cachepc-linux

Fork of AMDESE/linux with modifications for CachePC side-channel attack
git clone https://git.sinitax.com/sinitax/cachepc-linux
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mtk_scp.c (25233B)


      1// SPDX-License-Identifier: GPL-2.0
      2//
      3// Copyright (c) 2019 MediaTek Inc.
      4
      5#include <asm/barrier.h>
      6#include <linux/clk.h>
      7#include <linux/dma-mapping.h>
      8#include <linux/err.h>
      9#include <linux/interrupt.h>
     10#include <linux/kernel.h>
     11#include <linux/module.h>
     12#include <linux/of_address.h>
     13#include <linux/of_platform.h>
     14#include <linux/of_reserved_mem.h>
     15#include <linux/platform_device.h>
     16#include <linux/remoteproc.h>
     17#include <linux/remoteproc/mtk_scp.h>
     18#include <linux/rpmsg/mtk_rpmsg.h>
     19
     20#include "mtk_common.h"
     21#include "remoteproc_internal.h"
     22
     23#define MAX_CODE_SIZE 0x500000
     24#define SECTION_NAME_IPI_BUFFER ".ipi_buffer"
     25
     26/**
     27 * scp_get() - get a reference to SCP.
     28 *
     29 * @pdev:	the platform device of the module requesting SCP platform
     30 *		device for using SCP API.
     31 *
     32 * Return: Return NULL if failed.  otherwise reference to SCP.
     33 **/
     34struct mtk_scp *scp_get(struct platform_device *pdev)
     35{
     36	struct device *dev = &pdev->dev;
     37	struct device_node *scp_node;
     38	struct platform_device *scp_pdev;
     39
     40	scp_node = of_parse_phandle(dev->of_node, "mediatek,scp", 0);
     41	if (!scp_node) {
     42		dev_err(dev, "can't get SCP node\n");
     43		return NULL;
     44	}
     45
     46	scp_pdev = of_find_device_by_node(scp_node);
     47	of_node_put(scp_node);
     48
     49	if (WARN_ON(!scp_pdev)) {
     50		dev_err(dev, "SCP pdev failed\n");
     51		return NULL;
     52	}
     53
     54	return platform_get_drvdata(scp_pdev);
     55}
     56EXPORT_SYMBOL_GPL(scp_get);
     57
     58/**
     59 * scp_put() - "free" the SCP
     60 *
     61 * @scp:	mtk_scp structure from scp_get().
     62 **/
     63void scp_put(struct mtk_scp *scp)
     64{
     65	put_device(scp->dev);
     66}
     67EXPORT_SYMBOL_GPL(scp_put);
     68
     69static void scp_wdt_handler(struct mtk_scp *scp, u32 scp_to_host)
     70{
     71	dev_err(scp->dev, "SCP watchdog timeout! 0x%x", scp_to_host);
     72	rproc_report_crash(scp->rproc, RPROC_WATCHDOG);
     73}
     74
     75static void scp_init_ipi_handler(void *data, unsigned int len, void *priv)
     76{
     77	struct mtk_scp *scp = (struct mtk_scp *)priv;
     78	struct scp_run *run = (struct scp_run *)data;
     79
     80	scp->run.signaled = run->signaled;
     81	strscpy(scp->run.fw_ver, run->fw_ver, SCP_FW_VER_LEN);
     82	scp->run.dec_capability = run->dec_capability;
     83	scp->run.enc_capability = run->enc_capability;
     84	wake_up_interruptible(&scp->run.wq);
     85}
     86
     87static void scp_ipi_handler(struct mtk_scp *scp)
     88{
     89	struct mtk_share_obj __iomem *rcv_obj = scp->recv_buf;
     90	struct scp_ipi_desc *ipi_desc = scp->ipi_desc;
     91	u8 tmp_data[SCP_SHARE_BUFFER_SIZE];
     92	scp_ipi_handler_t handler;
     93	u32 id = readl(&rcv_obj->id);
     94	u32 len = readl(&rcv_obj->len);
     95
     96	if (len > SCP_SHARE_BUFFER_SIZE) {
     97		dev_err(scp->dev, "ipi message too long (len %d, max %d)", len,
     98			SCP_SHARE_BUFFER_SIZE);
     99		return;
    100	}
    101	if (id >= SCP_IPI_MAX) {
    102		dev_err(scp->dev, "No such ipi id = %d\n", id);
    103		return;
    104	}
    105
    106	scp_ipi_lock(scp, id);
    107	handler = ipi_desc[id].handler;
    108	if (!handler) {
    109		dev_err(scp->dev, "No such ipi id = %d\n", id);
    110		scp_ipi_unlock(scp, id);
    111		return;
    112	}
    113
    114	memcpy_fromio(tmp_data, &rcv_obj->share_buf, len);
