1268ee7deSSubbaraya Sundeep /*
2268ee7deSSubbaraya Sundeep * Block model of SPI controller present in
3268ee7deSSubbaraya Sundeep * Microsemi's SmartFusion2 and SmartFusion SoCs.
4268ee7deSSubbaraya Sundeep *
5268ee7deSSubbaraya Sundeep * Copyright (C) 2017 Subbaraya Sundeep <sundeep.lkml@gmail.com>
6268ee7deSSubbaraya Sundeep *
7268ee7deSSubbaraya Sundeep * Permission is hereby granted, free of charge, to any person obtaining a copy
8268ee7deSSubbaraya Sundeep * of this software and associated documentation files (the "Software"), to deal
9268ee7deSSubbaraya Sundeep * in the Software without restriction, including without limitation the rights
10268ee7deSSubbaraya Sundeep * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
11268ee7deSSubbaraya Sundeep * copies of the Software, and to permit persons to whom the Software is
12268ee7deSSubbaraya Sundeep * furnished to do so, subject to the following conditions:
13268ee7deSSubbaraya Sundeep *
14268ee7deSSubbaraya Sundeep * The above copyright notice and this permission notice shall be included in
15268ee7deSSubbaraya Sundeep * all copies or substantial portions of the Software.
16268ee7deSSubbaraya Sundeep *
17268ee7deSSubbaraya Sundeep * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
18268ee7deSSubbaraya Sundeep * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
19268ee7deSSubbaraya Sundeep * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
20268ee7deSSubbaraya Sundeep * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
21268ee7deSSubbaraya Sundeep * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
22268ee7deSSubbaraya Sundeep * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
23268ee7deSSubbaraya Sundeep * THE SOFTWARE.
24268ee7deSSubbaraya Sundeep */
25268ee7deSSubbaraya Sundeep
26268ee7deSSubbaraya Sundeep #include "qemu/osdep.h"
2764552b6bSMarkus Armbruster #include "hw/irq.h"
28268ee7deSSubbaraya Sundeep #include "hw/ssi/mss-spi.h"
29d6454270SMarkus Armbruster #include "migration/vmstate.h"
30268ee7deSSubbaraya Sundeep #include "qemu/log.h"
310b8fa32fSMarkus Armbruster #include "qemu/module.h"
32268ee7deSSubbaraya Sundeep
33268ee7deSSubbaraya Sundeep #ifndef MSS_SPI_ERR_DEBUG
34268ee7deSSubbaraya Sundeep #define MSS_SPI_ERR_DEBUG 0
35268ee7deSSubbaraya Sundeep #endif
36268ee7deSSubbaraya Sundeep
37268ee7deSSubbaraya Sundeep #define DB_PRINT_L(lvl, fmt, args...) do { \
38268ee7deSSubbaraya Sundeep if (MSS_SPI_ERR_DEBUG >= lvl) { \
39268ee7deSSubbaraya Sundeep qemu_log("%s: " fmt "\n", __func__, ## args); \
40268ee7deSSubbaraya Sundeep } \
412562755eSEric Blake } while (0)
42268ee7deSSubbaraya Sundeep
43268ee7deSSubbaraya Sundeep #define DB_PRINT(fmt, args...) DB_PRINT_L(1, fmt, ## args)
44268ee7deSSubbaraya Sundeep
45268ee7deSSubbaraya Sundeep #define FIFO_CAPACITY 32
46268ee7deSSubbaraya Sundeep
47268ee7deSSubbaraya Sundeep #define R_SPI_CONTROL 0
48268ee7deSSubbaraya Sundeep #define R_SPI_DFSIZE 1
49268ee7deSSubbaraya Sundeep #define R_SPI_STATUS 2
