xref: /linux/arch/s390/include/asm/cpacf.h (revision 1ec6d097897a35dfb55c4c31fc8633cf5be46497)
1b2441318SGreg Kroah-Hartman /* SPDX-License-Identifier: GPL-2.0 */
2c7d4d259SMartin Schwidefsky /*
3c7d4d259SMartin Schwidefsky  * CP Assist for Cryptographic Functions (CPACF)
4c7d4d259SMartin Schwidefsky  *
59e436c19SHarald Freudenberger  * Copyright IBM Corp. 2003, 2023
6c7d4d259SMartin Schwidefsky  * Author(s): Thomas Spatzier
7c7d4d259SMartin Schwidefsky  *	      Jan Glauber
8c7d4d259SMartin Schwidefsky  *	      Harald Freudenberger (freude@de.ibm.com)
9c7d4d259SMartin Schwidefsky  *	      Martin Schwidefsky <schwidefsky@de.ibm.com>
10c7d4d259SMartin Schwidefsky  */
11c7d4d259SMartin Schwidefsky #ifndef _ASM_S390_CPACF_H
12c7d4d259SMartin Schwidefsky #define _ASM_S390_CPACF_H
13c7d4d259SMartin Schwidefsky 
14c7d4d259SMartin Schwidefsky #include <asm/facility.h>
158c208bc5SIlya Leoshkevich #include <linux/kmsan-checks.h>
16c7d4d259SMartin Schwidefsky 
17c7d4d259SMartin Schwidefsky /*
18c7d4d259SMartin Schwidefsky  * Instruction opcodes for the CPACF instructions
19c7d4d259SMartin Schwidefsky  */
20c7d4d259SMartin Schwidefsky #define CPACF_KMAC		0xb91e		/* MSA	*/
21c7d4d259SMartin Schwidefsky #define CPACF_KM		0xb92e		/* MSA	*/
22c7d4d259SMartin Schwidefsky #define CPACF_KMC		0xb92f		/* MSA	*/
23c7d4d259SMartin Schwidefsky #define CPACF_KIMD		0xb93e		/* MSA	*/
24c7d4d259SMartin Schwidefsky #define CPACF_KLMD		0xb93f		/* MSA	*/
251afd43e0SDavid Hildenbrand #define CPACF_PCKMO		0xb928		/* MSA3 */
261afd43e0SDavid Hildenbrand #define CPACF_KMF		0xb92a		/* MSA4 */
271afd43e0SDavid Hildenbrand #define CPACF_KMO		0xb92b		/* MSA4 */
28c7d4d259SMartin Schwidefsky #define CPACF_PCC		0xb92c		/* MSA4 */
29c7d4d259SMartin Schwidefsky #define CPACF_KMCTR		0xb92d		/* MSA4 */
30985a9d20SHarald Freudenberger #define CPACF_PRNO		0xb93c		/* MSA5 */
31152c1c8dSJason J. Herne #define CPACF_KMA		0xb929		/* MSA8 */
3213209ad0SChristian Borntraeger #define CPACF_KDSA		0xb93a		/* MSA9 */
33c7d4d259SMartin Schwidefsky 
34c7d4d259SMartin Schwidefsky /*
3527937843SMartin Schwidefsky  * En/decryption modifier bits
36edc63a37SMartin Schwidefsky  */
3727937843SMartin Schwidefsky #define CPACF_ENCRYPT		0x00
38edc63a37SMartin Schwidefsky #define CPACF_DECRYPT		0x80
39edc63a37SMartin Schwidefsky 
40edc63a37SMartin Schwidefsky /*
41edc63a37SMartin Schwidefsky  * Function codes for the KM (CIPHER MESSAGE) instruction
42c7d4d259SMartin Schwidefsky  */
43c7d4d259SMartin Schwidefsky #define CPACF_KM_QUERY		0x00
44edc63a37SMartin Schwidefsky #define CPACF_KM_DEA		0x01
45edc63a37SMartin Schwidefsky #define CPACF_KM_TDEA_128	0x02
46edc63a37SMartin Schwidefsky #define CPACF_KM_TDEA_192	0x03
47edc63a37SMartin Schwidefsky #define CPACF_KM_AES_128	0x12
48edc63a37SMartin Schwidefsky #define CPACF_KM_AES_192	0x13
49edc63a37SMartin Schwidefsky #define CPACF_KM_AES_256	0x14
5027937843SMartin Schwidefsky #define CPACF_KM_PAES_128	0x1a
5127937843SMartin Schwidefsky #define CPACF_KM_PAES_192	0x1b
5227937843SMartin Schwidefsky #define CPACF_KM_PAES_256	0x1c
53edc63a37SMartin Schwidefsky #define CPACF_KM_XTS_128	0x32
54edc63a37SMartin Schwidefsky #define CPACF_KM_XTS_256	0x34
5527937843SMartin Schwidefsky #define CPACF_KM_PXTS_128	0x3a
5627937843SMartin Schwidefsky #define CPACF_KM_PXTS_256	0x3c
5780625b67SHolger Dengler #define CPACF_KM_XTS_128_FULL	0x52
5880625b67SHolger Dengler #define CPACF_KM_XTS_256_FULL	0x54
59c7d4d259SMartin Schwidefsky 
60c7d4d259SMartin Schwidefsky /*
61c7d4d259SMartin Schwidefsky  * Function codes for the KMC (CIPHER MESSAGE WITH CHAINING)
62edc63a37SMartin Schwidefsky  * instruction
63c7d4d259SMartin Schwidefsky  */
64c7d4d259SMartin Schwidefsky #define CPACF_KMC_QUERY		0x00
65edc63a37SMartin Schwidefsky #define CPACF_KMC_DEA		0x01
66edc63a37SMartin Schwidefsky #define CPACF_KMC_TDEA_128	0x02
67edc63a37SMartin Schwidefsky #define CPACF_KMC_TDEA_192	0x03
68edc63a37SMartin Schwidefsky #define CPACF_KMC_AES_128	0x12
69edc63a37SMartin Schwidefsky #define CPACF_KMC_AES_192	0x13
70edc63a37SMartin Schwidefsky #define CPACF_KMC_AES_256	0x14
7127937843SMartin Schwidefsky #define CPACF_KMC_PAES_128	0x1a
7227937843SMartin Schwidefsky #define CPACF_KMC_PAES_192	0x1b
7327937843SMartin Schwidefsky #define CPACF_KMC_PAES_256	0x1c
74c7d4d259SMartin Schwidefsky #define CPACF_KMC_PRNG		0x43
75c7d4d259SMartin Schwidefsky 
76c7d4d259SMartin Schwidefsky /*
77c7d4d259SMartin Schwidefsky  * Function codes for the KMCTR (CIPHER MESSAGE WITH COUNTER)
78edc63a37SMartin Schwidefsky  * instruction
79c7d4d259SMartin Schwidefsky  */
80c7d4d259SMartin Schwidefsky #define CPACF_KMCTR_QUERY	0x00
81edc63a37SMartin Schwidefsky #define CPACF_KMCTR_DEA		0x01
82edc63a37SMartin Schwidefsky #define CPACF_KMCTR_TDEA_128	0x02
83edc63a37SMartin Schwidefsky #define CPACF_KMCTR_TDEA_192	0x03
84edc63a37SMartin Schwidefsky #define CPACF_KMCTR_AES_128	0x12
