xref: /kvm-unit-tests/lib/s390x/asm/cpacf.h (revision 6c9f99df2fa51f58bd6a8b6775810b7f249bd0d7)
1*6c9f99dfSJanosch Frank /* SPDX-License-Identifier: GPL-2.0-only */
2a555dc6bSDavid Hildenbrand /*
3a555dc6bSDavid Hildenbrand  * CP Assist for Cryptographic Functions (CPACF)
4a555dc6bSDavid Hildenbrand  *
5a555dc6bSDavid Hildenbrand  * Copyright IBM Corp. 2003, 2016
6a555dc6bSDavid Hildenbrand  * Author(s): Thomas Spatzier
7a555dc6bSDavid Hildenbrand  *	      Jan Glauber
8a555dc6bSDavid Hildenbrand  *	      Harald Freudenberger (freude@de.ibm.com)
9a555dc6bSDavid Hildenbrand  *	      Martin Schwidefsky <schwidefsky@de.ibm.com>
10a555dc6bSDavid Hildenbrand  */
11a555dc6bSDavid Hildenbrand #ifndef _ASM_S390_CPACF_H
12a555dc6bSDavid Hildenbrand #define _ASM_S390_CPACF_H
13a555dc6bSDavid Hildenbrand 
14a555dc6bSDavid Hildenbrand #include <asm/facility.h>
15c2f4799aSClaudio Imbrenda #include <linux/compiler.h>
16a555dc6bSDavid Hildenbrand 
17a555dc6bSDavid Hildenbrand /*
18a555dc6bSDavid Hildenbrand  * Instruction opcodes for the CPACF instructions
19a555dc6bSDavid Hildenbrand  */
20a555dc6bSDavid Hildenbrand #define CPACF_KMAC		0xb91e		/* MSA	*/
21a555dc6bSDavid Hildenbrand #define CPACF_KM		0xb92e		/* MSA	*/
22a555dc6bSDavid Hildenbrand #define CPACF_KMC		0xb92f		/* MSA	*/
23a555dc6bSDavid Hildenbrand #define CPACF_KIMD		0xb93e		/* MSA	*/
24a555dc6bSDavid Hildenbrand #define CPACF_KLMD		0xb93f		/* MSA	*/
25a555dc6bSDavid Hildenbrand #define CPACF_PCKMO		0xb928		/* MSA3 */
26a555dc6bSDavid Hildenbrand #define CPACF_KMF		0xb92a		/* MSA4 */
27a555dc6bSDavid Hildenbrand #define CPACF_KMO		0xb92b		/* MSA4 */
28a555dc6bSDavid Hildenbrand #define CPACF_PCC		0xb92c		/* MSA4 */
29a555dc6bSDavid Hildenbrand #define CPACF_KMCTR		0xb92d		/* MSA4 */
30a555dc6bSDavid Hildenbrand #define CPACF_PRNO		0xb93c		/* MSA5 */
31a555dc6bSDavid Hildenbrand #define CPACF_KMA		0xb929		/* MSA8 */
32a555dc6bSDavid Hildenbrand 
33a555dc6bSDavid Hildenbrand /*
34a555dc6bSDavid Hildenbrand  * En/decryption modifier bits
35a555dc6bSDavid Hildenbrand  */
36a555dc6bSDavid Hildenbrand #define CPACF_ENCRYPT		0x00
37a555dc6bSDavid Hildenbrand #define CPACF_DECRYPT		0x80
38a555dc6bSDavid Hildenbrand 
39a555dc6bSDavid Hildenbrand /*
40a555dc6bSDavid Hildenbrand  * Function codes for the KM (CIPHER MESSAGE) instruction
41a555dc6bSDavid Hildenbrand  */
42a555dc6bSDavid Hildenbrand #define CPACF_KM_QUERY		0x00
43a555dc6bSDavid Hildenbrand #define CPACF_KM_DEA		0x01
44a555dc6bSDavid Hildenbrand #define CPACF_KM_TDEA_128	0x02
45a555dc6bSDavid Hildenbrand #define CPACF_KM_TDEA_192	0x03
46a555dc6bSDavid Hildenbrand #define CPACF_KM_AES_128	0x12
47a555dc6bSDavid Hildenbrand #define CPACF_KM_AES_192	0x13
48a555dc6bSDavid Hildenbrand #define CPACF_KM_AES_256	0x14
49a555dc6bSDavid Hildenbrand #define CPACF_KM_PAES_128	0x1a
50a555dc6bSDavid Hildenbrand #define CPACF_KM_PAES_192	0x1b
51a555dc6bSDavid Hildenbrand #define CPACF_KM_PAES_256	0x1c
52a555dc6bSDavid Hildenbrand #define CPACF_KM_XTS_128	0x32
53a555dc6bSDavid Hildenbrand #define CPACF_KM_XTS_256	0x34
54a555dc6bSDavid Hildenbrand #define CPACF_KM_PXTS_128	0x3a
55a555dc6bSDavid Hildenbrand #define CPACF_KM_PXTS_256	0x3c
56a555dc6bSDavid Hildenbrand 
57a555dc6bSDavid Hildenbrand /*
58a555dc6bSDavid Hildenbrand  * Function codes for the KMC (CIPHER MESSAGE WITH CHAINING)
59a555dc6bSDavid Hildenbrand  * instruction
60a555dc6bSDavid Hildenbrand  */
61a555dc6bSDavid Hildenbrand #define CPACF_KMC_QUERY		0x00
62a555dc6bSDavid Hildenbrand #define CPACF_KMC_DEA		0x01
63a555dc6bSDavid Hildenbrand #define CPACF_KMC_TDEA_128	0x02
64a555dc6bSDavid Hildenbrand #define CPACF_KMC_TDEA_192	0x03
65a555dc6bSDavid Hildenbrand #define CPACF_KMC_AES_128	0x12
