github.com/hbdrawn/golang@v0.0.0-20141214014649-6b835209aba2/src/runtime/sys_freebsd_amd64.s (about)

     1  // Copyright 2009 The Go Authors. All rights reserved.
     2  // Use of this source code is governed by a BSD-style
     3  // license that can be found in the LICENSE file.
     4  //
     5  // System calls and other sys.stuff for AMD64, FreeBSD
     6  // /usr/src/sys/kern/syscalls.master for syscall numbers.
     7  //
     8  
     9  #include "go_asm.h"
    10  #include "go_tls.h"
    11  #include "textflag.h"
    12  
    13  // FreeBSD 8, FreeBSD 9, and older versions that I have checked
    14  // do not restore R10 on exit from a "restarted" system call
    15  // if you use the SYSCALL instruction. This means that, for example,
    16  // if a signal arrives while the wait4 system call is executing,
    17  // the wait4 internally returns ERESTART, which makes the kernel
    18  // back up the PC to execute the SYSCALL instruction a second time.
    19  // However, since the kernel does not restore R10, the fourth
    20  // argument to the system call has been lost. (FreeBSD 9 also fails
    21  // to restore the fifth and sixth arguments, R8 and R9, although
    22  // some earlier versions did restore those correctly.)
    23  // The broken code is in fast_syscall in FreeBSD's amd64/amd64/exception.S.
    24  // It restores only DI, SI, DX, AX, and RFLAGS on system call return.
    25  // http://fxr.watson.org/fxr/source/amd64/amd64/exception.S?v=FREEBSD91#L399
    26  //
    27  // The INT $0x80 system call path (int0x80_syscall in FreeBSD's 
    28  // amd64/ia32/ia32_exception.S) does not have this problem,
    29  // but it expects the third argument in R10. Instead of rewriting
    30  // all the assembly in this file, #define SYSCALL to a safe simulation
    31  // using INT $0x80.
    32  //
    33  // INT $0x80 is a little slower than SYSCALL, but correctness wins.
    34  //
    35  // See golang.org/issue/6372.
    36  #define SYSCALL MOVQ R10, CX; INT $0x80
    37  	
    38  TEXT runtime·sys_umtx_op(SB),NOSPLIT,$0
    39  	MOVQ addr+0(FP), DI
    40  	MOVL mode+8(FP), SI
    41  	MOVL val+12(FP), DX
    42  	MOVQ ptr2+16(FP), R10
    43  	MOVQ ts+24(FP), R8
    44  	MOVL $454, AX
    45  	SYSCALL
    46  	MOVL	AX, ret+32(FP)
    47  	RET
    48  
    49  TEXT runtime·thr_new(SB),NOSPLIT,$0
    50  	MOVQ param+0(FP), DI
    51  	MOVL size+8(FP), SI
    52  	MOVL $455, AX
    53  	SYSCALL
    54  	RET
    55  
    56  TEXT runtime·thr_start(SB),NOSPLIT,$0
    57  	MOVQ	DI, R13 // m
    58  
    59  	// set up FS to point at m->tls
    60  	LEAQ	m_tls(R13), DI
    61  	CALL	runtime·settls(SB)	// smashes DI
    62  
    63  	// set up m, g
    64  	get_tls(CX)
    65  	MOVQ	m_g0(R13), DI
    66  	MOVQ	R13, g_m(DI)