85edc63a37SMartin Schwidefsky #define CPACF_KMCTR_AES_192	0x13
86edc63a37SMartin Schwidefsky #define CPACF_KMCTR_AES_256	0x14
8727937843SMartin Schwidefsky #define CPACF_KMCTR_PAES_128	0x1a
8827937843SMartin Schwidefsky #define CPACF_KMCTR_PAES_192	0x1b
8927937843SMartin Schwidefsky #define CPACF_KMCTR_PAES_256	0x1c
90c7d4d259SMartin Schwidefsky 
91c7d4d259SMartin Schwidefsky /*
92c7d4d259SMartin Schwidefsky  * Function codes for the KIMD (COMPUTE INTERMEDIATE MESSAGE DIGEST)
93edc63a37SMartin Schwidefsky  * instruction
94c7d4d259SMartin Schwidefsky  */
95c7d4d259SMartin Schwidefsky #define CPACF_KIMD_QUERY	0x00
96c7d4d259SMartin Schwidefsky #define CPACF_KIMD_SHA_1	0x01
97c7d4d259SMartin Schwidefsky #define CPACF_KIMD_SHA_256	0x02
98c7d4d259SMartin Schwidefsky #define CPACF_KIMD_SHA_512	0x03
993c2eb6b7SJoerg Schmidbauer #define CPACF_KIMD_SHA3_224	0x20
1003c2eb6b7SJoerg Schmidbauer #define CPACF_KIMD_SHA3_256	0x21
1013c2eb6b7SJoerg Schmidbauer #define CPACF_KIMD_SHA3_384	0x22
1023c2eb6b7SJoerg Schmidbauer #define CPACF_KIMD_SHA3_512	0x23
103c7d4d259SMartin Schwidefsky #define CPACF_KIMD_GHASH	0x41
104c7d4d259SMartin Schwidefsky 
105c7d4d259SMartin Schwidefsky /*
106c7d4d259SMartin Schwidefsky  * Function codes for the KLMD (COMPUTE LAST MESSAGE DIGEST)
107edc63a37SMartin Schwidefsky  * instruction
108c7d4d259SMartin Schwidefsky  */
109c7d4d259SMartin Schwidefsky #define CPACF_KLMD_QUERY	0x00
110c7d4d259SMartin Schwidefsky #define CPACF_KLMD_SHA_1	0x01
111c7d4d259SMartin Schwidefsky #define CPACF_KLMD_SHA_256	0x02
112c7d4d259SMartin Schwidefsky #define CPACF_KLMD_SHA_512	0x03
1133c2eb6b7SJoerg Schmidbauer #define CPACF_KLMD_SHA3_224	0x20
1143c2eb6b7SJoerg Schmidbauer #define CPACF_KLMD_SHA3_256	0x21
1153c2eb6b7SJoerg Schmidbauer #define CPACF_KLMD_SHA3_384	0x22
1163c2eb6b7SJoerg Schmidbauer #define CPACF_KLMD_SHA3_512	0x23
117c7d4d259SMartin Schwidefsky 
118c7d4d259SMartin Schwidefsky /*
119c7d4d259SMartin Schwidefsky  * function codes for the KMAC (COMPUTE MESSAGE AUTHENTICATION CODE)
120edc63a37SMartin Schwidefsky  * instruction
121c7d4d259SMartin Schwidefsky  */
122c7d4d259SMartin Schwidefsky #define CPACF_KMAC_QUERY	0x00
123c7d4d259SMartin Schwidefsky #define CPACF_KMAC_DEA		0x01
124c7d4d259SMartin Schwidefsky #define CPACF_KMAC_TDEA_128	0x02
125c7d4d259SMartin Schwidefsky #define CPACF_KMAC_TDEA_192	0x03
126c3dcb058SHolger Dengler #define CPACF_KMAC_HMAC_SHA_224	0x70
127c3dcb058SHolger Dengler #define CPACF_KMAC_HMAC_SHA_256	0x71
128c3dcb058SHolger Dengler #define CPACF_KMAC_HMAC_SHA_384	0x72
129c3dcb058SHolger Dengler #define CPACF_KMAC_HMAC_SHA_512	0x73
130c7d4d259SMartin Schwidefsky 
131c7d4d259SMartin Schwidefsky /*
13277606708SHarald Freudenberger  * Function codes for the PCKMO (PERFORM CRYPTOGRAPHIC KEY MANAGEMENT)
13377606708SHarald Freudenberger  * instruction
13477606708SHarald Freudenberger  */
13577606708SHarald Freudenberger #define CPACF_PCKMO_QUERY		       0x00
13677606708SHarald Freudenberger #define CPACF_PCKMO_ENC_DES_KEY		       0x01
13777606708SHarald Freudenberger #define CPACF_PCKMO_ENC_TDES_128_KEY	       0x02
13877606708SHarald Freudenberger #define CPACF_PCKMO_ENC_TDES_192_KEY	       0x03
13977606708SHarald Freudenberger #define CPACF_PCKMO_ENC_AES_128_KEY	       0x12
14077606708SHarald Freudenberger #define CPACF_PCKMO_ENC_AES_192_KEY	       0x13
14177606708SHarald Freudenberger #define CPACF_PCKMO_ENC_AES_256_KEY	       0x14
1428fe32188SHarald Freudenberger #define CPACF_PCKMO_ENC_AES_XTS_128_DOUBLE_KEY 0x15
1438fe32188SHarald Freudenberger #define CPACF_PCKMO_ENC_AES_XTS_256_DOUBLE_KEY 0x16
1449e436c19SHarald Freudenberger #define CPACF_PCKMO_ENC_ECC_P256_KEY	       0x20
1459e436c19SHarald Freudenberger #define CPACF_PCKMO_ENC_ECC_P384_KEY	       0x21
1469e436c19SHarald Freudenberger #define CPACF_PCKMO_ENC_ECC_P521_KEY	       0x22
1479e436c19SHarald Freudenberger #define CPACF_PCKMO_ENC_ECC_ED25519_KEY	       0x28
1489e436c19SHarald Freudenberger #define CPACF_PCKMO_ENC_ECC_ED448_KEY	       0x29
1498fe32188SHarald Freudenberger #define CPACF_PCKMO_ENC_HMAC_512_KEY	       0x76
1508fe32188SHarald Freudenberger #define CPACF_PCKMO_ENC_HMAC_1024_KEY	       0x7a
15177606708SHarald Freudenberger 
15277606708SHarald Freudenberger /*
153985a9d20SHarald Freudenberger  * Function codes for the PRNO (PERFORM RANDOM NUMBER OPERATION)
154edc63a37SMartin Schwidefsky  * instruction
155c7d4d259SMartin Schwidefsky  */
156985a9d20SHarald Freudenberger #define CPACF_PRNO_QUERY		0x00
157985a9d20SHarald Freudenberger #define CPACF_PRNO_SHA512_DRNG_GEN	0x03
158985a9d20SHarald Freudenberger #define CPACF_PRNO_SHA512_DRNG_SEED	0x83
159f75fa65dSHarald Freudenberger #define CPACF_PRNO_TRNG_Q_R2C_RATIO	0x70
160f75fa65dSHarald Freudenberger #define CPACF_PRNO_TRNG			0x72
161c7d4d259SMartin Schwidefsky 
162eecd49c4SPatrick Steuer /*