66a555dc6bSDavid Hildenbrand #define CPACF_KMC_AES_192	0x13
67a555dc6bSDavid Hildenbrand #define CPACF_KMC_AES_256	0x14
68a555dc6bSDavid Hildenbrand #define CPACF_KMC_PAES_128	0x1a
69a555dc6bSDavid Hildenbrand #define CPACF_KMC_PAES_192	0x1b
70a555dc6bSDavid Hildenbrand #define CPACF_KMC_PAES_256	0x1c
71a555dc6bSDavid Hildenbrand #define CPACF_KMC_PRNG		0x43
72a555dc6bSDavid Hildenbrand 
73a555dc6bSDavid Hildenbrand /*
74a555dc6bSDavid Hildenbrand  * Function codes for the KMCTR (CIPHER MESSAGE WITH COUNTER)
75a555dc6bSDavid Hildenbrand  * instruction
76a555dc6bSDavid Hildenbrand  */
77a555dc6bSDavid Hildenbrand #define CPACF_KMCTR_QUERY	0x00
78a555dc6bSDavid Hildenbrand #define CPACF_KMCTR_DEA		0x01
79a555dc6bSDavid Hildenbrand #define CPACF_KMCTR_TDEA_128	0x02
80a555dc6bSDavid Hildenbrand #define CPACF_KMCTR_TDEA_192	0x03
81a555dc6bSDavid Hildenbrand #define CPACF_KMCTR_AES_128	0x12
82a555dc6bSDavid Hildenbrand #define CPACF_KMCTR_AES_192	0x13
83a555dc6bSDavid Hildenbrand #define CPACF_KMCTR_AES_256	0x14
84a555dc6bSDavid Hildenbrand #define CPACF_KMCTR_PAES_128	0x1a
85a555dc6bSDavid Hildenbrand #define CPACF_KMCTR_PAES_192	0x1b
86a555dc6bSDavid Hildenbrand #define CPACF_KMCTR_PAES_256	0x1c
87a555dc6bSDavid Hildenbrand 
88a555dc6bSDavid Hildenbrand /*
89a555dc6bSDavid Hildenbrand  * Function codes for the KIMD (COMPUTE INTERMEDIATE MESSAGE DIGEST)
90a555dc6bSDavid Hildenbrand  * instruction
91a555dc6bSDavid Hildenbrand  */
92a555dc6bSDavid Hildenbrand #define CPACF_KIMD_QUERY	0x00
93a555dc6bSDavid Hildenbrand #define CPACF_KIMD_SHA_1	0x01
94a555dc6bSDavid Hildenbrand #define CPACF_KIMD_SHA_256	0x02
95a555dc6bSDavid Hildenbrand #define CPACF_KIMD_SHA_512	0x03
96a555dc6bSDavid Hildenbrand #define CPACF_KIMD_GHASH	0x41
97a555dc6bSDavid Hildenbrand 
98a555dc6bSDavid Hildenbrand /*
99a555dc6bSDavid Hildenbrand  * Function codes for the KLMD (COMPUTE LAST MESSAGE DIGEST)
100a555dc6bSDavid Hildenbrand  * instruction
101a555dc6bSDavid Hildenbrand  */
102a555dc6bSDavid Hildenbrand #define CPACF_KLMD_QUERY	0x00
103a555dc6bSDavid Hildenbrand #define CPACF_KLMD_SHA_1	0x01
104a555dc6bSDavid Hildenbrand #define CPACF_KLMD_SHA_256	0x02
105a555dc6bSDavid Hildenbrand #define CPACF_KLMD_SHA_512	0x03
106a555dc6bSDavid Hildenbrand 
107a555dc6bSDavid Hildenbrand /*
108a555dc6bSDavid Hildenbrand  * function codes for the KMAC (COMPUTE MESSAGE AUTHENTICATION CODE)
109a555dc6bSDavid Hildenbrand  * instruction
110a555dc6bSDavid Hildenbrand  */
111a555dc6bSDavid Hildenbrand #define CPACF_KMAC_QUERY	0x00
112a555dc6bSDavid Hildenbrand #define CPACF_KMAC_DEA		0x01
113a555dc6bSDavid Hildenbrand #define CPACF_KMAC_TDEA_128	0x02
114a555dc6bSDavid Hildenbrand #define CPACF_KMAC_TDEA_192	0x03
115a555dc6bSDavid Hildenbrand 
116a555dc6bSDavid Hildenbrand /*
117a555dc6bSDavid Hildenbrand  * Function codes for the PCKMO (PERFORM CRYPTOGRAPHIC KEY MANAGEMENT)
118a555dc6bSDavid Hildenbrand  * instruction
119a555dc6bSDavid Hildenbrand  */
120a555dc6bSDavid Hildenbrand #define CPACF_PCKMO_QUERY		0x00
121a555dc6bSDavid Hildenbrand #define CPACF_PCKMO_ENC_DES_KEY		0x01
122a555dc6bSDavid Hildenbrand #define CPACF_PCKMO_ENC_TDES_128_KEY	0x02
123a555dc6bSDavid Hildenbrand #define CPACF_PCKMO_ENC_TDES_192_KEY	0x03
124a555dc6bSDavid Hildenbrand #define CPACF_PCKMO_ENC_AES_128_KEY	0x12
125a555dc6bSDavid Hildenbrand #define CPACF_PCKMO_ENC_AES_192_KEY	0x13
126a555dc6bSDavid Hildenbrand #define CPACF_PCKMO_ENC_AES_256_KEY	0x14
127a555dc6bSDavid Hildenbrand 
128a555dc6bSDavid Hildenbrand /*
129a555dc6bSDavid Hildenbrand  * Function codes for the PRNO (PERFORM RANDOM NUMBER OPERATION)
130a555dc6bSDavid Hildenbrand  * instruction
131a555dc6bSDavid Hildenbrand  */