    67  	MOVQ	DI, g(CX)
    68  
    69  	CALL	runtime·stackcheck(SB)
    70  	CALL	runtime·mstart(SB)
    71  
    72  	MOVQ 0, AX			// crash (not reached)
    73  
    74  // Exit the entire program (like C exit)
    75  TEXT runtime·exit(SB),NOSPLIT,$-8
    76  	MOVL	code+0(FP), DI		// arg 1 exit status
    77  	MOVL	$1, AX
    78  	SYSCALL
    79  	MOVL	$0xf1, 0xf1  // crash
    80  	RET
    81  
    82  TEXT runtime·exit1(SB),NOSPLIT,$-8
    83  	MOVL	code+0(FP), DI		// arg 1 exit status
    84  	MOVL	$431, AX
    85  	SYSCALL
    86  	MOVL	$0xf1, 0xf1  // crash
    87  	RET
    88  
    89  TEXT runtime·open(SB),NOSPLIT,$-8
    90  	MOVQ	name+0(FP), DI		// arg 1 pathname
    91  	MOVL	mode+8(FP), SI		// arg 2 flags
    92  	MOVL	perm+12(FP), DX		// arg 3 mode
    93  	MOVL	$5, AX
    94  	SYSCALL
    95  	MOVL	AX, ret+16(FP)
    96  	RET
    97  
    98  TEXT runtime·close(SB),NOSPLIT,$-8
    99  	MOVL	fd+0(FP), DI		// arg 1 fd
   100  	MOVL	$6, AX
   101  	SYSCALL
   102  	MOVL	AX, ret+8(FP)
   103  	RET
   104  
   105  TEXT runtime·read(SB),NOSPLIT,$-8
   106  	MOVL	fd+0(FP), DI		// arg 1 fd
   107  	MOVQ	p+8(FP), SI		// arg 2 buf
   108  	MOVL	n+16(FP), DX		// arg 3 count
   109  	MOVL	$3, AX
   110  	SYSCALL
   111  	MOVL	AX, ret+24(FP)
   112  	RET
   113  
   114  TEXT runtime·write(SB),NOSPLIT,$-8
   115  	MOVQ	fd+0(FP), DI		// arg 1 fd
   116  	MOVQ	p+8(FP), SI		// arg 2 buf
   117  	MOVL	n+16(FP), DX		// arg 3 count
   118  	MOVL	$4, AX
   119  	SYSCALL
   120  	MOVL	AX, ret+24(FP)
   121  	RET
   122  
   123  TEXT runtime·getrlimit(SB),NOSPLIT,$-8
   124  	MOVL	kind+0(FP), DI
   125  	MOVQ	limit+8(FP), SI
   126  	MOVL	$194, AX
   127  	SYSCALL
   128  	MOVL	AX, ret+16(FP)
   129  	RET
   130  
   131  TEXT runtime·raise(SB),NOSPLIT,$16
   132  	// thr_self(&8(SP))
   133  	LEAQ	8(SP), DI	// arg 1 &8(SP)
   134  	MOVL	$432, AX
   135  	SYSCALL
   136  	// thr_kill(self, SIGPIPE)
   137  	MOVQ	8(SP), DI	// arg 1 id
   138  	MOVL	sig+0(FP), SI	// arg 2
   139  	MOVL	$433, AX
   140  	SYSCALL
   141  	RET
   142  
   143  TEXT runtime·setitimer(SB), NOSPLIT, $-8
   144  	MOVL	mode+0(FP), DI
   145  	MOVQ	new+8(FP), SI
   146  	MOVQ	old+16(FP), DX
   147  	MOVL	$83, AX
   148  	SYSCALL
   149  	RET
   150  
   151  // func now() (sec int64, nsec int32)
   152  TEXT time·now(SB), NOSPLIT, $32
   153  	MOVL	$232, AX
   154  	MOVQ	$0, DI		// CLOCK_REALTIME
   155  	LEAQ	8(SP), SI
   156  	SYSCALL
   157  	MOVQ	8(SP), AX	// sec
   158  	MOVQ	16(SP), DX	// nsec
   159  
   160  	// sec is in AX, nsec in DX
   161  	MOVQ	AX, sec+0(FP)
   162  	MOVL	DX, nsec+8(FP)
   163  	RET
   164  
   165  TEXT runtime·nanotime(SB), NOSPLIT, $32
   166  	MOVL	$232, AX
   167  	// We can use CLOCK_MONOTONIC_FAST here when we drop
   168  	// support for FreeBSD 8-STABLE.
