blob: a107e6afcbb8eec10ef4ae0f5ac74df1f2e30c11 [file] [log] [blame]
Ruchika Guptab9eebfa2014-10-15 11:35:30 +05301/*
2 * Copyright 2008-2014 Freescale Semiconductor, Inc.
3 *
4 * SPDX-License-Identifier: GPL-2.0+
5 *
6 * Based on CAAM driver in drivers/crypto/caam in Linux
7 */
8
9#include <common.h>
10#include <malloc.h>
11#include "fsl_sec.h"
12#include "jr.h"
13
14#define CIRC_CNT(head, tail, size) (((head) - (tail)) & (size - 1))
15#define CIRC_SPACE(head, tail, size) CIRC_CNT((tail), (head) + 1, (size))
16
17struct jobring jr;
18
19static inline void start_jr0(void)
20{
21 ccsr_sec_t *sec = (void *)CONFIG_SYS_FSL_SEC_ADDR;
22 u32 ctpr_ms = sec_in32(&sec->ctpr_ms);
23 u32 scfgr = sec_in32(&sec->scfgr);
24
25 if (ctpr_ms & SEC_CTPR_MS_VIRT_EN_INCL) {
26 /* VIRT_EN_INCL = 1 & VIRT_EN_POR = 1 or
27 * VIRT_EN_INCL = 1 & VIRT_EN_POR = 0 & SEC_SCFGR_VIRT_EN = 1
28 */
29 if ((ctpr_ms & SEC_CTPR_MS_VIRT_EN_POR) ||
30 (!(ctpr_ms & SEC_CTPR_MS_VIRT_EN_POR) &&
31 (scfgr & SEC_SCFGR_VIRT_EN)))
32 sec_out32(&sec->jrstartr, CONFIG_JRSTARTR_JR0);
33 } else {
34 /* VIRT_EN_INCL = 0 && VIRT_EN_POR_VALUE = 1 */
35 if (ctpr_ms & SEC_CTPR_MS_VIRT_EN_POR)
36 sec_out32(&sec->jrstartr, CONFIG_JRSTARTR_JR0);
37 }
38}
39
40static inline void jr_reset_liodn(void)
41{
42 ccsr_sec_t *sec = (void *)CONFIG_SYS_FSL_SEC_ADDR;
43 sec_out32(&sec->jrliodnr[0].ls, 0);
44}
45
46static inline void jr_disable_irq(void)
47{
48 struct jr_regs *regs = (struct jr_regs *)CONFIG_SYS_FSL_JR0_ADDR;
49 uint32_t jrcfg = sec_in32(&regs->jrcfg1);
50
51 jrcfg = jrcfg | JR_INTMASK;
52
53 sec_out32(&regs->jrcfg1, jrcfg);
54}
55
56static void jr_initregs(void)
57{
58 struct jr_regs *regs = (struct jr_regs *)CONFIG_SYS_FSL_JR0_ADDR;
59 phys_addr_t ip_base = virt_to_phys((void *)jr.input_ring);
60 phys_addr_t op_base = virt_to_phys((void *)jr.output_ring);
61
62#ifdef CONFIG_PHYS_64BIT
63 sec_out32(&regs->irba_h, ip_base >> 32);
64#else
65 sec_out32(&regs->irba_h, 0x0);
66#endif
67 sec_out32(&regs->irba_l, (uint32_t)ip_base);
68#ifdef CONFIG_PHYS_64BIT
69 sec_out32(&regs->orba_h, op_base >> 32);
70#else
71 sec_out32(&regs->orba_h, 0x0);
72#endif
73 sec_out32(&regs->orba_l, (uint32_t)op_base);
74 sec_out32(&regs->ors, JR_SIZE);
75 sec_out32(&regs->irs, JR_SIZE);
76
77 if (!jr.irq)
78 jr_disable_irq();
79}
80
81static int jr_init(void)
82{
83 memset(&jr, 0, sizeof(struct jobring));
84
85 jr.jq_id = DEFAULT_JR_ID;
86 jr.irq = DEFAULT_IRQ;
87
88#ifdef CONFIG_FSL_CORENET
89 jr.liodn = DEFAULT_JR_LIODN;
90#endif
91 jr.size = JR_SIZE;
92 jr.input_ring = (dma_addr_t *)malloc(JR_SIZE * sizeof(dma_addr_t));
93 if (!jr.input_ring)
94 return -1;
95 jr.output_ring =
96 (struct op_ring *)malloc(JR_SIZE * sizeof(struct op_ring));
97 if (!jr.output_ring)
98 return -1;
99
100 memset(jr.input_ring, 0, JR_SIZE * sizeof(dma_addr_t));
