12874c5fdSThomas Gleixner // SPDX-License-Identifier: GPL-2.0-or-later 23558fe90SMaxime Ripard /* 33558fe90SMaxime Ripard * Copyright (C) 2012 - 2014 Allwinner Tech 43558fe90SMaxime Ripard * Pan Nan <pannan@allwinnertech.com> 53558fe90SMaxime Ripard * 63558fe90SMaxime Ripard * Copyright (C) 2014 Maxime Ripard 73558fe90SMaxime Ripard * Maxime Ripard <maxime.ripard@free-electrons.com> 83558fe90SMaxime Ripard */ 93558fe90SMaxime Ripard 109a3ef9dfSMarc Kleine-Budde #include <linux/bitfield.h> 113558fe90SMaxime Ripard #include <linux/clk.h> 123558fe90SMaxime Ripard #include <linux/delay.h> 133558fe90SMaxime Ripard #include <linux/device.h> 143558fe90SMaxime Ripard #include <linux/interrupt.h> 153558fe90SMaxime Ripard #include <linux/io.h> 163558fe90SMaxime Ripard #include <linux/module.h> 1710565dfdSMilo Kim #include <linux/of_device.h> 183558fe90SMaxime Ripard #include <linux/platform_device.h> 193558fe90SMaxime Ripard #include <linux/pm_runtime.h> 203558fe90SMaxime Ripard #include <linux/reset.h> 21345980a3SAlexander Kochetkov #include <linux/dmaengine.h> 223558fe90SMaxime Ripard 233558fe90SMaxime Ripard #include <linux/spi/spi.h> 243558fe90SMaxime Ripard 25ae0f18beSAlexander Kochetkov #define SUN6I_AUTOSUSPEND_TIMEOUT 2000 26ae0f18beSAlexander Kochetkov 273558fe90SMaxime Ripard #define SUN6I_FIFO_DEPTH 128 2810565dfdSMilo Kim #define SUN8I_FIFO_DEPTH 64 293558fe90SMaxime Ripard 303558fe90SMaxime Ripard #define SUN6I_GBL_CTL_REG 0x04 313558fe90SMaxime Ripard #define SUN6I_GBL_CTL_BUS_ENABLE BIT(0) 323558fe90SMaxime Ripard #define SUN6I_GBL_CTL_MASTER BIT(1) 333558fe90SMaxime Ripard #define SUN6I_GBL_CTL_TP BIT(7) 343558fe90SMaxime Ripard #define SUN6I_GBL_CTL_RST BIT(31) 353558fe90SMaxime Ripard 363558fe90SMaxime Ripard #define SUN6I_TFR_CTL_REG 0x08 373558fe90SMaxime Ripard #define SUN6I_TFR_CTL_CPHA BIT(0) 383558fe90SMaxime Ripard #define SUN6I_TFR_CTL_CPOL BIT(1) 393558fe90SMaxime Ripard #define SUN6I_TFR_CTL_SPOL BIT(2) 40d31ad46fSAxel Lin #define SUN6I_TFR_CTL_CS_MASK 0x30 41d31ad46fSAxel Lin #define SUN6I_TFR_CTL_CS(cs) (((cs) << 4) & SUN6I_TFR_CTL_CS_MASK) 423558fe90SMaxime Ripard #define SUN6I_TFR_CTL_CS_MANUAL BIT(6) 433558fe90SMaxime Ripard #define SUN6I_TFR_CTL_CS_LEVEL BIT(7) 443558fe90SMaxime Ripard #define SUN6I_TFR_CTL_DHB BIT(8) 458e886ac8SMaksim Kiselev #define SUN6I_TFR_CTL_SDC BIT(11) 463558fe90SMaxime Ripard #define SUN6I_TFR_CTL_FBS BIT(12) 478e886ac8SMaksim Kiselev #define SUN6I_TFR_CTL_SDM BIT(13) 483558fe90SMaxime Ripard #define SUN6I_TFR_CTL_XCH BIT(31) 493558fe90SMaxime Ripard 503558fe90SMaxime Ripard #define SUN6I_INT_CTL_REG 0x10 51913f536cSIcenowy Zheng #define SUN6I_INT_CTL_RF_RDY BIT(0) 52913f536cSIcenowy Zheng #define SUN6I_INT_CTL_TF_ERQ BIT(4) 533558fe90SMaxime Ripard #define SUN6I_INT_CTL_RF_OVF BIT(8) 543558fe90SMaxime Ripard #define SUN6I_INT_CTL_TC BIT(12) 553558fe90SMaxime Ripard 563558fe90SMaxime Ripard #define SUN6I_INT_STA_REG 0x14 573558fe90SMaxime Ripard 583558fe90SMaxime Ripard #define SUN6I_FIFO_CTL_REG 0x18 59913f536cSIcenowy Zheng #define SUN6I_FIFO_CTL_RF_RDY_TRIG_LEVEL_MASK 0xff 60345980a3SAlexander Kochetkov #define SUN6I_FIFO_CTL_RF_DRQ_EN BIT(8) 61913f536cSIcenowy Zheng #define SUN6I_FIFO_CTL_RF_RDY_TRIG_LEVEL_BITS 0 623558fe90SMaxime Ripard #define SUN6I_FIFO_CTL_RF_RST BIT(15) 63913f536cSIcenowy Zheng #define SUN6I_FIFO_CTL_TF_ERQ_TRIG_LEVEL_MASK 0xff 64913f536cSIcenowy Zheng #define SUN6I_FIFO_CTL_TF_ERQ_TRIG_LEVEL_BITS 16 65345980a3SAlexander Kochetkov #define SUN6I_FIFO_CTL_TF_DRQ_EN BIT(24) 663558fe90SMaxime Ripard #define SUN6I_FIFO_CTL_TF_RST BIT(31) 673558fe90SMaxime Ripard 683558fe90SMaxime Ripard #define SUN6I_FIFO_STA_REG 0x1c 695197da03SMarc Kleine-Budde #define SUN6I_FIFO_STA_RF_CNT_MASK GENMASK(7, 0) 709a3ef9dfSMarc Kleine-Budde #define SUN6I_FIFO_STA_TF_CNT_MASK GENMASK(23, 16) 713558fe90SMaxime Ripard 723558fe90SMaxime Ripard #define SUN6I_CLK_CTL_REG 0x24 733558fe90SMaxime Ripard #define SUN6I_CLK_CTL_CDR2_MASK 0xff 743558fe90SMaxime Ripard #define SUN6I_CLK_CTL_CDR2(div) (((div) & SUN6I_CLK_CTL_CDR2_MASK) << 0) 753558fe90SMaxime Ripard #define SUN6I_CLK_CTL_CDR1_MASK 0xf 763558fe90SMaxime Ripard #define SUN6I_CLK_CTL_CDR1(div) (((div) & SUN6I_CLK_CTL_CDR1_MASK) << 8) 773558fe90SMaxime Ripard #define SUN6I_CLK_CTL_DRS BIT(12) 783558fe90SMaxime Ripard 79913f536cSIcenowy Zheng #define SUN6I_MAX_XFER_SIZE 0xffffff 80913f536cSIcenowy Zheng 813558fe90SMaxime Ripard #define SUN6I_BURST_CNT_REG 0x30 823558fe90SMaxime Ripard 833558fe90SMaxime Ripard #define SUN6I_XMIT_CNT_REG 0x34 843558fe90SMaxime Ripard 853558fe90SMaxime Ripard #define SUN6I_BURST_CTL_CNT_REG 0x38 860605d9fbSMaksim Kiselev #define SUN6I_BURST_CTL_CNT_STC_MASK GENMASK(23, 0) 870605d9fbSMaksim Kiselev #define SUN6I_BURST_CTL_CNT_DRM BIT(28) 880605d9fbSMaksim Kiselev #define SUN6I_BURST_CTL_CNT_QUAD_EN BIT(29) 893558fe90SMaxime Ripard 903558fe90SMaxime Ripard #define SUN6I_TXDATA_REG 0x200 913558fe90SMaxime Ripard #define SUN6I_RXDATA_REG 0x300 923558fe90SMaxime Ripard 93b00c0d89SIcenowy Zheng struct sun6i_spi_cfg { 94b00c0d89SIcenowy Zheng unsigned long fifo_depth; 958e886ac8SMaksim Kiselev bool has_clk_ctl; 960605d9fbSMaksim Kiselev u32 mode_bits; 