    115	handler(tmp_data, len, ipi_desc[id].priv);
    116	scp_ipi_unlock(scp, id);
    117
    118	scp->ipi_id_ack[id] = true;
    119	wake_up(&scp->ack_wq);
    120}
    121
    122static int scp_elf_read_ipi_buf_addr(struct mtk_scp *scp,
    123				     const struct firmware *fw,
    124				     size_t *offset);
    125
    126static int scp_ipi_init(struct mtk_scp *scp, const struct firmware *fw)
    127{
    128	int ret;
    129	size_t offset;
    130
    131	/* read the ipi buf addr from FW itself first */
    132	ret = scp_elf_read_ipi_buf_addr(scp, fw, &offset);
    133	if (ret) {
    134		/* use default ipi buf addr if the FW doesn't have it */
    135		offset = scp->data->ipi_buf_offset;
    136		if (!offset)
    137			return ret;
    138	}
    139	dev_info(scp->dev, "IPI buf addr %#010zx\n", offset);
    140
    141	scp->recv_buf = (struct mtk_share_obj __iomem *)
    142			(scp->sram_base + offset);
    143	scp->send_buf = (struct mtk_share_obj __iomem *)
    144			(scp->sram_base + offset + sizeof(*scp->recv_buf));
    145	memset_io(scp->recv_buf, 0, sizeof(*scp->recv_buf));
    146	memset_io(scp->send_buf, 0, sizeof(*scp->send_buf));
    147
    148	return 0;
    149}
    150
    151static void mt8183_scp_reset_assert(struct mtk_scp *scp)
    152{
    153	u32 val;
    154
    155	val = readl(scp->reg_base + MT8183_SW_RSTN);
    156	val &= ~MT8183_SW_RSTN_BIT;
    157	writel(val, scp->reg_base + MT8183_SW_RSTN);
    158}
    159
    160static void mt8183_scp_reset_deassert(struct mtk_scp *scp)
    161{
    162	u32 val;
    163
    164	val = readl(scp->reg_base + MT8183_SW_RSTN);
    165	val |= MT8183_SW_RSTN_BIT;
    166	writel(val, scp->reg_base + MT8183_SW_RSTN);
    167}
    168
    169static void mt8192_scp_reset_assert(struct mtk_scp *scp)
    170{
    171	writel(1, scp->reg_base + MT8192_CORE0_SW_RSTN_SET);
    172}
    173
    174static void mt8192_scp_reset_deassert(struct mtk_scp *scp)
    175{
    176	writel(1, scp->reg_base + MT8192_CORE0_SW_RSTN_CLR);
    177}
    178
    179static void mt8183_scp_irq_handler(struct mtk_scp *scp)
    180{
    181	u32 scp_to_host;
    182
    183	scp_to_host = readl(scp->reg_base + MT8183_SCP_TO_HOST);
    184	if (scp_to_host & MT8183_SCP_IPC_INT_BIT)
    185		scp_ipi_handler(scp);
    186	else
    187		scp_wdt_handler(scp, scp_to_host);
    188
    189	/* SCP won't send another interrupt until we set SCP_TO_HOST to 0. */
    190	writel(MT8183_SCP_IPC_INT_BIT | MT8183_SCP_WDT_INT_BIT,
    191	       scp->reg_base + MT8183_SCP_TO_HOST);
    192}
    193
    194static void mt8192_scp_irq_handler(struct mtk_scp *scp)
    195{
    196	u32 scp_to_host;
    197
    198	scp_to_host = readl(scp->reg_base + MT8192_SCP2APMCU_IPC_SET);
    199
    200	if (scp_to_host & MT8192_SCP_IPC_INT_BIT) {
    201		scp_ipi_handler(scp);
    202
    203		/*
    204		 * SCP won't send another interrupt until we clear
    205		 * MT8192_SCP2APMCU_IPC.
    206		 */
    207		writel(MT8192_SCP_IPC_INT_BIT,
    208		       scp->reg_base + MT8192_SCP2APMCU_IPC_CLR);
    209	} else {
    210		scp_wdt_handler(scp, scp_to_host);
    211		writel(1, scp->reg_base + MT8192_CORE0_WDT_IRQ);
    212	}
    213}
    214
    215static irqreturn_t scp_irq_handler(int irq, void *priv)
    216{
    217	struct mtk_scp *scp = priv;
    218	int ret;
    219
    220	ret = clk_prepare_enable(scp->clk);
    221	if (ret) {
    222		dev_err(scp->dev, "failed to enable clocks\n");
    223		return IRQ_NONE;
    224	}
    225
    226	scp->data->scp_irq_handler(scp);
    227
    228	clk_disable_unprepare(scp->clk);
    229
    230	return IRQ_HANDLED;
    231}
    232
    233static int scp_elf_load_segments(struct rproc *rproc, const struct firmware *fw)
    234{
    235	struct device *dev = &rproc->dev;
    236	struct elf32_hdr *ehdr;
    237	struct elf32_phdr *phdr;
