📄 inffas86.c
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/* inffas86.c is a hand tuned assembler version of * * inffast.c -- fast decoding * Copyright (C) 1995-2003 Mark Adler * For conditions of distribution and use, see copyright notice in zlib.h * * Copyright (C) 2003 Chris Anderson <christop@charm.net> * Please use the copyright conditions above. * * Dec-29-2003 -- I added AMD64 inflate asm support. This version is also * slightly quicker on x86 systems because, instead of using rep movsb to copy * data, it uses rep movsw, which moves data in 2-byte chunks instead of single * bytes. I've tested the AMD64 code on a Fedora Core 1 + the x86_64 updates * from http://fedora.linux.duke.edu/fc1_x86_64 * which is running on an Athlon 64 3000+ / Gigabyte GA-K8VT800M system with * 1GB ram. The 64-bit version is about 4% faster than the 32-bit version, * when decompressing mozilla-source-1.3.tar.gz. * * Mar-13-2003 -- Most of this is derived from inffast.S which is derived from * the gcc -S output of zlib-1.2.0/inffast.c. Zlib-1.2.0 is in beta release at * the moment. I have successfully compiled and tested this code with gcc2.96, * gcc3.2, icc5.0, msvc6.0. It is very close to the speed of inffast.S * compiled with gcc -DNO_MMX, but inffast.S is still faster on the P3 with MMX * enabled. I will attempt to merge the MMX code into this version. Newer * versions of this and inffast.S can be found at * http://www.eetbeetee.com/zlib/ and http://www.charm.net/~christop/zlib/ */#include "zutil.h"#include "inftrees.h"#include "inflate.h"#include "inffast.h"/* Mark Adler's comments from inffast.c: *//* Decode literal, length, and distance codes and write out the resulting literal and match bytes until either not enough input or output is available, an end-of-block is encountered, or a data error is encountered. When large enough input and output buffers are supplied to inflate(), for example, a 16K input buffer and a 64K output buffer, more than 95% of the inflate execution time is spent in this routine. Entry assumptions: state->mode == LEN strm->avail_in >= 6 strm->avail_out >= 258 start >= strm->avail_out state->bits < 8 On return, state->mode is one of: LEN -- ran out of enough output space or enough available input TYPE -- reached end of block code, inflate() to interpret next block BAD -- error in block data Notes: - The maximum input bits used by a length/distance pair is 15 bits for the length code, 5 bits for the length extra, 15 bits for the distance code, and 13 bits for the distance extra. This totals 48 bits, or six bytes. Therefore if strm->avail_in >= 6, then there is enough input to avoid checking for available input while decoding. - The maximum bytes that a single length/distance pair can output is 258 bytes, which is the maximum length that can be coded. inflate_fast() requires strm->avail_out >= 258 for each loop to avoid checking for output space. */void inflate_fast(strm, start)z_streamp strm;unsigned start; /* inflate()'s starting value for strm->avail_out */{ struct inflate_state