1b445bfcbSMarco Felsch // SPDX-License-Identifier: GPL-2.0-or-later 2787f4889SMark Brown // SPI init/core code 3787f4889SMark Brown // 4787f4889SMark Brown // Copyright (C) 2005 David Brownell 5787f4889SMark Brown // Copyright (C) 2008 Secret Lab Technologies Ltd. 68ae12a0dSDavid Brownell 78ae12a0dSDavid Brownell #include <linux/kernel.h> 88ae12a0dSDavid Brownell #include <linux/device.h> 98ae12a0dSDavid Brownell #include <linux/init.h> 108ae12a0dSDavid Brownell #include <linux/cache.h> 1199adef31SMark Brown #include <linux/dma-mapping.h> 1299adef31SMark Brown #include <linux/dmaengine.h> 1394040828SMatthias Kaehlcke #include <linux/mutex.h> 142b7a32f7SSinan Akman #include <linux/of_device.h> 15d57a4282SGrant Likely #include <linux/of_irq.h> 1686be408bSSylwester Nawrocki #include <linux/clk/clk-conf.h> 175a0e3ad6STejun Heo #include <linux/slab.h> 18e0626e38SAnton Vorontsov #include <linux/mod_devicetable.h> 198ae12a0dSDavid Brownell #include <linux/spi/spi.h> 20b5932f5cSBoris Brezillon #include <linux/spi/spi-mem.h> 21f3186dd8SLinus Walleij #include <linux/gpio/consumer.h> 223ae22e8cSMark Brown #include <linux/pm_runtime.h> 23f48c767cSUlf Hansson #include <linux/pm_domain.h> 24826cf175SDmitry Torokhov #include <linux/property.h> 25025ed130SPaul Gortmaker #include <linux/export.h> 268bd75c77SClark Williams #include <linux/sched/rt.h> 27ae7e81c0SIngo Molnar #include <uapi/linux/sched/types.h> 28ffbbdd21SLinus Walleij #include <linux/delay.h> 29ffbbdd21SLinus Walleij #include <linux/kthread.h> 3064bee4d2SMika Westerberg #include <linux/ioport.h> 3164bee4d2SMika Westerberg #include <linux/acpi.h> 32b1b8153cSVignesh R #include <linux/highmem.h> 339b61e302SSuniel Mahesh #include <linux/idr.h> 348a2e487eSLukas Wunner #include <linux/platform_data/x86/apple.h> 3544ea6281SJakub Kicinski #include <linux/ptp_clock_kernel.h> 366598b91bSDavid Jander #include <linux/percpu.h> 378ae12a0dSDavid Brownell 3856ec1978SMark Brown #define CREATE_TRACE_POINTS 3956ec1978SMark Brown #include <trace/events/spi.h> 40ca1438dcSArnd Bergmann EXPORT_TRACEPOINT_SYMBOL(spi_transfer_start); 41ca1438dcSArnd Bergmann EXPORT_TRACEPOINT_SYMBOL(spi_transfer_stop); 429b61e302SSuniel Mahesh 4346336966SBoris Brezillon #include "internals.h" 4446336966SBoris Brezillon 459b61e302SSuniel Mahesh static DEFINE_IDR(spi_master_idr); 4656ec1978SMark Brown 478ae12a0dSDavid Brownell static void spidev_release(struct device *dev) 488ae12a0dSDavid Brownell { 490ffa0285SHans-Peter Nilsson struct spi_device *spi = to_spi_device(dev); 508ae12a0dSDavid Brownell 518caab75fSGeert Uytterhoeven spi_controller_put(spi->controller); 525039563eSTrent Piepho kfree(spi->driver_override); 536598b91bSDavid Jander free_percpu(spi->pcpu_statistics); 5407a389feSRoman Tereshonkov kfree(spi); 558ae12a0dSDavid Brownell } 568ae12a0dSDavid Brownell 578ae12a0dSDavid Brownell static ssize_t 588ae12a0dSDavid Brownell modalias_show(struct device *dev, struct device_attribute *a, char *buf) 598ae12a0dSDavid Brownell { 608ae12a0dSDavid Brownell const struct spi_device *spi = to_spi_device(dev); 618c4ff6d0SZhang Rui int len; 628c4ff6d0SZhang Rui 638c4ff6d0SZhang Rui len = acpi_device_modalias(dev, buf, PAGE_SIZE - 1); 648c4ff6d0SZhang Rui if (len != -ENODEV) 658c4ff6d0SZhang Rui return len; 668ae12a0dSDavid Brownell 67d8e328b3SGrant Likely return sprintf(buf, "%s%s\n", SPI_MODULE_PREFIX, spi->modalias); 688ae12a0dSDavid Brownell } 69aa7da564SGreg Kroah-Hartman static DEVICE_ATTR_RO(modalias); 708ae12a0dSDavid Brownell 715039563eSTrent Piepho static ssize_t driver_override_store(struct device *dev, 725039563eSTrent Piepho struct device_attribute *a, 735039563eSTrent Piepho const char *buf, size_t count) 745039563eSTrent Piepho { 755039563eSTrent Piepho struct spi_device *spi = to_spi_device(dev); 7619368f0fSKrzysztof Kozlowski int ret; 775039563eSTrent Piepho 7819368f0fSKrzysztof Kozlowski ret = driver_set_override(dev, &spi->driver_override, buf, count); 7919368f0fSKrzysztof Kozlowski if (ret) 8019368f0fSKrzysztof Kozlowski return ret; 815039563eSTrent Piepho 825039563eSTrent Piepho return count; 835039563eSTrent Piepho } 845039563eSTrent Piepho 855039563eSTrent Piepho static ssize_t driver_override_show(struct device *dev, 865039563eSTrent Piepho struct device_attribute *a, char *buf) 875039563eSTrent Piepho { 885039563eSTrent Piepho const struct spi_device *spi = to_spi_device(dev); 895039563eSTrent Piepho ssize_t len; 905039563eSTrent Piepho 915039563eSTrent Piepho device_lock(dev); 925039563eSTrent Piepho len = snprintf(buf, PAGE_SIZE, "%s\n", spi->driver_override ? : ""); 935039563eSTrent Piepho device_unlock(dev); 945039563eSTrent Piepho return len; 955039563eSTrent Piepho } 965039563eSTrent Piepho static DEVICE_ATTR_RW(driver_override); 975039563eSTrent Piepho 98d501cc4cSDavid Jander static struct spi_statistics __percpu *spi_alloc_pcpu_stats(struct device *dev) 996598b91bSDavid Jander { 1006598b91bSDavid Jander struct spi_statistics __percpu *pcpu_stats; 1016598b91bSDavid Jander 1026598b91bSDavid Jander if (dev) 1036598b91bSDavid Jander pcpu_stats = devm_alloc_percpu(dev, struct spi_statistics); 1046598b91bSDavid Jander else 1056598b91bSDavid Jander pcpu_stats = alloc_percpu_gfp(struct spi_statistics, GFP_KERNEL); 1066598b91bSDavid Jander 1076598b91bSDavid Jander if (pcpu_stats) { 1086598b91bSDavid Jander int cpu; 1096598b91bSDavid Jander 1106598b91bSDavid Jander for_each_possible_cpu(cpu) { 1116598b91bSDavid Jander struct spi_statistics *stat; 1126598b91bSDavid Jander 1136598b91bSDavid Jander stat = per_cpu_ptr(pcpu_stats, cpu); 1146598b91bSDavid Jander u64_stats_init(&stat->syncp); 1156598b91bSDavid Jander } 1166598b91bSDavid Jander } 1176598b91bSDavid Jander return pcpu_stats; 1186598b91bSDavid Jander } 1196598b91bSDavid Jander 120fc12d4bbSGeert Uytterhoeven static ssize_t spi_emit_pcpu_stats(struct spi_statistics __percpu *stat, 121fc12d4bbSGeert Uytterhoeven char *buf, size_t offset) 122fc12d4bbSGeert Uytterhoeven { 123fc12d4bbSGeert Uytterhoeven u64 val = 0; 124fc12d4bbSGeert Uytterhoeven int i; 125fc12d4bbSGeert Uytterhoeven 126fc12d4bbSGeert Uytterhoeven for_each_possible_cpu(i) { 127fc12d4bbSGeert Uytterhoeven const struct spi_statistics *pcpu_stats; 128fc12d4bbSGeert Uytterhoeven u64_stats_t *field; 129fc12d4bbSGeert Uytterhoeven unsigned int start; 130fc12d4bbSGeert Uytterhoeven u64 inc; 131fc12d4bbSGeert Uytterhoeven 132fc12d4bbSGeert Uytterhoeven pcpu_stats = per_cpu_ptr(stat, i); 133fc12d4bbSGeert Uytterhoeven field = (void *)pcpu_stats + offset; 134fc12d4bbSGeert Uytterhoeven do { 135fc12d4bbSGeert Uytterhoeven start = u64_stats_fetch_begin(&pcpu_stats->syncp); 136fc12d4bbSGeert Uytterhoeven inc = u64_stats_read(field); 137fc12d4bbSGeert Uytterhoeven } while (u64_stats_fetch_retry(&pcpu_stats->syncp, start)); 138fc12d4bbSGeert Uytterhoeven val += inc; 139fc12d4bbSGeert Uytterhoeven } 140fc12d4bbSGeert Uytterhoeven return sysfs_emit(buf, "%llu\n", val); 141fc12d4bbSGeert Uytterhoeven } 1426598b91bSDavid Jander 143eca2ebc7SMartin Sperl #define SPI_STATISTICS_ATTRS(field, file) \ 1448caab75fSGeert Uytterhoeven static ssize_t spi_controller_##field##_show(struct device *dev, \ 145eca2ebc7SMartin Sperl struct device_attribute *attr, \ 146eca2ebc7SMartin Sperl char *buf) \ 147eca2ebc7SMartin Sperl { \ 1488caab75fSGeert Uytterhoeven struct spi_controller *ctlr = container_of(dev, \ 1498caab75fSGeert Uytterhoeven struct spi_controller, dev); \ 1506598b91bSDavid Jander return spi_statistics_##field##_show(ctlr->pcpu_statistics, buf); \ 151eca2ebc7SMartin Sperl } \ 1528caab75fSGeert Uytterhoeven static struct device_attribute dev_attr_spi_controller_##field = { \ 153ad25c92eSGeert Uytterhoeven .attr = { .name = file, .mode = 0444 }, \ 1548caab75fSGeert Uytterhoeven .show = spi_controller_##field##_show, \ 155eca2ebc7SMartin Sperl }; \ 156eca2ebc7SMartin Sperl static ssize_t spi_device_##field##_show(struct device *dev, \ 157eca2ebc7SMartin Sperl struct device_attribute *attr, \ 158eca2ebc7SMartin Sperl char *buf) \ 159eca2ebc7SMartin Sperl { \ 160d1eba93bSGeliang Tang struct spi_device *spi = to_spi_device(dev); \ 1616598b91bSDavid Jander return spi_statistics_##field##_show(spi->pcpu_statistics, buf); \ 162eca2ebc7SMartin Sperl } \ 163eca2ebc7SMartin Sperl static struct device_attribute dev_attr_spi_device_##field = { \ 164ad25c92eSGeert Uytterhoeven .attr = { .name = file, .mode = 0444 }, \ 165eca2ebc7SMartin Sperl .show = spi_device_##field##_show, \ 166eca2ebc7SMartin Sperl } 167eca2ebc7SMartin Sperl 1686598b91bSDavid Jander #define SPI_STATISTICS_SHOW_NAME(name, file, field) \ 169d501cc4cSDavid Jander static ssize_t spi_statistics_##name##_show(struct spi_statistics __percpu *stat, \ 170eca2ebc7SMartin Sperl char *buf) \ 171eca2ebc7SMartin Sperl { \ 172fc12d4bbSGeert Uytterhoeven return spi_emit_pcpu_stats(stat, buf, \ 173fc12d4bbSGeert Uytterhoeven offsetof(struct spi_statistics, field)); \ 174eca2ebc7SMartin Sperl } \ 175eca2ebc7SMartin Sperl SPI_STATISTICS_ATTRS(name, file) 176eca2ebc7SMartin Sperl 1776598b91bSDavid Jander #define SPI_STATISTICS_SHOW(field) \ 178eca2ebc7SMartin Sperl SPI_STATISTICS_SHOW_NAME(field, __stringify(field), \ 1796598b91bSDavid Jander field) 180eca2ebc7SMartin Sperl 1816598b91bSDavid Jander SPI_STATISTICS_SHOW(messages); 1826598b91bSDavid Jander SPI_STATISTICS_SHOW(transfers); 1836598b91bSDavid Jander SPI_STATISTICS_SHOW(errors); 1846598b91bSDavid Jander SPI_STATISTICS_SHOW(timedout); 185eca2ebc7SMartin Sperl 1866598b91bSDavid Jander SPI_STATISTICS_SHOW(spi_sync); 1876598b91bSDavid Jander SPI_STATISTICS_SHOW(spi_sync_immediate); 1886598b91bSDavid Jander SPI_STATISTICS_SHOW(spi_async); 189eca2ebc7SMartin Sperl 1906598b91bSDavid Jander SPI_STATISTICS_SHOW(bytes); 1916598b91bSDavid Jander SPI_STATISTICS_SHOW(bytes_rx); 1926598b91bSDavid Jander SPI_STATISTICS_SHOW(bytes_tx); 193eca2ebc7SMartin Sperl 1946b7bc061SMartin Sperl #define SPI_STATISTICS_TRANSFER_BYTES_HISTO(index, number) \ 1956b7bc061SMartin Sperl SPI_STATISTICS_SHOW_NAME(transfer_bytes_histo##index, \ 1966b7bc061SMartin Sperl "transfer_bytes_histo_" number, \ 1976598b91bSDavid Jander transfer_bytes_histo[index]) 1986b7bc061SMartin Sperl SPI_STATISTICS_TRANSFER_BYTES_HISTO(0, "0-1"); 1996b7bc061SMartin Sperl SPI_STATISTICS_TRANSFER_BYTES_HISTO(1, "2-3"); 2006b7bc061SMartin Sperl SPI_STATISTICS_TRANSFER_BYTES_HISTO(2, "4-7"); 2016b7bc061SMartin Sperl SPI_STATISTICS_TRANSFER_BYTES_HISTO(3, "8-15"); 2026b7bc061SMartin Sperl SPI_STATISTICS_TRANSFER_BYTES_HISTO(4, "16-31"); 2036b7bc061SMartin Sperl SPI_STATISTICS_TRANSFER_BYTES_HISTO(5, "32-63"); 2046b7bc061SMartin Sperl SPI_STATISTICS_TRANSFER_BYTES_HISTO(6, "64-127"); 2056b7bc061SMartin Sperl SPI_STATISTICS_TRANSFER_BYTES_HISTO(7, "128-255"); 2066b7bc061SMartin Sperl SPI_STATISTICS_TRANSFER_BYTES_HISTO(8, "256-511"); 2076b7bc061SMartin Sperl SPI_STATISTICS_TRANSFER_BYTES_HISTO(9, "512-1023"); 2086b7bc061SMartin Sperl SPI_STATISTICS_TRANSFER_BYTES_HISTO(10, "1024-2047"); 2096b7bc061SMartin Sperl SPI_STATISTICS_TRANSFER_BYTES_HISTO(11, "2048-4095"); 2106b7bc061SMartin Sperl SPI_STATISTICS_TRANSFER_BYTES_HISTO(12, "4096-8191"); 2116b7bc061SMartin Sperl SPI_STATISTICS_TRANSFER_BYTES_HISTO(13, "8192-16383"); 2126b7bc061SMartin Sperl SPI_STATISTICS_TRANSFER_BYTES_HISTO(14, "16384-32767"); 2136b7bc061SMartin Sperl SPI_STATISTICS_TRANSFER_BYTES_HISTO(15, "32768-65535"); 2146b7bc061SMartin Sperl SPI_STATISTICS_TRANSFER_BYTES_HISTO(16, "65536+"); 2156b7bc061SMartin Sperl 2166598b91bSDavid Jander SPI_STATISTICS_SHOW(transfers_split_maxsize); 217d9f12122SMartin Sperl 218aa7da564SGreg Kroah-Hartman static struct attribute *spi_dev_attrs[] = { 219aa7da564SGreg Kroah-Hartman &dev_attr_modalias.attr, 2205039563eSTrent Piepho &dev_attr_driver_override.attr, 221aa7da564SGreg Kroah-Hartman NULL, 2228ae12a0dSDavid Brownell }; 223eca2ebc7SMartin Sperl 224eca2ebc7SMartin Sperl static const struct attribute_group spi_dev_group = { 225eca2ebc7SMartin Sperl .attrs = spi_dev_attrs, 226eca2ebc7SMartin Sperl }; 227eca2ebc7SMartin Sperl 228eca2ebc7SMartin Sperl static struct attribute *spi_device_statistics_attrs[] = { 229eca2ebc7SMartin Sperl &dev_attr_spi_device_messages.attr, 230eca2ebc7SMartin Sperl &dev_attr_spi_device_transfers.attr, 231eca2ebc7SMartin Sperl &dev_attr_spi_device_errors.attr, 232eca2ebc7SMartin Sperl &dev_attr_spi_device_timedout.attr, 233eca2ebc7SMartin Sperl &dev_attr_spi_device_spi_sync.attr, 234eca2ebc7SMartin Sperl &dev_attr_spi_device_spi_sync_immediate.attr, 235eca2ebc7SMartin Sperl &dev_attr_spi_device_spi_async.attr, 236eca2ebc7SMartin Sperl &dev_attr_spi_device_bytes.attr, 237eca2ebc7SMartin Sperl &dev_attr_spi_device_bytes_rx.attr, 238eca2ebc7SMartin Sperl &dev_attr_spi_device_bytes_tx.attr, 2396b7bc061SMartin Sperl &dev_attr_spi_device_transfer_bytes_histo0.attr, 2406b7bc061SMartin Sperl &dev_attr_spi_device_transfer_bytes_histo1.attr, 2416b7bc061SMartin Sperl &dev_attr_spi_device_transfer_bytes_histo2.attr, 2426b7bc061SMartin Sperl &dev_attr_spi_device_transfer_bytes_histo3.attr, 2436b7bc061SMartin Sperl &dev_attr_spi_device_transfer_bytes_histo4.attr, 2446b7bc061SMartin Sperl &dev_attr_spi_device_transfer_bytes_histo5.attr, 2456b7bc061SMartin Sperl &dev_attr_spi_device_transfer_bytes_histo6.attr, 2466b7bc061SMartin Sperl &dev_attr_spi_device_transfer_bytes_histo7.attr, 2476b7bc061SMartin Sperl &dev_attr_spi_device_transfer_bytes_histo8.attr, 2486b7bc061SMartin Sperl &dev_attr_spi_device_transfer_bytes_histo9.attr, 2496b7bc061SMartin Sperl &dev_attr_spi_device_transfer_bytes_histo10.attr, 2506b7bc061SMartin Sperl &dev_attr_spi_device_transfer_bytes_histo11.attr, 2516b7bc061SMartin Sperl &dev_attr_spi_device_transfer_bytes_histo12.attr, 2526b7bc061SMartin Sperl &dev_attr_spi_device_transfer_bytes_histo13.attr, 2536b7bc061SMartin Sperl &dev_attr_spi_device_transfer_bytes_histo14.attr, 2546b7bc061SMartin Sperl &dev_attr_spi_device_transfer_bytes_histo15.attr, 2556b7bc061SMartin Sperl &dev_attr_spi_device_transfer_bytes_histo16.attr, 256d9f12122SMartin Sperl &dev_attr_spi_device_transfers_split_maxsize.attr, 257eca2ebc7SMartin Sperl NULL, 258eca2ebc7SMartin Sperl }; 259eca2ebc7SMartin Sperl 260eca2ebc7SMartin Sperl static const struct attribute_group spi_device_statistics_group = { 261eca2ebc7SMartin Sperl .name = "statistics", 262eca2ebc7SMartin Sperl .attrs = spi_device_statistics_attrs, 263eca2ebc7SMartin Sperl }; 264eca2ebc7SMartin Sperl 265eca2ebc7SMartin Sperl static const struct attribute_group *spi_dev_groups[] = { 266eca2ebc7SMartin Sperl &spi_dev_group, 267eca2ebc7SMartin Sperl &spi_device_statistics_group, 268eca2ebc7SMartin Sperl NULL, 269eca2ebc7SMartin Sperl }; 270eca2ebc7SMartin Sperl 2718caab75fSGeert Uytterhoeven static struct attribute *spi_controller_statistics_attrs[] = { 2728caab75fSGeert Uytterhoeven &dev_attr_spi_controller_messages.attr, 2738caab75fSGeert Uytterhoeven &dev_attr_spi_controller_transfers.attr, 2748caab75fSGeert Uytterhoeven &dev_attr_spi_controller_errors.attr, 2758caab75fSGeert Uytterhoeven &dev_attr_spi_controller_timedout.attr, 2768caab75fSGeert Uytterhoeven &dev_attr_spi_controller_spi_sync.attr, 2778caab75fSGeert Uytterhoeven &dev_attr_spi_controller_spi_sync_immediate.attr, 2788caab75fSGeert Uytterhoeven &dev_attr_spi_controller_spi_async.attr, 2798caab75fSGeert Uytterhoeven &dev_attr_spi_controller_bytes.attr, 2808caab75fSGeert Uytterhoeven &dev_attr_spi_controller_bytes_rx.attr, 2818caab75fSGeert Uytterhoeven &dev_attr_spi_controller_bytes_tx.attr, 2828caab75fSGeert Uytterhoeven &dev_attr_spi_controller_transfer_bytes_histo0.attr, 2838caab75fSGeert Uytterhoeven &dev_attr_spi_controller_transfer_bytes_histo1.attr, 2848caab75fSGeert Uytterhoeven &dev_attr_spi_controller_transfer_bytes_histo2.attr, 2858caab75fSGeert Uytterhoeven &dev_attr_spi_controller_transfer_bytes_histo3.attr, 2868caab75fSGeert Uytterhoeven &dev_attr_spi_controller_transfer_bytes_histo4.attr, 2878caab75fSGeert Uytterhoeven &dev_attr_spi_controller_transfer_bytes_histo5.attr, 2888caab75fSGeert Uytterhoeven &dev_attr_spi_controller_transfer_bytes_histo6.attr, 2898caab75fSGeert Uytterhoeven &dev_attr_spi_controller_transfer_bytes_histo7.attr, 2908caab75fSGeert Uytterhoeven &dev_attr_spi_controller_transfer_bytes_histo8.attr, 2918caab75fSGeert Uytterhoeven &dev_attr_spi_controller_transfer_bytes_histo9.attr, 2928caab75fSGeert Uytterhoeven &dev_attr_spi_controller_transfer_bytes_histo10.attr, 2938caab75fSGeert Uytterhoeven &dev_attr_spi_controller_transfer_bytes_histo11.attr, 2948caab75fSGeert Uytterhoeven &dev_attr_spi_controller_transfer_bytes_histo12.attr, 2958caab75fSGeert Uytterhoeven &dev_attr_spi_controller_transfer_bytes_histo13.attr, 2968caab75fSGeert Uytterhoeven &dev_attr_spi_controller_transfer_bytes_histo14.attr, 2978caab75fSGeert Uytterhoeven &dev_attr_spi_controller_transfer_bytes_histo15.attr, 2988caab75fSGeert Uytterhoeven &dev_attr_spi_controller_transfer_bytes_histo16.attr, 2998caab75fSGeert Uytterhoeven &dev_attr_spi_controller_transfers_split_maxsize.attr, 300eca2ebc7SMartin Sperl NULL, 301eca2ebc7SMartin Sperl }; 302eca2ebc7SMartin Sperl 3038caab75fSGeert Uytterhoeven static const struct attribute_group spi_controller_statistics_group = { 304eca2ebc7SMartin Sperl .name = "statistics", 3058caab75fSGeert Uytterhoeven .attrs = spi_controller_statistics_attrs, 306eca2ebc7SMartin Sperl }; 307eca2ebc7SMartin Sperl 308eca2ebc7SMartin Sperl static const struct attribute_group *spi_master_groups[] = { 3098caab75fSGeert Uytterhoeven &spi_controller_statistics_group, 310eca2ebc7SMartin Sperl NULL, 311eca2ebc7SMartin Sperl }; 312eca2ebc7SMartin Sperl 313d501cc4cSDavid Jander static void spi_statistics_add_transfer_stats(struct spi_statistics __percpu *pcpu_stats, 314eca2ebc7SMartin Sperl struct spi_transfer *xfer, 3158caab75fSGeert Uytterhoeven struct spi_controller *ctlr) 316eca2ebc7SMartin Sperl { 3176b7bc061SMartin Sperl int l2len = min(fls(xfer->len), SPI_STATISTICS_HISTO_SIZE) - 1; 31867b9d641SDavid Jander struct spi_statistics *stats; 3196b7bc061SMartin Sperl 3206b7bc061SMartin Sperl if (l2len < 0) 3216b7bc061SMartin Sperl l2len = 0; 322eca2ebc7SMartin Sperl 32367b9d641SDavid Jander get_cpu(); 32467b9d641SDavid Jander stats = this_cpu_ptr(pcpu_stats); 3256598b91bSDavid Jander u64_stats_update_begin(&stats->syncp); 326eca2ebc7SMartin Sperl 3276598b91bSDavid Jander u64_stats_inc(&stats->transfers); 3286598b91bSDavid Jander u64_stats_inc(&stats->transfer_bytes_histo[l2len]); 329eca2ebc7SMartin Sperl 3306598b91bSDavid Jander u64_stats_add(&stats->bytes, xfer->len); 331eca2ebc7SMartin Sperl if ((xfer->tx_buf) && 3328caab75fSGeert Uytterhoeven (xfer->tx_buf != ctlr->dummy_tx)) 3336598b91bSDavid Jander u64_stats_add(&stats->bytes_tx, xfer->len); 334eca2ebc7SMartin Sperl if ((xfer->rx_buf) && 3358caab75fSGeert Uytterhoeven (xfer->rx_buf != ctlr->dummy_rx)) 3366598b91bSDavid Jander u64_stats_add(&stats->bytes_rx, xfer->len); 337eca2ebc7SMartin Sperl 3386598b91bSDavid Jander u64_stats_update_end(&stats->syncp); 33967b9d641SDavid Jander put_cpu(); 340eca2ebc7SMartin Sperl } 3418ae12a0dSDavid Brownell 342350de7ceSAndy Shevchenko /* 343350de7ceSAndy Shevchenko * modalias support makes "modprobe $MODALIAS" new-style hotplug work, 3448ae12a0dSDavid Brownell * and the sysfs version makes coldplug work too. 3458ae12a0dSDavid Brownell */ 3463f076575SAndy Shevchenko static const struct spi_device_id *spi_match_id(const struct spi_device_id *id, const char *name) 34775368bf6SAnton Vorontsov { 34875368bf6SAnton Vorontsov while (id->name[0]) { 3493f076575SAndy Shevchenko if (!strcmp(name, id->name)) 35075368bf6SAnton Vorontsov return id; 35175368bf6SAnton Vorontsov id++; 35275368bf6SAnton Vorontsov } 35375368bf6SAnton Vorontsov return NULL; 35475368bf6SAnton Vorontsov } 35575368bf6SAnton Vorontsov 35675368bf6SAnton Vorontsov const struct spi_device_id *spi_get_device_id(const struct spi_device *sdev) 35775368bf6SAnton Vorontsov { 35875368bf6SAnton Vorontsov const struct spi_driver *sdrv = to_spi_driver(sdev->dev.driver); 35975368bf6SAnton Vorontsov 3603f076575SAndy Shevchenko return spi_match_id(sdrv->id_table, sdev->modalias); 36175368bf6SAnton Vorontsov } 36275368bf6SAnton Vorontsov EXPORT_SYMBOL_GPL(spi_get_device_id); 36375368bf6SAnton Vorontsov 364aea672d0SAndy Shevchenko const void *spi_get_device_match_data(const struct spi_device *sdev) 365aea672d0SAndy Shevchenko { 366aea672d0SAndy Shevchenko const void *match; 367aea672d0SAndy Shevchenko 368aea672d0SAndy Shevchenko match = device_get_match_data(&sdev->dev); 369aea672d0SAndy Shevchenko if (match) 370aea672d0SAndy Shevchenko return match; 371aea672d0SAndy Shevchenko 372aea672d0SAndy Shevchenko return (const void *)spi_get_device_id(sdev)->driver_data; 373aea672d0SAndy Shevchenko } 374aea672d0SAndy Shevchenko EXPORT_SYMBOL_GPL(spi_get_device_match_data); 375aea672d0SAndy Shevchenko 3768ae12a0dSDavid Brownell static int spi_match_device(struct device *dev, struct device_driver *drv) 3778ae12a0dSDavid Brownell { 3788ae12a0dSDavid Brownell const struct spi_device *spi = to_spi_device(dev); 37975368bf6SAnton Vorontsov const struct spi_driver *sdrv = to_spi_driver(drv); 38075368bf6SAnton Vorontsov 3815039563eSTrent Piepho /* Check override first, and if set, only use the named driver */ 3825039563eSTrent Piepho if (spi->driver_override) 3835039563eSTrent Piepho return strcmp(spi->driver_override, drv->name) == 0; 3845039563eSTrent Piepho 3852b7a32f7SSinan Akman /* Attempt an OF style match */ 3862b7a32f7SSinan Akman if (of_driver_match_device(dev, drv)) 3872b7a32f7SSinan Akman return 1; 3882b7a32f7SSinan Akman 38964bee4d2SMika Westerberg /* Then try ACPI */ 39064bee4d2SMika Westerberg if (acpi_driver_match_device(dev, drv)) 39164bee4d2SMika Westerberg return 1; 39264bee4d2SMika Westerberg 39375368bf6SAnton Vorontsov if (sdrv->id_table) 3943f076575SAndy Shevchenko return !!spi_match_id(sdrv->id_table, spi->modalias); 3958ae12a0dSDavid Brownell 39635f74fcaSKay Sievers return strcmp(spi->modalias, drv->name) == 0; 3978ae12a0dSDavid Brownell } 3988ae12a0dSDavid Brownell 3992a81ada3SGreg Kroah-Hartman static int spi_uevent(const struct device *dev, struct kobj_uevent_env *env) 4008ae12a0dSDavid Brownell { 4018ae12a0dSDavid Brownell const struct spi_device *spi = to_spi_device(dev); 4028c4ff6d0SZhang Rui int rc; 4038c4ff6d0SZhang Rui 4048c4ff6d0SZhang Rui rc = acpi_device_uevent_modalias(dev, env); 4058c4ff6d0SZhang Rui if (rc != -ENODEV) 4068c4ff6d0SZhang Rui return rc; 4078ae12a0dSDavid Brownell 4082856670fSAndy Shevchenko return add_uevent_var(env, "MODALIAS=%s%s", SPI_MODULE_PREFIX, spi->modalias); 4098ae12a0dSDavid Brownell } 4108ae12a0dSDavid Brownell 4119db34ee6SUwe Kleine-König static int spi_probe(struct device *dev) 412b885244eSDavid Brownell { 413b885244eSDavid Brownell const struct spi_driver *sdrv = to_spi_driver(dev->driver); 41444af7927SJon Hunter struct spi_device *spi = to_spi_device(dev); 41533cf00e5SMika Westerberg int ret; 416b885244eSDavid Brownell 41786be408bSSylwester Nawrocki ret = of_clk_set_defaults(dev->of_node, false); 41886be408bSSylwester Nawrocki if (ret) 41986be408bSSylwester Nawrocki return ret; 42086be408bSSylwester Nawrocki 42144af7927SJon Hunter if (dev->of_node) { 42244af7927SJon Hunter spi->irq = of_irq_get(dev->of_node, 0); 42344af7927SJon Hunter if (spi->irq == -EPROBE_DEFER) 42444af7927SJon Hunter return -EPROBE_DEFER; 42544af7927SJon Hunter if (spi->irq < 0) 42644af7927SJon Hunter spi->irq = 0; 42744af7927SJon Hunter } 42844af7927SJon Hunter 429676e7c25SUlf Hansson ret = dev_pm_domain_attach(dev, true); 43071f277a7SUlf Hansson if (ret) 43171f277a7SUlf Hansson return ret; 43271f277a7SUlf Hansson 433440408dbSUwe Kleine-König if (sdrv->probe) { 43444af7927SJon Hunter ret = sdrv->probe(spi); 43533cf00e5SMika Westerberg if (ret) 436676e7c25SUlf Hansson dev_pm_domain_detach(dev, true); 437440408dbSUwe Kleine-König } 43833cf00e5SMika Westerberg 43933cf00e5SMika Westerberg return ret; 440b885244eSDavid Brownell } 441b885244eSDavid Brownell 442fc7a6209SUwe Kleine-König static void spi_remove(struct device *dev) 443b885244eSDavid Brownell { 444b885244eSDavid Brownell const struct spi_driver *sdrv = to_spi_driver(dev->driver); 445b885244eSDavid Brownell 446a0386bbaSUwe Kleine-König if (sdrv->remove) 447a0386bbaSUwe Kleine-König sdrv->remove(to_spi_device(dev)); 4487795d475SUwe Kleine-König 449676e7c25SUlf Hansson dev_pm_domain_detach(dev, true); 450b885244eSDavid Brownell } 451b885244eSDavid Brownell 4529db34ee6SUwe Kleine-König static void spi_shutdown(struct device *dev) 453b885244eSDavid Brownell { 454a6f483b2SMarek Szyprowski if (dev->driver) { 455b885244eSDavid Brownell const struct spi_driver *sdrv = to_spi_driver(dev->driver); 456b885244eSDavid Brownell 4579db34ee6SUwe Kleine-König if (sdrv->shutdown) 458b885244eSDavid Brownell sdrv->shutdown(to_spi_device(dev)); 459b885244eSDavid Brownell } 460a6f483b2SMarek Szyprowski } 461b885244eSDavid Brownell 4629db34ee6SUwe Kleine-König struct bus_type spi_bus_type = { 4639db34ee6SUwe Kleine-König .name = "spi", 4649db34ee6SUwe Kleine-König .dev_groups = spi_dev_groups, 4659db34ee6SUwe Kleine-König .match = spi_match_device, 4669db34ee6SUwe Kleine-König .uevent = spi_uevent, 4679db34ee6SUwe Kleine-König .probe = spi_probe, 4689db34ee6SUwe Kleine-König .remove = spi_remove, 4699db34ee6SUwe Kleine-König .shutdown = spi_shutdown, 4709db34ee6SUwe Kleine-König }; 4719db34ee6SUwe Kleine-König EXPORT_SYMBOL_GPL(spi_bus_type); 4729db34ee6SUwe Kleine-König 47333e34dc6SDavid Brownell /** 474ca5d2485SAndrew F. Davis * __spi_register_driver - register a SPI driver 47588c9321dSThierry Reding * @owner: owner module of the driver to register 47633e34dc6SDavid Brownell * @sdrv: the driver to register 47733e34dc6SDavid Brownell * Context: can sleep 47897d56dc6SJavier Martinez Canillas * 47997d56dc6SJavier Martinez Canillas * Return: zero on success, else a negative error code. 48033e34dc6SDavid Brownell */ 481ca5d2485SAndrew F. Davis int __spi_register_driver(struct module *owner, struct spi_driver *sdrv) 482b885244eSDavid Brownell { 483ca5d2485SAndrew F. Davis sdrv->driver.owner = owner; 484b885244eSDavid Brownell sdrv->driver.bus = &spi_bus_type; 4855fa6863bSMark Brown 4865fa6863bSMark Brown /* 4875fa6863bSMark Brown * For Really Good Reasons we use spi: modaliases not of: 4885fa6863bSMark Brown * modaliases for DT so module autoloading won't work if we 4895fa6863bSMark Brown * don't have a spi_device_id as well as a compatible string. 4905fa6863bSMark Brown */ 4915fa6863bSMark Brown if (sdrv->driver.of_match_table) { 4925fa6863bSMark Brown const struct of_device_id *of_id; 4935fa6863bSMark Brown 4945fa6863bSMark Brown for (of_id = sdrv->driver.of_match_table; of_id->compatible[0]; 4955fa6863bSMark Brown of_id++) { 4965fa6863bSMark Brown const char *of_name; 4975fa6863bSMark Brown 4985fa6863bSMark Brown /* Strip off any vendor prefix */ 4995fa6863bSMark Brown of_name = strnchr(of_id->compatible, 5005fa6863bSMark Brown sizeof(of_id->compatible), ','); 5015fa6863bSMark Brown if (of_name) 5025fa6863bSMark Brown of_name++; 5035fa6863bSMark Brown else 5045fa6863bSMark Brown of_name = of_id->compatible; 5055fa6863bSMark Brown 5065fa6863bSMark Brown if (sdrv->id_table) { 5075fa6863bSMark Brown const struct spi_device_id *spi_id; 5085fa6863bSMark Brown 5093f076575SAndy Shevchenko spi_id = spi_match_id(sdrv->id_table, of_name); 510b79332efSAndy Shevchenko if (spi_id) 5115fa6863bSMark Brown continue; 5125fa6863bSMark Brown } else { 5135fa6863bSMark Brown if (strcmp(sdrv->driver.name, of_name) == 0) 5145fa6863bSMark Brown continue; 5155fa6863bSMark Brown } 5165fa6863bSMark Brown 5175fa6863bSMark Brown pr_warn("SPI driver %s has no spi_device_id for %s\n", 5185fa6863bSMark Brown sdrv->driver.name, of_id->compatible); 5195fa6863bSMark Brown } 5205fa6863bSMark Brown } 5215fa6863bSMark Brown 522b885244eSDavid Brownell return driver_register(&sdrv->driver); 523b885244eSDavid Brownell } 524ca5d2485SAndrew F. Davis EXPORT_SYMBOL_GPL(__spi_register_driver); 525b885244eSDavid Brownell 5268ae12a0dSDavid Brownell /*-------------------------------------------------------------------------*/ 5278ae12a0dSDavid Brownell 528350de7ceSAndy Shevchenko /* 529350de7ceSAndy Shevchenko * SPI devices should normally not be created by SPI device drivers; that 5308caab75fSGeert Uytterhoeven * would make them board-specific. Similarly with SPI controller drivers. 5318ae12a0dSDavid Brownell * Device registration normally goes into like arch/.../mach.../board-YYY.c 5328ae12a0dSDavid Brownell * with other readonly (flashable) information about mainboard devices. 5338ae12a0dSDavid Brownell */ 5348ae12a0dSDavid Brownell 5358ae12a0dSDavid Brownell struct boardinfo { 5368ae12a0dSDavid Brownell struct list_head list; 5372b9603a0SFeng Tang struct spi_board_info board_info; 5388ae12a0dSDavid Brownell }; 5398ae12a0dSDavid Brownell 5408ae12a0dSDavid Brownell static LIST_HEAD(board_list); 5418caab75fSGeert Uytterhoeven static LIST_HEAD(spi_controller_list); 5422b9603a0SFeng Tang 5432b9603a0SFeng Tang /* 544be73e323SAndy Shevchenko * Used to protect add/del operation for board_info list and 545350de7ceSAndy Shevchenko * spi_controller list, and their matching process also used 546350de7ceSAndy Shevchenko * to protect object of type struct idr. 5472b9603a0SFeng Tang */ 54894040828SMatthias Kaehlcke static DEFINE_MUTEX(board_lock); 5498ae12a0dSDavid Brownell 550dc87c98eSGrant Likely /** 551dc87c98eSGrant Likely * spi_alloc_device - Allocate a new SPI device 5528caab75fSGeert Uytterhoeven * @ctlr: Controller to which device is connected 553dc87c98eSGrant Likely * Context: can sleep 554dc87c98eSGrant Likely * 555dc87c98eSGrant Likely * Allows a driver to allocate and initialize a spi_device without 556dc87c98eSGrant Likely * registering it immediately. This allows a driver to directly 557dc87c98eSGrant Likely * fill the spi_device with device parameters before calling 558dc87c98eSGrant Likely * spi_add_device() on it. 559dc87c98eSGrant Likely * 560dc87c98eSGrant Likely * Caller is responsible to call spi_add_device() on the returned 5618caab75fSGeert Uytterhoeven * spi_device structure to add it to the SPI controller. If the caller 562dc87c98eSGrant Likely * needs to discard the spi_device without adding it, then it should 563dc87c98eSGrant Likely * call spi_dev_put() on it. 564dc87c98eSGrant Likely * 56597d56dc6SJavier Martinez Canillas * Return: a pointer to the new device, or NULL. 566dc87c98eSGrant Likely */ 567e3dc1399SStefan Binding struct spi_device *spi_alloc_device(struct spi_controller *ctlr) 568dc87c98eSGrant Likely { 569dc87c98eSGrant Likely struct spi_device *spi; 570dc87c98eSGrant Likely 5718caab75fSGeert Uytterhoeven if (!spi_controller_get(ctlr)) 572dc87c98eSGrant Likely return NULL; 573dc87c98eSGrant Likely 5745fe5f05eSJingoo Han spi = kzalloc(sizeof(*spi), GFP_KERNEL); 575dc87c98eSGrant Likely if (!spi) { 5768caab75fSGeert Uytterhoeven spi_controller_put(ctlr); 577dc87c98eSGrant Likely return NULL; 578dc87c98eSGrant Likely } 579dc87c98eSGrant Likely 5806598b91bSDavid Jander spi->pcpu_statistics = spi_alloc_pcpu_stats(NULL); 5816598b91bSDavid Jander if (!spi->pcpu_statistics) { 5826598b91bSDavid Jander kfree(spi); 5836598b91bSDavid Jander spi_controller_put(ctlr); 5846598b91bSDavid Jander return NULL; 5856598b91bSDavid Jander } 5866598b91bSDavid Jander 5878caab75fSGeert Uytterhoeven spi->master = spi->controller = ctlr; 5888caab75fSGeert Uytterhoeven spi->dev.parent = &ctlr->dev; 589dc87c98eSGrant Likely spi->dev.bus = &spi_bus_type; 590dc87c98eSGrant Likely spi->dev.release = spidev_release; 591ea235786SJohn Garry spi->mode = ctlr->buswidth_override_bits; 592eca2ebc7SMartin Sperl 593dc87c98eSGrant Likely device_initialize(&spi->dev); 594dc87c98eSGrant Likely return spi; 595dc87c98eSGrant Likely } 596e3dc1399SStefan Binding EXPORT_SYMBOL_GPL(spi_alloc_device); 597dc87c98eSGrant Likely 598e13ac47bSJarkko Nikula static void spi_dev_set_name(struct spi_device *spi) 599e13ac47bSJarkko Nikula { 600e13ac47bSJarkko Nikula struct acpi_device *adev = ACPI_COMPANION(&spi->dev); 601e13ac47bSJarkko Nikula 602e13ac47bSJarkko Nikula if (adev) { 603e13ac47bSJarkko Nikula dev_set_name(&spi->dev, "spi-%s", acpi_dev_name(adev)); 604e13ac47bSJarkko Nikula return; 605e13ac47bSJarkko Nikula } 606e13ac47bSJarkko Nikula 6078caab75fSGeert Uytterhoeven dev_set_name(&spi->dev, "%s.