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      1 /*	$NetBSD: sljitNativeSPARC_32.c,v 1.4 2019/01/20 23:14:16 alnsn Exp $	*/
      2 
      3 /*
      4  *    Stack-less Just-In-Time compiler
      5  *
      6  *    Copyright Zoltan Herczeg (hzmester (at) freemail.hu). All rights reserved.
      7  *
      8  * Redistribution and use in source and binary forms, with or without modification, are
      9  * permitted provided that the following conditions are met:
     10  *
     11  *   1. Redistributions of source code must retain the above copyright notice, this list of
     12  *      conditions and the following disclaimer.
     13  *
     14  *   2. Redistributions in binary form must reproduce the above copyright notice, this list
     15  *      of conditions and the following disclaimer in the documentation and/or other materials
     16  *      provided with the distribution.
     17  *
     18  * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDER(S) AND CONTRIBUTORS ``AS IS'' AND ANY
     19  * EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
     20  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT
     21  * SHALL THE COPYRIGHT HOLDER(S) OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT,
     22  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED
     23  * TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR
     24  * BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     25  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN
     26  * ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
     27  */
     28 
     29 static sljit_s32 load_immediate(struct sljit_compiler *compiler, sljit_s32 dst, sljit_sw imm)
     30 {
     31 	if (imm <= SIMM_MAX && imm >= SIMM_MIN)
     32 		return push_inst(compiler, OR | D(dst) | S1(0) | IMM(imm), DR(dst));
     33 
     34 	FAIL_IF(push_inst(compiler, SETHI | D(dst) | ((imm >> 10) & 0x3fffff), DR(dst)));
     35 	return (imm & 0x3ff) ? push_inst(compiler, OR | D(dst) | S1(dst) | IMM_ARG | (imm & 0x3ff), DR(dst)) : SLJIT_SUCCESS;
     36 }
     37 
     38 #define ARG2(flags, src2) ((flags & SRC2_IMM) ? IMM(src2) : S2(src2))
     39 
     40 static SLJIT_INLINE sljit_s32 emit_single_op(struct sljit_compiler *compiler, sljit_s32 op, sljit_s32 flags,
     41 	sljit_s32 dst, sljit_s32 src1, sljit_sw src2)
     42 {
     43 	SLJIT_COMPILE_ASSERT(ICC_IS_SET == SET_FLAGS, icc_is_set_and_set_flags_must_be_the_same);
     44 
     45 	switch (op) {
     46 	case SLJIT_MOV:
     47 	case SLJIT_MOV_U32:
     48 	case SLJIT_MOV_S32:
     49 	case SLJIT_MOV_P:
     50 		SLJIT_ASSERT(src1 == TMP_REG1 && !(flags & SRC2_IMM));
     51 		if (dst != src2)
     52 			return push_inst(compiler, OR | D(dst) | S1(0) | S2(src2), DR(dst));
     53 		return SLJIT_SUCCESS;
     54 
     55 	case SLJIT_MOV_U8:
     56 	case SLJIT_MOV_S8:
     57 		SLJIT_ASSERT(src1 == TMP_REG1 && !(flags & SRC2_IMM));
     58 		if ((flags & (REG_DEST | REG2_SOURCE)) == (REG_DEST | REG2_SOURCE)) {
     59 			if (op == SLJIT_MOV_U8)