101 memset(jr.output_ring, 0, JR_SIZE * sizeof(struct op_ring));
102
103 start_jr0();
104
105 jr_initregs();
106
107 return 0;
108}
109
110static int jr_sw_cleanup(void)
111{
112 jr.head = 0;
113 jr.tail = 0;
114 jr.read_idx = 0;
115 jr.write_idx = 0;
116 memset(jr.info, 0, sizeof(jr.info));
117 memset(jr.input_ring, 0, jr.size * sizeof(dma_addr_t));
118 memset(jr.output_ring, 0, jr.size * sizeof(struct op_ring));
119
120 return 0;
121}
122
123static int jr_hw_reset(void)
124{
125 struct jr_regs *regs = (struct jr_regs *)CONFIG_SYS_FSL_JR0_ADDR;
126 uint32_t timeout = 100000;
127 uint32_t jrint, jrcr;
128
129 sec_out32(&regs->jrcr, JRCR_RESET);
130 do {
131 jrint = sec_in32(&regs->jrint);
132 } while (((jrint & JRINT_ERR_HALT_MASK) ==
133 JRINT_ERR_HALT_INPROGRESS) && --timeout);
134
135 jrint = sec_in32(&regs->jrint);
136 if (((jrint & JRINT_ERR_HALT_MASK) !=
137 JRINT_ERR_HALT_INPROGRESS) && timeout == 0)
138 return -1;
139
140 timeout = 100000;
141 sec_out32(&regs->jrcr, JRCR_RESET);
142 do {
143 jrcr = sec_in32(&regs->jrcr);
144 } while ((jrcr & JRCR_RESET) && --timeout);
145
146 if (timeout == 0)
147 return -1;
148
149 return 0;
150}
151
152/* -1 --- error, can't enqueue -- no space available */
153static int jr_enqueue(uint32_t *desc_addr,
154 void (*callback)(uint32_t desc, uint32_t status, void *arg),
155 void *arg)
156{
157 struct jr_regs *regs = (struct jr_regs *)CONFIG_SYS_FSL_JR0_ADDR;
158 int head = jr.head;
159 dma_addr_t desc_phys_addr = virt_to_phys(desc_addr);
160
161 if (sec_in32(&regs->irsa) == 0 ||
162 CIRC_SPACE(jr.head, jr.tail, jr.size) <= 0)
163 return -1;
164
165 jr.input_ring[head] = desc_phys_addr;
166 jr.info[head].desc_phys_addr = desc_phys_addr;
167 jr.info[head].desc_addr = (uint32_t)desc_addr;
168 jr.info[head].callback = (void *)callback;
169 jr.info[head].arg = arg;
170 jr.info[head].op_done = 0;
171
172 jr.head = (head + 1) & (jr.size - 1);
173
174 sec_out32(&regs->irja, 1);
175
176 return 0;
177}
178
179static int jr_dequeue(void)
180{
181 struct jr_regs *regs = (struct jr_regs *)CONFIG_SYS_FSL_JR0_ADDR;
182 int head = jr.head;
183 int tail = jr.tail;
184 int idx, i, found;
185 void (*callback)(uint32_t desc, uint32_t status, void *arg);
186 void *arg = NULL;
187
188 while (sec_in32(&regs->orsf) && CIRC_CNT(jr.head, jr.tail, jr.size)) {
189 found = 0;
190
191 dma_addr_t op_desc = jr.output_ring[jr.tail].desc;
192 uint32_t status = jr.output_ring[jr.tail].status;
193 uint32_t desc_virt;
194
195 for (i = 0; CIRC_CNT(head, tail + i, jr.size) >= 1; i++) {
196 idx = (tail + i) & (jr.size - 1);
197 if (op_desc == jr.info[idx].desc_phys_addr) {
198 desc_virt = jr.info[idx].desc_addr;
199 found = 1;
200 break;
201 }
202 }
203
204 /* Error condition if match not found */
205 if (!found)
