tee: optee: add registered buffers handling into RPC calls
With latest changes to OP-TEE we can use any buffers as a shared memory. Thus, it is possible for supplicant to provide part of own memory when OP-TEE asks to allocate a shared buffer. This patch adds support for such feature into RPC handling code. Now when OP-TEE asks supplicant to allocate shared buffer, supplicant can use TEE_IOC_SHM_REGISTER to provide such buffer. RPC handler is aware of this, so it will pass list of allocated pages to OP-TEE. Signed-off-by: Volodymyr Babchuk <vlad.babchuk@gmail.com> [jw: fix parenthesis alignment in free_pages_list()] Signed-off-by: Jens Wiklander <jens.wiklander@linaro.org>
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@ -136,6 +136,7 @@ u32 optee_do_call_with_arg(struct tee_context *ctx, phys_addr_t parg)
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struct optee *optee = tee_get_drvdata(ctx->teedev);
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struct optee_call_waiter w;
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struct optee_rpc_param param = { };
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struct optee_call_ctx call_ctx = { };
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u32 ret;
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param.a0 = OPTEE_SMC_CALL_WITH_ARG;
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@ -160,13 +161,14 @@ u32 optee_do_call_with_arg(struct tee_context *ctx, phys_addr_t parg)
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param.a1 = res.a1;
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param.a2 = res.a2;
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param.a3 = res.a3;
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optee_handle_rpc(ctx, ¶m);
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optee_handle_rpc(ctx, ¶m, &call_ctx);
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} else {
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ret = res.a0;
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break;
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}
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}
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optee_rpc_finalize_call(&call_ctx);
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/*
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* We're done with our thread in secure world, if there's any
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* thread waiters wake up one.
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@ -602,3 +604,18 @@ int optee_shm_unregister(struct tee_context *ctx, struct tee_shm *shm)
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tee_shm_free(shm_arg);
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return rc;
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}
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int optee_shm_register_supp(struct tee_context *ctx, struct tee_shm *shm,
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struct page **pages, size_t num_pages)
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{
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/*
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* We don't want to register supplicant memory in OP-TEE.
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* Instead information about it will be passed in RPC code.
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*/
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return 0;
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}
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int optee_shm_unregister_supp(struct tee_context *ctx, struct tee_shm *shm)
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{
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return 0;
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}
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@ -331,6 +331,8 @@ static const struct tee_driver_ops optee_supp_ops = {
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.release = optee_release,
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.supp_recv = optee_supp_recv,
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.supp_send = optee_supp_send,
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.shm_register = optee_shm_register_supp,
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.shm_unregister = optee_shm_unregister_supp,
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};
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static const struct tee_desc optee_supp_desc = {
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@ -130,7 +130,16 @@ struct optee_rpc_param {
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u32 a7;
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};
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void optee_handle_rpc(struct tee_context *ctx, struct optee_rpc_param *param);
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/* Holds context that is preserved during one STD call */
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struct optee_call_ctx {
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/* information about pages list used in last allocation */
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void *pages_list;
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size_t num_entries;
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};
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void optee_handle_rpc(struct tee_context *ctx, struct optee_rpc_param *param,
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struct optee_call_ctx *call_ctx);
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void optee_rpc_finalize_call(struct optee_call_ctx *call_ctx);
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void optee_wait_queue_init(struct optee_wait_queue *wq);
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void optee_wait_queue_exit(struct optee_wait_queue *wq);
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@ -164,6 +173,10 @@ int optee_shm_register(struct tee_context *ctx, struct tee_shm *shm,
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struct page **pages, size_t num_pages);
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int optee_shm_unregister(struct tee_context *ctx, struct tee_shm *shm);
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int optee_shm_register_supp(struct tee_context *ctx, struct tee_shm *shm,
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struct page **pages, size_t num_pages);
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int optee_shm_unregister_supp(struct tee_context *ctx, struct tee_shm *shm);
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int optee_from_msg_param(struct tee_param *params, size_t num_params,
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const struct optee_msg_param *msg_params);
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int optee_to_msg_param(struct optee_msg_param *msg_params, size_t num_params,
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@ -200,7 +200,8 @@ static struct tee_shm *cmd_alloc_suppl(struct tee_context *ctx, size_t sz)
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}
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static void handle_rpc_func_cmd_shm_alloc(struct tee_context *ctx,
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struct optee_msg_arg *arg)
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struct optee_msg_arg *arg,
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struct optee_call_ctx *call_ctx)
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{
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phys_addr_t pa;
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struct tee_shm *shm;
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@ -245,10 +246,49 @@ static void handle_rpc_func_cmd_shm_alloc(struct tee_context *ctx,
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goto bad;
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}
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arg->params[0].attr = OPTEE_MSG_ATTR_TYPE_TMEM_OUTPUT;
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arg->params[0].u.tmem.buf_ptr = pa;
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arg->params[0].u.tmem.size = sz;
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arg->params[0].u.tmem.shm_ref = (unsigned long)shm;
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sz = tee_shm_get_size(shm);
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if (tee_shm_is_registered(shm)) {
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struct page **pages;
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u64 *pages_list;
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size_t page_num;
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pages = tee_shm_get_pages(shm, &page_num);
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if (!pages || !page_num) {
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arg->ret = TEEC_ERROR_OUT_OF_MEMORY;
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goto bad;
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}
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pages_list = optee_allocate_pages_list(page_num);
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if (!pages_list) {
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arg->ret = TEEC_ERROR_OUT_OF_MEMORY;
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goto bad;
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}
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call_ctx->pages_list = pages_list;
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call_ctx->num_entries = page_num;
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arg->params[0].attr = OPTEE_MSG_ATTR_TYPE_TMEM_OUTPUT |
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OPTEE_MSG_ATTR_NONCONTIG;
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/*
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* In the least bits of u.tmem.buf_ptr we store buffer offset
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* from 4k page, as described in OP-TEE ABI.