    238	int i, ret = 0;
    239	const u8 *elf_data = fw->data;
    240
    241	ehdr = (struct elf32_hdr *)elf_data;
    242	phdr = (struct elf32_phdr *)(elf_data + ehdr->e_phoff);
    243
    244	/* go through the available ELF segments */
    245	for (i = 0; i < ehdr->e_phnum; i++, phdr++) {
    246		u32 da = phdr->p_paddr;
    247		u32 memsz = phdr->p_memsz;
    248		u32 filesz = phdr->p_filesz;
    249		u32 offset = phdr->p_offset;
    250		void __iomem *ptr;
    251
    252		dev_dbg(dev, "phdr: type %d da 0x%x memsz 0x%x filesz 0x%x\n",
    253			phdr->p_type, da, memsz, filesz);
    254
    255		if (phdr->p_type != PT_LOAD)
    256			continue;
    257		if (!filesz)
    258			continue;
    259
    260		if (filesz > memsz) {
    261			dev_err(dev, "bad phdr filesz 0x%x memsz 0x%x\n",
    262				filesz, memsz);
    263			ret = -EINVAL;
    264			break;
    265		}
    266
    267		if (offset + filesz > fw->size) {
    268			dev_err(dev, "truncated fw: need 0x%x avail 0x%zx\n",
    269				offset + filesz, fw->size);
    270			ret = -EINVAL;
    271			break;
    272		}
    273
    274		/* grab the kernel address for this device address */
    275		ptr = (void __iomem *)rproc_da_to_va(rproc, da, memsz, NULL);
    276		if (!ptr) {
    277			dev_err(dev, "bad phdr da 0x%x mem 0x%x\n", da, memsz);
    278			ret = -EINVAL;
    279			break;
    280		}
    281
    282		/* put the segment where the remote processor expects it */
    283		scp_memcpy_aligned(ptr, elf_data + phdr->p_offset, filesz);
    284	}
    285
    286	return ret;
    287}
    288
    289static int scp_elf_read_ipi_buf_addr(struct mtk_scp *scp,
    290				     const struct firmware *fw,
    291				     size_t *offset)
    292{
    293	struct elf32_hdr *ehdr;
    294	struct elf32_shdr *shdr, *shdr_strtab;
    295	int i;
    296	const u8 *elf_data = fw->data;
    297	const char *strtab;
    298
    299	ehdr = (struct elf32_hdr *)elf_data;
    300	shdr = (struct elf32_shdr *)(elf_data + ehdr->e_shoff);
    301	shdr_strtab = shdr + ehdr->e_shstrndx;
    302	strtab = (const char *)(elf_data + shdr_strtab->sh_offset);
    303
    304	for (i = 0; i < ehdr->e_shnum; i++, shdr++) {
    305		if (strcmp(strtab + shdr->sh_name,
    306			   SECTION_NAME_IPI_BUFFER) == 0) {
    307			*offset = shdr->sh_addr;
    308			return 0;
    309		}
    310	}
    311
    312	return -ENOENT;
    313}
    314
    315static int mt8183_scp_clk_get(struct mtk_scp *scp)
    316{
    317	struct device *dev = scp->dev;
    318	int ret = 0;
    319
    320	scp->clk = devm_clk_get(dev, "main");
    321	if (IS_ERR(scp->clk)) {
    322		dev_err(dev, "Failed to get clock\n");
    323		ret = PTR_ERR(scp->clk);
    324	}
    325
    326	return ret;
    327}
    328
    329static int mt8192_scp_clk_get(struct mtk_scp *scp)
    330{
    331	return mt8183_scp_clk_get(scp);
    332}
    333
    334static int mt8195_scp_clk_get(struct mtk_scp *scp)
    335{
    336	scp->clk = NULL;
    337
    338	return 0;
    339}
    340
    341static int mt8183_scp_before_load(struct mtk_scp *scp)
    342{
    343	/* Clear SCP to host interrupt */
    344	writel(MT8183_SCP_IPC_INT_BIT, scp->reg_base + MT8183_SCP_TO_HOST);
    345
    346	/* Reset clocks before loading FW */
    347	writel(0x0, scp->reg_base + MT8183_SCP_CLK_SW_SEL);
    348	writel(0x0, scp->reg_base + MT8183_SCP_CLK_DIV_SEL);
    349
    350	/* Initialize TCM before loading FW. */
    351	writel(0x0, scp->reg_base + MT8183_SCP_L1_SRAM_PD);
    352	writel(0x0, scp->reg_base + MT8183_SCP_TCM_TAIL_SRAM_PD);
    353
    354	/* Turn on the power of SCP's SRAM before using it. */
    355	writel(0x0, scp->reg_base + MT8183_SCP_SRAM_PDN);
    356
    357	/*
    358	 * Set I-cache and D-cache size before loading SCP FW.
    359	 * SCP SRAM logical address may change when cache size setting differs.
