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38#include "hw.h"
39#include "eeprom93xx.h"
40
41
42
43
44#ifdef DEBUG_EEPROM
45#define logout(fmt, ...) fprintf(stderr, "EEPROM\t%-24s" fmt, __func__, ## __VA_ARGS__)
46#else
47#define logout(fmt, ...) ((void)0)
48#endif
49
50#define EEPROM_INSTANCE 0
51#define OLD_EEPROM_VERSION 20061112
52#define EEPROM_VERSION (OLD_EEPROM_VERSION + 1)
53
54#if 0
55typedef enum {
56 eeprom_read = 0x80,
57 eeprom_write = 0x40,
58 eeprom_erase = 0xc0,
59 eeprom_ewen = 0x30,
60 eeprom_ewds = 0x00,
61 eeprom_eral = 0x20,
62 eeprom_wral = 0x10,
63 eeprom_amask = 0x0f,
64 eeprom_imask = 0xf0
65} eeprom_instruction_t;
66#endif
67
68#ifdef DEBUG_EEPROM
69static const char *opstring[] = {
70 "extended", "write", "read", "erase"
71};
72#endif
73
74struct _eeprom_t {
75 uint8_t tick;
76 uint8_t address;
77 uint8_t command;
78 uint8_t writable;
79
80 uint8_t eecs;
81 uint8_t eesk;
82 uint8_t eedo;
83
84 uint8_t addrbits;
85 uint16_t size;
86 uint16_t data;
87 uint16_t contents[0];
88};
89
90
91
92
93
94
95
96static int get_uint16_from_uint8(QEMUFile *f, void *pv, size_t size)
97{
98 uint16_t *v = pv;
99 *v = qemu_get_ubyte(f);
100 return 0;
101}
102
103static void put_unused(QEMUFile *f, void *pv, size_t size)
104{
105 fprintf(stderr, "uint16_from_uint8 is used only for backwards compatibility.\n");
106 fprintf(stderr, "Never should be used to write a new state.\n");
107 exit(0);
108}
109
110static const VMStateInfo vmstate_hack_uint16_from_uint8 = {
111 .name = "uint16_from_uint8",
112 .get = get_uint16_from_uint8,
113 .put = put_unused,
114};
115
116#define VMSTATE_UINT16_HACK_TEST(_f, _s, _t) \
117 VMSTATE_SINGLE_TEST(_f, _s, _t, 0, vmstate_hack_uint16_from_uint8, uint16_t)
118
119static bool is_old_eeprom_version(void *opaque, int version_id)
120{
121 return version_id == OLD_EEPROM_VERSION;
122}
123
124static const VMStateDescription vmstate_eeprom = {
125 .name = "eeprom",
126 .version_id = EEPROM_VERSION,
127 .minimum_version_id = OLD_EEPROM_VERSION,
128 .minimum_version_id_old = OLD_EEPROM_VERSION,
129 .fields = (VMStateField []) {
130 VMSTATE_UINT8(tick, eeprom_t),
131 VMSTATE_UINT8(address, eeprom_t),
132 VMSTATE_UINT8(command, eeprom_t),
133 VMSTATE_UINT8(writable, eeprom_t),
134
135 VMSTATE_UINT8(eecs, eeprom_t),
136 VMSTATE_UINT8(eesk, eeprom_t),
137 VMSTATE_UINT8(eedo, eeprom_t),
138
139 VMSTATE_UINT8(addrbits, eeprom_t),
140 VMSTATE_UINT16_HACK_TEST(size, eeprom_t, is_old_eeprom_version),
141 VMSTATE_UNUSED_TEST(is_old_eeprom_version, 1),
142 VMSTATE_UINT16_EQUAL_V(size, eeprom_t, EEPROM_VERSION),
143 VMSTATE_UINT16(data, eeprom_t),
144 VMSTATE_VARRAY_UINT16_UNSAFE(contents, eeprom_t, size, 0,
145 vmstate_info_uint16, uint16_t),
146 VMSTATE_END_OF_LIST()
147 }
148};
149
150void eeprom93xx_write(eeprom_t *eeprom, int eecs, int eesk, int eedi)
151{
152 uint8_t tick = eeprom->tick;
153 uint8_t eedo = eeprom->eedo;
154 uint16_t address = eeprom->address;
155 uint8_t command = eeprom->command;
156
157 logout("CS=%u SK=%u DI=%u DO=%u, tick = %u\n",
158 eecs, eesk, eedi, eedo, tick);
159
160 if (! eeprom->eecs && eecs) {
161
162 logout("Cycle start, waiting for 1st start bit (0)\n");
163 tick = 0;
164 command = 0x0;
165 address = 0x0;
166 } else if (eeprom->eecs && ! eecs) {
167
168 if (eeprom->writable) {
169 uint8_t subcommand = address >> (eeprom->addrbits - 2);
170 if (command == 0 && subcommand == 2) {
171
172 for (address = 0; address < eeprom->size; address++) {
173 eeprom->contents[address] = 0xffff;
174 }
