1 /*
2  * SPDX-FileCopyrightText: 2022-2023 Espressif Systems (Shanghai) CO LTD
3  *
4  * SPDX-License-Identifier: Apache-2.0
5  */
6 #include <stdarg.h>
7 #include <stdbool.h>
8 #include <string.h>
9 #include <assert.h>
10 #include <sys/cdefs.h>
11 
12 #include "esp_private/regdma_link.h"
13 
14 #include "esp_heap_caps.h"
15 #include "esp_log.h"
16 #include "esp_regdma.h"
17 
18 
19 
20 #define REGDMA_LINK_ADDR_ALIGN      (4)
21 #define REGDMA_LINK_MEM_TYPE_CAPS   (MALLOC_CAP_DMA | MALLOC_CAP_DEFAULT)
22 
regdma_link_new_continuous(void * backup,void * buff,int len,void * restore,void * next,bool skip_b,bool skip_r,int id,uint32_t module)23 void * regdma_link_new_continuous(void *backup, void *buff, int len, void *restore, void *next, bool skip_b, bool skip_r, int id, uint32_t module)
24 {
25     regdma_link_continuous_t *link = (regdma_link_continuous_t *)heap_caps_aligned_alloc(
26             REGDMA_LINK_ADDR_ALIGN,
27             buff ? sizeof(regdma_link_continuous_t) : (sizeof(regdma_link_continuous_t) + (len<<2)),
28             REGDMA_LINK_MEM_TYPE_CAPS
29         );
30     if (link) {
31         memset(link, 0, buff ? sizeof(regdma_link_continuous_t) : (sizeof(regdma_link_continuous_t) + (len<<2)));
32         void *buf = buff ? buff : (void *)(link->buff);
33         link = regdma_link_init_continuous(link, buf, backup, len, restore, next, skip_b, skip_r, id, module);
34         return (void *)((void *)link + offsetof(regdma_link_continuous_t, head));
35     }
36     return NULL;
37 }
38 
regdma_link_new_addr_map(void * backup,void * buff,uint32_t bitmap[4],int len,void * restore,void * next,bool skip_b,bool skip_r,int id,uint32_t module)39 void * regdma_link_new_addr_map(void *backup, void *buff, uint32_t bitmap[4], int len, void *restore, void *next, bool skip_b, bool skip_r, int id, uint32_t module)
40 {
41     regdma_link_addr_map_t *link = (regdma_link_addr_map_t *)heap_caps_aligned_alloc(
42             REGDMA_LINK_ADDR_ALIGN,
43             buff ? sizeof(regdma_link_addr_map_t) : (sizeof(regdma_link_addr_map_t) + (len<<2)),
44             REGDMA_LINK_MEM_TYPE_CAPS
45         );
46     if (link) {
47         memset(link, 0, buff ? sizeof(regdma_link_addr_map_t) : (sizeof(regdma_link_addr_map_t) + (len<<2)));
48         void *buf = buff ? buff : (void *)(link->buff);
49         link = regdma_link_init_addr_map(link, buf, backup, bitmap, len, restore, next, skip_b, skip_r, id, module);
50         return (void *)((void *)link + offsetof(regdma_link_addr_map_t, head));
51     }
52     return NULL;
53 }
54 
regdma_link_new_write(void * backup,uint32_t value,uint32_t mask,void * next,bool skip_b,bool skip_r,int id,uint32_t module)55 void * regdma_link_new_write(void *backup, uint32_t value, uint32_t mask, void *next, bool skip_b, bool skip_r, int id, uint32_t module)
56 {
57     regdma_link_write_wait_t *link = (regdma_link_write_wait_t *)heap_caps_aligned_alloc(
58             REGDMA_LINK_ADDR_ALIGN, sizeof(regdma_link_write_wait_t), REGDMA_LINK_MEM_TYPE_CAPS);
59     if (link) {
60         memset(link, 0, sizeof(regdma_link_write_wait_t));
61         link = regdma_link_init_write(link, backup, value, mask, next, skip_b, skip_r, id, module);
62         return (void *)((void *)link + offsetof(regdma_link_write_wait_t, head));
63     }
64     return NULL;
65 }
66 
regdma_link_new_wait(void * backup,uint32_t value,uint32_t mask,void * next,bool skip_b,bool skip_r,int id,uint32_t module)67 void * regdma_link_new_wait(void *backup, uint32_t value, uint32_t mask, void *next, bool skip_b, bool skip_r, int id, uint32_t module)
68 {
69     regdma_link_write_wait_t *link = (regdma_link_write_wait_t *)heap_caps_aligned_alloc(
70             REGDMA_LINK_ADDR_ALIGN, sizeof(regdma_link_write_wait_t), REGDMA_LINK_MEM_TYPE_CAPS);
71     if (link) {
72         memset(link, 0, sizeof(regdma_link_write_wait_t));
73         link = regdma_link_init_wait(link, backup, value, mask, next, skip_b, skip_r, id, module);
74         return (void *)((void *)link + offsetof(regdma_link_write_wait_t, head));
75     }
76     return NULL;
77 }
78 
regdma_link_new_branch_continuous(void * backup,void * buff,int len,void * restore,regdma_entry_buf_t * next,bool skip_b,bool skip_r,int id,uint32_t module)79 void * regdma_link_new_branch_continuous(void *backup, void *buff, int len, void *restore, regdma_entry_buf_t *next, bool skip_b, bool skip_r, int id, uint32_t module)
80 {
81     regdma_link_branch_continuous_t *link = (regdma_link_branch_continuous_t *)heap_caps_aligned_alloc(
82             REGDMA_LINK_ADDR_ALIGN,
83             buff ? sizeof(regdma_link_branch_continuous_t) : (sizeof(regdma_link_branch_continuous_t) + (len<<2)),
84             REGDMA_LINK_MEM_TYPE_CAPS
85         );
86     if (link) {