132a555dc6bSDavid Hildenbrand #define CPACF_PRNO_QUERY		0x00
133a555dc6bSDavid Hildenbrand #define CPACF_PRNO_SHA512_DRNG_GEN	0x03
134a555dc6bSDavid Hildenbrand #define CPACF_PRNO_SHA512_DRNG_SEED	0x83
135a555dc6bSDavid Hildenbrand #define CPACF_PRNO_TRNG_Q_R2C_RATIO	0x70
136a555dc6bSDavid Hildenbrand #define CPACF_PRNO_TRNG			0x72
137a555dc6bSDavid Hildenbrand 
138a555dc6bSDavid Hildenbrand typedef struct { unsigned char bytes[16]; } cpacf_mask_t;
139a555dc6bSDavid Hildenbrand 
140a555dc6bSDavid Hildenbrand /**
141a555dc6bSDavid Hildenbrand  * cpacf_query() - check if a specific CPACF function is available
142a555dc6bSDavid Hildenbrand  * @opcode: the opcode of the crypto instruction
143a555dc6bSDavid Hildenbrand  * @func: the function code to test for
144a555dc6bSDavid Hildenbrand  *
145a555dc6bSDavid Hildenbrand  * Executes the query function for the given crypto instruction @opcode
146a555dc6bSDavid Hildenbrand  * and checks if @func is available
147a555dc6bSDavid Hildenbrand  *
148a555dc6bSDavid Hildenbrand  * Returns 1 if @func is available for @opcode, 0 otherwise
149a555dc6bSDavid Hildenbrand  */
150c2f4799aSClaudio Imbrenda static __always_inline void __cpacf_query(unsigned int opcode, cpacf_mask_t *mask)
151a555dc6bSDavid Hildenbrand {
152a555dc6bSDavid Hildenbrand 	register unsigned long r0 asm("0") = 0;	/* query function */
153a555dc6bSDavid Hildenbrand 	register unsigned long r1 asm("1") = (unsigned long) mask;
154a555dc6bSDavid Hildenbrand 
155a555dc6bSDavid Hildenbrand 	asm volatile(
156a555dc6bSDavid Hildenbrand 		"	spm 0\n" /* pckmo doesn't change the cc */
157a555dc6bSDavid Hildenbrand 		/* Parameter regs are ignored, but must be nonzero and unique */
158a555dc6bSDavid Hildenbrand 		"0:	.insn	rrf,%[opc] << 16,2,4,6,0\n"
159a555dc6bSDavid Hildenbrand 		"	brc	1,0b\n"	/* handle partial completion */
160a555dc6bSDavid Hildenbrand 		: "=m" (*mask)
161a555dc6bSDavid Hildenbrand 		: [fc] "d" (r0), [pba] "a" (r1), [opc] "i" (opcode)
162a555dc6bSDavid Hildenbrand 		: "cc");
163a555dc6bSDavid Hildenbrand }
164a555dc6bSDavid Hildenbrand 
165a555dc6bSDavid Hildenbrand static inline int __cpacf_check_opcode(unsigned int opcode)
166a555dc6bSDavid Hildenbrand {
167a555dc6bSDavid Hildenbrand 	switch (opcode) {
168a555dc6bSDavid Hildenbrand 	case CPACF_KMAC:
169a555dc6bSDavid Hildenbrand 	case CPACF_KM:
170a555dc6bSDavid Hildenbrand 	case CPACF_KMC:
171a555dc6bSDavid Hildenbrand 	case CPACF_KIMD:
172a555dc6bSDavid Hildenbrand 	case CPACF_KLMD:
173a555dc6bSDavid Hildenbrand 		return test_facility(17);	/* check for MSA */
174a555dc6bSDavid Hildenbrand 	case CPACF_PCKMO:
175a555dc6bSDavid Hildenbrand 		return test_facility(76);	/* check for MSA3 */
176a555dc6bSDavid Hildenbrand 	case CPACF_KMF:
177a555dc6bSDavid Hildenbrand 	case CPACF_KMO:
178a555dc6bSDavid Hildenbrand 	case CPACF_PCC:
179a555dc6bSDavid Hildenbrand 	case CPACF_KMCTR:
180a555dc6bSDavid Hildenbrand 		return test_facility(77);	/* check for MSA4 */
181a555dc6bSDavid Hildenbrand 	case CPACF_PRNO:
182a555dc6bSDavid Hildenbrand 		return test_facility(57);	/* check for MSA5 */
183a555dc6bSDavid Hildenbrand 	default:
184f1bcb0a3SDavid Hildenbrand 		return 0;
185a555dc6bSDavid Hildenbrand 	}
186a555dc6bSDavid Hildenbrand }
187a555dc6bSDavid Hildenbrand 
188c2f4799aSClaudio Imbrenda static __always_inline int cpacf_query(unsigned int opcode, cpacf_mask_t *mask)
189a555dc6bSDavid Hildenbrand {
190a555dc6bSDavid Hildenbrand 	if (__cpacf_check_opcode(opcode)) {
191a555dc6bSDavid Hildenbrand 		__cpacf_query(opcode, mask);
192a555dc6bSDavid Hildenbrand 		return 1;
193a555dc6bSDavid Hildenbrand 	}
194a555dc6bSDavid Hildenbrand 	memset(mask, 0, sizeof(*mask));
195a555dc6bSDavid Hildenbrand 	return 0;