50268ee7deSSubbaraya Sundeep #define R_SPI_INTCLR 3
51268ee7deSSubbaraya Sundeep #define R_SPI_RX 4
52268ee7deSSubbaraya Sundeep #define R_SPI_TX 5
53268ee7deSSubbaraya Sundeep #define R_SPI_CLKGEN 6
54268ee7deSSubbaraya Sundeep #define R_SPI_SS 7
55268ee7deSSubbaraya Sundeep #define R_SPI_MIS 8
56268ee7deSSubbaraya Sundeep #define R_SPI_RIS 9
57268ee7deSSubbaraya Sundeep
58268ee7deSSubbaraya Sundeep #define S_TXDONE (1 << 0)
59268ee7deSSubbaraya Sundeep #define S_RXRDY (1 << 1)
60268ee7deSSubbaraya Sundeep #define S_RXCHOVRF (1 << 2)
61268ee7deSSubbaraya Sundeep #define S_RXFIFOFUL (1 << 4)
62268ee7deSSubbaraya Sundeep #define S_RXFIFOFULNXT (1 << 5)
63268ee7deSSubbaraya Sundeep #define S_RXFIFOEMP (1 << 6)
64268ee7deSSubbaraya Sundeep #define S_RXFIFOEMPNXT (1 << 7)
65268ee7deSSubbaraya Sundeep #define S_TXFIFOFUL (1 << 8)
66268ee7deSSubbaraya Sundeep #define S_TXFIFOFULNXT (1 << 9)
67268ee7deSSubbaraya Sundeep #define S_TXFIFOEMP (1 << 10)
68268ee7deSSubbaraya Sundeep #define S_TXFIFOEMPNXT (1 << 11)
69268ee7deSSubbaraya Sundeep #define S_FRAMESTART (1 << 12)
70268ee7deSSubbaraya Sundeep #define S_SSEL (1 << 13)
71268ee7deSSubbaraya Sundeep #define S_ACTIVE (1 << 14)
72268ee7deSSubbaraya Sundeep
73268ee7deSSubbaraya Sundeep #define C_ENABLE (1 << 0)
74268ee7deSSubbaraya Sundeep #define C_MODE (1 << 1)
75268ee7deSSubbaraya Sundeep #define C_INTRXDATA (1 << 4)
76268ee7deSSubbaraya Sundeep #define C_INTTXDATA (1 << 5)
77268ee7deSSubbaraya Sundeep #define C_INTRXOVRFLO (1 << 6)
78268ee7deSSubbaraya Sundeep #define C_SPS (1 << 26)
79268ee7deSSubbaraya Sundeep #define C_BIGFIFO (1 << 29)
80268ee7deSSubbaraya Sundeep #define C_RESET (1 << 31)
81268ee7deSSubbaraya Sundeep
82cda607d5SSubbaraya Sundeep #define FRAMESZ_MASK 0x3F
83268ee7deSSubbaraya Sundeep #define FMCOUNT_MASK 0x00FFFF00
84268ee7deSSubbaraya Sundeep #define FMCOUNT_SHIFT 8
85cda607d5SSubbaraya Sundeep #define FRAMESZ_MAX 32
86268ee7deSSubbaraya Sundeep
txfifo_reset(MSSSpiState * s)87268ee7deSSubbaraya Sundeep static void txfifo_reset(MSSSpiState *s)
88268ee7deSSubbaraya Sundeep {
89268ee7deSSubbaraya Sundeep fifo32_reset(&s->tx_fifo);
90268ee7deSSubbaraya Sundeep
91268ee7deSSubbaraya Sundeep s->regs[R_SPI_STATUS] &= ~S_TXFIFOFUL;
92268ee7deSSubbaraya Sundeep s->regs[R_SPI_STATUS] |= S_TXFIFOEMP;
93268ee7deSSubbaraya Sundeep }
94268ee7deSSubbaraya Sundeep
rxfifo_reset(MSSSpiState * s)95268ee7deSSubbaraya Sundeep static void rxfifo_reset(MSSSpiState *s)
96268ee7deSSubbaraya Sundeep {
97268ee7deSSubbaraya Sundeep fifo32_reset(&s->rx_fifo);
98268ee7deSSubbaraya Sundeep
99268ee7deSSubbaraya Sundeep s->regs[R_SPI_STATUS] &= ~S_RXFIFOFUL;
100268ee7deSSubbaraya Sundeep s->regs[R_SPI_STATUS] |= S_RXFIFOEMP;
101268ee7deSSubbaraya Sundeep }
102268ee7deSSubbaraya Sundeep
set_fifodepth(MSSSpiState * s)103268ee7deSSubbaraya Sundeep static void set_fifodepth(MSSSpiState *s)
104268ee7deSSubbaraya Sundeep {