87         memset(link, 0, buff ? sizeof(regdma_link_branch_continuous_t) : (sizeof(regdma_link_branch_continuous_t) + (len<<2)));
88         void *buf = buff ? buff : (void *)(link->buff);
89         link = regdma_link_init_branch_continuous(link, buf, backup, len, restore, next, skip_b, skip_r, id, module);
90         return (void *)((void *)link + offsetof(regdma_link_branch_continuous_t, head));
91     }
92     return NULL;
93 }
94 
regdma_link_new_branch_addr_map(void * backup,void * buff,uint32_t bitmap[4],int len,void * restore,regdma_entry_buf_t * next,bool skip_b,bool skip_r,int id,uint32_t module)95 void * regdma_link_new_branch_addr_map(void *backup, void *buff, uint32_t bitmap[4], int len, void *restore, regdma_entry_buf_t *next, bool skip_b, bool skip_r, int id, uint32_t module)
96 {
97     regdma_link_branch_addr_map_t *link = (regdma_link_branch_addr_map_t *)heap_caps_aligned_alloc(
98             REGDMA_LINK_ADDR_ALIGN,
99             buff ? sizeof(regdma_link_branch_addr_map_t) : (sizeof(regdma_link_branch_addr_map_t) + (len<<2)),
100             REGDMA_LINK_MEM_TYPE_CAPS
101         );
102     if (link) {
103         memset(link, 0, buff ? sizeof(regdma_link_branch_addr_map_t) : (sizeof(regdma_link_branch_addr_map_t) + (len<<2)));
104         void *buf = buff ? buff : (void *)(link->buff);
105         link = regdma_link_init_branch_addr_map(link, buf, backup, bitmap, len, restore, next, skip_b, skip_r, id, module);
106         return (void *)((void *)link + offsetof(regdma_link_branch_addr_map_t, head));
107     }
108     return NULL;
109 }
110 
regdma_link_new_branch_write(void * backup,uint32_t value,uint32_t mask,regdma_entry_buf_t * next,bool skip_b,bool skip_r,int id,uint32_t module)111 void * regdma_link_new_branch_write(void *backup, uint32_t value, uint32_t mask, regdma_entry_buf_t *next, bool skip_b, bool skip_r, int id, uint32_t module)
112 {
113     regdma_link_branch_write_wait_t *link = (regdma_link_branch_write_wait_t *)heap_caps_aligned_alloc(
114             REGDMA_LINK_ADDR_ALIGN, sizeof(regdma_link_branch_write_wait_t), REGDMA_LINK_MEM_TYPE_CAPS);
115     if (link) {
116         memset(link, 0, sizeof(regdma_link_branch_write_wait_t));
117         link = regdma_link_init_branch_write(link, backup, value, mask, next, skip_b, skip_r, id, module);
118         return (void *)((void *)link + offsetof(regdma_link_branch_write_wait_t, head));
119     }
120     return NULL;
121 }
122 
regdma_link_new_branch_wait(void * backup,uint32_t value,uint32_t mask,regdma_entry_buf_t * next,bool skip_b,bool skip_r,int id,uint32_t module)123 void * regdma_link_new_branch_wait(void *backup, uint32_t value, uint32_t mask, regdma_entry_buf_t *next, bool skip_b, bool skip_r, int id, uint32_t module)
124 {
125     regdma_link_branch_write_wait_t *link = (regdma_link_branch_write_wait_t *)heap_caps_aligned_alloc(
126             REGDMA_LINK_ADDR_ALIGN, sizeof(regdma_link_branch_write_wait_t), REGDMA_LINK_MEM_TYPE_CAPS);
127     if (link) {
128         memset(link, 0, sizeof(regdma_link_branch_write_wait_t));
129         link = regdma_link_init_branch_wait(link, backup, value, mask, next, skip_b, skip_r, id, module);
130         return (void *)((void *)link + offsetof(regdma_link_branch_write_wait_t, head));
131     }
132     return NULL;
133 }
134 
regdma_link_new_continuous_default(void * backup,int len,void * restore,void * next,bool skip_b,bool skip_r,int id,uint32_t module)135 void * regdma_link_new_continuous_default(void *backup, int len, void *restore, void *next, bool skip_b, bool skip_r, int id, uint32_t module)
136 {
137     return regdma_link_new_continuous(backup, NULL, len, restore, next, skip_b, skip_r, id, module);
138 }
139 
regdma_link_new_addr_map_default(void * backup,uint32_t bitmap[4],int len,void * restore,void * next,bool skip_b,bool skip_r,int id,uint32_t module)140 void * regdma_link_new_addr_map_default(void *backup, uint32_t bitmap[4], int len, void *restore, void *next, bool skip_b, bool skip_r, int id, uint32_t module)
141 {
142     return regdma_link_new_addr_map(backup, NULL, bitmap, len, restore, next, skip_b, skip_r, id, module);
143 }
144 
regdma_link_new_write_default(void * backup,uint32_t value,uint32_t mask,void * next,bool skip_b,bool skip_r,int id,uint32_t module)145 void * regdma_link_new_write_default(void *backup, uint32_t value, uint32_t mask, void *next, bool skip_b, bool skip_r, int id, uint32_t module)
146 {
147     return regdma_link_new_write(backup, value, mask, next, skip_b, skip_r, id, module);
148 }
149 
regdma_link_new_wait_default(void * backup,uint32_t value,uint32_t mask,void * next,bool skip_b,bool skip_r,int id,uint32_t module)150 void * regdma_link_new_wait_default(void *backup, uint32_t value, uint32_t mask, void *next, bool skip_b, bool skip_r, int id, uint32_t module)