175 } else if (command == 3) {
176
177 eeprom->contents[address] = 0xffff;
178 } else if (tick >= 2 + 2 + eeprom->addrbits + 16) {
179 if (command == 1) {
180
181 eeprom->contents[address] &= eeprom->data;
182 } else if (command == 0 && subcommand == 1) {
183
184 for (address = 0; address < eeprom->size; address++) {
185 eeprom->contents[address] &= eeprom->data;
186 }
187 }
188 }
189 }
190
191 eedo = 1;
192 } else if (eecs && ! eeprom->eesk && eesk) {
193
194 if (tick == 0) {
195
196 if (eedi == 0) {
197 logout("Got correct 1st start bit, waiting for 2nd start bit (1)\n");
198 tick++;
199 } else {
200 logout("wrong 1st start bit (is 1, should be 0)\n");
201 tick = 2;
202
203 }
204 } else if (tick == 1) {
205
206 if (eedi != 0) {
207 logout("Got correct 2nd start bit, getting command + address\n");
208 tick++;
209 } else {
210 logout("1st start bit is longer than needed\n");
211 }
212 } else if (tick < 2 + 2) {
213
214 tick++;
215 command <<= 1;
216 if (eedi) {
217 command += 1;
218 }
219 } else if (tick < 2 + 2 + eeprom->addrbits) {
220
221 tick++;
222 address = ((address << 1) | eedi);
223 if (tick == 2 + 2 + eeprom->addrbits) {
224 logout("%s command, address = 0x%02x (value 0x%04x)\n",
225 opstring[command], address, eeprom->contents[address]);
226 if (command == 2) {
227 eedo = 0;
228 }
229 address = address % eeprom->size;
230 if (command == 0) {
231
232 switch (address >> (eeprom->addrbits - 2)) {
233 case 0:
234 logout("write disable command\n");
235 eeprom->writable = 0;
236 break;
237 case 1:
238 logout("write all command\n");
239 break;
240 case 2:
241 logout("erase all command\n");
242 break;
243 case 3:
244 logout("write enable command\n");
245 eeprom->writable = 1;
246 break;
247 }
248 } else {
249
250 eeprom->data = eeprom->contents[address];
251 }
252 }
253 } else if (tick < 2 + 2 + eeprom->addrbits + 16) {
254
255 tick++;
256 if (command == 2) {
257
258 eedo = ((eeprom->data & 0x8000) != 0);
259 }
260 eeprom->data <<= 1;
261 eeprom->data += eedi;
262 } else {
263 logout("additional unneeded tick, not processed\n");
264 }
265 }
266
267 eeprom->tick = tick;
268 eeprom->eecs = eecs;
269 eeprom->eesk = eesk;
270 eeprom->eedo = eedo;
271 eeprom->address = address;
272 eeprom->command = command;
273}
274
275uint16_t eeprom93xx_read(eeprom_t *eeprom)
276{
277
278 logout("CS=%u DO=%u\n", eeprom->eecs, eeprom->eedo);
279 return (eeprom->eedo);
280}
281
282#if 0
283void eeprom93xx_reset(eeprom_t *eeprom)
284{
285
286 logout("eeprom = 0x%p\n", eeprom);
287 eeprom->tick = 0;
288 eeprom->command = 0;
289}
290#endif
291
292eeprom_t *eeprom93xx_new(DeviceState *dev, uint16_t nwords)
293{
294
295 eeprom_t *eeprom;
296 uint8_t addrbits;
297
298 switch (nwords) {
299 case 16:
300 case 64:
301 addrbits = 6;
302 break;
303 case 128:
304 case 256:
305 addrbits = 8;
306 break;
307 default:
308 assert(!"Unsupported EEPROM size, fallback to 64 words!");
309 nwords = 64;
310 addrbits = 6;
311 }
312
313 eeprom = (eeprom_t *)g_malloc0(sizeof(*eeprom) + nwords * 2);
314 eeprom->size = nwords;
315 eeprom->addrbits = addrbits;
316
317 eeprom->eedo = 1;
318 logout("eeprom = 0x%p, nwords = %u\n", eeprom, nwords);
319 vmstate_register(dev, 0, &vmstate_eeprom, eeprom);
320 return eeprom;
321}
322
323void eeprom93xx_free(DeviceState *dev, eeprom_t *eeprom)
324{
325
326 logout("eeprom = 0x%p\n", eeprom);
327 vmstate_unregister(dev, &vmstate_eeprom, eeprom);
328 g_free(eeprom);
329}
330
331uint16_t *eeprom93xx_data(eeprom_t *eeprom)
332{
333
334 return &eeprom->contents[0];
335}
336
337
338