xref: /linux/drivers/net/ipa/ipa_interrupt.c (revision d8d9ba8dc9c77358cd7ea73e4e44e8952c9baf35)
1 // SPDX-License-Identifier: GPL-2.0
2 
3 /* Copyright (c) 2014-2018, The Linux Foundation. All rights reserved.
4  * Copyright (C) 2018-2020 Linaro Ltd.
5  */
6 
7 /* DOC: IPA Interrupts
8  *
9  * The IPA has an interrupt line distinct from the interrupt used by the GSI
10  * code.  Whereas GSI interrupts are generally related to channel events (like
11  * transfer completions), IPA interrupts are related to other events related
12  * to the IPA.  Some of the IPA interrupts come from a microcontroller
13  * embedded in the IPA.  Each IPA interrupt type can be both masked and
14  * acknowledged independent of the others.
15  *
16  * Two of the IPA interrupts are initiated by the microcontroller.  A third
17  * can be generated to signal the need for a wakeup/resume when an IPA
18  * endpoint has been suspended.  There are other IPA events, but at this
19  * time only these three are supported.
20  */
21 
22 #include <linux/types.h>
23 #include <linux/interrupt.h>
24 
25 #include "ipa.h"
26 #include "ipa_clock.h"
27 #include "ipa_reg.h"
28 #include "ipa_endpoint.h"
29 #include "ipa_interrupt.h"
30 
31 /**
32  * struct ipa_interrupt - IPA interrupt information
33  * @ipa:		IPA pointer
34  * @irq:		Linux IRQ number used for IPA interrupts
35  * @enabled:		Mask indicating which interrupts are enabled
36  * @handler:		Array of handlers indexed by IPA interrupt ID
37  */
38 struct ipa_interrupt {
39 	struct ipa *ipa;
40 	u32 irq;
41 	u32 enabled;
42 	ipa_irq_handler_t handler[IPA_IRQ_COUNT];
43 };
44 
45 /* Returns true if the interrupt type is associated with the microcontroller */
46 static bool ipa_interrupt_uc(struct ipa_interrupt *interrupt, u32 irq_id)
47 {
48 	return irq_id == IPA_IRQ_UC_0 || irq_id == IPA_IRQ_UC_1;
49 }
50 
51 /* Process a particular interrupt type that has been received */
52 static void ipa_interrupt_process(struct ipa_interrupt *interrupt, u32 irq_id)
53 {
54 	bool uc_irq = ipa_interrupt_uc(interrupt, irq_id);
55 	struct ipa *ipa = interrupt->ipa;
56 	u32 mask = BIT(irq_id);
57 	u32 offset;
58 
59 	/* For microcontroller interrupts, clear the interrupt right away,
60 	 * "to avoid clearing unhandled interrupts."
61 	 */
62 	offset = ipa_reg_irq_clr_offset(ipa->version);
63 	if (uc_irq)
64 		iowrite32(mask, ipa->reg_virt + offset);
65 
66 	if (irq_id < IPA_IRQ_COUNT && interrupt->handler[irq_id])
67 		interrupt->handler[irq_id](interrupt->ipa, irq_id);
68 
69 	/* Clearing the SUSPEND_TX interrupt also clears the register
70 	 * that tells us which suspended endpoint(s) caused the interrupt,
71 	 * so defer clearing until after the handler has been called.
72 	 */
73 	if (!uc_irq)
74 		iowrite32(mask, ipa->reg_virt + offset);
75 }
76 
77 /* IPA IRQ handler is threaded */
78 static irqreturn_t ipa_isr_thread(int irq, void *dev_id)
79 {
80 	struct ipa_interrupt *interrupt = dev_id;
81 	struct ipa *ipa = interrupt->ipa;
82 	u32 enabled = interrupt->enabled;
83 	u32 pending;
84 	u32 offset;
85 	u32 mask;
86 	int ret;
87 
88 	ret = ipa_clock_get(ipa);
89 	if (WARN_ON(ret < 0))
90 		goto out_clock_put;
91 
92 	/* The status register indicates which conditions are present,
93 	 * including conditions whose interrupt is not enabled.  Handle
94 	 * only the enabled ones.