97b00c0d89SIcenowy Zheng }; 98b00c0d89SIcenowy Zheng 993558fe90SMaxime Ripard struct sun6i_spi { 1003558fe90SMaxime Ripard struct spi_master *master; 1013558fe90SMaxime Ripard void __iomem *base_addr; 102345980a3SAlexander Kochetkov dma_addr_t dma_addr_rx; 103345980a3SAlexander Kochetkov dma_addr_t dma_addr_tx; 1043558fe90SMaxime Ripard struct clk *hclk; 1053558fe90SMaxime Ripard struct clk *mclk; 1063558fe90SMaxime Ripard struct reset_control *rstc; 1073558fe90SMaxime Ripard 1083558fe90SMaxime Ripard struct completion done; 1093558fe90SMaxime Ripard 1103558fe90SMaxime Ripard const u8 *tx_buf; 1113558fe90SMaxime Ripard u8 *rx_buf; 1123558fe90SMaxime Ripard int len; 113b00c0d89SIcenowy Zheng const struct sun6i_spi_cfg *cfg; 1143558fe90SMaxime Ripard }; 1153558fe90SMaxime Ripard 1163558fe90SMaxime Ripard static inline u32 sun6i_spi_read(struct sun6i_spi *sspi, u32 reg) 1173558fe90SMaxime Ripard { 1183558fe90SMaxime Ripard return readl(sspi->base_addr + reg); 1193558fe90SMaxime Ripard } 1203558fe90SMaxime Ripard 1213558fe90SMaxime Ripard static inline void sun6i_spi_write(struct sun6i_spi *sspi, u32 reg, u32 value) 1223558fe90SMaxime Ripard { 1233558fe90SMaxime Ripard writel(value, sspi->base_addr + reg); 1243558fe90SMaxime Ripard } 1253558fe90SMaxime Ripard 1265197da03SMarc Kleine-Budde static inline u32 sun6i_spi_get_rx_fifo_count(struct sun6i_spi *sspi) 1275197da03SMarc Kleine-Budde { 1285197da03SMarc Kleine-Budde u32 reg = sun6i_spi_read(sspi, SUN6I_FIFO_STA_REG); 1295197da03SMarc Kleine-Budde 1305197da03SMarc Kleine-Budde return FIELD_GET(SUN6I_FIFO_STA_RF_CNT_MASK, reg); 1315197da03SMarc Kleine-Budde } 1325197da03SMarc Kleine-Budde 133913f536cSIcenowy Zheng static inline u32 sun6i_spi_get_tx_fifo_count(struct sun6i_spi *sspi) 134913f536cSIcenowy Zheng { 135913f536cSIcenowy Zheng u32 reg = sun6i_spi_read(sspi, SUN6I_FIFO_STA_REG); 136913f536cSIcenowy Zheng 1379a3ef9dfSMarc Kleine-Budde return FIELD_GET(SUN6I_FIFO_STA_TF_CNT_MASK, reg); 138913f536cSIcenowy Zheng } 139913f536cSIcenowy Zheng 140913f536cSIcenowy Zheng static inline void sun6i_spi_disable_interrupt(struct sun6i_spi *sspi, u32 mask) 141913f536cSIcenowy Zheng { 142913f536cSIcenowy Zheng u32 reg = sun6i_spi_read(sspi, SUN6I_INT_CTL_REG); 143913f536cSIcenowy Zheng 144913f536cSIcenowy Zheng reg &= ~mask; 145913f536cSIcenowy Zheng sun6i_spi_write(sspi, SUN6I_INT_CTL_REG, reg); 146913f536cSIcenowy Zheng } 147913f536cSIcenowy Zheng 14892a52ee8SMarc Kleine-Budde static inline void sun6i_spi_drain_fifo(struct sun6i_spi *sspi) 1493558fe90SMaxime Ripard { 15092a52ee8SMarc Kleine-Budde u32 len; 1513558fe90SMaxime Ripard u8 byte; 1523558fe90SMaxime Ripard 1533558fe90SMaxime Ripard /* See how much data is available */ 15492a52ee8SMarc Kleine-Budde len = sun6i_spi_get_rx_fifo_count(sspi); 1553558fe90SMaxime Ripard 1563558fe90SMaxime Ripard while (len--) { 1573558fe90SMaxime Ripard byte = readb(sspi->base_addr + SUN6I_RXDATA_REG); 1583558fe90SMaxime Ripard if (sspi->rx_buf) 1593558fe90SMaxime Ripard *sspi->rx_buf++ = byte; 1603558fe90SMaxime Ripard } 1613558fe90SMaxime Ripard } 1623558fe90SMaxime Ripard 163e4e8ca3fSMarc Kleine-Budde static inline void sun6i_spi_fill_fifo(struct sun6i_spi *sspi) 1643558fe90SMaxime Ripard { 165913f536cSIcenowy Zheng u32 cnt; 166e4e8ca3fSMarc Kleine-Budde int len; 1673558fe90SMaxime Ripard u8 byte; 1683558fe90SMaxime Ripard 169913f536cSIcenowy Zheng /* See how much data we can fit */ 170b00c0d89SIcenowy Zheng cnt = sspi->cfg->fifo_depth - sun6i_spi_get_tx_fifo_count(sspi); 171913f536cSIcenowy Zheng 172e4e8ca3fSMarc Kleine-Budde len = min((int)cnt, sspi->len); 1733558fe90SMaxime Ripard 1743558fe90SMaxime Ripard while (len--) { 1753558fe90SMaxime Ripard byte = sspi->tx_buf ? *sspi->tx_buf++ : 0; 1763558fe90SMaxime Ripard writeb(byte, sspi->base_addr + SUN6I_TXDATA_REG); 1773558fe90SMaxime Ripard sspi->len--; 1783558fe90SMaxime Ripard } 1793558fe90SMaxime Ripard } 1803558fe90SMaxime Ripard 1813558fe90SMaxime Ripard static void sun6i_spi_set_cs(struct spi_device *spi, bool enable) 1823558fe90SMaxime Ripard { 1833558fe90SMaxime Ripard struct sun6i_spi *sspi = spi_master_get_devdata(spi->master); 1843558fe90SMaxime Ripard u32 reg; 1853558fe90SMaxime Ripard 1863558fe90SMaxime Ripard reg = sun6i_spi_read(sspi, SUN6I_TFR_CTL_REG); 1873558fe90SMaxime Ripard reg &= ~SUN6I_TFR_CTL_CS_MASK; 1889e264f3fSAmit Kumar Mahapatra via Alsa-devel reg |= SUN6I_TFR_CTL_CS(spi_get_chipselect(spi, 0)); 1893558fe90SMaxime Ripard 1903558fe90SMaxime Ripard if (enable) 1913558fe90SMaxime Ripard reg |= SUN6I_TFR_CTL_CS_LEVEL; 1923558fe90SMaxime Ripard else 1933558fe90SMaxime Ripard reg &= ~SUN6I_TFR_CTL_CS_LEVEL; 1943558fe90SMaxime Ripard 1953558fe90SMaxime Ripard sun6i_spi_write(sspi, SUN6I_TFR_CTL_REG, reg); 1963558fe90SMaxime Ripard } 1973558fe90SMaxime Ripard 198794912cfSMichal Suchanek static size_t sun6i_spi_max_transfer_size(struct spi_device *spi) 199794912cfSMichal Suchanek { 2003288d5cbSIcenowy Zheng return SUN6I_MAX_XFER_SIZE - 1; 201794912cfSMichal Suchanek } 2023558fe90SMaxime Ripard 203345980a3SAlexander Kochetkov static int sun6i_spi_prepare_dma(struct sun6i_spi *sspi, 204345980a3SAlexander Kochetkov struct