105268ee7deSSubbaraya Sundeep unsigned int size = s->regs[R_SPI_DFSIZE] & FRAMESZ_MASK;
106268ee7deSSubbaraya Sundeep
107268ee7deSSubbaraya Sundeep if (size <= 8) {
108268ee7deSSubbaraya Sundeep s->fifo_depth = 32;
109268ee7deSSubbaraya Sundeep } else if (size <= 16) {
110268ee7deSSubbaraya Sundeep s->fifo_depth = 16;
111268ee7deSSubbaraya Sundeep } else {
112cda607d5SSubbaraya Sundeep s->fifo_depth = 8;
113268ee7deSSubbaraya Sundeep }
114268ee7deSSubbaraya Sundeep }
115268ee7deSSubbaraya Sundeep
update_mis(MSSSpiState * s)116268ee7deSSubbaraya Sundeep static void update_mis(MSSSpiState *s)
117268ee7deSSubbaraya Sundeep {
118268ee7deSSubbaraya Sundeep uint32_t reg = s->regs[R_SPI_CONTROL];
119268ee7deSSubbaraya Sundeep uint32_t tmp;
120268ee7deSSubbaraya Sundeep
121268ee7deSSubbaraya Sundeep /*
122268ee7deSSubbaraya Sundeep * form the Control register interrupt enable bits
123268ee7deSSubbaraya Sundeep * same as RIS, MIS and Interrupt clear registers for simplicity
124268ee7deSSubbaraya Sundeep */
125268ee7deSSubbaraya Sundeep tmp = ((reg & C_INTRXOVRFLO) >> 4) | ((reg & C_INTRXDATA) >> 3) |
126268ee7deSSubbaraya Sundeep ((reg & C_INTTXDATA) >> 5);
127268ee7deSSubbaraya Sundeep s->regs[R_SPI_MIS] |= tmp & s->regs[R_SPI_RIS];
128268ee7deSSubbaraya Sundeep }
129268ee7deSSubbaraya Sundeep
spi_update_irq(MSSSpiState * s)130268ee7deSSubbaraya Sundeep static void spi_update_irq(MSSSpiState *s)
131268ee7deSSubbaraya Sundeep {
132268ee7deSSubbaraya Sundeep int irq;
133268ee7deSSubbaraya Sundeep
134268ee7deSSubbaraya Sundeep update_mis(s);
135268ee7deSSubbaraya Sundeep irq = !!(s->regs[R_SPI_MIS]);
136268ee7deSSubbaraya Sundeep
137268ee7deSSubbaraya Sundeep qemu_set_irq(s->irq, irq);
138268ee7deSSubbaraya Sundeep }
139268ee7deSSubbaraya Sundeep
mss_spi_reset(DeviceState * d)140268ee7deSSubbaraya Sundeep static void mss_spi_reset(DeviceState *d)
141268ee7deSSubbaraya Sundeep {
142268ee7deSSubbaraya Sundeep MSSSpiState *s = MSS_SPI(d);
143268ee7deSSubbaraya Sundeep
144268ee7deSSubbaraya Sundeep memset(s->regs, 0, sizeof s->regs);
145268ee7deSSubbaraya Sundeep s->regs[R_SPI_CONTROL] = 0x80000102;
146268ee7deSSubbaraya Sundeep s->regs[R_SPI_DFSIZE] = 0x4;
147268ee7deSSubbaraya Sundeep s->regs[R_SPI_STATUS] = S_SSEL | S_TXFIFOEMP | S_RXFIFOEMP;
148268ee7deSSubbaraya Sundeep s->regs[R_SPI_CLKGEN] = 0x7;
149268ee7deSSubbaraya Sundeep s->regs[R_SPI_RIS] = 0x0;
150268ee7deSSubbaraya Sundeep
151268ee7deSSubbaraya Sundeep s->fifo_depth = 4;
152268ee7deSSubbaraya Sundeep s->frame_count = 1;
153268ee7deSSubbaraya Sundeep s->enabled = false;
154268ee7deSSubbaraya Sundeep
155268ee7deSSubbaraya Sundeep rxfifo_reset(s);
156268ee7deSSubbaraya Sundeep txfifo_reset(s);
157268ee7deSSubbaraya Sundeep }
158268ee7deSSubbaraya Sundeep
159268ee7deSSubbaraya Sundeep static uint64_t
spi_read(void * opaque,hwaddr addr,unsigned int size)160268ee7deSSubbaraya Sundeep spi_read(void *opaque, hwaddr addr, unsigned int size)
161268ee7deSSubbaraya Sundeep {
162268ee7deSSubbaraya Sundeep MSSSpiState *s = opaque;