%u", dev_name(&spi->controller->dev), 608303feb3cSAmit Kumar Mahapatra spi_get_chipselect(spi, 0)); 609e13ac47bSJarkko Nikula } 610e13ac47bSJarkko Nikula 611b6fb8d3aSMika Westerberg static int spi_dev_check(struct device *dev, void *data) 612b6fb8d3aSMika Westerberg { 613b6fb8d3aSMika Westerberg struct spi_device *spi = to_spi_device(dev); 614b6fb8d3aSMika Westerberg struct spi_device *new_spi = data; 615b6fb8d3aSMika Westerberg 6168caab75fSGeert Uytterhoeven if (spi->controller == new_spi->controller && 617303feb3cSAmit Kumar Mahapatra spi_get_chipselect(spi, 0) == spi_get_chipselect(new_spi, 0)) 618b6fb8d3aSMika Westerberg return -EBUSY; 619b6fb8d3aSMika Westerberg return 0; 620b6fb8d3aSMika Westerberg } 621b6fb8d3aSMika Westerberg 622c7299feaSSaravana Kannan static void spi_cleanup(struct spi_device *spi) 623c7299feaSSaravana Kannan { 624c7299feaSSaravana Kannan if (spi->controller->cleanup) 625c7299feaSSaravana Kannan spi->controller->cleanup(spi); 626c7299feaSSaravana Kannan } 627c7299feaSSaravana Kannan 6280c79378cSSebastian Reichel static int __spi_add_device(struct spi_device *spi) 6290c79378cSSebastian Reichel { 6300c79378cSSebastian Reichel struct spi_controller *ctlr = spi->controller; 6310c79378cSSebastian Reichel struct device *dev = ctlr->dev.parent; 6320c79378cSSebastian Reichel int status; 6330c79378cSSebastian Reichel 6346bfb15f3SUwe Kleine-König /* 6356bfb15f3SUwe Kleine-König * We need to make sure there's no other device with this 6366bfb15f3SUwe Kleine-König * chipselect **BEFORE** we call setup(), else we'll trash 6376bfb15f3SUwe Kleine-König * its configuration. 6386bfb15f3SUwe Kleine-König */ 6390c79378cSSebastian Reichel status = bus_for_each_dev(&spi_bus_type, NULL, spi, spi_dev_check); 6400c79378cSSebastian Reichel if (status) { 6410c79378cSSebastian Reichel dev_err(dev, "chipselect %d already in use\n", 642303feb3cSAmit Kumar Mahapatra spi_get_chipselect(spi, 0)); 6430c79378cSSebastian Reichel return status; 6440c79378cSSebastian Reichel } 6450c79378cSSebastian Reichel 6460c79378cSSebastian Reichel /* Controller may unregister concurrently */ 6470c79378cSSebastian Reichel if (IS_ENABLED(CONFIG_SPI_DYNAMIC) && 6480c79378cSSebastian Reichel !device_is_registered(&ctlr->dev)) { 6490c79378cSSebastian Reichel return -ENODEV; 6500c79378cSSebastian Reichel } 6510c79378cSSebastian Reichel 6520c79378cSSebastian Reichel if (ctlr->cs_gpiods) 653303feb3cSAmit Kumar Mahapatra spi_set_csgpiod(spi, 0, ctlr->cs_gpiods[spi_get_chipselect(spi, 0)]); 6540c79378cSSebastian Reichel 655350de7ceSAndy Shevchenko /* 656350de7ceSAndy Shevchenko * Drivers may modify this initial i/o setup, but will 6570c79378cSSebastian Reichel * normally rely on the device being setup. Devices 6580c79378cSSebastian Reichel * using SPI_CS_HIGH can't coexist well otherwise... 6590c79378cSSebastian Reichel */ 6600c79378cSSebastian Reichel status = spi_setup(spi); 6610c79378cSSebastian Reichel if (status < 0) { 6620c79378cSSebastian Reichel dev_err(dev, "can't setup %s, status %d\n", 6630c79378cSSebastian Reichel dev_name(&spi->dev), status); 6640c79378cSSebastian Reichel return status; 6650c79378cSSebastian Reichel } 6660c79378cSSebastian Reichel 6670c79378cSSebastian Reichel /* Device may be bound to an active driver when this returns */ 6680c79378cSSebastian Reichel status = device_add(&spi->dev); 6690c79378cSSebastian Reichel if (status < 0) { 6700c79378cSSebastian Reichel dev_err(dev, "can't add %s, status %d\n", 6710c79378cSSebastian Reichel dev_name(&spi->dev), status); 6720c79378cSSebastian Reichel spi_cleanup(spi); 6730c79378cSSebastian Reichel } else { 6740c79378cSSebastian Reichel dev_dbg(dev, "registered child %s\n", dev_name(&spi->dev)); 6750c79378cSSebastian Reichel } 6760c79378cSSebastian Reichel 6770c79378cSSebastian Reichel return status; 6780c79378cSSebastian Reichel } 6790c79378cSSebastian Reichel 680dc87c98eSGrant Likely /** 681dc87c98eSGrant Likely * spi_add_device - Add spi_device allocated with spi_alloc_device 682dc87c98eSGrant Likely * @spi: spi_device to register 683dc87c98eSGrant Likely * 684dc87c98eSGrant Likely * Companion function to spi_alloc_device. Devices allocated with 685dc87c98eSGrant Likely * spi_alloc_device can be added onto the spi bus with this function. 686dc87c98eSGrant Likely * 68797d56dc6SJavier Martinez Canillas * Return: 0 on success; negative errno on failure 688dc87c98eSGrant Likely */ 689e3dc1399SStefan Binding int spi_add_device(struct spi_device *spi) 690dc87c98eSGrant Likely { 6918caab75fSGeert Uytterhoeven struct spi_controller *ctlr = spi->controller; 6928caab75fSGeert Uytterhoeven struct device *dev = ctlr->dev.parent; 693dc87c98eSGrant Likely int status; 694dc87c98eSGrant Likely 695dc87c98eSGrant Likely /* Chipselects are numbered 0..max; validate. */ 696303feb3cSAmit Kumar Mahapatra if (spi_get_chipselect(spi, 0) >= ctlr->num_chipselect) { 697303feb3cSAmit Kumar Mahapatra dev_err(dev, "cs%d >= max %d\n", spi_get_chipselect(spi, 0), 6988caab75fSGeert Uytterhoeven ctlr->num_chipselect); 699dc87c98eSGrant Likely return -EINVAL; 700dc87c98eSGrant Likely } 701dc87c98eSGrant Likely 702dc87c98eSGrant Likely /* Set the bus ID string */ 703e13ac47bSJarkko Nikula spi_dev_set_name(spi); 704e48880e0SDavid Brownell 7056098475dSMark Brown mutex_lock(&ctlr->add_lock); 7060c79378cSSebastian Reichel status = __spi_add_device(spi); 7076098475dSMark Brown mutex_unlock(&ctlr->add_lock); 708e48880e0SDavid Brownell return status; 709dc87c98eSGrant Likely } 710e3dc1399SStefan Binding EXPORT_SYMBOL_GPL(spi_add_device); 7118ae12a0dSDavid Brownell 7120c79378cSSebastian Reichel static int spi_add_device_locked(struct spi_device *spi) 7130c79378cSSebastian Reichel { 7140c79378cSSebastian Reichel struct spi_controller *ctlr = spi->controller; 7150c79378cSSebastian Reichel struct device *dev = ctlr->dev.parent; 7160c79378cSSebastian Reichel 7170c79378cSSebastian Reichel /* Chipselects are numbered 0..max; validate. */ 718303feb3cSAmit Kumar Mahapatra if (spi_get_chipselect(spi, 0) >= ctlr->num_chipselect) { 719303feb3cSAmit Kumar Mahapatra dev_err(dev, "cs%d >= max %d\n", spi_get_chipselect(spi, 0), 7200c79378cSSebastian Reichel ctlr->num_chipselect); 7210c79378cSSebastian Reichel return -EINVAL; 7220c79378cSSebastian Reichel } 7230c79378cSSebastian Reichel 7240c79378cSSebastian Reichel /* Set the bus ID string */ 7250c79378cSSebastian Reichel spi_dev_set_name(spi); 7260c79378cSSebastian Reichel 7276098475dSMark Brown WARN_ON(!mutex_is_locked(&ctlr->add_lock)); 7280c79378cSSebastian Reichel return __spi_add_device(spi); 7290c79378cSSebastian Reichel } 7300c79378cSSebastian Reichel 73133e34dc6SDavid Brownell /** 73233e34dc6SDavid Brownell * spi_new_device - instantiate one new SPI device 7338caab75fSGeert Uytterhoeven * @ctlr: Controller to which device is connected 73433e34dc6SDavid Brownell * @chip: Describes the SPI device 73533e34dc6SDavid Brownell * Context: can sleep 73633e34dc6SDavid Brownell * 73733e34dc6SDavid Brownell * On typical mainboards, this is purely internal; and it's not needed 7388ae12a0dSDavid Brownell * after board init creates the hard-wired devices. Some development 7398ae12a0dSDavid Brownell * platforms may not be able to use spi_register_board_info though, and 7408ae12a0dSDavid Brownell * this is exported so that for example a USB or parport based adapter 7418ae12a0dSDavid Brownell * driver could add devices (which it would learn about out-of-band). 742082c8cb4SDavid Brownell * 74397d56dc6SJavier Martinez Canillas * Return: the new device, or NULL. 7448ae12a0dSDavid Brownell */ 7458caab75fSGeert Uytterhoeven struct spi_device *spi_new_device(struct spi_controller *ctlr, 746e9d5a461SAdrian Bunk struct spi_board_info *chip) 7478ae12a0dSDavid Brownell { 7488ae12a0dSDavid Brownell struct spi_device *proxy; 7498ae12a0dSDavid Brownell int status; 7508ae12a0dSDavid Brownell 751350de7ceSAndy Shevchenko /* 752350de7ceSAndy Shevchenko * NOTE: caller did any chip->bus_num checks necessary. 753082c8cb4SDavid Brownell * 754082c8cb4SDavid Brownell * Also, unless we change the return value convention to use 755082c8cb4SDavid Brownell * error-or-pointer (not NULL-or-pointer), troubleshootability 756082c8cb4SDavid Brownell * suggests syslogged diagnostics are best here (ugh). 757082c8cb4SDavid Brownell */ 758082c8cb4SDavid Brownell 7598caab75fSGeert Uytterhoeven proxy = spi_alloc_device(ctlr); 760dc87c98eSGrant Likely if (!proxy) 7618ae12a0dSDavid Brownell return NULL; 7628ae12a0dSDavid Brownell 763102eb975SGrant Likely WARN_ON(strlen(chip->modalias) >= sizeof(proxy->modalias)); 764102eb975SGrant Likely 765303feb3cSAmit Kumar Mahapatra spi_set_chipselect(proxy, 0, chip->chip_select); 7668ae12a0dSDavid Brownell proxy->max_speed_hz = chip->max_speed_hz; 767980a01c9SDavid Brownell proxy->mode = chip->mode; 7688ae12a0dSDavid Brownell proxy->irq = chip->irq; 76951e99de5SWolfram Sang strscpy(proxy->modalias, chip->modalias, sizeof(proxy->modalias)); 7708ae12a0dSDavid Brownell proxy->dev.platform_data = (void *) chip->platform_data; 7718ae12a0dSDavid Brownell proxy->controller_data = chip->controller_data; 7728ae12a0dSDavid Brownell proxy->controller_state = NULL; 7738ae12a0dSDavid Brownell 77447afc77bSHeikki Krogerus if (chip->swnode) { 77547afc77bSHeikki Krogerus status = device_add_software_node(&proxy->dev, chip->swnode); 776826cf175SDmitry Torokhov if (status) { 7779d902c2aSColin Ian King dev_err(&ctlr->dev, "failed to add software node to '%s': %d\n", 778826cf175SDmitry Torokhov chip->modalias, status); 779826cf175SDmitry Torokhov goto err_dev_put; 780826cf175SDmitry Torokhov } 7818ae12a0dSDavid Brownell } 782dc87c98eSGrant Likely 783826cf175SDmitry Torokhov status = spi_add_device(proxy); 784826cf175SDmitry Torokhov if (status < 0) 785df41a5daSHeikki Krogerus goto err_dev_put; 786826cf175SDmitry Torokhov 787dc87c98eSGrant Likely return proxy; 788826cf175SDmitry Torokhov 789826cf175SDmitry Torokhov err_dev_put: 790df41a5daSHeikki Krogerus device_remove_software_node(&proxy->dev); 791826cf175SDmitry Torokhov spi_dev_put(proxy); 792826cf175SDmitry Torokhov return NULL; 793dc87c98eSGrant Likely } 7948ae12a0dSDavid Brownell EXPORT_SYMBOL_GPL(spi_new_device); 7958ae12a0dSDavid Brownell 7963b1884c2SGeert Uytterhoeven /** 7973b1884c2SGeert Uytterhoeven * spi_unregister_device - unregister a single SPI device 7983b1884c2SGeert Uytterhoeven * @spi: spi_device to unregister 7993b1884c2SGeert Uytterhoeven * 8003b1884c2SGeert Uytterhoeven * Start making the passed SPI device vanish. Normally this would be handled 8018caab75fSGeert Uytterhoeven * by spi_unregister_controller(). 8023b1884c2SGeert Uytterhoeven */ 8033b1884c2SGeert Uytterhoeven void spi_unregister_device(struct spi_device *spi) 8043b1884c2SGeert Uytterhoeven { 805bd6c1644SGeert Uytterhoeven if (!spi) 806bd6c1644SGeert Uytterhoeven return; 807bd6c1644SGeert Uytterhoeven 8088324147fSJohan Hovold if (spi->dev.of_node) { 809bd6c1644SGeert Uytterhoeven of_node_clear_flag(spi->dev.of_node, OF_POPULATED); 8108324147fSJohan Hovold of_node_put(spi->dev.of_node); 8118324147fSJohan Hovold } 8127f24467fSOctavian Purdila if (ACPI_COMPANION(&spi->dev)) 8137f24467fSOctavian Purdila acpi_device_clear_enumerated(ACPI_COMPANION(&spi->dev)); 81447afc77bSHeikki Krogerus device_remove_software_node(&spi->dev); 81527e7db56SSaravana Kannan device_del(&spi->dev); 81627e7db56SSaravana Kannan spi_cleanup(spi); 81727e7db56SSaravana Kannan put_device(&spi->dev); 8183b1884c2SGeert Uytterhoeven } 8193b1884c2SGeert Uytterhoeven EXPORT_SYMBOL_GPL(spi_unregister_device); 8203b1884c2SGeert Uytterhoeven 8218caab75fSGeert Uytterhoeven static void spi_match_controller_to_boardinfo(struct spi_controller *ctlr, 8222b9603a0SFeng Tang struct spi_board_info *bi) 8232b9603a0SFeng Tang { 8242b9603a0SFeng Tang struct spi_device *dev; 8252b9603a0SFeng Tang 8268caab75fSGeert Uytterhoeven if (ctlr->bus_num != bi->bus_num) 8272b9603a0SFeng Tang return; 8282b9603a0SFeng Tang 8298caab75fSGeert Uytterhoeven dev = spi_new_device(ctlr, bi); 8302b9603a0SFeng Tang if (!dev) 8318caab75fSGeert Uytterhoeven dev_err(ctlr->dev.parent, "can't create new device for %s\n", 8322b9603a0SFeng Tang bi->modalias); 8332b9603a0SFeng Tang } 8342b9603a0SFeng Tang 83533e34dc6SDavid Brownell /** 83633e34dc6SDavid Brownell * spi_register_board_info - register SPI devices for a given board 83733e34dc6SDavid Brownell * @info: array of chip descriptors 83833e34dc6SDavid Brownell * @n: how many descriptors are provided 83933e34dc6SDavid Brownell * Context: can sleep 84033e34dc6SDavid Brownell * 8418ae12a0dSDavid Brownell * Board-specific early init code calls this (probably during arch_initcall) 8428ae12a0dSDavid Brownell * with segments of the SPI device table. Any device nodes are created later, 8438ae12a0dSDavid Brownell * after the relevant parent SPI controller (bus_num) is defined. We keep 8448ae12a0dSDavid Brownell * this table of devices forever, so that reloading a controller driver will 8458ae12a0dSDavid Brownell * not make Linux forget about these hard-wired devices. 8468ae12a0dSDavid Brownell * 8478ae12a0dSDavid Brownell * Other code can also call this, e.g. a particular add-on board might provide 8488ae12a0dSDavid Brownell * SPI devices through its expansion connector, so code initializing that board 8498ae12a0dSDavid Brownell * would naturally declare its SPI devices. 8508ae12a0dSDavid Brownell * 8518ae12a0dSDavid Brownell * The board info passed can safely be __initdata ... but be careful of 8528ae12a0dSDavid Brownell * any embedded pointers (platform_data, etc), they're copied as-is. 85397d56dc6SJavier Martinez Canillas * 85497d56dc6SJavier Martinez Canillas * Return: zero on success, else a negative error code. 8558ae12a0dSDavid Brownell */ 856fd4a319bSGrant Likely int spi_register_board_info(struct spi_board_info const *info, unsigned n) 8578ae12a0dSDavid Brownell { 8588ae12a0dSDavid Brownell struct boardinfo *bi; 8592b9603a0SFeng Tang int i; 8608ae12a0dSDavid Brownell 861c7908a37SXiubo Li if (!n) 862f974cf57SDmitry Torokhov return 0; 863c7908a37SXiubo Li 864f9bdb7fdSMarkus Elfring bi = kcalloc(n, sizeof(*bi), GFP_KERNEL); 8658ae12a0dSDavid Brownell if (!bi) 8668ae12a0dSDavid Brownell return -ENOMEM; 8678ae12a0dSDavid Brownell 8682b9603a0SFeng Tang for (i = 0; i < n; i++, bi++, info++) { 8698caab75fSGeert Uytterhoeven struct spi_controller *ctlr; 8702b9603a0SFeng Tang 8712b9603a0SFeng Tang memcpy(&bi->board_info, info, sizeof(*info)); 872826cf175SDmitry Torokhov 87394040828SMatthias Kaehlcke mutex_lock(&board_lock); 8748ae12a0dSDavid Brownell list_add_tail(&bi->list, &board_list); 8758caab75fSGeert Uytterhoeven list_for_each_entry(ctlr, &spi_controller_list, list) 8768caab75fSGeert Uytterhoeven spi_match_controller_to_boardinfo(ctlr, 8778caab75fSGeert Uytterhoeven &bi->board_info); 87894040828SMatthias Kaehlcke mutex_unlock(&board_lock); 8792b9603a0SFeng Tang } 8802b9603a0SFeng Tang 8818ae12a0dSDavid Brownell return 0; 8828ae12a0dSDavid Brownell } 8838ae12a0dSDavid Brownell 8848ae12a0dSDavid Brownell /*-------------------------------------------------------------------------*/ 8858ae12a0dSDavid Brownell 886fb51601bSUwe Kleine-König /* Core methods for SPI resource management */ 887fb51601bSUwe Kleine-König 888fb51601bSUwe Kleine-König /** 889fb51601bSUwe Kleine-König * spi_res_alloc - allocate a spi resource that is life-cycle managed 890fb51601bSUwe Kleine-König * during the processing of a spi_message while using 891fb51601bSUwe Kleine-König * spi_transfer_one 892fb51601bSUwe Kleine-König * @spi: the spi device for which we allocate memory 893fb51601bSUwe Kleine-König * @release: the release code to execute for this resource 894fb51601bSUwe Kleine-König * @size: size to alloc and return 895fb51601bSUwe Kleine-König * @gfp: GFP allocation flags 896fb51601bSUwe Kleine-König * 897fb51601bSUwe Kleine-König * Return: the pointer to the allocated data 898fb51601bSUwe Kleine-König * 899fb51601bSUwe Kleine-König * This may get enhanced in the future to allocate from a memory pool 900fb51601bSUwe Kleine-König * of the @spi_device or @spi_controller to avoid repeated allocations. 901fb51601bSUwe Kleine-König */ 902da21fde0SUwe Kleine-König static void *spi_res_alloc(struct spi_device *spi, spi_res_release_t release, 903fb51601bSUwe Kleine-König size_t size, gfp_t gfp) 904fb51601bSUwe Kleine-König { 905fb51601bSUwe Kleine-König struct spi_res *sres; 906fb51601bSUwe Kleine-König 907fb51601bSUwe Kleine-König sres = kzalloc(sizeof(*sres) + size, gfp); 908fb51601bSUwe Kleine-König if (!sres) 909fb51601bSUwe Kleine-König return NULL; 910fb51601bSUwe Kleine-König 911fb51601bSUwe Kleine-König INIT_LIST_HEAD(&sres->entry); 912fb51601bSUwe Kleine-König sres->release = release; 913fb51601bSUwe Kleine-König 914fb51601bSUwe Kleine-König return sres->data; 915fb51601bSUwe Kleine-König } 916fb51601bSUwe Kleine-König 917fb51601bSUwe Kleine-König /** 918fb51601bSUwe Kleine-König * spi_res_free - free an spi resource 919fb51601bSUwe Kleine-König * @res: pointer to the custom data of a resource 920fb51601bSUwe Kleine-König */ 921da21fde0SUwe Kleine-König static void spi_res_free(void *res) 922fb51601bSUwe Kleine-König { 923fb51601bSUwe Kleine-König struct spi_res *sres = container_of(res, struct spi_res, data); 924fb51601bSUwe Kleine-König 925fb51601bSUwe Kleine-König if (!res) 926fb51601bSUwe Kleine-König return; 927fb51601bSUwe Kleine-König 928fb51601bSUwe Kleine-König WARN_ON(!list_empty(&sres->entry)); 929fb51601bSUwe Kleine-König kfree(sres); 930fb51601bSUwe Kleine-König } 931fb51601bSUwe Kleine-König 932fb51601bSUwe Kleine-König /** 933fb51601bSUwe Kleine-König * spi_res_add - add a spi_res to the spi_message 934fb51601bSUwe Kleine-König * @message: the spi message 935fb51601bSUwe Kleine-König * @res: the spi_resource 936fb51601bSUwe Kleine-König */ 937da21fde0SUwe Kleine-König static void spi_res_add(struct spi_message *message, void *res) 938fb51601bSUwe Kleine-König { 939fb51601bSUwe Kleine-König struct spi_res *sres = container_of(res, struct spi_res, data); 940fb51601bSUwe Kleine-König 941fb51601bSUwe Kleine-König WARN_ON(!list_empty(&sres->entry)); 942fb51601bSUwe Kleine-König list_add_tail(&sres->entry, &message->resources); 943fb51601bSUwe Kleine-König } 944fb51601bSUwe Kleine-König 945fb51601bSUwe Kleine-König /** 946fb51601bSUwe Kleine-König * spi_res_release - release all spi resources for this message 947fb51601bSUwe Kleine-König * @ctlr: the @spi_controller 948fb51601bSUwe Kleine-König * @message: the @spi_message 949fb51601bSUwe Kleine-König */ 950da21fde0SUwe Kleine-König static void spi_res_release(struct spi_controller *ctlr, struct spi_message *message) 951fb51601bSUwe Kleine-König { 952fb51601bSUwe Kleine-König struct spi_res *res, *tmp; 953fb51601bSUwe Kleine-König 954fb51601bSUwe Kleine-König list_for_each_entry_safe_reverse(res, tmp, &message->resources, entry) { 955fb51601bSUwe Kleine-König if (res->release) 956fb51601bSUwe Kleine-König res->release(ctlr, message, res->data); 957fb51601bSUwe Kleine-König 958fb51601bSUwe Kleine-König list_del(&res->entry); 959fb51601bSUwe Kleine-König 960fb51601bSUwe Kleine-König kfree(res); 961fb51601bSUwe Kleine-König } 962fb51601bSUwe Kleine-König } 963fb51601bSUwe Kleine-König 964fb51601bSUwe Kleine-König /*-------------------------------------------------------------------------*/ 965fb51601bSUwe Kleine-König 966d347b4aaSDavid Bauer static void spi_set_cs(struct spi_device *spi, bool enable, bool force) 967b158935fSMark Brown { 96886527bcbSAndy Shevchenko bool activate = enable; 96925093bdeSAlexandru Ardelean 970d40f0b6fSDouglas Anderson /* 971d40f0b6fSDouglas Anderson * Avoid calling into the driver (or doing delays) if the chip select 972d40f0b6fSDouglas Anderson * isn't actually changing from the last time this was called. 973d40f0b6fSDouglas Anderson */ 974303feb3cSAmit Kumar Mahapatra if (!force && ((enable && spi->controller->last_cs == spi_get_chipselect(spi, 0)) || 975303feb3cSAmit Kumar Mahapatra (!enable && spi->controller->last_cs != spi_get_chipselect(spi, 0))) && 976d40f0b6fSDouglas Anderson (spi->controller->last_cs_mode_high == (spi->mode & SPI_CS_HIGH))) 977d40f0b6fSDouglas Anderson return; 978d40f0b6fSDouglas Anderson 9795cb4e1f3SAndy Shevchenko trace_spi_set_cs(spi, activate); 9805cb4e1f3SAndy Shevchenko 981303feb3cSAmit Kumar Mahapatra spi->controller->last_cs = enable ? spi_get_chipselect(spi, 0) : -1; 982d40f0b6fSDouglas Anderson spi->controller->last_cs_mode_high = spi->mode & SPI_CS_HIGH; 983d40f0b6fSDouglas Anderson 984303feb3cSAmit Kumar Mahapatra if ((spi_get_csgpiod(spi, 0) || !spi->controller->set_cs_timing) && !activate) 9858c33ebfeSMason Zhang spi_delay_exec(&spi->cs_hold, NULL); 98625093bdeSAlexandru Ardelean 987b158935fSMark Brown if (spi->mode & SPI_CS_HIGH) 988b158935fSMark Brown enable = !enable; 989b158935fSMark Brown 990303feb3cSAmit Kumar Mahapatra if (spi_get_csgpiod(spi, 0)) { 991f48dc6b9SLinus Walleij if (!(spi->mode & SPI_NO_CS)) { 9926b695469SAndy Shevchenko /* 9936b695469SAndy Shevchenko * Historically ACPI has no means of the GPIO polarity and 9946b695469SAndy Shevchenko * thus the SPISerialBus() resource defines it on the per-chip 9956b695469SAndy Shevchenko * basis. In order to avoid a chain of negations, the GPIO 9966b695469SAndy Shevchenko * polarity is considered being Active High. Even for the cases 9976b695469SAndy Shevchenko * when _DSD() is involved (in the updated versions of ACPI) 9986b695469SAndy Shevchenko * the GPIO CS polarity must be defined Active High to avoid 9996b695469SAndy Shevchenko * ambiguity. That's why we use enable, that takes SPI_CS_HIGH 10006b695469SAndy Shevchenko * into account. 10016b695469SAndy Shevchenko */ 10026b695469SAndy Shevchenko if (has_acpi_companion(&spi->dev)) 1003303feb3cSAmit Kumar Mahapatra gpiod_set_value_cansleep(spi_get_csgpiod(spi, 0), !enable); 1004f3186dd8SLinus Walleij else 10056b695469SAndy Shevchenko /* Polarity handled by GPIO library */ 1006303feb3cSAmit Kumar Mahapatra gpiod_set_value_cansleep(spi_get_csgpiod(spi, 0), activate); 10076b695469SAndy Shevchenko } 10088eee6b9dSThor Thayer /* Some SPI masters need both GPIO CS & slave_select */ 10098caab75fSGeert Uytterhoeven if ((spi->controller->flags & SPI_MASTER_GPIO_SS) && 10108caab75fSGeert Uytterhoeven spi->controller->set_cs) 10118caab75fSGeert Uytterhoeven spi->controller->set_cs(spi, !enable); 10128caab75fSGeert Uytterhoeven } else if (spi->controller->set_cs) { 10138caab75fSGeert Uytterhoeven spi->controller->set_cs(spi, !enable); 10148eee6b9dSThor Thayer } 101525093bdeSAlexandru Ardelean 1016303feb3cSAmit Kumar Mahapatra if (spi_get_csgpiod(spi, 0) || !spi->controller->set_cs_timing) { 101795c07247SHector Martin if (activate) 101895c07247SHector Martin spi_delay_exec(&spi->cs_setup, NULL); 101995c07247SHector Martin else 10208c33ebfeSMason Zhang spi_delay_exec(&spi->cs_inactive, NULL); 102125093bdeSAlexandru Ardelean } 1022b158935fSMark Brown } 1023b158935fSMark Brown 10242de440f5SGeert Uytterhoeven #ifdef CONFIG_HAS_DMA 10250c17ba73SVincent Whitchurch static int spi_map_buf_attrs(struct spi_controller *ctlr, struct device *dev, 10266ad45a27SMark Brown struct sg_table *sgt, void *buf, size_t len, 10270c17ba73SVincent Whitchurch enum dma_data_direction dir, unsigned long attrs) 10286ad45a27SMark Brown { 10296ad45a27SMark Brown const bool vmalloced_buf = is_vmalloc_addr(buf); 1030df88e91bSAndy Shevchenko unsigned int max_seg_size = dma_get_max_seg_size(dev); 1031b1b8153cSVignesh R #ifdef CONFIG_HIGHMEM 1032b1b8153cSVignesh R const bool kmap_buf = ((unsigned long)buf >= PKMAP_BASE && 1033b1b8153cSVignesh R (unsigned long)buf < (PKMAP_BASE + 1034b1b8153cSVignesh R (LAST_PKMAP * PAGE_SIZE))); 1035b1b8153cSVignesh R #else 1036b1b8153cSVignesh R const bool kmap_buf = false; 1037b1b8153cSVignesh R #endif 103865598c13SAndrew Gabbasov int desc_len; 103965598c13SAndrew Gabbasov int sgs; 10406ad45a27SMark Brown struct page *vm_page; 10418dd4a016SJuan Gutierrez struct scatterlist *sg; 10426ad45a27SMark Brown void *sg_buf; 10436ad45a27SMark Brown size_t min; 10446ad45a27SMark Brown int i, ret; 10456ad45a27SMark Brown 1046b1b8153cSVignesh R if (vmalloced_buf || kmap_buf) { 1047ebc4cb43SBiju Das desc_len = min_t(unsigned long, max_seg_size, PAGE_SIZE); 104865598c13SAndrew Gabbasov sgs = DIV_ROUND_UP(len + offset_in_page(buf), desc_len); 10490569a88fSVignesh R } else if (virt_addr_valid(buf)) { 1050ebc4cb43SBiju Das desc_len = min_t(size_t, max_seg_size, ctlr->max_dma_len); 105165598c13SAndrew Gabbasov sgs = DIV_ROUND_UP(len, desc_len); 10520569a88fSVignesh R } else { 10530569a88fSVignesh R return -EINVAL; 105465598c13SAndrew Gabbasov } 105565598c13SAndrew Gabbasov 10566ad45a27SMark Brown ret = sg_alloc_table(sgt, sgs, GFP_KERNEL); 10576ad45a27SMark Brown if (ret != 0) 10586ad45a27SMark Brown return ret; 10596ad45a27SMark Brown 10608dd4a016SJuan Gutierrez sg = &sgt->sgl[0]; 10616ad45a27SMark Brown for (i = 0; i < sgs; i++) { 10626ad45a27SMark Brown 1063b1b8153cSVignesh R if (vmalloced_buf || kmap_buf) { 1064ce99319aSMaxime Chevallier /* 1065ce99319aSMaxime Chevallier * Next scatterlist entry size is the minimum between 1066ce99319aSMaxime Chevallier * the desc_len and the remaining buffer length that 1067ce99319aSMaxime Chevallier * fits in a page. 1068ce99319aSMaxime Chevallier */ 1069ce99319aSMaxime Chevallier min = min_t(size_t, desc_len, 1070ce99319aSMaxime Chevallier min_t(size_t, len, 1071ce99319aSMaxime Chevallier PAGE_SIZE - offset_in_page(buf))); 1072b1b8153cSVignesh R if (vmalloced_buf) 10736ad45a27SMark Brown vm_page = vmalloc_to_page(buf); 1074b1b8153cSVignesh R else 1075b1b8153cSVignesh R vm_page = kmap_to_page(buf); 10766ad45a27SMark Brown if (!vm_page) { 10776ad45a27SMark Brown sg_free_table(sgt); 10786ad45a27SMark Brown return -ENOMEM; 10796ad45a27SMark Brown } 10808dd4a016SJuan Gutierrez sg_set_page(sg, vm_page, 1081c1aefbddSCharles Keepax min, offset_in_page(buf)); 10826ad45a27SMark Brown } else { 108365598c13SAndrew Gabbasov min = min_t(size_t, len, desc_len); 10846ad45a27SMark Brown sg_buf = buf; 10858dd4a016SJuan Gutierrez sg_set_buf(sg, sg_buf, min); 10866ad45a27SMark Brown } 10876ad45a27SMark Brown 10886ad45a27SMark Brown buf += min; 10896ad45a27SMark Brown len -= min; 10908dd4a016SJuan Gutierrez sg = sg_next(sg); 10916ad45a27SMark Brown } 10926ad45a27SMark Brown 10930c17ba73SVincent Whitchurch ret = dma_map_sgtable(dev, sgt, dir, attrs); 10946ad45a27SMark Brown if (ret < 0) { 10956ad45a27SMark Brown sg_free_table(sgt); 10966ad45a27SMark Brown return ret; 10976ad45a27SMark Brown } 10986ad45a27SMark Brown 10996ad45a27SMark Brown return 0; 11006ad45a27SMark Brown } 11016ad45a27SMark Brown 11020c17ba73SVincent Whitchurch int spi_map_buf(struct spi_controller *ctlr, struct device *dev, 11030c17ba73SVincent Whitchurch struct sg_table *sgt, void *buf, size_t len, 11040c17ba73SVincent Whitchurch enum dma_data_direction dir) 11050c17ba73SVincent Whitchurch { 11060c17ba73SVincent Whitchurch return spi_map_buf_attrs(ctlr, dev, sgt, buf, len, dir, 0); 11070c17ba73SVincent Whitchurch } 11080c17ba73SVincent Whitchurch 11090c17ba73SVincent Whitchurch static void spi_unmap_buf_attrs(struct spi_controller *ctlr, 11100c17ba73SVincent Whitchurch struct device *dev, struct sg_table *sgt, 11110c17ba73SVincent Whitchurch enum dma_data_direction dir, 11120c17ba73SVincent Whitchurch unsigned long attrs) 11130c17ba73SVincent Whitchurch { 11140c17ba73SVincent Whitchurch if (sgt->orig_nents) { 11150c17ba73SVincent Whitchurch dma_unmap_sgtable(dev, sgt, dir, attrs); 11160c17ba73SVincent Whitchurch sg_free_table(sgt); 11178e9204cdSMarek Szyprowski sgt->orig_nents = 0; 11188e9204cdSMarek Szyprowski sgt->nents = 0; 11190c17ba73SVincent Whitchurch } 11200c17ba73SVincent Whitchurch } 11210c17ba73SVincent Whitchurch 112246336966SBoris Brezillon void spi_unmap_buf(struct spi_controller *ctlr, struct device *dev, 11236ad45a27SMark Brown struct sg_table *sgt, enum dma_data_direction dir) 11246ad45a27SMark Brown { 11250c17ba73SVincent Whitchurch spi_unmap_buf_attrs(ctlr, dev, sgt, dir, 0); 11266ad45a27SMark Brown } 11276ad45a27SMark Brown 11288caab75fSGeert Uytterhoeven static int __spi_map_msg(struct spi_controller *ctlr, struct spi_message *msg) 112999adef31SMark Brown { 113099adef31SMark Brown struct device *tx_dev, *rx_dev; 113199adef31SMark Brown struct spi_transfer *xfer; 11326ad45a27SMark Brown int ret; 11333a2eba9bSMark Brown 11348caab75fSGeert Uytterhoeven if (!ctlr->can_dma) 113599adef31SMark Brown return 0; 113699adef31SMark Brown 11378caab75fSGeert Uytterhoeven if (ctlr->dma_tx) 11388caab75fSGeert Uytterhoeven tx_dev = ctlr->dma_tx->device->dev; 1139b470e10eSVinod Koul else if (ctlr->dma_map_dev) 1140b470e10eSVinod Koul tx_dev = ctlr->dma_map_dev; 1141c37f45b5SLeilk Liu else 11428caab75fSGeert Uytterhoeven tx_dev = ctlr->dev.parent; 1143c37f45b5SLeilk Liu 11448caab75fSGeert Uytterhoeven if (ctlr->dma_rx) 11458caab75fSGeert Uytterhoeven rx_dev = ctlr->dma_rx->device->dev; 1146b470e10eSVinod Koul else if (ctlr->dma_map_dev) 1147b470e10eSVinod Koul rx_dev = ctlr->dma_map_dev; 1148c37f45b5SLeilk Liu else 11498caab75fSGeert Uytterhoeven rx_dev = ctlr->dev.parent; 115099adef31SMark Brown 115199adef31SMark Brown list_for_each_entry(xfer, &msg->transfers, transfer_list) { 11520c17ba73SVincent Whitchurch /* The sync is done before each transfer. */ 11530c17ba73SVincent Whitchurch unsigned long attrs = DMA_ATTR_SKIP_CPU_SYNC; 11540c17ba73SVincent Whitchurch 11558caab75fSGeert Uytterhoeven if (!ctlr->can_dma(ctlr, msg->spi, xfer)) 