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https://sourceware.org/git/binutils-gdb.git
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fd67aa1129
Adds two new external authors to etc/update-copyright.py to cover bfd/ax_tls.m4, and adds gprofng to dirs handled automatically, then updates copyright messages as follows: 1) Update cgen/utils.scm emitted copyrights. 2) Run "etc/update-copyright.py --this-year" with an extra external author I haven't committed, 'Kalray SA.', to cover gas testsuite files (which should have their copyright message removed). 3) Build with --enable-maintainer-mode --enable-cgen-maint=yes. 4) Check out */po/*.pot which we don't update frequently.
495 lines
10 KiB
C
495 lines
10 KiB
C
/* LoongArch opcode support.
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Copyright (C) 2021-2024 Free Software Foundation, Inc.
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Contributed by Loongson Ltd.
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This file is part of the GNU opcodes library.
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This library is free software; you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation; either version 3, or (at your option)
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any later version.
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It is distributed in the hope that it will be useful, but WITHOUT
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ANY WARRANTY; without even the implied warranty of MERCHANTABILITY
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or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public
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License for more details.
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You should have received a copy of the GNU General Public License
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along with this program; see the file COPYING3. If not,
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see <http://www.gnu.org/licenses/>. */
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#include "sysdep.h"
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#include <stdbool.h>
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#include "opcode/loongarch.h"
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int
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is_unsigned (const char *c_str)
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{
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if (c_str[0] == '0' && (c_str[1] == 'x' || c_str[1] == 'X'))
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{
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c_str += 2;
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while (('a' <= *c_str && *c_str <= 'f')
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|| ('A' <= *c_str && *c_str <= 'F')
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|| ('0' <= *c_str && *c_str <= '9'))
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c_str++;
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}
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else if (*c_str == '\0')
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return 0;
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else
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while ('0' <= *c_str && *c_str <= '9')
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c_str++;
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return *c_str == '\0';
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}
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int
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is_signed (const char *c_str)
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{
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return *c_str == '-' ? is_unsigned (c_str + 1) : is_unsigned (c_str);
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}
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int
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loongarch_get_bit_field_width (const char *bit_field, char **end)
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{
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int width = 0;
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char has_specify = 0, *bit_field_1 = (char *) bit_field;
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if (bit_field_1 && *bit_field_1 != '\0')
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while (1)
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{
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strtol (bit_field_1, &bit_field_1, 10);
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if (*bit_field_1 != ':')
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break;
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bit_field_1++;
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width += strtol (bit_field_1, &bit_field_1, 10);
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has_specify = 1;
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if (*bit_field_1 != '|')
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break;
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bit_field_1++;
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}
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if (end)
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*end = bit_field_1;
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return has_specify ? width : -1;
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}
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int32_t
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loongarch_decode_imm (const char *bit_field, insn_t insn, int si)
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{
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int32_t ret = 0;
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uint32_t t;
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int len = 0, width, b_start;
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char *bit_field_1 = (char *) bit_field;
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while (1)
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{
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b_start = strtol (bit_field_1, &bit_field_1, 10);
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if (*bit_field_1 != ':')
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break;
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width = strtol (bit_field_1 + 1, &bit_field_1, 10);
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len += width;
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t = insn;
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t <<= sizeof (t) * 8 - width - b_start;
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t >>= sizeof (t) * 8 - width;
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ret <<= width;
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ret |= t;
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if (*bit_field_1 != '|')
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break;
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bit_field_1++;
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}
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if (*bit_field_1 == '<' && *(++bit_field_1) == '<')
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{
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width = atoi (bit_field_1 + 1);
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ret <<= width;
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len += width;
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}
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else if (*bit_field_1 == '+')
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ret += atoi (bit_field_1 + 1);
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/* Extend signed bit. */
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if (si)
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{
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uint32_t sign = 1u << (len - 1);
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ret = (ret ^ sign) - sign;
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}
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return ret;
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}
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static insn_t
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loongarch_encode_imm (const char *bit_field, int32_t imm)
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{
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char *bit_field_1 = (char *) bit_field;
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char *t = bit_field_1;
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int width, b_start;
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insn_t ret = 0;
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uint32_t i;
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uint32_t uimm = (uint32_t)imm;
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width = loongarch_get_bit_field_width (t, &t);
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if (width == -1)
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return ret;
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if (*t == '<' && *(++t) == '<')
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width += atoi (t + 1);
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else if (*t == '+')
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uimm -= atoi (t + 1);
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uimm = width ? (uimm << (sizeof (uimm) * 8 - width)) : 0;
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while (1)
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{
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b_start = strtol (bit_field_1, &bit_field_1, 10);
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if (*bit_field_1 != ':')
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break;
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width = strtol (bit_field_1 + 1, &bit_field_1, 10);
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i = uimm;
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i = width ? (i >> (sizeof (i) * 8 - width)) : 0;
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i = (b_start == 32) ? 0 : (i << b_start);
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ret |= i;
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uimm = (width == 32) ? 0 : (uimm << width);
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if (*bit_field_1 != '|')
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break;
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bit_field_1++;
