/* setjmp for PowerPC64. Copyright (C) 1995-2013 Free Software Foundation, Inc. This file is part of the GNU C Library. The GNU C Library is free software; you can redistribute it and/or modify it under the terms of the GNU Lesser General Public License as published by the Free Software Foundation; either version 2.1 of the License, or (at your option) any later version. The GNU C Library is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU Lesser General Public License for more details. You should have received a copy of the GNU Lesser General Public License along with the GNU C Library; if not, see . */ #include #define _ASM #ifdef __NO_VMX__ #include #else #include #endif #ifndef __NO_VMX__ .section ".toc","aw" .LC__dl_hwcap: # ifdef SHARED # ifdef IS_IN_rtld /* Inside ld.so we use the local alias to avoid runtime GOT relocations. */ .tc _rtld_local_ro[TC],_rtld_local_ro # else .tc _rtld_global_ro[TC],_rtld_global_ro # endif # else .tc _dl_hwcap[TC],_dl_hwcap # endif .section ".text" #endif .machine "altivec" ENTRY (setjmp) CALL_MCOUNT 1 li r4,1 /* Set second argument to 1. */ b JUMPTARGET (GLUE(__sigsetjmp,_ent)) END (setjmp) #if defined SHARED && !defined IS_IN_rtld && !defined __NO_VMX__ /* When called from within libc we need a special version of _setjmp that saves r2 since the call won't go via a plt call stub. See bugz #269. __GI__setjmp is used in csu/libc-start.c when HAVE_CLEANUP_JMP_BUF is defined. */ ENTRY (__GI__setjmp) std r2,40(r1) /* Save the callers TOC in the save area. */ CALL_MCOUNT 1 li r4,0 /* Set second argument to 0. */ b JUMPTARGET (GLUE(__sigsetjmp,_ent)) END (__GI__setjmp) #endif ENTRY (_setjmp) CALL_MCOUNT 1 li r4,0 /* Set second argument to 0. */ b JUMPTARGET (GLUE(__sigsetjmp,_ent)) END (_setjmp) libc_hidden_def (_setjmp) ENTRY (__sigsetjmp) CALL_MCOUNT 2 JUMPTARGET(GLUE(__sigsetjmp,_ent)): #ifdef PTR_MANGLE mr r5, r1 PTR_MANGLE (r5, r6) std r5,(JB_GPR1*8)(3) #else std r1,(JB_GPR1*8)(3) #endif mflr r0 #if defined SHARED && !defined IS_IN_rtld ld r5,40(r1) /* Retrieve the callers TOC. */ std r5,(JB_GPR2*8)(3) #else std r2,(JB_GPR2*8)(3) #endif std r14,((JB_GPRS+0)*8)(3) stfd fp14,((JB_FPRS+0)*8)(3) #ifdef PTR_MANGLE PTR_MANGLE2 (r0, r6) #endif std r0,(JB_LR*8)(3) std r15,((JB_GPRS+1)*8)(3) stfd fp15,((JB_FPRS+1)*8)(3) mfcr r0 std r16,((JB_GPRS+2)*8)(3) stfd fp16,((JB_FPRS+2)*8)(3) stw r0,((JB_CR*8)+4)(3) /* 32-bit CR. */ std r17,((JB_GPRS+3)*8)(3) stfd fp17,((JB_FPRS+3)*8)(3) std r18,((JB_GPRS+4)*8)(3) stfd fp18,((JB_FPRS+4)*8)(3) std r19,((JB_GPRS+5)*8)(3) stfd fp19,((JB_FPRS+5)*8)(3) std r20,((JB_GPRS+6)*8)(3) stfd fp20,((JB_FPRS+6)*8)(3) std r21,((JB_GPRS+7)*8)(3) stfd fp21,((JB_FPRS+7)*8)(3) std