16c9f99dfSJanosch Frank /* SPDX-License-Identifier: GPL-2.0-only */ 2cfb204f9SDavid Hildenbrand /* 3cfb204f9SDavid Hildenbrand * Copyright (c) 2017 Red Hat Inc 4cfb204f9SDavid Hildenbrand * 5cfb204f9SDavid Hildenbrand * Authors: 6cfb204f9SDavid Hildenbrand * David Hildenbrand <david@redhat.com> 7cfb204f9SDavid Hildenbrand */ 8eb5a1bbaSCornelia Huck #ifndef _ASMS390X_ARCH_DEF_H_ 9eb5a1bbaSCornelia Huck #define _ASMS390X_ARCH_DEF_H_ 10cfb204f9SDavid Hildenbrand 113ae7f80fSJanosch Frank struct stack_frame { 1236cfc0b7SJanosch Frank struct stack_frame *back_chain; 1336cfc0b7SJanosch Frank uint64_t reserved; 1436cfc0b7SJanosch Frank /* GRs 2 - 5 */ 1536cfc0b7SJanosch Frank uint64_t argument_area[4]; 1636cfc0b7SJanosch Frank /* GRs 6 - 15 */ 1736cfc0b7SJanosch Frank uint64_t grs[10]; 1836cfc0b7SJanosch Frank /* FPRs 0, 2, 4, 6 */ 1936cfc0b7SJanosch Frank int64_t fprs[4]; 2036cfc0b7SJanosch Frank }; 2136cfc0b7SJanosch Frank 2236cfc0b7SJanosch Frank struct stack_frame_int { 2336cfc0b7SJanosch Frank struct stack_frame *back_chain; 2436cfc0b7SJanosch Frank uint64_t reserved; 2536cfc0b7SJanosch Frank /* 2636cfc0b7SJanosch Frank * The GRs are offset compatible with struct stack_frame so we 2736cfc0b7SJanosch Frank * can easily fetch GR14 for backtraces. 2836cfc0b7SJanosch Frank */ 2936cfc0b7SJanosch Frank /* GRs 2 - 15 */ 3036cfc0b7SJanosch Frank uint64_t grs0[14]; 3136cfc0b7SJanosch Frank /* GRs 0 and 1 */ 3236cfc0b7SJanosch Frank uint64_t grs1[2]; 3336cfc0b7SJanosch Frank uint32_t reserved1; 3436cfc0b7SJanosch Frank uint32_t fpc; 3536cfc0b7SJanosch Frank uint64_t fprs[16]; 3636cfc0b7SJanosch Frank uint64_t crs[16]; 373ae7f80fSJanosch Frank }; 383ae7f80fSJanosch Frank 39cfb204f9SDavid Hildenbrand struct psw { 40cfb204f9SDavid Hildenbrand uint64_t mask; 41cfb204f9SDavid Hildenbrand uint64_t addr; 42cfb204f9SDavid Hildenbrand }; 43cfb204f9SDavid Hildenbrand 441921c4c6SJanosch Frank #define AS_PRIM 0 451921c4c6SJanosch Frank #define AS_ACCR 1 461921c4c6SJanosch Frank #define AS_SECN 2 471921c4c6SJanosch Frank #define AS_HOME 3 481921c4c6SJanosch Frank 4965dc6515SJanosch Frank #define PSW_MASK_EXT 0x0100000000000000UL 508cb729e4SPierre Morel #define PSW_MASK_IO 0x0200000000000000UL 51c08c320bSDavid Hildenbrand #define PSW_MASK_DAT 0x0400000000000000UL 52f73b4b9eSPierre Morel #define PSW_MASK_WAIT 0x0002000000000000UL 534ef6f57dSJanosch Frank #define PSW_MASK_PSTATE 0x0001000000000000UL 5444026818SJanosch Frank #define PSW_MASK_EA 0x0000000100000000UL 5544026818SJanosch Frank #define PSW_MASK_BA 0x0000000080000000UL 56*4f26290bSJanosch Frank #define PSW_MASK_64 (PSW_MASK_BA | PSW_MASK_EA) 57c08c320bSDavid