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}
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return ret;
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}
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/* Parse such FORMAT
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""
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"u"
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"v0:5,r5:5,s10:10<<2"
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"r0:5,r5:5,r10:5,u15:2+1"
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"r,r,u0:5+32,u0:5+1"
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*/
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static int
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loongarch_parse_format (const char *format, char *esc1s, char *esc2s,
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const char **bit_fields)
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{
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size_t arg_num = 0;
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if (*format == '\0')
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goto end;
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while (1)
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{
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/* esc1 esc2
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for "[a-zA-Z][a-zA-Z]?" */
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if (('a' <= *format && *format <= 'z')
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|| ('A' <= *format && *format <= 'Z'))
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{
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*esc1s++ = *format++;
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if (('a' <= *format && *format <= 'z')
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|| ('A' <= *format && *format <= 'Z'))
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*esc2s++ = *format++;
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else
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*esc2s++ = '\0';
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}
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else
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return -1;
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arg_num++;
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if (MAX_ARG_NUM_PLUS_2 - 2 < arg_num)
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/* Need larger MAX_ARG_NUM_PLUS_2. */
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return -1;
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*bit_fields++ = format;
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if ('0' <= *format && *format <= '9')
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{
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/* For "[0-9]+:[0-9]+(\|[0-9]+:[0-9]+)*". */
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while (1)
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{
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while ('0' <= *format && *format <= '9')
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format++;
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if (*format != ':')
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return -1;
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format++;
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if (!('0' <= *format && *format <= '9'))
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return -1;
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while ('0' <= *format && *format <= '9')
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format++;
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if (*format != '|')
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break;
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format++;
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}
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/* For "((\+|<<)[1-9][0-9]*)?". */
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do
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{
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if (*format == '+')
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format++;
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else if (format[0] == '<' && format[1] == '<')
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format += 2;
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else
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break;
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if (!('1' <= *format && *format <= '9'))
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return -1;
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while ('0' <= *format && *format <= '9')
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format++;
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}
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while (0);
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}
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if (*format == ',')
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format++;
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else if (*format == '\0')
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break;
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else
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return -1;
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}
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end:
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*esc1s = '\0';
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return 0;
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}
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size_t
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loongarch_split_args_by_comma (char *args, const char *arg_strs[])
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{
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size_t num = 0;
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if (*args)
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{
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bool inquote = false;
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arg_strs[num++] = args;
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for (; *args; args++)
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if (*args == '"')
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inquote = !inquote;
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else if (*args == ',' && !inquote)
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{
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if (MAX_ARG_NUM_PLUS_2 - 1 == num)
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goto out;
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*args = '\0';
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arg_strs[num++] = args + 1;
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}
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if (*(args - 1) == '"' && *arg_strs[num - 1] == '"')
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{
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*(args - 1) = '\0';
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arg_strs[num - 1] += 1;
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}
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}
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out:
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arg_strs[num] = NULL;
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return num;
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}
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char *
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loongarch_cat_splited_strs (const char *arg_strs[])
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{
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char *ret;
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size_t n, l;
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for (l = 0, n = 0; arg_strs[n]; n++)
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l += strlen (arg_strs[n]);
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ret = malloc (l + n + 1);
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if (!ret)
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return ret;
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ret[0] = '\0';
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if (0 < n)
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strcat (ret, arg_strs[0]);
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for (l = 1; l < n; l++)
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strcat (ret, ","), strcat (ret, arg_strs[l]);
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return ret;
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}
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insn_t
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loongarch_foreach_args (const char *format, const char *arg_strs[],
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int32_t (*helper) (char esc1, char esc2,
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const char *bit_field,
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const char *arg, void *context),
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void *context)
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{
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char esc1s[MAX_ARG_NUM_PLUS_2 - 1], esc2s[MAX_ARG_NUM_PLUS_2 - 1];
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const char *bit_fields[MAX_ARG_NUM_PLUS_2 - 1];
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size_t i;
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insn_t ret = 0;
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int ok;
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ok = loongarch_parse_format (format, esc1s, esc2s, bit_fields) == 0;
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/* Make sure the num of actual args is equal to the num of escape. */
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for (i = 0; esc1s[i] && arg_strs[i]; i++)
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;
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ok = ok && !esc1s[i] && !arg_strs[i];
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if (ok && helper)
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{
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for (i = 0; arg_strs[i]; i++)
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ret |= loongarch_encode_imm (bit_fields[i],
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helper (esc1s[i], esc2s[i],
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bit_fields[i], arg_strs[i],