spi_transfer *tfr) 205345980a3SAlexander Kochetkov { 206345980a3SAlexander Kochetkov struct dma_async_tx_descriptor *rxdesc, *txdesc; 207345980a3SAlexander Kochetkov struct spi_master *master = sspi->master; 208345980a3SAlexander Kochetkov 209345980a3SAlexander Kochetkov rxdesc = NULL; 210345980a3SAlexander Kochetkov if (tfr->rx_buf) { 211345980a3SAlexander Kochetkov struct dma_slave_config rxconf = { 212345980a3SAlexander Kochetkov .direction = DMA_DEV_TO_MEM, 213345980a3SAlexander Kochetkov .src_addr = sspi->dma_addr_rx, 214345980a3SAlexander Kochetkov .src_addr_width = DMA_SLAVE_BUSWIDTH_4_BYTES, 215345980a3SAlexander Kochetkov .src_maxburst = 8, 216345980a3SAlexander Kochetkov }; 217345980a3SAlexander Kochetkov 218345980a3SAlexander Kochetkov dmaengine_slave_config(master->dma_rx, &rxconf); 219345980a3SAlexander Kochetkov 220345980a3SAlexander Kochetkov rxdesc = dmaengine_prep_slave_sg(master->dma_rx, 221345980a3SAlexander Kochetkov tfr->rx_sg.sgl, 222345980a3SAlexander Kochetkov tfr->rx_sg.nents, 223345980a3SAlexander Kochetkov DMA_DEV_TO_MEM, 224345980a3SAlexander Kochetkov DMA_PREP_INTERRUPT); 225345980a3SAlexander Kochetkov if (!rxdesc) 226345980a3SAlexander Kochetkov return -EINVAL; 227345980a3SAlexander Kochetkov } 228345980a3SAlexander Kochetkov 229345980a3SAlexander Kochetkov txdesc = NULL; 230345980a3SAlexander Kochetkov if (tfr->tx_buf) { 231345980a3SAlexander Kochetkov struct dma_slave_config txconf = { 232345980a3SAlexander Kochetkov .direction = DMA_MEM_TO_DEV, 233345980a3SAlexander Kochetkov .dst_addr = sspi->dma_addr_tx, 234345980a3SAlexander Kochetkov .dst_addr_width = DMA_SLAVE_BUSWIDTH_4_BYTES, 235345980a3SAlexander Kochetkov .dst_maxburst = 8, 236345980a3SAlexander Kochetkov }; 237345980a3SAlexander Kochetkov 238345980a3SAlexander Kochetkov dmaengine_slave_config(master->dma_tx, &txconf); 239345980a3SAlexander Kochetkov 240345980a3SAlexander Kochetkov txdesc = dmaengine_prep_slave_sg(master->dma_tx, 241345980a3SAlexander Kochetkov tfr->tx_sg.sgl, 242345980a3SAlexander Kochetkov tfr->tx_sg.nents, 243345980a3SAlexander Kochetkov DMA_MEM_TO_DEV, 244345980a3SAlexander Kochetkov DMA_PREP_INTERRUPT); 245345980a3SAlexander Kochetkov if (!txdesc) { 246345980a3SAlexander Kochetkov if (rxdesc) 247345980a3SAlexander Kochetkov dmaengine_terminate_sync(master->dma_rx); 248345980a3SAlexander Kochetkov return -EINVAL; 249345980a3SAlexander Kochetkov } 250345980a3SAlexander Kochetkov } 251345980a3SAlexander Kochetkov 252345980a3SAlexander Kochetkov if (tfr->rx_buf) { 253345980a3SAlexander Kochetkov dmaengine_submit(rxdesc); 254345980a3SAlexander Kochetkov dma_async_issue_pending(master->dma_rx); 255345980a3SAlexander Kochetkov } 256345980a3SAlexander Kochetkov 257345980a3SAlexander Kochetkov if (tfr->tx_buf) { 258345980a3SAlexander Kochetkov dmaengine_submit(txdesc); 259345980a3SAlexander Kochetkov dma_async_issue_pending(master->dma_tx); 260345980a3SAlexander Kochetkov } 261345980a3SAlexander Kochetkov 262345980a3SAlexander Kochetkov return 0; 263345980a3SAlexander Kochetkov } 264345980a3SAlexander Kochetkov 2653558fe90SMaxime Ripard static int sun6i_spi_transfer_one(struct spi_master *master, 2663558fe90SMaxime Ripard struct spi_device *spi, 2673558fe90SMaxime Ripard struct spi_transfer *tfr) 2683558fe90SMaxime Ripard { 2693558fe90SMaxime Ripard struct sun6i_spi *sspi = spi_master_get_devdata(master); 2708e886ac8SMaksim Kiselev unsigned int div, div_cdr1, div_cdr2, timeout; 271719bd654SMichal Suchanek unsigned int start, end, tx_time; 272913f536cSIcenowy Zheng unsigned int trig_level; 2730605d9fbSMaksim Kiselev unsigned int tx_len = 0, rx_len = 0, nbits = 0; 274345980a3SAlexander Kochetkov bool use_dma; 2753558fe90SMaxime Ripard int ret = 0; 2763558fe90SMaxime Ripard u32 reg; 2773558fe90SMaxime Ripard 278913f536cSIcenowy Zheng if (tfr->len > SUN6I_MAX_XFER_SIZE) 2793558fe90SMaxime Ripard return -EINVAL; 2803558fe90SMaxime Ripard 2813558fe90SMaxime Ripard reinit_completion(&sspi->done); 2823558fe90SMaxime Ripard sspi->tx_buf = tfr->tx_buf; 2833558fe90SMaxime Ripard sspi->rx_buf = tfr->rx_buf; 2843558fe90SMaxime Ripard sspi->len = tfr->len; 285345980a3SAlexander Kochetkov use_dma = master->can_dma ? master->can_dma(master, spi, tfr) : false; 2863558fe90SMaxime Ripard 2873558fe90SMaxime Ripard /* Clear pending interrupts */ 2883558fe90SMaxime Ripard sun6i_spi_write(sspi, SUN6I_INT_STA_REG, ~0); 2893558fe90SMaxime Ripard 2903558fe90SMaxime Ripard /* Reset FIFO */ 2913558fe90SMaxime Ripard sun6i_spi_write(sspi, SUN6I_FIFO_CTL_REG, 2923558fe90SMaxime Ripard SUN6I_FIFO_CTL_RF_RST | SUN6I_FIFO_CTL_TF_RST); 2933558fe90SMaxime Ripard 294345980a3SAlexander Kochetkov reg = 0; 295345980a3SAlexander Kochetkov 296345980a3SAlexander Kochetkov if (!use_dma) { 2973558fe90SMaxime Ripard /* 298913f536cSIcenowy Zheng * Setup FIFO interrupt trigger level 299345980a3SAlexander Kochetkov * Here we choose 3/4 of the full fifo depth, as it's 300345980a3SAlexander Kochetkov * the hardcoded value used in old generation of Allwinner 301345980a3SAlexander Kochetkov * SPI controller. (See spi-sun4i.c) 302913f536cSIcenowy Zheng */ 303b00c0d89SIcenowy Zheng trig_level = sspi->cfg->fifo_depth / 4 * 3; 304345980a3SAlexander Kochetkov } else { 305345980a3SAlexander Kochetkov /* 306345980a3SAlexander Kochetkov * Setup FIFO DMA request trigger level 307345980a3SAlexander Kochetkov * We choose 1/2 of the full fifo depth, that value will 308345980a3SAlexander Kochetkov * be used as DMA burst length. 