Hildenbrand 58d34d3250SJanosch Frank #define CTL0_LOW_ADDR_PROT (63 - 35) 59d34d3250SJanosch Frank #define CTL0_EDAT (63 - 40) 60d34d3250SJanosch Frank #define CTL0_IEP (63 - 43) 61d34d3250SJanosch Frank #define CTL0_AFP (63 - 45) 62d34d3250SJanosch Frank #define CTL0_VECTOR (63 - 46) 63d34d3250SJanosch Frank #define CTL0_EMERGENCY_SIGNAL (63 - 49) 64d34d3250SJanosch Frank #define CTL0_EXTERNAL_CALL (63 - 50) 65d34d3250SJanosch Frank #define CTL0_CLOCK_COMPARATOR (63 - 52) 66d34d3250SJanosch Frank #define CTL0_SERVICE_SIGNAL (63 - 54) 67d34d3250SJanosch Frank #define CR0_EXTM_MASK 0x0000000000006200UL /* Combined external masks */ 68d34d3250SJanosch Frank 69d34d3250SJanosch Frank #define CTL2_GUARDED_STORAGE (63 - 59) 70df121a0cSJanosch Frank 71cfb204f9SDavid Hildenbrand struct lowcore { 72cfb204f9SDavid Hildenbrand uint8_t pad_0x0000[0x0080 - 0x0000]; /* 0x0000 */ 73cfb204f9SDavid Hildenbrand uint32_t ext_int_param; /* 0x0080 */ 74cfb204f9SDavid Hildenbrand uint16_t cpu_addr; /* 0x0084 */ 75cfb204f9SDavid Hildenbrand uint16_t ext_int_code; /* 0x0086 */ 76cfb204f9SDavid Hildenbrand uint16_t svc_int_id; /* 0x0088 */ 77cfb204f9SDavid Hildenbrand uint16_t svc_int_code; /* 0x008a */ 78cfb204f9SDavid Hildenbrand uint16_t pgm_int_id; /* 0x008c */ 79cfb204f9SDavid Hildenbrand uint16_t pgm_int_code; /* 0x008e */ 80cfb204f9SDavid Hildenbrand uint32_t dxc_vxc; /* 0x0090 */ 81cfb204f9SDavid Hildenbrand uint16_t mon_class_nb; /* 0x0094 */ 82cfb204f9SDavid Hildenbrand uint8_t per_code; /* 0x0096 */ 83cfb204f9SDavid Hildenbrand uint8_t per_atmid; /* 0x0097 */ 84cfb204f9SDavid Hildenbrand uint64_t per_addr; /* 0x0098 */ 85cfb204f9SDavid Hildenbrand uint8_t exc_acc_id; /* 0x00a0 */ 86cfb204f9SDavid Hildenbrand uint8_t per_acc_id; /* 0x00a1 */ 87cfb204f9SDavid Hildenbrand uint8_t op_acc_id; /* 0x00a2 */ 88cfb204f9SDavid Hildenbrand uint8_t arch_mode_id; /* 0x00a3 */ 89cfb204f9SDavid Hildenbrand uint8_t pad_0x00a4[0x00a8 - 0x00a4]; /* 0x00a4 */ 90cfb204f9SDavid Hildenbrand uint64_t trans_exc_id; /* 0x00a8 */ 91cfb204f9SDavid Hildenbrand uint64_t mon_code; /* 0x00b0 */ 92cfb204f9SDavid Hildenbrand uint32_t subsys_id_word; /* 0x00b8 */ 93cfb204f9SDavid Hildenbrand uint32_t io_int_param; /* 0x00bc */ 94cfb204f9SDavid Hildenbrand uint32_t io_int_word; /* 0x00c0 */ 95cfb204f9SDavid Hildenbrand uint8_t pad_0x00c4[0x00c8 - 0x00c4]; /* 0x00c4 */ 96cfb204f9SDavid Hildenbrand uint32_t stfl; /* 0x00c8 */ 97cfb204f9SDavid Hildenbrand uint8_t pad_0x00cc[0x00e8 - 0x00cc]; /* 0x00cc */ 98cfb204f9SDavid Hildenbrand uint64_t mcck_int_code; /* 0x00e8 */ 99cfb204f9SDavid Hildenbrand uint8_t pad_0x00f0[0x00f4 - 0x00f0]; /* 0x00f0 */ 