196a555dc6bSDavid Hildenbrand }
197a555dc6bSDavid Hildenbrand 
198a555dc6bSDavid Hildenbrand static inline int cpacf_test_func(cpacf_mask_t *mask, unsigned int func)
199a555dc6bSDavid Hildenbrand {
200a555dc6bSDavid Hildenbrand 	return (mask->bytes[func >> 3] & (0x80 >> (func & 7))) != 0;
201a555dc6bSDavid Hildenbrand }
202a555dc6bSDavid Hildenbrand 
203a555dc6bSDavid Hildenbrand static inline int cpacf_query_func(unsigned int opcode, unsigned int func)
204a555dc6bSDavid Hildenbrand {
205a555dc6bSDavid Hildenbrand 	cpacf_mask_t mask;
206a555dc6bSDavid Hildenbrand 
207a555dc6bSDavid Hildenbrand 	if (cpacf_query(opcode, &mask))
208a555dc6bSDavid Hildenbrand 		return cpacf_test_func(&mask, func);
209a555dc6bSDavid Hildenbrand 	return 0;
210a555dc6bSDavid Hildenbrand }
211a555dc6bSDavid Hildenbrand 
212a555dc6bSDavid Hildenbrand /**
213a555dc6bSDavid Hildenbrand  * cpacf_km() - executes the KM (CIPHER MESSAGE) instruction
214a555dc6bSDavid Hildenbrand  * @func: the function code passed to KM; see CPACF_KM_xxx defines
215a555dc6bSDavid Hildenbrand  * @param: address of parameter block; see POP for details on each func
216a555dc6bSDavid Hildenbrand  * @dest: address of destination memory area
217a555dc6bSDavid Hildenbrand  * @src: address of source memory area
218a555dc6bSDavid Hildenbrand  * @src_len: length of src operand in bytes
219a555dc6bSDavid Hildenbrand  *
220a555dc6bSDavid Hildenbrand  * Returns 0 for the query func, number of processed bytes for
221a555dc6bSDavid Hildenbrand  * encryption/decryption funcs
222a555dc6bSDavid Hildenbrand  */
223a555dc6bSDavid Hildenbrand static inline int cpacf_km(unsigned long func, void *param,
224a555dc6bSDavid Hildenbrand 			   u8 *dest, const u8 *src, long src_len)
225a555dc6bSDavid Hildenbrand {
226a555dc6bSDavid Hildenbrand 	register unsigned long r0 asm("0") = (unsigned long) func;
227a555dc6bSDavid Hildenbrand 	register unsigned long r1 asm("1") = (unsigned long) param;
228a555dc6bSDavid Hildenbrand 	register unsigned long r2 asm("2") = (unsigned long) src;
229a555dc6bSDavid Hildenbrand 	register unsigned long r3 asm("3") = (unsigned long) src_len;
230a555dc6bSDavid Hildenbrand 	register unsigned long r4 asm("4") = (unsigned long) dest;
231a555dc6bSDavid Hildenbrand 
232a555dc6bSDavid Hildenbrand 	asm volatile(
233a555dc6bSDavid Hildenbrand 		"0:	.insn	rre,%[opc] << 16,%[dst],%[src]\n"
234a555dc6bSDavid Hildenbrand 		"	brc	1,0b\n" /* handle partial completion */
235a555dc6bSDavid Hildenbrand 		: [src] "+a" (r2), [len] "+d" (r3), [dst] "+a" (r4)
236a555dc6bSDavid Hildenbrand 		: [fc] "d" (r0), [pba] "a" (r1), [opc] "i" (CPACF_KM)
237a555dc6bSDavid Hildenbrand 		: "cc", "memory");
238a555dc6bSDavid Hildenbrand 
239a555dc6bSDavid Hildenbrand 	return src_len - r3;
240a555dc6bSDavid Hildenbrand }
241a555dc6bSDavid Hildenbrand 
242a555dc6bSDavid Hildenbrand /**
243a555dc6bSDavid Hildenbrand  * cpacf_kmc() - executes the KMC (CIPHER MESSAGE WITH CHAINING) instruction
244a555dc6bSDavid Hildenbrand  * @func: the function code passed to KM; see CPACF_KMC_xxx defines
245a555dc6bSDavid Hildenbrand  * @param: address of parameter block; see POP for details on each func
246a555dc6bSDavid Hildenbrand  * @dest: address of destination memory area
247a555dc6bSDavid Hildenbrand  * @src: address of source memory area
248a555dc6bSDavid Hildenbrand  * @src_len: length of src operand in bytes
249a555dc6bSDavid Hildenbrand  *
250a555dc6bSDavid Hildenbrand  * Returns 0 for the query func, number of processed bytes for
251a555dc6bSDavid Hildenbrand  * encryption/decryption funcs
252a555dc6bSDavid Hildenbrand  */
253a555dc6bSDavid Hildenbrand static inline int cpacf_kmc(unsigned long func, void *param,