115699adef31SMark Brown continue; 115799adef31SMark Brown 115899adef31SMark Brown if (xfer->tx_buf != NULL) { 11590c17ba73SVincent Whitchurch ret = spi_map_buf_attrs(ctlr, tx_dev, &xfer->tx_sg, 11600c17ba73SVincent Whitchurch (void *)xfer->tx_buf, 11610c17ba73SVincent Whitchurch xfer->len, DMA_TO_DEVICE, 11620c17ba73SVincent Whitchurch attrs); 11636ad45a27SMark Brown if (ret != 0) 11646ad45a27SMark Brown return ret; 116599adef31SMark Brown } 116699adef31SMark Brown 116799adef31SMark Brown if (xfer->rx_buf != NULL) { 11680c17ba73SVincent Whitchurch ret = spi_map_buf_attrs(ctlr, rx_dev, &xfer->rx_sg, 116999adef31SMark Brown xfer->rx_buf, xfer->len, 11700c17ba73SVincent Whitchurch DMA_FROM_DEVICE, attrs); 11716ad45a27SMark Brown if (ret != 0) { 11720c17ba73SVincent Whitchurch spi_unmap_buf_attrs(ctlr, tx_dev, 11730c17ba73SVincent Whitchurch &xfer->tx_sg, DMA_TO_DEVICE, 11740c17ba73SVincent Whitchurch attrs); 11750c17ba73SVincent Whitchurch 11766ad45a27SMark Brown return ret; 117799adef31SMark Brown } 117899adef31SMark Brown } 117999adef31SMark Brown } 118099adef31SMark Brown 1181f25723dcSVincent Whitchurch ctlr->cur_rx_dma_dev = rx_dev; 1182f25723dcSVincent Whitchurch ctlr->cur_tx_dma_dev = tx_dev; 11838caab75fSGeert Uytterhoeven ctlr->cur_msg_mapped = true; 118499adef31SMark Brown 118599adef31SMark Brown return 0; 118699adef31SMark Brown } 118799adef31SMark Brown 11888caab75fSGeert Uytterhoeven static int __spi_unmap_msg(struct spi_controller *ctlr, struct spi_message *msg) 118999adef31SMark Brown { 1190f25723dcSVincent Whitchurch struct device *rx_dev = ctlr->cur_rx_dma_dev; 1191f25723dcSVincent Whitchurch struct device *tx_dev = ctlr->cur_tx_dma_dev; 119299adef31SMark Brown struct spi_transfer *xfer; 119399adef31SMark Brown 11948caab75fSGeert Uytterhoeven if (!ctlr->cur_msg_mapped || !ctlr->can_dma) 119599adef31SMark Brown return 0; 119699adef31SMark Brown 119799adef31SMark Brown list_for_each_entry(xfer, &msg->transfers, transfer_list) { 11980c17ba73SVincent Whitchurch /* The sync has already been done after each transfer. */ 11990c17ba73SVincent Whitchurch unsigned long attrs = DMA_ATTR_SKIP_CPU_SYNC; 12000c17ba73SVincent Whitchurch 12018caab75fSGeert Uytterhoeven if (!ctlr->can_dma(ctlr, msg->spi, xfer)) 120299adef31SMark Brown continue; 120399adef31SMark Brown 12040c17ba73SVincent Whitchurch spi_unmap_buf_attrs(ctlr, rx_dev, &xfer->rx_sg, 12050c17ba73SVincent Whitchurch DMA_FROM_DEVICE, attrs); 12060c17ba73SVincent Whitchurch spi_unmap_buf_attrs(ctlr, tx_dev, &xfer->tx_sg, 12070c17ba73SVincent Whitchurch DMA_TO_DEVICE, attrs); 120899adef31SMark Brown } 120999adef31SMark Brown 1210809b1b04SRobin Gong ctlr->cur_msg_mapped = false; 1211809b1b04SRobin Gong 121299adef31SMark Brown return 0; 121399adef31SMark Brown } 12140c17ba73SVincent Whitchurch 12150c17ba73SVincent Whitchurch static void spi_dma_sync_for_device(struct spi_controller *ctlr, 12160c17ba73SVincent Whitchurch struct spi_transfer *xfer) 12170c17ba73SVincent Whitchurch { 12180c17ba73SVincent Whitchurch struct device *rx_dev = ctlr->cur_rx_dma_dev; 12190c17ba73SVincent Whitchurch struct device *tx_dev = ctlr->cur_tx_dma_dev; 12200c17ba73SVincent Whitchurch 12210c17ba73SVincent Whitchurch if (!ctlr->cur_msg_mapped) 12220c17ba73SVincent Whitchurch return; 12230c17ba73SVincent Whitchurch 12240c17ba73SVincent Whitchurch if (xfer->tx_sg.orig_nents) 12250c17ba73SVincent Whitchurch dma_sync_sgtable_for_device(tx_dev, &xfer->tx_sg, DMA_TO_DEVICE); 12260c17ba73SVincent Whitchurch if (xfer->rx_sg.orig_nents) 12270c17ba73SVincent Whitchurch dma_sync_sgtable_for_device(rx_dev, &xfer->rx_sg, DMA_FROM_DEVICE); 12280c17ba73SVincent Whitchurch } 12290c17ba73SVincent Whitchurch 12300c17ba73SVincent Whitchurch static void spi_dma_sync_for_cpu(struct spi_controller *ctlr, 12310c17ba73SVincent Whitchurch struct spi_transfer *xfer) 12320c17ba73SVincent Whitchurch { 12330c17ba73SVincent Whitchurch struct device *rx_dev = ctlr->cur_rx_dma_dev; 12340c17ba73SVincent Whitchurch struct device *tx_dev = ctlr->cur_tx_dma_dev; 12350c17ba73SVincent Whitchurch 12360c17ba73SVincent Whitchurch if (!ctlr->cur_msg_mapped) 12370c17ba73SVincent Whitchurch return; 12380c17ba73SVincent Whitchurch 12390c17ba73SVincent Whitchurch if (xfer->rx_sg.orig_nents) 12400c17ba73SVincent Whitchurch dma_sync_sgtable_for_cpu(rx_dev, &xfer->rx_sg, DMA_FROM_DEVICE); 12410c17ba73SVincent Whitchurch if (xfer->tx_sg.orig_nents) 12420c17ba73SVincent Whitchurch dma_sync_sgtable_for_cpu(tx_dev, &xfer->tx_sg, DMA_TO_DEVICE); 12430c17ba73SVincent Whitchurch } 12442de440f5SGeert Uytterhoeven #else /* !CONFIG_HAS_DMA */ 12458caab75fSGeert Uytterhoeven static inline int __spi_map_msg(struct spi_controller *ctlr, 12462de440f5SGeert Uytterhoeven struct spi_message *msg) 12472de440f5SGeert Uytterhoeven { 12482de440f5SGeert Uytterhoeven return 0; 12492de440f5SGeert Uytterhoeven } 12502de440f5SGeert Uytterhoeven 12518caab75fSGeert Uytterhoeven static inline int __spi_unmap_msg(struct spi_controller *ctlr, 12522de440f5SGeert Uytterhoeven struct spi_message *msg) 12532de440f5SGeert Uytterhoeven { 12542de440f5SGeert Uytterhoeven return 0; 12552de440f5SGeert Uytterhoeven } 12560c17ba73SVincent Whitchurch 12570c17ba73SVincent Whitchurch static void spi_dma_sync_for_device(struct spi_controller *ctrl, 12580c17ba73SVincent Whitchurch struct spi_transfer *xfer) 12590c17ba73SVincent Whitchurch { 12600c17ba73SVincent Whitchurch } 12610c17ba73SVincent Whitchurch 12620c17ba73SVincent Whitchurch static void spi_dma_sync_for_cpu(struct spi_controller *ctrl, 12630c17ba73SVincent Whitchurch struct spi_transfer *xfer) 12640c17ba73SVincent Whitchurch { 12650c17ba73SVincent Whitchurch } 12662de440f5SGeert Uytterhoeven #endif /* !CONFIG_HAS_DMA */ 12672de440f5SGeert Uytterhoeven 12688caab75fSGeert Uytterhoeven static inline int spi_unmap_msg(struct spi_controller *ctlr, 12694b786458SMartin Sperl struct spi_message *msg) 12704b786458SMartin Sperl { 12714b786458SMartin Sperl struct spi_transfer *xfer; 12724b786458SMartin Sperl 12734b786458SMartin Sperl list_for_each_entry(xfer, &msg->transfers, transfer_list) { 12744b786458SMartin Sperl /* 12754b786458SMartin Sperl * Restore the original value of tx_buf or rx_buf if they are 12764b786458SMartin Sperl * NULL. 12774b786458SMartin Sperl */ 12788caab75fSGeert Uytterhoeven if (xfer->tx_buf == ctlr->dummy_tx) 12794b786458SMartin Sperl xfer->tx_buf = NULL; 12808caab75fSGeert Uytterhoeven if (xfer->rx_buf == ctlr->dummy_rx) 12814b786458SMartin Sperl xfer->rx_buf = NULL; 12824b786458SMartin Sperl } 12834b786458SMartin Sperl 12848caab75fSGeert Uytterhoeven return __spi_unmap_msg(ctlr, msg); 12854b786458SMartin Sperl } 12864b786458SMartin Sperl 12878caab75fSGeert Uytterhoeven static int spi_map_msg(struct spi_controller *ctlr, struct spi_message *msg) 12882de440f5SGeert Uytterhoeven { 12892de440f5SGeert Uytterhoeven struct spi_transfer *xfer; 12902de440f5SGeert Uytterhoeven void *tmp; 12912de440f5SGeert Uytterhoeven unsigned int max_tx, max_rx; 12922de440f5SGeert Uytterhoeven 1293aee67fe8Sdillon min if ((ctlr->flags & (SPI_CONTROLLER_MUST_RX | SPI_CONTROLLER_MUST_TX)) 1294aee67fe8Sdillon min && !(msg->spi->mode & SPI_3WIRE)) { 12952de440f5SGeert Uytterhoeven max_tx = 0; 12962de440f5SGeert Uytterhoeven max_rx = 0; 12972de440f5SGeert Uytterhoeven 12982de440f5SGeert Uytterhoeven list_for_each_entry(xfer, &msg->transfers, transfer_list) { 12998caab75fSGeert Uytterhoeven if ((ctlr->flags & SPI_CONTROLLER_MUST_TX) && 13002de440f5SGeert Uytterhoeven !xfer->tx_buf) 13012de440f5SGeert Uytterhoeven max_tx = max(xfer->len, max_tx); 13028caab75fSGeert Uytterhoeven if ((ctlr->flags & SPI_CONTROLLER_MUST_RX) && 13032de440f5SGeert Uytterhoeven !xfer->rx_buf) 13042de440f5SGeert Uytterhoeven max_rx = max(xfer->len, max_rx); 13052de440f5SGeert Uytterhoeven } 13062de440f5SGeert Uytterhoeven 13072de440f5SGeert Uytterhoeven if (max_tx) { 13088caab75fSGeert Uytterhoeven tmp = krealloc(ctlr->dummy_tx, max_tx, 1309b00bab9dSAndy Shevchenko GFP_KERNEL | GFP_DMA | __GFP_ZERO); 13102de440f5SGeert Uytterhoeven if (!tmp) 13112de440f5SGeert Uytterhoeven return -ENOMEM; 13128caab75fSGeert Uytterhoeven ctlr->dummy_tx = tmp; 13132de440f5SGeert Uytterhoeven } 13142de440f5SGeert Uytterhoeven 13152de440f5SGeert Uytterhoeven if (max_rx) { 13168caab75fSGeert Uytterhoeven tmp = krealloc(ctlr->dummy_rx, max_rx, 13172de440f5SGeert Uytterhoeven GFP_KERNEL | GFP_DMA); 13182de440f5SGeert Uytterhoeven if (!tmp) 13192de440f5SGeert Uytterhoeven return -ENOMEM; 13208caab75fSGeert Uytterhoeven ctlr->dummy_rx = tmp; 13212de440f5SGeert Uytterhoeven } 13222de440f5SGeert Uytterhoeven 13232de440f5SGeert Uytterhoeven if (max_tx || max_rx) { 13242de440f5SGeert Uytterhoeven list_for_each_entry(xfer, &msg->transfers, 13252de440f5SGeert Uytterhoeven transfer_list) { 13265442dcaaSChris Lesiak if (!xfer->len) 13275442dcaaSChris Lesiak continue; 13282de440f5SGeert Uytterhoeven if (!xfer->tx_buf) 13298caab75fSGeert Uytterhoeven xfer->tx_buf = ctlr->dummy_tx; 13302de440f5SGeert Uytterhoeven if (!xfer->rx_buf) 13318caab75fSGeert Uytterhoeven xfer->rx_buf = ctlr->dummy_rx; 13322de440f5SGeert Uytterhoeven } 13332de440f5SGeert Uytterhoeven } 13342de440f5SGeert Uytterhoeven } 13352de440f5SGeert Uytterhoeven 13368caab75fSGeert Uytterhoeven return __spi_map_msg(ctlr, msg); 13372de440f5SGeert Uytterhoeven } 133899adef31SMark Brown 1339810923f3SLubomir Rintel static int spi_transfer_wait(struct spi_controller *ctlr, 1340810923f3SLubomir Rintel struct spi_message *msg, 1341810923f3SLubomir Rintel struct spi_transfer *xfer) 1342810923f3SLubomir Rintel { 1343d501cc4cSDavid Jander struct spi_statistics __percpu *statm = ctlr->pcpu_statistics; 1344d501cc4cSDavid Jander struct spi_statistics __percpu *stats = msg->spi->pcpu_statistics; 13456170d077SXu Yilun u32 speed_hz = xfer->speed_hz; 134649686df5SColin Ian King unsigned long long ms; 1347810923f3SLubomir Rintel 1348810923f3SLubomir Rintel if (spi_controller_is_slave(ctlr)) { 1349810923f3SLubomir Rintel if (wait_for_completion_interruptible(&ctlr->xfer_completion)) { 1350810923f3SLubomir Rintel dev_dbg(&msg->spi->dev, "SPI transfer interrupted\n"); 1351810923f3SLubomir Rintel return -EINTR; 1352810923f3SLubomir Rintel } 1353810923f3SLubomir Rintel } else { 13546170d077SXu Yilun if (!speed_hz) 13556170d077SXu Yilun speed_hz = 100000; 13566170d077SXu Yilun 135786b8bff7SAndy Shevchenko /* 135886b8bff7SAndy Shevchenko * For each byte we wait for 8 cycles of the SPI clock. 135986b8bff7SAndy Shevchenko * Since speed is defined in Hz and we want milliseconds, 136086b8bff7SAndy Shevchenko * use respective multiplier, but before the division, 136186b8bff7SAndy Shevchenko * otherwise we may get 0 for short transfers. 136286b8bff7SAndy Shevchenko */ 136386b8bff7SAndy Shevchenko ms = 8LL * MSEC_PER_SEC * xfer->len; 13646170d077SXu Yilun do_div(ms, speed_hz); 1365810923f3SLubomir Rintel 136686b8bff7SAndy Shevchenko /* 136786b8bff7SAndy Shevchenko * Increase it twice and add 200 ms tolerance, use 136886b8bff7SAndy Shevchenko * predefined maximum in case of overflow. 136986b8bff7SAndy Shevchenko */ 137086b8bff7SAndy Shevchenko ms += ms + 200; 1371810923f3SLubomir Rintel if (ms > UINT_MAX) 1372810923f3SLubomir Rintel ms = UINT_MAX; 1373810923f3SLubomir Rintel 1374810923f3SLubomir Rintel ms = wait_for_completion_timeout(&ctlr->xfer_completion, 1375810923f3SLubomir Rintel msecs_to_jiffies(ms)); 1376810923f3SLubomir Rintel 1377810923f3SLubomir Rintel if (ms == 0) { 1378810923f3SLubomir Rintel SPI_STATISTICS_INCREMENT_FIELD(statm, timedout); 1379810923f3SLubomir Rintel SPI_STATISTICS_INCREMENT_FIELD(stats, timedout); 1380810923f3SLubomir Rintel dev_err(&msg->spi->dev, 1381810923f3SLubomir Rintel "SPI transfer timed out\n"); 1382810923f3SLubomir Rintel return -ETIMEDOUT; 1383810923f3SLubomir Rintel } 1384810923f3SLubomir Rintel } 1385810923f3SLubomir Rintel 1386810923f3SLubomir Rintel return 0; 1387810923f3SLubomir Rintel } 1388810923f3SLubomir Rintel 13890ff2de8bSMartin Sperl static void _spi_transfer_delay_ns(u32 ns) 13900ff2de8bSMartin Sperl { 13910ff2de8bSMartin Sperl if (!ns) 13920ff2de8bSMartin Sperl return; 139386b8bff7SAndy Shevchenko if (ns <= NSEC_PER_USEC) { 13940ff2de8bSMartin Sperl ndelay(ns); 13950ff2de8bSMartin Sperl } else { 139686b8bff7SAndy Shevchenko u32 us = DIV_ROUND_UP(ns, NSEC_PER_USEC); 13970ff2de8bSMartin Sperl 13980ff2de8bSMartin Sperl if (us <= 10) 13990ff2de8bSMartin Sperl udelay(us); 14000ff2de8bSMartin Sperl else 14010ff2de8bSMartin Sperl usleep_range(us, us + DIV_ROUND_UP(us, 10)); 14020ff2de8bSMartin Sperl } 14030ff2de8bSMartin Sperl } 14040ff2de8bSMartin Sperl 14053984d39bSAlexandru Ardelean int spi_delay_to_ns(struct spi_delay *_delay, struct spi_transfer *xfer) 14060ff2de8bSMartin Sperl { 1407b2c98153SAlexandru Ardelean u32 delay = _delay->value; 1408b2c98153SAlexandru Ardelean u32 unit = _delay->unit; 1409d5864e5bSMartin Sperl u32 hz; 14100ff2de8bSMartin Sperl 1411b2c98153SAlexandru Ardelean if (!delay) 1412b2c98153SAlexandru Ardelean return 0; 14130ff2de8bSMartin Sperl 14140ff2de8bSMartin Sperl switch (unit) { 14150ff2de8bSMartin Sperl case SPI_DELAY_UNIT_USECS: 141686b8bff7SAndy Shevchenko delay *= NSEC_PER_USEC; 14170ff2de8bSMartin Sperl break; 141886b8bff7SAndy Shevchenko case SPI_DELAY_UNIT_NSECS: 141986b8bff7SAndy Shevchenko /* Nothing to do here */ 14200ff2de8bSMartin Sperl break; 1421d5864e5bSMartin Sperl case SPI_DELAY_UNIT_SCK: 142295c8222fSDavid Jander /* Clock cycles need to be obtained from spi_transfer */ 1423b2c98153SAlexandru Ardelean if (!xfer) 1424b2c98153SAlexandru Ardelean return -EINVAL; 142586b8bff7SAndy Shevchenko /* 142686b8bff7SAndy Shevchenko * If there is unknown effective speed, approximate it 142786b8bff7SAndy Shevchenko * by underestimating with half of the requested hz. 1428d5864e5bSMartin Sperl */ 1429d5864e5bSMartin Sperl hz = xfer->effective_speed_hz ?: xfer->speed_hz / 2; 1430b2c98153SAlexandru Ardelean if (!hz) 1431b2c98153SAlexandru Ardelean return -EINVAL; 143286b8bff7SAndy Shevchenko 143386b8bff7SAndy Shevchenko /* Convert delay to nanoseconds */ 143486b8bff7SAndy Shevchenko delay *= DIV_ROUND_UP(NSEC_PER_SEC, hz); 1435d5864e5bSMartin Sperl break; 14360ff2de8bSMartin Sperl default: 1437b2c98153SAlexandru Ardelean return -EINVAL; 1438b2c98153SAlexandru Ardelean } 1439b2c98153SAlexandru Ardelean 1440b2c98153SAlexandru Ardelean return delay; 1441b2c98153SAlexandru Ardelean } 14423984d39bSAlexandru Ardelean EXPORT_SYMBOL_GPL(spi_delay_to_ns); 1443b2c98153SAlexandru Ardelean 1444b2c98153SAlexandru Ardelean int spi_delay_exec(struct spi_delay *_delay, struct spi_transfer *xfer) 1445b2c98153SAlexandru Ardelean { 1446b2c98153SAlexandru Ardelean int delay; 1447b2c98153SAlexandru Ardelean 14488fede89fSMark Brown might_sleep(); 14498fede89fSMark Brown 1450b2c98153SAlexandru Ardelean if (!_delay) 1451b2c98153SAlexandru Ardelean return -EINVAL; 1452b2c98153SAlexandru Ardelean 14533984d39bSAlexandru Ardelean delay = spi_delay_to_ns(_delay, xfer); 1454b2c98153SAlexandru Ardelean if (delay < 0) 1455b2c98153SAlexandru Ardelean return delay; 1456b2c98153SAlexandru Ardelean 1457b2c98153SAlexandru Ardelean _spi_transfer_delay_ns(delay); 1458b2c98153SAlexandru Ardelean 1459b2c98153SAlexandru Ardelean return 0; 1460b2c98153SAlexandru Ardelean } 1461b2c98153SAlexandru Ardelean EXPORT_SYMBOL_GPL(spi_delay_exec); 1462b2c98153SAlexandru Ardelean 14630ff2de8bSMartin Sperl static void _spi_transfer_cs_change_delay(struct spi_message *msg, 14640ff2de8bSMartin Sperl struct spi_transfer *xfer) 14650ff2de8bSMartin Sperl { 146686b8bff7SAndy Shevchenko u32 default_delay_ns = 10 * NSEC_PER_USEC; 1467329f0dacSAlexandru Ardelean u32 delay = xfer->cs_change_delay.value; 1468329f0dacSAlexandru Ardelean u32 unit = xfer->cs_change_delay.unit; 1469329f0dacSAlexandru Ardelean int ret; 14700ff2de8bSMartin Sperl 147195c8222fSDavid Jander /* Return early on "fast" mode - for everything but USECS */ 14726b3f236aSAlexandru Ardelean if (!delay) { 14736b3f236aSAlexandru Ardelean if (unit == SPI_DELAY_UNIT_USECS) 147486b8bff7SAndy Shevchenko _spi_transfer_delay_ns(default_delay_ns); 14750ff2de8bSMartin Sperl return; 14766b3f236aSAlexandru Ardelean } 14770ff2de8bSMartin Sperl 1478329f0dacSAlexandru Ardelean ret = spi_delay_exec(&xfer->cs_change_delay, xfer); 1479329f0dacSAlexandru Ardelean if (ret) { 14800ff2de8bSMartin Sperl dev_err_once(&msg->spi->dev, 148186b8bff7SAndy Shevchenko "Use of unsupported delay unit %i, using default of %luus\n", 148286b8bff7SAndy Shevchenko unit, default_delay_ns / NSEC_PER_USEC); 148386b8bff7SAndy Shevchenko _spi_transfer_delay_ns(default_delay_ns); 14840ff2de8bSMartin Sperl } 14850ff2de8bSMartin Sperl } 14860ff2de8bSMartin Sperl 14876e80133aSWilliam Zhang void spi_transfer_cs_change_delay_exec(struct spi_message *msg, 14886e80133aSWilliam Zhang struct spi_transfer *xfer) 14896e80133aSWilliam Zhang { 14906e80133aSWilliam Zhang _spi_transfer_cs_change_delay(msg, xfer); 14916e80133aSWilliam Zhang } 14926e80133aSWilliam Zhang EXPORT_SYMBOL_GPL(spi_transfer_cs_change_delay_exec); 14936e80133aSWilliam Zhang 1494b158935fSMark Brown /* 1495b158935fSMark Brown * spi_transfer_one_message - Default implementation of transfer_one_message() 1496b158935fSMark Brown * 1497b158935fSMark Brown * This is a standard implementation of transfer_one_message() for 14988ba811a7SMoritz Fischer * drivers which implement a transfer_one() operation. It provides 1499b158935fSMark Brown * standard handling of delays and chip select management. 1500b158935fSMark Brown */ 15018caab75fSGeert Uytterhoeven static int spi_transfer_one_message(struct spi_controller *ctlr, 1502b158935fSMark Brown struct spi_message *msg) 1503b158935fSMark Brown { 1504b158935fSMark Brown struct spi_transfer *xfer; 1505b158935fSMark Brown bool keep_cs = false; 1506b158935fSMark Brown int ret = 0; 1507d501cc4cSDavid Jander struct spi_statistics __percpu *statm = ctlr->pcpu_statistics; 1508d501cc4cSDavid Jander struct spi_statistics __percpu *stats = msg->spi->pcpu_statistics; 1509b158935fSMark Brown 15105e0531f6SChristophe Leroy xfer = list_first_entry(&msg->transfers, struct spi_transfer, transfer_list); 15115e0531f6SChristophe Leroy spi_set_cs(msg->spi, !xfer->cs_off, false); 1512b158935fSMark Brown 1513eca2ebc7SMartin Sperl SPI_STATISTICS_INCREMENT_FIELD(statm, messages); 1514eca2ebc7SMartin Sperl SPI_STATISTICS_INCREMENT_FIELD(stats, messages); 1515eca2ebc7SMartin Sperl 1516b158935fSMark Brown list_for_each_entry(xfer, &msg->transfers, transfer_list) { 1517b158935fSMark Brown trace_spi_transfer_start(msg, xfer); 1518b158935fSMark Brown 15198caab75fSGeert Uytterhoeven spi_statistics_add_transfer_stats(statm, xfer, ctlr); 15208caab75fSGeert Uytterhoeven spi_statistics_add_transfer_stats(stats, xfer, ctlr); 1521eca2ebc7SMartin Sperl 1522b42faeeeSVladimir Oltean if (!ctlr->ptp_sts_supported) { 1523b42faeeeSVladimir Oltean xfer->ptp_sts_word_pre = 0; 1524b42faeeeSVladimir Oltean ptp_read_system_prets(xfer->ptp_sts); 1525b42faeeeSVladimir Oltean } 1526b42faeeeSVladimir Oltean 1527b3063203SNicolas Saenz Julienne if ((xfer->tx_buf || xfer->rx_buf) && xfer->len) { 15288caab75fSGeert Uytterhoeven reinit_completion(&ctlr->xfer_completion); 1529b158935fSMark Brown 1530809b1b04SRobin Gong fallback_pio: 15310c17ba73SVincent Whitchurch spi_dma_sync_for_device(ctlr, xfer); 15328caab75fSGeert Uytterhoeven ret = ctlr->transfer_one(ctlr, msg->spi, xfer); 1533b158935fSMark Brown if (ret < 0) { 15340c17ba73SVincent Whitchurch spi_dma_sync_for_cpu(ctlr, xfer); 15350c17ba73SVincent Whitchurch 1536809b1b04SRobin Gong if (ctlr->cur_msg_mapped && 1537809b1b04SRobin Gong (xfer->error & SPI_TRANS_FAIL_NO_START)) { 1538809b1b04SRobin Gong __spi_unmap_msg(ctlr, msg); 1539809b1b04SRobin Gong ctlr->fallback = true; 1540809b1b04SRobin Gong xfer->error &= ~SPI_TRANS_FAIL_NO_START; 1541809b1b04SRobin Gong goto fallback_pio; 1542809b1b04SRobin Gong } 1543809b1b04SRobin Gong 1544eca2ebc7SMartin Sperl SPI_STATISTICS_INCREMENT_FIELD(statm, 1545eca2ebc7SMartin Sperl errors); 1546eca2ebc7SMartin Sperl SPI_STATISTICS_INCREMENT_FIELD(stats, 1547eca2ebc7SMartin Sperl errors); 1548b158935fSMark Brown dev_err(&msg->spi->dev, 1549b158935fSMark Brown "SPI transfer failed: %d\n", ret); 1550b158935fSMark Brown goto out; 1551b158935fSMark Brown } 1552b158935fSMark Brown 1553d57e7960SMark Brown if (ret > 0) { 1554810923f3SLubomir Rintel ret = spi_transfer_wait(ctlr, msg, xfer); 1555810923f3SLubomir Rintel if (ret < 0) 1556810923f3SLubomir Rintel msg->status = ret; 1557d57e7960SMark Brown } 15580c17ba73SVincent Whitchurch 15590c17ba73SVincent Whitchurch spi_dma_sync_for_cpu(ctlr, xfer); 156038ec10f6SMark Brown } else { 156138ec10f6SMark Brown if (xfer->len) 156238ec10f6SMark Brown dev_err(&msg->spi->dev, 156338ec10f6SMark Brown "Bufferless transfer has length %u\n", 156438ec10f6SMark Brown xfer->len); 156538ec10f6SMark Brown } 1566b158935fSMark Brown 1567b42faeeeSVladimir Oltean if (!ctlr->ptp_sts_supported) { 1568b42faeeeSVladimir Oltean ptp_read_system_postts(xfer->ptp_sts); 1569b42faeeeSVladimir Oltean xfer->ptp_sts_word_post = xfer->len; 1570b42faeeeSVladimir Oltean } 1571b42faeeeSVladimir Oltean 1572b158935fSMark Brown trace_spi_transfer_stop(msg, xfer); 1573b158935fSMark Brown 1574b158935fSMark Brown if (msg->status != -EINPROGRESS) 1575b158935fSMark Brown goto out; 1576b158935fSMark Brown 1577bebcfd27SAlexandru Ardelean spi_transfer_delay_exec(xfer); 1578b158935fSMark Brown 1579b158935fSMark Brown if (xfer->cs_change) { 1580b158935fSMark Brown if (list_is_last(&xfer->transfer_list, 1581b158935fSMark Brown &msg->transfers)) { 1582b158935fSMark Brown keep_cs = true; 1583b158935fSMark Brown } else { 15845e0531f6SChristophe Leroy if (!xfer->cs_off) 1585d347b4aaSDavid Bauer spi_set_cs(msg->spi, false, false); 15860ff2de8bSMartin Sperl _spi_transfer_cs_change_delay(msg, xfer); 15875e0531f6SChristophe Leroy if (!list_next_entry(xfer, transfer_list)->cs_off) 1588d347b4aaSDavid Bauer spi_set_cs(msg->spi, true, false); 1589b158935fSMark Brown } 15905e0531f6SChristophe Leroy } else if (!list_is_last(&xfer->transfer_list, &msg->transfers) && 15915e0531f6SChristophe Leroy xfer->cs_off != list_next_entry(xfer, transfer_list)->cs_off) { 15925e0531f6SChristophe Leroy spi_set_cs(msg->spi, xfer->cs_off, false); 1593b158935fSMark Brown } 1594b158935fSMark Brown 1595b158935fSMark Brown msg->actual_length += xfer->len; 1596b158935fSMark Brown } 1597b158935fSMark Brown 1598b158935fSMark Brown out: 1599b158935fSMark Brown if (ret != 0 || !keep_cs) 1600d347b4aaSDavid Bauer spi_set_cs(msg->spi, false, false); 1601b158935fSMark Brown 1602b158935fSMark Brown if (msg->status == -EINPROGRESS) 1603b158935fSMark Brown msg->status = ret; 1604b158935fSMark Brown 16058caab75fSGeert Uytterhoeven if (msg->status && ctlr->handle_err) 16068caab75fSGeert Uytterhoeven ctlr->handle_err(ctlr, msg); 1607b716c4ffSAndy Shevchenko 16080ed56252SMark Brown spi_finalize_current_message(ctlr); 16090ed56252SMark Brown 1610b158935fSMark Brown return ret; 1611b158935fSMark Brown } 1612b158935fSMark Brown 1613b158935fSMark Brown /** 1614b158935fSMark Brown * spi_finalize_current_transfer - report completion of a transfer 16158caab75fSGeert Uytterhoeven * @ctlr: the controller reporting completion 1616b158935fSMark Brown * 1617b158935fSMark Brown * Called by SPI drivers using the core transfer_one_message() 1618b158935fSMark Brown * implementation to notify it that the current interrupt driven 16199e8f4882SGeert Uytterhoeven * transfer has finished and the next one may be scheduled. 1620b158935fSMark Brown */ 16218caab75fSGeert Uytterhoeven void spi_finalize_current_transfer(struct spi_controller *ctlr) 1622b158935fSMark Brown { 16238caab75fSGeert Uytterhoeven complete(&ctlr->xfer_completion); 1624b158935fSMark Brown } 1625b158935fSMark Brown EXPORT_SYMBOL_GPL(spi_finalize_current_transfer); 1626b158935fSMark Brown 1627e1268597SMark Brown static void spi_idle_runtime_pm(struct spi_controller *ctlr) 1628e1268597SMark Brown { 1629e1268597SMark Brown if (ctlr->auto_runtime_pm) { 1630e1268597SMark Brown pm_runtime_mark_last_busy(ctlr->dev.parent); 1631e1268597SMark Brown pm_runtime_put_autosuspend(ctlr->dev.parent); 1632e1268597SMark Brown } 1633e1268597SMark Brown } 1634e1268597SMark Brown 1635ae7d2346SDavid Jander static int __spi_pump_transfer_message(struct spi_controller *ctlr, 1636ae7d2346SDavid Jander struct spi_message *msg, bool was_busy) 1637ae7d2346SDavid Jander { 1638ae7d2346SDavid Jander struct spi_transfer *xfer; 1639ae7d2346SDavid Jander int ret; 1640ae7d2346SDavid Jander 1641ae7d2346SDavid Jander if (!was_busy && ctlr->auto_runtime_pm) { 1642ae7d2346SDavid Jander ret = pm_runtime_get_sync(ctlr->dev.parent); 1643ae7d2346SDavid Jander if (ret < 0) { 1644ae7d2346SDavid Jander pm_runtime_put_noidle(ctlr->dev.parent); 1645ae7d2346SDavid Jander dev_err(&ctlr->dev, "Failed to power device: %d\n", 1646ae7d2346SDavid Jander ret); 1647ae7d2346SDavid Jander return ret; 1648ae7d2346SDavid Jander } 1649ae7d2346SDavid Jander } 1650ae7d2346SDavid Jander 1651ae7d2346SDavid Jander if (!was_busy) 1652ae7d2346SDavid Jander trace_spi_controller_busy(ctlr); 1653ae7d2346SDavid Jander 1654ae7d2346SDavid Jander if (!was_busy && ctlr->prepare_transfer_hardware) { 1655ae7d2346SDavid Jander ret = ctlr->prepare_transfer_hardware(ctlr); 1656ae7d2346SDavid Jander if (ret) { 1657ae7d2346SDavid Jander dev_err(&ctlr->dev, 1658ae7d2346SDavid Jander "failed to prepare transfer hardware: %d\n", 1659ae7d2346SDavid Jander ret); 1660ae7d2346SDavid Jander 1661ae7d2346SDavid Jander if (ctlr->auto_runtime_pm) 1662ae7d2346SDavid Jander pm_runtime_put(ctlr->dev.parent); 1663ae7d2346SDavid Jander 1664ae7d2346SDavid Jander msg->status = ret; 1665ae7d2346SDavid Jander spi_finalize_current_message(ctlr); 1666ae7d2346SDavid Jander 1667ae7d2346SDavid Jander return ret; 1668ae7d2346SDavid Jander } 1669ae7d2346SDavid Jander } 1670ae7d2346SDavid Jander 1671ae7d2346SDavid Jander trace_spi_message_start(msg); 1672ae7d2346SDavid Jander 16738d699ff9SVincent Whitchurch ret = spi_split_transfers_maxsize(ctlr, msg, 16748d699ff9SVincent Whitchurch spi_max_transfer_size(msg->spi), 16758d699ff9SVincent Whitchurch GFP_KERNEL | GFP_DMA); 16768d699ff9SVincent Whitchurch if (ret) { 16778d699ff9SVincent Whitchurch msg->status = ret; 16788d699ff9SVincent Whitchurch spi_finalize_current_message(ctlr); 16798d699ff9SVincent Whitchurch return ret; 16808d699ff9SVincent Whitchurch } 16818d699ff9SVincent Whitchurch 1682ae7d2346SDavid Jander if (ctlr->prepare_message) { 1683ae7d2346SDavid Jander ret = ctlr->prepare_message(ctlr, msg); 1684ae7d2346SDavid Jander if (ret) { 1685ae7d2346SDavid Jander dev_err(&ctlr->dev, "failed to prepare message: %d\n", 1686ae7d2346SDavid Jander ret); 1687ae7d2346SDavid Jander msg->status = ret; 1688ae7d2346SDavid Jander spi_finalize_current_message(ctlr); 1689ae7d2346SDavid Jander return ret; 1690ae7d2346SDavid Jander } 1691ae7d2346SDavid Jander msg->prepared = true; 1692ae7d2346SDavid Jander } 1693ae7d2346SDavid Jander 1694ae7d2346SDavid Jander ret = spi_map_msg(ctlr, msg); 1695ae7d2346SDavid Jander if (ret) { 1696ae7d2346SDavid Jander msg->status = ret; 1697ae7d2346SDavid Jander spi_finalize_current_message(ctlr); 1698ae7d2346SDavid Jander return ret; 1699ae7d2346SDavid Jander } 1700ae7d2346SDavid Jander 1701ae7d2346SDavid Jander if (!ctlr->ptp_sts_supported && !ctlr->transfer_one) { 1702ae7d2346SDavid Jander list_for_each_entry(xfer, &msg->transfers, transfer_list) { 1703ae7d2346SDavid Jander xfer->ptp_sts_word_pre = 0; 1704ae7d2346SDavid Jander ptp_read_system_prets(xfer->ptp_sts); 1705ae7d2346SDavid Jander } 1706ae7d2346SDavid Jander } 1707ae7d2346SDavid Jander 1708dc302905SDavid Jander /* 1709dc302905SDavid Jander * Drivers implementation of transfer_one_message() must arrange for 1710dc302905SDavid Jander * spi_finalize_current_message() to get called. Most drivers will do 1711dc302905SDavid Jander * this in the calling context, but some don't. For those cases, a 1712dc302905SDavid Jander * completion is used to guarantee that this function does not return 1713dc302905SDavid Jander * until spi_finalize_current_message() is done accessing 1714dc302905SDavid Jander * ctlr->cur_msg. 1715dc302905SDavid Jander * Use of the following two flags enable to opportunistically skip the 1716dc302905SDavid Jander * use of the completion since its use involves expensive spin locks. 1717dc302905SDavid Jander * In case of a race with the context that calls 1718dc302905SDavid Jander * spi_finalize_current_message() the completion will always be used, 1719dc302905SDavid Jander * due to strict ordering of these flags using barriers. 1720dc302905SDavid Jander */ 1721dc302905SDavid Jander WRITE_ONCE(ctlr->cur_msg_incomplete, true); 1722dc302905SDavid Jander WRITE_ONCE(ctlr->cur_msg_need_completion, false); 172369fa9590SDavid Jander reinit_completion(&ctlr->cur_msg_completion); 172495c8222fSDavid Jander smp_wmb(); /* Make these available to spi_finalize_current_message() */ 1725dc302905SDavid Jander 1726ae7d2346SDavid Jander ret = ctlr->transfer_one_message(ctlr, msg); 1727ae7d2346SDavid Jander if (ret) { 1728ae7d2346SDavid Jander dev_err(&ctlr->dev, 1729ae7d2346SDavid Jander "failed to transfer one message from queue\n"); 1730ae7d2346SDavid Jander return ret; 173131d4c1bdSDavid Jander } 173231d4c1bdSDavid Jander 1733dc302905SDavid Jander WRITE_ONCE(ctlr->cur_msg_need_completion, true); 173431d4c1bdSDavid Jander smp_mb(); /* See spi_finalize_current_message()... */ 1735dc302905SDavid Jander if (READ_ONCE(ctlr->cur_msg_incomplete)) 173669fa9590SDavid Jander wait_for_completion(&ctlr->cur_msg_completion); 1737ae7d2346SDavid Jander 1738ae7d2346SDavid Jander return 0; 1739ae7d2346SDavid Jander } 1740ae7d2346SDavid Jander 1741ffbbdd21SLinus Walleij /** 1742fc9e0f71SMark Brown * __spi_pump_messages - function which processes spi message queue 17438caab75fSGeert Uytterhoeven * @ctlr: controller to process queue for 1744fc9e0f71SMark Brown * @in_kthread: true if we are in the context of the message pump thread 1745ffbbdd21SLinus Walleij * 1746ffbbdd21SLinus Walleij * This function checks if there is any spi message in the queue that 1747ffbbdd21SLinus Walleij * needs processing and if so call out to the driver to initialize hardware 1748ffbbdd21SLinus Walleij * and transfer each message. 1749ffbbdd21SLinus Walleij * 17500461a414SMark Brown * Note that it is called both from the kthread itself and also from 17510461a414SMark Brown * inside spi_sync(); the queue extraction handling at the top of the 17520461a414SMark Brown * function should deal with this safely. 