100cfb204f9SDavid Hildenbrand uint32_t ext_damage_code; /* 0x00f4 */ 101cfb204f9SDavid Hildenbrand uint64_t failing_storage_addr; /* 0x00f8 */ 102cfb204f9SDavid Hildenbrand uint64_t emon_ca_origin; /* 0x0100 */ 103cfb204f9SDavid Hildenbrand uint32_t emon_ca_size; /* 0x0108 */ 104cfb204f9SDavid Hildenbrand uint32_t emon_exc_count; /* 0x010c */ 105cfb204f9SDavid Hildenbrand uint64_t breaking_event_addr; /* 0x0110 */ 106cfb204f9SDavid Hildenbrand uint8_t pad_0x0118[0x0120 - 0x0118]; /* 0x0118 */ 107cfb204f9SDavid Hildenbrand struct psw restart_old_psw; /* 0x0120 */ 108cfb204f9SDavid Hildenbrand struct psw ext_old_psw; /* 0x0130 */ 109cfb204f9SDavid Hildenbrand struct psw svc_old_psw; /* 0x0140 */ 110cfb204f9SDavid Hildenbrand struct psw pgm_old_psw; /* 0x0150 */ 111cfb204f9SDavid Hildenbrand struct psw mcck_old_psw; /* 0x0160 */ 112cfb204f9SDavid Hildenbrand struct psw io_old_psw; /* 0x0170 */ 113cfb204f9SDavid Hildenbrand uint8_t pad_0x0180[0x01a0 - 0x0180]; /* 0x0180 */ 114cfb204f9SDavid Hildenbrand struct psw restart_new_psw; /* 0x01a0 */ 115cfb204f9SDavid Hildenbrand struct psw ext_new_psw; /* 0x01b0 */ 116cfb204f9SDavid Hildenbrand struct psw svc_new_psw; /* 0x01c0 */ 117cfb204f9SDavid Hildenbrand struct psw pgm_new_psw; /* 0x01d0 */ 118cfb204f9SDavid Hildenbrand struct psw mcck_new_psw; /* 0x01e0 */ 119cfb204f9SDavid Hildenbrand struct psw io_new_psw; /* 0x01f0 */ 1204da93626SDavid Hildenbrand /* sw definition: save area for registers in interrupt handlers */ 1214da93626SDavid Hildenbrand uint64_t sw_int_grs[16]; /* 0x0200 */ 1223a92a013SJanosch Frank uint8_t pad_0x0280[0x0308 - 0x0280]; /* 0x0280 */ 123736b9295SJanosch Frank uint64_t sw_int_crs[16]; /* 0x0308 */ 124da6ce270SJanosch Frank struct psw sw_int_psw; /* 0x0388 */ 125da6ce270SJanosch Frank uint8_t pad_0x0310[0x11b0 - 0x0398]; /* 0x0398 */ 126cfb204f9SDavid Hildenbrand uint64_t mcck_ext_sa_addr; /* 0x11b0 */ 127cfb204f9SDavid Hildenbrand uint8_t pad_0x11b8[0x1200 - 0x11b8]; /* 0x11b8 */ 128cfb204f9SDavid Hildenbrand uint64_t fprs_sa[16]; /* 0x1200 */ 129cfb204f9SDavid Hildenbrand uint64_t grs_sa[16]; /* 0x1280 */ 130cfb204f9SDavid Hildenbrand struct psw psw_sa; /* 0x1300 */ 131cfb204f9SDavid Hildenbrand uint8_t pad_0x1310[0x1318 - 0x1310]; /* 0x1310 */ 132cfb204f9SDavid Hildenbrand uint32_t prefix_sa; /* 0x1318 */ 133cfb204f9SDavid Hildenbrand uint32_t fpc_sa; /* 0x131c */ 134cfb204f9SDavid Hildenbrand uint8_t pad_0x1320[0x1324 - 0x1320]; /* 0x1320 */ 135cfb204f9SDavid Hildenbrand uint32_t tod_pr_sa; /* 0x1324 */ 136cfb204f9SDavid Hildenbrand uint64_t cputm_sa; /* 0x1328 */ 137cfb204f9SDavid Hildenbrand uint64_t cc_sa; /* 0x1330 */ 