254a555dc6bSDavid Hildenbrand 			    u8 *dest, const u8 *src, long src_len)
255a555dc6bSDavid Hildenbrand {
256a555dc6bSDavid Hildenbrand 	register unsigned long r0 asm("0") = (unsigned long) func;
257a555dc6bSDavid Hildenbrand 	register unsigned long r1 asm("1") = (unsigned long) param;
258a555dc6bSDavid Hildenbrand 	register unsigned long r2 asm("2") = (unsigned long) src;
259a555dc6bSDavid Hildenbrand 	register unsigned long r3 asm("3") = (unsigned long) src_len;
260a555dc6bSDavid Hildenbrand 	register unsigned long r4 asm("4") = (unsigned long) dest;
261a555dc6bSDavid Hildenbrand 
262a555dc6bSDavid Hildenbrand 	asm volatile(
263a555dc6bSDavid Hildenbrand 		"0:	.insn	rre,%[opc] << 16,%[dst],%[src]\n"
264a555dc6bSDavid Hildenbrand 		"	brc	1,0b\n" /* handle partial completion */
265a555dc6bSDavid Hildenbrand 		: [src] "+a" (r2), [len] "+d" (r3), [dst] "+a" (r4)
266a555dc6bSDavid Hildenbrand 		: [fc] "d" (r0), [pba] "a" (r1), [opc] "i" (CPACF_KMC)
267a555dc6bSDavid Hildenbrand 		: "cc", "memory");
268a555dc6bSDavid Hildenbrand 
269a555dc6bSDavid Hildenbrand 	return src_len - r3;
270a555dc6bSDavid Hildenbrand }
271a555dc6bSDavid Hildenbrand 
272a555dc6bSDavid Hildenbrand /**
273a555dc6bSDavid Hildenbrand  * cpacf_kimd() - executes the KIMD (COMPUTE INTERMEDIATE MESSAGE DIGEST)
274a555dc6bSDavid Hildenbrand  *		  instruction
275a555dc6bSDavid Hildenbrand  * @func: the function code passed to KM; see CPACF_KIMD_xxx defines
276a555dc6bSDavid Hildenbrand  * @param: address of parameter block; see POP for details on each func
277a555dc6bSDavid Hildenbrand  * @src: address of source memory area
278a555dc6bSDavid Hildenbrand  * @src_len: length of src operand in bytes
279a555dc6bSDavid Hildenbrand  */
280a555dc6bSDavid Hildenbrand static inline void cpacf_kimd(unsigned long func, void *param,
281a555dc6bSDavid Hildenbrand 			      const u8 *src, long src_len)
282a555dc6bSDavid Hildenbrand {
283a555dc6bSDavid Hildenbrand 	register unsigned long r0 asm("0") = (unsigned long) func;
284a555dc6bSDavid Hildenbrand 	register unsigned long r1 asm("1") = (unsigned long) param;
285a555dc6bSDavid Hildenbrand 	register unsigned long r2 asm("2") = (unsigned long) src;
286a555dc6bSDavid Hildenbrand 	register unsigned long r3 asm("3") = (unsigned long) src_len;
287a555dc6bSDavid Hildenbrand 
288a555dc6bSDavid Hildenbrand 	asm volatile(
289a555dc6bSDavid Hildenbrand 		"0:	.insn	rre,%[opc] << 16,0,%[src]\n"
290a555dc6bSDavid Hildenbrand 		"	brc	1,0b\n" /* handle partial completion */
291a555dc6bSDavid Hildenbrand 		: [src] "+a" (r2), [len] "+d" (r3)
292a555dc6bSDavid Hildenbrand 		: [fc] "d" (r0), [pba] "a" (r1), [opc] "i" (CPACF_KIMD)
293a555dc6bSDavid Hildenbrand 		: "cc", "memory");
294a555dc6bSDavid Hildenbrand }
295a555dc6bSDavid Hildenbrand 
296a555dc6bSDavid Hildenbrand /**
297a555dc6bSDavid Hildenbrand  * cpacf_klmd() - executes the KLMD (COMPUTE LAST MESSAGE DIGEST) instruction
298a555dc6bSDavid Hildenbrand  * @func: the function code passed to KM; see CPACF_KLMD_xxx defines
299a555dc6bSDavid Hildenbrand  * @param: address of parameter block; see POP for details on each func
300a555dc6bSDavid Hildenbrand  * @src: address of source memory area
301a555dc6bSDavid Hildenbrand  * @src_len: length of src operand in bytes
302a555dc6bSDavid Hildenbrand  */
303a555dc6bSDavid Hildenbrand static inline void cpacf_klmd(unsigned long func, void *param,
304a555dc6bSDavid Hildenbrand 			      const u8 *src, long src_len)
305a555dc6bSDavid Hildenbrand {
306a555dc6bSDavid Hildenbrand 	register unsigned long r0 asm("0") = (unsigned long) func;
307a555dc6bSDavid Hildenbrand 	register unsigned long r1 asm("1") = (unsigned long) param;