151 {
152     return regdma_link_new_wait(backup, value, mask, next, skip_b, skip_r, id, module);
153 }
154 
regdma_link_new_branch_continuous_default(void * backup,int len,void * restore,regdma_entry_buf_t * next,bool skip_b,bool skip_r,int id,uint32_t module)155 void * regdma_link_new_branch_continuous_default(void *backup, int len, void *restore, regdma_entry_buf_t *next, bool skip_b, bool skip_r, int id, uint32_t module)
156 {
157     return regdma_link_new_branch_continuous(backup, NULL, len, restore, next, skip_b, skip_r, id, module);
158 }
159 
regdma_link_new_branch_addr_map_default(void * backup,uint32_t bitmap[4],int len,void * restore,regdma_entry_buf_t * next,bool skip_b,bool skip_r,int id,uint32_t module)160 void * regdma_link_new_branch_addr_map_default(void *backup, uint32_t bitmap[4], int len, void *restore, regdma_entry_buf_t *next, bool skip_b, bool skip_r, int id, uint32_t module)
161 {
162     return regdma_link_new_branch_addr_map(backup, NULL, bitmap, len, restore, next, skip_b, skip_r, id, module);
163 }
164 
regdma_link_new_branch_write_default(void * backup,uint32_t value,uint32_t mask,regdma_entry_buf_t * next,bool skip_b,bool skip_r,int id,uint32_t module)165 void * regdma_link_new_branch_write_default(void *backup, uint32_t value, uint32_t mask, regdma_entry_buf_t *next, bool skip_b, bool skip_r, int id, uint32_t module)
166 {
167     return regdma_link_new_branch_write(backup, value, mask, next, skip_b, skip_r, id, module);
168 }
169 
regdma_link_new_branch_wait_default(void * backup,uint32_t value,uint32_t mask,regdma_entry_buf_t * next,bool skip_b,bool skip_r,int id,uint32_t module)170 void * regdma_link_new_branch_wait_default(void *backup, uint32_t value, uint32_t mask, regdma_entry_buf_t *next, bool skip_b, bool skip_r, int id, uint32_t module)
171 {
172     return regdma_link_new_branch_wait(backup, value, mask, next, skip_b, skip_r, id, module);
173 }
174 
175 
regdma_link_init_continuous_wrapper(const regdma_link_config_t * config,uint32_t module,int n,va_list args)176 static void * regdma_link_init_continuous_wrapper(const regdma_link_config_t *config, uint32_t module, int n, va_list args)
177 {
178     regdma_entry_buf_t next;
179 
180     memset(next, 0, sizeof(regdma_entry_buf_t));
181     for (int i = 0; i < n && i < REGDMA_LINK_ENTRY_NUM; i++) { // Ignore more arguments
182         next[i] = va_arg(args, void *);
183     }
184     return regdma_link_new_continuous_default((void *)(config->continuous.backup), config->head.length,
185             (void *)(config->continuous.restore), next[0], config->head.skip_b,
186                 config->head.skip_r, config->id, module);
187 }
188 
regdma_link_init_addr_map_wrapper(const regdma_link_config_t * config,uint32_t module,int n,va_list args)189 static void * regdma_link_init_addr_map_wrapper(const regdma_link_config_t *config, uint32_t module, int n, va_list args)
190 {
191     regdma_entry_buf_t next;
192 
193     memset(next, 0, sizeof(regdma_entry_buf_t));
194     for (int i = 0; i < n && i < REGDMA_LINK_ENTRY_NUM; i++) { // Ignore more arguments
195         next[i] = va_arg(args, void *);
196     }
197     return regdma_link_new_addr_map_default((void *)(config->addr_map.backup), (void *)(config->addr_map.map),
198             config->head.length, (void *)(config->addr_map.restore), next[0], config->head.skip_b,
199                 config->head.skip_r, config->id, module);
200 }
201 
regdma_link_init_write_wrapper(const regdma_link_config_t * config,uint32_t module,int n,va_list args)202 static void * regdma_link_init_write_wrapper(const regdma_link_config_t *config, uint32_t module, int n, va_list args)
203 {
204     regdma_entry_buf_t next;
205 
206     memset(next, 0, sizeof(regdma_entry_buf_t));
207     for (int i = 0; i < n && i < REGDMA_LINK_ENTRY_NUM; i++) { // Ignore more arguments
208         next[i] = va_arg(args, void *);
209     }
210     return regdma_link_new_write_default((void *)(config->write_wait.backup), config->write_wait.value,
211             config->write_wait.mask, next[0], config->head.skip_b, config->head.skip_r,
212                 config->id, module);
213 }
214 
regdma_link_init_wait_wrapper(const regdma_link_config_t * config,uint32_t module,int n,va_list args)215 static void * regdma_link_init_wait_wrapper(const regdma_link_config_t *config, uint32_t module, int n, va_list args)
216 {
217     regdma_entry_buf_t next;
218 
219     memset(next, 0, sizeof(regdma_entry_buf_t));
220     for (int i = 0; i < n && i < REGDMA_LINK_ENTRY_NUM; i++) { // Ignore more arguments
221         next[i] = va_arg(args, void *);
222     }
223     return regdma_link_new_wait_default((void *)(config->write_wait.backup), config->write_wait.value,