    360	 */
    361	writel(MT8183_SCP_CACHE_CON_WAYEN | MT8183_SCP_CACHESIZE_8KB,
    362	       scp->reg_base + MT8183_SCP_CACHE_CON);
    363	writel(MT8183_SCP_CACHESIZE_8KB, scp->reg_base + MT8183_SCP_DCACHE_CON);
    364
    365	return 0;
    366}
    367
    368static void scp_sram_power_on(void __iomem *addr, u32 reserved_mask)
    369{
    370	int i;
    371
    372	for (i = 31; i >= 0; i--)
    373		writel(GENMASK(i, 0) & ~reserved_mask, addr);
    374	writel(0, addr);
    375}
    376
    377static void scp_sram_power_off(void __iomem *addr, u32 reserved_mask)
    378{
    379	int i;
    380
    381	writel(0, addr);
    382	for (i = 0; i < 32; i++)
    383		writel(GENMASK(i, 0) & ~reserved_mask, addr);
    384}
    385
    386static int mt8186_scp_before_load(struct mtk_scp *scp)
    387{
    388	/* Clear SCP to host interrupt */
    389	writel(MT8183_SCP_IPC_INT_BIT, scp->reg_base + MT8183_SCP_TO_HOST);
    390
    391	/* Reset clocks before loading FW */
    392	writel(0x0, scp->reg_base + MT8183_SCP_CLK_SW_SEL);
    393	writel(0x0, scp->reg_base + MT8183_SCP_CLK_DIV_SEL);
    394
    395	/* Turn on the power of SCP's SRAM before using it. Enable 1 block per time*/
    396	scp_sram_power_on(scp->reg_base + MT8183_SCP_SRAM_PDN, 0);
    397
    398	/* Initialize TCM before loading FW. */
    399	writel(0x0, scp->reg_base + MT8183_SCP_L1_SRAM_PD);
    400	writel(0x0, scp->reg_base + MT8183_SCP_TCM_TAIL_SRAM_PD);
    401	writel(0x0, scp->reg_base + MT8186_SCP_L1_SRAM_PD_P1);
    402	writel(0x0, scp->reg_base + MT8186_SCP_L1_SRAM_PD_p2);
    403
    404	return 0;
    405}
    406
    407static int mt8192_scp_before_load(struct mtk_scp *scp)
    408{
    409	/* clear SPM interrupt, SCP2SPM_IPC_CLR */
    410	writel(0xff, scp->reg_base + MT8192_SCP2SPM_IPC_CLR);
    411
    412	writel(1, scp->reg_base + MT8192_CORE0_SW_RSTN_SET);
    413
    414	/* enable SRAM clock */
    415	scp_sram_power_on(scp->reg_base + MT8192_L2TCM_SRAM_PD_0, 0);
    416	scp_sram_power_on(scp->reg_base + MT8192_L2TCM_SRAM_PD_1, 0);
    417	scp_sram_power_on(scp->reg_base + MT8192_L2TCM_SRAM_PD_2, 0);
    418	scp_sram_power_on(scp->reg_base + MT8192_L1TCM_SRAM_PDN, 0);
    419	scp_sram_power_on(scp->reg_base + MT8192_CPU0_SRAM_PD, 0);
    420
    421	/* enable MPU for all memory regions */
    422	writel(0xff, scp->reg_base + MT8192_CORE0_MEM_ATT_PREDEF);
    423
    424	return 0;
    425}
    426
    427static int mt8195_scp_before_load(struct mtk_scp *scp)
    428{
    429	/* clear SPM interrupt, SCP2SPM_IPC_CLR */
    430	writel(0xff, scp->reg_base + MT8192_SCP2SPM_IPC_CLR);
    431
    432	writel(1, scp->reg_base + MT8192_CORE0_SW_RSTN_SET);
    433
    434	/* enable SRAM clock */
    435	scp_sram_power_on(scp->reg_base + MT8192_L2TCM_SRAM_PD_0, 0);
    436	scp_sram_power_on(scp->reg_base + MT8192_L2TCM_SRAM_PD_1, 0);
    437	scp_sram_power_on(scp->reg_base + MT8192_L2TCM_SRAM_PD_2, 0);
    438	scp_sram_power_on(scp->reg_base + MT8192_L1TCM_SRAM_PDN,
    439			  MT8195_L1TCM_SRAM_PDN_RESERVED_RSI_BITS);
    440	scp_sram_power_on(scp->reg_base + MT8192_CPU0_SRAM_PD, 0);
    441
    442	/* enable MPU for all memory regions */
    443	writel(0xff, scp->reg_base + MT8192_CORE0_MEM_ATT_PREDEF);
    444
    445	return 0;
    446}
    447
    448static int scp_load(struct rproc *rproc, const struct firmware *fw)
    449{
    450	struct mtk_scp *scp = rproc->priv;
    451	struct device *dev = scp->dev;
    452	int ret;
    453
    454	ret = clk_prepare_enable(scp->clk);
    455	if (ret) {
    456		dev_err(dev, "failed to enable clocks\n");
    457		return ret;
    458	}
    459
    460	/* Hold SCP in reset while loading FW. */
    461	scp->data->scp_reset_assert(scp);
    462
    463	ret = scp->data->scp_before_load(scp);
    464	if (ret < 0)
    465		goto leave;
    466
    467	ret = scp_elf_load_segments(rproc, fw);
    468leave:
    469	clk_disable_unprepare(scp->clk);
    470
    471	return ret;
    472}
    473
    474static int scp_parse_fw(struct rproc *rproc, const struct firmware *fw)
    475{
    476	struct mtk_scp *scp = rproc->priv;
    477	struct device *dev = scp->dev;
    478	int ret;
    479