308a555dc6bSDavid Hildenbrand 	register unsigned long r2 asm("2") = (unsigned long) src;
309a555dc6bSDavid Hildenbrand 	register unsigned long r3 asm("3") = (unsigned long) src_len;
310a555dc6bSDavid Hildenbrand 
311a555dc6bSDavid Hildenbrand 	asm volatile(
312a555dc6bSDavid Hildenbrand 		"0:	.insn	rre,%[opc] << 16,0,%[src]\n"
313a555dc6bSDavid Hildenbrand 		"	brc	1,0b\n" /* handle partial completion */
314a555dc6bSDavid Hildenbrand 		: [src] "+a" (r2), [len] "+d" (r3)
315a555dc6bSDavid Hildenbrand 		: [fc] "d" (r0), [pba] "a" (r1), [opc] "i" (CPACF_KLMD)
316a555dc6bSDavid Hildenbrand 		: "cc", "memory");
317a555dc6bSDavid Hildenbrand }
318a555dc6bSDavid Hildenbrand 
319a555dc6bSDavid Hildenbrand /**
320a555dc6bSDavid Hildenbrand  * cpacf_kmac() - executes the KMAC (COMPUTE MESSAGE AUTHENTICATION CODE)
321a555dc6bSDavid Hildenbrand  *		  instruction
322a555dc6bSDavid Hildenbrand  * @func: the function code passed to KM; see CPACF_KMAC_xxx defines
323a555dc6bSDavid Hildenbrand  * @param: address of parameter block; see POP for details on each func
324a555dc6bSDavid Hildenbrand  * @src: address of source memory area
325a555dc6bSDavid Hildenbrand  * @src_len: length of src operand in bytes
326a555dc6bSDavid Hildenbrand  *
327a555dc6bSDavid Hildenbrand  * Returns 0 for the query func, number of processed bytes for digest funcs
328a555dc6bSDavid Hildenbrand  */
329a555dc6bSDavid Hildenbrand static inline int cpacf_kmac(unsigned long func, void *param,
330a555dc6bSDavid Hildenbrand 			     const u8 *src, long src_len)
331a555dc6bSDavid Hildenbrand {
332a555dc6bSDavid Hildenbrand 	register unsigned long r0 asm("0") = (unsigned long) func;
333a555dc6bSDavid Hildenbrand 	register unsigned long r1 asm("1") = (unsigned long) param;
334a555dc6bSDavid Hildenbrand 	register unsigned long r2 asm("2") = (unsigned long) src;
335a555dc6bSDavid Hildenbrand 	register unsigned long r3 asm("3") = (unsigned long) src_len;
336a555dc6bSDavid Hildenbrand 
337a555dc6bSDavid Hildenbrand 	asm volatile(
338a555dc6bSDavid Hildenbrand 		"0:	.insn	rre,%[opc] << 16,0,%[src]\n"
339a555dc6bSDavid Hildenbrand 		"	brc	1,0b\n" /* handle partial completion */
340a555dc6bSDavid Hildenbrand 		: [src] "+a" (r2), [len] "+d" (r3)
341a555dc6bSDavid Hildenbrand 		: [fc] "d" (r0), [pba] "a" (r1), [opc] "i" (CPACF_KMAC)
342a555dc6bSDavid Hildenbrand 		: "cc", "memory");
343a555dc6bSDavid Hildenbrand 
344a555dc6bSDavid Hildenbrand 	return src_len - r3;
345a555dc6bSDavid Hildenbrand }
346a555dc6bSDavid Hildenbrand 
347a555dc6bSDavid Hildenbrand /**
348a555dc6bSDavid Hildenbrand  * cpacf_kmctr() - executes the KMCTR (CIPHER MESSAGE WITH COUNTER) instruction
349a555dc6bSDavid Hildenbrand  * @func: the function code passed to KMCTR; see CPACF_KMCTR_xxx defines
350a555dc6bSDavid Hildenbrand  * @param: address of parameter block; see POP for details on each func
351a555dc6bSDavid Hildenbrand  * @dest: address of destination memory area
352a555dc6bSDavid Hildenbrand  * @src: address of source memory area
353a555dc6bSDavid Hildenbrand  * @src_len: length of src operand in bytes
354a555dc6bSDavid Hildenbrand  * @counter: address of counter value
355a555dc6bSDavid Hildenbrand  *
356a555dc6bSDavid Hildenbrand  * Returns 0 for the query func, number of processed bytes for
357a555dc6bSDavid Hildenbrand  * encryption/decryption funcs
358a555dc6bSDavid Hildenbrand  */
359a555dc6bSDavid Hildenbrand static inline int cpacf_kmctr(unsigned long func, void *param, u8 *dest,
360a555dc6bSDavid Hildenbrand 			      const u8 *src, long src_len, u8 *counter)
361a555dc6bSDavid Hildenbrand {
362a555dc6bSDavid Hildenbrand 	register unsigned long r0 asm("0") = (unsigned long) func;