224             config->write_wait.mask, next[0], config->head.skip_b, config->head.skip_r,
225                 config->id, module);
226 }
227 
regdma_link_init_branch_continuous_wrapper(const regdma_link_config_t * config,uint32_t module,int n,va_list args)228 static void * regdma_link_init_branch_continuous_wrapper(const regdma_link_config_t *config, uint32_t module, int n, va_list args)
229 {
230     regdma_entry_buf_t next;
231 
232     memset(next, 0, sizeof(regdma_entry_buf_t));
233     for (int i = 0; i < n && i < REGDMA_LINK_ENTRY_NUM; i++) { // Ignore more arguments
234         next[i] = va_arg(args, void *);
235     }
236     return regdma_link_new_branch_continuous_default((void *)(config->continuous.backup),
237             config->head.length, (void *)(config->continuous.restore), &next,
238                 config->head.skip_b, config->head.skip_r, config->id, module);
239 }
240 
regdma_link_init_branch_addr_map_wrapper(const regdma_link_config_t * config,uint32_t module,int n,va_list args)241 static void * regdma_link_init_branch_addr_map_wrapper(const regdma_link_config_t *config, uint32_t module, int n, va_list args)
242 {
243     regdma_entry_buf_t next;
244 
245     memset(next, 0, sizeof(regdma_entry_buf_t));
246     for (int i = 0; i < n && i < REGDMA_LINK_ENTRY_NUM; i++) { // Ignore more arguments
247         next[i] = va_arg(args, void *);
248     }
249     return regdma_link_new_branch_addr_map_default((void *)(config->addr_map.backup),
250             (void *)(config->addr_map.map), config->head.length, (void *)(config->addr_map.restore),
251                 &next, config->head.skip_b, config->head.skip_r, config->id, module);
252 }
253 
regdma_link_init_branch_write_wrapper(const regdma_link_config_t * config,uint32_t module,int n,va_list args)254 static void * regdma_link_init_branch_write_wrapper(const regdma_link_config_t *config, uint32_t module, int n, va_list args)
255 {
256     regdma_entry_buf_t next;
257 
258     memset(next, 0, sizeof(regdma_entry_buf_t));
259     for (int i = 0; i < n && i < REGDMA_LINK_ENTRY_NUM; i++) { // Ignore more arguments
260         next[i] = va_arg(args, void *);
261     }
262     return regdma_link_new_branch_write_default((void *)(config->write_wait.backup),
263             config->write_wait.value, config->write_wait.mask, &next, config->head.skip_b,
264                 config->head.skip_r, config->id, module);
265 }
266 
regdma_link_init_branch_wait_wrapper(const regdma_link_config_t * config,uint32_t module,int n,va_list args)267 static void * regdma_link_init_branch_wait_wrapper(const regdma_link_config_t *config, uint32_t module, int n, va_list args)
268 {
269     regdma_entry_buf_t next;
270 
271     memset(next, 0, sizeof(regdma_entry_buf_t));
272     for (int i = 0; i < n && i < REGDMA_LINK_ENTRY_NUM; i++) { // Ignore more arguments
273         next[i] = va_arg(args, void *);
274     }
275     return regdma_link_new_branch_wait_default((void *)(config->write_wait.backup),
276             config->write_wait.value, config->write_wait.mask, &next, config->head.skip_b,
277                 config->head.skip_r, config->id, module);
278 }
279 
regdma_link_init_wrapper(const regdma_link_config_t * config,bool branch,uint32_t module,int nentry,va_list args)280 static void * regdma_link_init_wrapper(const regdma_link_config_t *config, bool branch, uint32_t module, int nentry, va_list args)
281 {
282     typedef void * (*init_fn_t)(const void *, uint32_t, int, va_list);
283 
284     const static init_fn_t initfn[] = {
285         [0] = (init_fn_t)regdma_link_init_continuous_wrapper,  /* REGDMA_LINK_MODE_CONTINUOUS */
286         [1] = (init_fn_t)regdma_link_init_addr_map_wrapper,    /* REGDMA_LINK_MODE_ADDR_MAP */
287         [2] = (init_fn_t)regdma_link_init_write_wrapper,       /* REGDMA_LINK_MODE_WRITE */
288         [3] = (init_fn_t)regdma_link_init_wait_wrapper         /* REGDMA_LINK_MODE_WAIT */
289     };
290     const static init_fn_t initfn_b[] = {
291         [0] = (init_fn_t)regdma_link_init_branch_continuous_wrapper,
292         [1] = (init_fn_t)regdma_link_init_branch_addr_map_wrapper,
293         [2] = (init_fn_t)regdma_link_init_branch_write_wrapper,
294         [3] = (init_fn_t)regdma_link_init_branch_wait_wrapper
295     };
296 
297     assert((config->head.mode < ARRAY_SIZE(initfn)) && (config->head.mode < ARRAY_SIZE(initfn_b)));
298 
299     init_fn_t pfn = branch ? initfn_b[config->head.mode] : initfn[config->head.mode];
300     return (*pfn)(config, module, nentry, args);
301 }
302 
regdma_link_init(const regdma_link_config_t * config,bool branch,uint32_t module,int nentry,...)303 void * regdma_link_init(const regdma_link_config_t *config, bool branch, uint32_t module, int nentry, ...)
