - 1] smlabb r11, r7, r5, r12 @ sth_Q15[k - 1] * tmpAR + 16384 smlabb r10, r6, r5, r12 @ cth_Q15[k - 1] * tmpAR + 16384 smulbb r7, r7, r8 @ sth_Q15[k - 1] * ar_g_Q0[k - 1] smlabb r11, r6, r8, r11 @ cth_Q15[k - 1] * ar_g_Q0[k - 1] + @ (sth_Q15[k - 1] * tmpAR + 16384) sub r10, r10, r7 @ cth_Q15[k - 1] * tmpAR + 16384 - @ (sth_Q15[k - 1] * ar_g_Q0[k - 1]) ssat r11, #16, r11, asr #15 ssat r5, #16, r10, asr #15 strh r11, [r0], #-2 @ Output: ar_g_Q0[k] subs r9, #1 bgt ORDER_COEF_LOOP strh r5, [r0] @ Output: ar_g_Q0[0] = tmpAR; strh r5, [r1], #2 @ Output: ar_f_Q0[n+1] = tmpAR; subs r4, #1 bne HALF_SUBFRAME_LOOP pop {r4-r11} bx lr