michael@0: /*********************************************************************** michael@0: Copyright (c) 2006-2011, Skype Limited. All rights reserved. michael@0: Copyright (c) 2013 Parrot michael@0: Redistribution and use in source and binary forms, with or without michael@0: modification, are permitted provided that the following conditions michael@0: are met: michael@0: - Redistributions of source code must retain the above copyright notice, michael@0: this list of conditions and the following disclaimer. michael@0: - Redistributions in binary form must reproduce the above copyright michael@0: notice, this list of conditions and the following disclaimer in the michael@0: documentation and/or other materials provided with the distribution. michael@0: - Neither the name of Internet Society, IETF or IETF Trust, nor the michael@0: names of specific contributors, may be used to endorse or promote michael@0: products derived from this software without specific prior written michael@0: permission. michael@0: THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" michael@0: AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE michael@0: IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE michael@0: ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE michael@0: LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR michael@0: CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF michael@0: SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS michael@0: INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN michael@0: CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) michael@0: ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE michael@0: POSSIBILITY OF SUCH DAMAGE. michael@0: ***********************************************************************/ michael@0: michael@0: #ifndef SILK_MACROS_ARMv5E_H michael@0: #define SILK_MACROS_ARMv5E_H michael@0: michael@0: /* (a32 * (opus_int32)((opus_int16)(b32))) >> 16 output have to be 32bit int */ michael@0: #undef silk_SMULWB michael@0: static OPUS_INLINE opus_int32 silk_SMULWB_armv5e(opus_int32 a, opus_int16 b) michael@0: { michael@0: int res; michael@0: __asm__( michael@0: "#silk_SMULWB\n\t" michael@0: "smulwb %0, %1, %2\n\t" michael@0: : "=r"(res) michael@0: : "r"(a), "r"(b) michael@0: ); michael@0: return res; michael@0: } michael@0: #define silk_SMULWB(a, b) (silk_SMULWB_armv5e(a, b)) michael@0: michael@0: /* a32 + (b32 * (opus_int32)((opus_int16)(c32))) >> 16 output have to be 32bit int */ michael@0: #undef silk_SMLAWB michael@0: static OPUS_INLINE opus_int32 silk_SMLAWB_armv5e(opus_int32 a, opus_int32 b, michael@0: opus_int16 c) michael@0: { michael@0: int res; michael@0: __asm__( michael@0: "#silk_SMLAWB\n\t" michael@0: "smlawb %0, %1, %2, %3\n\t" michael@0: : "=r"(res) michael@0: : "r"(b), "r"(c), "r"(a) michael@0: ); michael@0: return res; michael@0: } michael@0: #define silk_SMLAWB(a, b, c) (silk_SMLAWB_armv5e(a, b, c)) michael@0: michael@0: /* (a32 * (b32 >> 16)) >> 16 */ michael@0: #undef silk_SMULWT michael@0: static OPUS_INLINE opus_int32 silk_SMULWT_armv5e(opus_int32 a, opus_int32 b) michael@0: { michael@0: int res; michael@0: __asm__( michael@0: "#silk_SMULWT\n\t" michael@0: "smulwt %0, %1, %2\n\t" michael@0: : "=r"(res) michael@0: : "r"(a), "r"(b) michael@0: ); michael@0: return res; michael@0: } michael@0: #define silk_SMULWT(a, b) (silk_SMULWT_armv5e(a, b)) michael@0: michael@0: /* a32 + (b32 * (c32 >> 16)) >> 16 */ michael@0: #undef silk_SMLAWT michael@0: static OPUS_INLINE opus_int32 silk_SMLAWT_armv5e(opus_int32 a, opus_int32 b, michael@0: opus_int32 c) michael@0: { michael@0: int res; michael@0: __asm__( michael@0: "#silk_SMLAWT\n\t" michael@0: "smlawt %0, %1, %2, %3\n\t" michael@0: : "=r"(res) michael@0: : "r"(b), "r"(c), "r"(a) michael@0: ); michael@0: return res; michael@0: } michael@0: #define