304 {
305     assert(config != NULL);
306 
307     va_list args;
308     va_start(args, nentry);
309     void * link = regdma_link_init_wrapper(config, branch, module, nentry, args);
310     va_end(args);
311     return link;
312 }
313 
regdma_link_get_next_continuous_wrapper(void * link)314 static void * regdma_link_get_next_continuous_wrapper(void *link)
315 {
316     regdma_link_continuous_t *continuous = __containerof(link, regdma_link_continuous_t, head);
317     return (void *)(continuous->body.next);
318 }
319 
regdma_link_get_next_addr_map_wrapper(void * link)320 static void * regdma_link_get_next_addr_map_wrapper(void *link)
321 {
322     regdma_link_addr_map_t *addr_map = __containerof(link, regdma_link_addr_map_t, head);
323     return (void *)(addr_map->body.next);
324 }
325 
regdma_link_get_next_write_wait_wrapper(void * link)326 static void * regdma_link_get_next_write_wait_wrapper(void *link)
327 {
328     regdma_link_write_wait_t *write_wait = __containerof(link, regdma_link_write_wait_t, head);
329     return (void *)(write_wait->body.next);
330 }
331 
regdma_link_get_next_branch_continuous_wrapper(void * link)332 static regdma_entry_buf_t * regdma_link_get_next_branch_continuous_wrapper(void *link)
333 {
334     regdma_link_branch_continuous_t *branch_continuous = __containerof(link, regdma_link_branch_continuous_t, head);
335     return &branch_continuous->body.next;
336 }
337 
regdma_link_get_next_branch_addr_map_wrapper(void * link)338 static regdma_entry_buf_t * regdma_link_get_next_branch_addr_map_wrapper(void *link)
339 {
340     regdma_link_branch_addr_map_t *branch_addr_map = __containerof(link, regdma_link_branch_addr_map_t, head);
341     return &branch_addr_map->body.next;
342 }
343 
regdma_link_get_next_branch_write_wait_wrapper(void * link)344 static regdma_entry_buf_t * regdma_link_get_next_branch_write_wait_wrapper(void *link)
345 {
346     regdma_link_branch_write_wait_t *branch_write_wait = __containerof(link, regdma_link_branch_write_wait_t, head);
347     return &branch_write_wait->body.next;
348 }
349 
regdma_link_get_next(void * link,int entry)350 static void * regdma_link_get_next(void *link, int entry)
351 {
352     if (link) {
353         regdma_link_head_t head = REGDMA_LINK_HEAD(link);
354         if (head.branch) {
355             typedef regdma_entry_buf_t * (*get_nextfn1_t)(void *);
356             const static get_nextfn1_t nextfn1[] = {
357                 [0] = (get_nextfn1_t)regdma_link_get_next_branch_continuous_wrapper,
358                 [1] = (get_nextfn1_t)regdma_link_get_next_branch_addr_map_wrapper,
359                 [2] = (get_nextfn1_t)regdma_link_get_next_branch_write_wait_wrapper,
360                 [3] = (get_nextfn1_t)regdma_link_get_next_branch_write_wait_wrapper
361             };
362             assert(head.mode < ARRAY_SIZE(nextfn1));
363             regdma_entry_buf_t *next = (*nextfn1[head.mode])(link);
364             if ((entry < REGDMA_LINK_ENTRY_NUM) && (*next)[entry] && (head.eof == 0)) {
365                 return (*next)[entry];
366             }
367         } else {
368             typedef void * (*get_nextfn0_t)(void *);
369             const static get_nextfn0_t nextfn0[] = {
370                 [0] = (get_nextfn0_t)regdma_link_get_next_continuous_wrapper,
371                 [1] = (get_nextfn0_t)regdma_link_get_next_addr_map_wrapper,
372                 [2] = (get_nextfn0_t)regdma_link_get_next_write_wait_wrapper,
373                 [3] = (get_nextfn0_t)regdma_link_get_next_write_wait_wrapper
374             };
375             assert(head.mode < ARRAY_SIZE(nextfn0));
376             void *next = (*nextfn0[head.mode])(link);
377             if (next && (head.eof == 0)) {
378                 return next;
379             }
380         }
381     }
382     return NULL;
383 }
384 
regdma_link_recursive_impl(void * link,int entry,int depth,void (* hook)(void *,int,int))385 static void * regdma_link_recursive_impl(void *link, int entry, int depth, void (*hook)(void *, int, int))
386 {
387     assert(entry < REGDMA_LINK_ENTRY_NUM);
388 
389     if (link) {
390         regdma_link_recursive_impl(regdma_link_get_next(link, entry), entry, depth+1, hook);
391         if (hook) {
392             (*hook)(link, entry, depth);
393         }
394     }
395     return link;
396 }
397 
regdma_link_recursive(void * link,int entry,void (* hook)(void *,int,int))398 void * regdma_link_recursive(void *link, int entry, void (*hook)(void *, int, int))
399 {
400     return regdma_link_recursive_impl(link, entry, 0, hook);
401 }
402 
regdma_link_get_instance(void * link)403 static void * regdma_link_get_instance(void *link)
404 {
405     void * container_memaddr[] = {
406         (void *)__containerof(link, regdma_link_continuous_t, head),
407         (void *)__containerof(link, regdma_link_addr_map_t, head),
408         (void *)__containerof(link, regdma_link_write_wait_t, head),
409         (void *)__containerof(link, regdma_link_write_wait_t, head),
410         (void *)__containerof(link, regdma_link_branch_continuous_t, head),
411         (void *)__containerof(link, regdma_link_branch_addr_map_t, head),
412         (void *)__containerof(link, regdma_link_branch_write_wait_t, head),
413         (void *)__containerof(link, regdma_link_branch_write_wait_t, head)
414     };
415     regdma_link_head_t head = REGDMA_LINK_HEAD(link);
416     int it = (head.branch << 2) | head.mode;
417     assert(it < ARRAY_SIZE(container_memaddr));
418 
419     return container_memaddr[it];
420 }
regdma_link_get_stats(void * link)421 static regdma_link_stats_t * regdma_link_get_stats(void *link)
422 {
423     const static size_t stats_offset[] = {
424         offsetof(regdma_link_continuous_t, stat),
425         offsetof(regdma_link_addr_map_t, stat),
426         offsetof(regdma_link_write_wait_t, stat),
427         offsetof(regdma_link_write_wait_t, stat),
428         offsetof(regdma_link_branch_continuous_t, stat),
429         offsetof(regdma_link_branch_addr_map_t, stat),
430         offsetof(regdma_link_branch_write_wait_t, stat),
431         offsetof(regdma_link_branch_write_wait_t, stat)