163eecd49c4SPatrick Steuer  * Function codes for the KMA (CIPHER MESSAGE WITH AUTHENTICATION)
164eecd49c4SPatrick Steuer  * instruction
165eecd49c4SPatrick Steuer  */
166eecd49c4SPatrick Steuer #define CPACF_KMA_QUERY		0x00
167eecd49c4SPatrick Steuer #define CPACF_KMA_GCM_AES_128	0x12
168eecd49c4SPatrick Steuer #define CPACF_KMA_GCM_AES_192	0x13
169eecd49c4SPatrick Steuer #define CPACF_KMA_GCM_AES_256	0x14
170eecd49c4SPatrick Steuer 
171eecd49c4SPatrick Steuer /*
172eecd49c4SPatrick Steuer  * Flags for the KMA (CIPHER MESSAGE WITH AUTHENTICATION) instruction
173eecd49c4SPatrick Steuer  */
174eecd49c4SPatrick Steuer #define CPACF_KMA_LPC	0x100	/* Last-Plaintext/Ciphertext */
175eecd49c4SPatrick Steuer #define CPACF_KMA_LAAD	0x200	/* Last-AAD */
176eecd49c4SPatrick Steuer #define CPACF_KMA_HS	0x400	/* Hash-subkey Supplied */
177eecd49c4SPatrick Steuer 
17888c02b3fSJoerg Schmidbauer /*
17988c02b3fSJoerg Schmidbauer  * Flags for the KIMD/KLMD (COMPUTE INTERMEDIATE/LAST MESSAGE DIGEST)
18088c02b3fSJoerg Schmidbauer  * instructions
18188c02b3fSJoerg Schmidbauer  */
18288c02b3fSJoerg Schmidbauer #define CPACF_KIMD_NIP		0x8000
18388c02b3fSJoerg Schmidbauer #define CPACF_KLMD_DUFOP	0x4000
18488c02b3fSJoerg Schmidbauer #define CPACF_KLMD_NIP		0x8000
18588c02b3fSJoerg Schmidbauer 
186d2dec49dSFinn Callies /*
187d2dec49dSFinn Callies  * Function codes for KDSA (COMPUTE DIGITAL SIGNATURE AUTHENTICATION)
188d2dec49dSFinn Callies  * instruction
189d2dec49dSFinn Callies  */
190d2dec49dSFinn Callies #define CPACF_KDSA_QUERY 0x00
191d2dec49dSFinn Callies #define CPACF_KDSA_ECDSA_VERIFY_P256 0x01
192d2dec49dSFinn Callies #define CPACF_KDSA_ECDSA_VERIFY_P384 0x02
193d2dec49dSFinn Callies #define CPACF_KDSA_ECDSA_VERIFY_P521 0x03
194d2dec49dSFinn Callies #define CPACF_KDSA_ECDSA_SIGN_P256 0x09
195d2dec49dSFinn Callies #define CPACF_KDSA_ECDSA_SIGN_P384 0x0a
196d2dec49dSFinn Callies #define CPACF_KDSA_ECDSA_SIGN_P521 0x0b
197d2dec49dSFinn Callies #define CPACF_KDSA_ENC_ECDSA_SIGN_P256 0x11
198d2dec49dSFinn Callies #define CPACF_KDSA_ENC_ECDSA_SIGN_P384 0x12
199d2dec49dSFinn Callies #define CPACF_KDSA_ENC_ECDSA_SIGN_P521 0x13
200d2dec49dSFinn Callies #define CPACF_KDSA_EDDSA_VERIFY_ED25519 0x20
201d2dec49dSFinn Callies #define CPACF_KDSA_EDDSA_VERIFY_ED448 0x24
202d2dec49dSFinn Callies #define CPACF_KDSA_EDDSA_SIGN_ED25519 0x28
203d2dec49dSFinn Callies #define CPACF_KDSA_EDDSA_SIGN_ED448 0x2c
204d2dec49dSFinn Callies #define CPACF_KDSA_ENC_EDDSA_SIGN_ED25519 0x30
205d2dec49dSFinn Callies #define CPACF_KDSA_ENC_EDDSA_SIGN_ED448 0x34
206d2dec49dSFinn Callies 
20727aad7f7SFinn Callies #define CPACF_FC_QUERY 0x00
208*9bbd1bfbSFinn Callies #define CPACF_FC_QUERY_AUTH_INFO 0x7F
20927aad7f7SFinn Callies 
21069c0e360SMartin Schwidefsky typedef struct { unsigned char bytes[16]; } cpacf_mask_t;
211*9bbd1bfbSFinn Callies typedef struct { unsigned char bytes[256]; } cpacf_qai_t;
21269c0e360SMartin Schwidefsky 
21332e8bd64SHarald Freudenberger /*
21432e8bd64SHarald Freudenberger  * Prototype for a not existing function to produce a link
21532e8bd64SHarald Freudenberger  * error if __cpacf_query() or __cpacf_check_opcode() is used
21632e8bd64SHarald Freudenberger  * with an invalid compile time const opcode.
21732e8bd64SHarald Freudenberger  */
21832e8bd64SHarald Freudenberger void __cpacf_bad_opcode(void);
21932e8bd64SHarald Freudenberger 
220830999bdSHarald Freudenberger static __always_inline void __cpacf_query_rre(u32 opc, u8 r1, u8 r2,
22127aad7f7SFinn Callies 					      u8 *pb, u8 fc)
222c7d4d259SMartin Schwidefsky {
223c7d4d259SMartin Schwidefsky 	asm volatile(
22427aad7f7SFinn Callies 		"	la	%%r1,%[pb]\n"
22527aad7f7SFinn Callies 		"	lghi	%%r0,%[fc]\n"
226830999bdSHarald Freudenberger 		"	.insn	rre,%[opc] << 16,%[r1],%[r2]\n"
22727aad7f7SFinn Callies 		: [pb] "=R" (*pb)
22827aad7f7SFinn Callies 		: [opc] "i" (opc), [fc] "i" (fc),
229830999bdSHarald Freudenberger 		  [r1] "i" (r1), [r2] "i" (r2)
23027aad7f7SFinn Callies 		: "cc", "memory", "r0", "r1");
231830999bdSHarald Freudenberger }
232830999bdSHarald Freudenberger 
23327aad7f7SFinn Callies static __always_inline void __cpacf_query_rrf(u32 opc, u8 r1, u8 r2, u8 r3,
23427aad7f7SFinn Callies 					      u8 m4, u8 *pb, u8 fc)
235830999bdSHarald Freudenberger {
236830999bdSHarald Freudenberger 	asm volatile(
23727aad7f7SFinn Callies 		"	la	%%r1,%[pb]\n"
23827aad7f7SFinn Callies 		"	lghi	%%r0,%[fc]\n"
239830999bdSHarald Freudenberger 		"	.insn	rrf,%[opc] << 16,%[r1],%[r2],%[r3],%[m4]\n"
24027aad7f7SFinn Callies 		: [pb] "=R" (*pb)
24127aad7f7SFinn Callies 		: [opc] "i" (opc), [fc] "i" (fc), [r1] "i" (r1),
24227aad7f7SFinn Callies 		  [r2] "i" (r2), [r3] "i" (r3), [m4] "i" (m4)
24327aad7f7SFinn Callies 		: "cc", "memory", "r0", "r1");
24427aad7f7SFinn Callies }
24527aad7f7SFinn Callies 