silk_SMLAWT(a, b, c) (silk_SMLAWT_armv5e(a, b, c)) michael@0: michael@0: /* (opus_int32)((opus_int16)(a3))) * (opus_int32)((opus_int16)(b32)) output have to be 32bit int */ michael@0: #undef silk_SMULBB michael@0: static OPUS_INLINE opus_int32 silk_SMULBB_armv5e(opus_int32 a, opus_int32 b) michael@0: { michael@0: int res; michael@0: __asm__( michael@0: "#silk_SMULBB\n\t" michael@0: "smulbb %0, %1, %2\n\t" michael@0: : "=r"(res) michael@0: : "%r"(a), "r"(b) michael@0: ); michael@0: return res; michael@0: } michael@0: #define silk_SMULBB(a, b) (silk_SMULBB_armv5e(a, b)) michael@0: michael@0: /* a32 + (opus_int32)((opus_int16)(b32)) * (opus_int32)((opus_int16)(c32)) output have to be 32bit int */ michael@0: #undef silk_SMLABB michael@0: static OPUS_INLINE opus_int32 silk_SMLABB_armv5e(opus_int32 a, opus_int32 b, michael@0: opus_int32 c) michael@0: { michael@0: int res; michael@0: __asm__( michael@0: "#silk_SMLABB\n\t" michael@0: "smlabb %0, %1, %2, %3\n\t" michael@0: : "=r"(res) michael@0: : "%r"(b), "r"(c), "r"(a) michael@0: ); michael@0: return res; michael@0: } michael@0: #define silk_SMLABB(a, b, c) (silk_SMLABB_armv5e(a, b, c)) michael@0: michael@0: /* (opus_int32)((opus_int16)(a32)) * (b32 >> 16) */ michael@0: #undef silk_SMULBT michael@0: static OPUS_INLINE opus_int32 silk_SMULBT_armv5e(opus_int32 a, opus_int32 b) michael@0: { michael@0: int res; michael@0: __asm__( michael@0: "#silk_SMULBT\n\t" michael@0: "smulbt %0, %1, %2\n\t" michael@0: : "=r"(res) michael@0: : "r"(a), "r"(b) michael@0: ); michael@0: return res; michael@0: } michael@0: #define silk_SMULBT(a, b) (silk_SMULBT_armv5e(a, b)) michael@0: michael@0: /* a32 + (opus_int32)((opus_int16)(b32)) * (c32 >> 16) */ michael@0: #undef silk_SMLABT michael@0: static OPUS_INLINE opus_int32 silk_SMLABT_armv5e(opus_int32 a, opus_int32 b, michael@0: opus_int32 c) michael@0: { michael@0: int res; michael@0: __asm__( michael@0: "#silk_SMLABT\n\t" michael@0: "smlabt %0, %1, %2, %3\n\t" michael@0: : "=r"(res) michael@0: : "r"(b), "r"(c), "r"(a) michael@0: ); michael@0: return res; michael@0: } michael@0: #define silk_SMLABT(a, b, c) (silk_SMLABT_armv5e(a, b, c)) michael@0: michael@0: /* add/subtract with output saturated */ michael@0: #undef silk_ADD_SAT32 michael@0: static OPUS_INLINE opus_int32 silk_ADD_SAT32_armv5e(opus_int32 a, opus_int32 b) michael@0: { michael@0: int res; michael@0: __asm__( michael@0: "#silk_ADD_SAT32\n\t" michael@0: "qadd %0, %1, %2\n\t" michael@0: : "=r"(res) michael@0: : "%r"(a), "r"(b) michael@0: ); michael@0: return res; michael@0: } michael@0: #define silk_ADD_SAT32(a, b) (silk_ADD_SAT32_armv5e(a, b)) michael@0: michael@0: #undef silk_SUB_SAT32 michael@0: static OPUS_INLINE opus_int32 silk_SUB_SAT32_armv5e(opus_int32 a, opus_int32 b) michael@0: { michael@0: int res; michael@0: __asm__( michael@0: "#silk_SUB_SAT32\n\t" michael@0: "qsub %0, %1, %2\n\t" michael@0: : "=r"(res) michael@0: : "r"(a), "r"(b) michael@0: ); michael@0: return res; michael@0: } michael@0: #define silk_SUB_SAT32(a, b) (silk_SUB_SAT32_armv5e(a, b)) michael@0: michael@0: #undef silk_CLZ16 michael@0: static OPUS_INLINE opus_int32 silk_CLZ16_armv5(opus_int16 in16) michael@0: { michael@0: int res; michael@0: __asm__( michael@0: "#silk_CLZ16\n\t" michael@0: "clz %0, %1;\n" michael@0: : "=r"(res) michael@0: : "r"(in16<<16|0x8000) michael@0: ); michael@0: return res; michael@0: } michael@0: #define silk_CLZ16(in16) (silk_CLZ16_armv5(in16)) michael@0: michael@0: #undef silk_CLZ32 michael@0: static OPUS_INLINE opus_int32 silk_CLZ32_armv5(opus_int32 in32) michael@0: { michael@0: int res; michael@0: __asm__( michael@0: "#silk_CLZ32\n\t" michael@0: "clz %0, %1\n\t" michael@0: : "=r"(res) michael@0: : "r"(in32) michael@0: ); michael@0: return res; michael@0: } michael@0: #define silk_CLZ32(in32) (silk_CLZ32_armv5(in32)) michael@0: michael@0: #endif /* SILK_MACROS_ARMv5E_H */