309345980a3SAlexander Kochetkov */ 310b00c0d89SIcenowy Zheng trig_level = sspi->cfg->fifo_depth / 2; 311345980a3SAlexander Kochetkov 312345980a3SAlexander Kochetkov if (tfr->tx_buf) 313345980a3SAlexander Kochetkov reg |= SUN6I_FIFO_CTL_TF_DRQ_EN; 314345980a3SAlexander Kochetkov if (tfr->rx_buf) 315345980a3SAlexander Kochetkov reg |= SUN6I_FIFO_CTL_RF_DRQ_EN; 316345980a3SAlexander Kochetkov } 317345980a3SAlexander Kochetkov 318345980a3SAlexander Kochetkov reg |= (trig_level << SUN6I_FIFO_CTL_RF_RDY_TRIG_LEVEL_BITS) | 319345980a3SAlexander Kochetkov (trig_level << SUN6I_FIFO_CTL_TF_ERQ_TRIG_LEVEL_BITS); 320345980a3SAlexander Kochetkov 321345980a3SAlexander Kochetkov sun6i_spi_write(sspi, SUN6I_FIFO_CTL_REG, reg); 322913f536cSIcenowy Zheng 323913f536cSIcenowy Zheng /* 3243558fe90SMaxime Ripard * Setup the transfer control register: Chip Select, 3253558fe90SMaxime Ripard * polarities, etc. 3263558fe90SMaxime Ripard */ 3273558fe90SMaxime Ripard reg = sun6i_spi_read(sspi, SUN6I_TFR_CTL_REG); 3283558fe90SMaxime Ripard 3293558fe90SMaxime Ripard if (spi->mode & SPI_CPOL) 3303558fe90SMaxime Ripard reg |= SUN6I_TFR_CTL_CPOL; 3313558fe90SMaxime Ripard else 3323558fe90SMaxime Ripard reg &= ~SUN6I_TFR_CTL_CPOL; 3333558fe90SMaxime Ripard 3343558fe90SMaxime Ripard if (spi->mode & SPI_CPHA) 3353558fe90SMaxime Ripard reg |= SUN6I_TFR_CTL_CPHA; 3363558fe90SMaxime Ripard else 3373558fe90SMaxime Ripard reg &= ~SUN6I_TFR_CTL_CPHA; 3383558fe90SMaxime Ripard 3393558fe90SMaxime Ripard if (spi->mode & SPI_LSB_FIRST) 3403558fe90SMaxime Ripard reg |= SUN6I_TFR_CTL_FBS; 3413558fe90SMaxime Ripard else 3423558fe90SMaxime Ripard reg &= ~SUN6I_TFR_CTL_FBS; 3433558fe90SMaxime Ripard 3443558fe90SMaxime Ripard /* 3453558fe90SMaxime Ripard * If it's a TX only transfer, we don't want to fill the RX 3463558fe90SMaxime Ripard * FIFO with bogus data 3473558fe90SMaxime Ripard */ 3487716fa80SMarc Kleine-Budde if (sspi->rx_buf) { 3493558fe90SMaxime Ripard reg &= ~SUN6I_TFR_CTL_DHB; 3507716fa80SMarc Kleine-Budde rx_len = tfr->len; 3517716fa80SMarc Kleine-Budde } else { 3523558fe90SMaxime Ripard reg |= SUN6I_TFR_CTL_DHB; 3537716fa80SMarc Kleine-Budde } 3543558fe90SMaxime Ripard 3553558fe90SMaxime Ripard /* We want to control the chip select manually */ 3563558fe90SMaxime Ripard reg |= SUN6I_TFR_CTL_CS_MANUAL; 3573558fe90SMaxime Ripard 3583558fe90SMaxime Ripard sun6i_spi_write(sspi, SUN6I_TFR_CTL_REG, reg); 3593558fe90SMaxime Ripard 3608e886ac8SMaksim Kiselev if (sspi->cfg->has_clk_ctl) { 3618e886ac8SMaksim Kiselev unsigned int mclk_rate = clk_get_rate(sspi->mclk); 3628e886ac8SMaksim Kiselev 3633558fe90SMaxime Ripard /* Ensure that we have a parent clock fast enough */ 36447284e3eSMarcus Weseloh if (mclk_rate < (2 * tfr->speed_hz)) { 36547284e3eSMarcus Weseloh clk_set_rate(sspi->mclk, 2 * tfr->speed_hz); 3663558fe90SMaxime Ripard mclk_rate = clk_get_rate(sspi->mclk); 3673558fe90SMaxime Ripard } 3683558fe90SMaxime Ripard 3693558fe90SMaxime Ripard /* 3703558fe90SMaxime Ripard * Setup clock divider. 3713558fe90SMaxime Ripard * 3723558fe90SMaxime Ripard * We have two choices there. Either we can use the clock 3733558fe90SMaxime Ripard * divide rate 1, which is calculated thanks to this formula: 3743558fe90SMaxime Ripard * SPI_CLK = MOD_CLK / (2 ^ cdr) 3753558fe90SMaxime Ripard * Or we can use CDR2, which is calculated with the formula: 3763558fe90SMaxime Ripard * SPI_CLK = MOD_CLK / (2 * (cdr + 1)) 3773558fe90SMaxime Ripard * Wether we use the former or the latter is set through the 3783558fe90SMaxime Ripard * DRS bit. 3793558fe90SMaxime Ripard * 3803558fe90SMaxime Ripard * First try CDR2, and if we can't reach the expected 3813558fe90SMaxime Ripard * frequency, fall back to CDR1. 3823558fe90SMaxime Ripard */ 383ed7815dbSMarc Kleine-Budde div_cdr1 = DIV_ROUND_UP(mclk_rate, tfr->speed_hz); 384ed7815dbSMarc Kleine-Budde div_cdr2 = DIV_ROUND_UP(div_cdr1, 2); 385ed7815dbSMarc Kleine-Budde if (div_cdr2 <= (SUN6I_CLK_CTL_CDR2_MASK + 1)) { 386ed7815dbSMarc Kleine-Budde reg = SUN6I_CLK_CTL_CDR2(div_cdr2 - 1) | SUN6I_CLK_CTL_DRS; 3870bc7b8a2SMarc Kleine-Budde tfr->effective_speed_hz = mclk_rate / (2 * div_cdr2); 3883558fe90SMaxime Ripard } else { 389ed7815dbSMarc Kleine-Budde div = min(SUN6I_CLK_CTL_CDR1_MASK, order_base_2(div_cdr1)); 3903558fe90SMaxime Ripard reg = SUN6I_CLK_CTL_CDR1(div); 3910bc7b8a2SMarc Kleine-Budde tfr->effective_speed_hz = mclk_rate / (1 << div); 3923558fe90SMaxime Ripard } 3933558fe90SMaxime Ripard 3943558fe90SMaxime Ripard sun6i_spi_write(sspi, SUN6I_CLK_CTL_REG, reg); 3958e886ac8SMaksim Kiselev } else { 3968e886ac8SMaksim Kiselev clk_set_rate(sspi->mclk, tfr->speed_hz); 3978e886ac8SMaksim Kiselev tfr->effective_speed_hz = clk_get_rate(sspi->mclk); 3988e886ac8SMaksim Kiselev 3998e886ac8SMaksim Kiselev /* 4008e886ac8SMaksim Kiselev * Configure work mode. 4018e886ac8SMaksim Kiselev * 4028e886ac8SMaksim Kiselev * There