432     };
433     regdma_link_head_t head = REGDMA_LINK_HEAD(link);
434     int it = (head.branch << 2) | head.mode;
435     assert(it < ARRAY_SIZE(stats_offset));
436 
437     return (regdma_link_stats_t *)(regdma_link_get_instance(link) + stats_offset[it]);
438 }
439 
regdma_link_update_stats_wrapper(void * link,int entry,int depth)440 static void regdma_link_update_stats_wrapper(void *link, int entry, int depth)
441 {
442     if (link == NULL) {
443         return;
444     }
445     regdma_link_update_stats(regdma_link_get_stats(link), entry, depth);
446 }
447 
regdma_link_stats(void * link,int entry)448 void regdma_link_stats(void *link, int entry)
449 {
450     regdma_link_recursive_impl(link, entry, 0, regdma_link_update_stats_wrapper);
451 }
452 
regdma_link_destroy_wrapper(void * link,int entry,int depth)453 static void regdma_link_destroy_wrapper(void *link, int entry, int depth)
454 {
455     if (link == NULL) {
456         return;
457     }
458     regdma_link_stats_t *stat = regdma_link_get_stats(link);
459     stat->ref &= ~BIT(entry);
460     if (stat->ref == 0) {
461         free(regdma_link_get_instance(link));
462     }
463 }
464 
regdma_link_destroy(void * link,int entry)465 void regdma_link_destroy(void *link, int entry)
466 {
467     regdma_link_recursive_impl(link, entry, 0, regdma_link_destroy_wrapper);
468 }
469 
regdma_find_link_by_pos(void * link,int entry,int pos)470 void * regdma_find_link_by_pos(void *link, int entry, int pos)
471 {
472     assert(entry < REGDMA_LINK_ENTRY_NUM);
473 
474     void *next = link;
475     if (link) {
476         int iter = 0;
477         do {
478             if (pos == iter++) {
479                 break;
480             }
481         } while ((next = regdma_link_get_next(next, entry)) != NULL);
482     }
483     return next;
484 }
485 
regdma_find_link_by_id(void * link,int entry,int id)486 void * regdma_find_link_by_id(void *link, int entry, int id)
487 {
488     assert(entry < REGDMA_LINK_ENTRY_NUM);
489 
490     void *find_addr = NULL;
491     void *next = link;
492     if (link) {
493         int linkid = 0;
494         do {
495             regdma_link_head_t head = REGDMA_LINK_HEAD(next);
496             if (head.branch) {
497                 regdma_link_branch_continuous_t *continuous = (regdma_link_branch_continuous_t *)regdma_link_get_instance(next);
498                 linkid = continuous->stat.id;
499             } else {
500                 regdma_link_continuous_t *continuous = (regdma_link_continuous_t *)regdma_link_get_instance(next);
501                 linkid = continuous->stat.id;
502             }
503             if (linkid == id) {
504                 find_addr = next;
505                 break;
506             }
507         } while ((next = regdma_link_get_next(next, entry)) != NULL);
508     }
509     return find_addr;
510 }
511 
regdma_link_set_write_wait_content(void * link,uint32_t value,uint32_t mask)512 void regdma_link_set_write_wait_content(void *link, uint32_t value, uint32_t mask)
513 {
514     if (link) {
515         regdma_link_head_t head = REGDMA_LINK_HEAD(link);
516         if (head.mode == REGDMA_LINK_MODE_WRITE || head.mode == REGDMA_LINK_MODE_WAIT) {
517             if (head.branch) {
518                 regdma_link_branch_write_wait_t *write_wait = (regdma_link_branch_write_wait_t *)regdma_link_get_instance(link);
519                 write_wait->body.value = value;
520                 write_wait->body.mask = mask;
521             } else {
522                 regdma_link_write_wait_t *write_wait = (regdma_link_write_wait_t *)regdma_link_get_instance(link);
523                 write_wait->body.value = value;
524                 write_wait->body.mask = mask;
525             }
526         }
527     }
528 }
529 
regdma_link_update_continuous_next_wrapper(void * link,void * next)530 static void regdma_link_update_continuous_next_wrapper(void *link, void *next)
531 {
532     regdma_link_continuous_t *continuous = __containerof(link, regdma_link_continuous_t, head);
533     continuous->body.next = next;
534 }
535 
regdma_link_update_addr_map_next_wrapper(void * link,void * next)536 static void regdma_link_update_addr_map_next_wrapper(void *link, void *next)
537 {
538     regdma_link_addr_map_t *addr_map = __containerof(link, regdma_link_addr_map_t, head);
539     addr_map->body.next = next;
540 }
541 
regdma_link_update_write_wait_next_wrapper(void * link,void * next)542 static void regdma_link_update_write_wait_next_wrapper(void *link, void *next)
543 {
544     regdma_link_write_wait_t *write_wait = __containerof(link, regdma_link_write_wait_t, head);
545     write_wait->body.next = next;
546 }
547 
regdma_link_update_branch_continuous_next_wrapper(void * link,regdma_entry_buf_t * next)548 static void regdma_link_update_branch_continuous_next_wrapper(void *link, regdma_entry_buf_t *next)
549 {
550     regdma_link_branch_continuous_t *branch_continuous = __containerof(link, regdma_link_branch_continuous_t, head);
551     for (int i = 0; i < REGDMA_LINK_ENTRY_NUM; i++) {
552         branch_continuous->body.next[i] = (*next)[i];
553     }
554 }
555 
regdma_link_update_branch_addr_map_next_wrapper(void * link,regdma_entry_buf_t * next)556 static void regdma_link_update_branch_addr_map_next_wrapper(void *link, regdma_entry_buf_t *next)
557 {
558     regdma_link_branch_addr_map_t *branch_addr_map = __containerof(link, regdma_link_branch_addr_map_t, head);
559     for (int i = 0; i < REGDMA_LINK_ENTRY_NUM; i++) {
560         branch_addr_map->body.next[i] = (*next)[i];
561     }
562 }
563 
regdma_link_update_branch_write_wait_next_wrapper(void * link,regdma_entry_buf_t * next)564 static void regdma_link_update_branch_write_wait_next_wrapper(void *link, regdma_entry_buf_t *next)
565 {
566     regdma_link_branch_write_wait_t *branch_write_wait = __containerof(link, regdma_link_branch_write_wait_t, head);
567     for (int i = 0; i < REGDMA_LINK_ENTRY_NUM; i++) {
568         branch_write_wait->body.next[i] = (*next)[i];
569     }
570 }
571 
regdma_link_update_next(void * link,int nentry,...)572 void regdma_link_update_next(void *link, int nentry, ...)