1753ffbbdd21SLinus Walleij */ 17548caab75fSGeert Uytterhoeven static void __spi_pump_messages(struct spi_controller *ctlr, bool in_kthread) 1755ffbbdd21SLinus Walleij { 1756d1c44c93SVladimir Oltean struct spi_message *msg; 1757ffbbdd21SLinus Walleij bool was_busy = false; 1758d1c44c93SVladimir Oltean unsigned long flags; 1759ffbbdd21SLinus Walleij int ret; 1760ffbbdd21SLinus Walleij 1761c1038165SDavid Jander /* Take the IO mutex */ 1762c1038165SDavid Jander mutex_lock(&ctlr->io_mutex); 1763c1038165SDavid Jander 1764983aee5dSMark Brown /* Lock queue */ 17658caab75fSGeert Uytterhoeven spin_lock_irqsave(&ctlr->queue_lock, flags); 1766983aee5dSMark Brown 1767983aee5dSMark Brown /* Make sure we are not already running a message */ 17688711a2abSDavid Jander if (ctlr->cur_msg) 1769c1038165SDavid Jander goto out_unlock; 1770983aee5dSMark Brown 1771983aee5dSMark Brown /* Check if the queue is idle */ 17728caab75fSGeert Uytterhoeven if (list_empty(&ctlr->queue) || !ctlr->running) { 17738711a2abSDavid Jander if (!ctlr->busy) 1774c1038165SDavid Jander goto out_unlock; 1775fc9e0f71SMark Brown 1776e1268597SMark Brown /* Defer any non-atomic teardown to the thread */ 1777f0125f1aSMark Brown if (!in_kthread) { 1778e1268597SMark Brown if (!ctlr->dummy_rx && !ctlr->dummy_tx && 1779e1268597SMark Brown !ctlr->unprepare_transfer_hardware) { 1780e1268597SMark Brown spi_idle_runtime_pm(ctlr); 1781e1268597SMark Brown ctlr->busy = false; 1782ae7d2346SDavid Jander ctlr->queue_empty = true; 1783e1268597SMark Brown trace_spi_controller_idle(ctlr); 1784e1268597SMark Brown } else { 178560a883d1SMarek Szyprowski kthread_queue_work(ctlr->kworker, 1786f0125f1aSMark Brown &ctlr->pump_messages); 1787e1268597SMark Brown } 1788c1038165SDavid Jander goto out_unlock; 1789f0125f1aSMark Brown } 1790f0125f1aSMark Brown 1791f0125f1aSMark Brown ctlr->busy = false; 1792f0125f1aSMark Brown spin_unlock_irqrestore(&ctlr->queue_lock, flags); 1793f0125f1aSMark Brown 1794f0125f1aSMark Brown kfree(ctlr->dummy_rx); 1795f0125f1aSMark Brown ctlr->dummy_rx = NULL; 1796f0125f1aSMark Brown kfree(ctlr->dummy_tx); 1797f0125f1aSMark Brown ctlr->dummy_tx = NULL; 1798f0125f1aSMark Brown if (ctlr->unprepare_transfer_hardware && 1799f0125f1aSMark Brown ctlr->unprepare_transfer_hardware(ctlr)) 1800f0125f1aSMark Brown dev_err(&ctlr->dev, 1801f0125f1aSMark Brown "failed to unprepare transfer hardware\n"); 1802e1268597SMark Brown spi_idle_runtime_pm(ctlr); 1803f0125f1aSMark Brown trace_spi_controller_idle(ctlr); 1804f0125f1aSMark Brown 1805f0125f1aSMark Brown spin_lock_irqsave(&ctlr->queue_lock, flags); 1806ae7d2346SDavid Jander ctlr->queue_empty = true; 1807c1038165SDavid Jander goto out_unlock; 1808ffbbdd21SLinus Walleij } 1809ffbbdd21SLinus Walleij 1810ffbbdd21SLinus Walleij /* Extract head of queue */ 1811d1c44c93SVladimir Oltean msg = list_first_entry(&ctlr->queue, struct spi_message, queue); 1812d1c44c93SVladimir Oltean ctlr->cur_msg = msg; 1813ffbbdd21SLinus Walleij 1814d1c44c93SVladimir Oltean list_del_init(&msg->queue); 18158caab75fSGeert Uytterhoeven if (ctlr->busy) 1816ffbbdd21SLinus Walleij was_busy = true; 1817ffbbdd21SLinus Walleij else 18188caab75fSGeert Uytterhoeven ctlr->busy = true; 18198caab75fSGeert Uytterhoeven spin_unlock_irqrestore(&ctlr->queue_lock, flags); 1820ffbbdd21SLinus Walleij 1821ae7d2346SDavid Jander ret = __spi_pump_transfer_message(ctlr, msg, was_busy); 182269fa9590SDavid Jander kthread_queue_work(ctlr->kworker, &ctlr->pump_messages); 1823c191543eSDavid Jander 182469fa9590SDavid Jander ctlr->cur_msg = NULL; 182569fa9590SDavid Jander ctlr->fallback = false; 182669fa9590SDavid Jander 18278caab75fSGeert Uytterhoeven mutex_unlock(&ctlr->io_mutex); 182862826970SMark Brown 182962826970SMark Brown /* Prod the scheduler in case transfer_one() was busy waiting */ 183049023d2eSJon Hunter if (!ret) 183162826970SMark Brown cond_resched(); 1832c1038165SDavid Jander return; 1833c1038165SDavid Jander 1834c1038165SDavid Jander out_unlock: 18358711a2abSDavid Jander spin_unlock_irqrestore(&ctlr->queue_lock, flags); 1836c1038165SDavid Jander mutex_unlock(&ctlr->io_mutex); 1837ffbbdd21SLinus Walleij } 1838ffbbdd21SLinus Walleij 1839fc9e0f71SMark Brown /** 1840fc9e0f71SMark Brown * spi_pump_messages - kthread work function which processes spi message queue 18418caab75fSGeert Uytterhoeven * @work: pointer to kthread work struct contained in the controller struct 1842fc9e0f71SMark Brown */ 1843fc9e0f71SMark Brown static void spi_pump_messages(struct kthread_work *work) 1844fc9e0f71SMark Brown { 18458caab75fSGeert Uytterhoeven struct spi_controller *ctlr = 18468caab75fSGeert Uytterhoeven container_of(work, struct spi_controller, pump_messages); 1847fc9e0f71SMark Brown 18488caab75fSGeert Uytterhoeven __spi_pump_messages(ctlr, true); 1849fc9e0f71SMark Brown } 1850fc9e0f71SMark Brown 1851924b5867SDouglas Anderson /** 1852350de7ceSAndy Shevchenko * spi_take_timestamp_pre - helper to collect the beginning of the TX timestamp 1853b42faeeeSVladimir Oltean * @ctlr: Pointer to the spi_controller structure of the driver 1854b42faeeeSVladimir Oltean * @xfer: Pointer to the transfer being timestamped 1855862dd2a9SVladimir Oltean * @progress: How many words (not bytes) have been transferred so far 1856b42faeeeSVladimir Oltean * @irqs_off: If true, will disable IRQs and preemption for the duration of the 1857b42faeeeSVladimir Oltean * transfer, for less jitter in time measurement. Only compatible 1858b42faeeeSVladimir Oltean * with PIO drivers. If true, must follow up with 1859b42faeeeSVladimir Oltean * spi_take_timestamp_post or otherwise system will crash. 1860b42faeeeSVladimir Oltean * WARNING: for fully predictable results, the CPU frequency must 1861b42faeeeSVladimir Oltean * also be under control (governor). 1862350de7ceSAndy Shevchenko * 1863350de7ceSAndy Shevchenko * This is a helper for drivers to collect the beginning of the TX timestamp 1864350de7ceSAndy Shevchenko * for the requested byte from the SPI transfer. The frequency with which this 1865350de7ceSAndy Shevchenko * function must be called (once per word, once for the whole transfer, once 1866350de7ceSAndy Shevchenko * per batch of words etc) is arbitrary as long as the @tx buffer offset is 1867350de7ceSAndy Shevchenko * greater than or equal to the requested byte at the time of the call. The 1868350de7ceSAndy Shevchenko * timestamp is only taken once, at the first such call. It is assumed that 1869350de7ceSAndy Shevchenko * the driver advances its @tx buffer pointer monotonically. 1870b42faeeeSVladimir Oltean */ 1871b42faeeeSVladimir Oltean void spi_take_timestamp_pre(struct spi_controller *ctlr, 1872b42faeeeSVladimir Oltean struct spi_transfer *xfer, 1873862dd2a9SVladimir Oltean size_t progress, bool irqs_off) 1874b42faeeeSVladimir Oltean { 1875b42faeeeSVladimir Oltean if (!xfer->ptp_sts) 1876b42faeeeSVladimir Oltean return; 1877b42faeeeSVladimir Oltean 18786a726824SVladimir Oltean if (xfer->timestamped) 1879b42faeeeSVladimir Oltean return; 1880b42faeeeSVladimir Oltean 18816a726824SVladimir Oltean if (progress > xfer->ptp_sts_word_pre) 1882b42faeeeSVladimir Oltean return; 1883b42faeeeSVladimir Oltean 1884b42faeeeSVladimir Oltean /* Capture the resolution of the timestamp */ 1885862dd2a9SVladimir Oltean xfer->ptp_sts_word_pre = progress; 1886b42faeeeSVladimir Oltean 1887b42faeeeSVladimir Oltean if (irqs_off) { 1888b42faeeeSVladimir Oltean local_irq_save(ctlr->irq_flags); 1889b42faeeeSVladimir Oltean preempt_disable(); 1890b42faeeeSVladimir Oltean } 1891b42faeeeSVladimir Oltean 1892b42faeeeSVladimir Oltean ptp_read_system_prets(xfer->ptp_sts); 1893b42faeeeSVladimir Oltean } 1894b42faeeeSVladimir Oltean EXPORT_SYMBOL_GPL(spi_take_timestamp_pre); 1895b42faeeeSVladimir Oltean 1896b42faeeeSVladimir Oltean /** 1897350de7ceSAndy Shevchenko * spi_take_timestamp_post - helper to collect the end of the TX timestamp 1898b42faeeeSVladimir Oltean * @ctlr: Pointer to the spi_controller structure of the driver 1899b42faeeeSVladimir Oltean * @xfer: Pointer to the transfer being timestamped 1900862dd2a9SVladimir Oltean * @progress: How many words (not bytes) have been transferred so far 1901b42faeeeSVladimir Oltean * @irqs_off: If true, will re-enable IRQs and preemption for the local CPU. 1902350de7ceSAndy Shevchenko * 1903350de7ceSAndy Shevchenko * This is a helper for drivers to collect the end of the TX timestamp for 1904350de7ceSAndy Shevchenko * the requested byte from the SPI transfer. Can be called with an arbitrary 1905350de7ceSAndy Shevchenko * frequency: only the first call where @tx exceeds or is equal to the 1906350de7ceSAndy Shevchenko * requested word will be timestamped. 1907b42faeeeSVladimir Oltean */ 1908b42faeeeSVladimir Oltean void spi_take_timestamp_post(struct spi_controller *ctlr, 1909b42faeeeSVladimir Oltean struct spi_transfer *xfer, 1910862dd2a9SVladimir Oltean size_t progress, bool irqs_off) 1911b42faeeeSVladimir Oltean { 1912b42faeeeSVladimir Oltean if (!xfer->ptp_sts) 1913b42faeeeSVladimir Oltean return; 1914b42faeeeSVladimir Oltean 19156a726824SVladimir Oltean if (xfer->timestamped) 1916b42faeeeSVladimir Oltean return; 1917b42faeeeSVladimir Oltean 1918862dd2a9SVladimir Oltean if (progress < xfer->ptp_sts_word_post) 1919b42faeeeSVladimir Oltean return; 1920b42faeeeSVladimir Oltean 1921b42faeeeSVladimir Oltean ptp_read_system_postts(xfer->ptp_sts); 1922b42faeeeSVladimir Oltean 1923b42faeeeSVladimir Oltean if (irqs_off) { 1924b42faeeeSVladimir Oltean local_irq_restore(ctlr->irq_flags); 1925b42faeeeSVladimir Oltean preempt_enable(); 1926b42faeeeSVladimir Oltean } 1927b42faeeeSVladimir Oltean 1928b42faeeeSVladimir Oltean /* Capture the resolution of the timestamp */ 1929862dd2a9SVladimir Oltean xfer->ptp_sts_word_post = progress; 1930b42faeeeSVladimir Oltean 19319d77522bSChristophe JAILLET xfer->timestamped = 1; 1932b42faeeeSVladimir Oltean } 1933b42faeeeSVladimir Oltean EXPORT_SYMBOL_GPL(spi_take_timestamp_post); 1934b42faeeeSVladimir Oltean 1935b42faeeeSVladimir Oltean /** 1936924b5867SDouglas Anderson * spi_set_thread_rt - set the controller to pump at realtime priority 1937924b5867SDouglas Anderson * @ctlr: controller to boost priority of 1938924b5867SDouglas Anderson * 1939924b5867SDouglas Anderson * This can be called because the controller requested realtime priority 1940924b5867SDouglas Anderson * (by setting the ->rt value before calling spi_register_controller()) or 1941924b5867SDouglas Anderson * because a device on the bus said that its transfers needed realtime 1942924b5867SDouglas Anderson * priority. 1943924b5867SDouglas Anderson * 1944924b5867SDouglas Anderson * NOTE: at the moment if any device on a bus says it needs realtime then 1945924b5867SDouglas Anderson * the thread will be at realtime priority for all transfers on that 1946924b5867SDouglas Anderson * controller. If this eventually becomes a problem we may see if we can 1947924b5867SDouglas Anderson * find a way to boost the priority only temporarily during relevant 1948924b5867SDouglas Anderson * transfers. 1949924b5867SDouglas Anderson */ 1950924b5867SDouglas Anderson static void spi_set_thread_rt(struct spi_controller *ctlr) 1951ffbbdd21SLinus Walleij { 1952924b5867SDouglas Anderson dev_info(&ctlr->dev, 1953924b5867SDouglas Anderson "will run message pump with realtime priority\n"); 19546d2b84a4SLinus Torvalds sched_set_fifo(ctlr->kworker->task); 1955924b5867SDouglas Anderson } 1956924b5867SDouglas Anderson 1957924b5867SDouglas Anderson static int spi_init_queue(struct spi_controller *ctlr) 1958924b5867SDouglas Anderson { 19598caab75fSGeert Uytterhoeven ctlr->running = false; 19608caab75fSGeert Uytterhoeven ctlr->busy = false; 1961ae7d2346SDavid Jander ctlr->queue_empty = true; 1962ffbbdd21SLinus Walleij 196360a883d1SMarek Szyprowski ctlr->kworker = kthread_create_worker(0, dev_name(&ctlr->dev)); 196460a883d1SMarek Szyprowski if (IS_ERR(ctlr->kworker)) { 196560a883d1SMarek Szyprowski dev_err(&ctlr->dev, "failed to create message pump kworker\n"); 196660a883d1SMarek Szyprowski return PTR_ERR(ctlr->kworker); 1967ffbbdd21SLinus Walleij } 196860a883d1SMarek Szyprowski 19698caab75fSGeert Uytterhoeven kthread_init_work(&ctlr->pump_messages, spi_pump_messages); 1970f0125f1aSMark Brown 1971ffbbdd21SLinus Walleij /* 19728caab75fSGeert Uytterhoeven * Controller config will indicate if this controller should run the 1973ffbbdd21SLinus Walleij * message pump with high (realtime) priority to reduce the transfer 1974ffbbdd21SLinus Walleij * latency on the bus by minimising the delay between a transfer 1975ffbbdd21SLinus Walleij * request and the scheduling of the message pump thread. Without this 1976ffbbdd21SLinus Walleij * setting the message pump thread will remain at default priority. 1977ffbbdd21SLinus Walleij */ 1978924b5867SDouglas Anderson if (ctlr->rt) 1979924b5867SDouglas Anderson spi_set_thread_rt(ctlr); 1980ffbbdd21SLinus Walleij 1981ffbbdd21SLinus Walleij return 0; 1982ffbbdd21SLinus Walleij } 1983ffbbdd21SLinus Walleij 1984ffbbdd21SLinus Walleij /** 1985ffbbdd21SLinus Walleij * spi_get_next_queued_message() - called by driver to check for queued 1986ffbbdd21SLinus Walleij * messages 19878caab75fSGeert Uytterhoeven * @ctlr: the controller to check for queued messages 1988ffbbdd21SLinus Walleij * 1989ffbbdd21SLinus Walleij * If there are more messages in the queue, the next message is returned from 1990ffbbdd21SLinus Walleij * this call. 199197d56dc6SJavier Martinez Canillas * 199297d56dc6SJavier Martinez Canillas * Return: the next message in the queue, else NULL if the queue is empty. 1993ffbbdd21SLinus Walleij */ 19948caab75fSGeert Uytterhoeven struct spi_message *spi_get_next_queued_message(struct spi_controller *ctlr) 1995ffbbdd21SLinus Walleij { 1996ffbbdd21SLinus Walleij struct spi_message *next; 1997ffbbdd21SLinus Walleij unsigned long flags; 1998ffbbdd21SLinus Walleij 199995c8222fSDavid Jander /* Get a pointer to the next message, if any */ 20008caab75fSGeert Uytterhoeven spin_lock_irqsave(&ctlr->queue_lock, flags); 20018caab75fSGeert Uytterhoeven next = list_first_entry_or_null(&ctlr->queue, struct spi_message, 20021cfd97f9SAxel Lin queue); 20038caab75fSGeert Uytterhoeven spin_unlock_irqrestore(&ctlr->queue_lock, flags); 2004ffbbdd21SLinus Walleij 2005ffbbdd21SLinus Walleij return next; 2006ffbbdd21SLinus Walleij } 2007ffbbdd21SLinus Walleij EXPORT_SYMBOL_GPL(spi_get_next_queued_message); 2008ffbbdd21SLinus Walleij 2009ffbbdd21SLinus Walleij /** 2010ffbbdd21SLinus Walleij * spi_finalize_current_message() - the current message is complete 20118caab75fSGeert Uytterhoeven * @ctlr: the controller to return the message to 2012ffbbdd21SLinus Walleij * 2013ffbbdd21SLinus Walleij * Called by the driver to notify the core that the message in the front of the 2014ffbbdd21SLinus Walleij * queue is complete and can be removed from the queue. 2015ffbbdd21SLinus Walleij */ 20168caab75fSGeert Uytterhoeven void spi_finalize_current_message(struct spi_controller *ctlr) 2017ffbbdd21SLinus Walleij { 2018b42faeeeSVladimir Oltean struct spi_transfer *xfer; 2019ffbbdd21SLinus Walleij struct spi_message *mesg; 20202841a5fcSMark Brown int ret; 2021ffbbdd21SLinus Walleij 20228caab75fSGeert Uytterhoeven mesg = ctlr->cur_msg; 2023ffbbdd21SLinus Walleij 2024b42faeeeSVladimir Oltean if (!ctlr->ptp_sts_supported && !ctlr->transfer_one) { 2025b42faeeeSVladimir Oltean list_for_each_entry(xfer, &mesg->transfers, transfer_list) { 2026b42faeeeSVladimir Oltean ptp_read_system_postts(xfer->ptp_sts); 2027b42faeeeSVladimir Oltean xfer->ptp_sts_word_post = xfer->len; 2028b42faeeeSVladimir Oltean } 2029b42faeeeSVladimir Oltean } 2030b42faeeeSVladimir Oltean 20316a726824SVladimir Oltean if (unlikely(ctlr->ptp_sts_supported)) 20326a726824SVladimir Oltean list_for_each_entry(xfer, &mesg->transfers, transfer_list) 20336a726824SVladimir Oltean WARN_ON_ONCE(xfer->ptp_sts && !xfer->timestamped); 2034f971a207SVladimir Oltean 20358caab75fSGeert Uytterhoeven spi_unmap_msg(ctlr, mesg); 203699adef31SMark Brown 2037350de7ceSAndy Shevchenko /* 2038350de7ceSAndy Shevchenko * In the prepare_messages callback the SPI bus has the opportunity 2039350de7ceSAndy Shevchenko * to split a transfer to smaller chunks. 2040350de7ceSAndy Shevchenko * 2041350de7ceSAndy Shevchenko * Release the split transfers here since spi_map_msg() is done on 2042350de7ceSAndy Shevchenko * the split transfers. 2043b59a7ca1SGustav Wiklander */ 2044b59a7ca1SGustav Wiklander spi_res_release(ctlr, mesg); 2045b59a7ca1SGustav Wiklander 20461714582aSDavid Jander if (mesg->prepared && ctlr->unprepare_message) { 20478caab75fSGeert Uytterhoeven ret = ctlr->unprepare_message(ctlr, mesg); 20482841a5fcSMark Brown if (ret) { 20498caab75fSGeert Uytterhoeven dev_err(&ctlr->dev, "failed to unprepare message: %d\n", 20508caab75fSGeert Uytterhoeven ret); 20512841a5fcSMark Brown } 20522841a5fcSMark Brown } 2053391949b6SUwe Kleine-König 20541714582aSDavid Jander mesg->prepared = false; 20551714582aSDavid Jander 2056dc302905SDavid Jander WRITE_ONCE(ctlr->cur_msg_incomplete, false); 2057dc302905SDavid Jander smp_mb(); /* See __spi_pump_transfer_message()... */ 2058dc302905SDavid Jander if (READ_ONCE(ctlr->cur_msg_need_completion)) 205969fa9590SDavid Jander complete(&ctlr->cur_msg_completion); 20608e76ef88SMartin Sperl 20618e76ef88SMartin Sperl trace_spi_message_done(mesg); 20622841a5fcSMark Brown 2063ffbbdd21SLinus Walleij mesg->state = NULL; 2064ffbbdd21SLinus Walleij if (mesg->complete) 2065ffbbdd21SLinus Walleij mesg->complete(mesg->context); 2066ffbbdd21SLinus Walleij } 2067ffbbdd21SLinus Walleij EXPORT_SYMBOL_GPL(spi_finalize_current_message); 2068ffbbdd21SLinus Walleij 20698caab75fSGeert Uytterhoeven static int spi_start_queue(struct spi_controller *ctlr) 2070ffbbdd21SLinus Walleij { 2071ffbbdd21SLinus Walleij unsigned long flags; 2072ffbbdd21SLinus Walleij 20738caab75fSGeert Uytterhoeven spin_lock_irqsave(&ctlr->queue_lock, flags); 2074ffbbdd21SLinus Walleij 20758caab75fSGeert Uytterhoeven if (ctlr->running || ctlr->busy) { 20768caab75fSGeert Uytterhoeven spin_unlock_irqrestore(&ctlr->queue_lock, flags); 2077ffbbdd21SLinus Walleij return -EBUSY; 2078ffbbdd21SLinus Walleij } 2079ffbbdd21SLinus Walleij 20808caab75fSGeert Uytterhoeven ctlr->running = true; 20818caab75fSGeert Uytterhoeven ctlr->cur_msg = NULL; 20828caab75fSGeert Uytterhoeven spin_unlock_irqrestore(&ctlr->queue_lock, flags); 2083ffbbdd21SLinus Walleij 208460a883d1SMarek Szyprowski kthread_queue_work(ctlr->kworker, &ctlr->pump_messages); 2085ffbbdd21SLinus Walleij 2086ffbbdd21SLinus Walleij return 0; 2087ffbbdd21SLinus Walleij } 2088ffbbdd21SLinus Walleij 20898caab75fSGeert Uytterhoeven static int spi_stop_queue(struct spi_controller *ctlr) 2090ffbbdd21SLinus Walleij { 2091ffbbdd21SLinus Walleij unsigned long flags; 2092ffbbdd21SLinus Walleij unsigned limit = 500; 2093ffbbdd21SLinus Walleij int ret = 0; 2094ffbbdd21SLinus Walleij 20958caab75fSGeert Uytterhoeven spin_lock_irqsave(&ctlr->queue_lock, flags); 2096ffbbdd21SLinus Walleij 2097ffbbdd21SLinus Walleij /* 2098ffbbdd21SLinus Walleij * This is a bit lame, but is optimized for the common execution path. 20998caab75fSGeert Uytterhoeven * A wait_queue on the ctlr->busy could be used, but then the common 2100ffbbdd21SLinus Walleij * execution path (pump_messages) would be required to call wake_up or 2101ffbbdd21SLinus Walleij * friends on every SPI message. Do this instead. 2102ffbbdd21SLinus Walleij */ 21038caab75fSGeert Uytterhoeven while ((!list_empty(&ctlr->queue) || ctlr->busy) && limit--) { 21048caab75fSGeert Uytterhoeven spin_unlock_irqrestore(&ctlr->queue_lock, flags); 2105f97b26b0SAxel Lin usleep_range(10000, 11000); 21068caab75fSGeert Uytterhoeven spin_lock_irqsave(&ctlr->queue_lock, flags); 2107ffbbdd21SLinus Walleij } 2108ffbbdd21SLinus Walleij 21098caab75fSGeert Uytterhoeven if (!list_empty(&ctlr->queue) || ctlr->busy) 2110ffbbdd21SLinus Walleij ret = -EBUSY; 2111ffbbdd21SLinus Walleij else 21128caab75fSGeert Uytterhoeven ctlr->running = false; 2113ffbbdd21SLinus Walleij 21148caab75fSGeert Uytterhoeven spin_unlock_irqrestore(&ctlr->queue_lock, flags); 2115ffbbdd21SLinus Walleij 2116ffbbdd21SLinus Walleij if (ret) { 21178caab75fSGeert Uytterhoeven dev_warn(&ctlr->dev, "could not stop message queue\n"); 2118ffbbdd21SLinus Walleij return ret; 2119ffbbdd21SLinus Walleij } 2120ffbbdd21SLinus Walleij return ret; 2121ffbbdd21SLinus Walleij } 2122ffbbdd21SLinus Walleij 21238caab75fSGeert Uytterhoeven static int spi_destroy_queue(struct spi_controller *ctlr) 2124ffbbdd21SLinus Walleij { 2125ffbbdd21SLinus Walleij int ret; 2126ffbbdd21SLinus Walleij 21278caab75fSGeert Uytterhoeven ret = spi_stop_queue(ctlr); 2128ffbbdd21SLinus Walleij 2129ffbbdd21SLinus Walleij /* 21303989144fSPetr Mladek * kthread_flush_worker will block until all work is done. 2131ffbbdd21SLinus Walleij * If the reason that stop_queue timed out is that the work will never 2132ffbbdd21SLinus Walleij * finish, then it does no good to call flush/stop thread, so 2133ffbbdd21SLinus Walleij * return anyway. 2134ffbbdd21SLinus Walleij */ 2135ffbbdd21SLinus Walleij if (ret) { 21368caab75fSGeert Uytterhoeven dev_err(&ctlr->dev, "problem destroying queue\n"); 2137ffbbdd21SLinus Walleij return ret; 2138ffbbdd21SLinus Walleij } 2139ffbbdd21SLinus Walleij 214060a883d1SMarek Szyprowski kthread_destroy_worker(ctlr->kworker); 2141ffbbdd21SLinus Walleij 2142ffbbdd21SLinus Walleij return 0; 2143ffbbdd21SLinus Walleij } 2144ffbbdd21SLinus Walleij 21450461a414SMark Brown static int __spi_queued_transfer(struct spi_device *spi, 21460461a414SMark Brown struct spi_message *msg, 21470461a414SMark Brown bool need_pump) 2148ffbbdd21SLinus Walleij { 21498caab75fSGeert Uytterhoeven struct spi_controller *ctlr = spi->controller; 2150ffbbdd21SLinus Walleij unsigned long flags; 2151ffbbdd21SLinus Walleij 21528caab75fSGeert Uytterhoeven spin_lock_irqsave(&ctlr->queue_lock, flags); 2153ffbbdd21SLinus Walleij 21548caab75fSGeert Uytterhoeven if (!ctlr->running) { 21558caab75fSGeert Uytterhoeven spin_unlock_irqrestore(&ctlr->queue_lock, flags); 2156ffbbdd21SLinus Walleij return -ESHUTDOWN; 2157ffbbdd21SLinus Walleij } 2158ffbbdd21SLinus Walleij msg->actual_length = 0; 2159ffbbdd21SLinus Walleij msg->status = -EINPROGRESS; 2160ffbbdd21SLinus Walleij 21618caab75fSGeert Uytterhoeven list_add_tail(&msg->queue, &ctlr->queue); 2162ae7d2346SDavid Jander ctlr->queue_empty = false; 2163f0125f1aSMark Brown if (!ctlr->busy && need_pump) 216460a883d1SMarek Szyprowski kthread_queue_work(ctlr->kworker, &ctlr->pump_messages); 2165ffbbdd21SLinus Walleij 21668caab75fSGeert Uytterhoeven spin_unlock_irqrestore(&ctlr->queue_lock, flags); 2167ffbbdd21SLinus Walleij return 0; 2168ffbbdd21SLinus Walleij } 2169ffbbdd21SLinus Walleij 21700461a414SMark Brown /** 21710461a414SMark Brown * spi_queued_transfer - transfer function for queued transfers 21720461a414SMark Brown * @spi: spi device which is requesting transfer 21730461a414SMark Brown * @msg: spi message which is to handled is queued to driver queue 217497d56dc6SJavier Martinez Canillas * 217597d56dc6SJavier Martinez Canillas * Return: zero on success, else a negative error code. 21760461a414SMark Brown */ 21770461a414SMark Brown static int spi_queued_transfer(struct spi_device *spi, struct spi_message *msg) 21780461a414SMark Brown { 21790461a414SMark Brown return __spi_queued_transfer(spi, msg, true); 21800461a414SMark Brown } 21810461a414SMark Brown 21828caab75fSGeert Uytterhoeven static int spi_controller_initialize_queue(struct spi_controller *ctlr) 2183ffbbdd21SLinus Walleij { 2184ffbbdd21SLinus Walleij int ret; 2185ffbbdd21SLinus Walleij 21868caab75fSGeert Uytterhoeven ctlr->transfer = spi_queued_transfer; 21878caab75fSGeert Uytterhoeven if (!ctlr->transfer_one_message) 21888caab75fSGeert Uytterhoeven ctlr->transfer_one_message = spi_transfer_one_message; 2189ffbbdd21SLinus Walleij 2190ffbbdd21SLinus Walleij /* Initialize and start queue */ 21918caab75fSGeert Uytterhoeven ret = spi_init_queue(ctlr); 2192ffbbdd21SLinus Walleij if (ret) { 21938caab75fSGeert Uytterhoeven dev_err(&ctlr->dev, "problem initializing queue\n"); 2194ffbbdd21SLinus Walleij goto err_init_queue; 2195ffbbdd21SLinus Walleij } 21968caab75fSGeert Uytterhoeven ctlr->queued = true; 21978caab75fSGeert Uytterhoeven ret = spi_start_queue(ctlr); 2198ffbbdd21SLinus Walleij if (ret) { 21998caab75fSGeert Uytterhoeven dev_err(&ctlr->dev, "problem starting queue\n"); 2200ffbbdd21SLinus Walleij goto err_start_queue; 2201ffbbdd21SLinus Walleij } 2202ffbbdd21SLinus Walleij 2203ffbbdd21SLinus Walleij return 0; 2204ffbbdd21SLinus Walleij 2205ffbbdd21SLinus Walleij err_start_queue: 22068caab75fSGeert Uytterhoeven spi_destroy_queue(ctlr); 2207c3676d5cSMark Brown err_init_queue: 2208ffbbdd21SLinus Walleij return ret; 2209ffbbdd21SLinus Walleij } 2210ffbbdd21SLinus Walleij 2211988f259bSBoris Brezillon /** 2212988f259bSBoris Brezillon * spi_flush_queue - Send all pending messages in the queue from the callers' 2213988f259bSBoris Brezillon * context 2214988f259bSBoris Brezillon * @ctlr: controller to process queue for 2215988f259bSBoris Brezillon * 2216988f259bSBoris Brezillon * This should be used when one wants to ensure all pending messages have been 2217988f259bSBoris Brezillon * sent before doing something. Is used by the spi-mem code to make sure SPI 2218988f259bSBoris Brezillon * memory operations do not preempt regular SPI transfers that have been queued 2219988f259bSBoris Brezillon * before the spi-mem operation. 2220988f259bSBoris Brezillon */ 2221988f259bSBoris Brezillon void spi_flush_queue(struct spi_controller *ctlr) 2222988f259bSBoris Brezillon { 2223988f259bSBoris Brezillon if (ctlr->transfer == spi_queued_transfer) 2224988f259bSBoris Brezillon __spi_pump_messages(ctlr, false); 2225988f259bSBoris Brezillon } 2226988f259bSBoris Brezillon 2227ffbbdd21SLinus Walleij /*-------------------------------------------------------------------------*/ 2228ffbbdd21SLinus Walleij 22297cb94361SAndreas Larsson #if defined(CONFIG_OF) 2230f276aacfSJanne Grunau static void of_spi_parse_dt_cs_delay(struct device_node *nc, 2231f276aacfSJanne Grunau struct spi_delay *delay, const char *prop) 2232f276aacfSJanne Grunau { 2233f276aacfSJanne Grunau u32 value; 2234f276aacfSJanne Grunau 2235f276aacfSJanne Grunau if (!of_property_read_u32(nc, prop, &value)) { 2236f276aacfSJanne Grunau if (value > U16_MAX) { 2237f276aacfSJanne Grunau delay->value = DIV_ROUND_UP(value, 1000); 2238f276aacfSJanne Grunau delay->unit = SPI_DELAY_UNIT_USECS; 2239f276aacfSJanne Grunau } else { 2240f276aacfSJanne Grunau delay->value = value; 2241f276aacfSJanne Grunau delay->unit = SPI_DELAY_UNIT_NSECS; 2242f276aacfSJanne Grunau } 2243f276aacfSJanne Grunau } 2244f276aacfSJanne Grunau } 2245f276aacfSJanne Grunau 22468caab75fSGeert Uytterhoeven static int of_spi_parse_dt(struct spi_controller *ctlr, struct spi_device *spi, 2247c2e51ac3SGeert Uytterhoeven struct device_node *nc) 2248d57a4282SGrant Likely { 224989da4293STrent Piepho u32 value; 2250c2e51ac3SGeert Uytterhoeven int rc; 2251d57a4282SGrant Likely 2252d57a4282SGrant Likely /* Mode (clock phase/polarity/etc.) */ 2253e0bcb680SSergei Shtylyov if (of_property_read_bool(nc, "spi-cpha")) 2254d57a4282SGrant Likely spi->mode |= SPI_CPHA; 2255e0bcb680SSergei Shtylyov if (of_property_read_bool(nc, "spi-cpol")) 2256d57a4282SGrant Likely spi->mode |= SPI_CPOL; 2257e0bcb680SSergei Shtylyov if (of_property_read_bool(nc, "spi-3wire")) 2258c20151dfSLars-Peter Clausen spi->mode |= SPI_3WIRE; 2259e0bcb680SSergei Shtylyov if (of_property_read_bool(nc, "spi-lsb-first")) 2260cd6339e6SZhao Qiang spi->mode |= SPI_LSB_FIRST; 22613e5ec1dbSGregory CLEMENT if (of_property_read_bool(nc, "spi-cs-high")) 2262f3186dd8SLinus Walleij spi->mode |= SPI_CS_HIGH; 2263f3186dd8SLinus Walleij 2264f477b7fbSwangyuhang /* Device DUAL/QUAD mode */ 226589da4293STrent Piepho if (!of_property_read_u32(nc, "spi-tx-bus-width", &value)) { 226689da4293STrent Piepho switch (value) { 2267d962608cSDragos Bogdan case 0: 2268d962608cSDragos Bogdan spi->mode |= SPI_NO_TX; 2269d962608cSDragos Bogdan break; 227089da4293STrent Piepho case 1: 2271f477b7fbSwangyuhang break; 227289da4293STrent Piepho case 2: 2273f477b7fbSwangyuhang spi->mode |= SPI_TX_DUAL; 2274f477b7fbSwangyuhang break; 227589da4293STrent Piepho case 4: 2276f477b7fbSwangyuhang spi->mode |= SPI_TX_QUAD; 2277f477b7fbSwangyuhang break; 22786b03061fSYogesh Narayan Gaur case 8: 22796b03061fSYogesh Narayan Gaur spi->mode |= SPI_TX_OCTAL; 22806b03061fSYogesh Narayan Gaur break; 2281f477b7fbSwangyuhang default: 22828caab75fSGeert Uytterhoeven dev_warn(&ctlr->dev, 2283a110f93dSwangyuhang "spi-tx-bus-width %d not supported\n", 228489da4293STrent Piepho value); 228580874d8cSGeert Uytterhoeven break; 2286f477b7fbSwangyuhang } 2287a822e99cSMark Brown } 2288f477b7fbSwangyuhang 228989da4293STrent Piepho if (!of_property_read_u32(nc, "spi-rx-bus-width", &value)) { 229089da4293STrent Piepho switch (value) { 2291d962608cSDragos Bogdan case 0: 2292d962608cSDragos Bogdan spi->mode |= SPI_NO_RX; 2293d962608cSDragos Bogdan break; 229489da4293STrent Piepho case 1: 2295f477b7fbSwangyuhang break; 229689da4293STrent Piepho case 2: 2297f477b7fbSwangyuhang spi->mode |= SPI_RX_DUAL; 2298f477b7fbSwangyuhang break; 229989da4293STrent Piepho case 4: 2300f477b7fbSwangyuhang spi->mode |= SPI_RX_QUAD; 2301f477b7fbSwangyuhang break; 23026b03061fSYogesh Narayan Gaur case 8: 23036b03061fSYogesh Narayan Gaur spi->mode |= SPI_RX_OCTAL; 23046b03061fSYogesh Narayan Gaur break; 2305f477b7fbSwangyuhang default: 23068caab75fSGeert Uytterhoeven dev_warn(&ctlr->dev, 2307a110f93dSwangyuhang "spi-rx-bus-width %d not supported\n", 230889da4293STrent Piepho value); 230980874d8cSGeert Uytterhoeven break; 2310f477b7fbSwangyuhang } 2311a822e99cSMark Brown } 2312f477b7fbSwangyuhang 23138caab75fSGeert Uytterhoeven if (spi_controller_is_slave(ctlr)) { 2314194276b0SRob Herring if (!of_node_name_eq(nc, "slave")) { 231525c56c88SRob Herring dev_err(&ctlr->dev, "%pOF is not called 'slave'\n", 231625c56c88SRob Herring nc); 23176c364062SGeert Uytterhoeven return -EINVAL; 23186c364062SGeert Uytterhoeven } 23196c364062SGeert Uytterhoeven return 0; 23206c364062SGeert Uytterhoeven } 23216c364062SGeert Uytterhoeven 23226c364062SGeert Uytterhoeven /* Device address */ 23236c364062SGeert Uytterhoeven rc = of_property_read_u32(nc, "reg", &value); 23246c364062SGeert Uytterhoeven if (rc) { 232525c56c88SRob Herring dev_err(&ctlr->dev, "%pOF has no valid 'reg' property (%d)\n", 232625c56c88SRob Herring nc, rc); 23276c364062SGeert Uytterhoeven return rc; 23286c364062SGeert Uytterhoeven } 2329303feb3cSAmit Kumar Mahapatra spi_set_chipselect(spi, 0, value); 23306c364062SGeert Uytterhoeven 2331d57a4282SGrant Likely /* Device speed */ 2332671c3bf5SChuanhong Guo if (!of_property_read_u32(nc, "spi-max-frequency", &value)) 233389da4293STrent Piepho spi->max_speed_hz = value; 2334d57a4282SGrant Likely 2335f276aacfSJanne Grunau /* Device CS delays */ 2336f276aacfSJanne Grunau of_spi_parse_dt_cs_delay(nc, &spi->cs_setup, "spi-cs-setup-delay-ns"); 23375827b31dSJanne Grunau of_spi_parse_dt_cs_delay(nc, &spi->cs_hold, "spi-cs-hold-delay-ns"); 23385827b31dSJanne Grunau of_spi_parse_dt_cs_delay(nc, &spi->cs_inactive, "spi-cs-inactive-delay-ns"); 233933a2fde5STudor Ambarus 2340c2e51ac3SGeert Uytterhoeven return 0; 2341c2e51ac3SGeert Uytterhoeven } 2342c2e51ac3SGeert Uytterhoeven 2343c2e51ac3SGeert Uytterhoeven static struct spi_device * 23448caab75fSGeert Uytterhoeven of_register_spi_device(struct spi_controller *ctlr, struct device_node *nc) 2345c2e51ac3SGeert Uytterhoeven { 2346c2e51ac3SGeert Uytterhoeven struct spi_device *spi; 2347c2e51ac3SGeert Uytterhoeven int rc; 2348c2e51ac3SGeert Uytterhoeven 2349c2e51ac3SGeert Uytterhoeven /* Alloc an spi_device */ 23508caab75fSGeert Uytterhoeven spi = spi_alloc_device(ctlr); 2351c2e51ac3SGeert Uytterhoeven if (!spi) { 235225c56c88SRob Herring dev_err(&ctlr->dev, "spi_device alloc error for %pOF\n", nc); 2353c2e51ac3SGeert Uytterhoeven rc = -ENOMEM; 2354c2e51ac3SGeert Uytterhoeven goto err_out; 2355c2e51ac3SGeert Uytterhoeven } 2356c2e51ac3SGeert Uytterhoeven 2357c2e51ac3SGeert Uytterhoeven /* Select device driver */ 2358c2e51ac3SGeert Uytterhoeven rc = of_modalias_node(nc, spi->modalias, 2359c2e51ac3SGeert Uytterhoeven sizeof(spi->modalias)); 2360c2e51ac3SGeert Uytterhoeven if (rc < 0) { 236125c56c88SRob Herring dev_err(&ctlr->dev, "cannot find modalias for %pOF\n", nc); 2362c2e51ac3SGeert Uytterhoeven goto err_out; 2363c2e51ac3SGeert Uytterhoeven } 2364c2e51ac3SGeert Uytterhoeven 23658caab75fSGeert Uytterhoeven rc = of_spi_parse_dt(ctlr, spi, nc); 2366c2e51ac3SGeert Uytterhoeven if (rc) 2367c2e51ac3SGeert Uytterhoeven goto err_out; 2368c2e51ac3SGeert Uytterhoeven 2369d57a4282SGrant Likely /* Store a pointer to the node in the device structure */ 2370d57a4282SGrant Likely of_node_get(nc); 2371*c7cc588bSAndy Shevchenko 2372*c7cc588bSAndy Shevchenko device_set_node(&spi->dev, of_fwnode_handle(nc)); 2373d57a4282SGrant Likely 2374d57a4282SGrant Likely /* Register the new device */ 2375d57a4282SGrant Likely rc = spi_add_device(spi); 2376d57a4282SGrant Likely if (rc) { 237725c56c88SRob Herring dev_err(&ctlr->dev, "spi_device register error %pOF\n", nc); 23788324147fSJohan Hovold goto err_of_node_put; 2379d57a4282SGrant Likely } 2380d57a4282SGrant Likely 2381aff5e3f8SPantelis Antoniou return spi; 2382aff5e3f8SPantelis Antoniou 23838324147fSJohan Hovold err_of_node_put: 23848324147fSJohan Hovold of_node_put(nc); 2385aff5e3f8SPantelis Antoniou err_out: 2386aff5e3f8SPantelis Antoniou spi_dev_put(spi); 2387aff5e3f8SPantelis Antoniou return ERR_PTR(rc); 2388aff5e3f8SPantelis Antoniou } 2389aff5e3f8SPantelis Antoniou 2390aff5e3f8SPantelis Antoniou /** 2391aff5e3f8SPantelis Antoniou * of_register_spi_devices() - Register child devices onto the SPI bus 23928caab75fSGeert Uytterhoeven * @ctlr: Pointer to spi_controller device 2393aff5e3f8SPantelis Antoniou * 23946c364062SGeert Uytterhoeven * Registers an spi_device for each child node of controller node which 23956c364062SGeert Uytterhoeven * represents a valid SPI slave. 