r22,((JB_GPRS+8)*8)(3) stfd fp22,((JB_FPRS+8)*8)(3) std r23,((JB_GPRS+9)*8)(3) stfd fp23,((JB_FPRS+9)*8)(3) std r24,((JB_GPRS+10)*8)(3) stfd fp24,((JB_FPRS+10)*8)(3) std r25,((JB_GPRS+11)*8)(3) stfd fp25,((JB_FPRS+11)*8)(3) std r26,((JB_GPRS+12)*8)(3) stfd fp26,((JB_FPRS+12)*8)(3) std r27,((JB_GPRS+13)*8)(3) stfd fp27,((JB_FPRS+13)*8)(3) std r28,((JB_GPRS+14)*8)(3) stfd fp28,((JB_FPRS+14)*8)(3) std r29,((JB_GPRS+15)*8)(3) stfd fp29,((JB_FPRS+15)*8)(3) std r30,((JB_GPRS+16)*8)(3) stfd fp30,((JB_FPRS+16)*8)(3) std r31,((JB_GPRS+17)*8)(3) stfd fp31,((JB_FPRS+17)*8)(3) #ifndef __NO_VMX__ ld r6,.LC__dl_hwcap@toc(r2) # ifdef SHARED /* Load _rtld-global._dl_hwcap. */ ld r6,RTLD_GLOBAL_RO_DL_HWCAP_OFFSET(r6) # else ld r6,0(r6) /* Load extern _dl_hwcap. */ # endif andis. r6,r6,(PPC_FEATURE_HAS_ALTIVEC >> 16) beq L(no_vmx) la r5,((JB_VRS)*8)(3) andi. r6,r5,0xf mfspr r0,VRSAVE stw r0,((JB_VRSAVE)*8)(3) /* 32-bit VRSAVE. */ addi r6,r5,16 beq+ L(aligned_save_vmx) lvsr v0,0,r5 lvsl v1,0,r5 addi r6,r5,-16 # define save_misaligned_vmx(savevr,prevvr,shiftvr,tmpvr,savegpr,addgpr) \ addi addgpr,addgpr,32; \ vperm tmpvr,prevvr,savevr,shiftvr; \ stvx tmpvr,0,savegpr /* * We have to be careful not to corrupt the data below v20 and * above v31. To keep things simple we just rotate both ends in * the opposite direction to our main permute so we can use * the common macro. */ /* load and rotate data below v20 */ lvx v2,0,r5 vperm v2,v2,v2,v1 save_misaligned_vmx(v20,v2,v0,v3,r5,r6) save_misaligned_vmx(v21,v20,v0,v3,r6,r5) save_misaligned_vmx(v22,v21,v0,v3,r5,r6) save_misaligned_vmx(v23,v22,v0,v3,r6,r5) save_misaligned_vmx(v24,v23,v0,v3,r5,r6) save_misaligned_vmx(v25,v24,v0,v3,r6,r5) save_misaligned_vmx(v26,v25,v0,v3,r5,r6) save_misaligned_vmx(v27,v26,v0,v3,r6,r5) save_misaligned_vmx(v28,v27,v0,v3,r5,r6) save_misaligned_vmx(v29,v28,v0,v3,r6,r5) save_misaligned_vmx(v30,v29,v0,v3,r5,r6) save_misaligned_vmx(v31,v30,v0,v3,r6,r5) /* load and rotate data above v31 */ lvx v2,0,r6 vperm v2,v2,v2,v1 save_misaligned_vmx(v2,v31,v0,v3,r5,r6) b L(no_vmx) L(aligned_save_vmx): stvx 20,0,r5 addi r5,r5,32 stvx 21,0,r6 addi r6,r6,32 stvx 22,0,r5 addi r5,r5,32 stvx 23,0,r6 addi r6,r6,32 stvx 24,0,r5 addi r5,r5,32 stvx 25,0,r6 addi r6,r6,32 stvx 26,0,r5 addi r5,r5,32 stvx 27,0,r6 addi r6,r6,32 stvx 28,0,r5 addi r5,r5,32 stvx 29,0,r6 addi r6,r6,32 stvx 30,0,r5 stvx 31,0,r6 L(no_vmx): #else li r6,0 #endif #if defined NOT_IN_libc && defined IS_IN_rtld li r3,0 blr #elif defined SHARED b JUMPTARGET (__sigjmp_save) #else mflr r0 std r0,16(r1) stdu r1,-112(r1) cfi_adjust_cfa_offset(112) cfi_offset(lr,16) bl JUMPTARGET (__sigjmp_save) nop ld r0,112+16(r1) addi r1,r1,112 mtlr r0 blr #endif END (__sigsetjmp)