163268ee7deSSubbaraya Sundeep uint32_t ret = 0;
164268ee7deSSubbaraya Sundeep
165268ee7deSSubbaraya Sundeep addr >>= 2;
166268ee7deSSubbaraya Sundeep switch (addr) {
167268ee7deSSubbaraya Sundeep case R_SPI_RX:
168268ee7deSSubbaraya Sundeep s->regs[R_SPI_STATUS] &= ~S_RXFIFOFUL;
169268ee7deSSubbaraya Sundeep s->regs[R_SPI_STATUS] &= ~S_RXCHOVRF;
170c0bccee9SPhilippe Mathieu-Daudé if (fifo32_is_empty(&s->rx_fifo)) {
171c0bccee9SPhilippe Mathieu-Daudé qemu_log_mask(LOG_GUEST_ERROR,
172c0bccee9SPhilippe Mathieu-Daudé "%s: Reading empty RX_FIFO\n",
173c0bccee9SPhilippe Mathieu-Daudé __func__);
174c0bccee9SPhilippe Mathieu-Daudé } else {
175268ee7deSSubbaraya Sundeep ret = fifo32_pop(&s->rx_fifo);
176c0bccee9SPhilippe Mathieu-Daudé }
177268ee7deSSubbaraya Sundeep if (fifo32_is_empty(&s->rx_fifo)) {
178268ee7deSSubbaraya Sundeep s->regs[R_SPI_STATUS] |= S_RXFIFOEMP;
179268ee7deSSubbaraya Sundeep }
180268ee7deSSubbaraya Sundeep break;
181268ee7deSSubbaraya Sundeep
182268ee7deSSubbaraya Sundeep case R_SPI_MIS:
183268ee7deSSubbaraya Sundeep update_mis(s);
184268ee7deSSubbaraya Sundeep ret = s->regs[R_SPI_MIS];
185268ee7deSSubbaraya Sundeep break;
186268ee7deSSubbaraya Sundeep
187268ee7deSSubbaraya Sundeep default:
188268ee7deSSubbaraya Sundeep if (addr < ARRAY_SIZE(s->regs)) {
189268ee7deSSubbaraya Sundeep ret = s->regs[addr];
190268ee7deSSubbaraya Sundeep } else {
191268ee7deSSubbaraya Sundeep qemu_log_mask(LOG_GUEST_ERROR,
192268ee7deSSubbaraya Sundeep "%s: Bad offset 0x%" HWADDR_PRIx "\n", __func__,
193268ee7deSSubbaraya Sundeep addr * 4);
194268ee7deSSubbaraya Sundeep return ret;
195268ee7deSSubbaraya Sundeep }
196268ee7deSSubbaraya Sundeep break;
197268ee7deSSubbaraya Sundeep }
198268ee7deSSubbaraya Sundeep
199268ee7deSSubbaraya Sundeep DB_PRINT("addr=0x%" HWADDR_PRIx " = 0x%" PRIx32, addr * 4, ret);
200268ee7deSSubbaraya Sundeep spi_update_irq(s);
201268ee7deSSubbaraya Sundeep return ret;
202268ee7deSSubbaraya Sundeep }
203268ee7deSSubbaraya Sundeep
assert_cs(MSSSpiState * s)204268ee7deSSubbaraya Sundeep static void assert_cs(MSSSpiState *s)
205268ee7deSSubbaraya Sundeep {
206268ee7deSSubbaraya Sundeep qemu_set_irq(s->cs_line, 0);
207268ee7deSSubbaraya Sundeep }
208268ee7deSSubbaraya Sundeep
deassert_cs(MSSSpiState * s)209268ee7deSSubbaraya Sundeep static void deassert_cs(MSSSpiState *s)
210268ee7deSSubbaraya Sundeep {
211268ee7deSSubbaraya Sundeep qemu_set_irq(s->cs_line, 1);
212268ee7deSSubbaraya Sundeep }
213268ee7deSSubbaraya Sundeep
spi_flush_txfifo(MSSSpiState * s)214268ee7deSSubbaraya Sundeep static void spi_flush_txfifo(MSSSpiState *s)
215268ee7deSSubbaraya Sundeep {
216268ee7deSSubbaraya Sundeep uint32_t tx;
217268ee7deSSubbaraya Sundeep uint32_t rx;
218268ee7deSSubbaraya Sundeep bool sps = !!(s->regs[R_SPI_CONTROL] & C_SPS);
219268ee7deSSubbaraya Sundeep
220268ee7deSSubbaraya Sundeep /*
221268ee7deSSubbaraya Sundeep * Chip Select(CS) is automatically controlled by this controller.