24627aad7f7SFinn Callies static __always_inline void __cpacf_query_insn(unsigned int opcode, void *pb,
24727aad7f7SFinn Callies 					       u8 fc)
24827aad7f7SFinn Callies {
24927aad7f7SFinn Callies 	switch (opcode) {
25027aad7f7SFinn Callies 	case CPACF_KDSA:
25127aad7f7SFinn Callies 		__cpacf_query_rre(CPACF_KDSA, 0, 2, pb, fc);
25227aad7f7SFinn Callies 		break;
25327aad7f7SFinn Callies 	case CPACF_KIMD:
25427aad7f7SFinn Callies 		__cpacf_query_rre(CPACF_KIMD, 0, 2, pb, fc);
25527aad7f7SFinn Callies 		break;
25627aad7f7SFinn Callies 	case CPACF_KLMD:
25727aad7f7SFinn Callies 		__cpacf_query_rre(CPACF_KLMD, 0, 2, pb, fc);
25827aad7f7SFinn Callies 		break;
25927aad7f7SFinn Callies 	case CPACF_KM:
26027aad7f7SFinn Callies 		__cpacf_query_rre(CPACF_KM, 2, 4, pb, fc);
26127aad7f7SFinn Callies 		break;
26227aad7f7SFinn Callies 	case CPACF_KMA:
26327aad7f7SFinn Callies 		__cpacf_query_rrf(CPACF_KMA, 2, 4, 6, 0, pb, fc);
26427aad7f7SFinn Callies 		break;
26527aad7f7SFinn Callies 	case CPACF_KMAC:
26627aad7f7SFinn Callies 		__cpacf_query_rre(CPACF_KMAC, 0, 2, pb, fc);
26727aad7f7SFinn Callies 		break;
26827aad7f7SFinn Callies 	case CPACF_KMC:
26927aad7f7SFinn Callies 		__cpacf_query_rre(CPACF_KMC, 2, 4, pb, fc);
27027aad7f7SFinn Callies 		break;
27127aad7f7SFinn Callies 	case CPACF_KMCTR:
27227aad7f7SFinn Callies 		__cpacf_query_rrf(CPACF_KMCTR, 2, 4, 6, 0, pb, fc);
27327aad7f7SFinn Callies 		break;
27427aad7f7SFinn Callies 	case CPACF_KMF:
27527aad7f7SFinn Callies 		__cpacf_query_rre(CPACF_KMF, 2, 4, pb, fc);
27627aad7f7SFinn Callies 		break;
27727aad7f7SFinn Callies 	case CPACF_KMO:
27827aad7f7SFinn Callies 		__cpacf_query_rre(CPACF_KMO, 2, 4, pb, fc);
27927aad7f7SFinn Callies 		break;
28027aad7f7SFinn Callies 	case CPACF_PCC:
28127aad7f7SFinn Callies 		__cpacf_query_rre(CPACF_PCC, 0, 0, pb, fc);
28227aad7f7SFinn Callies 		break;
28327aad7f7SFinn Callies 	case CPACF_PCKMO:
28427aad7f7SFinn Callies 		__cpacf_query_rre(CPACF_PCKMO, 0, 0, pb, fc);
28527aad7f7SFinn Callies 		break;
28627aad7f7SFinn Callies 	case CPACF_PRNO:
28727aad7f7SFinn Callies 		__cpacf_query_rre(CPACF_PRNO, 2, 4, pb, fc);
28827aad7f7SFinn Callies 		break;
28927aad7f7SFinn Callies 	default:
29027aad7f7SFinn Callies 		__cpacf_bad_opcode();
29127aad7f7SFinn Callies 	}
292830999bdSHarald Freudenberger }
293830999bdSHarald Freudenberger 
294830999bdSHarald Freudenberger static __always_inline void __cpacf_query(unsigned int opcode,
295830999bdSHarald Freudenberger 					  cpacf_mask_t *mask)
296830999bdSHarald Freudenberger {
29727aad7f7SFinn Callies 	__cpacf_query_insn(opcode, mask, CPACF_FC_QUERY);
298c7d4d259SMartin Schwidefsky }
299c7d4d259SMartin Schwidefsky 
300d83623c5SMasahiro Yamada static __always_inline int __cpacf_check_opcode(unsigned int opcode)
301c7d4d259SMartin Schwidefsky {
302c7d4d259SMartin Schwidefsky 	switch (opcode) {
303c7d4d259SMartin Schwidefsky 	case CPACF_KMAC:
304c7d4d259SMartin Schwidefsky 	case CPACF_KM:
305c7d4d259SMartin Schwidefsky 	case CPACF_KMC:
306c7d4d259SMartin Schwidefsky 	case CPACF_KIMD:
307c7d4d259SMartin Schwidefsky 	case CPACF_KLMD:
30869c0e360SMartin Schwidefsky 		return test_facility(17);	/* check for MSA */
3091afd43e0SDavid Hildenbrand 	case CPACF_PCKMO:
31069c0e360SMartin Schwidefsky 		return test_facility(76);	/* check for MSA3 */
3111afd43e0SDavid Hildenbrand 	case CPACF_KMF:
3121afd43e0SDavid Hildenbrand 	case CPACF_KMO:
313c7d4d259SMartin Schwidefsky 	case CPACF_PCC:
314c7d4d259SMartin Schwidefsky 	case CPACF_KMCTR:
31569c0e360SMartin Schwidefsky 		return test_facility(77);	/* check for MSA4 */
316985a9d20SHarald Freudenberger 	case CPACF_PRNO:
31769c0e360SMartin Schwidefsky 		return test_facility(57);	/* check for MSA5 */
318eecd49c4SPatrick Steuer 	case CPACF_KMA:
319eecd49c4SPatrick Steuer 		return test_facility(146);	/* check for MSA8 */
320d2dec49dSFinn Callies 	case CPACF_KDSA:
321d2dec49dSFinn Callies 		return test_facility(155);	/* check for MSA9 */
322c7d4d259SMartin Schwidefsky 	default:
32332e8bd64SHarald Freudenberger 		__cpacf_bad_opcode();
32432e8bd64SHarald Freudenberger 		return 0;
325c7d4d259SMartin Schwidefsky 	}
32669c0e360SMartin Schwidefsky }
32769c0e360SMartin Schwidefsky 
328830999bdSHarald Freudenberger /**
32927aad7f7SFinn Callies  * cpacf_query() - Query the function code mask for this CPACF opcode
330830999bdSHarald Freudenberger  * @opcode: the opcode of the crypto instruction
33127aad7f7SFinn Callies  * @mask: ptr to struct cpacf_mask_t
332830999bdSHarald Freudenberger  *
333830999bdSHarald Freudenberger  * Executes the query function for the given crypto instruction @opcode
334830999bdSHarald Freudenberger  * and checks if @func is available
335830999bdSHarald Freudenberger  *
33627aad7f7SFinn Callies  * On success 1 is returned and the mask is filled with the function
33727aad7f7SFinn Callies  * code mask for this CPACF opcode, otherwise 0 is returned.