    480	ret = clk_prepare_enable(scp->clk);
    481	if (ret) {
    482		dev_err(dev, "failed to enable clocks\n");
    483		return ret;
    484	}
    485
    486	ret = scp_ipi_init(scp, fw);
    487	clk_disable_unprepare(scp->clk);
    488	return ret;
    489}
    490
    491static int scp_start(struct rproc *rproc)
    492{
    493	struct mtk_scp *scp = (struct mtk_scp *)rproc->priv;
    494	struct device *dev = scp->dev;
    495	struct scp_run *run = &scp->run;
    496	int ret;
    497
    498	ret = clk_prepare_enable(scp->clk);
    499	if (ret) {
    500		dev_err(dev, "failed to enable clocks\n");
    501		return ret;
    502	}
    503
    504	run->signaled = false;
    505
    506	scp->data->scp_reset_deassert(scp);
    507
    508	ret = wait_event_interruptible_timeout(
    509					run->wq,
    510					run->signaled,
    511					msecs_to_jiffies(2000));
    512
    513	if (ret == 0) {
    514		dev_err(dev, "wait SCP initialization timeout!\n");
    515		ret = -ETIME;
    516		goto stop;
    517	}
    518	if (ret == -ERESTARTSYS) {
    519		dev_err(dev, "wait SCP interrupted by a signal!\n");
    520		goto stop;
    521	}
    522
    523	clk_disable_unprepare(scp->clk);
    524	dev_info(dev, "SCP is ready. FW version %s\n", run->fw_ver);
    525
    526	return 0;
    527
    528stop:
    529	scp->data->scp_reset_assert(scp);
    530	clk_disable_unprepare(scp->clk);
    531	return ret;
    532}
    533
    534static void *mt8183_scp_da_to_va(struct mtk_scp *scp, u64 da, size_t len)
    535{
    536	int offset;
    537
    538	if (da < scp->sram_size) {
    539		offset = da;
    540		if (offset >= 0 && (offset + len) <= scp->sram_size)
    541			return (void __force *)scp->sram_base + offset;
    542	} else if (scp->dram_size) {
    543		offset = da - scp->dma_addr;
    544		if (offset >= 0 && (offset + len) <= scp->dram_size)
    545			return scp->cpu_addr + offset;
    546	}
    547
    548	return NULL;
    549}
    550
    551static void *mt8192_scp_da_to_va(struct mtk_scp *scp, u64 da, size_t len)
    552{
    553	int offset;
    554
    555	if (da >= scp->sram_phys &&
    556	    (da + len) <= scp->sram_phys + scp->sram_size) {
    557		offset = da - scp->sram_phys;
    558		return (void __force *)scp->sram_base + offset;
    559	}
    560
    561	/* optional memory region */
    562	if (scp->l1tcm_size &&
    563	    da >= scp->l1tcm_phys &&
    564	    (da + len) <= scp->l1tcm_phys + scp->l1tcm_size) {
    565		offset = da - scp->l1tcm_phys;
    566		return (void __force *)scp->l1tcm_base + offset;
    567	}
    568
    569	/* optional memory region */
    570	if (scp->dram_size &&
    571	    da >= scp->dma_addr &&
    572	    (da + len) <= scp->dma_addr + scp->dram_size) {
    573		offset = da - scp->dma_addr;
    574		return scp->cpu_addr + offset;
    575	}
    576
    577	return NULL;
    578}
    579
    580static void *scp_da_to_va(struct rproc *rproc, u64 da, size_t len, bool *is_iomem)
    581{
    582	struct mtk_scp *scp = (struct mtk_scp *)rproc->priv;
    583
    584	return scp->data->scp_da_to_va(scp, da, len);
    585}
    586
    587static void mt8183_scp_stop(struct mtk_scp *scp)
    588{
    589	/* Disable SCP watchdog */
    590	writel(0, scp->reg_base + MT8183_WDT_CFG);
    591}
    592
    593static void mt8192_scp_stop(struct mtk_scp *scp)
    594{
    595	/* Disable SRAM clock */
    596	scp_sram_power_off(scp->reg_base + MT8192_L2TCM_SRAM_PD_0, 0);
    597	scp_sram_power_off(scp->reg_base + MT8192_L2TCM_SRAM_PD_1, 0);
    598	scp_sram_power_off(scp->reg_base + MT8192_L2TCM_SRAM_PD_2, 0);
    599	scp_sram_power_off(scp->reg_base + MT8192_L1TCM_SRAM_PDN, 0);
    600	scp_sram_power_off(scp->reg_base + MT8192_CPU0_SRAM_PD, 0);
    601
    602	/* Disable SCP watchdog */
    603	writel(0, scp->reg_base + MT8192_CORE0_WDT_CFG);
    604}
    605
    606static void mt8195_scp_stop(struct mtk_scp *scp)
    607{
    608	/* Disable SRAM clock */
    609	scp_sram_power_off(scp->reg_base + MT8192_L2TCM_SRAM_PD_0, 0);
    610	scp_sram_power_off(scp->reg_base + MT8192_L2TCM_SRAM_PD_1, 0);
    611	scp_sram_power_off(scp->reg_base + MT8192_L2TCM_SRAM_PD_2, 0);
    612	scp_sram_power_off(scp->reg_base + MT8192_L1TCM_SRAM_PDN,