     60 				return push_inst(compiler, AND | D(dst) | S1(src2) | IMM(0xff), DR(dst));
     61 			FAIL_IF(push_inst(compiler, SLL | D(dst) | S1(src2) | IMM(24), DR(dst)));
     62 			return push_inst(compiler, SRA | D(dst) | S1(dst) | IMM(24), DR(dst));
     63 		}
     64 		else if (dst != src2)
     65 			SLJIT_UNREACHABLE();
     66 		return SLJIT_SUCCESS;
     67 
     68 	case SLJIT_MOV_U16:
     69 	case SLJIT_MOV_S16:
     70 		SLJIT_ASSERT(src1 == TMP_REG1 && !(flags & SRC2_IMM));
     71 		if ((flags & (REG_DEST | REG2_SOURCE)) == (REG_DEST | REG2_SOURCE)) {
     72 			FAIL_IF(push_inst(compiler, SLL | D(dst) | S1(src2) | IMM(16), DR(dst)));
     73 			return push_inst(compiler, (op == SLJIT_MOV_S16 ? SRA : SRL) | D(dst) | S1(dst) | IMM(16), DR(dst));
     74 		}
     75 		else if (dst != src2)
     76 			SLJIT_UNREACHABLE();
     77 		return SLJIT_SUCCESS;
     78 
     79 	case SLJIT_NOT:
     80 		SLJIT_ASSERT(src1 == TMP_REG1 && !(flags & SRC2_IMM));
     81 		return push_inst(compiler, XNOR | (flags & SET_FLAGS) | D(dst) | S1(0) | S2(src2), DR(dst) | (flags & SET_FLAGS));
     82 
     83 	case SLJIT_CLZ:
     84 		SLJIT_ASSERT(src1 == TMP_REG1 && !(flags & SRC2_IMM));
     85 		/* sparc 32 does not support SLJIT_KEEP_FLAGS. Not sure I can fix this. */
     86 		FAIL_IF(push_inst(compiler, SUB | SET_FLAGS | D(0) | S1(src2) | S2(0), SET_FLAGS));
     87 		FAIL_IF(push_inst(compiler, OR | D(TMP_REG1) | S1(0) | S2(src2), DR(TMP_REG1)));
     88 		FAIL_IF(push_inst(compiler, BICC | DA(0x1) | (7 & DISP_MASK), UNMOVABLE_INS));
     89 		FAIL_IF(push_inst(compiler, OR | (flags & SET_FLAGS) | D(dst) | S1(0) | IMM(32), UNMOVABLE_INS | (flags & SET_FLAGS)));
     90 		FAIL_IF(push_inst(compiler, OR | D(dst) | S1(0) | IMM(-1), DR(dst)));
     91 
     92 		/* Loop. */
     93 		FAIL_IF(push_inst(compiler, SUB | SET_FLAGS | D(0) | S1(TMP_REG1) | S2(0), SET_FLAGS));
     94 		FAIL_IF(push_inst(compiler, SLL | D(TMP_REG1) | S1(TMP_REG1) | IMM(1), DR(TMP_REG1)));
     95 		FAIL_IF(push_inst(compiler, BICC | DA(0xe) | (-2 & DISP_MASK), UNMOVABLE_INS));
     96 		return push_inst(compiler, ADD | (flags & SET_FLAGS) | D(dst) | S1(dst) | IMM(1), UNMOVABLE_INS | (flags & SET_FLAGS));
     97 
     98 	case SLJIT_ADD:
     99 		return push_inst(compiler, ADD | (flags & SET_FLAGS) | D(dst) | S1(src1) | ARG2(flags, src2), DR(dst) | (flags & SET_FLAGS));
    100 
    101 	case SLJIT_ADDC:
    102 		return push_inst(compiler, ADDC | (flags & SET_FLAGS) | D(dst) | S1(src1) | ARG2(flags, src2), DR(dst) | (flags & SET_FLAGS));
    103 
    104 	case SLJIT_SUB:
    105 		return push_inst(compiler, SUB | (flags & SET_FLAGS) | D(dst) | S1(src1) | ARG2(flags, src2), DR(dst) | (flags & SET_FLAGS));
    106 
    107 	case SLJIT_SUBC:
    108 		return push_inst(compiler, SUBC | (flags & SET_FLAGS) | D(dst) | S1(src1) | ARG2(flags, src2), DR(dst) | (flags & SET_FLAGS));
    109 
    110 	case SLJIT_MUL:
    111 		FAIL_IF(push_inst(compiler, SMUL | D(dst) | S1(src1) | ARG2(flags, src2), DR(dst)));