138cfb204f9SDavid Hildenbrand uint8_t pad_0x1338[0x1340 - 0x1338]; /* 0x1338 */ 139cfb204f9SDavid Hildenbrand uint32_t ars_sa[16]; /* 0x1340 */ 140cfb204f9SDavid Hildenbrand uint64_t crs_sa[16]; /* 0x1380 */ 141cfb204f9SDavid Hildenbrand uint8_t pad_0x1400[0x1800 - 0x1400]; /* 0x1400 */ 142cfb204f9SDavid Hildenbrand uint8_t pgm_int_tdb[0x1900 - 0x1800]; /* 0x1800 */ 143cfb204f9SDavid Hildenbrand } __attribute__ ((__packed__)); 144da6ce270SJanosch Frank _Static_assert(sizeof(struct lowcore) == 0x1900, "Lowcore size"); 145cfb204f9SDavid Hildenbrand 1464da93626SDavid Hildenbrand #define PGM_INT_CODE_OPERATION 0x01 1474da93626SDavid Hildenbrand #define PGM_INT_CODE_PRIVILEGED_OPERATION 0x02 1484da93626SDavid Hildenbrand #define PGM_INT_CODE_EXECUTE 0x03 1494da93626SDavid Hildenbrand #define PGM_INT_CODE_PROTECTION 0x04 1504da93626SDavid Hildenbrand #define PGM_INT_CODE_ADDRESSING 0x05 1514da93626SDavid Hildenbrand #define PGM_INT_CODE_SPECIFICATION 0x06 1524da93626SDavid Hildenbrand #define PGM_INT_CODE_DATA 0x07 1534da93626SDavid Hildenbrand #define PGM_INT_CODE_FIXED_POINT_OVERFLOW 0x08 1544da93626SDavid Hildenbrand #define PGM_INT_CODE_FIXED_POINT_DIVIDE 0x09 1554da93626SDavid Hildenbrand #define PGM_INT_CODE_DECIMAL_OVERFLOW 0x0a 1564da93626SDavid Hildenbrand #define PGM_INT_CODE_DECIMAL_DIVIDE 0x0b 1574da93626SDavid Hildenbrand #define PGM_INT_CODE_HFP_EXPONENT_OVERFLOW 0x0c 1584da93626SDavid Hildenbrand #define PGM_INT_CODE_HFP_EXPONENT_UNDERFLOW 0x0d 1594da93626SDavid Hildenbrand #define PGM_INT_CODE_HFP_SIGNIFICANCE 0x0e 1604da93626SDavid Hildenbrand #define PGM_INT_CODE_HFP_DIVIDE 0x0f 1614da93626SDavid Hildenbrand #define PGM_INT_CODE_SEGMENT_TRANSLATION 0x10 1624da93626SDavid Hildenbrand #define PGM_INT_CODE_PAGE_TRANSLATION 0x11 1634da93626SDavid Hildenbrand #define PGM_INT_CODE_TRANSLATION_SPEC 0x12 1644da93626SDavid Hildenbrand #define PGM_INT_CODE_SPECIAL_OPERATION 0x13 1654da93626SDavid Hildenbrand #define PGM_INT_CODE_OPERAND 0x15 1664da93626SDavid Hildenbrand #define PGM_INT_CODE_TRACE_TABLE 0x16 1674da93626SDavid Hildenbrand #define PGM_INT_CODE_VECTOR_PROCESSING 0x1b 1684da93626SDavid Hildenbrand #define PGM_INT_CODE_SPACE_SWITCH_EVENT 0x1c 1694da93626SDavid Hildenbrand #define PGM_INT_CODE_HFP_SQUARE_ROOT 0x1d 1704da93626SDavid Hildenbrand #define PGM_INT_CODE_PC_TRANSLATION_SPEC 0x1f 1714da93626SDavid Hildenbrand #define PGM_INT_CODE_AFX_TRANSLATION 0x20 1724da93626SDavid Hildenbrand #define PGM_INT_CODE_ASX_TRANSLATION 0x21 1734da93626SDavid Hildenbrand #define PGM_INT_CODE_LX_TRANSLATION 0x22 1744da93626SDavid Hildenbrand #define PGM_INT_CODE_EX_TRANSLATION 0x23 1754da93626SDavid