363a555dc6bSDavid Hildenbrand 	register unsigned long r1 asm("1") = (unsigned long) param;
364a555dc6bSDavid Hildenbrand 	register unsigned long r2 asm("2") = (unsigned long) src;
365a555dc6bSDavid Hildenbrand 	register unsigned long r3 asm("3") = (unsigned long) src_len;
366a555dc6bSDavid Hildenbrand 	register unsigned long r4 asm("4") = (unsigned long) dest;
367a555dc6bSDavid Hildenbrand 	register unsigned long r6 asm("6") = (unsigned long) counter;
368a555dc6bSDavid Hildenbrand 
369a555dc6bSDavid Hildenbrand 	asm volatile(
370a555dc6bSDavid Hildenbrand 		"0:	.insn	rrf,%[opc] << 16,%[dst],%[src],%[ctr],0\n"
371a555dc6bSDavid Hildenbrand 		"	brc	1,0b\n" /* handle partial completion */
372a555dc6bSDavid Hildenbrand 		: [src] "+a" (r2), [len] "+d" (r3),
373a555dc6bSDavid Hildenbrand 		  [dst] "+a" (r4), [ctr] "+a" (r6)
374a555dc6bSDavid Hildenbrand 		: [fc] "d" (r0), [pba] "a" (r1), [opc] "i" (CPACF_KMCTR)
375a555dc6bSDavid Hildenbrand 		: "cc", "memory");
376a555dc6bSDavid Hildenbrand 
377a555dc6bSDavid Hildenbrand 	return src_len - r3;
378a555dc6bSDavid Hildenbrand }
379a555dc6bSDavid Hildenbrand 
380a555dc6bSDavid Hildenbrand /**
381a555dc6bSDavid Hildenbrand  * cpacf_prno() - executes the PRNO (PERFORM RANDOM NUMBER OPERATION)
382a555dc6bSDavid Hildenbrand  *		  instruction
383a555dc6bSDavid Hildenbrand  * @func: the function code passed to PRNO; see CPACF_PRNO_xxx defines
384a555dc6bSDavid Hildenbrand  * @param: address of parameter block; see POP for details on each func
385a555dc6bSDavid Hildenbrand  * @dest: address of destination memory area
386a555dc6bSDavid Hildenbrand  * @dest_len: size of destination memory area in bytes
387a555dc6bSDavid Hildenbrand  * @seed: address of seed data
388a555dc6bSDavid Hildenbrand  * @seed_len: size of seed data in bytes
389a555dc6bSDavid Hildenbrand  */
390a555dc6bSDavid Hildenbrand static inline void cpacf_prno(unsigned long func, void *param,
391a555dc6bSDavid Hildenbrand 			      u8 *dest, unsigned long dest_len,
392a555dc6bSDavid Hildenbrand 			      const u8 *seed, unsigned long seed_len)
393a555dc6bSDavid Hildenbrand {
394a555dc6bSDavid Hildenbrand 	register unsigned long r0 asm("0") = (unsigned long) func;
395a555dc6bSDavid Hildenbrand 	register unsigned long r1 asm("1") = (unsigned long) param;
396a555dc6bSDavid Hildenbrand 	register unsigned long r2 asm("2") = (unsigned long) dest;
397a555dc6bSDavid Hildenbrand 	register unsigned long r3 asm("3") = (unsigned long) dest_len;
398a555dc6bSDavid Hildenbrand 	register unsigned long r4 asm("4") = (unsigned long) seed;
399a555dc6bSDavid Hildenbrand 	register unsigned long r5 asm("5") = (unsigned long) seed_len;
400a555dc6bSDavid Hildenbrand 
401a555dc6bSDavid Hildenbrand 	asm volatile (
402a555dc6bSDavid Hildenbrand 		"0:	.insn	rre,%[opc] << 16,%[dst],%[seed]\n"
403a555dc6bSDavid Hildenbrand 		"	brc	1,0b\n"	  /* handle partial completion */
404a555dc6bSDavid Hildenbrand 		: [dst] "+a" (r2), [dlen] "+d" (r3)
405a555dc6bSDavid Hildenbrand 		: [fc] "d" (r0), [pba] "a" (r1),
406a555dc6bSDavid Hildenbrand 		  [seed] "a" (r4), [slen] "d" (r5), [opc] "i" (CPACF_PRNO)
407a555dc6bSDavid Hildenbrand 		: "cc", "memory");
408a555dc6bSDavid Hildenbrand }
409a555dc6bSDavid Hildenbrand 
410a555dc6bSDavid Hildenbrand /**
411a555dc6bSDavid Hildenbrand  * cpacf_trng() - executes the TRNG subfunction of the PRNO instruction
412a555dc6bSDavid Hildenbrand  * @ucbuf: buffer for unconditioned data
413a555dc6bSDavid Hildenbrand  * @ucbuf_len: amount of unconditioned data to fetch in bytes
414a555dc6bSDavid Hildenbrand  * @cbuf: buffer for conditioned data
415a555dc6bSDavid Hildenbrand  * @cbuf_len: amount of conditioned data to fetch in bytes
416a555dc6bSDavid Hildenbrand  */
