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Merge tag 'ext4_for_linus_stable' of git://git.kernel.org/pub/scm/linux/kernel/git...
[mirror_ubuntu-artful-kernel.git] / drivers / staging / fbtft / fbtft-bus.c
1 #include <linux/export.h>
2 #include <linux/errno.h>
3 #include <linux/gpio.h>
4 #include <linux/spi/spi.h>
5 #include "fbtft.h"
6
7 /*****************************************************************************
8 *
9 * void (*write_reg)(struct fbtft_par *par, int len, ...);
10 *
11 *****************************************************************************/
12
13 #define define_fbtft_write_reg(func, type, modifier) \
14 void func(struct fbtft_par *par, int len, ...) \
15 { \
16 va_list args; \
17 int i, ret; \
18 int offset = 0; \
19 type *buf = (type *)par->buf; \
20 \
21 if (unlikely(par->debug & DEBUG_WRITE_REGISTER)) { \
22 va_start(args, len); \
23 for (i = 0; i < len; i++) { \
24 buf[i] = (type)va_arg(args, unsigned int); \
25 } \
26 va_end(args); \
27 fbtft_par_dbg_hex(DEBUG_WRITE_REGISTER, par, par->info->device, type, buf, len, "%s: ", __func__); \
28 } \
29 \
30 va_start(args, len); \
31 \
32 if (par->startbyte) { \
33 *(u8 *)par->buf = par->startbyte; \
34 buf = (type *)(par->buf + 1); \
35 offset = 1; \
36 } \
37 \
38 *buf = modifier((type)va_arg(args, unsigned int)); \
39 if (par->gpio.dc != -1) \
40 gpio_set_value(par->gpio.dc, 0); \
41 ret = par->fbtftops.write(par, par->buf, sizeof(type) + offset); \
42 if (ret < 0) { \
43 va_end(args); \
44 dev_err(par->info->device, "%s: write() failed and returned %d\n", __func__, ret); \
45 return; \
46 } \
47 len--; \
48 \
49 if (par->startbyte) \
50 *(u8 *)par->buf = par->startbyte | 0x2; \
51 \
52 if (len) { \
53 i = len; \
54 while (i--) { \
55 *buf++ = modifier((type)va_arg(args, unsigned int)); \
56 } \
57 if (par->gpio.dc != -1) \
58 gpio_set_value(par->gpio.dc, 1); \
59 ret = par->fbtftops.write(par, par->buf, \
60 len * (sizeof(type) + offset)); \
61 if (ret < 0) { \
62 va_end(args); \
63 dev_err(par->info->device, "%s: write() failed and returned %d\n", __func__, ret); \
64 return; \
65 } \
66 } \
67 va_end(args); \
68 } \
69 EXPORT_SYMBOL(func);
70
71 define_fbtft_write_reg(fbtft_write_reg8_bus8, u8, )
72 define_fbtft_write_reg(fbtft_write_reg16_bus8, u16, cpu_to_be16)
73 define_fbtft_write_reg(fbtft_write_reg16_bus16, u16, )
74
75 void fbtft_write_reg8_bus9(struct fbtft_par *par, int len, ...)
76 {
77 va_list args;
78 int i, ret;
79 int pad = 0;
80 u16 *buf = (u16 *)par->buf;
81
82 if (unlikely(par->debug & DEBUG_WRITE_REGISTER)) {
83 va_start(args, len);
84 for (i = 0; i < len; i++)
85 *(((u8 *)buf) + i) = (u8)va_arg(args, unsigned int);
86 va_end(args);
87 fbtft_par_dbg_hex(DEBUG_WRITE_REGISTER, par,
88 par->info->device, u8, buf, len, "%s: ", __func__);
89 }
90 if (len <= 0)
91 return;
92
93 if (par->spi && (par->spi->bits_per_word == 8)) {
94 /* we're emulating 9-bit, pad start of buffer with no-ops
95 * (assuming here that zero is a no-op)
96 */
97 pad = (len % 4) ? 4 - (len % 4) : 0;
98 for (i = 0; i < pad; i++)
99 *buf++ = 0x000;
100 }
101
102 va_start(args, len);
103 *buf++ = (u8)va_arg(args, unsigned int);
104 i = len - 1;
105 while (i--) {
106 *buf = (u8)va_arg(args, unsigned int);
107 *buf++ |= 0x100; /* dc=1 */
108 }
109 va_end(args);
110 ret = par->fbtftops.write(par, par->buf, (len + pad) * sizeof(u16));
111 if (ret < 0) {
112 dev_err(par->info->device,
113 "write() failed and returned %d\n", ret);
114 return;
115 }
116 }
117 EXPORT_SYMBOL(fbtft_write_reg8_bus9);
118
119 /*****************************************************************************