338830999bdSHarald Freudenberger  */
339e60fb8bfSMasahiro Yamada static __always_inline int cpacf_query(unsigned int opcode, cpacf_mask_t *mask)
34069c0e360SMartin Schwidefsky {
34169c0e360SMartin Schwidefsky 	if (__cpacf_check_opcode(opcode)) {
34269c0e360SMartin Schwidefsky 		__cpacf_query(opcode, mask);
34369c0e360SMartin Schwidefsky 		return 1;
34469c0e360SMartin Schwidefsky 	}
34569c0e360SMartin Schwidefsky 	memset(mask, 0, sizeof(*mask));
34669c0e360SMartin Schwidefsky 	return 0;
34769c0e360SMartin Schwidefsky }
34869c0e360SMartin Schwidefsky 
34969c0e360SMartin Schwidefsky static inline int cpacf_test_func(cpacf_mask_t *mask, unsigned int func)
35069c0e360SMartin Schwidefsky {
35169c0e360SMartin Schwidefsky 	return (mask->bytes[func >> 3] & (0x80 >> (func & 7))) != 0;
35269c0e360SMartin Schwidefsky }
35369c0e360SMartin Schwidefsky 
354*9bbd1bfbSFinn Callies static __always_inline int cpacf_query_func(unsigned int opcode,
355*9bbd1bfbSFinn Callies 					    unsigned int func)
35669c0e360SMartin Schwidefsky {
35769c0e360SMartin Schwidefsky 	cpacf_mask_t mask;
35869c0e360SMartin Schwidefsky 
35969c0e360SMartin Schwidefsky 	if (cpacf_query(opcode, &mask))
36069c0e360SMartin Schwidefsky 		return cpacf_test_func(&mask, func);
36169c0e360SMartin Schwidefsky 	return 0;
362c7d4d259SMartin Schwidefsky }
363c7d4d259SMartin Schwidefsky 
364*9bbd1bfbSFinn Callies static __always_inline void __cpacf_qai(unsigned int opcode, cpacf_qai_t *qai)
365*9bbd1bfbSFinn Callies {
366*9bbd1bfbSFinn Callies 	__cpacf_query_insn(opcode, qai, CPACF_FC_QUERY_AUTH_INFO);
367*9bbd1bfbSFinn Callies }
368*9bbd1bfbSFinn Callies 
369*9bbd1bfbSFinn Callies /**
370*9bbd1bfbSFinn Callies  * cpacf_qai() - Get the query authentication information for a CPACF opcode
371*9bbd1bfbSFinn Callies  * @opcode: the opcode of the crypto instruction
372*9bbd1bfbSFinn Callies  * @mask: ptr to struct cpacf_qai_t
373*9bbd1bfbSFinn Callies  *
374*9bbd1bfbSFinn Callies  * Executes the query authentication information function for the given crypto
375*9bbd1bfbSFinn Callies  * instruction @opcode and checks if @func is available
376*9bbd1bfbSFinn Callies  *
377*9bbd1bfbSFinn Callies  * On success 1 is returned and the mask is filled with the query authentication
378*9bbd1bfbSFinn Callies  * information for this CPACF opcode, otherwise 0 is returned.
379*9bbd1bfbSFinn Callies  */
380*9bbd1bfbSFinn Callies static __always_inline int cpacf_qai(unsigned int opcode, cpacf_qai_t *qai)
381*9bbd1bfbSFinn Callies {
382*9bbd1bfbSFinn Callies 	if (cpacf_query_func(opcode, CPACF_FC_QUERY_AUTH_INFO)) {
383*9bbd1bfbSFinn Callies 		__cpacf_qai(opcode, qai);
384*9bbd1bfbSFinn Callies 		return 1;
385*9bbd1bfbSFinn Callies 	}
386*9bbd1bfbSFinn Callies 	memset(qai, 0, sizeof(*qai));
387*9bbd1bfbSFinn Callies 	return 0;
388*9bbd1bfbSFinn Callies }
389*9bbd1bfbSFinn Callies 
390c7d4d259SMartin Schwidefsky /**
391c7d4d259SMartin Schwidefsky  * cpacf_km() - executes the KM (CIPHER MESSAGE) instruction
392c7d4d259SMartin Schwidefsky  * @func: the function code passed to KM; see CPACF_KM_xxx defines
393c7d4d259SMartin Schwidefsky  * @param: address of parameter block; see POP for details on each func
394c7d4d259SMartin Schwidefsky  * @dest: address of destination memory area
395c7d4d259SMartin Schwidefsky  * @src: address of source memory area
396c7d4d259SMartin Schwidefsky  * @src_len: length of src operand in bytes
397c7d4d259SMartin Schwidefsky  *
398c7d4d259SMartin Schwidefsky  * Returns 0 for the query func, number of processed bytes for
399c7d4d259SMartin Schwidefsky  * encryption/decryption funcs
400c7d4d259SMartin Schwidefsky  */
401edc63a37SMartin Schwidefsky static inline int cpacf_km(unsigned long func, void *param,
402c7d4d259SMartin Schwidefsky 			   u8 *dest, const u8 *src, long src_len)
403c7d4d259SMartin Schwidefsky {
404b84d0c41SHeiko Carstens 	union register_pair d, s;
405c7d4d259SMartin Schwidefsky 
406b84d0c41SHeiko Carstens 	d.even = (unsigned long)dest;
407b84d0c41SHeiko Carstens 	s.even = (unsigned long)src;
408b84d0c41SHeiko Carstens 	s.odd  = (unsigned long)src_len;
409c7d4d259SMartin Schwidefsky 	asm volatile(
410b84d0c41SHeiko Carstens 		"	lgr	0,%[fc]\n"
411b84d0c41SHeiko Carstens 		"	lgr	1,%[pba]\n"
412c7d4d259SMartin Schwidefsky 		"0:	.insn	rre,%[opc] << 16,%[dst],%[src]\n"
413c7d4d259SMartin Schwidefsky 		"	brc	1,0b\n" /* handle partial completion */
414b84d0c41SHeiko Carstens 		: [src] "+&d" (s.pair), [dst] "+&d" (d.pair)
415b84d0c41SHeiko Carstens 		: [fc] "d" (func), [pba] "d" ((unsigned long)param),
416b84d0c41SHeiko Carstens 		  [opc] "i" (CPACF_KM)
417b84d0c41SHeiko Carstens 		: "cc", "memory", "0", "1");
418c7d4d259SMartin Schwidefsky 
419b84d0c41SHeiko Carstens 	return src_len - s.odd;
420c7d4d259SMartin Schwidefsky }
421c7d4d259SMartin Schwidefsky 
422c7d4d259SMartin Schwidefsky /**
423c7d4d259SMartin Schwidefsky  * cpacf_kmc() - executes the KMC (CIPHER MESSAGE WITH CHAINING) instruction
424c7d4d259SMartin Schwidefsky  * @func: the function code passed to KM; see CPACF_KMC_xxx defines
425c7d4d259SMartin Schwidefsky  * @param: address of parameter block; see POP for details on each func
426c7d4d259SMartin Schwidefsky  * @dest: address of destination memory area
427c7d4d259SMartin Schwidefsky  * @src: address of source memory area
428c7d4d259SMartin Schwidefsky  * @src_len: length of src operand in bytes
429c7d4d259SMartin Schwidefsky  *
430c7d4d259SMartin Schwidefsky  * Returns 0 for the query func, number of processed bytes for
431c7d4d259SMartin Schwidefsky  * encryption/decryption funcs
432c7d4d259SMartin Schwidefsky  */
433edc63a37SMartin Schwidefsky static inline int cpacf_kmc(unsigned long func, void *param,
434c7d4d259SMartin Schwidefsky 			    u8 *dest, const u8 *src, long src_len)