95 	 */
96 	offset = ipa_reg_irq_stts_offset(ipa->version);
97 	pending = ioread32(ipa->reg_virt + offset);
98 	while ((mask = pending & enabled)) {
99 		do {
100 			u32 irq_id = __ffs(mask);
101 
102 			mask ^= BIT(irq_id);
103 
104 			ipa_interrupt_process(interrupt, irq_id);
105 		} while (mask);
106 		pending = ioread32(ipa->reg_virt + offset);
107 	}
108 
109 	/* If any disabled interrupts are pending, clear them */
110 	if (pending) {
111 		struct device *dev = &ipa->pdev->dev;
112 
113 		dev_dbg(dev, "clearing disabled IPA interrupts 0x%08x\n",
114 			pending);
115 		offset = ipa_reg_irq_clr_offset(ipa->version);
116 		iowrite32(pending, ipa->reg_virt + offset);
117 	}
118 out_clock_put:
119 	(void)ipa_clock_put(ipa);
120 
121 	return IRQ_HANDLED;
122 }
123 
124 /* Common function used to enable/disable TX_SUSPEND for an endpoint */
125 static void ipa_interrupt_suspend_control(struct ipa_interrupt *interrupt,
126 					  u32 endpoint_id, bool enable)
127 {
128 	struct ipa *ipa = interrupt->ipa;
129 	u32 mask = BIT(endpoint_id);
130 	u32 offset;
131 	u32 val;
132 
133 	WARN_ON(!(mask & ipa->available));
134 
135 	/* IPA version 3.0 does not support TX_SUSPEND interrupt control */
136 	if (ipa->version == IPA_VERSION_3_0)
137 		return;
138 
139 	offset = ipa_reg_irq_suspend_en_offset(ipa->version);
140 	val = ioread32(ipa->reg_virt + offset);
141 	if (enable)
142 		val |= mask;
143 	else
144 		val &= ~mask;
145 	iowrite32(val, ipa->reg_virt + offset);
146 }
147 
148 /* Enable TX_SUSPEND for an endpoint */
149 void
150 ipa_interrupt_suspend_enable(struct ipa_interrupt *interrupt, u32 endpoint_id)
151 {
152 	ipa_interrupt_suspend_control(interrupt, endpoint_id, true);
153 }
154 
155 /* Disable TX_SUSPEND for an endpoint */
156 void
157 ipa_interrupt_suspend_disable(struct ipa_interrupt *interrupt, u32 endpoint_id)
158 {
159 	ipa_interrupt_suspend_control(interrupt, endpoint_id, false);
160 }
161 
162 /* Clear the suspend interrupt for all endpoints that signaled it */
163 void ipa_interrupt_suspend_clear_all(struct ipa_interrupt *interrupt)
164 {
165 	struct ipa *ipa = interrupt->ipa;
166 	u32 offset;
167 	u32 val;
168 
169 	offset = ipa_reg_irq_suspend_info_offset(ipa->version);
170 	val = ioread32(ipa->reg_virt + offset);
171 
172 	/* SUSPEND interrupt status isn't cleared on IPA version 3.0 */
173 	if (ipa->version == IPA_VERSION_3_0)
174 		return;
175 
176 	offset = ipa_reg_irq_suspend_clr_offset(ipa->version);
177 	iowrite32(val, ipa->reg_virt + offset);
178 }
179 
180 /* Simulate arrival of an IPA TX_SUSPEND interrupt */
181 void ipa_interrupt_simulate_suspend(struct ipa_interrupt *interrupt)
182 {
183 	ipa_interrupt_process(interrupt, IPA_IRQ_TX_SUSPEND);
184 }
185 
186 /* Add a handler for an IPA interrupt */