are three work modes depending on the controller clock 4038e886ac8SMaksim Kiselev * frequency: 4048e886ac8SMaksim Kiselev * - normal sample mode : CLK <= 24MHz SDM=1 SDC=0 4058e886ac8SMaksim Kiselev * - delay half-cycle sample mode : CLK <= 40MHz SDM=0 SDC=0 4068e886ac8SMaksim Kiselev * - delay one-cycle sample mode : CLK >= 80MHz SDM=0 SDC=1 4078e886ac8SMaksim Kiselev */ 4088e886ac8SMaksim Kiselev reg = sun6i_spi_read(sspi, SUN6I_TFR_CTL_REG); 4098e886ac8SMaksim Kiselev reg &= ~(SUN6I_TFR_CTL_SDM | SUN6I_TFR_CTL_SDC); 4108e886ac8SMaksim Kiselev 4118e886ac8SMaksim Kiselev if (tfr->effective_speed_hz <= 24000000) 4128e886ac8SMaksim Kiselev reg |= SUN6I_TFR_CTL_SDM; 4138e886ac8SMaksim Kiselev else if (tfr->effective_speed_hz >= 80000000) 4148e886ac8SMaksim Kiselev reg |= SUN6I_TFR_CTL_SDC; 4158e886ac8SMaksim Kiselev 4168e886ac8SMaksim Kiselev sun6i_spi_write(sspi, SUN6I_TFR_CTL_REG, reg); 4178e886ac8SMaksim Kiselev } 4188e886ac8SMaksim Kiselev 4190d7993b2SMirko Vogt /* Finally enable the bus - doing so before might raise SCK to HIGH */ 4200d7993b2SMirko Vogt reg = sun6i_spi_read(sspi, SUN6I_GBL_CTL_REG); 4210d7993b2SMirko Vogt reg |= SUN6I_GBL_CTL_BUS_ENABLE; 4220d7993b2SMirko Vogt sun6i_spi_write(sspi, SUN6I_GBL_CTL_REG, reg); 4233558fe90SMaxime Ripard 4243558fe90SMaxime Ripard /* Setup the transfer now... */ 4250605d9fbSMaksim Kiselev if (sspi->tx_buf) { 4263558fe90SMaxime Ripard tx_len = tfr->len; 4270605d9fbSMaksim Kiselev nbits = tfr->tx_nbits; 4280605d9fbSMaksim Kiselev } else if (tfr->rx_buf) { 4290605d9fbSMaksim Kiselev nbits = tfr->rx_nbits; 4300605d9fbSMaksim Kiselev } 4310605d9fbSMaksim Kiselev 4320605d9fbSMaksim Kiselev switch (nbits) { 4330605d9fbSMaksim Kiselev case SPI_NBITS_DUAL: 4340605d9fbSMaksim Kiselev reg = SUN6I_BURST_CTL_CNT_DRM; 4350605d9fbSMaksim Kiselev break; 4360605d9fbSMaksim Kiselev case SPI_NBITS_QUAD: 4370605d9fbSMaksim Kiselev reg = SUN6I_BURST_CTL_CNT_QUAD_EN; 4380605d9fbSMaksim Kiselev break; 4390605d9fbSMaksim Kiselev case SPI_NBITS_SINGLE: 4400605d9fbSMaksim Kiselev default: 4410605d9fbSMaksim Kiselev reg = FIELD_PREP(SUN6I_BURST_CTL_CNT_STC_MASK, tx_len); 4420605d9fbSMaksim Kiselev } 4433558fe90SMaxime Ripard 4443558fe90SMaxime Ripard /* Setup the counters */ 4450605d9fbSMaksim Kiselev sun6i_spi_write(sspi, SUN6I_BURST_CTL_CNT_REG, reg); 4462130be57SMarc Kleine-Budde sun6i_spi_write(sspi, SUN6I_BURST_CNT_REG, tfr->len); 4472130be57SMarc Kleine-Budde sun6i_spi_write(sspi, SUN6I_XMIT_CNT_REG, tx_len); 4483558fe90SMaxime Ripard 449345980a3SAlexander Kochetkov if (!use_dma) { 4503558fe90SMaxime Ripard /* Fill the TX FIFO */ 451e4e8ca3fSMarc Kleine-Budde sun6i_spi_fill_fifo(sspi); 452345980a3SAlexander Kochetkov } else { 453345980a3SAlexander Kochetkov ret = sun6i_spi_prepare_dma(sspi, tfr); 454345980a3SAlexander Kochetkov if (ret) { 455345980a3SAlexander Kochetkov dev_warn(&master->dev, 456345980a3SAlexander Kochetkov "%s: prepare DMA failed, ret=%d", 457345980a3SAlexander Kochetkov dev_name(&spi->dev), ret); 458345980a3SAlexander Kochetkov return ret; 459345980a3SAlexander Kochetkov } 460345980a3SAlexander Kochetkov } 4613558fe90SMaxime Ripard 4623558fe90SMaxime Ripard /* Enable the interrupts */ 4637716fa80SMarc Kleine-Budde reg = SUN6I_INT_CTL_TC; 4644e7390e9SMarc Kleine-Budde 465345980a3SAlexander Kochetkov if (!use_dma) { 466b00c0d89SIcenowy Zheng if (rx_len > sspi->cfg->fifo_depth) 4677716fa80SMarc Kleine-Budde reg |= SUN6I_INT_CTL_RF_RDY; 468b00c0d89SIcenowy Zheng if (tx_len > sspi->cfg->fifo_depth) 4694e7390e9SMarc Kleine-Budde reg |= SUN6I_INT_CTL_TF_ERQ; 470345980a3SAlexander Kochetkov } 4714e7390e9SMarc Kleine-Budde 4724e7390e9SMarc Kleine-Budde sun6i_spi_write(sspi, SUN6I_INT_CTL_REG, reg); 4733558fe90SMaxime Ripard 4743558fe90SMaxime Ripard /* Start the transfer */ 4753558fe90SMaxime Ripard reg = sun6i_spi_read(sspi, SUN6I_TFR_CTL_REG); 4763558fe90SMaxime Ripard sun6i_spi_write(sspi, SUN6I_TFR_CTL_REG, reg | SUN6I_TFR_CTL_XCH); 4773558fe90SMaxime Ripard 4786eef8955SMiquel Raynal tx_time = spi_controller_xfer_timeout(master, tfr); 479719bd654SMichal Suchanek start = jiffies; 4803558fe90SMaxime Ripard timeout = wait_for_completion_timeout(&sspi->done, 481719bd654SMichal Suchanek msecs_to_jiffies(tx_time)); 482719bd654SMichal Suchanek end = jiffies; 4833558fe90SMaxime Ripard if (!timeout) { 484719bd654SMichal Suchanek dev_warn(&master->dev, 485719bd654SMichal Suchanek "%s: timeout transferring %u bytes@%iHz for %i(%i)ms", 486719bd654SMichal Suchanek dev_name(&spi->dev), tfr->len, tfr->speed_hz, 487719bd654SMichal Suchanek jiffies_to_msecs(end - start), tx_time); 4883558fe90SMaxime Ripard ret = -ETIMEDOUT; 4893558fe90SMaxime Ripard } 4903558fe90SMaxime Ripard 4913558fe90SMaxime Ripard sun6i_spi_write(sspi, SUN6I_INT_CTL_REG, 0); 4923558fe90SMaxime Ripard 493345980a3SAlexander Kochetkov if (ret && use_dma) { 494345980a3SAlexander Kochetkov dmaengine_terminate_sync(master->dma_rx); 495345980a3SAlexander Kochetkov dmaengine_terminate_sync(master->dma_tx); 496345980a3SAlexander Kochetkov } 497345980a3SAlexander Kochetkov 4983558fe90SMaxime Ripard return ret; 4993558fe90SMaxime Ripard } 5003558fe90SMaxime Ripard 5013558fe90SMaxime Ripard