222268ee7deSSubbaraya Sundeep * If SPS bit is set in Control register then CS is asserted
223268ee7deSSubbaraya Sundeep * until all the frames set in frame count of Control register are
224268ee7deSSubbaraya Sundeep * transferred. If SPS is not set then CS pulses between frames.
225268ee7deSSubbaraya Sundeep * Note that Slave Select register specifies which of the CS line
226268ee7deSSubbaraya Sundeep * has to be controlled automatically by controller. Bits SS[7:1] are for
227268ee7deSSubbaraya Sundeep * masters in FPGA fabric since we model only Microcontroller subsystem
228268ee7deSSubbaraya Sundeep * of Smartfusion2 we control only one CS(SS[0]) line.
229268ee7deSSubbaraya Sundeep */
230268ee7deSSubbaraya Sundeep while (!fifo32_is_empty(&s->tx_fifo) && s->frame_count) {
231268ee7deSSubbaraya Sundeep assert_cs(s);
232268ee7deSSubbaraya Sundeep
233268ee7deSSubbaraya Sundeep s->regs[R_SPI_STATUS] &= ~(S_TXDONE | S_RXRDY);
234268ee7deSSubbaraya Sundeep
235268ee7deSSubbaraya Sundeep tx = fifo32_pop(&s->tx_fifo);
236268ee7deSSubbaraya Sundeep DB_PRINT("data tx:0x%" PRIx32, tx);
237268ee7deSSubbaraya Sundeep rx = ssi_transfer(s->spi, tx);
238268ee7deSSubbaraya Sundeep DB_PRINT("data rx:0x%" PRIx32, rx);
239268ee7deSSubbaraya Sundeep
240268ee7deSSubbaraya Sundeep if (fifo32_num_used(&s->rx_fifo) == s->fifo_depth) {
241268ee7deSSubbaraya Sundeep s->regs[R_SPI_STATUS] |= S_RXCHOVRF;
242268ee7deSSubbaraya Sundeep s->regs[R_SPI_RIS] |= S_RXCHOVRF;
243268ee7deSSubbaraya Sundeep } else {
244268ee7deSSubbaraya Sundeep fifo32_push(&s->rx_fifo, rx);
245268ee7deSSubbaraya Sundeep s->regs[R_SPI_STATUS] &= ~S_RXFIFOEMP;
246268ee7deSSubbaraya Sundeep if (fifo32_num_used(&s->rx_fifo) == (s->fifo_depth - 1)) {
247268ee7deSSubbaraya Sundeep s->regs[R_SPI_STATUS] |= S_RXFIFOFULNXT;
248268ee7deSSubbaraya Sundeep } else if (fifo32_num_used(&s->rx_fifo) == s->fifo_depth) {
249268ee7deSSubbaraya Sundeep s->regs[R_SPI_STATUS] |= S_RXFIFOFUL;
250268ee7deSSubbaraya Sundeep }
251268ee7deSSubbaraya Sundeep }
252268ee7deSSubbaraya Sundeep s->frame_count--;
253268ee7deSSubbaraya Sundeep if (!sps) {
254268ee7deSSubbaraya Sundeep deassert_cs(s);
255268ee7deSSubbaraya Sundeep }
256268ee7deSSubbaraya Sundeep }
257268ee7deSSubbaraya Sundeep
258268ee7deSSubbaraya Sundeep if (!s->frame_count) {
259268ee7deSSubbaraya Sundeep s->frame_count = (s->regs[R_SPI_CONTROL] & FMCOUNT_MASK) >>
260268ee7deSSubbaraya Sundeep FMCOUNT_SHIFT;
261268ee7deSSubbaraya Sundeep deassert_cs(s);
262268ee7deSSubbaraya Sundeep s->regs[R_SPI_RIS] |= S_TXDONE | S_RXRDY;
263268ee7deSSubbaraya Sundeep s->regs[R_SPI_STATUS] |= S_TXDONE | S_RXRDY;
264268ee7deSSubbaraya Sundeep }
265268ee7deSSubbaraya Sundeep }