    613			   MT8195_L1TCM_SRAM_PDN_RESERVED_RSI_BITS);
    614	scp_sram_power_off(scp->reg_base + MT8192_CPU0_SRAM_PD, 0);
    615
    616	/* Disable SCP watchdog */
    617	writel(0, scp->reg_base + MT8192_CORE0_WDT_CFG);
    618}
    619
    620static int scp_stop(struct rproc *rproc)
    621{
    622	struct mtk_scp *scp = (struct mtk_scp *)rproc->priv;
    623	int ret;
    624
    625	ret = clk_prepare_enable(scp->clk);
    626	if (ret) {
    627		dev_err(scp->dev, "failed to enable clocks\n");
    628		return ret;
    629	}
    630
    631	scp->data->scp_reset_assert(scp);
    632	scp->data->scp_stop(scp);
    633	clk_disable_unprepare(scp->clk);
    634
    635	return 0;
    636}
    637
    638static const struct rproc_ops scp_ops = {
    639	.start		= scp_start,
    640	.stop		= scp_stop,
    641	.load		= scp_load,
    642	.da_to_va	= scp_da_to_va,
    643	.parse_fw	= scp_parse_fw,
    644};
    645
    646/**
    647 * scp_get_device() - get device struct of SCP
    648 *
    649 * @scp:	mtk_scp structure
    650 **/
    651struct device *scp_get_device(struct mtk_scp *scp)
    652{
    653	return scp->dev;
    654}
    655EXPORT_SYMBOL_GPL(scp_get_device);
    656
    657/**
    658 * scp_get_rproc() - get rproc struct of SCP
    659 *
    660 * @scp:	mtk_scp structure
    661 **/
    662struct rproc *scp_get_rproc(struct mtk_scp *scp)
    663{
    664	return scp->rproc;
    665}
    666EXPORT_SYMBOL_GPL(scp_get_rproc);
    667
    668/**
    669 * scp_get_vdec_hw_capa() - get video decoder hardware capability
    670 *
    671 * @scp:	mtk_scp structure
    672 *
    673 * Return: video decoder hardware capability
    674 **/
    675unsigned int scp_get_vdec_hw_capa(struct mtk_scp *scp)
    676{
    677	return scp->run.dec_capability;
    678}
    679EXPORT_SYMBOL_GPL(scp_get_vdec_hw_capa);
    680
    681/**
    682 * scp_get_venc_hw_capa() - get video encoder hardware capability
    683 *
    684 * @scp:	mtk_scp structure
    685 *
    686 * Return: video encoder hardware capability
    687 **/
    688unsigned int scp_get_venc_hw_capa(struct mtk_scp *scp)
    689{
    690	return scp->run.enc_capability;
    691}
    692EXPORT_SYMBOL_GPL(scp_get_venc_hw_capa);
    693
    694/**
    695 * scp_mapping_dm_addr() - Mapping SRAM/DRAM to kernel virtual address
    696 *
    697 * @scp:	mtk_scp structure
    698 * @mem_addr:	SCP views memory address
    699 *
    700 * Mapping the SCP's SRAM address /
    701 * DMEM (Data Extended Memory) memory address /
    702 * Working buffer memory address to
    703 * kernel virtual address.
    704 *
    705 * Return: Return ERR_PTR(-EINVAL) if mapping failed,
    706 * otherwise the mapped kernel virtual address
    707 **/
    708void *scp_mapping_dm_addr(struct mtk_scp *scp, u32 mem_addr)
    709{
    710	void *ptr;
    711
    712	ptr = scp_da_to_va(scp->rproc, mem_addr, 0, NULL);
    713	if (!ptr)
    714		return ERR_PTR(-EINVAL);
    715
    716	return ptr;
    717}
    718EXPORT_SYMBOL_GPL(scp_mapping_dm_addr);
    719
    720static int scp_map_memory_region(struct mtk_scp *scp)
    721{
    722	int ret;
    723
    724	ret = of_reserved_mem_device_init(scp->dev);
    725
    726	/* reserved memory is optional. */
    727	if (ret == -ENODEV) {
    728		dev_info(scp->dev, "skipping reserved memory initialization.");
    729		return 0;
    730	}
    731
    732	if (ret) {
    733		dev_err(scp->dev, "failed to assign memory-region: %d\n", ret);
    734		return -ENOMEM;
    735	}
    736
    737	/* Reserved SCP code size */
    738	scp->dram_size = MAX_CODE_SIZE;
    739	scp->cpu_addr = dma_alloc_coherent(scp->dev, scp->dram_size,
    740					   &scp->dma_addr, GFP_KERNEL);
    741	if (!scp->cpu_addr)
    742		return -ENOMEM;
    743
    744	return 0;
    745}
    746
    747static void scp_unmap_memory_region(struct mtk_scp *scp)
    748{
    749	if (scp->dram_size == 0)
    750		return;
    751
    752	dma_free_coherent(scp->dev, scp->dram_size, scp->cpu_addr,
    753			  scp->dma_addr);
    754	of_reserved_mem_device_release(scp->dev);
    755}
    756
    757static int scp_register_ipi(struct platform_device *pdev, u32 id,