435c7d4d259SMartin Schwidefsky {
436b84d0c41SHeiko Carstens 	union register_pair d, s;
437c7d4d259SMartin Schwidefsky 
438b84d0c41SHeiko Carstens 	d.even = (unsigned long)dest;
439b84d0c41SHeiko Carstens 	s.even = (unsigned long)src;
440b84d0c41SHeiko Carstens 	s.odd  = (unsigned long)src_len;
441c7d4d259SMartin Schwidefsky 	asm volatile(
442b84d0c41SHeiko Carstens 		"	lgr	0,%[fc]\n"
443b84d0c41SHeiko Carstens 		"	lgr	1,%[pba]\n"
444c7d4d259SMartin Schwidefsky 		"0:	.insn	rre,%[opc] << 16,%[dst],%[src]\n"
445c7d4d259SMartin Schwidefsky 		"	brc	1,0b\n" /* handle partial completion */
446b84d0c41SHeiko Carstens 		: [src] "+&d" (s.pair), [dst] "+&d" (d.pair)
447b84d0c41SHeiko Carstens 		: [fc] "d" (func), [pba] "d" ((unsigned long)param),
448b84d0c41SHeiko Carstens 		  [opc] "i" (CPACF_KMC)
449b84d0c41SHeiko Carstens 		: "cc", "memory", "0", "1");
450c7d4d259SMartin Schwidefsky 
451b84d0c41SHeiko Carstens 	return src_len - s.odd;
452c7d4d259SMartin Schwidefsky }
453c7d4d259SMartin Schwidefsky 
454c7d4d259SMartin Schwidefsky /**
455c7d4d259SMartin Schwidefsky  * cpacf_kimd() - executes the KIMD (COMPUTE INTERMEDIATE MESSAGE DIGEST)
456c7d4d259SMartin Schwidefsky  *		  instruction
457c7d4d259SMartin Schwidefsky  * @func: the function code passed to KM; see CPACF_KIMD_xxx defines
458c7d4d259SMartin Schwidefsky  * @param: address of parameter block; see POP for details on each func
459c7d4d259SMartin Schwidefsky  * @src: address of source memory area
460c7d4d259SMartin Schwidefsky  * @src_len: length of src operand in bytes
461c7d4d259SMartin Schwidefsky  */
4620177db01SMartin Schwidefsky static inline void cpacf_kimd(unsigned long func, void *param,
463c7d4d259SMartin Schwidefsky 			      const u8 *src, long src_len)
464c7d4d259SMartin Schwidefsky {
465b84d0c41SHeiko Carstens 	union register_pair s;
466c7d4d259SMartin Schwidefsky 
467b84d0c41SHeiko Carstens 	s.even = (unsigned long)src;
468b84d0c41SHeiko Carstens 	s.odd  = (unsigned long)src_len;
469c7d4d259SMartin Schwidefsky 	asm volatile(
470b84d0c41SHeiko Carstens 		"	lgr	0,%[fc]\n"
471b84d0c41SHeiko Carstens 		"	lgr	1,%[pba]\n"
47288c02b3fSJoerg Schmidbauer 		"0:	.insn	rrf,%[opc] << 16,0,%[src],8,0\n"
473c7d4d259SMartin Schwidefsky 		"	brc	1,0b\n" /* handle partial completion */
474b84d0c41SHeiko Carstens 		: [src] "+&d" (s.pair)
475b84d0c41SHeiko Carstens 		: [fc] "d" (func), [pba] "d" ((unsigned long)(param)),
476b84d0c41SHeiko Carstens 		  [opc] "i" (CPACF_KIMD)
477b84d0c41SHeiko Carstens 		: "cc", "memory", "0", "1");
478c7d4d259SMartin Schwidefsky }
479c7d4d259SMartin Schwidefsky 
480c7d4d259SMartin Schwidefsky /**
481c7d4d259SMartin Schwidefsky  * cpacf_klmd() - executes the KLMD (COMPUTE LAST MESSAGE DIGEST) instruction
482c7d4d259SMartin Schwidefsky  * @func: the function code passed to KM; see CPACF_KLMD_xxx defines
483c7d4d259SMartin Schwidefsky  * @param: address of parameter block; see POP for details on each func
484c7d4d259SMartin Schwidefsky  * @src: address of source memory area
485c7d4d259SMartin Schwidefsky  * @src_len: length of src operand in bytes
486c7d4d259SMartin Schwidefsky  */
4870177db01SMartin Schwidefsky static inline void cpacf_klmd(unsigned long func, void *param,
488c7d4d259SMartin Schwidefsky 			      const u8 *src, long src_len)
489c7d4d259SMartin Schwidefsky {
490b84d0c41SHeiko Carstens 	union register_pair s;
491c7d4d259SMartin Schwidefsky 
492b84d0c41SHeiko Carstens 	s.even = (unsigned long)src;
493b84d0c41SHeiko Carstens 	s.odd  = (unsigned long)src_len;
494c7d4d259SMartin Schwidefsky 	asm volatile(
495b84d0c41SHeiko Carstens 		"	lgr	0,%[fc]\n"
496b84d0c41SHeiko Carstens 		"	lgr	1,%[pba]\n"
49788c02b3fSJoerg Schmidbauer 		"0:	.insn	rrf,%[opc] << 16,0,%[src],8,0\n"
498c7d4d259SMartin Schwidefsky 		"	brc	1,0b\n" /* handle partial completion */
499b84d0c41SHeiko Carstens 		: [src] "+&d" (s.pair)
500b84d0c41SHeiko Carstens 		: [fc] "d" (func), [pba] "d" ((unsigned long)param),
501b84d0c41SHeiko Carstens 		  [opc] "i" (CPACF_KLMD)
502b84d0c41SHeiko Carstens 		: "cc", "memory", "0", "1");
503c7d4d259SMartin Schwidefsky }
504c7d4d259SMartin Schwidefsky 
505c7d4d259SMartin Schwidefsky /**
506c3dcb058SHolger Dengler  * _cpacf_kmac() - executes the KMAC (COMPUTE MESSAGE AUTHENTICATION CODE)
507c3dcb058SHolger Dengler  * instruction and updates flags in gr0
508c3dcb058SHolger Dengler  * @gr0: pointer to gr0 (fc and flags) passed to KMAC; see CPACF_KMAC_xxx defines
509c3dcb058SHolger Dengler  * @param: address of parameter block; see POP for details on each func
510c3dcb058SHolger Dengler  * @src: address of source memory area
511c3dcb058SHolger Dengler  * @src_len: length of src operand in bytes
512c3dcb058SHolger Dengler  *
513c3dcb058SHolger Dengler  * Returns 0 for the query func, number of processed bytes for digest funcs
514c3dcb058SHolger Dengler  */
515c3dcb058SHolger Dengler static inline int _cpacf_kmac(unsigned long *gr0, void *param,
516c3dcb058SHolger Dengler 			      const u8 *src, long src_len)
517c3dcb058SHolger Dengler {
518c3dcb058SHolger Dengler 	union register_pair s;
519c3dcb058SHolger Dengler 
520c3dcb058SHolger Dengler 	s.even = (unsigned long)src;
521c3dcb058SHolger Dengler 	s.odd  = (unsigned long)src_len;
522c3dcb058SHolger Dengler 	asm volatile(
523c3dcb058SHolger Dengler 		"	lgr	0,%[r0]\n"
524c3dcb058SHolger Dengler 		"	lgr	1,%[pba]\n"
525c3dcb058SHolger Dengler 		"0:	.insn	rre,%[opc] << 16,0,%[src]\n"
526c3dcb058SHolger Dengler 		"	brc	1,0b\n" /* handle partial completion */
527c3dcb058SHolger Dengler 		"	lgr	%[r0],0\n"
528c3dcb058SHolger Dengler 		: [r0] "+d" (*gr0), [src] "+&d" (s.pair)
529c3dcb058SHolger Dengler 		: [pba] "d" ((unsigned long)param),
530c3dcb058SHolger Dengler 		  [opc] "i" (CPACF_KMAC)
531c3dcb058SHolger Dengler 		: "cc", "memory", "0", "1");