static irqreturn_t sun6i_spi_handler(int irq, void *dev_id) 5023558fe90SMaxime Ripard { 5033558fe90SMaxime Ripard struct sun6i_spi *sspi = dev_id; 5043558fe90SMaxime Ripard u32 status = sun6i_spi_read(sspi, SUN6I_INT_STA_REG); 5053558fe90SMaxime Ripard 5063558fe90SMaxime Ripard /* Transfer complete */ 5073558fe90SMaxime Ripard if (status & SUN6I_INT_CTL_TC) { 5083558fe90SMaxime Ripard sun6i_spi_write(sspi, SUN6I_INT_STA_REG, SUN6I_INT_CTL_TC); 50992a52ee8SMarc Kleine-Budde sun6i_spi_drain_fifo(sspi); 5103558fe90SMaxime Ripard complete(&sspi->done); 5113558fe90SMaxime Ripard return IRQ_HANDLED; 5123558fe90SMaxime Ripard } 5133558fe90SMaxime Ripard 514913f536cSIcenowy Zheng /* Receive FIFO 3/4 full */ 515913f536cSIcenowy Zheng if (status & SUN6I_INT_CTL_RF_RDY) { 51692a52ee8SMarc Kleine-Budde sun6i_spi_drain_fifo(sspi); 517913f536cSIcenowy Zheng /* Only clear the interrupt _after_ draining the FIFO */ 518913f536cSIcenowy Zheng sun6i_spi_write(sspi, SUN6I_INT_STA_REG, SUN6I_INT_CTL_RF_RDY); 519913f536cSIcenowy Zheng return IRQ_HANDLED; 520913f536cSIcenowy Zheng } 521913f536cSIcenowy Zheng 522913f536cSIcenowy Zheng /* Transmit FIFO 3/4 empty */ 523913f536cSIcenowy Zheng if (status & SUN6I_INT_CTL_TF_ERQ) { 524e4e8ca3fSMarc Kleine-Budde sun6i_spi_fill_fifo(sspi); 525913f536cSIcenowy Zheng 526913f536cSIcenowy Zheng if (!sspi->len) 527913f536cSIcenowy Zheng /* nothing left to transmit */ 528913f536cSIcenowy Zheng sun6i_spi_disable_interrupt(sspi, SUN6I_INT_CTL_TF_ERQ); 529913f536cSIcenowy Zheng 530913f536cSIcenowy Zheng /* Only clear the interrupt _after_ re-seeding the FIFO */ 531913f536cSIcenowy Zheng sun6i_spi_write(sspi, SUN6I_INT_STA_REG, SUN6I_INT_CTL_TF_ERQ); 532913f536cSIcenowy Zheng 533913f536cSIcenowy Zheng return IRQ_HANDLED; 534913f536cSIcenowy Zheng } 535913f536cSIcenowy Zheng 5363558fe90SMaxime Ripard return IRQ_NONE; 5373558fe90SMaxime Ripard } 5383558fe90SMaxime Ripard 5393558fe90SMaxime Ripard static int sun6i_spi_runtime_resume(struct device *dev) 5403558fe90SMaxime Ripard { 5413558fe90SMaxime Ripard struct spi_master *master = dev_get_drvdata(dev); 5423558fe90SMaxime Ripard struct sun6i_spi *sspi = spi_master_get_devdata(master); 5433558fe90SMaxime Ripard int ret; 5443558fe90SMaxime Ripard 5453558fe90SMaxime Ripard ret = clk_prepare_enable(sspi->hclk); 5463558fe90SMaxime Ripard if (ret) { 5473558fe90SMaxime Ripard dev_err(dev, "Couldn't enable AHB clock\n"); 5483558fe90SMaxime Ripard goto out; 5493558fe90SMaxime Ripard } 5503558fe90SMaxime Ripard 5513558fe90SMaxime Ripard ret = clk_prepare_enable(sspi->mclk); 5523558fe90SMaxime Ripard if (ret) { 5533558fe90SMaxime Ripard dev_err(dev, "Couldn't enable module clock\n"); 5543558fe90SMaxime Ripard goto err; 5553558fe90SMaxime Ripard } 5563558fe90SMaxime Ripard 5573558fe90SMaxime Ripard ret = reset_control_deassert(sspi->rstc); 5583558fe90SMaxime Ripard if (ret) { 5593558fe90SMaxime Ripard dev_err(dev, "Couldn't deassert the device from reset\n"); 5603558fe90SMaxime Ripard goto err2; 5613558fe90SMaxime Ripard } 5623558fe90SMaxime Ripard 5633558fe90SMaxime Ripard sun6i_spi_write(sspi, SUN6I_GBL_CTL_REG, 5640d7993b2SMirko Vogt SUN6I_GBL_CTL_MASTER | SUN6I_GBL_CTL_TP); 5653558fe90SMaxime Ripard 5663558fe90SMaxime Ripard return 0; 5673558fe90SMaxime Ripard 5683558fe90SMaxime Ripard err2: 5693558fe90SMaxime Ripard clk_disable_unprepare(sspi->mclk); 5703558fe90SMaxime Ripard err: 5713558fe90SMaxime Ripard clk_disable_unprepare(sspi->hclk); 5723558fe90SMaxime Ripard out: 5733558fe90SMaxime Ripard return ret; 5743558fe90SMaxime Ripard } 5753558fe90SMaxime Ripard 5763558fe90SMaxime Ripard static int sun6i_spi_runtime_suspend(struct device *dev) 5773558fe90SMaxime Ripard { 5783558fe90SMaxime Ripard struct spi_master *master = dev_get_drvdata(dev); 5793558fe90SMaxime Ripard struct sun6i_spi *sspi = spi_master_get_devdata(master); 5803558fe90SMaxime Ripard 5813558fe90SMaxime Ripard reset_control_assert(sspi->rstc); 5823558fe90SMaxime Ripard clk_disable_unprepare(sspi->mclk); 5833558fe90SMaxime Ripard clk_disable_unprepare(sspi->hclk); 5843558fe90SMaxime Ripard 5853558fe90SMaxime Ripard return 0; 5863558fe90SMaxime Ripard } 5873558fe90SMaxime Ripard 588345980a3SAlexander Kochetkov static bool sun6i_spi_can_dma(struct spi_master *master, 589345980a3SAlexander Kochetkov struct spi_device *spi, 590345980a3SAlexander Kochetkov struct spi_transfer *xfer) 591345980a3SAlexander Kochetkov { 592345980a3SAlexander Kochetkov struct sun6i_spi *sspi = spi_master_get_devdata(master); 593345980a3SAlexander Kochetkov 594345980a3SAlexander Kochetkov /* 595345980a3SAlexander Kochetkov * If the number of spi words to transfer is less or equal than 596345980a3SAlexander Kochetkov * the fifo length we can just fill the fifo and wait for a single 597345980a3SAlexander Kochetkov * irq, so don't bother setting up dma 598345980a3SAlexander Kochetkov */ 599b00c0d89SIcenowy Zheng return xfer->len > sspi->cfg->fifo_depth; 600345980a3SAlexander Kochetkov } 601345980a3SAlexander Kochetkov 6023558fe90SMaxime Ripard static int sun6i_spi_probe(struct platform_device *pdev) 6033558fe90SMaxime Ripard { 6043558fe90SMaxime Ripard struct spi_master *master; 6053558fe90SMaxime