266268ee7deSSubbaraya Sundeep
spi_write(void * opaque,hwaddr addr,uint64_t val64,unsigned int size)267268ee7deSSubbaraya Sundeep static void spi_write(void *opaque, hwaddr addr,
268268ee7deSSubbaraya Sundeep uint64_t val64, unsigned int size)
269268ee7deSSubbaraya Sundeep {
270268ee7deSSubbaraya Sundeep MSSSpiState *s = opaque;
271268ee7deSSubbaraya Sundeep uint32_t value = val64;
272268ee7deSSubbaraya Sundeep
273268ee7deSSubbaraya Sundeep DB_PRINT("addr=0x%" HWADDR_PRIx " =0x%" PRIx32, addr, value);
274268ee7deSSubbaraya Sundeep addr >>= 2;
275268ee7deSSubbaraya Sundeep
276268ee7deSSubbaraya Sundeep switch (addr) {
277268ee7deSSubbaraya Sundeep case R_SPI_TX:
278268ee7deSSubbaraya Sundeep /* adding to already full FIFO */
279268ee7deSSubbaraya Sundeep if (fifo32_num_used(&s->tx_fifo) == s->fifo_depth) {
280268ee7deSSubbaraya Sundeep break;
281268ee7deSSubbaraya Sundeep }
282268ee7deSSubbaraya Sundeep s->regs[R_SPI_STATUS] &= ~S_TXFIFOEMP;
283268ee7deSSubbaraya Sundeep fifo32_push(&s->tx_fifo, value);
284268ee7deSSubbaraya Sundeep if (fifo32_num_used(&s->tx_fifo) == (s->fifo_depth - 1)) {
285268ee7deSSubbaraya Sundeep s->regs[R_SPI_STATUS] |= S_TXFIFOFULNXT;
286268ee7deSSubbaraya Sundeep } else if (fifo32_num_used(&s->tx_fifo) == s->fifo_depth) {
287268ee7deSSubbaraya Sundeep s->regs[R_SPI_STATUS] |= S_TXFIFOFUL;
288268ee7deSSubbaraya Sundeep }
289268ee7deSSubbaraya Sundeep if (s->enabled) {
290268ee7deSSubbaraya Sundeep spi_flush_txfifo(s);
291268ee7deSSubbaraya Sundeep }
292268ee7deSSubbaraya Sundeep break;
293268ee7deSSubbaraya Sundeep
294268ee7deSSubbaraya Sundeep case R_SPI_CONTROL:
295268ee7deSSubbaraya Sundeep s->regs[R_SPI_CONTROL] = value;
296268ee7deSSubbaraya Sundeep if (value & C_BIGFIFO) {
297268ee7deSSubbaraya Sundeep set_fifodepth(s);
298268ee7deSSubbaraya Sundeep } else {
299268ee7deSSubbaraya Sundeep s->fifo_depth = 4;
300268ee7deSSubbaraya Sundeep }
301268ee7deSSubbaraya Sundeep s->enabled = value & C_ENABLE;
302268ee7deSSubbaraya Sundeep s->frame_count = (value & FMCOUNT_MASK) >> FMCOUNT_SHIFT;
303268ee7deSSubbaraya Sundeep if (value & C_RESET) {
304268ee7deSSubbaraya Sundeep mss_spi_reset(DEVICE(s));
305268ee7deSSubbaraya Sundeep }
306268ee7deSSubbaraya Sundeep break;
307268ee7deSSubbaraya Sundeep
308268ee7deSSubbaraya Sundeep case R_SPI_DFSIZE:
309268ee7deSSubbaraya Sundeep if (s->enabled) {
310268ee7deSSubbaraya Sundeep break;
311268ee7deSSubbaraya Sundeep }
312cda607d5SSubbaraya Sundeep /*
313cda607d5SSubbaraya Sundeep * [31:6] bits are reserved bits and for future use.
314cda607d5SSubbaraya Sundeep * [5:0] are for frame size. Only [5:0] bits are validated
315cda607d5SSubbaraya Sundeep * during write, [31:6] bits are untouched.