532c3dcb058SHolger Dengler 
533c3dcb058SHolger Dengler 	return src_len - s.odd;
534c3dcb058SHolger Dengler }
535c3dcb058SHolger Dengler 
536c3dcb058SHolger Dengler /**
537c7d4d259SMartin Schwidefsky  * cpacf_kmac() - executes the KMAC (COMPUTE MESSAGE AUTHENTICATION CODE)
538c7d4d259SMartin Schwidefsky  * instruction
539c3dcb058SHolger Dengler  * @func: function code passed to KMAC; see CPACF_KMAC_xxx defines
540c7d4d259SMartin Schwidefsky  * @param: address of parameter block; see POP for details on each func
541c7d4d259SMartin Schwidefsky  * @src: address of source memory area
542c7d4d259SMartin Schwidefsky  * @src_len: length of src operand in bytes
543c7d4d259SMartin Schwidefsky  *
544c7d4d259SMartin Schwidefsky  * Returns 0 for the query func, number of processed bytes for digest funcs
545c7d4d259SMartin Schwidefsky  */
546edc63a37SMartin Schwidefsky static inline int cpacf_kmac(unsigned long func, void *param,
547c7d4d259SMartin Schwidefsky 			     const u8 *src, long src_len)
548c7d4d259SMartin Schwidefsky {
549c3dcb058SHolger Dengler 	return _cpacf_kmac(&func, param, src, src_len);
550c7d4d259SMartin Schwidefsky }
551c7d4d259SMartin Schwidefsky 
552c7d4d259SMartin Schwidefsky /**
553c7d4d259SMartin Schwidefsky  * cpacf_kmctr() - executes the KMCTR (CIPHER MESSAGE WITH COUNTER) instruction
554c7d4d259SMartin Schwidefsky  * @func: the function code passed to KMCTR; see CPACF_KMCTR_xxx defines
555c7d4d259SMartin Schwidefsky  * @param: address of parameter block; see POP for details on each func
556c7d4d259SMartin Schwidefsky  * @dest: address of destination memory area
557c7d4d259SMartin Schwidefsky  * @src: address of source memory area
558c7d4d259SMartin Schwidefsky  * @src_len: length of src operand in bytes
559c7d4d259SMartin Schwidefsky  * @counter: address of counter value
560c7d4d259SMartin Schwidefsky  *
561c7d4d259SMartin Schwidefsky  * Returns 0 for the query func, number of processed bytes for
562c7d4d259SMartin Schwidefsky  * encryption/decryption funcs
563c7d4d259SMartin Schwidefsky  */
564edc63a37SMartin Schwidefsky static inline int cpacf_kmctr(unsigned long func, void *param, u8 *dest,
565c7d4d259SMartin Schwidefsky 			      const u8 *src, long src_len, u8 *counter)
566c7d4d259SMartin Schwidefsky {
567b84d0c41SHeiko Carstens 	union register_pair d, s, c;
568c7d4d259SMartin Schwidefsky 
569b84d0c41SHeiko Carstens 	d.even = (unsigned long)dest;
570b84d0c41SHeiko Carstens 	s.even = (unsigned long)src;
571b84d0c41SHeiko Carstens 	s.odd  = (unsigned long)src_len;
572b84d0c41SHeiko Carstens 	c.even = (unsigned long)counter;
573c7d4d259SMartin Schwidefsky 	asm volatile(
574b84d0c41SHeiko Carstens 		"	lgr	0,%[fc]\n"
575b84d0c41SHeiko Carstens 		"	lgr	1,%[pba]\n"
576c7d4d259SMartin Schwidefsky 		"0:	.insn	rrf,%[opc] << 16,%[dst],%[src],%[ctr],0\n"
577c7d4d259SMartin Schwidefsky 		"	brc	1,0b\n" /* handle partial completion */
578b84d0c41SHeiko Carstens 		: [src] "+&d" (s.pair), [dst] "+&d" (d.pair),
579b84d0c41SHeiko Carstens 		  [ctr] "+&d" (c.pair)
580b84d0c41SHeiko Carstens 		: [fc] "d" (func), [pba] "d" ((unsigned long)param),
581b84d0c41SHeiko Carstens 		  [opc] "i" (CPACF_KMCTR)
582b84d0c41SHeiko Carstens 		: "cc", "memory", "0", "1");
583c7d4d259SMartin Schwidefsky 
584b84d0c41SHeiko Carstens 	return src_len - s.odd;
585c7d4d259SMartin Schwidefsky }
586c7d4d259SMartin Schwidefsky 
587c7d4d259SMartin Schwidefsky /**
588985a9d20SHarald Freudenberger  * cpacf_prno() - executes the PRNO (PERFORM RANDOM NUMBER OPERATION)
589c7d4d259SMartin Schwidefsky  *		  instruction
590985a9d20SHarald Freudenberger  * @func: the function code passed to PRNO; see CPACF_PRNO_xxx defines
591c7d4d259SMartin Schwidefsky  * @param: address of parameter block; see POP for details on each func
592c7d4d259SMartin Schwidefsky  * @dest: address of destination memory area
593c7d4d259SMartin Schwidefsky  * @dest_len: size of destination memory area in bytes
594c7d4d259SMartin Schwidefsky  * @seed: address of seed data
595c7d4d259SMartin Schwidefsky  * @seed_len: size of seed data in bytes
596c7d4d259SMartin Schwidefsky  */
597985a9d20SHarald Freudenberger static inline void cpacf_prno(unsigned long func, void *param,
598f75fa65dSHarald Freudenberger 			      u8 *dest, unsigned long dest_len,
599f75fa65dSHarald Freudenberger 			      const u8 *seed, unsigned long seed_len)
600c7d4d259SMartin Schwidefsky {
601b84d0c41SHeiko Carstens 	union register_pair d, s;
602c7d4d259SMartin Schwidefsky 
603b84d0c41SHeiko Carstens 	d.even = (unsigned long)dest;
604b84d0c41SHeiko Carstens 	d.odd  = (unsigned long)dest_len;
605b84d0c41SHeiko Carstens 	s.even = (unsigned long)seed;
606b84d0c41SHeiko Carstens 	s.odd  = (unsigned long)seed_len;
607c7d4d259SMartin Schwidefsky 	asm volatile (
608b84d0c41SHeiko Carstens 		"	lgr	0,%[fc]\n"
609b84d0c41SHeiko Carstens 		"	lgr	1,%[pba]\n"
610c7d4d259SMartin Schwidefsky 		"0:	.insn	rre,%[opc] << 16,%[dst],%[seed]\n"
611c7d4d259SMartin Schwidefsky 		"	brc	1,0b\n"	  /* handle partial completion */
612b84d0c41SHeiko Carstens 		: [dst] "+&d" (d.pair)
613b84d0c41SHeiko Carstens 		: [fc] "d" (func), [pba] "d" ((unsigned long)param),
614b84d0c41SHeiko Carstens 		  [seed] "d" (s.pair), [opc] "i" (CPACF_PRNO)
615b84d0c41SHeiko Carstens 		: "cc", "memory", "0", "1");
616c7d4d259SMartin Schwidefsky }
617c7d4d259SMartin Schwidefsky 
618c7d4d259SMartin Schwidefsky /**
619f75fa65dSHarald Freudenberger  * cpacf_trng() - executes the TRNG subfunction of the PRNO instruction
620f75fa65dSHarald Freudenberger  * @ucbuf: buffer for unconditioned data
621f75fa65dSHarald Freudenberger  * @ucbuf_len: amount of unconditioned data to fetch in bytes
622f75fa65dSHarald Freudenberger  * @cbuf: buffer for conditioned data
623f75fa65dSHarald Freudenberger  * @cbuf_len: amount of conditioned data to fetch in bytes