Ripard struct sun6i_spi *sspi; 606345980a3SAlexander Kochetkov struct resource *mem; 6073558fe90SMaxime Ripard int ret = 0, irq; 6083558fe90SMaxime Ripard 6093558fe90SMaxime Ripard master = spi_alloc_master(&pdev->dev, sizeof(struct sun6i_spi)); 6103558fe90SMaxime Ripard if (!master) { 6113558fe90SMaxime Ripard dev_err(&pdev->dev, "Unable to allocate SPI Master\n"); 6123558fe90SMaxime Ripard return -ENOMEM; 6133558fe90SMaxime Ripard } 6143558fe90SMaxime Ripard 6153558fe90SMaxime Ripard platform_set_drvdata(pdev, master); 6163558fe90SMaxime Ripard sspi = spi_master_get_devdata(master); 6173558fe90SMaxime Ripard 618345980a3SAlexander Kochetkov sspi->base_addr = devm_platform_get_and_ioremap_resource(pdev, 0, &mem); 6193558fe90SMaxime Ripard if (IS_ERR(sspi->base_addr)) { 6203558fe90SMaxime Ripard ret = PTR_ERR(sspi->base_addr); 6213558fe90SMaxime Ripard goto err_free_master; 6223558fe90SMaxime Ripard } 6233558fe90SMaxime Ripard 6243558fe90SMaxime Ripard irq = platform_get_irq(pdev, 0); 6253558fe90SMaxime Ripard if (irq < 0) { 6263558fe90SMaxime Ripard ret = -ENXIO; 6273558fe90SMaxime Ripard goto err_free_master; 6283558fe90SMaxime Ripard } 6293558fe90SMaxime Ripard 6303558fe90SMaxime Ripard ret = devm_request_irq(&pdev->dev, irq, sun6i_spi_handler, 6313558fe90SMaxime Ripard 0, "sun6i-spi", sspi); 6323558fe90SMaxime Ripard if (ret) { 6333558fe90SMaxime Ripard dev_err(&pdev->dev, "Cannot request IRQ\n"); 6343558fe90SMaxime Ripard goto err_free_master; 6353558fe90SMaxime Ripard } 6363558fe90SMaxime Ripard 6373558fe90SMaxime Ripard sspi->master = master; 638b00c0d89SIcenowy Zheng sspi->cfg = of_device_get_match_data(&pdev->dev); 63910565dfdSMilo Kim 6400b06d8cfSMichal Suchanek master->max_speed_hz = 100 * 1000 * 1000; 6410b06d8cfSMichal Suchanek master->min_speed_hz = 3 * 1000; 64274750e06SAlistair Francis master->use_gpio_descriptors = true; 6433558fe90SMaxime Ripard master->set_cs = sun6i_spi_set_cs; 6443558fe90SMaxime Ripard master->transfer_one = sun6i_spi_transfer_one; 6453558fe90SMaxime Ripard master->num_chipselect = 4; 6460605d9fbSMaksim Kiselev master->mode_bits = SPI_CPOL | SPI_CPHA | SPI_CS_HIGH | SPI_LSB_FIRST | 6470605d9fbSMaksim Kiselev sspi->cfg->mode_bits; 648743a46b8SAxel Lin master->bits_per_word_mask = SPI_BPW_MASK(8); 6493558fe90SMaxime Ripard master->dev.of_node = pdev->dev.of_node; 6503558fe90SMaxime Ripard master->auto_runtime_pm = true; 651794912cfSMichal Suchanek master->max_transfer_size = sun6i_spi_max_transfer_size; 6523558fe90SMaxime Ripard 6533558fe90SMaxime Ripard sspi->hclk = devm_clk_get(&pdev->dev, "ahb"); 6543558fe90SMaxime Ripard if (IS_ERR(sspi->hclk)) { 6553558fe90SMaxime Ripard dev_err(&pdev->dev, "Unable to acquire AHB clock\n"); 6563558fe90SMaxime Ripard ret = PTR_ERR(sspi->hclk); 6573558fe90SMaxime Ripard goto err_free_master; 6583558fe90SMaxime Ripard } 6593558fe90SMaxime Ripard 6603558fe90SMaxime Ripard sspi->mclk = devm_clk_get(&pdev->dev, "mod"); 6613558fe90SMaxime Ripard if (IS_ERR(sspi->mclk)) { 6623558fe90SMaxime Ripard dev_err(&pdev->dev, "Unable to acquire module clock\n"); 6633558fe90SMaxime Ripard ret = PTR_ERR(sspi->mclk); 6643558fe90SMaxime Ripard goto err_free_master; 6653558fe90SMaxime Ripard } 6663558fe90SMaxime Ripard 6673558fe90SMaxime Ripard init_completion(&sspi->done); 6683558fe90SMaxime Ripard 66936bc7491SPhilipp Zabel sspi->rstc = devm_reset_control_get_exclusive(&pdev->dev, NULL); 6703558fe90SMaxime Ripard if (IS_ERR(sspi->rstc)) { 6713558fe90SMaxime Ripard dev_err(&pdev->dev, "Couldn't get reset controller\n"); 6723558fe90SMaxime Ripard ret = PTR_ERR(sspi->rstc); 6733558fe90SMaxime Ripard goto err_free_master; 6743558fe90SMaxime Ripard } 6753558fe90SMaxime Ripard 676345980a3SAlexander Kochetkov master->dma_tx = dma_request_chan(&pdev->dev, "tx"); 677345980a3SAlexander Kochetkov if (IS_ERR(master->dma_tx)) { 678345980a3SAlexander Kochetkov /* Check tx to see if we need defer probing driver */ 679345980a3SAlexander Kochetkov if (PTR_ERR(master->dma_tx) == -EPROBE_DEFER) { 680345980a3SAlexander Kochetkov ret = -EPROBE_DEFER; 681345980a3SAlexander Kochetkov goto err_free_master; 682345980a3SAlexander Kochetkov } 683345980a3SAlexander Kochetkov dev_warn(&pdev->dev, "Failed to request TX DMA channel\n"); 684345980a3SAlexander Kochetkov master->dma_tx = NULL; 685345980a3SAlexander Kochetkov } 686345980a3SAlexander Kochetkov 687345980a3SAlexander Kochetkov master->dma_rx = dma_request_chan(&pdev->dev, "rx"); 688345980a3SAlexander Kochetkov if (IS_ERR(master->dma_rx)) { 689345980a3SAlexander Kochetkov if (PTR_ERR(master->dma_rx) == -EPROBE_DEFER) { 690345980a3SAlexander Kochetkov ret = -EPROBE_DEFER; 691345980a3SAlexander Kochetkov goto err_free_dma_tx; 692345980a3SAlexander Kochetkov } 693345980a3SAlexander Kochetkov dev_warn(&pdev->dev, "Failed to request RX DMA channel\n"); 694345980a3SAlexander Kochetkov master->dma_rx = NULL; 695345980a3SAlexander Kochetkov } 696345980a3SAlexander Kochetkov 697345980a3SAlexander Kochetkov if (master->dma_tx && master->dma_rx) { 698345980a3SAlexander Kochetkov sspi->dma_addr_tx = mem->start + SUN6I_TXDATA_REG; 699345980a3SAlexander Kochetkov sspi->dma_addr_rx = mem->start + SUN6I_RXDATA_REG; 700345980a3SAlexander Kochetkov master->can_dma = sun6i_spi_can_dma; 701345980a3SAlexander Kochetkov } 702345980a3SAlexander Kochetkov 7033558fe90SMaxime Ripard /* 7043558fe90SMaxime Ripard * This wake-up/shutdown pattern is to be able to have the 7053558fe90SMaxime Ripard * device woken up, even if runtime_pm is disabled 7063558fe90SMaxime Ripard */ 7073558fe90SMaxime Ripard ret = sun6i_spi_runtime_resume(&pdev->dev); 7083558fe90SMaxime Ripard if (ret) { 7093558fe90SMaxime Ripard dev_err(&pdev->dev, "Couldn't resume the device\n"); 710345980a3SAlexander Kochetkov goto err_free_dma_rx; 7113558fe90SMaxime Ripard } 7123558fe90SMaxime Ripard 713ae0f18beSAlexander Kochetkov pm_runtime_set_autosuspend_delay(&pdev->dev, SUN6I_AUTOSUSPEND_TIMEOUT); 714ae0f18beSAlexander Kochetkov pm_runtime_use_autosuspend(&pdev->dev); 7153558fe90SMaxime Ripard pm_runtime_set_active(&pdev->dev); 7163558fe90SMaxime Ripard pm_runtime_enable(&pdev->dev); 7173558fe90SMaxime Ripard 7183558fe90SMaxime Ripard ret = devm_spi_register_master(&pdev->dev, master); 7193558fe90SMaxime Ripard if (ret) { 7203558fe90SMaxime Ripard dev_err(&pdev->dev, "cannot register SPI master\n"); 7213558fe90SMaxime Ripard goto err_pm_disable; 7223558fe90SMaxime Ripard } 7233558fe90SMaxime Ripard 7243558fe90SMaxime Ripard return 0; 7253558fe90SMaxime Ripard 7263558fe90SMaxime Ripard err_pm_disable: 7273558fe90SMaxime Ripard pm_runtime_disable(&pdev->dev); 7283558fe90SMaxime Ripard sun6i_spi_runtime_suspend(&pdev->dev); 729345980a3SAlexander Kochetkov err_free_dma_rx: 730345980a3SAlexander Kochetkov if (master->dma_rx) 731345980a3SAlexander Kochetkov dma_release_channel(master->dma_rx); 732345980a3SAlexander Kochetkov err_free_dma_tx: 733345980a3SAlexander Kochetkov if (master->dma_tx) 734345980a3SAlexander Kochetkov dma_release_channel(master->dma_tx); 7353558fe90SMaxime Ripard err_free_master: 7363558fe90SMaxime Ripard spi_master_put(master); 7373558fe90SMaxime Ripard return ret; 7383558fe90SMaxime Ripard } 7393558fe90SMaxime Ripard 740edf69ab9SUwe Kleine-König static void sun6i_spi_remove(struct platform_device *pdev) 7413558fe90SMaxime Ripard { 742345980a3SAlexander Kochetkov struct spi_master *master = platform_get_drvdata(pdev); 743345980a3SAlexander Kochetkov 7442d9bbd02STobias Jordan pm_runtime_force_suspend(&pdev->dev); 7453558fe90SMaxime Ripard 746345980a3SAlexander Kochetkov if (master->dma_tx) 747345980a3SAlexander Kochetkov dma_release_channel(master->dma_tx); 748345980a3SAlexander Kochetkov if (master->dma_rx) 749345980a3SAlexander Kochetkov dma_release_channel(master->dma_rx); 7503558fe90SMaxime Ripard } 7513558fe90SMaxime Ripard 752b00c0d89SIcenowy Zheng static const struct sun6i_spi_cfg sun6i_a31_spi_cfg = { 753b00c0d89SIcenowy Zheng .fifo_depth = SUN6I_FIFO_DEPTH, 7548e886ac8SMaksim Kiselev .has_clk_ctl = true, 755b00c0d89SIcenowy Zheng }; 756b00c0d89SIcenowy Zheng 757b00c0d89SIcenowy Zheng static const struct sun6i_spi_cfg sun8i_h3_spi_cfg = { 758b00c0d89SIcenowy Zheng .fifo_depth = SUN8I_FIFO_DEPTH, 7598e886ac8SMaksim Kiselev .has_clk_ctl = true, 760b00c0d89SIcenowy Zheng }; 761b00c0d89SIcenowy Zheng 762046484cbSMaksim Kiselev static const struct sun6i_spi_cfg sun50i_r329_spi_cfg = { 763046484cbSMaksim Kiselev .fifo_depth = SUN8I_FIFO_DEPTH, 764*25453d79SMaksim Kiselev .mode_bits = SPI_RX_DUAL | SPI_TX_DUAL | SPI_RX_QUAD | SPI_TX_QUAD, 765046484cbSMaksim Kiselev }; 766046484cbSMaksim Kiselev 7673558fe90SMaxime Ripard static const struct of_device_id sun6i_spi_match[] = { 768b00c0d89SIcenowy Zheng { .compatible = "allwinner,sun6i-a31-spi", .data = &sun6i_a31_spi_cfg }, 769b00c0d89SIcenowy Zheng { .compatible = "allwinner,sun8i-h3-spi", .data = &sun8i_h3_spi_cfg }, 770046484cbSMaksim Kiselev { 771046484cbSMaksim Kiselev .compatible = "allwinner,sun50i-r329-spi", 772046484cbSMaksim Kiselev .data = &sun50i_r329_spi_cfg 773046484cbSMaksim Kiselev }, 7743558fe90SMaxime Ripard {} 7753558fe90SMaxime Ripard }; 7763558fe90SMaxime Ripard MODULE_DEVICE_TABLE(of, sun6i_spi_match); 7773558fe90SMaxime Ripard 7783558fe90SMaxime Ripard static const struct dev_pm_ops sun6i_spi_pm_ops = { 7793558fe90SMaxime Ripard .runtime_resume = sun6i_spi_runtime_resume, 7803558fe90SMaxime Ripard .runtime_suspend = sun6i_spi_runtime_suspend, 7813558fe90SMaxime Ripard }; 7823558fe90SMaxime Ripard 7833558fe90SMaxime Ripard static struct platform_driver sun6i_spi_driver = { 7843558fe90SMaxime Ripard .probe = sun6i_spi_probe, 785edf69ab9SUwe Kleine-König .remove_new = sun6i_spi_remove, 7863558fe90SMaxime Ripard .driver = { 7873558fe90SMaxime Ripard .name = "sun6i-spi", 7883558fe90SMaxime Ripard .of_match_table = sun6i_spi_match, 7893558fe90SMaxime Ripard .pm = &sun6i_spi_pm_ops, 7903558fe90SMaxime Ripard }, 7913558fe90SMaxime Ripard }; 7923558fe90SMaxime Ripard module_platform_driver(sun6i_spi_driver); 7933558fe90SMaxime Ripard 7943558fe90SMaxime Ripard MODULE_AUTHOR("Pan Nan <pannan@allwinnertech.com>"); 7953558fe90SMaxime Ripard MODULE_AUTHOR("Maxime Ripard <maxime.ripard@free-electrons.com>"); 7963558fe90SMaxime Ripard MODULE_DESCRIPTION("Allwinner A31 SPI controller driver"); 7973558fe90SMaxime Ripard MODULE_LICENSE("GPL"); 798