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*/
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arg->params[0].u.tmem.buf_ptr = virt_to_phys(pages_list) |
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(tee_shm_get_page_offset(shm) &
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(OPTEE_MSG_NONCONTIG_PAGE_SIZE - 1));
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arg->params[0].u.tmem.size = tee_shm_get_size(shm);
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arg->params[0].u.tmem.shm_ref = (unsigned long)shm;
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optee_fill_pages_list(pages_list, pages, page_num,
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tee_shm_get_page_offset(shm));
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} else {
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arg->params[0].attr = OPTEE_MSG_ATTR_TYPE_TMEM_OUTPUT;
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arg->params[0].u.tmem.buf_ptr = pa;
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arg->params[0].u.tmem.size = sz;
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arg->params[0].u.tmem.shm_ref = (unsigned long)shm;
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}
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arg->ret = TEEC_SUCCESS;
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return;
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bad:
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@ -307,8 +347,24 @@ static void handle_rpc_func_cmd_shm_free(struct tee_context *ctx,
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arg->ret = TEEC_SUCCESS;
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}
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static void free_pages_list(struct optee_call_ctx *call_ctx)
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{
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if (call_ctx->pages_list) {
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optee_free_pages_list(call_ctx->pages_list,
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call_ctx->num_entries);
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call_ctx->pages_list = NULL;
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call_ctx->num_entries = 0;
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}
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}
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void optee_rpc_finalize_call(struct optee_call_ctx *call_ctx)
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{
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free_pages_list(call_ctx);
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}
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static void handle_rpc_func_cmd(struct tee_context *ctx, struct optee *optee,
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struct tee_shm *shm)
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struct tee_shm *shm,
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struct optee_call_ctx *call_ctx)
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{
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struct optee_msg_arg *arg;
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@ -329,7 +385,8 @@ static void handle_rpc_func_cmd(struct tee_context *ctx, struct optee *optee,
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handle_rpc_func_cmd_wait(arg);
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break;
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case OPTEE_MSG_RPC_CMD_SHM_ALLOC:
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handle_rpc_func_cmd_shm_alloc(ctx, arg);
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free_pages_list(call_ctx);
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handle_rpc_func_cmd_shm_alloc(ctx, arg, call_ctx);
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break;
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case OPTEE_MSG_RPC_CMD_SHM_FREE:
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handle_rpc_func_cmd_shm_free(ctx, arg);
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@ -343,10 +400,12 @@ static void handle_rpc_func_cmd(struct tee_context *ctx, struct optee *optee,
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* optee_handle_rpc() - handle RPC from secure world
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* @ctx: context doing the RPC
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* @param: value of registers for the RPC
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* @call_ctx: call context. Preserved during one OP-TEE invocation
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*
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* Result of RPC is written back into @param.
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*/
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void optee_handle_rpc(struct tee_context *ctx, struct optee_rpc_param *param)
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void optee_handle_rpc(struct tee_context *ctx, struct optee_rpc_param *param,
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struct optee_call_ctx *call_ctx)
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{
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struct tee_device *teedev = ctx->teedev;
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struct optee *optee = tee_get_drvdata(teedev);
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@ -381,7 +440,7 @@ void optee_handle_rpc(struct tee_context *ctx, struct optee_rpc_param *param)
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break;
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case OPTEE_SMC_RPC_FUNC_CMD:
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shm = reg_pair_to_ptr(param->a1, param->a2);
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handle_rpc_func_cmd(ctx, optee, shm);
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handle_rpc_func_cmd(ctx, optee, shm, call_ctx);
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break;
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default:
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pr_warn("Unknown RPC func 0x%x\n",
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