120 *
121 * int (*write_vmem)(struct fbtft_par *par);
122 *
123 *****************************************************************************/
124
125 /* 16 bit pixel over 8-bit databus */
126 int fbtft_write_vmem16_bus8(struct fbtft_par *par, size_t offset, size_t len)
127 {
128 u16 *vmem16;
129 u16 *txbuf16 = par->txbuf.buf;
130 size_t remain;
131 size_t to_copy;
132 size_t tx_array_size;
133 int i;
134 int ret = 0;
135 size_t startbyte_size = 0;
136
137 fbtft_par_dbg(DEBUG_WRITE_VMEM, par, "%s(offset=%zu, len=%zu)\n",
138 __func__, offset, len);
139
140 remain = len / 2;
141 vmem16 = (u16 *)(par->info->screen_buffer + offset);
142
143 if (par->gpio.dc != -1)
144 gpio_set_value(par->gpio.dc, 1);
145
146 /* non buffered write */
147 if (!par->txbuf.buf)
148 return par->fbtftops.write(par, vmem16, len);
149
150 /* buffered write */
151 tx_array_size = par->txbuf.len / 2;
152
153 if (par->startbyte) {
154 txbuf16 = par->txbuf.buf + 1;
155 tx_array_size -= 2;
156 *(u8 *)(par->txbuf.buf) = par->startbyte | 0x2;
157 startbyte_size = 1;
158 }
159
160 while (remain) {
161 to_copy = min(tx_array_size, remain);
162 dev_dbg(par->info->device, " to_copy=%zu, remain=%zu\n",
163 to_copy, remain - to_copy);
164
165 for (i = 0; i < to_copy; i++)
166 txbuf16[i] = cpu_to_be16(vmem16[i]);
167
168 vmem16 = vmem16 + to_copy;
169 ret = par->fbtftops.write(par, par->txbuf.buf,
170 startbyte_size + to_copy * 2);
171 if (ret < 0)
172 return ret;
173 remain -= to_copy;
174 }
175
176 return ret;
177 }
178 EXPORT_SYMBOL(fbtft_write_vmem16_bus8);
179
180 /* 16 bit pixel over 9-bit SPI bus: dc + high byte, dc + low byte */
181 int fbtft_write_vmem16_bus9(struct fbtft_par *par, size_t offset, size_t len)
182 {
183 u8 *vmem8;
184 u16 *txbuf16 = par->txbuf.buf;
185 size_t remain;
186 size_t to_copy;
187 size_t tx_array_size;
188 int i;
189 int ret = 0;
190
191 fbtft_par_dbg(DEBUG_WRITE_VMEM, par, "%s(offset=%zu, len=%zu)\n",
192 __func__, offset, len);
193
194 if (!par->txbuf.buf) {
195 dev_err(par->info->device, "%s: txbuf.buf is NULL\n", __func__);
196 return -1;
197 }
198
199 remain = len;
200 vmem8 = par->info->screen_buffer + offset;
201
202 tx_array_size = par->txbuf.len / 2;
203
204 while (remain) {
205 to_copy = min(tx_array_size, remain);
206 dev_dbg(par->info->device, " to_copy=%zu, remain=%zu\n",
207 to_copy, remain - to_copy);
208
209 #ifdef __LITTLE_ENDIAN
210 for (i = 0; i < to_copy; i += 2) {
211 txbuf16[i] = 0x0100 | vmem8[i + 1];
212 txbuf16[i + 1] = 0x0100 | vmem8[i];
213 }
214 #else
215 for (i = 0; i < to_copy; i++)
216 txbuf16[i] = 0x0100 | vmem8[i];
217 #endif
218 vmem8 = vmem8 + to_copy;
219 ret = par->fbtftops.write(par, par->txbuf.buf, to_copy * 2);
220 if (ret < 0)
221 return ret;
222 remain -= to_copy;
223 }
224
225 return ret;
226 }
227 EXPORT_SYMBOL(fbtft_write_vmem16_bus9);
228
229 int fbtft_write_vmem8_bus8(struct fbtft_par *par, size_t offset, size_t len)
230 {
231 dev_err(par->info->device, "%s: function not implemented\n", __func__);
232 return -1;
233 }
234 EXPORT_SYMBOL(fbtft_write_vmem8_bus8);
235
236 /* 16 bit pixel over 16-bit databus */
237 int fbtft_write_vmem16_bus16(struct fbtft_par *par, size_t offset, size_t len)
238 {
239 u16 *vmem16;
240
241 fbtft_par_dbg(DEBUG_WRITE_VMEM, par, "%s(offset=%zu, len=%zu)\n",
242 __func__, offset, len);
243
244 vmem16 = (u16 *)(par->info->screen_buffer + offset);
245
246 if (par->gpio.dc != -1)
247 gpio_set_value(par->gpio.dc, 1);
248
249 /* no need for buffered write with 16-bit bus */
250 return par->fbtftops.write(par, vmem16, len);
251 }
252 EXPORT_SYMBOL(fbtft_write_vmem16_bus16);