Hildenbrand #define PGM_INT_CODE_PRIMARY_AUTHORITY 0x24 1764da93626SDavid Hildenbrand #define PGM_INT_CODE_SECONDARY_AUTHORITY 0x25 1774da93626SDavid Hildenbrand #define PGM_INT_CODE_LFX_TRANSLATION 0x26 1784da93626SDavid Hildenbrand #define PGM_INT_CODE_LSX_TRANSLATION 0x27 1794da93626SDavid Hildenbrand #define PGM_INT_CODE_ALET_SPECIFICATION 0x28 1804da93626SDavid Hildenbrand #define PGM_INT_CODE_ALEN_TRANSLATION 0x29 1814da93626SDavid Hildenbrand #define PGM_INT_CODE_ALE_SEQUENCE 0x2a 1824da93626SDavid Hildenbrand #define PGM_INT_CODE_ASTE_VALIDITY 0x2b 1834da93626SDavid Hildenbrand #define PGM_INT_CODE_ASTE_SEQUENCE 0x2c 1844da93626SDavid Hildenbrand #define PGM_INT_CODE_EXTENDED_AUTHORITY 0x2d 1854da93626SDavid Hildenbrand #define PGM_INT_CODE_LSTE_SEQUENCE 0x2e 1864da93626SDavid Hildenbrand #define PGM_INT_CODE_ASTE_INSTANCE 0x2f 1874da93626SDavid Hildenbrand #define PGM_INT_CODE_STACK_FULL 0x30 1884da93626SDavid Hildenbrand #define PGM_INT_CODE_STACK_EMPTY 0x31 1894da93626SDavid Hildenbrand #define PGM_INT_CODE_STACK_SPECIFICATION 0x32 1904da93626SDavid Hildenbrand #define PGM_INT_CODE_STACK_TYPE 0x33 1914da93626SDavid Hildenbrand #define PGM_INT_CODE_STACK_OPERATION 0x34 1924da93626SDavid Hildenbrand #define PGM_INT_CODE_ASCE_TYPE 0x38 1934da93626SDavid Hildenbrand #define PGM_INT_CODE_REGION_FIRST_TRANS 0x39 1944da93626SDavid Hildenbrand #define PGM_INT_CODE_REGION_SECOND_TRANS 0x3a 1954da93626SDavid Hildenbrand #define PGM_INT_CODE_REGION_THIRD_TRANS 0x3b 19668721b97SJanosch Frank #define PGM_INT_CODE_SECURE_STOR_ACCESS 0x3d 19768721b97SJanosch Frank #define PGM_INT_CODE_NON_SECURE_STOR_ACCESS 0x3e 19868721b97SJanosch Frank #define PGM_INT_CODE_SECURE_STOR_VIOLATION 0x3f 1994da93626SDavid Hildenbrand #define PGM_INT_CODE_MONITOR_EVENT 0x40 2004da93626SDavid Hildenbrand #define PGM_INT_CODE_PER 0x80 2014da93626SDavid Hildenbrand #define PGM_INT_CODE_CRYPTO_OPERATION 0x119 2024da93626SDavid Hildenbrand #define PGM_INT_CODE_TX_ABORTED_EVENT 0x200 2034da93626SDavid Hildenbrand 204484a3a57SDavid Hildenbrand struct cpuid { 205484a3a57SDavid Hildenbrand uint64_t version : 8; 206484a3a57SDavid Hildenbrand uint64_t id : 24; 207484a3a57SDavid Hildenbrand uint64_t type : 16; 208484a3a57SDavid Hildenbrand uint64_t format : 1; 209484a3a57SDavid Hildenbrand uint64_t reserved : 15; 210484a3a57SDavid Hildenbrand }; 211484a3a57SDavid Hildenbrand 212b43c912fSClaudio Imbrenda #define SVC_LEAVE_PSTATE 1 213b43c912fSClaudio Imbrenda 214f77c0515SJanosch Frank static inline unsigned short stap(void) 215f77c0515SJanosch Frank { 216f77c0515SJanosch Frank unsigned short cpu_address; 217f77c0515SJanosch Frank 