    758			    ipi_handler_t handler, void *priv)
    759{
    760	struct mtk_scp *scp = platform_get_drvdata(pdev);
    761
    762	return scp_ipi_register(scp, id, handler, priv);
    763}
    764
    765static void scp_unregister_ipi(struct platform_device *pdev, u32 id)
    766{
    767	struct mtk_scp *scp = platform_get_drvdata(pdev);
    768
    769	scp_ipi_unregister(scp, id);
    770}
    771
    772static int scp_send_ipi(struct platform_device *pdev, u32 id, void *buf,
    773			unsigned int len, unsigned int wait)
    774{
    775	struct mtk_scp *scp = platform_get_drvdata(pdev);
    776
    777	return scp_ipi_send(scp, id, buf, len, wait);
    778}
    779
    780static struct mtk_rpmsg_info mtk_scp_rpmsg_info = {
    781	.send_ipi = scp_send_ipi,
    782	.register_ipi = scp_register_ipi,
    783	.unregister_ipi = scp_unregister_ipi,
    784	.ns_ipi_id = SCP_IPI_NS_SERVICE,
    785};
    786
    787static void scp_add_rpmsg_subdev(struct mtk_scp *scp)
    788{
    789	scp->rpmsg_subdev =
    790		mtk_rpmsg_create_rproc_subdev(to_platform_device(scp->dev),
    791					      &mtk_scp_rpmsg_info);
    792	if (scp->rpmsg_subdev)
    793		rproc_add_subdev(scp->rproc, scp->rpmsg_subdev);
    794}
    795
    796static void scp_remove_rpmsg_subdev(struct mtk_scp *scp)
    797{
    798	if (scp->rpmsg_subdev) {
    799		rproc_remove_subdev(scp->rproc, scp->rpmsg_subdev);
    800		mtk_rpmsg_destroy_rproc_subdev(scp->rpmsg_subdev);
    801		scp->rpmsg_subdev = NULL;
    802	}
    803}
    804
    805static int scp_probe(struct platform_device *pdev)
    806{
    807	struct device *dev = &pdev->dev;
    808	struct device_node *np = dev->of_node;
    809	struct mtk_scp *scp;
    810	struct rproc *rproc;
    811	struct resource *res;
    812	const char *fw_name = "scp.img";
    813	int ret, i;
    814
    815	ret = rproc_of_parse_firmware(dev, 0, &fw_name);
    816	if (ret < 0 && ret != -EINVAL)
    817		return ret;
    818
    819	rproc = devm_rproc_alloc(dev, np->name, &scp_ops, fw_name, sizeof(*scp));
    820	if (!rproc)
    821		return dev_err_probe(dev, -ENOMEM, "unable to allocate remoteproc\n");
    822
    823	scp = (struct mtk_scp *)rproc->priv;
    824	scp->rproc = rproc;
    825	scp->dev = dev;
    826	scp->data = of_device_get_match_data(dev);
    827	platform_set_drvdata(pdev, scp);
    828
    829	res = platform_get_resource_byname(pdev, IORESOURCE_MEM, "sram");
    830	scp->sram_base = devm_ioremap_resource(dev, res);
    831	if (IS_ERR(scp->sram_base))
    832		return dev_err_probe(dev, PTR_ERR(scp->sram_base),
    833				     "Failed to parse and map sram memory\n");
    834
    835	scp->sram_size = resource_size(res);
    836	scp->sram_phys = res->start;
    837
    838	/* l1tcm is an optional memory region */
    839	res = platform_get_resource_byname(pdev, IORESOURCE_MEM, "l1tcm");
    840	scp->l1tcm_base = devm_ioremap_resource(dev, res);
    841	if (IS_ERR(scp->l1tcm_base)) {
    842		ret = PTR_ERR(scp->l1tcm_base);
    843		if (ret != -EINVAL) {
    844			return dev_err_probe(dev, ret, "Failed to map l1tcm memory\n");
    845		}
    846	} else {
    847		scp->l1tcm_size = resource_size(res);
    848		scp->l1tcm_phys = res->start;
    849	}
    850
    851	scp->reg_base = devm_platform_ioremap_resource_byname(pdev, "cfg");
    852	if (IS_ERR(scp->reg_base))
    853		return dev_err_probe(dev, PTR_ERR(scp->reg_base),
    854				     "Failed to parse and map cfg memory\n");
    855
    856	ret = scp->data->scp_clk_get(scp);
    857	if (ret)
    858		return ret;
    859
    860	ret = scp_map_memory_region(scp);
    861	if (ret)
    862		return ret;
    863
    864	mutex_init(&scp->send_lock);
    865	for (i = 0; i < SCP_IPI_MAX; i++)
    866		mutex_init(&scp->ipi_desc[i].lock);
    867
    868	/* register SCP initialization IPI */
    869	ret = scp_ipi_register(scp, SCP_IPI_INIT, scp_init_ipi_handler, scp);
    870	if (ret) {
    871		dev_err(dev, "Failed to register IPI_SCP_INIT\n");
    872		goto release_dev_mem;
    873	}
    874
    875	init_waitqueue_head(&scp->run.wq);
    876	init_waitqueue_head(&scp->ack_wq);
    877
    878	scp_add_rpmsg_subdev(scp);
    879