    112 		if (!(flags & SET_FLAGS))
    113 			return SLJIT_SUCCESS;
    114 		FAIL_IF(push_inst(compiler, SRA | D(TMP_REG1) | S1(dst) | IMM(31), DR(TMP_REG1)));
    115 		FAIL_IF(push_inst(compiler, RDY | D(TMP_LINK), DR(TMP_LINK)));
    116 		return push_inst(compiler, SUB | SET_FLAGS | D(0) | S1(TMP_REG1) | S2(TMP_LINK), MOVABLE_INS | SET_FLAGS);
    117 
    118 	case SLJIT_AND:
    119 		return push_inst(compiler, AND | (flags & SET_FLAGS) | D(dst) | S1(src1) | ARG2(flags, src2), DR(dst) | (flags & SET_FLAGS));
    120 
    121 	case SLJIT_OR:
    122 		return push_inst(compiler, OR | (flags & SET_FLAGS) | D(dst) | S1(src1) | ARG2(flags, src2), DR(dst) | (flags & SET_FLAGS));
    123 
    124 	case SLJIT_XOR:
    125 		return push_inst(compiler, XOR | (flags & SET_FLAGS) | D(dst) | S1(src1) | ARG2(flags, src2), DR(dst) | (flags & SET_FLAGS));
    126 
    127 	case SLJIT_SHL:
    128 		FAIL_IF(push_inst(compiler, SLL | D(dst) | S1(src1) | ARG2(flags, src2), DR(dst)));
    129 		return !(flags & SET_FLAGS) ? SLJIT_SUCCESS : push_inst(compiler, SUB | SET_FLAGS | D(0) | S1(dst) | S2(0), SET_FLAGS);
    130 
    131 	case SLJIT_LSHR:
    132 		FAIL_IF(push_inst(compiler, SRL | D(dst) | S1(src1) | ARG2(flags, src2), DR(dst)));
    133 		return !(flags & SET_FLAGS) ? SLJIT_SUCCESS : push_inst(compiler, SUB | SET_FLAGS | D(0) | S1(dst) | S2(0), SET_FLAGS);
    134 
    135 	case SLJIT_ASHR:
    136 		FAIL_IF(push_inst(compiler, SRA | D(dst) | S1(src1) | ARG2(flags, src2), DR(dst)));
    137 		return !(flags & SET_FLAGS) ? SLJIT_SUCCESS : push_inst(compiler, SUB | SET_FLAGS | D(0) | S1(dst) | S2(0), SET_FLAGS);
    138 	}
    139 
    140 	SLJIT_UNREACHABLE();
    141 	return SLJIT_SUCCESS;
    142 }
    143 
    144 static SLJIT_INLINE sljit_s32 emit_const(struct sljit_compiler *compiler, sljit_s32 dst, sljit_sw init_value)
    145 {
    146 	FAIL_IF(push_inst(compiler, SETHI | D(dst) | ((init_value >> 10) & 0x3fffff), DR(dst)));
    147 	return push_inst(compiler, OR | D(dst) | S1(dst) | IMM_ARG | (init_value & 0x3ff), DR(dst));
    148 }
    149 
    150 SLJIT_API_FUNC_ATTRIBUTE void sljit_set_jump_addr(sljit_uw addr, sljit_uw new_target, sljit_sw executable_offset)
    151 {
    152 	sljit_ins *inst = (sljit_ins *)addr;
    153 
    154 	inst[0] = (inst[0] & 0xffc00000) | ((new_target >> 10) & 0x3fffff);
    155 	inst[1] = (inst[1] & 0xfffffc00) | (new_target & 0x3ff);
    156 	inst = (sljit_ins *)SLJIT_ADD_EXEC_OFFSET(inst, executable_offset);
    157 	SLJIT_CACHE_FLUSH(inst, inst + 2);
    158 }
    159 
    160 SLJIT_API_FUNC_ATTRIBUTE void sljit_set_const(sljit_uw addr, sljit_sw new_constant, sljit_sw executable_offset)
    161 {
    162 	sljit_ins *inst = (sljit_ins *)addr;
    163 
    164 	inst[0] = (inst[0] & 0xffc00000) | ((new_constant >> 10) & 0x3fffff);
    165 	inst[1] = (inst[1] & 0xfffffc00) | (new_constant & 0x3ff);
    166 	inst = (sljit_ins *)SLJIT_ADD_EXEC_OFFSET(inst, executable_offset);
    167 	SLJIT_CACHE_FLUSH(inst, inst + 2);
    168 }
    169