2396aff5e3f8SPantelis Antoniou */ 23978caab75fSGeert Uytterhoeven static void of_register_spi_devices(struct spi_controller *ctlr) 2398aff5e3f8SPantelis Antoniou { 2399aff5e3f8SPantelis Antoniou struct spi_device *spi; 2400aff5e3f8SPantelis Antoniou struct device_node *nc; 2401aff5e3f8SPantelis Antoniou 24028caab75fSGeert Uytterhoeven if (!ctlr->dev.of_node) 2403aff5e3f8SPantelis Antoniou return; 2404aff5e3f8SPantelis Antoniou 24058caab75fSGeert Uytterhoeven for_each_available_child_of_node(ctlr->dev.of_node, nc) { 2406bd6c1644SGeert Uytterhoeven if (of_node_test_and_set_flag(nc, OF_POPULATED)) 2407bd6c1644SGeert Uytterhoeven continue; 24088caab75fSGeert Uytterhoeven spi = of_register_spi_device(ctlr, nc); 2409e0af98a7SRalf Ramsauer if (IS_ERR(spi)) { 24108caab75fSGeert Uytterhoeven dev_warn(&ctlr->dev, 241125c56c88SRob Herring "Failed to create SPI device for %pOF\n", nc); 2412e0af98a7SRalf Ramsauer of_node_clear_flag(nc, OF_POPULATED); 2413e0af98a7SRalf Ramsauer } 2414d57a4282SGrant Likely } 2415d57a4282SGrant Likely } 2416d57a4282SGrant Likely #else 24178caab75fSGeert Uytterhoeven static void of_register_spi_devices(struct spi_controller *ctlr) { } 2418d57a4282SGrant Likely #endif 2419d57a4282SGrant Likely 24200c79378cSSebastian Reichel /** 24210c79378cSSebastian Reichel * spi_new_ancillary_device() - Register ancillary SPI device 24220c79378cSSebastian Reichel * @spi: Pointer to the main SPI device registering the ancillary device 24230c79378cSSebastian Reichel * @chip_select: Chip Select of the ancillary device 24240c79378cSSebastian Reichel * 24250c79378cSSebastian Reichel * Register an ancillary SPI device; for example some chips have a chip-select 24260c79378cSSebastian Reichel * for normal device usage and another one for setup/firmware upload. 24270c79378cSSebastian Reichel * 24280c79378cSSebastian Reichel * This may only be called from main SPI device's probe routine. 24290c79378cSSebastian Reichel * 24300c79378cSSebastian Reichel * Return: 0 on success; negative errno on failure 24310c79378cSSebastian Reichel */ 24320c79378cSSebastian Reichel struct spi_device *spi_new_ancillary_device(struct spi_device *spi, 24330c79378cSSebastian Reichel u8 chip_select) 24340c79378cSSebastian Reichel { 24350c79378cSSebastian Reichel struct spi_device *ancillary; 24360c79378cSSebastian Reichel int rc = 0; 24370c79378cSSebastian Reichel 24380c79378cSSebastian Reichel /* Alloc an spi_device */ 24390c79378cSSebastian Reichel ancillary = spi_alloc_device(spi->controller); 24400c79378cSSebastian Reichel if (!ancillary) { 24410c79378cSSebastian Reichel rc = -ENOMEM; 24420c79378cSSebastian Reichel goto err_out; 24430c79378cSSebastian Reichel } 24440c79378cSSebastian Reichel 244551e99de5SWolfram Sang strscpy(ancillary->modalias, "dummy", sizeof(ancillary->modalias)); 24460c79378cSSebastian Reichel 24470c79378cSSebastian Reichel /* Use provided chip-select for ancillary device */ 2448303feb3cSAmit Kumar Mahapatra spi_set_chipselect(ancillary, 0, chip_select); 24490c79378cSSebastian Reichel 24500c79378cSSebastian Reichel /* Take over SPI mode/speed from SPI main device */ 24510c79378cSSebastian Reichel ancillary->max_speed_hz = spi->max_speed_hz; 2452b01d5506SColin Ian King ancillary->mode = spi->mode; 24530c79378cSSebastian Reichel 24540c79378cSSebastian Reichel /* Register the new device */ 24550c79378cSSebastian Reichel rc = spi_add_device_locked(ancillary); 24560c79378cSSebastian Reichel if (rc) { 24570c79378cSSebastian Reichel dev_err(&spi->dev, "failed to register ancillary device\n"); 24580c79378cSSebastian Reichel goto err_out; 24590c79378cSSebastian Reichel } 24600c79378cSSebastian Reichel 24610c79378cSSebastian Reichel return ancillary; 24620c79378cSSebastian Reichel 24630c79378cSSebastian Reichel err_out: 24640c79378cSSebastian Reichel spi_dev_put(ancillary); 24650c79378cSSebastian Reichel return ERR_PTR(rc); 24660c79378cSSebastian Reichel } 24670c79378cSSebastian Reichel EXPORT_SYMBOL_GPL(spi_new_ancillary_device); 24680c79378cSSebastian Reichel 246964bee4d2SMika Westerberg #ifdef CONFIG_ACPI 24704c3c5954SArd Biesheuvel struct acpi_spi_lookup { 24714c3c5954SArd Biesheuvel struct spi_controller *ctlr; 24724c3c5954SArd Biesheuvel u32 max_speed_hz; 24734c3c5954SArd Biesheuvel u32 mode; 24744c3c5954SArd Biesheuvel int irq; 24754c3c5954SArd Biesheuvel u8 bits_per_word; 24764c3c5954SArd Biesheuvel u8 chip_select; 247787e59b36SStefan Binding int n; 247887e59b36SStefan Binding int index; 24794c3c5954SArd Biesheuvel }; 24804c3c5954SArd Biesheuvel 2481e612af7aSStefan Binding static int acpi_spi_count(struct acpi_resource *ares, void *data) 2482e612af7aSStefan Binding { 2483e612af7aSStefan Binding struct acpi_resource_spi_serialbus *sb; 2484e612af7aSStefan Binding int *count = data; 2485e612af7aSStefan Binding 2486e612af7aSStefan Binding if (ares->type != ACPI_RESOURCE_TYPE_SERIAL_BUS) 2487e612af7aSStefan Binding return 1; 2488e612af7aSStefan Binding 2489e612af7aSStefan Binding sb = &ares->data.spi_serial_bus; 2490e612af7aSStefan Binding if (sb->type != ACPI_RESOURCE_SERIAL_TYPE_SPI) 2491e612af7aSStefan Binding return 1; 2492e612af7aSStefan Binding 2493e612af7aSStefan Binding *count = *count + 1; 2494e612af7aSStefan Binding 2495e612af7aSStefan Binding return 1; 2496e612af7aSStefan Binding } 2497e612af7aSStefan Binding 2498e612af7aSStefan Binding /** 2499e612af7aSStefan Binding * acpi_spi_count_resources - Count the number of SpiSerialBus resources 2500e612af7aSStefan Binding * @adev: ACPI device 2501e612af7aSStefan Binding * 2502e612af7aSStefan Binding * Returns the number of SpiSerialBus resources in the ACPI-device's 2503e612af7aSStefan Binding * resource-list; or a negative error code. 2504e612af7aSStefan Binding */ 2505e612af7aSStefan Binding int acpi_spi_count_resources(struct acpi_device *adev) 2506e612af7aSStefan Binding { 2507e612af7aSStefan Binding LIST_HEAD(r); 2508e612af7aSStefan Binding int count = 0; 2509e612af7aSStefan Binding int ret; 2510e612af7aSStefan Binding 2511e612af7aSStefan Binding ret = acpi_dev_get_resources(adev, &r, acpi_spi_count, &count); 2512e612af7aSStefan Binding if (ret < 0) 2513e612af7aSStefan Binding return ret; 2514e612af7aSStefan Binding 2515e612af7aSStefan Binding acpi_dev_free_resource_list(&r); 2516e612af7aSStefan Binding 2517e612af7aSStefan Binding return count; 2518e612af7aSStefan Binding } 2519e612af7aSStefan Binding EXPORT_SYMBOL_GPL(acpi_spi_count_resources); 2520e612af7aSStefan Binding 25214c3c5954SArd Biesheuvel static void acpi_spi_parse_apple_properties(struct acpi_device *dev, 25224c3c5954SArd Biesheuvel struct acpi_spi_lookup *lookup) 25238a2e487eSLukas Wunner { 25248a2e487eSLukas Wunner const union acpi_object *obj; 25258a2e487eSLukas Wunner 25268a2e487eSLukas Wunner if (!x86_apple_machine) 25278a2e487eSLukas Wunner return; 25288a2e487eSLukas Wunner 25298a2e487eSLukas Wunner if (!acpi_dev_get_property(dev, "spiSclkPeriod", ACPI_TYPE_BUFFER, &obj) 25308a2e487eSLukas Wunner && obj->buffer.length >= 4) 25314c3c5954SArd Biesheuvel lookup->max_speed_hz = NSEC_PER_SEC / *(u32 *)obj->buffer.pointer; 25328a2e487eSLukas Wunner 25338a2e487eSLukas Wunner if (!acpi_dev_get_property(dev, "spiWordSize", ACPI_TYPE_BUFFER, &obj) 25348a2e487eSLukas Wunner && obj->buffer.length == 8) 25354c3c5954SArd Biesheuvel lookup->bits_per_word = *(u64 *)obj->buffer.pointer; 25368a2e487eSLukas Wunner 25378a2e487eSLukas Wunner if (!acpi_dev_get_property(dev, "spiBitOrder", ACPI_TYPE_BUFFER, &obj) 25388a2e487eSLukas Wunner && obj->buffer.length == 8 && !*(u64 *)obj->buffer.pointer) 25394c3c5954SArd Biesheuvel lookup->mode |= SPI_LSB_FIRST; 25408a2e487eSLukas Wunner 25418a2e487eSLukas Wunner if (!acpi_dev_get_property(dev, "spiSPO", ACPI_TYPE_BUFFER, &obj) 25428a2e487eSLukas Wunner && obj->buffer.length == 8 && *(u64 *)obj->buffer.pointer) 25434c3c5954SArd Biesheuvel lookup->mode |= SPI_CPOL; 25448a2e487eSLukas Wunner 25458a2e487eSLukas Wunner if (!acpi_dev_get_property(dev, "spiSPH", ACPI_TYPE_BUFFER, &obj) 25468a2e487eSLukas Wunner && obj->buffer.length == 8 && *(u64 *)obj->buffer.pointer) 25474c3c5954SArd Biesheuvel lookup->mode |= SPI_CPHA; 25488a2e487eSLukas Wunner } 25498a2e487eSLukas Wunner 255087e59b36SStefan Binding static struct spi_controller *acpi_spi_find_controller_by_adev(struct acpi_device *adev); 255187e59b36SStefan Binding 255264bee4d2SMika Westerberg static int acpi_spi_add_resource(struct acpi_resource *ares, void *data) 255364bee4d2SMika Westerberg { 25544c3c5954SArd Biesheuvel struct acpi_spi_lookup *lookup = data; 25554c3c5954SArd Biesheuvel struct spi_controller *ctlr = lookup->ctlr; 255664bee4d2SMika Westerberg 255764bee4d2SMika Westerberg if (ares->type == ACPI_RESOURCE_TYPE_SERIAL_BUS) { 255864bee4d2SMika Westerberg struct acpi_resource_spi_serialbus *sb; 25594c3c5954SArd Biesheuvel acpi_handle parent_handle; 25604c3c5954SArd Biesheuvel acpi_status status; 256164bee4d2SMika Westerberg 256264bee4d2SMika Westerberg sb = &ares->data.spi_serial_bus; 256364bee4d2SMika Westerberg if (sb->type == ACPI_RESOURCE_SERIAL_TYPE_SPI) { 25644c3c5954SArd Biesheuvel 256587e59b36SStefan Binding if (lookup->index != -1 && lookup->n++ != lookup->index) 256687e59b36SStefan Binding return 1; 256787e59b36SStefan Binding 25684c3c5954SArd Biesheuvel status = acpi_get_handle(NULL, 25694c3c5954SArd Biesheuvel sb->resource_source.string_ptr, 25704c3c5954SArd Biesheuvel &parent_handle); 25714c3c5954SArd Biesheuvel 257287e59b36SStefan Binding if (ACPI_FAILURE(status)) 25734c3c5954SArd Biesheuvel return -ENODEV; 25744c3c5954SArd Biesheuvel 257587e59b36SStefan Binding if (ctlr) { 257687e59b36SStefan Binding if (ACPI_HANDLE(ctlr->dev.parent) != parent_handle) 257787e59b36SStefan Binding return -ENODEV; 257887e59b36SStefan Binding } else { 257987e59b36SStefan Binding struct acpi_device *adev; 258087e59b36SStefan Binding 2581ac2a3feeSRafael J. Wysocki adev = acpi_fetch_acpi_dev(parent_handle); 2582ac2a3feeSRafael J. Wysocki if (!adev) 258387e59b36SStefan Binding return -ENODEV; 258487e59b36SStefan Binding 258587e59b36SStefan Binding ctlr = acpi_spi_find_controller_by_adev(adev); 258687e59b36SStefan Binding if (!ctlr) 25879c22ec4aSAndy Shevchenko return -EPROBE_DEFER; 258887e59b36SStefan Binding 258987e59b36SStefan Binding lookup->ctlr = ctlr; 259087e59b36SStefan Binding } 259187e59b36SStefan Binding 2592a0a90718SMika Westerberg /* 2593a0a90718SMika Westerberg * ACPI DeviceSelection numbering is handled by the 2594a0a90718SMika Westerberg * host controller driver in Windows and can vary 2595a0a90718SMika Westerberg * from driver to driver. In Linux we always expect 2596a0a90718SMika Westerberg * 0 .. max - 1 so we need to ask the driver to 2597a0a90718SMika Westerberg * translate between the two schemes. 2598a0a90718SMika Westerberg */ 25998caab75fSGeert Uytterhoeven if (ctlr->fw_translate_cs) { 26008caab75fSGeert Uytterhoeven int cs = ctlr->fw_translate_cs(ctlr, 2601a0a90718SMika Westerberg sb->device_selection); 2602a0a90718SMika Westerberg if (cs < 0) 2603a0a90718SMika Westerberg return cs; 26044c3c5954SArd Biesheuvel lookup->chip_select = cs; 2605a0a90718SMika Westerberg } else { 26064c3c5954SArd Biesheuvel lookup->chip_select = sb->device_selection; 2607a0a90718SMika Westerberg } 2608a0a90718SMika Westerberg 26094c3c5954SArd Biesheuvel lookup->max_speed_hz = sb->connection_speed; 26100dadde34SAndy Shevchenko lookup->bits_per_word = sb->data_bit_length; 261164bee4d2SMika Westerberg 261264bee4d2SMika Westerberg if (sb->clock_phase == ACPI_SPI_SECOND_PHASE) 26134c3c5954SArd Biesheuvel lookup->mode |= SPI_CPHA; 261464bee4d2SMika Westerberg if (sb->clock_polarity == ACPI_SPI_START_HIGH) 26154c3c5954SArd Biesheuvel lookup->mode |= SPI_CPOL; 261664bee4d2SMika Westerberg if (sb->device_polarity == ACPI_SPI_ACTIVE_HIGH) 26174c3c5954SArd Biesheuvel lookup->mode |= SPI_CS_HIGH; 261864bee4d2SMika Westerberg } 26194c3c5954SArd Biesheuvel } else if (lookup->irq < 0) { 262064bee4d2SMika Westerberg struct resource r; 262164bee4d2SMika Westerberg 262264bee4d2SMika Westerberg if (acpi_dev_resource_interrupt(ares, 0, &r)) 26234c3c5954SArd Biesheuvel lookup->irq = r.start; 262464bee4d2SMika Westerberg } 262564bee4d2SMika Westerberg 262664bee4d2SMika Westerberg /* Always tell the ACPI core to skip this resource */ 262764bee4d2SMika Westerberg return 1; 262864bee4d2SMika Westerberg } 262964bee4d2SMika Westerberg 2630000bee0eSStefan Binding /** 2631000bee0eSStefan Binding * acpi_spi_device_alloc - Allocate a spi device, and fill it in with ACPI information 2632000bee0eSStefan Binding * @ctlr: controller to which the spi device belongs 2633000bee0eSStefan Binding * @adev: ACPI Device for the spi device 263487e59b36SStefan Binding * @index: Index of the spi resource inside the ACPI Node 2635000bee0eSStefan Binding * 2636000bee0eSStefan Binding * This should be used to allocate a new spi device from and ACPI Node. 2637000bee0eSStefan Binding * The caller is responsible for calling spi_add_device to register the spi device. 2638000bee0eSStefan Binding * 263987e59b36SStefan Binding * If ctlr is set to NULL, the Controller for the spi device will be looked up 264087e59b36SStefan Binding * using the resource. 264187e59b36SStefan Binding * If index is set to -1, index is not used. 264287e59b36SStefan Binding * Note: If index is -1, ctlr must be set. 264387e59b36SStefan Binding * 2644000bee0eSStefan Binding * Return: a pointer to the new device, or ERR_PTR on error. 2645000bee0eSStefan Binding */ 2646000bee0eSStefan Binding struct spi_device *acpi_spi_device_alloc(struct spi_controller *ctlr, 264787e59b36SStefan Binding struct acpi_device *adev, 264887e59b36SStefan Binding int index) 264964bee4d2SMika Westerberg { 26504c3c5954SArd Biesheuvel acpi_handle parent_handle = NULL; 265164bee4d2SMika Westerberg struct list_head resource_list; 2652b28944c6SArd Biesheuvel struct acpi_spi_lookup lookup = {}; 265364bee4d2SMika Westerberg struct spi_device *spi; 265464bee4d2SMika Westerberg int ret; 265564bee4d2SMika Westerberg 265687e59b36SStefan Binding if (!ctlr && index == -1) 265787e59b36SStefan Binding return ERR_PTR(-EINVAL); 265887e59b36SStefan Binding 26594c3c5954SArd Biesheuvel lookup.ctlr = ctlr; 26604c3c5954SArd Biesheuvel lookup.irq = -1; 266187e59b36SStefan Binding lookup.index = index; 266287e59b36SStefan Binding lookup.n = 0; 26634c3c5954SArd Biesheuvel 26644c3c5954SArd Biesheuvel INIT_LIST_HEAD(&resource_list); 26654c3c5954SArd Biesheuvel ret = acpi_dev_get_resources(adev, &resource_list, 26664c3c5954SArd Biesheuvel acpi_spi_add_resource, &lookup); 26674c3c5954SArd Biesheuvel acpi_dev_free_resource_list(&resource_list); 26684c3c5954SArd Biesheuvel 26694c3c5954SArd Biesheuvel if (ret < 0) 267095c8222fSDavid Jander /* Found SPI in _CRS but it points to another controller */ 2671b6747f4fSAndy Shevchenko return ERR_PTR(ret); 26724c3c5954SArd Biesheuvel 26734c3c5954SArd Biesheuvel if (!lookup.max_speed_hz && 267410e92724SBjorn Helgaas ACPI_SUCCESS(acpi_get_parent(adev->handle, &parent_handle)) && 267587e59b36SStefan Binding ACPI_HANDLE(lookup.ctlr->dev.parent) == parent_handle) { 26764c3c5954SArd Biesheuvel /* Apple does not use _CRS but nested devices for SPI slaves */ 26774c3c5954SArd Biesheuvel acpi_spi_parse_apple_properties(adev, &lookup); 26784c3c5954SArd Biesheuvel } 26794c3c5954SArd Biesheuvel 26804c3c5954SArd Biesheuvel if (!lookup.max_speed_hz) 2681000bee0eSStefan Binding return ERR_PTR(-ENODEV); 26824c3c5954SArd Biesheuvel 268387e59b36SStefan Binding spi = spi_alloc_device(lookup.ctlr); 268464bee4d2SMika Westerberg if (!spi) { 268587e59b36SStefan Binding dev_err(&lookup.ctlr->dev, "failed to allocate SPI device for %s\n", 268664bee4d2SMika Westerberg dev_name(&adev->dev)); 2687000bee0eSStefan Binding return ERR_PTR(-ENOMEM); 268864bee4d2SMika Westerberg } 268964bee4d2SMika Westerberg 26907b199811SRafael J. Wysocki ACPI_COMPANION_SET(&spi->dev, adev); 26914c3c5954SArd Biesheuvel spi->max_speed_hz = lookup.max_speed_hz; 2692ea235786SJohn Garry spi->mode |= lookup.mode; 26934c3c5954SArd Biesheuvel spi->irq = lookup.irq; 26944c3c5954SArd Biesheuvel spi->bits_per_word = lookup.bits_per_word; 2695303feb3cSAmit Kumar Mahapatra spi_set_chipselect(spi, 0, lookup.chip_select); 269664bee4d2SMika Westerberg 2697000bee0eSStefan Binding return spi; 2698000bee0eSStefan Binding } 2699000bee0eSStefan Binding EXPORT_SYMBOL_GPL(acpi_spi_device_alloc); 2700000bee0eSStefan Binding 2701000bee0eSStefan Binding static acpi_status acpi_register_spi_device(struct spi_controller *ctlr, 2702000bee0eSStefan Binding struct acpi_device *adev) 2703000bee0eSStefan Binding { 2704000bee0eSStefan Binding struct spi_device *spi; 2705000bee0eSStefan Binding 2706000bee0eSStefan Binding if (acpi_bus_get_status(adev) || !adev->status.present || 2707000bee0eSStefan Binding acpi_device_enumerated(adev)) 2708000bee0eSStefan Binding return AE_OK; 2709000bee0eSStefan Binding 271087e59b36SStefan Binding spi = acpi_spi_device_alloc(ctlr, adev, -1); 2711000bee0eSStefan Binding if (IS_ERR(spi)) { 2712000bee0eSStefan Binding if (PTR_ERR(spi) == -ENOMEM) 2713000bee0eSStefan Binding return AE_NO_MEMORY; 2714000bee0eSStefan Binding else 2715000bee0eSStefan Binding return AE_OK; 2716000bee0eSStefan Binding } 2717000bee0eSStefan Binding 27180c6543f6SDan O'Donovan acpi_set_modalias(adev, acpi_device_hid(adev), spi->modalias, 27190c6543f6SDan O'Donovan sizeof(spi->modalias)); 27200c6543f6SDan O'Donovan 272133ada67dSChristophe RICARD if (spi->irq < 0) 272233ada67dSChristophe RICARD spi->irq = acpi_dev_gpio_irq_get(adev, 0); 272333ada67dSChristophe RICARD 27247f24467fSOctavian Purdila acpi_device_set_enumerated(adev); 27257f24467fSOctavian Purdila 272633cf00e5SMika Westerberg adev->power.flags.ignore_parent = true; 272764bee4d2SMika Westerberg if (spi_add_device(spi)) { 272833cf00e5SMika Westerberg adev->power.flags.ignore_parent = false; 27298caab75fSGeert Uytterhoeven dev_err(&ctlr->dev, "failed to add SPI device %s from ACPI\n", 273064bee4d2SMika Westerberg dev_name(&adev->dev)); 273164bee4d2SMika Westerberg spi_dev_put(spi); 273264bee4d2SMika Westerberg } 273364bee4d2SMika Westerberg 273464bee4d2SMika Westerberg return AE_OK; 273564bee4d2SMika Westerberg } 273664bee4d2SMika Westerberg 27377f24467fSOctavian Purdila static acpi_status acpi_spi_add_device(acpi_handle handle, u32 level, 27387f24467fSOctavian Purdila void *data, void **return_value) 27397f24467fSOctavian Purdila { 27407030c428SRafael J. Wysocki struct acpi_device *adev = acpi_fetch_acpi_dev(handle); 27418caab75fSGeert Uytterhoeven struct spi_controller *ctlr = data; 27427f24467fSOctavian Purdila 27437030c428SRafael J. Wysocki if (!adev) 27447f24467fSOctavian Purdila return AE_OK; 27457f24467fSOctavian Purdila 27468caab75fSGeert Uytterhoeven return acpi_register_spi_device(ctlr, adev); 27477f24467fSOctavian Purdila } 27487f24467fSOctavian Purdila 27494c3c5954SArd Biesheuvel #define SPI_ACPI_ENUMERATE_MAX_DEPTH 32 27504c3c5954SArd Biesheuvel 27518caab75fSGeert Uytterhoeven static void acpi_register_spi_devices(struct spi_controller *ctlr) 275264bee4d2SMika Westerberg { 275364bee4d2SMika Westerberg acpi_status status; 275464bee4d2SMika Westerberg acpi_handle handle; 275564bee4d2SMika Westerberg 27568caab75fSGeert Uytterhoeven handle = ACPI_HANDLE(ctlr->dev.parent); 275764bee4d2SMika Westerberg if (!handle) 275864bee4d2SMika Westerberg return; 275964bee4d2SMika Westerberg 27604c3c5954SArd Biesheuvel status = acpi_walk_namespace(ACPI_TYPE_DEVICE, ACPI_ROOT_OBJECT, 27614c3c5954SArd Biesheuvel SPI_ACPI_ENUMERATE_MAX_DEPTH, 27628caab75fSGeert Uytterhoeven acpi_spi_add_device, NULL, ctlr, NULL); 276364bee4d2SMika Westerberg if (ACPI_FAILURE(status)) 27648caab75fSGeert Uytterhoeven dev_warn(&ctlr->dev, "failed to enumerate SPI slaves\n"); 276564bee4d2SMika Westerberg } 276664bee4d2SMika Westerberg #else 27678caab75fSGeert Uytterhoeven static inline void acpi_register_spi_devices(struct spi_controller *ctlr) {} 276864bee4d2SMika Westerberg #endif /* CONFIG_ACPI */ 276964bee4d2SMika Westerberg 27708caab75fSGeert Uytterhoeven static void spi_controller_release(struct device *dev) 27718ae12a0dSDavid Brownell { 27728caab75fSGeert Uytterhoeven struct spi_controller *ctlr; 27738ae12a0dSDavid Brownell 27748caab75fSGeert Uytterhoeven ctlr = container_of(dev, struct spi_controller, dev); 27758caab75fSGeert Uytterhoeven kfree(ctlr); 27768ae12a0dSDavid Brownell } 27778ae12a0dSDavid Brownell 27788ae12a0dSDavid Brownell static struct class spi_master_class = { 27798ae12a0dSDavid Brownell .name = "spi_master", 27808ae12a0dSDavid Brownell .owner = THIS_MODULE, 27818caab75fSGeert Uytterhoeven .dev_release = spi_controller_release, 2782eca2ebc7SMartin Sperl .dev_groups = spi_master_groups, 27838ae12a0dSDavid Brownell }; 27848ae12a0dSDavid Brownell 27856c364062SGeert Uytterhoeven #ifdef CONFIG_SPI_SLAVE 27866c364062SGeert Uytterhoeven /** 27876c364062SGeert Uytterhoeven * spi_slave_abort - abort the ongoing transfer request on an SPI slave 27886c364062SGeert Uytterhoeven * controller 27896c364062SGeert Uytterhoeven * @spi: device used for the current transfer 27906c364062SGeert Uytterhoeven */ 27916c364062SGeert Uytterhoeven int spi_slave_abort(struct spi_device *spi) 27926c364062SGeert Uytterhoeven { 27938caab75fSGeert Uytterhoeven struct spi_controller *ctlr = spi->controller; 27946c364062SGeert Uytterhoeven 27958caab75fSGeert Uytterhoeven if (spi_controller_is_slave(ctlr) && ctlr->slave_abort) 27968caab75fSGeert Uytterhoeven return ctlr->slave_abort(ctlr); 27976c364062SGeert Uytterhoeven 27986c364062SGeert Uytterhoeven return -ENOTSUPP; 27996c364062SGeert Uytterhoeven } 28006c364062SGeert Uytterhoeven EXPORT_SYMBOL_GPL(spi_slave_abort); 28016c364062SGeert Uytterhoeven 2802b8d3b056SYang Yingliang int spi_target_abort(struct spi_device *spi) 2803b8d3b056SYang Yingliang { 2804b8d3b056SYang Yingliang struct spi_controller *ctlr = spi->controller; 2805b8d3b056SYang Yingliang 2806b8d3b056SYang Yingliang if (spi_controller_is_target(ctlr) && ctlr->target_abort) 2807b8d3b056SYang Yingliang return ctlr->target_abort(ctlr); 2808b8d3b056SYang Yingliang 2809b8d3b056SYang Yingliang return -ENOTSUPP; 2810b8d3b056SYang Yingliang } 2811b8d3b056SYang Yingliang EXPORT_SYMBOL_GPL(spi_target_abort); 2812b8d3b056SYang Yingliang 2813cc8b4659SGeert Uytterhoeven static ssize_t slave_show(struct device *dev, struct device_attribute *attr, 2814cc8b4659SGeert Uytterhoeven char *buf) 28156c364062SGeert Uytterhoeven { 28168caab75fSGeert Uytterhoeven struct spi_controller *ctlr = container_of(dev, struct spi_controller, 28178caab75fSGeert Uytterhoeven dev); 28186c364062SGeert Uytterhoeven struct device *child; 28196c364062SGeert Uytterhoeven 2820c21b0837SAndy Shevchenko child = device_find_any_child(&ctlr->dev); 28216c364062SGeert Uytterhoeven return sprintf(buf, "%s\n", 28226c364062SGeert Uytterhoeven child ? to_spi_device(child)->modalias : NULL); 28236c364062SGeert Uytterhoeven } 28246c364062SGeert Uytterhoeven 2825cc8b4659SGeert Uytterhoeven static ssize_t slave_store(struct device *dev, struct device_attribute *attr, 2826cc8b4659SGeert Uytterhoeven const char *buf, size_t count) 28276c364062SGeert Uytterhoeven { 28288caab75fSGeert Uytterhoeven struct spi_controller *ctlr = container_of(dev, struct spi_controller, 28298caab75fSGeert Uytterhoeven dev); 28306c364062SGeert Uytterhoeven struct spi_device *spi; 28316c364062SGeert Uytterhoeven struct device *child; 28326c364062SGeert Uytterhoeven char name[32]; 28336c364062SGeert Uytterhoeven int rc; 28346c364062SGeert Uytterhoeven 28356c364062SGeert Uytterhoeven rc = sscanf(buf, "%31s", name); 28366c364062SGeert Uytterhoeven if (rc != 1 || !name[0]) 28376c364062SGeert Uytterhoeven return -EINVAL; 28386c364062SGeert Uytterhoeven 2839c21b0837SAndy Shevchenko child = device_find_any_child(&ctlr->dev); 28406c364062SGeert Uytterhoeven if (child) { 28416c364062SGeert Uytterhoeven /* Remove registered slave */ 28426c364062SGeert Uytterhoeven device_unregister(child); 28436c364062SGeert Uytterhoeven put_device(child); 28446c364062SGeert Uytterhoeven } 28456c364062SGeert Uytterhoeven 28466c364062SGeert Uytterhoeven if (strcmp(name, "(null)")) { 28476c364062SGeert Uytterhoeven /* Register new slave */ 28486c364062SGeert Uytterhoeven spi = spi_alloc_device(ctlr); 28496c364062SGeert Uytterhoeven if (!spi) 28506c364062SGeert Uytterhoeven return -ENOMEM; 28516c364062SGeert Uytterhoeven 285251e99de5SWolfram Sang strscpy(spi->modalias, name, sizeof(spi->modalias)); 28536c364062SGeert Uytterhoeven 28546c364062SGeert Uytterhoeven rc = spi_add_device(spi); 28556c364062SGeert Uytterhoeven if (rc) { 28566c364062SGeert Uytterhoeven spi_dev_put(spi); 28576c364062SGeert Uytterhoeven return rc; 28586c364062SGeert Uytterhoeven } 28596c364062SGeert Uytterhoeven } 28606c364062SGeert Uytterhoeven 28616c364062SGeert Uytterhoeven return count; 28626c364062SGeert Uytterhoeven } 28636c364062SGeert Uytterhoeven 2864cc8b4659SGeert Uytterhoeven static DEVICE_ATTR_RW(slave); 28656c364062SGeert Uytterhoeven 28666c364062SGeert Uytterhoeven static struct attribute *spi_slave_attrs[] = { 28676c364062SGeert Uytterhoeven &dev_attr_slave.attr, 28686c364062SGeert Uytterhoeven NULL, 28696c364062SGeert Uytterhoeven }; 28706c364062SGeert Uytterhoeven 28716c364062SGeert Uytterhoeven static const struct attribute_group spi_slave_group = { 28726c364062SGeert Uytterhoeven .attrs = spi_slave_attrs, 28736c364062SGeert Uytterhoeven }; 28746c364062SGeert Uytterhoeven 28756c364062SGeert Uytterhoeven static const struct attribute_group *spi_slave_groups[] = { 28768caab75fSGeert Uytterhoeven &spi_controller_statistics_group, 28776c364062SGeert Uytterhoeven &spi_slave_group, 28786c364062SGeert Uytterhoeven NULL, 28796c364062SGeert Uytterhoeven }; 28806c364062SGeert Uytterhoeven 28816c364062SGeert Uytterhoeven static struct class spi_slave_class = { 28826c364062SGeert Uytterhoeven .name = "spi_slave", 28836c364062SGeert Uytterhoeven .owner = THIS_MODULE, 28848caab75fSGeert Uytterhoeven .dev_release = spi_controller_release, 28856c364062SGeert Uytterhoeven .dev_groups = spi_slave_groups, 28866c364062SGeert Uytterhoeven }; 28876c364062SGeert Uytterhoeven #else 28886c364062SGeert Uytterhoeven extern struct class spi_slave_class; /* dummy */ 28896c364062SGeert Uytterhoeven #endif 28908ae12a0dSDavid Brownell 28918ae12a0dSDavid Brownell /** 28926c364062SGeert Uytterhoeven * __spi_alloc_controller - allocate an SPI master or slave controller 28938ae12a0dSDavid Brownell * @dev: the controller, possibly using the platform_bus 289433e34dc6SDavid Brownell * @size: how much zeroed driver-private data to allocate; the pointer to this 2895229e6af1SLukas Wunner * memory is in the driver_data field of the returned device, accessible 2896229e6af1SLukas Wunner * with spi_controller_get_devdata(); the memory is cacheline aligned; 2897229e6af1SLukas Wunner * drivers granting DMA access to portions of their private data need to 2898229e6af1SLukas Wunner * round up @size using ALIGN(size, dma_get_cache_alignment()). 28996c364062SGeert Uytterhoeven * @slave: flag indicating whether to allocate an SPI master (false) or SPI 29006c364062SGeert Uytterhoeven * slave (true) controller 290133e34dc6SDavid Brownell * Context: can sleep 29028ae12a0dSDavid Brownell * 29036c364062SGeert Uytterhoeven * This call is used only by SPI controller drivers, which are the 29048ae12a0dSDavid Brownell * only ones directly touching chip registers. It's how they allocate 29058caab75fSGeert Uytterhoeven * an spi_controller structure, prior to calling spi_register_controller(). 29068ae12a0dSDavid Brownell * 290797d56dc6SJavier Martinez Canillas * This must be called from context that can sleep. 