316cda607d5SSubbaraya Sundeep */
317cda607d5SSubbaraya Sundeep if ((value & FRAMESZ_MASK) > FRAMESZ_MAX) {
318cda607d5SSubbaraya Sundeep qemu_log_mask(LOG_GUEST_ERROR, "%s: Incorrect size %u provided."
319cda607d5SSubbaraya Sundeep "Maximum frame size is %u\n",
320cda607d5SSubbaraya Sundeep __func__, value & FRAMESZ_MASK, FRAMESZ_MAX);
321cda607d5SSubbaraya Sundeep break;
322cda607d5SSubbaraya Sundeep }
323268ee7deSSubbaraya Sundeep s->regs[R_SPI_DFSIZE] = value;
324268ee7deSSubbaraya Sundeep break;
325268ee7deSSubbaraya Sundeep
326268ee7deSSubbaraya Sundeep case R_SPI_INTCLR:
327268ee7deSSubbaraya Sundeep s->regs[R_SPI_INTCLR] = value;
328268ee7deSSubbaraya Sundeep if (value & S_TXDONE) {
329268ee7deSSubbaraya Sundeep s->regs[R_SPI_RIS] &= ~S_TXDONE;
330268ee7deSSubbaraya Sundeep }
331268ee7deSSubbaraya Sundeep if (value & S_RXRDY) {
332268ee7deSSubbaraya Sundeep s->regs[R_SPI_RIS] &= ~S_RXRDY;
333268ee7deSSubbaraya Sundeep }
334268ee7deSSubbaraya Sundeep if (value & S_RXCHOVRF) {
335268ee7deSSubbaraya Sundeep s->regs[R_SPI_RIS] &= ~S_RXCHOVRF;
336268ee7deSSubbaraya Sundeep }
337268ee7deSSubbaraya Sundeep break;
338268ee7deSSubbaraya Sundeep
339268ee7deSSubbaraya Sundeep case R_SPI_MIS:
340268ee7deSSubbaraya Sundeep case R_SPI_STATUS:
341268ee7deSSubbaraya Sundeep case R_SPI_RIS:
342268ee7deSSubbaraya Sundeep qemu_log_mask(LOG_GUEST_ERROR,
343268ee7deSSubbaraya Sundeep "%s: Write to read only register 0x%" HWADDR_PRIx "\n",
344268ee7deSSubbaraya Sundeep __func__, addr * 4);
345268ee7deSSubbaraya Sundeep break;
346268ee7deSSubbaraya Sundeep
347268ee7deSSubbaraya Sundeep default:
348268ee7deSSubbaraya Sundeep if (addr < ARRAY_SIZE(s->regs)) {
349268ee7deSSubbaraya Sundeep s->regs[addr] = value;
350268ee7deSSubbaraya Sundeep } else {
351268ee7deSSubbaraya Sundeep qemu_log_mask(LOG_GUEST_ERROR,
352268ee7deSSubbaraya Sundeep "%s: Bad offset 0x%" HWADDR_PRIx "\n", __func__,
353268ee7deSSubbaraya Sundeep addr * 4);
354268ee7deSSubbaraya Sundeep }
355268ee7deSSubbaraya Sundeep break;
356268ee7deSSubbaraya Sundeep }
357268ee7deSSubbaraya Sundeep
358268ee7deSSubbaraya Sundeep spi_update_irq(s);
359268ee7deSSubbaraya Sundeep }
360268ee7deSSubbaraya Sundeep
361268ee7deSSubbaraya Sundeep static const MemoryRegionOps spi_ops = {
362268ee7deSSubbaraya Sundeep .read = spi_read,
363268ee7deSSubbaraya Sundeep .write = spi_write,
364268ee7deSSubbaraya Sundeep .endianness = DEVICE_NATIVE_ENDIAN,
365268ee7deSSubbaraya Sundeep .valid = {
366268ee7deSSubbaraya Sundeep .min_access_size = 1,
367268ee7deSSubbaraya Sundeep .max_access_size = 4
368268ee7deSSubbaraya Sundeep }
369268ee7deSSubbaraya Sundeep };
370268ee7deSSubbaraya Sundeep
mss_spi_realize(DeviceState * dev,Error ** errp)371268ee7deSSubbaraya Sundeep static void mss_spi_realize(DeviceState *dev, Error **errp)