218f77c0515SJanosch Frank asm volatile("stap %0" : "=Q" (cpu_address)); 219f77c0515SJanosch Frank return cpu_address; 220f77c0515SJanosch Frank } 221f77c0515SJanosch Frank 222c73cc92dSJanosch Frank #define MACHINE_Z15A 0x8561 223c73cc92dSJanosch Frank #define MACHINE_Z15B 0x8562 224c73cc92dSJanosch Frank 225c73cc92dSJanosch Frank static inline uint16_t get_machine_id(void) 226c73cc92dSJanosch Frank { 227c73cc92dSJanosch Frank uint64_t cpuid; 228c73cc92dSJanosch Frank 229c73cc92dSJanosch Frank asm volatile("stidp %0" : "=Q" (cpuid)); 230c73cc92dSJanosch Frank cpuid = cpuid >> 16; 231c73cc92dSJanosch Frank cpuid &= 0xffff; 232c73cc92dSJanosch Frank 233c73cc92dSJanosch Frank return cpuid; 234c73cc92dSJanosch Frank } 235c73cc92dSJanosch Frank 236443987a6SJanis Schoetterl-Glausch static inline int tprot(unsigned long addr, char access_key) 2373db880b6SDavid Hildenbrand { 2383db880b6SDavid Hildenbrand int cc; 2393db880b6SDavid Hildenbrand 2403db880b6SDavid Hildenbrand asm volatile( 241443987a6SJanis Schoetterl-Glausch " tprot 0(%1),0(%2)\n" 2423db880b6SDavid Hildenbrand " ipm %0\n" 2433db880b6SDavid Hildenbrand " srl %0,28\n" 244443987a6SJanis Schoetterl-Glausch : "=d" (cc) : "a" (addr), "a" (access_key << 4) : "cc"); 2453db880b6SDavid Hildenbrand return cc; 2463db880b6SDavid Hildenbrand } 2473db880b6SDavid Hildenbrand 248c08c320bSDavid Hildenbrand static inline void lctlg(int cr, uint64_t value) 249c08c320bSDavid Hildenbrand { 250c08c320bSDavid Hildenbrand asm volatile( 251c08c320bSDavid Hildenbrand " lctlg %1,%1,%0\n" 252c08c320bSDavid Hildenbrand : : "Q" (value), "i" (cr)); 253c08c320bSDavid Hildenbrand } 254c08c320bSDavid Hildenbrand 255c08c320bSDavid Hildenbrand static inline uint64_t stctg(int cr) 256c08c320bSDavid Hildenbrand { 257c08c320bSDavid Hildenbrand uint64_t value; 258c08c320bSDavid Hildenbrand 259c08c320bSDavid Hildenbrand asm volatile( 260c08c320bSDavid Hildenbrand " stctg %1,%1,%0\n" 261c08c320bSDavid Hildenbrand : "=Q" (value) : "i" (cr) : "memory"); 262c08c320bSDavid Hildenbrand return value; 263c08c320bSDavid Hildenbrand } 264c08c320bSDavid Hildenbrand 26543868475SJanosch Frank static inline void ctl_set_bit(int cr, unsigned int bit) 26643868475SJanosch Frank { 26743868475SJanosch Frank uint64_t reg; 26843868475SJanosch Frank 26943868475SJanosch Frank reg = stctg(cr); 27043868475SJanosch Frank reg |= 1UL << bit; 27143868475SJanosch Frank lctlg(cr, reg); 27243868475SJanosch Frank } 27343868475SJanosch Frank 27443868475SJanosch Frank static inline void ctl_clear_bit(int cr, unsigned int bit) 27543868475SJanosch Frank { 27643868475SJanosch Frank uint64_t reg; 27743868475SJanosch Frank 