    880	ret = devm_request_threaded_irq(dev, platform_get_irq(pdev, 0), NULL,
    881					scp_irq_handler, IRQF_ONESHOT,
    882					pdev->name, scp);
    883
    884	if (ret) {
    885		dev_err(dev, "failed to request irq\n");
    886		goto remove_subdev;
    887	}
    888
    889	ret = rproc_add(rproc);
    890	if (ret)
    891		goto remove_subdev;
    892
    893	return 0;
    894
    895remove_subdev:
    896	scp_remove_rpmsg_subdev(scp);
    897	scp_ipi_unregister(scp, SCP_IPI_INIT);
    898release_dev_mem:
    899	scp_unmap_memory_region(scp);
    900	for (i = 0; i < SCP_IPI_MAX; i++)
    901		mutex_destroy(&scp->ipi_desc[i].lock);
    902	mutex_destroy(&scp->send_lock);
    903
    904	return ret;
    905}
    906
    907static int scp_remove(struct platform_device *pdev)
    908{
    909	struct mtk_scp *scp = platform_get_drvdata(pdev);
    910	int i;
    911
    912	rproc_del(scp->rproc);
    913	scp_remove_rpmsg_subdev(scp);
    914	scp_ipi_unregister(scp, SCP_IPI_INIT);
    915	scp_unmap_memory_region(scp);
    916	for (i = 0; i < SCP_IPI_MAX; i++)
    917		mutex_destroy(&scp->ipi_desc[i].lock);
    918	mutex_destroy(&scp->send_lock);
    919
    920	return 0;
    921}
    922
    923static const struct mtk_scp_of_data mt8183_of_data = {
    924	.scp_clk_get = mt8183_scp_clk_get,
    925	.scp_before_load = mt8183_scp_before_load,
    926	.scp_irq_handler = mt8183_scp_irq_handler,
    927	.scp_reset_assert = mt8183_scp_reset_assert,
    928	.scp_reset_deassert = mt8183_scp_reset_deassert,
    929	.scp_stop = mt8183_scp_stop,
    930	.scp_da_to_va = mt8183_scp_da_to_va,
    931	.host_to_scp_reg = MT8183_HOST_TO_SCP,
    932	.host_to_scp_int_bit = MT8183_HOST_IPC_INT_BIT,
    933	.ipi_buf_offset = 0x7bdb0,
    934};
    935
    936static const struct mtk_scp_of_data mt8186_of_data = {
    937	.scp_clk_get = mt8195_scp_clk_get,
    938	.scp_before_load = mt8186_scp_before_load,
    939	.scp_irq_handler = mt8183_scp_irq_handler,
    940	.scp_reset_assert = mt8183_scp_reset_assert,
    941	.scp_reset_deassert = mt8183_scp_reset_deassert,
    942	.scp_stop = mt8183_scp_stop,
    943	.scp_da_to_va = mt8183_scp_da_to_va,
    944	.host_to_scp_reg = MT8183_HOST_TO_SCP,
    945	.host_to_scp_int_bit = MT8183_HOST_IPC_INT_BIT,
    946	.ipi_buf_offset = 0x7bdb0,
    947};
    948
    949static const struct mtk_scp_of_data mt8192_of_data = {
    950	.scp_clk_get = mt8192_scp_clk_get,
    951	.scp_before_load = mt8192_scp_before_load,
    952	.scp_irq_handler = mt8192_scp_irq_handler,
    953	.scp_reset_assert = mt8192_scp_reset_assert,
    954	.scp_reset_deassert = mt8192_scp_reset_deassert,
    955	.scp_stop = mt8192_scp_stop,
    956	.scp_da_to_va = mt8192_scp_da_to_va,
    957	.host_to_scp_reg = MT8192_GIPC_IN_SET,
    958	.host_to_scp_int_bit = MT8192_HOST_IPC_INT_BIT,
    959};
    960
    961static const struct mtk_scp_of_data mt8195_of_data = {
    962	.scp_clk_get = mt8195_scp_clk_get,
    963	.scp_before_load = mt8195_scp_before_load,
    964	.scp_irq_handler = mt8192_scp_irq_handler,
    965	.scp_reset_assert = mt8192_scp_reset_assert,
    966	.scp_reset_deassert = mt8192_scp_reset_deassert,
    967	.scp_stop = mt8195_scp_stop,
    968	.scp_da_to_va = mt8192_scp_da_to_va,
    969	.host_to_scp_reg = MT8192_GIPC_IN_SET,
    970	.host_to_scp_int_bit = MT8192_HOST_IPC_INT_BIT,
    971};
    972
    973static const struct of_device_id mtk_scp_of_match[] = {
    974	{ .compatible = "mediatek,mt8183-scp", .data = &mt8183_of_data },
    975	{ .compatible = "mediatek,mt8186-scp", .data = &mt8186_of_data },
    976	{ .compatible = "mediatek,mt8192-scp", .data = &mt8192_of_data },
    977	{ .compatible = "mediatek,mt8195-scp", .data = &mt8195_of_data },
    978	{},
    979};
    980MODULE_DEVICE_TABLE(of, mtk_scp_of_match);
    981
    982static struct platform_driver mtk_scp_driver = {
    983	.probe = scp_probe,
    984	.remove = scp_remove,
    985	.driver = {
    986		.name = "mtk-scp",
    987		.of_match_table = mtk_scp_of_match,
    988	},
    989};
    990
    991module_platform_driver(mtk_scp_driver);
    992
    993MODULE_LICENSE("GPL v2");
    994MODULE_DESCRIPTION("MediaTek SCP control driver");