206 return -1;
207
208 jr.info[idx].op_done = 1;
209 callback = (void *)jr.info[idx].callback;
210 arg = jr.info[idx].arg;
211
212 /* When the job on tail idx gets done, increment
213 * tail till the point where job completed out of oredr has
214 * been taken into account
215 */
216 if (idx == tail)
217 do {
218 tail = (tail + 1) & (jr.size - 1);
219 } while (jr.info[tail].op_done);
220
221 jr.tail = tail;
222 jr.read_idx = (jr.read_idx + 1) & (jr.size - 1);
223
224 sec_out32(&regs->orjr, 1);
225 jr.info[idx].op_done = 0;
226
227 callback(desc_virt, status, arg);
228 }
229
230 return 0;
231}
232
233static void desc_done(uint32_t desc, uint32_t status, void *arg)
234{
235 struct result *x = arg;
236 x->status = status;
237 caam_jr_strstatus(status);
238 x->done = 1;
239}
240
241int run_descriptor_jr(uint32_t *desc)
242{
243 unsigned long long timeval = get_ticks();
244 unsigned long long timeout = usec2ticks(CONFIG_SEC_DEQ_TIMEOUT);
245 struct result op;
246 int ret = 0;
247
248 memset(&op, sizeof(op), 0);
249
250 ret = jr_enqueue(desc, desc_done, &op);
251 if (ret) {
252 debug("Error in SEC enq\n");
253 ret = JQ_ENQ_ERR;
254 goto out;
255 }
256
257 timeval = get_ticks();
258 timeout = usec2ticks(CONFIG_SEC_DEQ_TIMEOUT);
259 while (op.done != 1) {
260 ret = jr_dequeue();
261 if (ret) {
262 debug("Error in SEC deq\n");
263 ret = JQ_DEQ_ERR;
264 goto out;
265 }
266
267 if ((get_ticks() - timeval) > timeout) {
268 debug("SEC Dequeue timed out\n");
269 ret = JQ_DEQ_TO_ERR;
270 goto out;
271 }
272 }
273
274 if (!op.status) {
275 debug("Error %x\n", op.status);
276 ret = op.status;
277 }
278out:
279 return ret;
280}
281
282int jr_reset(void)
283{
284 if (jr_hw_reset() < 0)
285 return -1;
286
287 /* Clean up the jobring structure maintained by software */
288 jr_sw_cleanup();
289
290 return 0;
291}
292
293int sec_reset(void)
294{
295 ccsr_sec_t *sec = (void *)CONFIG_SYS_FSL_SEC_ADDR;
296 uint32_t mcfgr = sec_in32(&sec->mcfgr);
297 uint32_t timeout = 100000;
298
299 mcfgr |= MCFGR_SWRST;
300 sec_out32(&sec->mcfgr, mcfgr);
301
302 mcfgr |= MCFGR_DMA_RST;
303 sec_out32(&sec->mcfgr, mcfgr);
304 do {
305 mcfgr = sec_in32(&sec->mcfgr);
306 } while ((mcfgr & MCFGR_DMA_RST) == MCFGR_DMA_RST && --timeout);
307
308 if (timeout == 0)
309 return -1;
310
311 timeout = 100000;
312 do {
313 mcfgr = sec_in32(&sec->mcfgr);
314 } while ((mcfgr & MCFGR_SWRST) == MCFGR_SWRST && --timeout);
315
316 if (timeout == 0)
317 return -1;
318
319 return 0;
320}
321
322int sec_init(void)
323{
324 int ret = 0;
325
326#ifdef CONFIG_PHYS_64BIT
327 ccsr_sec_t *sec = (void *)CONFIG_SYS_FSL_SEC_ADDR;
328 uint32_t mcr = sec_in32(&sec->mcfgr);
329
330 sec_out32(&sec->mcfgr, mcr | 1 << MCFGR_PS_SHIFT);
331#endif
332 ret = jr_init();
333 if (ret < 0)
334 return -1;
335
336 return ret;
337}