372268ee7deSSubbaraya Sundeep {
373268ee7deSSubbaraya Sundeep MSSSpiState *s = MSS_SPI(dev);
374268ee7deSSubbaraya Sundeep SysBusDevice *sbd = SYS_BUS_DEVICE(dev);
375268ee7deSSubbaraya Sundeep
376268ee7deSSubbaraya Sundeep s->spi = ssi_create_bus(dev, "spi");
377268ee7deSSubbaraya Sundeep
378268ee7deSSubbaraya Sundeep sysbus_init_irq(sbd, &s->irq);
379268ee7deSSubbaraya Sundeep sysbus_init_irq(sbd, &s->cs_line);
380268ee7deSSubbaraya Sundeep
381268ee7deSSubbaraya Sundeep memory_region_init_io(&s->mmio, OBJECT(s), &spi_ops, s,
382268ee7deSSubbaraya Sundeep TYPE_MSS_SPI, R_SPI_MAX * 4);
383268ee7deSSubbaraya Sundeep sysbus_init_mmio(sbd, &s->mmio);
384268ee7deSSubbaraya Sundeep
385268ee7deSSubbaraya Sundeep fifo32_create(&s->tx_fifo, FIFO_CAPACITY);
386268ee7deSSubbaraya Sundeep fifo32_create(&s->rx_fifo, FIFO_CAPACITY);
387268ee7deSSubbaraya Sundeep }
388268ee7deSSubbaraya Sundeep
389268ee7deSSubbaraya Sundeep static const VMStateDescription vmstate_mss_spi = {
390268ee7deSSubbaraya Sundeep .name = TYPE_MSS_SPI,
391268ee7deSSubbaraya Sundeep .version_id = 1,
392268ee7deSSubbaraya Sundeep .minimum_version_id = 1,
3930aa6c7dfSRichard Henderson .fields = (const VMStateField[]) {
394268ee7deSSubbaraya Sundeep VMSTATE_FIFO32(tx_fifo, MSSSpiState),
395268ee7deSSubbaraya Sundeep VMSTATE_FIFO32(rx_fifo, MSSSpiState),
396268ee7deSSubbaraya Sundeep VMSTATE_UINT32_ARRAY(regs, MSSSpiState, R_SPI_MAX),
397268ee7deSSubbaraya Sundeep VMSTATE_END_OF_LIST()
398268ee7deSSubbaraya Sundeep }
399268ee7deSSubbaraya Sundeep };
400268ee7deSSubbaraya Sundeep
mss_spi_class_init(ObjectClass * klass,void * data)401268ee7deSSubbaraya Sundeep static void mss_spi_class_init(ObjectClass *klass, void *data)
402268ee7deSSubbaraya Sundeep {
403268ee7deSSubbaraya Sundeep DeviceClass *dc = DEVICE_CLASS(klass);
404268ee7deSSubbaraya Sundeep
405268ee7deSSubbaraya Sundeep dc->realize = mss_spi_realize;
406*e3d08143SPeter Maydell device_class_set_legacy_reset(dc, mss_spi_reset);
407268ee7deSSubbaraya Sundeep dc->vmsd = &vmstate_mss_spi;
408268ee7deSSubbaraya Sundeep }
409268ee7deSSubbaraya Sundeep
410268ee7deSSubbaraya Sundeep static const TypeInfo mss_spi_info = {
411268ee7deSSubbaraya Sundeep .name = TYPE_MSS_SPI,
412268ee7deSSubbaraya Sundeep .parent = TYPE_SYS_BUS_DEVICE,
413268ee7deSSubbaraya Sundeep .instance_size = sizeof(MSSSpiState),
414268ee7deSSubbaraya Sundeep .class_init = mss_spi_class_init,
415268ee7deSSubbaraya Sundeep };
416268ee7deSSubbaraya Sundeep
mss_spi_register_types(void)417268ee7deSSubbaraya Sundeep static void mss_spi_register_types(void)
418268ee7deSSubbaraya Sundeep {
419268ee7deSSubbaraya Sundeep type_register_static(&mss_spi_info);
420268ee7deSSubbaraya Sundeep }
421268ee7deSSubbaraya Sundeep
422268ee7deSSubbaraya Sundeep type_init(mss_spi_register_types)
423