29088ae12a0dSDavid Brownell * 29096c364062SGeert Uytterhoeven * The caller is responsible for assigning the bus number and initializing the 29108caab75fSGeert Uytterhoeven * controller's methods before calling spi_register_controller(); and (after 29118caab75fSGeert Uytterhoeven * errors adding the device) calling spi_controller_put() to prevent a memory 29128caab75fSGeert Uytterhoeven * leak. 291397d56dc6SJavier Martinez Canillas * 29146c364062SGeert Uytterhoeven * Return: the SPI controller structure on success, else NULL. 29158ae12a0dSDavid Brownell */ 29168caab75fSGeert Uytterhoeven struct spi_controller *__spi_alloc_controller(struct device *dev, 29176c364062SGeert Uytterhoeven unsigned int size, bool slave) 29188ae12a0dSDavid Brownell { 29198caab75fSGeert Uytterhoeven struct spi_controller *ctlr; 2920229e6af1SLukas Wunner size_t ctlr_size = ALIGN(sizeof(*ctlr), dma_get_cache_alignment()); 29218ae12a0dSDavid Brownell 29220c868461SDavid Brownell if (!dev) 29230c868461SDavid Brownell return NULL; 29240c868461SDavid Brownell 2925229e6af1SLukas Wunner ctlr = kzalloc(size + ctlr_size, GFP_KERNEL); 29268caab75fSGeert Uytterhoeven if (!ctlr) 29278ae12a0dSDavid Brownell return NULL; 29288ae12a0dSDavid Brownell 29298caab75fSGeert Uytterhoeven device_initialize(&ctlr->dev); 293016a8e2fbSUwe Kleine-König INIT_LIST_HEAD(&ctlr->queue); 293116a8e2fbSUwe Kleine-König spin_lock_init(&ctlr->queue_lock); 293216a8e2fbSUwe Kleine-König spin_lock_init(&ctlr->bus_lock_spinlock); 293316a8e2fbSUwe Kleine-König mutex_init(&ctlr->bus_lock_mutex); 293416a8e2fbSUwe Kleine-König mutex_init(&ctlr->io_mutex); 293516a8e2fbSUwe Kleine-König mutex_init(&ctlr->add_lock); 29368caab75fSGeert Uytterhoeven ctlr->bus_num = -1; 29378caab75fSGeert Uytterhoeven ctlr->num_chipselect = 1; 29388caab75fSGeert Uytterhoeven ctlr->slave = slave; 29396c364062SGeert Uytterhoeven if (IS_ENABLED(CONFIG_SPI_SLAVE) && slave) 29408caab75fSGeert Uytterhoeven ctlr->dev.class = &spi_slave_class; 29416c364062SGeert Uytterhoeven else 29428caab75fSGeert Uytterhoeven ctlr->dev.class = &spi_master_class; 29438caab75fSGeert Uytterhoeven ctlr->dev.parent = dev; 29448caab75fSGeert Uytterhoeven pm_suspend_ignore_children(&ctlr->dev, true); 2945229e6af1SLukas Wunner spi_controller_set_devdata(ctlr, (void *)ctlr + ctlr_size); 29468ae12a0dSDavid Brownell 29478caab75fSGeert Uytterhoeven return ctlr; 29488ae12a0dSDavid Brownell } 29496c364062SGeert Uytterhoeven EXPORT_SYMBOL_GPL(__spi_alloc_controller); 29508ae12a0dSDavid Brownell 29515e844cc3SLukas Wunner static void devm_spi_release_controller(struct device *dev, void *ctlr) 29525e844cc3SLukas Wunner { 29535e844cc3SLukas Wunner spi_controller_put(*(struct spi_controller **)ctlr); 29545e844cc3SLukas Wunner } 29555e844cc3SLukas Wunner 29565e844cc3SLukas Wunner /** 29575e844cc3SLukas Wunner * __devm_spi_alloc_controller - resource-managed __spi_alloc_controller() 29585e844cc3SLukas Wunner * @dev: physical device of SPI controller 29595e844cc3SLukas Wunner * @size: how much zeroed driver-private data to allocate 29605e844cc3SLukas Wunner * @slave: whether to allocate an SPI master (false) or SPI slave (true) 29615e844cc3SLukas Wunner * Context: can sleep 29625e844cc3SLukas Wunner * 29635e844cc3SLukas Wunner * Allocate an SPI controller and automatically release a reference on it 29645e844cc3SLukas Wunner * when @dev is unbound from its driver. Drivers are thus relieved from 29655e844cc3SLukas Wunner * having to call spi_controller_put(). 29665e844cc3SLukas Wunner * 29675e844cc3SLukas Wunner * The arguments to this function are identical to __spi_alloc_controller(). 29685e844cc3SLukas Wunner * 29695e844cc3SLukas Wunner * Return: the SPI controller structure on success, else NULL. 29705e844cc3SLukas Wunner */ 29715e844cc3SLukas Wunner struct spi_controller *__devm_spi_alloc_controller(struct device *dev, 29725e844cc3SLukas Wunner unsigned int size, 29735e844cc3SLukas Wunner bool slave) 29745e844cc3SLukas Wunner { 29755e844cc3SLukas Wunner struct spi_controller **ptr, *ctlr; 29765e844cc3SLukas Wunner 29775e844cc3SLukas Wunner ptr = devres_alloc(devm_spi_release_controller, sizeof(*ptr), 29785e844cc3SLukas Wunner GFP_KERNEL); 29795e844cc3SLukas Wunner if (!ptr) 29805e844cc3SLukas Wunner return NULL; 29815e844cc3SLukas Wunner 29825e844cc3SLukas Wunner ctlr = __spi_alloc_controller(dev, size, slave); 29835e844cc3SLukas Wunner if (ctlr) { 2984794aaf01SWilliam A. Kennington III ctlr->devm_allocated = true; 29855e844cc3SLukas Wunner *ptr = ctlr; 29865e844cc3SLukas Wunner devres_add(dev, ptr); 29875e844cc3SLukas Wunner } else { 29885e844cc3SLukas Wunner devres_free(ptr); 29895e844cc3SLukas Wunner } 29905e844cc3SLukas Wunner 29915e844cc3SLukas Wunner return ctlr; 29925e844cc3SLukas Wunner } 29935e844cc3SLukas Wunner EXPORT_SYMBOL_GPL(__devm_spi_alloc_controller); 29945e844cc3SLukas Wunner 2995f3186dd8SLinus Walleij /** 2996f3186dd8SLinus Walleij * spi_get_gpio_descs() - grab chip select GPIOs for the master 2997f3186dd8SLinus Walleij * @ctlr: The SPI master to grab GPIO descriptors for 2998f3186dd8SLinus Walleij */ 2999f3186dd8SLinus Walleij static int spi_get_gpio_descs(struct spi_controller *ctlr) 3000f3186dd8SLinus Walleij { 3001f3186dd8SLinus Walleij int nb, i; 3002f3186dd8SLinus Walleij struct gpio_desc **cs; 3003f3186dd8SLinus Walleij struct device *dev = &ctlr->dev; 30047d93aecdSGeert Uytterhoeven unsigned long native_cs_mask = 0; 30057d93aecdSGeert Uytterhoeven unsigned int num_cs_gpios = 0; 3006f3186dd8SLinus Walleij 3007f3186dd8SLinus Walleij nb = gpiod_count(dev, "cs"); 300831ed8ebcSAndy Shevchenko if (nb < 0) { 3009f3186dd8SLinus Walleij /* No GPIOs at all is fine, else return the error */ 301031ed8ebcSAndy Shevchenko if (nb == -ENOENT) 3011f3186dd8SLinus Walleij return 0; 3012f3186dd8SLinus Walleij return nb; 301331ed8ebcSAndy Shevchenko } 301431ed8ebcSAndy Shevchenko 301531ed8ebcSAndy Shevchenko ctlr->num_chipselect = max_t(int, nb, ctlr->num_chipselect); 3016f3186dd8SLinus Walleij 3017f3186dd8SLinus Walleij cs = devm_kcalloc(dev, ctlr->num_chipselect, sizeof(*cs), 3018f3186dd8SLinus Walleij GFP_KERNEL); 3019f3186dd8SLinus Walleij if (!cs) 3020f3186dd8SLinus Walleij return -ENOMEM; 3021f3186dd8SLinus Walleij ctlr->cs_gpiods = cs; 3022f3186dd8SLinus Walleij 3023f3186dd8SLinus Walleij for (i = 0; i < nb; i++) { 3024f3186dd8SLinus Walleij /* 3025f3186dd8SLinus Walleij * Most chipselects are active low, the inverted 3026f3186dd8SLinus Walleij * semantics are handled by special quirks in gpiolib, 3027f3186dd8SLinus Walleij * so initializing them GPIOD_OUT_LOW here means 3028f3186dd8SLinus Walleij * "unasserted", in most cases this will drive the physical 3029f3186dd8SLinus Walleij * line high. 3030f3186dd8SLinus Walleij */ 3031f3186dd8SLinus Walleij cs[i] = devm_gpiod_get_index_optional(dev, "cs", i, 3032f3186dd8SLinus Walleij GPIOD_OUT_LOW); 30331723fdecSGeert Uytterhoeven if (IS_ERR(cs[i])) 30341723fdecSGeert Uytterhoeven return PTR_ERR(cs[i]); 3035f3186dd8SLinus Walleij 3036f3186dd8SLinus Walleij if (cs[i]) { 3037f3186dd8SLinus Walleij /* 3038f3186dd8SLinus Walleij * If we find a CS GPIO, name it after the device and 3039f3186dd8SLinus Walleij * chip select line. 3040f3186dd8SLinus Walleij */ 3041f3186dd8SLinus Walleij char *gpioname; 3042f3186dd8SLinus Walleij 3043f3186dd8SLinus Walleij gpioname = devm_kasprintf(dev, GFP_KERNEL, "%s CS%d", 3044f3186dd8SLinus Walleij dev_name(dev), i); 3045f3186dd8SLinus Walleij if (!gpioname) 3046f3186dd8SLinus Walleij return -ENOMEM; 3047f3186dd8SLinus Walleij gpiod_set_consumer_name(cs[i], gpioname); 30487d93aecdSGeert Uytterhoeven num_cs_gpios++; 30497d93aecdSGeert Uytterhoeven continue; 3050f3186dd8SLinus Walleij } 30517d93aecdSGeert Uytterhoeven 30527d93aecdSGeert Uytterhoeven if (ctlr->max_native_cs && i >= ctlr->max_native_cs) { 30537d93aecdSGeert Uytterhoeven dev_err(dev, "Invalid native chip select %d\n", i); 30547d93aecdSGeert Uytterhoeven return -EINVAL; 30557d93aecdSGeert Uytterhoeven } 30567d93aecdSGeert Uytterhoeven native_cs_mask |= BIT(i); 30577d93aecdSGeert Uytterhoeven } 30587d93aecdSGeert Uytterhoeven 3059f60d7270SAndy Shevchenko ctlr->unused_native_cs = ffs(~native_cs_mask) - 1; 3060dbaca8e5SAndy Shevchenko 3061dbaca8e5SAndy Shevchenko if ((ctlr->flags & SPI_MASTER_GPIO_SS) && num_cs_gpios && 3062dbaca8e5SAndy Shevchenko ctlr->max_native_cs && ctlr->unused_native_cs >= ctlr->max_native_cs) { 30637d93aecdSGeert Uytterhoeven dev_err(dev, "No unused native chip select available\n"); 30647d93aecdSGeert Uytterhoeven return -EINVAL; 3065f3186dd8SLinus Walleij } 3066f3186dd8SLinus Walleij 3067f3186dd8SLinus Walleij return 0; 3068f3186dd8SLinus Walleij } 3069f3186dd8SLinus Walleij 3070bdf3a3b5SBoris Brezillon static int spi_controller_check_ops(struct spi_controller *ctlr) 3071bdf3a3b5SBoris Brezillon { 3072bdf3a3b5SBoris Brezillon /* 3073b5932f5cSBoris Brezillon * The controller may implement only the high-level SPI-memory like 3074b5932f5cSBoris Brezillon * operations if it does not support regular SPI transfers, and this is 3075b5932f5cSBoris Brezillon * valid use case. 307676a85704SWilliam Zhang * If ->mem_ops or ->mem_ops->exec_op is NULL, we request that at least 307776a85704SWilliam Zhang * one of the ->transfer_xxx() method be implemented. 3078bdf3a3b5SBoris Brezillon */ 307976a85704SWilliam Zhang if (!ctlr->mem_ops || (ctlr->mem_ops && !ctlr->mem_ops->exec_op)) { 308076a85704SWilliam Zhang if (!ctlr->transfer && !ctlr->transfer_one && 3081b5932f5cSBoris Brezillon !ctlr->transfer_one_message) { 3082b5932f5cSBoris Brezillon return -EINVAL; 3083b5932f5cSBoris Brezillon } 308476a85704SWilliam Zhang } 3085bdf3a3b5SBoris Brezillon 3086bdf3a3b5SBoris Brezillon return 0; 3087bdf3a3b5SBoris Brezillon } 3088bdf3a3b5SBoris Brezillon 30898ae12a0dSDavid Brownell /** 30908caab75fSGeert Uytterhoeven * spi_register_controller - register SPI master or slave controller 30918caab75fSGeert Uytterhoeven * @ctlr: initialized master, originally from spi_alloc_master() or 30928caab75fSGeert Uytterhoeven * spi_alloc_slave() 309333e34dc6SDavid Brownell * Context: can sleep 30948ae12a0dSDavid Brownell * 30958caab75fSGeert Uytterhoeven * SPI controllers connect to their drivers using some non-SPI bus, 30968ae12a0dSDavid Brownell * such as the platform bus. The final stage of probe() in that code 30978caab75fSGeert Uytterhoeven * includes calling spi_register_controller() to hook up to this SPI bus glue. 30988ae12a0dSDavid Brownell * 30998ae12a0dSDavid Brownell * SPI controllers use board specific (often SOC specific) bus numbers, 31008ae12a0dSDavid Brownell * and board-specific addressing for SPI devices combines those numbers 31018ae12a0dSDavid Brownell * with chip select numbers. Since SPI does not directly support dynamic 31028ae12a0dSDavid Brownell * device identification, boards need configuration tables telling which 31038ae12a0dSDavid Brownell * chip is at which address. 31048ae12a0dSDavid Brownell * 31058ae12a0dSDavid Brownell * This must be called from context that can sleep. It returns zero on 31068caab75fSGeert Uytterhoeven * success, else a negative error code (dropping the controller's refcount). 31070c868461SDavid Brownell * After a successful return, the caller is responsible for calling 31088caab75fSGeert Uytterhoeven * spi_unregister_controller(). 310997d56dc6SJavier Martinez Canillas * 311097d56dc6SJavier Martinez Canillas * Return: zero on success, else a negative error code. 31118ae12a0dSDavid Brownell */ 31128caab75fSGeert Uytterhoeven int spi_register_controller(struct spi_controller *ctlr) 31138ae12a0dSDavid Brownell { 31148caab75fSGeert Uytterhoeven struct device *dev = ctlr->dev.parent; 31152b9603a0SFeng Tang struct boardinfo *bi; 3116b93318a2SSergei Shtylyov int status; 311742bdd706SLucas Stach int id, first_dynamic; 31188ae12a0dSDavid Brownell 31190c868461SDavid Brownell if (!dev) 31200c868461SDavid Brownell return -ENODEV; 31210c868461SDavid Brownell 3122bdf3a3b5SBoris Brezillon /* 3123bdf3a3b5SBoris Brezillon * Make sure all necessary hooks are implemented before registering 3124bdf3a3b5SBoris Brezillon * the SPI controller. 3125bdf3a3b5SBoris Brezillon */ 3126bdf3a3b5SBoris Brezillon status = spi_controller_check_ops(ctlr); 3127bdf3a3b5SBoris Brezillon if (status) 3128bdf3a3b5SBoris Brezillon return status; 3129bdf3a3b5SBoris Brezillon 313004b2d03aSGeert Uytterhoeven if (ctlr->bus_num >= 0) { 313195c8222fSDavid Jander /* Devices with a fixed bus num must check-in with the num */ 313204b2d03aSGeert Uytterhoeven mutex_lock(&board_lock); 313304b2d03aSGeert Uytterhoeven id = idr_alloc(&spi_master_idr, ctlr, ctlr->bus_num, 313404b2d03aSGeert Uytterhoeven ctlr->bus_num + 1, GFP_KERNEL); 313504b2d03aSGeert Uytterhoeven mutex_unlock(&board_lock); 313604b2d03aSGeert Uytterhoeven if (WARN(id < 0, "couldn't get idr")) 313704b2d03aSGeert Uytterhoeven return id == -ENOSPC ? -EBUSY : id; 313804b2d03aSGeert Uytterhoeven ctlr->bus_num = id; 313904b2d03aSGeert Uytterhoeven } else if (ctlr->dev.of_node) { 314095c8222fSDavid Jander /* Allocate dynamic bus number using Linux idr */ 31419b61e302SSuniel Mahesh id = of_alias_get_id(ctlr->dev.of_node, "spi"); 31429b61e302SSuniel Mahesh if (id >= 0) { 31439b61e302SSuniel Mahesh ctlr->bus_num = id; 31449b61e302SSuniel Mahesh mutex_lock(&board_lock); 31459b61e302SSuniel Mahesh id = idr_alloc(&spi_master_idr, ctlr, ctlr->bus_num, 31469b61e302SSuniel Mahesh ctlr->bus_num + 1, GFP_KERNEL); 31479b61e302SSuniel Mahesh mutex_unlock(&board_lock); 31489b61e302SSuniel Mahesh if (WARN(id < 0, "couldn't get idr")) 31499b61e302SSuniel Mahesh return id == -ENOSPC ? -EBUSY : id; 31509b61e302SSuniel Mahesh } 31519b61e302SSuniel Mahesh } 31528caab75fSGeert Uytterhoeven if (ctlr->bus_num < 0) { 315342bdd706SLucas Stach first_dynamic = of_alias_get_highest_id("spi"); 315442bdd706SLucas Stach if (first_dynamic < 0) 315542bdd706SLucas Stach first_dynamic = 0; 315642bdd706SLucas Stach else 315742bdd706SLucas Stach first_dynamic++; 315842bdd706SLucas Stach 31599b61e302SSuniel Mahesh mutex_lock(&board_lock); 316042bdd706SLucas Stach id = idr_alloc(&spi_master_idr, ctlr, first_dynamic, 316142bdd706SLucas Stach 0, GFP_KERNEL); 31629b61e302SSuniel Mahesh mutex_unlock(&board_lock); 31639b61e302SSuniel Mahesh if (WARN(id < 0, "couldn't get idr")) 31649b61e302SSuniel Mahesh return id; 31659b61e302SSuniel Mahesh ctlr->bus_num = id; 31668ae12a0dSDavid Brownell } 31678caab75fSGeert Uytterhoeven ctlr->bus_lock_flag = 0; 31688caab75fSGeert Uytterhoeven init_completion(&ctlr->xfer_completion); 316969fa9590SDavid Jander init_completion(&ctlr->cur_msg_completion); 31708caab75fSGeert Uytterhoeven if (!ctlr->max_dma_len) 31718caab75fSGeert Uytterhoeven ctlr->max_dma_len = INT_MAX; 3172cf32b71eSErnst Schwab 3173350de7ceSAndy Shevchenko /* 3174350de7ceSAndy Shevchenko * Register the device, then userspace will see it. 3175350de7ceSAndy Shevchenko * Registration fails if the bus ID is in use. 31768ae12a0dSDavid Brownell */ 31778caab75fSGeert Uytterhoeven dev_set_name(&ctlr->dev, "spi%u", ctlr->bus_num); 31780a919ae4SAndrey Smirnov 3179f48dc6b9SLinus Walleij if (!spi_controller_is_slave(ctlr) && ctlr->use_gpio_descriptors) { 31800a919ae4SAndrey Smirnov status = spi_get_gpio_descs(ctlr); 31810a919ae4SAndrey Smirnov if (status) 3182f9981d4fSAaro Koskinen goto free_bus_id; 31830a919ae4SAndrey Smirnov /* 31840a919ae4SAndrey Smirnov * A controller using GPIO descriptors always 31850a919ae4SAndrey Smirnov * supports SPI_CS_HIGH if need be. 31860a919ae4SAndrey Smirnov */ 31870a919ae4SAndrey Smirnov ctlr->mode_bits |= SPI_CS_HIGH; 31880a919ae4SAndrey Smirnov } 31890a919ae4SAndrey Smirnov 3190f9481b08STudor Ambarus /* 3191f9481b08STudor Ambarus * Even if it's just one always-selected device, there must 3192f9481b08STudor Ambarus * be at least one chipselect. 3193f9481b08STudor Ambarus */ 3194f9981d4fSAaro Koskinen if (!ctlr->num_chipselect) { 3195f9981d4fSAaro Koskinen status = -EINVAL; 3196f9981d4fSAaro Koskinen goto free_bus_id; 3197f9981d4fSAaro Koskinen } 3198f9481b08STudor Ambarus 319995c8222fSDavid Jander /* Setting last_cs to -1 means no chip selected */ 32006bb477dfSYun Zhou ctlr->last_cs = -1; 32016bb477dfSYun Zhou 32028caab75fSGeert Uytterhoeven status = device_add(&ctlr->dev); 3203f9981d4fSAaro Koskinen if (status < 0) 3204f9981d4fSAaro Koskinen goto free_bus_id; 32059b61e302SSuniel Mahesh dev_dbg(dev, "registered %s %s\n", 32068caab75fSGeert Uytterhoeven spi_controller_is_slave(ctlr) ? "slave" : "master", 32079b61e302SSuniel Mahesh dev_name(&ctlr->dev)); 32088ae12a0dSDavid Brownell 3209b5932f5cSBoris Brezillon /* 3210b5932f5cSBoris Brezillon * If we're using a queued driver, start the queue. Note that we don't 3211b5932f5cSBoris Brezillon * need the queueing logic if the driver is only supporting high-level 3212b5932f5cSBoris Brezillon * memory operations. 3213b5932f5cSBoris Brezillon */ 3214b5932f5cSBoris Brezillon if (ctlr->transfer) { 32158caab75fSGeert Uytterhoeven dev_info(dev, "controller is unqueued, this is deprecated\n"); 3216b5932f5cSBoris Brezillon } else if (ctlr->transfer_one || ctlr->transfer_one_message) { 32178caab75fSGeert Uytterhoeven status = spi_controller_initialize_queue(ctlr); 3218ffbbdd21SLinus Walleij if (status) { 32198caab75fSGeert Uytterhoeven device_del(&ctlr->dev); 3220f9981d4fSAaro Koskinen goto free_bus_id; 3221ffbbdd21SLinus Walleij } 3222ffbbdd21SLinus Walleij } 322395c8222fSDavid Jander /* Add statistics */ 32246598b91bSDavid Jander ctlr->pcpu_statistics = spi_alloc_pcpu_stats(dev); 32256598b91bSDavid Jander if (!ctlr->pcpu_statistics) { 32266598b91bSDavid Jander dev_err(dev, "Error allocating per-cpu statistics\n"); 3227d52b095bSDan Carpenter status = -ENOMEM; 32286598b91bSDavid Jander goto destroy_queue; 32296598b91bSDavid Jander } 3230ffbbdd21SLinus Walleij 32312b9603a0SFeng Tang mutex_lock(&board_lock); 32328caab75fSGeert Uytterhoeven list_add_tail(&ctlr->list, &spi_controller_list); 32332b9603a0SFeng Tang list_for_each_entry(bi, &board_list, list) 32348caab75fSGeert Uytterhoeven spi_match_controller_to_boardinfo(ctlr, &bi->board_info); 32352b9603a0SFeng Tang mutex_unlock(&board_lock); 32362b9603a0SFeng Tang 323764bee4d2SMika Westerberg /* Register devices from the device tree and ACPI */ 32388caab75fSGeert Uytterhoeven of_register_spi_devices(ctlr); 32398caab75fSGeert Uytterhoeven acpi_register_spi_devices(ctlr); 3240f9981d4fSAaro Koskinen return status; 3241f9981d4fSAaro Koskinen 32426598b91bSDavid Jander destroy_queue: 32436598b91bSDavid Jander spi_destroy_queue(ctlr); 3244f9981d4fSAaro Koskinen free_bus_id: 3245f9981d4fSAaro Koskinen mutex_lock(&board_lock); 3246f9981d4fSAaro Koskinen idr_remove(&spi_master_idr, ctlr->bus_num); 3247f9981d4fSAaro Koskinen mutex_unlock(&board_lock); 32488ae12a0dSDavid Brownell return status; 32498ae12a0dSDavid Brownell } 32508caab75fSGeert Uytterhoeven EXPORT_SYMBOL_GPL(spi_register_controller); 32518ae12a0dSDavid Brownell 325243cc5a0aSYang Yingliang static void devm_spi_unregister(struct device *dev, void *res) 3253666d5b4cSMark Brown { 325443cc5a0aSYang Yingliang spi_unregister_controller(*(struct spi_controller **)res); 3255666d5b4cSMark Brown } 3256666d5b4cSMark Brown 3257666d5b4cSMark Brown /** 32588caab75fSGeert Uytterhoeven * devm_spi_register_controller - register managed SPI master or slave 32598caab75fSGeert Uytterhoeven * controller 32608caab75fSGeert Uytterhoeven * @dev: device managing SPI controller 32618caab75fSGeert Uytterhoeven * @ctlr: initialized controller, originally from spi_alloc_master() or 32628caab75fSGeert Uytterhoeven * spi_alloc_slave() 3263666d5b4cSMark Brown * Context: can sleep 3264666d5b4cSMark Brown * 32658caab75fSGeert Uytterhoeven * Register a SPI device as with spi_register_controller() which will 326668b892f1SJohan Hovold * automatically be unregistered and freed. 326797d56dc6SJavier Martinez Canillas * 326897d56dc6SJavier Martinez Canillas * Return: zero on success, else a negative error code. 3269666d5b4cSMark Brown */ 32708caab75fSGeert Uytterhoeven int devm_spi_register_controller(struct device *dev, 32718caab75fSGeert Uytterhoeven struct spi_controller *ctlr) 3272666d5b4cSMark Brown { 327343cc5a0aSYang Yingliang struct spi_controller **ptr; 3274666d5b4cSMark Brown int ret; 3275666d5b4cSMark Brown 327643cc5a0aSYang Yingliang ptr = devres_alloc(devm_spi_unregister, sizeof(*ptr), GFP_KERNEL); 327743cc5a0aSYang Yingliang if (!ptr) 327843cc5a0aSYang Yingliang return -ENOMEM; 327959ebbe40STian Tao 328043cc5a0aSYang Yingliang ret = spi_register_controller(ctlr); 328143cc5a0aSYang Yingliang if (!ret) { 328243cc5a0aSYang Yingliang *ptr = ctlr; 328343cc5a0aSYang Yingliang devres_add(dev, ptr); 328443cc5a0aSYang Yingliang } else { 328543cc5a0aSYang Yingliang devres_free(ptr); 328643cc5a0aSYang Yingliang } 328743cc5a0aSYang Yingliang 328843cc5a0aSYang Yingliang return ret; 3289666d5b4cSMark Brown } 32908caab75fSGeert Uytterhoeven EXPORT_SYMBOL_GPL(devm_spi_register_controller); 3291666d5b4cSMark Brown 329234860089SDavid Lamparter static int __unregister(struct device *dev, void *null) 32938ae12a0dSDavid Brownell { 32940c868461SDavid Brownell spi_unregister_device(to_spi_device(dev)); 32958ae12a0dSDavid Brownell return 0; 32968ae12a0dSDavid Brownell } 32978ae12a0dSDavid Brownell 32988ae12a0dSDavid Brownell /** 32998caab75fSGeert Uytterhoeven * spi_unregister_controller - unregister SPI master or slave controller 33008caab75fSGeert Uytterhoeven * @ctlr: the controller being unregistered 330133e34dc6SDavid Brownell * Context: can sleep 33028ae12a0dSDavid Brownell * 33038caab75fSGeert Uytterhoeven * This call is used only by SPI controller drivers, which are the 33048ae12a0dSDavid Brownell * only ones directly touching chip registers. 33058ae12a0dSDavid Brownell * 33068ae12a0dSDavid Brownell * This must be called from context that can sleep. 330768b892f1SJohan Hovold * 330868b892f1SJohan Hovold * Note that this function also drops a reference to the controller. 33098ae12a0dSDavid Brownell */ 33108caab75fSGeert Uytterhoeven void spi_unregister_controller(struct spi_controller *ctlr) 33118ae12a0dSDavid Brownell { 33129b61e302SSuniel Mahesh struct spi_controller *found; 331367f7b278SJohan Hovold int id = ctlr->bus_num; 331489fc9a1aSJeff Garzik 3315ddf75be4SLukas Wunner /* Prevent addition of new devices, unregister existing ones */ 3316ddf75be4SLukas Wunner if (IS_ENABLED(CONFIG_SPI_DYNAMIC)) 33176098475dSMark Brown mutex_lock(&ctlr->add_lock); 3318ddf75be4SLukas Wunner 331984855678SLukas Wunner device_for_each_child(&ctlr->dev, NULL, __unregister); 332084855678SLukas Wunner 33219b61e302SSuniel Mahesh /* First make sure that this controller was ever added */ 33229b61e302SSuniel Mahesh mutex_lock(&board_lock); 332367f7b278SJohan Hovold found = idr_find(&spi_master_idr, id); 33249b61e302SSuniel Mahesh mutex_unlock(&board_lock); 33258caab75fSGeert Uytterhoeven if (ctlr->queued) { 33268caab75fSGeert Uytterhoeven if (spi_destroy_queue(ctlr)) 33278caab75fSGeert Uytterhoeven dev_err(&ctlr->dev, "queue remove failed\n"); 3328ffbbdd21SLinus Walleij } 33292b9603a0SFeng Tang mutex_lock(&board_lock); 33308caab75fSGeert Uytterhoeven list_del(&ctlr->list); 33312b9603a0SFeng Tang mutex_unlock(&board_lock); 33322b9603a0SFeng Tang 33335e844cc3SLukas Wunner device_del(&ctlr->dev); 33345e844cc3SLukas Wunner 333595c8222fSDavid Jander /* Free bus id */ 33369b61e302SSuniel Mahesh mutex_lock(&board_lock); 3337613bd1eaSJarkko Nikula if (found == ctlr) 333867f7b278SJohan Hovold idr_remove(&spi_master_idr, id); 33399b61e302SSuniel Mahesh mutex_unlock(&board_lock); 3340ddf75be4SLukas Wunner 3341ddf75be4SLukas Wunner if (IS_ENABLED(CONFIG_SPI_DYNAMIC)) 33426098475dSMark Brown mutex_unlock(&ctlr->add_lock); 33436c53b45cSMichael Walle 33446c53b45cSMichael Walle /* Release the last reference on the controller if its driver 33456c53b45cSMichael Walle * has not yet been converted to devm_spi_alloc_master/slave(). 33466c53b45cSMichael Walle */ 33476c53b45cSMichael Walle if (!ctlr->devm_allocated) 33486c53b45cSMichael Walle put_device(&ctlr->dev); 33498ae12a0dSDavid Brownell } 33508caab75fSGeert Uytterhoeven EXPORT_SYMBOL_GPL(spi_unregister_controller); 33518ae12a0dSDavid Brownell 33528caab75fSGeert Uytterhoeven int spi_controller_suspend(struct spi_controller *ctlr) 3353ffbbdd21SLinus Walleij { 3354ffbbdd21SLinus Walleij int ret; 3355ffbbdd21SLinus Walleij 33568caab75fSGeert Uytterhoeven /* Basically no-ops for non-queued controllers */ 33578caab75fSGeert Uytterhoeven if (!ctlr->queued) 3358ffbbdd21SLinus Walleij return 0; 3359ffbbdd21SLinus Walleij 33608caab75fSGeert Uytterhoeven ret = spi_stop_queue(ctlr); 3361ffbbdd21SLinus Walleij if (ret) 33628caab75fSGeert Uytterhoeven dev_err(&ctlr->dev, "queue stop failed\n"); 3363ffbbdd21SLinus Walleij 3364ffbbdd21SLinus Walleij return ret; 3365ffbbdd21SLinus Walleij } 33668caab75fSGeert Uytterhoeven EXPORT_SYMBOL_GPL(spi_controller_suspend); 3367ffbbdd21SLinus Walleij 33688caab75fSGeert Uytterhoeven int spi_controller_resume(struct spi_controller *ctlr) 3369ffbbdd21SLinus Walleij { 3370ffbbdd21SLinus Walleij int ret; 3371ffbbdd21SLinus Walleij 33728caab75fSGeert Uytterhoeven if (!ctlr->queued) 3373ffbbdd21SLinus Walleij return 0; 3374ffbbdd21SLinus Walleij 33758caab75fSGeert Uytterhoeven ret = spi_start_queue(ctlr); 3376ffbbdd21SLinus Walleij if (ret) 33778caab75fSGeert Uytterhoeven dev_err(&ctlr->dev, "queue restart failed\n"); 3378ffbbdd21SLinus Walleij 3379ffbbdd21SLinus Walleij return ret; 3380ffbbdd21SLinus Walleij } 33818caab75fSGeert Uytterhoeven EXPORT_SYMBOL_GPL(spi_controller_resume); 3382ffbbdd21SLinus Walleij 33838ae12a0dSDavid Brownell /*-------------------------------------------------------------------------*/ 33848ae12a0dSDavid Brownell 3385523baf5aSMartin Sperl /* Core methods for spi_message alterations */ 3386523baf5aSMartin Sperl 33878caab75fSGeert Uytterhoeven static void __spi_replace_transfers_release(struct spi_controller *ctlr, 3388523baf5aSMartin Sperl struct spi_message *msg, 3389523baf5aSMartin Sperl void *res) 3390523baf5aSMartin Sperl { 3391523baf5aSMartin Sperl struct spi_replaced_transfers *rxfer = res; 3392523baf5aSMartin Sperl size_t i; 3393523baf5aSMartin Sperl 339495c8222fSDavid Jander /* Call extra callback if requested */ 3395523baf5aSMartin Sperl if (rxfer->release) 33968caab75fSGeert Uytterhoeven rxfer->release(ctlr, msg, res); 3397523baf5aSMartin Sperl 339895c8222fSDavid Jander /* Insert replaced transfers back into the message */ 3399523baf5aSMartin Sperl list_splice(&rxfer->replaced_transfers, rxfer->replaced_after); 3400523baf5aSMartin Sperl 340195c8222fSDavid Jander /* Remove the formerly inserted entries */ 3402523baf5aSMartin Sperl for (i = 0; i < rxfer->inserted; i++) 3403523baf5aSMartin Sperl list_del(&rxfer->inserted_transfers[i].transfer_list); 3404523baf5aSMartin Sperl } 3405523baf5aSMartin Sperl 3406523baf5aSMartin Sperl /** 3407523baf5aSMartin Sperl * spi_replace_transfers - replace transfers with several transfers 3408523baf5aSMartin Sperl * and register change with spi_message.resources 3409523baf5aSMartin Sperl * @msg: the spi_message we work upon 3410523baf5aSMartin Sperl * @xfer_first: the first spi_transfer we want to replace 3411523baf5aSMartin Sperl * @remove: number of transfers to remove 3412523baf5aSMartin Sperl * @insert: the number of transfers we want to insert instead 3413523baf5aSMartin Sperl * @release: extra release code necessary in some circumstances 3414523baf5aSMartin Sperl * @extradatasize: extra data to allocate (with alignment guarantees 3415523baf5aSMartin Sperl * of struct @spi_transfer) 341605885397SMartin Sperl * @gfp: gfp flags 3417523baf5aSMartin Sperl * 3418523baf5aSMartin Sperl * Returns: pointer to @spi_replaced_transfers, 3419523baf5aSMartin Sperl * PTR_ERR(...) in case of errors. 3420523baf5aSMartin Sperl */ 3421da21fde0SUwe Kleine-König static struct spi_replaced_transfers *spi_replace_transfers( 3422523baf5aSMartin Sperl struct spi_message *msg, 3423523baf5aSMartin Sperl struct spi_transfer *xfer_first, 3424523baf5aSMartin Sperl size_t remove, 3425523baf5aSMartin Sperl size_t insert, 3426523baf5aSMartin Sperl spi_replaced_release_t release, 3427523baf5aSMartin Sperl size_t extradatasize, 3428523baf5aSMartin Sperl gfp_t gfp) 3429523baf5aSMartin Sperl { 3430523baf5aSMartin Sperl struct spi_replaced_transfers *rxfer; 3431523baf5aSMartin Sperl struct spi_transfer *xfer; 3432523baf5aSMartin Sperl size_t i; 3433523baf5aSMartin Sperl 343495c8222fSDavid Jander /* Allocate the structure using spi_res */ 3435523baf5aSMartin Sperl rxfer = spi_res_alloc(msg->spi, __spi_replace_transfers_release, 3436aef97522SGustavo A. R. Silva struct_size(rxfer, inserted_transfers, insert) 3437523baf5aSMartin Sperl + extradatasize, 3438523baf5aSMartin Sperl gfp); 3439523baf5aSMartin Sperl if (!rxfer) 3440523baf5aSMartin Sperl return ERR_PTR(-ENOMEM); 3441523baf5aSMartin Sperl 344295c8222fSDavid Jander /* The release code to invoke before running the generic release */ 3443523baf5aSMartin Sperl rxfer->release = release; 3444523baf5aSMartin Sperl 344595c8222fSDavid Jander /* Assign extradata */ 3446523baf5aSMartin Sperl if (extradatasize) 3447523baf5aSMartin Sperl rxfer->extradata = 3448523baf5aSMartin Sperl &rxfer->inserted_transfers[insert]; 3449523baf5aSMartin Sperl 345095c8222fSDavid Jander /* Init the replaced_transfers list */ 3451523baf5aSMartin Sperl INIT_LIST_HEAD(&rxfer->replaced_transfers); 3452523baf5aSMartin Sperl 3453350de7ceSAndy Shevchenko /* 3454350de7ceSAndy Shevchenko * Assign the list_entry after which we should reinsert 3455523baf5aSMartin Sperl * the @replaced_transfers - it may be spi_message.messages! 3456523baf5aSMartin Sperl */ 3457523baf5aSMartin Sperl rxfer->replaced_after = xfer_first->transfer_list.prev; 3458523baf5aSMartin Sperl 345995c8222fSDavid Jander /* Remove the requested number of transfers */ 3460523baf5aSMartin Sperl for (i = 0; i < remove; i++) { 3461350de7ceSAndy Shevchenko /* 3462350de7ceSAndy Shevchenko * If the entry after replaced_after it is msg->transfers 3463523baf5aSMartin Sperl * then we have been requested to remove more transfers 3464350de7ceSAndy Shevchenko * than are in the list. 3465523baf5aSMartin Sperl */ 3466523baf5aSMartin Sperl if (rxfer->replaced_after->next == &msg->transfers) { 3467523baf5aSMartin Sperl dev_err(&msg->spi->dev, 3468523baf5aSMartin Sperl "requested to remove more spi_transfers than are available\n"); 346995c8222fSDavid Jander /* Insert replaced transfers back into the message */ 3470523baf5aSMartin Sperl list_splice(&rxfer->replaced_transfers, 3471523baf5aSMartin Sperl rxfer->replaced_after); 3472523baf5aSMartin Sperl 347395c8222fSDavid Jander /* Free the spi_replace_transfer structure... */ 3474523baf5aSMartin Sperl spi_res_free(rxfer); 3475523baf5aSMartin Sperl 347695c8222fSDavid Jander /* ...and return with an error */ 3477523baf5aSMartin Sperl return ERR_PTR(-EINVAL); 3478523baf5aSMartin Sperl } 3479523baf5aSMartin Sperl 3480350de7ceSAndy Shevchenko /* 3481350de7ceSAndy Shevchenko * Remove the entry after replaced_after from list of 3482350de7ceSAndy Shevchenko * transfers and add it to list of replaced_transfers. 3483523baf5aSMartin Sperl */ 3484523baf5aSMartin Sperl list_move_tail(rxfer->replaced_after->next, 3485523baf5aSMartin Sperl &rxfer->replaced_transfers); 3486523baf5aSMartin Sperl } 3487523baf5aSMartin Sperl 3488350de7ceSAndy Shevchenko /* 3489350de7ceSAndy Shevchenko * Create copy of the given xfer with identical settings 3490350de7ceSAndy Shevchenko * based on the first transfer to get removed. 