   169  	MOVQ	$4, DI		// CLOCK_MONOTONIC
   170  	LEAQ	8(SP), SI
   171  	SYSCALL
   172  	MOVQ	8(SP), AX	// sec
   173  	MOVQ	16(SP), DX	// nsec
   174  
   175  	// sec is in AX, nsec in DX
   176  	// return nsec in AX
   177  	IMULQ	$1000000000, AX
   178  	ADDQ	DX, AX
   179  	MOVQ	AX, ret+0(FP)
   180  	RET
   181  
   182  TEXT runtime·sigaction(SB),NOSPLIT,$-8
   183  	MOVL	sig+0(FP), DI		// arg 1 sig
   184  	MOVQ	new+8(FP), SI		// arg 2 act
   185  	MOVQ	old+16(FP), DX		// arg 3 oact
   186  	MOVL	$416, AX
   187  	SYSCALL
   188  	JCC	2(PC)
   189  	MOVL	$0xf1, 0xf1  // crash
   190  	RET
   191  
   192  TEXT runtime·sigtramp(SB),NOSPLIT,$64
   193  	get_tls(BX)
   194  
   195  	// check that g exists
   196  	MOVQ	g(BX), R10
   197  	CMPQ	R10, $0
   198  	JNE	5(PC)
   199  	MOVQ	DI, 0(SP)
   200  	MOVQ	$runtime·badsignal(SB), AX
   201  	CALL	AX
   202  	RET
   203  
   204  	// save g
   205  	MOVQ	R10, 40(SP)
   206  	
   207  	// g = m->signal
   208  	MOVQ	g_m(R10), BP
   209  	MOVQ	m_gsignal(BP), BP
   210  	MOVQ	BP, g(BX)
   211  	
   212  	MOVQ	DI, 0(SP)
   213  	MOVQ	SI, 8(SP)
   214  	MOVQ	DX, 16(SP)
   215  	MOVQ	R10, 24(SP)
   216  
   217  	CALL	runtime·sighandler(SB)
   218  
   219  	// restore g
   220  	get_tls(BX)
   221  	MOVQ	40(SP), R10
   222  	MOVQ	R10, g(BX)
   223  	RET
   224  
   225  TEXT runtime·mmap(SB),NOSPLIT,$0
   226  	MOVQ	addr+0(FP), DI		// arg 1 addr
   227  	MOVQ	n+8(FP), SI		// arg 2 len
   228  	MOVL	prot+16(FP), DX		// arg 3 prot
   229  	MOVL	flags+20(FP), R10		// arg 4 flags
   230  	MOVL	fd+24(FP), R8		// arg 5 fid
   231  	MOVL	off+28(FP), R9		// arg 6 offset
   232  	MOVL	$477, AX
   233  	SYSCALL
   234  	MOVQ	AX, ret+32(FP)
   235  	RET
   236  
   237  TEXT runtime·munmap(SB),NOSPLIT,$0
   238  	MOVQ	addr+0(FP), DI		// arg 1 addr
   239  	MOVQ	n+8(FP), SI		// arg 2 len
   240  	MOVL	$73, AX
   241  	SYSCALL
   242  	JCC	2(PC)
   243  	MOVL	$0xf1, 0xf1  // crash
   244  	RET
   245  
   246  TEXT runtime·madvise(SB),NOSPLIT,$0
   247  	MOVQ	addr+0(FP), DI
   248  	MOVQ	n+8(FP), SI
   249  	MOVL	flags+16(FP), DX
   250  	MOVQ	$75, AX	// madvise
   251  	SYSCALL
   252  	// ignore failure - maybe pages are locked
   253  	RET
   254  	
   255  TEXT runtime·sigaltstack(SB),NOSPLIT,$-8
   256  	MOVQ	new+8(SP), DI
   257  	MOVQ	old+16(SP), SI
   258  	MOVQ	$53, AX
   259  	SYSCALL
   260  	JCC	2(PC)
   261  	MOVL	$0xf1, 0xf1  // crash
   262  	RET
   263  
   264  TEXT runtime·usleep(SB),NOSPLIT,$16
   265  	MOVL	$0, DX
   266  	MOVL	usec+0(FP), AX
   267  	MOVL	$1000000, CX
   268  	DIVL	CX
   269  	MOVQ	AX, 0(SP)		// tv_sec