27843868475SJanosch Frank reg = stctg(cr); 27943868475SJanosch Frank reg &= ~(1UL << bit); 28043868475SJanosch Frank lctlg(cr, reg); 28143868475SJanosch Frank } 28243868475SJanosch Frank 283c08c320bSDavid Hildenbrand static inline uint64_t extract_psw_mask(void) 284c08c320bSDavid Hildenbrand { 285c08c320bSDavid Hildenbrand uint32_t mask_upper = 0, mask_lower = 0; 286c08c320bSDavid Hildenbrand 287c08c320bSDavid Hildenbrand asm volatile( 288c08c320bSDavid Hildenbrand " epsw %0,%1\n" 28921675e2dSThomas Huth : "=r" (mask_upper), "=a" (mask_lower)); 290c08c320bSDavid Hildenbrand 291c08c320bSDavid Hildenbrand return (uint64_t) mask_upper << 32 | mask_lower; 292c08c320bSDavid Hildenbrand } 293c08c320bSDavid Hildenbrand 294c08c320bSDavid Hildenbrand static inline void load_psw_mask(uint64_t mask) 295c08c320bSDavid Hildenbrand { 296c08c320bSDavid Hildenbrand struct psw psw = { 297c08c320bSDavid Hildenbrand .mask = mask, 298c08c320bSDavid Hildenbrand .addr = 0, 299c08c320bSDavid Hildenbrand }; 300c08c320bSDavid Hildenbrand uint64_t tmp = 0; 301c08c320bSDavid Hildenbrand 302c08c320bSDavid Hildenbrand asm volatile( 303c08c320bSDavid Hildenbrand " larl %0,0f\n" 304c08c320bSDavid Hildenbrand " stg %0,8(%1)\n" 305c08c320bSDavid Hildenbrand " lpswe 0(%1)\n" 306c08c320bSDavid Hildenbrand "0:\n" 307c08c320bSDavid Hildenbrand : "+r" (tmp) : "a" (&psw) : "memory", "cc" ); 308c08c320bSDavid Hildenbrand } 309c08c320bSDavid Hildenbrand 310f73b4b9eSPierre Morel static inline void wait_for_interrupt(uint64_t irq_mask) 311f73b4b9eSPierre Morel { 312f73b4b9eSPierre Morel uint64_t psw_mask = extract_psw_mask(); 313f73b4b9eSPierre Morel 314f73b4b9eSPierre Morel load_psw_mask(psw_mask | irq_mask | PSW_MASK_WAIT); 315f73b4b9eSPierre Morel /* 316f73b4b9eSPierre Morel * After being woken and having processed the interrupt, let's restore 317f73b4b9eSPierre Morel * the PSW mask. 318f73b4b9eSPierre Morel */ 319f73b4b9eSPierre Morel load_psw_mask(psw_mask); 320f73b4b9eSPierre Morel } 321f73b4b9eSPierre Morel 3224ef6f57dSJanosch Frank static inline void enter_pstate(void) 3234ef6f57dSJanosch Frank { 3244ef6f57dSJanosch Frank uint64_t mask; 3254ef6f57dSJanosch Frank 3264ef6f57dSJanosch Frank mask = extract_psw_mask(); 3274ef6f57dSJanosch Frank mask |= PSW_MASK_PSTATE; 3284ef6f57dSJanosch Frank load_psw_mask(mask); 3294ef6f57dSJanosch Frank } 3304ef6f57dSJanosch Frank 331b43c912fSClaudio Imbrenda static inline void leave_pstate(void) 332b43c912fSClaudio Imbrenda { 333b43c912fSClaudio Imbrenda asm volatile(" svc %0\n" : : "i" (SVC_LEAVE_PSTATE)); 334b43c912fSClaudio Imbrenda } 335b43c912fSClaudio Imbrenda 336c132c9e2SJanosch Frank static