417a555dc6bSDavid Hildenbrand static inline void cpacf_trng(u8 *ucbuf, unsigned long ucbuf_len,
418a555dc6bSDavid Hildenbrand 			      u8 *cbuf, unsigned long cbuf_len)
419a555dc6bSDavid Hildenbrand {
420a555dc6bSDavid Hildenbrand 	register unsigned long r0 asm("0") = (unsigned long) CPACF_PRNO_TRNG;
421a555dc6bSDavid Hildenbrand 	register unsigned long r2 asm("2") = (unsigned long) ucbuf;
422a555dc6bSDavid Hildenbrand 	register unsigned long r3 asm("3") = (unsigned long) ucbuf_len;
423a555dc6bSDavid Hildenbrand 	register unsigned long r4 asm("4") = (unsigned long) cbuf;
424a555dc6bSDavid Hildenbrand 	register unsigned long r5 asm("5") = (unsigned long) cbuf_len;
425a555dc6bSDavid Hildenbrand 
426a555dc6bSDavid Hildenbrand 	asm volatile (
427a555dc6bSDavid Hildenbrand 		"0:	.insn	rre,%[opc] << 16,%[ucbuf],%[cbuf]\n"
428a555dc6bSDavid Hildenbrand 		"	brc	1,0b\n"	  /* handle partial completion */
429a555dc6bSDavid Hildenbrand 		: [ucbuf] "+a" (r2), [ucbuflen] "+d" (r3),
430a555dc6bSDavid Hildenbrand 		  [cbuf] "+a" (r4), [cbuflen] "+d" (r5)
431a555dc6bSDavid Hildenbrand 		: [fc] "d" (r0), [opc] "i" (CPACF_PRNO)
432a555dc6bSDavid Hildenbrand 		: "cc", "memory");
433a555dc6bSDavid Hildenbrand }
434a555dc6bSDavid Hildenbrand 
435a555dc6bSDavid Hildenbrand /**
436a555dc6bSDavid Hildenbrand  * cpacf_pcc() - executes the PCC (PERFORM CRYPTOGRAPHIC COMPUTATION)
437a555dc6bSDavid Hildenbrand  *		 instruction
438a555dc6bSDavid Hildenbrand  * @func: the function code passed to PCC; see CPACF_KM_xxx defines
439a555dc6bSDavid Hildenbrand  * @param: address of parameter block; see POP for details on each func
440a555dc6bSDavid Hildenbrand  */
441a555dc6bSDavid Hildenbrand static inline void cpacf_pcc(unsigned long func, void *param)
442a555dc6bSDavid Hildenbrand {
443a555dc6bSDavid Hildenbrand 	register unsigned long r0 asm("0") = (unsigned long) func;
444a555dc6bSDavid Hildenbrand 	register unsigned long r1 asm("1") = (unsigned long) param;
445a555dc6bSDavid Hildenbrand 
446a555dc6bSDavid Hildenbrand 	asm volatile(
447a555dc6bSDavid Hildenbrand 		"0:	.insn	rre,%[opc] << 16,0,0\n" /* PCC opcode */
448a555dc6bSDavid Hildenbrand 		"	brc	1,0b\n" /* handle partial completion */
449a555dc6bSDavid Hildenbrand 		:
450a555dc6bSDavid Hildenbrand 		: [fc] "d" (r0), [pba] "a" (r1), [opc] "i" (CPACF_PCC)
451a555dc6bSDavid Hildenbrand 		: "cc", "memory");
452a555dc6bSDavid Hildenbrand }
453a555dc6bSDavid Hildenbrand 
454a555dc6bSDavid Hildenbrand /**
455a555dc6bSDavid Hildenbrand  * cpacf_pckmo() - executes the PCKMO (PERFORM CRYPTOGRAPHIC KEY
456a555dc6bSDavid Hildenbrand  *		  MANAGEMENT) instruction
457a555dc6bSDavid Hildenbrand  * @func: the function code passed to PCKMO; see CPACF_PCKMO_xxx defines
458a555dc6bSDavid Hildenbrand  * @param: address of parameter block; see POP for details on each func
459a555dc6bSDavid Hildenbrand  *
460a555dc6bSDavid Hildenbrand  * Returns 0.
461a555dc6bSDavid Hildenbrand  */
462a555dc6bSDavid Hildenbrand static inline void cpacf_pckmo(long func, void *param)
463a555dc6bSDavid Hildenbrand {
464a555dc6bSDavid Hildenbrand 	register unsigned long r0 asm("0") = (unsigned long) func;
465a555dc6bSDavid Hildenbrand 	register unsigned long r1 asm("1") = (unsigned long) param;
466a555dc6bSDavid Hildenbrand 
467a555dc6bSDavid Hildenbrand 	asm volatile(
468a555dc6bSDavid Hildenbrand 		"       .insn   rre,%[opc] << 16,0,0\n" /* PCKMO opcode */
469a555dc6bSDavid Hildenbrand 		:
470a555dc6bSDavid Hildenbrand 		: [fc] "d" (r0), [pba] "a" (r1), [opc] "i" (CPACF_PCKMO)
471a555dc6bSDavid Hildenbrand 		: "cc", "memory");
472a555dc6bSDavid Hildenbrand }
473a555dc6bSDavid Hildenbrand 
474a555dc6bSDavid Hildenbrand #endif	/* _ASM_S390_CPACF_H */
475