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context));
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ret |= helper ('\0', '\0', NULL, NULL, context);
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}
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return ret;
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}
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int
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loongarch_check_format (const char *format)
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{
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char esc1s[MAX_ARG_NUM_PLUS_2 - 1], esc2s[MAX_ARG_NUM_PLUS_2 - 1];
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const char *bit_fields[MAX_ARG_NUM_PLUS_2 - 1];
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if (!format)
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return -1;
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return loongarch_parse_format (format, esc1s, esc2s, bit_fields);
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}
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int
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loongarch_check_macro (const char *format, const char *macro)
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{
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int num_of_args;
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char esc1s[MAX_ARG_NUM_PLUS_2 - 1], esc2s[MAX_ARG_NUM_PLUS_2 - 1];
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const char *bit_fields[MAX_ARG_NUM_PLUS_2 - 1];
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if (!format || !macro
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|| loongarch_parse_format (format, esc1s, esc2s, bit_fields) != 0)
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return -1;
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for (num_of_args = 0; esc1s[num_of_args]; num_of_args++)
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;
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for (; macro[0]; macro++)
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if (macro[0] == '%')
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{
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macro++;
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if ('1' <= macro[0] && macro[0] <= '9')
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{
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if (num_of_args < macro[0] - '0')
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/* Out of args num. */
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return -1;
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}
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else if (macro[0] == 'f')
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;
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else if (macro[0] == '%')
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;
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else
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return -1;
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}
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return 0;
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}
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static const char *
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I (char esc_ch1 ATTRIBUTE_UNUSED, char esc_ch2 ATTRIBUTE_UNUSED,
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const char *c_str)
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{
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return c_str;
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}
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char *
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loongarch_expand_macro_with_format_map (
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const char *format, const char *macro, const char *const arg_strs[],
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const char *(*map) (char esc1, char esc2, const char *arg),
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char *(*helper) (const char *const arg_strs[], void *context), void *context,
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size_t len_str)
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{
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char esc1s[MAX_ARG_NUM_PLUS_2 - 1], esc2s[MAX_ARG_NUM_PLUS_2 - 1];
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const char *bit_fields[MAX_ARG_NUM_PLUS_2 - 1];
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const char *src;
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char *dest;
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/* The expanded macro character length does not exceed 1000, and number of
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label is 6 at most in the expanded macro. The len_str is the length of
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str. */
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char *buffer =(char *) malloc(1024 + 6 * len_str);
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if (format)
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loongarch_parse_format (format, esc1s, esc2s, bit_fields);
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src = macro;
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dest = buffer;
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while (*src)
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if (*src == '%')
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{
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src++;
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if ('1' <= *src && *src <= '9')
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{
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size_t i = *src - '1';
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const char *t = map (esc1s[i], esc2s[i], arg_strs[i]);
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while (*t)
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*dest++ = *t++;
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}
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else if (*src == '%')
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*dest++ = '%';
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else if (*src == 'f' && helper)
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{
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char *b, *t;
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t = b = (*helper) (arg_strs, context);
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if (b)
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{
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while (*t)
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*dest++ = *t++;
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free (b);
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}
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}
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src++;
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}
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else
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*dest++ = *src++;
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*dest = '\0';
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return buffer;
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}
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char *
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loongarch_expand_macro (const char *macro, const char *const arg_strs[],
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char *(*helper) (const char *const arg_strs[],
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void *context),
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void *context, size_t len_str)
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{
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return loongarch_expand_macro_with_format_map (NULL, macro, arg_strs, I,
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helper, context, len_str);
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}
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size_t
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loongarch_bits_imm_needed (int64_t imm, int si)
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{
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size_t ret;
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if (si)
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{
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if (imm < 0)
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{
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uint64_t uimm = (uint64_t) imm;
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uint64_t uimax = UINT64_C (1) << 63;
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for (ret = 0; (uimm & uimax) != 0; uimm <<= 1, ret++)
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;
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ret = 64 - ret + 1;
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}
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else
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ret = loongarch_bits_imm_needed (imm, 0) + 1;
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}
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else
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{
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uint64_t t = imm;
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for (ret = 0; t; t >>= 1, ret++)
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;
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}
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return ret;
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}
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void
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loongarch_eliminate_adjacent_repeat_char (char *dest, char c)
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{
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if (c == '\0')
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return;
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char *src = dest;
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while (*dest)
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{
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while (src[0] == c && src[0] == src[1])
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src++;
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*dest++ = *src++;
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}
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}
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