   270  	MOVL	$1000, AX
   271  	MULL	DX
   272  	MOVQ	AX, 8(SP)		// tv_nsec
   273  
   274  	MOVQ	SP, DI			// arg 1 - rqtp
   275  	MOVQ	$0, SI			// arg 2 - rmtp
   276  	MOVL	$240, AX		// sys_nanosleep
   277  	SYSCALL
   278  	RET
   279  
   280  // set tls base to DI
   281  TEXT runtime·settls(SB),NOSPLIT,$8
   282  	ADDQ	$16, DI	// adjust for ELF: wants to use -16(FS) and -8(FS) for g and m
   283  	MOVQ	DI, 0(SP)
   284  	MOVQ	SP, SI
   285  	MOVQ	$129, DI	// AMD64_SET_FSBASE
   286  	MOVQ	$165, AX	// sysarch
   287  	SYSCALL
   288  	JCC	2(PC)
   289  	MOVL	$0xf1, 0xf1  // crash
   290  	RET
   291  
   292  TEXT runtime·sysctl(SB),NOSPLIT,$0
   293  	MOVQ	mib+0(FP), DI		// arg 1 - name
   294  	MOVL	miblen+8(FP), SI		// arg 2 - namelen
   295  	MOVQ	out+16(FP), DX		// arg 3 - oldp
   296  	MOVQ	size+24(FP), R10		// arg 4 - oldlenp
   297  	MOVQ	dst+32(FP), R8		// arg 5 - newp
   298  	MOVQ	ndst+40(FP), R9		// arg 6 - newlen
   299  	MOVQ	$202, AX		// sys___sysctl
   300  	SYSCALL
   301  	JCC 4(PC)
   302  	NEGQ	AX
   303  	MOVL	AX, ret+48(FP)
   304  	RET
   305  	MOVL	$0, AX
   306  	MOVL	AX, ret+48(FP)
   307  	RET
   308  
   309  TEXT runtime·osyield(SB),NOSPLIT,$-4
   310  	MOVL	$331, AX		// sys_sched_yield
   311  	SYSCALL
   312  	RET
   313  
   314  TEXT runtime·sigprocmask(SB),NOSPLIT,$0
   315  	MOVL	$3, DI			// arg 1 - how (SIG_SETMASK)
   316  	MOVQ	new+0(FP), SI		// arg 2 - set
   317  	MOVQ	old+8(FP), DX		// arg 3 - oset
   318  	MOVL	$340, AX		// sys_sigprocmask
   319  	SYSCALL
   320  	JAE	2(PC)
   321  	MOVL	$0xf1, 0xf1  // crash
   322  	RET
   323  
   324  // int32 runtime·kqueue(void);
   325  TEXT runtime·kqueue(SB),NOSPLIT,$0
   326  	MOVQ	$0, DI
   327  	MOVQ	$0, SI
   328  	MOVQ	$0, DX
   329  	MOVL	$362, AX
   330  	SYSCALL
   331  	JCC	2(PC)
   332  	NEGQ	AX
   333  	MOVL	AX, ret+0(FP)
   334  	RET
   335  
   336  // int32 runtime·kevent(int kq, Kevent *changelist, int nchanges, Kevent *eventlist, int nevents, Timespec *timeout);
   337  TEXT runtime·kevent(SB),NOSPLIT,$0
   338  	MOVL	fd+0(FP), DI
   339  	MOVQ	ev1+8(FP), SI
   340  	MOVL	nev1+16(FP), DX
   341  	MOVQ	ev2+24(FP), R10
   342  	MOVL	nev2+32(FP), R8
   343  	MOVQ	ts+40(FP), R9
   344  	MOVL	$363, AX
   345  	SYSCALL
   346  	JCC	2(PC)
   347  	NEGQ	AX
   348  	MOVL	AX, ret+48(FP)
   349  	RET
   350  
   351  // void runtime·closeonexec(int32 fd);
   352  TEXT runtime·closeonexec(SB),NOSPLIT,$0
   353  	MOVL	fd+0(FP), DI	// fd
   354  	MOVQ	$2, SI		// F_SETFD
   355  	MOVQ	$1, DX		// FD_CLOEXEC
   356  	MOVL	$92, AX		// fcntl
   357  	SYSCALL
   358  	RET