FAR *state; struct inffast_ar {/* 64 32 x86 x86_64 *//* ar offset register *//* 0 0 */ void *esp; /* esp save *//* 8 4 */ void *ebp; /* ebp save *//* 16 8 */ unsigned char FAR *in; /* esi rsi local strm->next_in *//* 24 12 */ unsigned char FAR *last; /* r9 while in < last *//* 32 16 */ unsigned char FAR *out; /* edi rdi local strm->next_out *//* 40 20 */ unsigned char FAR *beg; /* inflate()'s init next_out *//* 48 24 */ unsigned char FAR *end; /* r10 while out < end *//* 56 28 */ unsigned char FAR *window;/* size of window, wsize!=0 *//* 64 32 */ code const FAR *lcode; /* ebp rbp local strm->lencode *//* 72 36 */ code const FAR *dcode; /* r11 local strm->distcode *//* 80 40 */ unsigned long hold; /* edx rdx local strm->hold *//* 88 44 */ unsigned bits; /* ebx rbx local strm->bits *//* 92 48 */ unsigned wsize; /* window size *//* 96 52 */ unsigned write; /* window write index *//*100 56 */ unsigned lmask; /* r12 mask for lcode *//*104 60 */ unsigned dmask; /* r13 mask for dcode *//*108 64 */ unsigned len; /* r14 match length *//*112 68 */ unsigned dist; /* r15 match distance *//*116 72 */ unsigned status; /* set when state chng*/ } ar;#if defined( __GNUC__ ) && defined( __amd64__ ) && ! defined( __i386 )#define PAD_AVAIL_IN 6#define PAD_AVAIL_OUT 258#else#define PAD_AVAIL_IN 5#define PAD_AVAIL_OUT 257#endif /* copy state to local variables */ state = (struct inflate_state FAR *)strm->state; ar.in = strm->next_in; ar.last = ar.in + (strm->avail_in - PAD_AVAIL_IN); ar.out = strm->next_out; ar.beg = ar.out - (start - strm->avail_out); ar.end = ar.out + (strm->avail_out - PAD_AVAIL_OUT); ar.wsize = state->wsize; ar.write = state->write; ar.window = state->window; ar.hold = state->hold; ar.bits = state->bits; ar.lcode = state->lencode; ar.dcode = state->distcode; ar.lmask = (1U << state->lenbits) - 1; ar.dmask = (1U << state->distbits) - 1; /* decode literals and length/distances until end-of-block or not enough input data or output space */ /* align in on 1/2 hold size boundary */ while (((unsigned long)(void *)ar.in & (sizeof(ar.hold) / 2 - 1)) != 0) { ar.hold += (unsigned long)*ar.in++ << ar.bits; ar.bits += 8; }#if defined( __GNUC__ ) && defined( __amd64__ ) && ! defined( __i386 ) __asm__ __volatile__ (" leaq %0, %%rax\n"" movq %%rbp, 8(%%rax)\n" /* save regs rbp and rsp */" movq %%rsp, (%%rax)\n"" movq %%rax, %%rsp\n" /* make rsp point to &ar */" movq 16(%%rsp), %%rsi\n" /* rsi = in */" movq 32(%%rsp), %%rdi\n" /* rdi = out */" movq 24(%%rsp), %%r9\n" /* r9 = last */" movq 48(%%rsp), %%r10\n" /* r10 = end */" movq 64(%%rsp), %%rbp\n" /* rbp = lcode */" movq 72(%%rsp), %%r11\n" /* r11 = dcode */" movq 80(%%rsp), %%rdx\n" /* rdx = hold */" movl 88(%%rsp), %%ebx\n" /* ebx = bits */" movl 100(%%rsp), %%r12d\n" /* r12d = lmask */" movl 104(%%rsp), %%r13d\n" /* r13d = dmask */ /* r14d = len */ /* r15d = dist */" cld\n"" cmpq %%rdi, %%r10\n"" je .L_one_time\n" /* if only one decode left */" cmpq %%rsi, %%r9\n"" je .L_one_time\n"" jmp .L_do_loop\n"".L_one_time:\n"" movq %%r12, %%r8\n" /* r8 = lmask */" cmpb $32, %%bl\n"" ja .L_get_length_code_one_time\n"" lodsl\n" /* eax = *(uint *)in++ */" movb %%bl, %%cl\n" /* cl = bits, needs it for shifting */" addb $32, %%bl\n" /* bits += 32 */" shlq %%cl, %%rax\n"" orq %%rax, %%rdx\n" /* hold |= *((uint *)in)++ << bits */" jmp .L_get_length_code_one_time\n"".align 32,0x90\n"".L_while_test:\n"" cmpq %%rdi, %%r10\n"" jbe .L_break_loop\n"" cmpq %%rsi, %%r9\n"" jbe .L_break_loop\n"".L_do_loop:\n"" movq %%r12, %%r8\n" /* r8 = lmask */" cmpb $32, %%bl\n"" ja .L_get_length_code\n" /* if (32 < bits) */" lodsl\n" /* eax = *(uint *)in++ */" movb %%bl, %%cl\n" /* cl = bits, needs it for shifting */" addb $32, %%bl\n" /* bits += 32 */" shlq %%cl, %%rax\n"" orq %%rax, %%rdx\n" /* hold |= *((uint *)in)++ << bits */".L_get_length_code:\n"" andq %%rdx, %%r8\n" /* r8 &= hold */" movl (%%rbp,%%r8,4), %%eax\n" /* eax = lcode[hold & lmask] */" movb %%ah, %%cl\n" /* cl = this.bits */" subb %%ah, %%bl\n" /* bits -= this.bits */" shrq %%cl, %%rdx\n" /* hold >>= this.bits */" testb %%al, %%al\n"" jnz .L_test_for_length_base\n" /* if (op != 0) 45.7% */" movq %%r12, %%r8\n" /* r8 = lmask */" shrl $16, %%eax\n" /* output this.val char */" stosb\n"".L_get_length_code_one_time:\n"" andq %%rdx, %%r8\n" /* r8 &= hold */" movl (%%rbp,%%r8,4), %%eax\n" /* eax = lcode[hold & lmask] */".L_dolen:\n"" movb %%ah, %%cl\n" /* cl = this.bits */" subb %%ah, %%bl\n" /* bits -= this.bits */" shrq %%cl, %%rdx\n" /* hold >>= this.bits */" testb %%al, %%al\n"" jnz .L_test_for_length_base\n" /* if (op != 0) 45.7% */" shrl $16, %%eax\n" /* output this.val char */" stosb\n"" jmp .L_while_test\n"".align 32,0x90\n"".L_test_for_length_base:\n"" movl %%eax, %%r14d\n" /* len = this */" shrl $16, %%r14d\n" /* len = this.val */" movb %%al, %%cl\n"" testb $16, %%al\n"" jz .L_test_for_second_level_length\n" /* if ((op & 16) == 0) 8% */" andb $15, %%cl\n" /* op &= 15 */" jz .L_decode_distance\n" /* if (!op) */".L_add_bits_to_len:\n"" subb %%cl, %%bl\n"" xorl %%eax, %%eax\n"" incl %%eax\n"" shll %%cl, %%eax\n"" decl %%eax\n"" andl %%edx, %%eax\n" /* eax &= hold */" shrq %%cl, %%rdx\n"" addl %%eax, %%r14d\n" /* len += hold & mask[op] */".L_decode_distance:\n"" movq %%r13, %%r8\n" /* r8 = dmask */" cmpb $32, %%bl\n"" ja .L_get_distance_code\n" /* if (32 < bits) */" lodsl\n" /* eax = *(uint *)in++ */" movb %%bl, %%cl\n" /* cl = bits, needs it for shifting */" addb $32, %%bl\n" /* bits += 32 */" shlq %%cl, %%rax\n"" orq %%rax, %%rdx\n" /* hold |= *((uint *)in)++ << bits */".L_get_distance_code:\n"" andq %%rdx, %%r8\n" /* r8 &= hold */" movl (%%r11,%%r8,4), %%eax\n" /* eax = dcode[hold & dmask] */".L_dodist:\n"" movl %%eax, %%r15d\n" /* dist = this */" shrl $16, %%r15d\n" /* dist = this.val */" movb %%ah, %%cl\n"" subb %%ah, %%bl\n" /* bits -= this.bits */" shrq %%cl, %%rdx\n" /* hold >>= this.bits */" movb %%al, %%cl\n" /* cl = this.op */" testb $16, %%al\n" /* if ((op & 16) == 0) */" jz .L_test_for_second_level_dist\n"" andb $15, %%cl\n" /* op &= 15 */" jz .L_check_dist_one\n"".L_add_bits_to_dist:\n"" subb %%cl, %%bl\n"" xorl %%eax, %%eax\n"" incl %%eax\n"" shll %%cl, %%eax\n"" decl %%eax\n" /* (1 << op) - 1 */" andl %%edx, %%eax\n" /* eax &= hold */" shrq %%cl, %%rdx\n"" addl %%eax, %%r15d\n" /* dist += hold & ((1 << op) - 1) */".L_check_window:\n"" movq %%rsi, %%r8\n" /* save in so from can use it's reg */" movq %%rdi, %%rax\n"" subq 40(%%rsp), %%rax\n" /* nbytes = out - beg */" cmpl %%r15d, %%eax\n"" jb .L_clip_window\n" /* if (dist > nbytes) 4.2% */" movl %%r14d, %%ecx\n" /* ecx = len */" movq %%rdi, %%rsi\n"" subq %%r15, %%rsi\n" /* from = out - dist */" sarl %%ecx\n"" jnc .L_copy_two\n" /* if len % 2 == 0 */" rep movsw\n"" movb (%%rsi), %%al\n"" movb %%al, (%%rdi)\n"" incq %%rdi\n"" movq %%r8, %%rsi\n" /* move in back to %rsi, toss from */" jmp .L_while_test\n"".L_copy_two:\n"" rep movsw\n"" movq %%r8, %%rsi\n" /* move in back to %rsi, toss from */" jmp .L_while_test\n"".align 32,0x90\n"".L_check_dist_one:\n"" cmpl $1, %%r15d\n" /* if dist 1, is a memset */" jne .L_check_window\n"" cmpq %%rdi, 40(%%rsp)\n" /* if out == beg, outside window */" je .L_check_window\n"" movl %%r14d, %%ecx\n" /* ecx = len */" movb -1(%%rdi), %%al\n"" movb %%al, %%ah\n"" sarl %%ecx\n"" jnc .L_set_two\n"" movb %%al, (%%rdi)\n"" incq %%rdi\n"".L_set_two:\n"" rep stosw\n"" jmp .L_while_test\n"".align 32,0x90\n"".L_test_for_second_level_length:\n"" testb $64, %%al\n"" jnz .L_test_for_end_of_block\n" /* if ((op & 64) != 0) */" xorl %%eax, %%eax\n"" incl %%eax\n"" shll %%cl, %%eax\n"" decl %%eax\n"" andl %%edx, %%eax\n" /* eax &= hold */" addl %%r14d, %%eax\n" /* eax += len */" movl (%%rbp,%%rax,4), %%eax\n" /* eax = lcode[val+(hold&mask[op])]*/" jmp .L_dolen\n"".align 32,0x90\n"".L_test_for_second_level_dist:\n"" testb $64, %%al\n"" jnz .L_invalid_distance_code\n" /* if ((op & 64) != 0) */" xorl %%eax, %%eax\n"" incl %%eax\n"" shll %%cl, %%eax\n"" decl %%eax\n"" andl %%edx, %%eax\n" /* eax &= hold */" addl %%r15d, %%eax\n" /* eax += dist */" movl (%%r11,%%rax,4), %%eax\n" /* eax = dcode[val+(hold&mask[op])]*/" jmp .L_dodist\n"".align 32,0x90\n"".L_clip_window:\n"" movl %%eax, %%ecx\n" /* ecx = nbytes */" movl 92(%%rsp), %%eax\n" /* eax = wsize, prepare for dist cmp */" negl %%ecx\n" /* nbytes = -nbytes */" cmpl %%r15d, %%eax\n"" jb .L_invalid_distance_too_far\n" /* if (dist > wsize) */" addl %%r15d, %%ecx\n" /* nbytes = dist - nbytes */" cmpl $0, 96(%%rsp)\n"" jne .L_wrap_around_window\n" /* if (write != 0) */" movq 56(%%rsp), %%rsi\n" /* from = window */" subl %%ecx, %%eax\n" /* eax -= nbytes */" addq %%rax, %%rsi\n" /* from += wsize - nbytes */" movl %%r14d, %%eax\n" /* eax = len */" cmpl %%ecx, %%r14d\n"" jbe .L_do_copy\n" /* if (nbytes >= len) */" subl %%ecx, %%eax\n" /* eax -= nbytes */" rep movsb\n"" movq %%rdi, %%rsi\n"" subq %%r15, %%rsi\n" /* from = &out[ -dist ] */" jmp .L_do_copy\n"".align 32,0x90\n"".L_wrap_around_window:\n"" movl 96(%%rsp), %%eax\n" /* eax = write */" cmpl %%eax, %%ecx\n"" jbe .L_contiguous_in_window\n" /* if (write >= nbytes) */
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