573 {
574     va_list args;
575     va_start(args, nentry);
576     if (link) {
577         regdma_entry_buf_t next;
578         memset(next, 0, sizeof(regdma_entry_buf_t));
579         for (int i = 0; i < nentry && i < REGDMA_LINK_ENTRY_NUM; i++) { // Ignore more arguments
580             next[i] = va_arg(args, void *);
581         }
582 
583         regdma_link_head_t head = REGDMA_LINK_HEAD(link);
584         if (head.branch) {
585             typedef void (*update_branch_fn_t)(void *, regdma_entry_buf_t *);
586             static const update_branch_fn_t updatefn_b[] = {
587                 [0] = regdma_link_update_branch_continuous_next_wrapper,
588                 [1] = regdma_link_update_branch_addr_map_next_wrapper,
589                 [2] = regdma_link_update_branch_write_wait_next_wrapper,
590                 [3] = regdma_link_update_branch_write_wait_next_wrapper
591             };
592             assert((head.mode < ARRAY_SIZE(updatefn_b)));
593             (*updatefn_b[head.mode])(link, &next);
594         } else {
595             typedef void (*update_fn_t)(void *, void *);
596             static const update_fn_t updatefn[] = {
597                 [0] = regdma_link_update_continuous_next_wrapper,
598                 [1] = regdma_link_update_addr_map_next_wrapper,
599                 [2] = regdma_link_update_write_wait_next_wrapper,
600                 [3] = regdma_link_update_write_wait_next_wrapper
601             };
602             assert((head.mode < ARRAY_SIZE(updatefn)));
603             (*updatefn[head.mode])(link, next[0]);
604         }
605     }
606     va_end(args);
607 }
608 
regdma_link_get_owner_bitmap(void * link,void * tail,int entry)609 uint32_t regdma_link_get_owner_bitmap(void *link, void *tail, int entry)
610 {
611     assert(entry < REGDMA_LINK_ENTRY_NUM);
612 
613     uint32_t owner = 0;
614     void *next = link;
615     if (link) {
616         do {
617             owner |= regdma_link_get_stats(next)->ref;
618             if (next == tail) {
619                 break;
620             }
621         } while ((next = regdma_link_get_next(next, entry)) != NULL);
622     }
623     return owner;
624 }
625 
regdma_find_module_link_head(void * link,void * tail,int entry,uint32_t module)626 void * regdma_find_module_link_head(void *link, void *tail, int entry, uint32_t module)
627 {
628     assert(entry < REGDMA_LINK_ENTRY_NUM);
629 
630     void *find_link = NULL;
631     void *next = link;
632     if (link) {
633         do {
634             if (regdma_link_get_stats(next)->module & module) {
635                 find_link = next;
636                 break;
637             }
638             if (next == tail) {
639                 break;
640             }
641         } while ((next = regdma_link_get_next(next, entry)) != NULL);
642     }
643     return find_link;
644 }
645 
regdma_find_module_link_tail(void * link,void * tail,int entry,uint32_t module)646 void * regdma_find_module_link_tail(void *link, void *tail, int entry, uint32_t module)
647 {
648     assert(entry < REGDMA_LINK_ENTRY_NUM);
649 
650     void *find_tail = NULL;
651     void *next = link;
652     if (link) {
653         do {
654             if (next != tail) {
655                 void *temp = regdma_link_get_next(next, entry);
656                 if ((regdma_link_get_stats(next)->module & module) &&
657                    !(regdma_link_get_stats(temp)->module & module)) {
658                     find_tail = next;
659                     break;
660                 }
661             } else {
662                 if (regdma_link_get_stats(next)->module & module) {
663                     find_tail = next;
664                     break;
665                 }
666             }
667         } while ((next = regdma_link_get_next(next, entry)) != NULL);
668     }
669     return find_tail;
670 }
671 
regdma_find_next_module_link_head(void * link,void * tail,int entry,uint32_t module)672 void * regdma_find_next_module_link_head(void *link, void *tail, int entry, uint32_t module)
673 {
674     assert(entry < REGDMA_LINK_ENTRY_NUM);
675     void *find_tail = regdma_find_module_link_tail(link, tail, entry, module);
676     if (find_tail && find_tail != tail) {
677         return regdma_link_get_next(find_tail, entry);
678     }
679     return NULL;
680 }
681 
regdma_find_prev_module_link_tail(void * link,void * tail,int entry,uint32_t module)682 void * regdma_find_prev_module_link_tail(void *link, void *tail, int entry, uint32_t module)
683 {
684     assert(entry < REGDMA_LINK_ENTRY_NUM);
685     void *find_head = regdma_find_module_link_head(link, tail, entry, module);
686     void *next = link;
687     if (find_head && find_head != link) {
688         do {
689             if (regdma_link_get_next(next, entry) == find_head) {
690                 return next;
691             }
692             if (next == tail) {
693                 break;
694             }
695         } while ((next = regdma_link_get_next(next, entry)) != NULL);
696     }
697     return NULL;
698 }
699 
700 #if REGDMA_LINK_DBG
701 static const char *TAG = "regdma_link";
702 
print_info_continuous_wrapper(void * link)703 static void print_info_continuous_wrapper(void *link)