inline int stsi(void *addr, int fc, int sel1, int sel2) 337c132c9e2SJanosch Frank { 338c132c9e2SJanosch Frank register int r0 asm("0") = (fc << 28) | sel1; 339c132c9e2SJanosch Frank register int r1 asm("1") = sel2; 340c132c9e2SJanosch Frank int cc; 341c132c9e2SJanosch Frank 342c132c9e2SJanosch Frank asm volatile( 343c132c9e2SJanosch Frank "stsi 0(%3)\n" 344c132c9e2SJanosch Frank "ipm %[cc]\n" 345c132c9e2SJanosch Frank "srl %[cc],28\n" 346c132c9e2SJanosch Frank : "+d" (r0), [cc] "=d" (cc) 347c132c9e2SJanosch Frank : "d" (r1), "a" (addr) 348c132c9e2SJanosch Frank : "cc", "memory"); 349c132c9e2SJanosch Frank return cc; 350c132c9e2SJanosch Frank } 351c132c9e2SJanosch Frank 352242b02e3SPierre Morel static inline unsigned long stsi_get_fc(void) 353242b02e3SPierre Morel { 354242b02e3SPierre Morel register unsigned long r0 asm("0") = 0; 355242b02e3SPierre Morel register unsigned long r1 asm("1") = 0; 356242b02e3SPierre Morel int cc; 357242b02e3SPierre Morel 358242b02e3SPierre Morel asm volatile("stsi 0\n" 359242b02e3SPierre Morel "ipm %[cc]\n" 360242b02e3SPierre Morel "srl %[cc],28\n" 361242b02e3SPierre Morel : "+d" (r0), [cc] "=d" (cc) 362242b02e3SPierre Morel : "d" (r1) 363242b02e3SPierre Morel : "cc", "memory"); 364242b02e3SPierre Morel assert(!cc); 365242b02e3SPierre Morel return r0 >> 28; 366242b02e3SPierre Morel } 367242b02e3SPierre Morel 368f9395bfeSClaudio Imbrenda static inline int servc(uint32_t command, unsigned long sccb) 369f9395bfeSClaudio Imbrenda { 370f9395bfeSClaudio Imbrenda int cc; 371f9395bfeSClaudio Imbrenda 372f9395bfeSClaudio Imbrenda asm volatile( 373f9395bfeSClaudio Imbrenda " .insn rre,0xb2200000,%1,%2\n" /* servc %1,%2 */ 374f9395bfeSClaudio Imbrenda " ipm %0\n" 375f9395bfeSClaudio Imbrenda " srl %0,28" 376f9395bfeSClaudio Imbrenda : "=&d" (cc) : "d" (command), "a" (sccb) 377f9395bfeSClaudio Imbrenda : "cc", "memory"); 378f9395bfeSClaudio Imbrenda return cc; 379f9395bfeSClaudio Imbrenda } 380f9395bfeSClaudio Imbrenda 3816b3278c9SClaudio Imbrenda static inline void set_prefix(uint32_t new_prefix) 3826b3278c9SClaudio Imbrenda { 3836b3278c9SClaudio Imbrenda asm volatile(" spx %0" : : "Q" (new_prefix) : "memory"); 3846b3278c9SClaudio Imbrenda } 3856b3278c9SClaudio Imbrenda 3866b3278c9SClaudio Imbrenda static inline uint32_t get_prefix(void) 3876b3278c9SClaudio Imbrenda { 3886b3278c9SClaudio Imbrenda uint32_t current_prefix; 3896b3278c9SClaudio Imbrenda 3906b3278c9SClaudio Imbrenda asm volatile(" stpx %0" : "=Q" (current_prefix)); 3916b3278c9SClaudio Imbrenda return current_prefix; 3926b3278c9SClaudio Imbrenda } 3936b3278c9SClaudio Imbrenda 394cfb204f9SDavid Hildenbrand #endif 395