3491523baf5aSMartin Sperl */ 3492523baf5aSMartin Sperl for (i = 0; i < insert; i++) { 349395c8222fSDavid Jander /* We need to run in reverse order */ 3494523baf5aSMartin Sperl xfer = &rxfer->inserted_transfers[insert - 1 - i]; 3495523baf5aSMartin Sperl 349695c8222fSDavid Jander /* Copy all spi_transfer data */ 3497523baf5aSMartin Sperl memcpy(xfer, xfer_first, sizeof(*xfer)); 3498523baf5aSMartin Sperl 349995c8222fSDavid Jander /* Add to list */ 3500523baf5aSMartin Sperl list_add(&xfer->transfer_list, rxfer->replaced_after); 3501523baf5aSMartin Sperl 350295c8222fSDavid Jander /* Clear cs_change and delay for all but the last */ 3503523baf5aSMartin Sperl if (i) { 3504523baf5aSMartin Sperl xfer->cs_change = false; 3505bebcfd27SAlexandru Ardelean xfer->delay.value = 0; 3506523baf5aSMartin Sperl } 3507523baf5aSMartin Sperl } 3508523baf5aSMartin Sperl 350995c8222fSDavid Jander /* Set up inserted... */ 3510523baf5aSMartin Sperl rxfer->inserted = insert; 3511523baf5aSMartin Sperl 351295c8222fSDavid Jander /* ...and register it with spi_res/spi_message */ 3513523baf5aSMartin Sperl spi_res_add(msg, rxfer); 3514523baf5aSMartin Sperl 3515523baf5aSMartin Sperl return rxfer; 3516523baf5aSMartin Sperl } 3517523baf5aSMartin Sperl 35188caab75fSGeert Uytterhoeven static int __spi_split_transfer_maxsize(struct spi_controller *ctlr, 3519d9f12122SMartin Sperl struct spi_message *msg, 3520d9f12122SMartin Sperl struct spi_transfer **xferp, 3521d9f12122SMartin Sperl size_t maxsize, 3522d9f12122SMartin Sperl gfp_t gfp) 3523d9f12122SMartin Sperl { 3524d9f12122SMartin Sperl struct spi_transfer *xfer = *xferp, *xfers; 3525d9f12122SMartin Sperl struct spi_replaced_transfers *srt; 3526d9f12122SMartin Sperl size_t offset; 3527d9f12122SMartin Sperl size_t count, i; 3528d9f12122SMartin Sperl 352995c8222fSDavid Jander /* Calculate how many we have to replace */ 3530d9f12122SMartin Sperl count = DIV_ROUND_UP(xfer->len, maxsize); 3531d9f12122SMartin Sperl 353295c8222fSDavid Jander /* Create replacement */ 3533d9f12122SMartin Sperl srt = spi_replace_transfers(msg, xfer, 1, count, NULL, 0, gfp); 3534657d32efSDan Carpenter if (IS_ERR(srt)) 3535657d32efSDan Carpenter return PTR_ERR(srt); 3536d9f12122SMartin Sperl xfers = srt->inserted_transfers; 3537d9f12122SMartin Sperl 3538350de7ceSAndy Shevchenko /* 3539350de7ceSAndy Shevchenko * Now handle each of those newly inserted spi_transfers. 3540350de7ceSAndy Shevchenko * Note that the replacements spi_transfers all are preset 3541d9f12122SMartin Sperl * to the same values as *xferp, so tx_buf, rx_buf and len 3542d9f12122SMartin Sperl * are all identical (as well as most others) 3543d9f12122SMartin Sperl * so we just have to fix up len and the pointers. 3544d9f12122SMartin Sperl * 3545350de7ceSAndy Shevchenko * This also includes support for the depreciated 3546350de7ceSAndy Shevchenko * spi_message.is_dma_mapped interface. 3547d9f12122SMartin Sperl */ 3548d9f12122SMartin Sperl 3549350de7ceSAndy Shevchenko /* 3550350de7ceSAndy Shevchenko * The first transfer just needs the length modified, so we 3551350de7ceSAndy Shevchenko * run it outside the loop. 3552d9f12122SMartin Sperl */ 3553c8dab77aSFabio Estevam xfers[0].len = min_t(size_t, maxsize, xfer[0].len); 3554d9f12122SMartin Sperl 355595c8222fSDavid Jander /* All the others need rx_buf/tx_buf also set */ 3556d9f12122SMartin Sperl for (i = 1, offset = maxsize; i < count; offset += maxsize, i++) { 355795c8222fSDavid Jander /* Update rx_buf, tx_buf and dma */ 3558d9f12122SMartin Sperl if (xfers[i].rx_buf) 3559d9f12122SMartin Sperl xfers[i].rx_buf += offset; 3560d9f12122SMartin Sperl if (xfers[i].rx_dma) 3561d9f12122SMartin Sperl xfers[i].rx_dma += offset; 3562d9f12122SMartin Sperl if (xfers[i].tx_buf) 3563d9f12122SMartin Sperl xfers[i].tx_buf += offset; 3564d9f12122SMartin Sperl if (xfers[i].tx_dma) 3565d9f12122SMartin Sperl xfers[i].tx_dma += offset; 3566d9f12122SMartin Sperl 356795c8222fSDavid Jander /* Update length */ 3568d9f12122SMartin Sperl xfers[i].len = min(maxsize, xfers[i].len - offset); 3569d9f12122SMartin Sperl } 3570d9f12122SMartin Sperl 3571350de7ceSAndy Shevchenko /* 3572350de7ceSAndy Shevchenko * We set up xferp to the last entry we have inserted, 3573350de7ceSAndy Shevchenko * so that we skip those already split transfers. 3574d9f12122SMartin Sperl */ 3575d9f12122SMartin Sperl *xferp = &xfers[count - 1]; 3576d9f12122SMartin Sperl 357795c8222fSDavid Jander /* Increment statistics counters */ 35786598b91bSDavid Jander SPI_STATISTICS_INCREMENT_FIELD(ctlr->pcpu_statistics, 3579d9f12122SMartin Sperl transfers_split_maxsize); 35806598b91bSDavid Jander SPI_STATISTICS_INCREMENT_FIELD(msg->spi->pcpu_statistics, 3581d9f12122SMartin Sperl transfers_split_maxsize); 3582d9f12122SMartin Sperl 3583d9f12122SMartin Sperl return 0; 3584d9f12122SMartin Sperl } 3585d9f12122SMartin Sperl 3586d9f12122SMartin Sperl /** 3587ce2424d7SMauro Carvalho Chehab * spi_split_transfers_maxsize - split spi transfers into multiple transfers 3588d9f12122SMartin Sperl * when an individual transfer exceeds a 3589d9f12122SMartin Sperl * certain size 35908caab75fSGeert Uytterhoeven * @ctlr: the @spi_controller for this transfer 35913700ce95SMasanari Iida * @msg: the @spi_message to transform 35923700ce95SMasanari Iida * @maxsize: the maximum when to apply this 359310f11a22SJavier Martinez Canillas * @gfp: GFP allocation flags 3594d9f12122SMartin Sperl * 3595d9f12122SMartin Sperl * Return: status of transformation 3596d9f12122SMartin Sperl */ 35978caab75fSGeert Uytterhoeven int spi_split_transfers_maxsize(struct spi_controller *ctlr, 3598d9f12122SMartin Sperl struct spi_message *msg, 3599d9f12122SMartin Sperl size_t maxsize, 3600d9f12122SMartin Sperl gfp_t gfp) 3601d9f12122SMartin Sperl { 3602d9f12122SMartin Sperl struct spi_transfer *xfer; 3603d9f12122SMartin Sperl int ret; 3604d9f12122SMartin Sperl 3605350de7ceSAndy Shevchenko /* 3606350de7ceSAndy Shevchenko * Iterate over the transfer_list, 3607d9f12122SMartin Sperl * but note that xfer is advanced to the last transfer inserted 3608d9f12122SMartin Sperl * to avoid checking sizes again unnecessarily (also xfer does 3609350de7ceSAndy Shevchenko * potentially belong to a different list by the time the 3610350de7ceSAndy Shevchenko * replacement has happened). 3611d9f12122SMartin Sperl */ 3612d9f12122SMartin Sperl list_for_each_entry(xfer, &msg->transfers, transfer_list) { 3613d9f12122SMartin Sperl if (xfer->len > maxsize) { 36148caab75fSGeert Uytterhoeven ret = __spi_split_transfer_maxsize(ctlr, msg, &xfer, 36158caab75fSGeert Uytterhoeven maxsize, gfp); 3616d9f12122SMartin Sperl if (ret) 3617d9f12122SMartin Sperl return ret; 3618d9f12122SMartin Sperl } 3619d9f12122SMartin Sperl } 3620d9f12122SMartin Sperl 3621d9f12122SMartin Sperl return 0; 3622d9f12122SMartin Sperl } 3623d9f12122SMartin Sperl EXPORT_SYMBOL_GPL(spi_split_transfers_maxsize); 36248ae12a0dSDavid Brownell 36258ae12a0dSDavid Brownell /*-------------------------------------------------------------------------*/ 36268ae12a0dSDavid Brownell 36278caab75fSGeert Uytterhoeven /* Core methods for SPI controller protocol drivers. Some of the 36287d077197SDavid Brownell * other core methods are currently defined as inline functions. 36297d077197SDavid Brownell */ 36307d077197SDavid Brownell 36318caab75fSGeert Uytterhoeven static int __spi_validate_bits_per_word(struct spi_controller *ctlr, 36328caab75fSGeert Uytterhoeven u8 bits_per_word) 363363ab645fSStefan Brüns { 36348caab75fSGeert Uytterhoeven if (ctlr->bits_per_word_mask) { 363563ab645fSStefan Brüns /* Only 32 bits fit in the mask */ 363663ab645fSStefan Brüns if (bits_per_word > 32) 363763ab645fSStefan Brüns return -EINVAL; 36388caab75fSGeert Uytterhoeven if (!(ctlr->bits_per_word_mask & SPI_BPW_MASK(bits_per_word))) 363963ab645fSStefan Brüns return -EINVAL; 364063ab645fSStefan Brüns } 364163ab645fSStefan Brüns 364263ab645fSStefan Brüns return 0; 364363ab645fSStefan Brüns } 364463ab645fSStefan Brüns 36457d077197SDavid Brownell /** 3646684a4784STudor Ambarus * spi_set_cs_timing - configure CS setup, hold, and inactive delays 3647684a4784STudor Ambarus * @spi: the device that requires specific CS timing configuration 3648684a4784STudor Ambarus * 3649684a4784STudor Ambarus * Return: zero on success, else a negative error code. 3650684a4784STudor Ambarus */ 3651684a4784STudor Ambarus static int spi_set_cs_timing(struct spi_device *spi) 3652684a4784STudor Ambarus { 3653684a4784STudor Ambarus struct device *parent = spi->controller->dev.parent; 3654684a4784STudor Ambarus int status = 0; 3655684a4784STudor Ambarus 3656303feb3cSAmit Kumar Mahapatra if (spi->controller->set_cs_timing && !spi_get_csgpiod(spi, 0)) { 3657684a4784STudor Ambarus if (spi->controller->auto_runtime_pm) { 3658684a4784STudor Ambarus status = pm_runtime_get_sync(parent); 3659684a4784STudor Ambarus if (status < 0) { 3660684a4784STudor Ambarus pm_runtime_put_noidle(parent); 3661684a4784STudor Ambarus dev_err(&spi->controller->dev, "Failed to power device: %d\n", 3662684a4784STudor Ambarus status); 3663684a4784STudor Ambarus return status; 3664684a4784STudor Ambarus } 3665684a4784STudor Ambarus 3666684a4784STudor Ambarus status = spi->controller->set_cs_timing(spi); 3667684a4784STudor Ambarus pm_runtime_mark_last_busy(parent); 3668684a4784STudor Ambarus pm_runtime_put_autosuspend(parent); 3669684a4784STudor Ambarus } else { 3670684a4784STudor Ambarus status = spi->controller->set_cs_timing(spi); 3671684a4784STudor Ambarus } 3672684a4784STudor Ambarus } 3673684a4784STudor Ambarus return status; 3674684a4784STudor Ambarus } 3675684a4784STudor Ambarus 3676684a4784STudor Ambarus /** 36777d077197SDavid Brownell * spi_setup - setup SPI mode and clock rate 36787d077197SDavid Brownell * @spi: the device whose settings are being modified 36797d077197SDavid Brownell * Context: can sleep, and no requests are queued to the device 36807d077197SDavid Brownell * 36817d077197SDavid Brownell * SPI protocol drivers may need to update the transfer mode if the 36827d077197SDavid Brownell * device doesn't work with its default. They may likewise need 36837d077197SDavid Brownell * to update clock rates or word sizes from initial values. This function 36847d077197SDavid Brownell * changes those settings, and must be called from a context that can sleep. 36857d077197SDavid Brownell * Except for SPI_CS_HIGH, which takes effect immediately, the changes take 36867d077197SDavid Brownell * effect the next time the device is selected and data is transferred to 36877d077197SDavid Brownell * or from it. When this function returns, the spi device is deselected. 36887d077197SDavid Brownell * 36897d077197SDavid Brownell * Note that this call will fail if the protocol driver specifies an option 36907d077197SDavid Brownell * that the underlying controller or its driver does not support. For 36917d077197SDavid Brownell * example, not all hardware supports wire transfers using nine bit words, 36927d077197SDavid Brownell * LSB-first wire encoding, or active-high chipselects. 369397d56dc6SJavier Martinez Canillas * 369497d56dc6SJavier Martinez Canillas * Return: zero on success, else a negative error code. 36957d077197SDavid Brownell */ 36967d077197SDavid Brownell int spi_setup(struct spi_device *spi) 36977d077197SDavid Brownell { 369883596fbeSGeert Uytterhoeven unsigned bad_bits, ugly_bits; 369973f93db5SPaul Kocialkowski int status = 0; 37007d077197SDavid Brownell 3701d962608cSDragos Bogdan /* 3702350de7ceSAndy Shevchenko * Check mode to prevent that any two of DUAL, QUAD and NO_MOSI/MISO 3703350de7ceSAndy Shevchenko * are set at the same time. 3704f477b7fbSwangyuhang */ 3705d962608cSDragos Bogdan if ((hweight_long(spi->mode & 3706d962608cSDragos Bogdan (SPI_TX_DUAL | SPI_TX_QUAD | SPI_NO_TX)) > 1) || 3707d962608cSDragos Bogdan (hweight_long(spi->mode & 3708d962608cSDragos Bogdan (SPI_RX_DUAL | SPI_RX_QUAD | SPI_NO_RX)) > 1)) { 3709f477b7fbSwangyuhang dev_err(&spi->dev, 3710d962608cSDragos Bogdan "setup: can not select any two of dual, quad and no-rx/tx at the same time\n"); 3711f477b7fbSwangyuhang return -EINVAL; 3712f477b7fbSwangyuhang } 3713350de7ceSAndy Shevchenko /* If it is SPI_3WIRE mode, DUAL and QUAD should be forbidden */ 3714f477b7fbSwangyuhang if ((spi->mode & SPI_3WIRE) && (spi->mode & 37156b03061fSYogesh Narayan Gaur (SPI_TX_DUAL | SPI_TX_QUAD | SPI_TX_OCTAL | 37166b03061fSYogesh Narayan Gaur SPI_RX_DUAL | SPI_RX_QUAD | SPI_RX_OCTAL))) 3717f477b7fbSwangyuhang return -EINVAL; 3718350de7ceSAndy Shevchenko /* 3719350de7ceSAndy Shevchenko * Help drivers fail *cleanly* when they need options 3720350de7ceSAndy Shevchenko * that aren't supported with their current controller. 3721cbaa62e0SDavid Lechner * SPI_CS_WORD has a fallback software implementation, 3722cbaa62e0SDavid Lechner * so it is ignored here. 3723e7db06b5SDavid Brownell */ 3724d962608cSDragos Bogdan bad_bits = spi->mode & ~(spi->controller->mode_bits | SPI_CS_WORD | 3725d962608cSDragos Bogdan SPI_NO_TX | SPI_NO_RX); 372683596fbeSGeert Uytterhoeven ugly_bits = bad_bits & 37276b03061fSYogesh Narayan Gaur (SPI_TX_DUAL | SPI_TX_QUAD | SPI_TX_OCTAL | 37286b03061fSYogesh Narayan Gaur SPI_RX_DUAL | SPI_RX_QUAD | SPI_RX_OCTAL); 372983596fbeSGeert Uytterhoeven if (ugly_bits) { 373083596fbeSGeert Uytterhoeven dev_warn(&spi->dev, 373183596fbeSGeert Uytterhoeven "setup: ignoring unsupported mode bits %x\n", 373283596fbeSGeert Uytterhoeven ugly_bits); 373383596fbeSGeert Uytterhoeven spi->mode &= ~ugly_bits; 373483596fbeSGeert Uytterhoeven bad_bits &= ~ugly_bits; 373583596fbeSGeert Uytterhoeven } 3736e7db06b5SDavid Brownell if (bad_bits) { 3737eb288a1fSLinus Walleij dev_err(&spi->dev, "setup: unsupported mode bits %x\n", 3738e7db06b5SDavid Brownell bad_bits); 3739e7db06b5SDavid Brownell return -EINVAL; 3740e7db06b5SDavid Brownell } 3741e7db06b5SDavid Brownell 3742b3fe2e51SPaul Kocialkowski if (!spi->bits_per_word) { 37437d077197SDavid Brownell spi->bits_per_word = 8; 3744b3fe2e51SPaul Kocialkowski } else { 3745b3fe2e51SPaul Kocialkowski /* 3746b3fe2e51SPaul Kocialkowski * Some controllers may not support the default 8 bits-per-word 3747b3fe2e51SPaul Kocialkowski * so only perform the check when this is explicitly provided. 3748b3fe2e51SPaul Kocialkowski */ 37498caab75fSGeert Uytterhoeven status = __spi_validate_bits_per_word(spi->controller, 37508caab75fSGeert Uytterhoeven spi->bits_per_word); 37515ab8d262SAndy Shevchenko if (status) 37525ab8d262SAndy Shevchenko return status; 3753b3fe2e51SPaul Kocialkowski } 375463ab645fSStefan Brüns 37556820e812STudor Ambarus if (spi->controller->max_speed_hz && 37566820e812STudor Ambarus (!spi->max_speed_hz || 37576820e812STudor Ambarus spi->max_speed_hz > spi->controller->max_speed_hz)) 37588caab75fSGeert Uytterhoeven spi->max_speed_hz = spi->controller->max_speed_hz; 3759052eb2d4SAxel Lin 37604fae3a58SSerge Semin mutex_lock(&spi->controller->io_mutex); 37614fae3a58SSerge Semin 3762c914dbf8SJoe Burmeister if (spi->controller->setup) { 37638caab75fSGeert Uytterhoeven status = spi->controller->setup(spi); 3764c914dbf8SJoe Burmeister if (status) { 3765c914dbf8SJoe Burmeister mutex_unlock(&spi->controller->io_mutex); 3766c914dbf8SJoe Burmeister dev_err(&spi->controller->dev, "Failed to setup device: %d\n", 3767c914dbf8SJoe Burmeister status); 3768c914dbf8SJoe Burmeister return status; 3769c914dbf8SJoe Burmeister } 3770c914dbf8SJoe Burmeister } 37717d077197SDavid Brownell 3772684a4784STudor Ambarus status = spi_set_cs_timing(spi); 3773684a4784STudor Ambarus if (status) { 3774684a4784STudor Ambarus mutex_unlock(&spi->controller->io_mutex); 3775684a4784STudor Ambarus return status; 3776684a4784STudor Ambarus } 3777684a4784STudor Ambarus 3778d948e6caSLuhua Xu if (spi->controller->auto_runtime_pm && spi->controller->set_cs) { 3779dd769f15SMinghao Chi status = pm_runtime_resume_and_get(spi->controller->dev.parent); 3780d948e6caSLuhua Xu if (status < 0) { 37814fae3a58SSerge Semin mutex_unlock(&spi->controller->io_mutex); 3782d948e6caSLuhua Xu dev_err(&spi->controller->dev, "Failed to power device: %d\n", 3783d948e6caSLuhua Xu status); 3784d948e6caSLuhua Xu return status; 3785d948e6caSLuhua Xu } 378657a94607STony Lindgren 378757a94607STony Lindgren /* 378857a94607STony Lindgren * We do not want to return positive value from pm_runtime_get, 378957a94607STony Lindgren * there are many instances of devices calling spi_setup() and 379057a94607STony Lindgren * checking for a non-zero return value instead of a negative 379157a94607STony Lindgren * return value. 379257a94607STony Lindgren */ 379357a94607STony Lindgren status = 0; 379457a94607STony Lindgren 3795d347b4aaSDavid Bauer spi_set_cs(spi, false, true); 3796d948e6caSLuhua Xu pm_runtime_mark_last_busy(spi->controller->dev.parent); 3797d948e6caSLuhua Xu pm_runtime_put_autosuspend(spi->controller->dev.parent); 3798d948e6caSLuhua Xu } else { 3799d347b4aaSDavid Bauer spi_set_cs(spi, false, true); 3800d948e6caSLuhua Xu } 3801abeedb01SFranklin S Cooper Jr 38024fae3a58SSerge Semin mutex_unlock(&spi->controller->io_mutex); 38034fae3a58SSerge Semin 3804924b5867SDouglas Anderson if (spi->rt && !spi->controller->rt) { 3805924b5867SDouglas Anderson spi->controller->rt = true; 3806924b5867SDouglas Anderson spi_set_thread_rt(spi->controller); 3807924b5867SDouglas Anderson } 3808924b5867SDouglas Anderson 38095cb4e1f3SAndy Shevchenko trace_spi_setup(spi, status); 38105cb4e1f3SAndy Shevchenko 381140b82c2dSAndy Shevchenko dev_dbg(&spi->dev, "setup mode %lu, %s%s%s%s%u bits/w, %u Hz max --> %d\n", 381240b82c2dSAndy Shevchenko spi->mode & SPI_MODE_X_MASK, 38137d077197SDavid Brownell (spi->mode & SPI_CS_HIGH) ? "cs_high, " : "", 38147d077197SDavid Brownell (spi->mode & SPI_LSB_FIRST) ? "lsb, " : "", 38157d077197SDavid Brownell (spi->mode & SPI_3WIRE) ? "3wire, " : "", 38167d077197SDavid Brownell (spi->mode & SPI_LOOP) ? "loopback, " : "", 38177d077197SDavid Brownell spi->bits_per_word, spi->max_speed_hz, 38187d077197SDavid Brownell status); 38197d077197SDavid Brownell 38207d077197SDavid Brownell return status; 38217d077197SDavid Brownell } 38227d077197SDavid Brownell EXPORT_SYMBOL_GPL(spi_setup); 38237d077197SDavid Brownell 38246c613f68SAlexandru Ardelean static int _spi_xfer_word_delay_update(struct spi_transfer *xfer, 38256c613f68SAlexandru Ardelean struct spi_device *spi) 38266c613f68SAlexandru Ardelean { 38276c613f68SAlexandru Ardelean int delay1, delay2; 38286c613f68SAlexandru Ardelean 38293984d39bSAlexandru Ardelean delay1 = spi_delay_to_ns(&xfer->word_delay, xfer); 38306c613f68SAlexandru Ardelean if (delay1 < 0) 38316c613f68SAlexandru Ardelean return delay1; 38326c613f68SAlexandru Ardelean 38333984d39bSAlexandru Ardelean delay2 = spi_delay_to_ns(&spi->word_delay, xfer); 38346c613f68SAlexandru Ardelean if (delay2 < 0) 38356c613f68SAlexandru Ardelean return delay2; 38366c613f68SAlexandru Ardelean 38376c613f68SAlexandru Ardelean if (delay1 < delay2) 38386c613f68SAlexandru Ardelean memcpy(&xfer->word_delay, &spi->word_delay, 38396c613f68SAlexandru Ardelean sizeof(xfer->word_delay)); 38406c613f68SAlexandru Ardelean 38416c613f68SAlexandru Ardelean return 0; 38426c613f68SAlexandru Ardelean } 38436c613f68SAlexandru Ardelean 384490808738SMark Brown static int __spi_validate(struct spi_device *spi, struct spi_message *message) 3845cf32b71eSErnst Schwab { 38468caab75fSGeert Uytterhoeven struct spi_controller *ctlr = spi->controller; 3847e6811d1dSLaxman Dewangan struct spi_transfer *xfer; 38486ea31293SAtsushi Nemoto int w_size; 3849cf32b71eSErnst Schwab 385024a0013aSMark Brown if (list_empty(&message->transfers)) 385124a0013aSMark Brown return -EINVAL; 385224a0013aSMark Brown 3853350de7ceSAndy Shevchenko /* 3854350de7ceSAndy Shevchenko * If an SPI controller does not support toggling the CS line on each 385571388b21SDavid Lechner * transfer (indicated by the SPI_CS_WORD flag) or we are using a GPIO 385671388b21SDavid Lechner * for the CS line, we can emulate the CS-per-word hardware function by 3857cbaa62e0SDavid Lechner * splitting transfers into one-word transfers and ensuring that 3858cbaa62e0SDavid Lechner * cs_change is set for each transfer. 3859cbaa62e0SDavid Lechner */ 386071388b21SDavid Lechner if ((spi->mode & SPI_CS_WORD) && (!(ctlr->mode_bits & SPI_CS_WORD) || 3861303feb3cSAmit Kumar Mahapatra spi_get_csgpiod(spi, 0))) { 3862cbaa62e0SDavid Lechner size_t maxsize; 3863cbaa62e0SDavid Lechner int ret; 3864cbaa62e0SDavid Lechner 3865cbaa62e0SDavid Lechner maxsize = (spi->bits_per_word + 7) / 8; 3866cbaa62e0SDavid Lechner 3867cbaa62e0SDavid Lechner /* spi_split_transfers_maxsize() requires message->spi */ 3868cbaa62e0SDavid Lechner message->spi = spi; 3869cbaa62e0SDavid Lechner 3870cbaa62e0SDavid Lechner ret = spi_split_transfers_maxsize(ctlr, message, maxsize, 3871cbaa62e0SDavid Lechner GFP_KERNEL); 3872cbaa62e0SDavid Lechner if (ret) 3873cbaa62e0SDavid Lechner return ret; 3874cbaa62e0SDavid Lechner 3875cbaa62e0SDavid Lechner list_for_each_entry(xfer, &message->transfers, transfer_list) { 387695c8222fSDavid Jander /* Don't change cs_change on the last entry in the list */ 3877cbaa62e0SDavid Lechner if (list_is_last(&xfer->transfer_list, &message->transfers)) 3878cbaa62e0SDavid Lechner break; 3879cbaa62e0SDavid Lechner xfer->cs_change = 1; 3880cbaa62e0SDavid Lechner } 3881cbaa62e0SDavid Lechner } 3882cbaa62e0SDavid Lechner 3883350de7ceSAndy Shevchenko /* 3884350de7ceSAndy Shevchenko * Half-duplex links include original MicroWire, and ones with 3885cf32b71eSErnst Schwab * only one data pin like SPI_3WIRE (switches direction) or where 3886cf32b71eSErnst Schwab * either MOSI or MISO is missing. They can also be caused by 3887cf32b71eSErnst Schwab * software limitations. 3888cf32b71eSErnst Schwab */ 38898caab75fSGeert Uytterhoeven if ((ctlr->flags & SPI_CONTROLLER_HALF_DUPLEX) || 38908caab75fSGeert Uytterhoeven (spi->mode & SPI_3WIRE)) { 38918caab75fSGeert Uytterhoeven unsigned flags = ctlr->flags; 3892cf32b71eSErnst Schwab 3893cf32b71eSErnst Schwab list_for_each_entry(xfer, &message->transfers, transfer_list) { 3894cf32b71eSErnst Schwab if (xfer->rx_buf && xfer->tx_buf) 3895cf32b71eSErnst Schwab return -EINVAL; 38968caab75fSGeert Uytterhoeven if ((flags & SPI_CONTROLLER_NO_TX) && xfer->tx_buf) 3897cf32b71eSErnst Schwab return -EINVAL; 38988caab75fSGeert Uytterhoeven if ((flags & SPI_CONTROLLER_NO_RX) && xfer->rx_buf) 3899cf32b71eSErnst Schwab return -EINVAL; 3900cf32b71eSErnst Schwab } 3901cf32b71eSErnst Schwab } 3902cf32b71eSErnst Schwab 3903350de7ceSAndy Shevchenko /* 3904059b8ffeSLaxman Dewangan * Set transfer bits_per_word and max speed as spi device default if 3905059b8ffeSLaxman Dewangan * it is not set for this transfer. 3906f477b7fbSwangyuhang * Set transfer tx_nbits and rx_nbits as single transfer default 3907f477b7fbSwangyuhang * (SPI_NBITS_SINGLE) if it is not set for this transfer. 3908b7bb367aSJonas Bonn * Ensure transfer word_delay is at least as long as that required by 3909b7bb367aSJonas Bonn * device itself. 3910e6811d1dSLaxman Dewangan */ 391177e80588SMartin Sperl message->frame_length = 0; 3912e6811d1dSLaxman Dewangan list_for_each_entry(xfer, &message->transfers, transfer_list) { 39135d7e2b5eSMartin Sperl xfer->effective_speed_hz = 0; 3914078726ceSSourav Poddar message->frame_length += xfer->len; 3915e6811d1dSLaxman Dewangan if (!xfer->bits_per_word) 3916e6811d1dSLaxman Dewangan xfer->bits_per_word = spi->bits_per_word; 3917a6f87fadSAxel Lin 3918a6f87fadSAxel Lin if (!xfer->speed_hz) 3919059b8ffeSLaxman Dewangan xfer->speed_hz = spi->max_speed_hz; 3920a6f87fadSAxel Lin 39218caab75fSGeert Uytterhoeven if (ctlr->max_speed_hz && xfer->speed_hz > ctlr->max_speed_hz) 39228caab75fSGeert Uytterhoeven xfer->speed_hz = ctlr->max_speed_hz; 392356ede94aSGabor Juhos 39248caab75fSGeert Uytterhoeven if (__spi_validate_bits_per_word(ctlr, xfer->bits_per_word)) 3925543bb255SStephen Warren return -EINVAL; 3926a2fd4f9fSMark Brown 39274d94bd21SIvan T. Ivanov /* 39284d94bd21SIvan T. Ivanov * SPI transfer length should be multiple of SPI word size 3929350de7ceSAndy Shevchenko * where SPI word size should be power-of-two multiple. 39304d94bd21SIvan T. Ivanov */ 39314d94bd21SIvan T. Ivanov if (xfer->bits_per_word <= 8) 39324d94bd21SIvan T. Ivanov w_size = 1; 39334d94bd21SIvan T. Ivanov else if (xfer->bits_per_word <= 16) 39344d94bd21SIvan T. Ivanov w_size = 2; 39354d94bd21SIvan T. Ivanov else 39364d94bd21SIvan T. Ivanov w_size = 4; 39374d94bd21SIvan T. Ivanov 39384d94bd21SIvan T. Ivanov /* No partial transfers accepted */ 39396ea31293SAtsushi Nemoto if (xfer->len % w_size) 39404d94bd21SIvan T. Ivanov return -EINVAL; 39414d94bd21SIvan T. Ivanov 39428caab75fSGeert Uytterhoeven if (xfer->speed_hz && ctlr->min_speed_hz && 39438caab75fSGeert Uytterhoeven xfer->speed_hz < ctlr->min_speed_hz) 3944a2fd4f9fSMark Brown return -EINVAL; 3945f477b7fbSwangyuhang 3946f477b7fbSwangyuhang if (xfer->tx_buf && !xfer->tx_nbits) 3947f477b7fbSwangyuhang xfer->tx_nbits = SPI_NBITS_SINGLE; 3948f477b7fbSwangyuhang if (xfer->rx_buf && !xfer->rx_nbits) 3949f477b7fbSwangyuhang xfer->rx_nbits = SPI_NBITS_SINGLE; 3950350de7ceSAndy Shevchenko /* 3951350de7ceSAndy Shevchenko * Check transfer tx/rx_nbits: 39521afd9989SGeert Uytterhoeven * 1. check the value matches one of single, dual and quad 39531afd9989SGeert Uytterhoeven * 2. check tx/rx_nbits match the mode in spi_device 3954f477b7fbSwangyuhang */ 3955db90a441SSourav Poddar if (xfer->tx_buf) { 3956d962608cSDragos Bogdan if (spi->mode & SPI_NO_TX) 3957d962608cSDragos Bogdan return -EINVAL; 3958f477b7fbSwangyuhang if (xfer->tx_nbits != SPI_NBITS_SINGLE && 3959f477b7fbSwangyuhang xfer->tx_nbits != SPI_NBITS_DUAL && 3960f477b7fbSwangyuhang xfer->tx_nbits != SPI_NBITS_QUAD) 3961a2fd4f9fSMark Brown return -EINVAL; 3962f477b7fbSwangyuhang if ((xfer->tx_nbits == SPI_NBITS_DUAL) && 3963f477b7fbSwangyuhang !(spi->mode & (SPI_TX_DUAL | SPI_TX_QUAD))) 3964f477b7fbSwangyuhang return -EINVAL; 3965f477b7fbSwangyuhang if ((xfer->tx_nbits == SPI_NBITS_QUAD) && 3966f477b7fbSwangyuhang !(spi->mode & SPI_TX_QUAD)) 3967f477b7fbSwangyuhang return -EINVAL; 3968db90a441SSourav Poddar } 396995c8222fSDavid Jander /* Check transfer rx_nbits */ 3970db90a441SSourav Poddar if (xfer->rx_buf) { 3971d962608cSDragos Bogdan if (spi->mode & SPI_NO_RX) 3972d962608cSDragos Bogdan return -EINVAL; 3973f477b7fbSwangyuhang if (xfer->rx_nbits != SPI_NBITS_SINGLE && 3974f477b7fbSwangyuhang xfer->rx_nbits != SPI_NBITS_DUAL && 3975f477b7fbSwangyuhang xfer->rx_nbits != SPI_NBITS_QUAD) 3976f477b7fbSwangyuhang return -EINVAL; 3977f477b7fbSwangyuhang if ((xfer->rx_nbits == SPI_NBITS_DUAL) && 3978f477b7fbSwangyuhang !(spi->mode & (SPI_RX_DUAL | SPI_RX_QUAD))) 3979f477b7fbSwangyuhang return -EINVAL; 3980f477b7fbSwangyuhang if ((xfer->rx_nbits == SPI_NBITS_QUAD) && 3981f477b7fbSwangyuhang !(spi->mode & SPI_RX_QUAD)) 3982f477b7fbSwangyuhang return -EINVAL; 3983e6811d1dSLaxman Dewangan } 3984b7bb367aSJonas Bonn 39856c613f68SAlexandru Ardelean if (_spi_xfer_word_delay_update(xfer, spi)) 39866c613f68SAlexandru Ardelean return -EINVAL; 3987e6811d1dSLaxman Dewangan } 3988e6811d1dSLaxman Dewangan 3989cf32b71eSErnst Schwab message->status = -EINPROGRESS; 399090808738SMark Brown 399190808738SMark Brown return 0; 399290808738SMark Brown } 399390808738SMark Brown 399490808738SMark Brown static int __spi_async(struct spi_device *spi, struct spi_message *message) 399590808738SMark Brown { 39968caab75fSGeert Uytterhoeven struct spi_controller *ctlr = spi->controller; 3997b42faeeeSVladimir Oltean struct spi_transfer *xfer; 399890808738SMark Brown 3999b5932f5cSBoris Brezillon /* 4000b5932f5cSBoris Brezillon * Some controllers do not support doing regular SPI transfers. Return 4001b5932f5cSBoris Brezillon * ENOTSUPP when this is the case. 4002b5932f5cSBoris Brezillon */ 4003b5932f5cSBoris Brezillon if (!ctlr->transfer) 4004b5932f5cSBoris Brezillon return -ENOTSUPP; 4005b5932f5cSBoris Brezillon 400690808738SMark Brown message->spi = spi; 400790808738SMark Brown 40086598b91bSDavid Jander SPI_STATISTICS_INCREMENT_FIELD(ctlr->pcpu_statistics, spi_async); 40096598b91bSDavid Jander SPI_STATISTICS_INCREMENT_FIELD(spi->pcpu_statistics, spi_async); 4010eca2ebc7SMartin Sperl 401190808738SMark Brown trace_spi_message_submit(message); 401290808738SMark Brown 4013b42faeeeSVladimir Oltean if (!ctlr->ptp_sts_supported) { 4014b42faeeeSVladimir Oltean list_for_each_entry(xfer, &message->transfers, transfer_list) { 4015b42faeeeSVladimir Oltean xfer->ptp_sts_word_pre = 0; 4016b42faeeeSVladimir Oltean ptp_read_system_prets(xfer->ptp_sts); 4017b42faeeeSVladimir Oltean } 4018b42faeeeSVladimir Oltean } 4019b42faeeeSVladimir Oltean 40208caab75fSGeert Uytterhoeven return ctlr->transfer(spi, message); 4021cf32b71eSErnst Schwab } 4022cf32b71eSErnst Schwab 4023568d0697SDavid Brownell /** 4024568d0697SDavid Brownell * spi_async - asynchronous SPI transfer 4025568d0697SDavid Brownell * @spi: device with which data will be exchanged 4026568d0697SDavid Brownell * @message: describes the data transfers, including completion callback 4027568d0697SDavid Brownell * Context: any (irqs may be blocked, etc) 4028568d0697SDavid Brownell * 4029568d0697SDavid Brownell * This call may be used in_irq and other contexts which can't sleep, 4030568d0697SDavid Brownell * as well as from task contexts which can sleep. 4031568d0697SDavid Brownell * 4032568d0697SDavid Brownell * The completion callback is invoked in a context which can't sleep. 4033568d0697SDavid Brownell * Before that invocation, the value of message->status is undefined. 4034568d0697SDavid Brownell * When the callback is issued, message->status holds either zero (to 4035568d0697SDavid Brownell * indicate complete success) or a negative error code. After that 4036568d0697SDavid Brownell * callback returns, the driver which issued the transfer request may 4037568d0697SDavid Brownell * deallocate the associated memory; it's no longer in use by any SPI 4038568d0697SDavid Brownell * core or controller driver code. 4039568d0697SDavid Brownell * 4040568d0697SDavid Brownell * Note that although all messages to a spi_device are handled in 4041568d0697SDavid Brownell * FIFO order, messages may go to different devices in other orders. 4042568d0697SDavid Brownell * Some device might be higher priority, or have various "hard" access 4043568d0697SDavid Brownell * time requirements, for example. 4044568d0697SDavid Brownell * 4045568d0697SDavid Brownell * On detection of any fault during the transfer, processing of 4046568d0697SDavid Brownell * the entire message is aborted, and the device is deselected. 4047568d0697SDavid Brownell * Until returning from the associated message completion callback, 4048568d0697SDavid Brownell * no other spi_message queued to that device will be processed. 4049568d0697SDavid Brownell * (This rule applies equally to all the synchronous transfer calls, 4050568d0697SDavid Brownell * which are wrappers around this core asynchronous primitive.) 