624f75fa65dSHarald Freudenberger  */
625f75fa65dSHarald Freudenberger static inline void cpacf_trng(u8 *ucbuf, unsigned long ucbuf_len,
626f75fa65dSHarald Freudenberger 			      u8 *cbuf, unsigned long cbuf_len)
627f75fa65dSHarald Freudenberger {
628b84d0c41SHeiko Carstens 	union register_pair u, c;
629f75fa65dSHarald Freudenberger 
630b84d0c41SHeiko Carstens 	u.even = (unsigned long)ucbuf;
631b84d0c41SHeiko Carstens 	u.odd  = (unsigned long)ucbuf_len;
632b84d0c41SHeiko Carstens 	c.even = (unsigned long)cbuf;
633b84d0c41SHeiko Carstens 	c.odd  = (unsigned long)cbuf_len;
634f75fa65dSHarald Freudenberger 	asm volatile (
635b84d0c41SHeiko Carstens 		"	lghi	0,%[fc]\n"
636f75fa65dSHarald Freudenberger 		"0:	.insn	rre,%[opc] << 16,%[ucbuf],%[cbuf]\n"
637f75fa65dSHarald Freudenberger 		"	brc	1,0b\n"	  /* handle partial completion */
638b84d0c41SHeiko Carstens 		: [ucbuf] "+&d" (u.pair), [cbuf] "+&d" (c.pair)
639b84d0c41SHeiko Carstens 		: [fc] "K" (CPACF_PRNO_TRNG), [opc] "i" (CPACF_PRNO)
640b84d0c41SHeiko Carstens 		: "cc", "memory", "0");
6418c208bc5SIlya Leoshkevich 	kmsan_unpoison_memory(ucbuf, ucbuf_len);
6428c208bc5SIlya Leoshkevich 	kmsan_unpoison_memory(cbuf, cbuf_len);
643f75fa65dSHarald Freudenberger }
644f75fa65dSHarald Freudenberger 
645f75fa65dSHarald Freudenberger /**
646c7d4d259SMartin Schwidefsky  * cpacf_pcc() - executes the PCC (PERFORM CRYPTOGRAPHIC COMPUTATION)
647c7d4d259SMartin Schwidefsky  *		 instruction
648c7d4d259SMartin Schwidefsky  * @func: the function code passed to PCC; see CPACF_KM_xxx defines
649c7d4d259SMartin Schwidefsky  * @param: address of parameter block; see POP for details on each func
650c7d4d259SMartin Schwidefsky  */
6510177db01SMartin Schwidefsky static inline void cpacf_pcc(unsigned long func, void *param)
652c7d4d259SMartin Schwidefsky {
653c7d4d259SMartin Schwidefsky 	asm volatile(
654b84d0c41SHeiko Carstens 		"	lgr	0,%[fc]\n"
655b84d0c41SHeiko Carstens 		"	lgr	1,%[pba]\n"
656c7d4d259SMartin Schwidefsky 		"0:	.insn	rre,%[opc] << 16,0,0\n" /* PCC opcode */
657c7d4d259SMartin Schwidefsky 		"	brc	1,0b\n" /* handle partial completion */
658c7d4d259SMartin Schwidefsky 		:
659b84d0c41SHeiko Carstens 		: [fc] "d" (func), [pba] "d" ((unsigned long)param),
660b84d0c41SHeiko Carstens 		  [opc] "i" (CPACF_PCC)
661b84d0c41SHeiko Carstens 		: "cc", "memory", "0", "1");
662c7d4d259SMartin Schwidefsky }
663c7d4d259SMartin Schwidefsky 
66477606708SHarald Freudenberger /**
66577606708SHarald Freudenberger  * cpacf_pckmo() - executes the PCKMO (PERFORM CRYPTOGRAPHIC KEY
66677606708SHarald Freudenberger  *		  MANAGEMENT) instruction
66777606708SHarald Freudenberger  * @func: the function code passed to PCKMO; see CPACF_PCKMO_xxx defines
66877606708SHarald Freudenberger  * @param: address of parameter block; see POP for details on each func
66977606708SHarald Freudenberger  *
67077606708SHarald Freudenberger  * Returns 0.
67177606708SHarald Freudenberger  */
67277606708SHarald Freudenberger static inline void cpacf_pckmo(long func, void *param)
67377606708SHarald Freudenberger {
67477606708SHarald Freudenberger 	asm volatile(
675b84d0c41SHeiko Carstens 		"	lgr	0,%[fc]\n"
676b84d0c41SHeiko Carstens 		"	lgr	1,%[pba]\n"
67777606708SHarald Freudenberger 		"       .insn   rre,%[opc] << 16,0,0\n" /* PCKMO opcode */
67877606708SHarald Freudenberger 		:
679b84d0c41SHeiko Carstens 		: [fc] "d" (func), [pba] "d" ((unsigned long)param),
680b84d0c41SHeiko Carstens 		  [opc] "i" (CPACF_PCKMO)
681b84d0c41SHeiko Carstens 		: "cc", "memory", "0", "1");
68277606708SHarald Freudenberger }
68377606708SHarald Freudenberger 
684eecd49c4SPatrick Steuer /**
685eecd49c4SPatrick Steuer  * cpacf_kma() - executes the KMA (CIPHER MESSAGE WITH AUTHENTICATION)
686eecd49c4SPatrick Steuer  *		 instruction
687eecd49c4SPatrick Steuer  * @func: the function code passed to KMA; see CPACF_KMA_xxx defines
688eecd49c4SPatrick Steuer  * @param: address of parameter block; see POP for details on each func
689eecd49c4SPatrick Steuer  * @dest: address of destination memory area
690eecd49c4SPatrick Steuer  * @src: address of source memory area
691eecd49c4SPatrick Steuer  * @src_len: length of src operand in bytes
692eecd49c4SPatrick Steuer  * @aad: address of additional authenticated data memory area
693eecd49c4SPatrick Steuer  * @aad_len: length of aad operand in bytes
694eecd49c4SPatrick Steuer  */
695eecd49c4SPatrick Steuer static inline void cpacf_kma(unsigned long func, void *param, u8 *dest,
696eecd49c4SPatrick Steuer 			     const u8 *src, unsigned long src_len,
697eecd49c4SPatrick Steuer 			     const u8 *aad, unsigned long aad_len)
698eecd49c4SPatrick Steuer {
699b84d0c41SHeiko Carstens 	union register_pair d, s, a;
700eecd49c4SPatrick Steuer 
701b84d0c41SHeiko Carstens 	d.even = (unsigned long)dest;
702b84d0c41SHeiko Carstens 	s.even = (unsigned long)src;
703b84d0c41SHeiko Carstens 	s.odd  = (unsigned long)src_len;
704b84d0c41SHeiko Carstens 	a.even = (unsigned long)aad;
705b84d0c41SHeiko Carstens 	a.odd  = (unsigned long)aad_len;
706eecd49c4SPatrick Steuer 	asm volatile(
707b84d0c41SHeiko Carstens 		"	lgr	0,%[fc]\n"
708b84d0c41SHeiko Carstens 		"	lgr	1,%[pba]\n"
709eecd49c4SPatrick Steuer 		"0:	.insn	rrf,%[opc] << 16,%[dst],%[src],%[aad],0\n"
710eecd49c4SPatrick Steuer 		"	brc	1,0b\n"	/* handle partial completion */
711b84d0c41SHeiko Carstens 		: [dst] "+&d" (d.pair), [src] "+&d" (s.pair),
712b84d0c41SHeiko Carstens 		  [aad] "+&d" (a.pair)
713b84d0c41SHeiko Carstens 		: [fc] "d" (func), [pba] "d" ((unsigned long)param),
714b84d0c41SHeiko Carstens 		  [opc] "i" (CPACF_KMA)
715b84d0c41SHeiko Carstens 		: "cc", "memory", "0", "1");
716eecd49c4SPatrick Steuer }
717eecd49c4SPatrick Steuer 
718c7d4d259SMartin Schwidefsky #endif	/* _ASM_S390_CPACF_H */
719