704 {
705     regdma_link_head_t head = REGDMA_LINK_HEAD(link);
706     regdma_link_continuous_t *cons = __containerof(link, regdma_link_continuous_t, head);
707     ESP_EARLY_LOGI(TAG, "[%08x/%04x] link:%x, head:%x, next:%x, backup:%x, restore:%x, buff:%x",
708              cons->stat.module, cons->stat.id, link, cons->head, cons->body.next,
709              cons->body.backup, cons->body.restore, cons->body.mem);
710     ESP_LOG_BUFFER_HEX(TAG, (const void *)cons->body.mem, head.length);
711 }
712 
print_info_addr_map_wrapper(void * link)713 static void print_info_addr_map_wrapper(void *link)
714 {
715     regdma_link_head_t head = REGDMA_LINK_HEAD(link);
716     regdma_link_addr_map_t *map = __containerof(link, regdma_link_addr_map_t, head);
717     ESP_EARLY_LOGI(TAG, "[%08x/%04x] link:%x, head:%x, next:%x, backup:%x, restore:%x, buff:%x, map:{%x,%x,%x,%x}",
718             map->stat.module, map->stat.id, link, map->head, map->body.next, map->body.backup,
719             map->body.restore, map->body.mem, map->body.map[0], map->body.map[1],
720             map->body.map[2], map->body.map[3]);
721     ESP_LOG_BUFFER_HEX(TAG, (const void *)map->body.mem, head.length);
722 }
723 
print_info_write_wait_wrapper(void * link)724 static void print_info_write_wait_wrapper(void *link)
725 {
726     regdma_link_write_wait_t *ww = __containerof(link, regdma_link_write_wait_t, head);
727     ESP_EARLY_LOGI(TAG, "[%08x/%04x] link:%x, head:%x, next:%x, backup:%x, value:%x, mask:%x",
728             ww->stat.module, ww->stat.id, link, ww->head, ww->body.next,
729             ww->body.backup, ww->body.value, ww->body.mask);
730 }
731 
print_info_branch_continuous_wrapper(void * link)732 static void print_info_branch_continuous_wrapper(void *link)
733 {
734     regdma_link_head_t head = REGDMA_LINK_HEAD(link);
735     regdma_link_branch_continuous_t *cons = __containerof(link, regdma_link_branch_continuous_t, head);
736     ESP_EARLY_LOGI(TAG, "[%08x/%04x] link:%x, head:%x, next:{%x,%x,%x,%x}, backup:%x, restore:%x, buff:%x",
737             cons->stat.module, cons->stat.id, link, cons->head, cons->body.next[0], cons->body.next[1],
738             cons->body.next[2], cons->body.next[3], cons->body.backup, cons->body.restore,
739             cons->body.mem);
740     ESP_LOG_BUFFER_HEX(TAG, (const void *)cons->body.mem, head.length);
741 }
742 
print_info_branch_addr_map_wrapper(void * link)743 static void print_info_branch_addr_map_wrapper(void *link)
744 {
745     regdma_link_head_t head = REGDMA_LINK_HEAD(link);
746     regdma_link_branch_addr_map_t *map = __containerof(link, regdma_link_branch_addr_map_t, head);
747     ESP_EARLY_LOGI(TAG, "[%08x/%04x] link:%x, head:%x, next:{%x,%x,%x,%x}, backup:%x, restore:%x, buff:%x, map:{%x,%x,%x,%x}",
748             map->stat.module, map->stat.id, link, map->head, map->body.next[0], map->body.next[1], map->body.next[2],
749             map->body.next[3], map->body.backup, map->body.restore, map->body.mem, map->body.map[0],
750             map->body.map[1], map->body.map[2], map->body.map[3]);
751     ESP_LOG_BUFFER_HEX(TAG, (const void *)map->body.mem, head.length);
752 }
753 
print_info_branch_write_wait_wrapper(void * link)754 static void print_info_branch_write_wait_wrapper(void *link)
755 {
756     regdma_link_branch_write_wait_t *ww = __containerof(link, regdma_link_branch_write_wait_t, head);
757     ESP_EARLY_LOGI(TAG, "[%08x/%04x] link:%x, head:%x, next:{%x,%x,%x,%x}, backup:%x, value:%x, mask:%x",
758             ww->stat.module, ww->stat.id, link, ww->head, ww->body.next[0], ww->body.next[1],
759             ww->body.next[2], ww->body.next[3], ww->body.backup, ww->body.value,
760             ww->body.mask);
761 }
762 
print_link_info(void * args,int entry,int depth)763 static void print_link_info(void *args, int entry, int depth)
764 {
765     typedef void (*prinf_fn_t)(void *);
766 
767     const static prinf_fn_t prinf_fn[] = {
768         [0] = (prinf_fn_t)print_info_continuous_wrapper,
769         [1] = (prinf_fn_t)print_info_addr_map_wrapper,
770         [2] = (prinf_fn_t)print_info_write_wait_wrapper,
771         [3] = (prinf_fn_t)print_info_write_wait_wrapper,
772         [4] = (prinf_fn_t)print_info_branch_continuous_wrapper,
773         [5] = (prinf_fn_t)print_info_branch_addr_map_wrapper,
774         [6] = (prinf_fn_t)print_info_branch_write_wait_wrapper,
775         [7] = (prinf_fn_t)print_info_branch_write_wait_wrapper
776     };
777 
778     regdma_link_head_t head = REGDMA_LINK_HEAD(args);
779     int it = (head.branch << 2) | head.mode;
780     assert(it < ARRAY_SIZE(prinf_fn));
781 
782     (*prinf_fn[it])(args);
783 }
784 
regdma_link_show_memories(void * link,int entry)785 void regdma_link_show_memories(void *link, int entry)
786 {
787     assert(entry < REGDMA_LINK_ENTRY_NUM);
788 
789     void *next = link;
790     if (link) {
791         do {
792             print_link_info(next, entry, 0);
793         } while ((next = regdma_link_get_next(next, entry)) != NULL);
794     } else {
795         ESP_EARLY_LOGW(TAG, "This REGDMA linked list is empty!\n");
796     }
797 }
798 #endif
799