187 void ipa_interrupt_add(struct ipa_interrupt *interrupt,
188 		       enum ipa_irq_id ipa_irq, ipa_irq_handler_t handler)
189 {
190 	struct ipa *ipa = interrupt->ipa;
191 	u32 offset;
192 
193 	WARN_ON(ipa_irq >= IPA_IRQ_COUNT);
194 
195 	interrupt->handler[ipa_irq] = handler;
196 
197 	/* Update the IPA interrupt mask to enable it */
198 	interrupt->enabled |= BIT(ipa_irq);
199 	offset = ipa_reg_irq_en_offset(ipa->version);
200 	iowrite32(interrupt->enabled, ipa->reg_virt + offset);
201 }
202 
203 /* Remove the handler for an IPA interrupt type */
204 void
205 ipa_interrupt_remove(struct ipa_interrupt *interrupt, enum ipa_irq_id ipa_irq)
206 {
207 	struct ipa *ipa = interrupt->ipa;
208 	u32 offset;
209 
210 	WARN_ON(ipa_irq >= IPA_IRQ_COUNT);
211 
212 	/* Update the IPA interrupt mask to disable it */
213 	interrupt->enabled &= ~BIT(ipa_irq);
214 	offset = ipa_reg_irq_en_offset(ipa->version);
215 	iowrite32(interrupt->enabled, ipa->reg_virt + offset);
216 
217 	interrupt->handler[ipa_irq] = NULL;
218 }
219 
220 /* Configure the IPA interrupt framework */
221 struct ipa_interrupt *ipa_interrupt_config(struct ipa *ipa)
222 {
223 	struct device *dev = &ipa->pdev->dev;
224 	struct ipa_interrupt *interrupt;
225 	unsigned int irq;
226 	u32 offset;
227 	int ret;
228 
229 	ret = platform_get_irq_byname(ipa->pdev, "ipa");
230 	if (ret <= 0) {
231 		dev_err(dev, "DT error %d getting \"ipa\" IRQ property\n",
232 			ret);
233 		return ERR_PTR(ret ? : -EINVAL);
234 	}
235 	irq = ret;
236 
237 	interrupt = kzalloc(sizeof(*interrupt), GFP_KERNEL);
238 	if (!interrupt)
239 		return ERR_PTR(-ENOMEM);
240 	interrupt->ipa = ipa;
241 	interrupt->irq = irq;
242 
243 	/* Start with all IPA interrupts disabled */
244 	offset = ipa_reg_irq_en_offset(ipa->version);
245 	iowrite32(0, ipa->reg_virt + offset);
246 
247 	ret = request_threaded_irq(irq, NULL, ipa_isr_thread, IRQF_ONESHOT,
248 				   "ipa", interrupt);
249 	if (ret) {
250 		dev_err(dev, "error %d requesting \"ipa\" IRQ\n", ret);
251 		goto err_kfree;
252 	}
253 
254 	ret = enable_irq_wake(irq);
255 	if (ret) {
256 		dev_err(dev, "error %d enabling wakeup for \"ipa\" IRQ\n", ret);
257 		goto err_free_irq;
258 	}
259 
260 	return interrupt;
261 
262 err_free_irq:
263 	free_irq(interrupt->irq, interrupt);
264 err_kfree:
265 	kfree(interrupt);
266 
267 	return ERR_PTR(ret);
268 }
269 
270 /* Inverse of ipa_interrupt_config() */
271 void ipa_interrupt_deconfig(struct ipa_interrupt *interrupt)
272 {
273 	struct device *dev = &interrupt->ipa->pdev->dev;
274 	int ret;
275 
276 	ret = disable_irq_wake(interrupt->irq);
277 	if (ret)
278 		dev_err(dev, "error %d disabling \"ipa\" IRQ wakeup\n", ret);
279 	free_irq(interrupt->irq, interrupt);
280 	kfree(interrupt);
281 }
282