405197d56dc6SJavier Martinez Canillas * 405297d56dc6SJavier Martinez Canillas * Return: zero on success, else a negative error code. 4053568d0697SDavid Brownell */ 4054568d0697SDavid Brownell int spi_async(struct spi_device *spi, struct spi_message *message) 4055568d0697SDavid Brownell { 40568caab75fSGeert Uytterhoeven struct spi_controller *ctlr = spi->controller; 4057cf32b71eSErnst Schwab int ret; 4058cf32b71eSErnst Schwab unsigned long flags; 4059568d0697SDavid Brownell 406090808738SMark Brown ret = __spi_validate(spi, message); 406190808738SMark Brown if (ret != 0) 406290808738SMark Brown return ret; 406390808738SMark Brown 40648caab75fSGeert Uytterhoeven spin_lock_irqsave(&ctlr->bus_lock_spinlock, flags); 4065568d0697SDavid Brownell 40668caab75fSGeert Uytterhoeven if (ctlr->bus_lock_flag) 4067cf32b71eSErnst Schwab ret = -EBUSY; 4068cf32b71eSErnst Schwab else 4069cf32b71eSErnst Schwab ret = __spi_async(spi, message); 4070568d0697SDavid Brownell 40718caab75fSGeert Uytterhoeven spin_unlock_irqrestore(&ctlr->bus_lock_spinlock, flags); 4072cf32b71eSErnst Schwab 4073cf32b71eSErnst Schwab return ret; 4074568d0697SDavid Brownell } 4075568d0697SDavid Brownell EXPORT_SYMBOL_GPL(spi_async); 4076568d0697SDavid Brownell 4077cf32b71eSErnst Schwab /** 4078cf32b71eSErnst Schwab * spi_async_locked - version of spi_async with exclusive bus usage 4079cf32b71eSErnst Schwab * @spi: device with which data will be exchanged 4080cf32b71eSErnst Schwab * @message: describes the data transfers, including completion callback 4081cf32b71eSErnst Schwab * Context: any (irqs may be blocked, etc) 4082cf32b71eSErnst Schwab * 4083cf32b71eSErnst Schwab * This call may be used in_irq and other contexts which can't sleep, 4084cf32b71eSErnst Schwab * as well as from task contexts which can sleep. 4085cf32b71eSErnst Schwab * 4086cf32b71eSErnst Schwab * The completion callback is invoked in a context which can't sleep. 4087cf32b71eSErnst Schwab * Before that invocation, the value of message->status is undefined. 4088cf32b71eSErnst Schwab * When the callback is issued, message->status holds either zero (to 4089cf32b71eSErnst Schwab * indicate complete success) or a negative error code. After that 4090cf32b71eSErnst Schwab * callback returns, the driver which issued the transfer request may 4091cf32b71eSErnst Schwab * deallocate the associated memory; it's no longer in use by any SPI 4092cf32b71eSErnst Schwab * core or controller driver code. 4093cf32b71eSErnst Schwab * 4094cf32b71eSErnst Schwab * Note that although all messages to a spi_device are handled in 4095cf32b71eSErnst Schwab * FIFO order, messages may go to different devices in other orders. 4096cf32b71eSErnst Schwab * Some device might be higher priority, or have various "hard" access 4097cf32b71eSErnst Schwab * time requirements, for example. 4098cf32b71eSErnst Schwab * 4099cf32b71eSErnst Schwab * On detection of any fault during the transfer, processing of 4100cf32b71eSErnst Schwab * the entire message is aborted, and the device is deselected. 4101cf32b71eSErnst Schwab * Until returning from the associated message completion callback, 4102cf32b71eSErnst Schwab * no other spi_message queued to that device will be processed. 4103cf32b71eSErnst Schwab * (This rule applies equally to all the synchronous transfer calls, 4104cf32b71eSErnst Schwab * which are wrappers around this core asynchronous primitive.) 410597d56dc6SJavier Martinez Canillas * 410697d56dc6SJavier Martinez Canillas * Return: zero on success, else a negative error code. 4107cf32b71eSErnst Schwab */ 4108da21fde0SUwe Kleine-König static int spi_async_locked(struct spi_device *spi, struct spi_message *message) 4109cf32b71eSErnst Schwab { 41108caab75fSGeert Uytterhoeven struct spi_controller *ctlr = spi->controller; 4111cf32b71eSErnst Schwab int ret; 4112cf32b71eSErnst Schwab unsigned long flags; 4113cf32b71eSErnst Schwab 411490808738SMark Brown ret = __spi_validate(spi, message); 411590808738SMark Brown if (ret != 0) 411690808738SMark Brown return ret; 411790808738SMark Brown 41188caab75fSGeert Uytterhoeven spin_lock_irqsave(&ctlr->bus_lock_spinlock, flags); 4119cf32b71eSErnst Schwab 4120cf32b71eSErnst Schwab ret = __spi_async(spi, message); 4121cf32b71eSErnst Schwab 41228caab75fSGeert Uytterhoeven spin_unlock_irqrestore(&ctlr->bus_lock_spinlock, flags); 4123cf32b71eSErnst Schwab 4124cf32b71eSErnst Schwab return ret; 4125cf32b71eSErnst Schwab 4126cf32b71eSErnst Schwab } 4127cf32b71eSErnst Schwab 4128ae7d2346SDavid Jander static void __spi_transfer_message_noqueue(struct spi_controller *ctlr, struct spi_message *msg) 4129ae7d2346SDavid Jander { 4130ae7d2346SDavid Jander bool was_busy; 4131ae7d2346SDavid Jander int ret; 4132ae7d2346SDavid Jander 4133ae7d2346SDavid Jander mutex_lock(&ctlr->io_mutex); 4134ae7d2346SDavid Jander 41351a9cafcbSDavid Jander was_busy = ctlr->busy; 4136ae7d2346SDavid Jander 413772c5c59bSDavid Jander ctlr->cur_msg = msg; 4138ae7d2346SDavid Jander ret = __spi_pump_transfer_message(ctlr, msg, was_busy); 4139ae7d2346SDavid Jander if (ret) 4140ae7d2346SDavid Jander goto out; 4141ae7d2346SDavid Jander 414269fa9590SDavid Jander ctlr->cur_msg = NULL; 414369fa9590SDavid Jander ctlr->fallback = false; 414469fa9590SDavid Jander 4145ae7d2346SDavid Jander if (!was_busy) { 4146ae7d2346SDavid Jander kfree(ctlr->dummy_rx); 4147ae7d2346SDavid Jander ctlr->dummy_rx = NULL; 4148ae7d2346SDavid Jander kfree(ctlr->dummy_tx); 4149ae7d2346SDavid Jander ctlr->dummy_tx = NULL; 4150ae7d2346SDavid Jander if (ctlr->unprepare_transfer_hardware && 4151ae7d2346SDavid Jander ctlr->unprepare_transfer_hardware(ctlr)) 4152ae7d2346SDavid Jander dev_err(&ctlr->dev, 4153ae7d2346SDavid Jander "failed to unprepare transfer hardware\n"); 4154ae7d2346SDavid Jander spi_idle_runtime_pm(ctlr); 4155ae7d2346SDavid Jander } 4156ae7d2346SDavid Jander 4157ae7d2346SDavid Jander out: 4158ae7d2346SDavid Jander mutex_unlock(&ctlr->io_mutex); 4159ae7d2346SDavid Jander } 4160ae7d2346SDavid Jander 41617d077197SDavid Brownell /*-------------------------------------------------------------------------*/ 41627d077197SDavid Brownell 4163350de7ceSAndy Shevchenko /* 4164350de7ceSAndy Shevchenko * Utility methods for SPI protocol drivers, layered on 41657d077197SDavid Brownell * top of the core. Some other utility methods are defined as 41667d077197SDavid Brownell * inline functions. 41677d077197SDavid Brownell */ 41687d077197SDavid Brownell 41695d870c8eSAndrew Morton static void spi_complete(void *arg) 41705d870c8eSAndrew Morton { 41715d870c8eSAndrew Morton complete(arg); 41725d870c8eSAndrew Morton } 41735d870c8eSAndrew Morton 4174ef4d96ecSMark Brown static int __spi_sync(struct spi_device *spi, struct spi_message *message) 4175cf32b71eSErnst Schwab { 4176cf32b71eSErnst Schwab DECLARE_COMPLETION_ONSTACK(done); 4177cf32b71eSErnst Schwab int status; 41788caab75fSGeert Uytterhoeven struct spi_controller *ctlr = spi->controller; 41790461a414SMark Brown 41800461a414SMark Brown status = __spi_validate(spi, message); 41810461a414SMark Brown if (status != 0) 41820461a414SMark Brown return status; 4183cf32b71eSErnst Schwab 41840461a414SMark Brown message->spi = spi; 4185cf32b71eSErnst Schwab 41866598b91bSDavid Jander SPI_STATISTICS_INCREMENT_FIELD(ctlr->pcpu_statistics, spi_sync); 41876598b91bSDavid Jander SPI_STATISTICS_INCREMENT_FIELD(spi->pcpu_statistics, spi_sync); 4188eca2ebc7SMartin Sperl 4189350de7ceSAndy Shevchenko /* 4190ae7d2346SDavid Jander * Checking queue_empty here only guarantees async/sync message 4191ae7d2346SDavid Jander * ordering when coming from the same context. It does not need to 4192ae7d2346SDavid Jander * guard against reentrancy from a different context. The io_mutex 4193ae7d2346SDavid Jander * will catch those cases. 41940461a414SMark Brown */ 4195b30f7c8eSMark Brown if (READ_ONCE(ctlr->queue_empty) && !ctlr->must_async) { 4196ae7d2346SDavid Jander message->actual_length = 0; 4197ae7d2346SDavid Jander message->status = -EINPROGRESS; 41980461a414SMark Brown 41990461a414SMark Brown trace_spi_message_submit(message); 42000461a414SMark Brown 4201ae7d2346SDavid Jander SPI_STATISTICS_INCREMENT_FIELD(ctlr->pcpu_statistics, spi_sync_immediate); 4202ae7d2346SDavid Jander SPI_STATISTICS_INCREMENT_FIELD(spi->pcpu_statistics, spi_sync_immediate); 42030461a414SMark Brown 4204ae7d2346SDavid Jander __spi_transfer_message_noqueue(ctlr, message); 4205ae7d2346SDavid Jander 4206ae7d2346SDavid Jander return message->status; 4207ae7d2346SDavid Jander } 4208ae7d2346SDavid Jander 4209ae7d2346SDavid Jander /* 4210ae7d2346SDavid Jander * There are messages in the async queue that could have originated 4211ae7d2346SDavid Jander * from the same context, so we need to preserve ordering. 4212ae7d2346SDavid Jander * Therefor we send the message to the async queue and wait until they 4213ae7d2346SDavid Jander * are completed. 4214ae7d2346SDavid Jander */ 4215ae7d2346SDavid Jander message->complete = spi_complete; 4216ae7d2346SDavid Jander message->context = &done; 4217cf32b71eSErnst Schwab status = spi_async_locked(spi, message); 4218cf32b71eSErnst Schwab if (status == 0) { 4219cf32b71eSErnst Schwab wait_for_completion(&done); 4220cf32b71eSErnst Schwab status = message->status; 4221cf32b71eSErnst Schwab } 4222cf32b71eSErnst Schwab message->context = NULL; 4223ae7d2346SDavid Jander 4224cf32b71eSErnst Schwab return status; 4225cf32b71eSErnst Schwab } 4226cf32b71eSErnst Schwab 42278ae12a0dSDavid Brownell /** 42288ae12a0dSDavid Brownell * spi_sync - blocking/synchronous SPI data transfers 42298ae12a0dSDavid Brownell * @spi: device with which data will be exchanged 42308ae12a0dSDavid Brownell * @message: describes the data transfers 423133e34dc6SDavid Brownell * Context: can sleep 42328ae12a0dSDavid Brownell * 42338ae12a0dSDavid Brownell * This call may only be used from a context that may sleep. The sleep 42348ae12a0dSDavid Brownell * is non-interruptible, and has no timeout. Low-overhead controller 42358ae12a0dSDavid Brownell * drivers may DMA directly into and out of the message buffers. 42368ae12a0dSDavid Brownell * 42378ae12a0dSDavid Brownell * Note that the SPI device's chip select is active during the message, 42388ae12a0dSDavid Brownell * and then is normally disabled between messages. Drivers for some 42398ae12a0dSDavid Brownell * frequently-used devices may want to minimize costs of selecting a chip, 42408ae12a0dSDavid Brownell * by leaving it selected in anticipation that the next message will go 42418ae12a0dSDavid Brownell * to the same chip. (That may increase power usage.) 42428ae12a0dSDavid Brownell * 42430c868461SDavid Brownell * Also, the caller is guaranteeing that the memory associated with the 42440c868461SDavid Brownell * message will not be freed before this call returns. 42450c868461SDavid Brownell * 424697d56dc6SJavier Martinez Canillas * Return: zero on success, else a negative error code. 42478ae12a0dSDavid Brownell */ 42488ae12a0dSDavid Brownell int spi_sync(struct spi_device *spi, struct spi_message *message) 42498ae12a0dSDavid Brownell { 4250ef4d96ecSMark Brown int ret; 4251ef4d96ecSMark Brown 42528caab75fSGeert Uytterhoeven mutex_lock(&spi->controller->bus_lock_mutex); 4253ef4d96ecSMark Brown ret = __spi_sync(spi, message); 42548caab75fSGeert Uytterhoeven mutex_unlock(&spi->controller->bus_lock_mutex); 4255ef4d96ecSMark Brown 4256ef4d96ecSMark Brown return ret; 42578ae12a0dSDavid Brownell } 42588ae12a0dSDavid Brownell EXPORT_SYMBOL_GPL(spi_sync); 42598ae12a0dSDavid Brownell 4260cf32b71eSErnst Schwab /** 4261cf32b71eSErnst Schwab * spi_sync_locked - version of spi_sync with exclusive bus usage 4262cf32b71eSErnst Schwab * @spi: device with which data will be exchanged 4263cf32b71eSErnst Schwab * @message: describes the data transfers 4264cf32b71eSErnst Schwab * Context: can sleep 4265cf32b71eSErnst Schwab * 4266cf32b71eSErnst Schwab * This call may only be used from a context that may sleep. The sleep 4267cf32b71eSErnst Schwab * is non-interruptible, and has no timeout. Low-overhead controller 4268cf32b71eSErnst Schwab * drivers may DMA directly into and out of the message buffers. 4269cf32b71eSErnst Schwab * 4270cf32b71eSErnst Schwab * This call should be used by drivers that require exclusive access to the 427125985edcSLucas De Marchi * SPI bus. It has to be preceded by a spi_bus_lock call. The SPI bus must 4272cf32b71eSErnst Schwab * be released by a spi_bus_unlock call when the exclusive access is over. 4273cf32b71eSErnst Schwab * 427497d56dc6SJavier Martinez Canillas * Return: zero on success, else a negative error code. 4275cf32b71eSErnst Schwab */ 4276cf32b71eSErnst Schwab int spi_sync_locked(struct spi_device *spi, struct spi_message *message) 4277cf32b71eSErnst Schwab { 4278ef4d96ecSMark Brown return __spi_sync(spi, message); 4279cf32b71eSErnst Schwab } 4280cf32b71eSErnst Schwab EXPORT_SYMBOL_GPL(spi_sync_locked); 4281cf32b71eSErnst Schwab 4282cf32b71eSErnst Schwab /** 4283cf32b71eSErnst Schwab * spi_bus_lock - obtain a lock for exclusive SPI bus usage 42848caab75fSGeert Uytterhoeven * @ctlr: SPI bus master that should be locked for exclusive bus access 4285cf32b71eSErnst Schwab * Context: can sleep 4286cf32b71eSErnst Schwab * 4287cf32b71eSErnst Schwab * This call may only be used from a context that may sleep. The sleep 4288cf32b71eSErnst Schwab * is non-interruptible, and has no timeout. 4289cf32b71eSErnst Schwab * 4290cf32b71eSErnst Schwab * This call should be used by drivers that require exclusive access to the 4291cf32b71eSErnst Schwab * SPI bus. The SPI bus must be released by a spi_bus_unlock call when the 4292cf32b71eSErnst Schwab * exclusive access is over. Data transfer must be done by spi_sync_locked 4293cf32b71eSErnst Schwab * and spi_async_locked calls when the SPI bus lock is held. 4294cf32b71eSErnst Schwab * 429597d56dc6SJavier Martinez Canillas * Return: always zero. 4296cf32b71eSErnst Schwab */ 42978caab75fSGeert Uytterhoeven int spi_bus_lock(struct spi_controller *ctlr) 4298cf32b71eSErnst Schwab { 4299cf32b71eSErnst Schwab unsigned long flags; 4300cf32b71eSErnst Schwab 43018caab75fSGeert Uytterhoeven mutex_lock(&ctlr->bus_lock_mutex); 4302cf32b71eSErnst Schwab 43038caab75fSGeert Uytterhoeven spin_lock_irqsave(&ctlr->bus_lock_spinlock, flags); 43048caab75fSGeert Uytterhoeven ctlr->bus_lock_flag = 1; 43058caab75fSGeert Uytterhoeven spin_unlock_irqrestore(&ctlr->bus_lock_spinlock, flags); 4306cf32b71eSErnst Schwab 430795c8222fSDavid Jander /* Mutex remains locked until spi_bus_unlock() is called */ 4308cf32b71eSErnst Schwab 4309cf32b71eSErnst Schwab return 0; 4310cf32b71eSErnst Schwab } 4311cf32b71eSErnst Schwab EXPORT_SYMBOL_GPL(spi_bus_lock); 4312cf32b71eSErnst Schwab 4313cf32b71eSErnst Schwab /** 4314cf32b71eSErnst Schwab * spi_bus_unlock - release the lock for exclusive SPI bus usage 43158caab75fSGeert Uytterhoeven * @ctlr: SPI bus master that was locked for exclusive bus access 4316cf32b71eSErnst Schwab * Context: can sleep 4317cf32b71eSErnst Schwab * 4318cf32b71eSErnst Schwab * This call may only be used from a context that may sleep. The sleep 4319cf32b71eSErnst Schwab * is non-interruptible, and has no timeout. 4320cf32b71eSErnst Schwab * 4321cf32b71eSErnst Schwab * This call releases an SPI bus lock previously obtained by an spi_bus_lock 4322cf32b71eSErnst Schwab * call. 4323cf32b71eSErnst Schwab * 432497d56dc6SJavier Martinez Canillas * Return: always zero. 4325cf32b71eSErnst Schwab */ 43268caab75fSGeert Uytterhoeven int spi_bus_unlock(struct spi_controller *ctlr) 4327cf32b71eSErnst Schwab { 43288caab75fSGeert Uytterhoeven ctlr->bus_lock_flag = 0; 4329cf32b71eSErnst Schwab 43308caab75fSGeert Uytterhoeven mutex_unlock(&ctlr->bus_lock_mutex); 4331cf32b71eSErnst Schwab 4332cf32b71eSErnst Schwab return 0; 4333cf32b71eSErnst Schwab } 4334cf32b71eSErnst Schwab EXPORT_SYMBOL_GPL(spi_bus_unlock); 4335cf32b71eSErnst Schwab 433695c8222fSDavid Jander /* Portable code must never pass more than 32 bytes */ 4337a9948b61SDavid Brownell #define SPI_BUFSIZ max(32, SMP_CACHE_BYTES) 43388ae12a0dSDavid Brownell 43398ae12a0dSDavid Brownell static u8 *buf; 43408ae12a0dSDavid Brownell 43418ae12a0dSDavid Brownell /** 43428ae12a0dSDavid Brownell * spi_write_then_read - SPI synchronous write followed by read 43438ae12a0dSDavid Brownell * @spi: device with which data will be exchanged 43448ae12a0dSDavid Brownell * @txbuf: data to be written (need not be dma-safe) 43458ae12a0dSDavid Brownell * @n_tx: size of txbuf, in bytes 434627570497SJiri Pirko * @rxbuf: buffer into which data will be read (need not be dma-safe) 434727570497SJiri Pirko * @n_rx: size of rxbuf, in bytes 434833e34dc6SDavid Brownell * Context: can sleep 43498ae12a0dSDavid Brownell * 43508ae12a0dSDavid Brownell * This performs a half duplex MicroWire style transaction with the 43518ae12a0dSDavid Brownell * device, sending txbuf and then reading rxbuf. The return value 43528ae12a0dSDavid Brownell * is zero for success, else a negative errno status code. 4353b885244eSDavid Brownell * This call may only be used from a context that may sleep. 43548ae12a0dSDavid Brownell * 4355c373643bSMark Brown * Parameters to this routine are always copied using a small buffer. 435633e34dc6SDavid Brownell * Performance-sensitive or bulk transfer code should instead use 43570c868461SDavid Brownell * spi_{async,sync}() calls with dma-safe buffers. 435897d56dc6SJavier Martinez Canillas * 435997d56dc6SJavier Martinez Canillas * Return: zero on success, else a negative error code. 43608ae12a0dSDavid Brownell */ 43618ae12a0dSDavid Brownell int spi_write_then_read(struct spi_device *spi, 43620c4a1590SMark Brown const void *txbuf, unsigned n_tx, 43630c4a1590SMark Brown void *rxbuf, unsigned n_rx) 43648ae12a0dSDavid Brownell { 4365068f4070SDavid Brownell static DEFINE_MUTEX(lock); 43668ae12a0dSDavid Brownell 43678ae12a0dSDavid Brownell int status; 43688ae12a0dSDavid Brownell struct spi_message message; 4369bdff549eSDavid Brownell struct spi_transfer x[2]; 43708ae12a0dSDavid Brownell u8 *local_buf; 43718ae12a0dSDavid Brownell 4372350de7ceSAndy Shevchenko /* 4373350de7ceSAndy Shevchenko * Use preallocated DMA-safe buffer if we can. We can't avoid 4374b3a223eeSMark Brown * copying here, (as a pure convenience thing), but we can 4375b3a223eeSMark Brown * keep heap costs out of the hot path unless someone else is 4376b3a223eeSMark Brown * using the pre-allocated buffer or the transfer is too large. 43778ae12a0dSDavid Brownell */ 4378b3a223eeSMark Brown if ((n_tx + n_rx) > SPI_BUFSIZ || !mutex_trylock(&lock)) { 43792cd94c8aSMark Brown local_buf = kmalloc(max((unsigned)SPI_BUFSIZ, n_tx + n_rx), 43802cd94c8aSMark Brown GFP_KERNEL | GFP_DMA); 4381b3a223eeSMark Brown if (!local_buf) 4382b3a223eeSMark Brown return -ENOMEM; 4383b3a223eeSMark Brown } else { 4384b3a223eeSMark Brown local_buf = buf; 4385b3a223eeSMark Brown } 43868ae12a0dSDavid Brownell 43878275c642SVitaly Wool spi_message_init(&message); 43885fe5f05eSJingoo Han memset(x, 0, sizeof(x)); 4389bdff549eSDavid Brownell if (n_tx) { 4390bdff549eSDavid Brownell x[0].len = n_tx; 4391bdff549eSDavid Brownell spi_message_add_tail(&x[0], &message); 4392bdff549eSDavid Brownell } 4393bdff549eSDavid Brownell if (n_rx) { 4394bdff549eSDavid Brownell x[1].len = n_rx; 4395bdff549eSDavid Brownell spi_message_add_tail(&x[1], &message); 4396bdff549eSDavid Brownell } 43978275c642SVitaly Wool 43988ae12a0dSDavid Brownell memcpy(local_buf, txbuf, n_tx); 4399bdff549eSDavid Brownell x[0].tx_buf = local_buf; 4400bdff549eSDavid Brownell x[1].rx_buf = local_buf + n_tx; 44018ae12a0dSDavid Brownell 440295c8222fSDavid Jander /* Do the i/o */ 44038ae12a0dSDavid Brownell status = spi_sync(spi, &message); 44049b938b74SMarc Pignat if (status == 0) 4405bdff549eSDavid Brownell memcpy(rxbuf, x[1].rx_buf, n_rx); 44068ae12a0dSDavid Brownell 4407bdff549eSDavid Brownell if (x[0].tx_buf == buf) 4408068f4070SDavid Brownell mutex_unlock(&lock); 44098ae12a0dSDavid Brownell else 44108ae12a0dSDavid Brownell kfree(local_buf); 44118ae12a0dSDavid Brownell 44128ae12a0dSDavid Brownell return status; 44138ae12a0dSDavid Brownell } 44148ae12a0dSDavid Brownell EXPORT_SYMBOL_GPL(spi_write_then_read); 44158ae12a0dSDavid Brownell 44168ae12a0dSDavid Brownell /*-------------------------------------------------------------------------*/ 44178ae12a0dSDavid Brownell 4418da21fde0SUwe Kleine-König #if IS_ENABLED(CONFIG_OF_DYNAMIC) 441995c8222fSDavid Jander /* Must call put_device() when done with returned spi_device device */ 4420da21fde0SUwe Kleine-König static struct spi_device *of_find_spi_device_by_node(struct device_node *node) 4421ce79d54aSPantelis Antoniou { 4422cfba5de9SSuzuki K Poulose struct device *dev = bus_find_device_by_of_node(&spi_bus_type, node); 4423cfba5de9SSuzuki K Poulose 4424ce79d54aSPantelis Antoniou return dev ? to_spi_device(dev) : NULL; 4425ce79d54aSPantelis Antoniou } 4426ce79d54aSPantelis Antoniou 442795c8222fSDavid Jander /* The spi controllers are not using spi_bus, so we find it with another way */ 44288caab75fSGeert Uytterhoeven static struct spi_controller *of_find_spi_controller_by_node(struct device_node *node) 4429ce79d54aSPantelis Antoniou { 4430ce79d54aSPantelis Antoniou struct device *dev; 4431ce79d54aSPantelis Antoniou 4432cfba5de9SSuzuki K Poulose dev = class_find_device_by_of_node(&spi_master_class, node); 44336c364062SGeert Uytterhoeven if (!dev && IS_ENABLED(CONFIG_SPI_SLAVE)) 4434cfba5de9SSuzuki K Poulose dev = class_find_device_by_of_node(&spi_slave_class, node); 4435ce79d54aSPantelis Antoniou if (!dev) 4436ce79d54aSPantelis Antoniou return NULL; 4437ce79d54aSPantelis Antoniou 443895c8222fSDavid Jander /* Reference got in class_find_device */ 44398caab75fSGeert Uytterhoeven return container_of(dev, struct spi_controller, dev); 4440ce79d54aSPantelis Antoniou } 4441ce79d54aSPantelis Antoniou 4442ce79d54aSPantelis Antoniou static int of_spi_notify(struct notifier_block *nb, unsigned long action, 4443ce79d54aSPantelis Antoniou void *arg) 4444ce79d54aSPantelis Antoniou { 4445ce79d54aSPantelis Antoniou struct of_reconfig_data *rd = arg; 44468caab75fSGeert Uytterhoeven struct spi_controller *ctlr; 4447ce79d54aSPantelis Antoniou struct spi_device *spi; 4448ce79d54aSPantelis Antoniou 4449ce79d54aSPantelis Antoniou switch (of_reconfig_get_state_change(action, arg)) { 4450ce79d54aSPantelis Antoniou case OF_RECONFIG_CHANGE_ADD: 44518caab75fSGeert Uytterhoeven ctlr = of_find_spi_controller_by_node(rd->dn->parent); 44528caab75fSGeert Uytterhoeven if (ctlr == NULL) 445395c8222fSDavid Jander return NOTIFY_OK; /* Not for us */ 4454ce79d54aSPantelis Antoniou 4455bd6c1644SGeert Uytterhoeven if (of_node_test_and_set_flag(rd->dn, OF_POPULATED)) { 44568caab75fSGeert Uytterhoeven put_device(&ctlr->dev); 4457bd6c1644SGeert Uytterhoeven return NOTIFY_OK; 4458bd6c1644SGeert Uytterhoeven } 4459bd6c1644SGeert Uytterhoeven 44608caab75fSGeert Uytterhoeven spi = of_register_spi_device(ctlr, rd->dn); 44618caab75fSGeert Uytterhoeven put_device(&ctlr->dev); 4462ce79d54aSPantelis Antoniou 4463ce79d54aSPantelis Antoniou if (IS_ERR(spi)) { 446425c56c88SRob Herring pr_err("%s: failed to create for '%pOF'\n", 446525c56c88SRob Herring __func__, rd->dn); 4466e0af98a7SRalf Ramsauer of_node_clear_flag(rd->dn, OF_POPULATED); 4467ce79d54aSPantelis Antoniou return notifier_from_errno(PTR_ERR(spi)); 4468ce79d54aSPantelis Antoniou } 4469ce79d54aSPantelis Antoniou break; 4470ce79d54aSPantelis Antoniou 4471ce79d54aSPantelis Antoniou case OF_RECONFIG_CHANGE_REMOVE: 447295c8222fSDavid Jander /* Already depopulated? */ 4473bd6c1644SGeert Uytterhoeven if (!of_node_check_flag(rd->dn, OF_POPULATED)) 4474bd6c1644SGeert Uytterhoeven return NOTIFY_OK; 4475bd6c1644SGeert Uytterhoeven 447695c8222fSDavid Jander /* Find our device by node */ 4477ce79d54aSPantelis Antoniou spi = of_find_spi_device_by_node(rd->dn); 4478ce79d54aSPantelis Antoniou if (spi == NULL) 447995c8222fSDavid Jander return NOTIFY_OK; /* No? not meant for us */ 4480ce79d54aSPantelis Antoniou 448195c8222fSDavid Jander /* Unregister takes one ref away */ 4482ce79d54aSPantelis Antoniou spi_unregister_device(spi); 4483ce79d54aSPantelis Antoniou 448495c8222fSDavid Jander /* And put the reference of the find */ 4485ce79d54aSPantelis Antoniou put_device(&spi->dev); 4486ce79d54aSPantelis Antoniou break; 4487ce79d54aSPantelis Antoniou } 4488ce79d54aSPantelis Antoniou 4489ce79d54aSPantelis Antoniou return NOTIFY_OK; 4490ce79d54aSPantelis Antoniou } 4491ce79d54aSPantelis Antoniou 4492ce79d54aSPantelis Antoniou static struct notifier_block spi_of_notifier = { 4493ce79d54aSPantelis Antoniou .notifier_call = of_spi_notify, 4494ce79d54aSPantelis Antoniou }; 4495ce79d54aSPantelis Antoniou #else /* IS_ENABLED(CONFIG_OF_DYNAMIC) */ 4496ce79d54aSPantelis Antoniou extern struct notifier_block spi_of_notifier; 4497ce79d54aSPantelis Antoniou #endif /* IS_ENABLED(CONFIG_OF_DYNAMIC) */ 4498ce79d54aSPantelis Antoniou 44997f24467fSOctavian Purdila #if IS_ENABLED(CONFIG_ACPI) 45008caab75fSGeert Uytterhoeven static int spi_acpi_controller_match(struct device *dev, const void *data) 45017f24467fSOctavian Purdila { 45027f24467fSOctavian Purdila return ACPI_COMPANION(dev->parent) == data; 45037f24467fSOctavian Purdila } 45047f24467fSOctavian Purdila 45058caab75fSGeert Uytterhoeven static struct spi_controller *acpi_spi_find_controller_by_adev(struct acpi_device *adev) 45067f24467fSOctavian Purdila { 45077f24467fSOctavian Purdila struct device *dev; 45087f24467fSOctavian Purdila 45097f24467fSOctavian Purdila dev = class_find_device(&spi_master_class, NULL, adev, 45108caab75fSGeert Uytterhoeven spi_acpi_controller_match); 45116c364062SGeert Uytterhoeven if (!dev && IS_ENABLED(CONFIG_SPI_SLAVE)) 45126c364062SGeert Uytterhoeven dev = class_find_device(&spi_slave_class, NULL, adev, 45138caab75fSGeert Uytterhoeven spi_acpi_controller_match); 45147f24467fSOctavian Purdila if (!dev) 45157f24467fSOctavian Purdila return NULL; 45167f24467fSOctavian Purdila 45178caab75fSGeert Uytterhoeven return container_of(dev, struct spi_controller, dev); 45187f24467fSOctavian Purdila } 45197f24467fSOctavian Purdila 45207f24467fSOctavian Purdila static struct spi_device *acpi_spi_find_device_by_adev(struct acpi_device *adev) 45217f24467fSOctavian Purdila { 45227f24467fSOctavian Purdila struct device *dev; 45237f24467fSOctavian Purdila 452400500147SSuzuki K Poulose dev = bus_find_device_by_acpi_dev(&spi_bus_type, adev); 45255b16668eSWolfram Sang return to_spi_device(dev); 45267f24467fSOctavian Purdila } 45277f24467fSOctavian Purdila 45287f24467fSOctavian Purdila static int acpi_spi_notify(struct notifier_block *nb, unsigned long value, 45297f24467fSOctavian Purdila void *arg) 45307f24467fSOctavian Purdila { 45317f24467fSOctavian Purdila struct acpi_device *adev = arg; 45328caab75fSGeert Uytterhoeven struct spi_controller *ctlr; 45337f24467fSOctavian Purdila struct spi_device *spi; 45347f24467fSOctavian Purdila 45357f24467fSOctavian Purdila switch (value) { 45367f24467fSOctavian Purdila case ACPI_RECONFIG_DEVICE_ADD: 453762fcb99bSRafael J. Wysocki ctlr = acpi_spi_find_controller_by_adev(acpi_dev_parent(adev)); 45388caab75fSGeert Uytterhoeven if (!ctlr) 45397f24467fSOctavian Purdila break; 45407f24467fSOctavian Purdila 45418caab75fSGeert Uytterhoeven acpi_register_spi_device(ctlr, adev); 45428caab75fSGeert Uytterhoeven put_device(&ctlr->dev); 45437f24467fSOctavian Purdila break; 45447f24467fSOctavian Purdila case ACPI_RECONFIG_DEVICE_REMOVE: 45457f24467fSOctavian Purdila if (!acpi_device_enumerated(adev)) 45467f24467fSOctavian Purdila break; 45477f24467fSOctavian Purdila 45487f24467fSOctavian Purdila spi = acpi_spi_find_device_by_adev(adev); 45497f24467fSOctavian Purdila if (!spi) 45507f24467fSOctavian Purdila break; 45517f24467fSOctavian Purdila 45527f24467fSOctavian Purdila spi_unregister_device(spi); 45537f24467fSOctavian Purdila put_device(&spi->dev); 45547f24467fSOctavian Purdila break; 45557f24467fSOctavian Purdila } 45567f24467fSOctavian Purdila 45577f24467fSOctavian Purdila return NOTIFY_OK; 45587f24467fSOctavian Purdila } 45597f24467fSOctavian Purdila 45607f24467fSOctavian Purdila static struct notifier_block spi_acpi_notifier = { 45617f24467fSOctavian Purdila .notifier_call = acpi_spi_notify, 45627f24467fSOctavian Purdila }; 45637f24467fSOctavian Purdila #else 45647f24467fSOctavian Purdila extern struct notifier_block spi_acpi_notifier; 45657f24467fSOctavian Purdila #endif 45667f24467fSOctavian Purdila 45678ae12a0dSDavid Brownell static int __init spi_init(void) 45688ae12a0dSDavid Brownell { 4569b885244eSDavid Brownell int status; 45708ae12a0dSDavid Brownell 4571e94b1766SChristoph Lameter buf = kmalloc(SPI_BUFSIZ, GFP_KERNEL); 4572b885244eSDavid Brownell if (!buf) { 4573b885244eSDavid Brownell status = -ENOMEM; 4574b885244eSDavid Brownell goto err0; 45758ae12a0dSDavid Brownell } 4576b885244eSDavid Brownell 4577b885244eSDavid Brownell status = bus_register(&spi_bus_type); 4578b885244eSDavid Brownell if (status < 0) 4579b885244eSDavid Brownell goto err1; 4580b885244eSDavid Brownell 4581b885244eSDavid Brownell status = class_register(&spi_master_class); 4582b885244eSDavid Brownell if (status < 0) 4583b885244eSDavid Brownell goto err2; 4584ce79d54aSPantelis Antoniou 45856c364062SGeert Uytterhoeven if (IS_ENABLED(CONFIG_SPI_SLAVE)) { 45866c364062SGeert Uytterhoeven status = class_register(&spi_slave_class); 45876c364062SGeert Uytterhoeven if (status < 0) 45886c364062SGeert Uytterhoeven goto err3; 45896c364062SGeert Uytterhoeven } 45906c364062SGeert Uytterhoeven 45915267720eSFabio Estevam if (IS_ENABLED(CONFIG_OF_DYNAMIC)) 4592ce79d54aSPantelis Antoniou WARN_ON(of_reconfig_notifier_register(&spi_of_notifier)); 45937f24467fSOctavian Purdila if (IS_ENABLED(CONFIG_ACPI)) 45947f24467fSOctavian Purdila WARN_ON(acpi_reconfig_notifier_register(&spi_acpi_notifier)); 4595ce79d54aSPantelis Antoniou 4596b885244eSDavid Brownell return 0; 4597b885244eSDavid Brownell 45986c364062SGeert Uytterhoeven err3: 45996c364062SGeert Uytterhoeven class_unregister(&spi_master_class); 4600b885244eSDavid Brownell err2: 4601b885244eSDavid Brownell bus_unregister(&spi_bus_type); 4602b885244eSDavid Brownell err1: 4603b885244eSDavid Brownell kfree(buf); 4604b885244eSDavid Brownell buf = NULL; 4605b885244eSDavid Brownell err0: 4606b885244eSDavid Brownell return status; 4607b885244eSDavid Brownell } 4608b885244eSDavid Brownell 4609350de7ceSAndy Shevchenko /* 4610350de7ceSAndy Shevchenko * A board_info is normally registered in arch_initcall(), 4611350de7ceSAndy Shevchenko * but even essential drivers wait till later. 4612b885244eSDavid Brownell * 4613350de7ceSAndy Shevchenko * REVISIT only boardinfo really needs static linking. The rest (device and 4614350de7ceSAndy Shevchenko * driver registration) _could_ be dynamically linked (modular) ... Costs 4615b885244eSDavid Brownell * include needing to have boardinfo data structures be much more public. 46168ae12a0dSDavid Brownell */ 4617673c0c00SDavid Brownell postcore_initcall(spi_init); 4618